From: Mathieu Desnoyers Date: Thu, 18 Jun 2009 20:21:18 +0000 (-0400) Subject: Cleanup verif directory. X-Git-Tag: v0.1~128 X-Git-Url: https://git.lttng.org./?a=commitdiff_plain;h=8322221dc666e720badeb06bc780a1f8e69020a0;p=urcu.git Cleanup verif directory. Signed-off-by: Mathieu Desnoyers --- diff --git a/formal-model/ooomem-two-writes/DEFINES b/formal-model/ooomem-two-writes/DEFINES index e74150d..e7b6f10 100644 --- a/formal-model/ooomem-two-writes/DEFINES +++ b/formal-model/ooomem-two-writes/DEFINES @@ -1,2 +1,4 @@ #define read_one_is_zero (read_one == 0) #define read_two_is_zero (read_two == 0) +#define read_one_is_one (read_one == 1) +#define read_two_is_one (read_two == 1) diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/.input.spin b/formal-model/results/urcu-controldataflow-ipi-intel/.input.spin deleted file mode 100644 index 8afab6a..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/.input.spin +++ /dev/null @@ -1,1249 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/DEFINES b/formal-model/results/urcu-controldataflow-ipi-intel/DEFINES deleted file mode 100644 index abea5ff..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/DEFINES +++ /dev/null @@ -1,18 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/Makefile b/formal-model/results/urcu-controldataflow-ipi-intel/Makefile deleted file mode 100644 index de47dff..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/Makefile +++ /dev/null @@ -1,170 +0,0 @@ -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) Mathieu Desnoyers, 2009 -# -# Authors: Mathieu Desnoyers - -#CFLAGS=-DSAFETY -#for multi-core verif, 15.5GB shared mem, use files if full -#CFLAGS=-DHASH64 -DMEMLIM=15500 -DNCORE=2 -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -DMEMLIM=15500 -DNCORE=8 - -#liveness -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -CFLAGS=-DHASH64 - -SPINFILE=urcu.spin - -default: - make urcu_free | tee urcu_free.log - make urcu_free_no_mb | tee urcu_free_no_mb.log - make urcu_free_no_rmb | tee urcu_free_no_rmb.log - make urcu_free_no_wmb | tee urcu_free_no_wmb.log - make urcu_free_single_flip | tee urcu_free_single_flip.log - make urcu_progress_writer | tee urcu_progress_writer.log - make urcu_progress_reader | tee urcu_progress_reader.log - make urcu_progress_writer_error | tee urcu_progress_writer_error.log - make asserts | tee asserts.log - make summary - -#show trail : spin -v -t -N pan.ltl input.spin -# after each individual make. - -summary: - @echo - @echo "Verification summary" - @grep errors: *.log - -asserts: clean - cat DEFINES > .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X .input.spin - gcc -O2 -w ${CFLAGS} -DSAFETY -o pan pan.c - ./pan -v -c1 -X -m10000000 -w20 - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free: clean urcu_free_ltl run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested: clean urcu_free_ltl urcu_free_nested_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested_define: - cp urcu_free_nested.define .input.define - -urcu_free_no_rmb: clean urcu_free_ltl urcu_free_no_rmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_rmb_define: - cp urcu_free_no_rmb.define .input.define - -urcu_free_no_wmb: clean urcu_free_ltl urcu_free_no_wmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_wmb_define: - cp urcu_free_no_wmb.define .input.define - -urcu_free_no_mb: clean urcu_free_ltl urcu_free_no_mb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_mb_define: - cp urcu_free_no_mb.define .input.define - -urcu_free_single_flip: clean urcu_free_ltl urcu_free_single_flip_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_single_flip_define: - cp urcu_free_single_flip.define .input.define - -urcu_free_ltl: - touch .input.define - cat .input.define >> pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl - -# Progress checks - -urcu_progress_writer: clean urcu_progress_writer_ltl \ - urcu_progress_writer_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_define: - cp urcu_progress_writer.define .input.define - -urcu_progress_writer_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_reader: clean urcu_progress_reader_ltl \ - urcu_progress_reader_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_reader_define: - cp urcu_progress_reader.define .input.define - -urcu_progress_reader_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_writer_error: clean urcu_progress_writer_error_ltl \ - urcu_progress_writer_error_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_error_define: - cp urcu_progress_writer_error.define .input.define - -urcu_progress_writer_error_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - - -run_weak_fair: pan - ./pan -a -f -v -c1 -X -m10000000 -w20 - -run: pan - ./pan -a -v -c1 -X -m10000000 -w20 - -pan: pan.c - gcc -O2 -w ${CFLAGS} -o pan pan.c - -pan.c: pan.ltl ${SPINFILE} - cat .input.define > .input.spin - cat DEFINES >> .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X -N pan.ltl .input.spin - -.PHONY: clean default distclean summary -clean: - rm -f pan* trail.out .input.spin* *.spin.trail .input.define -distclean: - rm -f *.trail *.input *.log diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/asserts.log b/formal-model/results/urcu-controldataflow-ipi-intel/asserts.log deleted file mode 100644 index ddccacb..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/asserts.log +++ /dev/null @@ -1,473 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -cat DEFINES > .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w20 -Depth= 5407 States= 1e+06 Transitions= 5.87e+06 Memory= 542.717 t= 11.7 R= 9e+04 -Depth= 5407 States= 2e+06 Transitions= 1.64e+07 Memory= 618.986 t= 35.3 R= 6e+04 -Depth= 5407 States= 3e+06 Transitions= 3.29e+07 Memory= 695.256 t= 74.2 R= 4e+04 -pan: resizing hashtable to -w22.. done -Depth= 5407 States= 4e+06 Transitions= 4.33e+07 Memory= 802.647 t= 97.9 R= 4e+04 -Depth= 5407 States= 5e+06 Transitions= 5.2e+07 Memory= 878.916 t= 117 R= 4e+04 -Depth= 5407 States= 6e+06 Transitions= 5.99e+07 Memory= 955.186 t= 134 R= 4e+04 -Depth= 5407 States= 7e+06 Transitions= 7.13e+07 Memory= 1031.455 t= 160 R= 4e+04 -Depth= 5407 States= 8e+06 Transitions= 8.71e+07 Memory= 1107.822 t= 198 R= 4e+04 -Depth= 5407 States= 9e+06 Transitions= 9.81e+07 Memory= 1184.092 t= 223 R= 4e+04 -pan: resizing hashtable to -w24.. done -Depth= 5407 States= 1e+07 Transitions= 1.07e+08 Memory= 1384.455 t= 244 R= 4e+04 -Depth= 5407 States= 1.1e+07 Transitions= 1.14e+08 Memory= 1460.725 t= 260 R= 4e+04 -Depth= 5407 States= 1.2e+07 Transitions= 1.27e+08 Memory= 1536.994 t= 288 R= 4e+04 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim - (none specified) - assertion violations + - cycle checks - (disabled by -DSAFETY) - invalid end states + - -State-vector 72 byte, depth reached 5407, errors: 0 - 12141896 states, stored -1.1623987e+08 states, matched -1.2838176e+08 transitions (= stored+matched) -1.9407117e+09 atomic steps -hash conflicts: 98957892 (resolved) - -Stats on memory usage (in Megabytes): - 1157.941 equivalent memory usage for states (stored*(State-vector + overhead)) - 962.219 actual memory usage for states (compression: 83.10%) - state-vector as stored = 55 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1547.834 total actual memory usage - -unreached in proctype urcu_reader - line 261, ".input.spin", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 77, "(1)" - line 242, ".input.spin", state 85, "(1)" - line 246, ".input.spin", state 97, "(1)" - line 250, ".input.spin", state 105, "(1)" - line 400, ".input.spin", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 195, "(1)" - line 246, ".input.spin", state 215, "(1)" - line 250, ".input.spin", state 223, "(1)" - line 679, ".input.spin", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 400, ".input.spin", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 313, "(1)" - line 246, ".input.spin", state 333, "(1)" - line 250, ".input.spin", state 341, "(1)" - line 400, ".input.spin", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 424, "(1)" - line 246, ".input.spin", state 444, "(1)" - line 250, ".input.spin", state 452, "(1)" - line 400, ".input.spin", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, ".input.spin", state 475, "(1)" - line 400, ".input.spin", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, ".input.spin", state 476, "else" - line 400, ".input.spin", state 479, "(1)" - line 404, ".input.spin", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 489, "(1)" - line 404, ".input.spin", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, ".input.spin", state 490, "else" - line 404, ".input.spin", state 493, "(1)" - line 404, ".input.spin", state 494, "(1)" - line 404, ".input.spin", state 494, "(1)" - line 402, ".input.spin", state 499, "((i<1))" - line 402, ".input.spin", state 499, "((i>=1))" - line 409, ".input.spin", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 507, "(1)" - line 409, ".input.spin", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, ".input.spin", state 508, "else" - line 409, ".input.spin", state 511, "(1)" - line 409, ".input.spin", state 512, "(1)" - line 409, ".input.spin", state 512, "(1)" - line 413, ".input.spin", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 521, "(1)" - line 413, ".input.spin", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, ".input.spin", state 522, "else" - line 413, ".input.spin", state 525, "(1)" - line 413, ".input.spin", state 526, "(1)" - line 413, ".input.spin", state 526, "(1)" - line 411, ".input.spin", state 531, "((i<2))" - line 411, ".input.spin", state 531, "((i>=2))" - line 238, ".input.spin", state 537, "(1)" - line 242, ".input.spin", state 545, "(1)" - line 242, ".input.spin", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, ".input.spin", state 546, "else" - line 240, ".input.spin", state 551, "((i<1))" - line 240, ".input.spin", state 551, "((i>=1))" - line 246, ".input.spin", state 557, "(1)" - line 246, ".input.spin", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, ".input.spin", state 558, "else" - line 250, ".input.spin", state 565, "(1)" - line 250, ".input.spin", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, ".input.spin", state 566, "else" - line 248, ".input.spin", state 571, "((i<2))" - line 248, ".input.spin", state 571, "((i>=2))" - line 255, ".input.spin", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, ".input.spin", state 575, "else" - line 420, ".input.spin", state 577, "(1)" - line 420, ".input.spin", state 577, "(1)" - line 679, ".input.spin", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 679, ".input.spin", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 679, ".input.spin", state 582, "(1)" - line 400, ".input.spin", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 653, "(1)" - line 246, ".input.spin", state 673, "(1)" - line 250, ".input.spin", state 681, "(1)" - line 400, ".input.spin", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, ".input.spin", state 709, "(1)" - line 400, ".input.spin", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, ".input.spin", state 710, "else" - line 400, ".input.spin", state 713, "(1)" - line 404, ".input.spin", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 723, "(1)" - line 404, ".input.spin", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, ".input.spin", state 724, "else" - line 404, ".input.spin", state 727, "(1)" - line 404, ".input.spin", state 728, "(1)" - line 404, ".input.spin", state 728, "(1)" - line 402, ".input.spin", state 733, "((i<1))" - line 402, ".input.spin", state 733, "((i>=1))" - line 409, ".input.spin", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 741, "(1)" - line 409, ".input.spin", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, ".input.spin", state 742, "else" - line 409, ".input.spin", state 745, "(1)" - line 409, ".input.spin", state 746, "(1)" - line 409, ".input.spin", state 746, "(1)" - line 413, ".input.spin", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 755, "(1)" - line 413, ".input.spin", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, ".input.spin", state 756, "else" - line 413, ".input.spin", state 759, "(1)" - line 413, ".input.spin", state 760, "(1)" - line 413, ".input.spin", state 760, "(1)" - line 411, ".input.spin", state 765, "((i<2))" - line 411, ".input.spin", state 765, "((i>=2))" - line 238, ".input.spin", state 771, "(1)" - line 242, ".input.spin", state 779, "(1)" - line 242, ".input.spin", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, ".input.spin", state 780, "else" - line 240, ".input.spin", state 785, "((i<1))" - line 240, ".input.spin", state 785, "((i>=1))" - line 246, ".input.spin", state 791, "(1)" - line 246, ".input.spin", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, ".input.spin", state 792, "else" - line 250, ".input.spin", state 799, "(1)" - line 250, ".input.spin", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, ".input.spin", state 800, "else" - line 255, ".input.spin", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, ".input.spin", state 809, "else" - line 420, ".input.spin", state 811, "(1)" - line 420, ".input.spin", state 811, "(1)" - line 400, ".input.spin", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, ".input.spin", state 820, "(1)" - line 400, ".input.spin", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, ".input.spin", state 821, "else" - line 400, ".input.spin", state 824, "(1)" - line 404, ".input.spin", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 834, "(1)" - line 404, ".input.spin", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, ".input.spin", state 835, "else" - line 404, ".input.spin", state 838, "(1)" - line 404, ".input.spin", state 839, "(1)" - line 404, ".input.spin", state 839, "(1)" - line 402, ".input.spin", state 844, "((i<1))" - line 402, ".input.spin", state 844, "((i>=1))" - line 409, ".input.spin", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 852, "(1)" - line 409, ".input.spin", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, ".input.spin", state 853, "else" - line 409, ".input.spin", state 856, "(1)" - line 409, ".input.spin", state 857, "(1)" - line 409, ".input.spin", state 857, "(1)" - line 413, ".input.spin", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 866, "(1)" - line 413, ".input.spin", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, ".input.spin", state 867, "else" - line 413, ".input.spin", state 870, "(1)" - line 413, ".input.spin", state 871, "(1)" - line 413, ".input.spin", state 871, "(1)" - line 411, ".input.spin", state 876, "((i<2))" - line 411, ".input.spin", state 876, "((i>=2))" - line 238, ".input.spin", state 882, "(1)" - line 242, ".input.spin", state 890, "(1)" - line 242, ".input.spin", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, ".input.spin", state 891, "else" - line 240, ".input.spin", state 896, "((i<1))" - line 240, ".input.spin", state 896, "((i>=1))" - line 246, ".input.spin", state 902, "(1)" - line 246, ".input.spin", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, ".input.spin", state 903, "else" - line 250, ".input.spin", state 910, "(1)" - line 250, ".input.spin", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, ".input.spin", state 911, "else" - line 248, ".input.spin", state 916, "((i<2))" - line 248, ".input.spin", state 916, "((i>=2))" - line 255, ".input.spin", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, ".input.spin", state 920, "else" - line 420, ".input.spin", state 922, "(1)" - line 420, ".input.spin", state 922, "(1)" - line 687, ".input.spin", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 400, ".input.spin", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 995, "(1)" - line 246, ".input.spin", state 1015, "(1)" - line 250, ".input.spin", state 1023, "(1)" - line 400, ".input.spin", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1109, "(1)" - line 246, ".input.spin", state 1129, "(1)" - line 250, ".input.spin", state 1137, "(1)" - line 400, ".input.spin", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1224, "(1)" - line 246, ".input.spin", state 1244, "(1)" - line 250, ".input.spin", state 1252, "(1)" - line 400, ".input.spin", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1335, "(1)" - line 246, ".input.spin", state 1355, "(1)" - line 250, ".input.spin", state 1363, "(1)" - line 400, ".input.spin", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1451, "(1)" - line 246, ".input.spin", state 1471, "(1)" - line 250, ".input.spin", state 1479, "(1)" - line 400, ".input.spin", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1562, "(1)" - line 246, ".input.spin", state 1582, "(1)" - line 250, ".input.spin", state 1590, "(1)" - line 400, ".input.spin", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1676, "(1)" - line 246, ".input.spin", state 1696, "(1)" - line 250, ".input.spin", state 1704, "(1)" - line 726, ".input.spin", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 400, ".input.spin", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1794, "(1)" - line 246, ".input.spin", state 1814, "(1)" - line 250, ".input.spin", state 1822, "(1)" - line 400, ".input.spin", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1905, "(1)" - line 246, ".input.spin", state 1925, "(1)" - line 250, ".input.spin", state 1933, "(1)" - line 400, ".input.spin", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, ".input.spin", state 1956, "(1)" - line 400, ".input.spin", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, ".input.spin", state 1957, "else" - line 400, ".input.spin", state 1960, "(1)" - line 404, ".input.spin", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 1970, "(1)" - line 404, ".input.spin", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, ".input.spin", state 1971, "else" - line 404, ".input.spin", state 1974, "(1)" - line 404, ".input.spin", state 1975, "(1)" - line 404, ".input.spin", state 1975, "(1)" - line 402, ".input.spin", state 1980, "((i<1))" - line 402, ".input.spin", state 1980, "((i>=1))" - line 409, ".input.spin", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 1988, "(1)" - line 409, ".input.spin", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, ".input.spin", state 1989, "else" - line 409, ".input.spin", state 1992, "(1)" - line 409, ".input.spin", state 1993, "(1)" - line 409, ".input.spin", state 1993, "(1)" - line 413, ".input.spin", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 2002, "(1)" - line 413, ".input.spin", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, ".input.spin", state 2003, "else" - line 413, ".input.spin", state 2006, "(1)" - line 413, ".input.spin", state 2007, "(1)" - line 413, ".input.spin", state 2007, "(1)" - line 411, ".input.spin", state 2012, "((i<2))" - line 411, ".input.spin", state 2012, "((i>=2))" - line 238, ".input.spin", state 2018, "(1)" - line 242, ".input.spin", state 2026, "(1)" - line 242, ".input.spin", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, ".input.spin", state 2027, "else" - line 240, ".input.spin", state 2032, "((i<1))" - line 240, ".input.spin", state 2032, "((i>=1))" - line 246, ".input.spin", state 2038, "(1)" - line 246, ".input.spin", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, ".input.spin", state 2039, "else" - line 250, ".input.spin", state 2046, "(1)" - line 250, ".input.spin", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, ".input.spin", state 2047, "else" - line 248, ".input.spin", state 2052, "((i<2))" - line 248, ".input.spin", state 2052, "((i>=2))" - line 255, ".input.spin", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, ".input.spin", state 2056, "else" - line 420, ".input.spin", state 2058, "(1)" - line 420, ".input.spin", state 2058, "(1)" - line 726, ".input.spin", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 726, ".input.spin", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 726, ".input.spin", state 2063, "(1)" - line 400, ".input.spin", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 2134, "(1)" - line 246, ".input.spin", state 2154, "(1)" - line 250, ".input.spin", state 2162, "(1)" - line 400, ".input.spin", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 2251, "(1)" - line 246, ".input.spin", state 2271, "(1)" - line 250, ".input.spin", state 2279, "(1)" - line 400, ".input.spin", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 2362, "(1)" - line 246, ".input.spin", state 2382, "(1)" - line 250, ".input.spin", state 2390, "(1)" - line 238, ".input.spin", state 2421, "(1)" - line 246, ".input.spin", state 2441, "(1)" - line 250, ".input.spin", state 2449, "(1)" - line 238, ".input.spin", state 2464, "(1)" - line 246, ".input.spin", state 2484, "(1)" - line 250, ".input.spin", state 2492, "(1)" - line 886, ".input.spin", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 400, ".input.spin", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 82, "(1)" - line 242, ".input.spin", state 90, "(1)" - line 246, ".input.spin", state 102, "(1)" - line 261, ".input.spin", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, ".input.spin", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, ".input.spin", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 257, "(1)" - line 242, ".input.spin", state 265, "(1)" - line 246, ".input.spin", state 277, "(1)" - line 250, ".input.spin", state 285, "(1)" - line 404, ".input.spin", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, ".input.spin", state 378, "(1)" - line 246, ".input.spin", state 390, "(1)" - line 250, ".input.spin", state 398, "(1)" - line 404, ".input.spin", state 440, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 458, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 472, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, ".input.spin", state 498, "(1)" - line 246, ".input.spin", state 510, "(1)" - line 250, ".input.spin", state 518, "(1)" - line 404, ".input.spin", state 551, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 569, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 583, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, ".input.spin", state 609, "(1)" - line 246, ".input.spin", state 621, "(1)" - line 250, ".input.spin", state 629, "(1)" - line 404, ".input.spin", state 664, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, ".input.spin", state 682, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, ".input.spin", state 696, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, ".input.spin", state 722, "(1)" - line 246, ".input.spin", state 734, "(1)" - line 250, ".input.spin", state 742, "(1)" - line 261, ".input.spin", state 795, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 804, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 819, "(1)" - line 273, ".input.spin", state 826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 842, "(1)" - line 242, ".input.spin", state 850, "(1)" - line 246, ".input.spin", state 862, "(1)" - line 250, ".input.spin", state 870, "(1)" - line 261, ".input.spin", state 901, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 910, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 923, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 948, "(1)" - line 242, ".input.spin", state 956, "(1)" - line 246, ".input.spin", state 968, "(1)" - line 250, ".input.spin", state 976, "(1)" - line 265, ".input.spin", state 1002, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1024, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1040, "(1)" - line 242, ".input.spin", state 1048, "(1)" - line 246, ".input.spin", state 1060, "(1)" - line 250, ".input.spin", state 1068, "(1)" - line 261, ".input.spin", state 1099, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 1108, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1121, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1130, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1146, "(1)" - line 242, ".input.spin", state 1154, "(1)" - line 246, ".input.spin", state 1166, "(1)" - line 250, ".input.spin", state 1174, "(1)" - line 265, ".input.spin", state 1200, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1213, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1222, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1238, "(1)" - line 242, ".input.spin", state 1246, "(1)" - line 246, ".input.spin", state 1258, "(1)" - line 250, ".input.spin", state 1266, "(1)" - line 261, ".input.spin", state 1297, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 1306, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1319, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1344, "(1)" - line 242, ".input.spin", state 1352, "(1)" - line 246, ".input.spin", state 1364, "(1)" - line 250, ".input.spin", state 1372, "(1)" - line 265, ".input.spin", state 1398, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1411, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1420, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1436, "(1)" - line 242, ".input.spin", state 1444, "(1)" - line 246, ".input.spin", state 1456, "(1)" - line 250, ".input.spin", state 1464, "(1)" - line 261, ".input.spin", state 1495, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, ".input.spin", state 1504, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, ".input.spin", state 1517, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, ".input.spin", state 1526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, ".input.spin", state 1542, "(1)" - line 242, ".input.spin", state 1550, "(1)" - line 246, ".input.spin", state 1562, "(1)" - line 250, ".input.spin", state 1570, "(1)" - line 1213, ".input.spin", state 1586, "-end-" - (103 of 1586 states) -unreached in proctype :init: - (0 of 78 states) - -pan: elapsed time 291 seconds -pan: rate 41688.913 states/second -pan: avg transition delay 2.2686e-06 usec -cp .input.spin asserts.spin.input -cp .input.spin.trail asserts.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/asserts.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/asserts.spin.input deleted file mode 100644 index 8afab6a..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/asserts.spin.input +++ /dev/null @@ -1,1249 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/references.txt b/formal-model/results/urcu-controldataflow-ipi-intel/references.txt deleted file mode 100644 index 72c67a2..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/references.txt +++ /dev/null @@ -1,13 +0,0 @@ -http://spinroot.com/spin/Man/ltl.html -http://en.wikipedia.org/wiki/Linear_temporal_logic -http://www.dcs.gla.ac.uk/~muffy/MRS4-2002/lect11.ppt - -http://www.lsv.ens-cachan.fr/~gastin/ltl2ba/index.php -http://spinroot.com/spin/Man/index.html -http://spinroot.com/spin/Man/promela.html - -LTL vs CTL : - -http://spinroot.com/spin/Doc/course/lecture12.pdf p. 9, p. 15, p. 18 -http://www-i2.informatik.rwth-aachen.de/i2/fileadmin/user_upload/documents/Introduction_to_Model_Checking/mc_lec18.pdf - (downloaded) diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu.sh b/formal-model/results/urcu-controldataflow-ipi-intel/urcu.sh deleted file mode 100644 index 65ff517..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu.sh +++ /dev/null @@ -1,29 +0,0 @@ -#!/bin/sh -# -# Compiles and runs the urcu.spin Promela model. -# -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) IBM Corporation, 2009 -# Mathieu Desnoyers, 2009 -# -# Authors: Paul E. McKenney -# Mathieu Desnoyers - -# Basic execution, without LTL clauses. See Makefile. - -spin -a urcu.spin -cc -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w21 diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu.spin b/formal-model/results/urcu-controldataflow-ipi-intel/urcu.spin deleted file mode 100644 index dd5d17d..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu.spin +++ /dev/null @@ -1,1231 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.log deleted file mode 100644 index 357c5a6..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.log +++ /dev/null @@ -1,484 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1271) -Depth= 6767 States= 1e+06 Transitions= 5.89e+06 Memory= 550.432 t= 14.3 R= 7e+04 -Depth= 6767 States= 2e+06 Transitions= 1.64e+07 Memory= 634.318 t= 43 R= 5e+04 -Depth= 6767 States= 3e+06 Transitions= 3.29e+07 Memory= 718.303 t= 90 R= 3e+04 -pan: resizing hashtable to -w22.. done -Depth= 6767 States= 4e+06 Transitions= 4.33e+07 Memory= 833.311 t= 119 R= 3e+04 -Depth= 6767 States= 5e+06 Transitions= 5.21e+07 Memory= 917.295 t= 142 R= 4e+04 -Depth= 6767 States= 6e+06 Transitions= 5.99e+07 Memory= 1001.279 t= 163 R= 4e+04 -Depth= 6767 States= 7e+06 Transitions= 7.13e+07 Memory= 1085.264 t= 195 R= 4e+04 -Depth= 6767 States= 8e+06 Transitions= 8.71e+07 Memory= 1169.151 t= 240 R= 3e+04 -Depth= 6767 States= 9e+06 Transitions= 9.81e+07 Memory= 1253.135 t= 270 R= 3e+04 -pan: resizing hashtable to -w24.. done -Depth= 6767 States= 1e+07 Transitions= 1.07e+08 Memory= 1461.115 t= 296 R= 3e+04 -Depth= 6767 States= 1.1e+07 Transitions= 1.15e+08 Memory= 1545.100 t= 315 R= 3e+04 -Depth= 6767 States= 1.2e+07 Transitions= 1.27e+08 Memory= 1629.084 t= 349 R= 3e+04 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6767, errors: 0 - 12141896 states, stored -1.1627209e+08 states, matched -1.2841399e+08 transitions (= stored+matched) -1.9407117e+09 atomic steps -hash conflicts: 98962276 (resolved) - -Stats on memory usage (in Megabytes): - 1343.212 equivalent memory usage for states (stored*(State-vector + overhead)) - 1055.903 actual memory usage for states (compression: 78.61%) - state-vector as stored = 63 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1640.998 total actual memory usage - -unreached in proctype urcu_reader - line 261, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 77, "(1)" - line 242, "pan.___", state 85, "(1)" - line 246, "pan.___", state 97, "(1)" - line 250, "pan.___", state 105, "(1)" - line 400, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 195, "(1)" - line 246, "pan.___", state 215, "(1)" - line 250, "pan.___", state 223, "(1)" - line 679, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 400, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 313, "(1)" - line 246, "pan.___", state 333, "(1)" - line 250, "pan.___", state 341, "(1)" - line 400, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 424, "(1)" - line 246, "pan.___", state 444, "(1)" - line 250, "pan.___", state 452, "(1)" - line 400, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 475, "(1)" - line 400, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, "pan.___", state 476, "else" - line 400, "pan.___", state 479, "(1)" - line 404, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 489, "(1)" - line 404, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, "pan.___", state 490, "else" - line 404, "pan.___", state 493, "(1)" - line 404, "pan.___", state 494, "(1)" - line 404, "pan.___", state 494, "(1)" - line 402, "pan.___", state 499, "((i<1))" - line 402, "pan.___", state 499, "((i>=1))" - line 409, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 507, "(1)" - line 409, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, "pan.___", state 508, "else" - line 409, "pan.___", state 511, "(1)" - line 409, "pan.___", state 512, "(1)" - line 409, "pan.___", state 512, "(1)" - line 413, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 521, "(1)" - line 413, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, "pan.___", state 522, "else" - line 413, "pan.___", state 525, "(1)" - line 413, "pan.___", state 526, "(1)" - line 413, "pan.___", state 526, "(1)" - line 411, "pan.___", state 531, "((i<2))" - line 411, "pan.___", state 531, "((i>=2))" - line 238, "pan.___", state 537, "(1)" - line 242, "pan.___", state 545, "(1)" - line 242, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, "pan.___", state 546, "else" - line 240, "pan.___", state 551, "((i<1))" - line 240, "pan.___", state 551, "((i>=1))" - line 246, "pan.___", state 557, "(1)" - line 246, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, "pan.___", state 558, "else" - line 250, "pan.___", state 565, "(1)" - line 250, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, "pan.___", state 566, "else" - line 248, "pan.___", state 571, "((i<2))" - line 248, "pan.___", state 571, "((i>=2))" - line 255, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, "pan.___", state 575, "else" - line 420, "pan.___", state 577, "(1)" - line 420, "pan.___", state 577, "(1)" - line 679, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 679, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 679, "pan.___", state 582, "(1)" - line 400, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 653, "(1)" - line 246, "pan.___", state 673, "(1)" - line 250, "pan.___", state 681, "(1)" - line 400, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 709, "(1)" - line 400, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, "pan.___", state 710, "else" - line 400, "pan.___", state 713, "(1)" - line 404, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 723, "(1)" - line 404, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, "pan.___", state 724, "else" - line 404, "pan.___", state 727, "(1)" - line 404, "pan.___", state 728, "(1)" - line 404, "pan.___", state 728, "(1)" - line 402, "pan.___", state 733, "((i<1))" - line 402, "pan.___", state 733, "((i>=1))" - line 409, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 741, "(1)" - line 409, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, "pan.___", state 742, "else" - line 409, "pan.___", state 745, "(1)" - line 409, "pan.___", state 746, "(1)" - line 409, "pan.___", state 746, "(1)" - line 413, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 755, "(1)" - line 413, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, "pan.___", state 756, "else" - line 413, "pan.___", state 759, "(1)" - line 413, "pan.___", state 760, "(1)" - line 413, "pan.___", state 760, "(1)" - line 411, "pan.___", state 765, "((i<2))" - line 411, "pan.___", state 765, "((i>=2))" - line 238, "pan.___", state 771, "(1)" - line 242, "pan.___", state 779, "(1)" - line 242, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, "pan.___", state 780, "else" - line 240, "pan.___", state 785, "((i<1))" - line 240, "pan.___", state 785, "((i>=1))" - line 246, "pan.___", state 791, "(1)" - line 246, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, "pan.___", state 792, "else" - line 250, "pan.___", state 799, "(1)" - line 250, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, "pan.___", state 800, "else" - line 255, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, "pan.___", state 809, "else" - line 420, "pan.___", state 811, "(1)" - line 420, "pan.___", state 811, "(1)" - line 400, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 820, "(1)" - line 400, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, "pan.___", state 821, "else" - line 400, "pan.___", state 824, "(1)" - line 404, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 834, "(1)" - line 404, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, "pan.___", state 835, "else" - line 404, "pan.___", state 838, "(1)" - line 404, "pan.___", state 839, "(1)" - line 404, "pan.___", state 839, "(1)" - line 402, "pan.___", state 844, "((i<1))" - line 402, "pan.___", state 844, "((i>=1))" - line 409, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 852, "(1)" - line 409, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, "pan.___", state 853, "else" - line 409, "pan.___", state 856, "(1)" - line 409, "pan.___", state 857, "(1)" - line 409, "pan.___", state 857, "(1)" - line 413, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 866, "(1)" - line 413, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, "pan.___", state 867, "else" - line 413, "pan.___", state 870, "(1)" - line 413, "pan.___", state 871, "(1)" - line 413, "pan.___", state 871, "(1)" - line 411, "pan.___", state 876, "((i<2))" - line 411, "pan.___", state 876, "((i>=2))" - line 238, "pan.___", state 882, "(1)" - line 242, "pan.___", state 890, "(1)" - line 242, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, "pan.___", state 891, "else" - line 240, "pan.___", state 896, "((i<1))" - line 240, "pan.___", state 896, "((i>=1))" - line 246, "pan.___", state 902, "(1)" - line 246, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, "pan.___", state 903, "else" - line 250, "pan.___", state 910, "(1)" - line 250, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, "pan.___", state 911, "else" - line 248, "pan.___", state 916, "((i<2))" - line 248, "pan.___", state 916, "((i>=2))" - line 255, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, "pan.___", state 920, "else" - line 420, "pan.___", state 922, "(1)" - line 420, "pan.___", state 922, "(1)" - line 687, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 400, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 995, "(1)" - line 246, "pan.___", state 1015, "(1)" - line 250, "pan.___", state 1023, "(1)" - line 400, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1109, "(1)" - line 246, "pan.___", state 1129, "(1)" - line 250, "pan.___", state 1137, "(1)" - line 400, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1224, "(1)" - line 246, "pan.___", state 1244, "(1)" - line 250, "pan.___", state 1252, "(1)" - line 400, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1335, "(1)" - line 246, "pan.___", state 1355, "(1)" - line 250, "pan.___", state 1363, "(1)" - line 400, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1451, "(1)" - line 246, "pan.___", state 1471, "(1)" - line 250, "pan.___", state 1479, "(1)" - line 400, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1562, "(1)" - line 246, "pan.___", state 1582, "(1)" - line 250, "pan.___", state 1590, "(1)" - line 400, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1676, "(1)" - line 246, "pan.___", state 1696, "(1)" - line 250, "pan.___", state 1704, "(1)" - line 726, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 400, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1794, "(1)" - line 246, "pan.___", state 1814, "(1)" - line 250, "pan.___", state 1822, "(1)" - line 400, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1905, "(1)" - line 246, "pan.___", state 1925, "(1)" - line 250, "pan.___", state 1933, "(1)" - line 400, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1956, "(1)" - line 400, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 400, "pan.___", state 1957, "else" - line 400, "pan.___", state 1960, "(1)" - line 404, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1970, "(1)" - line 404, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 404, "pan.___", state 1971, "else" - line 404, "pan.___", state 1974, "(1)" - line 404, "pan.___", state 1975, "(1)" - line 404, "pan.___", state 1975, "(1)" - line 402, "pan.___", state 1980, "((i<1))" - line 402, "pan.___", state 1980, "((i>=1))" - line 409, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1988, "(1)" - line 409, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 409, "pan.___", state 1989, "else" - line 409, "pan.___", state 1992, "(1)" - line 409, "pan.___", state 1993, "(1)" - line 409, "pan.___", state 1993, "(1)" - line 413, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2002, "(1)" - line 413, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 413, "pan.___", state 2003, "else" - line 413, "pan.___", state 2006, "(1)" - line 413, "pan.___", state 2007, "(1)" - line 413, "pan.___", state 2007, "(1)" - line 411, "pan.___", state 2012, "((i<2))" - line 411, "pan.___", state 2012, "((i>=2))" - line 238, "pan.___", state 2018, "(1)" - line 242, "pan.___", state 2026, "(1)" - line 242, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 242, "pan.___", state 2027, "else" - line 240, "pan.___", state 2032, "((i<1))" - line 240, "pan.___", state 2032, "((i>=1))" - line 246, "pan.___", state 2038, "(1)" - line 246, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 246, "pan.___", state 2039, "else" - line 250, "pan.___", state 2046, "(1)" - line 250, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 250, "pan.___", state 2047, "else" - line 248, "pan.___", state 2052, "((i<2))" - line 248, "pan.___", state 2052, "((i>=2))" - line 255, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 255, "pan.___", state 2056, "else" - line 420, "pan.___", state 2058, "(1)" - line 420, "pan.___", state 2058, "(1)" - line 726, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 726, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 726, "pan.___", state 2063, "(1)" - line 400, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 2134, "(1)" - line 246, "pan.___", state 2154, "(1)" - line 250, "pan.___", state 2162, "(1)" - line 400, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 2251, "(1)" - line 246, "pan.___", state 2271, "(1)" - line 250, "pan.___", state 2279, "(1)" - line 400, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 2362, "(1)" - line 246, "pan.___", state 2382, "(1)" - line 250, "pan.___", state 2390, "(1)" - line 238, "pan.___", state 2421, "(1)" - line 246, "pan.___", state 2441, "(1)" - line 250, "pan.___", state 2449, "(1)" - line 238, "pan.___", state 2464, "(1)" - line 246, "pan.___", state 2484, "(1)" - line 250, "pan.___", state 2492, "(1)" - line 886, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 400, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 238, "pan.___", state 82, "(1)" - line 242, "pan.___", state 90, "(1)" - line 246, "pan.___", state 102, "(1)" - line 261, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 257, "(1)" - line 242, "pan.___", state 265, "(1)" - line 246, "pan.___", state 277, "(1)" - line 250, "pan.___", state 285, "(1)" - line 404, "pan.___", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, "pan.___", state 378, "(1)" - line 246, "pan.___", state 390, "(1)" - line 250, "pan.___", state 398, "(1)" - line 404, "pan.___", state 440, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 458, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 472, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, "pan.___", state 498, "(1)" - line 246, "pan.___", state 510, "(1)" - line 250, "pan.___", state 518, "(1)" - line 404, "pan.___", state 551, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 569, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 583, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, "pan.___", state 609, "(1)" - line 246, "pan.___", state 621, "(1)" - line 250, "pan.___", state 629, "(1)" - line 404, "pan.___", state 664, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 682, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 696, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 242, "pan.___", state 722, "(1)" - line 246, "pan.___", state 734, "(1)" - line 250, "pan.___", state 742, "(1)" - line 261, "pan.___", state 795, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 804, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 819, "(1)" - line 273, "pan.___", state 826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 842, "(1)" - line 242, "pan.___", state 850, "(1)" - line 246, "pan.___", state 862, "(1)" - line 250, "pan.___", state 870, "(1)" - line 261, "pan.___", state 901, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 910, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 923, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 948, "(1)" - line 242, "pan.___", state 956, "(1)" - line 246, "pan.___", state 968, "(1)" - line 250, "pan.___", state 976, "(1)" - line 265, "pan.___", state 1002, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1024, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1040, "(1)" - line 242, "pan.___", state 1048, "(1)" - line 246, "pan.___", state 1060, "(1)" - line 250, "pan.___", state 1068, "(1)" - line 261, "pan.___", state 1099, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 1108, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1121, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1130, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1146, "(1)" - line 242, "pan.___", state 1154, "(1)" - line 246, "pan.___", state 1166, "(1)" - line 250, "pan.___", state 1174, "(1)" - line 265, "pan.___", state 1200, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1213, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1222, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1238, "(1)" - line 242, "pan.___", state 1246, "(1)" - line 246, "pan.___", state 1258, "(1)" - line 250, "pan.___", state 1266, "(1)" - line 261, "pan.___", state 1297, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 1306, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1319, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1344, "(1)" - line 242, "pan.___", state 1352, "(1)" - line 246, "pan.___", state 1364, "(1)" - line 250, "pan.___", state 1372, "(1)" - line 265, "pan.___", state 1398, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1411, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1420, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1436, "(1)" - line 242, "pan.___", state 1444, "(1)" - line 246, "pan.___", state 1456, "(1)" - line 250, "pan.___", state 1464, "(1)" - line 261, "pan.___", state 1495, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 265, "pan.___", state 1504, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 269, "pan.___", state 1517, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 273, "pan.___", state 1526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 238, "pan.___", state 1542, "(1)" - line 242, "pan.___", state 1550, "(1)" - line 246, "pan.___", state 1562, "(1)" - line 250, "pan.___", state 1570, "(1)" - line 1213, "pan.___", state 1586, "-end-" - (103 of 1586 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1276, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 353 seconds -pan: rate 34395.332 states/second -pan: avg transition delay 2.749e-06 usec -cp .input.spin urcu_free.spin.input -cp .input.spin.trail urcu_free.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.ltl b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.ltl deleted file mode 100644 index 6be1be9..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.ltl +++ /dev/null @@ -1 +0,0 @@ -[] (!read_poison) diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.spin.input deleted file mode 100644 index 8afab6a..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free.spin.input +++ /dev/null @@ -1,1249 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_nested.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_nested.define deleted file mode 100644 index 0fb59bd..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_nested.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_NEST_LEVEL 2 diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.define deleted file mode 100644 index d99d793..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_MB diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.log deleted file mode 100644 index 15f7bc2..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.log +++ /dev/null @@ -1,624 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_mb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -Depth= 5327 States= 1e+06 Transitions= 7.34e+06 Memory= 550.432 t= 18.2 R= 6e+04 -pan: claim violated! (at depth 1301) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 5456, errors: 1 - 1674433 states, stored - 12624035 states, matched - 14298468 transitions (= stored+matched) -2.0423758e+08 atomic steps -hash conflicts: 6074438 (resolved) - -Stats on memory usage (in Megabytes): - 185.236 equivalent memory usage for states (stored*(State-vector + overhead)) - 141.360 actual memory usage for states (compression: 76.31%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 606.975 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 34, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 56, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 65, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 81, "(1)" - line 243, "pan.___", state 89, "(1)" - line 247, "pan.___", state 101, "(1)" - line 251, "pan.___", state 109, "(1)" - line 401, "pan.___", state 135, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 167, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 181, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 199, "(1)" - line 247, "pan.___", state 219, "(1)" - line 251, "pan.___", state 227, "(1)" - line 689, "pan.___", state 246, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 253, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 285, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 299, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 317, "(1)" - line 247, "pan.___", state 337, "(1)" - line 251, "pan.___", state 345, "(1)" - line 401, "pan.___", state 364, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 396, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 410, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 428, "(1)" - line 247, "pan.___", state 448, "(1)" - line 251, "pan.___", state 456, "(1)" - line 401, "pan.___", state 477, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 479, "(1)" - line 401, "pan.___", state 480, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 480, "else" - line 401, "pan.___", state 483, "(1)" - line 405, "pan.___", state 491, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 494, "else" - line 405, "pan.___", state 497, "(1)" - line 405, "pan.___", state 498, "(1)" - line 405, "pan.___", state 498, "(1)" - line 403, "pan.___", state 503, "((i<1))" - line 403, "pan.___", state 503, "((i>=1))" - line 410, "pan.___", state 509, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 512, "else" - line 410, "pan.___", state 515, "(1)" - line 410, "pan.___", state 516, "(1)" - line 410, "pan.___", state 516, "(1)" - line 414, "pan.___", state 523, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 526, "else" - line 414, "pan.___", state 529, "(1)" - line 414, "pan.___", state 530, "(1)" - line 414, "pan.___", state 530, "(1)" - line 412, "pan.___", state 535, "((i<2))" - line 412, "pan.___", state 535, "((i>=2))" - line 239, "pan.___", state 541, "(1)" - line 243, "pan.___", state 549, "(1)" - line 243, "pan.___", state 550, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 550, "else" - line 241, "pan.___", state 555, "((i<1))" - line 241, "pan.___", state 555, "((i>=1))" - line 247, "pan.___", state 561, "(1)" - line 247, "pan.___", state 562, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 562, "else" - line 251, "pan.___", state 569, "(1)" - line 251, "pan.___", state 570, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 570, "else" - line 249, "pan.___", state 575, "((i<2))" - line 249, "pan.___", state 575, "((i>=2))" - line 256, "pan.___", state 579, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 579, "else" - line 421, "pan.___", state 581, "(1)" - line 421, "pan.___", state 581, "(1)" - line 689, "pan.___", state 584, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 689, "pan.___", state 585, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 689, "pan.___", state 586, "(1)" - line 401, "pan.___", state 593, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 639, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 657, "(1)" - line 247, "pan.___", state 677, "(1)" - line 251, "pan.___", state 685, "(1)" - line 401, "pan.___", state 711, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 713, "(1)" - line 401, "pan.___", state 714, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 714, "else" - line 401, "pan.___", state 717, "(1)" - line 405, "pan.___", state 725, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 728, "else" - line 405, "pan.___", state 731, "(1)" - line 405, "pan.___", state 732, "(1)" - line 405, "pan.___", state 732, "(1)" - line 403, "pan.___", state 737, "((i<1))" - line 403, "pan.___", state 737, "((i>=1))" - line 410, "pan.___", state 743, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 746, "else" - line 410, "pan.___", state 749, "(1)" - line 410, "pan.___", state 750, "(1)" - line 410, "pan.___", state 750, "(1)" - line 414, "pan.___", state 757, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 760, "else" - line 414, "pan.___", state 763, "(1)" - line 414, "pan.___", state 764, "(1)" - line 414, "pan.___", state 764, "(1)" - line 412, "pan.___", state 769, "((i<2))" - line 412, "pan.___", state 769, "((i>=2))" - line 239, "pan.___", state 775, "(1)" - line 243, "pan.___", state 783, "(1)" - line 243, "pan.___", state 784, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 784, "else" - line 241, "pan.___", state 789, "((i<1))" - line 241, "pan.___", state 789, "((i>=1))" - line 247, "pan.___", state 795, "(1)" - line 247, "pan.___", state 796, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 796, "else" - line 251, "pan.___", state 803, "(1)" - line 251, "pan.___", state 804, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 804, "else" - line 256, "pan.___", state 813, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 813, "else" - line 421, "pan.___", state 815, "(1)" - line 421, "pan.___", state 815, "(1)" - line 401, "pan.___", state 822, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 824, "(1)" - line 401, "pan.___", state 825, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 825, "else" - line 401, "pan.___", state 828, "(1)" - line 405, "pan.___", state 836, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 839, "else" - line 405, "pan.___", state 842, "(1)" - line 405, "pan.___", state 843, "(1)" - line 405, "pan.___", state 843, "(1)" - line 403, "pan.___", state 848, "((i<1))" - line 403, "pan.___", state 848, "((i>=1))" - line 410, "pan.___", state 854, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 857, "else" - line 410, "pan.___", state 860, "(1)" - line 410, "pan.___", state 861, "(1)" - line 410, "pan.___", state 861, "(1)" - line 414, "pan.___", state 868, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 871, "else" - line 414, "pan.___", state 874, "(1)" - line 414, "pan.___", state 875, "(1)" - line 414, "pan.___", state 875, "(1)" - line 412, "pan.___", state 880, "((i<2))" - line 412, "pan.___", state 880, "((i>=2))" - line 239, "pan.___", state 886, "(1)" - line 243, "pan.___", state 894, "(1)" - line 243, "pan.___", state 895, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 895, "else" - line 241, "pan.___", state 900, "((i<1))" - line 241, "pan.___", state 900, "((i>=1))" - line 247, "pan.___", state 906, "(1)" - line 247, "pan.___", state 907, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 907, "else" - line 251, "pan.___", state 914, "(1)" - line 251, "pan.___", state 915, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 915, "else" - line 249, "pan.___", state 920, "((i<2))" - line 249, "pan.___", state 920, "((i>=2))" - line 256, "pan.___", state 924, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 924, "else" - line 421, "pan.___", state 926, "(1)" - line 421, "pan.___", state 926, "(1)" - line 697, "pan.___", state 930, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 935, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 967, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 981, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 999, "(1)" - line 247, "pan.___", state 1019, "(1)" - line 251, "pan.___", state 1027, "(1)" - line 401, "pan.___", state 1049, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1081, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1095, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1113, "(1)" - line 247, "pan.___", state 1133, "(1)" - line 251, "pan.___", state 1141, "(1)" - line 401, "pan.___", state 1164, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1196, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1210, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1228, "(1)" - line 247, "pan.___", state 1248, "(1)" - line 251, "pan.___", state 1256, "(1)" - line 401, "pan.___", state 1275, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1307, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1321, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1339, "(1)" - line 247, "pan.___", state 1359, "(1)" - line 251, "pan.___", state 1367, "(1)" - line 401, "pan.___", state 1391, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1423, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1437, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1455, "(1)" - line 247, "pan.___", state 1475, "(1)" - line 251, "pan.___", state 1483, "(1)" - line 401, "pan.___", state 1502, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1534, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1548, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1566, "(1)" - line 247, "pan.___", state 1586, "(1)" - line 251, "pan.___", state 1594, "(1)" - line 401, "pan.___", state 1616, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1648, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1662, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1680, "(1)" - line 247, "pan.___", state 1700, "(1)" - line 251, "pan.___", state 1708, "(1)" - line 736, "pan.___", state 1727, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1734, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1766, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1780, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1798, "(1)" - line 247, "pan.___", state 1818, "(1)" - line 251, "pan.___", state 1826, "(1)" - line 401, "pan.___", state 1845, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1877, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1891, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1909, "(1)" - line 247, "pan.___", state 1929, "(1)" - line 251, "pan.___", state 1937, "(1)" - line 401, "pan.___", state 1958, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1960, "(1)" - line 401, "pan.___", state 1961, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1961, "else" - line 401, "pan.___", state 1964, "(1)" - line 405, "pan.___", state 1972, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1975, "else" - line 405, "pan.___", state 1978, "(1)" - line 405, "pan.___", state 1979, "(1)" - line 405, "pan.___", state 1979, "(1)" - line 403, "pan.___", state 1984, "((i<1))" - line 403, "pan.___", state 1984, "((i>=1))" - line 410, "pan.___", state 1990, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1993, "else" - line 410, "pan.___", state 1996, "(1)" - line 410, "pan.___", state 1997, "(1)" - line 410, "pan.___", state 1997, "(1)" - line 414, "pan.___", state 2004, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2007, "else" - line 414, "pan.___", state 2010, "(1)" - line 414, "pan.___", state 2011, "(1)" - line 414, "pan.___", state 2011, "(1)" - line 412, "pan.___", state 2016, "((i<2))" - line 412, "pan.___", state 2016, "((i>=2))" - line 239, "pan.___", state 2022, "(1)" - line 243, "pan.___", state 2030, "(1)" - line 243, "pan.___", state 2031, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2031, "else" - line 241, "pan.___", state 2036, "((i<1))" - line 241, "pan.___", state 2036, "((i>=1))" - line 247, "pan.___", state 2042, "(1)" - line 247, "pan.___", state 2043, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2043, "else" - line 251, "pan.___", state 2050, "(1)" - line 251, "pan.___", state 2051, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2051, "else" - line 249, "pan.___", state 2056, "((i<2))" - line 249, "pan.___", state 2056, "((i>=2))" - line 256, "pan.___", state 2060, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2060, "else" - line 421, "pan.___", state 2062, "(1)" - line 421, "pan.___", state 2062, "(1)" - line 736, "pan.___", state 2065, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 736, "pan.___", state 2066, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 736, "pan.___", state 2067, "(1)" - line 401, "pan.___", state 2074, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2106, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2120, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2138, "(1)" - line 247, "pan.___", state 2158, "(1)" - line 251, "pan.___", state 2166, "(1)" - line 401, "pan.___", state 2191, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2223, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2237, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2255, "(1)" - line 247, "pan.___", state 2275, "(1)" - line 251, "pan.___", state 2283, "(1)" - line 401, "pan.___", state 2302, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2334, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2348, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2366, "(1)" - line 247, "pan.___", state 2386, "(1)" - line 251, "pan.___", state 2394, "(1)" - line 239, "pan.___", state 2425, "(1)" - line 247, "pan.___", state 2445, "(1)" - line 251, "pan.___", state 2453, "(1)" - line 239, "pan.___", state 2468, "(1)" - line 247, "pan.___", state 2488, "(1)" - line 251, "pan.___", state 2496, "(1)" - line 887, "pan.___", state 2513, "-end-" - (246 of 2513 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 20, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 26, "(1)" - line 405, "pan.___", state 34, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 40, "(1)" - line 405, "pan.___", state 41, "(1)" - line 405, "pan.___", state 41, "(1)" - line 403, "pan.___", state 46, "((i<1))" - line 403, "pan.___", state 46, "((i>=1))" - line 410, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 58, "(1)" - line 410, "pan.___", state 59, "(1)" - line 410, "pan.___", state 59, "(1)" - line 414, "pan.___", state 72, "(1)" - line 414, "pan.___", state 73, "(1)" - line 414, "pan.___", state 73, "(1)" - line 412, "pan.___", state 78, "((i<2))" - line 412, "pan.___", state 78, "((i>=2))" - line 239, "pan.___", state 84, "(1)" - line 243, "pan.___", state 92, "(1)" - line 243, "pan.___", state 93, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 93, "else" - line 241, "pan.___", state 98, "((i<1))" - line 241, "pan.___", state 98, "((i>=1))" - line 247, "pan.___", state 104, "(1)" - line 247, "pan.___", state 105, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 105, "else" - line 251, "pan.___", state 112, "(1)" - line 251, "pan.___", state 113, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 113, "else" - line 249, "pan.___", state 118, "((i<2))" - line 249, "pan.___", state 118, "((i>=2))" - line 256, "pan.___", state 122, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 122, "else" - line 421, "pan.___", state 124, "(1)" - line 421, "pan.___", state 124, "(1)" - line 262, "pan.___", state 133, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 142, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 264, "pan.___", state 150, "((i<1))" - line 264, "pan.___", state 150, "((i>=1))" - line 270, "pan.___", state 155, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 1010, "pan.___", state 183, "old_data = cached_rcu_ptr.val[_pid]" - line 1021, "pan.___", state 187, "_proc_urcu_writer = (_proc_urcu_writer|(1<<4))" - line 401, "pan.___", state 195, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 201, "(1)" - line 405, "pan.___", state 209, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 215, "(1)" - line 405, "pan.___", state 216, "(1)" - line 405, "pan.___", state 216, "(1)" - line 410, "pan.___", state 229, "(1)" - line 414, "pan.___", state 241, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 259, "(1)" - line 243, "pan.___", state 267, "(1)" - line 251, "pan.___", state 287, "(1)" - line 421, "pan.___", state 299, "(1)" - line 421, "pan.___", state 299, "(1)" - line 405, "pan.___", state 322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 380, "(1)" - line 251, "pan.___", state 400, "(1)" - line 405, "pan.___", state 442, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 243, "pan.___", state 500, "(1)" - line 405, "pan.___", state 553, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 243, "pan.___", state 611, "(1)" - line 405, "pan.___", state 666, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 698, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 724, "(1)" - line 251, "pan.___", state 744, "(1)" - line 1145, "pan.___", state 769, "_proc_urcu_writer = (_proc_urcu_writer|(1<<13))" - line 262, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 799, "(1)" - line 266, "pan.___", state 806, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 808, "(1)" - line 266, "pan.___", state 809, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 809, "else" - line 264, "pan.___", state 814, "((i<1))" - line 264, "pan.___", state 814, "((i>=1))" - line 270, "pan.___", state 819, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 821, "(1)" - line 270, "pan.___", state 822, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 822, "else" - line 274, "pan.___", state 828, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 830, "(1)" - line 274, "pan.___", state 831, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 831, "else" - line 272, "pan.___", state 836, "((i<2))" - line 272, "pan.___", state 836, "((i>=2))" - line 239, "pan.___", state 844, "(1)" - line 243, "pan.___", state 852, "(1)" - line 243, "pan.___", state 853, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 853, "else" - line 241, "pan.___", state 858, "((i<1))" - line 241, "pan.___", state 858, "((i>=1))" - line 247, "pan.___", state 864, "(1)" - line 247, "pan.___", state 865, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 865, "else" - line 251, "pan.___", state 872, "(1)" - line 251, "pan.___", state 873, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 873, "else" - line 256, "pan.___", state 882, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 882, "else" - line 1199, "pan.___", state 898, "((i<1))" - line 1199, "pan.___", state 898, "((i>=1))" - line 262, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 905, "(1)" - line 266, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 914, "(1)" - line 266, "pan.___", state 915, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 915, "else" - line 264, "pan.___", state 920, "((i<1))" - line 264, "pan.___", state 920, "((i>=1))" - line 270, "pan.___", state 925, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 927, "(1)" - line 270, "pan.___", state 928, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 928, "else" - line 274, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 936, "(1)" - line 274, "pan.___", state 937, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 937, "else" - line 272, "pan.___", state 942, "((i<2))" - line 272, "pan.___", state 942, "((i>=2))" - line 239, "pan.___", state 950, "(1)" - line 243, "pan.___", state 958, "(1)" - line 243, "pan.___", state 959, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 959, "else" - line 241, "pan.___", state 964, "((i<1))" - line 241, "pan.___", state 964, "((i>=1))" - line 247, "pan.___", state 970, "(1)" - line 247, "pan.___", state 971, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 971, "else" - line 251, "pan.___", state 978, "(1)" - line 251, "pan.___", state 979, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 979, "else" - line 256, "pan.___", state 988, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 988, "else" - line 289, "pan.___", state 990, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 289, "pan.___", state 990, "else" - line 1199, "pan.___", state 991, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1199, "pan.___", state 991, "else" - line 266, "pan.___", state 1004, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1017, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1026, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1042, "(1)" - line 243, "pan.___", state 1050, "(1)" - line 247, "pan.___", state 1062, "(1)" - line 251, "pan.___", state 1070, "(1)" - line 262, "pan.___", state 1101, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1148, "(1)" - line 243, "pan.___", state 1156, "(1)" - line 247, "pan.___", state 1168, "(1)" - line 251, "pan.___", state 1176, "(1)" - line 266, "pan.___", state 1202, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1224, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1240, "(1)" - line 243, "pan.___", state 1248, "(1)" - line 247, "pan.___", state 1260, "(1)" - line 251, "pan.___", state 1268, "(1)" - line 262, "pan.___", state 1299, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1346, "(1)" - line 243, "pan.___", state 1354, "(1)" - line 247, "pan.___", state 1366, "(1)" - line 251, "pan.___", state 1374, "(1)" - line 262, "pan.___", state 1391, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1393, "(1)" - line 266, "pan.___", state 1400, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1402, "(1)" - line 266, "pan.___", state 1403, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 1403, "else" - line 264, "pan.___", state 1408, "((i<1))" - line 264, "pan.___", state 1408, "((i>=1))" - line 270, "pan.___", state 1413, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1415, "(1)" - line 270, "pan.___", state 1416, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 1416, "else" - line 274, "pan.___", state 1422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1424, "(1)" - line 274, "pan.___", state 1425, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 1425, "else" - line 272, "pan.___", state 1430, "((i<2))" - line 272, "pan.___", state 1430, "((i>=2))" - line 239, "pan.___", state 1438, "(1)" - line 243, "pan.___", state 1446, "(1)" - line 243, "pan.___", state 1447, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 1447, "else" - line 241, "pan.___", state 1452, "((i<1))" - line 241, "pan.___", state 1452, "((i>=1))" - line 247, "pan.___", state 1458, "(1)" - line 247, "pan.___", state 1459, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 1459, "else" - line 251, "pan.___", state 1466, "(1)" - line 251, "pan.___", state 1467, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 1467, "else" - line 256, "pan.___", state 1476, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 1476, "else" - line 1210, "pan.___", state 1479, "i = 0" - line 1210, "pan.___", state 1481, "reader_barrier = 1" - line 1210, "pan.___", state 1492, "((i<1))" - line 1210, "pan.___", state 1492, "((i>=1))" - line 262, "pan.___", state 1497, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1499, "(1)" - line 266, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1508, "(1)" - line 266, "pan.___", state 1509, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 1509, "else" - line 264, "pan.___", state 1514, "((i<1))" - line 264, "pan.___", state 1514, "((i>=1))" - line 270, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1521, "(1)" - line 270, "pan.___", state 1522, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 1522, "else" - line 274, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1530, "(1)" - line 274, "pan.___", state 1531, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 1531, "else" - line 272, "pan.___", state 1536, "((i<2))" - line 272, "pan.___", state 1536, "((i>=2))" - line 239, "pan.___", state 1544, "(1)" - line 243, "pan.___", state 1552, "(1)" - line 243, "pan.___", state 1553, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 1553, "else" - line 241, "pan.___", state 1558, "((i<1))" - line 241, "pan.___", state 1558, "((i>=1))" - line 247, "pan.___", state 1564, "(1)" - line 247, "pan.___", state 1565, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 1565, "else" - line 251, "pan.___", state 1572, "(1)" - line 251, "pan.___", state 1573, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 1573, "else" - line 256, "pan.___", state 1582, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 1582, "else" - line 289, "pan.___", state 1584, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 289, "pan.___", state 1584, "else" - line 1210, "pan.___", state 1585, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1210, "pan.___", state 1585, "else" - line 1214, "pan.___", state 1588, "-end-" - (179 of 1588 states) -unreached in proctype :init: - line 1225, "pan.___", state 9, "((j<2))" - line 1225, "pan.___", state 9, "((j>=2))" - line 1226, "pan.___", state 20, "((j<2))" - line 1226, "pan.___", state 20, "((j>=2))" - line 1231, "pan.___", state 33, "((j<2))" - line 1231, "pan.___", state 33, "((j>=2))" - line 1229, "pan.___", state 43, "((i<1))" - line 1229, "pan.___", state 43, "((i>=1))" - line 1239, "pan.___", state 54, "((j<2))" - line 1239, "pan.___", state 54, "((j>=2))" - line 1243, "pan.___", state 67, "((j<2))" - line 1243, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1277, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 36.6 seconds -pan: rate 45762.039 states/second -pan: avg transition delay 2.559e-06 usec -cp .input.spin urcu_free_no_mb.spin.input -cp .input.spin.trail urcu_free_no_mb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input deleted file mode 100644 index 739f3ef..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define NO_MB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input.trail deleted file mode 100644 index bf64078..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_mb.spin.input.trail +++ /dev/null @@ -1,1304 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4181 -2:3:4101 -3:3:4104 -4:3:4104 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a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.log deleted file mode 100644 index 5bfb772..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.log +++ /dev/null @@ -1,491 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_rmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -Depth= 6905 States= 1e+06 Transitions= 6.24e+06 Memory= 550.432 t= 16.2 R= 6e+04 -Depth= 6905 States= 2e+06 Transitions= 1.71e+07 Memory= 634.318 t= 47.8 R= 4e+04 -Depth= 6905 States= 3e+06 Transitions= 3.39e+07 Memory= 718.303 t= 99.2 R= 3e+04 -pan: resizing hashtable to -w22.. done -Depth= 6905 States= 4e+06 Transitions= 4.47e+07 Memory= 833.311 t= 131 R= 3e+04 -Depth= 6905 States= 5e+06 Transitions= 5.38e+07 Memory= 917.295 t= 157 R= 3e+04 -Depth= 6905 States= 6e+06 Transitions= 6.2e+07 Memory= 1001.279 t= 180 R= 3e+04 -Depth= 6905 States= 7e+06 Transitions= 7.38e+07 Memory= 1085.264 t= 214 R= 3e+04 -Depth= 6905 States= 8e+06 Transitions= 8.99e+07 Memory= 1169.151 t= 264 R= 3e+04 -Depth= 6905 States= 9e+06 Transitions= 1.01e+08 Memory= 1253.135 t= 297 R= 3e+04 -pan: resizing hashtable to -w24.. done -Depth= 6905 States= 1e+07 Transitions= 1.11e+08 Memory= 1461.115 t= 325 R= 3e+04 -Depth= 6905 States= 1.1e+07 Transitions= 1.18e+08 Memory= 1545.100 t= 347 R= 3e+04 -Depth= 6905 States= 1.2e+07 Transitions= 1.31e+08 Memory= 1629.084 t= 383 R= 3e+04 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6905, errors: 0 - 12145921 states, stored -1.2049274e+08 states, matched -1.3263866e+08 transitions (= stored+matched) -2.0136766e+09 atomic steps -hash conflicts: 1.0176788e+08 (resolved) - -Stats on memory usage (in Megabytes): - 1343.657 equivalent memory usage for states (stored*(State-vector + overhead)) - 1056.279 actual memory usage for states (compression: 78.61%) - state-vector as stored = 63 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1641.389 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 77, "(1)" - line 243, "pan.___", state 85, "(1)" - line 247, "pan.___", state 97, "(1)" - line 251, "pan.___", state 105, "(1)" - line 401, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 195, "(1)" - line 247, "pan.___", state 215, "(1)" - line 251, "pan.___", state 223, "(1)" - line 680, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 313, "(1)" - line 247, "pan.___", state 333, "(1)" - line 251, "pan.___", state 341, "(1)" - line 401, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 424, "(1)" - line 247, "pan.___", state 444, "(1)" - line 251, "pan.___", state 452, "(1)" - line 401, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 475, "(1)" - line 401, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 476, "else" - line 401, "pan.___", state 479, "(1)" - line 405, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 489, "(1)" - line 405, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 490, "else" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "(1)" - line 405, "pan.___", state 494, "(1)" - line 403, "pan.___", state 499, "((i<1))" - line 403, "pan.___", state 499, "((i>=1))" - line 410, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 507, "(1)" - line 410, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 508, "else" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "(1)" - line 410, "pan.___", state 512, "(1)" - line 414, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 521, "(1)" - line 414, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 522, "else" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "(1)" - line 414, "pan.___", state 526, "(1)" - line 412, "pan.___", state 531, "((i<2))" - line 412, "pan.___", state 531, "((i>=2))" - line 239, "pan.___", state 537, "(1)" - line 243, "pan.___", state 545, "(1)" - line 243, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 546, "else" - line 241, "pan.___", state 551, "((i<1))" - line 241, "pan.___", state 551, "((i>=1))" - line 247, "pan.___", state 557, "(1)" - line 247, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 558, "else" - line 251, "pan.___", state 565, "(1)" - line 251, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 566, "else" - line 249, "pan.___", state 571, "((i<2))" - line 249, "pan.___", state 571, "((i>=2))" - line 256, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 575, "else" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 577, "(1)" - line 680, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 680, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 680, "pan.___", state 582, "(1)" - line 401, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 653, "(1)" - line 247, "pan.___", state 673, "(1)" - line 251, "pan.___", state 681, "(1)" - line 401, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "(1)" - line 401, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 710, "else" - line 401, "pan.___", state 713, "(1)" - line 405, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 723, "(1)" - line 405, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 724, "else" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "(1)" - line 405, "pan.___", state 728, "(1)" - line 403, "pan.___", state 733, "((i<1))" - line 403, "pan.___", state 733, "((i>=1))" - line 410, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 741, "(1)" - line 410, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 742, "else" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "(1)" - line 410, "pan.___", state 746, "(1)" - line 414, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 755, "(1)" - line 414, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 756, "else" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "(1)" - line 414, "pan.___", state 760, "(1)" - line 412, "pan.___", state 765, "((i<2))" - line 412, "pan.___", state 765, "((i>=2))" - line 239, "pan.___", state 771, "(1)" - line 243, "pan.___", state 779, "(1)" - line 243, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 780, "else" - line 241, "pan.___", state 785, "((i<1))" - line 241, "pan.___", state 785, "((i>=1))" - line 247, "pan.___", state 791, "(1)" - line 247, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 792, "else" - line 251, "pan.___", state 799, "(1)" - line 251, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 800, "else" - line 256, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 809, "else" - line 421, "pan.___", state 811, "(1)" - line 421, "pan.___", state 811, "(1)" - line 401, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 820, "(1)" - line 401, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 821, "else" - line 401, "pan.___", state 824, "(1)" - line 405, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 834, "(1)" - line 405, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 835, "else" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "(1)" - line 405, "pan.___", state 839, "(1)" - line 403, "pan.___", state 844, "((i<1))" - line 403, "pan.___", state 844, "((i>=1))" - line 410, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 852, "(1)" - line 410, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 853, "else" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "(1)" - line 410, "pan.___", state 857, "(1)" - line 414, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 866, "(1)" - line 414, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 867, "else" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "(1)" - line 414, "pan.___", state 871, "(1)" - line 412, "pan.___", state 876, "((i<2))" - line 412, "pan.___", state 876, "((i>=2))" - line 239, "pan.___", state 882, "(1)" - line 243, "pan.___", state 890, "(1)" - line 243, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 891, "else" - line 241, "pan.___", state 896, "((i<1))" - line 241, "pan.___", state 896, "((i>=1))" - line 247, "pan.___", state 902, "(1)" - line 247, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 903, "else" - line 251, "pan.___", state 910, "(1)" - line 251, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 911, "else" - line 249, "pan.___", state 916, "((i<2))" - line 249, "pan.___", state 916, "((i>=2))" - line 256, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 920, "else" - line 421, "pan.___", state 922, "(1)" - line 421, "pan.___", state 922, "(1)" - line 688, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 995, "(1)" - line 247, "pan.___", state 1015, "(1)" - line 251, "pan.___", state 1023, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1109, "(1)" - line 247, "pan.___", state 1129, "(1)" - line 251, "pan.___", state 1137, "(1)" - line 401, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1224, "(1)" - line 247, "pan.___", state 1244, "(1)" - line 251, "pan.___", state 1252, "(1)" - line 401, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1335, "(1)" - line 247, "pan.___", state 1355, "(1)" - line 251, "pan.___", state 1363, "(1)" - line 401, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1451, "(1)" - line 247, "pan.___", state 1471, "(1)" - line 251, "pan.___", state 1479, "(1)" - line 401, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1562, "(1)" - line 247, "pan.___", state 1582, "(1)" - line 251, "pan.___", state 1590, "(1)" - line 401, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1676, "(1)" - line 247, "pan.___", state 1696, "(1)" - line 251, "pan.___", state 1704, "(1)" - line 727, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1794, "(1)" - line 247, "pan.___", state 1814, "(1)" - line 251, "pan.___", state 1822, "(1)" - line 401, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1905, "(1)" - line 247, "pan.___", state 1925, "(1)" - line 251, "pan.___", state 1933, "(1)" - line 401, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1956, "(1)" - line 401, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1957, "else" - line 401, "pan.___", state 1960, "(1)" - line 405, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1970, "(1)" - line 405, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1971, "else" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 403, "pan.___", state 1980, "((i<1))" - line 403, "pan.___", state 1980, "((i>=1))" - line 410, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1988, "(1)" - line 410, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1989, "else" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 414, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2002, "(1)" - line 414, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2003, "else" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 412, "pan.___", state 2012, "((i<2))" - line 412, "pan.___", state 2012, "((i>=2))" - line 239, "pan.___", state 2018, "(1)" - line 243, "pan.___", state 2026, "(1)" - line 243, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2027, "else" - line 241, "pan.___", state 2032, "((i<1))" - line 241, "pan.___", state 2032, "((i>=1))" - line 247, "pan.___", state 2038, "(1)" - line 247, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2039, "else" - line 251, "pan.___", state 2046, "(1)" - line 251, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2047, "else" - line 249, "pan.___", state 2052, "((i<2))" - line 249, "pan.___", state 2052, "((i>=2))" - line 256, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2056, "else" - line 421, "pan.___", state 2058, "(1)" - line 421, "pan.___", state 2058, "(1)" - line 727, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 727, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 727, "pan.___", state 2063, "(1)" - line 401, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2134, "(1)" - line 247, "pan.___", state 2154, "(1)" - line 251, "pan.___", state 2162, "(1)" - line 401, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2251, "(1)" - line 247, "pan.___", state 2271, "(1)" - line 251, "pan.___", state 2279, "(1)" - line 401, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2362, "(1)" - line 247, "pan.___", state 2382, "(1)" - line 251, "pan.___", state 2390, "(1)" - line 401, "pan.___", state 2421, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2453, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2467, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2485, "(1)" - line 247, "pan.___", state 2505, "(1)" - line 251, "pan.___", state 2513, "(1)" - line 401, "pan.___", state 2530, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2562, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2576, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2594, "(1)" - line 247, "pan.___", state 2614, "(1)" - line 251, "pan.___", state 2622, "(1)" - line 887, "pan.___", state 2641, "-end-" - (252 of 2641 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 82, "(1)" - line 243, "pan.___", state 90, "(1)" - line 247, "pan.___", state 102, "(1)" - line 262, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 257, "(1)" - line 243, "pan.___", state 265, "(1)" - line 247, "pan.___", state 277, "(1)" - line 251, "pan.___", state 285, "(1)" - line 405, "pan.___", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 378, "(1)" - line 247, "pan.___", state 390, "(1)" - line 251, "pan.___", state 398, "(1)" - line 405, "pan.___", state 440, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 458, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 472, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 498, "(1)" - line 247, "pan.___", state 510, "(1)" - line 251, "pan.___", state 518, "(1)" - line 405, "pan.___", state 551, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 569, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 583, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 609, "(1)" - line 247, "pan.___", state 621, "(1)" - line 251, "pan.___", state 629, "(1)" - line 405, "pan.___", state 664, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 682, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 696, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 722, "(1)" - line 247, "pan.___", state 734, "(1)" - line 251, "pan.___", state 742, "(1)" - line 262, "pan.___", state 795, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 804, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 819, "(1)" - line 274, "pan.___", state 826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 842, "(1)" - line 243, "pan.___", state 850, "(1)" - line 247, "pan.___", state 862, "(1)" - line 251, "pan.___", state 870, "(1)" - line 262, "pan.___", state 901, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 910, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 923, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 948, "(1)" - line 243, "pan.___", state 956, "(1)" - line 247, "pan.___", state 968, "(1)" - line 251, "pan.___", state 976, "(1)" - line 266, "pan.___", state 1002, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1024, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1040, "(1)" - line 243, "pan.___", state 1048, "(1)" - line 247, "pan.___", state 1060, "(1)" - line 251, "pan.___", state 1068, "(1)" - line 262, "pan.___", state 1099, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1108, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1121, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1130, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1146, "(1)" - line 243, "pan.___", state 1154, "(1)" - line 247, "pan.___", state 1166, "(1)" - line 251, "pan.___", state 1174, "(1)" - line 266, "pan.___", state 1200, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1213, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1222, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1238, "(1)" - line 243, "pan.___", state 1246, "(1)" - line 247, "pan.___", state 1258, "(1)" - line 251, "pan.___", state 1266, "(1)" - line 262, "pan.___", state 1297, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1306, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1319, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1344, "(1)" - line 243, "pan.___", state 1352, "(1)" - line 247, "pan.___", state 1364, "(1)" - line 251, "pan.___", state 1372, "(1)" - line 266, "pan.___", state 1398, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1411, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1420, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1436, "(1)" - line 243, "pan.___", state 1444, "(1)" - line 247, "pan.___", state 1456, "(1)" - line 251, "pan.___", state 1464, "(1)" - line 262, "pan.___", state 1495, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1504, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1517, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1542, "(1)" - line 243, "pan.___", state 1550, "(1)" - line 247, "pan.___", state 1562, "(1)" - line 251, "pan.___", state 1570, "(1)" - line 1214, "pan.___", state 1586, "-end-" - (103 of 1586 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1277, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 388 seconds -pan: rate 31299.887 states/second -pan: avg transition delay 2.9256e-06 usec -cp .input.spin urcu_free_no_rmb.spin.input -cp .input.spin.trail urcu_free_no_rmb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.spin.input deleted file mode 100644 index b54b6b4..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_rmb.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define NO_RMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.define deleted file mode 100644 index 710f29d..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_WMB diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.log deleted file mode 100644 index 9422810..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.log +++ /dev/null @@ -1,511 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_wmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -Depth= 6716 States= 1e+06 Transitions= 5.89e+06 Memory= 550.432 t= 14.4 R= 7e+04 -Depth= 6716 States= 2e+06 Transitions= 1.63e+07 Memory= 634.318 t= 42.7 R= 5e+04 -Depth= 6716 States= 3e+06 Transitions= 2.25e+07 Memory= 718.303 t= 58.7 R= 5e+04 -pan: resizing hashtable to -w22.. done -Depth= 6716 States= 4e+06 Transitions= 3.22e+07 Memory= 833.311 t= 85.5 R= 5e+04 -Depth= 6716 States= 5e+06 Transitions= 4.86e+07 Memory= 917.295 t= 132 R= 4e+04 -Depth= 6716 States= 6e+06 Transitions= 6.42e+07 Memory= 1001.279 t= 176 R= 3e+04 -Depth= 6716 States= 7e+06 Transitions= 7.63e+07 Memory= 1085.264 t= 209 R= 3e+04 -Depth= 6716 States= 8e+06 Transitions= 8.46e+07 Memory= 1169.151 t= 232 R= 3e+04 -Depth= 6716 States= 9e+06 Transitions= 9.43e+07 Memory= 1253.135 t= 259 R= 3e+04 -pan: resizing hashtable to -w24.. done -Depth= 6716 States= 1e+07 Transitions= 1.03e+08 Memory= 1461.115 t= 283 R= 4e+04 -Depth= 6716 States= 1.1e+07 Transitions= 1.15e+08 Memory= 1545.100 t= 316 R= 3e+04 -Depth= 6716 States= 1.2e+07 Transitions= 1.21e+08 Memory= 1629.084 t= 331 R= 4e+04 -pan: claim violated! (at depth 1387) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6716, errors: 1 - 12467262 states, stored -1.1402162e+08 states, matched -1.2648888e+08 transitions (= stored+matched) -1.8978936e+09 atomic steps -hash conflicts: 82801757 (resolved) - -Stats on memory usage (in Megabytes): - 1379.206 equivalent memory usage for states (stored*(State-vector + overhead)) - 1083.262 actual memory usage for states (compression: 78.54%) - state-vector as stored = 63 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1668.342 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 77, "(1)" - line 243, "pan.___", state 85, "(1)" - line 247, "pan.___", state 97, "(1)" - line 251, "pan.___", state 105, "(1)" - line 401, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 195, "(1)" - line 247, "pan.___", state 215, "(1)" - line 251, "pan.___", state 223, "(1)" - line 680, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 313, "(1)" - line 247, "pan.___", state 333, "(1)" - line 251, "pan.___", state 341, "(1)" - line 401, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 424, "(1)" - line 247, "pan.___", state 444, "(1)" - line 251, "pan.___", state 452, "(1)" - line 401, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 475, "(1)" - line 401, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 476, "else" - line 401, "pan.___", state 479, "(1)" - line 405, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 489, "(1)" - line 405, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 490, "else" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "(1)" - line 405, "pan.___", state 494, "(1)" - line 403, "pan.___", state 499, "((i<1))" - line 403, "pan.___", state 499, "((i>=1))" - line 410, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 507, "(1)" - line 410, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 508, "else" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "(1)" - line 410, "pan.___", state 512, "(1)" - line 414, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 521, "(1)" - line 414, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 522, "else" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "(1)" - line 414, "pan.___", state 526, "(1)" - line 412, "pan.___", state 531, "((i<2))" - line 412, "pan.___", state 531, "((i>=2))" - line 239, "pan.___", state 537, "(1)" - line 243, "pan.___", state 545, "(1)" - line 243, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 546, "else" - line 241, "pan.___", state 551, "((i<1))" - line 241, "pan.___", state 551, "((i>=1))" - line 247, "pan.___", state 557, "(1)" - line 247, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 558, "else" - line 251, "pan.___", state 565, "(1)" - line 251, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 566, "else" - line 249, "pan.___", state 571, "((i<2))" - line 249, "pan.___", state 571, "((i>=2))" - line 256, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 575, "else" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 577, "(1)" - line 680, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 680, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 680, "pan.___", state 582, "(1)" - line 401, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 653, "(1)" - line 247, "pan.___", state 673, "(1)" - line 251, "pan.___", state 681, "(1)" - line 401, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "(1)" - line 401, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 710, "else" - line 401, "pan.___", state 713, "(1)" - line 405, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 723, "(1)" - line 405, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 724, "else" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "(1)" - line 405, "pan.___", state 728, "(1)" - line 403, "pan.___", state 733, "((i<1))" - line 403, "pan.___", state 733, "((i>=1))" - line 410, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 741, "(1)" - line 410, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 742, "else" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "(1)" - line 410, "pan.___", state 746, "(1)" - line 414, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 755, "(1)" - line 414, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 756, "else" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "(1)" - line 414, "pan.___", state 760, "(1)" - line 412, "pan.___", state 765, "((i<2))" - line 412, "pan.___", state 765, "((i>=2))" - line 239, "pan.___", state 771, "(1)" - line 243, "pan.___", state 779, "(1)" - line 243, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 780, "else" - line 241, "pan.___", state 785, "((i<1))" - line 241, "pan.___", state 785, "((i>=1))" - line 247, "pan.___", state 791, "(1)" - line 247, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 792, "else" - line 251, "pan.___", state 799, "(1)" - line 251, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 800, "else" - line 256, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 809, "else" - line 421, "pan.___", state 811, "(1)" - line 421, "pan.___", state 811, "(1)" - line 401, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 820, "(1)" - line 401, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 821, "else" - line 401, "pan.___", state 824, "(1)" - line 405, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 834, "(1)" - line 405, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 835, "else" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "(1)" - line 405, "pan.___", state 839, "(1)" - line 403, "pan.___", state 844, "((i<1))" - line 403, "pan.___", state 844, "((i>=1))" - line 410, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 852, "(1)" - line 410, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 853, "else" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "(1)" - line 410, "pan.___", state 857, "(1)" - line 414, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 866, "(1)" - line 414, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 867, "else" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "(1)" - line 414, "pan.___", state 871, "(1)" - line 412, "pan.___", state 876, "((i<2))" - line 412, "pan.___", state 876, "((i>=2))" - line 239, "pan.___", state 882, "(1)" - line 243, "pan.___", state 890, "(1)" - line 243, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 891, "else" - line 241, "pan.___", state 896, "((i<1))" - line 241, "pan.___", state 896, "((i>=1))" - line 247, "pan.___", state 902, "(1)" - line 247, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 903, "else" - line 251, "pan.___", state 910, "(1)" - line 251, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 911, "else" - line 249, "pan.___", state 916, "((i<2))" - line 249, "pan.___", state 916, "((i>=2))" - line 256, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 920, "else" - line 421, "pan.___", state 922, "(1)" - line 421, "pan.___", state 922, "(1)" - line 688, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 995, "(1)" - line 247, "pan.___", state 1015, "(1)" - line 251, "pan.___", state 1023, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1109, "(1)" - line 247, "pan.___", state 1129, "(1)" - line 251, "pan.___", state 1137, "(1)" - line 401, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1224, "(1)" - line 247, "pan.___", state 1244, "(1)" - line 251, "pan.___", state 1252, "(1)" - line 401, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1335, "(1)" - line 247, "pan.___", state 1355, "(1)" - line 251, "pan.___", state 1363, "(1)" - line 401, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1451, "(1)" - line 247, "pan.___", state 1471, "(1)" - line 251, "pan.___", state 1479, "(1)" - line 401, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1562, "(1)" - line 247, "pan.___", state 1582, "(1)" - line 251, "pan.___", state 1590, "(1)" - line 401, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1676, "(1)" - line 247, "pan.___", state 1696, "(1)" - line 251, "pan.___", state 1704, "(1)" - line 727, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1794, "(1)" - line 247, "pan.___", state 1814, "(1)" - line 251, "pan.___", state 1822, "(1)" - line 401, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1905, "(1)" - line 247, "pan.___", state 1925, "(1)" - line 251, "pan.___", state 1933, "(1)" - line 401, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1956, "(1)" - line 401, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1957, "else" - line 401, "pan.___", state 1960, "(1)" - line 405, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1970, "(1)" - line 405, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1971, "else" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 403, "pan.___", state 1980, "((i<1))" - line 403, "pan.___", state 1980, "((i>=1))" - line 410, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1988, "(1)" - line 410, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1989, "else" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 414, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2002, "(1)" - line 414, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2003, "else" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 412, "pan.___", state 2012, "((i<2))" - line 412, "pan.___", state 2012, "((i>=2))" - line 239, "pan.___", state 2018, "(1)" - line 243, "pan.___", state 2026, "(1)" - line 243, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2027, "else" - line 241, "pan.___", state 2032, "((i<1))" - line 241, "pan.___", state 2032, "((i>=1))" - line 247, "pan.___", state 2038, "(1)" - line 247, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2039, "else" - line 251, "pan.___", state 2046, "(1)" - line 251, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2047, "else" - line 249, "pan.___", state 2052, "((i<2))" - line 249, "pan.___", state 2052, "((i>=2))" - line 256, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2056, "else" - line 421, "pan.___", state 2058, "(1)" - line 421, "pan.___", state 2058, "(1)" - line 727, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 727, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 727, "pan.___", state 2063, "(1)" - line 401, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2134, "(1)" - line 247, "pan.___", state 2154, "(1)" - line 251, "pan.___", state 2162, "(1)" - line 401, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2251, "(1)" - line 247, "pan.___", state 2271, "(1)" - line 251, "pan.___", state 2279, "(1)" - line 401, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2362, "(1)" - line 247, "pan.___", state 2382, "(1)" - line 251, "pan.___", state 2390, "(1)" - line 239, "pan.___", state 2421, "(1)" - line 247, "pan.___", state 2441, "(1)" - line 251, "pan.___", state 2449, "(1)" - line 239, "pan.___", state 2464, "(1)" - line 247, "pan.___", state 2484, "(1)" - line 251, "pan.___", state 2492, "(1)" - line 887, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 19, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 33, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 83, "(1)" - line 243, "pan.___", state 91, "(1)" - line 262, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 134, "(1)" - line 266, "pan.___", state 141, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 143, "(1)" - line 266, "pan.___", state 144, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 144, "else" - line 264, "pan.___", state 149, "((i<1))" - line 264, "pan.___", state 149, "((i>=1))" - line 270, "pan.___", state 154, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 156, "(1)" - line 270, "pan.___", state 157, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 157, "else" - line 274, "pan.___", state 163, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 165, "(1)" - line 274, "pan.___", state 166, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 166, "else" - line 279, "pan.___", state 175, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 279, "pan.___", state 175, "else" - line 401, "pan.___", state 194, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 208, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 226, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 240, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 258, "(1)" - line 243, "pan.___", state 266, "(1)" - line 247, "pan.___", state 278, "(1)" - line 251, "pan.___", state 286, "(1)" - line 405, "pan.___", state 321, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 339, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 353, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 379, "(1)" - line 247, "pan.___", state 391, "(1)" - line 251, "pan.___", state 399, "(1)" - line 405, "pan.___", state 441, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 499, "(1)" - line 247, "pan.___", state 511, "(1)" - line 251, "pan.___", state 519, "(1)" - line 405, "pan.___", state 552, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 570, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 584, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 610, "(1)" - line 247, "pan.___", state 622, "(1)" - line 251, "pan.___", state 630, "(1)" - line 405, "pan.___", state 665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 723, "(1)" - line 247, "pan.___", state 735, "(1)" - line 251, "pan.___", state 743, "(1)" - line 262, "pan.___", state 796, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 805, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 843, "(1)" - line 243, "pan.___", state 851, "(1)" - line 247, "pan.___", state 863, "(1)" - line 251, "pan.___", state 871, "(1)" - line 262, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 911, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 924, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 933, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 949, "(1)" - line 243, "pan.___", state 957, "(1)" - line 247, "pan.___", state 969, "(1)" - line 251, "pan.___", state 977, "(1)" - line 266, "pan.___", state 1003, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1025, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1041, "(1)" - line 243, "pan.___", state 1049, "(1)" - line 247, "pan.___", state 1061, "(1)" - line 251, "pan.___", state 1069, "(1)" - line 262, "pan.___", state 1100, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1109, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1122, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1131, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1147, "(1)" - line 243, "pan.___", state 1155, "(1)" - line 247, "pan.___", state 1167, "(1)" - line 251, "pan.___", state 1175, "(1)" - line 266, "pan.___", state 1201, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1214, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1239, "(1)" - line 243, "pan.___", state 1247, "(1)" - line 247, "pan.___", state 1259, "(1)" - line 251, "pan.___", state 1267, "(1)" - line 262, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1307, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1320, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1329, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1345, "(1)" - line 243, "pan.___", state 1353, "(1)" - line 247, "pan.___", state 1365, "(1)" - line 251, "pan.___", state 1373, "(1)" - line 266, "pan.___", state 1399, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1412, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1421, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1437, "(1)" - line 243, "pan.___", state 1445, "(1)" - line 247, "pan.___", state 1457, "(1)" - line 251, "pan.___", state 1465, "(1)" - line 262, "pan.___", state 1496, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1505, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1518, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1527, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1543, "(1)" - line 243, "pan.___", state 1551, "(1)" - line 247, "pan.___", state 1563, "(1)" - line 251, "pan.___", state 1571, "(1)" - line 1214, "pan.___", state 1587, "-end-" - (109 of 1587 states) -unreached in proctype :init: - line 1225, "pan.___", state 9, "((j<2))" - line 1225, "pan.___", state 9, "((j>=2))" - line 1226, "pan.___", state 20, "((j<2))" - line 1226, "pan.___", state 20, "((j>=2))" - line 1231, "pan.___", state 33, "((j<2))" - line 1231, "pan.___", state 33, "((j>=2))" - line 1229, "pan.___", state 43, "((i<1))" - line 1229, "pan.___", state 43, "((i>=1))" - line 1239, "pan.___", state 54, "((j<2))" - line 1239, "pan.___", state 54, "((j>=2))" - line 1243, "pan.___", state 67, "((j<2))" - line 1243, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1277, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 346 seconds -pan: rate 36012.773 states/second -pan: avg transition delay 2.7369e-06 usec -cp .input.spin urcu_free_no_wmb.spin.input -cp .input.spin.trail urcu_free_no_wmb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input deleted file mode 100644 index 07b3110..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define NO_WMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input.trail deleted file mode 100644 index 8c8735f..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_no_wmb.spin.input.trail +++ /dev/null @@ -1,1390 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4176 -2:3:4096 -3:3:4099 -4:3:4099 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b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.log deleted file mode 100644 index 96aeb49..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.log +++ /dev/null @@ -1,678 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_single_flip.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -Depth= 6479 States= 1e+06 Transitions= 6.49e+06 Memory= 550.432 t= 16 R= 6e+04 -Depth= 6479 States= 2e+06 Transitions= 1.29e+07 Memory= 634.318 t= 32.2 R= 6e+04 -Depth= 6479 States= 3e+06 Transitions= 2.07e+07 Memory= 718.303 t= 53 R= 6e+04 -pan: resizing hashtable to -w22.. done -Depth= 6479 States= 4e+06 Transitions= 2.91e+07 Memory= 833.311 t= 75.3 R= 5e+04 -Depth= 6479 States= 5e+06 Transitions= 3.67e+07 Memory= 917.295 t= 95.1 R= 5e+04 -pan: claim violated! (at depth 1254) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6479, errors: 1 - 5383072 states, stored - 34108932 states, matched - 39492004 transitions (= stored+matched) -5.5430124e+08 atomic steps -hash conflicts: 29860557 (resolved) - -Stats on memory usage (in Megabytes): - 595.509 equivalent memory usage for states (stored*(State-vector + overhead)) - 460.005 actual memory usage for states (compression: 77.25%) - state-vector as stored = 62 byte + 28 byte overhead - 32.000 memory used for hash table (-w22) - 457.764 memory used for DFS stack (-m10000000) - 949.424 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 77, "(1)" - line 243, "pan.___", state 85, "(1)" - line 247, "pan.___", state 97, "(1)" - line 251, "pan.___", state 105, "(1)" - line 401, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 195, "(1)" - line 247, "pan.___", state 215, "(1)" - line 251, "pan.___", state 223, "(1)" - line 680, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 313, "(1)" - line 247, "pan.___", state 333, "(1)" - line 251, "pan.___", state 341, "(1)" - line 401, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 424, "(1)" - line 247, "pan.___", state 444, "(1)" - line 251, "pan.___", state 452, "(1)" - line 401, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 475, "(1)" - line 401, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 476, "else" - line 401, "pan.___", state 479, "(1)" - line 405, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 489, "(1)" - line 405, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 490, "else" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "(1)" - line 405, "pan.___", state 494, "(1)" - line 403, "pan.___", state 499, "((i<1))" - line 403, "pan.___", state 499, "((i>=1))" - line 410, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 507, "(1)" - line 410, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 508, "else" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "(1)" - line 410, "pan.___", state 512, "(1)" - line 414, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 521, "(1)" - line 414, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 522, "else" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "(1)" - line 414, "pan.___", state 526, "(1)" - line 412, "pan.___", state 531, "((i<2))" - line 412, "pan.___", state 531, "((i>=2))" - line 239, "pan.___", state 537, "(1)" - line 243, "pan.___", state 545, "(1)" - line 243, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 546, "else" - line 241, "pan.___", state 551, "((i<1))" - line 241, "pan.___", state 551, "((i>=1))" - line 247, "pan.___", state 557, "(1)" - line 247, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 558, "else" - line 251, "pan.___", state 565, "(1)" - line 251, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 566, "else" - line 249, "pan.___", state 571, "((i<2))" - line 249, "pan.___", state 571, "((i>=2))" - line 256, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 575, "else" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 577, "(1)" - line 680, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 680, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 680, "pan.___", state 582, "(1)" - line 401, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 653, "(1)" - line 247, "pan.___", state 673, "(1)" - line 251, "pan.___", state 681, "(1)" - line 401, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "(1)" - line 401, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 710, "else" - line 401, "pan.___", state 713, "(1)" - line 405, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 723, "(1)" - line 405, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 724, "else" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "(1)" - line 405, "pan.___", state 728, "(1)" - line 403, "pan.___", state 733, "((i<1))" - line 403, "pan.___", state 733, "((i>=1))" - line 410, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 741, "(1)" - line 410, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 742, "else" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "(1)" - line 410, "pan.___", state 746, "(1)" - line 414, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 755, "(1)" - line 414, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 756, "else" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "(1)" - line 414, "pan.___", state 760, "(1)" - line 412, "pan.___", state 765, "((i<2))" - line 412, "pan.___", state 765, "((i>=2))" - line 239, "pan.___", state 771, "(1)" - line 243, "pan.___", state 779, "(1)" - line 243, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 780, "else" - line 241, "pan.___", state 785, "((i<1))" - line 241, "pan.___", state 785, "((i>=1))" - line 247, "pan.___", state 791, "(1)" - line 247, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 792, "else" - line 251, "pan.___", state 799, "(1)" - line 251, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 800, "else" - line 256, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 809, "else" - line 421, "pan.___", state 811, "(1)" - line 421, "pan.___", state 811, "(1)" - line 401, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 820, "(1)" - line 401, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 821, "else" - line 401, "pan.___", state 824, "(1)" - line 405, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 834, "(1)" - line 405, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 835, "else" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "(1)" - line 405, "pan.___", state 839, "(1)" - line 403, "pan.___", state 844, "((i<1))" - line 403, "pan.___", state 844, "((i>=1))" - line 410, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 852, "(1)" - line 410, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 853, "else" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "(1)" - line 410, "pan.___", state 857, "(1)" - line 414, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 866, "(1)" - line 414, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 867, "else" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "(1)" - line 414, "pan.___", state 871, "(1)" - line 412, "pan.___", state 876, "((i<2))" - line 412, "pan.___", state 876, "((i>=2))" - line 239, "pan.___", state 882, "(1)" - line 243, "pan.___", state 890, "(1)" - line 243, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 891, "else" - line 241, "pan.___", state 896, "((i<1))" - line 241, "pan.___", state 896, "((i>=1))" - line 247, "pan.___", state 902, "(1)" - line 247, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 903, "else" - line 251, "pan.___", state 910, "(1)" - line 251, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 911, "else" - line 249, "pan.___", state 916, "((i<2))" - line 249, "pan.___", state 916, "((i>=2))" - line 256, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 920, "else" - line 421, "pan.___", state 922, "(1)" - line 421, "pan.___", state 922, "(1)" - line 688, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 995, "(1)" - line 247, "pan.___", state 1015, "(1)" - line 251, "pan.___", state 1023, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1109, "(1)" - line 247, "pan.___", state 1129, "(1)" - line 251, "pan.___", state 1137, "(1)" - line 401, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1224, "(1)" - line 247, "pan.___", state 1244, "(1)" - line 251, "pan.___", state 1252, "(1)" - line 401, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1335, "(1)" - line 247, "pan.___", state 1355, "(1)" - line 251, "pan.___", state 1363, "(1)" - line 401, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1451, "(1)" - line 247, "pan.___", state 1471, "(1)" - line 251, "pan.___", state 1479, "(1)" - line 401, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1562, "(1)" - line 247, "pan.___", state 1582, "(1)" - line 251, "pan.___", state 1590, "(1)" - line 401, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1676, "(1)" - line 247, "pan.___", state 1696, "(1)" - line 251, "pan.___", state 1704, "(1)" - line 727, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1794, "(1)" - line 247, "pan.___", state 1814, "(1)" - line 251, "pan.___", state 1822, "(1)" - line 401, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1905, "(1)" - line 247, "pan.___", state 1925, "(1)" - line 251, "pan.___", state 1933, "(1)" - line 401, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1956, "(1)" - line 401, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1957, "else" - line 401, "pan.___", state 1960, "(1)" - line 405, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1970, "(1)" - line 405, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1971, "else" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 403, "pan.___", state 1980, "((i<1))" - line 403, "pan.___", state 1980, "((i>=1))" - line 410, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1988, "(1)" - line 410, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1989, "else" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 414, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2002, "(1)" - line 414, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2003, "else" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 412, "pan.___", state 2012, "((i<2))" - line 412, "pan.___", state 2012, "((i>=2))" - line 239, "pan.___", state 2018, "(1)" - line 243, "pan.___", state 2026, "(1)" - line 243, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2027, "else" - line 241, "pan.___", state 2032, "((i<1))" - line 241, "pan.___", state 2032, "((i>=1))" - line 247, "pan.___", state 2038, "(1)" - line 247, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2039, "else" - line 251, "pan.___", state 2046, "(1)" - line 251, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2047, "else" - line 249, "pan.___", state 2052, "((i<2))" - line 249, "pan.___", state 2052, "((i>=2))" - line 256, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2056, "else" - line 421, "pan.___", state 2058, "(1)" - line 421, "pan.___", state 2058, "(1)" - line 727, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 727, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 727, "pan.___", state 2063, "(1)" - line 401, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2134, "(1)" - line 247, "pan.___", state 2154, "(1)" - line 251, "pan.___", state 2162, "(1)" - line 401, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2251, "(1)" - line 247, "pan.___", state 2271, "(1)" - line 251, "pan.___", state 2279, "(1)" - line 401, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2362, "(1)" - line 247, "pan.___", state 2382, "(1)" - line 251, "pan.___", state 2390, "(1)" - line 239, "pan.___", state 2421, "(1)" - line 247, "pan.___", state 2441, "(1)" - line 251, "pan.___", state 2449, "(1)" - line 239, "pan.___", state 2464, "(1)" - line 247, "pan.___", state 2484, "(1)" - line 251, "pan.___", state 2492, "(1)" - line 887, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 22, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 36, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 86, "(1)" - line 243, "pan.___", state 94, "(1)" - line 247, "pan.___", state 106, "(1)" - line 262, "pan.___", state 135, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 144, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 157, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 197, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 211, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 243, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 261, "(1)" - line 243, "pan.___", state 269, "(1)" - line 247, "pan.___", state 281, "(1)" - line 251, "pan.___", state 289, "(1)" - line 405, "pan.___", state 324, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 342, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 356, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 382, "(1)" - line 247, "pan.___", state 394, "(1)" - line 251, "pan.___", state 402, "(1)" - line 401, "pan.___", state 429, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 431, "(1)" - line 401, "pan.___", state 432, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 432, "else" - line 401, "pan.___", state 435, "(1)" - line 405, "pan.___", state 443, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 445, "(1)" - line 405, "pan.___", state 446, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 446, "else" - line 405, "pan.___", state 449, "(1)" - line 405, "pan.___", state 450, "(1)" - line 405, "pan.___", state 450, "(1)" - line 403, "pan.___", state 455, "((i<1))" - line 403, "pan.___", state 455, "((i>=1))" - line 410, "pan.___", state 461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 463, "(1)" - line 410, "pan.___", state 464, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 464, "else" - line 410, "pan.___", state 467, "(1)" - line 410, "pan.___", state 468, "(1)" - line 410, "pan.___", state 468, "(1)" - line 414, "pan.___", state 475, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 477, "(1)" - line 414, "pan.___", state 478, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 478, "else" - line 414, "pan.___", state 481, "(1)" - line 414, "pan.___", state 482, "(1)" - line 414, "pan.___", state 482, "(1)" - line 412, "pan.___", state 487, "((i<2))" - line 412, "pan.___", state 487, "((i>=2))" - line 239, "pan.___", state 493, "(1)" - line 243, "pan.___", state 501, "(1)" - line 243, "pan.___", state 502, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 502, "else" - line 241, "pan.___", state 507, "((i<1))" - line 241, "pan.___", state 507, "((i>=1))" - line 247, "pan.___", state 513, "(1)" - line 247, "pan.___", state 514, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 514, "else" - line 251, "pan.___", state 521, "(1)" - line 251, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 522, "else" - line 256, "pan.___", state 531, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 531, "else" - line 421, "pan.___", state 533, "(1)" - line 421, "pan.___", state 533, "(1)" - line 401, "pan.___", state 540, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 542, "(1)" - line 401, "pan.___", state 543, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 543, "else" - line 401, "pan.___", state 546, "(1)" - line 405, "pan.___", state 554, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 556, "(1)" - line 405, "pan.___", state 557, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 557, "else" - line 405, "pan.___", state 560, "(1)" - line 405, "pan.___", state 561, "(1)" - line 405, "pan.___", state 561, "(1)" - line 403, "pan.___", state 566, "((i<1))" - line 403, "pan.___", state 566, "((i>=1))" - line 410, "pan.___", state 572, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 574, "(1)" - line 410, "pan.___", state 575, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 575, "else" - line 410, "pan.___", state 578, "(1)" - line 410, "pan.___", state 579, "(1)" - line 410, "pan.___", state 579, "(1)" - line 414, "pan.___", state 586, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 588, "(1)" - line 414, "pan.___", state 589, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 589, "else" - line 414, "pan.___", state 592, "(1)" - line 414, "pan.___", state 593, "(1)" - line 414, "pan.___", state 593, "(1)" - line 412, "pan.___", state 598, "((i<2))" - line 412, "pan.___", state 598, "((i>=2))" - line 239, "pan.___", state 604, "(1)" - line 243, "pan.___", state 612, "(1)" - line 243, "pan.___", state 613, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 613, "else" - line 241, "pan.___", state 618, "((i<1))" - line 241, "pan.___", state 618, "((i>=1))" - line 247, "pan.___", state 624, "(1)" - line 247, "pan.___", state 625, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 625, "else" - line 251, "pan.___", state 632, "(1)" - line 251, "pan.___", state 633, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 633, "else" - line 249, "pan.___", state 638, "((i<2))" - line 249, "pan.___", state 638, "((i>=2))" - line 256, "pan.___", state 642, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 642, "else" - line 421, "pan.___", state 644, "(1)" - line 421, "pan.___", state 644, "(1)" - line 1095, "pan.___", state 648, "_proc_urcu_writer = (_proc_urcu_writer|(1<<10))" - line 401, "pan.___", state 653, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 655, "(1)" - line 401, "pan.___", state 656, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 656, "else" - line 401, "pan.___", state 659, "(1)" - line 405, "pan.___", state 667, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 669, "(1)" - line 405, "pan.___", state 670, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 670, "else" - line 405, "pan.___", state 673, "(1)" - line 405, "pan.___", state 674, "(1)" - line 405, "pan.___", state 674, "(1)" - line 403, "pan.___", state 679, "((i<1))" - line 403, "pan.___", state 679, "((i>=1))" - line 410, "pan.___", state 685, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 687, "(1)" - line 410, "pan.___", state 688, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 688, "else" - line 410, "pan.___", state 691, "(1)" - line 410, "pan.___", state 692, "(1)" - line 410, "pan.___", state 692, "(1)" - line 414, "pan.___", state 699, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 701, "(1)" - line 414, "pan.___", state 702, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 702, "else" - line 414, "pan.___", state 705, "(1)" - line 414, "pan.___", state 706, "(1)" - line 414, "pan.___", state 706, "(1)" - line 412, "pan.___", state 711, "((i<2))" - line 412, "pan.___", state 711, "((i>=2))" - line 239, "pan.___", state 717, "(1)" - line 243, "pan.___", state 725, "(1)" - line 243, "pan.___", state 726, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 726, "else" - line 241, "pan.___", state 731, "((i<1))" - line 241, "pan.___", state 731, "((i>=1))" - line 247, "pan.___", state 737, "(1)" - line 247, "pan.___", state 738, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 738, "else" - line 251, "pan.___", state 745, "(1)" - line 251, "pan.___", state 746, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 746, "else" - line 249, "pan.___", state 751, "((i<2))" - line 249, "pan.___", state 751, "((i>=2))" - line 256, "pan.___", state 755, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 755, "else" - line 421, "pan.___", state 757, "(1)" - line 421, "pan.___", state 757, "(1)" - line 1110, "pan.___", state 762, "_proc_urcu_writer = (_proc_urcu_writer|(1<<11))" - line 1105, "pan.___", state 763, "(((tmp2&((1<<7)-1))&&((tmp2^0)&(1<<7))))" - line 1105, "pan.___", state 763, "else" - line 1130, "pan.___", state 767, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 262, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 807, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 822, "(1)" - line 274, "pan.___", state 829, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 845, "(1)" - line 243, "pan.___", state 853, "(1)" - line 247, "pan.___", state 865, "(1)" - line 251, "pan.___", state 873, "(1)" - line 262, "pan.___", state 904, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 913, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 926, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 935, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 951, "(1)" - line 243, "pan.___", state 959, "(1)" - line 247, "pan.___", state 971, "(1)" - line 251, "pan.___", state 979, "(1)" - line 266, "pan.___", state 1005, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1018, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1027, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1043, "(1)" - line 243, "pan.___", state 1051, "(1)" - line 247, "pan.___", state 1063, "(1)" - line 251, "pan.___", state 1071, "(1)" - line 262, "pan.___", state 1102, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1111, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1124, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1133, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1149, "(1)" - line 243, "pan.___", state 1157, "(1)" - line 247, "pan.___", state 1169, "(1)" - line 251, "pan.___", state 1177, "(1)" - line 262, "pan.___", state 1194, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1196, "(1)" - line 266, "pan.___", state 1203, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1205, "(1)" - line 266, "pan.___", state 1206, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 1206, "else" - line 264, "pan.___", state 1211, "((i<1))" - line 264, "pan.___", state 1211, "((i>=1))" - line 270, "pan.___", state 1216, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1218, "(1)" - line 270, "pan.___", state 1219, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 1219, "else" - line 274, "pan.___", state 1225, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1227, "(1)" - line 274, "pan.___", state 1228, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 1228, "else" - line 272, "pan.___", state 1233, "((i<2))" - line 272, "pan.___", state 1233, "((i>=2))" - line 239, "pan.___", state 1241, "(1)" - line 243, "pan.___", state 1249, "(1)" - line 243, "pan.___", state 1250, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 1250, "else" - line 241, "pan.___", state 1255, "((i<1))" - line 241, "pan.___", state 1255, "((i>=1))" - line 247, "pan.___", state 1261, "(1)" - line 247, "pan.___", state 1262, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 1262, "else" - line 251, "pan.___", state 1269, "(1)" - line 251, "pan.___", state 1270, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 1270, "else" - line 256, "pan.___", state 1279, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 1279, "else" - line 1206, "pan.___", state 1282, "i = 0" - line 1206, "pan.___", state 1284, "reader_barrier = 1" - line 1206, "pan.___", state 1295, "((i<1))" - line 1206, "pan.___", state 1295, "((i>=1))" - line 262, "pan.___", state 1300, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1302, "(1)" - line 266, "pan.___", state 1309, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1311, "(1)" - line 266, "pan.___", state 1312, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 266, "pan.___", state 1312, "else" - line 264, "pan.___", state 1317, "((i<1))" - line 264, "pan.___", state 1317, "((i>=1))" - line 270, "pan.___", state 1322, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1324, "(1)" - line 270, "pan.___", state 1325, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 270, "pan.___", state 1325, "else" - line 274, "pan.___", state 1331, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1333, "(1)" - line 274, "pan.___", state 1334, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 274, "pan.___", state 1334, "else" - line 272, "pan.___", state 1339, "((i<2))" - line 272, "pan.___", state 1339, "((i>=2))" - line 239, "pan.___", state 1347, "(1)" - line 243, "pan.___", state 1355, "(1)" - line 243, "pan.___", state 1356, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 1356, "else" - line 241, "pan.___", state 1361, "((i<1))" - line 241, "pan.___", state 1361, "((i>=1))" - line 247, "pan.___", state 1367, "(1)" - line 247, "pan.___", state 1368, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 1368, "else" - line 251, "pan.___", state 1375, "(1)" - line 251, "pan.___", state 1376, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 1376, "else" - line 256, "pan.___", state 1385, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 1385, "else" - line 289, "pan.___", state 1387, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 289, "pan.___", state 1387, "else" - line 1206, "pan.___", state 1388, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1206, "pan.___", state 1388, "else" - line 266, "pan.___", state 1401, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1414, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1439, "(1)" - line 243, "pan.___", state 1447, "(1)" - line 247, "pan.___", state 1459, "(1)" - line 251, "pan.___", state 1467, "(1)" - line 262, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1507, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1520, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1545, "(1)" - line 243, "pan.___", state 1553, "(1)" - line 247, "pan.___", state 1565, "(1)" - line 251, "pan.___", state 1573, "(1)" - line 1214, "pan.___", state 1589, "-end-" - (218 of 1589 states) -unreached in proctype :init: - line 1225, "pan.___", state 9, "((j<2))" - line 1225, "pan.___", state 9, "((j>=2))" - line 1226, "pan.___", state 20, "((j<2))" - line 1226, "pan.___", state 20, "((j>=2))" - line 1231, "pan.___", state 33, "((j<2))" - line 1231, "pan.___", state 33, "((j>=2))" - line 1229, "pan.___", state 43, "((i<1))" - line 1229, "pan.___", state 43, "((i>=1))" - line 1239, "pan.___", state 54, "((j<2))" - line 1239, "pan.___", state 54, "((j>=2))" - line 1243, "pan.___", state 67, "((j<2))" - line 1243, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1277, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 102 seconds -pan: rate 52558.797 states/second -pan: avg transition delay 2.5934e-06 usec -cp .input.spin urcu_free_single_flip.spin.input -cp .input.spin.trail urcu_free_single_flip.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input deleted file mode 100644 index 240a2fd..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define SINGLE_FLIP - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input.trail deleted file mode 100644 index f8289ee..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_free_single_flip.spin.input.trail +++ /dev/null @@ -1,1257 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4178 -2:3:4098 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a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress.ltl +++ /dev/null @@ -1 +0,0 @@ -([] <> !np_) diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.define deleted file mode 100644 index ff3f783..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.log deleted file mode 100644 index 9fd20b0..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.log +++ /dev/null @@ -1,535 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_reader.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -depth 23: Claim reached state 9 (line 1277) -depth 132: Claim reached state 9 (line 1276) -Depth= 29926 States= 1e+06 Transitions= 7.64e+06 Memory= 520.256 t= 19.9 R= 5e+04 -Depth= 33506 States= 2e+06 Transitions= 1.57e+07 Memory= 571.818 t= 41.2 R= 5e+04 -Depth= 33506 States= 3e+06 Transitions= 2.45e+07 Memory= 624.943 t= 65.4 R= 5e+04 -pan: resizing hashtable to -w22.. done -Depth= 33506 States= 4e+06 Transitions= 3.46e+07 Memory= 709.873 t= 93.2 R= 4e+04 -Depth= 33506 States= 5e+06 Transitions= 4.22e+07 Memory= 764.756 t= 113 R= 4e+04 -Depth= 33506 States= 6e+06 Transitions= 6.02e+07 Memory= 815.830 t= 165 R= 4e+04 -Depth= 33506 States= 7e+06 Transitions= 7.41e+07 Memory= 867.002 t= 205 R= 3e+04 -Depth= 33506 States= 8e+06 Transitions= 9.02e+07 Memory= 917.197 t= 251 R= 3e+04 -Depth= 33506 States= 9e+06 Transitions= 1.01e+08 Memory= 967.881 t= 283 R= 3e+04 -pan: resizing hashtable to -w24.. done -Depth= 33506 States= 1e+07 Transitions= 1.17e+08 Memory= 1146.467 t= 327 R= 3e+04 -Depth= 33506 States= 1.1e+07 Transitions= 1.53e+08 Memory= 1201.154 t= 438 R= 3e+04 -Depth= 33506 States= 1.2e+07 Transitions= 1.72e+08 Memory= 1252.717 t= 492 R= 2e+04 -Depth= 33506 States= 1.3e+07 Transitions= 1.84e+08 Memory= 1303.401 t= 525 R= 2e+04 -Depth= 33506 States= 1.4e+07 Transitions= 2.05e+08 Memory= 1354.377 t= 586 R= 2e+04 -Depth= 33506 States= 1.5e+07 Transitions= 2.19e+08 Memory= 1404.572 t= 627 R= 2e+04 -Depth= 33506 States= 1.6e+07 Transitions= 2.33e+08 Memory= 1455.451 t= 666 R= 2e+04 -Depth= 33506 States= 1.7e+07 Transitions= 2.45e+08 Memory= 1506.428 t= 700 R= 2e+04 -Depth= 33506 States= 1.8e+07 Transitions= 2.57e+08 Memory= 1557.502 t= 733 R= 2e+04 -Depth= 33506 States= 1.9e+07 Transitions= 2.74e+08 Memory= 1607.697 t= 784 R= 2e+04 -Depth= 33506 States= 2e+07 Transitions= 2.86e+08 Memory= 1659.358 t= 818 R= 2e+04 -Depth= 33506 States= 2.1e+07 Transitions= 2.98e+08 Memory= 1710.920 t= 850 R= 2e+04 -Depth= 33506 States= 2.2e+07 Transitions= 3.1e+08 Memory= 1763.166 t= 883 R= 2e+04 -Depth= 33506 States= 2.3e+07 Transitions= 3.25e+08 Memory= 1814.143 t= 926 R= 2e+04 -Depth= 33506 States= 2.4e+07 Transitions= 3.44e+08 Memory= 1864.631 t= 983 R= 2e+04 -Depth= 33506 States= 2.5e+07 Transitions= 3.62e+08 Memory= 1913.264 t= 1.03e+03 R= 2e+04 -Depth= 33506 States= 2.6e+07 Transitions= 3.75e+08 Memory= 1964.045 t= 1.07e+03 R= 2e+04 -Depth= 33506 States= 2.7e+07 Transitions= 3.86e+08 Memory= 2016.291 t= 1.1e+03 R= 2e+04 -Depth= 33506 States= 2.8e+07 Transitions= 4.23e+08 Memory= 2074.592 t= 1.21e+03 R= 2e+04 -Depth= 33506 States= 2.9e+07 Transitions= 4.42e+08 Memory= 2123.225 t= 1.27e+03 R= 2e+04 -Depth= 33506 States= 3e+07 Transitions= 4.58e+08 Memory= 2173.029 t= 1.32e+03 R= 2e+04 -Depth= 33506 States= 3.1e+07 Transitions= 4.74e+08 Memory= 2224.397 t= 1.36e+03 R= 2e+04 -Depth= 33506 States= 3.2e+07 Transitions= 4.94e+08 Memory= 2276.252 t= 1.42e+03 R= 2e+04 -Depth= 33506 States= 3.3e+07 Transitions= 5.06e+08 Memory= 2325.276 t= 1.46e+03 R= 2e+04 -Depth= 33506 States= 3.4e+07 Transitions= 5.18e+08 Memory= 2376.838 t= 1.49e+03 R= 2e+04 -pan: resizing hashtable to -w26.. done -Depth= 33506 States= 3.5e+07 Transitions= 5.31e+08 Memory= 2923.408 t= 1.53e+03 R= 2e+04 -Depth= 33506 States= 3.6e+07 Transitions= 5.46e+08 Memory= 2976.143 t= 1.58e+03 R= 2e+04 -Depth= 33506 States= 3.7e+07 Transitions= 5.58e+08 Memory= 3026.338 t= 1.61e+03 R= 2e+04 -Depth= 33506 States= 3.8e+07 Transitions= 5.7e+08 Memory= 3079.170 t= 1.64e+03 R= 2e+04 -Depth= 33506 States= 3.9e+07 Transitions= 5.81e+08 Memory= 3130.537 t= 1.67e+03 R= 2e+04 -Depth= 33506 States= 4e+07 Transitions= 6e+08 Memory= 3181.318 t= 1.73e+03 R= 2e+04 -Depth= 33506 States= 4.1e+07 Transitions= 6.17e+08 Memory= 3231.611 t= 1.78e+03 R= 2e+04 -Depth= 33506 States= 4.2e+07 Transitions= 6.34e+08 Memory= 3280.244 t= 1.83e+03 R= 2e+04 -Depth= 33506 States= 4.3e+07 Transitions= 6.52e+08 Memory= 3329.268 t= 1.88e+03 R= 2e+04 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 33506, errors: 0 - 26582171 states, stored (4.34241e+07 visited) -6.159304e+08 states, matched -6.5935446e+08 transitions (= visited+matched) -1.0143566e+10 atomic steps -hash conflicts: 2.9064765e+08 (resolved) - -Stats on memory usage (in Megabytes): - 2940.685 equivalent memory usage for states (stored*(State-vector + overhead)) - 2381.281 actual memory usage for states (compression: 80.98%) - state-vector as stored = 66 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 1.367 memory lost to fragmentation - 3349.678 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 77, "(1)" - line 243, "pan.___", state 85, "(1)" - line 247, "pan.___", state 97, "(1)" - line 251, "pan.___", state 105, "(1)" - line 401, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 195, "(1)" - line 247, "pan.___", state 215, "(1)" - line 251, "pan.___", state 223, "(1)" - line 680, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 313, "(1)" - line 247, "pan.___", state 333, "(1)" - line 251, "pan.___", state 341, "(1)" - line 401, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 424, "(1)" - line 247, "pan.___", state 444, "(1)" - line 251, "pan.___", state 452, "(1)" - line 401, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 475, "(1)" - line 401, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 476, "else" - line 401, "pan.___", state 479, "(1)" - line 405, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 489, "(1)" - line 405, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 490, "else" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "(1)" - line 405, "pan.___", state 494, "(1)" - line 403, "pan.___", state 499, "((i<1))" - line 403, "pan.___", state 499, "((i>=1))" - line 410, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 507, "(1)" - line 410, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 508, "else" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "(1)" - line 410, "pan.___", state 512, "(1)" - line 414, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 521, "(1)" - line 414, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 522, "else" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "(1)" - line 414, "pan.___", state 526, "(1)" - line 412, "pan.___", state 531, "((i<2))" - line 412, "pan.___", state 531, "((i>=2))" - line 239, "pan.___", state 537, "(1)" - line 243, "pan.___", state 545, "(1)" - line 243, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 546, "else" - line 241, "pan.___", state 551, "((i<1))" - line 241, "pan.___", state 551, "((i>=1))" - line 247, "pan.___", state 557, "(1)" - line 247, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 558, "else" - line 251, "pan.___", state 565, "(1)" - line 251, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 566, "else" - line 249, "pan.___", state 571, "((i<2))" - line 249, "pan.___", state 571, "((i>=2))" - line 256, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 575, "else" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 577, "(1)" - line 680, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 680, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 680, "pan.___", state 582, "(1)" - line 401, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 653, "(1)" - line 247, "pan.___", state 673, "(1)" - line 251, "pan.___", state 681, "(1)" - line 401, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "(1)" - line 401, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 710, "else" - line 401, "pan.___", state 713, "(1)" - line 405, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 723, "(1)" - line 405, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 724, "else" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "(1)" - line 405, "pan.___", state 728, "(1)" - line 403, "pan.___", state 733, "((i<1))" - line 403, "pan.___", state 733, "((i>=1))" - line 410, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 741, "(1)" - line 410, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 742, "else" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "(1)" - line 410, "pan.___", state 746, "(1)" - line 414, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 755, "(1)" - line 414, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 756, "else" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "(1)" - line 414, "pan.___", state 760, "(1)" - line 412, "pan.___", state 765, "((i<2))" - line 412, "pan.___", state 765, "((i>=2))" - line 239, "pan.___", state 771, "(1)" - line 243, "pan.___", state 779, "(1)" - line 243, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 780, "else" - line 241, "pan.___", state 785, "((i<1))" - line 241, "pan.___", state 785, "((i>=1))" - line 247, "pan.___", state 791, "(1)" - line 247, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 792, "else" - line 251, "pan.___", state 799, "(1)" - line 251, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 800, "else" - line 256, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 809, "else" - line 421, "pan.___", state 811, "(1)" - line 421, "pan.___", state 811, "(1)" - line 401, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 820, "(1)" - line 401, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 821, "else" - line 401, "pan.___", state 824, "(1)" - line 405, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 834, "(1)" - line 405, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 835, "else" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "(1)" - line 405, "pan.___", state 839, "(1)" - line 403, "pan.___", state 844, "((i<1))" - line 403, "pan.___", state 844, "((i>=1))" - line 410, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 852, "(1)" - line 410, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 853, "else" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "(1)" - line 410, "pan.___", state 857, "(1)" - line 414, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 866, "(1)" - line 414, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 867, "else" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "(1)" - line 414, "pan.___", state 871, "(1)" - line 412, "pan.___", state 876, "((i<2))" - line 412, "pan.___", state 876, "((i>=2))" - line 239, "pan.___", state 882, "(1)" - line 243, "pan.___", state 890, "(1)" - line 243, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 891, "else" - line 241, "pan.___", state 896, "((i<1))" - line 241, "pan.___", state 896, "((i>=1))" - line 247, "pan.___", state 902, "(1)" - line 247, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 903, "else" - line 251, "pan.___", state 910, "(1)" - line 251, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 911, "else" - line 249, "pan.___", state 916, "((i<2))" - line 249, "pan.___", state 916, "((i>=2))" - line 256, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 920, "else" - line 421, "pan.___", state 922, "(1)" - line 421, "pan.___", state 922, "(1)" - line 688, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 995, "(1)" - line 247, "pan.___", state 1015, "(1)" - line 251, "pan.___", state 1023, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1109, "(1)" - line 247, "pan.___", state 1129, "(1)" - line 251, "pan.___", state 1137, "(1)" - line 401, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1224, "(1)" - line 247, "pan.___", state 1244, "(1)" - line 251, "pan.___", state 1252, "(1)" - line 401, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1335, "(1)" - line 247, "pan.___", state 1355, "(1)" - line 251, "pan.___", state 1363, "(1)" - line 401, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1451, "(1)" - line 247, "pan.___", state 1471, "(1)" - line 251, "pan.___", state 1479, "(1)" - line 401, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1562, "(1)" - line 247, "pan.___", state 1582, "(1)" - line 251, "pan.___", state 1590, "(1)" - line 401, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1676, "(1)" - line 247, "pan.___", state 1696, "(1)" - line 251, "pan.___", state 1704, "(1)" - line 727, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1794, "(1)" - line 247, "pan.___", state 1814, "(1)" - line 251, "pan.___", state 1822, "(1)" - line 401, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1905, "(1)" - line 247, "pan.___", state 1925, "(1)" - line 251, "pan.___", state 1933, "(1)" - line 401, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1956, "(1)" - line 401, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1957, "else" - line 401, "pan.___", state 1960, "(1)" - line 405, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1970, "(1)" - line 405, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1971, "else" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 403, "pan.___", state 1980, "((i<1))" - line 403, "pan.___", state 1980, "((i>=1))" - line 410, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1988, "(1)" - line 410, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1989, "else" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 414, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2002, "(1)" - line 414, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2003, "else" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 412, "pan.___", state 2012, "((i<2))" - line 412, "pan.___", state 2012, "((i>=2))" - line 239, "pan.___", state 2018, "(1)" - line 243, "pan.___", state 2026, "(1)" - line 243, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2027, "else" - line 241, "pan.___", state 2032, "((i<1))" - line 241, "pan.___", state 2032, "((i>=1))" - line 247, "pan.___", state 2038, "(1)" - line 247, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2039, "else" - line 251, "pan.___", state 2046, "(1)" - line 251, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2047, "else" - line 249, "pan.___", state 2052, "((i<2))" - line 249, "pan.___", state 2052, "((i>=2))" - line 256, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2056, "else" - line 421, "pan.___", state 2058, "(1)" - line 421, "pan.___", state 2058, "(1)" - line 727, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 727, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 727, "pan.___", state 2063, "(1)" - line 401, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2134, "(1)" - line 247, "pan.___", state 2154, "(1)" - line 251, "pan.___", state 2162, "(1)" - line 401, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2251, "(1)" - line 247, "pan.___", state 2271, "(1)" - line 251, "pan.___", state 2279, "(1)" - line 401, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2362, "(1)" - line 247, "pan.___", state 2382, "(1)" - line 251, "pan.___", state 2390, "(1)" - line 239, "pan.___", state 2421, "(1)" - line 247, "pan.___", state 2441, "(1)" - line 251, "pan.___", state 2449, "(1)" - line 239, "pan.___", state 2464, "(1)" - line 247, "pan.___", state 2484, "(1)" - line 251, "pan.___", state 2492, "(1)" - line 887, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 82, "(1)" - line 243, "pan.___", state 90, "(1)" - line 247, "pan.___", state 102, "(1)" - line 262, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 257, "(1)" - line 243, "pan.___", state 265, "(1)" - line 247, "pan.___", state 277, "(1)" - line 251, "pan.___", state 285, "(1)" - line 405, "pan.___", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 378, "(1)" - line 247, "pan.___", state 390, "(1)" - line 251, "pan.___", state 398, "(1)" - line 405, "pan.___", state 440, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 458, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 472, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 498, "(1)" - line 247, "pan.___", state 510, "(1)" - line 251, "pan.___", state 518, "(1)" - line 405, "pan.___", state 551, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 569, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 583, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 609, "(1)" - line 247, "pan.___", state 621, "(1)" - line 251, "pan.___", state 629, "(1)" - line 405, "pan.___", state 664, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 682, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 696, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 722, "(1)" - line 247, "pan.___", state 734, "(1)" - line 251, "pan.___", state 742, "(1)" - line 262, "pan.___", state 790, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 799, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 837, "(1)" - line 243, "pan.___", state 845, "(1)" - line 247, "pan.___", state 857, "(1)" - line 251, "pan.___", state 865, "(1)" - line 262, "pan.___", state 896, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 905, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 927, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 943, "(1)" - line 243, "pan.___", state 951, "(1)" - line 247, "pan.___", state 963, "(1)" - line 251, "pan.___", state 971, "(1)" - line 262, "pan.___", state 992, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1001, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1016, "(1)" - line 274, "pan.___", state 1023, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1039, "(1)" - line 243, "pan.___", state 1047, "(1)" - line 247, "pan.___", state 1059, "(1)" - line 251, "pan.___", state 1067, "(1)" - line 262, "pan.___", state 1098, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1107, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1120, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1129, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1145, "(1)" - line 243, "pan.___", state 1153, "(1)" - line 247, "pan.___", state 1165, "(1)" - line 251, "pan.___", state 1173, "(1)" - line 266, "pan.___", state 1199, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1212, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1221, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1237, "(1)" - line 243, "pan.___", state 1245, "(1)" - line 247, "pan.___", state 1257, "(1)" - line 251, "pan.___", state 1265, "(1)" - line 262, "pan.___", state 1296, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1305, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1318, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1327, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1343, "(1)" - line 243, "pan.___", state 1351, "(1)" - line 247, "pan.___", state 1363, "(1)" - line 251, "pan.___", state 1371, "(1)" - line 266, "pan.___", state 1397, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1410, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1419, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1435, "(1)" - line 243, "pan.___", state 1443, "(1)" - line 247, "pan.___", state 1455, "(1)" - line 251, "pan.___", state 1463, "(1)" - line 262, "pan.___", state 1494, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1503, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1516, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1525, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1541, "(1)" - line 243, "pan.___", state 1549, "(1)" - line 247, "pan.___", state 1561, "(1)" - line 251, "pan.___", state 1569, "(1)" - line 266, "pan.___", state 1595, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1608, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1617, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1633, "(1)" - line 243, "pan.___", state 1641, "(1)" - line 247, "pan.___", state 1653, "(1)" - line 251, "pan.___", state 1661, "(1)" - line 262, "pan.___", state 1692, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1701, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1714, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1723, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1739, "(1)" - line 243, "pan.___", state 1747, "(1)" - line 247, "pan.___", state 1759, "(1)" - line 251, "pan.___", state 1767, "(1)" - line 1214, "pan.___", state 1783, "-end-" - (118 of 1783 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1279, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 1.9e+03 seconds -pan: rate 22877.047 states/second -pan: avg transition delay 2.8788e-06 usec -cp .input.spin urcu_progress_reader.spin.input -cp .input.spin.trail urcu_progress_reader.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.spin.input deleted file mode 100644 index 34cee26..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_reader.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define READER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.define deleted file mode 100644 index 1e4417f..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.define +++ /dev/null @@ -1 +0,0 @@ -#define WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.log deleted file mode 100644 index 2b68dab..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.log +++ /dev/null @@ -1,519 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1272) -depth 23: Claim reached state 9 (line 1277) -depth 51: Claim reached state 9 (line 1276) -Depth= 5851 States= 1e+06 Transitions= 7.93e+06 Memory= 516.154 t= 20.4 R= 5e+04 -Depth= 6593 States= 2e+06 Transitions= 1.7e+07 Memory= 566.545 t= 44.5 R= 4e+04 -Depth= 6593 States= 3e+06 Transitions= 2.76e+07 Memory= 618.205 t= 73.5 R= 4e+04 -pan: resizing hashtable to -w22.. done -Depth= 6593 States= 4e+06 Transitions= 3.59e+07 Memory= 700.791 t= 95.6 R= 4e+04 -Depth= 6593 States= 5e+06 Transitions= 5.42e+07 Memory= 752.647 t= 148 R= 3e+04 -Depth= 6593 States= 6e+06 Transitions= 7.04e+07 Memory= 801.768 t= 194 R= 3e+04 -Depth= 6593 States= 7e+06 Transitions= 8.54e+07 Memory= 850.693 t= 237 R= 3e+04 -Depth= 6593 States= 8e+06 Transitions= 9.51e+07 Memory= 904.307 t= 264 R= 3e+04 -Depth= 6593 States= 9e+06 Transitions= 1.26e+08 Memory= 962.217 t= 356 R= 3e+04 -pan: resizing hashtable to -w24.. done -Depth= 6593 States= 1e+07 Transitions= 1.5e+08 Memory= 1135.627 t= 426 R= 2e+04 -Depth= 6593 States= 1.1e+07 Transitions= 1.66e+08 Memory= 1185.725 t= 473 R= 2e+04 -Depth= 6593 States= 1.2e+07 Transitions= 1.84e+08 Memory= 1237.385 t= 525 R= 2e+04 -Depth= 6593 States= 1.3e+07 Transitions= 2.03e+08 Memory= 1288.654 t= 579 R= 2e+04 -Depth= 6593 States= 1.4e+07 Transitions= 2.15e+08 Memory= 1339.631 t= 613 R= 2e+04 -Depth= 6593 States= 1.5e+07 Transitions= 2.28e+08 Memory= 1390.901 t= 646 R= 2e+04 -Depth= 6593 States= 1.6e+07 Transitions= 2.41e+08 Memory= 1442.756 t= 684 R= 2e+04 -Depth= 6593 States= 1.7e+07 Transitions= 2.55e+08 Memory= 1493.244 t= 724 R= 2e+04 -Depth= 6593 States= 1.8e+07 Transitions= 2.7e+08 Memory= 1545.197 t= 765 R= 2e+04 -Depth= 6593 States= 1.9e+07 Transitions= 2.82e+08 Memory= 1597.346 t= 798 R= 2e+04 -Depth= 6593 States= 2e+07 Transitions= 2.94e+08 Memory= 1649.690 t= 832 R= 2e+04 -Depth= 6593 States= 2.1e+07 Transitions= 3.04e+08 Memory= 1700.959 t= 860 R= 2e+04 -Depth= 6593 States= 2.2e+07 Transitions= 3.24e+08 Memory= 1752.815 t= 917 R= 2e+04 -Depth= 6593 States= 2.3e+07 Transitions= 3.43e+08 Memory= 1801.447 t= 973 R= 2e+04 -Depth= 6593 States= 2.4e+07 Transitions= 3.58e+08 Memory= 1850.568 t= 1.02e+03 R= 2e+04 -Depth= 6593 States= 2.5e+07 Transitions= 3.69e+08 Memory= 1903.596 t= 1.05e+03 R= 2e+04 -Depth= 6593 States= 2.6e+07 Transitions= 3.93e+08 Memory= 1960.041 t= 1.12e+03 R= 2e+04 -Depth= 6593 States= 2.7e+07 Transitions= 4.23e+08 Memory= 2011.506 t= 1.21e+03 R= 2e+04 -Depth= 6593 States= 2.8e+07 Transitions= 4.42e+08 Memory= 2062.776 t= 1.26e+03 R= 2e+04 -Depth= 6593 States= 2.9e+07 Transitions= 4.55e+08 Memory= 2113.264 t= 1.3e+03 R= 2e+04 -Depth= 6593 States= 3e+07 Transitions= 4.75e+08 Memory= 2164.240 t= 1.36e+03 R= 2e+04 -Depth= 6593 States= 3.1e+07 Transitions= 4.88e+08 Memory= 2215.315 t= 1.39e+03 R= 2e+04 -Depth= 6593 States= 3.2e+07 Transitions= 5.02e+08 Memory= 2266.193 t= 1.43e+03 R= 2e+04 -Depth= 6593 States= 3.3e+07 Transitions= 5.14e+08 Memory= 2318.147 t= 1.47e+03 R= 2e+04 -Depth= 6593 States= 3.4e+07 Transitions= 5.28e+08 Memory= 2369.416 t= 1.5e+03 R= 2e+04 -pan: resizing hashtable to -w26.. done -Depth= 6593 States= 3.5e+07 Transitions= 5.41e+08 Memory= 2917.744 t= 1.55e+03 R= 2e+04 -Depth= 6593 States= 3.6e+07 Transitions= 5.53e+08 Memory= 2969.990 t= 1.58e+03 R= 2e+04 -Depth= 6593 States= 3.7e+07 Transitions= 5.65e+08 Memory= 3022.236 t= 1.61e+03 R= 2e+04 -Depth= 6593 States= 3.8e+07 Transitions= 5.76e+08 Memory= 3073.604 t= 1.64e+03 R= 2e+04 -Depth= 6593 States= 3.9e+07 Transitions= 5.94e+08 Memory= 3125.850 t= 1.69e+03 R= 2e+04 -Depth= 6593 States= 4e+07 Transitions= 6.13e+08 Memory= 3173.994 t= 1.75e+03 R= 2e+04 -Depth= 6593 States= 4.1e+07 Transitions= 6.32e+08 Memory= 3223.115 t= 1.8e+03 R= 2e+04 -Depth= 6593 States= 4.2e+07 Transitions= 6.49e+08 Memory= 3272.236 t= 1.85e+03 R= 2e+04 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6593, errors: 0 - 25668735 states, stored (4.20113e+07 visited) -6.0674803e+08 states, matched -6.4875934e+08 transitions (= visited+matched) -9.990628e+09 atomic steps -hash conflicts: 2.634972e+08 (resolved) - -Stats on memory usage (in Megabytes): - 2839.635 equivalent memory usage for states (stored*(State-vector + overhead)) - 2304.486 actual memory usage for states (compression: 81.15%) - state-vector as stored = 66 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 1.330 memory lost to fragmentation - 3272.920 total actual memory usage - -unreached in proctype urcu_reader - line 262, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 77, "(1)" - line 243, "pan.___", state 85, "(1)" - line 247, "pan.___", state 97, "(1)" - line 251, "pan.___", state 105, "(1)" - line 401, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 195, "(1)" - line 247, "pan.___", state 215, "(1)" - line 251, "pan.___", state 223, "(1)" - line 680, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 401, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 313, "(1)" - line 247, "pan.___", state 333, "(1)" - line 251, "pan.___", state 341, "(1)" - line 401, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 424, "(1)" - line 247, "pan.___", state 444, "(1)" - line 251, "pan.___", state 452, "(1)" - line 401, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 475, "(1)" - line 401, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 476, "else" - line 401, "pan.___", state 479, "(1)" - line 405, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 489, "(1)" - line 405, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 490, "else" - line 405, "pan.___", state 493, "(1)" - line 405, "pan.___", state 494, "(1)" - line 405, "pan.___", state 494, "(1)" - line 403, "pan.___", state 499, "((i<1))" - line 403, "pan.___", state 499, "((i>=1))" - line 410, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 507, "(1)" - line 410, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 508, "else" - line 410, "pan.___", state 511, "(1)" - line 410, "pan.___", state 512, "(1)" - line 410, "pan.___", state 512, "(1)" - line 414, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 521, "(1)" - line 414, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 522, "else" - line 414, "pan.___", state 525, "(1)" - line 414, "pan.___", state 526, "(1)" - line 414, "pan.___", state 526, "(1)" - line 412, "pan.___", state 531, "((i<2))" - line 412, "pan.___", state 531, "((i>=2))" - line 239, "pan.___", state 537, "(1)" - line 243, "pan.___", state 545, "(1)" - line 243, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 546, "else" - line 241, "pan.___", state 551, "((i<1))" - line 241, "pan.___", state 551, "((i>=1))" - line 247, "pan.___", state 557, "(1)" - line 247, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 558, "else" - line 251, "pan.___", state 565, "(1)" - line 251, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 566, "else" - line 249, "pan.___", state 571, "((i<2))" - line 249, "pan.___", state 571, "((i>=2))" - line 256, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 575, "else" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 577, "(1)" - line 680, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 680, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 680, "pan.___", state 582, "(1)" - line 401, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 653, "(1)" - line 247, "pan.___", state 673, "(1)" - line 251, "pan.___", state 681, "(1)" - line 401, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "(1)" - line 401, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 710, "else" - line 401, "pan.___", state 713, "(1)" - line 405, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 723, "(1)" - line 405, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 724, "else" - line 405, "pan.___", state 727, "(1)" - line 405, "pan.___", state 728, "(1)" - line 405, "pan.___", state 728, "(1)" - line 403, "pan.___", state 733, "((i<1))" - line 403, "pan.___", state 733, "((i>=1))" - line 410, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 741, "(1)" - line 410, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 742, "else" - line 410, "pan.___", state 745, "(1)" - line 410, "pan.___", state 746, "(1)" - line 410, "pan.___", state 746, "(1)" - line 414, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 755, "(1)" - line 414, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 756, "else" - line 414, "pan.___", state 759, "(1)" - line 414, "pan.___", state 760, "(1)" - line 414, "pan.___", state 760, "(1)" - line 412, "pan.___", state 765, "((i<2))" - line 412, "pan.___", state 765, "((i>=2))" - line 239, "pan.___", state 771, "(1)" - line 243, "pan.___", state 779, "(1)" - line 243, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 780, "else" - line 241, "pan.___", state 785, "((i<1))" - line 241, "pan.___", state 785, "((i>=1))" - line 247, "pan.___", state 791, "(1)" - line 247, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 792, "else" - line 251, "pan.___", state 799, "(1)" - line 251, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 800, "else" - line 256, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 809, "else" - line 421, "pan.___", state 811, "(1)" - line 421, "pan.___", state 811, "(1)" - line 401, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 820, "(1)" - line 401, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 821, "else" - line 401, "pan.___", state 824, "(1)" - line 405, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 834, "(1)" - line 405, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 835, "else" - line 405, "pan.___", state 838, "(1)" - line 405, "pan.___", state 839, "(1)" - line 405, "pan.___", state 839, "(1)" - line 403, "pan.___", state 844, "((i<1))" - line 403, "pan.___", state 844, "((i>=1))" - line 410, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 852, "(1)" - line 410, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 853, "else" - line 410, "pan.___", state 856, "(1)" - line 410, "pan.___", state 857, "(1)" - line 410, "pan.___", state 857, "(1)" - line 414, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 866, "(1)" - line 414, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 867, "else" - line 414, "pan.___", state 870, "(1)" - line 414, "pan.___", state 871, "(1)" - line 414, "pan.___", state 871, "(1)" - line 412, "pan.___", state 876, "((i<2))" - line 412, "pan.___", state 876, "((i>=2))" - line 239, "pan.___", state 882, "(1)" - line 243, "pan.___", state 890, "(1)" - line 243, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 891, "else" - line 241, "pan.___", state 896, "((i<1))" - line 241, "pan.___", state 896, "((i>=1))" - line 247, "pan.___", state 902, "(1)" - line 247, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 903, "else" - line 251, "pan.___", state 910, "(1)" - line 251, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 911, "else" - line 249, "pan.___", state 916, "((i<2))" - line 249, "pan.___", state 916, "((i>=2))" - line 256, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 920, "else" - line 421, "pan.___", state 922, "(1)" - line 421, "pan.___", state 922, "(1)" - line 688, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 401, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 995, "(1)" - line 247, "pan.___", state 1015, "(1)" - line 251, "pan.___", state 1023, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1109, "(1)" - line 247, "pan.___", state 1129, "(1)" - line 251, "pan.___", state 1137, "(1)" - line 401, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1224, "(1)" - line 247, "pan.___", state 1244, "(1)" - line 251, "pan.___", state 1252, "(1)" - line 401, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1335, "(1)" - line 247, "pan.___", state 1355, "(1)" - line 251, "pan.___", state 1363, "(1)" - line 401, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1451, "(1)" - line 247, "pan.___", state 1471, "(1)" - line 251, "pan.___", state 1479, "(1)" - line 401, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1562, "(1)" - line 247, "pan.___", state 1582, "(1)" - line 251, "pan.___", state 1590, "(1)" - line 401, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1676, "(1)" - line 247, "pan.___", state 1696, "(1)" - line 251, "pan.___", state 1704, "(1)" - line 727, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 401, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1794, "(1)" - line 247, "pan.___", state 1814, "(1)" - line 251, "pan.___", state 1822, "(1)" - line 401, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1905, "(1)" - line 247, "pan.___", state 1925, "(1)" - line 251, "pan.___", state 1933, "(1)" - line 401, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1956, "(1)" - line 401, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 401, "pan.___", state 1957, "else" - line 401, "pan.___", state 1960, "(1)" - line 405, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1970, "(1)" - line 405, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 405, "pan.___", state 1971, "else" - line 405, "pan.___", state 1974, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 405, "pan.___", state 1975, "(1)" - line 403, "pan.___", state 1980, "((i<1))" - line 403, "pan.___", state 1980, "((i>=1))" - line 410, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 1988, "(1)" - line 410, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 410, "pan.___", state 1989, "else" - line 410, "pan.___", state 1992, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 410, "pan.___", state 1993, "(1)" - line 414, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2002, "(1)" - line 414, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 414, "pan.___", state 2003, "else" - line 414, "pan.___", state 2006, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 414, "pan.___", state 2007, "(1)" - line 412, "pan.___", state 2012, "((i<2))" - line 412, "pan.___", state 2012, "((i>=2))" - line 239, "pan.___", state 2018, "(1)" - line 243, "pan.___", state 2026, "(1)" - line 243, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 243, "pan.___", state 2027, "else" - line 241, "pan.___", state 2032, "((i<1))" - line 241, "pan.___", state 2032, "((i>=1))" - line 247, "pan.___", state 2038, "(1)" - line 247, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 247, "pan.___", state 2039, "else" - line 251, "pan.___", state 2046, "(1)" - line 251, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 251, "pan.___", state 2047, "else" - line 249, "pan.___", state 2052, "((i<2))" - line 249, "pan.___", state 2052, "((i>=2))" - line 256, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 256, "pan.___", state 2056, "else" - line 421, "pan.___", state 2058, "(1)" - line 421, "pan.___", state 2058, "(1)" - line 727, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 727, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 727, "pan.___", state 2063, "(1)" - line 401, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2134, "(1)" - line 247, "pan.___", state 2154, "(1)" - line 251, "pan.___", state 2162, "(1)" - line 401, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2251, "(1)" - line 247, "pan.___", state 2271, "(1)" - line 251, "pan.___", state 2279, "(1)" - line 401, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 2362, "(1)" - line 247, "pan.___", state 2382, "(1)" - line 251, "pan.___", state 2390, "(1)" - line 239, "pan.___", state 2421, "(1)" - line 247, "pan.___", state 2441, "(1)" - line 251, "pan.___", state 2449, "(1)" - line 239, "pan.___", state 2464, "(1)" - line 247, "pan.___", state 2484, "(1)" - line 251, "pan.___", state 2492, "(1)" - line 887, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 401, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 239, "pan.___", state 82, "(1)" - line 243, "pan.___", state 90, "(1)" - line 247, "pan.___", state 102, "(1)" - line 262, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 257, "(1)" - line 243, "pan.___", state 265, "(1)" - line 247, "pan.___", state 277, "(1)" - line 251, "pan.___", state 285, "(1)" - line 405, "pan.___", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 378, "(1)" - line 247, "pan.___", state 390, "(1)" - line 251, "pan.___", state 398, "(1)" - line 405, "pan.___", state 440, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 458, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 472, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 498, "(1)" - line 247, "pan.___", state 510, "(1)" - line 251, "pan.___", state 518, "(1)" - line 405, "pan.___", state 551, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 569, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 583, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 609, "(1)" - line 247, "pan.___", state 621, "(1)" - line 251, "pan.___", state 629, "(1)" - line 405, "pan.___", state 664, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 410, "pan.___", state 682, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 414, "pan.___", state 696, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 243, "pan.___", state 722, "(1)" - line 247, "pan.___", state 734, "(1)" - line 251, "pan.___", state 742, "(1)" - line 262, "pan.___", state 795, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 804, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 819, "(1)" - line 274, "pan.___", state 826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 842, "(1)" - line 243, "pan.___", state 850, "(1)" - line 247, "pan.___", state 862, "(1)" - line 251, "pan.___", state 870, "(1)" - line 262, "pan.___", state 901, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 910, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 923, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 948, "(1)" - line 243, "pan.___", state 956, "(1)" - line 247, "pan.___", state 968, "(1)" - line 251, "pan.___", state 976, "(1)" - line 266, "pan.___", state 1002, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1024, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1040, "(1)" - line 243, "pan.___", state 1048, "(1)" - line 247, "pan.___", state 1060, "(1)" - line 251, "pan.___", state 1068, "(1)" - line 262, "pan.___", state 1099, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1108, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1121, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1130, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1146, "(1)" - line 243, "pan.___", state 1154, "(1)" - line 247, "pan.___", state 1166, "(1)" - line 251, "pan.___", state 1174, "(1)" - line 266, "pan.___", state 1200, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1213, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1222, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1238, "(1)" - line 243, "pan.___", state 1246, "(1)" - line 247, "pan.___", state 1258, "(1)" - line 251, "pan.___", state 1266, "(1)" - line 262, "pan.___", state 1297, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1306, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1319, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1344, "(1)" - line 243, "pan.___", state 1352, "(1)" - line 247, "pan.___", state 1364, "(1)" - line 251, "pan.___", state 1372, "(1)" - line 266, "pan.___", state 1398, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1411, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1420, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1436, "(1)" - line 243, "pan.___", state 1444, "(1)" - line 247, "pan.___", state 1456, "(1)" - line 251, "pan.___", state 1464, "(1)" - line 262, "pan.___", state 1495, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 266, "pan.___", state 1504, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 270, "pan.___", state 1517, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 274, "pan.___", state 1526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 239, "pan.___", state 1542, "(1)" - line 243, "pan.___", state 1550, "(1)" - line 247, "pan.___", state 1562, "(1)" - line 251, "pan.___", state 1570, "(1)" - line 1214, "pan.___", state 1586, "-end-" - (103 of 1586 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1279, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 1.85e+03 seconds -pan: rate 22712.991 states/second -pan: avg transition delay 2.8511e-06 usec -cp .input.spin urcu_progress_writer.spin.input -cp .input.spin.trail urcu_progress_writer.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.spin.input deleted file mode 100644 index 6e6d67f..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer.spin.input +++ /dev/null @@ -1,1250 +0,0 @@ -#define WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.define b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.define deleted file mode 100644 index 8d304f5..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.define +++ /dev/null @@ -1,2 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.log b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.log deleted file mode 100644 index a80f97b..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.log +++ /dev/null @@ -1,498 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer_error.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1273) -depth 23: Claim reached state 9 (line 1278) -depth 51: Claim reached state 9 (line 1277) -pan: acceptance cycle (at depth 1559) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4532, errors: 1 - 437005 states, stored (735994 visited) - 5102692 states, matched - 5838686 transitions (= visited+matched) - 78711771 atomic steps -hash conflicts: 422011 (resolved) - -Stats on memory usage (in Megabytes): - 48.344 equivalent memory usage for states (stored*(State-vector + overhead)) - 37.421 actual memory usage for states (compression: 77.41%) - state-vector as stored = 62 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 503.068 total actual memory usage - -unreached in proctype urcu_reader - line 263, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 275, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 77, "(1)" - line 244, "pan.___", state 85, "(1)" - line 248, "pan.___", state 97, "(1)" - line 252, "pan.___", state 105, "(1)" - line 402, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 195, "(1)" - line 248, "pan.___", state 215, "(1)" - line 252, "pan.___", state 223, "(1)" - line 681, "pan.___", state 242, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 402, "pan.___", state 249, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 295, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 313, "(1)" - line 248, "pan.___", state 333, "(1)" - line 252, "pan.___", state 341, "(1)" - line 402, "pan.___", state 360, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 392, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 406, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 424, "(1)" - line 248, "pan.___", state 444, "(1)" - line 252, "pan.___", state 452, "(1)" - line 402, "pan.___", state 473, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 475, "(1)" - line 402, "pan.___", state 476, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 402, "pan.___", state 476, "else" - line 402, "pan.___", state 479, "(1)" - line 406, "pan.___", state 487, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 489, "(1)" - line 406, "pan.___", state 490, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 406, "pan.___", state 490, "else" - line 406, "pan.___", state 493, "(1)" - line 406, "pan.___", state 494, "(1)" - line 406, "pan.___", state 494, "(1)" - line 404, "pan.___", state 499, "((i<1))" - line 404, "pan.___", state 499, "((i>=1))" - line 411, "pan.___", state 505, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 507, "(1)" - line 411, "pan.___", state 508, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 411, "pan.___", state 508, "else" - line 411, "pan.___", state 511, "(1)" - line 411, "pan.___", state 512, "(1)" - line 411, "pan.___", state 512, "(1)" - line 415, "pan.___", state 519, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 521, "(1)" - line 415, "pan.___", state 522, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 415, "pan.___", state 522, "else" - line 415, "pan.___", state 525, "(1)" - line 415, "pan.___", state 526, "(1)" - line 415, "pan.___", state 526, "(1)" - line 413, "pan.___", state 531, "((i<2))" - line 413, "pan.___", state 531, "((i>=2))" - line 240, "pan.___", state 537, "(1)" - line 244, "pan.___", state 545, "(1)" - line 244, "pan.___", state 546, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 244, "pan.___", state 546, "else" - line 242, "pan.___", state 551, "((i<1))" - line 242, "pan.___", state 551, "((i>=1))" - line 248, "pan.___", state 557, "(1)" - line 248, "pan.___", state 558, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 248, "pan.___", state 558, "else" - line 252, "pan.___", state 565, "(1)" - line 252, "pan.___", state 566, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 252, "pan.___", state 566, "else" - line 250, "pan.___", state 571, "((i<2))" - line 250, "pan.___", state 571, "((i>=2))" - line 257, "pan.___", state 575, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 257, "pan.___", state 575, "else" - line 422, "pan.___", state 577, "(1)" - line 422, "pan.___", state 577, "(1)" - line 681, "pan.___", state 580, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 681, "pan.___", state 581, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 681, "pan.___", state 582, "(1)" - line 402, "pan.___", state 589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 653, "(1)" - line 248, "pan.___", state 673, "(1)" - line 252, "pan.___", state 681, "(1)" - line 402, "pan.___", state 707, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 709, "(1)" - line 402, "pan.___", state 710, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 402, "pan.___", state 710, "else" - line 402, "pan.___", state 713, "(1)" - line 406, "pan.___", state 721, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 723, "(1)" - line 406, "pan.___", state 724, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 406, "pan.___", state 724, "else" - line 406, "pan.___", state 727, "(1)" - line 406, "pan.___", state 728, "(1)" - line 406, "pan.___", state 728, "(1)" - line 404, "pan.___", state 733, "((i<1))" - line 404, "pan.___", state 733, "((i>=1))" - line 411, "pan.___", state 739, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 741, "(1)" - line 411, "pan.___", state 742, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 411, "pan.___", state 742, "else" - line 411, "pan.___", state 745, "(1)" - line 411, "pan.___", state 746, "(1)" - line 411, "pan.___", state 746, "(1)" - line 415, "pan.___", state 753, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 755, "(1)" - line 415, "pan.___", state 756, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 415, "pan.___", state 756, "else" - line 415, "pan.___", state 759, "(1)" - line 415, "pan.___", state 760, "(1)" - line 415, "pan.___", state 760, "(1)" - line 413, "pan.___", state 765, "((i<2))" - line 413, "pan.___", state 765, "((i>=2))" - line 240, "pan.___", state 771, "(1)" - line 244, "pan.___", state 779, "(1)" - line 244, "pan.___", state 780, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 244, "pan.___", state 780, "else" - line 242, "pan.___", state 785, "((i<1))" - line 242, "pan.___", state 785, "((i>=1))" - line 248, "pan.___", state 791, "(1)" - line 248, "pan.___", state 792, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 248, "pan.___", state 792, "else" - line 252, "pan.___", state 799, "(1)" - line 252, "pan.___", state 800, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 252, "pan.___", state 800, "else" - line 257, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 257, "pan.___", state 809, "else" - line 422, "pan.___", state 811, "(1)" - line 422, "pan.___", state 811, "(1)" - line 402, "pan.___", state 818, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 820, "(1)" - line 402, "pan.___", state 821, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 402, "pan.___", state 821, "else" - line 402, "pan.___", state 824, "(1)" - line 406, "pan.___", state 832, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 834, "(1)" - line 406, "pan.___", state 835, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 406, "pan.___", state 835, "else" - line 406, "pan.___", state 838, "(1)" - line 406, "pan.___", state 839, "(1)" - line 406, "pan.___", state 839, "(1)" - line 404, "pan.___", state 844, "((i<1))" - line 404, "pan.___", state 844, "((i>=1))" - line 411, "pan.___", state 850, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 852, "(1)" - line 411, "pan.___", state 853, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 411, "pan.___", state 853, "else" - line 411, "pan.___", state 856, "(1)" - line 411, "pan.___", state 857, "(1)" - line 411, "pan.___", state 857, "(1)" - line 415, "pan.___", state 864, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 866, "(1)" - line 415, "pan.___", state 867, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 415, "pan.___", state 867, "else" - line 415, "pan.___", state 870, "(1)" - line 415, "pan.___", state 871, "(1)" - line 415, "pan.___", state 871, "(1)" - line 413, "pan.___", state 876, "((i<2))" - line 413, "pan.___", state 876, "((i>=2))" - line 240, "pan.___", state 882, "(1)" - line 244, "pan.___", state 890, "(1)" - line 244, "pan.___", state 891, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 244, "pan.___", state 891, "else" - line 242, "pan.___", state 896, "((i<1))" - line 242, "pan.___", state 896, "((i>=1))" - line 248, "pan.___", state 902, "(1)" - line 248, "pan.___", state 903, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 248, "pan.___", state 903, "else" - line 252, "pan.___", state 910, "(1)" - line 252, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 252, "pan.___", state 911, "else" - line 250, "pan.___", state 916, "((i<2))" - line 250, "pan.___", state 916, "((i>=2))" - line 257, "pan.___", state 920, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 257, "pan.___", state 920, "else" - line 422, "pan.___", state 922, "(1)" - line 422, "pan.___", state 922, "(1)" - line 689, "pan.___", state 926, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 402, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 995, "(1)" - line 248, "pan.___", state 1015, "(1)" - line 252, "pan.___", state 1023, "(1)" - line 402, "pan.___", state 1045, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1077, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1091, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1109, "(1)" - line 248, "pan.___", state 1129, "(1)" - line 252, "pan.___", state 1137, "(1)" - line 402, "pan.___", state 1160, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1192, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1224, "(1)" - line 248, "pan.___", state 1244, "(1)" - line 252, "pan.___", state 1252, "(1)" - line 402, "pan.___", state 1271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1335, "(1)" - line 248, "pan.___", state 1355, "(1)" - line 252, "pan.___", state 1363, "(1)" - line 402, "pan.___", state 1387, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1419, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1433, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1451, "(1)" - line 248, "pan.___", state 1471, "(1)" - line 252, "pan.___", state 1479, "(1)" - line 402, "pan.___", state 1498, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1530, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1544, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1562, "(1)" - line 248, "pan.___", state 1582, "(1)" - line 252, "pan.___", state 1590, "(1)" - line 402, "pan.___", state 1612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1676, "(1)" - line 248, "pan.___", state 1696, "(1)" - line 252, "pan.___", state 1704, "(1)" - line 728, "pan.___", state 1723, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 402, "pan.___", state 1730, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1762, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1776, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1794, "(1)" - line 248, "pan.___", state 1814, "(1)" - line 252, "pan.___", state 1822, "(1)" - line 402, "pan.___", state 1841, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1873, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 1887, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1905, "(1)" - line 248, "pan.___", state 1925, "(1)" - line 252, "pan.___", state 1933, "(1)" - line 402, "pan.___", state 1954, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 1956, "(1)" - line 402, "pan.___", state 1957, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 402, "pan.___", state 1957, "else" - line 402, "pan.___", state 1960, "(1)" - line 406, "pan.___", state 1968, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 1970, "(1)" - line 406, "pan.___", state 1971, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 406, "pan.___", state 1971, "else" - line 406, "pan.___", state 1974, "(1)" - line 406, "pan.___", state 1975, "(1)" - line 406, "pan.___", state 1975, "(1)" - line 404, "pan.___", state 1980, "((i<1))" - line 404, "pan.___", state 1980, "((i>=1))" - line 411, "pan.___", state 1986, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1988, "(1)" - line 411, "pan.___", state 1989, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 411, "pan.___", state 1989, "else" - line 411, "pan.___", state 1992, "(1)" - line 411, "pan.___", state 1993, "(1)" - line 411, "pan.___", state 1993, "(1)" - line 415, "pan.___", state 2000, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 2002, "(1)" - line 415, "pan.___", state 2003, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 415, "pan.___", state 2003, "else" - line 415, "pan.___", state 2006, "(1)" - line 415, "pan.___", state 2007, "(1)" - line 415, "pan.___", state 2007, "(1)" - line 413, "pan.___", state 2012, "((i<2))" - line 413, "pan.___", state 2012, "((i>=2))" - line 240, "pan.___", state 2018, "(1)" - line 244, "pan.___", state 2026, "(1)" - line 244, "pan.___", state 2027, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 244, "pan.___", state 2027, "else" - line 242, "pan.___", state 2032, "((i<1))" - line 242, "pan.___", state 2032, "((i>=1))" - line 248, "pan.___", state 2038, "(1)" - line 248, "pan.___", state 2039, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 248, "pan.___", state 2039, "else" - line 252, "pan.___", state 2046, "(1)" - line 252, "pan.___", state 2047, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 252, "pan.___", state 2047, "else" - line 250, "pan.___", state 2052, "((i<2))" - line 250, "pan.___", state 2052, "((i>=2))" - line 257, "pan.___", state 2056, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 257, "pan.___", state 2056, "else" - line 422, "pan.___", state 2058, "(1)" - line 422, "pan.___", state 2058, "(1)" - line 728, "pan.___", state 2061, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 728, "pan.___", state 2062, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 728, "pan.___", state 2063, "(1)" - line 402, "pan.___", state 2070, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2102, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 2116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 2134, "(1)" - line 248, "pan.___", state 2154, "(1)" - line 252, "pan.___", state 2162, "(1)" - line 402, "pan.___", state 2187, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2219, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 2233, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 2251, "(1)" - line 248, "pan.___", state 2271, "(1)" - line 252, "pan.___", state 2279, "(1)" - line 402, "pan.___", state 2298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 2344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 2362, "(1)" - line 248, "pan.___", state 2382, "(1)" - line 252, "pan.___", state 2390, "(1)" - line 240, "pan.___", state 2421, "(1)" - line 248, "pan.___", state 2441, "(1)" - line 252, "pan.___", state 2449, "(1)" - line 240, "pan.___", state 2464, "(1)" - line 248, "pan.___", state 2484, "(1)" - line 252, "pan.___", state 2492, "(1)" - line 888, "pan.___", state 2509, "-end-" - (246 of 2509 states) -unreached in proctype urcu_writer - line 402, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 240, "pan.___", state 82, "(1)" - line 244, "pan.___", state 90, "(1)" - line 248, "pan.___", state 102, "(1)" - line 263, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 267, "pan.___", state 140, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 153, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 207, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 257, "(1)" - line 244, "pan.___", state 265, "(1)" - line 248, "pan.___", state 277, "(1)" - line 252, "pan.___", state 285, "(1)" - line 406, "pan.___", state 320, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 338, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 352, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 244, "pan.___", state 378, "(1)" - line 248, "pan.___", state 390, "(1)" - line 252, "pan.___", state 398, "(1)" - line 402, "pan.___", state 423, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 402, "pan.___", state 425, "(1)" - line 402, "pan.___", state 426, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 402, "pan.___", state 426, "else" - line 402, "pan.___", state 429, "(1)" - line 406, "pan.___", state 437, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 406, "pan.___", state 439, "(1)" - line 406, "pan.___", state 440, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 406, "pan.___", state 440, "else" - line 406, "pan.___", state 443, "(1)" - line 406, "pan.___", state 444, "(1)" - line 406, "pan.___", state 444, "(1)" - line 404, "pan.___", state 449, "((i<1))" - line 404, "pan.___", state 449, "((i>=1))" - line 411, "pan.___", state 455, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 457, "(1)" - line 411, "pan.___", state 458, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 411, "pan.___", state 458, "else" - line 411, "pan.___", state 461, "(1)" - line 411, "pan.___", state 462, "(1)" - line 411, "pan.___", state 462, "(1)" - line 415, "pan.___", state 469, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 471, "(1)" - line 415, "pan.___", state 472, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 415, "pan.___", state 472, "else" - line 415, "pan.___", state 475, "(1)" - line 415, "pan.___", state 476, "(1)" - line 415, "pan.___", state 476, "(1)" - line 413, "pan.___", state 481, "((i<2))" - line 413, "pan.___", state 481, "((i>=2))" - line 240, "pan.___", state 487, "(1)" - line 244, "pan.___", state 495, "(1)" - line 244, "pan.___", state 496, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 244, "pan.___", state 496, "else" - line 242, "pan.___", state 501, "((i<1))" - line 242, "pan.___", state 501, "((i>=1))" - line 248, "pan.___", state 507, "(1)" - line 248, "pan.___", state 508, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 248, "pan.___", state 508, "else" - line 252, "pan.___", state 515, "(1)" - line 252, "pan.___", state 516, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 252, "pan.___", state 516, "else" - line 257, "pan.___", state 525, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 257, "pan.___", state 525, "else" - line 422, "pan.___", state 527, "(1)" - line 422, "pan.___", state 527, "(1)" - line 406, "pan.___", state 547, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 565, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 579, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 244, "pan.___", state 605, "(1)" - line 248, "pan.___", state 617, "(1)" - line 252, "pan.___", state 625, "(1)" - line 406, "pan.___", state 658, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 676, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 690, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 244, "pan.___", state 716, "(1)" - line 248, "pan.___", state 728, "(1)" - line 252, "pan.___", state 736, "(1)" - line 406, "pan.___", state 771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 244, "pan.___", state 829, "(1)" - line 248, "pan.___", state 841, "(1)" - line 252, "pan.___", state 849, "(1)" - line 406, "pan.___", state 887, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 905, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 415, "pan.___", state 919, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 244, "pan.___", state 945, "(1)" - line 248, "pan.___", state 957, "(1)" - line 252, "pan.___", state 965, "(1)" - line 263, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 267, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 1033, "(1)" - line 275, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1056, "(1)" - line 244, "pan.___", state 1064, "(1)" - line 248, "pan.___", state 1076, "(1)" - line 252, "pan.___", state 1084, "(1)" - line 263, "pan.___", state 1115, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 267, "pan.___", state 1124, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 1137, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 275, "pan.___", state 1146, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1162, "(1)" - line 244, "pan.___", state 1170, "(1)" - line 248, "pan.___", state 1182, "(1)" - line 252, "pan.___", state 1190, "(1)" - line 267, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 275, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1254, "(1)" - line 244, "pan.___", state 1262, "(1)" - line 248, "pan.___", state 1274, "(1)" - line 252, "pan.___", state 1282, "(1)" - line 263, "pan.___", state 1313, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 267, "pan.___", state 1322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 271, "pan.___", state 1335, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 275, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 240, "pan.___", state 1360, "(1)" - line 244, "pan.___", state 1368, "(1)" - line 248, "pan.___", state 1380, "(1)" - line 252, "pan.___", state 1388, "(1)" - line 1215, "pan.___", state 1404, "-end-" - (110 of 1404 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1280, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 14.8 seconds -pan: rate 49695.746 states/second -pan: avg transition delay 2.5365e-06 usec -cp .input.spin urcu_progress_writer_error.spin.input -cp .input.spin.trail urcu_progress_writer_error.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input deleted file mode 100644 index 7161faf..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input +++ /dev/null @@ -1,1251 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS - -//#define ARCH_ALPHA -#define ARCH_INTEL -//#define ARCH_POWERPC -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Only Alpha has out-of-order cache bank loads. Other architectures (intel, - * powerpc, arm) ensure that dependent reads won't be reordered. c.f. - * http://www.linuxjournal.com/article/8212) -#ifdef ARCH_ALPHA -#define HAVE_OOO_CACHE_READ -#endif - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i) -{ - atomic { - smp_wmb(i); - smp_rmb(i); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i) -#define smp_mb_reader smp_mb(i) -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#ifdef HAVE_OOO_CACHE_READ - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; -#else - smp_rmb(i); -#endif /* HAVE_OOO_CACHE_READ */ - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input.trail deleted file mode 100644 index ee9e4b8..0000000 --- a/formal-model/results/urcu-controldataflow-ipi-intel/urcu_progress_writer_error.spin.input.trail +++ /dev/null @@ -1,1700 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:3993 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SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/DEFINES b/formal-model/results/urcu-controldataflow-ipi/DEFINES deleted file mode 100644 index 980fad6..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/DEFINES +++ /dev/null @@ -1,14 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS diff --git a/formal-model/results/urcu-controldataflow-ipi/Makefile b/formal-model/results/urcu-controldataflow-ipi/Makefile deleted file mode 100644 index de47dff..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/Makefile +++ /dev/null @@ -1,170 +0,0 @@ -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) Mathieu Desnoyers, 2009 -# -# Authors: Mathieu Desnoyers - -#CFLAGS=-DSAFETY -#for multi-core verif, 15.5GB shared mem, use files if full -#CFLAGS=-DHASH64 -DMEMLIM=15500 -DNCORE=2 -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -DMEMLIM=15500 -DNCORE=8 - -#liveness -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -CFLAGS=-DHASH64 - -SPINFILE=urcu.spin - -default: - make urcu_free | tee urcu_free.log - make urcu_free_no_mb | tee urcu_free_no_mb.log - make urcu_free_no_rmb | tee urcu_free_no_rmb.log - make urcu_free_no_wmb | tee urcu_free_no_wmb.log - make urcu_free_single_flip | tee urcu_free_single_flip.log - make urcu_progress_writer | tee urcu_progress_writer.log - make urcu_progress_reader | tee urcu_progress_reader.log - make urcu_progress_writer_error | tee urcu_progress_writer_error.log - make asserts | tee asserts.log - make summary - -#show trail : spin -v -t -N pan.ltl input.spin -# after each individual make. - -summary: - @echo - @echo "Verification summary" - @grep errors: *.log - -asserts: clean - cat DEFINES > .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X .input.spin - gcc -O2 -w ${CFLAGS} -DSAFETY -o pan pan.c - ./pan -v -c1 -X -m10000000 -w20 - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free: clean urcu_free_ltl run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested: clean urcu_free_ltl urcu_free_nested_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested_define: - cp urcu_free_nested.define .input.define - -urcu_free_no_rmb: clean urcu_free_ltl urcu_free_no_rmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_rmb_define: - cp urcu_free_no_rmb.define .input.define - -urcu_free_no_wmb: clean urcu_free_ltl urcu_free_no_wmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_wmb_define: - cp urcu_free_no_wmb.define .input.define - -urcu_free_no_mb: clean urcu_free_ltl urcu_free_no_mb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_mb_define: - cp urcu_free_no_mb.define .input.define - -urcu_free_single_flip: clean urcu_free_ltl urcu_free_single_flip_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_single_flip_define: - cp urcu_free_single_flip.define .input.define - -urcu_free_ltl: - touch .input.define - cat .input.define >> pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl - -# Progress checks - -urcu_progress_writer: clean urcu_progress_writer_ltl \ - urcu_progress_writer_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_define: - cp urcu_progress_writer.define .input.define - -urcu_progress_writer_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_reader: clean urcu_progress_reader_ltl \ - urcu_progress_reader_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_reader_define: - cp urcu_progress_reader.define .input.define - -urcu_progress_reader_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_writer_error: clean urcu_progress_writer_error_ltl \ - urcu_progress_writer_error_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_error_define: - cp urcu_progress_writer_error.define .input.define - -urcu_progress_writer_error_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - - -run_weak_fair: pan - ./pan -a -f -v -c1 -X -m10000000 -w20 - -run: pan - ./pan -a -v -c1 -X -m10000000 -w20 - -pan: pan.c - gcc -O2 -w ${CFLAGS} -o pan pan.c - -pan.c: pan.ltl ${SPINFILE} - cat .input.define > .input.spin - cat DEFINES >> .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X -N pan.ltl .input.spin - -.PHONY: clean default distclean summary -clean: - rm -f pan* trail.out .input.spin* *.spin.trail .input.define -distclean: - rm -f *.trail *.input *.log diff --git a/formal-model/results/urcu-controldataflow-ipi/asserts.log b/formal-model/results/urcu-controldataflow-ipi/asserts.log deleted file mode 100644 index 98a269c..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/asserts.log +++ /dev/null @@ -1,522 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -cat DEFINES > .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w20 -Depth= 5832 States= 1e+06 Transitions= 1.25e+08 Memory= 542.717 t= 123 R= 8e+03 -Depth= 5832 States= 2e+06 Transitions= 4.09e+08 Memory= 618.986 t= 417 R= 5e+03 -Depth= 5832 States= 3e+06 Transitions= 6.64e+08 Memory= 695.256 t= 685 R= 4e+03 -pan: resizing hashtable to -w22.. done -Depth= 5832 States= 4e+06 Transitions= 1.15e+09 Memory= 802.647 t= 1.2e+03 R= 3e+03 -Depth= 5832 States= 5e+06 Transitions= 1.46e+09 Memory= 878.916 t= 1.52e+03 R= 3e+03 -Depth= 5832 States= 6e+06 Transitions= 1.66e+09 Memory= 955.186 t= 1.72e+03 R= 3e+03 -Depth= 5832 States= 7e+06 Transitions= 1.86e+09 Memory= 1031.455 t= 1.93e+03 R= 4e+03 -Depth= 5832 States= 8e+06 Transitions= 2.13e+09 Memory= 1107.822 t= 2.22e+03 R= 4e+03 -Depth= 5832 States= 9e+06 Transitions= 2.38e+09 Memory= 1184.092 t= 2.49e+03 R= 4e+03 -pan: resizing hashtable to -w24.. done -Depth= 5832 States= 1e+07 Transitions= 2.87e+09 Memory= 1384.455 t= 3e+03 R= 3e+03 -Depth= 5832 States= 1.1e+07 Transitions= 3.15e+09 Memory= 1460.725 t= 3.29e+03 R= 3e+03 -Depth= 5832 States= 1.2e+07 Transitions= 3.42e+09 Memory= 1536.994 t= 3.57e+03 R= 3e+03 -Depth= 5832 States= 1.3e+07 Transitions= 3.62e+09 Memory= 1613.361 t= 3.77e+03 R= 3e+03 -Depth= 5832 States= 1.4e+07 Transitions= 3.84e+09 Memory= 1689.631 t= 3.99e+03 R= 4e+03 -Depth= 5832 States= 1.5e+07 Transitions= 4.13e+09 Memory= 1765.901 t= 4.29e+03 R= 3e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim - (none specified) - assertion violations + - cycle checks - (disabled by -DSAFETY) - invalid end states + - -State-vector 72 byte, depth reached 5832, errors: 0 - 15444143 states, stored -4.2527754e+09 states, matched -4.2682195e+09 transitions (= stored+matched) -2.483245e+10 atomic steps -hash conflicts: 2.790927e+09 (resolved) - -Stats on memory usage (in Megabytes): - 1472.868 equivalent memory usage for states (stored*(State-vector + overhead)) - 1214.135 actual memory usage for states (compression: 82.43%) - state-vector as stored = 54 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1799.787 total actual memory usage - -unreached in proctype urcu_reader - line 249, ".input.spin", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 77, "(1)" - line 230, ".input.spin", state 85, "(1)" - line 234, ".input.spin", state 97, "(1)" - line 238, ".input.spin", state 105, "(1)" - line 394, ".input.spin", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 196, "(1)" - line 420, ".input.spin", state 226, "(1)" - line 424, ".input.spin", state 239, "(1)" - line 669, ".input.spin", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 394, ".input.spin", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 332, "(1)" - line 420, ".input.spin", state 362, "(1)" - line 424, ".input.spin", state 375, "(1)" - line 394, ".input.spin", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 461, "(1)" - line 420, ".input.spin", state 491, "(1)" - line 424, ".input.spin", state 504, "(1)" - line 394, ".input.spin", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 529, "(1)" - line 394, ".input.spin", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 530, "else" - line 394, ".input.spin", state 533, "(1)" - line 398, ".input.spin", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 543, "(1)" - line 398, ".input.spin", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 544, "else" - line 398, ".input.spin", state 547, "(1)" - line 398, ".input.spin", state 548, "(1)" - line 398, ".input.spin", state 548, "(1)" - line 396, ".input.spin", state 553, "((i<1))" - line 396, ".input.spin", state 553, "((i>=1))" - line 403, ".input.spin", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 561, "(1)" - line 403, ".input.spin", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 562, "else" - line 403, ".input.spin", state 565, "(1)" - line 403, ".input.spin", state 566, "(1)" - line 403, ".input.spin", state 566, "(1)" - line 407, ".input.spin", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 575, "(1)" - line 407, ".input.spin", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 576, "else" - line 407, ".input.spin", state 579, "(1)" - line 407, ".input.spin", state 580, "(1)" - line 407, ".input.spin", state 580, "(1)" - line 405, ".input.spin", state 585, "((i<2))" - line 405, ".input.spin", state 585, "((i>=2))" - line 411, ".input.spin", state 592, "(1)" - line 411, ".input.spin", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 593, "else" - line 411, ".input.spin", state 596, "(1)" - line 411, ".input.spin", state 597, "(1)" - line 411, ".input.spin", state 597, "(1)" - line 415, ".input.spin", state 605, "(1)" - line 415, ".input.spin", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 606, "else" - line 415, ".input.spin", state 609, "(1)" - line 415, ".input.spin", state 610, "(1)" - line 415, ".input.spin", state 610, "(1)" - line 413, ".input.spin", state 615, "((i<1))" - line 413, ".input.spin", state 615, "((i>=1))" - line 420, ".input.spin", state 622, "(1)" - line 420, ".input.spin", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 623, "else" - line 420, ".input.spin", state 626, "(1)" - line 420, ".input.spin", state 627, "(1)" - line 420, ".input.spin", state 627, "(1)" - line 424, ".input.spin", state 635, "(1)" - line 424, ".input.spin", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 636, "else" - line 424, ".input.spin", state 639, "(1)" - line 424, ".input.spin", state 640, "(1)" - line 424, ".input.spin", state 640, "(1)" - line 422, ".input.spin", state 645, "((i<2))" - line 422, ".input.spin", state 645, "((i>=2))" - line 429, ".input.spin", state 649, "(1)" - line 429, ".input.spin", state 649, "(1)" - line 669, ".input.spin", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 669, ".input.spin", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 669, ".input.spin", state 654, "(1)" - line 394, ".input.spin", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 726, "(1)" - line 420, ".input.spin", state 756, "(1)" - line 424, ".input.spin", state 769, "(1)" - line 394, ".input.spin", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 799, "(1)" - line 394, ".input.spin", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 800, "else" - line 394, ".input.spin", state 803, "(1)" - line 398, ".input.spin", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 813, "(1)" - line 398, ".input.spin", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 814, "else" - line 398, ".input.spin", state 817, "(1)" - line 398, ".input.spin", state 818, "(1)" - line 398, ".input.spin", state 818, "(1)" - line 396, ".input.spin", state 823, "((i<1))" - line 396, ".input.spin", state 823, "((i>=1))" - line 403, ".input.spin", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 831, "(1)" - line 403, ".input.spin", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 832, "else" - line 403, ".input.spin", state 835, "(1)" - line 403, ".input.spin", state 836, "(1)" - line 403, ".input.spin", state 836, "(1)" - line 407, ".input.spin", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 845, "(1)" - line 407, ".input.spin", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 846, "else" - line 407, ".input.spin", state 849, "(1)" - line 407, ".input.spin", state 850, "(1)" - line 407, ".input.spin", state 850, "(1)" - line 405, ".input.spin", state 855, "((i<2))" - line 405, ".input.spin", state 855, "((i>=2))" - line 411, ".input.spin", state 862, "(1)" - line 411, ".input.spin", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 863, "else" - line 411, ".input.spin", state 866, "(1)" - line 411, ".input.spin", state 867, "(1)" - line 411, ".input.spin", state 867, "(1)" - line 415, ".input.spin", state 875, "(1)" - line 415, ".input.spin", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 876, "else" - line 415, ".input.spin", state 879, "(1)" - line 415, ".input.spin", state 880, "(1)" - line 415, ".input.spin", state 880, "(1)" - line 413, ".input.spin", state 885, "((i<1))" - line 413, ".input.spin", state 885, "((i>=1))" - line 420, ".input.spin", state 892, "(1)" - line 420, ".input.spin", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 893, "else" - line 420, ".input.spin", state 896, "(1)" - line 420, ".input.spin", state 897, "(1)" - line 420, ".input.spin", state 897, "(1)" - line 424, ".input.spin", state 905, "(1)" - line 424, ".input.spin", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 906, "else" - line 424, ".input.spin", state 909, "(1)" - line 424, ".input.spin", state 910, "(1)" - line 424, ".input.spin", state 910, "(1)" - line 429, ".input.spin", state 919, "(1)" - line 429, ".input.spin", state 919, "(1)" - line 394, ".input.spin", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 928, "(1)" - line 394, ".input.spin", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 929, "else" - line 394, ".input.spin", state 932, "(1)" - line 398, ".input.spin", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 942, "(1)" - line 398, ".input.spin", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 943, "else" - line 398, ".input.spin", state 946, "(1)" - line 398, ".input.spin", state 947, "(1)" - line 398, ".input.spin", state 947, "(1)" - line 396, ".input.spin", state 952, "((i<1))" - line 396, ".input.spin", state 952, "((i>=1))" - line 403, ".input.spin", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 960, "(1)" - line 403, ".input.spin", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 961, "else" - line 403, ".input.spin", state 964, "(1)" - line 403, ".input.spin", state 965, "(1)" - line 403, ".input.spin", state 965, "(1)" - line 407, ".input.spin", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 974, "(1)" - line 407, ".input.spin", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 975, "else" - line 407, ".input.spin", state 978, "(1)" - line 407, ".input.spin", state 979, "(1)" - line 407, ".input.spin", state 979, "(1)" - line 405, ".input.spin", state 984, "((i<2))" - line 405, ".input.spin", state 984, "((i>=2))" - line 411, ".input.spin", state 991, "(1)" - line 411, ".input.spin", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 992, "else" - line 411, ".input.spin", state 995, "(1)" - line 411, ".input.spin", state 996, "(1)" - line 411, ".input.spin", state 996, "(1)" - line 415, ".input.spin", state 1004, "(1)" - line 415, ".input.spin", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 1005, "else" - line 415, ".input.spin", state 1008, "(1)" - line 415, ".input.spin", state 1009, "(1)" - line 415, ".input.spin", state 1009, "(1)" - line 413, ".input.spin", state 1014, "((i<1))" - line 413, ".input.spin", state 1014, "((i>=1))" - line 420, ".input.spin", state 1021, "(1)" - line 420, ".input.spin", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 1022, "else" - line 420, ".input.spin", state 1025, "(1)" - line 420, ".input.spin", state 1026, "(1)" - line 420, ".input.spin", state 1026, "(1)" - line 424, ".input.spin", state 1034, "(1)" - line 424, ".input.spin", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 1035, "else" - line 424, ".input.spin", state 1038, "(1)" - line 424, ".input.spin", state 1039, "(1)" - line 424, ".input.spin", state 1039, "(1)" - line 422, ".input.spin", state 1044, "((i<2))" - line 422, ".input.spin", state 1044, "((i>=2))" - line 429, ".input.spin", state 1048, "(1)" - line 429, ".input.spin", state 1048, "(1)" - line 677, ".input.spin", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 394, ".input.spin", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1122, "(1)" - line 420, ".input.spin", state 1152, "(1)" - line 424, ".input.spin", state 1165, "(1)" - line 394, ".input.spin", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1254, "(1)" - line 420, ".input.spin", state 1284, "(1)" - line 424, ".input.spin", state 1297, "(1)" - line 394, ".input.spin", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1387, "(1)" - line 420, ".input.spin", state 1417, "(1)" - line 424, ".input.spin", state 1430, "(1)" - line 394, ".input.spin", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1516, "(1)" - line 420, ".input.spin", state 1546, "(1)" - line 424, ".input.spin", state 1559, "(1)" - line 394, ".input.spin", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1650, "(1)" - line 420, ".input.spin", state 1680, "(1)" - line 424, ".input.spin", state 1693, "(1)" - line 394, ".input.spin", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1779, "(1)" - line 420, ".input.spin", state 1809, "(1)" - line 424, ".input.spin", state 1822, "(1)" - line 394, ".input.spin", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1911, "(1)" - line 420, ".input.spin", state 1941, "(1)" - line 424, ".input.spin", state 1954, "(1)" - line 716, ".input.spin", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 394, ".input.spin", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2047, "(1)" - line 420, ".input.spin", state 2077, "(1)" - line 424, ".input.spin", state 2090, "(1)" - line 394, ".input.spin", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2176, "(1)" - line 420, ".input.spin", state 2206, "(1)" - line 424, ".input.spin", state 2219, "(1)" - line 394, ".input.spin", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 2244, "(1)" - line 394, ".input.spin", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 2245, "else" - line 394, ".input.spin", state 2248, "(1)" - line 398, ".input.spin", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 2258, "(1)" - line 398, ".input.spin", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 2259, "else" - line 398, ".input.spin", state 2262, "(1)" - line 398, ".input.spin", state 2263, "(1)" - line 398, ".input.spin", state 2263, "(1)" - line 396, ".input.spin", state 2268, "((i<1))" - line 396, ".input.spin", state 2268, "((i>=1))" - line 403, ".input.spin", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2276, "(1)" - line 403, ".input.spin", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 2277, "else" - line 403, ".input.spin", state 2280, "(1)" - line 403, ".input.spin", state 2281, "(1)" - line 403, ".input.spin", state 2281, "(1)" - line 407, ".input.spin", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2290, "(1)" - line 407, ".input.spin", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 2291, "else" - line 407, ".input.spin", state 2294, "(1)" - line 407, ".input.spin", state 2295, "(1)" - line 407, ".input.spin", state 2295, "(1)" - line 405, ".input.spin", state 2300, "((i<2))" - line 405, ".input.spin", state 2300, "((i>=2))" - line 411, ".input.spin", state 2307, "(1)" - line 411, ".input.spin", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 2308, "else" - line 411, ".input.spin", state 2311, "(1)" - line 411, ".input.spin", state 2312, "(1)" - line 411, ".input.spin", state 2312, "(1)" - line 415, ".input.spin", state 2320, "(1)" - line 415, ".input.spin", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 2321, "else" - line 415, ".input.spin", state 2324, "(1)" - line 415, ".input.spin", state 2325, "(1)" - line 415, ".input.spin", state 2325, "(1)" - line 413, ".input.spin", state 2330, "((i<1))" - line 413, ".input.spin", state 2330, "((i>=1))" - line 420, ".input.spin", state 2337, "(1)" - line 420, ".input.spin", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 2338, "else" - line 420, ".input.spin", state 2341, "(1)" - line 420, ".input.spin", state 2342, "(1)" - line 420, ".input.spin", state 2342, "(1)" - line 424, ".input.spin", state 2350, "(1)" - line 424, ".input.spin", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 2351, "else" - line 424, ".input.spin", state 2354, "(1)" - line 424, ".input.spin", state 2355, "(1)" - line 424, ".input.spin", state 2355, "(1)" - line 422, ".input.spin", state 2360, "((i<2))" - line 422, ".input.spin", state 2360, "((i>=2))" - line 429, ".input.spin", state 2364, "(1)" - line 429, ".input.spin", state 2364, "(1)" - line 716, ".input.spin", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 716, ".input.spin", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 716, ".input.spin", state 2369, "(1)" - line 394, ".input.spin", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2441, "(1)" - line 420, ".input.spin", state 2471, "(1)" - line 424, ".input.spin", state 2484, "(1)" - line 394, ".input.spin", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2576, "(1)" - line 420, ".input.spin", state 2606, "(1)" - line 424, ".input.spin", state 2619, "(1)" - line 394, ".input.spin", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2705, "(1)" - line 420, ".input.spin", state 2735, "(1)" - line 424, ".input.spin", state 2748, "(1)" - line 226, ".input.spin", state 2781, "(1)" - line 234, ".input.spin", state 2801, "(1)" - line 238, ".input.spin", state 2809, "(1)" - line 226, ".input.spin", state 2824, "(1)" - line 234, ".input.spin", state 2844, "(1)" - line 238, ".input.spin", state 2852, "(1)" - line 876, ".input.spin", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 394, ".input.spin", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 83, "(1)" - line 415, ".input.spin", state 96, "(1)" - line 420, ".input.spin", state 113, "(1)" - line 249, ".input.spin", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 276, "(1)" - line 415, ".input.spin", state 289, "(1)" - line 420, ".input.spin", state 306, "(1)" - line 424, ".input.spin", state 319, "(1)" - line 398, ".input.spin", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 420, "(1)" - line 420, ".input.spin", state 437, "(1)" - line 424, ".input.spin", state 450, "(1)" - line 398, ".input.spin", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 558, "(1)" - line 420, ".input.spin", state 575, "(1)" - line 424, ".input.spin", state 588, "(1)" - line 398, ".input.spin", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 687, "(1)" - line 420, ".input.spin", state 704, "(1)" - line 424, ".input.spin", state 717, "(1)" - line 398, ".input.spin", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 818, "(1)" - line 420, ".input.spin", state 835, "(1)" - line 424, ".input.spin", state 848, "(1)" - line 249, ".input.spin", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 927, "(1)" - line 261, ".input.spin", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 950, "(1)" - line 230, ".input.spin", state 958, "(1)" - line 234, ".input.spin", state 970, "(1)" - line 238, ".input.spin", state 978, "(1)" - line 249, ".input.spin", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1056, "(1)" - line 230, ".input.spin", state 1064, "(1)" - line 234, ".input.spin", state 1076, "(1)" - line 238, ".input.spin", state 1084, "(1)" - line 253, ".input.spin", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1148, "(1)" - line 230, ".input.spin", state 1156, "(1)" - line 234, ".input.spin", state 1168, "(1)" - line 238, ".input.spin", state 1176, "(1)" - line 249, ".input.spin", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1254, "(1)" - line 230, ".input.spin", state 1262, "(1)" - line 234, ".input.spin", state 1274, "(1)" - line 238, ".input.spin", state 1282, "(1)" - line 253, ".input.spin", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1346, "(1)" - line 230, ".input.spin", state 1354, "(1)" - line 234, ".input.spin", state 1366, "(1)" - line 238, ".input.spin", state 1374, "(1)" - line 249, ".input.spin", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1452, "(1)" - line 230, ".input.spin", state 1460, "(1)" - line 234, ".input.spin", state 1472, "(1)" - line 238, ".input.spin", state 1480, "(1)" - line 253, ".input.spin", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1544, "(1)" - line 230, ".input.spin", state 1552, "(1)" - line 234, ".input.spin", state 1564, "(1)" - line 238, ".input.spin", state 1572, "(1)" - line 249, ".input.spin", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1650, "(1)" - line 230, ".input.spin", state 1658, "(1)" - line 234, ".input.spin", state 1670, "(1)" - line 238, ".input.spin", state 1678, "(1)" - line 1203, ".input.spin", state 1694, "-end-" - (103 of 1694 states) -unreached in proctype :init: - (0 of 78 states) - -pan: elapsed time 4.43e+03 seconds -pan: rate 3486.0658 states/second -pan: avg transition delay 1.038e-06 usec -cp .input.spin asserts.spin.input -cp .input.spin.trail asserts.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/asserts.spin.input b/formal-model/results/urcu-controldataflow-ipi/asserts.spin.input deleted file mode 100644 index 4640ac9..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/asserts.spin.input +++ /dev/null @@ -1,1239 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/references.txt b/formal-model/results/urcu-controldataflow-ipi/references.txt deleted file mode 100644 index 72c67a2..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/references.txt +++ /dev/null @@ -1,13 +0,0 @@ -http://spinroot.com/spin/Man/ltl.html -http://en.wikipedia.org/wiki/Linear_temporal_logic -http://www.dcs.gla.ac.uk/~muffy/MRS4-2002/lect11.ppt - -http://www.lsv.ens-cachan.fr/~gastin/ltl2ba/index.php -http://spinroot.com/spin/Man/index.html -http://spinroot.com/spin/Man/promela.html - -LTL vs CTL : - -http://spinroot.com/spin/Doc/course/lecture12.pdf p. 9, p. 15, p. 18 -http://www-i2.informatik.rwth-aachen.de/i2/fileadmin/user_upload/documents/Introduction_to_Model_Checking/mc_lec18.pdf - (downloaded) diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu.sh b/formal-model/results/urcu-controldataflow-ipi/urcu.sh deleted file mode 100644 index 65ff517..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu.sh +++ /dev/null @@ -1,29 +0,0 @@ -#!/bin/sh -# -# Compiles and runs the urcu.spin Promela model. -# -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) IBM Corporation, 2009 -# Mathieu Desnoyers, 2009 -# -# Authors: Paul E. McKenney -# Mathieu Desnoyers - -# Basic execution, without LTL clauses. See Makefile. - -spin -a urcu.spin -cc -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w21 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu.spin b/formal-model/results/urcu-controldataflow-ipi/urcu.spin deleted file mode 100644 index 4fe6b9e..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu.spin +++ /dev/null @@ -1,1225 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu.spin.bkp.b4ptr b/formal-model/results/urcu-controldataflow-ipi/urcu.spin.bkp.b4ptr deleted file mode 100644 index 6670f3e..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu.spin.bkp.b4ptr +++ /dev/null @@ -1,1123 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bit { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bit cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * Busy-looping waiting for other barrier requests is not considered as - * non-progress. - */ -#ifdef READER_PROGRESS -progress_reader2: -#endif -#ifdef WRITER_PROGRESS -//progress_writer_from_reader1: -#endif - skip; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -//progress_writer_from_reader2: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, wmp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only two readers */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* pointer generation */ -DECLARE_CACHED_VAR(byte, generation_ptr); - -byte last_free_gen = 0; -bit free_done = 0; -byte read_generation[NR_READERS]; -bit data_access[NR_READERS]; - -bit write_lock = 0; - -bit init_done = 0; - -bit sighand_exec = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - ooo_mem(i); - goto non_atomic; -non_atomic_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - ooo_mem(i); - goto non_atomic2; -non_atomic2_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -non_atomic: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic_end; -non_atomic2: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_PROC_FIRST_MB (1 << 1) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 2) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 3) -#define WRITE_PROC_FIRST_WAIT (1 << 4) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 5) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 6) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 7) -#define WRITE_PROC_SECOND_WAIT (1 << 8) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 9) - -#define WRITE_PROC_SECOND_MB (1 << 10) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 11) - 1) - -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte old_gen; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (READ_CACHED_VAR(generation_ptr) < 5) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - ooo_mem(i); - atomic { - old_gen = READ_CACHED_VAR(generation_ptr); - WRITE_CACHED_VAR(generation_ptr, old_gen + 1); - } - ooo_mem(i); - - do - :: 1 -> - atomic { - if - :: write_lock == 0 -> - write_lock = 1; - break; - :: else -> - skip; - fi; - } - od; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - - write_lock = 0; - /* free-up step, e.g., kfree(). */ - atomic { - last_free_gen = old_gen; - free_done = 1; - } - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(generation_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - read_generation[i] = 1; - data_access[i] = 0; - i++; - :: i >= NR_READERS -> break - od; - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free.log b/formal-model/results/urcu-controldataflow-ipi/urcu_free.log deleted file mode 100644 index bcad427..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free.log +++ /dev/null @@ -1,533 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1257) -Depth= 7192 States= 1e+06 Transitions= 1.25e+08 Memory= 550.432 t= 156 R= 6e+03 -Depth= 7192 States= 2e+06 Transitions= 4.1e+08 Memory= 634.318 t= 524 R= 4e+03 -Depth= 7192 States= 3e+06 Transitions= 6.64e+08 Memory= 718.303 t= 857 R= 3e+03 -pan: resizing hashtable to -w22.. done -Depth= 7192 States= 4e+06 Transitions= 1.15e+09 Memory= 833.311 t= 1.5e+03 R= 3e+03 -Depth= 7192 States= 5e+06 Transitions= 1.46e+09 Memory= 917.295 t= 1.9e+03 R= 3e+03 -Depth= 7192 States= 6e+06 Transitions= 1.66e+09 Memory= 1001.279 t= 2.15e+03 R= 3e+03 -Depth= 7192 States= 7e+06 Transitions= 1.86e+09 Memory= 1085.264 t= 2.42e+03 R= 3e+03 -Depth= 7192 States= 8e+06 Transitions= 2.13e+09 Memory= 1169.151 t= 2.78e+03 R= 3e+03 -Depth= 7192 States= 9e+06 Transitions= 2.38e+09 Memory= 1253.135 t= 3.1e+03 R= 3e+03 -pan: resizing hashtable to -w24.. done -Depth= 7192 States= 1e+07 Transitions= 2.87e+09 Memory= 1461.115 t= 3.74e+03 R= 3e+03 -Depth= 7192 States= 1.1e+07 Transitions= 3.15e+09 Memory= 1545.100 t= 4.1e+03 R= 3e+03 -Depth= 7192 States= 1.2e+07 Transitions= 3.42e+09 Memory= 1629.084 t= 4.46e+03 R= 3e+03 -Depth= 7192 States= 1.3e+07 Transitions= 3.62e+09 Memory= 1713.068 t= 4.71e+03 R= 3e+03 -Depth= 7192 States= 1.4e+07 Transitions= 3.84e+09 Memory= 1797.053 t= 4.98e+03 R= 3e+03 -Depth= 7192 States= 1.5e+07 Transitions= 4.13e+09 Memory= 1881.037 t= 5.36e+03 R= 3e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 7192, errors: 0 - 15444143 states, stored -4.2528076e+09 states, matched -4.2682517e+09 transitions (= stored+matched) -2.483245e+10 atomic steps -hash conflicts: 2.7880402e+09 (resolved) - -Stats on memory usage (in Megabytes): - 1708.527 equivalent memory usage for states (stored*(State-vector + overhead)) - 1333.263 actual memory usage for states (compression: 78.04%) - state-vector as stored = 63 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1918.244 total actual memory usage - -unreached in proctype urcu_reader - line 249, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 77, "(1)" - line 230, "pan.___", state 85, "(1)" - line 234, "pan.___", state 97, "(1)" - line 238, "pan.___", state 105, "(1)" - line 394, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 196, "(1)" - line 420, "pan.___", state 226, "(1)" - line 424, "pan.___", state 239, "(1)" - line 669, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 394, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 332, "(1)" - line 420, "pan.___", state 362, "(1)" - line 424, "pan.___", state 375, "(1)" - line 394, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 461, "(1)" - line 420, "pan.___", state 491, "(1)" - line 424, "pan.___", state 504, "(1)" - line 394, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 529, "(1)" - line 394, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 530, "else" - line 394, "pan.___", state 533, "(1)" - line 398, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 543, "(1)" - line 398, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 544, "else" - line 398, "pan.___", state 547, "(1)" - line 398, "pan.___", state 548, "(1)" - line 398, "pan.___", state 548, "(1)" - line 396, "pan.___", state 553, "((i<1))" - line 396, "pan.___", state 553, "((i>=1))" - line 403, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 561, "(1)" - line 403, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 562, "else" - line 403, "pan.___", state 565, "(1)" - line 403, "pan.___", state 566, "(1)" - line 403, "pan.___", state 566, "(1)" - line 407, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 575, "(1)" - line 407, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 576, "else" - line 407, "pan.___", state 579, "(1)" - line 407, "pan.___", state 580, "(1)" - line 407, "pan.___", state 580, "(1)" - line 405, "pan.___", state 585, "((i<2))" - line 405, "pan.___", state 585, "((i>=2))" - line 411, "pan.___", state 592, "(1)" - line 411, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 593, "else" - line 411, "pan.___", state 596, "(1)" - line 411, "pan.___", state 597, "(1)" - line 411, "pan.___", state 597, "(1)" - line 415, "pan.___", state 605, "(1)" - line 415, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 606, "else" - line 415, "pan.___", state 609, "(1)" - line 415, "pan.___", state 610, "(1)" - line 415, "pan.___", state 610, "(1)" - line 413, "pan.___", state 615, "((i<1))" - line 413, "pan.___", state 615, "((i>=1))" - line 420, "pan.___", state 622, "(1)" - line 420, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 623, "else" - line 420, "pan.___", state 626, "(1)" - line 420, "pan.___", state 627, "(1)" - line 420, "pan.___", state 627, "(1)" - line 424, "pan.___", state 635, "(1)" - line 424, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 636, "else" - line 424, "pan.___", state 639, "(1)" - line 424, "pan.___", state 640, "(1)" - line 424, "pan.___", state 640, "(1)" - line 422, "pan.___", state 645, "((i<2))" - line 422, "pan.___", state 645, "((i>=2))" - line 429, "pan.___", state 649, "(1)" - line 429, "pan.___", state 649, "(1)" - line 669, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 669, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 669, "pan.___", state 654, "(1)" - line 394, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 726, "(1)" - line 420, "pan.___", state 756, "(1)" - line 424, "pan.___", state 769, "(1)" - line 394, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 799, "(1)" - line 394, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 800, "else" - line 394, "pan.___", state 803, "(1)" - line 398, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 813, "(1)" - line 398, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 814, "else" - line 398, "pan.___", state 817, "(1)" - line 398, "pan.___", state 818, "(1)" - line 398, "pan.___", state 818, "(1)" - line 396, "pan.___", state 823, "((i<1))" - line 396, "pan.___", state 823, "((i>=1))" - line 403, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 831, "(1)" - line 403, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 832, "else" - line 403, "pan.___", state 835, "(1)" - line 403, "pan.___", state 836, "(1)" - line 403, "pan.___", state 836, "(1)" - line 407, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 845, "(1)" - line 407, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 846, "else" - line 407, "pan.___", state 849, "(1)" - line 407, "pan.___", state 850, "(1)" - line 407, "pan.___", state 850, "(1)" - line 405, "pan.___", state 855, "((i<2))" - line 405, "pan.___", state 855, "((i>=2))" - line 411, "pan.___", state 862, "(1)" - line 411, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 863, "else" - line 411, "pan.___", state 866, "(1)" - line 411, "pan.___", state 867, "(1)" - line 411, "pan.___", state 867, "(1)" - line 415, "pan.___", state 875, "(1)" - line 415, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 876, "else" - line 415, "pan.___", state 879, "(1)" - line 415, "pan.___", state 880, "(1)" - line 415, "pan.___", state 880, "(1)" - line 413, "pan.___", state 885, "((i<1))" - line 413, "pan.___", state 885, "((i>=1))" - line 420, "pan.___", state 892, "(1)" - line 420, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 893, "else" - line 420, "pan.___", state 896, "(1)" - line 420, "pan.___", state 897, "(1)" - line 420, "pan.___", state 897, "(1)" - line 424, "pan.___", state 905, "(1)" - line 424, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 906, "else" - line 424, "pan.___", state 909, "(1)" - line 424, "pan.___", state 910, "(1)" - line 424, "pan.___", state 910, "(1)" - line 429, "pan.___", state 919, "(1)" - line 429, "pan.___", state 919, "(1)" - line 394, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 928, "(1)" - line 394, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 929, "else" - line 394, "pan.___", state 932, "(1)" - line 398, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 942, "(1)" - line 398, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 943, "else" - line 398, "pan.___", state 946, "(1)" - line 398, "pan.___", state 947, "(1)" - line 398, "pan.___", state 947, "(1)" - line 396, "pan.___", state 952, "((i<1))" - line 396, "pan.___", state 952, "((i>=1))" - line 403, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 960, "(1)" - line 403, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 961, "else" - line 403, "pan.___", state 964, "(1)" - line 403, "pan.___", state 965, "(1)" - line 403, "pan.___", state 965, "(1)" - line 407, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 974, "(1)" - line 407, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 975, "else" - line 407, "pan.___", state 978, "(1)" - line 407, "pan.___", state 979, "(1)" - line 407, "pan.___", state 979, "(1)" - line 405, "pan.___", state 984, "((i<2))" - line 405, "pan.___", state 984, "((i>=2))" - line 411, "pan.___", state 991, "(1)" - line 411, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 992, "else" - line 411, "pan.___", state 995, "(1)" - line 411, "pan.___", state 996, "(1)" - line 411, "pan.___", state 996, "(1)" - line 415, "pan.___", state 1004, "(1)" - line 415, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 1005, "else" - line 415, "pan.___", state 1008, "(1)" - line 415, "pan.___", state 1009, "(1)" - line 415, "pan.___", state 1009, "(1)" - line 413, "pan.___", state 1014, "((i<1))" - line 413, "pan.___", state 1014, "((i>=1))" - line 420, "pan.___", state 1021, "(1)" - line 420, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 1022, "else" - line 420, "pan.___", state 1025, "(1)" - line 420, "pan.___", state 1026, "(1)" - line 420, "pan.___", state 1026, "(1)" - line 424, "pan.___", state 1034, "(1)" - line 424, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 1035, "else" - line 424, "pan.___", state 1038, "(1)" - line 424, "pan.___", state 1039, "(1)" - line 424, "pan.___", state 1039, "(1)" - line 422, "pan.___", state 1044, "((i<2))" - line 422, "pan.___", state 1044, "((i>=2))" - line 429, "pan.___", state 1048, "(1)" - line 429, "pan.___", state 1048, "(1)" - line 677, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 394, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1122, "(1)" - line 420, "pan.___", state 1152, "(1)" - line 424, "pan.___", state 1165, "(1)" - line 394, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1254, "(1)" - line 420, "pan.___", state 1284, "(1)" - line 424, "pan.___", state 1297, "(1)" - line 394, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1387, "(1)" - line 420, "pan.___", state 1417, "(1)" - line 424, "pan.___", state 1430, "(1)" - line 394, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1516, "(1)" - line 420, "pan.___", state 1546, "(1)" - line 424, "pan.___", state 1559, "(1)" - line 394, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1650, "(1)" - line 420, "pan.___", state 1680, "(1)" - line 424, "pan.___", state 1693, "(1)" - line 394, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1779, "(1)" - line 420, "pan.___", state 1809, "(1)" - line 424, "pan.___", state 1822, "(1)" - line 394, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1911, "(1)" - line 420, "pan.___", state 1941, "(1)" - line 424, "pan.___", state 1954, "(1)" - line 716, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 394, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2047, "(1)" - line 420, "pan.___", state 2077, "(1)" - line 424, "pan.___", state 2090, "(1)" - line 394, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2176, "(1)" - line 420, "pan.___", state 2206, "(1)" - line 424, "pan.___", state 2219, "(1)" - line 394, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 2244, "(1)" - line 394, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 2245, "else" - line 394, "pan.___", state 2248, "(1)" - line 398, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 2258, "(1)" - line 398, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 2259, "else" - line 398, "pan.___", state 2262, "(1)" - line 398, "pan.___", state 2263, "(1)" - line 398, "pan.___", state 2263, "(1)" - line 396, "pan.___", state 2268, "((i<1))" - line 396, "pan.___", state 2268, "((i>=1))" - line 403, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2276, "(1)" - line 403, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 2277, "else" - line 403, "pan.___", state 2280, "(1)" - line 403, "pan.___", state 2281, "(1)" - line 403, "pan.___", state 2281, "(1)" - line 407, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2290, "(1)" - line 407, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 2291, "else" - line 407, "pan.___", state 2294, "(1)" - line 407, "pan.___", state 2295, "(1)" - line 407, "pan.___", state 2295, "(1)" - line 405, "pan.___", state 2300, "((i<2))" - line 405, "pan.___", state 2300, "((i>=2))" - line 411, "pan.___", state 2307, "(1)" - line 411, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 2308, "else" - line 411, "pan.___", state 2311, "(1)" - line 411, "pan.___", state 2312, "(1)" - line 411, "pan.___", state 2312, "(1)" - line 415, "pan.___", state 2320, "(1)" - line 415, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 2321, "else" - line 415, "pan.___", state 2324, "(1)" - line 415, "pan.___", state 2325, "(1)" - line 415, "pan.___", state 2325, "(1)" - line 413, "pan.___", state 2330, "((i<1))" - line 413, "pan.___", state 2330, "((i>=1))" - line 420, "pan.___", state 2337, "(1)" - line 420, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 2338, "else" - line 420, "pan.___", state 2341, "(1)" - line 420, "pan.___", state 2342, "(1)" - line 420, "pan.___", state 2342, "(1)" - line 424, "pan.___", state 2350, "(1)" - line 424, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 2351, "else" - line 424, "pan.___", state 2354, "(1)" - line 424, "pan.___", state 2355, "(1)" - line 424, "pan.___", state 2355, "(1)" - line 422, "pan.___", state 2360, "((i<2))" - line 422, "pan.___", state 2360, "((i>=2))" - line 429, "pan.___", state 2364, "(1)" - line 429, "pan.___", state 2364, "(1)" - line 716, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 716, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 716, "pan.___", state 2369, "(1)" - line 394, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2441, "(1)" - line 420, "pan.___", state 2471, "(1)" - line 424, "pan.___", state 2484, "(1)" - line 394, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2576, "(1)" - line 420, "pan.___", state 2606, "(1)" - line 424, "pan.___", state 2619, "(1)" - line 394, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2705, "(1)" - line 420, "pan.___", state 2735, "(1)" - line 424, "pan.___", state 2748, "(1)" - line 226, "pan.___", state 2781, "(1)" - line 234, "pan.___", state 2801, "(1)" - line 238, "pan.___", state 2809, "(1)" - line 226, "pan.___", state 2824, "(1)" - line 234, "pan.___", state 2844, "(1)" - line 238, "pan.___", state 2852, "(1)" - line 876, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 394, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 83, "(1)" - line 415, "pan.___", state 96, "(1)" - line 420, "pan.___", state 113, "(1)" - line 249, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 276, "(1)" - line 415, "pan.___", state 289, "(1)" - line 420, "pan.___", state 306, "(1)" - line 424, "pan.___", state 319, "(1)" - line 398, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 420, "(1)" - line 420, "pan.___", state 437, "(1)" - line 424, "pan.___", state 450, "(1)" - line 398, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 558, "(1)" - line 420, "pan.___", state 575, "(1)" - line 424, "pan.___", state 588, "(1)" - line 398, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 687, "(1)" - line 420, "pan.___", state 704, "(1)" - line 424, "pan.___", state 717, "(1)" - line 398, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 818, "(1)" - line 420, "pan.___", state 835, "(1)" - line 424, "pan.___", state 848, "(1)" - line 249, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 927, "(1)" - line 261, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 950, "(1)" - line 230, "pan.___", state 958, "(1)" - line 234, "pan.___", state 970, "(1)" - line 238, "pan.___", state 978, "(1)" - line 249, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1056, "(1)" - line 230, "pan.___", state 1064, "(1)" - line 234, "pan.___", state 1076, "(1)" - line 238, "pan.___", state 1084, "(1)" - line 253, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1148, "(1)" - line 230, "pan.___", state 1156, "(1)" - line 234, "pan.___", state 1168, "(1)" - line 238, "pan.___", state 1176, "(1)" - line 249, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1254, "(1)" - line 230, "pan.___", state 1262, "(1)" - line 234, "pan.___", state 1274, "(1)" - line 238, "pan.___", state 1282, "(1)" - line 253, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1346, "(1)" - line 230, "pan.___", state 1354, "(1)" - line 234, "pan.___", state 1366, "(1)" - line 238, "pan.___", state 1374, "(1)" - line 249, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1452, "(1)" - line 230, "pan.___", state 1460, "(1)" - line 234, "pan.___", state 1472, "(1)" - line 238, "pan.___", state 1480, "(1)" - line 253, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1544, "(1)" - line 230, "pan.___", state 1552, "(1)" - line 234, "pan.___", state 1564, "(1)" - line 238, "pan.___", state 1572, "(1)" - line 249, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1650, "(1)" - line 230, "pan.___", state 1658, "(1)" - line 234, "pan.___", state 1670, "(1)" - line 238, "pan.___", state 1678, "(1)" - line 1203, "pan.___", state 1694, "-end-" - (103 of 1694 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1262, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 5.54e+03 seconds -pan: rate 2789.4684 states/second -pan: avg transition delay 1.2972e-06 usec -cp .input.spin urcu_free.spin.input -cp .input.spin.trail urcu_free.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free.ltl b/formal-model/results/urcu-controldataflow-ipi/urcu_free.ltl deleted file mode 100644 index 6be1be9..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free.ltl +++ /dev/null @@ -1 +0,0 @@ -[] (!read_poison) diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input deleted file mode 100644 index 4640ac9..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input +++ /dev/null @@ -1,1239 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input.trail deleted file mode 100644 index 011045f..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free.spin.input.trail +++ /dev/null @@ -1,2598 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4863 -2:3:4786 -3:3:4789 -4:3:4789 -5:3:4792 -6:3:4800 -7:3:4800 -8:3:4803 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-2567:1:1326 -2568:1:1327 -2569:1:1335 -2570:1:1336 -2571:1:1340 -2572:1:1341 -2573:1:1335 -2574:1:1336 -2575:1:1340 -2576:1:1341 -2577:1:1349 -2578:1:1354 -2579:1:1355 -2580:1:1366 -2581:1:1367 -2582:1:1368 -2583:1:1379 -2584:1:1384 -2585:1:1385 -2586:1:1396 -2587:1:1397 -2588:1:1398 -2589:1:1396 -2590:1:1404 -2591:1:1405 -2592:1:1409 -2593:0:4861 -2594:1:11 -2595:0:4867 -2596:0:4863 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_nested.define b/formal-model/results/urcu-controldataflow-ipi/urcu_free_nested.define deleted file mode 100644 index 0fb59bd..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_nested.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_NEST_LEVEL 2 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.define b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.define deleted file mode 100644 index d99d793..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_MB diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.log b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.log deleted file mode 100644 index 1446ff9..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.log +++ /dev/null @@ -1,874 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_mb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -pan: claim violated! (at depth 1420) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 5697, errors: 1 - 552184 states, stored - 73251405 states, matched - 73803589 transitions (= stored+matched) -4.1259494e+08 atomic steps -hash conflicts: 9982809 (resolved) - -Stats on memory usage (in Megabytes): - 61.086 equivalent memory usage for states (stored*(State-vector + overhead)) - 47.033 actual memory usage for states (compression: 76.99%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 512.736 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 34, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 56, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 65, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 81, "(1)" - line 231, "pan.___", state 89, "(1)" - line 235, "pan.___", state 101, "(1)" - line 239, "pan.___", state 109, "(1)" - line 395, "pan.___", state 135, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 167, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 181, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 200, "(1)" - line 421, "pan.___", state 230, "(1)" - line 425, "pan.___", state 243, "(1)" - line 679, "pan.___", state 264, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 271, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 303, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 317, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 336, "(1)" - line 421, "pan.___", state 366, "(1)" - line 425, "pan.___", state 379, "(1)" - line 395, "pan.___", state 400, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 432, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 446, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 465, "(1)" - line 421, "pan.___", state 495, "(1)" - line 425, "pan.___", state 508, "(1)" - line 395, "pan.___", state 531, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 533, "(1)" - line 395, "pan.___", state 534, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 534, "else" - line 395, "pan.___", state 537, "(1)" - line 399, "pan.___", state 545, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 548, "else" - line 399, "pan.___", state 551, "(1)" - line 399, "pan.___", state 552, "(1)" - line 399, "pan.___", state 552, "(1)" - line 397, "pan.___", state 557, "((i<1))" - line 397, "pan.___", state 557, "((i>=1))" - line 404, "pan.___", state 563, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 566, "else" - line 404, "pan.___", state 569, "(1)" - line 404, "pan.___", state 570, "(1)" - line 404, "pan.___", state 570, "(1)" - line 408, "pan.___", state 577, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 580, "else" - line 408, "pan.___", state 583, "(1)" - line 408, "pan.___", state 584, "(1)" - line 408, "pan.___", state 584, "(1)" - line 406, "pan.___", state 589, "((i<2))" - line 406, "pan.___", state 589, "((i>=2))" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 597, "else" - line 412, "pan.___", state 600, "(1)" - line 412, "pan.___", state 601, "(1)" - line 412, "pan.___", state 601, "(1)" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 610, "else" - line 416, "pan.___", state 613, "(1)" - line 416, "pan.___", state 614, "(1)" - line 416, "pan.___", state 614, "(1)" - line 414, "pan.___", state 619, "((i<1))" - line 414, "pan.___", state 619, "((i>=1))" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 627, "else" - line 421, "pan.___", state 630, "(1)" - line 421, "pan.___", state 631, "(1)" - line 421, "pan.___", state 631, "(1)" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 640, "else" - line 425, "pan.___", state 643, "(1)" - line 425, "pan.___", state 644, "(1)" - line 425, "pan.___", state 644, "(1)" - line 423, "pan.___", state 649, "((i<2))" - line 423, "pan.___", state 649, "((i>=2))" - line 430, "pan.___", state 653, "(1)" - line 430, "pan.___", state 653, "(1)" - line 679, "pan.___", state 656, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 679, "pan.___", state 657, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 679, "pan.___", state 658, "(1)" - line 395, "pan.___", state 665, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 697, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 711, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 730, "(1)" - line 421, "pan.___", state 760, "(1)" - line 425, "pan.___", state 773, "(1)" - line 395, "pan.___", state 801, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 803, "(1)" - line 395, "pan.___", state 804, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 804, "else" - line 395, "pan.___", state 807, "(1)" - line 399, "pan.___", state 815, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 818, "else" - line 399, "pan.___", state 821, "(1)" - line 399, "pan.___", state 822, "(1)" - line 399, "pan.___", state 822, "(1)" - line 397, "pan.___", state 827, "((i<1))" - line 397, "pan.___", state 827, "((i>=1))" - line 404, "pan.___", state 833, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 836, "else" - line 404, "pan.___", state 839, "(1)" - line 404, "pan.___", state 840, "(1)" - line 404, "pan.___", state 840, "(1)" - line 408, "pan.___", state 847, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 850, "else" - line 408, "pan.___", state 853, "(1)" - line 408, "pan.___", state 854, "(1)" - line 408, "pan.___", state 854, "(1)" - line 406, "pan.___", state 859, "((i<2))" - line 406, "pan.___", state 859, "((i>=2))" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 867, "else" - line 412, "pan.___", state 870, "(1)" - line 412, "pan.___", state 871, "(1)" - line 412, "pan.___", state 871, "(1)" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 880, "else" - line 416, "pan.___", state 883, "(1)" - line 416, "pan.___", state 884, "(1)" - line 416, "pan.___", state 884, "(1)" - line 414, "pan.___", state 889, "((i<1))" - line 414, "pan.___", state 889, "((i>=1))" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 897, "else" - line 421, "pan.___", state 900, "(1)" - line 421, "pan.___", state 901, "(1)" - line 421, "pan.___", state 901, "(1)" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 910, "else" - line 425, "pan.___", state 913, "(1)" - line 425, "pan.___", state 914, "(1)" - line 425, "pan.___", state 914, "(1)" - line 430, "pan.___", state 923, "(1)" - line 430, "pan.___", state 923, "(1)" - line 395, "pan.___", state 930, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 932, "(1)" - line 395, "pan.___", state 933, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 933, "else" - line 395, "pan.___", state 936, "(1)" - line 399, "pan.___", state 944, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 947, "else" - line 399, "pan.___", state 950, "(1)" - line 399, "pan.___", state 951, "(1)" - line 399, "pan.___", state 951, "(1)" - line 397, "pan.___", state 956, "((i<1))" - line 397, "pan.___", state 956, "((i>=1))" - line 404, "pan.___", state 962, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 965, "else" - line 404, "pan.___", state 968, "(1)" - line 404, "pan.___", state 969, "(1)" - line 404, "pan.___", state 969, "(1)" - line 408, "pan.___", state 976, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 979, "else" - line 408, "pan.___", state 982, "(1)" - line 408, "pan.___", state 983, "(1)" - line 408, "pan.___", state 983, "(1)" - line 406, "pan.___", state 988, "((i<2))" - line 406, "pan.___", state 988, "((i>=2))" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 996, "else" - line 412, "pan.___", state 999, "(1)" - line 412, "pan.___", state 1000, "(1)" - line 412, "pan.___", state 1000, "(1)" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1009, "else" - line 416, "pan.___", state 1012, "(1)" - line 416, "pan.___", state 1013, "(1)" - line 416, "pan.___", state 1013, "(1)" - line 414, "pan.___", state 1018, "((i<1))" - line 414, "pan.___", state 1018, "((i>=1))" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1026, "else" - line 421, "pan.___", state 1029, "(1)" - line 421, "pan.___", state 1030, "(1)" - line 421, "pan.___", state 1030, "(1)" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1039, "else" - line 425, "pan.___", state 1042, "(1)" - line 425, "pan.___", state 1043, "(1)" - line 425, "pan.___", state 1043, "(1)" - line 423, "pan.___", state 1048, "((i<2))" - line 423, "pan.___", state 1048, "((i>=2))" - line 430, "pan.___", state 1052, "(1)" - line 430, "pan.___", state 1052, "(1)" - line 687, "pan.___", state 1056, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1061, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1093, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1107, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1126, "(1)" - line 421, "pan.___", state 1156, "(1)" - line 425, "pan.___", state 1169, "(1)" - line 395, "pan.___", state 1193, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1225, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1258, "(1)" - line 421, "pan.___", state 1288, "(1)" - line 425, "pan.___", state 1301, "(1)" - line 395, "pan.___", state 1326, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1358, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1372, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1391, "(1)" - line 421, "pan.___", state 1421, "(1)" - line 425, "pan.___", state 1434, "(1)" - line 395, "pan.___", state 1455, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1487, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1501, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1520, "(1)" - line 421, "pan.___", state 1550, "(1)" - line 425, "pan.___", state 1563, "(1)" - line 395, "pan.___", state 1589, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1621, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1654, "(1)" - line 421, "pan.___", state 1684, "(1)" - line 425, "pan.___", state 1697, "(1)" - line 395, "pan.___", state 1718, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1750, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1764, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1783, "(1)" - line 421, "pan.___", state 1813, "(1)" - line 425, "pan.___", state 1826, "(1)" - line 395, "pan.___", state 1850, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1882, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1896, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1915, "(1)" - line 421, "pan.___", state 1945, "(1)" - line 425, "pan.___", state 1958, "(1)" - line 726, "pan.___", state 1979, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1986, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2018, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2032, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2051, "(1)" - line 421, "pan.___", state 2081, "(1)" - line 425, "pan.___", state 2094, "(1)" - line 395, "pan.___", state 2115, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2147, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2161, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2180, "(1)" - line 421, "pan.___", state 2210, "(1)" - line 425, "pan.___", state 2223, "(1)" - line 395, "pan.___", state 2246, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2248, "(1)" - line 395, "pan.___", state 2249, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2249, "else" - line 395, "pan.___", state 2252, "(1)" - line 399, "pan.___", state 2260, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2263, "else" - line 399, "pan.___", state 2266, "(1)" - line 399, "pan.___", state 2267, "(1)" - line 399, "pan.___", state 2267, "(1)" - line 397, "pan.___", state 2272, "((i<1))" - line 397, "pan.___", state 2272, "((i>=1))" - line 404, "pan.___", state 2278, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2281, "else" - line 404, "pan.___", state 2284, "(1)" - line 404, "pan.___", state 2285, "(1)" - line 404, "pan.___", state 2285, "(1)" - line 408, "pan.___", state 2292, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2295, "else" - line 408, "pan.___", state 2298, "(1)" - line 408, "pan.___", state 2299, "(1)" - line 408, "pan.___", state 2299, "(1)" - line 406, "pan.___", state 2304, "((i<2))" - line 406, "pan.___", state 2304, "((i>=2))" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2312, "else" - line 412, "pan.___", state 2315, "(1)" - line 412, "pan.___", state 2316, "(1)" - line 412, "pan.___", state 2316, "(1)" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2325, "else" - line 416, "pan.___", state 2328, "(1)" - line 416, "pan.___", state 2329, "(1)" - line 416, "pan.___", state 2329, "(1)" - line 414, "pan.___", state 2334, "((i<1))" - line 414, "pan.___", state 2334, "((i>=1))" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2342, "else" - line 421, "pan.___", state 2345, "(1)" - line 421, "pan.___", state 2346, "(1)" - line 421, "pan.___", state 2346, "(1)" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2355, "else" - line 425, "pan.___", state 2358, "(1)" - line 425, "pan.___", state 2359, "(1)" - line 425, "pan.___", state 2359, "(1)" - line 423, "pan.___", state 2364, "((i<2))" - line 423, "pan.___", state 2364, "((i>=2))" - line 430, "pan.___", state 2368, "(1)" - line 430, "pan.___", state 2368, "(1)" - line 726, "pan.___", state 2371, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 726, "pan.___", state 2372, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 726, "pan.___", state 2373, "(1)" - line 395, "pan.___", state 2380, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2412, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2426, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2445, "(1)" - line 421, "pan.___", state 2475, "(1)" - line 425, "pan.___", state 2488, "(1)" - line 395, "pan.___", state 2515, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2547, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2561, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2580, "(1)" - line 421, "pan.___", state 2610, "(1)" - line 425, "pan.___", state 2623, "(1)" - line 395, "pan.___", state 2644, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2676, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2690, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2709, "(1)" - line 421, "pan.___", state 2739, "(1)" - line 425, "pan.___", state 2752, "(1)" - line 227, "pan.___", state 2785, "(1)" - line 235, "pan.___", state 2805, "(1)" - line 239, "pan.___", state 2813, "(1)" - line 227, "pan.___", state 2828, "(1)" - line 235, "pan.___", state 2848, "(1)" - line 239, "pan.___", state 2856, "(1)" - line 877, "pan.___", state 2873, "-end-" - (278 of 2873 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 20, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 26, "(1)" - line 399, "pan.___", state 34, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 40, "(1)" - line 399, "pan.___", state 41, "(1)" - line 399, "pan.___", state 41, "(1)" - line 397, "pan.___", state 46, "((i<1))" - line 397, "pan.___", state 46, "((i>=1))" - line 404, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 58, "(1)" - line 404, "pan.___", state 59, "(1)" - line 404, "pan.___", state 59, "(1)" - line 408, "pan.___", state 72, "(1)" - line 408, "pan.___", state 73, "(1)" - line 408, "pan.___", state 73, "(1)" - line 406, "pan.___", state 78, "((i<2))" - line 406, "pan.___", state 78, "((i>=2))" - line 412, "pan.___", state 85, "(1)" - line 412, "pan.___", state 86, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 86, "else" - line 412, "pan.___", state 89, "(1)" - line 412, "pan.___", state 90, "(1)" - line 412, "pan.___", state 90, "(1)" - line 416, "pan.___", state 98, "(1)" - line 416, "pan.___", state 99, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 99, "else" - line 416, "pan.___", state 102, "(1)" - line 416, "pan.___", state 103, "(1)" - line 416, "pan.___", state 103, "(1)" - line 414, "pan.___", state 108, "((i<1))" - line 414, "pan.___", state 108, "((i>=1))" - line 421, "pan.___", state 115, "(1)" - line 421, "pan.___", state 116, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 116, "else" - line 421, "pan.___", state 119, "(1)" - line 421, "pan.___", state 120, "(1)" - line 421, "pan.___", state 120, "(1)" - line 425, "pan.___", state 128, "(1)" - line 425, "pan.___", state 129, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 129, "else" - line 425, "pan.___", state 132, "(1)" - line 425, "pan.___", state 133, "(1)" - line 425, "pan.___", state 133, "(1)" - line 423, "pan.___", state 138, "((i<2))" - line 423, "pan.___", state 138, "((i>=2))" - line 430, "pan.___", state 142, "(1)" - line 430, "pan.___", state 142, "(1)" - line 250, "pan.___", state 151, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 160, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 168, "((i<1))" - line 252, "pan.___", state 168, "((i>=1))" - line 258, "pan.___", state 173, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 1000, "pan.___", state 201, "old_data = cached_rcu_ptr.val[_pid]" - line 1011, "pan.___", state 205, "_proc_urcu_writer = (_proc_urcu_writer|(1<<4))" - line 395, "pan.___", state 213, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 219, "(1)" - line 399, "pan.___", state 227, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 233, "(1)" - line 399, "pan.___", state 234, "(1)" - line 399, "pan.___", state 234, "(1)" - line 397, "pan.___", state 239, "((i<1))" - line 397, "pan.___", state 239, "((i>=1))" - line 404, "pan.___", state 247, "(1)" - line 404, "pan.___", state 248, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 248, "else" - line 404, "pan.___", state 251, "(1)" - line 404, "pan.___", state 252, "(1)" - line 404, "pan.___", state 252, "(1)" - line 408, "pan.___", state 259, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 265, "(1)" - line 408, "pan.___", state 266, "(1)" - line 408, "pan.___", state 266, "(1)" - line 406, "pan.___", state 271, "((i<2))" - line 406, "pan.___", state 271, "((i>=2))" - line 412, "pan.___", state 278, "(1)" - line 412, "pan.___", state 279, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 279, "else" - line 412, "pan.___", state 282, "(1)" - line 412, "pan.___", state 283, "(1)" - line 412, "pan.___", state 283, "(1)" - line 416, "pan.___", state 291, "(1)" - line 416, "pan.___", state 292, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 292, "else" - line 416, "pan.___", state 295, "(1)" - line 416, "pan.___", state 296, "(1)" - line 416, "pan.___", state 296, "(1)" - line 414, "pan.___", state 301, "((i<1))" - line 414, "pan.___", state 301, "((i>=1))" - line 421, "pan.___", state 308, "(1)" - line 421, "pan.___", state 309, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 309, "else" - line 421, "pan.___", state 312, "(1)" - line 421, "pan.___", state 313, "(1)" - line 421, "pan.___", state 313, "(1)" - line 425, "pan.___", state 321, "(1)" - line 425, "pan.___", state 322, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 322, "else" - line 425, "pan.___", state 325, "(1)" - line 425, "pan.___", state 326, "(1)" - line 425, "pan.___", state 326, "(1)" - line 423, "pan.___", state 331, "((i<2))" - line 423, "pan.___", state 331, "((i>=2))" - line 430, "pan.___", state 335, "(1)" - line 430, "pan.___", state 335, "(1)" - line 395, "pan.___", state 346, "(1)" - line 395, "pan.___", state 347, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 347, "else" - line 395, "pan.___", state 350, "(1)" - line 399, "pan.___", state 358, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 364, "(1)" - line 399, "pan.___", state 365, "(1)" - line 399, "pan.___", state 365, "(1)" - line 397, "pan.___", state 370, "((i<1))" - line 397, "pan.___", state 370, "((i>=1))" - line 404, "pan.___", state 376, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 382, "(1)" - line 404, "pan.___", state 383, "(1)" - line 404, "pan.___", state 383, "(1)" - line 408, "pan.___", state 390, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 396, "(1)" - line 408, "pan.___", state 397, "(1)" - line 408, "pan.___", state 397, "(1)" - line 406, "pan.___", state 402, "((i<2))" - line 406, "pan.___", state 402, "((i>=2))" - line 412, "pan.___", state 409, "(1)" - line 412, "pan.___", state 410, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 410, "else" - line 412, "pan.___", state 413, "(1)" - line 412, "pan.___", state 414, "(1)" - line 412, "pan.___", state 414, "(1)" - line 416, "pan.___", state 422, "(1)" - line 416, "pan.___", state 423, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 423, "else" - line 416, "pan.___", state 426, "(1)" - line 416, "pan.___", state 427, "(1)" - line 416, "pan.___", state 427, "(1)" - line 414, "pan.___", state 432, "((i<1))" - line 414, "pan.___", state 432, "((i>=1))" - line 421, "pan.___", state 439, "(1)" - line 421, "pan.___", state 440, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 440, "else" - line 421, "pan.___", state 443, "(1)" - line 421, "pan.___", state 444, "(1)" - line 421, "pan.___", state 444, "(1)" - line 425, "pan.___", state 452, "(1)" - line 425, "pan.___", state 453, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 453, "else" - line 425, "pan.___", state 456, "(1)" - line 425, "pan.___", state 457, "(1)" - line 425, "pan.___", state 457, "(1)" - line 423, "pan.___", state 462, "((i<2))" - line 423, "pan.___", state 462, "((i>=2))" - line 430, "pan.___", state 466, "(1)" - line 430, "pan.___", state 466, "(1)" - line 1063, "pan.___", state 477, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<8)|(1<<7))))" - line 395, "pan.___", state 482, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 488, "(1)" - line 399, "pan.___", state 496, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 502, "(1)" - line 399, "pan.___", state 503, "(1)" - line 399, "pan.___", state 503, "(1)" - line 397, "pan.___", state 508, "((i<1))" - line 397, "pan.___", state 508, "((i>=1))" - line 404, "pan.___", state 514, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 520, "(1)" - line 404, "pan.___", state 521, "(1)" - line 404, "pan.___", state 521, "(1)" - line 408, "pan.___", state 528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 534, "(1)" - line 408, "pan.___", state 535, "(1)" - line 408, "pan.___", state 535, "(1)" - line 406, "pan.___", state 540, "((i<2))" - line 406, "pan.___", state 540, "((i>=2))" - line 412, "pan.___", state 547, "(1)" - line 412, "pan.___", state 548, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 548, "else" - line 412, "pan.___", state 551, "(1)" - line 412, "pan.___", state 552, "(1)" - line 412, "pan.___", state 552, "(1)" - line 416, "pan.___", state 560, "(1)" - line 416, "pan.___", state 561, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 561, "else" - line 416, "pan.___", state 564, "(1)" - line 416, "pan.___", state 565, "(1)" - line 416, "pan.___", state 565, "(1)" - line 414, "pan.___", state 570, "((i<1))" - line 414, "pan.___", state 570, "((i>=1))" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 578, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 578, "else" - line 421, "pan.___", state 581, "(1)" - line 421, "pan.___", state 582, "(1)" - line 421, "pan.___", state 582, "(1)" - line 425, "pan.___", state 590, "(1)" - line 425, "pan.___", state 591, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 591, "else" - line 425, "pan.___", state 594, "(1)" - line 425, "pan.___", state 595, "(1)" - line 425, "pan.___", state 595, "(1)" - line 430, "pan.___", state 604, "(1)" - line 430, "pan.___", state 604, "(1)" - line 395, "pan.___", state 611, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 625, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 643, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 676, "(1)" - line 416, "pan.___", state 689, "(1)" - line 421, "pan.___", state 706, "(1)" - line 425, "pan.___", state 719, "(1)" - line 399, "pan.___", state 756, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 774, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 788, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 820, "(1)" - line 421, "pan.___", state 837, "(1)" - line 425, "pan.___", state 850, "(1)" - line 1135, "pan.___", state 877, "_proc_urcu_writer = (_proc_urcu_writer|(1<<13))" - line 250, "pan.___", state 905, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 907, "(1)" - line 254, "pan.___", state 914, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 916, "(1)" - line 254, "pan.___", state 917, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 917, "else" - line 252, "pan.___", state 922, "((i<1))" - line 252, "pan.___", state 922, "((i>=1))" - line 258, "pan.___", state 927, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 929, "(1)" - line 258, "pan.___", state 930, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 930, "else" - line 262, "pan.___", state 936, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 938, "(1)" - line 262, "pan.___", state 939, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 939, "else" - line 260, "pan.___", state 944, "((i<2))" - line 260, "pan.___", state 944, "((i>=2))" - line 227, "pan.___", state 952, "(1)" - line 231, "pan.___", state 960, "(1)" - line 231, "pan.___", state 961, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 961, "else" - line 229, "pan.___", state 966, "((i<1))" - line 229, "pan.___", state 966, "((i>=1))" - line 235, "pan.___", state 972, "(1)" - line 235, "pan.___", state 973, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 973, "else" - line 239, "pan.___", state 980, "(1)" - line 239, "pan.___", state 981, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 981, "else" - line 244, "pan.___", state 990, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 990, "else" - line 1189, "pan.___", state 1006, "((i<1))" - line 1189, "pan.___", state 1006, "((i>=1))" - line 250, "pan.___", state 1011, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1013, "(1)" - line 254, "pan.___", state 1020, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1022, "(1)" - line 254, "pan.___", state 1023, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1023, "else" - line 252, "pan.___", state 1028, "((i<1))" - line 252, "pan.___", state 1028, "((i>=1))" - line 258, "pan.___", state 1033, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1035, "(1)" - line 258, "pan.___", state 1036, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1036, "else" - line 262, "pan.___", state 1042, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1044, "(1)" - line 262, "pan.___", state 1045, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1045, "else" - line 260, "pan.___", state 1050, "((i<2))" - line 260, "pan.___", state 1050, "((i>=2))" - line 227, "pan.___", state 1058, "(1)" - line 231, "pan.___", state 1066, "(1)" - line 231, "pan.___", state 1067, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1067, "else" - line 229, "pan.___", state 1072, "((i<1))" - line 229, "pan.___", state 1072, "((i>=1))" - line 235, "pan.___", state 1078, "(1)" - line 235, "pan.___", state 1079, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1079, "else" - line 239, "pan.___", state 1086, "(1)" - line 239, "pan.___", state 1087, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1087, "else" - line 244, "pan.___", state 1096, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1096, "else" - line 277, "pan.___", state 1098, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1098, "else" - line 1189, "pan.___", state 1099, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1189, "pan.___", state 1099, "else" - line 250, "pan.___", state 1103, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1105, "(1)" - line 254, "pan.___", state 1112, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1114, "(1)" - line 254, "pan.___", state 1115, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1115, "else" - line 252, "pan.___", state 1120, "((i<1))" - line 252, "pan.___", state 1120, "((i>=1))" - line 258, "pan.___", state 1125, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1127, "(1)" - line 258, "pan.___", state 1128, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1128, "else" - line 262, "pan.___", state 1134, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1136, "(1)" - line 262, "pan.___", state 1137, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1137, "else" - line 260, "pan.___", state 1142, "((i<2))" - line 260, "pan.___", state 1142, "((i>=2))" - line 227, "pan.___", state 1150, "(1)" - line 231, "pan.___", state 1158, "(1)" - line 231, "pan.___", state 1159, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1159, "else" - line 229, "pan.___", state 1164, "((i<1))" - line 229, "pan.___", state 1164, "((i>=1))" - line 235, "pan.___", state 1170, "(1)" - line 235, "pan.___", state 1171, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1171, "else" - line 239, "pan.___", state 1178, "(1)" - line 239, "pan.___", state 1179, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1179, "else" - line 244, "pan.___", state 1188, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1188, "else" - line 1193, "pan.___", state 1191, "i = 0" - line 1193, "pan.___", state 1193, "reader_barrier = 1" - line 1193, "pan.___", state 1204, "((i<1))" - line 1193, "pan.___", state 1204, "((i>=1))" - line 250, "pan.___", state 1209, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1211, "(1)" - line 254, "pan.___", state 1218, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1220, "(1)" - line 254, "pan.___", state 1221, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1221, "else" - line 252, "pan.___", state 1226, "((i<1))" - line 252, "pan.___", state 1226, "((i>=1))" - line 258, "pan.___", state 1231, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1233, "(1)" - line 258, "pan.___", state 1234, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1234, "else" - line 262, "pan.___", state 1240, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1242, "(1)" - line 262, "pan.___", state 1243, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1243, "else" - line 260, "pan.___", state 1248, "((i<2))" - line 260, "pan.___", state 1248, "((i>=2))" - line 227, "pan.___", state 1256, "(1)" - line 231, "pan.___", state 1264, "(1)" - line 231, "pan.___", state 1265, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1265, "else" - line 229, "pan.___", state 1270, "((i<1))" - line 229, "pan.___", state 1270, "((i>=1))" - line 235, "pan.___", state 1276, "(1)" - line 235, "pan.___", state 1277, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1277, "else" - line 239, "pan.___", state 1284, "(1)" - line 239, "pan.___", state 1285, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1285, "else" - line 244, "pan.___", state 1294, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1294, "else" - line 277, "pan.___", state 1296, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1296, "else" - line 1193, "pan.___", state 1297, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1193, "pan.___", state 1297, "else" - line 254, "pan.___", state 1310, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1323, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1332, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1348, "(1)" - line 231, "pan.___", state 1356, "(1)" - line 235, "pan.___", state 1368, "(1)" - line 239, "pan.___", state 1376, "(1)" - line 250, "pan.___", state 1407, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1416, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1438, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1454, "(1)" - line 231, "pan.___", state 1462, "(1)" - line 235, "pan.___", state 1474, "(1)" - line 239, "pan.___", state 1482, "(1)" - line 250, "pan.___", state 1499, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1501, "(1)" - line 254, "pan.___", state 1508, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1510, "(1)" - line 254, "pan.___", state 1511, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1511, "else" - line 252, "pan.___", state 1516, "((i<1))" - line 252, "pan.___", state 1516, "((i>=1))" - line 258, "pan.___", state 1521, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1523, "(1)" - line 258, "pan.___", state 1524, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1524, "else" - line 262, "pan.___", state 1530, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1532, "(1)" - line 262, "pan.___", state 1533, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1533, "else" - line 260, "pan.___", state 1538, "((i<2))" - line 260, "pan.___", state 1538, "((i>=2))" - line 227, "pan.___", state 1546, "(1)" - line 231, "pan.___", state 1554, "(1)" - line 231, "pan.___", state 1555, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1555, "else" - line 229, "pan.___", state 1560, "((i<1))" - line 229, "pan.___", state 1560, "((i>=1))" - line 235, "pan.___", state 1566, "(1)" - line 235, "pan.___", state 1567, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1567, "else" - line 239, "pan.___", state 1574, "(1)" - line 239, "pan.___", state 1575, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1575, "else" - line 244, "pan.___", state 1584, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1584, "else" - line 1200, "pan.___", state 1587, "i = 0" - line 1200, "pan.___", state 1589, "reader_barrier = 1" - line 1200, "pan.___", state 1600, "((i<1))" - line 1200, "pan.___", state 1600, "((i>=1))" - line 250, "pan.___", state 1605, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1607, "(1)" - line 254, "pan.___", state 1614, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1616, "(1)" - line 254, "pan.___", state 1617, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1617, "else" - line 252, "pan.___", state 1622, "((i<1))" - line 252, "pan.___", state 1622, "((i>=1))" - line 258, "pan.___", state 1627, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1629, "(1)" - line 258, "pan.___", state 1630, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1630, "else" - line 262, "pan.___", state 1636, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1638, "(1)" - line 262, "pan.___", state 1639, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1639, "else" - line 260, "pan.___", state 1644, "((i<2))" - line 260, "pan.___", state 1644, "((i>=2))" - line 227, "pan.___", state 1652, "(1)" - line 231, "pan.___", state 1660, "(1)" - line 231, "pan.___", state 1661, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1661, "else" - line 229, "pan.___", state 1666, "((i<1))" - line 229, "pan.___", state 1666, "((i>=1))" - line 235, "pan.___", state 1672, "(1)" - line 235, "pan.___", state 1673, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1673, "else" - line 239, "pan.___", state 1680, "(1)" - line 239, "pan.___", state 1681, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1681, "else" - line 244, "pan.___", state 1690, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1690, "else" - line 277, "pan.___", state 1692, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1692, "else" - line 1200, "pan.___", state 1693, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1200, "pan.___", state 1693, "else" - line 1204, "pan.___", state 1696, "-end-" - (310 of 1696 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 92.4 seconds -pan: rate 5975.3706 states/second -pan: avg transition delay 1.2521e-06 usec -cp .input.spin urcu_free_no_mb.spin.input -cp .input.spin.trail urcu_free_no_mb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input deleted file mode 100644 index a930be8..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_MB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input.trail deleted file mode 100644 index 582fc24..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_mb.spin.input.trail +++ /dev/null @@ -1,1423 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4649 -2:3:4569 -3:3:4572 -4:3:4572 -5:3:4575 -6:3:4583 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-1414:2:3769 -1415:0:4649 -1416:1:1319 -1417:1:1320 -1418:0:4647 -1419:2:3770 -1420:0:4653 -1421:1:2465 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.define b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.define deleted file mode 100644 index 73e61a4..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_RMB diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.log b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.log deleted file mode 100644 index dd57567..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.log +++ /dev/null @@ -1,581 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_rmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -Depth= 7365 States= 1e+06 Transitions= 1.38e+08 Memory= 550.432 t= 168 R= 6e+03 -Depth= 7365 States= 2e+06 Transitions= 4.31e+08 Memory= 634.318 t= 540 R= 4e+03 -pan: claim violated! (at depth 1624) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 7365, errors: 1 - 2266036 states, stored -5.03936e+08 states, matched -5.0620203e+08 transitions (= stored+matched) -2.8832147e+09 atomic steps -hash conflicts: 3.6698737e+08 (resolved) - -Stats on memory usage (in Megabytes): - 250.683 equivalent memory usage for states (stored*(State-vector + overhead)) - 191.039 actual memory usage for states (compression: 76.21%) - state-vector as stored = 60 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 656.682 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 77, "(1)" - line 231, "pan.___", state 85, "(1)" - line 235, "pan.___", state 97, "(1)" - line 239, "pan.___", state 105, "(1)" - line 395, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 196, "(1)" - line 421, "pan.___", state 226, "(1)" - line 425, "pan.___", state 239, "(1)" - line 670, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 332, "(1)" - line 421, "pan.___", state 362, "(1)" - line 425, "pan.___", state 375, "(1)" - line 395, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 461, "(1)" - line 421, "pan.___", state 491, "(1)" - line 425, "pan.___", state 504, "(1)" - line 395, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 529, "(1)" - line 395, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 530, "else" - line 395, "pan.___", state 533, "(1)" - line 399, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 543, "(1)" - line 399, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 544, "else" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "(1)" - line 399, "pan.___", state 548, "(1)" - line 397, "pan.___", state 553, "((i<1))" - line 397, "pan.___", state 553, "((i>=1))" - line 404, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 561, "(1)" - line 404, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 562, "else" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "(1)" - line 404, "pan.___", state 566, "(1)" - line 408, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 575, "(1)" - line 408, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 576, "else" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "(1)" - line 408, "pan.___", state 580, "(1)" - line 406, "pan.___", state 585, "((i<2))" - line 406, "pan.___", state 585, "((i>=2))" - line 412, "pan.___", state 592, "(1)" - line 412, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 593, "else" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(1)" - line 412, "pan.___", state 597, "(1)" - line 416, "pan.___", state 605, "(1)" - line 416, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 606, "else" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(1)" - line 416, "pan.___", state 610, "(1)" - line 414, "pan.___", state 615, "((i<1))" - line 414, "pan.___", state 615, "((i>=1))" - line 421, "pan.___", state 622, "(1)" - line 421, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 623, "else" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(1)" - line 421, "pan.___", state 627, "(1)" - line 425, "pan.___", state 635, "(1)" - line 425, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 636, "else" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(1)" - line 425, "pan.___", state 640, "(1)" - line 423, "pan.___", state 645, "((i<2))" - line 423, "pan.___", state 645, "((i>=2))" - line 430, "pan.___", state 649, "(1)" - line 430, "pan.___", state 649, "(1)" - line 670, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 670, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 670, "pan.___", state 654, "(1)" - line 395, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 726, "(1)" - line 421, "pan.___", state 756, "(1)" - line 425, "pan.___", state 769, "(1)" - line 395, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 799, "(1)" - line 395, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 800, "else" - line 395, "pan.___", state 803, "(1)" - line 399, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 813, "(1)" - line 399, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 814, "else" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "(1)" - line 399, "pan.___", state 818, "(1)" - line 397, "pan.___", state 823, "((i<1))" - line 397, "pan.___", state 823, "((i>=1))" - line 404, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 831, "(1)" - line 404, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 832, "else" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "(1)" - line 404, "pan.___", state 836, "(1)" - line 408, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 845, "(1)" - line 408, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 846, "else" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "(1)" - line 408, "pan.___", state 850, "(1)" - line 406, "pan.___", state 855, "((i<2))" - line 406, "pan.___", state 855, "((i>=2))" - line 412, "pan.___", state 862, "(1)" - line 412, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 863, "else" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(1)" - line 412, "pan.___", state 867, "(1)" - line 416, "pan.___", state 875, "(1)" - line 416, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 876, "else" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(1)" - line 416, "pan.___", state 880, "(1)" - line 414, "pan.___", state 885, "((i<1))" - line 414, "pan.___", state 885, "((i>=1))" - line 421, "pan.___", state 892, "(1)" - line 421, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 893, "else" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(1)" - line 421, "pan.___", state 897, "(1)" - line 425, "pan.___", state 905, "(1)" - line 425, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 906, "else" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(1)" - line 425, "pan.___", state 910, "(1)" - line 430, "pan.___", state 919, "(1)" - line 430, "pan.___", state 919, "(1)" - line 395, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 928, "(1)" - line 395, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 929, "else" - line 395, "pan.___", state 932, "(1)" - line 399, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 942, "(1)" - line 399, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 943, "else" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "(1)" - line 399, "pan.___", state 947, "(1)" - line 397, "pan.___", state 952, "((i<1))" - line 397, "pan.___", state 952, "((i>=1))" - line 404, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 960, "(1)" - line 404, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 961, "else" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "(1)" - line 404, "pan.___", state 965, "(1)" - line 408, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 974, "(1)" - line 408, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 975, "else" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "(1)" - line 408, "pan.___", state 979, "(1)" - line 406, "pan.___", state 984, "((i<2))" - line 406, "pan.___", state 984, "((i>=2))" - line 412, "pan.___", state 991, "(1)" - line 412, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 992, "else" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(1)" - line 412, "pan.___", state 996, "(1)" - line 416, "pan.___", state 1004, "(1)" - line 416, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1005, "else" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 414, "pan.___", state 1014, "((i<1))" - line 414, "pan.___", state 1014, "((i>=1))" - line 421, "pan.___", state 1021, "(1)" - line 421, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1022, "else" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 425, "pan.___", state 1034, "(1)" - line 425, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1035, "else" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 423, "pan.___", state 1044, "((i<2))" - line 423, "pan.___", state 1044, "((i>=2))" - line 430, "pan.___", state 1048, "(1)" - line 430, "pan.___", state 1048, "(1)" - line 678, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1122, "(1)" - line 421, "pan.___", state 1152, "(1)" - line 425, "pan.___", state 1165, "(1)" - line 395, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1254, "(1)" - line 421, "pan.___", state 1284, "(1)" - line 425, "pan.___", state 1297, "(1)" - line 395, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1387, "(1)" - line 421, "pan.___", state 1417, "(1)" - line 425, "pan.___", state 1430, "(1)" - line 395, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1516, "(1)" - line 421, "pan.___", state 1546, "(1)" - line 425, "pan.___", state 1559, "(1)" - line 395, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1650, "(1)" - line 421, "pan.___", state 1680, "(1)" - line 425, "pan.___", state 1693, "(1)" - line 395, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1779, "(1)" - line 421, "pan.___", state 1809, "(1)" - line 425, "pan.___", state 1822, "(1)" - line 395, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1911, "(1)" - line 421, "pan.___", state 1941, "(1)" - line 425, "pan.___", state 1954, "(1)" - line 717, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2047, "(1)" - line 421, "pan.___", state 2077, "(1)" - line 425, "pan.___", state 2090, "(1)" - line 395, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2176, "(1)" - line 421, "pan.___", state 2206, "(1)" - line 425, "pan.___", state 2219, "(1)" - line 395, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2244, "(1)" - line 395, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2245, "else" - line 395, "pan.___", state 2248, "(1)" - line 399, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2258, "(1)" - line 399, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2259, "else" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 397, "pan.___", state 2268, "((i<1))" - line 397, "pan.___", state 2268, "((i>=1))" - line 404, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2276, "(1)" - line 404, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2277, "else" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 408, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2290, "(1)" - line 408, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2291, "else" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 406, "pan.___", state 2300, "((i<2))" - line 406, "pan.___", state 2300, "((i>=2))" - line 412, "pan.___", state 2307, "(1)" - line 412, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2308, "else" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 416, "pan.___", state 2320, "(1)" - line 416, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2321, "else" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 414, "pan.___", state 2330, "((i<1))" - line 414, "pan.___", state 2330, "((i>=1))" - line 421, "pan.___", state 2337, "(1)" - line 421, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2338, "else" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 425, "pan.___", state 2350, "(1)" - line 425, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2351, "else" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 423, "pan.___", state 2360, "((i<2))" - line 423, "pan.___", state 2360, "((i>=2))" - line 430, "pan.___", state 2364, "(1)" - line 430, "pan.___", state 2364, "(1)" - line 717, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 717, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 717, "pan.___", state 2369, "(1)" - line 395, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2441, "(1)" - line 421, "pan.___", state 2471, "(1)" - line 425, "pan.___", state 2484, "(1)" - line 395, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2576, "(1)" - line 421, "pan.___", state 2606, "(1)" - line 425, "pan.___", state 2619, "(1)" - line 395, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2705, "(1)" - line 421, "pan.___", state 2735, "(1)" - line 425, "pan.___", state 2748, "(1)" - line 395, "pan.___", state 2781, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2813, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2827, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2846, "(1)" - line 421, "pan.___", state 2876, "(1)" - line 425, "pan.___", state 2889, "(1)" - line 395, "pan.___", state 2908, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2940, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2954, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2973, "(1)" - line 421, "pan.___", state 3003, "(1)" - line 425, "pan.___", state 3016, "(1)" - line 877, "pan.___", state 3037, "-end-" - (284 of 3037 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 24, "(1)" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 38, "(1)" - line 399, "pan.___", state 39, "(1)" - line 399, "pan.___", state 39, "(1)" - line 397, "pan.___", state 44, "((i<1))" - line 397, "pan.___", state 44, "((i>=1))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 56, "(1)" - line 404, "pan.___", state 57, "(1)" - line 404, "pan.___", state 57, "(1)" - line 408, "pan.___", state 70, "(1)" - line 408, "pan.___", state 71, "(1)" - line 408, "pan.___", state 71, "(1)" - line 406, "pan.___", state 76, "((i<2))" - line 406, "pan.___", state 76, "((i>=2))" - line 412, "pan.___", state 83, "(1)" - line 412, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 84, "else" - line 412, "pan.___", state 87, "(1)" - line 412, "pan.___", state 88, "(1)" - line 412, "pan.___", state 88, "(1)" - line 416, "pan.___", state 96, "(1)" - line 416, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 97, "else" - line 416, "pan.___", state 100, "(1)" - line 416, "pan.___", state 101, "(1)" - line 416, "pan.___", state 101, "(1)" - line 414, "pan.___", state 106, "((i<1))" - line 414, "pan.___", state 106, "((i>=1))" - line 421, "pan.___", state 113, "(1)" - line 421, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 114, "else" - line 421, "pan.___", state 117, "(1)" - line 421, "pan.___", state 118, "(1)" - line 421, "pan.___", state 118, "(1)" - line 425, "pan.___", state 126, "(1)" - line 425, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 127, "else" - line 425, "pan.___", state 130, "(1)" - line 425, "pan.___", state 131, "(1)" - line 425, "pan.___", state 131, "(1)" - line 423, "pan.___", state 136, "((i<2))" - line 423, "pan.___", state 136, "((i>=2))" - line 430, "pan.___", state 140, "(1)" - line 430, "pan.___", state 140, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 250, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1056, "(1)" - line 231, "pan.___", state 1064, "(1)" - line 235, "pan.___", state 1076, "(1)" - line 239, "pan.___", state 1084, "(1)" - line 254, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1148, "(1)" - line 231, "pan.___", state 1156, "(1)" - line 235, "pan.___", state 1168, "(1)" - line 239, "pan.___", state 1176, "(1)" - line 250, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1254, "(1)" - line 231, "pan.___", state 1262, "(1)" - line 235, "pan.___", state 1274, "(1)" - line 239, "pan.___", state 1282, "(1)" - line 254, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1346, "(1)" - line 231, "pan.___", state 1354, "(1)" - line 235, "pan.___", state 1366, "(1)" - line 239, "pan.___", state 1374, "(1)" - line 250, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1452, "(1)" - line 231, "pan.___", state 1460, "(1)" - line 235, "pan.___", state 1472, "(1)" - line 239, "pan.___", state 1480, "(1)" - line 254, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1544, "(1)" - line 231, "pan.___", state 1552, "(1)" - line 235, "pan.___", state 1564, "(1)" - line 239, "pan.___", state 1572, "(1)" - line 250, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1650, "(1)" - line 231, "pan.___", state 1658, "(1)" - line 235, "pan.___", state 1670, "(1)" - line 239, "pan.___", state 1678, "(1)" - line 1204, "pan.___", state 1694, "-end-" - (128 of 1694 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 638 seconds -pan: rate 3551.057 states/second -pan: avg transition delay 1.2606e-06 usec -cp .input.spin urcu_free_no_rmb.spin.input -cp .input.spin.trail urcu_free_no_rmb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input deleted file mode 100644 index f653370..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_RMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input.trail deleted file mode 100644 index ad65225..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_rmb.spin.input.trail +++ /dev/null @@ -1,1627 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4811 -2:3:4731 -3:3:4734 -4:3:4734 -5:3:4737 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-1582:1:2781 -1583:1:2782 -1584:1:2790 -1585:1:2791 -1586:1:2795 -1587:1:2796 -1588:1:2804 -1589:1:2809 -1590:1:2813 -1591:1:2814 -1592:1:2822 -1593:1:2823 -1594:1:2827 -1595:1:2828 -1596:1:2822 -1597:1:2823 -1598:1:2827 -1599:1:2828 -1600:1:2836 -1601:1:2841 -1602:1:2842 -1603:1:2853 -1604:1:2854 -1605:1:2855 -1606:1:2866 -1607:1:2871 -1608:1:2872 -1609:1:2883 -1610:1:2884 -1611:1:2885 -1612:1:2883 -1613:1:2891 -1614:1:2892 -1615:1:2896 -1616:1:2900 -1617:0:4811 -1618:2:4031 -1619:0:4811 -1620:1:1315 -1621:1:1316 -1622:0:4809 -1623:1:15 -1624:0:4815 -1625:1:120 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.define b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.define deleted file mode 100644 index 710f29d..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_WMB diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.log b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.log deleted file mode 100644 index c8da68c..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.log +++ /dev/null @@ -1,560 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_wmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -Depth= 7141 States= 1e+06 Transitions= 1.25e+08 Memory= 550.432 t= 155 R= 6e+03 -Depth= 7141 States= 2e+06 Transitions= 4.09e+08 Memory= 634.318 t= 526 R= 4e+03 -Depth= 7141 States= 3e+06 Transitions= 5.78e+08 Memory= 718.303 t= 751 R= 4e+03 -pan: resizing hashtable to -w22.. done -Depth= 7141 States= 4e+06 Transitions= 8.27e+08 Memory= 833.311 t= 1.07e+03 R= 4e+03 -Depth= 7141 States= 5e+06 Transitions= 1.08e+09 Memory= 917.295 t= 1.39e+03 R= 4e+03 -Depth= 7141 States= 6e+06 Transitions= 1.57e+09 Memory= 1001.279 t= 2.04e+03 R= 3e+03 -Depth= 7141 States= 7e+06 Transitions= 1.97e+09 Memory= 1085.264 t= 2.58e+03 R= 3e+03 -Depth= 7141 States= 8e+06 Transitions= 2.31e+09 Memory= 1169.151 t= 3.03e+03 R= 3e+03 -Depth= 7141 States= 9e+06 Transitions= 2.62e+09 Memory= 1253.135 t= 3.44e+03 R= 3e+03 -pan: resizing hashtable to -w24.. done -Depth= 7141 States= 1e+07 Transitions= 2.83e+09 Memory= 1461.115 t= 3.72e+03 R= 3e+03 -Depth= 7141 States= 1.1e+07 Transitions= 3.05e+09 Memory= 1545.100 t= 3.99e+03 R= 3e+03 -Depth= 7141 States= 1.2e+07 Transitions= 3.25e+09 Memory= 1629.084 t= 4.25e+03 R= 3e+03 -Depth= 7141 States= 1.3e+07 Transitions= 3.55e+09 Memory= 1713.068 t= 4.64e+03 R= 3e+03 -Depth= 7141 States= 1.4e+07 Transitions= 3.84e+09 Memory= 1797.053 t= 5.01e+03 R= 3e+03 -Depth= 7141 States= 1.5e+07 Transitions= 3.96e+09 Memory= 1881.037 t= 5.17e+03 R= 3e+03 -pan: claim violated! (at depth 1482) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 7141, errors: 1 - 15755160 states, stored -4.1726493e+09 states, matched -4.1884045e+09 transitions (= stored+matched) -2.431858e+10 atomic steps -hash conflicts: 2.849112e+09 (resolved) - -Stats on memory usage (in Megabytes): - 1742.934 equivalent memory usage for states (stored*(State-vector + overhead)) - 1359.449 actual memory usage for states (compression: 78.00%) - state-vector as stored = 62 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1944.416 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 77, "(1)" - line 231, "pan.___", state 85, "(1)" - line 235, "pan.___", state 97, "(1)" - line 239, "pan.___", state 105, "(1)" - line 395, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 196, "(1)" - line 421, "pan.___", state 226, "(1)" - line 425, "pan.___", state 239, "(1)" - line 670, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 332, "(1)" - line 421, "pan.___", state 362, "(1)" - line 425, "pan.___", state 375, "(1)" - line 395, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 461, "(1)" - line 421, "pan.___", state 491, "(1)" - line 425, "pan.___", state 504, "(1)" - line 395, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 529, "(1)" - line 395, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 530, "else" - line 395, "pan.___", state 533, "(1)" - line 399, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 543, "(1)" - line 399, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 544, "else" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "(1)" - line 399, "pan.___", state 548, "(1)" - line 397, "pan.___", state 553, "((i<1))" - line 397, "pan.___", state 553, "((i>=1))" - line 404, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 561, "(1)" - line 404, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 562, "else" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "(1)" - line 404, "pan.___", state 566, "(1)" - line 408, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 575, "(1)" - line 408, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 576, "else" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "(1)" - line 408, "pan.___", state 580, "(1)" - line 406, "pan.___", state 585, "((i<2))" - line 406, "pan.___", state 585, "((i>=2))" - line 412, "pan.___", state 592, "(1)" - line 412, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 593, "else" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(1)" - line 412, "pan.___", state 597, "(1)" - line 416, "pan.___", state 605, "(1)" - line 416, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 606, "else" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(1)" - line 416, "pan.___", state 610, "(1)" - line 414, "pan.___", state 615, "((i<1))" - line 414, "pan.___", state 615, "((i>=1))" - line 421, "pan.___", state 622, "(1)" - line 421, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 623, "else" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(1)" - line 421, "pan.___", state 627, "(1)" - line 425, "pan.___", state 635, "(1)" - line 425, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 636, "else" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(1)" - line 425, "pan.___", state 640, "(1)" - line 423, "pan.___", state 645, "((i<2))" - line 423, "pan.___", state 645, "((i>=2))" - line 430, "pan.___", state 649, "(1)" - line 430, "pan.___", state 649, "(1)" - line 670, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 670, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 670, "pan.___", state 654, "(1)" - line 395, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 726, "(1)" - line 421, "pan.___", state 756, "(1)" - line 425, "pan.___", state 769, "(1)" - line 395, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 799, "(1)" - line 395, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 800, "else" - line 395, "pan.___", state 803, "(1)" - line 399, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 813, "(1)" - line 399, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 814, "else" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "(1)" - line 399, "pan.___", state 818, "(1)" - line 397, "pan.___", state 823, "((i<1))" - line 397, "pan.___", state 823, "((i>=1))" - line 404, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 831, "(1)" - line 404, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 832, "else" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "(1)" - line 404, "pan.___", state 836, "(1)" - line 408, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 845, "(1)" - line 408, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 846, "else" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "(1)" - line 408, "pan.___", state 850, "(1)" - line 406, "pan.___", state 855, "((i<2))" - line 406, "pan.___", state 855, "((i>=2))" - line 412, "pan.___", state 862, "(1)" - line 412, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 863, "else" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(1)" - line 412, "pan.___", state 867, "(1)" - line 416, "pan.___", state 875, "(1)" - line 416, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 876, "else" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(1)" - line 416, "pan.___", state 880, "(1)" - line 414, "pan.___", state 885, "((i<1))" - line 414, "pan.___", state 885, "((i>=1))" - line 421, "pan.___", state 892, "(1)" - line 421, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 893, "else" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(1)" - line 421, "pan.___", state 897, "(1)" - line 425, "pan.___", state 905, "(1)" - line 425, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 906, "else" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(1)" - line 425, "pan.___", state 910, "(1)" - line 430, "pan.___", state 919, "(1)" - line 430, "pan.___", state 919, "(1)" - line 395, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 928, "(1)" - line 395, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 929, "else" - line 395, "pan.___", state 932, "(1)" - line 399, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 942, "(1)" - line 399, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 943, "else" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "(1)" - line 399, "pan.___", state 947, "(1)" - line 397, "pan.___", state 952, "((i<1))" - line 397, "pan.___", state 952, "((i>=1))" - line 404, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 960, "(1)" - line 404, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 961, "else" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "(1)" - line 404, "pan.___", state 965, "(1)" - line 408, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 974, "(1)" - line 408, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 975, "else" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "(1)" - line 408, "pan.___", state 979, "(1)" - line 406, "pan.___", state 984, "((i<2))" - line 406, "pan.___", state 984, "((i>=2))" - line 412, "pan.___", state 991, "(1)" - line 412, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 992, "else" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(1)" - line 412, "pan.___", state 996, "(1)" - line 416, "pan.___", state 1004, "(1)" - line 416, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1005, "else" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 414, "pan.___", state 1014, "((i<1))" - line 414, "pan.___", state 1014, "((i>=1))" - line 421, "pan.___", state 1021, "(1)" - line 421, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1022, "else" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 425, "pan.___", state 1034, "(1)" - line 425, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1035, "else" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 423, "pan.___", state 1044, "((i<2))" - line 423, "pan.___", state 1044, "((i>=2))" - line 430, "pan.___", state 1048, "(1)" - line 430, "pan.___", state 1048, "(1)" - line 678, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1122, "(1)" - line 421, "pan.___", state 1152, "(1)" - line 425, "pan.___", state 1165, "(1)" - line 395, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1254, "(1)" - line 421, "pan.___", state 1284, "(1)" - line 425, "pan.___", state 1297, "(1)" - line 395, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1387, "(1)" - line 421, "pan.___", state 1417, "(1)" - line 425, "pan.___", state 1430, "(1)" - line 395, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1516, "(1)" - line 421, "pan.___", state 1546, "(1)" - line 425, "pan.___", state 1559, "(1)" - line 395, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1650, "(1)" - line 421, "pan.___", state 1680, "(1)" - line 425, "pan.___", state 1693, "(1)" - line 395, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1779, "(1)" - line 421, "pan.___", state 1809, "(1)" - line 425, "pan.___", state 1822, "(1)" - line 395, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1911, "(1)" - line 421, "pan.___", state 1941, "(1)" - line 425, "pan.___", state 1954, "(1)" - line 717, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2047, "(1)" - line 421, "pan.___", state 2077, "(1)" - line 425, "pan.___", state 2090, "(1)" - line 395, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2176, "(1)" - line 421, "pan.___", state 2206, "(1)" - line 425, "pan.___", state 2219, "(1)" - line 395, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2244, "(1)" - line 395, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2245, "else" - line 395, "pan.___", state 2248, "(1)" - line 399, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2258, "(1)" - line 399, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2259, "else" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 397, "pan.___", state 2268, "((i<1))" - line 397, "pan.___", state 2268, "((i>=1))" - line 404, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2276, "(1)" - line 404, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2277, "else" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 408, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2290, "(1)" - line 408, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2291, "else" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 406, "pan.___", state 2300, "((i<2))" - line 406, "pan.___", state 2300, "((i>=2))" - line 412, "pan.___", state 2307, "(1)" - line 412, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2308, "else" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 416, "pan.___", state 2320, "(1)" - line 416, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2321, "else" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 414, "pan.___", state 2330, "((i<1))" - line 414, "pan.___", state 2330, "((i>=1))" - line 421, "pan.___", state 2337, "(1)" - line 421, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2338, "else" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 425, "pan.___", state 2350, "(1)" - line 425, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2351, "else" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 423, "pan.___", state 2360, "((i<2))" - line 423, "pan.___", state 2360, "((i>=2))" - line 430, "pan.___", state 2364, "(1)" - line 430, "pan.___", state 2364, "(1)" - line 717, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 717, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 717, "pan.___", state 2369, "(1)" - line 395, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2441, "(1)" - line 421, "pan.___", state 2471, "(1)" - line 425, "pan.___", state 2484, "(1)" - line 395, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2576, "(1)" - line 421, "pan.___", state 2606, "(1)" - line 425, "pan.___", state 2619, "(1)" - line 395, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2705, "(1)" - line 421, "pan.___", state 2735, "(1)" - line 425, "pan.___", state 2748, "(1)" - line 227, "pan.___", state 2781, "(1)" - line 235, "pan.___", state 2801, "(1)" - line 239, "pan.___", state 2809, "(1)" - line 227, "pan.___", state 2824, "(1)" - line 235, "pan.___", state 2844, "(1)" - line 239, "pan.___", state 2852, "(1)" - line 877, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 19, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 33, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 84, "(1)" - line 416, "pan.___", state 97, "(1)" - line 250, "pan.___", state 150, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 152, "(1)" - line 254, "pan.___", state 159, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 161, "(1)" - line 254, "pan.___", state 162, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 162, "else" - line 252, "pan.___", state 167, "((i<1))" - line 252, "pan.___", state 167, "((i>=1))" - line 258, "pan.___", state 172, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 174, "(1)" - line 258, "pan.___", state 175, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 175, "else" - line 262, "pan.___", state 181, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 183, "(1)" - line 262, "pan.___", state 184, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 184, "else" - line 267, "pan.___", state 193, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 267, "pan.___", state 193, "else" - line 395, "pan.___", state 212, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 226, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 244, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 258, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 277, "(1)" - line 416, "pan.___", state 290, "(1)" - line 421, "pan.___", state 307, "(1)" - line 425, "pan.___", state 320, "(1)" - line 399, "pan.___", state 357, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 375, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 389, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 421, "(1)" - line 421, "pan.___", state 438, "(1)" - line 425, "pan.___", state 451, "(1)" - line 399, "pan.___", state 495, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 513, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 527, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 559, "(1)" - line 421, "pan.___", state 576, "(1)" - line 425, "pan.___", state 589, "(1)" - line 399, "pan.___", state 624, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 642, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 656, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 688, "(1)" - line 421, "pan.___", state 705, "(1)" - line 425, "pan.___", state 718, "(1)" - line 399, "pan.___", state 755, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 773, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 787, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 819, "(1)" - line 421, "pan.___", state 836, "(1)" - line 425, "pan.___", state 849, "(1)" - line 250, "pan.___", state 904, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 913, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 227, "pan.___", state 951, "(1)" - line 231, "pan.___", state 959, "(1)" - line 235, "pan.___", state 971, "(1)" - line 239, "pan.___", state 979, "(1)" - line 250, "pan.___", state 1010, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1019, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1032, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1041, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1057, "(1)" - line 231, "pan.___", state 1065, "(1)" - line 235, "pan.___", state 1077, "(1)" - line 239, "pan.___", state 1085, "(1)" - line 254, "pan.___", state 1111, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1124, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1133, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1149, "(1)" - line 231, "pan.___", state 1157, "(1)" - line 235, "pan.___", state 1169, "(1)" - line 239, "pan.___", state 1177, "(1)" - line 250, "pan.___", state 1208, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1217, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1230, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1255, "(1)" - line 231, "pan.___", state 1263, "(1)" - line 235, "pan.___", state 1275, "(1)" - line 239, "pan.___", state 1283, "(1)" - line 254, "pan.___", state 1309, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1322, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1331, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1347, "(1)" - line 231, "pan.___", state 1355, "(1)" - line 235, "pan.___", state 1367, "(1)" - line 239, "pan.___", state 1375, "(1)" - line 250, "pan.___", state 1406, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1415, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1437, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1453, "(1)" - line 231, "pan.___", state 1461, "(1)" - line 235, "pan.___", state 1473, "(1)" - line 239, "pan.___", state 1481, "(1)" - line 254, "pan.___", state 1507, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1520, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1545, "(1)" - line 231, "pan.___", state 1553, "(1)" - line 235, "pan.___", state 1565, "(1)" - line 239, "pan.___", state 1573, "(1)" - line 250, "pan.___", state 1604, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1613, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1626, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1651, "(1)" - line 231, "pan.___", state 1659, "(1)" - line 235, "pan.___", state 1671, "(1)" - line 239, "pan.___", state 1679, "(1)" - line 1204, "pan.___", state 1695, "-end-" - (109 of 1695 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 5.46e+03 seconds -pan: rate 2887.6389 states/second -pan: avg transition delay 1.3027e-06 usec -cp .input.spin urcu_free_no_wmb.spin.input -cp .input.spin.trail urcu_free_no_wmb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input deleted file mode 100644 index 2ff2df1..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_WMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input.trail deleted file mode 100644 index ddfccff..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_no_wmb.spin.input.trail +++ /dev/null @@ -1,1485 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4644 -2:3:4564 -3:3:4567 -4:3:4567 -5:3:4570 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-1426:0:4644 -1427:1:120 -1428:0:4644 -1429:1:19 -1430:0:4644 -1431:1:1313 -1432:0:4644 -1433:1:2777 -1434:1:2784 -1435:1:2785 -1436:1:2792 -1437:1:2797 -1438:1:2804 -1439:1:2805 -1440:1:2804 -1441:1:2805 -1442:1:2812 -1443:1:2816 -1444:0:4644 -1445:2:3773 -1446:2:3774 -1447:2:3778 -1448:2:3782 -1449:2:3783 -1450:2:3787 -1451:2:3792 -1452:2:3800 -1453:2:3804 -1454:2:3805 -1455:2:3800 -1456:2:3801 -1457:2:3809 -1458:2:3816 -1459:2:3823 -1460:2:3824 -1461:2:3831 -1462:2:3836 -1463:2:3843 -1464:2:3844 -1465:2:3843 -1466:2:3844 -1467:2:3851 -1468:2:3855 -1469:0:4644 -1470:2:3860 -1471:0:4644 -1472:2:3861 -1473:0:4644 -1474:2:3862 -1475:0:4644 -1476:2:3863 -1477:0:4644 -1478:1:1315 -1479:1:1316 -1480:0:4642 -1481:2:3864 -1482:0:4648 -1483:1:2474 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.define b/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.define deleted file mode 100644 index 5e642ef..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.define +++ /dev/null @@ -1 +0,0 @@ -#define SINGLE_FLIP diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.log b/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.log deleted file mode 100644 index eedc9f4..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.log +++ /dev/null @@ -1,761 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_single_flip.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -Depth= 6859 States= 1e+06 Transitions= 1.64e+08 Memory= 550.432 t= 209 R= 5e+03 -Depth= 6859 States= 2e+06 Transitions= 3.19e+08 Memory= 634.318 t= 409 R= 5e+03 -Depth= 6859 States= 3e+06 Transitions= 4.93e+08 Memory= 718.303 t= 643 R= 5e+03 -pan: resizing hashtable to -w22.. done -Depth= 6859 States= 4e+06 Transitions= 6.91e+08 Memory= 833.311 t= 903 R= 4e+03 -Depth= 6859 States= 5e+06 Transitions= 9e+08 Memory= 917.295 t= 1.17e+03 R= 4e+03 -Depth= 6859 States= 6e+06 Transitions= 1.08e+09 Memory= 1001.279 t= 1.41e+03 R= 4e+03 -pan: claim violated! (at depth 1383) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 6859, errors: 1 - 6177712 states, stored -1.1177865e+09 states, matched -1.1239642e+09 transitions (= stored+matched) -6.3626905e+09 atomic steps -hash conflicts: 8.98825e+08 (resolved) - -Stats on memory usage (in Megabytes): - 683.417 equivalent memory usage for states (stored*(State-vector + overhead)) - 526.801 actual memory usage for states (compression: 77.08%) - state-vector as stored = 61 byte + 28 byte overhead - 32.000 memory used for hash table (-w22) - 457.764 memory used for DFS stack (-m10000000) - 1016.221 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 77, "(1)" - line 231, "pan.___", state 85, "(1)" - line 235, "pan.___", state 97, "(1)" - line 239, "pan.___", state 105, "(1)" - line 395, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 196, "(1)" - line 421, "pan.___", state 226, "(1)" - line 425, "pan.___", state 239, "(1)" - line 670, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 332, "(1)" - line 421, "pan.___", state 362, "(1)" - line 425, "pan.___", state 375, "(1)" - line 395, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 461, "(1)" - line 421, "pan.___", state 491, "(1)" - line 425, "pan.___", state 504, "(1)" - line 395, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 529, "(1)" - line 395, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 530, "else" - line 395, "pan.___", state 533, "(1)" - line 399, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 543, "(1)" - line 399, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 544, "else" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "(1)" - line 399, "pan.___", state 548, "(1)" - line 397, "pan.___", state 553, "((i<1))" - line 397, "pan.___", state 553, "((i>=1))" - line 404, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 561, "(1)" - line 404, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 562, "else" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "(1)" - line 404, "pan.___", state 566, "(1)" - line 408, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 575, "(1)" - line 408, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 576, "else" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "(1)" - line 408, "pan.___", state 580, "(1)" - line 406, "pan.___", state 585, "((i<2))" - line 406, "pan.___", state 585, "((i>=2))" - line 412, "pan.___", state 592, "(1)" - line 412, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 593, "else" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(1)" - line 412, "pan.___", state 597, "(1)" - line 416, "pan.___", state 605, "(1)" - line 416, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 606, "else" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(1)" - line 416, "pan.___", state 610, "(1)" - line 414, "pan.___", state 615, "((i<1))" - line 414, "pan.___", state 615, "((i>=1))" - line 421, "pan.___", state 622, "(1)" - line 421, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 623, "else" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(1)" - line 421, "pan.___", state 627, "(1)" - line 425, "pan.___", state 635, "(1)" - line 425, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 636, "else" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(1)" - line 425, "pan.___", state 640, "(1)" - line 423, "pan.___", state 645, "((i<2))" - line 423, "pan.___", state 645, "((i>=2))" - line 430, "pan.___", state 649, "(1)" - line 430, "pan.___", state 649, "(1)" - line 670, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 670, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 670, "pan.___", state 654, "(1)" - line 395, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 726, "(1)" - line 421, "pan.___", state 756, "(1)" - line 425, "pan.___", state 769, "(1)" - line 395, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 799, "(1)" - line 395, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 800, "else" - line 395, "pan.___", state 803, "(1)" - line 399, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 813, "(1)" - line 399, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 814, "else" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "(1)" - line 399, "pan.___", state 818, "(1)" - line 397, "pan.___", state 823, "((i<1))" - line 397, "pan.___", state 823, "((i>=1))" - line 404, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 831, "(1)" - line 404, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 832, "else" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "(1)" - line 404, "pan.___", state 836, "(1)" - line 408, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 845, "(1)" - line 408, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 846, "else" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "(1)" - line 408, "pan.___", state 850, "(1)" - line 406, "pan.___", state 855, "((i<2))" - line 406, "pan.___", state 855, "((i>=2))" - line 412, "pan.___", state 862, "(1)" - line 412, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 863, "else" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(1)" - line 412, "pan.___", state 867, "(1)" - line 416, "pan.___", state 875, "(1)" - line 416, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 876, "else" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(1)" - line 416, "pan.___", state 880, "(1)" - line 414, "pan.___", state 885, "((i<1))" - line 414, "pan.___", state 885, "((i>=1))" - line 421, "pan.___", state 892, "(1)" - line 421, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 893, "else" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(1)" - line 421, "pan.___", state 897, "(1)" - line 425, "pan.___", state 905, "(1)" - line 425, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 906, "else" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(1)" - line 425, "pan.___", state 910, "(1)" - line 430, "pan.___", state 919, "(1)" - line 430, "pan.___", state 919, "(1)" - line 395, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 928, "(1)" - line 395, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 929, "else" - line 395, "pan.___", state 932, "(1)" - line 399, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 942, "(1)" - line 399, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 943, "else" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "(1)" - line 399, "pan.___", state 947, "(1)" - line 397, "pan.___", state 952, "((i<1))" - line 397, "pan.___", state 952, "((i>=1))" - line 404, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 960, "(1)" - line 404, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 961, "else" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "(1)" - line 404, "pan.___", state 965, "(1)" - line 408, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 974, "(1)" - line 408, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 975, "else" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "(1)" - line 408, "pan.___", state 979, "(1)" - line 406, "pan.___", state 984, "((i<2))" - line 406, "pan.___", state 984, "((i>=2))" - line 412, "pan.___", state 991, "(1)" - line 412, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 992, "else" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(1)" - line 412, "pan.___", state 996, "(1)" - line 416, "pan.___", state 1004, "(1)" - line 416, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1005, "else" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 414, "pan.___", state 1014, "((i<1))" - line 414, "pan.___", state 1014, "((i>=1))" - line 421, "pan.___", state 1021, "(1)" - line 421, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1022, "else" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 425, "pan.___", state 1034, "(1)" - line 425, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1035, "else" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 423, "pan.___", state 1044, "((i<2))" - line 423, "pan.___", state 1044, "((i>=2))" - line 430, "pan.___", state 1048, "(1)" - line 430, "pan.___", state 1048, "(1)" - line 678, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1122, "(1)" - line 421, "pan.___", state 1152, "(1)" - line 425, "pan.___", state 1165, "(1)" - line 395, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1254, "(1)" - line 421, "pan.___", state 1284, "(1)" - line 425, "pan.___", state 1297, "(1)" - line 395, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1387, "(1)" - line 421, "pan.___", state 1417, "(1)" - line 425, "pan.___", state 1430, "(1)" - line 395, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1516, "(1)" - line 421, "pan.___", state 1546, "(1)" - line 425, "pan.___", state 1559, "(1)" - line 395, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1650, "(1)" - line 421, "pan.___", state 1680, "(1)" - line 425, "pan.___", state 1693, "(1)" - line 395, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1779, "(1)" - line 421, "pan.___", state 1809, "(1)" - line 425, "pan.___", state 1822, "(1)" - line 395, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1911, "(1)" - line 421, "pan.___", state 1941, "(1)" - line 425, "pan.___", state 1954, "(1)" - line 717, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2047, "(1)" - line 421, "pan.___", state 2077, "(1)" - line 425, "pan.___", state 2090, "(1)" - line 395, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2176, "(1)" - line 421, "pan.___", state 2206, "(1)" - line 425, "pan.___", state 2219, "(1)" - line 395, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2244, "(1)" - line 395, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2245, "else" - line 395, "pan.___", state 2248, "(1)" - line 399, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2258, "(1)" - line 399, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2259, "else" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 397, "pan.___", state 2268, "((i<1))" - line 397, "pan.___", state 2268, "((i>=1))" - line 404, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2276, "(1)" - line 404, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2277, "else" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 408, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2290, "(1)" - line 408, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2291, "else" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 406, "pan.___", state 2300, "((i<2))" - line 406, "pan.___", state 2300, "((i>=2))" - line 412, "pan.___", state 2307, "(1)" - line 412, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2308, "else" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 416, "pan.___", state 2320, "(1)" - line 416, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2321, "else" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 414, "pan.___", state 2330, "((i<1))" - line 414, "pan.___", state 2330, "((i>=1))" - line 421, "pan.___", state 2337, "(1)" - line 421, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2338, "else" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 425, "pan.___", state 2350, "(1)" - line 425, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2351, "else" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 423, "pan.___", state 2360, "((i<2))" - line 423, "pan.___", state 2360, "((i>=2))" - line 430, "pan.___", state 2364, "(1)" - line 430, "pan.___", state 2364, "(1)" - line 717, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 717, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 717, "pan.___", state 2369, "(1)" - line 395, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2441, "(1)" - line 421, "pan.___", state 2471, "(1)" - line 425, "pan.___", state 2484, "(1)" - line 395, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2576, "(1)" - line 421, "pan.___", state 2606, "(1)" - line 425, "pan.___", state 2619, "(1)" - line 395, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2705, "(1)" - line 421, "pan.___", state 2735, "(1)" - line 425, "pan.___", state 2748, "(1)" - line 227, "pan.___", state 2781, "(1)" - line 235, "pan.___", state 2801, "(1)" - line 239, "pan.___", state 2809, "(1)" - line 227, "pan.___", state 2824, "(1)" - line 235, "pan.___", state 2844, "(1)" - line 239, "pan.___", state 2852, "(1)" - line 877, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 22, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 36, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 87, "(1)" - line 416, "pan.___", state 100, "(1)" - line 421, "pan.___", state 117, "(1)" - line 250, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 175, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 215, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 229, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 247, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 261, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 280, "(1)" - line 416, "pan.___", state 293, "(1)" - line 421, "pan.___", state 310, "(1)" - line 425, "pan.___", state 323, "(1)" - line 399, "pan.___", state 360, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 378, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 392, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 424, "(1)" - line 421, "pan.___", state 441, "(1)" - line 425, "pan.___", state 454, "(1)" - line 395, "pan.___", state 483, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 485, "(1)" - line 395, "pan.___", state 486, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 486, "else" - line 395, "pan.___", state 489, "(1)" - line 399, "pan.___", state 497, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 499, "(1)" - line 399, "pan.___", state 500, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 500, "else" - line 399, "pan.___", state 503, "(1)" - line 399, "pan.___", state 504, "(1)" - line 399, "pan.___", state 504, "(1)" - line 397, "pan.___", state 509, "((i<1))" - line 397, "pan.___", state 509, "((i>=1))" - line 404, "pan.___", state 515, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 517, "(1)" - line 404, "pan.___", state 518, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 518, "else" - line 404, "pan.___", state 521, "(1)" - line 404, "pan.___", state 522, "(1)" - line 404, "pan.___", state 522, "(1)" - line 408, "pan.___", state 529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 531, "(1)" - line 408, "pan.___", state 532, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 532, "else" - line 408, "pan.___", state 535, "(1)" - line 408, "pan.___", state 536, "(1)" - line 408, "pan.___", state 536, "(1)" - line 406, "pan.___", state 541, "((i<2))" - line 406, "pan.___", state 541, "((i>=2))" - line 412, "pan.___", state 548, "(1)" - line 412, "pan.___", state 549, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 549, "else" - line 412, "pan.___", state 552, "(1)" - line 412, "pan.___", state 553, "(1)" - line 412, "pan.___", state 553, "(1)" - line 416, "pan.___", state 561, "(1)" - line 416, "pan.___", state 562, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 562, "else" - line 416, "pan.___", state 565, "(1)" - line 416, "pan.___", state 566, "(1)" - line 416, "pan.___", state 566, "(1)" - line 414, "pan.___", state 571, "((i<1))" - line 414, "pan.___", state 571, "((i>=1))" - line 421, "pan.___", state 578, "(1)" - line 421, "pan.___", state 579, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 579, "else" - line 421, "pan.___", state 582, "(1)" - line 421, "pan.___", state 583, "(1)" - line 421, "pan.___", state 583, "(1)" - line 425, "pan.___", state 591, "(1)" - line 425, "pan.___", state 592, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 592, "else" - line 425, "pan.___", state 595, "(1)" - line 425, "pan.___", state 596, "(1)" - line 425, "pan.___", state 596, "(1)" - line 430, "pan.___", state 605, "(1)" - line 430, "pan.___", state 605, "(1)" - line 395, "pan.___", state 612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 614, "(1)" - line 395, "pan.___", state 615, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 615, "else" - line 395, "pan.___", state 618, "(1)" - line 399, "pan.___", state 626, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 628, "(1)" - line 399, "pan.___", state 629, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 629, "else" - line 399, "pan.___", state 632, "(1)" - line 399, "pan.___", state 633, "(1)" - line 399, "pan.___", state 633, "(1)" - line 397, "pan.___", state 638, "((i<1))" - line 397, "pan.___", state 638, "((i>=1))" - line 404, "pan.___", state 644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 646, "(1)" - line 404, "pan.___", state 647, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 647, "else" - line 404, "pan.___", state 650, "(1)" - line 404, "pan.___", state 651, "(1)" - line 404, "pan.___", state 651, "(1)" - line 408, "pan.___", state 658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 660, "(1)" - line 408, "pan.___", state 661, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 661, "else" - line 408, "pan.___", state 664, "(1)" - line 408, "pan.___", state 665, "(1)" - line 408, "pan.___", state 665, "(1)" - line 406, "pan.___", state 670, "((i<2))" - line 406, "pan.___", state 670, "((i>=2))" - line 412, "pan.___", state 677, "(1)" - line 412, "pan.___", state 678, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 678, "else" - line 412, "pan.___", state 681, "(1)" - line 412, "pan.___", state 682, "(1)" - line 412, "pan.___", state 682, "(1)" - line 416, "pan.___", state 690, "(1)" - line 416, "pan.___", state 691, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 691, "else" - line 416, "pan.___", state 694, "(1)" - line 416, "pan.___", state 695, "(1)" - line 416, "pan.___", state 695, "(1)" - line 414, "pan.___", state 700, "((i<1))" - line 414, "pan.___", state 700, "((i>=1))" - line 421, "pan.___", state 707, "(1)" - line 421, "pan.___", state 708, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 708, "else" - line 421, "pan.___", state 711, "(1)" - line 421, "pan.___", state 712, "(1)" - line 421, "pan.___", state 712, "(1)" - line 425, "pan.___", state 720, "(1)" - line 425, "pan.___", state 721, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 721, "else" - line 425, "pan.___", state 724, "(1)" - line 425, "pan.___", state 725, "(1)" - line 425, "pan.___", state 725, "(1)" - line 423, "pan.___", state 730, "((i<2))" - line 423, "pan.___", state 730, "((i>=2))" - line 430, "pan.___", state 734, "(1)" - line 430, "pan.___", state 734, "(1)" - line 1085, "pan.___", state 738, "_proc_urcu_writer = (_proc_urcu_writer|(1<<10))" - line 395, "pan.___", state 743, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 745, "(1)" - line 395, "pan.___", state 746, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 746, "else" - line 395, "pan.___", state 749, "(1)" - line 399, "pan.___", state 757, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 759, "(1)" - line 399, "pan.___", state 760, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 760, "else" - line 399, "pan.___", state 763, "(1)" - line 399, "pan.___", state 764, "(1)" - line 399, "pan.___", state 764, "(1)" - line 397, "pan.___", state 769, "((i<1))" - line 397, "pan.___", state 769, "((i>=1))" - line 404, "pan.___", state 775, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 777, "(1)" - line 404, "pan.___", state 778, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 778, "else" - line 404, "pan.___", state 781, "(1)" - line 404, "pan.___", state 782, "(1)" - line 404, "pan.___", state 782, "(1)" - line 408, "pan.___", state 789, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 791, "(1)" - line 408, "pan.___", state 792, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 792, "else" - line 408, "pan.___", state 795, "(1)" - line 408, "pan.___", state 796, "(1)" - line 408, "pan.___", state 796, "(1)" - line 406, "pan.___", state 801, "((i<2))" - line 406, "pan.___", state 801, "((i>=2))" - line 412, "pan.___", state 808, "(1)" - line 412, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 809, "else" - line 412, "pan.___", state 812, "(1)" - line 412, "pan.___", state 813, "(1)" - line 412, "pan.___", state 813, "(1)" - line 416, "pan.___", state 821, "(1)" - line 416, "pan.___", state 822, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 822, "else" - line 416, "pan.___", state 825, "(1)" - line 416, "pan.___", state 826, "(1)" - line 416, "pan.___", state 826, "(1)" - line 414, "pan.___", state 831, "((i<1))" - line 414, "pan.___", state 831, "((i>=1))" - line 421, "pan.___", state 838, "(1)" - line 421, "pan.___", state 839, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 839, "else" - line 421, "pan.___", state 842, "(1)" - line 421, "pan.___", state 843, "(1)" - line 421, "pan.___", state 843, "(1)" - line 425, "pan.___", state 851, "(1)" - line 425, "pan.___", state 852, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 852, "else" - line 425, "pan.___", state 855, "(1)" - line 425, "pan.___", state 856, "(1)" - line 425, "pan.___", state 856, "(1)" - line 423, "pan.___", state 861, "((i<2))" - line 423, "pan.___", state 861, "((i>=2))" - line 430, "pan.___", state 865, "(1)" - line 430, "pan.___", state 865, "(1)" - line 1100, "pan.___", state 870, "_proc_urcu_writer = (_proc_urcu_writer|(1<<11))" - line 1095, "pan.___", state 871, "(((tmp2&((1<<7)-1))&&((tmp2^0)&(1<<7))))" - line 1095, "pan.___", state 871, "else" - line 1120, "pan.___", state 875, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 250, "pan.___", state 906, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 915, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 930, "(1)" - line 262, "pan.___", state 937, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 953, "(1)" - line 231, "pan.___", state 961, "(1)" - line 235, "pan.___", state 973, "(1)" - line 239, "pan.___", state 981, "(1)" - line 250, "pan.___", state 1012, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1021, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1034, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1043, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1059, "(1)" - line 231, "pan.___", state 1067, "(1)" - line 235, "pan.___", state 1079, "(1)" - line 239, "pan.___", state 1087, "(1)" - line 254, "pan.___", state 1113, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1126, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1135, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1151, "(1)" - line 231, "pan.___", state 1159, "(1)" - line 235, "pan.___", state 1171, "(1)" - line 239, "pan.___", state 1179, "(1)" - line 250, "pan.___", state 1210, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1219, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1232, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1241, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1257, "(1)" - line 231, "pan.___", state 1265, "(1)" - line 235, "pan.___", state 1277, "(1)" - line 239, "pan.___", state 1285, "(1)" - line 250, "pan.___", state 1302, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1304, "(1)" - line 254, "pan.___", state 1311, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1313, "(1)" - line 254, "pan.___", state 1314, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1314, "else" - line 252, "pan.___", state 1319, "((i<1))" - line 252, "pan.___", state 1319, "((i>=1))" - line 258, "pan.___", state 1324, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1326, "(1)" - line 258, "pan.___", state 1327, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1327, "else" - line 262, "pan.___", state 1333, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1335, "(1)" - line 262, "pan.___", state 1336, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1336, "else" - line 260, "pan.___", state 1341, "((i<2))" - line 260, "pan.___", state 1341, "((i>=2))" - line 227, "pan.___", state 1349, "(1)" - line 231, "pan.___", state 1357, "(1)" - line 231, "pan.___", state 1358, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1358, "else" - line 229, "pan.___", state 1363, "((i<1))" - line 229, "pan.___", state 1363, "((i>=1))" - line 235, "pan.___", state 1369, "(1)" - line 235, "pan.___", state 1370, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1370, "else" - line 239, "pan.___", state 1377, "(1)" - line 239, "pan.___", state 1378, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1378, "else" - line 244, "pan.___", state 1387, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1387, "else" - line 1196, "pan.___", state 1390, "i = 0" - line 1196, "pan.___", state 1392, "reader_barrier = 1" - line 1196, "pan.___", state 1403, "((i<1))" - line 1196, "pan.___", state 1403, "((i>=1))" - line 250, "pan.___", state 1408, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1410, "(1)" - line 254, "pan.___", state 1417, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1419, "(1)" - line 254, "pan.___", state 1420, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1420, "else" - line 252, "pan.___", state 1425, "((i<1))" - line 252, "pan.___", state 1425, "((i>=1))" - line 258, "pan.___", state 1430, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1432, "(1)" - line 258, "pan.___", state 1433, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1433, "else" - line 262, "pan.___", state 1439, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1441, "(1)" - line 262, "pan.___", state 1442, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1442, "else" - line 260, "pan.___", state 1447, "((i<2))" - line 260, "pan.___", state 1447, "((i>=2))" - line 227, "pan.___", state 1455, "(1)" - line 231, "pan.___", state 1463, "(1)" - line 231, "pan.___", state 1464, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1464, "else" - line 229, "pan.___", state 1469, "((i<1))" - line 229, "pan.___", state 1469, "((i>=1))" - line 235, "pan.___", state 1475, "(1)" - line 235, "pan.___", state 1476, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1476, "else" - line 239, "pan.___", state 1483, "(1)" - line 239, "pan.___", state 1484, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1484, "else" - line 244, "pan.___", state 1493, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1493, "else" - line 277, "pan.___", state 1495, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1495, "else" - line 1196, "pan.___", state 1496, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1196, "pan.___", state 1496, "else" - line 254, "pan.___", state 1509, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1522, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1531, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1547, "(1)" - line 231, "pan.___", state 1555, "(1)" - line 235, "pan.___", state 1567, "(1)" - line 239, "pan.___", state 1575, "(1)" - line 250, "pan.___", state 1606, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1615, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1628, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1637, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1653, "(1)" - line 231, "pan.___", state 1661, "(1)" - line 235, "pan.___", state 1673, "(1)" - line 239, "pan.___", state 1681, "(1)" - line 1204, "pan.___", state 1697, "-end-" - (242 of 1697 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 1.47e+03 seconds -pan: rate 4207.2476 states/second -pan: avg transition delay 1.3064e-06 usec -cp .input.spin urcu_free_single_flip.spin.input -cp .input.spin.trail urcu_free_single_flip.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input deleted file mode 100644 index e7c3890..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define SINGLE_FLIP - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input.trail deleted file mode 100644 index f09d0eb..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_free_single_flip.spin.input.trail +++ /dev/null @@ -1,1386 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4646 -2:3:4566 -3:3:4569 -4:3:4569 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-1350:2:3789 -1351:2:3794 -1352:2:3802 -1353:2:3806 -1354:2:3807 -1355:2:3802 -1356:2:3806 -1357:2:3807 -1358:2:3811 -1359:2:3818 -1360:2:3825 -1361:2:3826 -1362:2:3833 -1363:2:3838 -1364:2:3845 -1365:2:3846 -1366:2:3845 -1367:2:3846 -1368:2:3853 -1369:2:3857 -1370:0:4646 -1371:2:3862 -1372:0:4646 -1373:2:3863 -1374:0:4646 -1375:2:3864 -1376:0:4646 -1377:2:3865 -1378:0:4646 -1379:1:1315 -1380:1:1316 -1381:0:4644 -1382:2:3866 -1383:0:4650 -1384:1:2431 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress.ltl b/formal-model/results/urcu-controldataflow-ipi/urcu_progress.ltl deleted file mode 100644 index 8718641..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress.ltl +++ /dev/null @@ -1 +0,0 @@ -([] <> !np_) diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.define b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.define deleted file mode 100644 index ff3f783..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.log b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.log deleted file mode 100644 index e493a0c..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.log +++ /dev/null @@ -1,597 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_reader.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -depth 23: Claim reached state 9 (line 1263) -depth 137: Claim reached state 9 (line 1262) -Depth= 31896 States= 1e+06 Transitions= 1.91e+08 Memory= 519.963 t= 240 R= 4e+03 -Depth= 35611 States= 2e+06 Transitions= 3.82e+08 Memory= 572.111 t= 484 R= 4e+03 -Depth= 35611 States= 3e+06 Transitions= 6.15e+08 Memory= 623.869 t= 790 R= 4e+03 -pan: resizing hashtable to -w22.. done -Depth= 35611 States= 4e+06 Transitions= 8.15e+08 Memory= 707.236 t= 1.04e+03 R= 4e+03 -Depth= 35611 States= 5e+06 Transitions= 1e+09 Memory= 760.557 t= 1.28e+03 R= 4e+03 -Depth= 35611 States= 6e+06 Transitions= 1.33e+09 Memory= 808.408 t= 1.71e+03 R= 4e+03 -Depth= 35611 States= 7e+06 Transitions= 1.79e+09 Memory= 854.014 t= 2.32e+03 R= 3e+03 -Depth= 35611 States= 8e+06 Transitions= 2.33e+09 Memory= 898.740 t= 3.05e+03 R= 3e+03 -Depth= 35611 States= 9e+06 Transitions= 2.72e+09 Memory= 947.276 t= 3.57e+03 R= 3e+03 -pan: resizing hashtable to -w24.. done -Depth= 35611 States= 1e+07 Transitions= 3.17e+09 Memory= 1119.123 t= 4.17e+03 R= 2e+03 -Depth= 35611 States= 1.1e+07 Transitions= 3.43e+09 Memory= 1167.854 t= 4.5e+03 R= 2e+03 -Depth= 35611 States= 1.2e+07 Transitions= 3.67e+09 Memory= 1219.221 t= 4.81e+03 R= 2e+03 -Depth= 35611 States= 1.3e+07 Transitions= 4.19e+09 Memory= 1262.776 t= 5.49e+03 R= 2e+03 -Depth= 35611 States= 1.4e+07 Transitions= 5.17e+09 Memory= 1311.213 t= 6.83e+03 R= 2e+03 -Depth= 35611 States= 1.5e+07 Transitions= 6.13e+09 Memory= 1349.006 t= 8.12e+03 R= 2e+03 -Depth= 35611 States= 1.6e+07 Transitions= 6.65e+09 Memory= 1393.635 t= 8.82e+03 R= 2e+03 -Depth= 35611 States= 1.7e+07 Transitions= 7.12e+09 Memory= 1441.779 t= 9.45e+03 R= 2e+03 -Depth= 35611 States= 1.8e+07 Transitions= 7.52e+09 Memory= 1486.408 t= 9.98e+03 R= 2e+03 -Depth= 35611 States= 1.9e+07 Transitions= 8.03e+09 Memory= 1534.162 t= 1.07e+04 R= 2e+03 -Depth= 35611 States= 2e+07 Transitions= 8.6e+09 Memory= 1579.768 t= 1.14e+04 R= 2e+03 -Depth= 35611 States= 2.1e+07 Transitions= 9e+09 Memory= 1629.475 t= 1.2e+04 R= 2e+03 -Depth= 35611 States= 2.2e+07 Transitions= 9.32e+09 Memory= 1676.545 t= 1.24e+04 R= 2e+03 -Depth= 35611 States= 2.3e+07 Transitions= 9.66e+09 Memory= 1724.494 t= 1.29e+04 R= 2e+03 -Depth= 35611 States= 2.4e+07 Transitions= 1e+10 Memory= 1774.299 t= 1.34e+04 R= 2e+03 -Depth= 35611 States= 2.5e+07 Transitions= 1.03e+10 Memory= 1822.151 t= 1.37e+04 R= 2e+03 -Depth= 35611 States= 2.6e+07 Transitions= 1.07e+10 Memory= 1871.272 t= 1.42e+04 R= 2e+03 -Depth= 35611 States= 2.7e+07 Transitions= 1.09e+10 Memory= 1921.272 t= 1.45e+04 R= 2e+03 -Depth= 35611 States= 2.8e+07 Transitions= 1.13e+10 Memory= 1969.904 t= 1.51e+04 R= 2e+03 -Depth= 35611 States= 2.9e+07 Transitions= 1.15e+10 Memory= 2019.709 t= 1.54e+04 R= 2e+03 -Depth= 35611 States= 3e+07 Transitions= 1.2e+10 Memory= 2063.654 t= 1.6e+04 R= 2e+03 -Depth= 35611 States= 3.1e+07 Transitions= 1.23e+10 Memory= 2110.920 t= 1.65e+04 R= 2e+03 -Depth= 35611 States= 3.2e+07 Transitions= 1.29e+10 Memory= 2156.721 t= 1.73e+04 R= 2e+03 -Depth= 35611 States= 3.3e+07 Transitions= 1.35e+10 Memory= 2200.276 t= 1.8e+04 R= 2e+03 -Depth= 35611 States= 3.4e+07 Transitions= 1.4e+10 Memory= 2245.881 t= 1.87e+04 R= 2e+03 -pan: resizing hashtable to -w26.. done -Depth= 35611 States= 3.5e+07 Transitions= 1.43e+10 Memory= 2790.498 t= 1.91e+04 R= 2e+03 -Depth= 35611 States= 3.6e+07 Transitions= 1.45e+10 Memory= 2841.182 t= 1.94e+04 R= 2e+03 -Depth= 35611 States= 3.7e+07 Transitions= 1.49e+10 Memory= 2887.861 t= 1.99e+04 R= 2e+03 -Depth= 35611 States= 3.8e+07 Transitions= 1.57e+10 Memory= 2934.346 t= 2.1e+04 R= 2e+03 -Depth= 35611 States= 3.9e+07 Transitions= 1.67e+10 Memory= 2977.608 t= 2.23e+04 R= 2e+03 -Depth= 35611 States= 4e+07 Transitions= 1.74e+10 Memory= 3017.158 t= 2.33e+04 R= 2e+03 -Depth= 35611 States= 4.1e+07 Transitions= 1.81e+10 Memory= 3061.104 t= 2.42e+04 R= 2e+03 -Depth= 35611 States= 4.2e+07 Transitions= 1.83e+10 Memory= 3109.932 t= 2.45e+04 R= 2e+03 -Depth= 35611 States= 4.3e+07 Transitions= 1.88e+10 Memory= 3156.416 t= 2.51e+04 R= 2e+03 -Depth= 35611 States= 4.4e+07 Transitions= 1.93e+10 Memory= 3203.389 t= 2.58e+04 R= 2e+03 -Depth= 35611 States= 4.5e+07 Transitions= 1.98e+10 Memory= 3249.580 t= 2.65e+04 R= 2e+03 -Depth= 35611 States= 4.6e+07 Transitions= 2.02e+10 Memory= 3297.920 t= 2.69e+04 R= 2e+03 -Depth= 35611 States= 4.7e+07 Transitions= 2.06e+10 Memory= 3347.236 t= 2.75e+04 R= 2e+03 -Depth= 35611 States= 4.8e+07 Transitions= 2.09e+10 Memory= 3395.772 t= 2.79e+04 R= 2e+03 -Depth= 35611 States= 4.9e+07 Transitions= 2.12e+10 Memory= 3443.818 t= 2.83e+04 R= 2e+03 -Depth= 35611 States= 5e+07 Transitions= 2.15e+10 Memory= 3492.549 t= 2.87e+04 R= 2e+03 -Depth= 35611 States= 5.1e+07 Transitions= 2.18e+10 Memory= 3540.303 t= 2.91e+04 R= 2e+03 -Depth= 35611 States= 5.2e+07 Transitions= 2.21e+10 Memory= 3591.377 t= 2.95e+04 R= 2e+03 -Depth= 35611 States= 5.3e+07 Transitions= 2.24e+10 Memory= 3639.326 t= 3e+04 R= 2e+03 -Depth= 35611 States= 5.4e+07 Transitions= 2.27e+10 Memory= 3687.373 t= 3.04e+04 R= 2e+03 -Depth= 35611 States= 5.5e+07 Transitions= 2.31e+10 Memory= 3733.662 t= 3.09e+04 R= 2e+03 -Depth= 35611 States= 5.6e+07 Transitions= 2.37e+10 Memory= 3779.561 t= 3.16e+04 R= 2e+03 -Depth= 35611 States= 5.7e+07 Transitions= 2.42e+10 Memory= 3823.213 t= 3.24e+04 R= 2e+03 -Depth= 35611 States= 5.8e+07 Transitions= 2.47e+10 Memory= 3869.795 t= 3.3e+04 R= 2e+03 -Depth= 35611 States= 5.9e+07 Transitions= 2.52e+10 Memory= 3916.084 t= 3.37e+04 R= 2e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 35611, errors: 0 - 33837266 states, stored (5.99297e+07 visited) -2.557894e+10 states, matched -2.563887e+10 transitions (= visited+matched) -1.4922421e+11 atomic steps -hash conflicts: 9.616061e+09 (resolved) - -Stats on memory usage (in Megabytes): - 3743.289 equivalent memory usage for states (stored*(State-vector + overhead)) - 2990.875 actual memory usage for states (compression: 79.90%) - state-vector as stored = 65 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 1.683 memory lost to fragmentation - 3958.955 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 77, "(1)" - line 231, "pan.___", state 85, "(1)" - line 235, "pan.___", state 97, "(1)" - line 239, "pan.___", state 105, "(1)" - line 395, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 196, "(1)" - line 421, "pan.___", state 226, "(1)" - line 425, "pan.___", state 239, "(1)" - line 670, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 332, "(1)" - line 421, "pan.___", state 362, "(1)" - line 425, "pan.___", state 375, "(1)" - line 395, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 461, "(1)" - line 421, "pan.___", state 491, "(1)" - line 425, "pan.___", state 504, "(1)" - line 395, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 529, "(1)" - line 395, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 530, "else" - line 395, "pan.___", state 533, "(1)" - line 399, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 543, "(1)" - line 399, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 544, "else" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "(1)" - line 399, "pan.___", state 548, "(1)" - line 397, "pan.___", state 553, "((i<1))" - line 397, "pan.___", state 553, "((i>=1))" - line 404, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 561, "(1)" - line 404, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 562, "else" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "(1)" - line 404, "pan.___", state 566, "(1)" - line 408, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 575, "(1)" - line 408, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 576, "else" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "(1)" - line 408, "pan.___", state 580, "(1)" - line 406, "pan.___", state 585, "((i<2))" - line 406, "pan.___", state 585, "((i>=2))" - line 412, "pan.___", state 592, "(1)" - line 412, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 593, "else" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(1)" - line 412, "pan.___", state 597, "(1)" - line 416, "pan.___", state 605, "(1)" - line 416, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 606, "else" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(1)" - line 416, "pan.___", state 610, "(1)" - line 414, "pan.___", state 615, "((i<1))" - line 414, "pan.___", state 615, "((i>=1))" - line 421, "pan.___", state 622, "(1)" - line 421, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 623, "else" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(1)" - line 421, "pan.___", state 627, "(1)" - line 425, "pan.___", state 635, "(1)" - line 425, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 636, "else" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(1)" - line 425, "pan.___", state 640, "(1)" - line 423, "pan.___", state 645, "((i<2))" - line 423, "pan.___", state 645, "((i>=2))" - line 430, "pan.___", state 649, "(1)" - line 430, "pan.___", state 649, "(1)" - line 670, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 670, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 670, "pan.___", state 654, "(1)" - line 395, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 726, "(1)" - line 421, "pan.___", state 756, "(1)" - line 425, "pan.___", state 769, "(1)" - line 395, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 799, "(1)" - line 395, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 800, "else" - line 395, "pan.___", state 803, "(1)" - line 399, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 813, "(1)" - line 399, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 814, "else" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "(1)" - line 399, "pan.___", state 818, "(1)" - line 397, "pan.___", state 823, "((i<1))" - line 397, "pan.___", state 823, "((i>=1))" - line 404, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 831, "(1)" - line 404, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 832, "else" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "(1)" - line 404, "pan.___", state 836, "(1)" - line 408, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 845, "(1)" - line 408, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 846, "else" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "(1)" - line 408, "pan.___", state 850, "(1)" - line 406, "pan.___", state 855, "((i<2))" - line 406, "pan.___", state 855, "((i>=2))" - line 412, "pan.___", state 862, "(1)" - line 412, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 863, "else" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(1)" - line 412, "pan.___", state 867, "(1)" - line 416, "pan.___", state 875, "(1)" - line 416, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 876, "else" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(1)" - line 416, "pan.___", state 880, "(1)" - line 414, "pan.___", state 885, "((i<1))" - line 414, "pan.___", state 885, "((i>=1))" - line 421, "pan.___", state 892, "(1)" - line 421, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 893, "else" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(1)" - line 421, "pan.___", state 897, "(1)" - line 425, "pan.___", state 905, "(1)" - line 425, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 906, "else" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(1)" - line 425, "pan.___", state 910, "(1)" - line 430, "pan.___", state 919, "(1)" - line 430, "pan.___", state 919, "(1)" - line 395, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 928, "(1)" - line 395, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 929, "else" - line 395, "pan.___", state 932, "(1)" - line 399, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 942, "(1)" - line 399, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 943, "else" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "(1)" - line 399, "pan.___", state 947, "(1)" - line 397, "pan.___", state 952, "((i<1))" - line 397, "pan.___", state 952, "((i>=1))" - line 404, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 960, "(1)" - line 404, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 961, "else" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "(1)" - line 404, "pan.___", state 965, "(1)" - line 408, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 974, "(1)" - line 408, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 975, "else" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "(1)" - line 408, "pan.___", state 979, "(1)" - line 406, "pan.___", state 984, "((i<2))" - line 406, "pan.___", state 984, "((i>=2))" - line 412, "pan.___", state 991, "(1)" - line 412, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 992, "else" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(1)" - line 412, "pan.___", state 996, "(1)" - line 416, "pan.___", state 1004, "(1)" - line 416, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1005, "else" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 414, "pan.___", state 1014, "((i<1))" - line 414, "pan.___", state 1014, "((i>=1))" - line 421, "pan.___", state 1021, "(1)" - line 421, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1022, "else" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 425, "pan.___", state 1034, "(1)" - line 425, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1035, "else" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 423, "pan.___", state 1044, "((i<2))" - line 423, "pan.___", state 1044, "((i>=2))" - line 430, "pan.___", state 1048, "(1)" - line 430, "pan.___", state 1048, "(1)" - line 678, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1122, "(1)" - line 421, "pan.___", state 1152, "(1)" - line 425, "pan.___", state 1165, "(1)" - line 395, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1254, "(1)" - line 421, "pan.___", state 1284, "(1)" - line 425, "pan.___", state 1297, "(1)" - line 395, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1387, "(1)" - line 421, "pan.___", state 1417, "(1)" - line 425, "pan.___", state 1430, "(1)" - line 395, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1516, "(1)" - line 421, "pan.___", state 1546, "(1)" - line 425, "pan.___", state 1559, "(1)" - line 395, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1650, "(1)" - line 421, "pan.___", state 1680, "(1)" - line 425, "pan.___", state 1693, "(1)" - line 395, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1779, "(1)" - line 421, "pan.___", state 1809, "(1)" - line 425, "pan.___", state 1822, "(1)" - line 395, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1911, "(1)" - line 421, "pan.___", state 1941, "(1)" - line 425, "pan.___", state 1954, "(1)" - line 717, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2047, "(1)" - line 421, "pan.___", state 2077, "(1)" - line 425, "pan.___", state 2090, "(1)" - line 395, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2176, "(1)" - line 421, "pan.___", state 2206, "(1)" - line 425, "pan.___", state 2219, "(1)" - line 395, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2244, "(1)" - line 395, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2245, "else" - line 395, "pan.___", state 2248, "(1)" - line 399, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2258, "(1)" - line 399, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2259, "else" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 397, "pan.___", state 2268, "((i<1))" - line 397, "pan.___", state 2268, "((i>=1))" - line 404, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2276, "(1)" - line 404, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2277, "else" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 408, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2290, "(1)" - line 408, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2291, "else" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 406, "pan.___", state 2300, "((i<2))" - line 406, "pan.___", state 2300, "((i>=2))" - line 412, "pan.___", state 2307, "(1)" - line 412, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2308, "else" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 416, "pan.___", state 2320, "(1)" - line 416, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2321, "else" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 414, "pan.___", state 2330, "((i<1))" - line 414, "pan.___", state 2330, "((i>=1))" - line 421, "pan.___", state 2337, "(1)" - line 421, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2338, "else" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 425, "pan.___", state 2350, "(1)" - line 425, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2351, "else" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 423, "pan.___", state 2360, "((i<2))" - line 423, "pan.___", state 2360, "((i>=2))" - line 430, "pan.___", state 2364, "(1)" - line 430, "pan.___", state 2364, "(1)" - line 717, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 717, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 717, "pan.___", state 2369, "(1)" - line 395, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2441, "(1)" - line 421, "pan.___", state 2471, "(1)" - line 425, "pan.___", state 2484, "(1)" - line 395, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2576, "(1)" - line 421, "pan.___", state 2606, "(1)" - line 425, "pan.___", state 2619, "(1)" - line 395, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2705, "(1)" - line 421, "pan.___", state 2735, "(1)" - line 425, "pan.___", state 2748, "(1)" - line 227, "pan.___", state 2781, "(1)" - line 235, "pan.___", state 2801, "(1)" - line 239, "pan.___", state 2809, "(1)" - line 227, "pan.___", state 2824, "(1)" - line 235, "pan.___", state 2844, "(1)" - line 239, "pan.___", state 2852, "(1)" - line 877, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 83, "(1)" - line 416, "pan.___", state 96, "(1)" - line 421, "pan.___", state 113, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 898, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 907, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 920, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 227, "pan.___", state 945, "(1)" - line 231, "pan.___", state 953, "(1)" - line 235, "pan.___", state 965, "(1)" - line 239, "pan.___", state 973, "(1)" - line 250, "pan.___", state 1004, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1013, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1026, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1035, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1051, "(1)" - line 231, "pan.___", state 1059, "(1)" - line 235, "pan.___", state 1071, "(1)" - line 239, "pan.___", state 1079, "(1)" - line 250, "pan.___", state 1100, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1109, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1124, "(1)" - line 262, "pan.___", state 1131, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1147, "(1)" - line 231, "pan.___", state 1155, "(1)" - line 235, "pan.___", state 1167, "(1)" - line 239, "pan.___", state 1175, "(1)" - line 250, "pan.___", state 1206, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1215, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1228, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1237, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1253, "(1)" - line 231, "pan.___", state 1261, "(1)" - line 235, "pan.___", state 1273, "(1)" - line 239, "pan.___", state 1281, "(1)" - line 254, "pan.___", state 1307, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1320, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1329, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1345, "(1)" - line 231, "pan.___", state 1353, "(1)" - line 235, "pan.___", state 1365, "(1)" - line 239, "pan.___", state 1373, "(1)" - line 250, "pan.___", state 1404, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1413, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1426, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1435, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1451, "(1)" - line 231, "pan.___", state 1459, "(1)" - line 235, "pan.___", state 1471, "(1)" - line 239, "pan.___", state 1479, "(1)" - line 254, "pan.___", state 1505, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1518, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1527, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1543, "(1)" - line 231, "pan.___", state 1551, "(1)" - line 235, "pan.___", state 1563, "(1)" - line 239, "pan.___", state 1571, "(1)" - line 250, "pan.___", state 1602, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1611, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1624, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1633, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1649, "(1)" - line 231, "pan.___", state 1657, "(1)" - line 235, "pan.___", state 1669, "(1)" - line 239, "pan.___", state 1677, "(1)" - line 254, "pan.___", state 1703, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1716, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1725, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1741, "(1)" - line 231, "pan.___", state 1749, "(1)" - line 235, "pan.___", state 1761, "(1)" - line 239, "pan.___", state 1769, "(1)" - line 250, "pan.___", state 1800, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1809, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1822, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1831, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1847, "(1)" - line 231, "pan.___", state 1855, "(1)" - line 235, "pan.___", state 1867, "(1)" - line 239, "pan.___", state 1875, "(1)" - line 1204, "pan.___", state 1891, "-end-" - (118 of 1891 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1265, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 3.42e+04 seconds -pan: rate 1751.5295 states/second -pan: avg transition delay 1.3345e-06 usec -cp .input.spin urcu_progress_reader.spin.input -cp .input.spin.trail urcu_progress_reader.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input deleted file mode 100644 index fc0b3ae..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define READER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input.trail deleted file mode 100644 index a0cf98c..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_reader.spin.input.trail +++ /dev/null @@ -1,1767 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4840 -2:3:4760 -3:3:4763 -4:3:4763 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-1414:0:4844 -1415:2:4563 -1416:2:4564 -1417:2:4568 -1418:2:4572 -1419:2:4573 -1420:2:4577 -1421:2:4585 -1422:2:4586 -1423:2:4590 -1424:2:4594 -1425:2:4595 -1426:2:4590 -1427:2:4594 -1428:2:4595 -1429:2:4599 -1430:2:4606 -1431:2:4613 -1432:2:4614 -1433:2:4621 -1434:2:4626 -1435:2:4633 -1436:2:4634 -1437:2:4633 -1438:2:4634 -1439:2:4641 -1440:2:4645 -1441:0:4844 -1442:2:4650 -1443:0:4844 -1444:2:4651 -1445:0:4844 -1446:2:4652 -1447:0:4844 -1448:1:26 -1449:0:4844 -1450:1:30 -1451:1:31 -1452:1:35 -1453:1:39 -1454:1:40 -1455:1:44 -1456:1:52 -1457:1:53 -1458:1:57 -1459:1:61 -1460:1:62 -1461:1:57 -1462:1:61 -1463:1:62 -1464:1:66 -1465:1:73 -1466:1:80 -1467:1:81 -1468:1:88 -1469:1:93 -1470:1:100 -1471:1:101 -1472:1:100 -1473:1:101 -1474:1:108 -1475:1:112 -1476:0:4844 -1477:1:117 -1478:0:4844 -1479:2:4655 -1480:0:4844 -1481:2:4660 -1482:0:4844 -1483:2:4661 -1484:0:4844 -1485:2:4669 -1486:2:4670 -1487:2:4674 -1488:2:4678 -1489:2:4679 -1490:2:4683 -1491:2:4691 -1492:2:4692 -1493:2:4696 -1494:2:4700 -1495:2:4701 -1496:2:4696 -1497:2:4700 -1498:2:4701 -1499:2:4705 -1500:2:4712 -1501:2:4719 -1502:2:4720 -1503:2:4727 -1504:2:4732 -1505:2:4739 -1506:2:4740 -1507:2:4739 -1508:2:4740 -1509:2:4747 -1510:2:4751 -1511:0:4844 -1512:2:3743 -1513:2:3753 -1514:0:4844 -1515:2:2881 -1516:0:4844 -1517:2:3744 -1518:2:3745 -1519:0:4844 -1520:2:2881 -1521:0:4844 -1522:2:3749 -1523:0:4844 -1524:2:3757 -1525:0:4844 -1526:2:3758 -1527:0:4844 -1528:2:3763 -1529:0:4844 -1530:2:3767 -1531:2:3768 -1532:2:3772 -1533:2:3776 -1534:2:3777 -1535:2:3781 -1536:2:3789 -1537:2:3790 -1538:2:3794 -1539:2:3795 -1540:2:3794 -1541:2:3798 -1542:2:3799 -1543:2:3803 -1544:2:3810 -1545:2:3817 -1546:2:3818 -1547:2:3825 -1548:2:3830 -1549:2:3837 -1550:2:3838 -1551:2:3837 -1552:2:3838 -1553:2:3845 -1554:2:3849 -1555:0:4844 -1556:2:3854 -1557:0:4844 -1558:2:3855 -1559:0:4844 -1560:2:3856 -1561:0:4844 -1562:1:26 -1563:0:4844 -1564:1:30 -1565:1:31 -1566:1:35 -1567:1:39 -1568:1:40 -1569:1:44 -1570:1:52 -1571:1:53 -1572:1:57 -1573:1:61 -1574:1:62 -1575:1:57 -1576:1:61 -1577:1:62 -1578:1:66 -1579:1:73 -1580:1:80 -1581:1:81 -1582:1:88 -1583:1:93 -1584:1:100 -1585:1:101 -1586:1:100 -1587:1:101 -1588:1:108 -1589:1:112 -1590:0:4844 -1591:1:117 -1592:0:4844 -1593:2:3859 -1594:0:4844 -1595:2:3864 -1596:0:4844 -1597:2:3865 -1598:0:4844 -1599:2:3873 -1600:2:3874 -1601:2:3878 -1602:2:3882 -1603:2:3883 -1604:2:3887 -1605:2:3895 -1606:2:3896 -1607:2:3900 -1608:2:3904 -1609:2:3905 -1610:2:3900 -1611:2:3904 -1612:2:3905 -1613:2:3909 -1614:2:3916 -1615:2:3923 -1616:2:3924 -1617:2:3931 -1618:2:3936 -1619:2:3943 -1620:2:3944 -1621:2:3943 -1622:2:3944 -1623:2:3951 -1624:2:3955 -1625:0:4844 -1626:2:3961 -1627:0:4844 -1628:2:3763 -1629:0:4844 -1630:2:3767 -1631:2:3768 -1632:2:3772 -1633:2:3776 -1634:2:3777 -1635:2:3781 -1636:2:3789 -1637:2:3790 -1638:2:3794 -1639:2:3798 -1640:2:3799 -1641:2:3794 -1642:2:3798 -1643:2:3799 -1644:2:3803 -1645:2:3810 -1646:2:3817 -1647:2:3818 -1648:2:3825 -1649:2:3830 -1650:2:3837 -1651:2:3838 -1652:2:3837 -1653:2:3838 -1654:2:3845 -1655:2:3849 -1656:0:4844 -1657:2:3854 -1658:0:4844 -1659:2:3855 -1660:0:4844 -1661:2:3856 -1662:0:4844 -1663:1:26 --1:-1:-1 -1664:0:4844 -1665:1:30 -1666:1:31 -1667:1:35 -1668:1:39 -1669:1:40 -1670:1:44 -1671:1:52 -1672:1:53 -1673:1:57 -1674:1:61 -1675:1:62 -1676:1:57 -1677:1:61 -1678:1:62 -1679:1:66 -1680:1:73 -1681:1:80 -1682:1:81 -1683:1:88 -1684:1:93 -1685:1:100 -1686:1:101 -1687:1:100 -1688:1:101 -1689:1:108 -1690:1:112 -1691:0:4844 -1692:1:117 -1693:0:4844 -1694:2:3859 -1695:0:4844 -1696:2:3864 -1697:0:4844 -1698:2:3865 -1699:0:4844 -1700:2:3873 -1701:2:3874 -1702:2:3878 -1703:2:3882 -1704:2:3883 -1705:2:3887 -1706:2:3895 -1707:2:3896 -1708:2:3900 -1709:2:3904 -1710:2:3905 -1711:2:3900 -1712:2:3904 -1713:2:3905 -1714:2:3909 -1715:2:3916 -1716:2:3923 -1717:2:3924 -1718:2:3931 -1719:2:3936 -1720:2:3943 -1721:2:3944 -1722:2:3943 -1723:2:3944 -1724:2:3951 -1725:2:3955 -1726:0:4844 -1727:2:3961 -1728:0:4844 -1729:2:3763 -1730:0:4844 -1731:2:3767 -1732:2:3768 -1733:2:3772 -1734:2:3776 -1735:2:3777 -1736:2:3781 -1737:2:3789 -1738:2:3790 -1739:2:3794 -1740:2:3798 -1741:2:3799 -1742:2:3794 -1743:2:3798 -1744:2:3799 -1745:2:3803 -1746:2:3810 -1747:2:3817 -1748:2:3818 -1749:2:3825 -1750:2:3830 -1751:2:3837 -1752:2:3838 -1753:2:3837 -1754:2:3838 -1755:2:3845 -1756:2:3849 -1757:0:4844 -1758:2:3854 -1759:0:4844 -1760:2:3855 -1761:0:4844 -1762:2:3856 -1763:0:4844 -1764:1:26 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.define b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.define deleted file mode 100644 index 1e4417f..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.define +++ /dev/null @@ -1 +0,0 @@ -#define WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.log b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.log deleted file mode 100644 index 7a8b4c1..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.log +++ /dev/null @@ -1,581 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -depth 23: Claim reached state 9 (line 1263) -depth 51: Claim reached state 9 (line 1262) -Depth= 6084 States= 1e+06 Transitions= 2e+08 Memory= 516.838 t= 264 R= 4e+03 -Depth= 7018 States= 2e+06 Transitions= 4.38e+08 Memory= 566.154 t= 585 R= 3e+03 -Depth= 7018 States= 3e+06 Transitions= 6.49e+08 Memory= 616.545 t= 870 R= 3e+03 -pan: resizing hashtable to -w22.. done -Depth= 7018 States= 4e+06 Transitions= 8.46e+08 Memory= 698.447 t= 1.13e+03 R= 4e+03 -Depth= 7018 States= 5e+06 Transitions= 1.29e+09 Memory= 742.979 t= 1.73e+03 R= 3e+03 -Depth= 7018 States= 6e+06 Transitions= 1.8e+09 Memory= 789.170 t= 2.44e+03 R= 2e+03 -Depth= 7018 States= 7e+06 Transitions= 2.27e+09 Memory= 833.506 t= 3.09e+03 R= 2e+03 -Depth= 7018 States= 8e+06 Transitions= 2.76e+09 Memory= 880.283 t= 3.76e+03 R= 2e+03 -Depth= 7018 States= 9e+06 Transitions= 3.05e+09 Memory= 928.135 t= 4.16e+03 R= 2e+03 -pan: resizing hashtable to -w24.. done -Depth= 7018 States= 1e+07 Transitions= 3.3e+09 Memory= 1102.815 t= 4.5e+03 R= 2e+03 -Depth= 7018 States= 1.1e+07 Transitions= 3.74e+09 Memory= 1148.322 t= 5.08e+03 R= 2e+03 -Depth= 7018 States= 1.2e+07 Transitions= 4.65e+09 Memory= 1195.783 t= 6.37e+03 R= 2e+03 -Depth= 7018 States= 1.3e+07 Transitions= 5.63e+09 Memory= 1235.334 t= 7.72e+03 R= 2e+03 -Depth= 7018 States= 1.4e+07 Transitions= 6.21e+09 Memory= 1277.912 t= 8.53e+03 R= 2e+03 -Depth= 7018 States= 1.5e+07 Transitions= 6.77e+09 Memory= 1325.276 t= 9.3e+03 R= 2e+03 -Depth= 7018 States= 1.6e+07 Transitions= 7.05e+09 Memory= 1372.248 t= 9.68e+03 R= 2e+03 -Depth= 7018 States= 1.7e+07 Transitions= 7.66e+09 Memory= 1417.463 t= 1.05e+04 R= 2e+03 -Depth= 7018 States= 1.8e+07 Transitions= 8.25e+09 Memory= 1463.264 t= 1.13e+04 R= 2e+03 -Depth= 7018 States= 1.9e+07 Transitions= 8.65e+09 Memory= 1513.068 t= 1.19e+04 R= 2e+03 -Depth= 7018 States= 2e+07 Transitions= 8.97e+09 Memory= 1561.408 t= 1.23e+04 R= 2e+03 -Depth= 7018 States= 2.1e+07 Transitions= 9.29e+09 Memory= 1609.651 t= 1.28e+04 R= 2e+03 -Depth= 7018 States= 2.2e+07 Transitions= 9.65e+09 Memory= 1659.065 t= 1.33e+04 R= 2e+03 -Depth= 7018 States= 2.3e+07 Transitions= 9.91e+09 Memory= 1708.186 t= 1.36e+04 R= 2e+03 -Depth= 7018 States= 2.4e+07 Transitions= 1.03e+10 Memory= 1757.307 t= 1.41e+04 R= 2e+03 -Depth= 7018 States= 2.5e+07 Transitions= 1.05e+10 Memory= 1807.014 t= 1.45e+04 R= 2e+03 -Depth= 7018 States= 2.6e+07 Transitions= 1.09e+10 Memory= 1856.623 t= 1.49e+04 R= 2e+03 -Depth= 7018 States= 2.7e+07 Transitions= 1.12e+10 Memory= 1906.428 t= 1.54e+04 R= 2e+03 -Depth= 7018 States= 2.8e+07 Transitions= 1.16e+10 Memory= 1951.838 t= 1.59e+04 R= 2e+03 -Depth= 7018 States= 2.9e+07 Transitions= 1.2e+10 Memory= 1998.615 t= 1.65e+04 R= 2e+03 -Depth= 7018 States= 3e+07 Transitions= 1.25e+10 Memory= 2044.026 t= 1.73e+04 R= 2e+03 -Depth= 7018 States= 3.1e+07 Transitions= 1.31e+10 Memory= 2087.971 t= 1.8e+04 R= 2e+03 -Depth= 7018 States= 3.2e+07 Transitions= 1.36e+10 Memory= 2134.455 t= 1.87e+04 R= 2e+03 -Depth= 7018 States= 3.3e+07 Transitions= 1.39e+10 Memory= 2181.818 t= 1.92e+04 R= 2e+03 -Depth= 7018 States= 3.4e+07 Transitions= 1.42e+10 Memory= 2232.795 t= 1.95e+04 R= 2e+03 -pan: resizing hashtable to -w26.. done -Depth= 7018 States= 3.5e+07 Transitions= 1.45e+10 Memory= 2776.338 t= 1.99e+04 R= 2e+03 -Depth= 7018 States= 3.6e+07 Transitions= 1.52e+10 Memory= 2822.041 t= 2.09e+04 R= 2e+03 -Depth= 7018 States= 3.7e+07 Transitions= 1.62e+10 Memory= 2866.182 t= 2.23e+04 R= 2e+03 -Depth= 7018 States= 3.8e+07 Transitions= 1.7e+10 Memory= 2904.365 t= 2.35e+04 R= 2e+03 -Depth= 7018 States= 3.9e+07 Transitions= 1.76e+10 Memory= 2950.361 t= 2.43e+04 R= 2e+03 -Depth= 7018 States= 4e+07 Transitions= 1.79e+10 Memory= 2998.701 t= 2.47e+04 R= 2e+03 -Depth= 7018 States= 4.1e+07 Transitions= 1.84e+10 Memory= 3044.600 t= 2.53e+04 R= 2e+03 -Depth= 7018 States= 4.2e+07 Transitions= 1.89e+10 Memory= 3090.498 t= 2.61e+04 R= 2e+03 -Depth= 7018 States= 4.3e+07 Transitions= 1.95e+10 Memory= 3136.885 t= 2.68e+04 R= 2e+03 -Depth= 7018 States= 4.4e+07 Transitions= 1.98e+10 Memory= 3186.299 t= 2.73e+04 R= 2e+03 -Depth= 7018 States= 4.5e+07 Transitions= 2.01e+10 Memory= 3235.225 t= 2.77e+04 R= 2e+03 -Depth= 7018 States= 4.6e+07 Transitions= 2.04e+10 Memory= 3284.541 t= 2.82e+04 R= 2e+03 -Depth= 7018 States= 4.7e+07 Transitions= 2.08e+10 Memory= 3334.541 t= 2.87e+04 R= 2e+03 -Depth= 7018 States= 4.8e+07 Transitions= 2.11e+10 Memory= 3383.565 t= 2.91e+04 R= 2e+03 -Depth= 7018 States= 4.9e+07 Transitions= 2.14e+10 Memory= 3432.588 t= 2.95e+04 R= 2e+03 -Depth= 7018 States= 5e+07 Transitions= 2.17e+10 Memory= 3483.369 t= 2.99e+04 R= 2e+03 -Depth= 7018 States= 5.1e+07 Transitions= 2.21e+10 Memory= 3532.490 t= 3.04e+04 R= 2e+03 -Depth= 7018 States= 5.2e+07 Transitions= 2.23e+10 Memory= 3580.147 t= 3.07e+04 R= 2e+03 -Depth= 7018 States= 5.3e+07 Transitions= 2.27e+10 Memory= 3625.752 t= 3.13e+04 R= 2e+03 -Depth= 7018 States= 5.4e+07 Transitions= 2.32e+10 Memory= 3671.943 t= 3.2e+04 R= 2e+03 -Depth= 7018 States= 5.5e+07 Transitions= 2.38e+10 Memory= 3715.693 t= 3.27e+04 R= 2e+03 -Depth= 7018 States= 5.6e+07 Transitions= 2.42e+10 Memory= 3762.276 t= 3.33e+04 R= 2e+03 -Depth= 7018 States= 5.7e+07 Transitions= 2.48e+10 Memory= 3808.565 t= 3.41e+04 R= 2e+03 -Depth= 7018 States= 5.8e+07 Transitions= 2.53e+10 Memory= 3855.440 t= 3.48e+04 R= 2e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 7018, errors: 0 - 32735820 states, stored (5.82355e+07 visited) -2.5283515e+10 states, matched -2.534175e+10 transitions (= visited+matched) -1.4761827e+11 atomic steps -hash conflicts: 8.6523014e+09 (resolved) - -Stats on memory usage (in Megabytes): - 3621.440 equivalent memory usage for states (stored*(State-vector + overhead)) - 2898.114 actual memory usage for states (compression: 80.03%) - state-vector as stored = 65 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 1.598 memory lost to fragmentation - 3866.279 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 77, "(1)" - line 231, "pan.___", state 85, "(1)" - line 235, "pan.___", state 97, "(1)" - line 239, "pan.___", state 105, "(1)" - line 395, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 196, "(1)" - line 421, "pan.___", state 226, "(1)" - line 425, "pan.___", state 239, "(1)" - line 670, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 332, "(1)" - line 421, "pan.___", state 362, "(1)" - line 425, "pan.___", state 375, "(1)" - line 395, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 461, "(1)" - line 421, "pan.___", state 491, "(1)" - line 425, "pan.___", state 504, "(1)" - line 395, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 529, "(1)" - line 395, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 530, "else" - line 395, "pan.___", state 533, "(1)" - line 399, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 543, "(1)" - line 399, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 544, "else" - line 399, "pan.___", state 547, "(1)" - line 399, "pan.___", state 548, "(1)" - line 399, "pan.___", state 548, "(1)" - line 397, "pan.___", state 553, "((i<1))" - line 397, "pan.___", state 553, "((i>=1))" - line 404, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 561, "(1)" - line 404, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 562, "else" - line 404, "pan.___", state 565, "(1)" - line 404, "pan.___", state 566, "(1)" - line 404, "pan.___", state 566, "(1)" - line 408, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 575, "(1)" - line 408, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 576, "else" - line 408, "pan.___", state 579, "(1)" - line 408, "pan.___", state 580, "(1)" - line 408, "pan.___", state 580, "(1)" - line 406, "pan.___", state 585, "((i<2))" - line 406, "pan.___", state 585, "((i>=2))" - line 412, "pan.___", state 592, "(1)" - line 412, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 593, "else" - line 412, "pan.___", state 596, "(1)" - line 412, "pan.___", state 597, "(1)" - line 412, "pan.___", state 597, "(1)" - line 416, "pan.___", state 605, "(1)" - line 416, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 606, "else" - line 416, "pan.___", state 609, "(1)" - line 416, "pan.___", state 610, "(1)" - line 416, "pan.___", state 610, "(1)" - line 414, "pan.___", state 615, "((i<1))" - line 414, "pan.___", state 615, "((i>=1))" - line 421, "pan.___", state 622, "(1)" - line 421, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 623, "else" - line 421, "pan.___", state 626, "(1)" - line 421, "pan.___", state 627, "(1)" - line 421, "pan.___", state 627, "(1)" - line 425, "pan.___", state 635, "(1)" - line 425, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 636, "else" - line 425, "pan.___", state 639, "(1)" - line 425, "pan.___", state 640, "(1)" - line 425, "pan.___", state 640, "(1)" - line 423, "pan.___", state 645, "((i<2))" - line 423, "pan.___", state 645, "((i>=2))" - line 430, "pan.___", state 649, "(1)" - line 430, "pan.___", state 649, "(1)" - line 670, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 670, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 670, "pan.___", state 654, "(1)" - line 395, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 726, "(1)" - line 421, "pan.___", state 756, "(1)" - line 425, "pan.___", state 769, "(1)" - line 395, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 799, "(1)" - line 395, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 800, "else" - line 395, "pan.___", state 803, "(1)" - line 399, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 813, "(1)" - line 399, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 814, "else" - line 399, "pan.___", state 817, "(1)" - line 399, "pan.___", state 818, "(1)" - line 399, "pan.___", state 818, "(1)" - line 397, "pan.___", state 823, "((i<1))" - line 397, "pan.___", state 823, "((i>=1))" - line 404, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 831, "(1)" - line 404, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 832, "else" - line 404, "pan.___", state 835, "(1)" - line 404, "pan.___", state 836, "(1)" - line 404, "pan.___", state 836, "(1)" - line 408, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 845, "(1)" - line 408, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 846, "else" - line 408, "pan.___", state 849, "(1)" - line 408, "pan.___", state 850, "(1)" - line 408, "pan.___", state 850, "(1)" - line 406, "pan.___", state 855, "((i<2))" - line 406, "pan.___", state 855, "((i>=2))" - line 412, "pan.___", state 862, "(1)" - line 412, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 863, "else" - line 412, "pan.___", state 866, "(1)" - line 412, "pan.___", state 867, "(1)" - line 412, "pan.___", state 867, "(1)" - line 416, "pan.___", state 875, "(1)" - line 416, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 876, "else" - line 416, "pan.___", state 879, "(1)" - line 416, "pan.___", state 880, "(1)" - line 416, "pan.___", state 880, "(1)" - line 414, "pan.___", state 885, "((i<1))" - line 414, "pan.___", state 885, "((i>=1))" - line 421, "pan.___", state 892, "(1)" - line 421, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 893, "else" - line 421, "pan.___", state 896, "(1)" - line 421, "pan.___", state 897, "(1)" - line 421, "pan.___", state 897, "(1)" - line 425, "pan.___", state 905, "(1)" - line 425, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 906, "else" - line 425, "pan.___", state 909, "(1)" - line 425, "pan.___", state 910, "(1)" - line 425, "pan.___", state 910, "(1)" - line 430, "pan.___", state 919, "(1)" - line 430, "pan.___", state 919, "(1)" - line 395, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 928, "(1)" - line 395, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 929, "else" - line 395, "pan.___", state 932, "(1)" - line 399, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 942, "(1)" - line 399, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 943, "else" - line 399, "pan.___", state 946, "(1)" - line 399, "pan.___", state 947, "(1)" - line 399, "pan.___", state 947, "(1)" - line 397, "pan.___", state 952, "((i<1))" - line 397, "pan.___", state 952, "((i>=1))" - line 404, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 960, "(1)" - line 404, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 961, "else" - line 404, "pan.___", state 964, "(1)" - line 404, "pan.___", state 965, "(1)" - line 404, "pan.___", state 965, "(1)" - line 408, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 974, "(1)" - line 408, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 975, "else" - line 408, "pan.___", state 978, "(1)" - line 408, "pan.___", state 979, "(1)" - line 408, "pan.___", state 979, "(1)" - line 406, "pan.___", state 984, "((i<2))" - line 406, "pan.___", state 984, "((i>=2))" - line 412, "pan.___", state 991, "(1)" - line 412, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 992, "else" - line 412, "pan.___", state 995, "(1)" - line 412, "pan.___", state 996, "(1)" - line 412, "pan.___", state 996, "(1)" - line 416, "pan.___", state 1004, "(1)" - line 416, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 1005, "else" - line 416, "pan.___", state 1008, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 416, "pan.___", state 1009, "(1)" - line 414, "pan.___", state 1014, "((i<1))" - line 414, "pan.___", state 1014, "((i>=1))" - line 421, "pan.___", state 1021, "(1)" - line 421, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1022, "else" - line 421, "pan.___", state 1025, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 421, "pan.___", state 1026, "(1)" - line 425, "pan.___", state 1034, "(1)" - line 425, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1035, "else" - line 425, "pan.___", state 1038, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 425, "pan.___", state 1039, "(1)" - line 423, "pan.___", state 1044, "((i<2))" - line 423, "pan.___", state 1044, "((i>=2))" - line 430, "pan.___", state 1048, "(1)" - line 430, "pan.___", state 1048, "(1)" - line 678, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1122, "(1)" - line 421, "pan.___", state 1152, "(1)" - line 425, "pan.___", state 1165, "(1)" - line 395, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1254, "(1)" - line 421, "pan.___", state 1284, "(1)" - line 425, "pan.___", state 1297, "(1)" - line 395, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1387, "(1)" - line 421, "pan.___", state 1417, "(1)" - line 425, "pan.___", state 1430, "(1)" - line 395, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1516, "(1)" - line 421, "pan.___", state 1546, "(1)" - line 425, "pan.___", state 1559, "(1)" - line 395, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1650, "(1)" - line 421, "pan.___", state 1680, "(1)" - line 425, "pan.___", state 1693, "(1)" - line 395, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1779, "(1)" - line 421, "pan.___", state 1809, "(1)" - line 425, "pan.___", state 1822, "(1)" - line 395, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1911, "(1)" - line 421, "pan.___", state 1941, "(1)" - line 425, "pan.___", state 1954, "(1)" - line 717, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2047, "(1)" - line 421, "pan.___", state 2077, "(1)" - line 425, "pan.___", state 2090, "(1)" - line 395, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2176, "(1)" - line 421, "pan.___", state 2206, "(1)" - line 425, "pan.___", state 2219, "(1)" - line 395, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2244, "(1)" - line 395, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2245, "else" - line 395, "pan.___", state 2248, "(1)" - line 399, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2258, "(1)" - line 399, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2259, "else" - line 399, "pan.___", state 2262, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 399, "pan.___", state 2263, "(1)" - line 397, "pan.___", state 2268, "((i<1))" - line 397, "pan.___", state 2268, "((i>=1))" - line 404, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2276, "(1)" - line 404, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2277, "else" - line 404, "pan.___", state 2280, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 404, "pan.___", state 2281, "(1)" - line 408, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2290, "(1)" - line 408, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2291, "else" - line 408, "pan.___", state 2294, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 408, "pan.___", state 2295, "(1)" - line 406, "pan.___", state 2300, "((i<2))" - line 406, "pan.___", state 2300, "((i>=2))" - line 412, "pan.___", state 2307, "(1)" - line 412, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2308, "else" - line 412, "pan.___", state 2311, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 412, "pan.___", state 2312, "(1)" - line 416, "pan.___", state 2320, "(1)" - line 416, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2321, "else" - line 416, "pan.___", state 2324, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 416, "pan.___", state 2325, "(1)" - line 414, "pan.___", state 2330, "((i<1))" - line 414, "pan.___", state 2330, "((i>=1))" - line 421, "pan.___", state 2337, "(1)" - line 421, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2338, "else" - line 421, "pan.___", state 2341, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 421, "pan.___", state 2342, "(1)" - line 425, "pan.___", state 2350, "(1)" - line 425, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2351, "else" - line 425, "pan.___", state 2354, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 425, "pan.___", state 2355, "(1)" - line 423, "pan.___", state 2360, "((i<2))" - line 423, "pan.___", state 2360, "((i>=2))" - line 430, "pan.___", state 2364, "(1)" - line 430, "pan.___", state 2364, "(1)" - line 717, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 717, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 717, "pan.___", state 2369, "(1)" - line 395, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2441, "(1)" - line 421, "pan.___", state 2471, "(1)" - line 425, "pan.___", state 2484, "(1)" - line 395, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2576, "(1)" - line 421, "pan.___", state 2606, "(1)" - line 425, "pan.___", state 2619, "(1)" - line 395, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2705, "(1)" - line 421, "pan.___", state 2735, "(1)" - line 425, "pan.___", state 2748, "(1)" - line 227, "pan.___", state 2781, "(1)" - line 235, "pan.___", state 2801, "(1)" - line 239, "pan.___", state 2809, "(1)" - line 227, "pan.___", state 2824, "(1)" - line 235, "pan.___", state 2844, "(1)" - line 239, "pan.___", state 2852, "(1)" - line 877, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 83, "(1)" - line 416, "pan.___", state 96, "(1)" - line 421, "pan.___", state 113, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 250, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1056, "(1)" - line 231, "pan.___", state 1064, "(1)" - line 235, "pan.___", state 1076, "(1)" - line 239, "pan.___", state 1084, "(1)" - line 254, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1148, "(1)" - line 231, "pan.___", state 1156, "(1)" - line 235, "pan.___", state 1168, "(1)" - line 239, "pan.___", state 1176, "(1)" - line 250, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1254, "(1)" - line 231, "pan.___", state 1262, "(1)" - line 235, "pan.___", state 1274, "(1)" - line 239, "pan.___", state 1282, "(1)" - line 254, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1346, "(1)" - line 231, "pan.___", state 1354, "(1)" - line 235, "pan.___", state 1366, "(1)" - line 239, "pan.___", state 1374, "(1)" - line 250, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1452, "(1)" - line 231, "pan.___", state 1460, "(1)" - line 235, "pan.___", state 1472, "(1)" - line 239, "pan.___", state 1480, "(1)" - line 254, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1544, "(1)" - line 231, "pan.___", state 1552, "(1)" - line 235, "pan.___", state 1564, "(1)" - line 239, "pan.___", state 1572, "(1)" - line 250, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1650, "(1)" - line 231, "pan.___", state 1658, "(1)" - line 235, "pan.___", state 1670, "(1)" - line 239, "pan.___", state 1678, "(1)" - line 1204, "pan.___", state 1694, "-end-" - (103 of 1694 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1265, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 3.48e+04 seconds -pan: rate 1671.9756 states/second -pan: avg transition delay 1.3744e-06 usec -cp .input.spin urcu_progress_writer.spin.input -cp .input.spin.trail urcu_progress_writer.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input deleted file mode 100644 index 05d09b7..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input.trail deleted file mode 100644 index e8b02f0..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer.spin.input.trail +++ /dev/null @@ -1,884 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4645 -2:3:4565 -3:3:4568 -4:3:4568 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-869:1:64 -870:1:68 -871:1:75 -872:1:82 -873:1:83 -874:1:90 -875:1:95 -876:1:102 -877:1:103 -878:1:102 -879:1:103 -880:1:110 -881:1:114 diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.define b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.define deleted file mode 100644 index 8d304f5..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.define +++ /dev/null @@ -1,2 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.log b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.log deleted file mode 100644 index 499062a..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.log +++ /dev/null @@ -1,556 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer_error.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1259) -depth 23: Claim reached state 9 (line 1264) -depth 51: Claim reached state 9 (line 1263) -pan: acceptance cycle (at depth 1669) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4939, errors: 1 - 565131 states, stored (936882 visited) -1.8676179e+08 states, matched -1.8769867e+08 transitions (= visited+matched) -1.0114449e+09 atomic steps -hash conflicts: 18464180 (resolved) - -Stats on memory usage (in Megabytes): - 62.518 equivalent memory usage for states (stored*(State-vector + overhead)) - 48.226 actual memory usage for states (compression: 77.14%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 513.908 total actual memory usage - -unreached in proctype urcu_reader - line 251, "pan.___", state 30, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 61, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 77, "(1)" - line 232, "pan.___", state 85, "(1)" - line 236, "pan.___", state 97, "(1)" - line 240, "pan.___", state 105, "(1)" - line 396, "pan.___", state 131, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 163, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 177, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 196, "(1)" - line 422, "pan.___", state 226, "(1)" - line 426, "pan.___", state 239, "(1)" - line 671, "pan.___", state 260, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 396, "pan.___", state 267, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 299, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 313, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 332, "(1)" - line 422, "pan.___", state 362, "(1)" - line 426, "pan.___", state 375, "(1)" - line 396, "pan.___", state 396, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 442, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 461, "(1)" - line 422, "pan.___", state 491, "(1)" - line 426, "pan.___", state 504, "(1)" - line 396, "pan.___", state 527, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 529, "(1)" - line 396, "pan.___", state 530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 530, "else" - line 396, "pan.___", state 533, "(1)" - line 400, "pan.___", state 541, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 543, "(1)" - line 400, "pan.___", state 544, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 544, "else" - line 400, "pan.___", state 547, "(1)" - line 400, "pan.___", state 548, "(1)" - line 400, "pan.___", state 548, "(1)" - line 398, "pan.___", state 553, "((i<1))" - line 398, "pan.___", state 553, "((i>=1))" - line 405, "pan.___", state 559, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 561, "(1)" - line 405, "pan.___", state 562, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 562, "else" - line 405, "pan.___", state 565, "(1)" - line 405, "pan.___", state 566, "(1)" - line 405, "pan.___", state 566, "(1)" - line 409, "pan.___", state 573, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 575, "(1)" - line 409, "pan.___", state 576, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 576, "else" - line 409, "pan.___", state 579, "(1)" - line 409, "pan.___", state 580, "(1)" - line 409, "pan.___", state 580, "(1)" - line 407, "pan.___", state 585, "((i<2))" - line 407, "pan.___", state 585, "((i>=2))" - line 413, "pan.___", state 592, "(1)" - line 413, "pan.___", state 593, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 593, "else" - line 413, "pan.___", state 596, "(1)" - line 413, "pan.___", state 597, "(1)" - line 413, "pan.___", state 597, "(1)" - line 417, "pan.___", state 605, "(1)" - line 417, "pan.___", state 606, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 606, "else" - line 417, "pan.___", state 609, "(1)" - line 417, "pan.___", state 610, "(1)" - line 417, "pan.___", state 610, "(1)" - line 415, "pan.___", state 615, "((i<1))" - line 415, "pan.___", state 615, "((i>=1))" - line 422, "pan.___", state 622, "(1)" - line 422, "pan.___", state 623, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 623, "else" - line 422, "pan.___", state 626, "(1)" - line 422, "pan.___", state 627, "(1)" - line 422, "pan.___", state 627, "(1)" - line 426, "pan.___", state 635, "(1)" - line 426, "pan.___", state 636, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 636, "else" - line 426, "pan.___", state 639, "(1)" - line 426, "pan.___", state 640, "(1)" - line 426, "pan.___", state 640, "(1)" - line 424, "pan.___", state 645, "((i<2))" - line 424, "pan.___", state 645, "((i>=2))" - line 431, "pan.___", state 649, "(1)" - line 431, "pan.___", state 649, "(1)" - line 671, "pan.___", state 652, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 671, "pan.___", state 653, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 671, "pan.___", state 654, "(1)" - line 396, "pan.___", state 661, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 693, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 707, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 726, "(1)" - line 422, "pan.___", state 756, "(1)" - line 426, "pan.___", state 769, "(1)" - line 396, "pan.___", state 797, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 799, "(1)" - line 396, "pan.___", state 800, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 800, "else" - line 396, "pan.___", state 803, "(1)" - line 400, "pan.___", state 811, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 813, "(1)" - line 400, "pan.___", state 814, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 814, "else" - line 400, "pan.___", state 817, "(1)" - line 400, "pan.___", state 818, "(1)" - line 400, "pan.___", state 818, "(1)" - line 398, "pan.___", state 823, "((i<1))" - line 398, "pan.___", state 823, "((i>=1))" - line 405, "pan.___", state 829, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 831, "(1)" - line 405, "pan.___", state 832, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 832, "else" - line 405, "pan.___", state 835, "(1)" - line 405, "pan.___", state 836, "(1)" - line 405, "pan.___", state 836, "(1)" - line 409, "pan.___", state 843, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 845, "(1)" - line 409, "pan.___", state 846, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 846, "else" - line 409, "pan.___", state 849, "(1)" - line 409, "pan.___", state 850, "(1)" - line 409, "pan.___", state 850, "(1)" - line 407, "pan.___", state 855, "((i<2))" - line 407, "pan.___", state 855, "((i>=2))" - line 413, "pan.___", state 862, "(1)" - line 413, "pan.___", state 863, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 863, "else" - line 413, "pan.___", state 866, "(1)" - line 413, "pan.___", state 867, "(1)" - line 413, "pan.___", state 867, "(1)" - line 417, "pan.___", state 875, "(1)" - line 417, "pan.___", state 876, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 876, "else" - line 417, "pan.___", state 879, "(1)" - line 417, "pan.___", state 880, "(1)" - line 417, "pan.___", state 880, "(1)" - line 415, "pan.___", state 885, "((i<1))" - line 415, "pan.___", state 885, "((i>=1))" - line 422, "pan.___", state 892, "(1)" - line 422, "pan.___", state 893, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 893, "else" - line 422, "pan.___", state 896, "(1)" - line 422, "pan.___", state 897, "(1)" - line 422, "pan.___", state 897, "(1)" - line 426, "pan.___", state 905, "(1)" - line 426, "pan.___", state 906, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 906, "else" - line 426, "pan.___", state 909, "(1)" - line 426, "pan.___", state 910, "(1)" - line 426, "pan.___", state 910, "(1)" - line 431, "pan.___", state 919, "(1)" - line 431, "pan.___", state 919, "(1)" - line 396, "pan.___", state 926, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 928, "(1)" - line 396, "pan.___", state 929, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 929, "else" - line 396, "pan.___", state 932, "(1)" - line 400, "pan.___", state 940, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 942, "(1)" - line 400, "pan.___", state 943, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 943, "else" - line 400, "pan.___", state 946, "(1)" - line 400, "pan.___", state 947, "(1)" - line 400, "pan.___", state 947, "(1)" - line 398, "pan.___", state 952, "((i<1))" - line 398, "pan.___", state 952, "((i>=1))" - line 405, "pan.___", state 958, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 960, "(1)" - line 405, "pan.___", state 961, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 961, "else" - line 405, "pan.___", state 964, "(1)" - line 405, "pan.___", state 965, "(1)" - line 405, "pan.___", state 965, "(1)" - line 409, "pan.___", state 972, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 974, "(1)" - line 409, "pan.___", state 975, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 975, "else" - line 409, "pan.___", state 978, "(1)" - line 409, "pan.___", state 979, "(1)" - line 409, "pan.___", state 979, "(1)" - line 407, "pan.___", state 984, "((i<2))" - line 407, "pan.___", state 984, "((i>=2))" - line 413, "pan.___", state 991, "(1)" - line 413, "pan.___", state 992, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 992, "else" - line 413, "pan.___", state 995, "(1)" - line 413, "pan.___", state 996, "(1)" - line 413, "pan.___", state 996, "(1)" - line 417, "pan.___", state 1004, "(1)" - line 417, "pan.___", state 1005, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 1005, "else" - line 417, "pan.___", state 1008, "(1)" - line 417, "pan.___", state 1009, "(1)" - line 417, "pan.___", state 1009, "(1)" - line 415, "pan.___", state 1014, "((i<1))" - line 415, "pan.___", state 1014, "((i>=1))" - line 422, "pan.___", state 1021, "(1)" - line 422, "pan.___", state 1022, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 1022, "else" - line 422, "pan.___", state 1025, "(1)" - line 422, "pan.___", state 1026, "(1)" - line 422, "pan.___", state 1026, "(1)" - line 426, "pan.___", state 1034, "(1)" - line 426, "pan.___", state 1035, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 1035, "else" - line 426, "pan.___", state 1038, "(1)" - line 426, "pan.___", state 1039, "(1)" - line 426, "pan.___", state 1039, "(1)" - line 424, "pan.___", state 1044, "((i<2))" - line 424, "pan.___", state 1044, "((i>=2))" - line 431, "pan.___", state 1048, "(1)" - line 431, "pan.___", state 1048, "(1)" - line 679, "pan.___", state 1052, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 396, "pan.___", state 1057, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1089, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1103, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1122, "(1)" - line 422, "pan.___", state 1152, "(1)" - line 426, "pan.___", state 1165, "(1)" - line 396, "pan.___", state 1189, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1221, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1235, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1254, "(1)" - line 422, "pan.___", state 1284, "(1)" - line 426, "pan.___", state 1297, "(1)" - line 396, "pan.___", state 1322, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1354, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1368, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1387, "(1)" - line 422, "pan.___", state 1417, "(1)" - line 426, "pan.___", state 1430, "(1)" - line 396, "pan.___", state 1451, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1483, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1497, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1516, "(1)" - line 422, "pan.___", state 1546, "(1)" - line 426, "pan.___", state 1559, "(1)" - line 396, "pan.___", state 1585, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1617, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1631, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1650, "(1)" - line 422, "pan.___", state 1680, "(1)" - line 426, "pan.___", state 1693, "(1)" - line 396, "pan.___", state 1714, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1746, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1760, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1779, "(1)" - line 422, "pan.___", state 1809, "(1)" - line 426, "pan.___", state 1822, "(1)" - line 396, "pan.___", state 1846, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1878, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1892, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1911, "(1)" - line 422, "pan.___", state 1941, "(1)" - line 426, "pan.___", state 1954, "(1)" - line 718, "pan.___", state 1975, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 396, "pan.___", state 1982, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2014, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2047, "(1)" - line 422, "pan.___", state 2077, "(1)" - line 426, "pan.___", state 2090, "(1)" - line 396, "pan.___", state 2111, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2143, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2157, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2176, "(1)" - line 422, "pan.___", state 2206, "(1)" - line 426, "pan.___", state 2219, "(1)" - line 396, "pan.___", state 2242, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2244, "(1)" - line 396, "pan.___", state 2245, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2245, "else" - line 396, "pan.___", state 2248, "(1)" - line 400, "pan.___", state 2256, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2258, "(1)" - line 400, "pan.___", state 2259, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 2259, "else" - line 400, "pan.___", state 2262, "(1)" - line 400, "pan.___", state 2263, "(1)" - line 400, "pan.___", state 2263, "(1)" - line 398, "pan.___", state 2268, "((i<1))" - line 398, "pan.___", state 2268, "((i>=1))" - line 405, "pan.___", state 2274, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2276, "(1)" - line 405, "pan.___", state 2277, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 2277, "else" - line 405, "pan.___", state 2280, "(1)" - line 405, "pan.___", state 2281, "(1)" - line 405, "pan.___", state 2281, "(1)" - line 409, "pan.___", state 2288, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2290, "(1)" - line 409, "pan.___", state 2291, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 2291, "else" - line 409, "pan.___", state 2294, "(1)" - line 409, "pan.___", state 2295, "(1)" - line 409, "pan.___", state 2295, "(1)" - line 407, "pan.___", state 2300, "((i<2))" - line 407, "pan.___", state 2300, "((i>=2))" - line 413, "pan.___", state 2307, "(1)" - line 413, "pan.___", state 2308, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2308, "else" - line 413, "pan.___", state 2311, "(1)" - line 413, "pan.___", state 2312, "(1)" - line 413, "pan.___", state 2312, "(1)" - line 417, "pan.___", state 2320, "(1)" - line 417, "pan.___", state 2321, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 2321, "else" - line 417, "pan.___", state 2324, "(1)" - line 417, "pan.___", state 2325, "(1)" - line 417, "pan.___", state 2325, "(1)" - line 415, "pan.___", state 2330, "((i<1))" - line 415, "pan.___", state 2330, "((i>=1))" - line 422, "pan.___", state 2337, "(1)" - line 422, "pan.___", state 2338, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 2338, "else" - line 422, "pan.___", state 2341, "(1)" - line 422, "pan.___", state 2342, "(1)" - line 422, "pan.___", state 2342, "(1)" - line 426, "pan.___", state 2350, "(1)" - line 426, "pan.___", state 2351, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 2351, "else" - line 426, "pan.___", state 2354, "(1)" - line 426, "pan.___", state 2355, "(1)" - line 426, "pan.___", state 2355, "(1)" - line 424, "pan.___", state 2360, "((i<2))" - line 424, "pan.___", state 2360, "((i>=2))" - line 431, "pan.___", state 2364, "(1)" - line 431, "pan.___", state 2364, "(1)" - line 718, "pan.___", state 2367, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 718, "pan.___", state 2368, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 718, "pan.___", state 2369, "(1)" - line 396, "pan.___", state 2376, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2408, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2422, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2441, "(1)" - line 422, "pan.___", state 2471, "(1)" - line 426, "pan.___", state 2484, "(1)" - line 396, "pan.___", state 2511, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2543, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2557, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2576, "(1)" - line 422, "pan.___", state 2606, "(1)" - line 426, "pan.___", state 2619, "(1)" - line 396, "pan.___", state 2640, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2672, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2686, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2705, "(1)" - line 422, "pan.___", state 2735, "(1)" - line 426, "pan.___", state 2748, "(1)" - line 228, "pan.___", state 2781, "(1)" - line 236, "pan.___", state 2801, "(1)" - line 240, "pan.___", state 2809, "(1)" - line 228, "pan.___", state 2824, "(1)" - line 236, "pan.___", state 2844, "(1)" - line 240, "pan.___", state 2852, "(1)" - line 878, "pan.___", state 2869, "-end-" - (278 of 2869 states) -unreached in proctype urcu_writer - line 396, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 413, "pan.___", state 83, "(1)" - line 417, "pan.___", state 96, "(1)" - line 422, "pan.___", state 113, "(1)" - line 251, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 276, "(1)" - line 417, "pan.___", state 289, "(1)" - line 422, "pan.___", state 306, "(1)" - line 426, "pan.___", state 319, "(1)" - line 400, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 420, "(1)" - line 422, "pan.___", state 437, "(1)" - line 426, "pan.___", state 450, "(1)" - line 396, "pan.___", state 477, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 479, "(1)" - line 396, "pan.___", state 480, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 480, "else" - line 396, "pan.___", state 483, "(1)" - line 400, "pan.___", state 491, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 493, "(1)" - line 400, "pan.___", state 494, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 494, "else" - line 400, "pan.___", state 497, "(1)" - line 400, "pan.___", state 498, "(1)" - line 400, "pan.___", state 498, "(1)" - line 398, "pan.___", state 503, "((i<1))" - line 398, "pan.___", state 503, "((i>=1))" - line 405, "pan.___", state 509, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 511, "(1)" - line 405, "pan.___", state 512, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 512, "else" - line 405, "pan.___", state 515, "(1)" - line 405, "pan.___", state 516, "(1)" - line 405, "pan.___", state 516, "(1)" - line 409, "pan.___", state 523, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 525, "(1)" - line 409, "pan.___", state 526, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 526, "else" - line 409, "pan.___", state 529, "(1)" - line 409, "pan.___", state 530, "(1)" - line 409, "pan.___", state 530, "(1)" - line 407, "pan.___", state 535, "((i<2))" - line 407, "pan.___", state 535, "((i>=2))" - line 413, "pan.___", state 542, "(1)" - line 413, "pan.___", state 543, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 543, "else" - line 413, "pan.___", state 546, "(1)" - line 413, "pan.___", state 547, "(1)" - line 413, "pan.___", state 547, "(1)" - line 417, "pan.___", state 555, "(1)" - line 417, "pan.___", state 556, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 556, "else" - line 417, "pan.___", state 559, "(1)" - line 417, "pan.___", state 560, "(1)" - line 417, "pan.___", state 560, "(1)" - line 415, "pan.___", state 565, "((i<1))" - line 415, "pan.___", state 565, "((i>=1))" - line 422, "pan.___", state 572, "(1)" - line 422, "pan.___", state 573, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 573, "else" - line 422, "pan.___", state 576, "(1)" - line 422, "pan.___", state 577, "(1)" - line 422, "pan.___", state 577, "(1)" - line 426, "pan.___", state 585, "(1)" - line 426, "pan.___", state 586, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 586, "else" - line 426, "pan.___", state 589, "(1)" - line 426, "pan.___", state 590, "(1)" - line 426, "pan.___", state 590, "(1)" - line 431, "pan.___", state 599, "(1)" - line 431, "pan.___", state 599, "(1)" - line 400, "pan.___", state 619, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 637, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 651, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 683, "(1)" - line 422, "pan.___", state 700, "(1)" - line 426, "pan.___", state 713, "(1)" - line 400, "pan.___", state 748, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 766, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 780, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 812, "(1)" - line 422, "pan.___", state 829, "(1)" - line 426, "pan.___", state 842, "(1)" - line 400, "pan.___", state 879, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 897, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 911, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 943, "(1)" - line 422, "pan.___", state 960, "(1)" - line 426, "pan.___", state 973, "(1)" - line 400, "pan.___", state 1013, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1045, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 1077, "(1)" - line 422, "pan.___", state 1094, "(1)" - line 426, "pan.___", state 1107, "(1)" - line 251, "pan.___", state 1153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1177, "(1)" - line 263, "pan.___", state 1184, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1200, "(1)" - line 232, "pan.___", state 1208, "(1)" - line 236, "pan.___", state 1220, "(1)" - line 240, "pan.___", state 1228, "(1)" - line 251, "pan.___", state 1259, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1268, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1290, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1306, "(1)" - line 232, "pan.___", state 1314, "(1)" - line 236, "pan.___", state 1326, "(1)" - line 240, "pan.___", state 1334, "(1)" - line 255, "pan.___", state 1360, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1373, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1382, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1398, "(1)" - line 232, "pan.___", state 1406, "(1)" - line 236, "pan.___", state 1418, "(1)" - line 240, "pan.___", state 1426, "(1)" - line 251, "pan.___", state 1457, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1466, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1479, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1488, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1504, "(1)" - line 232, "pan.___", state 1512, "(1)" - line 236, "pan.___", state 1524, "(1)" - line 240, "pan.___", state 1532, "(1)" - line 1205, "pan.___", state 1548, "-end-" - (118 of 1548 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1266, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 237 seconds -pan: rate 3946.2617 states/second -pan: avg transition delay 1.2648e-06 usec -cp .input.spin urcu_progress_writer_error.spin.input -cp .input.spin.trail urcu_progress_writer_error.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input deleted file mode 100644 index d01c814..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input +++ /dev/null @@ -1,1241 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input.trail b/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input.trail deleted file mode 100644 index 64285b2..0000000 --- a/formal-model/results/urcu-controldataflow-ipi/urcu_progress_writer_error.spin.input.trail +++ /dev/null @@ -1,1830 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4497 -2:3:4417 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-1807:2:3780 -1808:2:3781 -1809:2:3789 -1810:2:3794 -1811:2:3795 -1812:2:3806 -1813:2:3807 -1814:2:3808 -1815:2:3819 -1816:2:3824 -1817:2:3825 -1818:2:3836 -1819:2:3837 -1820:2:3838 -1821:2:3836 -1822:2:3837 -1823:2:3838 -1824:2:3849 -1825:2:3857 -1826:0:4501 -1827:2:2881 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/.input.spin b/formal-model/results/urcu-controldataflow-no-ipi/.input.spin deleted file mode 100644 index 542625d..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/.input.spin +++ /dev/null @@ -1,1239 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/DEFINES b/formal-model/results/urcu-controldataflow-no-ipi/DEFINES deleted file mode 100644 index 929f5a1..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/DEFINES +++ /dev/null @@ -1,14 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/Makefile b/formal-model/results/urcu-controldataflow-no-ipi/Makefile deleted file mode 100644 index de47dff..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/Makefile +++ /dev/null @@ -1,170 +0,0 @@ -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) Mathieu Desnoyers, 2009 -# -# Authors: Mathieu Desnoyers - -#CFLAGS=-DSAFETY -#for multi-core verif, 15.5GB shared mem, use files if full -#CFLAGS=-DHASH64 -DMEMLIM=15500 -DNCORE=2 -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -DMEMLIM=15500 -DNCORE=8 - -#liveness -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -CFLAGS=-DHASH64 - -SPINFILE=urcu.spin - -default: - make urcu_free | tee urcu_free.log - make urcu_free_no_mb | tee urcu_free_no_mb.log - make urcu_free_no_rmb | tee urcu_free_no_rmb.log - make urcu_free_no_wmb | tee urcu_free_no_wmb.log - make urcu_free_single_flip | tee urcu_free_single_flip.log - make urcu_progress_writer | tee urcu_progress_writer.log - make urcu_progress_reader | tee urcu_progress_reader.log - make urcu_progress_writer_error | tee urcu_progress_writer_error.log - make asserts | tee asserts.log - make summary - -#show trail : spin -v -t -N pan.ltl input.spin -# after each individual make. - -summary: - @echo - @echo "Verification summary" - @grep errors: *.log - -asserts: clean - cat DEFINES > .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X .input.spin - gcc -O2 -w ${CFLAGS} -DSAFETY -o pan pan.c - ./pan -v -c1 -X -m10000000 -w20 - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free: clean urcu_free_ltl run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested: clean urcu_free_ltl urcu_free_nested_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested_define: - cp urcu_free_nested.define .input.define - -urcu_free_no_rmb: clean urcu_free_ltl urcu_free_no_rmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_rmb_define: - cp urcu_free_no_rmb.define .input.define - -urcu_free_no_wmb: clean urcu_free_ltl urcu_free_no_wmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_wmb_define: - cp urcu_free_no_wmb.define .input.define - -urcu_free_no_mb: clean urcu_free_ltl urcu_free_no_mb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_mb_define: - cp urcu_free_no_mb.define .input.define - -urcu_free_single_flip: clean urcu_free_ltl urcu_free_single_flip_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_single_flip_define: - cp urcu_free_single_flip.define .input.define - -urcu_free_ltl: - touch .input.define - cat .input.define >> pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl - -# Progress checks - -urcu_progress_writer: clean urcu_progress_writer_ltl \ - urcu_progress_writer_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_define: - cp urcu_progress_writer.define .input.define - -urcu_progress_writer_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_reader: clean urcu_progress_reader_ltl \ - urcu_progress_reader_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_reader_define: - cp urcu_progress_reader.define .input.define - -urcu_progress_reader_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_writer_error: clean urcu_progress_writer_error_ltl \ - urcu_progress_writer_error_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_error_define: - cp urcu_progress_writer_error.define .input.define - -urcu_progress_writer_error_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - - -run_weak_fair: pan - ./pan -a -f -v -c1 -X -m10000000 -w20 - -run: pan - ./pan -a -v -c1 -X -m10000000 -w20 - -pan: pan.c - gcc -O2 -w ${CFLAGS} -o pan pan.c - -pan.c: pan.ltl ${SPINFILE} - cat .input.define > .input.spin - cat DEFINES >> .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X -N pan.ltl .input.spin - -.PHONY: clean default distclean summary -clean: - rm -f pan* trail.out .input.spin* *.spin.trail .input.define -distclean: - rm -f *.trail *.input *.log diff --git a/formal-model/results/urcu-controldataflow-no-ipi/asserts.log b/formal-model/results/urcu-controldataflow-no-ipi/asserts.log deleted file mode 100644 index a732917..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/asserts.log +++ /dev/null @@ -1,514 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -cat DEFINES > .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w20 -Depth= 4311 States= 1e+06 Transitions= 4.65e+08 Memory= 542.717 t= 480 R= 2e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim - (none specified) - assertion violations + - cycle checks - (disabled by -DSAFETY) - invalid end states + - -State-vector 72 byte, depth reached 4311, errors: 0 - 1884295 states, stored -9.0500014e+08 states, matched -9.0688444e+08 transitions (= stored+matched) -5.3819272e+09 atomic steps -hash conflicts: 4.4436974e+08 (resolved) - -Stats on memory usage (in Megabytes): - 179.700 equivalent memory usage for states (stored*(State-vector + overhead)) - 144.496 actual memory usage for states (compression: 80.41%) - state-vector as stored = 52 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 610.197 total actual memory usage - -unreached in proctype urcu_reader - line 394, ".input.spin", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 82, "(1)" - line 420, ".input.spin", state 112, "(1)" - line 424, ".input.spin", state 125, "(1)" - line 575, ".input.spin", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 394, ".input.spin", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 218, "(1)" - line 420, ".input.spin", state 248, "(1)" - line 424, ".input.spin", state 261, "(1)" - line 394, ".input.spin", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 347, "(1)" - line 420, ".input.spin", state 377, "(1)" - line 424, ".input.spin", state 390, "(1)" - line 394, ".input.spin", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 415, "(1)" - line 394, ".input.spin", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 416, "else" - line 394, ".input.spin", state 419, "(1)" - line 398, ".input.spin", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 429, "(1)" - line 398, ".input.spin", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 430, "else" - line 398, ".input.spin", state 433, "(1)" - line 398, ".input.spin", state 434, "(1)" - line 398, ".input.spin", state 434, "(1)" - line 396, ".input.spin", state 439, "((i<1))" - line 396, ".input.spin", state 439, "((i>=1))" - line 403, ".input.spin", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 447, "(1)" - line 403, ".input.spin", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 448, "else" - line 403, ".input.spin", state 451, "(1)" - line 403, ".input.spin", state 452, "(1)" - line 403, ".input.spin", state 452, "(1)" - line 407, ".input.spin", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 461, "(1)" - line 407, ".input.spin", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 462, "else" - line 407, ".input.spin", state 465, "(1)" - line 407, ".input.spin", state 466, "(1)" - line 407, ".input.spin", state 466, "(1)" - line 405, ".input.spin", state 471, "((i<2))" - line 405, ".input.spin", state 471, "((i>=2))" - line 411, ".input.spin", state 478, "(1)" - line 411, ".input.spin", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 479, "else" - line 411, ".input.spin", state 482, "(1)" - line 411, ".input.spin", state 483, "(1)" - line 411, ".input.spin", state 483, "(1)" - line 415, ".input.spin", state 491, "(1)" - line 415, ".input.spin", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 492, "else" - line 415, ".input.spin", state 495, "(1)" - line 415, ".input.spin", state 496, "(1)" - line 415, ".input.spin", state 496, "(1)" - line 413, ".input.spin", state 501, "((i<1))" - line 413, ".input.spin", state 501, "((i>=1))" - line 420, ".input.spin", state 508, "(1)" - line 420, ".input.spin", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 509, "else" - line 420, ".input.spin", state 512, "(1)" - line 420, ".input.spin", state 513, "(1)" - line 420, ".input.spin", state 513, "(1)" - line 424, ".input.spin", state 521, "(1)" - line 424, ".input.spin", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 522, "else" - line 424, ".input.spin", state 525, "(1)" - line 424, ".input.spin", state 526, "(1)" - line 424, ".input.spin", state 526, "(1)" - line 422, ".input.spin", state 531, "((i<2))" - line 422, ".input.spin", state 531, "((i>=2))" - line 429, ".input.spin", state 535, "(1)" - line 429, ".input.spin", state 535, "(1)" - line 575, ".input.spin", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 575, ".input.spin", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 575, ".input.spin", state 540, "(1)" - line 249, ".input.spin", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 555, "(1)" - line 257, ".input.spin", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 591, "(1)" - line 230, ".input.spin", state 599, "(1)" - line 234, ".input.spin", state 611, "(1)" - line 238, ".input.spin", state 619, "(1)" - line 394, ".input.spin", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 702, "(1)" - line 415, ".input.spin", state 715, "(1)" - line 420, ".input.spin", state 732, "(1)" - line 424, ".input.spin", state 745, "(1)" - line 394, ".input.spin", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 775, "(1)" - line 394, ".input.spin", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 776, "else" - line 394, ".input.spin", state 779, "(1)" - line 398, ".input.spin", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 789, "(1)" - line 398, ".input.spin", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 790, "else" - line 398, ".input.spin", state 793, "(1)" - line 398, ".input.spin", state 794, "(1)" - line 398, ".input.spin", state 794, "(1)" - line 396, ".input.spin", state 799, "((i<1))" - line 396, ".input.spin", state 799, "((i>=1))" - line 403, ".input.spin", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 807, "(1)" - line 403, ".input.spin", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 808, "else" - line 403, ".input.spin", state 811, "(1)" - line 403, ".input.spin", state 812, "(1)" - line 403, ".input.spin", state 812, "(1)" - line 407, ".input.spin", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 821, "(1)" - line 407, ".input.spin", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 822, "else" - line 407, ".input.spin", state 825, "(1)" - line 407, ".input.spin", state 826, "(1)" - line 407, ".input.spin", state 826, "(1)" - line 405, ".input.spin", state 831, "((i<2))" - line 405, ".input.spin", state 831, "((i>=2))" - line 411, ".input.spin", state 838, "(1)" - line 411, ".input.spin", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 839, "else" - line 411, ".input.spin", state 842, "(1)" - line 411, ".input.spin", state 843, "(1)" - line 411, ".input.spin", state 843, "(1)" - line 415, ".input.spin", state 851, "(1)" - line 415, ".input.spin", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 852, "else" - line 415, ".input.spin", state 855, "(1)" - line 415, ".input.spin", state 856, "(1)" - line 415, ".input.spin", state 856, "(1)" - line 413, ".input.spin", state 861, "((i<1))" - line 413, ".input.spin", state 861, "((i>=1))" - line 420, ".input.spin", state 868, "(1)" - line 420, ".input.spin", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 869, "else" - line 420, ".input.spin", state 872, "(1)" - line 420, ".input.spin", state 873, "(1)" - line 420, ".input.spin", state 873, "(1)" - line 424, ".input.spin", state 881, "(1)" - line 424, ".input.spin", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 882, "else" - line 424, ".input.spin", state 885, "(1)" - line 424, ".input.spin", state 886, "(1)" - line 424, ".input.spin", state 886, "(1)" - line 429, ".input.spin", state 895, "(1)" - line 429, ".input.spin", state 895, "(1)" - line 394, ".input.spin", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 904, "(1)" - line 394, ".input.spin", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 905, "else" - line 394, ".input.spin", state 908, "(1)" - line 398, ".input.spin", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 918, "(1)" - line 398, ".input.spin", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 919, "else" - line 398, ".input.spin", state 922, "(1)" - line 398, ".input.spin", state 923, "(1)" - line 398, ".input.spin", state 923, "(1)" - line 396, ".input.spin", state 928, "((i<1))" - line 396, ".input.spin", state 928, "((i>=1))" - line 403, ".input.spin", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 936, "(1)" - line 403, ".input.spin", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 937, "else" - line 403, ".input.spin", state 940, "(1)" - line 403, ".input.spin", state 941, "(1)" - line 403, ".input.spin", state 941, "(1)" - line 407, ".input.spin", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 950, "(1)" - line 407, ".input.spin", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 951, "else" - line 407, ".input.spin", state 954, "(1)" - line 407, ".input.spin", state 955, "(1)" - line 407, ".input.spin", state 955, "(1)" - line 405, ".input.spin", state 960, "((i<2))" - line 405, ".input.spin", state 960, "((i>=2))" - line 411, ".input.spin", state 967, "(1)" - line 411, ".input.spin", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 968, "else" - line 411, ".input.spin", state 971, "(1)" - line 411, ".input.spin", state 972, "(1)" - line 411, ".input.spin", state 972, "(1)" - line 415, ".input.spin", state 980, "(1)" - line 415, ".input.spin", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 981, "else" - line 415, ".input.spin", state 984, "(1)" - line 415, ".input.spin", state 985, "(1)" - line 415, ".input.spin", state 985, "(1)" - line 413, ".input.spin", state 990, "((i<1))" - line 413, ".input.spin", state 990, "((i>=1))" - line 420, ".input.spin", state 997, "(1)" - line 420, ".input.spin", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 998, "else" - line 420, ".input.spin", state 1001, "(1)" - line 420, ".input.spin", state 1002, "(1)" - line 420, ".input.spin", state 1002, "(1)" - line 424, ".input.spin", state 1010, "(1)" - line 424, ".input.spin", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 1011, "else" - line 424, ".input.spin", state 1014, "(1)" - line 424, ".input.spin", state 1015, "(1)" - line 424, ".input.spin", state 1015, "(1)" - line 422, ".input.spin", state 1020, "((i<2))" - line 422, ".input.spin", state 1020, "((i>=2))" - line 429, ".input.spin", state 1024, "(1)" - line 429, ".input.spin", state 1024, "(1)" - line 583, ".input.spin", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 394, ".input.spin", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1098, "(1)" - line 415, ".input.spin", state 1111, "(1)" - line 420, ".input.spin", state 1128, "(1)" - line 424, ".input.spin", state 1141, "(1)" - line 394, ".input.spin", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1230, "(1)" - line 420, ".input.spin", state 1260, "(1)" - line 424, ".input.spin", state 1273, "(1)" - line 394, ".input.spin", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1363, "(1)" - line 420, ".input.spin", state 1393, "(1)" - line 424, ".input.spin", state 1406, "(1)" - line 394, ".input.spin", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1492, "(1)" - line 420, ".input.spin", state 1522, "(1)" - line 424, ".input.spin", state 1535, "(1)" - line 249, ".input.spin", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1605, "(1)" - line 230, ".input.spin", state 1613, "(1)" - line 234, ".input.spin", state 1625, "(1)" - line 238, ".input.spin", state 1633, "(1)" - line 394, ".input.spin", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1716, "(1)" - line 415, ".input.spin", state 1729, "(1)" - line 420, ".input.spin", state 1746, "(1)" - line 424, ".input.spin", state 1759, "(1)" - line 394, ".input.spin", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1845, "(1)" - line 415, ".input.spin", state 1858, "(1)" - line 420, ".input.spin", state 1875, "(1)" - line 424, ".input.spin", state 1888, "(1)" - line 394, ".input.spin", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 1928, "(1)" - line 403, ".input.spin", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 1977, "(1)" - line 420, ".input.spin", state 2007, "(1)" - line 424, ".input.spin", state 2020, "(1)" - line 622, ".input.spin", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 394, ".input.spin", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2113, "(1)" - line 420, ".input.spin", state 2143, "(1)" - line 424, ".input.spin", state 2156, "(1)" - line 394, ".input.spin", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2242, "(1)" - line 420, ".input.spin", state 2272, "(1)" - line 424, ".input.spin", state 2285, "(1)" - line 394, ".input.spin", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 2310, "(1)" - line 394, ".input.spin", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, ".input.spin", state 2311, "else" - line 394, ".input.spin", state 2314, "(1)" - line 398, ".input.spin", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 2324, "(1)" - line 398, ".input.spin", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, ".input.spin", state 2325, "else" - line 398, ".input.spin", state 2328, "(1)" - line 398, ".input.spin", state 2329, "(1)" - line 398, ".input.spin", state 2329, "(1)" - line 396, ".input.spin", state 2334, "((i<1))" - line 396, ".input.spin", state 2334, "((i>=1))" - line 403, ".input.spin", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2342, "(1)" - line 403, ".input.spin", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, ".input.spin", state 2343, "else" - line 403, ".input.spin", state 2346, "(1)" - line 403, ".input.spin", state 2347, "(1)" - line 403, ".input.spin", state 2347, "(1)" - line 407, ".input.spin", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2356, "(1)" - line 407, ".input.spin", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, ".input.spin", state 2357, "else" - line 407, ".input.spin", state 2360, "(1)" - line 407, ".input.spin", state 2361, "(1)" - line 407, ".input.spin", state 2361, "(1)" - line 405, ".input.spin", state 2366, "((i<2))" - line 405, ".input.spin", state 2366, "((i>=2))" - line 411, ".input.spin", state 2373, "(1)" - line 411, ".input.spin", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, ".input.spin", state 2374, "else" - line 411, ".input.spin", state 2377, "(1)" - line 411, ".input.spin", state 2378, "(1)" - line 411, ".input.spin", state 2378, "(1)" - line 415, ".input.spin", state 2386, "(1)" - line 415, ".input.spin", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, ".input.spin", state 2387, "else" - line 415, ".input.spin", state 2390, "(1)" - line 415, ".input.spin", state 2391, "(1)" - line 415, ".input.spin", state 2391, "(1)" - line 413, ".input.spin", state 2396, "((i<1))" - line 413, ".input.spin", state 2396, "((i>=1))" - line 420, ".input.spin", state 2403, "(1)" - line 420, ".input.spin", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, ".input.spin", state 2404, "else" - line 420, ".input.spin", state 2407, "(1)" - line 420, ".input.spin", state 2408, "(1)" - line 420, ".input.spin", state 2408, "(1)" - line 424, ".input.spin", state 2416, "(1)" - line 424, ".input.spin", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, ".input.spin", state 2417, "else" - line 424, ".input.spin", state 2420, "(1)" - line 424, ".input.spin", state 2421, "(1)" - line 424, ".input.spin", state 2421, "(1)" - line 422, ".input.spin", state 2426, "((i<2))" - line 422, ".input.spin", state 2426, "((i>=2))" - line 429, ".input.spin", state 2430, "(1)" - line 429, ".input.spin", state 2430, "(1)" - line 622, ".input.spin", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 622, ".input.spin", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 622, ".input.spin", state 2435, "(1)" - line 249, ".input.spin", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 2450, "(1)" - line 257, ".input.spin", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 2486, "(1)" - line 230, ".input.spin", state 2494, "(1)" - line 234, ".input.spin", state 2506, "(1)" - line 238, ".input.spin", state 2514, "(1)" - line 394, ".input.spin", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2597, "(1)" - line 415, ".input.spin", state 2610, "(1)" - line 420, ".input.spin", state 2627, "(1)" - line 424, ".input.spin", state 2640, "(1)" - line 249, ".input.spin", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 2711, "(1)" - line 230, ".input.spin", state 2719, "(1)" - line 234, ".input.spin", state 2731, "(1)" - line 238, ".input.spin", state 2739, "(1)" - line 394, ".input.spin", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2822, "(1)" - line 415, ".input.spin", state 2835, "(1)" - line 420, ".input.spin", state 2852, "(1)" - line 424, ".input.spin", state 2865, "(1)" - line 394, ".input.spin", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 2951, "(1)" - line 415, ".input.spin", state 2964, "(1)" - line 420, ".input.spin", state 2981, "(1)" - line 424, ".input.spin", state 2994, "(1)" - line 226, ".input.spin", state 3027, "(1)" - line 234, ".input.spin", state 3047, "(1)" - line 238, ".input.spin", state 3055, "(1)" - line 226, ".input.spin", state 3070, "(1)" - line 230, ".input.spin", state 3078, "(1)" - line 234, ".input.spin", state 3090, "(1)" - line 238, ".input.spin", state 3098, "(1)" - line 876, ".input.spin", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 394, ".input.spin", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 83, "(1)" - line 415, ".input.spin", state 96, "(1)" - line 420, ".input.spin", state 113, "(1)" - line 249, ".input.spin", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 394, ".input.spin", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, ".input.spin", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, ".input.spin", state 276, "(1)" - line 415, ".input.spin", state 289, "(1)" - line 420, ".input.spin", state 306, "(1)" - line 424, ".input.spin", state 319, "(1)" - line 398, ".input.spin", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 420, "(1)" - line 420, ".input.spin", state 437, "(1)" - line 424, ".input.spin", state 450, "(1)" - line 398, ".input.spin", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 558, "(1)" - line 420, ".input.spin", state 575, "(1)" - line 424, ".input.spin", state 588, "(1)" - line 398, ".input.spin", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 687, "(1)" - line 420, ".input.spin", state 704, "(1)" - line 424, ".input.spin", state 717, "(1)" - line 398, ".input.spin", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, ".input.spin", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, ".input.spin", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, ".input.spin", state 818, "(1)" - line 420, ".input.spin", state 835, "(1)" - line 424, ".input.spin", state 848, "(1)" - line 249, ".input.spin", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, ".input.spin", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 927, "(1)" - line 261, ".input.spin", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 950, "(1)" - line 230, ".input.spin", state 958, "(1)" - line 234, ".input.spin", state 970, "(1)" - line 238, ".input.spin", state 978, "(1)" - line 253, ".input.spin", state 1003, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1025, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1041, "(1)" - line 230, ".input.spin", state 1049, "(1)" - line 234, ".input.spin", state 1061, "(1)" - line 238, ".input.spin", state 1069, "(1)" - line 253, ".input.spin", state 1094, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1107, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1132, "(1)" - line 230, ".input.spin", state 1140, "(1)" - line 234, ".input.spin", state 1152, "(1)" - line 238, ".input.spin", state 1160, "(1)" - line 253, ".input.spin", state 1185, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, ".input.spin", state 1198, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, ".input.spin", state 1207, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, ".input.spin", state 1223, "(1)" - line 230, ".input.spin", state 1231, "(1)" - line 234, ".input.spin", state 1243, "(1)" - line 238, ".input.spin", state 1251, "(1)" - line 1203, ".input.spin", state 1266, "-end-" - (71 of 1266 states) -unreached in proctype :init: - (0 of 78 states) - -pan: elapsed time 944 seconds -pan: rate 1995.0819 states/second -pan: avg transition delay 1.0414e-06 usec -cp .input.spin asserts.spin.input -cp .input.spin.trail asserts.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/asserts.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/asserts.spin.input deleted file mode 100644 index 542625d..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/asserts.spin.input +++ /dev/null @@ -1,1239 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/references.txt b/formal-model/results/urcu-controldataflow-no-ipi/references.txt deleted file mode 100644 index 72c67a2..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/references.txt +++ /dev/null @@ -1,13 +0,0 @@ -http://spinroot.com/spin/Man/ltl.html -http://en.wikipedia.org/wiki/Linear_temporal_logic -http://www.dcs.gla.ac.uk/~muffy/MRS4-2002/lect11.ppt - -http://www.lsv.ens-cachan.fr/~gastin/ltl2ba/index.php -http://spinroot.com/spin/Man/index.html -http://spinroot.com/spin/Man/promela.html - -LTL vs CTL : - -http://spinroot.com/spin/Doc/course/lecture12.pdf p. 9, p. 15, p. 18 -http://www-i2.informatik.rwth-aachen.de/i2/fileadmin/user_upload/documents/Introduction_to_Model_Checking/mc_lec18.pdf - (downloaded) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/DEFINES b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/DEFINES deleted file mode 100644 index 980fad6..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/DEFINES +++ /dev/null @@ -1,14 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/Makefile b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/Makefile deleted file mode 100644 index de47dff..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/Makefile +++ /dev/null @@ -1,170 +0,0 @@ -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) Mathieu Desnoyers, 2009 -# -# Authors: Mathieu Desnoyers - -#CFLAGS=-DSAFETY -#for multi-core verif, 15.5GB shared mem, use files if full -#CFLAGS=-DHASH64 -DMEMLIM=15500 -DNCORE=2 -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -DMEMLIM=15500 -DNCORE=8 - -#liveness -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -CFLAGS=-DHASH64 - -SPINFILE=urcu.spin - -default: - make urcu_free | tee urcu_free.log - make urcu_free_no_mb | tee urcu_free_no_mb.log - make urcu_free_no_rmb | tee urcu_free_no_rmb.log - make urcu_free_no_wmb | tee urcu_free_no_wmb.log - make urcu_free_single_flip | tee urcu_free_single_flip.log - make urcu_progress_writer | tee urcu_progress_writer.log - make urcu_progress_reader | tee urcu_progress_reader.log - make urcu_progress_writer_error | tee urcu_progress_writer_error.log - make asserts | tee asserts.log - make summary - -#show trail : spin -v -t -N pan.ltl input.spin -# after each individual make. - -summary: - @echo - @echo "Verification summary" - @grep errors: *.log - -asserts: clean - cat DEFINES > .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X .input.spin - gcc -O2 -w ${CFLAGS} -DSAFETY -o pan pan.c - ./pan -v -c1 -X -m10000000 -w20 - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free: clean urcu_free_ltl run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested: clean urcu_free_ltl urcu_free_nested_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested_define: - cp urcu_free_nested.define .input.define - -urcu_free_no_rmb: clean urcu_free_ltl urcu_free_no_rmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_rmb_define: - cp urcu_free_no_rmb.define .input.define - -urcu_free_no_wmb: clean urcu_free_ltl urcu_free_no_wmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_wmb_define: - cp urcu_free_no_wmb.define .input.define - -urcu_free_no_mb: clean urcu_free_ltl urcu_free_no_mb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_mb_define: - cp urcu_free_no_mb.define .input.define - -urcu_free_single_flip: clean urcu_free_ltl urcu_free_single_flip_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_single_flip_define: - cp urcu_free_single_flip.define .input.define - -urcu_free_ltl: - touch .input.define - cat .input.define >> pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl - -# Progress checks - -urcu_progress_writer: clean urcu_progress_writer_ltl \ - urcu_progress_writer_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_define: - cp urcu_progress_writer.define .input.define - -urcu_progress_writer_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_reader: clean urcu_progress_reader_ltl \ - urcu_progress_reader_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_reader_define: - cp urcu_progress_reader.define .input.define - -urcu_progress_reader_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_writer_error: clean urcu_progress_writer_error_ltl \ - urcu_progress_writer_error_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_error_define: - cp urcu_progress_writer_error.define .input.define - -urcu_progress_writer_error_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - - -run_weak_fair: pan - ./pan -a -f -v -c1 -X -m10000000 -w20 - -run: pan - ./pan -a -v -c1 -X -m10000000 -w20 - -pan: pan.c - gcc -O2 -w ${CFLAGS} -o pan pan.c - -pan.c: pan.ltl ${SPINFILE} - cat .input.define > .input.spin - cat DEFINES >> .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X -N pan.ltl .input.spin - -.PHONY: clean default distclean summary -clean: - rm -f pan* trail.out .input.spin* *.spin.trail .input.define -distclean: - rm -f *.trail *.input *.log diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/references.txt b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/references.txt deleted file mode 100644 index 72c67a2..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/references.txt +++ /dev/null @@ -1,13 +0,0 @@ -http://spinroot.com/spin/Man/ltl.html -http://en.wikipedia.org/wiki/Linear_temporal_logic -http://www.dcs.gla.ac.uk/~muffy/MRS4-2002/lect11.ppt - -http://www.lsv.ens-cachan.fr/~gastin/ltl2ba/index.php -http://spinroot.com/spin/Man/index.html -http://spinroot.com/spin/Man/promela.html - -LTL vs CTL : - -http://spinroot.com/spin/Doc/course/lecture12.pdf p. 9, p. 15, p. 18 -http://www-i2.informatik.rwth-aachen.de/i2/fileadmin/user_upload/documents/Introduction_to_Model_Checking/mc_lec18.pdf - (downloaded) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/DEFINES b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/DEFINES deleted file mode 100644 index 980fad6..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/DEFINES +++ /dev/null @@ -1,14 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/Makefile b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/Makefile deleted file mode 100644 index de47dff..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/Makefile +++ /dev/null @@ -1,170 +0,0 @@ -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) Mathieu Desnoyers, 2009 -# -# Authors: Mathieu Desnoyers - -#CFLAGS=-DSAFETY -#for multi-core verif, 15.5GB shared mem, use files if full -#CFLAGS=-DHASH64 -DMEMLIM=15500 -DNCORE=2 -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -DMEMLIM=15500 -DNCORE=8 - -#liveness -#CFLAGS=-DHASH64 -DCOLLAPSE -DMA=88 -CFLAGS=-DHASH64 - -SPINFILE=urcu.spin - -default: - make urcu_free | tee urcu_free.log - make urcu_free_no_mb | tee urcu_free_no_mb.log - make urcu_free_no_rmb | tee urcu_free_no_rmb.log - make urcu_free_no_wmb | tee urcu_free_no_wmb.log - make urcu_free_single_flip | tee urcu_free_single_flip.log - make urcu_progress_writer | tee urcu_progress_writer.log - make urcu_progress_reader | tee urcu_progress_reader.log - make urcu_progress_writer_error | tee urcu_progress_writer_error.log - make asserts | tee asserts.log - make summary - -#show trail : spin -v -t -N pan.ltl input.spin -# after each individual make. - -summary: - @echo - @echo "Verification summary" - @grep errors: *.log - -asserts: clean - cat DEFINES > .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X .input.spin - gcc -O2 -w ${CFLAGS} -DSAFETY -o pan pan.c - ./pan -v -c1 -X -m10000000 -w20 - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free: clean urcu_free_ltl run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested: clean urcu_free_ltl urcu_free_nested_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_nested_define: - cp urcu_free_nested.define .input.define - -urcu_free_no_rmb: clean urcu_free_ltl urcu_free_no_rmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_rmb_define: - cp urcu_free_no_rmb.define .input.define - -urcu_free_no_wmb: clean urcu_free_ltl urcu_free_no_wmb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_wmb_define: - cp urcu_free_no_wmb.define .input.define - -urcu_free_no_mb: clean urcu_free_ltl urcu_free_no_mb_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_no_mb_define: - cp urcu_free_no_mb.define .input.define - -urcu_free_single_flip: clean urcu_free_ltl urcu_free_single_flip_define run - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_free_single_flip_define: - cp urcu_free_single_flip.define .input.define - -urcu_free_ltl: - touch .input.define - cat .input.define >> pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl - -# Progress checks - -urcu_progress_writer: clean urcu_progress_writer_ltl \ - urcu_progress_writer_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_define: - cp urcu_progress_writer.define .input.define - -urcu_progress_writer_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_reader: clean urcu_progress_reader_ltl \ - urcu_progress_reader_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_reader_define: - cp urcu_progress_reader.define .input.define - -urcu_progress_reader_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - -urcu_progress_writer_error: clean urcu_progress_writer_error_ltl \ - urcu_progress_writer_error_define run_weak_fair - cp .input.spin $@.spin.input - -cp .input.spin.trail $@.spin.input.trail - -urcu_progress_writer_error_define: - cp urcu_progress_writer_error.define .input.define - -urcu_progress_writer_error_ltl: - touch .input.define - cat .input.define > pan.ltl - cat DEFINES >> pan.ltl - spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl - - -run_weak_fair: pan - ./pan -a -f -v -c1 -X -m10000000 -w20 - -run: pan - ./pan -a -v -c1 -X -m10000000 -w20 - -pan: pan.c - gcc -O2 -w ${CFLAGS} -o pan pan.c - -pan.c: pan.ltl ${SPINFILE} - cat .input.define > .input.spin - cat DEFINES >> .input.spin - cat ${SPINFILE} >> .input.spin - rm -f .input.spin.trail - spin -a -X -N pan.ltl .input.spin - -.PHONY: clean default distclean summary -clean: - rm -f pan* trail.out .input.spin* *.spin.trail .input.define -distclean: - rm -f *.trail *.input *.log diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.log deleted file mode 100644 index 60a124e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.log +++ /dev/null @@ -1,41 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -cat DEFINES > .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w20 -Depth= 6408 States= 1e+06 Transitions= 1.63e+08 Memory= 542.717 t= 163 R= 6e+03 -Depth= 7831 States= 2e+06 Transitions= 3.34e+08 Memory= 618.986 t= 343 R= 6e+03 -Depth= 7831 States= 3e+06 Transitions= 5.11e+08 Memory= 695.354 t= 530 R= 6e+03 -pan: resizing hashtable to -w22.. done -Depth= 7831 States= 4e+06 Transitions= 6.76e+08 Memory= 802.744 t= 697 R= 6e+03 -Depth= 7831 States= 5e+06 Transitions= 9e+08 Memory= 879.014 t= 928 R= 5e+03 -Depth= 7831 States= 6e+06 Transitions= 1.34e+09 Memory= 955.283 t= 1.39e+03 R= 4e+03 -Depth= 7831 States= 7e+06 Transitions= 1.71e+09 Memory= 1031.553 t= 1.79e+03 R= 4e+03 -Depth= 7831 States= 8e+06 Transitions= 2.07e+09 Memory= 1107.920 t= 2.18e+03 R= 4e+03 -Depth= 7831 States= 9e+06 Transitions= 2.39e+09 Memory= 1184.190 t= 2.53e+03 R= 4e+03 -pan: resizing hashtable to -w24.. done -Depth= 7831 States= 1e+07 Transitions= 2.59e+09 Memory= 1384.553 t= 2.74e+03 R= 4e+03 -Depth= 7831 States= 1.1e+07 Transitions= 2.89e+09 Memory= 1460.822 t= 3.04e+03 R= 4e+03 -Depth= 7831 States= 1.2e+07 Transitions= 3.23e+09 Memory= 1537.092 t= 3.4e+03 R= 4e+03 -Depth= 7831 States= 1.3e+07 Transitions= 3.94e+09 Memory= 1613.459 t= 4.17e+03 R= 3e+03 -Depth= 7831 States= 1.4e+07 Transitions= 4.65e+09 Memory= 1689.729 t= 4.93e+03 R= 3e+03 -Depth= 7831 States= 1.5e+07 Transitions= 5.08e+09 Memory= 1765.998 t= 5.39e+03 R= 3e+03 -Depth= 7831 States= 1.6e+07 Transitions= 5.5e+09 Memory= 1842.268 t= 5.84e+03 R= 3e+03 -Depth= 7831 States= 1.7e+07 Transitions= 5.7e+09 Memory= 1918.635 t= 6.04e+03 R= 3e+03 -Depth= 7831 States= 1.8e+07 Transitions= 6.11e+09 Memory= 1994.904 t= 6.49e+03 R= 3e+03 -Depth= 7831 States= 1.9e+07 Transitions= 6.54e+09 Memory= 2071.174 t= 6.95e+03 R= 3e+03 -Depth= 7831 States= 2e+07 Transitions= 6.89e+09 Memory= 2147.443 t= 7.32e+03 R= 3e+03 -Depth= 7991 States= 2.1e+07 Transitions= 7.11e+09 Memory= 2223.811 t= 7.55e+03 R= 3e+03 -Depth= 7991 States= 2.2e+07 Transitions= 7.39e+09 Memory= 2300.080 t= 7.85e+03 R= 3e+03 -Depth= 7991 States= 2.3e+07 Transitions= 7.59e+09 Memory= 2376.350 t= 8.06e+03 R= 3e+03 -Depth= 7991 States= 2.4e+07 Transitions= 7.86e+09 Memory= 2452.619 t= 8.35e+03 R= 3e+03 -Depth= 7991 States= 2.5e+07 Transitions= 8.07e+09 Memory= 2528.986 t= 8.58e+03 R= 3e+03 -Depth= 7991 States= 2.6e+07 Transitions= 8.31e+09 Memory= 2605.256 t= 8.83e+03 R= 3e+03 -Depth= 7991 States= 2.7e+07 Transitions= 8.55e+09 Memory= 2681.526 t= 9.09e+03 R= 3e+03 -Depth= 7991 States= 2.8e+07 Transitions= 8.79e+09 Memory= 2757.795 t= 9.35e+03 R= 3e+03 -Depth= 7991 States= 2.9e+07 Transitions= 9.03e+09 Memory= 2834.162 t= 9.61e+03 R= 3e+03 -Depth= 7991 States= 3e+07 Transitions= 9.24e+09 Memory= 2910.432 t= 9.83e+03 R= 3e+03 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.spin.input deleted file mode 100644 index a3e31d3..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/asserts.spin.input +++ /dev/null @@ -1,1191 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * Busy-looping waiting for other barrier requests is not considered as - * non-progress. - */ -#ifdef READER_PROGRESS -progress_reader2: -#endif -#ifdef WRITER_PROGRESS -//progress_writer_from_reader1: -#endif - skip; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -//progress_writer_from_reader2: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_PROC_FIRST_MB (1 << 1) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 2) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 3) -#define WRITE_PROC_FIRST_WAIT (1 << 4) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 5) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 6) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 7) -#define WRITE_PROC_SECOND_WAIT (1 << 8) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 9) - -#define WRITE_PROC_SECOND_MB (1 << 10) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 11) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 4) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - /* TODO : add instruction scheduling to this code path to test - * missing wmb effect. */ - /* smp_wmb() ensures order of the following instructions */ - /* malloc */ - cur_data = (cur_data + 1) % SLAB_SIZE; - ooo_mem(i); - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); -#ifndef NO_WMB - smp_wmb(i, j); -#else - ooo_mem(i); -#endif - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/references.txt b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/references.txt deleted file mode 100644 index 72c67a2..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/result-ipi-urcu_free/references.txt +++ /dev/null @@ -1,13 +0,0 @@ -http://spinroot.com/spin/Man/ltl.html -http://en.wikipedia.org/wiki/Linear_temporal_logic -http://www.dcs.gla.ac.uk/~muffy/MRS4-2002/lect11.ppt - -http://www.lsv.ens-cachan.fr/~gastin/ltl2ba/index.php -http://spinroot.com/spin/Man/index.html -http://spinroot.com/spin/Man/promela.html - -LTL vs CTL : - -http://spinroot.com/spin/Doc/course/lecture12.pdf p. 9, p. 15, p. 18 -http://www-i2.informatik.rwth-aachen.de/i2/fileadmin/user_upload/documents/Introduction_to_Model_Checking/mc_lec18.pdf - (downloaded) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.sh b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.sh deleted file mode 100644 index 65ff517..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.sh +++ /dev/null @@ -1,29 +0,0 @@ -#!/bin/sh -# -# Compiles and runs the urcu.spin Promela model. -# -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) IBM Corporation, 2009 -# Mathieu Desnoyers, 2009 -# -# Authors: Paul E. McKenney -# Mathieu Desnoyers - -# Basic execution, without LTL clauses. See Makefile. - -spin -a urcu.spin -cc -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w21 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin deleted file mode 100644 index 3751868..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin +++ /dev/null @@ -1,1212 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin.bkp.b4ptr b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin.bkp.b4ptr deleted file mode 100644 index 6670f3e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu.spin.bkp.b4ptr +++ /dev/null @@ -1,1123 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bit { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bit cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * Busy-looping waiting for other barrier requests is not considered as - * non-progress. - */ -#ifdef READER_PROGRESS -progress_reader2: -#endif -#ifdef WRITER_PROGRESS -//progress_writer_from_reader1: -#endif - skip; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -//progress_writer_from_reader2: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, wmp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only two readers */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* pointer generation */ -DECLARE_CACHED_VAR(byte, generation_ptr); - -byte last_free_gen = 0; -bit free_done = 0; -byte read_generation[NR_READERS]; -bit data_access[NR_READERS]; - -bit write_lock = 0; - -bit init_done = 0; - -bit sighand_exec = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - ooo_mem(i); - goto non_atomic; -non_atomic_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - ooo_mem(i); - goto non_atomic2; -non_atomic2_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -non_atomic: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic_end; -non_atomic2: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_PROC_FIRST_MB (1 << 1) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 2) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 3) -#define WRITE_PROC_FIRST_WAIT (1 << 4) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 5) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 6) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 7) -#define WRITE_PROC_SECOND_WAIT (1 << 8) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 9) - -#define WRITE_PROC_SECOND_MB (1 << 10) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 11) - 1) - -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte old_gen; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (READ_CACHED_VAR(generation_ptr) < 5) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - ooo_mem(i); - atomic { - old_gen = READ_CACHED_VAR(generation_ptr); - WRITE_CACHED_VAR(generation_ptr, old_gen + 1); - } - ooo_mem(i); - - do - :: 1 -> - atomic { - if - :: write_lock == 0 -> - write_lock = 1; - break; - :: else -> - skip; - fi; - } - od; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - - write_lock = 0; - /* free-up step, e.g., kfree(). */ - atomic { - last_free_gen = old_gen; - free_done = 1; - } - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(generation_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - read_generation[i] = 1; - data_access[i] = 0; - i++; - :: i >= NR_READERS -> break - od; - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.log deleted file mode 100644 index 886469c..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.log +++ /dev/null @@ -1,584 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1244) -Depth= 8092 States= 1e+06 Transitions= 1.63e+08 Memory= 550.432 t= 202 R= 5e+03 -Depth= 9706 States= 2e+06 Transitions= 3.34e+08 Memory= 634.318 t= 421 R= 5e+03 -Depth= 9706 States= 3e+06 Transitions= 5.11e+08 Memory= 718.303 t= 649 R= 5e+03 -pan: resizing hashtable to -w22.. done -Depth= 9706 States= 4e+06 Transitions= 6.76e+08 Memory= 833.311 t= 855 R= 5e+03 -Depth= 9706 States= 5e+06 Transitions= 9e+08 Memory= 917.295 t= 1.14e+03 R= 4e+03 -Depth= 9706 States= 6e+06 Transitions= 1.34e+09 Memory= 1001.279 t= 1.7e+03 R= 4e+03 -Depth= 9706 States= 7e+06 Transitions= 1.71e+09 Memory= 1085.264 t= 2.18e+03 R= 3e+03 -Depth= 9706 States= 8e+06 Transitions= 2.07e+09 Memory= 1169.151 t= 2.65e+03 R= 3e+03 -Depth= 9706 States= 9e+06 Transitions= 2.39e+09 Memory= 1253.135 t= 3.08e+03 R= 3e+03 -pan: resizing hashtable to -w24.. done -Depth= 9706 States= 1e+07 Transitions= 2.59e+09 Memory= 1461.115 t= 3.33e+03 R= 3e+03 -Depth= 9706 States= 1.1e+07 Transitions= 2.89e+09 Memory= 1545.100 t= 3.7e+03 R= 3e+03 -Depth= 9706 States= 1.2e+07 Transitions= 3.23e+09 Memory= 1629.084 t= 4.14e+03 R= 3e+03 -Depth= 9706 States= 1.3e+07 Transitions= 3.94e+09 Memory= 1713.068 t= 5.07e+03 R= 3e+03 -Depth= 9706 States= 1.4e+07 Transitions= 4.65e+09 Memory= 1797.053 t= 5.99e+03 R= 2e+03 -Depth= 9706 States= 1.5e+07 Transitions= 5.08e+09 Memory= 1881.037 t= 6.56e+03 R= 2e+03 -Depth= 9706 States= 1.6e+07 Transitions= 5.5e+09 Memory= 1964.924 t= 7.11e+03 R= 2e+03 -Depth= 9706 States= 1.7e+07 Transitions= 5.7e+09 Memory= 2048.908 t= 7.35e+03 R= 2e+03 -Depth= 9706 States= 1.8e+07 Transitions= 6.12e+09 Memory= 2132.893 t= 7.9e+03 R= 2e+03 -Depth= 9706 States= 1.9e+07 Transitions= 6.54e+09 Memory= 2216.877 t= 8.45e+03 R= 2e+03 -Depth= 9706 States= 2e+07 Transitions= 6.89e+09 Memory= 2300.861 t= 8.91e+03 R= 2e+03 -Depth= 9744 States= 2.1e+07 Transitions= 7.11e+09 Memory= 2384.846 t= 9.18e+03 R= 2e+03 -Depth= 9744 States= 2.2e+07 Transitions= 7.39e+09 Memory= 2468.830 t= 9.54e+03 R= 2e+03 -Depth= 9744 States= 2.3e+07 Transitions= 7.59e+09 Memory= 2552.717 t= 9.81e+03 R= 2e+03 -Depth= 9744 States= 2.4e+07 Transitions= 7.86e+09 Memory= 2636.701 t= 1.02e+04 R= 2e+03 -Depth= 9744 States= 2.5e+07 Transitions= 8.07e+09 Memory= 2720.686 t= 1.04e+04 R= 2e+03 -Depth= 9744 States= 2.6e+07 Transitions= 8.31e+09 Memory= 2804.670 t= 1.07e+04 R= 2e+03 -Depth= 9744 States= 2.7e+07 Transitions= 8.55e+09 Memory= 2888.654 t= 1.11e+04 R= 2e+03 -Depth= 9744 States= 2.8e+07 Transitions= 8.79e+09 Memory= 2972.639 t= 1.14e+04 R= 2e+03 -Depth= 9744 States= 2.9e+07 Transitions= 9.03e+09 Memory= 3056.526 t= 1.17e+04 R= 2e+03 -Depth= 9744 States= 3e+07 Transitions= 9.24e+09 Memory= 3140.510 t= 1.2e+04 R= 3e+03 -Depth= 9744 States= 3.1e+07 Transitions= 9.55e+09 Memory= 3224.494 t= 1.24e+04 R= 3e+03 -Depth= 9744 States= 3.2e+07 Transitions= 1e+10 Memory= 3308.479 t= 1.3e+04 R= 2e+03 -Depth= 9744 States= 3.3e+07 Transitions= 1.04e+10 Memory= 3392.463 t= 1.35e+04 R= 2e+03 -Depth= 9744 States= 3.4e+07 Transitions= 1.08e+10 Memory= 3476.447 t= 1.4e+04 R= 2e+03 -pan: resizing hashtable to -w26.. done -Depth= 9744 States= 3.5e+07 Transitions= 1.11e+10 Memory= 4056.416 t= 1.45e+04 R= 2e+03 -Depth= 9744 States= 3.6e+07 Transitions= 1.14e+10 Memory= 4140.401 t= 1.47e+04 R= 2e+03 -Depth= 9744 States= 3.7e+07 Transitions= 1.16e+10 Memory= 4224.385 t= 1.51e+04 R= 2e+03 -Depth= 9744 States= 3.8e+07 Transitions= 1.19e+10 Memory= 4308.369 t= 1.54e+04 R= 2e+03 -Depth= 9744 States= 3.9e+07 Transitions= 1.25e+10 Memory= 4392.354 t= 1.62e+04 R= 2e+03 -Depth= 9744 States= 4e+07 Transitions= 1.33e+10 Memory= 4476.338 t= 1.72e+04 R= 2e+03 -Depth= 9744 States= 4.1e+07 Transitions= 1.38e+10 Memory= 4560.225 t= 1.79e+04 R= 2e+03 -Depth= 9744 States= 4.2e+07 Transitions= 1.43e+10 Memory= 4644.209 t= 1.86e+04 R= 2e+03 -Depth= 9744 States= 4.3e+07 Transitions= 1.45e+10 Memory= 4728.193 t= 1.88e+04 R= 2e+03 -Depth= 9744 States= 4.4e+07 Transitions= 1.48e+10 Memory= 4812.178 t= 1.92e+04 R= 2e+03 -Depth= 9744 States= 4.5e+07 Transitions= 1.52e+10 Memory= 4896.162 t= 1.97e+04 R= 2e+03 -Depth= 9744 States= 4.6e+07 Transitions= 1.55e+10 Memory= 4980.147 t= 2.02e+04 R= 2e+03 -Depth= 9744 States= 4.7e+07 Transitions= 1.58e+10 Memory= 5064.131 t= 2.05e+04 R= 2e+03 -Depth= 9744 States= 4.8e+07 Transitions= 1.61e+10 Memory= 5148.018 t= 2.08e+04 R= 2e+03 -Depth= 9744 States= 4.9e+07 Transitions= 1.63e+10 Memory= 5232.002 t= 2.11e+04 R= 2e+03 -Depth= 9744 States= 5e+07 Transitions= 1.66e+10 Memory= 5315.986 t= 2.15e+04 R= 2e+03 -Depth= 9744 States= 5.1e+07 Transitions= 1.68e+10 Memory= 5399.971 t= 2.17e+04 R= 2e+03 -Depth= 9744 States= 5.2e+07 Transitions= 1.7e+10 Memory= 5483.955 t= 2.2e+04 R= 2e+03 -Depth= 9744 States= 5.3e+07 Transitions= 1.72e+10 Memory= 5567.940 t= 2.23e+04 R= 2e+03 -Depth= 9744 States= 5.4e+07 Transitions= 1.75e+10 Memory= 5651.826 t= 2.26e+04 R= 2e+03 -Depth= 9744 States= 5.5e+07 Transitions= 1.77e+10 Memory= 5735.811 t= 2.29e+04 R= 2e+03 -Depth= 9744 States= 5.6e+07 Transitions= 1.79e+10 Memory= 5819.795 t= 2.32e+04 R= 2e+03 -Depth= 9744 States= 5.7e+07 Transitions= 1.83e+10 Memory= 5903.779 t= 2.36e+04 R= 2e+03 -Depth= 9744 States= 5.8e+07 Transitions= 1.87e+10 Memory= 5987.764 t= 2.42e+04 R= 2e+03 -Depth= 9744 States= 5.9e+07 Transitions= 1.91e+10 Memory= 6071.748 t= 2.46e+04 R= 2e+03 -Depth= 9744 States= 6e+07 Transitions= 1.94e+10 Memory= 6155.733 t= 2.51e+04 R= 2e+03 -Depth= 9744 States= 6.1e+07 Transitions= 1.98e+10 Memory= 6239.619 t= 2.56e+04 R= 2e+03 -Depth= 9744 States= 6.2e+07 Transitions= 2.02e+10 Memory= 6323.604 t= 2.61e+04 R= 2e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 9744, errors: 0 - 62203844 states, stored -2.0186786e+10 states, matched -2.024899e+10 transitions (= stored+matched) -1.1642436e+11 atomic steps -hash conflicts: 1.1759978e+10 (resolved) - -Stats on memory usage (in Megabytes): - 6881.376 equivalent memory usage for states (stored*(State-vector + overhead)) - 5374.024 actual memory usage for states (compression: 78.10%) - state-vector as stored = 63 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 2.996 memory lost to fragmentation - 6340.791 total actual memory usage - -unreached in proctype urcu_reader - line 249, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 79, "(1)" - line 230, "pan.___", state 87, "(1)" - line 234, "pan.___", state 99, "(1)" - line 238, "pan.___", state 107, "(1)" - line 386, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 164, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 178, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 197, "(1)" - line 412, "pan.___", state 227, "(1)" - line 416, "pan.___", state 240, "(1)" - line 662, "pan.___", state 261, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 386, "pan.___", state 268, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 300, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 314, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 333, "(1)" - line 412, "pan.___", state 363, "(1)" - line 416, "pan.___", state 376, "(1)" - line 386, "pan.___", state 397, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 443, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 462, "(1)" - line 412, "pan.___", state 492, "(1)" - line 416, "pan.___", state 505, "(1)" - line 386, "pan.___", state 528, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 386, "pan.___", state 530, "(1)" - line 386, "pan.___", state 531, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 386, "pan.___", state 531, "else" - line 386, "pan.___", state 534, "(1)" - line 390, "pan.___", state 542, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 544, "(1)" - line 390, "pan.___", state 545, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 390, "pan.___", state 545, "else" - line 390, "pan.___", state 548, "(1)" - line 390, "pan.___", state 549, "(1)" - line 390, "pan.___", state 549, "(1)" - line 388, "pan.___", state 554, "((i<1))" - line 388, "pan.___", state 554, "((i>=1))" - line 395, "pan.___", state 560, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 562, "(1)" - line 395, "pan.___", state 563, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 563, "else" - line 395, "pan.___", state 566, "(1)" - line 395, "pan.___", state 567, "(1)" - line 395, "pan.___", state 567, "(1)" - line 399, "pan.___", state 574, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 399, "pan.___", state 576, "(1)" - line 399, "pan.___", state 577, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 399, "pan.___", state 577, "else" - line 399, "pan.___", state 580, "(1)" - line 399, "pan.___", state 581, "(1)" - line 399, "pan.___", state 581, "(1)" - line 397, "pan.___", state 586, "((i<2))" - line 397, "pan.___", state 586, "((i>=2))" - line 403, "pan.___", state 593, "(1)" - line 403, "pan.___", state 594, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 403, "pan.___", state 594, "else" - line 403, "pan.___", state 597, "(1)" - line 403, "pan.___", state 598, "(1)" - line 403, "pan.___", state 598, "(1)" - line 407, "pan.___", state 606, "(1)" - line 407, "pan.___", state 607, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 407, "pan.___", state 607, "else" - line 407, "pan.___", state 610, "(1)" - line 407, "pan.___", state 611, "(1)" - line 407, "pan.___", state 611, "(1)" - line 405, "pan.___", state 616, "((i<1))" - line 405, "pan.___", state 616, "((i>=1))" - line 412, "pan.___", state 623, "(1)" - line 412, "pan.___", state 624, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 624, "else" - line 412, "pan.___", state 627, "(1)" - line 412, "pan.___", state 628, "(1)" - line 412, "pan.___", state 628, "(1)" - line 416, "pan.___", state 636, "(1)" - line 416, "pan.___", state 637, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 416, "pan.___", state 637, "else" - line 416, "pan.___", state 640, "(1)" - line 416, "pan.___", state 641, "(1)" - line 416, "pan.___", state 641, "(1)" - line 414, "pan.___", state 646, "((i<2))" - line 414, "pan.___", state 646, "((i>=2))" - line 421, "pan.___", state 650, "(1)" - line 421, "pan.___", state 650, "(1)" - line 662, "pan.___", state 653, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 662, "pan.___", state 654, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 662, "pan.___", state 655, "(1)" - line 386, "pan.___", state 662, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 694, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 708, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 727, "(1)" - line 412, "pan.___", state 757, "(1)" - line 416, "pan.___", state 770, "(1)" - line 386, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 386, "pan.___", state 800, "(1)" - line 386, "pan.___", state 801, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 386, "pan.___", state 801, "else" - line 386, "pan.___", state 804, "(1)" - line 390, "pan.___", state 812, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 814, "(1)" - line 390, "pan.___", state 815, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 390, "pan.___", state 815, "else" - line 390, "pan.___", state 818, "(1)" - line 390, "pan.___", state 819, "(1)" - line 390, "pan.___", state 819, "(1)" - line 388, "pan.___", state 824, "((i<1))" - line 388, "pan.___", state 824, "((i>=1))" - line 395, "pan.___", state 830, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 832, "(1)" - line 395, "pan.___", state 833, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 833, "else" - line 395, "pan.___", state 836, "(1)" - line 395, "pan.___", state 837, "(1)" - line 395, "pan.___", state 837, "(1)" - line 399, "pan.___", state 844, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 399, "pan.___", state 846, "(1)" - line 399, "pan.___", state 847, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 399, "pan.___", state 847, "else" - line 399, "pan.___", state 850, "(1)" - line 399, "pan.___", state 851, "(1)" - line 399, "pan.___", state 851, "(1)" - line 397, "pan.___", state 856, "((i<2))" - line 397, "pan.___", state 856, "((i>=2))" - line 403, "pan.___", state 863, "(1)" - line 403, "pan.___", state 864, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 403, "pan.___", state 864, "else" - line 403, "pan.___", state 867, "(1)" - line 403, "pan.___", state 868, "(1)" - line 403, "pan.___", state 868, "(1)" - line 407, "pan.___", state 876, "(1)" - line 407, "pan.___", state 877, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 407, "pan.___", state 877, "else" - line 407, "pan.___", state 880, "(1)" - line 407, "pan.___", state 881, "(1)" - line 407, "pan.___", state 881, "(1)" - line 405, "pan.___", state 886, "((i<1))" - line 405, "pan.___", state 886, "((i>=1))" - line 412, "pan.___", state 893, "(1)" - line 412, "pan.___", state 894, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 894, "else" - line 412, "pan.___", state 897, "(1)" - line 412, "pan.___", state 898, "(1)" - line 412, "pan.___", state 898, "(1)" - line 416, "pan.___", state 906, "(1)" - line 416, "pan.___", state 907, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 416, "pan.___", state 907, "else" - line 416, "pan.___", state 910, "(1)" - line 416, "pan.___", state 911, "(1)" - line 416, "pan.___", state 911, "(1)" - line 421, "pan.___", state 920, "(1)" - line 421, "pan.___", state 920, "(1)" - line 386, "pan.___", state 927, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 386, "pan.___", state 929, "(1)" - line 386, "pan.___", state 930, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 386, "pan.___", state 930, "else" - line 386, "pan.___", state 933, "(1)" - line 390, "pan.___", state 941, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 943, "(1)" - line 390, "pan.___", state 944, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 390, "pan.___", state 944, "else" - line 390, "pan.___", state 947, "(1)" - line 390, "pan.___", state 948, "(1)" - line 390, "pan.___", state 948, "(1)" - line 388, "pan.___", state 953, "((i<1))" - line 388, "pan.___", state 953, "((i>=1))" - line 395, "pan.___", state 959, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 961, "(1)" - line 395, "pan.___", state 962, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 962, "else" - line 395, "pan.___", state 965, "(1)" - line 395, "pan.___", state 966, "(1)" - line 395, "pan.___", state 966, "(1)" - line 399, "pan.___", state 973, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 399, "pan.___", state 975, "(1)" - line 399, "pan.___", state 976, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 399, "pan.___", state 976, "else" - line 399, "pan.___", state 979, "(1)" - line 399, "pan.___", state 980, "(1)" - line 399, "pan.___", state 980, "(1)" - line 397, "pan.___", state 985, "((i<2))" - line 397, "pan.___", state 985, "((i>=2))" - line 403, "pan.___", state 992, "(1)" - line 403, "pan.___", state 993, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 403, "pan.___", state 993, "else" - line 403, "pan.___", state 996, "(1)" - line 403, "pan.___", state 997, "(1)" - line 403, "pan.___", state 997, "(1)" - line 407, "pan.___", state 1005, "(1)" - line 407, "pan.___", state 1006, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 407, "pan.___", state 1006, "else" - line 407, "pan.___", state 1009, "(1)" - line 407, "pan.___", state 1010, "(1)" - line 407, "pan.___", state 1010, "(1)" - line 405, "pan.___", state 1015, "((i<1))" - line 405, "pan.___", state 1015, "((i>=1))" - line 412, "pan.___", state 1022, "(1)" - line 412, "pan.___", state 1023, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 1023, "else" - line 412, "pan.___", state 1026, "(1)" - line 412, "pan.___", state 1027, "(1)" - line 412, "pan.___", state 1027, "(1)" - line 416, "pan.___", state 1035, "(1)" - line 416, "pan.___", state 1036, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 416, "pan.___", state 1036, "else" - line 416, "pan.___", state 1039, "(1)" - line 416, "pan.___", state 1040, "(1)" - line 416, "pan.___", state 1040, "(1)" - line 414, "pan.___", state 1045, "((i<2))" - line 414, "pan.___", state 1045, "((i>=2))" - line 421, "pan.___", state 1049, "(1)" - line 421, "pan.___", state 1049, "(1)" - line 670, "pan.___", state 1053, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 386, "pan.___", state 1058, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1090, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1104, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1123, "(1)" - line 412, "pan.___", state 1153, "(1)" - line 416, "pan.___", state 1166, "(1)" - line 386, "pan.___", state 1190, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1222, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1236, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1255, "(1)" - line 412, "pan.___", state 1285, "(1)" - line 416, "pan.___", state 1298, "(1)" - line 386, "pan.___", state 1323, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1355, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1369, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1388, "(1)" - line 412, "pan.___", state 1418, "(1)" - line 416, "pan.___", state 1431, "(1)" - line 386, "pan.___", state 1452, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1484, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1498, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1517, "(1)" - line 412, "pan.___", state 1547, "(1)" - line 416, "pan.___", state 1560, "(1)" - line 386, "pan.___", state 1586, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1618, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1632, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1651, "(1)" - line 412, "pan.___", state 1681, "(1)" - line 416, "pan.___", state 1694, "(1)" - line 386, "pan.___", state 1715, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1747, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1761, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1780, "(1)" - line 412, "pan.___", state 1810, "(1)" - line 416, "pan.___", state 1823, "(1)" - line 386, "pan.___", state 1847, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 1879, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1893, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1912, "(1)" - line 412, "pan.___", state 1942, "(1)" - line 416, "pan.___", state 1955, "(1)" - line 709, "pan.___", state 1976, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 386, "pan.___", state 1983, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2029, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2048, "(1)" - line 412, "pan.___", state 2078, "(1)" - line 416, "pan.___", state 2091, "(1)" - line 386, "pan.___", state 2112, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2144, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2158, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2177, "(1)" - line 412, "pan.___", state 2207, "(1)" - line 416, "pan.___", state 2220, "(1)" - line 386, "pan.___", state 2243, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 386, "pan.___", state 2245, "(1)" - line 386, "pan.___", state 2246, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 386, "pan.___", state 2246, "else" - line 386, "pan.___", state 2249, "(1)" - line 390, "pan.___", state 2257, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 2259, "(1)" - line 390, "pan.___", state 2260, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 390, "pan.___", state 2260, "else" - line 390, "pan.___", state 2263, "(1)" - line 390, "pan.___", state 2264, "(1)" - line 390, "pan.___", state 2264, "(1)" - line 388, "pan.___", state 2269, "((i<1))" - line 388, "pan.___", state 2269, "((i>=1))" - line 395, "pan.___", state 2275, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2277, "(1)" - line 395, "pan.___", state 2278, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2278, "else" - line 395, "pan.___", state 2281, "(1)" - line 395, "pan.___", state 2282, "(1)" - line 395, "pan.___", state 2282, "(1)" - line 399, "pan.___", state 2289, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2291, "(1)" - line 399, "pan.___", state 2292, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 399, "pan.___", state 2292, "else" - line 399, "pan.___", state 2295, "(1)" - line 399, "pan.___", state 2296, "(1)" - line 399, "pan.___", state 2296, "(1)" - line 397, "pan.___", state 2301, "((i<2))" - line 397, "pan.___", state 2301, "((i>=2))" - line 403, "pan.___", state 2308, "(1)" - line 403, "pan.___", state 2309, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 403, "pan.___", state 2309, "else" - line 403, "pan.___", state 2312, "(1)" - line 403, "pan.___", state 2313, "(1)" - line 403, "pan.___", state 2313, "(1)" - line 407, "pan.___", state 2321, "(1)" - line 407, "pan.___", state 2322, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 407, "pan.___", state 2322, "else" - line 407, "pan.___", state 2325, "(1)" - line 407, "pan.___", state 2326, "(1)" - line 407, "pan.___", state 2326, "(1)" - line 405, "pan.___", state 2331, "((i<1))" - line 405, "pan.___", state 2331, "((i>=1))" - line 412, "pan.___", state 2338, "(1)" - line 412, "pan.___", state 2339, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2339, "else" - line 412, "pan.___", state 2342, "(1)" - line 412, "pan.___", state 2343, "(1)" - line 412, "pan.___", state 2343, "(1)" - line 416, "pan.___", state 2351, "(1)" - line 416, "pan.___", state 2352, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 416, "pan.___", state 2352, "else" - line 416, "pan.___", state 2355, "(1)" - line 416, "pan.___", state 2356, "(1)" - line 416, "pan.___", state 2356, "(1)" - line 414, "pan.___", state 2361, "((i<2))" - line 414, "pan.___", state 2361, "((i>=2))" - line 421, "pan.___", state 2365, "(1)" - line 421, "pan.___", state 2365, "(1)" - line 709, "pan.___", state 2368, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 709, "pan.___", state 2369, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 709, "pan.___", state 2370, "(1)" - line 386, "pan.___", state 2377, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2409, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2442, "(1)" - line 412, "pan.___", state 2472, "(1)" - line 416, "pan.___", state 2485, "(1)" - line 386, "pan.___", state 2512, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2544, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2558, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2577, "(1)" - line 412, "pan.___", state 2607, "(1)" - line 416, "pan.___", state 2620, "(1)" - line 386, "pan.___", state 2641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2706, "(1)" - line 412, "pan.___", state 2736, "(1)" - line 416, "pan.___", state 2749, "(1)" - line 226, "pan.___", state 2782, "(1)" - line 234, "pan.___", state 2802, "(1)" - line 238, "pan.___", state 2810, "(1)" - line 226, "pan.___", state 2825, "(1)" - line 234, "pan.___", state 2845, "(1)" - line 238, "pan.___", state 2853, "(1)" - line 869, "pan.___", state 2870, "-end-" - (278 of 2870 states) -unreached in proctype urcu_writer - line 386, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 83, "(1)" - line 407, "pan.___", state 96, "(1)" - line 412, "pan.___", state 113, "(1)" - line 249, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 386, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 390, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 403, "pan.___", state 276, "(1)" - line 407, "pan.___", state 289, "(1)" - line 412, "pan.___", state 306, "(1)" - line 416, "pan.___", state 319, "(1)" - line 390, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 420, "(1)" - line 412, "pan.___", state 437, "(1)" - line 416, "pan.___", state 450, "(1)" - line 390, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 558, "(1)" - line 412, "pan.___", state 575, "(1)" - line 416, "pan.___", state 588, "(1)" - line 390, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 687, "(1)" - line 412, "pan.___", state 704, "(1)" - line 416, "pan.___", state 717, "(1)" - line 390, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 818, "(1)" - line 412, "pan.___", state 835, "(1)" - line 416, "pan.___", state 848, "(1)" - line 249, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 927, "(1)" - line 261, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 950, "(1)" - line 230, "pan.___", state 958, "(1)" - line 234, "pan.___", state 970, "(1)" - line 238, "pan.___", state 978, "(1)" - line 249, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1056, "(1)" - line 230, "pan.___", state 1064, "(1)" - line 234, "pan.___", state 1076, "(1)" - line 238, "pan.___", state 1084, "(1)" - line 253, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1148, "(1)" - line 230, "pan.___", state 1156, "(1)" - line 234, "pan.___", state 1168, "(1)" - line 238, "pan.___", state 1176, "(1)" - line 249, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1254, "(1)" - line 230, "pan.___", state 1262, "(1)" - line 234, "pan.___", state 1274, "(1)" - line 238, "pan.___", state 1282, "(1)" - line 253, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1346, "(1)" - line 230, "pan.___", state 1354, "(1)" - line 234, "pan.___", state 1366, "(1)" - line 238, "pan.___", state 1374, "(1)" - line 249, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1452, "(1)" - line 230, "pan.___", state 1460, "(1)" - line 234, "pan.___", state 1472, "(1)" - line 238, "pan.___", state 1480, "(1)" - line 253, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1544, "(1)" - line 230, "pan.___", state 1552, "(1)" - line 234, "pan.___", state 1564, "(1)" - line 238, "pan.___", state 1572, "(1)" - line 249, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1650, "(1)" - line 230, "pan.___", state 1658, "(1)" - line 234, "pan.___", state 1670, "(1)" - line 238, "pan.___", state 1678, "(1)" - line 1190, "pan.___", state 1694, "-end-" - (103 of 1694 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1249, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 2.62e+04 seconds -pan: rate 2378.2573 states/second -pan: avg transition delay 1.2917e-06 usec -cp .input.spin urcu_free.spin.input -cp .input.spin.trail urcu_free.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.ltl b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.ltl deleted file mode 100644 index 6be1be9..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.ltl +++ /dev/null @@ -1 +0,0 @@ -[] (!read_poison) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input deleted file mode 100644 index 527f16e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input +++ /dev/null @@ -1,1226 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input.trail deleted file mode 100644 index 011045f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free.spin.input.trail +++ /dev/null @@ -1,2598 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4863 -2:3:4786 -3:3:4789 -4:3:4789 -5:3:4792 -6:3:4800 -7:3:4800 -8:3:4803 -9:3:4809 -10:3:4813 -11:3:4813 -12:3:4816 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-2571:1:1340 -2572:1:1341 -2573:1:1335 -2574:1:1336 -2575:1:1340 -2576:1:1341 -2577:1:1349 -2578:1:1354 -2579:1:1355 -2580:1:1366 -2581:1:1367 -2582:1:1368 -2583:1:1379 -2584:1:1384 -2585:1:1385 -2586:1:1396 -2587:1:1397 -2588:1:1398 -2589:1:1396 -2590:1:1404 -2591:1:1405 -2592:1:1409 -2593:0:4861 -2594:1:11 -2595:0:4867 -2596:0:4863 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_nested.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_nested.define deleted file mode 100644 index 0fb59bd..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_nested.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_NEST_LEVEL 2 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.define deleted file mode 100644 index d99d793..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_MB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.log deleted file mode 100644 index 282f866..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.log +++ /dev/null @@ -1,880 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_mb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -Depth= 9118 States= 1e+06 Transitions= 1.65e+08 Memory= 550.432 t= 207 R= 5e+03 -Depth= 9118 States= 2e+06 Transitions= 3.77e+08 Memory= 634.318 t= 477 R= 4e+03 -Depth= 9118 States= 3e+06 Transitions= 5.23e+08 Memory= 718.303 t= 664 R= 5e+03 -pan: resizing hashtable to -w22.. done -pan: claim violated! (at depth 1384) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 9118, errors: 1 - 3611143 states, stored -6.1053642e+08 states, matched -6.1414756e+08 transitions (= stored+matched) -3.4001615e+09 atomic steps -hash conflicts: 3.9831098e+08 (resolved) - -Stats on memory usage (in Megabytes): - 399.487 equivalent memory usage for states (stored*(State-vector + overhead)) - 311.150 actual memory usage for states (compression: 77.89%) - state-vector as stored = 62 byte + 28 byte overhead - 32.000 memory used for hash table (-w22) - 457.764 memory used for DFS stack (-m10000000) - 800.693 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 36, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 58, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 67, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 83, "(1)" - line 231, "pan.___", state 91, "(1)" - line 235, "pan.___", state 103, "(1)" - line 239, "pan.___", state 111, "(1)" - line 387, "pan.___", state 136, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 168, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 182, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 201, "(1)" - line 413, "pan.___", state 231, "(1)" - line 417, "pan.___", state 244, "(1)" - line 672, "pan.___", state 265, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 387, "pan.___", state 272, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 304, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 318, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 337, "(1)" - line 413, "pan.___", state 367, "(1)" - line 417, "pan.___", state 380, "(1)" - line 387, "pan.___", state 401, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 433, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 447, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 466, "(1)" - line 413, "pan.___", state 496, "(1)" - line 417, "pan.___", state 509, "(1)" - line 387, "pan.___", state 532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 534, "(1)" - line 387, "pan.___", state 535, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 535, "else" - line 387, "pan.___", state 538, "(1)" - line 391, "pan.___", state 546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 548, "(1)" - line 391, "pan.___", state 549, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 549, "else" - line 391, "pan.___", state 552, "(1)" - line 391, "pan.___", state 553, "(1)" - line 391, "pan.___", state 553, "(1)" - line 389, "pan.___", state 558, "((i<1))" - line 389, "pan.___", state 558, "((i>=1))" - line 396, "pan.___", state 564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 566, "(1)" - line 396, "pan.___", state 567, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 567, "else" - line 396, "pan.___", state 570, "(1)" - line 396, "pan.___", state 571, "(1)" - line 396, "pan.___", state 571, "(1)" - line 400, "pan.___", state 578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 580, "(1)" - line 400, "pan.___", state 581, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 581, "else" - line 400, "pan.___", state 584, "(1)" - line 400, "pan.___", state 585, "(1)" - line 400, "pan.___", state 585, "(1)" - line 398, "pan.___", state 590, "((i<2))" - line 398, "pan.___", state 590, "((i>=2))" - line 404, "pan.___", state 597, "(1)" - line 404, "pan.___", state 598, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 598, "else" - line 404, "pan.___", state 601, "(1)" - line 404, "pan.___", state 602, "(1)" - line 404, "pan.___", state 602, "(1)" - line 408, "pan.___", state 610, "(1)" - line 408, "pan.___", state 611, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 611, "else" - line 408, "pan.___", state 614, "(1)" - line 408, "pan.___", state 615, "(1)" - line 408, "pan.___", state 615, "(1)" - line 406, "pan.___", state 620, "((i<1))" - line 406, "pan.___", state 620, "((i>=1))" - line 413, "pan.___", state 627, "(1)" - line 413, "pan.___", state 628, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 628, "else" - line 413, "pan.___", state 631, "(1)" - line 413, "pan.___", state 632, "(1)" - line 413, "pan.___", state 632, "(1)" - line 417, "pan.___", state 640, "(1)" - line 417, "pan.___", state 641, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 641, "else" - line 417, "pan.___", state 644, "(1)" - line 417, "pan.___", state 645, "(1)" - line 417, "pan.___", state 645, "(1)" - line 415, "pan.___", state 650, "((i<2))" - line 415, "pan.___", state 650, "((i>=2))" - line 422, "pan.___", state 654, "(1)" - line 422, "pan.___", state 654, "(1)" - line 672, "pan.___", state 657, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 672, "pan.___", state 658, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 672, "pan.___", state 659, "(1)" - line 387, "pan.___", state 666, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 698, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 712, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 731, "(1)" - line 413, "pan.___", state 761, "(1)" - line 417, "pan.___", state 774, "(1)" - line 387, "pan.___", state 802, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 804, "(1)" - line 387, "pan.___", state 805, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 805, "else" - line 387, "pan.___", state 808, "(1)" - line 391, "pan.___", state 816, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 818, "(1)" - line 391, "pan.___", state 819, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 819, "else" - line 391, "pan.___", state 822, "(1)" - line 391, "pan.___", state 823, "(1)" - line 391, "pan.___", state 823, "(1)" - line 389, "pan.___", state 828, "((i<1))" - line 389, "pan.___", state 828, "((i>=1))" - line 396, "pan.___", state 834, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 836, "(1)" - line 396, "pan.___", state 837, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 837, "else" - line 396, "pan.___", state 840, "(1)" - line 396, "pan.___", state 841, "(1)" - line 396, "pan.___", state 841, "(1)" - line 400, "pan.___", state 848, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 850, "(1)" - line 400, "pan.___", state 851, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 851, "else" - line 400, "pan.___", state 854, "(1)" - line 400, "pan.___", state 855, "(1)" - line 400, "pan.___", state 855, "(1)" - line 398, "pan.___", state 860, "((i<2))" - line 398, "pan.___", state 860, "((i>=2))" - line 404, "pan.___", state 867, "(1)" - line 404, "pan.___", state 868, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 868, "else" - line 404, "pan.___", state 871, "(1)" - line 404, "pan.___", state 872, "(1)" - line 404, "pan.___", state 872, "(1)" - line 408, "pan.___", state 880, "(1)" - line 408, "pan.___", state 881, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 881, "else" - line 408, "pan.___", state 884, "(1)" - line 408, "pan.___", state 885, "(1)" - line 408, "pan.___", state 885, "(1)" - line 406, "pan.___", state 890, "((i<1))" - line 406, "pan.___", state 890, "((i>=1))" - line 413, "pan.___", state 897, "(1)" - line 413, "pan.___", state 898, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 898, "else" - line 413, "pan.___", state 901, "(1)" - line 413, "pan.___", state 902, "(1)" - line 413, "pan.___", state 902, "(1)" - line 417, "pan.___", state 910, "(1)" - line 417, "pan.___", state 911, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 911, "else" - line 417, "pan.___", state 914, "(1)" - line 417, "pan.___", state 915, "(1)" - line 417, "pan.___", state 915, "(1)" - line 422, "pan.___", state 924, "(1)" - line 422, "pan.___", state 924, "(1)" - line 387, "pan.___", state 931, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 933, "(1)" - line 387, "pan.___", state 934, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 934, "else" - line 387, "pan.___", state 937, "(1)" - line 391, "pan.___", state 945, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 947, "(1)" - line 391, "pan.___", state 948, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 948, "else" - line 391, "pan.___", state 951, "(1)" - line 391, "pan.___", state 952, "(1)" - line 391, "pan.___", state 952, "(1)" - line 389, "pan.___", state 957, "((i<1))" - line 389, "pan.___", state 957, "((i>=1))" - line 396, "pan.___", state 963, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 965, "(1)" - line 396, "pan.___", state 966, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 966, "else" - line 396, "pan.___", state 969, "(1)" - line 396, "pan.___", state 970, "(1)" - line 396, "pan.___", state 970, "(1)" - line 400, "pan.___", state 977, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 979, "(1)" - line 400, "pan.___", state 980, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 980, "else" - line 400, "pan.___", state 983, "(1)" - line 400, "pan.___", state 984, "(1)" - line 400, "pan.___", state 984, "(1)" - line 398, "pan.___", state 989, "((i<2))" - line 398, "pan.___", state 989, "((i>=2))" - line 404, "pan.___", state 996, "(1)" - line 404, "pan.___", state 997, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 997, "else" - line 404, "pan.___", state 1000, "(1)" - line 404, "pan.___", state 1001, "(1)" - line 404, "pan.___", state 1001, "(1)" - line 408, "pan.___", state 1009, "(1)" - line 408, "pan.___", state 1010, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1010, "else" - line 408, "pan.___", state 1013, "(1)" - line 408, "pan.___", state 1014, "(1)" - line 408, "pan.___", state 1014, "(1)" - line 406, "pan.___", state 1019, "((i<1))" - line 406, "pan.___", state 1019, "((i>=1))" - line 413, "pan.___", state 1026, "(1)" - line 413, "pan.___", state 1027, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1027, "else" - line 413, "pan.___", state 1030, "(1)" - line 413, "pan.___", state 1031, "(1)" - line 413, "pan.___", state 1031, "(1)" - line 417, "pan.___", state 1039, "(1)" - line 417, "pan.___", state 1040, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1040, "else" - line 417, "pan.___", state 1043, "(1)" - line 417, "pan.___", state 1044, "(1)" - line 417, "pan.___", state 1044, "(1)" - line 415, "pan.___", state 1049, "((i<2))" - line 415, "pan.___", state 1049, "((i>=2))" - line 422, "pan.___", state 1053, "(1)" - line 422, "pan.___", state 1053, "(1)" - line 680, "pan.___", state 1057, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1062, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1094, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1108, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1127, "(1)" - line 413, "pan.___", state 1157, "(1)" - line 417, "pan.___", state 1170, "(1)" - line 387, "pan.___", state 1194, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1226, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1240, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1259, "(1)" - line 413, "pan.___", state 1289, "(1)" - line 417, "pan.___", state 1302, "(1)" - line 387, "pan.___", state 1327, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1359, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1373, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1392, "(1)" - line 413, "pan.___", state 1422, "(1)" - line 417, "pan.___", state 1435, "(1)" - line 387, "pan.___", state 1456, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1488, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1502, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1521, "(1)" - line 413, "pan.___", state 1551, "(1)" - line 417, "pan.___", state 1564, "(1)" - line 387, "pan.___", state 1590, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1622, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1636, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1655, "(1)" - line 413, "pan.___", state 1685, "(1)" - line 417, "pan.___", state 1698, "(1)" - line 387, "pan.___", state 1719, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1751, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1765, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1784, "(1)" - line 413, "pan.___", state 1814, "(1)" - line 417, "pan.___", state 1827, "(1)" - line 387, "pan.___", state 1851, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1883, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1897, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1916, "(1)" - line 413, "pan.___", state 1946, "(1)" - line 417, "pan.___", state 1959, "(1)" - line 719, "pan.___", state 1980, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 387, "pan.___", state 1987, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2019, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2033, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2052, "(1)" - line 413, "pan.___", state 2082, "(1)" - line 417, "pan.___", state 2095, "(1)" - line 387, "pan.___", state 2116, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2148, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2162, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2181, "(1)" - line 413, "pan.___", state 2211, "(1)" - line 417, "pan.___", state 2224, "(1)" - line 387, "pan.___", state 2247, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2249, "(1)" - line 387, "pan.___", state 2250, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2250, "else" - line 387, "pan.___", state 2253, "(1)" - line 391, "pan.___", state 2261, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2263, "(1)" - line 391, "pan.___", state 2264, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2264, "else" - line 391, "pan.___", state 2267, "(1)" - line 391, "pan.___", state 2268, "(1)" - line 391, "pan.___", state 2268, "(1)" - line 389, "pan.___", state 2273, "((i<1))" - line 389, "pan.___", state 2273, "((i>=1))" - line 396, "pan.___", state 2279, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2281, "(1)" - line 396, "pan.___", state 2282, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2282, "else" - line 396, "pan.___", state 2285, "(1)" - line 396, "pan.___", state 2286, "(1)" - line 396, "pan.___", state 2286, "(1)" - line 400, "pan.___", state 2293, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2295, "(1)" - line 400, "pan.___", state 2296, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2296, "else" - line 400, "pan.___", state 2299, "(1)" - line 400, "pan.___", state 2300, "(1)" - line 400, "pan.___", state 2300, "(1)" - line 398, "pan.___", state 2305, "((i<2))" - line 398, "pan.___", state 2305, "((i>=2))" - line 404, "pan.___", state 2312, "(1)" - line 404, "pan.___", state 2313, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2313, "else" - line 404, "pan.___", state 2316, "(1)" - line 404, "pan.___", state 2317, "(1)" - line 404, "pan.___", state 2317, "(1)" - line 408, "pan.___", state 2325, "(1)" - line 408, "pan.___", state 2326, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2326, "else" - line 408, "pan.___", state 2329, "(1)" - line 408, "pan.___", state 2330, "(1)" - line 408, "pan.___", state 2330, "(1)" - line 406, "pan.___", state 2335, "((i<1))" - line 406, "pan.___", state 2335, "((i>=1))" - line 413, "pan.___", state 2342, "(1)" - line 413, "pan.___", state 2343, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2343, "else" - line 413, "pan.___", state 2346, "(1)" - line 413, "pan.___", state 2347, "(1)" - line 413, "pan.___", state 2347, "(1)" - line 417, "pan.___", state 2355, "(1)" - line 417, "pan.___", state 2356, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2356, "else" - line 417, "pan.___", state 2359, "(1)" - line 417, "pan.___", state 2360, "(1)" - line 417, "pan.___", state 2360, "(1)" - line 415, "pan.___", state 2365, "((i<2))" - line 415, "pan.___", state 2365, "((i>=2))" - line 422, "pan.___", state 2369, "(1)" - line 422, "pan.___", state 2369, "(1)" - line 719, "pan.___", state 2372, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 719, "pan.___", state 2373, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 719, "pan.___", state 2374, "(1)" - line 387, "pan.___", state 2381, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2413, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2427, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2446, "(1)" - line 413, "pan.___", state 2476, "(1)" - line 417, "pan.___", state 2489, "(1)" - line 387, "pan.___", state 2516, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2548, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2562, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2581, "(1)" - line 413, "pan.___", state 2611, "(1)" - line 417, "pan.___", state 2624, "(1)" - line 387, "pan.___", state 2645, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2677, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2691, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2710, "(1)" - line 413, "pan.___", state 2740, "(1)" - line 417, "pan.___", state 2753, "(1)" - line 227, "pan.___", state 2786, "(1)" - line 235, "pan.___", state 2806, "(1)" - line 239, "pan.___", state 2814, "(1)" - line 227, "pan.___", state 2829, "(1)" - line 235, "pan.___", state 2849, "(1)" - line 239, "pan.___", state 2857, "(1)" - line 870, "pan.___", state 2874, "-end-" - (278 of 2874 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 20, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 26, "(1)" - line 391, "pan.___", state 34, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 40, "(1)" - line 391, "pan.___", state 41, "(1)" - line 391, "pan.___", state 41, "(1)" - line 389, "pan.___", state 46, "((i<1))" - line 389, "pan.___", state 46, "((i>=1))" - line 396, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 58, "(1)" - line 396, "pan.___", state 59, "(1)" - line 396, "pan.___", state 59, "(1)" - line 400, "pan.___", state 72, "(1)" - line 400, "pan.___", state 73, "(1)" - line 400, "pan.___", state 73, "(1)" - line 398, "pan.___", state 78, "((i<2))" - line 398, "pan.___", state 78, "((i>=2))" - line 404, "pan.___", state 85, "(1)" - line 404, "pan.___", state 86, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 86, "else" - line 404, "pan.___", state 89, "(1)" - line 404, "pan.___", state 90, "(1)" - line 404, "pan.___", state 90, "(1)" - line 408, "pan.___", state 98, "(1)" - line 408, "pan.___", state 99, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 99, "else" - line 408, "pan.___", state 102, "(1)" - line 408, "pan.___", state 103, "(1)" - line 408, "pan.___", state 103, "(1)" - line 406, "pan.___", state 108, "((i<1))" - line 406, "pan.___", state 108, "((i>=1))" - line 413, "pan.___", state 115, "(1)" - line 413, "pan.___", state 116, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 116, "else" - line 413, "pan.___", state 119, "(1)" - line 413, "pan.___", state 120, "(1)" - line 413, "pan.___", state 120, "(1)" - line 417, "pan.___", state 128, "(1)" - line 417, "pan.___", state 129, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 129, "else" - line 417, "pan.___", state 132, "(1)" - line 417, "pan.___", state 133, "(1)" - line 417, "pan.___", state 133, "(1)" - line 415, "pan.___", state 138, "((i<2))" - line 415, "pan.___", state 138, "((i>=2))" - line 422, "pan.___", state 142, "(1)" - line 422, "pan.___", state 142, "(1)" - line 250, "pan.___", state 151, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 160, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 168, "((i<1))" - line 252, "pan.___", state 168, "((i>=1))" - line 258, "pan.___", state 173, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 993, "pan.___", state 201, "old_data = cached_rcu_ptr.val[_pid]" - line 1004, "pan.___", state 205, "_proc_urcu_writer = (_proc_urcu_writer|(1<<4))" - line 387, "pan.___", state 213, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 219, "(1)" - line 391, "pan.___", state 227, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 233, "(1)" - line 391, "pan.___", state 234, "(1)" - line 391, "pan.___", state 234, "(1)" - line 389, "pan.___", state 239, "((i<1))" - line 389, "pan.___", state 239, "((i>=1))" - line 396, "pan.___", state 247, "(1)" - line 396, "pan.___", state 248, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 248, "else" - line 396, "pan.___", state 251, "(1)" - line 396, "pan.___", state 252, "(1)" - line 396, "pan.___", state 252, "(1)" - line 400, "pan.___", state 259, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 265, "(1)" - line 400, "pan.___", state 266, "(1)" - line 400, "pan.___", state 266, "(1)" - line 398, "pan.___", state 271, "((i<2))" - line 398, "pan.___", state 271, "((i>=2))" - line 404, "pan.___", state 278, "(1)" - line 404, "pan.___", state 279, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 279, "else" - line 404, "pan.___", state 282, "(1)" - line 404, "pan.___", state 283, "(1)" - line 404, "pan.___", state 283, "(1)" - line 408, "pan.___", state 291, "(1)" - line 408, "pan.___", state 292, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 292, "else" - line 408, "pan.___", state 295, "(1)" - line 408, "pan.___", state 296, "(1)" - line 408, "pan.___", state 296, "(1)" - line 406, "pan.___", state 301, "((i<1))" - line 406, "pan.___", state 301, "((i>=1))" - line 413, "pan.___", state 308, "(1)" - line 413, "pan.___", state 309, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 309, "else" - line 413, "pan.___", state 312, "(1)" - line 413, "pan.___", state 313, "(1)" - line 413, "pan.___", state 313, "(1)" - line 417, "pan.___", state 321, "(1)" - line 417, "pan.___", state 322, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 322, "else" - line 417, "pan.___", state 325, "(1)" - line 417, "pan.___", state 326, "(1)" - line 417, "pan.___", state 326, "(1)" - line 415, "pan.___", state 331, "((i<2))" - line 415, "pan.___", state 331, "((i>=2))" - line 422, "pan.___", state 335, "(1)" - line 422, "pan.___", state 335, "(1)" - line 387, "pan.___", state 346, "(1)" - line 387, "pan.___", state 347, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 347, "else" - line 387, "pan.___", state 350, "(1)" - line 391, "pan.___", state 358, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 364, "(1)" - line 391, "pan.___", state 365, "(1)" - line 391, "pan.___", state 365, "(1)" - line 389, "pan.___", state 370, "((i<1))" - line 389, "pan.___", state 370, "((i>=1))" - line 396, "pan.___", state 376, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 382, "(1)" - line 396, "pan.___", state 383, "(1)" - line 396, "pan.___", state 383, "(1)" - line 400, "pan.___", state 390, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 396, "(1)" - line 400, "pan.___", state 397, "(1)" - line 400, "pan.___", state 397, "(1)" - line 398, "pan.___", state 402, "((i<2))" - line 398, "pan.___", state 402, "((i>=2))" - line 404, "pan.___", state 409, "(1)" - line 404, "pan.___", state 410, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 410, "else" - line 404, "pan.___", state 413, "(1)" - line 404, "pan.___", state 414, "(1)" - line 404, "pan.___", state 414, "(1)" - line 408, "pan.___", state 422, "(1)" - line 408, "pan.___", state 423, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 423, "else" - line 408, "pan.___", state 426, "(1)" - line 408, "pan.___", state 427, "(1)" - line 408, "pan.___", state 427, "(1)" - line 406, "pan.___", state 432, "((i<1))" - line 406, "pan.___", state 432, "((i>=1))" - line 413, "pan.___", state 439, "(1)" - line 413, "pan.___", state 440, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 440, "else" - line 413, "pan.___", state 443, "(1)" - line 413, "pan.___", state 444, "(1)" - line 413, "pan.___", state 444, "(1)" - line 417, "pan.___", state 452, "(1)" - line 417, "pan.___", state 453, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 453, "else" - line 417, "pan.___", state 456, "(1)" - line 417, "pan.___", state 457, "(1)" - line 417, "pan.___", state 457, "(1)" - line 415, "pan.___", state 462, "((i<2))" - line 415, "pan.___", state 462, "((i>=2))" - line 422, "pan.___", state 466, "(1)" - line 422, "pan.___", state 466, "(1)" - line 1056, "pan.___", state 477, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<8)|(1<<7))))" - line 387, "pan.___", state 482, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 488, "(1)" - line 391, "pan.___", state 496, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 502, "(1)" - line 391, "pan.___", state 503, "(1)" - line 391, "pan.___", state 503, "(1)" - line 389, "pan.___", state 508, "((i<1))" - line 389, "pan.___", state 508, "((i>=1))" - line 396, "pan.___", state 514, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 520, "(1)" - line 396, "pan.___", state 521, "(1)" - line 396, "pan.___", state 521, "(1)" - line 400, "pan.___", state 528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 534, "(1)" - line 400, "pan.___", state 535, "(1)" - line 400, "pan.___", state 535, "(1)" - line 398, "pan.___", state 540, "((i<2))" - line 398, "pan.___", state 540, "((i>=2))" - line 404, "pan.___", state 547, "(1)" - line 404, "pan.___", state 548, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 548, "else" - line 404, "pan.___", state 551, "(1)" - line 404, "pan.___", state 552, "(1)" - line 404, "pan.___", state 552, "(1)" - line 408, "pan.___", state 560, "(1)" - line 408, "pan.___", state 561, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 561, "else" - line 408, "pan.___", state 564, "(1)" - line 408, "pan.___", state 565, "(1)" - line 408, "pan.___", state 565, "(1)" - line 406, "pan.___", state 570, "((i<1))" - line 406, "pan.___", state 570, "((i>=1))" - line 413, "pan.___", state 577, "(1)" - line 413, "pan.___", state 578, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 578, "else" - line 413, "pan.___", state 581, "(1)" - line 413, "pan.___", state 582, "(1)" - line 413, "pan.___", state 582, "(1)" - line 417, "pan.___", state 590, "(1)" - line 417, "pan.___", state 591, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 591, "else" - line 417, "pan.___", state 594, "(1)" - line 417, "pan.___", state 595, "(1)" - line 417, "pan.___", state 595, "(1)" - line 422, "pan.___", state 604, "(1)" - line 422, "pan.___", state 604, "(1)" - line 387, "pan.___", state 611, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 625, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 643, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 676, "(1)" - line 408, "pan.___", state 689, "(1)" - line 413, "pan.___", state 706, "(1)" - line 417, "pan.___", state 719, "(1)" - line 391, "pan.___", state 756, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 774, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 788, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 820, "(1)" - line 413, "pan.___", state 837, "(1)" - line 417, "pan.___", state 850, "(1)" - line 1128, "pan.___", state 877, "_proc_urcu_writer = (_proc_urcu_writer|(1<<13))" - line 250, "pan.___", state 905, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 907, "(1)" - line 254, "pan.___", state 914, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 916, "(1)" - line 254, "pan.___", state 917, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 917, "else" - line 252, "pan.___", state 922, "((i<1))" - line 252, "pan.___", state 922, "((i>=1))" - line 258, "pan.___", state 927, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 929, "(1)" - line 258, "pan.___", state 930, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 930, "else" - line 262, "pan.___", state 936, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 938, "(1)" - line 262, "pan.___", state 939, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 939, "else" - line 260, "pan.___", state 944, "((i<2))" - line 260, "pan.___", state 944, "((i>=2))" - line 227, "pan.___", state 952, "(1)" - line 231, "pan.___", state 960, "(1)" - line 231, "pan.___", state 961, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 961, "else" - line 229, "pan.___", state 966, "((i<1))" - line 229, "pan.___", state 966, "((i>=1))" - line 235, "pan.___", state 972, "(1)" - line 235, "pan.___", state 973, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 973, "else" - line 239, "pan.___", state 980, "(1)" - line 239, "pan.___", state 981, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 981, "else" - line 244, "pan.___", state 990, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 990, "else" - line 1176, "pan.___", state 1006, "((i<1))" - line 1176, "pan.___", state 1006, "((i>=1))" - line 250, "pan.___", state 1011, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1013, "(1)" - line 254, "pan.___", state 1020, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1022, "(1)" - line 254, "pan.___", state 1023, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1023, "else" - line 252, "pan.___", state 1028, "((i<1))" - line 252, "pan.___", state 1028, "((i>=1))" - line 258, "pan.___", state 1033, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1035, "(1)" - line 258, "pan.___", state 1036, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1036, "else" - line 262, "pan.___", state 1042, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1044, "(1)" - line 262, "pan.___", state 1045, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1045, "else" - line 260, "pan.___", state 1050, "((i<2))" - line 260, "pan.___", state 1050, "((i>=2))" - line 227, "pan.___", state 1058, "(1)" - line 231, "pan.___", state 1066, "(1)" - line 231, "pan.___", state 1067, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1067, "else" - line 229, "pan.___", state 1072, "((i<1))" - line 229, "pan.___", state 1072, "((i>=1))" - line 235, "pan.___", state 1078, "(1)" - line 235, "pan.___", state 1079, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1079, "else" - line 239, "pan.___", state 1086, "(1)" - line 239, "pan.___", state 1087, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1087, "else" - line 244, "pan.___", state 1096, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1096, "else" - line 277, "pan.___", state 1098, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1098, "else" - line 1176, "pan.___", state 1099, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1176, "pan.___", state 1099, "else" - line 250, "pan.___", state 1103, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1105, "(1)" - line 254, "pan.___", state 1112, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1114, "(1)" - line 254, "pan.___", state 1115, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1115, "else" - line 252, "pan.___", state 1120, "((i<1))" - line 252, "pan.___", state 1120, "((i>=1))" - line 258, "pan.___", state 1125, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1127, "(1)" - line 258, "pan.___", state 1128, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1128, "else" - line 262, "pan.___", state 1134, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1136, "(1)" - line 262, "pan.___", state 1137, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1137, "else" - line 260, "pan.___", state 1142, "((i<2))" - line 260, "pan.___", state 1142, "((i>=2))" - line 227, "pan.___", state 1150, "(1)" - line 231, "pan.___", state 1158, "(1)" - line 231, "pan.___", state 1159, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1159, "else" - line 229, "pan.___", state 1164, "((i<1))" - line 229, "pan.___", state 1164, "((i>=1))" - line 235, "pan.___", state 1170, "(1)" - line 235, "pan.___", state 1171, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1171, "else" - line 239, "pan.___", state 1178, "(1)" - line 239, "pan.___", state 1179, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1179, "else" - line 244, "pan.___", state 1188, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1188, "else" - line 1180, "pan.___", state 1191, "i = 0" - line 1180, "pan.___", state 1193, "reader_barrier = 1" - line 1180, "pan.___", state 1204, "((i<1))" - line 1180, "pan.___", state 1204, "((i>=1))" - line 250, "pan.___", state 1209, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1211, "(1)" - line 254, "pan.___", state 1218, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1220, "(1)" - line 254, "pan.___", state 1221, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1221, "else" - line 252, "pan.___", state 1226, "((i<1))" - line 252, "pan.___", state 1226, "((i>=1))" - line 258, "pan.___", state 1231, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1233, "(1)" - line 258, "pan.___", state 1234, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1234, "else" - line 262, "pan.___", state 1240, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1242, "(1)" - line 262, "pan.___", state 1243, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1243, "else" - line 260, "pan.___", state 1248, "((i<2))" - line 260, "pan.___", state 1248, "((i>=2))" - line 227, "pan.___", state 1256, "(1)" - line 231, "pan.___", state 1264, "(1)" - line 231, "pan.___", state 1265, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1265, "else" - line 229, "pan.___", state 1270, "((i<1))" - line 229, "pan.___", state 1270, "((i>=1))" - line 235, "pan.___", state 1276, "(1)" - line 235, "pan.___", state 1277, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1277, "else" - line 239, "pan.___", state 1284, "(1)" - line 239, "pan.___", state 1285, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1285, "else" - line 244, "pan.___", state 1294, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1294, "else" - line 277, "pan.___", state 1296, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1296, "else" - line 1180, "pan.___", state 1297, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1180, "pan.___", state 1297, "else" - line 254, "pan.___", state 1310, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1323, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1332, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1348, "(1)" - line 231, "pan.___", state 1356, "(1)" - line 235, "pan.___", state 1368, "(1)" - line 239, "pan.___", state 1376, "(1)" - line 250, "pan.___", state 1407, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1416, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1438, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1454, "(1)" - line 231, "pan.___", state 1462, "(1)" - line 235, "pan.___", state 1474, "(1)" - line 239, "pan.___", state 1482, "(1)" - line 250, "pan.___", state 1499, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1501, "(1)" - line 254, "pan.___", state 1508, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1510, "(1)" - line 254, "pan.___", state 1511, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1511, "else" - line 252, "pan.___", state 1516, "((i<1))" - line 252, "pan.___", state 1516, "((i>=1))" - line 258, "pan.___", state 1521, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1523, "(1)" - line 258, "pan.___", state 1524, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1524, "else" - line 262, "pan.___", state 1530, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1532, "(1)" - line 262, "pan.___", state 1533, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1533, "else" - line 260, "pan.___", state 1538, "((i<2))" - line 260, "pan.___", state 1538, "((i>=2))" - line 227, "pan.___", state 1546, "(1)" - line 231, "pan.___", state 1554, "(1)" - line 231, "pan.___", state 1555, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1555, "else" - line 229, "pan.___", state 1560, "((i<1))" - line 229, "pan.___", state 1560, "((i>=1))" - line 235, "pan.___", state 1566, "(1)" - line 235, "pan.___", state 1567, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1567, "else" - line 239, "pan.___", state 1574, "(1)" - line 239, "pan.___", state 1575, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1575, "else" - line 244, "pan.___", state 1584, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1584, "else" - line 1187, "pan.___", state 1587, "i = 0" - line 1187, "pan.___", state 1589, "reader_barrier = 1" - line 1187, "pan.___", state 1600, "((i<1))" - line 1187, "pan.___", state 1600, "((i>=1))" - line 250, "pan.___", state 1605, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1607, "(1)" - line 254, "pan.___", state 1614, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1616, "(1)" - line 254, "pan.___", state 1617, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1617, "else" - line 252, "pan.___", state 1622, "((i<1))" - line 252, "pan.___", state 1622, "((i>=1))" - line 258, "pan.___", state 1627, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1629, "(1)" - line 258, "pan.___", state 1630, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1630, "else" - line 262, "pan.___", state 1636, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1638, "(1)" - line 262, "pan.___", state 1639, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1639, "else" - line 260, "pan.___", state 1644, "((i<2))" - line 260, "pan.___", state 1644, "((i>=2))" - line 227, "pan.___", state 1652, "(1)" - line 231, "pan.___", state 1660, "(1)" - line 231, "pan.___", state 1661, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1661, "else" - line 229, "pan.___", state 1666, "((i<1))" - line 229, "pan.___", state 1666, "((i>=1))" - line 235, "pan.___", state 1672, "(1)" - line 235, "pan.___", state 1673, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1673, "else" - line 239, "pan.___", state 1680, "(1)" - line 239, "pan.___", state 1681, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1681, "else" - line 244, "pan.___", state 1690, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1690, "else" - line 277, "pan.___", state 1692, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1692, "else" - line 1187, "pan.___", state 1693, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1187, "pan.___", state 1693, "else" - line 1191, "pan.___", state 1696, "-end-" - (310 of 1696 states) -unreached in proctype :init: - line 1202, "pan.___", state 9, "((j<2))" - line 1202, "pan.___", state 9, "((j>=2))" - line 1203, "pan.___", state 20, "((j<2))" - line 1203, "pan.___", state 20, "((j>=2))" - line 1208, "pan.___", state 33, "((j<2))" - line 1208, "pan.___", state 33, "((j>=2))" - line 1206, "pan.___", state 43, "((i<1))" - line 1206, "pan.___", state 43, "((i>=1))" - line 1216, "pan.___", state 54, "((j<2))" - line 1216, "pan.___", state 54, "((j>=2))" - line 1220, "pan.___", state 67, "((j<2))" - line 1220, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1250, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 781 seconds -pan: rate 4622.6181 states/second -pan: avg transition delay 1.272e-06 usec -cp .input.spin urcu_free_no_mb.spin.input -cp .input.spin.trail urcu_free_no_mb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input deleted file mode 100644 index e95f5b1..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define NO_MB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input.trail deleted file mode 100644 index 4be75cd..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_mb.spin.input.trail +++ /dev/null @@ -1,1387 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4650 -2:3:4570 -3:3:4573 -4:3:4573 -5:3:4576 -6:3:4584 -7:3:4584 -8:3:4587 -9:3:4593 -10:3:4597 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-#define NO_RMB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.log deleted file mode 100644 index 43a1b71..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.log +++ /dev/null @@ -1,592 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_rmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -Depth= 8403 States= 1e+06 Transitions= 2.27e+08 Memory= 550.432 t= 277 R= 4e+03 -Depth= 10017 States= 2e+06 Transitions= 4.61e+08 Memory= 634.318 t= 573 R= 3e+03 -Depth= 10017 States= 3e+06 Transitions= 7.1e+08 Memory= 718.303 t= 888 R= 3e+03 -pan: resizing hashtable to -w22.. done -Depth= 10017 States= 4e+06 Transitions= 9.4e+08 Memory= 833.311 t= 1.17e+03 R= 3e+03 -Depth= 10017 States= 5e+06 Transitions= 1.2e+09 Memory= 917.295 t= 1.49e+03 R= 3e+03 -Depth= 10017 States= 6e+06 Transitions= 1.73e+09 Memory= 1001.279 t= 2.17e+03 R= 3e+03 -Depth= 10017 States= 7e+06 Transitions= 2.17e+09 Memory= 1085.264 t= 2.72e+03 R= 3e+03 -Depth= 10017 States= 8e+06 Transitions= 2.56e+09 Memory= 1169.151 t= 3.23e+03 R= 2e+03 -Depth= 10017 States= 9e+06 Transitions= 2.96e+09 Memory= 1253.135 t= 3.74e+03 R= 2e+03 -pan: resizing hashtable to -w24.. done -pan: claim violated! (at depth 1606) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 10017, errors: 1 - 9005656 states, stored -2.9547657e+09 states, matched -2.9637714e+09 transitions (= stored+matched) -1.6918577e+10 atomic steps -hash conflicts: 2.3126803e+09 (resolved) - -Stats on memory usage (in Megabytes): - 996.262 equivalent memory usage for states (stored*(State-vector + overhead)) - 795.835 actual memory usage for states (compression: 79.88%) - state-vector as stored = 65 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1381.135 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 79, "(1)" - line 231, "pan.___", state 87, "(1)" - line 235, "pan.___", state 99, "(1)" - line 239, "pan.___", state 107, "(1)" - line 387, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 164, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 178, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 197, "(1)" - line 413, "pan.___", state 227, "(1)" - line 417, "pan.___", state 240, "(1)" - line 663, "pan.___", state 261, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 387, "pan.___", state 268, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 300, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 314, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 333, "(1)" - line 413, "pan.___", state 363, "(1)" - line 417, "pan.___", state 376, "(1)" - line 387, "pan.___", state 397, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 443, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 462, "(1)" - line 413, "pan.___", state 492, "(1)" - line 417, "pan.___", state 505, "(1)" - line 387, "pan.___", state 528, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 530, "(1)" - line 387, "pan.___", state 531, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 531, "else" - line 387, "pan.___", state 534, "(1)" - line 391, "pan.___", state 542, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 544, "(1)" - line 391, "pan.___", state 545, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 545, "else" - line 391, "pan.___", state 548, "(1)" - line 391, "pan.___", state 549, "(1)" - line 391, "pan.___", state 549, "(1)" - line 389, "pan.___", state 554, "((i<1))" - line 389, "pan.___", state 554, "((i>=1))" - line 396, "pan.___", state 560, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 562, "(1)" - line 396, "pan.___", state 563, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 563, "else" - line 396, "pan.___", state 566, "(1)" - line 396, "pan.___", state 567, "(1)" - line 396, "pan.___", state 567, "(1)" - line 400, "pan.___", state 574, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 576, "(1)" - line 400, "pan.___", state 577, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 577, "else" - line 400, "pan.___", state 580, "(1)" - line 400, "pan.___", state 581, "(1)" - line 400, "pan.___", state 581, "(1)" - line 398, "pan.___", state 586, "((i<2))" - line 398, "pan.___", state 586, "((i>=2))" - line 404, "pan.___", state 593, "(1)" - line 404, "pan.___", state 594, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 594, "else" - line 404, "pan.___", state 597, "(1)" - line 404, "pan.___", state 598, "(1)" - line 404, "pan.___", state 598, "(1)" - line 408, "pan.___", state 606, "(1)" - line 408, "pan.___", state 607, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 607, "else" - line 408, "pan.___", state 610, "(1)" - line 408, "pan.___", state 611, "(1)" - line 408, "pan.___", state 611, "(1)" - line 406, "pan.___", state 616, "((i<1))" - line 406, "pan.___", state 616, "((i>=1))" - line 413, "pan.___", state 623, "(1)" - line 413, "pan.___", state 624, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 624, "else" - line 413, "pan.___", state 627, "(1)" - line 413, "pan.___", state 628, "(1)" - line 413, "pan.___", state 628, "(1)" - line 417, "pan.___", state 636, "(1)" - line 417, "pan.___", state 637, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 637, "else" - line 417, "pan.___", state 640, "(1)" - line 417, "pan.___", state 641, "(1)" - line 417, "pan.___", state 641, "(1)" - line 415, "pan.___", state 646, "((i<2))" - line 415, "pan.___", state 646, "((i>=2))" - line 422, "pan.___", state 650, "(1)" - line 422, "pan.___", state 650, "(1)" - line 663, "pan.___", state 653, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 663, "pan.___", state 654, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 663, "pan.___", state 655, "(1)" - line 387, "pan.___", state 662, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 694, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 708, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 727, "(1)" - line 413, "pan.___", state 757, "(1)" - line 417, "pan.___", state 770, "(1)" - line 387, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 800, "(1)" - line 387, "pan.___", state 801, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 801, "else" - line 387, "pan.___", state 804, "(1)" - line 391, "pan.___", state 812, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 814, "(1)" - line 391, "pan.___", state 815, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 815, "else" - line 391, "pan.___", state 818, "(1)" - line 391, "pan.___", state 819, "(1)" - line 391, "pan.___", state 819, "(1)" - line 389, "pan.___", state 824, "((i<1))" - line 389, "pan.___", state 824, "((i>=1))" - line 396, "pan.___", state 830, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 832, "(1)" - line 396, "pan.___", state 833, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 833, "else" - line 396, "pan.___", state 836, "(1)" - line 396, "pan.___", state 837, "(1)" - line 396, "pan.___", state 837, "(1)" - line 400, "pan.___", state 844, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 846, "(1)" - line 400, "pan.___", state 847, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 847, "else" - line 400, "pan.___", state 850, "(1)" - line 400, "pan.___", state 851, "(1)" - line 400, "pan.___", state 851, "(1)" - line 398, "pan.___", state 856, "((i<2))" - line 398, "pan.___", state 856, "((i>=2))" - line 404, "pan.___", state 863, "(1)" - line 404, "pan.___", state 864, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 864, "else" - line 404, "pan.___", state 867, "(1)" - line 404, "pan.___", state 868, "(1)" - line 404, "pan.___", state 868, "(1)" - line 408, "pan.___", state 876, "(1)" - line 408, "pan.___", state 877, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 877, "else" - line 408, "pan.___", state 880, "(1)" - line 408, "pan.___", state 881, "(1)" - line 408, "pan.___", state 881, "(1)" - line 406, "pan.___", state 886, "((i<1))" - line 406, "pan.___", state 886, "((i>=1))" - line 413, "pan.___", state 893, "(1)" - line 413, "pan.___", state 894, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 894, "else" - line 413, "pan.___", state 897, "(1)" - line 413, "pan.___", state 898, "(1)" - line 413, "pan.___", state 898, "(1)" - line 417, "pan.___", state 906, "(1)" - line 417, "pan.___", state 907, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 907, "else" - line 417, "pan.___", state 910, "(1)" - line 417, "pan.___", state 911, "(1)" - line 417, "pan.___", state 911, "(1)" - line 422, "pan.___", state 920, "(1)" - line 422, "pan.___", state 920, "(1)" - line 387, "pan.___", state 927, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 929, "(1)" - line 387, "pan.___", state 930, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 930, "else" - line 387, "pan.___", state 933, "(1)" - line 391, "pan.___", state 941, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 943, "(1)" - line 391, "pan.___", state 944, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 944, "else" - line 391, "pan.___", state 947, "(1)" - line 391, "pan.___", state 948, "(1)" - line 391, "pan.___", state 948, "(1)" - line 389, "pan.___", state 953, "((i<1))" - line 389, "pan.___", state 953, "((i>=1))" - line 396, "pan.___", state 959, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 961, "(1)" - line 396, "pan.___", state 962, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 962, "else" - line 396, "pan.___", state 965, "(1)" - line 396, "pan.___", state 966, "(1)" - line 396, "pan.___", state 966, "(1)" - line 400, "pan.___", state 973, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 975, "(1)" - line 400, "pan.___", state 976, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 976, "else" - line 400, "pan.___", state 979, "(1)" - line 400, "pan.___", state 980, "(1)" - line 400, "pan.___", state 980, "(1)" - line 398, "pan.___", state 985, "((i<2))" - line 398, "pan.___", state 985, "((i>=2))" - line 404, "pan.___", state 992, "(1)" - line 404, "pan.___", state 993, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 993, "else" - line 404, "pan.___", state 996, "(1)" - line 404, "pan.___", state 997, "(1)" - line 404, "pan.___", state 997, "(1)" - line 408, "pan.___", state 1005, "(1)" - line 408, "pan.___", state 1006, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1006, "else" - line 408, "pan.___", state 1009, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 406, "pan.___", state 1015, "((i<1))" - line 406, "pan.___", state 1015, "((i>=1))" - line 413, "pan.___", state 1022, "(1)" - line 413, "pan.___", state 1023, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1023, "else" - line 413, "pan.___", state 1026, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 417, "pan.___", state 1035, "(1)" - line 417, "pan.___", state 1036, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1036, "else" - line 417, "pan.___", state 1039, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 415, "pan.___", state 1045, "((i<2))" - line 415, "pan.___", state 1045, "((i>=2))" - line 422, "pan.___", state 1049, "(1)" - line 422, "pan.___", state 1049, "(1)" - line 671, "pan.___", state 1053, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1058, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1090, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1104, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1123, "(1)" - line 413, "pan.___", state 1153, "(1)" - line 417, "pan.___", state 1166, "(1)" - line 387, "pan.___", state 1190, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1222, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1236, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1255, "(1)" - line 413, "pan.___", state 1285, "(1)" - line 417, "pan.___", state 1298, "(1)" - line 387, "pan.___", state 1323, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1355, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1369, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1388, "(1)" - line 413, "pan.___", state 1418, "(1)" - line 417, "pan.___", state 1431, "(1)" - line 387, "pan.___", state 1452, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1484, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1498, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1517, "(1)" - line 413, "pan.___", state 1547, "(1)" - line 417, "pan.___", state 1560, "(1)" - line 387, "pan.___", state 1586, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1618, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1632, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1651, "(1)" - line 413, "pan.___", state 1681, "(1)" - line 417, "pan.___", state 1694, "(1)" - line 387, "pan.___", state 1715, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1747, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1761, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1780, "(1)" - line 413, "pan.___", state 1810, "(1)" - line 417, "pan.___", state 1823, "(1)" - line 387, "pan.___", state 1847, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1879, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1893, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1912, "(1)" - line 413, "pan.___", state 1942, "(1)" - line 417, "pan.___", state 1955, "(1)" - line 710, "pan.___", state 1976, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 387, "pan.___", state 1983, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2029, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2048, "(1)" - line 413, "pan.___", state 2078, "(1)" - line 417, "pan.___", state 2091, "(1)" - line 387, "pan.___", state 2112, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2144, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2158, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2177, "(1)" - line 413, "pan.___", state 2207, "(1)" - line 417, "pan.___", state 2220, "(1)" - line 387, "pan.___", state 2243, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2245, "(1)" - line 387, "pan.___", state 2246, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2246, "else" - line 387, "pan.___", state 2249, "(1)" - line 391, "pan.___", state 2257, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2259, "(1)" - line 391, "pan.___", state 2260, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2260, "else" - line 391, "pan.___", state 2263, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 389, "pan.___", state 2269, "((i<1))" - line 389, "pan.___", state 2269, "((i>=1))" - line 396, "pan.___", state 2275, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2277, "(1)" - line 396, "pan.___", state 2278, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2278, "else" - line 396, "pan.___", state 2281, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 400, "pan.___", state 2289, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2291, "(1)" - line 400, "pan.___", state 2292, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2292, "else" - line 400, "pan.___", state 2295, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 398, "pan.___", state 2301, "((i<2))" - line 398, "pan.___", state 2301, "((i>=2))" - line 404, "pan.___", state 2308, "(1)" - line 404, "pan.___", state 2309, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2309, "else" - line 404, "pan.___", state 2312, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 408, "pan.___", state 2321, "(1)" - line 408, "pan.___", state 2322, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2322, "else" - line 408, "pan.___", state 2325, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 406, "pan.___", state 2331, "((i<1))" - line 406, "pan.___", state 2331, "((i>=1))" - line 413, "pan.___", state 2338, "(1)" - line 413, "pan.___", state 2339, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2339, "else" - line 413, "pan.___", state 2342, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 417, "pan.___", state 2351, "(1)" - line 417, "pan.___", state 2352, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2352, "else" - line 417, "pan.___", state 2355, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 415, "pan.___", state 2361, "((i<2))" - line 415, "pan.___", state 2361, "((i>=2))" - line 422, "pan.___", state 2365, "(1)" - line 422, "pan.___", state 2365, "(1)" - line 710, "pan.___", state 2368, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 710, "pan.___", state 2369, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 710, "pan.___", state 2370, "(1)" - line 387, "pan.___", state 2377, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2409, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2442, "(1)" - line 413, "pan.___", state 2472, "(1)" - line 417, "pan.___", state 2485, "(1)" - line 387, "pan.___", state 2512, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2544, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2558, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2577, "(1)" - line 413, "pan.___", state 2607, "(1)" - line 417, "pan.___", state 2620, "(1)" - line 387, "pan.___", state 2641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2706, "(1)" - line 413, "pan.___", state 2736, "(1)" - line 417, "pan.___", state 2749, "(1)" - line 387, "pan.___", state 2782, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2814, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2828, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2847, "(1)" - line 413, "pan.___", state 2877, "(1)" - line 417, "pan.___", state 2890, "(1)" - line 387, "pan.___", state 2909, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2941, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2955, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2974, "(1)" - line 413, "pan.___", state 3004, "(1)" - line 417, "pan.___", state 3017, "(1)" - line 870, "pan.___", state 3038, "-end-" - (284 of 3038 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 24, "(1)" - line 391, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 38, "(1)" - line 391, "pan.___", state 39, "(1)" - line 391, "pan.___", state 39, "(1)" - line 389, "pan.___", state 44, "((i<1))" - line 389, "pan.___", state 44, "((i>=1))" - line 396, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 56, "(1)" - line 396, "pan.___", state 57, "(1)" - line 396, "pan.___", state 57, "(1)" - line 400, "pan.___", state 70, "(1)" - line 400, "pan.___", state 71, "(1)" - line 400, "pan.___", state 71, "(1)" - line 398, "pan.___", state 76, "((i<2))" - line 398, "pan.___", state 76, "((i>=2))" - line 404, "pan.___", state 83, "(1)" - line 404, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 84, "else" - line 404, "pan.___", state 87, "(1)" - line 404, "pan.___", state 88, "(1)" - line 404, "pan.___", state 88, "(1)" - line 408, "pan.___", state 96, "(1)" - line 408, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 97, "else" - line 408, "pan.___", state 100, "(1)" - line 408, "pan.___", state 101, "(1)" - line 408, "pan.___", state 101, "(1)" - line 406, "pan.___", state 106, "((i<1))" - line 406, "pan.___", state 106, "((i>=1))" - line 413, "pan.___", state 113, "(1)" - line 413, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 114, "else" - line 413, "pan.___", state 117, "(1)" - line 413, "pan.___", state 118, "(1)" - line 413, "pan.___", state 118, "(1)" - line 417, "pan.___", state 126, "(1)" - line 417, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 127, "else" - line 417, "pan.___", state 130, "(1)" - line 417, "pan.___", state 131, "(1)" - line 417, "pan.___", state 131, "(1)" - line 415, "pan.___", state 136, "((i<2))" - line 415, "pan.___", state 136, "((i>=2))" - line 422, "pan.___", state 140, "(1)" - line 422, "pan.___", state 140, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 276, "(1)" - line 408, "pan.___", state 289, "(1)" - line 413, "pan.___", state 306, "(1)" - line 417, "pan.___", state 319, "(1)" - line 391, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 420, "(1)" - line 413, "pan.___", state 437, "(1)" - line 417, "pan.___", state 450, "(1)" - line 391, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 558, "(1)" - line 413, "pan.___", state 575, "(1)" - line 417, "pan.___", state 588, "(1)" - line 391, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 687, "(1)" - line 413, "pan.___", state 704, "(1)" - line 417, "pan.___", state 717, "(1)" - line 391, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 818, "(1)" - line 413, "pan.___", state 835, "(1)" - line 417, "pan.___", state 848, "(1)" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 250, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1056, "(1)" - line 231, "pan.___", state 1064, "(1)" - line 235, "pan.___", state 1076, "(1)" - line 239, "pan.___", state 1084, "(1)" - line 254, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1148, "(1)" - line 231, "pan.___", state 1156, "(1)" - line 235, "pan.___", state 1168, "(1)" - line 239, "pan.___", state 1176, "(1)" - line 250, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1254, "(1)" - line 231, "pan.___", state 1262, "(1)" - line 235, "pan.___", state 1274, "(1)" - line 239, "pan.___", state 1282, "(1)" - line 254, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1346, "(1)" - line 231, "pan.___", state 1354, "(1)" - line 235, "pan.___", state 1366, "(1)" - line 239, "pan.___", state 1374, "(1)" - line 250, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1452, "(1)" - line 231, "pan.___", state 1460, "(1)" - line 235, "pan.___", state 1472, "(1)" - line 239, "pan.___", state 1480, "(1)" - line 254, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1544, "(1)" - line 231, "pan.___", state 1552, "(1)" - line 235, "pan.___", state 1564, "(1)" - line 239, "pan.___", state 1572, "(1)" - line 250, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1650, "(1)" - line 231, "pan.___", state 1658, "(1)" - line 235, "pan.___", state 1670, "(1)" - line 239, "pan.___", state 1678, "(1)" - line 1191, "pan.___", state 1694, "-end-" - (128 of 1694 states) -unreached in proctype :init: - line 1202, "pan.___", state 9, "((j<2))" - line 1202, "pan.___", state 9, "((j>=2))" - line 1203, "pan.___", state 20, "((j<2))" - line 1203, "pan.___", state 20, "((j>=2))" - line 1208, "pan.___", state 33, "((j<2))" - line 1208, "pan.___", state 33, "((j>=2))" - line 1206, "pan.___", state 43, "((i<1))" - line 1206, "pan.___", state 43, "((i>=1))" - line 1216, "pan.___", state 54, "((j<2))" - line 1216, "pan.___", state 54, "((j>=2))" - line 1220, "pan.___", state 67, "((j<2))" - line 1220, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1250, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 3.75e+03 seconds -pan: rate 2403.4695 states/second -pan: avg transition delay 1.2642e-06 usec -cp .input.spin urcu_free_no_rmb.spin.input -cp .input.spin.trail urcu_free_no_rmb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input deleted file mode 100644 index c36940f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define NO_RMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input.trail deleted file mode 100644 index abd4423..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_rmb.spin.input.trail +++ /dev/null @@ -1,1609 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4812 -2:3:4732 -3:3:4735 -4:3:4735 -5:3:4738 -6:3:4746 -7:3:4746 -8:3:4749 -9:3:4755 -10:3:4759 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-1583:1:2842 -1584:1:2843 -1585:1:2854 -1586:1:2855 -1587:1:2856 -1588:1:2867 -1589:1:2872 -1590:1:2873 -1591:1:2884 -1592:1:2885 -1593:1:2886 -1594:1:2884 -1595:1:2892 -1596:1:2893 -1597:1:2897 -1598:1:2901 -1599:0:4812 -1600:2:4032 -1601:0:4812 -1602:1:1316 -1603:1:1317 -1604:0:4810 -1605:1:15 -1606:0:4816 -1607:1:1637 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.define deleted file mode 100644 index 710f29d..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_WMB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.log deleted file mode 100644 index e829e4b..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.log +++ /dev/null @@ -1,613 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_wmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -Depth= 8041 States= 1e+06 Transitions= 1.63e+08 Memory= 550.432 t= 203 R= 5e+03 -Depth= 9655 States= 2e+06 Transitions= 3.34e+08 Memory= 634.318 t= 424 R= 5e+03 -Depth= 9655 States= 3e+06 Transitions= 5.11e+08 Memory= 718.303 t= 654 R= 5e+03 -pan: resizing hashtable to -w22.. done -Depth= 9655 States= 4e+06 Transitions= 6.76e+08 Memory= 833.311 t= 861 R= 5e+03 -Depth= 9655 States= 5e+06 Transitions= 9e+08 Memory= 917.295 t= 1.15e+03 R= 4e+03 -Depth= 9655 States= 6e+06 Transitions= 1.34e+09 Memory= 1001.279 t= 1.71e+03 R= 3e+03 -Depth= 9655 States= 7e+06 Transitions= 1.71e+09 Memory= 1085.264 t= 2.2e+03 R= 3e+03 -Depth= 9655 States= 8e+06 Transitions= 2.07e+09 Memory= 1169.151 t= 2.68e+03 R= 3e+03 -Depth= 9655 States= 9e+06 Transitions= 2.39e+09 Memory= 1253.135 t= 3.11e+03 R= 3e+03 -pan: resizing hashtable to -w24.. done -Depth= 9655 States= 1e+07 Transitions= 2.56e+09 Memory= 1461.115 t= 3.32e+03 R= 3e+03 -Depth= 9655 States= 1.1e+07 Transitions= 2.73e+09 Memory= 1545.100 t= 3.53e+03 R= 3e+03 -Depth= 9655 States= 1.2e+07 Transitions= 2.93e+09 Memory= 1629.084 t= 3.78e+03 R= 3e+03 -Depth= 9655 States= 1.3e+07 Transitions= 3.09e+09 Memory= 1713.068 t= 3.99e+03 R= 3e+03 -Depth= 9655 States= 1.4e+07 Transitions= 3.27e+09 Memory= 1797.053 t= 4.22e+03 R= 3e+03 -Depth= 9655 States= 1.5e+07 Transitions= 3.7e+09 Memory= 1881.037 t= 4.77e+03 R= 3e+03 -Depth= 9655 States= 1.6e+07 Transitions= 4.11e+09 Memory= 1964.924 t= 5.32e+03 R= 3e+03 -Depth= 9655 States= 1.7e+07 Transitions= 4.42e+09 Memory= 2048.908 t= 5.72e+03 R= 3e+03 -Depth= 9655 States= 1.8e+07 Transitions= 4.62e+09 Memory= 2132.893 t= 5.98e+03 R= 3e+03 -Depth= 9655 States= 1.9e+07 Transitions= 4.92e+09 Memory= 2216.877 t= 6.35e+03 R= 3e+03 -Depth= 9655 States= 2e+07 Transitions= 5.24e+09 Memory= 2300.861 t= 6.77e+03 R= 3e+03 -Depth= 9655 States= 2.1e+07 Transitions= 5.94e+09 Memory= 2384.846 t= 7.68e+03 R= 3e+03 -Depth= 9655 States= 2.2e+07 Transitions= 6.65e+09 Memory= 2468.830 t= 8.63e+03 R= 3e+03 -Depth= 9655 States= 2.3e+07 Transitions= 7.1e+09 Memory= 2552.717 t= 9.22e+03 R= 2e+03 -Depth= 9655 States= 2.4e+07 Transitions= 7.54e+09 Memory= 2636.701 t= 9.8e+03 R= 2e+03 -Depth= 9655 States= 2.5e+07 Transitions= 7.74e+09 Memory= 2720.686 t= 1.01e+04 R= 2e+03 -Depth= 9655 States= 2.6e+07 Transitions= 8.03e+09 Memory= 2804.670 t= 1.04e+04 R= 2e+03 -Depth= 9655 States= 2.7e+07 Transitions= 8.4e+09 Memory= 2888.654 t= 1.09e+04 R= 2e+03 -Depth= 9655 States= 2.8e+07 Transitions= 9.12e+09 Memory= 2972.639 t= 1.19e+04 R= 2e+03 -Depth= 9655 States= 2.9e+07 Transitions= 9.83e+09 Memory= 3056.526 t= 1.29e+04 R= 2e+03 -Depth= 9655 States= 3e+07 Transitions= 1.02e+10 Memory= 3140.510 t= 1.33e+04 R= 2e+03 -Depth= 9655 States= 3.1e+07 Transitions= 1.04e+10 Memory= 3224.494 t= 1.36e+04 R= 2e+03 -Depth= 9655 States= 3.2e+07 Transitions= 1.08e+10 Memory= 3308.479 t= 1.42e+04 R= 2e+03 -Depth= 9655 States= 3.3e+07 Transitions= 1.12e+10 Memory= 3392.463 t= 1.48e+04 R= 2e+03 -Depth= 9655 States= 3.4e+07 Transitions= 1.17e+10 Memory= 3476.447 t= 1.54e+04 R= 2e+03 -pan: resizing hashtable to -w26.. done -Depth= 9655 States= 3.5e+07 Transitions= 1.2e+10 Memory= 4056.416 t= 1.58e+04 R= 2e+03 -Depth= 9693 States= 3.6e+07 Transitions= 1.24e+10 Memory= 4140.401 t= 1.62e+04 R= 2e+03 -Depth= 9693 States= 3.7e+07 Transitions= 1.26e+10 Memory= 4224.385 t= 1.65e+04 R= 2e+03 -Depth= 9693 States= 3.8e+07 Transitions= 1.29e+10 Memory= 4308.369 t= 1.69e+04 R= 2e+03 -Depth= 9693 States= 3.9e+07 Transitions= 1.31e+10 Memory= 4392.354 t= 1.72e+04 R= 2e+03 -Depth= 9693 States= 4e+07 Transitions= 1.34e+10 Memory= 4476.338 t= 1.75e+04 R= 2e+03 -Depth= 9693 States= 4.1e+07 Transitions= 1.36e+10 Memory= 4560.225 t= 1.79e+04 R= 2e+03 -Depth= 9693 States= 4.2e+07 Transitions= 1.39e+10 Memory= 4644.209 t= 1.82e+04 R= 2e+03 -Depth= 9693 States= 4.3e+07 Transitions= 1.41e+10 Memory= 4728.193 t= 1.85e+04 R= 2e+03 -Depth= 9693 States= 4.4e+07 Transitions= 1.44e+10 Memory= 4812.178 t= 1.88e+04 R= 2e+03 -Depth= 9693 States= 4.5e+07 Transitions= 1.47e+10 Memory= 4896.162 t= 1.92e+04 R= 2e+03 -Depth= 9693 States= 4.6e+07 Transitions= 1.49e+10 Memory= 4980.147 t= 1.95e+04 R= 2e+03 -Depth= 9693 States= 4.7e+07 Transitions= 1.51e+10 Memory= 5064.131 t= 1.98e+04 R= 2e+03 -Depth= 9693 States= 4.8e+07 Transitions= 1.54e+10 Memory= 5148.018 t= 2.02e+04 R= 2e+03 -Depth= 9693 States= 4.9e+07 Transitions= 1.56e+10 Memory= 5232.002 t= 2.05e+04 R= 2e+03 -Depth= 9693 States= 5e+07 Transitions= 1.59e+10 Memory= 5315.986 t= 2.07e+04 R= 2e+03 -Depth= 9693 States= 5.1e+07 Transitions= 1.61e+10 Memory= 5399.971 t= 2.11e+04 R= 2e+03 -Depth= 9693 States= 5.2e+07 Transitions= 1.65e+10 Memory= 5483.955 t= 2.16e+04 R= 2e+03 -Depth= 9693 States= 5.3e+07 Transitions= 1.69e+10 Memory= 5567.940 t= 2.22e+04 R= 2e+03 -Depth= 9693 States= 5.4e+07 Transitions= 1.73e+10 Memory= 5651.826 t= 2.26e+04 R= 2e+03 -Depth= 9693 States= 5.5e+07 Transitions= 1.78e+10 Memory= 5735.811 t= 2.33e+04 R= 2e+03 -Depth= 9693 States= 5.6e+07 Transitions= 1.82e+10 Memory= 5819.795 t= 2.37e+04 R= 2e+03 -Depth= 9693 States= 5.7e+07 Transitions= 1.86e+10 Memory= 5903.779 t= 2.42e+04 R= 2e+03 -Depth= 9693 States= 5.8e+07 Transitions= 1.87e+10 Memory= 5987.764 t= 2.44e+04 R= 2e+03 -Depth= 9693 States= 5.9e+07 Transitions= 1.89e+10 Memory= 6071.748 t= 2.46e+04 R= 2e+03 -Depth= 9693 States= 6e+07 Transitions= 1.91e+10 Memory= 6155.733 t= 2.49e+04 R= 2e+03 -Depth= 9693 States= 6.1e+07 Transitions= 1.92e+10 Memory= 6239.619 t= 2.51e+04 R= 2e+03 -Depth= 9693 States= 6.2e+07 Transitions= 1.95e+10 Memory= 6323.604 t= 2.54e+04 R= 2e+03 -Depth= 9693 States= 6.3e+07 Transitions= 1.99e+10 Memory= 6407.588 t= 2.6e+04 R= 2e+03 -Depth= 9693 States= 6.4e+07 Transitions= 2.03e+10 Memory= 6491.572 t= 2.64e+04 R= 2e+03 -pan: claim violated! (at depth 1464) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 9693, errors: 1 - 64034146 states, stored -2.0218243e+10 states, matched -2.0282277e+10 transitions (= stored+matched) -1.1654922e+11 atomic steps -hash conflicts: 1.2215901e+10 (resolved) - -Stats on memory usage (in Megabytes): - 7083.856 equivalent memory usage for states (stored*(State-vector + overhead)) - 5527.722 actual memory usage for states (compression: 78.03%) - state-vector as stored = 63 byte + 28 byte overhead - 512.000 memory used for hash table (-w26) - 457.764 memory used for DFS stack (-m10000000) - 3.082 memory lost to fragmentation - 6494.404 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 79, "(1)" - line 231, "pan.___", state 87, "(1)" - line 235, "pan.___", state 99, "(1)" - line 239, "pan.___", state 107, "(1)" - line 387, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 164, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 178, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 197, "(1)" - line 413, "pan.___", state 227, "(1)" - line 417, "pan.___", state 240, "(1)" - line 663, "pan.___", state 261, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 387, "pan.___", state 268, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 300, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 314, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 333, "(1)" - line 413, "pan.___", state 363, "(1)" - line 417, "pan.___", state 376, "(1)" - line 387, "pan.___", state 397, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 443, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 462, "(1)" - line 413, "pan.___", state 492, "(1)" - line 417, "pan.___", state 505, "(1)" - line 387, "pan.___", state 528, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 530, "(1)" - line 387, "pan.___", state 531, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 531, "else" - line 387, "pan.___", state 534, "(1)" - line 391, "pan.___", state 542, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 544, "(1)" - line 391, "pan.___", state 545, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 545, "else" - line 391, "pan.___", state 548, "(1)" - line 391, "pan.___", state 549, "(1)" - line 391, "pan.___", state 549, "(1)" - line 389, "pan.___", state 554, "((i<1))" - line 389, "pan.___", state 554, "((i>=1))" - line 396, "pan.___", state 560, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 562, "(1)" - line 396, "pan.___", state 563, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 563, "else" - line 396, "pan.___", state 566, "(1)" - line 396, "pan.___", state 567, "(1)" - line 396, "pan.___", state 567, "(1)" - line 400, "pan.___", state 574, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 576, "(1)" - line 400, "pan.___", state 577, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 577, "else" - line 400, "pan.___", state 580, "(1)" - line 400, "pan.___", state 581, "(1)" - line 400, "pan.___", state 581, "(1)" - line 398, "pan.___", state 586, "((i<2))" - line 398, "pan.___", state 586, "((i>=2))" - line 404, "pan.___", state 593, "(1)" - line 404, "pan.___", state 594, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 594, "else" - line 404, "pan.___", state 597, "(1)" - line 404, "pan.___", state 598, "(1)" - line 404, "pan.___", state 598, "(1)" - line 408, "pan.___", state 606, "(1)" - line 408, "pan.___", state 607, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 607, "else" - line 408, "pan.___", state 610, "(1)" - line 408, "pan.___", state 611, "(1)" - line 408, "pan.___", state 611, "(1)" - line 406, "pan.___", state 616, "((i<1))" - line 406, "pan.___", state 616, "((i>=1))" - line 413, "pan.___", state 623, "(1)" - line 413, "pan.___", state 624, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 624, "else" - line 413, "pan.___", state 627, "(1)" - line 413, "pan.___", state 628, "(1)" - line 413, "pan.___", state 628, "(1)" - line 417, "pan.___", state 636, "(1)" - line 417, "pan.___", state 637, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 637, "else" - line 417, "pan.___", state 640, "(1)" - line 417, "pan.___", state 641, "(1)" - line 417, "pan.___", state 641, "(1)" - line 415, "pan.___", state 646, "((i<2))" - line 415, "pan.___", state 646, "((i>=2))" - line 422, "pan.___", state 650, "(1)" - line 422, "pan.___", state 650, "(1)" - line 663, "pan.___", state 653, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 663, "pan.___", state 654, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 663, "pan.___", state 655, "(1)" - line 387, "pan.___", state 662, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 694, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 708, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 727, "(1)" - line 413, "pan.___", state 757, "(1)" - line 417, "pan.___", state 770, "(1)" - line 387, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 800, "(1)" - line 387, "pan.___", state 801, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 801, "else" - line 387, "pan.___", state 804, "(1)" - line 391, "pan.___", state 812, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 814, "(1)" - line 391, "pan.___", state 815, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 815, "else" - line 391, "pan.___", state 818, "(1)" - line 391, "pan.___", state 819, "(1)" - line 391, "pan.___", state 819, "(1)" - line 389, "pan.___", state 824, "((i<1))" - line 389, "pan.___", state 824, "((i>=1))" - line 396, "pan.___", state 830, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 832, "(1)" - line 396, "pan.___", state 833, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 833, "else" - line 396, "pan.___", state 836, "(1)" - line 396, "pan.___", state 837, "(1)" - line 396, "pan.___", state 837, "(1)" - line 400, "pan.___", state 844, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 846, "(1)" - line 400, "pan.___", state 847, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 847, "else" - line 400, "pan.___", state 850, "(1)" - line 400, "pan.___", state 851, "(1)" - line 400, "pan.___", state 851, "(1)" - line 398, "pan.___", state 856, "((i<2))" - line 398, "pan.___", state 856, "((i>=2))" - line 404, "pan.___", state 863, "(1)" - line 404, "pan.___", state 864, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 864, "else" - line 404, "pan.___", state 867, "(1)" - line 404, "pan.___", state 868, "(1)" - line 404, "pan.___", state 868, "(1)" - line 408, "pan.___", state 876, "(1)" - line 408, "pan.___", state 877, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 877, "else" - line 408, "pan.___", state 880, "(1)" - line 408, "pan.___", state 881, "(1)" - line 408, "pan.___", state 881, "(1)" - line 406, "pan.___", state 886, "((i<1))" - line 406, "pan.___", state 886, "((i>=1))" - line 413, "pan.___", state 893, "(1)" - line 413, "pan.___", state 894, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 894, "else" - line 413, "pan.___", state 897, "(1)" - line 413, "pan.___", state 898, "(1)" - line 413, "pan.___", state 898, "(1)" - line 417, "pan.___", state 906, "(1)" - line 417, "pan.___", state 907, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 907, "else" - line 417, "pan.___", state 910, "(1)" - line 417, "pan.___", state 911, "(1)" - line 417, "pan.___", state 911, "(1)" - line 422, "pan.___", state 920, "(1)" - line 422, "pan.___", state 920, "(1)" - line 387, "pan.___", state 927, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 929, "(1)" - line 387, "pan.___", state 930, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 930, "else" - line 387, "pan.___", state 933, "(1)" - line 391, "pan.___", state 941, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 943, "(1)" - line 391, "pan.___", state 944, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 944, "else" - line 391, "pan.___", state 947, "(1)" - line 391, "pan.___", state 948, "(1)" - line 391, "pan.___", state 948, "(1)" - line 389, "pan.___", state 953, "((i<1))" - line 389, "pan.___", state 953, "((i>=1))" - line 396, "pan.___", state 959, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 961, "(1)" - line 396, "pan.___", state 962, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 962, "else" - line 396, "pan.___", state 965, "(1)" - line 396, "pan.___", state 966, "(1)" - line 396, "pan.___", state 966, "(1)" - line 400, "pan.___", state 973, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 975, "(1)" - line 400, "pan.___", state 976, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 976, "else" - line 400, "pan.___", state 979, "(1)" - line 400, "pan.___", state 980, "(1)" - line 400, "pan.___", state 980, "(1)" - line 398, "pan.___", state 985, "((i<2))" - line 398, "pan.___", state 985, "((i>=2))" - line 404, "pan.___", state 992, "(1)" - line 404, "pan.___", state 993, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 993, "else" - line 404, "pan.___", state 996, "(1)" - line 404, "pan.___", state 997, "(1)" - line 404, "pan.___", state 997, "(1)" - line 408, "pan.___", state 1005, "(1)" - line 408, "pan.___", state 1006, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1006, "else" - line 408, "pan.___", state 1009, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 406, "pan.___", state 1015, "((i<1))" - line 406, "pan.___", state 1015, "((i>=1))" - line 413, "pan.___", state 1022, "(1)" - line 413, "pan.___", state 1023, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1023, "else" - line 413, "pan.___", state 1026, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 417, "pan.___", state 1035, "(1)" - line 417, "pan.___", state 1036, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1036, "else" - line 417, "pan.___", state 1039, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 415, "pan.___", state 1045, "((i<2))" - line 415, "pan.___", state 1045, "((i>=2))" - line 422, "pan.___", state 1049, "(1)" - line 422, "pan.___", state 1049, "(1)" - line 671, "pan.___", state 1053, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1058, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1090, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1104, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1123, "(1)" - line 413, "pan.___", state 1153, "(1)" - line 417, "pan.___", state 1166, "(1)" - line 387, "pan.___", state 1190, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1222, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1236, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1255, "(1)" - line 413, "pan.___", state 1285, "(1)" - line 417, "pan.___", state 1298, "(1)" - line 387, "pan.___", state 1323, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1355, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1369, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1388, "(1)" - line 413, "pan.___", state 1418, "(1)" - line 417, "pan.___", state 1431, "(1)" - line 387, "pan.___", state 1452, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1484, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1498, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1517, "(1)" - line 413, "pan.___", state 1547, "(1)" - line 417, "pan.___", state 1560, "(1)" - line 387, "pan.___", state 1586, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1618, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1632, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1651, "(1)" - line 413, "pan.___", state 1681, "(1)" - line 417, "pan.___", state 1694, "(1)" - line 387, "pan.___", state 1715, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1747, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1761, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1780, "(1)" - line 413, "pan.___", state 1810, "(1)" - line 417, "pan.___", state 1823, "(1)" - line 387, "pan.___", state 1847, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1879, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1893, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1912, "(1)" - line 413, "pan.___", state 1942, "(1)" - line 417, "pan.___", state 1955, "(1)" - line 710, "pan.___", state 1976, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 387, "pan.___", state 1983, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2029, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2048, "(1)" - line 413, "pan.___", state 2078, "(1)" - line 417, "pan.___", state 2091, "(1)" - line 387, "pan.___", state 2112, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2144, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2158, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2177, "(1)" - line 413, "pan.___", state 2207, "(1)" - line 417, "pan.___", state 2220, "(1)" - line 387, "pan.___", state 2243, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2245, "(1)" - line 387, "pan.___", state 2246, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2246, "else" - line 387, "pan.___", state 2249, "(1)" - line 391, "pan.___", state 2257, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2259, "(1)" - line 391, "pan.___", state 2260, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2260, "else" - line 391, "pan.___", state 2263, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 389, "pan.___", state 2269, "((i<1))" - line 389, "pan.___", state 2269, "((i>=1))" - line 396, "pan.___", state 2275, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2277, "(1)" - line 396, "pan.___", state 2278, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2278, "else" - line 396, "pan.___", state 2281, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 400, "pan.___", state 2289, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2291, "(1)" - line 400, "pan.___", state 2292, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2292, "else" - line 400, "pan.___", state 2295, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 398, "pan.___", state 2301, "((i<2))" - line 398, "pan.___", state 2301, "((i>=2))" - line 404, "pan.___", state 2308, "(1)" - line 404, "pan.___", state 2309, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2309, "else" - line 404, "pan.___", state 2312, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 408, "pan.___", state 2321, "(1)" - line 408, "pan.___", state 2322, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2322, "else" - line 408, "pan.___", state 2325, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 406, "pan.___", state 2331, "((i<1))" - line 406, "pan.___", state 2331, "((i>=1))" - line 413, "pan.___", state 2338, "(1)" - line 413, "pan.___", state 2339, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2339, "else" - line 413, "pan.___", state 2342, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 417, "pan.___", state 2351, "(1)" - line 417, "pan.___", state 2352, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2352, "else" - line 417, "pan.___", state 2355, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 415, "pan.___", state 2361, "((i<2))" - line 415, "pan.___", state 2361, "((i>=2))" - line 422, "pan.___", state 2365, "(1)" - line 422, "pan.___", state 2365, "(1)" - line 710, "pan.___", state 2368, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 710, "pan.___", state 2369, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 710, "pan.___", state 2370, "(1)" - line 387, "pan.___", state 2377, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2409, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2442, "(1)" - line 413, "pan.___", state 2472, "(1)" - line 417, "pan.___", state 2485, "(1)" - line 387, "pan.___", state 2512, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2544, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2558, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2577, "(1)" - line 413, "pan.___", state 2607, "(1)" - line 417, "pan.___", state 2620, "(1)" - line 387, "pan.___", state 2641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2706, "(1)" - line 413, "pan.___", state 2736, "(1)" - line 417, "pan.___", state 2749, "(1)" - line 227, "pan.___", state 2782, "(1)" - line 235, "pan.___", state 2802, "(1)" - line 239, "pan.___", state 2810, "(1)" - line 227, "pan.___", state 2825, "(1)" - line 235, "pan.___", state 2845, "(1)" - line 239, "pan.___", state 2853, "(1)" - line 870, "pan.___", state 2870, "-end-" - (278 of 2870 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 19, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 33, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 84, "(1)" - line 408, "pan.___", state 97, "(1)" - line 250, "pan.___", state 150, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 152, "(1)" - line 254, "pan.___", state 159, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 161, "(1)" - line 254, "pan.___", state 162, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 162, "else" - line 252, "pan.___", state 167, "((i<1))" - line 252, "pan.___", state 167, "((i>=1))" - line 258, "pan.___", state 172, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 174, "(1)" - line 258, "pan.___", state 175, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 175, "else" - line 262, "pan.___", state 181, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 183, "(1)" - line 262, "pan.___", state 184, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 184, "else" - line 267, "pan.___", state 193, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 267, "pan.___", state 193, "else" - line 387, "pan.___", state 212, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 226, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 244, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 258, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 277, "(1)" - line 408, "pan.___", state 290, "(1)" - line 413, "pan.___", state 307, "(1)" - line 417, "pan.___", state 320, "(1)" - line 391, "pan.___", state 357, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 375, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 389, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 421, "(1)" - line 413, "pan.___", state 438, "(1)" - line 417, "pan.___", state 451, "(1)" - line 391, "pan.___", state 495, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 513, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 527, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 559, "(1)" - line 413, "pan.___", state 576, "(1)" - line 417, "pan.___", state 589, "(1)" - line 391, "pan.___", state 624, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 642, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 656, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 688, "(1)" - line 413, "pan.___", state 705, "(1)" - line 417, "pan.___", state 718, "(1)" - line 391, "pan.___", state 755, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 773, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 787, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 819, "(1)" - line 413, "pan.___", state 836, "(1)" - line 417, "pan.___", state 849, "(1)" - line 250, "pan.___", state 904, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 913, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 227, "pan.___", state 951, "(1)" - line 231, "pan.___", state 959, "(1)" - line 235, "pan.___", state 971, "(1)" - line 239, "pan.___", state 979, "(1)" - line 250, "pan.___", state 1010, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1019, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1032, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1041, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1057, "(1)" - line 231, "pan.___", state 1065, "(1)" - line 235, "pan.___", state 1077, "(1)" - line 239, "pan.___", state 1085, "(1)" - line 254, "pan.___", state 1111, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1124, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1133, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1149, "(1)" - line 231, "pan.___", state 1157, "(1)" - line 235, "pan.___", state 1169, "(1)" - line 239, "pan.___", state 1177, "(1)" - line 250, "pan.___", state 1208, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1217, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1230, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1239, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1255, "(1)" - line 231, "pan.___", state 1263, "(1)" - line 235, "pan.___", state 1275, "(1)" - line 239, "pan.___", state 1283, "(1)" - line 254, "pan.___", state 1309, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1322, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1331, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1347, "(1)" - line 231, "pan.___", state 1355, "(1)" - line 235, "pan.___", state 1367, "(1)" - line 239, "pan.___", state 1375, "(1)" - line 250, "pan.___", state 1406, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1415, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1428, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1437, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1453, "(1)" - line 231, "pan.___", state 1461, "(1)" - line 235, "pan.___", state 1473, "(1)" - line 239, "pan.___", state 1481, "(1)" - line 254, "pan.___", state 1507, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1520, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1545, "(1)" - line 231, "pan.___", state 1553, "(1)" - line 235, "pan.___", state 1565, "(1)" - line 239, "pan.___", state 1573, "(1)" - line 250, "pan.___", state 1604, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1613, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1626, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1635, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1651, "(1)" - line 231, "pan.___", state 1659, "(1)" - line 235, "pan.___", state 1671, "(1)" - line 239, "pan.___", state 1679, "(1)" - line 1191, "pan.___", state 1695, "-end-" - (109 of 1695 states) -unreached in proctype :init: - line 1202, "pan.___", state 9, "((j<2))" - line 1202, "pan.___", state 9, "((j>=2))" - line 1203, "pan.___", state 20, "((j<2))" - line 1203, "pan.___", state 20, "((j>=2))" - line 1208, "pan.___", state 33, "((j<2))" - line 1208, "pan.___", state 33, "((j>=2))" - line 1206, "pan.___", state 43, "((i<1))" - line 1206, "pan.___", state 43, "((i>=1))" - line 1216, "pan.___", state 54, "((j<2))" - line 1216, "pan.___", state 54, "((j>=2))" - line 1220, "pan.___", state 67, "((j<2))" - line 1220, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1250, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 2.64e+04 seconds -pan: rate 2423.5502 states/second -pan: avg transition delay 1.3027e-06 usec -cp .input.spin urcu_free_no_wmb.spin.input -cp .input.spin.trail urcu_free_no_wmb.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input deleted file mode 100644 index f4c0ace..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define NO_WMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input.trail deleted file mode 100644 index befcb5f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_no_wmb.spin.input.trail +++ /dev/null @@ -1,1467 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4645 -2:3:4565 -3:3:4568 -4:3:4568 -5:3:4571 -6:3:4579 -7:3:4579 -8:3:4582 -9:3:4588 -10:3:4592 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-1431:2:3784 -1432:2:3788 -1433:2:3793 -1434:2:3801 -1435:2:3805 -1436:2:3806 -1437:2:3801 -1438:2:3802 -1439:2:3810 -1440:2:3817 -1441:2:3824 -1442:2:3825 -1443:2:3832 -1444:2:3837 -1445:2:3844 -1446:2:3845 -1447:2:3844 -1448:2:3845 -1449:2:3852 -1450:2:3856 -1451:0:4645 -1452:2:3861 -1453:0:4645 -1454:2:3862 -1455:0:4645 -1456:2:3863 -1457:0:4645 -1458:2:3864 -1459:0:4645 -1460:1:1316 -1461:1:1317 -1462:0:4643 -1463:2:3865 -1464:0:4649 -1465:1:2475 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.define deleted file mode 100644 index 5e642ef..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.define +++ /dev/null @@ -1 +0,0 @@ -#define SINGLE_FLIP diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.log deleted file mode 100644 index 4f60a26..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.log +++ /dev/null @@ -1,783 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_single_flip.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -Depth= 9313 States= 1e+06 Transitions= 1.5e+08 Memory= 550.432 t= 185 R= 5e+03 -Depth= 9313 States= 2e+06 Transitions= 3.71e+08 Memory= 634.318 t= 475 R= 4e+03 -Depth= 9313 States= 3e+06 Transitions= 6.52e+08 Memory= 718.303 t= 847 R= 4e+03 -pan: resizing hashtable to -w22.. done -Depth= 9313 States= 4e+06 Transitions= 8.49e+08 Memory= 833.311 t= 1.09e+03 R= 4e+03 -Depth= 9313 States= 5e+06 Transitions= 1.02e+09 Memory= 917.295 t= 1.3e+03 R= 4e+03 -Depth= 9313 States= 6e+06 Transitions= 1.18e+09 Memory= 1001.279 t= 1.51e+03 R= 4e+03 -Depth= 9313 States= 7e+06 Transitions= 1.44e+09 Memory= 1085.264 t= 1.86e+03 R= 4e+03 -Depth= 9313 States= 8e+06 Transitions= 1.69e+09 Memory= 1169.151 t= 2.17e+03 R= 4e+03 -Depth= 9313 States= 9e+06 Transitions= 1.87e+09 Memory= 1253.135 t= 2.42e+03 R= 4e+03 -pan: resizing hashtable to -w24.. done -Depth= 9313 States= 1e+07 Transitions= 2.08e+09 Memory= 1461.115 t= 2.68e+03 R= 4e+03 -Depth= 9313 States= 1.1e+07 Transitions= 2.38e+09 Memory= 1545.100 t= 3.06e+03 R= 4e+03 -Depth= 9530 States= 1.2e+07 Transitions= 2.6e+09 Memory= 1629.084 t= 3.35e+03 R= 4e+03 -Depth= 9530 States= 1.3e+07 Transitions= 2.85e+09 Memory= 1713.068 t= 3.67e+03 R= 4e+03 -Depth= 9530 States= 1.4e+07 Transitions= 3.06e+09 Memory= 1797.053 t= 3.93e+03 R= 4e+03 -Depth= 9530 States= 1.5e+07 Transitions= 3.32e+09 Memory= 1881.037 t= 4.28e+03 R= 4e+03 -Depth= 9530 States= 1.6e+07 Transitions= 3.52e+09 Memory= 1964.924 t= 4.54e+03 R= 4e+03 -Depth= 9530 States= 1.7e+07 Transitions= 3.85e+09 Memory= 2048.908 t= 4.96e+03 R= 3e+03 -Depth= 9530 States= 1.8e+07 Transitions= 4.15e+09 Memory= 2132.893 t= 5.34e+03 R= 3e+03 -Depth= 9530 States= 1.9e+07 Transitions= 4.35e+09 Memory= 2216.877 t= 5.58e+03 R= 3e+03 -Depth= 9530 States= 2e+07 Transitions= 4.59e+09 Memory= 2300.861 t= 5.89e+03 R= 3e+03 -Depth= 9530 States= 2.1e+07 Transitions= 4.83e+09 Memory= 2384.846 t= 6.21e+03 R= 3e+03 -Depth= 9530 States= 2.2e+07 Transitions= 5.07e+09 Memory= 2468.830 t= 6.52e+03 R= 3e+03 -Depth= 9530 States= 2.3e+07 Transitions= 5.31e+09 Memory= 2552.717 t= 6.83e+03 R= 3e+03 -Depth= 9530 States= 2.4e+07 Transitions= 5.5e+09 Memory= 2636.701 t= 7.08e+03 R= 3e+03 -pan: claim violated! (at depth 1365) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 9530, errors: 1 - 24603269 states, stored -5.6549664e+09 states, matched -5.6795697e+09 transitions (= stored+matched) -3.17715e+10 atomic steps -hash conflicts: 3.9132393e+09 (resolved) - -Stats on memory usage (in Megabytes): - 2721.767 equivalent memory usage for states (stored*(State-vector + overhead)) - 2102.819 actual memory usage for states (compression: 77.26%) - state-vector as stored = 62 byte + 28 byte overhead - 128.000 memory used for hash table (-w24) - 457.764 memory used for DFS stack (-m10000000) - 1.198 memory lost to fragmentation - 2687.385 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 79, "(1)" - line 231, "pan.___", state 87, "(1)" - line 235, "pan.___", state 99, "(1)" - line 239, "pan.___", state 107, "(1)" - line 387, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 164, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 178, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 197, "(1)" - line 413, "pan.___", state 227, "(1)" - line 417, "pan.___", state 240, "(1)" - line 663, "pan.___", state 261, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 387, "pan.___", state 268, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 300, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 314, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 333, "(1)" - line 413, "pan.___", state 363, "(1)" - line 417, "pan.___", state 376, "(1)" - line 387, "pan.___", state 397, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 443, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 462, "(1)" - line 413, "pan.___", state 492, "(1)" - line 417, "pan.___", state 505, "(1)" - line 387, "pan.___", state 528, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 530, "(1)" - line 387, "pan.___", state 531, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 531, "else" - line 387, "pan.___", state 534, "(1)" - line 391, "pan.___", state 542, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 544, "(1)" - line 391, "pan.___", state 545, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 545, "else" - line 391, "pan.___", state 548, "(1)" - line 391, "pan.___", state 549, "(1)" - line 391, "pan.___", state 549, "(1)" - line 389, "pan.___", state 554, "((i<1))" - line 389, "pan.___", state 554, "((i>=1))" - line 396, "pan.___", state 560, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 562, "(1)" - line 396, "pan.___", state 563, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 563, "else" - line 396, "pan.___", state 566, "(1)" - line 396, "pan.___", state 567, "(1)" - line 396, "pan.___", state 567, "(1)" - line 400, "pan.___", state 574, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 576, "(1)" - line 400, "pan.___", state 577, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 577, "else" - line 400, "pan.___", state 580, "(1)" - line 400, "pan.___", state 581, "(1)" - line 400, "pan.___", state 581, "(1)" - line 398, "pan.___", state 586, "((i<2))" - line 398, "pan.___", state 586, "((i>=2))" - line 404, "pan.___", state 593, "(1)" - line 404, "pan.___", state 594, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 594, "else" - line 404, "pan.___", state 597, "(1)" - line 404, "pan.___", state 598, "(1)" - line 404, "pan.___", state 598, "(1)" - line 408, "pan.___", state 606, "(1)" - line 408, "pan.___", state 607, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 607, "else" - line 408, "pan.___", state 610, "(1)" - line 408, "pan.___", state 611, "(1)" - line 408, "pan.___", state 611, "(1)" - line 406, "pan.___", state 616, "((i<1))" - line 406, "pan.___", state 616, "((i>=1))" - line 413, "pan.___", state 623, "(1)" - line 413, "pan.___", state 624, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 624, "else" - line 413, "pan.___", state 627, "(1)" - line 413, "pan.___", state 628, "(1)" - line 413, "pan.___", state 628, "(1)" - line 417, "pan.___", state 636, "(1)" - line 417, "pan.___", state 637, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 637, "else" - line 417, "pan.___", state 640, "(1)" - line 417, "pan.___", state 641, "(1)" - line 417, "pan.___", state 641, "(1)" - line 415, "pan.___", state 646, "((i<2))" - line 415, "pan.___", state 646, "((i>=2))" - line 422, "pan.___", state 650, "(1)" - line 422, "pan.___", state 650, "(1)" - line 663, "pan.___", state 653, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 663, "pan.___", state 654, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 663, "pan.___", state 655, "(1)" - line 387, "pan.___", state 662, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 694, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 708, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 727, "(1)" - line 413, "pan.___", state 757, "(1)" - line 417, "pan.___", state 770, "(1)" - line 387, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 800, "(1)" - line 387, "pan.___", state 801, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 801, "else" - line 387, "pan.___", state 804, "(1)" - line 391, "pan.___", state 812, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 814, "(1)" - line 391, "pan.___", state 815, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 815, "else" - line 391, "pan.___", state 818, "(1)" - line 391, "pan.___", state 819, "(1)" - line 391, "pan.___", state 819, "(1)" - line 389, "pan.___", state 824, "((i<1))" - line 389, "pan.___", state 824, "((i>=1))" - line 396, "pan.___", state 830, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 832, "(1)" - line 396, "pan.___", state 833, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 833, "else" - line 396, "pan.___", state 836, "(1)" - line 396, "pan.___", state 837, "(1)" - line 396, "pan.___", state 837, "(1)" - line 400, "pan.___", state 844, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 846, "(1)" - line 400, "pan.___", state 847, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 847, "else" - line 400, "pan.___", state 850, "(1)" - line 400, "pan.___", state 851, "(1)" - line 400, "pan.___", state 851, "(1)" - line 398, "pan.___", state 856, "((i<2))" - line 398, "pan.___", state 856, "((i>=2))" - line 404, "pan.___", state 863, "(1)" - line 404, "pan.___", state 864, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 864, "else" - line 404, "pan.___", state 867, "(1)" - line 404, "pan.___", state 868, "(1)" - line 404, "pan.___", state 868, "(1)" - line 408, "pan.___", state 876, "(1)" - line 408, "pan.___", state 877, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 877, "else" - line 408, "pan.___", state 880, "(1)" - line 408, "pan.___", state 881, "(1)" - line 408, "pan.___", state 881, "(1)" - line 406, "pan.___", state 886, "((i<1))" - line 406, "pan.___", state 886, "((i>=1))" - line 413, "pan.___", state 893, "(1)" - line 413, "pan.___", state 894, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 894, "else" - line 413, "pan.___", state 897, "(1)" - line 413, "pan.___", state 898, "(1)" - line 413, "pan.___", state 898, "(1)" - line 417, "pan.___", state 906, "(1)" - line 417, "pan.___", state 907, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 907, "else" - line 417, "pan.___", state 910, "(1)" - line 417, "pan.___", state 911, "(1)" - line 417, "pan.___", state 911, "(1)" - line 422, "pan.___", state 920, "(1)" - line 422, "pan.___", state 920, "(1)" - line 387, "pan.___", state 927, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 929, "(1)" - line 387, "pan.___", state 930, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 930, "else" - line 387, "pan.___", state 933, "(1)" - line 391, "pan.___", state 941, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 943, "(1)" - line 391, "pan.___", state 944, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 944, "else" - line 391, "pan.___", state 947, "(1)" - line 391, "pan.___", state 948, "(1)" - line 391, "pan.___", state 948, "(1)" - line 389, "pan.___", state 953, "((i<1))" - line 389, "pan.___", state 953, "((i>=1))" - line 396, "pan.___", state 959, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 961, "(1)" - line 396, "pan.___", state 962, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 962, "else" - line 396, "pan.___", state 965, "(1)" - line 396, "pan.___", state 966, "(1)" - line 396, "pan.___", state 966, "(1)" - line 400, "pan.___", state 973, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 975, "(1)" - line 400, "pan.___", state 976, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 976, "else" - line 400, "pan.___", state 979, "(1)" - line 400, "pan.___", state 980, "(1)" - line 400, "pan.___", state 980, "(1)" - line 398, "pan.___", state 985, "((i<2))" - line 398, "pan.___", state 985, "((i>=2))" - line 404, "pan.___", state 992, "(1)" - line 404, "pan.___", state 993, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 993, "else" - line 404, "pan.___", state 996, "(1)" - line 404, "pan.___", state 997, "(1)" - line 404, "pan.___", state 997, "(1)" - line 408, "pan.___", state 1005, "(1)" - line 408, "pan.___", state 1006, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1006, "else" - line 408, "pan.___", state 1009, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 406, "pan.___", state 1015, "((i<1))" - line 406, "pan.___", state 1015, "((i>=1))" - line 413, "pan.___", state 1022, "(1)" - line 413, "pan.___", state 1023, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1023, "else" - line 413, "pan.___", state 1026, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 417, "pan.___", state 1035, "(1)" - line 417, "pan.___", state 1036, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1036, "else" - line 417, "pan.___", state 1039, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 415, "pan.___", state 1045, "((i<2))" - line 415, "pan.___", state 1045, "((i>=2))" - line 422, "pan.___", state 1049, "(1)" - line 422, "pan.___", state 1049, "(1)" - line 671, "pan.___", state 1053, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1058, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1090, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1104, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1123, "(1)" - line 413, "pan.___", state 1153, "(1)" - line 417, "pan.___", state 1166, "(1)" - line 387, "pan.___", state 1190, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1222, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1236, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1255, "(1)" - line 413, "pan.___", state 1285, "(1)" - line 417, "pan.___", state 1298, "(1)" - line 387, "pan.___", state 1323, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1355, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1369, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1388, "(1)" - line 413, "pan.___", state 1418, "(1)" - line 417, "pan.___", state 1431, "(1)" - line 387, "pan.___", state 1452, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1484, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1498, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1517, "(1)" - line 413, "pan.___", state 1547, "(1)" - line 417, "pan.___", state 1560, "(1)" - line 387, "pan.___", state 1586, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1618, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1632, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1651, "(1)" - line 413, "pan.___", state 1681, "(1)" - line 417, "pan.___", state 1694, "(1)" - line 387, "pan.___", state 1715, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1747, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1761, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1780, "(1)" - line 413, "pan.___", state 1810, "(1)" - line 417, "pan.___", state 1823, "(1)" - line 387, "pan.___", state 1847, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1879, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1893, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1912, "(1)" - line 413, "pan.___", state 1942, "(1)" - line 417, "pan.___", state 1955, "(1)" - line 710, "pan.___", state 1976, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 387, "pan.___", state 1983, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2029, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2048, "(1)" - line 413, "pan.___", state 2078, "(1)" - line 417, "pan.___", state 2091, "(1)" - line 387, "pan.___", state 2112, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2144, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2158, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2177, "(1)" - line 413, "pan.___", state 2207, "(1)" - line 417, "pan.___", state 2220, "(1)" - line 387, "pan.___", state 2243, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2245, "(1)" - line 387, "pan.___", state 2246, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2246, "else" - line 387, "pan.___", state 2249, "(1)" - line 391, "pan.___", state 2257, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2259, "(1)" - line 391, "pan.___", state 2260, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2260, "else" - line 391, "pan.___", state 2263, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 389, "pan.___", state 2269, "((i<1))" - line 389, "pan.___", state 2269, "((i>=1))" - line 396, "pan.___", state 2275, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2277, "(1)" - line 396, "pan.___", state 2278, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2278, "else" - line 396, "pan.___", state 2281, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 400, "pan.___", state 2289, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2291, "(1)" - line 400, "pan.___", state 2292, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2292, "else" - line 400, "pan.___", state 2295, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 398, "pan.___", state 2301, "((i<2))" - line 398, "pan.___", state 2301, "((i>=2))" - line 404, "pan.___", state 2308, "(1)" - line 404, "pan.___", state 2309, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2309, "else" - line 404, "pan.___", state 2312, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 408, "pan.___", state 2321, "(1)" - line 408, "pan.___", state 2322, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2322, "else" - line 408, "pan.___", state 2325, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 406, "pan.___", state 2331, "((i<1))" - line 406, "pan.___", state 2331, "((i>=1))" - line 413, "pan.___", state 2338, "(1)" - line 413, "pan.___", state 2339, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2339, "else" - line 413, "pan.___", state 2342, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 417, "pan.___", state 2351, "(1)" - line 417, "pan.___", state 2352, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2352, "else" - line 417, "pan.___", state 2355, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 415, "pan.___", state 2361, "((i<2))" - line 415, "pan.___", state 2361, "((i>=2))" - line 422, "pan.___", state 2365, "(1)" - line 422, "pan.___", state 2365, "(1)" - line 710, "pan.___", state 2368, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 710, "pan.___", state 2369, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 710, "pan.___", state 2370, "(1)" - line 387, "pan.___", state 2377, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2409, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2442, "(1)" - line 413, "pan.___", state 2472, "(1)" - line 417, "pan.___", state 2485, "(1)" - line 387, "pan.___", state 2512, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2544, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2558, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2577, "(1)" - line 413, "pan.___", state 2607, "(1)" - line 417, "pan.___", state 2620, "(1)" - line 387, "pan.___", state 2641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2706, "(1)" - line 413, "pan.___", state 2736, "(1)" - line 417, "pan.___", state 2749, "(1)" - line 227, "pan.___", state 2782, "(1)" - line 235, "pan.___", state 2802, "(1)" - line 239, "pan.___", state 2810, "(1)" - line 227, "pan.___", state 2825, "(1)" - line 235, "pan.___", state 2845, "(1)" - line 239, "pan.___", state 2853, "(1)" - line 870, "pan.___", state 2870, "-end-" - (278 of 2870 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 22, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 36, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 87, "(1)" - line 408, "pan.___", state 100, "(1)" - line 413, "pan.___", state 117, "(1)" - line 250, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 175, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 215, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 229, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 247, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 261, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 280, "(1)" - line 408, "pan.___", state 293, "(1)" - line 413, "pan.___", state 310, "(1)" - line 417, "pan.___", state 323, "(1)" - line 391, "pan.___", state 360, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 378, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 392, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 424, "(1)" - line 413, "pan.___", state 441, "(1)" - line 417, "pan.___", state 454, "(1)" - line 387, "pan.___", state 483, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 485, "(1)" - line 387, "pan.___", state 486, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 486, "else" - line 387, "pan.___", state 489, "(1)" - line 391, "pan.___", state 497, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 499, "(1)" - line 391, "pan.___", state 500, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 500, "else" - line 391, "pan.___", state 503, "(1)" - line 391, "pan.___", state 504, "(1)" - line 391, "pan.___", state 504, "(1)" - line 389, "pan.___", state 509, "((i<1))" - line 389, "pan.___", state 509, "((i>=1))" - line 396, "pan.___", state 515, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 517, "(1)" - line 396, "pan.___", state 518, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 518, "else" - line 396, "pan.___", state 521, "(1)" - line 396, "pan.___", state 522, "(1)" - line 396, "pan.___", state 522, "(1)" - line 400, "pan.___", state 529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 531, "(1)" - line 400, "pan.___", state 532, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 532, "else" - line 400, "pan.___", state 535, "(1)" - line 400, "pan.___", state 536, "(1)" - line 400, "pan.___", state 536, "(1)" - line 398, "pan.___", state 541, "((i<2))" - line 398, "pan.___", state 541, "((i>=2))" - line 404, "pan.___", state 548, "(1)" - line 404, "pan.___", state 549, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 549, "else" - line 404, "pan.___", state 552, "(1)" - line 404, "pan.___", state 553, "(1)" - line 404, "pan.___", state 553, "(1)" - line 408, "pan.___", state 561, "(1)" - line 408, "pan.___", state 562, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 562, "else" - line 408, "pan.___", state 565, "(1)" - line 408, "pan.___", state 566, "(1)" - line 408, "pan.___", state 566, "(1)" - line 406, "pan.___", state 571, "((i<1))" - line 406, "pan.___", state 571, "((i>=1))" - line 413, "pan.___", state 578, "(1)" - line 413, "pan.___", state 579, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 579, "else" - line 413, "pan.___", state 582, "(1)" - line 413, "pan.___", state 583, "(1)" - line 413, "pan.___", state 583, "(1)" - line 417, "pan.___", state 591, "(1)" - line 417, "pan.___", state 592, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 592, "else" - line 417, "pan.___", state 595, "(1)" - line 417, "pan.___", state 596, "(1)" - line 417, "pan.___", state 596, "(1)" - line 422, "pan.___", state 605, "(1)" - line 422, "pan.___", state 605, "(1)" - line 387, "pan.___", state 612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 614, "(1)" - line 387, "pan.___", state 615, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 615, "else" - line 387, "pan.___", state 618, "(1)" - line 391, "pan.___", state 626, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 628, "(1)" - line 391, "pan.___", state 629, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 629, "else" - line 391, "pan.___", state 632, "(1)" - line 391, "pan.___", state 633, "(1)" - line 391, "pan.___", state 633, "(1)" - line 389, "pan.___", state 638, "((i<1))" - line 389, "pan.___", state 638, "((i>=1))" - line 396, "pan.___", state 644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 646, "(1)" - line 396, "pan.___", state 647, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 647, "else" - line 396, "pan.___", state 650, "(1)" - line 396, "pan.___", state 651, "(1)" - line 396, "pan.___", state 651, "(1)" - line 400, "pan.___", state 658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 660, "(1)" - line 400, "pan.___", state 661, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 661, "else" - line 400, "pan.___", state 664, "(1)" - line 400, "pan.___", state 665, "(1)" - line 400, "pan.___", state 665, "(1)" - line 398, "pan.___", state 670, "((i<2))" - line 398, "pan.___", state 670, "((i>=2))" - line 404, "pan.___", state 677, "(1)" - line 404, "pan.___", state 678, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 678, "else" - line 404, "pan.___", state 681, "(1)" - line 404, "pan.___", state 682, "(1)" - line 404, "pan.___", state 682, "(1)" - line 408, "pan.___", state 690, "(1)" - line 408, "pan.___", state 691, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 691, "else" - line 408, "pan.___", state 694, "(1)" - line 408, "pan.___", state 695, "(1)" - line 408, "pan.___", state 695, "(1)" - line 406, "pan.___", state 700, "((i<1))" - line 406, "pan.___", state 700, "((i>=1))" - line 413, "pan.___", state 707, "(1)" - line 413, "pan.___", state 708, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 708, "else" - line 413, "pan.___", state 711, "(1)" - line 413, "pan.___", state 712, "(1)" - line 413, "pan.___", state 712, "(1)" - line 417, "pan.___", state 720, "(1)" - line 417, "pan.___", state 721, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 721, "else" - line 417, "pan.___", state 724, "(1)" - line 417, "pan.___", state 725, "(1)" - line 417, "pan.___", state 725, "(1)" - line 415, "pan.___", state 730, "((i<2))" - line 415, "pan.___", state 730, "((i>=2))" - line 422, "pan.___", state 734, "(1)" - line 422, "pan.___", state 734, "(1)" - line 1078, "pan.___", state 738, "_proc_urcu_writer = (_proc_urcu_writer|(1<<10))" - line 387, "pan.___", state 743, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 745, "(1)" - line 387, "pan.___", state 746, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 746, "else" - line 387, "pan.___", state 749, "(1)" - line 391, "pan.___", state 757, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 759, "(1)" - line 391, "pan.___", state 760, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 760, "else" - line 391, "pan.___", state 763, "(1)" - line 391, "pan.___", state 764, "(1)" - line 391, "pan.___", state 764, "(1)" - line 389, "pan.___", state 769, "((i<1))" - line 389, "pan.___", state 769, "((i>=1))" - line 396, "pan.___", state 775, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 777, "(1)" - line 396, "pan.___", state 778, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 778, "else" - line 396, "pan.___", state 781, "(1)" - line 396, "pan.___", state 782, "(1)" - line 396, "pan.___", state 782, "(1)" - line 400, "pan.___", state 789, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 791, "(1)" - line 400, "pan.___", state 792, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 792, "else" - line 400, "pan.___", state 795, "(1)" - line 400, "pan.___", state 796, "(1)" - line 400, "pan.___", state 796, "(1)" - line 398, "pan.___", state 801, "((i<2))" - line 398, "pan.___", state 801, "((i>=2))" - line 404, "pan.___", state 808, "(1)" - line 404, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 809, "else" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 813, "(1)" - line 404, "pan.___", state 813, "(1)" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<1))" - line 406, "pan.___", state 831, "((i>=1))" - line 413, "pan.___", state 838, "(1)" - line 413, "pan.___", state 839, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 839, "else" - line 413, "pan.___", state 842, "(1)" - line 413, "pan.___", state 843, "(1)" - line 413, "pan.___", state 843, "(1)" - line 417, "pan.___", state 851, "(1)" - line 417, "pan.___", state 852, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 852, "else" - line 417, "pan.___", state 855, "(1)" - line 417, "pan.___", state 856, "(1)" - line 417, "pan.___", state 856, "(1)" - line 415, "pan.___", state 861, "((i<2))" - line 415, "pan.___", state 861, "((i>=2))" - line 422, "pan.___", state 865, "(1)" - line 422, "pan.___", state 865, "(1)" - line 1093, "pan.___", state 870, "_proc_urcu_writer = (_proc_urcu_writer|(1<<11))" - line 1088, "pan.___", state 871, "(((tmp2&((1<<7)-1))&&((tmp2^0)&(1<<7))))" - line 1088, "pan.___", state 871, "else" - line 1113, "pan.___", state 875, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 250, "pan.___", state 906, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 915, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 930, "(1)" - line 262, "pan.___", state 937, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 953, "(1)" - line 231, "pan.___", state 961, "(1)" - line 235, "pan.___", state 973, "(1)" - line 239, "pan.___", state 981, "(1)" - line 250, "pan.___", state 1012, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1021, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1034, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1043, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1059, "(1)" - line 231, "pan.___", state 1067, "(1)" - line 235, "pan.___", state 1079, "(1)" - line 239, "pan.___", state 1087, "(1)" - line 254, "pan.___", state 1113, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1126, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1135, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1151, "(1)" - line 231, "pan.___", state 1159, "(1)" - line 235, "pan.___", state 1171, "(1)" - line 239, "pan.___", state 1179, "(1)" - line 250, "pan.___", state 1210, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1219, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1232, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1241, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1257, "(1)" - line 231, "pan.___", state 1265, "(1)" - line 235, "pan.___", state 1277, "(1)" - line 239, "pan.___", state 1285, "(1)" - line 250, "pan.___", state 1302, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1304, "(1)" - line 254, "pan.___", state 1311, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1313, "(1)" - line 254, "pan.___", state 1314, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1314, "else" - line 252, "pan.___", state 1319, "((i<1))" - line 252, "pan.___", state 1319, "((i>=1))" - line 258, "pan.___", state 1324, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1326, "(1)" - line 258, "pan.___", state 1327, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1327, "else" - line 262, "pan.___", state 1333, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1335, "(1)" - line 262, "pan.___", state 1336, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1336, "else" - line 260, "pan.___", state 1341, "((i<2))" - line 260, "pan.___", state 1341, "((i>=2))" - line 227, "pan.___", state 1349, "(1)" - line 231, "pan.___", state 1357, "(1)" - line 231, "pan.___", state 1358, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1358, "else" - line 229, "pan.___", state 1363, "((i<1))" - line 229, "pan.___", state 1363, "((i>=1))" - line 235, "pan.___", state 1369, "(1)" - line 235, "pan.___", state 1370, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1370, "else" - line 239, "pan.___", state 1377, "(1)" - line 239, "pan.___", state 1378, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1378, "else" - line 244, "pan.___", state 1387, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1387, "else" - line 1183, "pan.___", state 1390, "i = 0" - line 1183, "pan.___", state 1392, "reader_barrier = 1" - line 1183, "pan.___", state 1403, "((i<1))" - line 1183, "pan.___", state 1403, "((i>=1))" - line 250, "pan.___", state 1408, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1410, "(1)" - line 254, "pan.___", state 1417, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1419, "(1)" - line 254, "pan.___", state 1420, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1420, "else" - line 252, "pan.___", state 1425, "((i<1))" - line 252, "pan.___", state 1425, "((i>=1))" - line 258, "pan.___", state 1430, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1432, "(1)" - line 258, "pan.___", state 1433, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1433, "else" - line 262, "pan.___", state 1439, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1441, "(1)" - line 262, "pan.___", state 1442, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1442, "else" - line 260, "pan.___", state 1447, "((i<2))" - line 260, "pan.___", state 1447, "((i>=2))" - line 227, "pan.___", state 1455, "(1)" - line 231, "pan.___", state 1463, "(1)" - line 231, "pan.___", state 1464, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1464, "else" - line 229, "pan.___", state 1469, "((i<1))" - line 229, "pan.___", state 1469, "((i>=1))" - line 235, "pan.___", state 1475, "(1)" - line 235, "pan.___", state 1476, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1476, "else" - line 239, "pan.___", state 1483, "(1)" - line 239, "pan.___", state 1484, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1484, "else" - line 244, "pan.___", state 1493, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1493, "else" - line 277, "pan.___", state 1495, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1495, "else" - line 1183, "pan.___", state 1496, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1183, "pan.___", state 1496, "else" - line 254, "pan.___", state 1509, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1522, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1531, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1547, "(1)" - line 231, "pan.___", state 1555, "(1)" - line 235, "pan.___", state 1567, "(1)" - line 239, "pan.___", state 1575, "(1)" - line 250, "pan.___", state 1606, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1615, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1628, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1637, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1653, "(1)" - line 231, "pan.___", state 1661, "(1)" - line 235, "pan.___", state 1673, "(1)" - line 239, "pan.___", state 1681, "(1)" - line 1191, "pan.___", state 1697, "-end-" - (242 of 1697 states) -unreached in proctype :init: - line 1202, "pan.___", state 9, "((j<2))" - line 1202, "pan.___", state 9, "((j>=2))" - line 1203, "pan.___", state 20, "((j<2))" - line 1203, "pan.___", state 20, "((j>=2))" - line 1208, "pan.___", state 33, "((j<2))" - line 1208, "pan.___", state 33, "((j>=2))" - line 1206, "pan.___", state 43, "((i<1))" - line 1206, "pan.___", state 43, "((i>=1))" - line 1216, "pan.___", state 54, "((j<2))" - line 1216, "pan.___", state 54, "((j>=2))" - line 1220, "pan.___", state 67, "((j<2))" - line 1220, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1250, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 7.32e+03 seconds -pan: rate 3363.2894 states/second -pan: avg transition delay 1.288e-06 usec -cp .input.spin urcu_free_single_flip.spin.input -cp .input.spin.trail urcu_free_single_flip.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input deleted file mode 100644 index 4877d95..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define SINGLE_FLIP - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input.trail deleted file mode 100644 index eaf1780..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_free_single_flip.spin.input.trail +++ /dev/null @@ -1,1368 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4647 -2:3:4567 -3:3:4570 -4:3:4570 -5:3:4573 -6:3:4581 -7:3:4581 -8:3:4584 -9:3:4590 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-1352:0:4647 -1353:2:3863 -1354:0:4647 -1355:2:3864 -1356:0:4647 -1357:2:3865 -1358:0:4647 -1359:2:3866 -1360:0:4647 -1361:1:1316 -1362:1:1317 -1363:0:4645 -1364:2:3867 -1365:0:4651 -1366:0:4647 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress.ltl b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress.ltl deleted file mode 100644 index 8718641..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress.ltl +++ /dev/null @@ -1 +0,0 @@ -([] <> !np_) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.define deleted file mode 100644 index ff3f783..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.log deleted file mode 100644 index c7614b5..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.log +++ /dev/null @@ -1,1513 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_reader.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -depth 23: Claim reached state 9 (line 1250) -depth 145: Claim reached state 9 (line 1249) -pan: acceptance cycle (at depth 2922) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 3023, errors: 1 - 604 states, stored (989 visited) - 16933 states, matched - 17922 transitions (= visited+matched) - 100982 atomic steps -hash conflicts: 1 (resolved) - -Stats on memory usage (in Megabytes): - 0.067 equivalent memory usage for states (stored*(State-vector + overhead)) - 0.718 actual memory usage for states (unsuccessful compression: 1075.20%) - state-vector as stored = 1219 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 466.447 total actual memory usage - -unreached in proctype urcu_reader - line 250, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 41, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 49, "((i<1))" - line 252, "pan.___", state 49, "((i>=1))" - line 258, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 71, "((i<2))" - line 260, "pan.___", state 71, "((i>=2))" - line 227, "pan.___", state 79, "(1)" - line 231, "pan.___", state 87, "(1)" - line 231, "pan.___", state 88, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 88, "else" - line 229, "pan.___", state 93, "((i<1))" - line 229, "pan.___", state 93, "((i>=1))" - line 235, "pan.___", state 99, "(1)" - line 235, "pan.___", state 100, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 100, "else" - line 239, "pan.___", state 107, "(1)" - line 239, "pan.___", state 108, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 108, "else" - line 244, "pan.___", state 117, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 117, "else" - line 387, "pan.___", state 132, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 138, "(1)" - line 391, "pan.___", state 146, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 152, "(1)" - line 391, "pan.___", state 153, "(1)" - line 391, "pan.___", state 153, "(1)" - line 389, "pan.___", state 158, "((i<1))" - line 389, "pan.___", state 158, "((i>=1))" - line 396, "pan.___", state 164, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 170, "(1)" - line 396, "pan.___", state 171, "(1)" - line 396, "pan.___", state 171, "(1)" - line 400, "pan.___", state 178, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 184, "(1)" - line 400, "pan.___", state 185, "(1)" - line 400, "pan.___", state 185, "(1)" - line 398, "pan.___", state 190, "((i<2))" - line 398, "pan.___", state 190, "((i>=2))" - line 404, "pan.___", state 197, "(1)" - line 404, "pan.___", state 198, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 198, "else" - line 404, "pan.___", state 201, "(1)" - line 404, "pan.___", state 202, "(1)" - line 404, "pan.___", state 202, "(1)" - line 408, "pan.___", state 210, "(1)" - line 408, "pan.___", state 211, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 211, "else" - line 408, "pan.___", state 214, "(1)" - line 408, "pan.___", state 215, "(1)" - line 408, "pan.___", state 215, "(1)" - line 406, "pan.___", state 220, "((i<1))" - line 406, "pan.___", state 220, "((i>=1))" - line 413, "pan.___", state 227, "(1)" - line 413, "pan.___", state 228, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 228, "else" - line 413, "pan.___", state 231, "(1)" - line 413, "pan.___", state 232, "(1)" - line 413, "pan.___", state 232, "(1)" - line 417, "pan.___", state 240, "(1)" - line 417, "pan.___", state 241, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 241, "else" - line 417, "pan.___", state 244, "(1)" - line 417, "pan.___", state 245, "(1)" - line 417, "pan.___", state 245, "(1)" - line 422, "pan.___", state 254, "(1)" - line 422, "pan.___", state 254, "(1)" - line 663, "pan.___", state 261, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 663, "pan.___", state 262, "(!((tmp&((1<<7)-1))))" - line 663, "pan.___", state 262, "else" - line 387, "pan.___", state 268, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 274, "(1)" - line 391, "pan.___", state 282, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 288, "(1)" - line 391, "pan.___", state 289, "(1)" - line 391, "pan.___", state 289, "(1)" - line 389, "pan.___", state 294, "((i<1))" - line 389, "pan.___", state 294, "((i>=1))" - line 396, "pan.___", state 300, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 306, "(1)" - line 396, "pan.___", state 307, "(1)" - line 396, "pan.___", state 307, "(1)" - line 400, "pan.___", state 314, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 320, "(1)" - line 400, "pan.___", state 321, "(1)" - line 400, "pan.___", state 321, "(1)" - line 398, "pan.___", state 326, "((i<2))" - line 398, "pan.___", state 326, "((i>=2))" - line 404, "pan.___", state 333, "(1)" - line 404, "pan.___", state 334, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 334, "else" - line 404, "pan.___", state 337, "(1)" - line 404, "pan.___", state 338, "(1)" - line 404, "pan.___", state 338, "(1)" - line 408, "pan.___", state 346, "(1)" - line 408, "pan.___", state 347, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 347, "else" - line 408, "pan.___", state 350, "(1)" - line 408, "pan.___", state 351, "(1)" - line 408, "pan.___", state 351, "(1)" - line 406, "pan.___", state 356, "((i<1))" - line 406, "pan.___", state 356, "((i>=1))" - line 413, "pan.___", state 363, "(1)" - line 413, "pan.___", state 364, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 364, "else" - line 413, "pan.___", state 367, "(1)" - line 413, "pan.___", state 368, "(1)" - line 413, "pan.___", state 368, "(1)" - line 417, "pan.___", state 376, "(1)" - line 417, "pan.___", state 377, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 377, "else" - line 417, "pan.___", state 380, "(1)" - line 417, "pan.___", state 381, "(1)" - line 417, "pan.___", state 381, "(1)" - line 422, "pan.___", state 390, "(1)" - line 422, "pan.___", state 390, "(1)" - line 387, "pan.___", state 397, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 403, "(1)" - line 391, "pan.___", state 411, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 417, "(1)" - line 391, "pan.___", state 418, "(1)" - line 391, "pan.___", state 418, "(1)" - line 389, "pan.___", state 423, "((i<1))" - line 389, "pan.___", state 423, "((i>=1))" - line 396, "pan.___", state 429, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 435, "(1)" - line 396, "pan.___", state 436, "(1)" - line 396, "pan.___", state 436, "(1)" - line 400, "pan.___", state 443, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 449, "(1)" - line 400, "pan.___", state 450, "(1)" - line 400, "pan.___", state 450, "(1)" - line 398, "pan.___", state 455, "((i<2))" - line 398, "pan.___", state 455, "((i>=2))" - line 404, "pan.___", state 462, "(1)" - line 404, "pan.___", state 463, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 463, "else" - line 404, "pan.___", state 466, "(1)" - line 404, "pan.___", state 467, "(1)" - line 404, "pan.___", state 467, "(1)" - line 408, "pan.___", state 475, "(1)" - line 408, "pan.___", state 476, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 476, "else" - line 408, "pan.___", state 479, "(1)" - line 408, "pan.___", state 480, "(1)" - line 408, "pan.___", state 480, "(1)" - line 406, "pan.___", state 485, "((i<1))" - line 406, "pan.___", state 485, "((i>=1))" - line 413, "pan.___", state 492, "(1)" - line 413, "pan.___", state 493, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 493, "else" - line 413, "pan.___", state 496, "(1)" - line 413, "pan.___", state 497, "(1)" - line 413, "pan.___", state 497, "(1)" - line 417, "pan.___", state 505, "(1)" - line 417, "pan.___", state 506, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 506, "else" - line 417, "pan.___", state 509, "(1)" - line 417, "pan.___", state 510, "(1)" - line 417, "pan.___", state 510, "(1)" - line 415, "pan.___", state 515, "((i<2))" - line 415, "pan.___", state 515, "((i>=2))" - line 422, "pan.___", state 519, "(1)" - line 422, "pan.___", state 519, "(1)" - line 387, "pan.___", state 528, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 530, "(1)" - line 387, "pan.___", state 531, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 531, "else" - line 387, "pan.___", state 534, "(1)" - line 391, "pan.___", state 542, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 544, "(1)" - line 391, "pan.___", state 545, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 545, "else" - line 391, "pan.___", state 548, "(1)" - line 391, "pan.___", state 549, "(1)" - line 391, "pan.___", state 549, "(1)" - line 389, "pan.___", state 554, "((i<1))" - line 389, "pan.___", state 554, "((i>=1))" - line 396, "pan.___", state 560, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 562, "(1)" - line 396, "pan.___", state 563, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 563, "else" - line 396, "pan.___", state 566, "(1)" - line 396, "pan.___", state 567, "(1)" - line 396, "pan.___", state 567, "(1)" - line 400, "pan.___", state 574, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 576, "(1)" - line 400, "pan.___", state 577, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 577, "else" - line 400, "pan.___", state 580, "(1)" - line 400, "pan.___", state 581, "(1)" - line 400, "pan.___", state 581, "(1)" - line 398, "pan.___", state 586, "((i<2))" - line 398, "pan.___", state 586, "((i>=2))" - line 404, "pan.___", state 593, "(1)" - line 404, "pan.___", state 594, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 594, "else" - line 404, "pan.___", state 597, "(1)" - line 404, "pan.___", state 598, "(1)" - line 404, "pan.___", state 598, "(1)" - line 408, "pan.___", state 606, "(1)" - line 408, "pan.___", state 607, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 607, "else" - line 408, "pan.___", state 610, "(1)" - line 408, "pan.___", state 611, "(1)" - line 408, "pan.___", state 611, "(1)" - line 406, "pan.___", state 616, "((i<1))" - line 406, "pan.___", state 616, "((i>=1))" - line 413, "pan.___", state 623, "(1)" - line 413, "pan.___", state 624, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 624, "else" - line 413, "pan.___", state 627, "(1)" - line 413, "pan.___", state 628, "(1)" - line 413, "pan.___", state 628, "(1)" - line 417, "pan.___", state 636, "(1)" - line 417, "pan.___", state 637, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 637, "else" - line 417, "pan.___", state 640, "(1)" - line 417, "pan.___", state 641, "(1)" - line 417, "pan.___", state 641, "(1)" - line 415, "pan.___", state 646, "((i<2))" - line 415, "pan.___", state 646, "((i>=2))" - line 422, "pan.___", state 650, "(1)" - line 422, "pan.___", state 650, "(1)" - line 663, "pan.___", state 653, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 663, "pan.___", state 654, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 663, "pan.___", state 655, "(1)" - line 387, "pan.___", state 662, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 668, "(1)" - line 391, "pan.___", state 678, "(1)" - line 391, "pan.___", state 679, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 679, "else" - line 391, "pan.___", state 682, "(1)" - line 391, "pan.___", state 683, "(1)" - line 391, "pan.___", state 683, "(1)" - line 389, "pan.___", state 688, "((i<1))" - line 389, "pan.___", state 688, "((i>=1))" - line 396, "pan.___", state 694, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 700, "(1)" - line 396, "pan.___", state 701, "(1)" - line 396, "pan.___", state 701, "(1)" - line 400, "pan.___", state 708, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 714, "(1)" - line 400, "pan.___", state 715, "(1)" - line 400, "pan.___", state 715, "(1)" - line 398, "pan.___", state 720, "((i<2))" - line 398, "pan.___", state 720, "((i>=2))" - line 404, "pan.___", state 727, "(1)" - line 404, "pan.___", state 728, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 728, "else" - line 404, "pan.___", state 731, "(1)" - line 404, "pan.___", state 732, "(1)" - line 404, "pan.___", state 732, "(1)" - line 408, "pan.___", state 740, "(1)" - line 408, "pan.___", state 741, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 741, "else" - line 408, "pan.___", state 744, "(1)" - line 408, "pan.___", state 745, "(1)" - line 408, "pan.___", state 745, "(1)" - line 406, "pan.___", state 750, "((i<1))" - line 406, "pan.___", state 750, "((i>=1))" - line 413, "pan.___", state 757, "(1)" - line 413, "pan.___", state 758, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 758, "else" - line 413, "pan.___", state 761, "(1)" - line 413, "pan.___", state 762, "(1)" - line 413, "pan.___", state 762, "(1)" - line 417, "pan.___", state 770, "(1)" - line 417, "pan.___", state 771, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 771, "else" - line 417, "pan.___", state 774, "(1)" - line 417, "pan.___", state 775, "(1)" - line 417, "pan.___", state 775, "(1)" - line 422, "pan.___", state 784, "(1)" - line 422, "pan.___", state 784, "(1)" - line 387, "pan.___", state 798, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 800, "(1)" - line 387, "pan.___", state 801, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 801, "else" - line 387, "pan.___", state 804, "(1)" - line 391, "pan.___", state 812, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 814, "(1)" - line 391, "pan.___", state 815, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 815, "else" - line 391, "pan.___", state 818, "(1)" - line 391, "pan.___", state 819, "(1)" - line 391, "pan.___", state 819, "(1)" - line 389, "pan.___", state 824, "((i<1))" - line 389, "pan.___", state 824, "((i>=1))" - line 396, "pan.___", state 830, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 832, "(1)" - line 396, "pan.___", state 833, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 833, "else" - line 396, "pan.___", state 836, "(1)" - line 396, "pan.___", state 837, "(1)" - line 396, "pan.___", state 837, "(1)" - line 400, "pan.___", state 844, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 846, "(1)" - line 400, "pan.___", state 847, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 847, "else" - line 400, "pan.___", state 850, "(1)" - line 400, "pan.___", state 851, "(1)" - line 400, "pan.___", state 851, "(1)" - line 398, "pan.___", state 856, "((i<2))" - line 398, "pan.___", state 856, "((i>=2))" - line 404, "pan.___", state 863, "(1)" - line 404, "pan.___", state 864, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 864, "else" - line 404, "pan.___", state 867, "(1)" - line 404, "pan.___", state 868, "(1)" - line 404, "pan.___", state 868, "(1)" - line 408, "pan.___", state 876, "(1)" - line 408, "pan.___", state 877, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 877, "else" - line 408, "pan.___", state 880, "(1)" - line 408, "pan.___", state 881, "(1)" - line 408, "pan.___", state 881, "(1)" - line 406, "pan.___", state 886, "((i<1))" - line 406, "pan.___", state 886, "((i>=1))" - line 413, "pan.___", state 893, "(1)" - line 413, "pan.___", state 894, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 894, "else" - line 413, "pan.___", state 897, "(1)" - line 413, "pan.___", state 898, "(1)" - line 413, "pan.___", state 898, "(1)" - line 417, "pan.___", state 906, "(1)" - line 417, "pan.___", state 907, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 907, "else" - line 417, "pan.___", state 910, "(1)" - line 417, "pan.___", state 911, "(1)" - line 417, "pan.___", state 911, "(1)" - line 422, "pan.___", state 920, "(1)" - line 422, "pan.___", state 920, "(1)" - line 387, "pan.___", state 927, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 929, "(1)" - line 387, "pan.___", state 930, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 930, "else" - line 387, "pan.___", state 933, "(1)" - line 391, "pan.___", state 941, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 943, "(1)" - line 391, "pan.___", state 944, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 944, "else" - line 391, "pan.___", state 947, "(1)" - line 391, "pan.___", state 948, "(1)" - line 391, "pan.___", state 948, "(1)" - line 389, "pan.___", state 953, "((i<1))" - line 389, "pan.___", state 953, "((i>=1))" - line 396, "pan.___", state 959, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 961, "(1)" - line 396, "pan.___", state 962, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 962, "else" - line 396, "pan.___", state 965, "(1)" - line 396, "pan.___", state 966, "(1)" - line 396, "pan.___", state 966, "(1)" - line 400, "pan.___", state 973, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 975, "(1)" - line 400, "pan.___", state 976, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 976, "else" - line 400, "pan.___", state 979, "(1)" - line 400, "pan.___", state 980, "(1)" - line 400, "pan.___", state 980, "(1)" - line 398, "pan.___", state 985, "((i<2))" - line 398, "pan.___", state 985, "((i>=2))" - line 404, "pan.___", state 992, "(1)" - line 404, "pan.___", state 993, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 993, "else" - line 404, "pan.___", state 996, "(1)" - line 404, "pan.___", state 997, "(1)" - line 404, "pan.___", state 997, "(1)" - line 408, "pan.___", state 1005, "(1)" - line 408, "pan.___", state 1006, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1006, "else" - line 408, "pan.___", state 1009, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 408, "pan.___", state 1010, "(1)" - line 406, "pan.___", state 1015, "((i<1))" - line 406, "pan.___", state 1015, "((i>=1))" - line 413, "pan.___", state 1022, "(1)" - line 413, "pan.___", state 1023, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1023, "else" - line 413, "pan.___", state 1026, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 413, "pan.___", state 1027, "(1)" - line 417, "pan.___", state 1035, "(1)" - line 417, "pan.___", state 1036, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1036, "else" - line 417, "pan.___", state 1039, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 417, "pan.___", state 1040, "(1)" - line 415, "pan.___", state 1045, "((i<2))" - line 415, "pan.___", state 1045, "((i>=2))" - line 422, "pan.___", state 1049, "(1)" - line 422, "pan.___", state 1049, "(1)" - line 671, "pan.___", state 1053, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1058, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 1064, "(1)" - line 391, "pan.___", state 1072, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 1078, "(1)" - line 391, "pan.___", state 1079, "(1)" - line 391, "pan.___", state 1079, "(1)" - line 389, "pan.___", state 1084, "((i<1))" - line 389, "pan.___", state 1084, "((i>=1))" - line 396, "pan.___", state 1090, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1096, "(1)" - line 396, "pan.___", state 1097, "(1)" - line 396, "pan.___", state 1097, "(1)" - line 400, "pan.___", state 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413, "pan.___", state 1153, "(1)" - line 413, "pan.___", state 1154, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1154, "else" - line 413, "pan.___", state 1157, "(1)" - line 413, "pan.___", state 1158, "(1)" - line 413, "pan.___", state 1158, "(1)" - line 417, "pan.___", state 1166, "(1)" - line 417, "pan.___", state 1167, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1167, "else" - line 417, "pan.___", state 1170, "(1)" - line 417, "pan.___", state 1171, "(1)" - line 417, "pan.___", state 1171, "(1)" - line 415, "pan.___", state 1176, "((i<2))" - line 415, "pan.___", state 1176, "((i>=2))" - line 422, "pan.___", state 1180, "(1)" - line 422, "pan.___", state 1180, "(1)" - line 387, "pan.___", state 1190, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 1196, "(1)" - line 391, "pan.___", state 1206, "(1)" - line 391, "pan.___", state 1207, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 1207, "else" - line 391, "pan.___", state 1210, "(1)" - line 391, "pan.___", state 1211, "(1)" - line 391, "pan.___", state 1211, "(1)" - line 389, "pan.___", state 1216, "((i<1))" - line 389, "pan.___", state 1216, "((i>=1))" - line 396, "pan.___", state 1222, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1228, "(1)" - line 396, "pan.___", state 1229, "(1)" - line 396, "pan.___", state 1229, "(1)" - line 400, "pan.___", state 1236, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1242, "(1)" - line 400, "pan.___", state 1243, "(1)" - line 400, "pan.___", state 1243, "(1)" - line 398, "pan.___", state 1248, "((i<2))" - line 398, "pan.___", state 1248, "((i>=2))" - line 404, "pan.___", state 1255, "(1)" - line 404, "pan.___", state 1256, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 1256, "else" - line 404, "pan.___", state 1259, "(1)" - line 404, "pan.___", state 1260, "(1)" - line 404, "pan.___", state 1260, "(1)" - line 408, "pan.___", state 1268, "(1)" - line 408, "pan.___", state 1269, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1269, "else" - line 408, "pan.___", state 1272, "(1)" - line 408, "pan.___", state 1273, "(1)" - line 408, "pan.___", state 1273, "(1)" - line 406, "pan.___", state 1278, "((i<1))" - line 406, "pan.___", state 1278, "((i>=1))" - line 413, "pan.___", state 1285, "(1)" - line 413, "pan.___", state 1286, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1286, "else" - line 413, "pan.___", state 1289, "(1)" - line 413, "pan.___", state 1290, "(1)" - line 413, "pan.___", state 1290, "(1)" - line 417, "pan.___", state 1298, "(1)" - line 417, "pan.___", state 1299, 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"(1)" - line 396, "pan.___", state 1362, "(1)" - line 400, "pan.___", state 1369, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1375, "(1)" - line 400, "pan.___", state 1376, "(1)" - line 400, "pan.___", state 1376, "(1)" - line 398, "pan.___", state 1381, "((i<2))" - line 398, "pan.___", state 1381, "((i>=2))" - line 404, "pan.___", state 1388, "(1)" - line 404, "pan.___", state 1389, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 1389, "else" - line 404, "pan.___", state 1392, "(1)" - line 404, "pan.___", state 1393, "(1)" - line 404, "pan.___", state 1393, "(1)" - line 408, "pan.___", state 1401, "(1)" - line 408, "pan.___", state 1402, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1402, "else" - line 408, "pan.___", state 1405, "(1)" - line 408, "pan.___", state 1406, "(1)" - line 408, "pan.___", state 1406, "(1)" - line 406, "pan.___", state 1411, "((i<1))" - line 406, "pan.___", state 1411, "((i>=1))" - line 413, "pan.___", state 1418, "(1)" - line 413, "pan.___", state 1419, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1419, "else" - line 413, "pan.___", state 1422, "(1)" - line 413, "pan.___", state 1423, "(1)" - line 413, "pan.___", state 1423, "(1)" - line 417, "pan.___", state 1431, "(1)" - line 417, "pan.___", state 1432, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1432, "else" - line 417, "pan.___", state 1435, "(1)" - line 417, "pan.___", state 1436, "(1)" - line 417, "pan.___", state 1436, "(1)" - line 422, "pan.___", state 1445, "(1)" - line 422, "pan.___", state 1445, "(1)" - line 387, "pan.___", state 1452, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 1458, "(1)" - line 391, "pan.___", state 1466, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 1472, "(1)" - line 391, "pan.___", state 1473, "(1)" - line 391, "pan.___", state 1473, "(1)" - line 389, "pan.___", state 1478, "((i<1))" - line 389, "pan.___", state 1478, "((i>=1))" - line 396, "pan.___", state 1484, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1490, "(1)" - line 396, "pan.___", state 1491, "(1)" - line 396, "pan.___", state 1491, "(1)" - line 400, "pan.___", state 1498, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1504, "(1)" - line 400, "pan.___", state 1505, "(1)" - line 400, "pan.___", state 1505, "(1)" - line 398, "pan.___", state 1510, "((i<2))" - line 398, "pan.___", state 1510, "((i>=2))" - line 404, "pan.___", state 1517, "(1)" - line 404, "pan.___", state 1518, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 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"pan.___", state 1886, "(1)" - line 396, "pan.___", state 1886, "(1)" - line 400, "pan.___", state 1893, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1899, "(1)" - line 400, "pan.___", state 1900, "(1)" - line 400, "pan.___", state 1900, "(1)" - line 398, "pan.___", state 1905, "((i<2))" - line 398, "pan.___", state 1905, "((i>=2))" - line 404, "pan.___", state 1912, "(1)" - line 404, "pan.___", state 1913, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 1913, "else" - line 404, "pan.___", state 1916, "(1)" - line 404, "pan.___", state 1917, "(1)" - line 404, "pan.___", state 1917, "(1)" - line 408, "pan.___", state 1925, "(1)" - line 408, "pan.___", state 1926, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1926, "else" - line 408, "pan.___", state 1929, "(1)" - line 408, "pan.___", state 1930, "(1)" - line 408, "pan.___", state 1930, "(1)" - line 406, "pan.___", state 1935, "((i<1))" - line 406, "pan.___", state 1935, "((i>=1))" - line 413, "pan.___", state 1942, "(1)" - line 413, "pan.___", state 1943, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1943, "else" - line 413, "pan.___", state 1946, "(1)" - line 413, "pan.___", state 1947, "(1)" - line 413, "pan.___", state 1947, "(1)" - line 417, "pan.___", state 1955, "(1)" - line 417, "pan.___", state 1956, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1956, "else" - line 417, "pan.___", state 1959, "(1)" - line 417, "pan.___", state 1960, "(1)" - line 417, "pan.___", state 1960, "(1)" - line 422, "pan.___", state 1969, "(1)" - line 422, "pan.___", state 1969, "(1)" - line 710, "pan.___", state 1976, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 710, "pan.___", state 1977, "(!((tmp&((1<<7)-1))))" - line 710, "pan.___", state 1977, "else" - line 387, "pan.___", state 1983, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 1989, "(1)" - line 391, "pan.___", state 1997, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2003, "(1)" - line 391, "pan.___", state 2004, "(1)" - line 391, "pan.___", state 2004, "(1)" - line 389, "pan.___", state 2009, "((i<1))" - line 389, "pan.___", state 2009, "((i>=1))" - line 396, "pan.___", state 2015, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2021, "(1)" - line 396, "pan.___", state 2022, "(1)" - line 396, "pan.___", state 2022, "(1)" - line 400, "pan.___", state 2029, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2035, "(1)" - line 400, "pan.___", state 2036, "(1)" - line 400, "pan.___", state 2036, "(1)" - line 398, "pan.___", state 2041, "((i<2))" - line 398, "pan.___", state 2041, "((i>=2))" - line 404, "pan.___", state 2048, "(1)" - line 404, "pan.___", state 2049, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2049, "else" - line 404, "pan.___", state 2052, "(1)" - line 404, "pan.___", state 2053, "(1)" - line 404, "pan.___", state 2053, "(1)" - line 408, "pan.___", state 2061, "(1)" - line 408, "pan.___", state 2062, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2062, "else" - line 408, "pan.___", state 2065, "(1)" - line 408, "pan.___", state 2066, "(1)" - line 408, "pan.___", state 2066, "(1)" - line 406, "pan.___", state 2071, "((i<1))" - line 406, "pan.___", state 2071, "((i>=1))" - line 413, "pan.___", state 2078, "(1)" - line 413, "pan.___", state 2079, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2079, "else" - line 413, "pan.___", state 2082, "(1)" - line 413, "pan.___", state 2083, "(1)" - line 413, "pan.___", state 2083, "(1)" - line 417, "pan.___", state 2091, "(1)" - line 417, "pan.___", state 2092, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2092, "else" - line 417, "pan.___", state 2095, "(1)" - line 417, "pan.___", state 2096, "(1)" - line 417, "pan.___", state 2096, "(1)" - line 422, "pan.___", state 2105, "(1)" - line 422, "pan.___", state 2105, "(1)" - line 387, "pan.___", state 2112, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2118, "(1)" - line 391, "pan.___", state 2126, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2132, "(1)" - line 391, "pan.___", state 2133, "(1)" - line 391, "pan.___", state 2133, "(1)" - line 389, "pan.___", state 2138, "((i<1))" - line 389, "pan.___", state 2138, "((i>=1))" - line 396, "pan.___", state 2144, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2150, "(1)" - line 396, "pan.___", state 2151, "(1)" - line 396, "pan.___", state 2151, "(1)" - line 400, "pan.___", state 2158, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2164, "(1)" - line 400, "pan.___", state 2165, "(1)" - line 400, "pan.___", state 2165, "(1)" - line 398, "pan.___", state 2170, "((i<2))" - line 398, "pan.___", state 2170, "((i>=2))" - line 404, "pan.___", state 2177, "(1)" - line 404, "pan.___", state 2178, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2178, "else" - line 404, "pan.___", state 2181, "(1)" - line 404, "pan.___", state 2182, "(1)" - line 404, "pan.___", state 2182, "(1)" - line 408, "pan.___", state 2190, "(1)" - line 408, "pan.___", state 2191, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2191, "else" - line 408, "pan.___", state 2194, "(1)" - line 408, "pan.___", state 2195, "(1)" - line 408, "pan.___", state 2195, "(1)" - line 406, "pan.___", state 2200, "((i<1))" - line 406, "pan.___", state 2200, "((i>=1))" - line 413, "pan.___", state 2207, "(1)" - line 413, "pan.___", state 2208, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2208, "else" - line 413, "pan.___", state 2211, "(1)" - line 413, "pan.___", state 2212, "(1)" - line 413, "pan.___", state 2212, "(1)" - line 417, "pan.___", state 2220, "(1)" - line 417, "pan.___", state 2221, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2221, "else" - line 417, "pan.___", state 2224, "(1)" - line 417, "pan.___", state 2225, "(1)" - line 417, "pan.___", state 2225, "(1)" - line 415, "pan.___", state 2230, "((i<2))" - line 415, "pan.___", state 2230, "((i>=2))" - line 422, "pan.___", state 2234, "(1)" - line 422, "pan.___", state 2234, "(1)" - line 387, "pan.___", state 2243, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2245, "(1)" - line 387, "pan.___", state 2246, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2246, "else" - line 387, "pan.___", state 2249, "(1)" - line 391, "pan.___", state 2257, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2259, "(1)" - line 391, "pan.___", state 2260, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2260, "else" - line 391, "pan.___", state 2263, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 391, "pan.___", state 2264, "(1)" - line 389, "pan.___", state 2269, "((i<1))" - line 389, "pan.___", state 2269, "((i>=1))" - line 396, "pan.___", state 2275, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2277, "(1)" - line 396, "pan.___", state 2278, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2278, "else" - line 396, "pan.___", state 2281, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 396, "pan.___", state 2282, "(1)" - line 400, "pan.___", state 2289, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2291, "(1)" - line 400, "pan.___", state 2292, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2292, "else" - line 400, "pan.___", state 2295, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 400, "pan.___", state 2296, "(1)" - line 398, "pan.___", state 2301, "((i<2))" - line 398, "pan.___", state 2301, "((i>=2))" - line 404, "pan.___", state 2308, "(1)" - line 404, "pan.___", state 2309, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2309, "else" - line 404, "pan.___", state 2312, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 404, "pan.___", state 2313, "(1)" - line 408, "pan.___", state 2321, "(1)" - line 408, "pan.___", state 2322, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2322, "else" - line 408, "pan.___", state 2325, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 408, "pan.___", state 2326, "(1)" - line 406, "pan.___", state 2331, "((i<1))" - line 406, "pan.___", state 2331, "((i>=1))" - line 413, "pan.___", state 2338, "(1)" - line 413, "pan.___", state 2339, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2339, "else" - line 413, "pan.___", state 2342, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 413, "pan.___", state 2343, "(1)" - line 417, "pan.___", state 2351, "(1)" - line 417, "pan.___", state 2352, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2352, "else" - line 417, "pan.___", state 2355, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 417, "pan.___", state 2356, "(1)" - line 415, "pan.___", state 2361, "((i<2))" - line 415, "pan.___", state 2361, "((i>=2))" - line 422, "pan.___", state 2365, "(1)" - line 422, "pan.___", state 2365, "(1)" - line 710, "pan.___", state 2368, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 710, "pan.___", state 2369, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 710, "pan.___", state 2370, "(1)" - line 387, "pan.___", state 2377, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2383, "(1)" - line 391, "pan.___", state 2393, "(1)" - line 391, "pan.___", state 2394, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2394, "else" - line 391, "pan.___", state 2397, "(1)" - line 391, "pan.___", state 2398, "(1)" - line 391, "pan.___", state 2398, "(1)" - line 389, "pan.___", state 2403, "((i<1))" - line 389, "pan.___", state 2403, "((i>=1))" - line 396, "pan.___", state 2409, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2415, "(1)" - line 396, "pan.___", state 2416, "(1)" - line 396, "pan.___", state 2416, "(1)" - line 400, "pan.___", state 2423, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2429, "(1)" - line 400, "pan.___", state 2430, "(1)" - line 400, "pan.___", state 2430, "(1)" - line 398, "pan.___", state 2435, "((i<2))" - line 398, "pan.___", state 2435, "((i>=2))" - line 404, "pan.___", state 2442, "(1)" - line 404, "pan.___", state 2443, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2443, "else" - line 404, "pan.___", state 2446, "(1)" - line 404, "pan.___", state 2447, "(1)" - line 404, "pan.___", state 2447, "(1)" - line 408, "pan.___", state 2455, "(1)" - line 408, "pan.___", state 2456, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2456, "else" - line 408, "pan.___", state 2459, "(1)" - line 408, "pan.___", state 2460, "(1)" - line 408, "pan.___", state 2460, "(1)" - line 406, "pan.___", state 2465, "((i<1))" - line 406, "pan.___", state 2465, "((i>=1))" - line 413, "pan.___", state 2472, "(1)" - line 413, "pan.___", state 2473, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2473, "else" - line 413, "pan.___", state 2476, "(1)" - line 413, "pan.___", state 2477, "(1)" - line 413, "pan.___", state 2477, "(1)" - line 417, "pan.___", state 2485, "(1)" - line 417, "pan.___", state 2486, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2486, "else" - line 417, "pan.___", state 2489, "(1)" - line 417, "pan.___", state 2490, "(1)" - line 417, "pan.___", state 2490, "(1)" - line 422, "pan.___", state 2499, "(1)" - line 422, "pan.___", state 2499, "(1)" - line 387, "pan.___", state 2512, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2526, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2544, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2558, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2577, "(1)" - line 408, "pan.___", state 2590, "(1)" - line 413, "pan.___", state 2607, "(1)" - line 417, "pan.___", state 2620, "(1)" - line 387, "pan.___", state 2641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2655, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2706, "(1)" - line 408, "pan.___", state 2719, "(1)" - line 413, "pan.___", state 2736, "(1)" - line 417, "pan.___", state 2749, "(1)" - line 227, "pan.___", state 2782, "(1)" - line 231, "pan.___", state 2790, "(1)" - line 231, "pan.___", state 2791, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 2791, "else" - line 229, "pan.___", state 2796, "((i<1))" - line 229, "pan.___", state 2796, "((i>=1))" - line 235, "pan.___", state 2802, "(1)" - line 235, "pan.___", state 2803, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 2803, "else" - line 239, "pan.___", state 2810, "(1)" - line 239, "pan.___", state 2811, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 2811, "else" - line 244, "pan.___", state 2820, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 2820, "else" - line 227, "pan.___", state 2825, "(1)" - line 231, "pan.___", state 2833, "(1)" - line 235, "pan.___", state 2845, "(1)" - line 239, "pan.___", state 2853, "(1)" - line 870, "pan.___", state 2870, "-end-" - (659 of 2870 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 83, "(1)" - line 408, "pan.___", state 96, "(1)" - line 413, "pan.___", state 113, "(1)" - line 417, "pan.___", state 126, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 217, "(1)" - line 391, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 231, "(1)" - line 391, "pan.___", state 232, "(1)" - line 391, "pan.___", state 232, "(1)" - line 389, "pan.___", state 237, "((i<1))" - line 389, "pan.___", state 237, "((i>=1))" - line 396, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 249, "(1)" - line 396, "pan.___", state 250, "(1)" - line 396, "pan.___", state 250, "(1)" - line 400, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 263, "(1)" - line 400, "pan.___", state 264, "(1)" - line 400, "pan.___", state 264, "(1)" - line 398, "pan.___", state 269, "((i<2))" - line 398, "pan.___", state 269, "((i>=2))" - line 404, "pan.___", state 276, "(1)" - line 404, "pan.___", state 277, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 277, "else" - line 404, "pan.___", state 280, "(1)" - line 404, "pan.___", state 281, "(1)" - line 404, "pan.___", state 281, "(1)" - line 408, "pan.___", state 289, "(1)" - line 408, "pan.___", state 290, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 290, "else" - line 408, "pan.___", state 293, "(1)" - line 408, "pan.___", state 294, "(1)" - line 408, "pan.___", state 294, "(1)" - line 406, "pan.___", state 299, "((i<1))" - line 406, "pan.___", state 299, "((i>=1))" - line 413, "pan.___", state 306, "(1)" - line 413, "pan.___", state 307, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 307, "else" - line 413, "pan.___", state 310, "(1)" - line 413, "pan.___", state 311, "(1)" - line 413, "pan.___", state 311, "(1)" - line 417, "pan.___", state 319, "(1)" - line 417, "pan.___", state 320, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 320, "else" - line 417, "pan.___", state 323, "(1)" - line 417, "pan.___", state 324, "(1)" - line 417, "pan.___", state 324, "(1)" - line 415, "pan.___", state 329, "((i<2))" - line 415, "pan.___", state 329, "((i>=2))" - line 422, "pan.___", state 333, "(1)" - line 422, "pan.___", state 333, "(1)" - line 387, "pan.___", state 344, "(1)" - line 387, "pan.___", state 345, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 345, "else" - line 387, "pan.___", state 348, "(1)" - line 391, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 362, "(1)" - line 391, "pan.___", state 363, "(1)" - line 391, "pan.___", state 363, "(1)" - line 389, "pan.___", state 368, "((i<1))" - line 389, "pan.___", state 368, "((i>=1))" - line 396, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 380, "(1)" - line 396, "pan.___", state 381, "(1)" - line 396, "pan.___", state 381, "(1)" - line 400, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 394, "(1)" - line 400, "pan.___", state 395, "(1)" - line 400, "pan.___", state 395, "(1)" - line 398, "pan.___", state 400, "((i<2))" - line 398, "pan.___", state 400, "((i>=2))" - line 404, "pan.___", state 407, "(1)" - line 404, "pan.___", state 408, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 408, "else" - line 404, "pan.___", state 411, "(1)" - line 404, "pan.___", state 412, "(1)" - line 404, "pan.___", state 412, "(1)" - line 408, "pan.___", state 420, "(1)" - line 408, "pan.___", state 421, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 421, "else" - line 408, "pan.___", state 424, "(1)" - line 408, "pan.___", state 425, "(1)" - line 408, "pan.___", state 425, "(1)" - line 406, "pan.___", state 430, "((i<1))" - line 406, "pan.___", state 430, "((i>=1))" - line 413, "pan.___", state 437, "(1)" - line 413, "pan.___", state 438, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 438, "else" - line 413, "pan.___", state 441, "(1)" - line 413, "pan.___", state 442, "(1)" - line 413, "pan.___", state 442, "(1)" - line 417, "pan.___", state 450, "(1)" - line 417, "pan.___", state 451, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 451, "else" - line 417, "pan.___", state 454, "(1)" - line 417, "pan.___", state 455, "(1)" - line 417, "pan.___", state 455, "(1)" - line 415, "pan.___", state 460, "((i<2))" - line 415, "pan.___", state 460, "((i>=2))" - line 422, "pan.___", state 464, "(1)" - line 422, "pan.___", state 464, "(1)" - line 1056, "pan.___", state 475, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<8)|(1<<7))))" - line 387, "pan.___", state 480, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 486, "(1)" - line 391, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 500, "(1)" - line 391, "pan.___", state 501, "(1)" - line 391, "pan.___", state 501, "(1)" - line 389, "pan.___", state 506, "((i<1))" - line 389, "pan.___", state 506, "((i>=1))" - line 396, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 518, "(1)" - line 396, "pan.___", state 519, "(1)" - line 396, "pan.___", state 519, "(1)" - line 400, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 532, "(1)" - line 400, "pan.___", state 533, "(1)" - line 400, "pan.___", state 533, "(1)" - line 398, "pan.___", state 538, "((i<2))" - line 398, "pan.___", state 538, "((i>=2))" - line 404, "pan.___", state 545, "(1)" - line 404, "pan.___", state 546, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 546, "else" - line 404, "pan.___", state 549, "(1)" - line 404, "pan.___", state 550, "(1)" - line 404, "pan.___", state 550, "(1)" - line 408, "pan.___", state 558, "(1)" - line 408, "pan.___", state 559, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 559, "else" - line 408, "pan.___", state 562, "(1)" - line 408, "pan.___", state 563, "(1)" - line 408, "pan.___", state 563, "(1)" - line 406, "pan.___", state 568, "((i<1))" - line 406, "pan.___", state 568, "((i>=1))" - line 413, "pan.___", state 575, "(1)" - line 413, "pan.___", state 576, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 576, "else" - line 413, "pan.___", state 579, "(1)" - line 413, "pan.___", state 580, "(1)" - line 413, "pan.___", state 580, "(1)" - line 417, "pan.___", state 588, "(1)" - line 417, "pan.___", state 589, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 589, "else" - line 417, "pan.___", state 592, "(1)" - line 417, "pan.___", state 593, "(1)" - line 417, "pan.___", state 593, "(1)" - line 422, "pan.___", state 602, "(1)" - line 422, "pan.___", state 602, "(1)" - line 387, "pan.___", state 609, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 615, "(1)" - line 391, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 629, "(1)" - line 391, "pan.___", state 630, "(1)" - line 391, "pan.___", state 630, "(1)" - line 389, "pan.___", state 635, "((i<1))" - line 389, "pan.___", state 635, "((i>=1))" - line 396, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 647, "(1)" - line 396, "pan.___", state 648, "(1)" - line 396, "pan.___", state 648, "(1)" - line 400, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 661, "(1)" - line 400, "pan.___", state 662, "(1)" - line 400, "pan.___", state 662, "(1)" - line 398, "pan.___", state 667, "((i<2))" - line 398, "pan.___", state 667, "((i>=2))" - line 404, "pan.___", state 674, "(1)" - line 404, "pan.___", state 675, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 675, "else" - line 404, "pan.___", state 678, "(1)" - line 404, "pan.___", state 679, "(1)" - line 404, "pan.___", state 679, "(1)" - line 408, "pan.___", state 687, "(1)" - line 408, "pan.___", state 688, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 688, "else" - line 408, "pan.___", state 691, "(1)" - line 408, "pan.___", state 692, "(1)" - line 408, "pan.___", state 692, "(1)" - line 406, "pan.___", state 697, "((i<1))" - line 406, "pan.___", state 697, "((i>=1))" - line 413, "pan.___", state 704, "(1)" - line 413, "pan.___", state 705, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 705, "else" - line 413, "pan.___", state 708, "(1)" - line 413, "pan.___", state 709, "(1)" - line 413, "pan.___", state 709, "(1)" - line 417, "pan.___", state 717, "(1)" - line 417, "pan.___", state 718, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 718, "else" - line 417, "pan.___", state 721, "(1)" - line 417, "pan.___", state 722, "(1)" - line 417, "pan.___", state 722, "(1)" - line 415, "pan.___", state 727, "((i<2))" - line 415, "pan.___", state 727, "((i>=2))" - line 422, "pan.___", state 731, "(1)" - line 422, "pan.___", state 731, "(1)" - line 387, "pan.___", state 742, "(1)" - line 387, "pan.___", state 743, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 743, "else" - line 387, "pan.___", state 746, "(1)" - line 391, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 760, "(1)" - line 391, "pan.___", state 761, "(1)" - line 391, "pan.___", state 761, "(1)" - line 389, "pan.___", state 766, "((i<1))" - line 389, "pan.___", state 766, "((i>=1))" - line 396, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 778, "(1)" - line 396, "pan.___", state 779, "(1)" - line 396, "pan.___", state 779, "(1)" - line 400, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 792, "(1)" - line 400, "pan.___", state 793, "(1)" - line 400, "pan.___", state 793, "(1)" - line 398, "pan.___", state 798, "((i<2))" - line 398, "pan.___", state 798, "((i>=2))" - line 404, "pan.___", state 805, "(1)" - line 404, "pan.___", state 806, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 806, "else" - line 404, "pan.___", state 809, "(1)" - line 404, "pan.___", state 810, "(1)" - line 404, "pan.___", state 810, "(1)" - line 408, "pan.___", state 818, "(1)" - line 408, "pan.___", state 819, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 819, "else" - line 408, "pan.___", state 822, "(1)" - line 408, "pan.___", state 823, "(1)" - line 408, "pan.___", state 823, "(1)" - line 406, "pan.___", state 828, "((i<1))" - line 406, "pan.___", state 828, "((i>=1))" - line 413, "pan.___", state 835, "(1)" - line 413, "pan.___", state 836, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 836, "else" - line 413, "pan.___", state 839, "(1)" - line 413, "pan.___", state 840, "(1)" - line 413, "pan.___", state 840, "(1)" - line 417, "pan.___", state 848, "(1)" - line 417, "pan.___", state 849, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 849, "else" - line 417, "pan.___", state 852, "(1)" - line 417, "pan.___", state 853, "(1)" - line 417, "pan.___", state 853, "(1)" - line 415, "pan.___", state 858, "((i<2))" - line 415, "pan.___", state 858, "((i>=2))" - line 422, "pan.___", state 862, "(1)" - line 422, "pan.___", state 862, "(1)" - line 1113, "pan.___", state 872, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 250, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 1026, "((i<1))" - line 252, "pan.___", state 1026, "((i>=1))" - line 258, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 1048, "((i<2))" - line 260, "pan.___", state 1048, "((i>=2))" - line 227, "pan.___", state 1056, "(1)" - line 231, "pan.___", state 1064, "(1)" - line 231, "pan.___", state 1065, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1065, "else" - line 229, "pan.___", state 1070, "((i<1))" - line 229, "pan.___", state 1070, "((i>=1))" - line 235, "pan.___", state 1076, "(1)" - line 235, "pan.___", state 1077, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1077, "else" - line 239, "pan.___", state 1084, "(1)" - line 239, "pan.___", state 1085, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1085, "else" - line 244, "pan.___", state 1094, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1094, "else" - line 250, "pan.___", state 1101, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1103, "(1)" - line 254, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1112, "(1)" - line 254, "pan.___", state 1113, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1113, "else" - line 252, "pan.___", state 1118, "((i<1))" - line 252, "pan.___", state 1118, "((i>=1))" - line 258, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1125, "(1)" - line 258, "pan.___", state 1126, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1126, "else" - line 262, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1134, "(1)" - line 262, "pan.___", state 1135, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1135, "else" - line 260, "pan.___", state 1140, "((i<2))" - line 260, "pan.___", state 1140, "((i>=2))" - line 227, "pan.___", state 1148, "(1)" - line 231, "pan.___", state 1156, "(1)" - line 231, "pan.___", state 1157, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1157, "else" - line 229, "pan.___", state 1162, "((i<1))" - line 229, "pan.___", state 1162, "((i>=1))" - line 235, "pan.___", state 1168, "(1)" - line 235, "pan.___", state 1169, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1169, "else" - line 239, "pan.___", state 1176, "(1)" - line 239, "pan.___", state 1177, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1177, "else" - line 244, "pan.___", state 1186, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1186, "else" - line 1180, "pan.___", state 1189, "i = 0" - line 1180, "pan.___", state 1191, "reader_barrier = 1" - line 1180, "pan.___", state 1202, "((i<1))" - line 1180, "pan.___", state 1202, "((i>=1))" - line 250, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1209, "(1)" - line 254, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1218, "(1)" - line 254, "pan.___", state 1219, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1219, "else" - line 252, "pan.___", state 1224, "((i<1))" - line 252, "pan.___", state 1224, "((i>=1))" - line 258, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1231, "(1)" - line 258, "pan.___", state 1232, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1232, "else" - line 262, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1240, "(1)" - line 262, "pan.___", state 1241, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1241, "else" - line 260, "pan.___", state 1246, "((i<2))" - line 260, "pan.___", state 1246, "((i>=2))" - line 227, "pan.___", state 1254, "(1)" - line 231, "pan.___", state 1262, "(1)" - line 231, "pan.___", state 1263, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1263, "else" - line 229, "pan.___", state 1268, "((i<1))" - line 229, "pan.___", state 1268, "((i>=1))" - line 235, "pan.___", state 1274, "(1)" - line 235, "pan.___", state 1275, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1275, "else" - line 239, "pan.___", state 1282, "(1)" - line 239, "pan.___", state 1283, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1283, "else" - line 244, "pan.___", state 1292, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1292, "else" - line 277, "pan.___", state 1294, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1294, "else" - line 1180, "pan.___", state 1295, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1180, "pan.___", state 1295, "else" - line 250, "pan.___", state 1299, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1301, "(1)" - line 254, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1310, "(1)" - line 254, "pan.___", state 1311, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1311, "else" - line 252, "pan.___", state 1316, "((i<1))" - line 252, "pan.___", state 1316, "((i>=1))" - line 258, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1323, "(1)" - line 258, "pan.___", state 1324, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1324, "else" - line 262, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1332, "(1)" - line 262, "pan.___", state 1333, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1333, "else" - line 260, "pan.___", state 1338, "((i<2))" - line 260, "pan.___", state 1338, "((i>=2))" - line 227, "pan.___", state 1346, "(1)" - line 231, "pan.___", state 1354, "(1)" - line 231, "pan.___", state 1355, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1355, "else" - line 229, "pan.___", state 1360, "((i<1))" - line 229, "pan.___", state 1360, "((i>=1))" - line 235, "pan.___", state 1366, "(1)" - line 235, "pan.___", state 1367, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1367, "else" - line 239, "pan.___", state 1374, "(1)" - line 239, "pan.___", state 1375, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1375, "else" - line 244, "pan.___", state 1384, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1384, "else" - line 1183, "pan.___", state 1387, "i = 0" - line 1183, "pan.___", state 1389, "reader_barrier = 1" - line 1183, "pan.___", state 1400, "((i<1))" - line 1183, "pan.___", state 1400, "((i>=1))" - line 250, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1407, "(1)" - line 254, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1416, "(1)" - line 254, "pan.___", state 1417, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1417, "else" - line 252, "pan.___", state 1422, "((i<1))" - line 252, "pan.___", state 1422, "((i>=1))" - line 258, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1429, "(1)" - line 258, "pan.___", state 1430, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1430, "else" - line 262, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1438, "(1)" - line 262, "pan.___", state 1439, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1439, "else" - line 260, "pan.___", state 1444, "((i<2))" - line 260, "pan.___", state 1444, "((i>=2))" - line 227, "pan.___", state 1452, "(1)" - line 231, "pan.___", state 1460, "(1)" - line 231, "pan.___", state 1461, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1461, "else" - line 229, "pan.___", state 1466, "((i<1))" - line 229, "pan.___", state 1466, "((i>=1))" - line 235, "pan.___", state 1472, "(1)" - line 235, "pan.___", state 1473, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1473, "else" - line 239, "pan.___", state 1480, "(1)" - line 239, "pan.___", state 1481, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1481, "else" - line 244, "pan.___", state 1490, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1490, "else" - line 277, "pan.___", state 1492, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1492, "else" - line 1183, "pan.___", state 1493, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1183, "pan.___", state 1493, "else" - line 250, "pan.___", state 1497, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 1514, "((i<1))" - line 252, "pan.___", state 1514, "((i>=1))" - line 258, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 1536, "((i<2))" - line 260, "pan.___", state 1536, "((i>=2))" - line 227, "pan.___", state 1544, "(1)" - line 231, "pan.___", state 1552, "(1)" - line 231, "pan.___", state 1553, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1553, "else" - line 229, "pan.___", state 1558, "((i<1))" - line 229, "pan.___", state 1558, "((i>=1))" - line 235, "pan.___", state 1564, "(1)" - line 235, "pan.___", state 1565, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1565, "else" - line 239, "pan.___", state 1572, "(1)" - line 239, "pan.___", state 1573, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1573, "else" - line 244, "pan.___", state 1582, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1582, "else" - line 1187, "pan.___", state 1585, "i = 0" - line 1187, "pan.___", state 1587, "reader_barrier = 1" - line 1187, "pan.___", state 1598, "((i<1))" - line 1187, "pan.___", state 1598, "((i>=1))" - line 250, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 1620, "((i<1))" - line 252, "pan.___", state 1620, "((i>=1))" - line 258, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 1642, "((i<2))" - line 260, "pan.___", state 1642, "((i>=2))" - line 227, "pan.___", state 1650, "(1)" - line 231, "pan.___", state 1658, "(1)" - line 231, "pan.___", state 1659, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1659, "else" - line 229, "pan.___", state 1664, "((i<1))" - line 229, "pan.___", state 1664, "((i>=1))" - line 235, "pan.___", state 1670, "(1)" - line 235, "pan.___", state 1671, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1671, "else" - line 239, "pan.___", state 1678, "(1)" - line 239, "pan.___", state 1679, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1679, "else" - line 244, "pan.___", state 1688, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1688, "else" - line 1191, "pan.___", state 1694, "-end-" - (328 of 1694 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1252, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 0.03 seconds -pan: rate 32966.667 states/second -pan: avg transition delay 1.6739e-06 usec -cp .input.spin urcu_progress_reader.spin.input -cp .input.spin.trail urcu_progress_reader.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input deleted file mode 100644 index 9f350f2..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define READER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input.trail deleted file mode 100644 index 46f9f69..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_reader.spin.input.trail +++ /dev/null @@ -1,2937 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4644 -2:3:4564 -3:3:4567 -4:3:4567 -5:3:4570 -6:3:4578 -7:3:4578 -8:3:4581 -9:3:4587 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-2896:1:2713 -2897:1:2714 -2898:1:2715 -2899:1:2726 -2900:1:2731 -2901:1:2732 -2902:1:2743 -2903:1:2744 -2904:1:2745 -2905:1:2743 -2906:1:2744 -2907:1:2745 -2908:1:2756 -2909:1:2763 -2910:1:2767 -2911:0:4648 -2912:2:3765 -2913:0:4648 -2914:2:3764 -2915:0:4648 -2916:1:15 -2917:0:4648 -2918:2:3765 -2919:0:4648 -2920:2:3764 -2921:0:4648 -2922:1:16 --1:-1:-1 -2923:0:4648 -2924:2:3765 -2925:0:4648 -2926:2:3764 -2927:0:4648 -2928:2:3765 -2929:0:4648 -2930:2:3764 -2931:0:4648 -2932:2:3765 -2933:0:4648 -2934:2:3764 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.define deleted file mode 100644 index 1e4417f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.define +++ /dev/null @@ -1 +0,0 @@ -#define WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.log deleted file mode 100644 index 09dde01..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.log +++ /dev/null @@ -1,677 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1245) -depth 23: Claim reached state 9 (line 1250) -depth 51: Claim reached state 9 (line 1249) -pan: acceptance cycle (at depth 573) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 3997, errors: 1 - 24768 states, stored (55970 visited) - 10426084 states, matched - 10482054 transitions (= visited+matched) - 56520057 atomic steps -hash conflicts: 68749 (resolved) - -Stats on memory usage (in Megabytes): - 2.740 equivalent memory usage for states (stored*(State-vector + overhead)) - 2.770 actual memory usage for states (unsuccessful compression: 101.10%) - state-vector as stored = 89 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 468.498 total actual memory usage - -unreached in proctype urcu_reader - line 647, "pan.___", state 20, "(1)" - line 250, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 79, "(1)" - line 231, "pan.___", state 87, "(1)" - line 235, "pan.___", state 99, "(1)" - line 239, "pan.___", state 107, "(1)" - line 387, "pan.___", state 133, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 165, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 179, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 198, "(1)" - line 413, "pan.___", state 228, "(1)" - line 417, "pan.___", state 241, "(1)" - line 663, "pan.___", state 262, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 387, "pan.___", state 269, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 301, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 315, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 334, "(1)" - line 413, "pan.___", state 364, "(1)" - line 417, "pan.___", state 377, "(1)" - line 387, "pan.___", state 398, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 430, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 444, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 463, "(1)" - line 413, "pan.___", state 493, "(1)" - line 417, "pan.___", state 506, "(1)" - line 387, "pan.___", state 529, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 531, "(1)" - line 387, "pan.___", state 532, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 532, "else" - line 387, "pan.___", state 535, "(1)" - line 391, "pan.___", state 543, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 545, "(1)" - line 391, "pan.___", state 546, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 546, "else" - line 391, "pan.___", state 549, "(1)" - line 391, "pan.___", state 550, "(1)" - line 391, "pan.___", state 550, "(1)" - line 389, "pan.___", state 555, "((i<1))" - line 389, "pan.___", state 555, "((i>=1))" - line 396, "pan.___", state 561, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 563, "(1)" - line 396, "pan.___", state 564, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 564, "else" - line 396, "pan.___", state 567, "(1)" - line 396, "pan.___", state 568, "(1)" - line 396, "pan.___", state 568, "(1)" - line 400, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 577, "(1)" - line 400, "pan.___", state 578, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 578, "else" - line 400, "pan.___", state 581, "(1)" - line 400, "pan.___", state 582, "(1)" - line 400, "pan.___", state 582, "(1)" - line 398, "pan.___", state 587, "((i<2))" - line 398, "pan.___", state 587, "((i>=2))" - line 404, "pan.___", state 594, "(1)" - line 404, "pan.___", state 595, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 595, "else" - line 404, "pan.___", state 598, "(1)" - line 404, "pan.___", state 599, "(1)" - line 404, "pan.___", state 599, "(1)" - line 408, "pan.___", state 607, "(1)" - line 408, "pan.___", state 608, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 608, "else" - line 408, "pan.___", state 611, "(1)" - line 408, "pan.___", state 612, "(1)" - line 408, "pan.___", state 612, "(1)" - line 406, "pan.___", state 617, "((i<1))" - line 406, "pan.___", state 617, "((i>=1))" - line 413, "pan.___", state 624, "(1)" - line 413, "pan.___", state 625, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 625, "else" - line 413, "pan.___", state 628, "(1)" - line 413, "pan.___", state 629, "(1)" - line 413, "pan.___", state 629, "(1)" - line 417, "pan.___", state 637, "(1)" - line 417, "pan.___", state 638, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 638, "else" - line 417, "pan.___", state 641, "(1)" - line 417, "pan.___", state 642, "(1)" - line 417, "pan.___", state 642, "(1)" - line 415, "pan.___", state 647, "((i<2))" - line 415, "pan.___", state 647, "((i>=2))" - line 422, "pan.___", state 651, "(1)" - line 422, "pan.___", state 651, "(1)" - line 663, "pan.___", state 654, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 663, "pan.___", state 655, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 663, "pan.___", state 656, "(1)" - line 387, "pan.___", state 663, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 695, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 709, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 728, "(1)" - line 413, "pan.___", state 758, "(1)" - line 417, "pan.___", state 771, "(1)" - line 387, "pan.___", state 799, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 801, "(1)" - line 387, "pan.___", state 802, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 802, "else" - line 387, "pan.___", state 805, "(1)" - line 391, "pan.___", state 813, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 815, "(1)" - line 391, "pan.___", state 816, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 816, "else" - line 391, "pan.___", state 819, "(1)" - line 391, "pan.___", state 820, "(1)" - line 391, "pan.___", state 820, "(1)" - line 389, "pan.___", state 825, "((i<1))" - line 389, "pan.___", state 825, "((i>=1))" - line 396, "pan.___", state 831, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 833, "(1)" - line 396, "pan.___", state 834, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 834, "else" - line 396, "pan.___", state 837, "(1)" - line 396, "pan.___", state 838, "(1)" - line 396, "pan.___", state 838, "(1)" - line 400, "pan.___", state 845, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 847, "(1)" - line 400, "pan.___", state 848, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 848, "else" - line 400, "pan.___", state 851, "(1)" - line 400, "pan.___", state 852, "(1)" - line 400, "pan.___", state 852, "(1)" - line 398, "pan.___", state 857, "((i<2))" - line 398, "pan.___", state 857, "((i>=2))" - line 404, "pan.___", state 864, "(1)" - line 404, "pan.___", state 865, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 865, "else" - line 404, "pan.___", state 868, "(1)" - line 404, "pan.___", state 869, "(1)" - line 404, "pan.___", state 869, "(1)" - line 408, "pan.___", state 877, "(1)" - line 408, "pan.___", state 878, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 878, "else" - line 408, "pan.___", state 881, "(1)" - line 408, "pan.___", state 882, "(1)" - line 408, "pan.___", state 882, "(1)" - line 406, "pan.___", state 887, "((i<1))" - line 406, "pan.___", state 887, "((i>=1))" - line 413, "pan.___", state 894, "(1)" - line 413, "pan.___", state 895, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 895, "else" - line 413, "pan.___", state 898, "(1)" - line 413, "pan.___", state 899, "(1)" - line 413, "pan.___", state 899, "(1)" - line 417, "pan.___", state 907, "(1)" - line 417, "pan.___", state 908, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 908, "else" - line 417, "pan.___", state 911, "(1)" - line 417, "pan.___", state 912, "(1)" - line 417, "pan.___", state 912, "(1)" - line 422, "pan.___", state 921, "(1)" - line 422, "pan.___", state 921, "(1)" - line 387, "pan.___", state 928, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 930, "(1)" - line 387, "pan.___", state 931, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 931, "else" - line 387, "pan.___", state 934, "(1)" - line 391, "pan.___", state 942, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 944, "(1)" - line 391, "pan.___", state 945, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 945, "else" - line 391, "pan.___", state 948, "(1)" - line 391, "pan.___", state 949, "(1)" - line 391, "pan.___", state 949, "(1)" - line 389, "pan.___", state 954, "((i<1))" - line 389, "pan.___", state 954, "((i>=1))" - line 396, "pan.___", state 960, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 962, "(1)" - line 396, "pan.___", state 963, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 963, "else" - line 396, "pan.___", state 966, "(1)" - line 396, "pan.___", state 967, "(1)" - line 396, "pan.___", state 967, "(1)" - line 400, "pan.___", state 974, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 976, "(1)" - line 400, "pan.___", state 977, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 977, "else" - line 400, "pan.___", state 980, "(1)" - line 400, "pan.___", state 981, "(1)" - line 400, "pan.___", state 981, "(1)" - line 398, "pan.___", state 986, "((i<2))" - line 398, "pan.___", state 986, "((i>=2))" - line 404, "pan.___", state 993, "(1)" - line 404, "pan.___", state 994, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 994, "else" - line 404, "pan.___", state 997, "(1)" - line 404, "pan.___", state 998, "(1)" - line 404, "pan.___", state 998, "(1)" - line 408, "pan.___", state 1006, "(1)" - line 408, "pan.___", state 1007, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 1007, "else" - line 408, "pan.___", state 1010, "(1)" - line 408, "pan.___", state 1011, "(1)" - line 408, "pan.___", state 1011, "(1)" - line 406, "pan.___", state 1016, "((i<1))" - line 406, "pan.___", state 1016, "((i>=1))" - line 413, "pan.___", state 1023, "(1)" - line 413, "pan.___", state 1024, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 1024, "else" - line 413, "pan.___", state 1027, "(1)" - line 413, "pan.___", state 1028, "(1)" - line 413, "pan.___", state 1028, "(1)" - line 417, "pan.___", state 1036, "(1)" - line 417, "pan.___", state 1037, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 1037, "else" - line 417, "pan.___", state 1040, "(1)" - line 417, "pan.___", state 1041, "(1)" - line 417, "pan.___", state 1041, "(1)" - line 415, "pan.___", state 1046, "((i<2))" - line 415, "pan.___", state 1046, "((i>=2))" - line 422, "pan.___", state 1050, "(1)" - line 422, "pan.___", state 1050, "(1)" - line 671, "pan.___", state 1054, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 387, "pan.___", state 1059, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1091, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1105, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1124, "(1)" - line 413, "pan.___", state 1154, "(1)" - line 417, "pan.___", state 1167, "(1)" - line 387, "pan.___", state 1191, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1223, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1237, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1256, "(1)" - line 413, "pan.___", state 1286, "(1)" - line 417, "pan.___", state 1299, "(1)" - line 387, "pan.___", state 1324, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1356, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1370, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1389, "(1)" - line 413, "pan.___", state 1419, "(1)" - line 417, "pan.___", state 1432, "(1)" - line 387, "pan.___", state 1453, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1485, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1499, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1518, "(1)" - line 413, "pan.___", state 1548, "(1)" - line 417, "pan.___", state 1561, "(1)" - line 387, "pan.___", state 1587, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1619, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1633, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1652, "(1)" - line 413, "pan.___", state 1682, "(1)" - line 417, "pan.___", state 1695, "(1)" - line 387, "pan.___", state 1716, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1748, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1762, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1781, "(1)" - line 413, "pan.___", state 1811, "(1)" - line 417, "pan.___", state 1824, "(1)" - line 387, "pan.___", state 1848, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 1880, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1894, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1913, "(1)" - line 413, "pan.___", state 1943, "(1)" - line 417, "pan.___", state 1956, "(1)" - line 710, "pan.___", state 1977, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 387, "pan.___", state 1984, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2030, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2049, "(1)" - line 413, "pan.___", state 2079, "(1)" - line 417, "pan.___", state 2092, "(1)" - line 387, "pan.___", state 2113, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2145, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2159, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2178, "(1)" - line 413, "pan.___", state 2208, "(1)" - line 417, "pan.___", state 2221, "(1)" - line 387, "pan.___", state 2244, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 2246, "(1)" - line 387, "pan.___", state 2247, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 387, "pan.___", state 2247, "else" - line 387, "pan.___", state 2250, "(1)" - line 391, "pan.___", state 2258, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 2260, "(1)" - line 391, "pan.___", state 2261, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 391, "pan.___", state 2261, "else" - line 391, "pan.___", state 2264, "(1)" - line 391, "pan.___", state 2265, "(1)" - line 391, "pan.___", state 2265, "(1)" - line 389, "pan.___", state 2270, "((i<1))" - line 389, "pan.___", state 2270, "((i>=1))" - line 396, "pan.___", state 2276, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2278, "(1)" - line 396, "pan.___", state 2279, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2279, "else" - line 396, "pan.___", state 2282, "(1)" - line 396, "pan.___", state 2283, "(1)" - line 396, "pan.___", state 2283, "(1)" - line 400, "pan.___", state 2290, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2292, "(1)" - line 400, "pan.___", state 2293, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 400, "pan.___", state 2293, "else" - line 400, "pan.___", state 2296, "(1)" - line 400, "pan.___", state 2297, "(1)" - line 400, "pan.___", state 2297, "(1)" - line 398, "pan.___", state 2302, "((i<2))" - line 398, "pan.___", state 2302, "((i>=2))" - line 404, "pan.___", state 2309, "(1)" - line 404, "pan.___", state 2310, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 2310, "else" - line 404, "pan.___", state 2313, "(1)" - line 404, "pan.___", state 2314, "(1)" - line 404, "pan.___", state 2314, "(1)" - line 408, "pan.___", state 2322, "(1)" - line 408, "pan.___", state 2323, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 2323, "else" - line 408, "pan.___", state 2326, "(1)" - line 408, "pan.___", state 2327, "(1)" - line 408, "pan.___", state 2327, "(1)" - line 406, "pan.___", state 2332, "((i<1))" - line 406, "pan.___", state 2332, "((i>=1))" - line 413, "pan.___", state 2339, "(1)" - line 413, "pan.___", state 2340, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2340, "else" - line 413, "pan.___", state 2343, "(1)" - line 413, "pan.___", state 2344, "(1)" - line 413, "pan.___", state 2344, "(1)" - line 417, "pan.___", state 2352, "(1)" - line 417, "pan.___", state 2353, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 2353, "else" - line 417, "pan.___", state 2356, "(1)" - line 417, "pan.___", state 2357, "(1)" - line 417, "pan.___", state 2357, "(1)" - line 415, "pan.___", state 2362, "((i<2))" - line 415, "pan.___", state 2362, "((i>=2))" - line 422, "pan.___", state 2366, "(1)" - line 422, "pan.___", state 2366, "(1)" - line 710, "pan.___", state 2369, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 710, "pan.___", state 2370, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 710, "pan.___", state 2371, "(1)" - line 387, "pan.___", state 2378, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2410, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2424, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2443, "(1)" - line 413, "pan.___", state 2473, "(1)" - line 417, "pan.___", state 2486, "(1)" - line 387, "pan.___", state 2513, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2545, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2559, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2578, "(1)" - line 413, "pan.___", state 2608, "(1)" - line 417, "pan.___", state 2621, "(1)" - line 387, "pan.___", state 2642, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2674, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2688, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2707, "(1)" - line 413, "pan.___", state 2737, "(1)" - line 417, "pan.___", state 2750, "(1)" - line 227, "pan.___", state 2783, "(1)" - line 235, "pan.___", state 2803, "(1)" - line 239, "pan.___", state 2811, "(1)" - line 227, "pan.___", state 2826, "(1)" - line 235, "pan.___", state 2846, "(1)" - line 239, "pan.___", state 2854, "(1)" - line 870, "pan.___", state 2871, "-end-" - (279 of 2871 states) -unreached in proctype urcu_writer - line 387, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 387, "pan.___", state 24, "(1)" - line 391, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 38, "(1)" - line 391, "pan.___", state 39, "(1)" - line 391, "pan.___", state 39, "(1)" - line 389, "pan.___", state 44, "((i<1))" - line 389, "pan.___", state 44, "((i>=1))" - line 396, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 56, "(1)" - line 396, "pan.___", state 57, "(1)" - line 396, "pan.___", state 57, "(1)" - line 400, "pan.___", state 64, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 400, "pan.___", state 70, "(1)" - line 400, "pan.___", state 71, "(1)" - line 400, "pan.___", state 71, "(1)" - line 398, "pan.___", state 76, "((i<2))" - line 398, "pan.___", state 76, "((i>=2))" - line 404, "pan.___", state 83, "(1)" - line 404, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 404, "pan.___", state 84, "else" - line 404, "pan.___", state 87, "(1)" - line 404, "pan.___", state 88, "(1)" - line 404, "pan.___", state 88, "(1)" - line 408, "pan.___", state 96, "(1)" - line 408, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 408, "pan.___", state 97, "else" - line 408, "pan.___", state 100, "(1)" - line 408, "pan.___", state 101, "(1)" - line 408, "pan.___", state 101, "(1)" - line 406, "pan.___", state 106, "((i<1))" - line 406, "pan.___", state 106, "((i>=1))" - line 413, "pan.___", state 113, "(1)" - line 413, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 114, "else" - line 413, "pan.___", state 117, "(1)" - line 413, "pan.___", state 118, "(1)" - line 413, "pan.___", state 118, "(1)" - line 417, "pan.___", state 126, "(1)" - line 417, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 417, "pan.___", state 127, "else" - line 417, "pan.___", state 130, "(1)" - line 417, "pan.___", state 131, "(1)" - line 417, "pan.___", state 131, "(1)" - line 415, "pan.___", state 136, "((i<2))" - line 415, "pan.___", state 136, "((i>=2))" - line 422, "pan.___", state 140, "(1)" - line 422, "pan.___", state 140, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 166, "((i<1))" - line 252, "pan.___", state 166, "((i>=1))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 993, "pan.___", state 199, "old_data = cached_rcu_ptr.val[_pid]" - line 387, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 391, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 404, "pan.___", state 276, "(1)" - line 408, "pan.___", state 289, "(1)" - line 413, "pan.___", state 306, "(1)" - line 417, "pan.___", state 319, "(1)" - line 391, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 420, "(1)" - line 413, "pan.___", state 437, "(1)" - line 417, "pan.___", state 450, "(1)" - line 391, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 558, "(1)" - line 413, "pan.___", state 575, "(1)" - line 417, "pan.___", state 588, "(1)" - line 391, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 687, "(1)" - line 413, "pan.___", state 704, "(1)" - line 417, "pan.___", state 717, "(1)" - line 391, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 818, "(1)" - line 413, "pan.___", state 835, "(1)" - line 417, "pan.___", state 848, "(1)" - line 1113, "pan.___", state 872, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 920, "((i<1))" - line 252, "pan.___", state 920, "((i>=1))" - line 258, "pan.___", state 927, "(1)" - line 258, "pan.___", state 928, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 928, "else" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 942, "((i<2))" - line 260, "pan.___", state 942, "((i>=2))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 231, "pan.___", state 959, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 959, "else" - line 229, "pan.___", state 964, "((i<1))" - line 229, "pan.___", state 964, "((i>=1))" - line 235, "pan.___", state 970, "(1)" - line 235, "pan.___", state 971, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 971, "else" - line 239, "pan.___", state 978, "(1)" - line 239, "pan.___", state 979, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 979, "else" - line 244, "pan.___", state 988, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 988, "else" - line 250, "pan.___", state 1009, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1018, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1040, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1056, "(1)" - line 231, "pan.___", state 1064, "(1)" - line 235, "pan.___", state 1076, "(1)" - line 239, "pan.___", state 1084, "(1)" - line 250, "pan.___", state 1101, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1110, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 1118, "((i<1))" - line 252, "pan.___", state 1118, "((i>=1))" - line 258, "pan.___", state 1123, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1132, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 1140, "((i<2))" - line 260, "pan.___", state 1140, "((i>=2))" - line 227, "pan.___", state 1148, "(1)" - line 231, "pan.___", state 1156, "(1)" - line 231, "pan.___", state 1157, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1157, "else" - line 229, "pan.___", state 1162, "((i<1))" - line 229, "pan.___", state 1162, "((i>=1))" - line 235, "pan.___", state 1168, "(1)" - line 235, "pan.___", state 1169, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1169, "else" - line 239, "pan.___", state 1176, "(1)" - line 239, "pan.___", state 1177, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1177, "else" - line 244, "pan.___", state 1186, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1186, "else" - line 1180, "pan.___", state 1189, "i = 0" - line 1180, "pan.___", state 1191, "reader_barrier = 1" - line 1180, "pan.___", state 1202, "((i<1))" - line 1180, "pan.___", state 1202, "((i>=1))" - line 250, "pan.___", state 1207, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1216, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 1224, "((i<1))" - line 252, "pan.___", state 1224, "((i>=1))" - line 258, "pan.___", state 1229, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1238, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 260, "pan.___", state 1246, "((i<2))" - line 260, "pan.___", state 1246, "((i>=2))" - line 227, "pan.___", state 1254, "(1)" - line 231, "pan.___", state 1262, "(1)" - line 231, "pan.___", state 1263, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1263, "else" - line 229, "pan.___", state 1268, "((i<1))" - line 229, "pan.___", state 1268, "((i>=1))" - line 235, "pan.___", state 1274, "(1)" - line 235, "pan.___", state 1275, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1275, "else" - line 239, "pan.___", state 1282, "(1)" - line 239, "pan.___", state 1283, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1283, "else" - line 244, "pan.___", state 1292, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1292, "else" - line 250, "pan.___", state 1299, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1301, "(1)" - line 254, "pan.___", state 1308, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1310, "(1)" - line 254, "pan.___", state 1311, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1311, "else" - line 252, "pan.___", state 1316, "((i<1))" - line 252, "pan.___", state 1316, "((i>=1))" - line 258, "pan.___", state 1321, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1323, "(1)" - line 258, "pan.___", state 1324, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1324, "else" - line 262, "pan.___", state 1330, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1332, "(1)" - line 262, "pan.___", state 1333, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1333, "else" - line 260, "pan.___", state 1338, "((i<2))" - line 260, "pan.___", state 1338, "((i>=2))" - line 227, "pan.___", state 1346, "(1)" - line 231, "pan.___", state 1354, "(1)" - line 231, "pan.___", state 1355, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1355, "else" - line 229, "pan.___", state 1360, "((i<1))" - line 229, "pan.___", state 1360, "((i>=1))" - line 235, "pan.___", state 1366, "(1)" - line 235, "pan.___", state 1367, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1367, "else" - line 239, "pan.___", state 1374, "(1)" - line 239, "pan.___", state 1375, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1375, "else" - line 244, "pan.___", state 1384, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1384, "else" - line 1183, "pan.___", state 1387, "i = 0" - line 1183, "pan.___", state 1389, "reader_barrier = 1" - line 1183, "pan.___", state 1400, "((i<1))" - line 1183, "pan.___", state 1400, "((i>=1))" - line 250, "pan.___", state 1405, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1407, "(1)" - line 254, "pan.___", state 1414, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1416, "(1)" - line 254, "pan.___", state 1417, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1417, "else" - line 252, "pan.___", state 1422, "((i<1))" - line 252, "pan.___", state 1422, "((i>=1))" - line 258, "pan.___", state 1427, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1429, "(1)" - line 258, "pan.___", state 1430, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1430, "else" - line 262, "pan.___", state 1436, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1438, "(1)" - line 262, "pan.___", state 1439, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1439, "else" - line 260, "pan.___", state 1444, "((i<2))" - line 260, "pan.___", state 1444, "((i>=2))" - line 227, "pan.___", state 1452, "(1)" - line 231, "pan.___", state 1460, "(1)" - line 231, "pan.___", state 1461, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1461, "else" - line 229, "pan.___", state 1466, "((i<1))" - line 229, "pan.___", state 1466, "((i>=1))" - line 235, "pan.___", state 1472, "(1)" - line 235, "pan.___", state 1473, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1473, "else" - line 239, "pan.___", state 1480, "(1)" - line 239, "pan.___", state 1481, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1481, "else" - line 244, "pan.___", state 1490, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1490, "else" - line 277, "pan.___", state 1492, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1492, "else" - line 1183, "pan.___", state 1493, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 1183, "pan.___", state 1493, "else" - line 254, "pan.___", state 1506, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1519, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1544, "(1)" - line 231, "pan.___", state 1552, "(1)" - line 235, "pan.___", state 1564, "(1)" - line 239, "pan.___", state 1572, "(1)" - line 250, "pan.___", state 1603, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1612, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1625, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1634, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1650, "(1)" - line 231, "pan.___", state 1658, "(1)" - line 235, "pan.___", state 1670, "(1)" - line 239, "pan.___", state 1678, "(1)" - line 1191, "pan.___", state 1694, "-end-" - (192 of 1694 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1252, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 13.7 seconds -pan: rate 4094.3672 states/second -pan: avg transition delay 1.3041e-06 usec -cp .input.spin urcu_progress_writer.spin.input -cp .input.spin.trail urcu_progress_writer.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input deleted file mode 100644 index f1dd6fb..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input +++ /dev/null @@ -1,1227 +0,0 @@ -#define WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input.trail deleted file mode 100644 index e8b02f0..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer.spin.input.trail +++ /dev/null @@ -1,884 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4645 -2:3:4565 -3:3:4568 -4:3:4568 -5:3:4571 -6:3:4579 -7:3:4579 -8:3:4582 -9:3:4588 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-874:1:90 -875:1:95 -876:1:102 -877:1:103 -878:1:102 -879:1:103 -880:1:110 -881:1:114 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.define b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.define deleted file mode 100644 index 8d304f5..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.define +++ /dev/null @@ -1,2 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.log b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.log deleted file mode 100644 index d6f24ba..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.log +++ /dev/null @@ -1,620 +0,0 @@ -make[1]: Entering directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer_error.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1246) -depth 23: Claim reached state 9 (line 1251) -depth 51: Claim reached state 9 (line 1250) -pan: acceptance cycle (at depth 1200) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 3997, errors: 1 - 26291 states, stored (59381 visited) - 11000989 states, matched - 11060370 transitions (= visited+matched) - 60052117 atomic steps -hash conflicts: 84608 (resolved) - -Stats on memory usage (in Megabytes): - 2.908 equivalent memory usage for states (stored*(State-vector + overhead)) - 2.889 actual memory usage for states (compression: 99.33%) - state-vector as stored = 87 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 468.596 total actual memory usage - -unreached in proctype urcu_reader - line 648, "pan.___", state 20, "(1)" - line 251, "pan.___", state 32, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 79, "(1)" - line 232, "pan.___", state 87, "(1)" - line 236, "pan.___", state 99, "(1)" - line 240, "pan.___", state 107, "(1)" - line 388, "pan.___", state 133, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 165, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 179, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 198, "(1)" - line 414, "pan.___", state 228, "(1)" - line 418, "pan.___", state 241, "(1)" - line 664, "pan.___", state 262, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 388, "pan.___", state 269, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 301, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 315, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 334, "(1)" - line 414, "pan.___", state 364, "(1)" - line 418, "pan.___", state 377, "(1)" - line 388, "pan.___", state 398, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 430, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 444, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 463, "(1)" - line 414, "pan.___", state 493, "(1)" - line 418, "pan.___", state 506, "(1)" - line 388, "pan.___", state 529, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 531, "(1)" - line 388, "pan.___", state 532, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 388, "pan.___", state 532, "else" - line 388, "pan.___", state 535, "(1)" - line 392, "pan.___", state 543, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 545, "(1)" - line 392, "pan.___", state 546, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 392, "pan.___", state 546, "else" - line 392, "pan.___", state 549, "(1)" - line 392, "pan.___", state 550, "(1)" - line 392, "pan.___", state 550, "(1)" - line 390, "pan.___", state 555, "((i<1))" - line 390, "pan.___", state 555, "((i>=1))" - line 397, "pan.___", state 561, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 563, "(1)" - line 397, "pan.___", state 564, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 397, "pan.___", state 564, "else" - line 397, "pan.___", state 567, "(1)" - line 397, "pan.___", state 568, "(1)" - line 397, "pan.___", state 568, "(1)" - line 401, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 577, "(1)" - line 401, "pan.___", state 578, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 401, "pan.___", state 578, "else" - line 401, "pan.___", state 581, "(1)" - line 401, "pan.___", state 582, "(1)" - line 401, "pan.___", state 582, "(1)" - line 399, "pan.___", state 587, "((i<2))" - line 399, "pan.___", state 587, "((i>=2))" - line 405, "pan.___", state 594, "(1)" - line 405, "pan.___", state 595, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 595, "else" - line 405, "pan.___", state 598, "(1)" - line 405, "pan.___", state 599, "(1)" - line 405, "pan.___", state 599, "(1)" - line 409, "pan.___", state 607, "(1)" - line 409, "pan.___", state 608, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 608, "else" - line 409, "pan.___", state 611, "(1)" - line 409, "pan.___", state 612, "(1)" - line 409, "pan.___", state 612, "(1)" - line 407, "pan.___", state 617, "((i<1))" - line 407, "pan.___", state 617, "((i>=1))" - line 414, "pan.___", state 624, "(1)" - line 414, "pan.___", state 625, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 625, "else" - line 414, "pan.___", state 628, "(1)" - line 414, "pan.___", state 629, "(1)" - line 414, "pan.___", state 629, "(1)" - line 418, "pan.___", state 637, "(1)" - line 418, "pan.___", state 638, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 638, "else" - line 418, "pan.___", state 641, "(1)" - line 418, "pan.___", state 642, "(1)" - line 418, "pan.___", state 642, "(1)" - line 416, "pan.___", state 647, "((i<2))" - line 416, "pan.___", state 647, "((i>=2))" - line 423, "pan.___", state 651, "(1)" - line 423, "pan.___", state 651, "(1)" - line 664, "pan.___", state 654, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 664, "pan.___", state 655, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 664, "pan.___", state 656, "(1)" - line 388, "pan.___", state 663, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 695, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 709, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 728, "(1)" - line 414, "pan.___", state 758, "(1)" - line 418, "pan.___", state 771, "(1)" - line 388, "pan.___", state 799, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 801, "(1)" - line 388, "pan.___", state 802, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 388, "pan.___", state 802, "else" - line 388, "pan.___", state 805, "(1)" - line 392, "pan.___", state 813, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 815, "(1)" - line 392, "pan.___", state 816, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 392, "pan.___", state 816, "else" - line 392, "pan.___", state 819, "(1)" - line 392, "pan.___", state 820, "(1)" - line 392, "pan.___", state 820, "(1)" - line 390, "pan.___", state 825, "((i<1))" - line 390, "pan.___", state 825, "((i>=1))" - line 397, "pan.___", state 831, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 833, "(1)" - line 397, "pan.___", state 834, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 397, "pan.___", state 834, "else" - line 397, "pan.___", state 837, "(1)" - line 397, "pan.___", state 838, "(1)" - line 397, "pan.___", state 838, "(1)" - line 401, "pan.___", state 845, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 847, "(1)" - line 401, "pan.___", state 848, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 401, "pan.___", state 848, "else" - line 401, "pan.___", state 851, "(1)" - line 401, "pan.___", state 852, "(1)" - line 401, "pan.___", state 852, "(1)" - line 399, "pan.___", state 857, "((i<2))" - line 399, "pan.___", state 857, "((i>=2))" - line 405, "pan.___", state 864, "(1)" - line 405, "pan.___", state 865, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 865, "else" - line 405, "pan.___", state 868, "(1)" - line 405, "pan.___", state 869, "(1)" - line 405, "pan.___", state 869, "(1)" - line 409, "pan.___", state 877, "(1)" - line 409, "pan.___", state 878, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 878, "else" - line 409, "pan.___", state 881, "(1)" - line 409, "pan.___", state 882, "(1)" - line 409, "pan.___", state 882, "(1)" - line 407, "pan.___", state 887, "((i<1))" - line 407, "pan.___", state 887, "((i>=1))" - line 414, "pan.___", state 894, "(1)" - line 414, "pan.___", state 895, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 895, "else" - line 414, "pan.___", state 898, "(1)" - line 414, "pan.___", state 899, "(1)" - line 414, "pan.___", state 899, "(1)" - line 418, "pan.___", state 907, "(1)" - line 418, "pan.___", state 908, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 908, "else" - line 418, "pan.___", state 911, "(1)" - line 418, "pan.___", state 912, "(1)" - line 418, "pan.___", state 912, "(1)" - line 423, "pan.___", state 921, "(1)" - line 423, "pan.___", state 921, "(1)" - line 388, "pan.___", state 928, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 930, "(1)" - line 388, "pan.___", state 931, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 388, "pan.___", state 931, "else" - line 388, "pan.___", state 934, "(1)" - line 392, "pan.___", state 942, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 944, "(1)" - line 392, "pan.___", state 945, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 392, "pan.___", state 945, "else" - line 392, "pan.___", state 948, "(1)" - line 392, "pan.___", state 949, "(1)" - line 392, "pan.___", state 949, "(1)" - line 390, "pan.___", state 954, "((i<1))" - line 390, "pan.___", state 954, "((i>=1))" - line 397, "pan.___", state 960, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 962, "(1)" - line 397, "pan.___", state 963, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 397, "pan.___", state 963, "else" - line 397, "pan.___", state 966, "(1)" - line 397, "pan.___", state 967, "(1)" - line 397, "pan.___", state 967, "(1)" - line 401, "pan.___", state 974, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 976, "(1)" - line 401, "pan.___", state 977, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 401, "pan.___", state 977, "else" - line 401, "pan.___", state 980, "(1)" - line 401, "pan.___", state 981, "(1)" - line 401, "pan.___", state 981, "(1)" - line 399, "pan.___", state 986, "((i<2))" - line 399, "pan.___", state 986, "((i>=2))" - line 405, "pan.___", state 993, "(1)" - line 405, "pan.___", state 994, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 994, "else" - line 405, "pan.___", state 997, "(1)" - line 405, "pan.___", state 998, "(1)" - line 405, "pan.___", state 998, "(1)" - line 409, "pan.___", state 1006, "(1)" - line 409, "pan.___", state 1007, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 1007, "else" - line 409, "pan.___", state 1010, "(1)" - line 409, "pan.___", state 1011, "(1)" - line 409, "pan.___", state 1011, "(1)" - line 407, "pan.___", state 1016, "((i<1))" - line 407, "pan.___", state 1016, "((i>=1))" - line 414, "pan.___", state 1023, "(1)" - line 414, "pan.___", state 1024, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 1024, "else" - line 414, "pan.___", state 1027, "(1)" - line 414, "pan.___", state 1028, "(1)" - line 414, "pan.___", state 1028, "(1)" - line 418, "pan.___", state 1036, "(1)" - line 418, "pan.___", state 1037, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 1037, "else" - line 418, "pan.___", state 1040, "(1)" - line 418, "pan.___", state 1041, "(1)" - line 418, "pan.___", state 1041, "(1)" - line 416, "pan.___", state 1046, "((i<2))" - line 416, "pan.___", state 1046, "((i>=2))" - line 423, "pan.___", state 1050, "(1)" - line 423, "pan.___", state 1050, "(1)" - line 672, "pan.___", state 1054, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 388, "pan.___", state 1059, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1091, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1105, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1124, "(1)" - line 414, "pan.___", state 1154, "(1)" - line 418, "pan.___", state 1167, "(1)" - line 388, "pan.___", state 1191, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1223, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1237, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1256, "(1)" - line 414, "pan.___", state 1286, "(1)" - line 418, "pan.___", state 1299, "(1)" - line 388, "pan.___", state 1324, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1356, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1370, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1389, "(1)" - line 414, "pan.___", state 1419, "(1)" - line 418, "pan.___", state 1432, "(1)" - line 388, "pan.___", state 1453, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1485, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1499, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1518, "(1)" - line 414, "pan.___", state 1548, "(1)" - line 418, "pan.___", state 1561, "(1)" - line 388, "pan.___", state 1587, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1619, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1633, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1652, "(1)" - line 414, "pan.___", state 1682, "(1)" - line 418, "pan.___", state 1695, "(1)" - line 388, "pan.___", state 1716, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1748, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1762, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1781, "(1)" - line 414, "pan.___", state 1811, "(1)" - line 418, "pan.___", state 1824, "(1)" - line 388, "pan.___", state 1848, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1880, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1894, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1913, "(1)" - line 414, "pan.___", state 1943, "(1)" - line 418, "pan.___", state 1956, "(1)" - line 711, "pan.___", state 1977, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 388, "pan.___", state 1984, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2030, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2049, "(1)" - line 414, "pan.___", state 2079, "(1)" - line 418, "pan.___", state 2092, "(1)" - line 388, "pan.___", state 2113, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2145, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2159, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2178, "(1)" - line 414, "pan.___", state 2208, "(1)" - line 418, "pan.___", state 2221, "(1)" - line 388, "pan.___", state 2244, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 2246, "(1)" - line 388, "pan.___", state 2247, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 388, "pan.___", state 2247, "else" - line 388, "pan.___", state 2250, "(1)" - line 392, "pan.___", state 2258, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 2260, "(1)" - line 392, "pan.___", state 2261, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 392, "pan.___", state 2261, "else" - line 392, "pan.___", state 2264, "(1)" - line 392, "pan.___", state 2265, "(1)" - line 392, "pan.___", state 2265, "(1)" - line 390, "pan.___", state 2270, "((i<1))" - line 390, "pan.___", state 2270, "((i>=1))" - line 397, "pan.___", state 2276, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2278, "(1)" - line 397, "pan.___", state 2279, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 397, "pan.___", state 2279, "else" - line 397, "pan.___", state 2282, "(1)" - line 397, "pan.___", state 2283, "(1)" - line 397, "pan.___", state 2283, "(1)" - line 401, "pan.___", state 2290, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2292, "(1)" - line 401, "pan.___", state 2293, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 401, "pan.___", state 2293, "else" - line 401, "pan.___", state 2296, "(1)" - line 401, "pan.___", state 2297, "(1)" - line 401, "pan.___", state 2297, "(1)" - line 399, "pan.___", state 2302, "((i<2))" - line 399, "pan.___", state 2302, "((i>=2))" - line 405, "pan.___", state 2309, "(1)" - line 405, "pan.___", state 2310, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 2310, "else" - line 405, "pan.___", state 2313, "(1)" - line 405, "pan.___", state 2314, "(1)" - line 405, "pan.___", state 2314, "(1)" - line 409, "pan.___", state 2322, "(1)" - line 409, "pan.___", state 2323, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 2323, "else" - line 409, "pan.___", state 2326, "(1)" - line 409, "pan.___", state 2327, "(1)" - line 409, "pan.___", state 2327, "(1)" - line 407, "pan.___", state 2332, "((i<1))" - line 407, "pan.___", state 2332, "((i>=1))" - line 414, "pan.___", state 2339, "(1)" - line 414, "pan.___", state 2340, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 2340, "else" - line 414, "pan.___", state 2343, "(1)" - line 414, "pan.___", state 2344, "(1)" - line 414, "pan.___", state 2344, "(1)" - line 418, "pan.___", state 2352, "(1)" - line 418, "pan.___", state 2353, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 2353, "else" - line 418, "pan.___", state 2356, "(1)" - line 418, "pan.___", state 2357, "(1)" - line 418, "pan.___", state 2357, "(1)" - line 416, "pan.___", state 2362, "((i<2))" - line 416, "pan.___", state 2362, "((i>=2))" - line 423, "pan.___", state 2366, "(1)" - line 423, "pan.___", state 2366, "(1)" - line 711, "pan.___", state 2369, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 711, "pan.___", state 2370, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 711, "pan.___", state 2371, "(1)" - line 388, "pan.___", state 2378, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2410, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2424, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2443, "(1)" - line 414, "pan.___", state 2473, "(1)" - line 418, "pan.___", state 2486, "(1)" - line 388, "pan.___", state 2513, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2545, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2559, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2578, "(1)" - line 414, "pan.___", state 2608, "(1)" - line 418, "pan.___", state 2621, "(1)" - line 388, "pan.___", state 2642, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 2674, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 2688, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2707, "(1)" - line 414, "pan.___", state 2737, "(1)" - line 418, "pan.___", state 2750, "(1)" - line 228, "pan.___", state 2783, "(1)" - line 236, "pan.___", state 2803, "(1)" - line 240, "pan.___", state 2811, "(1)" - line 228, "pan.___", state 2826, "(1)" - line 236, "pan.___", state 2846, "(1)" - line 240, "pan.___", state 2854, "(1)" - line 871, "pan.___", state 2871, "-end-" - (279 of 2871 states) -unreached in proctype urcu_writer - line 388, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 24, "(1)" - line 392, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 38, "(1)" - line 392, "pan.___", state 39, "(1)" - line 392, "pan.___", state 39, "(1)" - line 390, "pan.___", state 44, "((i<1))" - line 390, "pan.___", state 44, "((i>=1))" - line 397, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 56, "(1)" - line 397, "pan.___", state 57, "(1)" - line 397, "pan.___", state 57, "(1)" - line 401, "pan.___", state 64, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 70, "(1)" - line 401, "pan.___", state 71, "(1)" - line 401, "pan.___", state 71, "(1)" - line 399, "pan.___", state 76, "((i<2))" - line 399, "pan.___", state 76, "((i>=2))" - line 405, "pan.___", state 83, "(1)" - line 405, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 84, "else" - line 405, "pan.___", state 87, "(1)" - line 405, "pan.___", state 88, "(1)" - line 405, "pan.___", state 88, "(1)" - line 409, "pan.___", state 96, "(1)" - line 409, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 97, "else" - line 409, "pan.___", state 100, "(1)" - line 409, "pan.___", state 101, "(1)" - line 409, "pan.___", state 101, "(1)" - line 407, "pan.___", state 106, "((i<1))" - line 407, "pan.___", state 106, "((i>=1))" - line 414, "pan.___", state 113, "(1)" - line 414, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 114, "else" - line 414, "pan.___", state 117, "(1)" - line 414, "pan.___", state 118, "(1)" - line 414, "pan.___", state 118, "(1)" - line 418, "pan.___", state 126, "(1)" - line 418, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 127, "else" - line 418, "pan.___", state 130, "(1)" - line 418, "pan.___", state 131, "(1)" - line 418, "pan.___", state 131, "(1)" - line 416, "pan.___", state 136, "((i<2))" - line 416, "pan.___", state 136, "((i>=2))" - line 423, "pan.___", state 140, "(1)" - line 423, "pan.___", state 140, "(1)" - line 251, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 166, "((i<1))" - line 253, "pan.___", state 166, "((i>=1))" - line 259, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 994, "pan.___", state 199, "old_data = cached_rcu_ptr.val[_pid]" - line 388, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 405, "pan.___", state 276, "(1)" - line 409, "pan.___", state 289, "(1)" - line 414, "pan.___", state 306, "(1)" - line 418, "pan.___", state 319, "(1)" - line 392, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 420, "(1)" - line 414, "pan.___", state 437, "(1)" - line 418, "pan.___", state 450, "(1)" - line 392, "pan.___", state 491, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 509, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 523, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 555, "(1)" - line 414, "pan.___", state 572, "(1)" - line 418, "pan.___", state 585, "(1)" - line 392, "pan.___", state 619, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 637, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 651, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 683, "(1)" - line 414, "pan.___", state 700, "(1)" - line 418, "pan.___", state 713, "(1)" - line 392, "pan.___", state 748, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 766, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 780, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 812, "(1)" - line 414, "pan.___", state 829, "(1)" - line 418, "pan.___", state 842, "(1)" - line 392, "pan.___", state 879, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 897, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 401, "pan.___", state 911, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 943, "(1)" - line 414, "pan.___", state 960, "(1)" - line 418, "pan.___", state 973, "(1)" - line 388, "pan.___", state 999, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 388, "pan.___", state 1001, "(1)" - line 388, "pan.___", state 1002, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 388, "pan.___", state 1002, "else" - line 388, "pan.___", state 1005, "(1)" - line 392, "pan.___", state 1013, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 392, "pan.___", state 1015, "(1)" - line 392, "pan.___", state 1016, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 392, "pan.___", state 1016, "else" - line 392, "pan.___", state 1019, "(1)" - line 392, "pan.___", state 1020, "(1)" - line 392, "pan.___", state 1020, "(1)" - line 390, "pan.___", state 1025, "((i<1))" - line 390, "pan.___", state 1025, "((i>=1))" - line 397, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 397, "pan.___", state 1033, "(1)" - line 397, "pan.___", state 1034, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 397, "pan.___", state 1034, "else" - line 397, "pan.___", state 1037, "(1)" - line 397, "pan.___", state 1038, "(1)" - line 397, "pan.___", state 1038, "(1)" - line 401, "pan.___", state 1045, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 401, "pan.___", state 1047, "(1)" - line 401, "pan.___", state 1048, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 401, "pan.___", state 1048, "else" - line 401, "pan.___", state 1051, "(1)" - line 401, "pan.___", state 1052, "(1)" - line 401, "pan.___", state 1052, "(1)" - line 399, "pan.___", state 1057, "((i<2))" - line 399, "pan.___", state 1057, "((i>=2))" - line 405, "pan.___", state 1064, "(1)" - line 405, "pan.___", state 1065, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 405, "pan.___", state 1065, "else" - line 405, "pan.___", state 1068, "(1)" - line 405, "pan.___", state 1069, "(1)" - line 405, "pan.___", state 1069, "(1)" - line 409, "pan.___", state 1077, "(1)" - line 409, "pan.___", state 1078, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 409, "pan.___", state 1078, "else" - line 409, "pan.___", state 1081, "(1)" - line 409, "pan.___", state 1082, "(1)" - line 409, "pan.___", state 1082, "(1)" - line 407, "pan.___", state 1087, "((i<1))" - line 407, "pan.___", state 1087, "((i>=1))" - line 414, "pan.___", state 1094, "(1)" - line 414, "pan.___", state 1095, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 414, "pan.___", state 1095, "else" - line 414, "pan.___", state 1098, "(1)" - line 414, "pan.___", state 1099, "(1)" - line 414, "pan.___", state 1099, "(1)" - line 418, "pan.___", state 1107, "(1)" - line 418, "pan.___", state 1108, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 418, "pan.___", state 1108, "else" - line 418, "pan.___", state 1111, "(1)" - line 418, "pan.___", state 1112, "(1)" - line 418, "pan.___", state 1112, "(1)" - line 423, "pan.___", state 1121, "(1)" - line 423, "pan.___", state 1121, "(1)" - line 251, "pan.___", state 1153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1170, "((i<1))" - line 253, "pan.___", state 1170, "((i>=1))" - line 259, "pan.___", state 1177, "(1)" - line 259, "pan.___", state 1178, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 259, "pan.___", state 1178, "else" - line 263, "pan.___", state 1184, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1192, "((i<2))" - line 261, "pan.___", state 1192, "((i>=2))" - line 228, "pan.___", state 1200, "(1)" - line 232, "pan.___", state 1208, "(1)" - line 232, "pan.___", state 1209, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 232, "pan.___", state 1209, "else" - line 230, "pan.___", state 1214, "((i<1))" - line 230, "pan.___", state 1214, "((i>=1))" - line 236, "pan.___", state 1220, "(1)" - line 236, "pan.___", state 1221, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 236, "pan.___", state 1221, "else" - line 240, "pan.___", state 1228, "(1)" - line 240, "pan.___", state 1229, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 240, "pan.___", state 1229, "else" - line 245, "pan.___", state 1238, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 245, "pan.___", state 1238, "else" - line 251, "pan.___", state 1259, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1268, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1281, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1290, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1306, "(1)" - line 232, "pan.___", state 1314, "(1)" - line 236, "pan.___", state 1326, "(1)" - line 240, "pan.___", state 1334, "(1)" - line 255, "pan.___", state 1360, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1373, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1382, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1398, "(1)" - line 232, "pan.___", state 1406, "(1)" - line 236, "pan.___", state 1418, "(1)" - line 240, "pan.___", state 1426, "(1)" - line 251, "pan.___", state 1457, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1466, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1479, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1488, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1504, "(1)" - line 232, "pan.___", state 1512, "(1)" - line 236, "pan.___", state 1524, "(1)" - line 240, "pan.___", state 1532, "(1)" - line 1192, "pan.___", state 1548, "-end-" - (154 of 1548 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1253, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 14 seconds -pan: rate 4238.4725 states/second -pan: avg transition delay 1.2667e-06 usec -cp .input.spin urcu_progress_writer_error.spin.input -cp .input.spin.trail urcu_progress_writer_error.spin.input.trail -make[1]: Leaving directory `/home/compudj/doc/userspace-rcu/formal-model/urcu-controldataflow' diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input deleted file mode 100644 index b4c4af4..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input +++ /dev/null @@ -1,1228 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -progress_writer_from_reader: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#define PROGRESS_LABEL(progressid) -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input.trail deleted file mode 100644 index de65bad..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/result-ipi-urcu_free/urcu_progress_writer_error.spin.input.trail +++ /dev/null @@ -1,1215 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4499 -2:3:4419 -3:3:4422 -4:3:4422 -5:3:4425 -6:3:4433 -7:3:4433 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-1192:1:1295 -1193:1:1293 -1194:1:1294 -1195:1:1295 -1196:1:1306 -1197:0:4503 -1198:1:15 -1199:0:4503 -1200:1:16 --1:-1:-1 -1201:0:4503 -1202:2:4114 -1203:0:4503 -1204:2:4115 -1205:0:4503 -1206:2:4114 -1207:0:4503 -1208:2:4115 -1209:0:4503 -1210:2:4114 -1211:0:4503 -1212:2:4115 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/todo.sh b/formal-model/results/urcu-controldataflow-no-ipi/todo.sh deleted file mode 100644 index f2bcdf6..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/todo.sh +++ /dev/null @@ -1,18 +0,0 @@ -echo testing no ipi -make urcu_free | tee urcu_free.log -echo testing no ipi -make urcu_free_no_mb | tee urcu_free_no_mb.log -echo testing no ipi -make urcu_free_no_rmb | tee urcu_free_no_rmb.log -echo testing no ipi -make urcu_free_no_wmb | tee urcu_free_no_wmb.log -echo testing no ipi -make urcu_free_single_flip | tee urcu_free_single_flip.log -echo testing no ipi -make urcu_progress_writer | tee urcu_progress_writer.log -echo testing no ipi -make urcu_progress_reader | tee urcu_progress_reader.log -echo testing no ipi -make urcu_progress_writer_error | tee urcu_progress_writer_error.log -echo testing no ipi -make asserts | tee asserts.log diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu.sh b/formal-model/results/urcu-controldataflow-no-ipi/urcu.sh deleted file mode 100644 index 65ff517..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu.sh +++ /dev/null @@ -1,29 +0,0 @@ -#!/bin/sh -# -# Compiles and runs the urcu.spin Promela model. -# -# This program is free software; you can redistribute it and/or modify -# it under the terms of the GNU General Public License as published by -# the Free Software Foundation; either version 2 of the License, or -# (at your option) any later version. -# -# This program is distributed in the hope that it will be useful, -# but WITHOUT ANY WARRANTY; without even the implied warranty of -# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -# GNU General Public License for more details. -# -# You should have received a copy of the GNU General Public License -# along with this program; if not, write to the Free Software -# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. -# -# Copyright (C) IBM Corporation, 2009 -# Mathieu Desnoyers, 2009 -# -# Authors: Paul E. McKenney -# Mathieu Desnoyers - -# Basic execution, without LTL clauses. See Makefile. - -spin -a urcu.spin -cc -DSAFETY -o pan pan.c -./pan -v -c1 -X -m10000000 -w21 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin b/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin deleted file mode 100644 index 4fe6b9e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin +++ /dev/null @@ -1,1225 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin.bkp.b4ptr b/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin.bkp.b4ptr deleted file mode 100644 index 6670f3e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu.spin.bkp.b4ptr +++ /dev/null @@ -1,1123 +0,0 @@ -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bit { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bit cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * Busy-looping waiting for other barrier requests is not considered as - * non-progress. - */ -#ifdef READER_PROGRESS -progress_reader2: -#endif -#ifdef WRITER_PROGRESS -//progress_writer_from_reader1: -#endif - skip; - :: 1 -> - /* We choose to ignore writer's non-progress caused from the - * reader ignoring the writer's mb() requests */ -#ifdef WRITER_PROGRESS -//progress_writer_from_reader2: -#endif - break; - od; -} - -#ifdef WRITER_PROGRESS -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: -#else -#define PROGRESS_LABEL(progressid) -#endif - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ -PROGRESS_LABEL(progressid) \ - do \ - :: (reader_barrier[i] == 1) -> skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, wmp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only two readers */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* pointer generation */ -DECLARE_CACHED_VAR(byte, generation_ptr); - -byte last_free_gen = 0; -bit free_done = 0; -byte read_generation[NR_READERS]; -bit data_access[NR_READERS]; - -bit write_lock = 0; - -bit init_done = 0; - -bit sighand_exec = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(generation_ptr, get_pid()); - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(generation_ptr, get_pid()); - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - :: 1 -> skip; - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - ooo_mem(i); - goto non_atomic; -non_atomic_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - read_generation[get_readerid()] = - READ_CACHED_VAR(generation_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - ooo_mem(i); - goto non_atomic2; -non_atomic2_end: - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -non_atomic: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic_end; -non_atomic2: - data_access[get_readerid()] = 1; - data_access[get_readerid()] = 0; - goto non_atomic2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_PROC_FIRST_MB (1 << 1) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 2) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 3) -#define WRITE_PROC_FIRST_WAIT (1 << 4) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 5) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 6) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 7) -#define WRITE_PROC_SECOND_WAIT (1 << 8) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 9) - -#define WRITE_PROC_SECOND_MB (1 << 10) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 11) - 1) - -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte old_gen; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (READ_CACHED_VAR(generation_ptr) < 5) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - ooo_mem(i); - atomic { - old_gen = READ_CACHED_VAR(generation_ptr); - WRITE_CACHED_VAR(generation_ptr, old_gen + 1); - } - ooo_mem(i); - - do - :: 1 -> - atomic { - if - :: write_lock == 0 -> - write_lock = 1; - break; - :: else -> - skip; - fi; - } - od; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - - write_lock = 0; - /* free-up step, e.g., kfree(). */ - atomic { - last_free_gen = old_gen; - free_done = 1; - } - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(generation_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - read_generation[i] = 1; - data_access[i] = 0; - i++; - :: i >= NR_READERS -> break - od; - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.log deleted file mode 100644 index 8d1493e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.log +++ /dev/null @@ -1,525 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1257) -Depth= 4688 States= 1e+06 Transitions= 4.65e+08 Memory= 550.432 t= 592 R= 2e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4688, errors: 0 - 1884295 states, stored -9.0500538e+08 states, matched -9.0688968e+08 transitions (= stored+matched) -5.3819272e+09 atomic steps -hash conflicts: 4.4602277e+08 (resolved) - -Stats on memory usage (in Megabytes): - 208.452 equivalent memory usage for states (stored*(State-vector + overhead)) - 159.034 actual memory usage for states (compression: 76.29%) - state-vector as stored = 60 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 624.651 total actual memory usage - -unreached in proctype urcu_reader - line 394, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 82, "(1)" - line 420, "pan.___", state 112, "(1)" - line 424, "pan.___", state 125, "(1)" - line 575, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 394, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 218, "(1)" - line 420, "pan.___", state 248, "(1)" - line 424, "pan.___", state 261, "(1)" - line 394, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 347, "(1)" - line 420, "pan.___", state 377, "(1)" - line 424, "pan.___", state 390, "(1)" - line 394, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 415, "(1)" - line 394, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 416, "else" - line 394, "pan.___", state 419, "(1)" - line 398, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 429, "(1)" - line 398, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 430, "else" - line 398, "pan.___", state 433, "(1)" - line 398, "pan.___", state 434, "(1)" - line 398, "pan.___", state 434, "(1)" - line 396, "pan.___", state 439, "((i<1))" - line 396, "pan.___", state 439, "((i>=1))" - line 403, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 447, "(1)" - line 403, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 448, "else" - line 403, "pan.___", state 451, "(1)" - line 403, "pan.___", state 452, "(1)" - line 403, "pan.___", state 452, "(1)" - line 407, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 461, "(1)" - line 407, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 462, "else" - line 407, "pan.___", state 465, "(1)" - line 407, "pan.___", state 466, "(1)" - line 407, "pan.___", state 466, "(1)" - line 405, "pan.___", state 471, "((i<2))" - line 405, "pan.___", state 471, "((i>=2))" - line 411, "pan.___", state 478, "(1)" - line 411, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 479, "else" - line 411, "pan.___", state 482, "(1)" - line 411, "pan.___", state 483, "(1)" - line 411, "pan.___", state 483, "(1)" - line 415, "pan.___", state 491, "(1)" - line 415, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 492, "else" - line 415, "pan.___", state 495, "(1)" - line 415, "pan.___", state 496, "(1)" - line 415, "pan.___", state 496, "(1)" - line 413, "pan.___", state 501, "((i<1))" - line 413, "pan.___", state 501, "((i>=1))" - line 420, "pan.___", state 508, "(1)" - line 420, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 509, "else" - line 420, "pan.___", state 512, "(1)" - line 420, "pan.___", state 513, "(1)" - line 420, "pan.___", state 513, "(1)" - line 424, "pan.___", state 521, "(1)" - line 424, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 522, "else" - line 424, "pan.___", state 525, "(1)" - line 424, "pan.___", state 526, "(1)" - line 424, "pan.___", state 526, "(1)" - line 422, "pan.___", state 531, "((i<2))" - line 422, "pan.___", state 531, "((i>=2))" - line 429, "pan.___", state 535, "(1)" - line 429, "pan.___", state 535, "(1)" - line 575, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 575, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 575, "pan.___", state 540, "(1)" - line 249, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 555, "(1)" - line 257, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 591, "(1)" - line 230, "pan.___", state 599, "(1)" - line 234, "pan.___", state 611, "(1)" - line 238, "pan.___", state 619, "(1)" - line 394, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 702, "(1)" - line 415, "pan.___", state 715, "(1)" - line 420, "pan.___", state 732, "(1)" - line 424, "pan.___", state 745, "(1)" - line 394, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 775, "(1)" - line 394, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 776, "else" - line 394, "pan.___", state 779, "(1)" - line 398, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 789, "(1)" - line 398, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 790, "else" - line 398, "pan.___", state 793, "(1)" - line 398, "pan.___", state 794, "(1)" - line 398, "pan.___", state 794, "(1)" - line 396, "pan.___", state 799, "((i<1))" - line 396, "pan.___", state 799, "((i>=1))" - line 403, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 807, "(1)" - line 403, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 808, "else" - line 403, "pan.___", state 811, "(1)" - line 403, "pan.___", state 812, "(1)" - line 403, "pan.___", state 812, "(1)" - line 407, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 821, "(1)" - line 407, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 822, "else" - line 407, "pan.___", state 825, "(1)" - line 407, "pan.___", state 826, "(1)" - line 407, "pan.___", state 826, "(1)" - line 405, "pan.___", state 831, "((i<2))" - line 405, "pan.___", state 831, "((i>=2))" - line 411, "pan.___", state 838, "(1)" - line 411, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 839, "else" - line 411, "pan.___", state 842, "(1)" - line 411, "pan.___", state 843, "(1)" - line 411, "pan.___", state 843, "(1)" - line 415, "pan.___", state 851, "(1)" - line 415, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 852, "else" - line 415, "pan.___", state 855, "(1)" - line 415, "pan.___", state 856, "(1)" - line 415, "pan.___", state 856, "(1)" - line 413, "pan.___", state 861, "((i<1))" - line 413, "pan.___", state 861, "((i>=1))" - line 420, "pan.___", state 868, "(1)" - line 420, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 869, "else" - line 420, "pan.___", state 872, "(1)" - line 420, "pan.___", state 873, "(1)" - line 420, "pan.___", state 873, "(1)" - line 424, "pan.___", state 881, "(1)" - line 424, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 882, "else" - line 424, "pan.___", state 885, "(1)" - line 424, "pan.___", state 886, "(1)" - line 424, "pan.___", state 886, "(1)" - line 429, "pan.___", state 895, "(1)" - line 429, "pan.___", state 895, "(1)" - line 394, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 904, "(1)" - line 394, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 905, "else" - line 394, "pan.___", state 908, "(1)" - line 398, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 918, "(1)" - line 398, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 919, "else" - line 398, "pan.___", state 922, "(1)" - line 398, "pan.___", state 923, "(1)" - line 398, "pan.___", state 923, "(1)" - line 396, "pan.___", state 928, "((i<1))" - line 396, "pan.___", state 928, "((i>=1))" - line 403, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 936, "(1)" - line 403, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 937, "else" - line 403, "pan.___", state 940, "(1)" - line 403, "pan.___", state 941, "(1)" - line 403, "pan.___", state 941, "(1)" - line 407, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 950, "(1)" - line 407, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 951, "else" - line 407, "pan.___", state 954, "(1)" - line 407, "pan.___", state 955, "(1)" - line 407, "pan.___", state 955, "(1)" - line 405, "pan.___", state 960, "((i<2))" - line 405, "pan.___", state 960, "((i>=2))" - line 411, "pan.___", state 967, "(1)" - line 411, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 968, "else" - line 411, "pan.___", state 971, "(1)" - line 411, "pan.___", state 972, "(1)" - line 411, "pan.___", state 972, "(1)" - line 415, "pan.___", state 980, "(1)" - line 415, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 981, "else" - line 415, "pan.___", state 984, "(1)" - line 415, "pan.___", state 985, "(1)" - line 415, "pan.___", state 985, "(1)" - line 413, "pan.___", state 990, "((i<1))" - line 413, "pan.___", state 990, "((i>=1))" - line 420, "pan.___", state 997, "(1)" - line 420, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 998, "else" - line 420, "pan.___", state 1001, "(1)" - line 420, "pan.___", state 1002, "(1)" - line 420, "pan.___", state 1002, "(1)" - line 424, "pan.___", state 1010, "(1)" - line 424, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 1011, "else" - line 424, "pan.___", state 1014, "(1)" - line 424, "pan.___", state 1015, "(1)" - line 424, "pan.___", state 1015, "(1)" - line 422, "pan.___", state 1020, "((i<2))" - line 422, "pan.___", state 1020, "((i>=2))" - line 429, "pan.___", state 1024, "(1)" - line 429, "pan.___", state 1024, "(1)" - line 583, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 394, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1098, "(1)" - line 415, "pan.___", state 1111, "(1)" - line 420, "pan.___", state 1128, "(1)" - line 424, "pan.___", state 1141, "(1)" - line 394, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1230, "(1)" - line 420, "pan.___", state 1260, "(1)" - line 424, "pan.___", state 1273, "(1)" - line 394, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1363, "(1)" - line 420, "pan.___", state 1393, "(1)" - line 424, "pan.___", state 1406, "(1)" - line 394, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1492, "(1)" - line 420, "pan.___", state 1522, "(1)" - line 424, "pan.___", state 1535, "(1)" - line 249, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1605, "(1)" - line 230, "pan.___", state 1613, "(1)" - line 234, "pan.___", state 1625, "(1)" - line 238, "pan.___", state 1633, "(1)" - line 394, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1716, "(1)" - line 415, "pan.___", state 1729, "(1)" - line 420, "pan.___", state 1746, "(1)" - line 424, "pan.___", state 1759, "(1)" - line 394, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1845, "(1)" - line 415, "pan.___", state 1858, "(1)" - line 420, "pan.___", state 1875, "(1)" - line 424, "pan.___", state 1888, "(1)" - line 394, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 1928, "(1)" - line 403, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 1977, "(1)" - line 420, "pan.___", state 2007, "(1)" - line 424, "pan.___", state 2020, "(1)" - line 622, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 394, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2113, "(1)" - line 420, "pan.___", state 2143, "(1)" - line 424, "pan.___", state 2156, "(1)" - line 394, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2242, "(1)" - line 420, "pan.___", state 2272, "(1)" - line 424, "pan.___", state 2285, "(1)" - line 394, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 2310, "(1)" - line 394, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 394, "pan.___", state 2311, "else" - line 394, "pan.___", state 2314, "(1)" - line 398, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 2324, "(1)" - line 398, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 398, "pan.___", state 2325, "else" - line 398, "pan.___", state 2328, "(1)" - line 398, "pan.___", state 2329, "(1)" - line 398, "pan.___", state 2329, "(1)" - line 396, "pan.___", state 2334, "((i<1))" - line 396, "pan.___", state 2334, "((i>=1))" - line 403, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2342, "(1)" - line 403, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 403, "pan.___", state 2343, "else" - line 403, "pan.___", state 2346, "(1)" - line 403, "pan.___", state 2347, "(1)" - line 403, "pan.___", state 2347, "(1)" - line 407, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2356, "(1)" - line 407, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 407, "pan.___", state 2357, "else" - line 407, "pan.___", state 2360, "(1)" - line 407, "pan.___", state 2361, "(1)" - line 407, "pan.___", state 2361, "(1)" - line 405, "pan.___", state 2366, "((i<2))" - line 405, "pan.___", state 2366, "((i>=2))" - line 411, "pan.___", state 2373, "(1)" - line 411, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 411, "pan.___", state 2374, "else" - line 411, "pan.___", state 2377, "(1)" - line 411, "pan.___", state 2378, "(1)" - line 411, "pan.___", state 2378, "(1)" - line 415, "pan.___", state 2386, "(1)" - line 415, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 415, "pan.___", state 2387, "else" - line 415, "pan.___", state 2390, "(1)" - line 415, "pan.___", state 2391, "(1)" - line 415, "pan.___", state 2391, "(1)" - line 413, "pan.___", state 2396, "((i<1))" - line 413, "pan.___", state 2396, "((i>=1))" - line 420, "pan.___", state 2403, "(1)" - line 420, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 420, "pan.___", state 2404, "else" - line 420, "pan.___", state 2407, "(1)" - line 420, "pan.___", state 2408, "(1)" - line 420, "pan.___", state 2408, "(1)" - line 424, "pan.___", state 2416, "(1)" - line 424, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 424, "pan.___", state 2417, "else" - line 424, "pan.___", state 2420, "(1)" - line 424, "pan.___", state 2421, "(1)" - line 424, "pan.___", state 2421, "(1)" - line 422, "pan.___", state 2426, "((i<2))" - line 422, "pan.___", state 2426, "((i>=2))" - line 429, "pan.___", state 2430, "(1)" - line 429, "pan.___", state 2430, "(1)" - line 622, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 622, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 622, "pan.___", state 2435, "(1)" - line 249, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 2450, "(1)" - line 257, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 2486, "(1)" - line 230, "pan.___", state 2494, "(1)" - line 234, "pan.___", state 2506, "(1)" - line 238, "pan.___", state 2514, "(1)" - line 394, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2597, "(1)" - line 415, "pan.___", state 2610, "(1)" - line 420, "pan.___", state 2627, "(1)" - line 424, "pan.___", state 2640, "(1)" - line 249, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 2711, "(1)" - line 230, "pan.___", state 2719, "(1)" - line 234, "pan.___", state 2731, "(1)" - line 238, "pan.___", state 2739, "(1)" - line 394, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2822, "(1)" - line 415, "pan.___", state 2835, "(1)" - line 420, "pan.___", state 2852, "(1)" - line 424, "pan.___", state 2865, "(1)" - line 394, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 2951, "(1)" - line 415, "pan.___", state 2964, "(1)" - line 420, "pan.___", state 2981, "(1)" - line 424, "pan.___", state 2994, "(1)" - line 226, "pan.___", state 3027, "(1)" - line 234, "pan.___", state 3047, "(1)" - line 238, "pan.___", state 3055, "(1)" - line 226, "pan.___", state 3070, "(1)" - line 230, "pan.___", state 3078, "(1)" - line 234, "pan.___", state 3090, "(1)" - line 238, "pan.___", state 3098, "(1)" - line 876, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 394, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 411, "pan.___", state 83, "(1)" - line 415, "pan.___", state 96, "(1)" - line 420, "pan.___", state 113, "(1)" - line 249, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 394, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 398, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 411, "pan.___", state 276, "(1)" - line 415, "pan.___", state 289, "(1)" - line 420, "pan.___", state 306, "(1)" - line 424, "pan.___", state 319, "(1)" - line 398, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 420, "(1)" - line 420, "pan.___", state 437, "(1)" - line 424, "pan.___", state 450, "(1)" - line 398, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 558, "(1)" - line 420, "pan.___", state 575, "(1)" - line 424, "pan.___", state 588, "(1)" - line 398, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 687, "(1)" - line 420, "pan.___", state 704, "(1)" - line 424, "pan.___", state 717, "(1)" - line 398, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 403, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 407, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 415, "pan.___", state 818, "(1)" - line 420, "pan.___", state 835, "(1)" - line 424, "pan.___", state 848, "(1)" - line 249, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 927, "(1)" - line 261, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 950, "(1)" - line 230, "pan.___", state 958, "(1)" - line 234, "pan.___", state 970, "(1)" - line 238, "pan.___", state 978, "(1)" - line 253, "pan.___", state 1003, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1025, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1041, "(1)" - line 230, "pan.___", state 1049, "(1)" - line 234, "pan.___", state 1061, "(1)" - line 238, "pan.___", state 1069, "(1)" - line 253, "pan.___", state 1094, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1107, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1132, "(1)" - line 230, "pan.___", state 1140, "(1)" - line 234, "pan.___", state 1152, "(1)" - line 238, "pan.___", state 1160, "(1)" - line 253, "pan.___", state 1185, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 257, "pan.___", state 1198, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1207, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 226, "pan.___", state 1223, "(1)" - line 230, "pan.___", state 1231, "(1)" - line 234, "pan.___", state 1243, "(1)" - line 238, "pan.___", state 1251, "(1)" - line 1203, "pan.___", state 1266, "-end-" - (71 of 1266 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1262, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 1.16e+03 seconds -pan: rate 1618.1151 states/second -pan: avg transition delay 1.2841e-06 usec -cp .input.spin urcu_free.spin.input -cp .input.spin.trail urcu_free.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.ltl b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.ltl deleted file mode 100644 index 6be1be9..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.ltl +++ /dev/null @@ -1 +0,0 @@ -[] (!read_poison) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.spin.input deleted file mode 100644 index 542625d..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free.spin.input +++ /dev/null @@ -1,1239 +0,0 @@ - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_nested.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_nested.define deleted file mode 100644 index 0fb59bd..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_nested.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_NEST_LEVEL 2 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.define deleted file mode 100644 index d99d793..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_MB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.log deleted file mode 100644 index b27c022..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.log +++ /dev/null @@ -1,884 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_mb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -Depth= 11321 States= 1e+06 Transitions= 3.42e+08 Memory= 550.432 t= 421 R= 2e+03 -pan: claim violated! (at depth 1224) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 11321, errors: 1 - 1661452 states, stored -5.1024872e+08 states, matched -5.1191017e+08 transitions (= stored+matched) -2.8514789e+09 atomic steps -hash conflicts: 2.0792287e+08 (resolved) - -Stats on memory usage (in Megabytes): - 183.800 equivalent memory usage for states (stored*(State-vector + overhead)) - 140.372 actual memory usage for states (compression: 76.37%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 605.998 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 21, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 53, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 67, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 86, "(1)" - line 421, "pan.___", state 116, "(1)" - line 425, "pan.___", state 129, "(1)" - line 582, "pan.___", state 150, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 157, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 189, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 203, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 222, "(1)" - line 421, "pan.___", state 252, "(1)" - line 425, "pan.___", state 265, "(1)" - line 395, "pan.___", state 286, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 318, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 332, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 351, "(1)" - line 421, "pan.___", state 381, "(1)" - line 425, "pan.___", state 394, "(1)" - line 395, "pan.___", state 417, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 419, "(1)" - line 395, "pan.___", state 420, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 420, "else" - line 395, "pan.___", state 423, "(1)" - line 399, "pan.___", state 431, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 434, "else" - line 399, "pan.___", state 437, "(1)" - line 399, "pan.___", state 438, "(1)" - line 399, "pan.___", state 438, "(1)" - line 397, "pan.___", state 443, "((i<1))" - line 397, "pan.___", state 443, "((i>=1))" - line 404, "pan.___", state 449, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 452, "else" - line 404, "pan.___", state 455, "(1)" - line 404, "pan.___", state 456, "(1)" - line 404, "pan.___", state 456, "(1)" - line 408, "pan.___", state 463, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 466, "else" - line 408, "pan.___", state 469, "(1)" - line 408, "pan.___", state 470, "(1)" - line 408, "pan.___", state 470, "(1)" - line 406, "pan.___", state 475, "((i<2))" - line 406, "pan.___", state 475, "((i>=2))" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 483, "else" - line 412, "pan.___", state 486, "(1)" - line 412, "pan.___", state 487, "(1)" - line 412, "pan.___", state 487, "(1)" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 496, "else" - line 416, "pan.___", state 499, "(1)" - line 416, "pan.___", state 500, "(1)" - line 416, "pan.___", state 500, "(1)" - line 414, "pan.___", state 505, "((i<1))" - line 414, "pan.___", state 505, "((i>=1))" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 513, "else" - line 421, "pan.___", state 516, "(1)" - line 421, "pan.___", state 517, "(1)" - line 421, "pan.___", state 517, "(1)" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 526, "else" - line 425, "pan.___", state 529, "(1)" - line 425, "pan.___", state 530, "(1)" - line 425, "pan.___", state 530, "(1)" - line 423, "pan.___", state 535, "((i<2))" - line 423, "pan.___", state 535, "((i>=2))" - line 430, "pan.___", state 539, "(1)" - line 430, "pan.___", state 539, "(1)" - line 582, "pan.___", state 542, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 582, "pan.___", state 543, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 582, "pan.___", state 544, "(1)" - line 250, "pan.___", state 548, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 550, "(1)" - line 254, "pan.___", state 557, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 559, "(1)" - line 254, "pan.___", state 560, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 560, "else" - line 252, "pan.___", state 565, "((i<1))" - line 252, "pan.___", state 565, "((i>=1))" - line 258, "pan.___", state 570, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 572, "(1)" - line 258, "pan.___", state 573, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 573, "else" - line 262, "pan.___", state 579, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 581, "(1)" - line 262, "pan.___", state 582, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 582, "else" - line 260, "pan.___", state 587, "((i<2))" - line 260, "pan.___", state 587, "((i>=2))" - line 227, "pan.___", state 595, "(1)" - line 231, "pan.___", state 603, "(1)" - line 231, "pan.___", state 604, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 604, "else" - line 229, "pan.___", state 609, "((i<1))" - line 229, "pan.___", state 609, "((i>=1))" - line 235, "pan.___", state 615, "(1)" - line 235, "pan.___", state 616, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 616, "else" - line 239, "pan.___", state 623, "(1)" - line 239, "pan.___", state 624, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 624, "else" - line 244, "pan.___", state 633, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 633, "else" - line 277, "pan.___", state 635, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 635, "else" - line 395, "pan.___", state 641, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 673, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 687, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 706, "(1)" - line 421, "pan.___", state 736, "(1)" - line 425, "pan.___", state 749, "(1)" - line 395, "pan.___", state 777, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 779, "(1)" - line 395, "pan.___", state 780, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 780, "else" - line 395, "pan.___", state 783, "(1)" - line 399, "pan.___", state 791, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 794, "else" - line 399, "pan.___", state 797, "(1)" - line 399, "pan.___", state 798, "(1)" - line 399, "pan.___", state 798, "(1)" - line 397, "pan.___", state 803, "((i<1))" - line 397, "pan.___", state 803, "((i>=1))" - line 404, "pan.___", state 809, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 812, "else" - line 404, "pan.___", state 815, "(1)" - line 404, "pan.___", state 816, "(1)" - line 404, "pan.___", state 816, "(1)" - line 408, "pan.___", state 823, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 826, "else" - line 408, "pan.___", state 829, "(1)" - line 408, "pan.___", state 830, "(1)" - line 408, "pan.___", state 830, "(1)" - line 406, "pan.___", state 835, "((i<2))" - line 406, "pan.___", state 835, "((i>=2))" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 843, "else" - line 412, "pan.___", state 846, "(1)" - line 412, "pan.___", state 847, "(1)" - line 412, "pan.___", state 847, "(1)" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 856, "else" - line 416, "pan.___", state 859, "(1)" - line 416, "pan.___", state 860, "(1)" - line 416, "pan.___", state 860, "(1)" - line 414, "pan.___", state 865, "((i<1))" - line 414, "pan.___", state 865, "((i>=1))" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 873, "else" - line 421, "pan.___", state 876, "(1)" - line 421, "pan.___", state 877, "(1)" - line 421, "pan.___", state 877, "(1)" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 886, "else" - line 425, "pan.___", state 889, "(1)" - line 425, "pan.___", state 890, "(1)" - line 425, "pan.___", state 890, "(1)" - line 430, "pan.___", state 899, "(1)" - line 430, "pan.___", state 899, "(1)" - line 395, "pan.___", state 906, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 908, "(1)" - line 395, "pan.___", state 909, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 909, "else" - line 395, "pan.___", state 912, "(1)" - line 399, "pan.___", state 920, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 923, "else" - line 399, "pan.___", state 926, "(1)" - line 399, "pan.___", state 927, "(1)" - line 399, "pan.___", state 927, "(1)" - line 397, "pan.___", state 932, "((i<1))" - line 397, "pan.___", state 932, "((i>=1))" - line 404, "pan.___", state 938, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 941, "else" - line 404, "pan.___", state 944, "(1)" - line 404, "pan.___", state 945, "(1)" - line 404, "pan.___", state 945, "(1)" - line 408, "pan.___", state 952, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 955, "else" - line 408, "pan.___", state 958, "(1)" - line 408, "pan.___", state 959, "(1)" - line 408, "pan.___", state 959, "(1)" - line 406, "pan.___", state 964, "((i<2))" - line 406, "pan.___", state 964, "((i>=2))" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 972, "else" - line 412, "pan.___", state 975, "(1)" - line 412, "pan.___", state 976, "(1)" - line 412, "pan.___", state 976, "(1)" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 985, "else" - line 416, "pan.___", state 988, "(1)" - line 416, "pan.___", state 989, "(1)" - line 416, "pan.___", state 989, "(1)" - line 414, "pan.___", state 994, "((i<1))" - line 414, "pan.___", state 994, "((i>=1))" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 1002, "else" - line 421, "pan.___", state 1005, "(1)" - line 421, "pan.___", state 1006, "(1)" - line 421, "pan.___", state 1006, "(1)" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1015, "else" - line 425, "pan.___", state 1018, "(1)" - line 425, "pan.___", state 1019, "(1)" - line 425, "pan.___", state 1019, "(1)" - line 423, "pan.___", state 1024, "((i<2))" - line 423, "pan.___", state 1024, "((i>=2))" - line 430, "pan.___", state 1028, "(1)" - line 430, "pan.___", state 1028, "(1)" - line 590, "pan.___", state 1032, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1037, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1069, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1083, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1102, "(1)" - line 421, "pan.___", state 1132, "(1)" - line 425, "pan.___", state 1145, "(1)" - line 395, "pan.___", state 1169, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1201, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1215, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1234, "(1)" - line 421, "pan.___", state 1264, "(1)" - line 425, "pan.___", state 1277, "(1)" - line 395, "pan.___", state 1302, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1334, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1348, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1367, "(1)" - line 421, "pan.___", state 1397, "(1)" - line 425, "pan.___", state 1410, "(1)" - line 395, "pan.___", state 1431, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1463, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1477, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1496, "(1)" - line 421, "pan.___", state 1526, "(1)" - line 425, "pan.___", state 1539, "(1)" - line 250, "pan.___", state 1562, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1564, "(1)" - line 254, "pan.___", state 1571, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1573, "(1)" - line 254, "pan.___", state 1574, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1574, "else" - line 252, "pan.___", state 1579, "((i<1))" - line 252, "pan.___", state 1579, "((i>=1))" - line 258, "pan.___", state 1584, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1586, "(1)" - line 258, "pan.___", state 1587, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1587, "else" - line 262, "pan.___", state 1593, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1595, "(1)" - line 262, "pan.___", state 1596, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1596, "else" - line 260, "pan.___", state 1601, "((i<2))" - line 260, "pan.___", state 1601, "((i>=2))" - line 227, "pan.___", state 1609, "(1)" - line 231, "pan.___", state 1617, "(1)" - line 231, "pan.___", state 1618, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1618, "else" - line 229, "pan.___", state 1623, "((i<1))" - line 229, "pan.___", state 1623, "((i>=1))" - line 235, "pan.___", state 1629, "(1)" - line 235, "pan.___", state 1630, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1630, "else" - line 239, "pan.___", state 1637, "(1)" - line 239, "pan.___", state 1638, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1638, "else" - line 244, "pan.___", state 1647, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1647, "else" - line 277, "pan.___", state 1649, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1649, "else" - line 395, "pan.___", state 1655, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1687, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1701, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1720, "(1)" - line 421, "pan.___", state 1750, "(1)" - line 425, "pan.___", state 1763, "(1)" - line 395, "pan.___", state 1784, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1816, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1830, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1849, "(1)" - line 421, "pan.___", state 1879, "(1)" - line 425, "pan.___", state 1892, "(1)" - line 395, "pan.___", state 1916, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1948, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1962, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1981, "(1)" - line 421, "pan.___", state 2011, "(1)" - line 425, "pan.___", state 2024, "(1)" - line 629, "pan.___", state 2045, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2052, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2084, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2098, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2117, "(1)" - line 421, "pan.___", state 2147, "(1)" - line 425, "pan.___", state 2160, "(1)" - line 395, "pan.___", state 2181, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2213, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2227, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2246, "(1)" - line 421, "pan.___", state 2276, "(1)" - line 425, "pan.___", state 2289, "(1)" - line 395, "pan.___", state 2312, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2314, "(1)" - line 395, "pan.___", state 2315, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2315, "else" - line 395, "pan.___", state 2318, "(1)" - line 399, "pan.___", state 2326, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2329, "else" - line 399, "pan.___", state 2332, "(1)" - line 399, "pan.___", state 2333, "(1)" - line 399, "pan.___", state 2333, "(1)" - line 397, "pan.___", state 2338, "((i<1))" - line 397, "pan.___", state 2338, "((i>=1))" - line 404, "pan.___", state 2344, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2347, "else" - line 404, "pan.___", state 2350, "(1)" - line 404, "pan.___", state 2351, "(1)" - line 404, "pan.___", state 2351, "(1)" - line 408, "pan.___", state 2358, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2361, "else" - line 408, "pan.___", state 2364, "(1)" - line 408, "pan.___", state 2365, "(1)" - line 408, "pan.___", state 2365, "(1)" - line 406, "pan.___", state 2370, "((i<2))" - line 406, "pan.___", state 2370, "((i>=2))" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2378, "else" - line 412, "pan.___", state 2381, "(1)" - line 412, "pan.___", state 2382, "(1)" - line 412, "pan.___", state 2382, "(1)" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2391, "else" - line 416, "pan.___", state 2394, "(1)" - line 416, "pan.___", state 2395, "(1)" - line 416, "pan.___", state 2395, "(1)" - line 414, "pan.___", state 2400, "((i<1))" - line 414, "pan.___", state 2400, "((i>=1))" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2408, "else" - line 421, "pan.___", state 2411, "(1)" - line 421, "pan.___", state 2412, "(1)" - line 421, "pan.___", state 2412, "(1)" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2421, "else" - line 425, "pan.___", state 2424, "(1)" - line 425, "pan.___", state 2425, "(1)" - line 425, "pan.___", state 2425, "(1)" - line 423, "pan.___", state 2430, "((i<2))" - line 423, "pan.___", state 2430, "((i>=2))" - line 430, "pan.___", state 2434, "(1)" - line 430, "pan.___", state 2434, "(1)" - line 629, "pan.___", state 2437, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 629, "pan.___", state 2438, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 629, "pan.___", state 2439, "(1)" - line 250, "pan.___", state 2443, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 2445, "(1)" - line 254, "pan.___", state 2452, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2454, "(1)" - line 254, "pan.___", state 2455, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 2455, "else" - line 252, "pan.___", state 2460, "((i<1))" - line 252, "pan.___", state 2460, "((i>=1))" - line 258, "pan.___", state 2465, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2467, "(1)" - line 258, "pan.___", state 2468, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 2468, "else" - line 262, "pan.___", state 2474, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2476, "(1)" - line 262, "pan.___", state 2477, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 2477, "else" - line 260, "pan.___", state 2482, "((i<2))" - line 260, "pan.___", state 2482, "((i>=2))" - line 227, "pan.___", state 2490, "(1)" - line 231, "pan.___", state 2498, "(1)" - line 231, "pan.___", state 2499, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 2499, "else" - line 229, "pan.___", state 2504, "((i<1))" - line 229, "pan.___", state 2504, "((i>=1))" - line 235, "pan.___", state 2510, "(1)" - line 235, "pan.___", state 2511, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 2511, "else" - line 239, "pan.___", state 2518, "(1)" - line 239, "pan.___", state 2519, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 2519, "else" - line 244, "pan.___", state 2528, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 2528, "else" - line 277, "pan.___", state 2530, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 2530, "else" - line 395, "pan.___", state 2536, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2568, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2582, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2601, "(1)" - line 421, "pan.___", state 2631, "(1)" - line 425, "pan.___", state 2644, "(1)" - line 250, "pan.___", state 2668, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 2670, "(1)" - line 254, "pan.___", state 2677, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2679, "(1)" - line 254, "pan.___", state 2680, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 2680, "else" - line 252, "pan.___", state 2685, "((i<1))" - line 252, "pan.___", state 2685, "((i>=1))" - line 258, "pan.___", state 2690, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2692, "(1)" - line 258, "pan.___", state 2693, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 2693, "else" - line 262, "pan.___", state 2699, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2701, "(1)" - line 262, "pan.___", state 2702, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 2702, "else" - line 260, "pan.___", state 2707, "((i<2))" - line 260, "pan.___", state 2707, "((i>=2))" - line 227, "pan.___", state 2715, "(1)" - line 231, "pan.___", state 2723, "(1)" - line 231, "pan.___", state 2724, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 2724, "else" - line 229, "pan.___", state 2729, "((i<1))" - line 229, "pan.___", state 2729, "((i>=1))" - line 235, "pan.___", state 2735, "(1)" - line 235, "pan.___", state 2736, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 2736, "else" - line 239, "pan.___", state 2743, "(1)" - line 239, "pan.___", state 2744, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 2744, "else" - line 244, "pan.___", state 2753, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 2753, "else" - line 277, "pan.___", state 2755, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 2755, "else" - line 395, "pan.___", state 2761, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2793, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2807, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2826, "(1)" - line 421, "pan.___", state 2856, "(1)" - line 425, "pan.___", state 2869, "(1)" - line 395, "pan.___", state 2890, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2922, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2936, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2955, "(1)" - line 421, "pan.___", state 2985, "(1)" - line 425, "pan.___", state 2998, "(1)" - line 227, "pan.___", state 3031, "(1)" - line 235, "pan.___", state 3051, "(1)" - line 239, "pan.___", state 3059, "(1)" - line 227, "pan.___", state 3074, "(1)" - line 235, "pan.___", state 3094, "(1)" - line 239, "pan.___", state 3102, "(1)" - line 877, "pan.___", state 3119, "-end-" - (363 of 3119 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 20, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 26, "(1)" - line 399, "pan.___", state 34, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 40, "(1)" - line 399, "pan.___", state 41, "(1)" - line 399, "pan.___", state 41, "(1)" - line 397, "pan.___", state 46, "((i<1))" - line 397, "pan.___", state 46, "((i>=1))" - line 404, "pan.___", state 52, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 58, "(1)" - line 404, "pan.___", state 59, "(1)" - line 404, "pan.___", state 59, "(1)" - line 408, "pan.___", state 72, "(1)" - line 408, "pan.___", state 73, "(1)" - line 408, "pan.___", state 73, "(1)" - line 406, "pan.___", state 78, "((i<2))" - line 406, "pan.___", state 78, "((i>=2))" - line 412, "pan.___", state 85, "(1)" - line 412, "pan.___", state 86, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 86, "else" - line 412, "pan.___", state 89, "(1)" - line 412, "pan.___", state 90, "(1)" - line 412, "pan.___", state 90, "(1)" - line 416, "pan.___", state 98, "(1)" - line 416, "pan.___", state 99, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 99, "else" - line 416, "pan.___", state 102, "(1)" - line 416, "pan.___", state 103, "(1)" - line 416, "pan.___", state 103, "(1)" - line 414, "pan.___", state 108, "((i<1))" - line 414, "pan.___", state 108, "((i>=1))" - line 421, "pan.___", state 115, "(1)" - line 421, "pan.___", state 116, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 116, "else" - line 421, "pan.___", state 119, "(1)" - line 421, "pan.___", state 120, "(1)" - line 421, "pan.___", state 120, "(1)" - line 425, "pan.___", state 128, "(1)" - line 425, "pan.___", state 129, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 129, "else" - line 425, "pan.___", state 132, "(1)" - line 425, "pan.___", state 133, "(1)" - line 425, "pan.___", state 133, "(1)" - line 423, "pan.___", state 138, "((i<2))" - line 423, "pan.___", state 138, "((i>=2))" - line 430, "pan.___", state 142, "(1)" - line 430, "pan.___", state 142, "(1)" - line 250, "pan.___", state 151, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 160, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 252, "pan.___", state 168, "((i<1))" - line 252, "pan.___", state 168, "((i>=1))" - line 258, "pan.___", state 173, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 1000, "pan.___", state 201, "old_data = cached_rcu_ptr.val[_pid]" - line 1011, "pan.___", state 205, "_proc_urcu_writer = (_proc_urcu_writer|(1<<4))" - line 395, "pan.___", state 213, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 219, "(1)" - line 399, "pan.___", state 227, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 233, "(1)" - line 399, "pan.___", state 234, "(1)" - line 399, "pan.___", state 234, "(1)" - line 397, "pan.___", state 239, "((i<1))" - line 397, "pan.___", state 239, "((i>=1))" - line 404, "pan.___", state 247, "(1)" - line 404, "pan.___", state 248, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 248, "else" - line 404, "pan.___", state 251, "(1)" - line 404, "pan.___", state 252, "(1)" - line 404, "pan.___", state 252, "(1)" - line 408, "pan.___", state 259, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 265, "(1)" - line 408, "pan.___", state 266, "(1)" - line 408, "pan.___", state 266, "(1)" - line 406, "pan.___", state 271, "((i<2))" - line 406, "pan.___", state 271, "((i>=2))" - line 412, "pan.___", state 278, "(1)" - line 412, "pan.___", state 279, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 279, "else" - line 412, "pan.___", state 282, "(1)" - line 412, "pan.___", state 283, "(1)" - line 412, "pan.___", state 283, "(1)" - line 416, "pan.___", state 291, "(1)" - line 416, "pan.___", state 292, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 292, "else" - line 416, "pan.___", state 295, "(1)" - line 416, "pan.___", state 296, "(1)" - line 416, "pan.___", state 296, "(1)" - line 414, "pan.___", state 301, "((i<1))" - line 414, "pan.___", state 301, "((i>=1))" - line 421, "pan.___", state 308, "(1)" - line 421, "pan.___", state 309, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 309, "else" - line 421, "pan.___", state 312, "(1)" - line 421, "pan.___", state 313, "(1)" - line 421, "pan.___", state 313, "(1)" - line 425, "pan.___", state 321, "(1)" - line 425, "pan.___", state 322, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 322, "else" - line 425, "pan.___", state 325, "(1)" - line 425, "pan.___", state 326, "(1)" - line 425, "pan.___", state 326, "(1)" - line 423, "pan.___", state 331, "((i<2))" - line 423, "pan.___", state 331, "((i>=2))" - line 430, "pan.___", state 335, "(1)" - line 430, "pan.___", state 335, "(1)" - line 395, "pan.___", state 346, "(1)" - line 395, "pan.___", state 347, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 347, "else" - line 395, "pan.___", state 350, "(1)" - line 399, "pan.___", state 358, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 364, "(1)" - line 399, "pan.___", state 365, "(1)" - line 399, "pan.___", state 365, "(1)" - line 397, "pan.___", state 370, "((i<1))" - line 397, "pan.___", state 370, "((i>=1))" - line 404, "pan.___", state 376, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 382, "(1)" - line 404, "pan.___", state 383, "(1)" - line 404, "pan.___", state 383, "(1)" - line 408, "pan.___", state 390, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 396, "(1)" - line 408, "pan.___", state 397, "(1)" - line 408, "pan.___", state 397, "(1)" - line 406, "pan.___", state 402, "((i<2))" - line 406, "pan.___", state 402, "((i>=2))" - line 412, "pan.___", state 409, "(1)" - line 412, "pan.___", state 410, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 410, "else" - line 412, "pan.___", state 413, "(1)" - line 412, "pan.___", state 414, "(1)" - line 412, "pan.___", state 414, "(1)" - line 416, "pan.___", state 422, "(1)" - line 416, "pan.___", state 423, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 423, "else" - line 416, "pan.___", state 426, "(1)" - line 416, "pan.___", state 427, "(1)" - line 416, "pan.___", state 427, "(1)" - line 414, "pan.___", state 432, "((i<1))" - line 414, "pan.___", state 432, "((i>=1))" - line 421, "pan.___", state 439, "(1)" - line 421, "pan.___", state 440, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 440, "else" - line 421, "pan.___", state 443, "(1)" - line 421, "pan.___", state 444, "(1)" - line 421, "pan.___", state 444, "(1)" - line 425, "pan.___", state 452, "(1)" - line 425, "pan.___", state 453, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 453, "else" - line 425, "pan.___", state 456, "(1)" - line 425, "pan.___", state 457, "(1)" - line 425, "pan.___", state 457, "(1)" - line 423, "pan.___", state 462, "((i<2))" - line 423, "pan.___", state 462, "((i>=2))" - line 430, "pan.___", state 466, "(1)" - line 430, "pan.___", state 466, "(1)" - line 1063, "pan.___", state 477, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<8)|(1<<7))))" - line 395, "pan.___", state 482, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 488, "(1)" - line 399, "pan.___", state 496, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 502, "(1)" - line 399, "pan.___", state 503, "(1)" - line 399, "pan.___", state 503, "(1)" - line 397, "pan.___", state 508, "((i<1))" - line 397, "pan.___", state 508, "((i>=1))" - line 404, "pan.___", state 514, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 520, "(1)" - line 404, "pan.___", state 521, "(1)" - line 404, "pan.___", state 521, "(1)" - line 408, "pan.___", state 528, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 534, "(1)" - line 408, "pan.___", state 535, "(1)" - line 408, "pan.___", state 535, "(1)" - line 406, "pan.___", state 540, "((i<2))" - line 406, "pan.___", state 540, "((i>=2))" - line 412, "pan.___", state 547, "(1)" - line 412, "pan.___", state 548, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 548, "else" - line 412, "pan.___", state 551, "(1)" - line 412, "pan.___", state 552, "(1)" - line 412, "pan.___", state 552, "(1)" - line 416, "pan.___", state 560, "(1)" - line 416, "pan.___", state 561, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 561, "else" - line 416, "pan.___", state 564, "(1)" - line 416, "pan.___", state 565, "(1)" - line 416, "pan.___", state 565, "(1)" - line 414, "pan.___", state 570, "((i<1))" - line 414, "pan.___", state 570, "((i>=1))" - line 421, "pan.___", state 577, "(1)" - line 421, "pan.___", state 578, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 578, "else" - line 421, "pan.___", state 581, "(1)" - line 421, "pan.___", state 582, "(1)" - line 421, "pan.___", state 582, "(1)" - line 425, "pan.___", state 590, "(1)" - line 425, "pan.___", state 591, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 591, "else" - line 425, "pan.___", state 594, "(1)" - line 425, "pan.___", state 595, "(1)" - line 425, "pan.___", state 595, "(1)" - line 430, "pan.___", state 604, "(1)" - line 430, "pan.___", state 604, "(1)" - line 395, "pan.___", state 611, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 625, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 643, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 676, "(1)" - line 416, "pan.___", state 689, "(1)" - line 421, "pan.___", state 706, "(1)" - line 425, "pan.___", state 719, "(1)" - line 399, "pan.___", state 756, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 774, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 788, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 820, "(1)" - line 421, "pan.___", state 837, "(1)" - line 425, "pan.___", state 850, "(1)" - line 1135, "pan.___", state 877, "_proc_urcu_writer = (_proc_urcu_writer|(1<<13))" - line 250, "pan.___", state 905, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 907, "(1)" - line 254, "pan.___", state 914, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 916, "(1)" - line 254, "pan.___", state 917, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 917, "else" - line 252, "pan.___", state 922, "((i<1))" - line 252, "pan.___", state 922, "((i>=1))" - line 258, "pan.___", state 927, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 929, "(1)" - line 258, "pan.___", state 930, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 930, "else" - line 262, "pan.___", state 936, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 938, "(1)" - line 262, "pan.___", state 939, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 939, "else" - line 260, "pan.___", state 944, "((i<2))" - line 260, "pan.___", state 944, "((i>=2))" - line 227, "pan.___", state 952, "(1)" - line 231, "pan.___", state 960, "(1)" - line 231, "pan.___", state 961, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 961, "else" - line 229, "pan.___", state 966, "((i<1))" - line 229, "pan.___", state 966, "((i>=1))" - line 235, "pan.___", state 972, "(1)" - line 235, "pan.___", state 973, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 973, "else" - line 239, "pan.___", state 980, "(1)" - line 239, "pan.___", state 981, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 981, "else" - line 244, "pan.___", state 990, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 990, "else" - line 277, "pan.___", state 992, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 992, "else" - line 250, "pan.___", state 996, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 998, "(1)" - line 254, "pan.___", state 1005, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1007, "(1)" - line 254, "pan.___", state 1008, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1008, "else" - line 252, "pan.___", state 1013, "((i<1))" - line 252, "pan.___", state 1013, "((i>=1))" - line 258, "pan.___", state 1018, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1020, "(1)" - line 258, "pan.___", state 1021, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1021, "else" - line 262, "pan.___", state 1027, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1029, "(1)" - line 262, "pan.___", state 1030, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1030, "else" - line 260, "pan.___", state 1035, "((i<2))" - line 260, "pan.___", state 1035, "((i>=2))" - line 227, "pan.___", state 1043, "(1)" - line 231, "pan.___", state 1051, "(1)" - line 231, "pan.___", state 1052, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1052, "else" - line 229, "pan.___", state 1057, "((i<1))" - line 229, "pan.___", state 1057, "((i>=1))" - line 235, "pan.___", state 1063, "(1)" - line 235, "pan.___", state 1064, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1064, "else" - line 239, "pan.___", state 1071, "(1)" - line 239, "pan.___", state 1072, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1072, "else" - line 244, "pan.___", state 1081, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1081, "else" - line 277, "pan.___", state 1083, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1083, "else" - line 254, "pan.___", state 1096, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1109, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1118, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1134, "(1)" - line 231, "pan.___", state 1142, "(1)" - line 235, "pan.___", state 1154, "(1)" - line 239, "pan.___", state 1162, "(1)" - line 250, "pan.___", state 1178, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1180, "(1)" - line 254, "pan.___", state 1187, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1189, "(1)" - line 254, "pan.___", state 1190, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1190, "else" - line 252, "pan.___", state 1195, "((i<1))" - line 252, "pan.___", state 1195, "((i>=1))" - line 258, "pan.___", state 1200, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1202, "(1)" - line 258, "pan.___", state 1203, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1203, "else" - line 262, "pan.___", state 1209, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1211, "(1)" - line 262, "pan.___", state 1212, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1212, "else" - line 260, "pan.___", state 1217, "((i<2))" - line 260, "pan.___", state 1217, "((i>=2))" - line 227, "pan.___", state 1225, "(1)" - line 231, "pan.___", state 1233, "(1)" - line 231, "pan.___", state 1234, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1234, "else" - line 229, "pan.___", state 1239, "((i<1))" - line 229, "pan.___", state 1239, "((i>=1))" - line 235, "pan.___", state 1245, "(1)" - line 235, "pan.___", state 1246, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1246, "else" - line 239, "pan.___", state 1253, "(1)" - line 239, "pan.___", state 1254, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1254, "else" - line 244, "pan.___", state 1263, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1263, "else" - line 277, "pan.___", state 1265, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1265, "else" - line 1204, "pan.___", state 1268, "-end-" - (226 of 1268 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 632 seconds -pan: rate 2628.547 states/second -pan: avg transition delay 1.2347e-06 usec -cp .input.spin urcu_free_no_mb.spin.input -cp .input.spin.trail urcu_free_no_mb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input deleted file mode 100644 index 77b6cf8..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_MB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input.trail deleted file mode 100644 index ea8ed03..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_mb.spin.input.trail +++ /dev/null @@ -1,1227 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4467 -2:3:4387 -3:3:4390 -4:3:4390 -5:3:4393 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-1101:1:15 -1102:0:4467 -1103:2:4016 -1104:0:4467 -1105:1:765 -1106:1:768 -1107:1:769 -1108:0:4467 -1109:2:4015 -1110:0:4467 -1111:1:15 -1112:0:4467 -1113:2:4016 -1114:0:4467 -1115:1:1032 -1116:1:1033 -1117:1:1037 -1118:1:1038 -1119:1:1046 -1120:1:1047 -1121:1:1051 -1122:1:1052 -1123:1:1060 -1124:1:1065 -1125:1:1069 -1126:1:1070 -1127:1:1078 -1128:1:1079 -1129:1:1083 -1130:1:1084 -1131:1:1078 -1132:1:1079 -1133:1:1083 -1134:1:1084 -1135:1:1092 -1136:1:1097 -1137:1:1098 -1138:1:1109 -1139:1:1110 -1140:1:1111 -1141:1:1122 -1142:1:1134 -1143:1:1135 -1144:1:1139 -1145:1:1140 -1146:1:1141 -1147:1:1139 -1148:1:1140 -1149:1:1141 -1150:1:1152 -1151:1:1159 -1152:1:1163 -1153:0:4467 -1154:2:4015 -1155:0:4467 -1156:1:15 -1157:0:4467 -1158:2:4016 -1159:0:4467 -1160:1:1164 -1161:1:1165 -1162:1:1169 -1163:1:1170 -1164:1:1178 -1165:1:1179 -1166:1:1180 -1167:1:1192 -1168:1:1197 -1169:1:1201 -1170:1:1202 -1171:1:1210 -1172:1:1211 -1173:1:1215 -1174:1:1216 -1175:1:1210 -1176:1:1211 -1177:1:1215 -1178:1:1216 -1179:1:1224 -1180:1:1229 -1181:1:1230 -1182:1:1241 -1183:1:1242 -1184:1:1243 -1185:1:1254 -1186:1:1266 -1187:1:1267 -1188:1:1271 -1189:1:1272 -1190:1:1273 -1191:1:1271 -1192:1:1272 -1193:1:1273 -1194:1:1284 -1195:0:4467 -1196:2:4015 -1197:0:4467 -1198:1:15 -1199:0:4467 -1200:2:4016 -1201:0:4467 -1202:1:1293 -1203:0:4467 -1204:2:4015 -1205:0:4467 -1206:1:3027 -1207:1:3034 -1208:1:3035 -1209:1:3042 -1210:1:3047 -1211:1:3054 -1212:1:3055 -1213:1:3054 -1214:1:3055 -1215:1:3062 -1216:1:3066 -1217:0:4467 -1218:2:4016 -1219:0:4467 -1220:1:1295 -1221:1:1296 -1222:0:4465 -1223:2:4015 -1224:0:4471 -1225:1:1135 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.define deleted file mode 100644 index 73e61a4..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_RMB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.log deleted file mode 100644 index c1be1de..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.log +++ /dev/null @@ -1,588 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_rmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -pan: claim violated! (at depth 1714) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4557, errors: 1 - 191938 states, stored - 81734116 states, matched - 81926054 transitions (= stored+matched) -4.8026893e+08 atomic steps -hash conflicts: 5624584 (resolved) - -Stats on memory usage (in Megabytes): - 21.233 equivalent memory usage for states (stored*(State-vector + overhead)) - 16.849 actual memory usage for states (compression: 79.35%) - state-vector as stored = 64 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 482.561 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 82, "(1)" - line 421, "pan.___", state 112, "(1)" - line 425, "pan.___", state 125, "(1)" - line 576, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 218, "(1)" - line 421, "pan.___", state 248, "(1)" - line 425, "pan.___", state 261, "(1)" - line 395, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 347, "(1)" - line 421, "pan.___", state 377, "(1)" - line 425, "pan.___", state 390, "(1)" - line 395, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 415, "(1)" - line 395, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 416, "else" - line 395, "pan.___", state 419, "(1)" - line 399, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 429, "(1)" - line 399, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 430, "else" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "(1)" - line 399, "pan.___", state 434, "(1)" - line 397, "pan.___", state 439, "((i<1))" - line 397, "pan.___", state 439, "((i>=1))" - line 404, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 447, "(1)" - line 404, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 448, "else" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "(1)" - line 404, "pan.___", state 452, "(1)" - line 408, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 461, "(1)" - line 408, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 462, "else" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "(1)" - line 408, "pan.___", state 466, "(1)" - line 406, "pan.___", state 471, "((i<2))" - line 406, "pan.___", state 471, "((i>=2))" - line 412, "pan.___", state 478, "(1)" - line 412, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 479, "else" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(1)" - line 412, "pan.___", state 483, "(1)" - line 416, "pan.___", state 491, "(1)" - line 416, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 492, "else" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(1)" - line 416, "pan.___", state 496, "(1)" - line 414, "pan.___", state 501, "((i<1))" - line 414, "pan.___", state 501, "((i>=1))" - line 421, "pan.___", state 508, "(1)" - line 421, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 509, "else" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(1)" - line 421, "pan.___", state 513, "(1)" - line 425, "pan.___", state 521, "(1)" - line 425, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 522, "else" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(1)" - line 425, "pan.___", state 526, "(1)" - line 423, "pan.___", state 531, "((i<2))" - line 423, "pan.___", state 531, "((i>=2))" - line 430, "pan.___", state 535, "(1)" - line 430, "pan.___", state 535, "(1)" - line 576, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 576, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 576, "pan.___", state 540, "(1)" - line 250, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 555, "(1)" - line 258, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 591, "(1)" - line 231, "pan.___", state 599, "(1)" - line 235, "pan.___", state 611, "(1)" - line 239, "pan.___", state 619, "(1)" - line 395, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 702, "(1)" - line 416, "pan.___", state 715, "(1)" - line 421, "pan.___", state 732, "(1)" - line 425, "pan.___", state 745, "(1)" - line 395, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 775, "(1)" - line 395, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 776, "else" - line 395, "pan.___", state 779, "(1)" - line 399, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 789, "(1)" - line 399, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 790, "else" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "(1)" - line 399, "pan.___", state 794, "(1)" - line 397, "pan.___", state 799, "((i<1))" - line 397, "pan.___", state 799, "((i>=1))" - line 404, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 807, "(1)" - line 404, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 808, "else" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 812, "(1)" - line 408, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<2))" - line 406, "pan.___", state 831, "((i>=2))" - line 412, "pan.___", state 838, "(1)" - line 412, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 839, "else" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(1)" - line 412, "pan.___", state 843, "(1)" - line 416, "pan.___", state 851, "(1)" - line 416, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 852, "else" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(1)" - line 416, "pan.___", state 856, "(1)" - line 414, "pan.___", state 861, "((i<1))" - line 414, "pan.___", state 861, "((i>=1))" - line 421, "pan.___", state 868, "(1)" - line 421, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 869, "else" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(1)" - line 421, "pan.___", state 873, "(1)" - line 425, "pan.___", state 881, "(1)" - line 425, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 882, "else" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(1)" - line 425, "pan.___", state 886, "(1)" - line 430, "pan.___", state 895, "(1)" - line 430, "pan.___", state 895, "(1)" - line 395, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 904, "(1)" - line 395, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 905, "else" - line 395, "pan.___", state 908, "(1)" - line 399, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 918, "(1)" - line 399, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 919, "else" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "(1)" - line 399, "pan.___", state 923, "(1)" - line 397, "pan.___", state 928, "((i<1))" - line 397, "pan.___", state 928, "((i>=1))" - line 404, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 936, "(1)" - line 404, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 937, "else" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "(1)" - line 404, "pan.___", state 941, "(1)" - line 408, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 950, "(1)" - line 408, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 951, "else" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "(1)" - line 408, "pan.___", state 955, "(1)" - line 406, "pan.___", state 960, "((i<2))" - line 406, "pan.___", state 960, "((i>=2))" - line 412, "pan.___", state 967, "(1)" - line 412, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 968, "else" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(1)" - line 412, "pan.___", state 972, "(1)" - line 416, "pan.___", state 980, "(1)" - line 416, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 981, "else" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(1)" - line 416, "pan.___", state 985, "(1)" - line 414, "pan.___", state 990, "((i<1))" - line 414, "pan.___", state 990, "((i>=1))" - line 421, "pan.___", state 997, "(1)" - line 421, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 998, "else" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 425, "pan.___", state 1010, "(1)" - line 425, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1011, "else" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 423, "pan.___", state 1020, "((i<2))" - line 423, "pan.___", state 1020, "((i>=2))" - line 430, "pan.___", state 1024, "(1)" - line 430, "pan.___", state 1024, "(1)" - line 584, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1098, "(1)" - line 416, "pan.___", state 1111, "(1)" - line 421, "pan.___", state 1128, "(1)" - line 425, "pan.___", state 1141, "(1)" - line 395, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1230, "(1)" - line 421, "pan.___", state 1260, "(1)" - line 425, "pan.___", state 1273, "(1)" - line 395, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1363, "(1)" - line 421, "pan.___", state 1393, "(1)" - line 425, "pan.___", state 1406, "(1)" - line 395, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1492, "(1)" - line 421, "pan.___", state 1522, "(1)" - line 425, "pan.___", state 1535, "(1)" - line 250, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1605, "(1)" - line 231, "pan.___", state 1613, "(1)" - line 235, "pan.___", state 1625, "(1)" - line 239, "pan.___", state 1633, "(1)" - line 395, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1716, "(1)" - line 416, "pan.___", state 1729, "(1)" - line 421, "pan.___", state 1746, "(1)" - line 425, "pan.___", state 1759, "(1)" - line 395, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1845, "(1)" - line 416, "pan.___", state 1858, "(1)" - line 421, "pan.___", state 1875, "(1)" - line 425, "pan.___", state 1888, "(1)" - line 395, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1928, "(1)" - line 404, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1977, "(1)" - line 421, "pan.___", state 2007, "(1)" - line 425, "pan.___", state 2020, "(1)" - line 623, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2113, "(1)" - line 421, "pan.___", state 2143, "(1)" - line 425, "pan.___", state 2156, "(1)" - line 395, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2242, "(1)" - line 421, "pan.___", state 2272, "(1)" - line 425, "pan.___", state 2285, "(1)" - line 395, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2310, "(1)" - line 395, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2311, "else" - line 395, "pan.___", state 2314, "(1)" - line 399, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2324, "(1)" - line 399, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2325, "else" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 397, "pan.___", state 2334, "((i<1))" - line 397, "pan.___", state 2334, "((i>=1))" - line 404, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2342, "(1)" - line 404, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2343, "else" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 408, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2356, "(1)" - line 408, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2357, "else" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 406, "pan.___", state 2366, "((i<2))" - line 406, "pan.___", state 2366, "((i>=2))" - line 412, "pan.___", state 2373, "(1)" - line 412, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2374, "else" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 416, "pan.___", state 2386, "(1)" - line 416, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2387, "else" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 414, "pan.___", state 2396, "((i<1))" - line 414, "pan.___", state 2396, "((i>=1))" - line 421, "pan.___", state 2403, "(1)" - line 421, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2404, "else" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 425, "pan.___", state 2416, "(1)" - line 425, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2417, "else" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 423, "pan.___", state 2426, "((i<2))" - line 423, "pan.___", state 2426, "((i>=2))" - line 430, "pan.___", state 2430, "(1)" - line 430, "pan.___", state 2430, "(1)" - line 623, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 623, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 623, "pan.___", state 2435, "(1)" - line 250, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2450, "(1)" - line 258, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2486, "(1)" - line 231, "pan.___", state 2494, "(1)" - line 235, "pan.___", state 2506, "(1)" - line 239, "pan.___", state 2514, "(1)" - line 395, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2597, "(1)" - line 416, "pan.___", state 2610, "(1)" - line 421, "pan.___", state 2627, "(1)" - line 425, "pan.___", state 2640, "(1)" - line 250, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2711, "(1)" - line 231, "pan.___", state 2719, "(1)" - line 235, "pan.___", state 2731, "(1)" - line 239, "pan.___", state 2739, "(1)" - line 395, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2822, "(1)" - line 416, "pan.___", state 2835, "(1)" - line 421, "pan.___", state 2852, "(1)" - line 425, "pan.___", state 2865, "(1)" - line 395, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2951, "(1)" - line 416, "pan.___", state 2964, "(1)" - line 421, "pan.___", state 2981, "(1)" - line 425, "pan.___", state 2994, "(1)" - line 395, "pan.___", state 3027, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 3059, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 3073, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 3092, "(1)" - line 421, "pan.___", state 3122, "(1)" - line 425, "pan.___", state 3135, "(1)" - line 395, "pan.___", state 3154, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 3168, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 3186, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 3200, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 3219, "(1)" - line 416, "pan.___", state 3232, "(1)" - line 421, "pan.___", state 3249, "(1)" - line 425, "pan.___", state 3262, "(1)" - line 877, "pan.___", state 3283, "-end-" - (325 of 3283 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 24, "(1)" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 38, "(1)" - line 399, "pan.___", state 39, "(1)" - line 399, "pan.___", state 39, "(1)" - line 397, "pan.___", state 44, "((i<1))" - line 397, "pan.___", state 44, "((i>=1))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 56, "(1)" - line 404, "pan.___", state 57, "(1)" - line 404, "pan.___", state 57, "(1)" - line 408, "pan.___", state 70, "(1)" - line 408, "pan.___", state 71, "(1)" - line 408, "pan.___", state 71, "(1)" - line 406, "pan.___", state 76, "((i<2))" - line 406, "pan.___", state 76, "((i>=2))" - line 412, "pan.___", state 83, "(1)" - line 412, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 84, "else" - line 412, "pan.___", state 87, "(1)" - line 412, "pan.___", state 88, "(1)" - line 412, "pan.___", state 88, "(1)" - line 416, "pan.___", state 96, "(1)" - line 416, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 97, "else" - line 416, "pan.___", state 100, "(1)" - line 416, "pan.___", state 101, "(1)" - line 416, "pan.___", state 101, "(1)" - line 414, "pan.___", state 106, "((i<1))" - line 414, "pan.___", state 106, "((i>=1))" - line 421, "pan.___", state 113, "(1)" - line 421, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 114, "else" - line 421, "pan.___", state 117, "(1)" - line 421, "pan.___", state 118, "(1)" - line 421, "pan.___", state 118, "(1)" - line 425, "pan.___", state 126, "(1)" - line 425, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 127, "else" - line 425, "pan.___", state 130, "(1)" - line 425, "pan.___", state 131, "(1)" - line 425, "pan.___", state 131, "(1)" - line 423, "pan.___", state 136, "((i<2))" - line 423, "pan.___", state 136, "((i>=2))" - line 430, "pan.___", state 140, "(1)" - line 430, "pan.___", state 140, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 254, "pan.___", state 1003, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1025, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1041, "(1)" - line 231, "pan.___", state 1049, "(1)" - line 235, "pan.___", state 1061, "(1)" - line 239, "pan.___", state 1069, "(1)" - line 254, "pan.___", state 1094, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1107, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1132, "(1)" - line 231, "pan.___", state 1140, "(1)" - line 235, "pan.___", state 1152, "(1)" - line 239, "pan.___", state 1160, "(1)" - line 254, "pan.___", state 1185, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1198, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1207, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1223, "(1)" - line 231, "pan.___", state 1231, "(1)" - line 235, "pan.___", state 1243, "(1)" - line 239, "pan.___", state 1251, "(1)" - line 1204, "pan.___", state 1266, "-end-" - (96 of 1266 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 102 seconds -pan: rate 1874.9438 states/second -pan: avg transition delay 1.2495e-06 usec -cp .input.spin urcu_free_no_rmb.spin.input -cp .input.spin.trail urcu_free_no_rmb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input deleted file mode 100644 index 2d07e51..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_RMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input.trail deleted file mode 100644 index e179cd5..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_rmb.spin.input.trail +++ /dev/null @@ -1,1717 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4629 -2:3:4549 -3:3:4552 -4:3:4552 -5:3:4555 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-1641:2:3620 -1642:2:3621 -1643:2:3625 -1644:2:3626 -1645:2:3634 -1646:2:3635 -1647:2:3639 -1648:2:3640 -1649:2:3648 -1650:2:3653 -1651:2:3657 -1652:2:3658 -1653:2:3666 -1654:2:3667 -1655:2:3671 -1656:2:3672 -1657:2:3666 -1658:2:3667 -1659:2:3671 -1660:2:3672 -1661:2:3680 -1662:2:3685 -1663:2:3686 -1664:2:3697 -1665:2:3698 -1666:2:3699 -1667:2:3710 -1668:2:3715 -1669:2:3716 -1670:2:3727 -1671:2:3728 -1672:2:3729 -1673:2:3727 -1674:2:3728 -1675:2:3729 -1676:2:3740 -1677:2:3749 -1678:0:4629 -1679:2:3295 -1680:0:4629 -1681:2:3755 -1682:0:4629 -1683:2:4277 -1684:2:4278 -1685:2:4282 -1686:2:4286 -1687:2:4287 -1688:2:4291 -1689:2:4299 -1690:2:4300 -1691:2:4304 -1692:2:4308 -1693:2:4309 -1694:2:4304 -1695:2:4308 -1696:2:4309 -1697:2:4313 -1698:2:4320 -1699:2:4327 -1700:2:4328 -1701:2:4335 -1702:2:4340 -1703:2:4347 -1704:2:4348 -1705:2:4347 -1706:2:4348 -1707:2:4355 -1708:2:4359 -1709:0:4629 -1710:1:1291 -1711:1:1292 -1712:0:4627 -1713:1:11 -1714:0:4633 -1715:1:208 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.define deleted file mode 100644 index 710f29d..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.define +++ /dev/null @@ -1 +0,0 @@ -#define NO_WMB diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.log deleted file mode 100644 index 4f2bfe6..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.log +++ /dev/null @@ -1,552 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_no_wmb.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -Depth= 4637 States= 1e+06 Transitions= 4.63e+08 Memory= 550.432 t= 580 R= 2e+03 -pan: claim violated! (at depth 1199) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4637, errors: 1 - 1676215 states, stored -7.6378297e+08 states, matched -7.6545918e+08 transitions (= stored+matched) -4.5297646e+09 atomic steps -hash conflicts: 3.184152e+08 (resolved) - -Stats on memory usage (in Megabytes): - 185.433 equivalent memory usage for states (stored*(State-vector + overhead)) - 141.544 actual memory usage for states (compression: 76.33%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 607.170 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 82, "(1)" - line 421, "pan.___", state 112, "(1)" - line 425, "pan.___", state 125, "(1)" - line 576, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 218, "(1)" - line 421, "pan.___", state 248, "(1)" - line 425, "pan.___", state 261, "(1)" - line 395, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 347, "(1)" - line 421, "pan.___", state 377, "(1)" - line 425, "pan.___", state 390, "(1)" - line 395, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 415, "(1)" - line 395, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 416, "else" - line 395, "pan.___", state 419, "(1)" - line 399, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 429, "(1)" - line 399, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 430, "else" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "(1)" - line 399, "pan.___", state 434, "(1)" - line 397, "pan.___", state 439, "((i<1))" - line 397, "pan.___", state 439, "((i>=1))" - line 404, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 447, "(1)" - line 404, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 448, "else" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "(1)" - line 404, "pan.___", state 452, "(1)" - line 408, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 461, "(1)" - line 408, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 462, "else" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "(1)" - line 408, "pan.___", state 466, "(1)" - line 406, "pan.___", state 471, "((i<2))" - line 406, "pan.___", state 471, "((i>=2))" - line 412, "pan.___", state 478, "(1)" - line 412, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 479, "else" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(1)" - line 412, "pan.___", state 483, "(1)" - line 416, "pan.___", state 491, "(1)" - line 416, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 492, "else" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(1)" - line 416, "pan.___", state 496, "(1)" - line 414, "pan.___", state 501, "((i<1))" - line 414, "pan.___", state 501, "((i>=1))" - line 421, "pan.___", state 508, "(1)" - line 421, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 509, "else" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(1)" - line 421, "pan.___", state 513, "(1)" - line 425, "pan.___", state 521, "(1)" - line 425, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 522, "else" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(1)" - line 425, "pan.___", state 526, "(1)" - line 423, "pan.___", state 531, "((i<2))" - line 423, "pan.___", state 531, "((i>=2))" - line 430, "pan.___", state 535, "(1)" - line 430, "pan.___", state 535, "(1)" - line 576, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 576, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 576, "pan.___", state 540, "(1)" - line 250, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 555, "(1)" - line 258, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 591, "(1)" - line 231, "pan.___", state 599, "(1)" - line 235, "pan.___", state 611, "(1)" - line 239, "pan.___", state 619, "(1)" - line 395, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 702, "(1)" - line 416, "pan.___", state 715, "(1)" - line 421, "pan.___", state 732, "(1)" - line 425, "pan.___", state 745, "(1)" - line 395, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 775, "(1)" - line 395, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 776, "else" - line 395, "pan.___", state 779, "(1)" - line 399, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 789, "(1)" - line 399, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 790, "else" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "(1)" - line 399, "pan.___", state 794, "(1)" - line 397, "pan.___", state 799, "((i<1))" - line 397, "pan.___", state 799, "((i>=1))" - line 404, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 807, "(1)" - line 404, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 808, "else" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 812, "(1)" - line 408, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<2))" - line 406, "pan.___", state 831, "((i>=2))" - line 412, "pan.___", state 838, "(1)" - line 412, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 839, "else" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(1)" - line 412, "pan.___", state 843, "(1)" - line 416, "pan.___", state 851, "(1)" - line 416, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 852, "else" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(1)" - line 416, "pan.___", state 856, "(1)" - line 414, "pan.___", state 861, "((i<1))" - line 414, "pan.___", state 861, "((i>=1))" - line 421, "pan.___", state 868, "(1)" - line 421, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 869, "else" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(1)" - line 421, "pan.___", state 873, "(1)" - line 425, "pan.___", state 881, "(1)" - line 425, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 882, "else" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(1)" - line 425, "pan.___", state 886, "(1)" - line 430, "pan.___", state 895, "(1)" - line 430, "pan.___", state 895, "(1)" - line 395, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 904, "(1)" - line 395, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 905, "else" - line 395, "pan.___", state 908, "(1)" - line 399, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 918, "(1)" - line 399, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 919, "else" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "(1)" - line 399, "pan.___", state 923, "(1)" - line 397, "pan.___", state 928, "((i<1))" - line 397, "pan.___", state 928, "((i>=1))" - line 404, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 936, "(1)" - line 404, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 937, "else" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "(1)" - line 404, "pan.___", state 941, "(1)" - line 408, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 950, "(1)" - line 408, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 951, "else" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "(1)" - line 408, "pan.___", state 955, "(1)" - line 406, "pan.___", state 960, "((i<2))" - line 406, "pan.___", state 960, "((i>=2))" - line 412, "pan.___", state 967, "(1)" - line 412, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 968, "else" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(1)" - line 412, "pan.___", state 972, "(1)" - line 416, "pan.___", state 980, "(1)" - line 416, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 981, "else" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(1)" - line 416, "pan.___", state 985, "(1)" - line 414, "pan.___", state 990, "((i<1))" - line 414, "pan.___", state 990, "((i>=1))" - line 421, "pan.___", state 997, "(1)" - line 421, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 998, "else" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 425, "pan.___", state 1010, "(1)" - line 425, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1011, "else" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 423, "pan.___", state 1020, "((i<2))" - line 423, "pan.___", state 1020, "((i>=2))" - line 430, "pan.___", state 1024, "(1)" - line 430, "pan.___", state 1024, "(1)" - line 584, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1098, "(1)" - line 416, "pan.___", state 1111, "(1)" - line 421, "pan.___", state 1128, "(1)" - line 425, "pan.___", state 1141, "(1)" - line 395, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1230, "(1)" - line 421, "pan.___", state 1260, "(1)" - line 425, "pan.___", state 1273, "(1)" - line 395, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1363, "(1)" - line 421, "pan.___", state 1393, "(1)" - line 425, "pan.___", state 1406, "(1)" - line 395, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1492, "(1)" - line 421, "pan.___", state 1522, "(1)" - line 425, "pan.___", state 1535, "(1)" - line 250, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1605, "(1)" - line 231, "pan.___", state 1613, "(1)" - line 235, "pan.___", state 1625, "(1)" - line 239, "pan.___", state 1633, "(1)" - line 395, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1716, "(1)" - line 416, "pan.___", state 1729, "(1)" - line 421, "pan.___", state 1746, "(1)" - line 425, "pan.___", state 1759, "(1)" - line 395, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1845, "(1)" - line 416, "pan.___", state 1858, "(1)" - line 421, "pan.___", state 1875, "(1)" - line 425, "pan.___", state 1888, "(1)" - line 395, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1928, "(1)" - line 404, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1977, "(1)" - line 421, "pan.___", state 2007, "(1)" - line 425, "pan.___", state 2020, "(1)" - line 623, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2113, "(1)" - line 421, "pan.___", state 2143, "(1)" - line 425, "pan.___", state 2156, "(1)" - line 395, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2242, "(1)" - line 421, "pan.___", state 2272, "(1)" - line 425, "pan.___", state 2285, "(1)" - line 395, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2310, "(1)" - line 395, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2311, "else" - line 395, "pan.___", state 2314, "(1)" - line 399, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2324, "(1)" - line 399, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2325, "else" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 397, "pan.___", state 2334, "((i<1))" - line 397, "pan.___", state 2334, "((i>=1))" - line 404, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2342, "(1)" - line 404, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2343, "else" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 408, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2356, "(1)" - line 408, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2357, "else" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 406, "pan.___", state 2366, "((i<2))" - line 406, "pan.___", state 2366, "((i>=2))" - line 412, "pan.___", state 2373, "(1)" - line 412, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2374, "else" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 416, "pan.___", state 2386, "(1)" - line 416, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2387, "else" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 414, "pan.___", state 2396, "((i<1))" - line 414, "pan.___", state 2396, "((i>=1))" - line 421, "pan.___", state 2403, "(1)" - line 421, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2404, "else" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 425, "pan.___", state 2416, "(1)" - line 425, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2417, "else" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 423, "pan.___", state 2426, "((i<2))" - line 423, "pan.___", state 2426, "((i>=2))" - line 430, "pan.___", state 2430, "(1)" - line 430, "pan.___", state 2430, "(1)" - line 623, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 623, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 623, "pan.___", state 2435, "(1)" - line 250, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2450, "(1)" - line 258, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2486, "(1)" - line 231, "pan.___", state 2494, "(1)" - line 235, "pan.___", state 2506, "(1)" - line 239, "pan.___", state 2514, "(1)" - line 395, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2597, "(1)" - line 416, "pan.___", state 2610, "(1)" - line 421, "pan.___", state 2627, "(1)" - line 425, "pan.___", state 2640, "(1)" - line 250, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2711, "(1)" - line 231, "pan.___", state 2719, "(1)" - line 235, "pan.___", state 2731, "(1)" - line 239, "pan.___", state 2739, "(1)" - line 395, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2822, "(1)" - line 416, "pan.___", state 2835, "(1)" - line 421, "pan.___", state 2852, "(1)" - line 425, "pan.___", state 2865, "(1)" - line 395, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2951, "(1)" - line 416, "pan.___", state 2964, "(1)" - line 421, "pan.___", state 2981, "(1)" - line 425, "pan.___", state 2994, "(1)" - line 227, "pan.___", state 3027, "(1)" - line 235, "pan.___", state 3047, "(1)" - line 239, "pan.___", state 3055, "(1)" - line 227, "pan.___", state 3070, "(1)" - line 231, "pan.___", state 3078, "(1)" - line 235, "pan.___", state 3090, "(1)" - line 239, "pan.___", state 3098, "(1)" - line 877, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 19, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 33, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 84, "(1)" - line 416, "pan.___", state 97, "(1)" - line 250, "pan.___", state 150, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 152, "(1)" - line 254, "pan.___", state 159, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 161, "(1)" - line 254, "pan.___", state 162, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 162, "else" - line 252, "pan.___", state 167, "((i<1))" - line 252, "pan.___", state 167, "((i>=1))" - line 258, "pan.___", state 172, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 174, "(1)" - line 258, "pan.___", state 175, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 175, "else" - line 262, "pan.___", state 181, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 183, "(1)" - line 262, "pan.___", state 184, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 184, "else" - line 267, "pan.___", state 193, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 267, "pan.___", state 193, "else" - line 395, "pan.___", state 212, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 226, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 244, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 258, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 277, "(1)" - line 416, "pan.___", state 290, "(1)" - line 421, "pan.___", state 307, "(1)" - line 425, "pan.___", state 320, "(1)" - line 399, "pan.___", state 357, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 375, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 389, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 421, "(1)" - line 421, "pan.___", state 438, "(1)" - line 425, "pan.___", state 451, "(1)" - line 399, "pan.___", state 495, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 513, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 527, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 559, "(1)" - line 421, "pan.___", state 576, "(1)" - line 425, "pan.___", state 589, "(1)" - line 399, "pan.___", state 624, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 642, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 656, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 688, "(1)" - line 421, "pan.___", state 705, "(1)" - line 425, "pan.___", state 718, "(1)" - line 399, "pan.___", state 755, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 773, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 787, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 819, "(1)" - line 421, "pan.___", state 836, "(1)" - line 425, "pan.___", state 849, "(1)" - line 250, "pan.___", state 904, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 913, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 227, "pan.___", state 951, "(1)" - line 231, "pan.___", state 959, "(1)" - line 235, "pan.___", state 971, "(1)" - line 239, "pan.___", state 979, "(1)" - line 254, "pan.___", state 1004, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1017, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1026, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1042, "(1)" - line 231, "pan.___", state 1050, "(1)" - line 235, "pan.___", state 1062, "(1)" - line 239, "pan.___", state 1070, "(1)" - line 254, "pan.___", state 1095, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1108, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1117, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1133, "(1)" - line 231, "pan.___", state 1141, "(1)" - line 235, "pan.___", state 1153, "(1)" - line 239, "pan.___", state 1161, "(1)" - line 254, "pan.___", state 1186, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1199, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1208, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1224, "(1)" - line 231, "pan.___", state 1232, "(1)" - line 235, "pan.___", state 1244, "(1)" - line 239, "pan.___", state 1252, "(1)" - line 1204, "pan.___", state 1267, "-end-" - (77 of 1267 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 966 seconds -pan: rate 1735.7692 states/second -pan: avg transition delay 1.2616e-06 usec -cp .input.spin urcu_free_no_wmb.spin.input -cp .input.spin.trail urcu_free_no_wmb.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input deleted file mode 100644 index e552903..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define NO_WMB - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input.trail deleted file mode 100644 index 0908988..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_no_wmb.spin.input.trail +++ /dev/null @@ -1,1202 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4462 -2:3:4382 -3:3:4385 -4:3:4385 -5:3:4388 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-1181:2:4168 -1182:2:4173 -1183:2:4180 -1184:2:4181 -1185:2:4180 -1186:2:4181 -1187:2:4188 -1188:2:4192 -1189:0:4462 -1190:2:3590 -1191:2:4000 -1192:0:4462 -1193:2:3128 -1194:0:4462 -1195:1:1291 -1196:1:1292 -1197:0:4460 -1198:1:11 -1199:0:4466 -1200:2:3477 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.define deleted file mode 100644 index 5e642ef..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.define +++ /dev/null @@ -1 +0,0 @@ -#define SINGLE_FLIP diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.log deleted file mode 100644 index e414670..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.log +++ /dev/null @@ -1,732 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define >> pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_free.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_free_single_flip.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -pan: claim violated! (at depth 1036) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness disabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4474, errors: 1 - 607250 states, stored -2.1024134e+08 states, matched -2.1084859e+08 transitions (= stored+matched) -1.2498522e+09 atomic steps -hash conflicts: 36422558 (resolved) - -Stats on memory usage (in Megabytes): - 67.178 equivalent memory usage for states (stored*(State-vector + overhead)) - 51.749 actual memory usage for states (compression: 77.03%) - state-vector as stored = 61 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 517.424 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 82, "(1)" - line 421, "pan.___", state 112, "(1)" - line 425, "pan.___", state 125, "(1)" - line 576, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 218, "(1)" - line 421, "pan.___", state 248, "(1)" - line 425, "pan.___", state 261, "(1)" - line 395, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 347, "(1)" - line 421, "pan.___", state 377, "(1)" - line 425, "pan.___", state 390, "(1)" - line 395, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 415, "(1)" - line 395, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 416, "else" - line 395, "pan.___", state 419, "(1)" - line 399, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 429, "(1)" - line 399, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 430, "else" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "(1)" - line 399, "pan.___", state 434, "(1)" - line 397, "pan.___", state 439, "((i<1))" - line 397, "pan.___", state 439, "((i>=1))" - line 404, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 447, "(1)" - line 404, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 448, "else" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "(1)" - line 404, "pan.___", state 452, "(1)" - line 408, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 461, "(1)" - line 408, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 462, "else" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "(1)" - line 408, "pan.___", state 466, "(1)" - line 406, "pan.___", state 471, "((i<2))" - line 406, "pan.___", state 471, "((i>=2))" - line 412, "pan.___", state 478, "(1)" - line 412, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 479, "else" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(1)" - line 412, "pan.___", state 483, "(1)" - line 416, "pan.___", state 491, "(1)" - line 416, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 492, "else" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(1)" - line 416, "pan.___", state 496, "(1)" - line 414, "pan.___", state 501, "((i<1))" - line 414, "pan.___", state 501, "((i>=1))" - line 421, "pan.___", state 508, "(1)" - line 421, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 509, "else" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(1)" - line 421, "pan.___", state 513, "(1)" - line 425, "pan.___", state 521, "(1)" - line 425, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 522, "else" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(1)" - line 425, "pan.___", state 526, "(1)" - line 423, "pan.___", state 531, "((i<2))" - line 423, "pan.___", state 531, "((i>=2))" - line 430, "pan.___", state 535, "(1)" - line 430, "pan.___", state 535, "(1)" - line 576, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 576, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 576, "pan.___", state 540, "(1)" - line 250, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 555, "(1)" - line 258, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 591, "(1)" - line 231, "pan.___", state 599, "(1)" - line 235, "pan.___", state 611, "(1)" - line 239, "pan.___", state 619, "(1)" - line 395, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 702, "(1)" - line 416, "pan.___", state 715, "(1)" - line 421, "pan.___", state 732, "(1)" - line 425, "pan.___", state 745, "(1)" - line 395, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 775, "(1)" - line 395, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 776, "else" - line 395, "pan.___", state 779, "(1)" - line 399, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 789, "(1)" - line 399, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 790, "else" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "(1)" - line 399, "pan.___", state 794, "(1)" - line 397, "pan.___", state 799, "((i<1))" - line 397, "pan.___", state 799, "((i>=1))" - line 404, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 807, "(1)" - line 404, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 808, "else" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 812, "(1)" - line 408, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<2))" - line 406, "pan.___", state 831, "((i>=2))" - line 412, "pan.___", state 838, "(1)" - line 412, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 839, "else" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(1)" - line 412, "pan.___", state 843, "(1)" - line 416, "pan.___", state 851, "(1)" - line 416, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 852, "else" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(1)" - line 416, "pan.___", state 856, "(1)" - line 414, "pan.___", state 861, "((i<1))" - line 414, "pan.___", state 861, "((i>=1))" - line 421, "pan.___", state 868, "(1)" - line 421, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 869, "else" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(1)" - line 421, "pan.___", state 873, "(1)" - line 425, "pan.___", state 881, "(1)" - line 425, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 882, "else" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(1)" - line 425, "pan.___", state 886, "(1)" - line 430, "pan.___", state 895, "(1)" - line 430, "pan.___", state 895, "(1)" - line 395, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 904, "(1)" - line 395, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 905, "else" - line 395, "pan.___", state 908, "(1)" - line 399, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 918, "(1)" - line 399, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 919, "else" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "(1)" - line 399, "pan.___", state 923, "(1)" - line 397, "pan.___", state 928, "((i<1))" - line 397, "pan.___", state 928, "((i>=1))" - line 404, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 936, "(1)" - line 404, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 937, "else" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "(1)" - line 404, "pan.___", state 941, "(1)" - line 408, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 950, "(1)" - line 408, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 951, "else" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "(1)" - line 408, "pan.___", state 955, "(1)" - line 406, "pan.___", state 960, "((i<2))" - line 406, "pan.___", state 960, "((i>=2))" - line 412, "pan.___", state 967, "(1)" - line 412, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 968, "else" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(1)" - line 412, "pan.___", state 972, "(1)" - line 416, "pan.___", state 980, "(1)" - line 416, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 981, "else" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(1)" - line 416, "pan.___", state 985, "(1)" - line 414, "pan.___", state 990, "((i<1))" - line 414, "pan.___", state 990, "((i>=1))" - line 421, "pan.___", state 997, "(1)" - line 421, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 998, "else" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 425, "pan.___", state 1010, "(1)" - line 425, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1011, "else" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 423, "pan.___", state 1020, "((i<2))" - line 423, "pan.___", state 1020, "((i>=2))" - line 430, "pan.___", state 1024, "(1)" - line 430, "pan.___", state 1024, "(1)" - line 584, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1098, "(1)" - line 416, "pan.___", state 1111, "(1)" - line 421, "pan.___", state 1128, "(1)" - line 425, "pan.___", state 1141, "(1)" - line 395, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1230, "(1)" - line 421, "pan.___", state 1260, "(1)" - line 425, "pan.___", state 1273, "(1)" - line 395, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1363, "(1)" - line 421, "pan.___", state 1393, "(1)" - line 425, "pan.___", state 1406, "(1)" - line 395, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1492, "(1)" - line 421, "pan.___", state 1522, "(1)" - line 425, "pan.___", state 1535, "(1)" - line 250, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1605, "(1)" - line 231, "pan.___", state 1613, "(1)" - line 235, "pan.___", state 1625, "(1)" - line 239, "pan.___", state 1633, "(1)" - line 395, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1716, "(1)" - line 416, "pan.___", state 1729, "(1)" - line 421, "pan.___", state 1746, "(1)" - line 425, "pan.___", state 1759, "(1)" - line 395, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1845, "(1)" - line 416, "pan.___", state 1858, "(1)" - line 421, "pan.___", state 1875, "(1)" - line 425, "pan.___", state 1888, "(1)" - line 395, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1928, "(1)" - line 404, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1977, "(1)" - line 421, "pan.___", state 2007, "(1)" - line 425, "pan.___", state 2020, "(1)" - line 623, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2113, "(1)" - line 421, "pan.___", state 2143, "(1)" - line 425, "pan.___", state 2156, "(1)" - line 395, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2242, "(1)" - line 421, "pan.___", state 2272, "(1)" - line 425, "pan.___", state 2285, "(1)" - line 395, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2310, "(1)" - line 395, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2311, "else" - line 395, "pan.___", state 2314, "(1)" - line 399, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2324, "(1)" - line 399, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2325, "else" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 397, "pan.___", state 2334, "((i<1))" - line 397, "pan.___", state 2334, "((i>=1))" - line 404, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2342, "(1)" - line 404, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2343, "else" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 408, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2356, "(1)" - line 408, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2357, "else" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 406, "pan.___", state 2366, "((i<2))" - line 406, "pan.___", state 2366, "((i>=2))" - line 412, "pan.___", state 2373, "(1)" - line 412, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2374, "else" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 416, "pan.___", state 2386, "(1)" - line 416, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2387, "else" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 414, "pan.___", state 2396, "((i<1))" - line 414, "pan.___", state 2396, "((i>=1))" - line 421, "pan.___", state 2403, "(1)" - line 421, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2404, "else" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 425, "pan.___", state 2416, "(1)" - line 425, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2417, "else" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 423, "pan.___", state 2426, "((i<2))" - line 423, "pan.___", state 2426, "((i>=2))" - line 430, "pan.___", state 2430, "(1)" - line 430, "pan.___", state 2430, "(1)" - line 623, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 623, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 623, "pan.___", state 2435, "(1)" - line 250, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2450, "(1)" - line 258, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2486, "(1)" - line 231, "pan.___", state 2494, "(1)" - line 235, "pan.___", state 2506, "(1)" - line 239, "pan.___", state 2514, "(1)" - line 395, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2597, "(1)" - line 416, "pan.___", state 2610, "(1)" - line 421, "pan.___", state 2627, "(1)" - line 425, "pan.___", state 2640, "(1)" - line 250, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2711, "(1)" - line 231, "pan.___", state 2719, "(1)" - line 235, "pan.___", state 2731, "(1)" - line 239, "pan.___", state 2739, "(1)" - line 395, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2822, "(1)" - line 416, "pan.___", state 2835, "(1)" - line 421, "pan.___", state 2852, "(1)" - line 425, "pan.___", state 2865, "(1)" - line 395, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2951, "(1)" - line 416, "pan.___", state 2964, "(1)" - line 421, "pan.___", state 2981, "(1)" - line 425, "pan.___", state 2994, "(1)" - line 227, "pan.___", state 3027, "(1)" - line 235, "pan.___", state 3047, "(1)" - line 239, "pan.___", state 3055, "(1)" - line 227, "pan.___", state 3070, "(1)" - line 231, "pan.___", state 3078, "(1)" - line 235, "pan.___", state 3090, "(1)" - line 239, "pan.___", state 3098, "(1)" - line 877, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 22, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 36, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 54, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 87, "(1)" - line 416, "pan.___", state 100, "(1)" - line 421, "pan.___", state 117, "(1)" - line 250, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 175, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 215, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 229, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 247, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 261, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 280, "(1)" - line 416, "pan.___", state 293, "(1)" - line 421, "pan.___", state 310, "(1)" - line 425, "pan.___", state 323, "(1)" - line 399, "pan.___", state 360, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 378, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 392, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 424, "(1)" - line 421, "pan.___", state 441, "(1)" - line 425, "pan.___", state 454, "(1)" - line 395, "pan.___", state 483, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 485, "(1)" - line 395, "pan.___", state 486, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 486, "else" - line 395, "pan.___", state 489, "(1)" - line 399, "pan.___", state 497, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 499, "(1)" - line 399, "pan.___", state 500, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 500, "else" - line 399, "pan.___", state 503, "(1)" - line 399, "pan.___", state 504, "(1)" - line 399, "pan.___", state 504, "(1)" - line 397, "pan.___", state 509, "((i<1))" - line 397, "pan.___", state 509, "((i>=1))" - line 404, "pan.___", state 515, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 517, "(1)" - line 404, "pan.___", state 518, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 518, "else" - line 404, "pan.___", state 521, "(1)" - line 404, "pan.___", state 522, "(1)" - line 404, "pan.___", state 522, "(1)" - line 408, "pan.___", state 529, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 531, "(1)" - line 408, "pan.___", state 532, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 532, "else" - line 408, "pan.___", state 535, "(1)" - line 408, "pan.___", state 536, "(1)" - line 408, "pan.___", state 536, "(1)" - line 406, "pan.___", state 541, "((i<2))" - line 406, "pan.___", state 541, "((i>=2))" - line 412, "pan.___", state 548, "(1)" - line 412, "pan.___", state 549, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 549, "else" - line 412, "pan.___", state 552, "(1)" - line 412, "pan.___", state 553, "(1)" - line 412, "pan.___", state 553, "(1)" - line 416, "pan.___", state 561, "(1)" - line 416, "pan.___", state 562, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 562, "else" - line 416, "pan.___", state 565, "(1)" - line 416, "pan.___", state 566, "(1)" - line 416, "pan.___", state 566, "(1)" - line 414, "pan.___", state 571, "((i<1))" - line 414, "pan.___", state 571, "((i>=1))" - line 421, "pan.___", state 578, "(1)" - line 421, "pan.___", state 579, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 579, "else" - line 421, "pan.___", state 582, "(1)" - line 421, "pan.___", state 583, "(1)" - line 421, "pan.___", state 583, "(1)" - line 425, "pan.___", state 591, "(1)" - line 425, "pan.___", state 592, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 592, "else" - line 425, "pan.___", state 595, "(1)" - line 425, "pan.___", state 596, "(1)" - line 425, "pan.___", state 596, "(1)" - line 430, "pan.___", state 605, "(1)" - line 430, "pan.___", state 605, "(1)" - line 395, "pan.___", state 612, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 614, "(1)" - line 395, "pan.___", state 615, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 615, "else" - line 395, "pan.___", state 618, "(1)" - line 399, "pan.___", state 626, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 628, "(1)" - line 399, "pan.___", state 629, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 629, "else" - line 399, "pan.___", state 632, "(1)" - line 399, "pan.___", state 633, "(1)" - line 399, "pan.___", state 633, "(1)" - line 397, "pan.___", state 638, "((i<1))" - line 397, "pan.___", state 638, "((i>=1))" - line 404, "pan.___", state 644, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 646, "(1)" - line 404, "pan.___", state 647, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 647, "else" - line 404, "pan.___", state 650, "(1)" - line 404, "pan.___", state 651, "(1)" - line 404, "pan.___", state 651, "(1)" - line 408, "pan.___", state 658, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 660, "(1)" - line 408, "pan.___", state 661, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 661, "else" - line 408, "pan.___", state 664, "(1)" - line 408, "pan.___", state 665, "(1)" - line 408, "pan.___", state 665, "(1)" - line 406, "pan.___", state 670, "((i<2))" - line 406, "pan.___", state 670, "((i>=2))" - line 412, "pan.___", state 677, "(1)" - line 412, "pan.___", state 678, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 678, "else" - line 412, "pan.___", state 681, "(1)" - line 412, "pan.___", state 682, "(1)" - line 412, "pan.___", state 682, "(1)" - line 416, "pan.___", state 690, "(1)" - line 416, "pan.___", state 691, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 691, "else" - line 416, "pan.___", state 694, "(1)" - line 416, "pan.___", state 695, "(1)" - line 416, "pan.___", state 695, "(1)" - line 414, "pan.___", state 700, "((i<1))" - line 414, "pan.___", state 700, "((i>=1))" - line 421, "pan.___", state 707, "(1)" - line 421, "pan.___", state 708, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 708, "else" - line 421, "pan.___", state 711, "(1)" - line 421, "pan.___", state 712, "(1)" - line 421, "pan.___", state 712, "(1)" - line 425, "pan.___", state 720, "(1)" - line 425, "pan.___", state 721, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 721, "else" - line 425, "pan.___", state 724, "(1)" - line 425, "pan.___", state 725, "(1)" - line 425, "pan.___", state 725, "(1)" - line 423, "pan.___", state 730, "((i<2))" - line 423, "pan.___", state 730, "((i>=2))" - line 430, "pan.___", state 734, "(1)" - line 430, "pan.___", state 734, "(1)" - line 1085, "pan.___", state 738, "_proc_urcu_writer = (_proc_urcu_writer|(1<<10))" - line 395, "pan.___", state 743, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 745, "(1)" - line 395, "pan.___", state 746, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 746, "else" - line 395, "pan.___", state 749, "(1)" - line 399, "pan.___", state 757, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 759, "(1)" - line 399, "pan.___", state 760, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 760, "else" - line 399, "pan.___", state 763, "(1)" - line 399, "pan.___", state 764, "(1)" - line 399, "pan.___", state 764, "(1)" - line 397, "pan.___", state 769, "((i<1))" - line 397, "pan.___", state 769, "((i>=1))" - line 404, "pan.___", state 775, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 777, "(1)" - line 404, "pan.___", state 778, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 778, "else" - line 404, "pan.___", state 781, "(1)" - line 404, "pan.___", state 782, "(1)" - line 404, "pan.___", state 782, "(1)" - line 408, "pan.___", state 789, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 791, "(1)" - line 408, "pan.___", state 792, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 792, "else" - line 408, "pan.___", state 795, "(1)" - line 408, "pan.___", state 796, "(1)" - line 408, "pan.___", state 796, "(1)" - line 406, "pan.___", state 801, "((i<2))" - line 406, "pan.___", state 801, "((i>=2))" - line 412, "pan.___", state 808, "(1)" - line 412, "pan.___", state 809, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 809, "else" - line 412, "pan.___", state 812, "(1)" - line 412, "pan.___", state 813, "(1)" - line 412, "pan.___", state 813, "(1)" - line 416, "pan.___", state 821, "(1)" - line 416, "pan.___", state 822, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 822, "else" - line 416, "pan.___", state 825, "(1)" - line 416, "pan.___", state 826, "(1)" - line 416, "pan.___", state 826, "(1)" - line 414, "pan.___", state 831, "((i<1))" - line 414, "pan.___", state 831, "((i>=1))" - line 421, "pan.___", state 838, "(1)" - line 421, "pan.___", state 839, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 839, "else" - line 421, "pan.___", state 842, "(1)" - line 421, "pan.___", state 843, "(1)" - line 421, "pan.___", state 843, "(1)" - line 425, "pan.___", state 851, "(1)" - line 425, "pan.___", state 852, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 852, "else" - line 425, "pan.___", state 855, "(1)" - line 425, "pan.___", state 856, "(1)" - line 425, "pan.___", state 856, "(1)" - line 423, "pan.___", state 861, "((i<2))" - line 423, "pan.___", state 861, "((i>=2))" - line 430, "pan.___", state 865, "(1)" - line 430, "pan.___", state 865, "(1)" - line 1100, "pan.___", state 870, "_proc_urcu_writer = (_proc_urcu_writer|(1<<11))" - line 1095, "pan.___", state 871, "(((tmp2&((1<<7)-1))&&((tmp2^0)&(1<<7))))" - line 1095, "pan.___", state 871, "else" - line 1120, "pan.___", state 875, "_proc_urcu_writer = (_proc_urcu_writer&~(((1<<12)|(1<<11))))" - line 250, "pan.___", state 906, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 915, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 930, "(1)" - line 262, "pan.___", state 937, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 953, "(1)" - line 231, "pan.___", state 961, "(1)" - line 235, "pan.___", state 973, "(1)" - line 239, "pan.___", state 981, "(1)" - line 254, "pan.___", state 1006, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1019, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1028, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1044, "(1)" - line 231, "pan.___", state 1052, "(1)" - line 235, "pan.___", state 1064, "(1)" - line 239, "pan.___", state 1072, "(1)" - line 250, "pan.___", state 1088, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 250, "pan.___", state 1090, "(1)" - line 254, "pan.___", state 1097, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1099, "(1)" - line 254, "pan.___", state 1100, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 254, "pan.___", state 1100, "else" - line 252, "pan.___", state 1105, "((i<1))" - line 252, "pan.___", state 1105, "((i>=1))" - line 258, "pan.___", state 1110, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1112, "(1)" - line 258, "pan.___", state 1113, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 258, "pan.___", state 1113, "else" - line 262, "pan.___", state 1119, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1121, "(1)" - line 262, "pan.___", state 1122, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 262, "pan.___", state 1122, "else" - line 260, "pan.___", state 1127, "((i<2))" - line 260, "pan.___", state 1127, "((i>=2))" - line 227, "pan.___", state 1135, "(1)" - line 231, "pan.___", state 1143, "(1)" - line 231, "pan.___", state 1144, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 231, "pan.___", state 1144, "else" - line 229, "pan.___", state 1149, "((i<1))" - line 229, "pan.___", state 1149, "((i>=1))" - line 235, "pan.___", state 1155, "(1)" - line 235, "pan.___", state 1156, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 235, "pan.___", state 1156, "else" - line 239, "pan.___", state 1163, "(1)" - line 239, "pan.___", state 1164, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 239, "pan.___", state 1164, "else" - line 244, "pan.___", state 1173, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 244, "pan.___", state 1173, "else" - line 277, "pan.___", state 1175, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 277, "pan.___", state 1175, "else" - line 254, "pan.___", state 1188, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1201, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1210, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1226, "(1)" - line 231, "pan.___", state 1234, "(1)" - line 235, "pan.___", state 1246, "(1)" - line 239, "pan.___", state 1254, "(1)" - line 1204, "pan.___", state 1269, "-end-" - (192 of 1269 states) -unreached in proctype :init: - line 1215, "pan.___", state 9, "((j<2))" - line 1215, "pan.___", state 9, "((j>=2))" - line 1216, "pan.___", state 20, "((j<2))" - line 1216, "pan.___", state 20, "((j>=2))" - line 1221, "pan.___", state 33, "((j<2))" - line 1221, "pan.___", state 33, "((j>=2))" - line 1219, "pan.___", state 43, "((i<1))" - line 1219, "pan.___", state 43, "((i>=1))" - line 1229, "pan.___", state 54, "((j<2))" - line 1229, "pan.___", state 54, "((j>=2))" - line 1233, "pan.___", state 67, "((j<2))" - line 1233, "pan.___", state 67, "((j>=2))" - (6 of 78 states) -unreached in proctype :never: - line 1263, "pan.___", state 8, "-end-" - (1 of 8 states) - -pan: elapsed time 266 seconds -pan: rate 2283.3239 states/second -pan: avg transition delay 1.2613e-06 usec -cp .input.spin urcu_free_single_flip.spin.input -cp .input.spin.trail urcu_free_single_flip.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input deleted file mode 100644 index b2e670e..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define SINGLE_FLIP - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input.trail deleted file mode 100644 index d8a0531..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_free_single_flip.spin.input.trail +++ /dev/null @@ -1,1039 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4464 -2:3:4384 -3:3:4387 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-1026:0:4464 -1027:2:3592 -1028:2:4002 -1029:0:4464 -1030:2:3131 -1031:0:4464 -1032:1:1291 -1033:1:1292 -1034:0:4462 -1035:1:11 -1036:0:4468 -1037:2:3480 diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress.ltl b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress.ltl deleted file mode 100644 index 8718641..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress.ltl +++ /dev/null @@ -1 +0,0 @@ -([] <> !np_) diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.define deleted file mode 100644 index ff3f783..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.define +++ /dev/null @@ -1 +0,0 @@ -#define READER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.log deleted file mode 100644 index b4f4e20..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.log +++ /dev/null @@ -1,543 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_reader.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -depth 23: Claim reached state 9 (line 1263) -depth 1143: Claim reached state 9 (line 1262) -Depth= 5344 States= 1e+06 Transitions= 4.94e+08 Memory= 506.389 t= 677 R= 1e+03 -Depth= 5344 States= 2e+06 Transitions= 1.22e+09 Memory= 545.647 t= 1.68e+03 R= 1e+03 -Depth= 5344 States= 3e+06 Transitions= 1.85e+09 Memory= 585.490 t= 2.58e+03 R= 1e+03 -pan: resizing hashtable to -w22.. done -Depth= 5344 States= 4e+06 Transitions= 2.51e+09 Memory= 656.358 t= 3.5e+03 R= 1e+03 -Depth= 5344 States= 5e+06 Transitions= 3.19e+09 Memory= 693.662 t= 4.45e+03 R= 1e+03 -Depth= 5344 States= 6e+06 Transitions= 3.87e+09 Memory= 736.240 t= 5.41e+03 R= 1e+03 -Depth= 5344 States= 7e+06 Transitions= 4.51e+09 Memory= 776.084 t= 6.3e+03 R= 1e+03 -Depth= 5344 States= 8e+06 Transitions= 5.21e+09 Memory= 816.416 t= 7.28e+03 R= 1e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 5344, errors: 0 - 3811179 states, stored (8.02512e+06 visited) -5.2123433e+09 states, matched -5.2203684e+09 transitions (= visited+matched) -3.1088208e+10 atomic steps -hash conflicts: 1.9918982e+09 (resolved) - -Stats on memory usage (in Megabytes): - 421.616 equivalent memory usage for states (stored*(State-vector + overhead)) - 328.016 actual memory usage for states (compression: 77.80%) - state-vector as stored = 62 byte + 28 byte overhead - 32.000 memory used for hash table (-w22) - 457.764 memory used for DFS stack (-m10000000) - 817.490 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 82, "(1)" - line 421, "pan.___", state 112, "(1)" - line 425, "pan.___", state 125, "(1)" - line 576, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 218, "(1)" - line 421, "pan.___", state 248, "(1)" - line 425, "pan.___", state 261, "(1)" - line 395, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 347, "(1)" - line 421, "pan.___", state 377, "(1)" - line 425, "pan.___", state 390, "(1)" - line 395, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 415, "(1)" - line 395, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 416, "else" - line 395, "pan.___", state 419, "(1)" - line 399, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 429, "(1)" - line 399, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 430, "else" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "(1)" - line 399, "pan.___", state 434, "(1)" - line 397, "pan.___", state 439, "((i<1))" - line 397, "pan.___", state 439, "((i>=1))" - line 404, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 447, "(1)" - line 404, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 448, "else" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "(1)" - line 404, "pan.___", state 452, "(1)" - line 408, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 461, "(1)" - line 408, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 462, "else" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "(1)" - line 408, "pan.___", state 466, "(1)" - line 406, "pan.___", state 471, "((i<2))" - line 406, "pan.___", state 471, "((i>=2))" - line 412, "pan.___", state 478, "(1)" - line 412, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 479, "else" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(1)" - line 412, "pan.___", state 483, "(1)" - line 416, "pan.___", state 491, "(1)" - line 416, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 492, "else" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(1)" - line 416, "pan.___", state 496, "(1)" - line 414, "pan.___", state 501, "((i<1))" - line 414, "pan.___", state 501, "((i>=1))" - line 421, "pan.___", state 508, "(1)" - line 421, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 509, "else" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(1)" - line 421, "pan.___", state 513, "(1)" - line 425, "pan.___", state 521, "(1)" - line 425, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 522, "else" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(1)" - line 425, "pan.___", state 526, "(1)" - line 423, "pan.___", state 531, "((i<2))" - line 423, "pan.___", state 531, "((i>=2))" - line 430, "pan.___", state 535, "(1)" - line 430, "pan.___", state 535, "(1)" - line 576, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 576, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 576, "pan.___", state 540, "(1)" - line 250, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 555, "(1)" - line 258, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 591, "(1)" - line 231, "pan.___", state 599, "(1)" - line 235, "pan.___", state 611, "(1)" - line 239, "pan.___", state 619, "(1)" - line 395, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 702, "(1)" - line 416, "pan.___", state 715, "(1)" - line 421, "pan.___", state 732, "(1)" - line 425, "pan.___", state 745, "(1)" - line 395, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 775, "(1)" - line 395, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 776, "else" - line 395, "pan.___", state 779, "(1)" - line 399, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 789, "(1)" - line 399, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 790, "else" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "(1)" - line 399, "pan.___", state 794, "(1)" - line 397, "pan.___", state 799, "((i<1))" - line 397, "pan.___", state 799, "((i>=1))" - line 404, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 807, "(1)" - line 404, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 808, "else" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 812, "(1)" - line 408, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<2))" - line 406, "pan.___", state 831, "((i>=2))" - line 412, "pan.___", state 838, "(1)" - line 412, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 839, "else" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(1)" - line 412, "pan.___", state 843, "(1)" - line 416, "pan.___", state 851, "(1)" - line 416, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 852, "else" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(1)" - line 416, "pan.___", state 856, "(1)" - line 414, "pan.___", state 861, "((i<1))" - line 414, "pan.___", state 861, "((i>=1))" - line 421, "pan.___", state 868, "(1)" - line 421, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 869, "else" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(1)" - line 421, "pan.___", state 873, "(1)" - line 425, "pan.___", state 881, "(1)" - line 425, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 882, "else" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(1)" - line 425, "pan.___", state 886, "(1)" - line 430, "pan.___", state 895, "(1)" - line 430, "pan.___", state 895, "(1)" - line 395, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 904, "(1)" - line 395, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 905, "else" - line 395, "pan.___", state 908, "(1)" - line 399, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 918, "(1)" - line 399, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 919, "else" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "(1)" - line 399, "pan.___", state 923, "(1)" - line 397, "pan.___", state 928, "((i<1))" - line 397, "pan.___", state 928, "((i>=1))" - line 404, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 936, "(1)" - line 404, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 937, "else" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "(1)" - line 404, "pan.___", state 941, "(1)" - line 408, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 950, "(1)" - line 408, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 951, "else" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "(1)" - line 408, "pan.___", state 955, "(1)" - line 406, "pan.___", state 960, "((i<2))" - line 406, "pan.___", state 960, "((i>=2))" - line 412, "pan.___", state 967, "(1)" - line 412, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 968, "else" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(1)" - line 412, "pan.___", state 972, "(1)" - line 416, "pan.___", state 980, "(1)" - line 416, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 981, "else" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(1)" - line 416, "pan.___", state 985, "(1)" - line 414, "pan.___", state 990, "((i<1))" - line 414, "pan.___", state 990, "((i>=1))" - line 421, "pan.___", state 997, "(1)" - line 421, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 998, "else" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 425, "pan.___", state 1010, "(1)" - line 425, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1011, "else" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 423, "pan.___", state 1020, "((i<2))" - line 423, "pan.___", state 1020, "((i>=2))" - line 430, "pan.___", state 1024, "(1)" - line 430, "pan.___", state 1024, "(1)" - line 584, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1098, "(1)" - line 416, "pan.___", state 1111, "(1)" - line 421, "pan.___", state 1128, "(1)" - line 425, "pan.___", state 1141, "(1)" - line 395, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1230, "(1)" - line 421, "pan.___", state 1260, "(1)" - line 425, "pan.___", state 1273, "(1)" - line 395, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1363, "(1)" - line 421, "pan.___", state 1393, "(1)" - line 425, "pan.___", state 1406, "(1)" - line 395, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1492, "(1)" - line 421, "pan.___", state 1522, "(1)" - line 425, "pan.___", state 1535, "(1)" - line 250, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1605, "(1)" - line 231, "pan.___", state 1613, "(1)" - line 235, "pan.___", state 1625, "(1)" - line 239, "pan.___", state 1633, "(1)" - line 395, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1716, "(1)" - line 416, "pan.___", state 1729, "(1)" - line 421, "pan.___", state 1746, "(1)" - line 425, "pan.___", state 1759, "(1)" - line 395, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1845, "(1)" - line 416, "pan.___", state 1858, "(1)" - line 421, "pan.___", state 1875, "(1)" - line 425, "pan.___", state 1888, "(1)" - line 395, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1928, "(1)" - line 404, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1977, "(1)" - line 421, "pan.___", state 2007, "(1)" - line 425, "pan.___", state 2020, "(1)" - line 623, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2113, "(1)" - line 421, "pan.___", state 2143, "(1)" - line 425, "pan.___", state 2156, "(1)" - line 395, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2242, "(1)" - line 421, "pan.___", state 2272, "(1)" - line 425, "pan.___", state 2285, "(1)" - line 395, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2310, "(1)" - line 395, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2311, "else" - line 395, "pan.___", state 2314, "(1)" - line 399, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2324, "(1)" - line 399, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2325, "else" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 397, "pan.___", state 2334, "((i<1))" - line 397, "pan.___", state 2334, "((i>=1))" - line 404, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2342, "(1)" - line 404, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2343, "else" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 408, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2356, "(1)" - line 408, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2357, "else" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 406, "pan.___", state 2366, "((i<2))" - line 406, "pan.___", state 2366, "((i>=2))" - line 412, "pan.___", state 2373, "(1)" - line 412, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2374, "else" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 416, "pan.___", state 2386, "(1)" - line 416, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2387, "else" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 414, "pan.___", state 2396, "((i<1))" - line 414, "pan.___", state 2396, "((i>=1))" - line 421, "pan.___", state 2403, "(1)" - line 421, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2404, "else" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 425, "pan.___", state 2416, "(1)" - line 425, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2417, "else" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 423, "pan.___", state 2426, "((i<2))" - line 423, "pan.___", state 2426, "((i>=2))" - line 430, "pan.___", state 2430, "(1)" - line 430, "pan.___", state 2430, "(1)" - line 623, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 623, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 623, "pan.___", state 2435, "(1)" - line 250, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2450, "(1)" - line 258, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2486, "(1)" - line 231, "pan.___", state 2494, "(1)" - line 235, "pan.___", state 2506, "(1)" - line 239, "pan.___", state 2514, "(1)" - line 395, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2597, "(1)" - line 416, "pan.___", state 2610, "(1)" - line 421, "pan.___", state 2627, "(1)" - line 425, "pan.___", state 2640, "(1)" - line 250, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2711, "(1)" - line 231, "pan.___", state 2719, "(1)" - line 235, "pan.___", state 2731, "(1)" - line 239, "pan.___", state 2739, "(1)" - line 395, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2822, "(1)" - line 416, "pan.___", state 2835, "(1)" - line 421, "pan.___", state 2852, "(1)" - line 425, "pan.___", state 2865, "(1)" - line 395, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2951, "(1)" - line 416, "pan.___", state 2964, "(1)" - line 421, "pan.___", state 2981, "(1)" - line 425, "pan.___", state 2994, "(1)" - line 227, "pan.___", state 3027, "(1)" - line 235, "pan.___", state 3047, "(1)" - line 239, "pan.___", state 3055, "(1)" - line 227, "pan.___", state 3070, "(1)" - line 231, "pan.___", state 3078, "(1)" - line 235, "pan.___", state 3090, "(1)" - line 239, "pan.___", state 3098, "(1)" - line 877, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 83, "(1)" - line 416, "pan.___", state 96, "(1)" - line 421, "pan.___", state 113, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 898, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 907, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 920, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 227, "pan.___", state 945, "(1)" - line 231, "pan.___", state 953, "(1)" - line 235, "pan.___", state 965, "(1)" - line 239, "pan.___", state 973, "(1)" - line 250, "pan.___", state 993, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 1002, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1017, "(1)" - line 262, "pan.___", state 1024, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1040, "(1)" - line 231, "pan.___", state 1048, "(1)" - line 235, "pan.___", state 1060, "(1)" - line 239, "pan.___", state 1068, "(1)" - line 254, "pan.___", state 1093, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1106, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1115, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1131, "(1)" - line 231, "pan.___", state 1139, "(1)" - line 235, "pan.___", state 1151, "(1)" - line 239, "pan.___", state 1159, "(1)" - line 254, "pan.___", state 1184, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1206, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1222, "(1)" - line 231, "pan.___", state 1230, "(1)" - line 235, "pan.___", state 1242, "(1)" - line 239, "pan.___", state 1250, "(1)" - line 254, "pan.___", state 1275, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1288, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1297, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1313, "(1)" - line 231, "pan.___", state 1321, "(1)" - line 235, "pan.___", state 1333, "(1)" - line 239, "pan.___", state 1341, "(1)" - line 1204, "pan.___", state 1356, "-end-" - (78 of 1356 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1265, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 7.29e+03 seconds -pan: rate 1100.4528 states/second -pan: avg transition delay 1.3969e-06 usec -cp .input.spin urcu_progress_reader.spin.input -cp .input.spin.trail urcu_progress_reader.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.spin.input deleted file mode 100644 index a9b6907..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_reader.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define READER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.define deleted file mode 100644 index 1e4417f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.define +++ /dev/null @@ -1 +0,0 @@ -#define WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.log deleted file mode 100644 index 240c728..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.log +++ /dev/null @@ -1,536 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1258) -depth 23: Claim reached state 9 (line 1263) -depth 1481: Claim reached state 9 (line 1262) -Depth= 4026 States= 1e+06 Transitions= 4.1e+08 Memory= 492.131 t= 536 R= 2e+03 -Depth= 4485 States= 2e+06 Transitions= 8.98e+08 Memory= 518.401 t= 1.18e+03 R= 2e+03 -Depth= 4485 States= 3e+06 Transitions= 1.65e+09 Memory= 565.666 t= 2.18e+03 R= 1e+03 -pan: resizing hashtable to -w22.. done -Depth= 4694 States= 4e+06 Transitions= 2.35e+09 Memory= 638.975 t= 3.12e+03 R= 1e+03 -Depth= 4694 States= 5e+06 Transitions= 3.04e+09 Memory= 684.190 t= 4.03e+03 R= 1e+03 -Depth= 4694 States= 6e+06 Transitions= 3.8e+09 Memory= 723.936 t= 5.04e+03 R= 1e+03 -Depth= 4694 States= 7e+06 Transitions= 4.45e+09 Memory= 769.248 t= 5.92e+03 R= 1e+03 -Depth= 4694 States= 8e+06 Transitions= 5.23e+09 Memory= 814.561 t= 6.96e+03 R= 1e+03 - -(Spin Version 5.1.7 -- 23 December 2008) - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 4694, errors: 0 - 3819484 states, stored (8.06154e+06 visited) -5.2640635e+09 states, matched -5.272125e+09 transitions (= visited+matched) -3.1366722e+10 atomic steps -hash conflicts: 1.5911163e+09 (resolved) - -Stats on memory usage (in Megabytes): - 422.535 equivalent memory usage for states (stored*(State-vector + overhead)) - 328.667 actual memory usage for states (compression: 77.78%) - state-vector as stored = 62 byte + 28 byte overhead - 32.000 memory used for hash table (-w22) - 457.764 memory used for DFS stack (-m10000000) - 818.174 total actual memory usage - -unreached in proctype urcu_reader - line 395, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 82, "(1)" - line 421, "pan.___", state 112, "(1)" - line 425, "pan.___", state 125, "(1)" - line 576, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 395, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 218, "(1)" - line 421, "pan.___", state 248, "(1)" - line 425, "pan.___", state 261, "(1)" - line 395, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 347, "(1)" - line 421, "pan.___", state 377, "(1)" - line 425, "pan.___", state 390, "(1)" - line 395, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 415, "(1)" - line 395, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 416, "else" - line 395, "pan.___", state 419, "(1)" - line 399, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 429, "(1)" - line 399, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 430, "else" - line 399, "pan.___", state 433, "(1)" - line 399, "pan.___", state 434, "(1)" - line 399, "pan.___", state 434, "(1)" - line 397, "pan.___", state 439, "((i<1))" - line 397, "pan.___", state 439, "((i>=1))" - line 404, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 447, "(1)" - line 404, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 448, "else" - line 404, "pan.___", state 451, "(1)" - line 404, "pan.___", state 452, "(1)" - line 404, "pan.___", state 452, "(1)" - line 408, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 461, "(1)" - line 408, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 462, "else" - line 408, "pan.___", state 465, "(1)" - line 408, "pan.___", state 466, "(1)" - line 408, "pan.___", state 466, "(1)" - line 406, "pan.___", state 471, "((i<2))" - line 406, "pan.___", state 471, "((i>=2))" - line 412, "pan.___", state 478, "(1)" - line 412, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 479, "else" - line 412, "pan.___", state 482, "(1)" - line 412, "pan.___", state 483, "(1)" - line 412, "pan.___", state 483, "(1)" - line 416, "pan.___", state 491, "(1)" - line 416, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 492, "else" - line 416, "pan.___", state 495, "(1)" - line 416, "pan.___", state 496, "(1)" - line 416, "pan.___", state 496, "(1)" - line 414, "pan.___", state 501, "((i<1))" - line 414, "pan.___", state 501, "((i>=1))" - line 421, "pan.___", state 508, "(1)" - line 421, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 509, "else" - line 421, "pan.___", state 512, "(1)" - line 421, "pan.___", state 513, "(1)" - line 421, "pan.___", state 513, "(1)" - line 425, "pan.___", state 521, "(1)" - line 425, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 522, "else" - line 425, "pan.___", state 525, "(1)" - line 425, "pan.___", state 526, "(1)" - line 425, "pan.___", state 526, "(1)" - line 423, "pan.___", state 531, "((i<2))" - line 423, "pan.___", state 531, "((i>=2))" - line 430, "pan.___", state 535, "(1)" - line 430, "pan.___", state 535, "(1)" - line 576, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 576, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 576, "pan.___", state 540, "(1)" - line 250, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 555, "(1)" - line 258, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 591, "(1)" - line 231, "pan.___", state 599, "(1)" - line 235, "pan.___", state 611, "(1)" - line 239, "pan.___", state 619, "(1)" - line 395, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 702, "(1)" - line 416, "pan.___", state 715, "(1)" - line 421, "pan.___", state 732, "(1)" - line 425, "pan.___", state 745, "(1)" - line 395, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 775, "(1)" - line 395, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 776, "else" - line 395, "pan.___", state 779, "(1)" - line 399, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 789, "(1)" - line 399, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 790, "else" - line 399, "pan.___", state 793, "(1)" - line 399, "pan.___", state 794, "(1)" - line 399, "pan.___", state 794, "(1)" - line 397, "pan.___", state 799, "((i<1))" - line 397, "pan.___", state 799, "((i>=1))" - line 404, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 807, "(1)" - line 404, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 808, "else" - line 404, "pan.___", state 811, "(1)" - line 404, "pan.___", state 812, "(1)" - line 404, "pan.___", state 812, "(1)" - line 408, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 821, "(1)" - line 408, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 822, "else" - line 408, "pan.___", state 825, "(1)" - line 408, "pan.___", state 826, "(1)" - line 408, "pan.___", state 826, "(1)" - line 406, "pan.___", state 831, "((i<2))" - line 406, "pan.___", state 831, "((i>=2))" - line 412, "pan.___", state 838, "(1)" - line 412, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 839, "else" - line 412, "pan.___", state 842, "(1)" - line 412, "pan.___", state 843, "(1)" - line 412, "pan.___", state 843, "(1)" - line 416, "pan.___", state 851, "(1)" - line 416, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 852, "else" - line 416, "pan.___", state 855, "(1)" - line 416, "pan.___", state 856, "(1)" - line 416, "pan.___", state 856, "(1)" - line 414, "pan.___", state 861, "((i<1))" - line 414, "pan.___", state 861, "((i>=1))" - line 421, "pan.___", state 868, "(1)" - line 421, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 869, "else" - line 421, "pan.___", state 872, "(1)" - line 421, "pan.___", state 873, "(1)" - line 421, "pan.___", state 873, "(1)" - line 425, "pan.___", state 881, "(1)" - line 425, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 882, "else" - line 425, "pan.___", state 885, "(1)" - line 425, "pan.___", state 886, "(1)" - line 425, "pan.___", state 886, "(1)" - line 430, "pan.___", state 895, "(1)" - line 430, "pan.___", state 895, "(1)" - line 395, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 904, "(1)" - line 395, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 905, "else" - line 395, "pan.___", state 908, "(1)" - line 399, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 918, "(1)" - line 399, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 919, "else" - line 399, "pan.___", state 922, "(1)" - line 399, "pan.___", state 923, "(1)" - line 399, "pan.___", state 923, "(1)" - line 397, "pan.___", state 928, "((i<1))" - line 397, "pan.___", state 928, "((i>=1))" - line 404, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 936, "(1)" - line 404, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 937, "else" - line 404, "pan.___", state 940, "(1)" - line 404, "pan.___", state 941, "(1)" - line 404, "pan.___", state 941, "(1)" - line 408, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 950, "(1)" - line 408, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 951, "else" - line 408, "pan.___", state 954, "(1)" - line 408, "pan.___", state 955, "(1)" - line 408, "pan.___", state 955, "(1)" - line 406, "pan.___", state 960, "((i<2))" - line 406, "pan.___", state 960, "((i>=2))" - line 412, "pan.___", state 967, "(1)" - line 412, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 968, "else" - line 412, "pan.___", state 971, "(1)" - line 412, "pan.___", state 972, "(1)" - line 412, "pan.___", state 972, "(1)" - line 416, "pan.___", state 980, "(1)" - line 416, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 981, "else" - line 416, "pan.___", state 984, "(1)" - line 416, "pan.___", state 985, "(1)" - line 416, "pan.___", state 985, "(1)" - line 414, "pan.___", state 990, "((i<1))" - line 414, "pan.___", state 990, "((i>=1))" - line 421, "pan.___", state 997, "(1)" - line 421, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 998, "else" - line 421, "pan.___", state 1001, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 421, "pan.___", state 1002, "(1)" - line 425, "pan.___", state 1010, "(1)" - line 425, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 1011, "else" - line 425, "pan.___", state 1014, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 425, "pan.___", state 1015, "(1)" - line 423, "pan.___", state 1020, "((i<2))" - line 423, "pan.___", state 1020, "((i>=2))" - line 430, "pan.___", state 1024, "(1)" - line 430, "pan.___", state 1024, "(1)" - line 584, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 395, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1098, "(1)" - line 416, "pan.___", state 1111, "(1)" - line 421, "pan.___", state 1128, "(1)" - line 425, "pan.___", state 1141, "(1)" - line 395, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1230, "(1)" - line 421, "pan.___", state 1260, "(1)" - line 425, "pan.___", state 1273, "(1)" - line 395, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1363, "(1)" - line 421, "pan.___", state 1393, "(1)" - line 425, "pan.___", state 1406, "(1)" - line 395, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1492, "(1)" - line 421, "pan.___", state 1522, "(1)" - line 425, "pan.___", state 1535, "(1)" - line 250, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1605, "(1)" - line 231, "pan.___", state 1613, "(1)" - line 235, "pan.___", state 1625, "(1)" - line 239, "pan.___", state 1633, "(1)" - line 395, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1716, "(1)" - line 416, "pan.___", state 1729, "(1)" - line 421, "pan.___", state 1746, "(1)" - line 425, "pan.___", state 1759, "(1)" - line 395, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1845, "(1)" - line 416, "pan.___", state 1858, "(1)" - line 421, "pan.___", state 1875, "(1)" - line 425, "pan.___", state 1888, "(1)" - line 395, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 1928, "(1)" - line 404, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 1977, "(1)" - line 421, "pan.___", state 2007, "(1)" - line 425, "pan.___", state 2020, "(1)" - line 623, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 395, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2113, "(1)" - line 421, "pan.___", state 2143, "(1)" - line 425, "pan.___", state 2156, "(1)" - line 395, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2242, "(1)" - line 421, "pan.___", state 2272, "(1)" - line 425, "pan.___", state 2285, "(1)" - line 395, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 2310, "(1)" - line 395, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 395, "pan.___", state 2311, "else" - line 395, "pan.___", state 2314, "(1)" - line 399, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2324, "(1)" - line 399, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 399, "pan.___", state 2325, "else" - line 399, "pan.___", state 2328, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 399, "pan.___", state 2329, "(1)" - line 397, "pan.___", state 2334, "((i<1))" - line 397, "pan.___", state 2334, "((i>=1))" - line 404, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2342, "(1)" - line 404, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 404, "pan.___", state 2343, "else" - line 404, "pan.___", state 2346, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 404, "pan.___", state 2347, "(1)" - line 408, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2356, "(1)" - line 408, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 408, "pan.___", state 2357, "else" - line 408, "pan.___", state 2360, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 408, "pan.___", state 2361, "(1)" - line 406, "pan.___", state 2366, "((i<2))" - line 406, "pan.___", state 2366, "((i>=2))" - line 412, "pan.___", state 2373, "(1)" - line 412, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 412, "pan.___", state 2374, "else" - line 412, "pan.___", state 2377, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 412, "pan.___", state 2378, "(1)" - line 416, "pan.___", state 2386, "(1)" - line 416, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 416, "pan.___", state 2387, "else" - line 416, "pan.___", state 2390, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 416, "pan.___", state 2391, "(1)" - line 414, "pan.___", state 2396, "((i<1))" - line 414, "pan.___", state 2396, "((i>=1))" - line 421, "pan.___", state 2403, "(1)" - line 421, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 421, "pan.___", state 2404, "else" - line 421, "pan.___", state 2407, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 421, "pan.___", state 2408, "(1)" - line 425, "pan.___", state 2416, "(1)" - line 425, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 425, "pan.___", state 2417, "else" - line 425, "pan.___", state 2420, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 425, "pan.___", state 2421, "(1)" - line 423, "pan.___", state 2426, "((i<2))" - line 423, "pan.___", state 2426, "((i>=2))" - line 430, "pan.___", state 2430, "(1)" - line 430, "pan.___", state 2430, "(1)" - line 623, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 623, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 623, "pan.___", state 2435, "(1)" - line 250, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2450, "(1)" - line 258, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2486, "(1)" - line 231, "pan.___", state 2494, "(1)" - line 235, "pan.___", state 2506, "(1)" - line 239, "pan.___", state 2514, "(1)" - line 395, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2597, "(1)" - line 416, "pan.___", state 2610, "(1)" - line 421, "pan.___", state 2627, "(1)" - line 425, "pan.___", state 2640, "(1)" - line 250, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 2711, "(1)" - line 231, "pan.___", state 2719, "(1)" - line 235, "pan.___", state 2731, "(1)" - line 239, "pan.___", state 2739, "(1)" - line 395, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2822, "(1)" - line 416, "pan.___", state 2835, "(1)" - line 421, "pan.___", state 2852, "(1)" - line 425, "pan.___", state 2865, "(1)" - line 395, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 2951, "(1)" - line 416, "pan.___", state 2964, "(1)" - line 421, "pan.___", state 2981, "(1)" - line 425, "pan.___", state 2994, "(1)" - line 227, "pan.___", state 3027, "(1)" - line 235, "pan.___", state 3047, "(1)" - line 239, "pan.___", state 3055, "(1)" - line 227, "pan.___", state 3070, "(1)" - line 231, "pan.___", state 3078, "(1)" - line 235, "pan.___", state 3090, "(1)" - line 239, "pan.___", state 3098, "(1)" - line 877, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 395, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 412, "pan.___", state 83, "(1)" - line 416, "pan.___", state 96, "(1)" - line 421, "pan.___", state 113, "(1)" - line 250, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 395, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 399, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 412, "pan.___", state 276, "(1)" - line 416, "pan.___", state 289, "(1)" - line 421, "pan.___", state 306, "(1)" - line 425, "pan.___", state 319, "(1)" - line 399, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 420, "(1)" - line 421, "pan.___", state 437, "(1)" - line 425, "pan.___", state 450, "(1)" - line 399, "pan.___", state 494, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 512, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 526, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 558, "(1)" - line 421, "pan.___", state 575, "(1)" - line 425, "pan.___", state 588, "(1)" - line 399, "pan.___", state 623, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 641, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 655, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 687, "(1)" - line 421, "pan.___", state 704, "(1)" - line 425, "pan.___", state 717, "(1)" - line 399, "pan.___", state 754, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 404, "pan.___", state 772, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 408, "pan.___", state 786, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 416, "pan.___", state 818, "(1)" - line 421, "pan.___", state 835, "(1)" - line 425, "pan.___", state 848, "(1)" - line 250, "pan.___", state 903, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 254, "pan.___", state 912, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 927, "(1)" - line 262, "pan.___", state 934, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 950, "(1)" - line 231, "pan.___", state 958, "(1)" - line 235, "pan.___", state 970, "(1)" - line 239, "pan.___", state 978, "(1)" - line 254, "pan.___", state 1003, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1016, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1025, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1041, "(1)" - line 231, "pan.___", state 1049, "(1)" - line 235, "pan.___", state 1061, "(1)" - line 239, "pan.___", state 1069, "(1)" - line 254, "pan.___", state 1094, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1107, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1116, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1132, "(1)" - line 231, "pan.___", state 1140, "(1)" - line 235, "pan.___", state 1152, "(1)" - line 239, "pan.___", state 1160, "(1)" - line 254, "pan.___", state 1185, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 258, "pan.___", state 1198, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 262, "pan.___", state 1207, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 227, "pan.___", state 1223, "(1)" - line 231, "pan.___", state 1231, "(1)" - line 235, "pan.___", state 1243, "(1)" - line 239, "pan.___", state 1251, "(1)" - line 1204, "pan.___", state 1266, "-end-" - (71 of 1266 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1265, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 7.01e+03 seconds -pan: rate 1149.3413 states/second -pan: avg transition delay 1.3304e-06 usec -cp .input.spin urcu_progress_writer.spin.input -cp .input.spin.trail urcu_progress_writer.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.spin.input deleted file mode 100644 index d9d698f..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer.spin.input +++ /dev/null @@ -1,1240 +0,0 @@ -#define WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.define b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.define deleted file mode 100644 index 8d304f5..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.define +++ /dev/null @@ -1,2 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.log b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.log deleted file mode 100644 index 99db2db..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.log +++ /dev/null @@ -1,809 +0,0 @@ -rm -f pan* trail.out .input.spin* *.spin.trail .input.define -touch .input.define -cat .input.define > pan.ltl -cat DEFINES >> pan.ltl -spin -f "!(`cat urcu_progress.ltl | grep -v ^//`)" >> pan.ltl -cp urcu_progress_writer_error.define .input.define -cat .input.define > .input.spin -cat DEFINES >> .input.spin -cat urcu.spin >> .input.spin -rm -f .input.spin.trail -spin -a -X -N pan.ltl .input.spin -Exit-Status 0 -gcc -O2 -w -DHASH64 -o pan pan.c -./pan -a -f -v -c1 -X -m10000000 -w20 -warning: for p.o. reduction to be valid the never claim must be stutter-invariant -(never claims generated from LTL formulae are stutter-invariant) -depth 0: Claim reached state 5 (line 1259) -depth 23: Claim reached state 9 (line 1264) -depth 1481: Claim reached state 9 (line 1263) -pan: acceptance cycle (at depth 7186) -pan: wrote .input.spin.trail - -(Spin Version 5.1.7 -- 23 December 2008) -Warning: Search not completed - + Partial Order Reduction - -Full statespace search for: - never claim + - assertion violations + (if within scope of claim) - acceptance cycles + (fairness enabled) - invalid end states - (disabled by never claim) - -State-vector 88 byte, depth reached 8718, errors: 1 - 25100 states, stored (77932 visited) - 18210466 states, matched - 18288398 transitions (= visited+matched) -1.0440929e+08 atomic steps -hash conflicts: 119465 (resolved) - -Stats on memory usage (in Megabytes): - 2.777 equivalent memory usage for states (stored*(State-vector + overhead)) - 2.791 actual memory usage for states (unsuccessful compression: 100.52%) - state-vector as stored = 89 byte + 28 byte overhead - 8.000 memory used for hash table (-w20) - 457.764 memory used for DFS stack (-m10000000) - 468.498 total actual memory usage - -unreached in proctype urcu_reader - line 396, "pan.___", state 17, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 49, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 63, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 82, "(1)" - line 422, "pan.___", state 112, "(1)" - line 426, "pan.___", state 125, "(1)" - line 577, "pan.___", state 146, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<1))" - line 396, "pan.___", state 153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 185, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 199, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 218, "(1)" - line 422, "pan.___", state 248, "(1)" - line 426, "pan.___", state 261, "(1)" - line 396, "pan.___", state 282, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 314, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 328, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 347, "(1)" - line 422, "pan.___", state 377, "(1)" - line 426, "pan.___", state 390, "(1)" - line 396, "pan.___", state 413, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 415, "(1)" - line 396, "pan.___", state 416, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 416, "else" - line 396, "pan.___", state 419, "(1)" - line 400, "pan.___", state 427, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 429, "(1)" - line 400, "pan.___", state 430, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 430, "else" - line 400, "pan.___", state 433, "(1)" - line 400, "pan.___", state 434, "(1)" - line 400, "pan.___", state 434, "(1)" - line 398, "pan.___", state 439, "((i<1))" - line 398, "pan.___", state 439, "((i>=1))" - line 405, "pan.___", state 445, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 447, "(1)" - line 405, "pan.___", state 448, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 448, "else" - line 405, "pan.___", state 451, "(1)" - line 405, "pan.___", state 452, "(1)" - line 405, "pan.___", state 452, "(1)" - line 409, "pan.___", state 459, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 461, "(1)" - line 409, "pan.___", state 462, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 462, "else" - line 409, "pan.___", state 465, "(1)" - line 409, "pan.___", state 466, "(1)" - line 409, "pan.___", state 466, "(1)" - line 407, "pan.___", state 471, "((i<2))" - line 407, "pan.___", state 471, "((i>=2))" - line 413, "pan.___", state 478, "(1)" - line 413, "pan.___", state 479, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 479, "else" - line 413, "pan.___", state 482, "(1)" - line 413, "pan.___", state 483, "(1)" - line 413, "pan.___", state 483, "(1)" - line 417, "pan.___", state 491, "(1)" - line 417, "pan.___", state 492, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 492, "else" - line 417, "pan.___", state 495, "(1)" - line 417, "pan.___", state 496, "(1)" - line 417, "pan.___", state 496, "(1)" - line 415, "pan.___", state 501, "((i<1))" - line 415, "pan.___", state 501, "((i>=1))" - line 422, "pan.___", state 508, "(1)" - line 422, "pan.___", state 509, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 509, "else" - line 422, "pan.___", state 512, "(1)" - line 422, "pan.___", state 513, "(1)" - line 422, "pan.___", state 513, "(1)" - line 426, "pan.___", state 521, "(1)" - line 426, "pan.___", state 522, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 522, "else" - line 426, "pan.___", state 525, "(1)" - line 426, "pan.___", state 526, "(1)" - line 426, "pan.___", state 526, "(1)" - line 424, "pan.___", state 531, "((i<2))" - line 424, "pan.___", state 531, "((i>=2))" - line 431, "pan.___", state 535, "(1)" - line 431, "pan.___", state 535, "(1)" - line 577, "pan.___", state 538, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 577, "pan.___", state 539, "_proc_urcu_reader = (_proc_urcu_reader|(1<<5))" - line 577, "pan.___", state 540, "(1)" - line 251, "pan.___", state 544, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 555, "(1)" - line 259, "pan.___", state 566, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 575, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 591, "(1)" - line 232, "pan.___", state 599, "(1)" - line 236, "pan.___", state 611, "(1)" - line 240, "pan.___", state 619, "(1)" - line 396, "pan.___", state 637, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 651, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 669, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 683, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 702, "(1)" - line 417, "pan.___", state 715, "(1)" - line 422, "pan.___", state 732, "(1)" - line 426, "pan.___", state 745, "(1)" - line 396, "pan.___", state 773, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 775, "(1)" - line 396, "pan.___", state 776, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 776, "else" - line 396, "pan.___", state 779, "(1)" - line 400, "pan.___", state 787, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 789, "(1)" - line 400, "pan.___", state 790, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 790, "else" - line 400, "pan.___", state 793, "(1)" - line 400, "pan.___", state 794, "(1)" - line 400, "pan.___", state 794, "(1)" - line 398, "pan.___", state 799, "((i<1))" - line 398, "pan.___", state 799, "((i>=1))" - line 405, "pan.___", state 805, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 807, "(1)" - line 405, "pan.___", state 808, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 808, "else" - line 405, "pan.___", state 811, "(1)" - line 405, "pan.___", state 812, "(1)" - line 405, "pan.___", state 812, "(1)" - line 409, "pan.___", state 819, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 821, "(1)" - line 409, "pan.___", state 822, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 822, "else" - line 409, "pan.___", state 825, "(1)" - line 409, "pan.___", state 826, "(1)" - line 409, "pan.___", state 826, "(1)" - line 407, "pan.___", state 831, "((i<2))" - line 407, "pan.___", state 831, "((i>=2))" - line 413, "pan.___", state 838, "(1)" - line 413, "pan.___", state 839, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 839, "else" - line 413, "pan.___", state 842, "(1)" - line 413, "pan.___", state 843, "(1)" - line 413, "pan.___", state 843, "(1)" - line 417, "pan.___", state 851, "(1)" - line 417, "pan.___", state 852, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 852, "else" - line 417, "pan.___", state 855, "(1)" - line 417, "pan.___", state 856, "(1)" - line 417, "pan.___", state 856, "(1)" - line 415, "pan.___", state 861, "((i<1))" - line 415, "pan.___", state 861, "((i>=1))" - line 422, "pan.___", state 868, "(1)" - line 422, "pan.___", state 869, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 869, "else" - line 422, "pan.___", state 872, "(1)" - line 422, "pan.___", state 873, "(1)" - line 422, "pan.___", state 873, "(1)" - line 426, "pan.___", state 881, "(1)" - line 426, "pan.___", state 882, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 882, "else" - line 426, "pan.___", state 885, "(1)" - line 426, "pan.___", state 886, "(1)" - line 426, "pan.___", state 886, "(1)" - line 431, "pan.___", state 895, "(1)" - line 431, "pan.___", state 895, "(1)" - line 396, "pan.___", state 902, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 904, "(1)" - line 396, "pan.___", state 905, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 905, "else" - line 396, "pan.___", state 908, "(1)" - line 400, "pan.___", state 916, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 918, "(1)" - line 400, "pan.___", state 919, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 919, "else" - line 400, "pan.___", state 922, "(1)" - line 400, "pan.___", state 923, "(1)" - line 400, "pan.___", state 923, "(1)" - line 398, "pan.___", state 928, "((i<1))" - line 398, "pan.___", state 928, "((i>=1))" - line 405, "pan.___", state 934, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 936, "(1)" - line 405, "pan.___", state 937, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 937, "else" - line 405, "pan.___", state 940, "(1)" - line 405, "pan.___", state 941, "(1)" - line 405, "pan.___", state 941, "(1)" - line 409, "pan.___", state 948, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 950, "(1)" - line 409, "pan.___", state 951, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 951, "else" - line 409, "pan.___", state 954, "(1)" - line 409, "pan.___", state 955, "(1)" - line 409, "pan.___", state 955, "(1)" - line 407, "pan.___", state 960, "((i<2))" - line 407, "pan.___", state 960, "((i>=2))" - line 413, "pan.___", state 967, "(1)" - line 413, "pan.___", state 968, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 968, "else" - line 413, "pan.___", state 971, "(1)" - line 413, "pan.___", state 972, "(1)" - line 413, "pan.___", state 972, "(1)" - line 417, "pan.___", state 980, "(1)" - line 417, "pan.___", state 981, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 981, "else" - line 417, "pan.___", state 984, "(1)" - line 417, "pan.___", state 985, "(1)" - line 417, "pan.___", state 985, "(1)" - line 415, "pan.___", state 990, "((i<1))" - line 415, "pan.___", state 990, "((i>=1))" - line 422, "pan.___", state 997, "(1)" - line 422, "pan.___", state 998, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 998, "else" - line 422, "pan.___", state 1001, "(1)" - line 422, "pan.___", state 1002, "(1)" - line 422, "pan.___", state 1002, "(1)" - line 426, "pan.___", state 1010, "(1)" - line 426, "pan.___", state 1011, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 1011, "else" - line 426, "pan.___", state 1014, "(1)" - line 426, "pan.___", state 1015, "(1)" - line 426, "pan.___", state 1015, "(1)" - line 424, "pan.___", state 1020, "((i<2))" - line 424, "pan.___", state 1020, "((i>=2))" - line 431, "pan.___", state 1024, "(1)" - line 431, "pan.___", state 1024, "(1)" - line 585, "pan.___", state 1028, "_proc_urcu_reader = (_proc_urcu_reader|(1<<11))" - line 396, "pan.___", state 1033, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1047, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1065, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1079, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1098, "(1)" - line 417, "pan.___", state 1111, "(1)" - line 422, "pan.___", state 1128, "(1)" - line 426, "pan.___", state 1141, "(1)" - line 396, "pan.___", state 1165, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1197, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1211, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1230, "(1)" - line 422, "pan.___", state 1260, "(1)" - line 426, "pan.___", state 1273, "(1)" - line 396, "pan.___", state 1298, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1330, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1344, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1363, "(1)" - line 422, "pan.___", state 1393, "(1)" - line 426, "pan.___", state 1406, "(1)" - line 396, "pan.___", state 1427, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1459, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1473, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1492, "(1)" - line 422, "pan.___", state 1522, "(1)" - line 426, "pan.___", state 1535, "(1)" - line 251, "pan.___", state 1558, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1580, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1589, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1605, "(1)" - line 232, "pan.___", state 1613, "(1)" - line 236, "pan.___", state 1625, "(1)" - line 240, "pan.___", state 1633, "(1)" - line 396, "pan.___", state 1651, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1665, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1683, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1697, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1716, "(1)" - line 417, "pan.___", state 1729, "(1)" - line 422, "pan.___", state 1746, "(1)" - line 426, "pan.___", state 1759, "(1)" - line 396, "pan.___", state 1780, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1794, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1812, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1826, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1845, "(1)" - line 417, "pan.___", state 1858, "(1)" - line 422, "pan.___", state 1875, "(1)" - line 426, "pan.___", state 1888, "(1)" - line 396, "pan.___", state 1912, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1928, "(1)" - line 405, "pan.___", state 1944, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1958, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1977, "(1)" - line 422, "pan.___", state 2007, "(1)" - line 426, "pan.___", state 2020, "(1)" - line 624, "pan.___", state 2041, "_proc_urcu_reader = (_proc_urcu_reader|((1<<2)<<19))" - line 396, "pan.___", state 2048, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2080, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2094, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2113, "(1)" - line 422, "pan.___", state 2143, "(1)" - line 426, "pan.___", state 2156, "(1)" - line 396, "pan.___", state 2177, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2209, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2223, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2242, "(1)" - line 422, "pan.___", state 2272, "(1)" - line 426, "pan.___", state 2285, "(1)" - line 396, "pan.___", state 2308, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 2310, "(1)" - line 396, "pan.___", state 2311, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 2311, "else" - line 396, "pan.___", state 2314, "(1)" - line 400, "pan.___", state 2322, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2324, "(1)" - line 400, "pan.___", state 2325, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 2325, "else" - line 400, "pan.___", state 2328, "(1)" - line 400, "pan.___", state 2329, "(1)" - line 400, "pan.___", state 2329, "(1)" - line 398, "pan.___", state 2334, "((i<1))" - line 398, "pan.___", state 2334, "((i>=1))" - line 405, "pan.___", state 2340, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2342, "(1)" - line 405, "pan.___", state 2343, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 2343, "else" - line 405, "pan.___", state 2346, "(1)" - line 405, "pan.___", state 2347, "(1)" - line 405, "pan.___", state 2347, "(1)" - line 409, "pan.___", state 2354, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2356, "(1)" - line 409, "pan.___", state 2357, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 2357, "else" - line 409, "pan.___", state 2360, "(1)" - line 409, "pan.___", state 2361, "(1)" - line 409, "pan.___", state 2361, "(1)" - line 407, "pan.___", state 2366, "((i<2))" - line 407, "pan.___", state 2366, "((i>=2))" - line 413, "pan.___", state 2373, "(1)" - line 413, "pan.___", state 2374, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 2374, "else" - line 413, "pan.___", state 2377, "(1)" - line 413, "pan.___", state 2378, "(1)" - line 413, "pan.___", state 2378, "(1)" - line 417, "pan.___", state 2386, "(1)" - line 417, "pan.___", state 2387, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 2387, "else" - line 417, "pan.___", state 2390, "(1)" - line 417, "pan.___", state 2391, "(1)" - line 417, "pan.___", state 2391, "(1)" - line 415, "pan.___", state 2396, "((i<1))" - line 415, "pan.___", state 2396, "((i>=1))" - line 422, "pan.___", state 2403, "(1)" - line 422, "pan.___", state 2404, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 2404, "else" - line 422, "pan.___", state 2407, "(1)" - line 422, "pan.___", state 2408, "(1)" - line 422, "pan.___", state 2408, "(1)" - line 426, "pan.___", state 2416, "(1)" - line 426, "pan.___", state 2417, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 2417, "else" - line 426, "pan.___", state 2420, "(1)" - line 426, "pan.___", state 2421, "(1)" - line 426, "pan.___", state 2421, "(1)" - line 424, "pan.___", state 2426, "((i<2))" - line 424, "pan.___", state 2426, "((i>=2))" - line 431, "pan.___", state 2430, "(1)" - line 431, "pan.___", state 2430, "(1)" - line 624, "pan.___", state 2433, "cached_urcu_active_readers.val[_pid] = (tmp+1)" - line 624, "pan.___", state 2434, "_proc_urcu_reader = (_proc_urcu_reader|(1<<23))" - line 624, "pan.___", state 2435, "(1)" - line 251, "pan.___", state 2439, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 2450, "(1)" - line 259, "pan.___", state 2461, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 2470, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 2486, "(1)" - line 232, "pan.___", state 2494, "(1)" - line 236, "pan.___", state 2506, "(1)" - line 240, "pan.___", state 2514, "(1)" - line 396, "pan.___", state 2532, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2546, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2564, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2578, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2597, "(1)" - line 417, "pan.___", state 2610, "(1)" - line 422, "pan.___", state 2627, "(1)" - line 426, "pan.___", state 2640, "(1)" - line 251, "pan.___", state 2664, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 2673, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 2686, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 2695, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 2711, "(1)" - line 232, "pan.___", state 2719, "(1)" - line 236, "pan.___", state 2731, "(1)" - line 240, "pan.___", state 2739, "(1)" - line 396, "pan.___", state 2757, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2771, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2789, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2803, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2822, "(1)" - line 417, "pan.___", state 2835, "(1)" - line 422, "pan.___", state 2852, "(1)" - line 426, "pan.___", state 2865, "(1)" - line 396, "pan.___", state 2886, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 2900, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 2918, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 2932, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 2951, "(1)" - line 417, "pan.___", state 2964, "(1)" - line 422, "pan.___", state 2981, "(1)" - line 426, "pan.___", state 2994, "(1)" - line 228, "pan.___", state 3027, "(1)" - line 236, "pan.___", state 3047, "(1)" - line 240, "pan.___", state 3055, "(1)" - line 228, "pan.___", state 3070, "(1)" - line 232, "pan.___", state 3078, "(1)" - line 236, "pan.___", state 3090, "(1)" - line 240, "pan.___", state 3098, "(1)" - line 878, "pan.___", state 3115, "-end-" - (318 of 3115 states) -unreached in proctype urcu_writer - line 396, "pan.___", state 18, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 24, "(1)" - line 400, "pan.___", state 32, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 38, "(1)" - line 400, "pan.___", state 39, "(1)" - line 400, "pan.___", state 39, "(1)" - line 398, "pan.___", state 44, "((i<1))" - line 398, "pan.___", state 44, "((i>=1))" - line 405, "pan.___", state 50, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 56, "(1)" - line 405, "pan.___", state 57, "(1)" - line 405, "pan.___", state 57, "(1)" - line 409, "pan.___", state 64, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 70, "(1)" - line 409, "pan.___", state 71, "(1)" - line 409, "pan.___", state 71, "(1)" - line 407, "pan.___", state 76, "((i<2))" - line 407, "pan.___", state 76, "((i>=2))" - line 413, "pan.___", state 83, "(1)" - line 413, "pan.___", state 84, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 84, "else" - line 413, "pan.___", state 87, "(1)" - line 413, "pan.___", state 88, "(1)" - line 413, "pan.___", state 88, "(1)" - line 417, "pan.___", state 96, "(1)" - line 417, "pan.___", state 97, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 97, "else" - line 417, "pan.___", state 100, "(1)" - line 417, "pan.___", state 101, "(1)" - line 417, "pan.___", state 101, "(1)" - line 415, "pan.___", state 106, "((i<1))" - line 415, "pan.___", state 106, "((i>=1))" - line 422, "pan.___", state 113, "(1)" - line 422, "pan.___", state 114, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 114, "else" - line 422, "pan.___", state 117, "(1)" - line 422, "pan.___", state 118, "(1)" - line 422, "pan.___", state 118, "(1)" - line 426, "pan.___", state 126, "(1)" - line 426, "pan.___", state 127, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 127, "else" - line 426, "pan.___", state 130, "(1)" - line 426, "pan.___", state 131, "(1)" - line 426, "pan.___", state 131, "(1)" - line 424, "pan.___", state 136, "((i<2))" - line 424, "pan.___", state 136, "((i>=2))" - line 431, "pan.___", state 140, "(1)" - line 431, "pan.___", state 140, "(1)" - line 251, "pan.___", state 149, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 158, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 166, "((i<1))" - line 253, "pan.___", state 166, "((i>=1))" - line 259, "pan.___", state 171, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 1001, "pan.___", state 199, "old_data = cached_rcu_ptr.val[_pid]" - line 396, "pan.___", state 211, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 217, "(1)" - line 400, "pan.___", state 225, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 231, "(1)" - line 400, "pan.___", state 232, "(1)" - line 400, "pan.___", state 232, "(1)" - line 398, "pan.___", state 237, "((i<1))" - line 398, "pan.___", state 237, "((i>=1))" - line 405, "pan.___", state 243, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 249, "(1)" - line 405, "pan.___", state 250, "(1)" - line 405, "pan.___", state 250, "(1)" - line 409, "pan.___", state 257, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 263, "(1)" - line 409, "pan.___", state 264, "(1)" - line 409, "pan.___", state 264, "(1)" - line 407, "pan.___", state 269, "((i<2))" - line 407, "pan.___", state 269, "((i>=2))" - line 413, "pan.___", state 276, "(1)" - line 413, "pan.___", state 277, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 277, "else" - line 413, "pan.___", state 280, "(1)" - line 413, "pan.___", state 281, "(1)" - line 413, "pan.___", state 281, "(1)" - line 417, "pan.___", state 289, "(1)" - line 417, "pan.___", state 290, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 290, "else" - line 417, "pan.___", state 293, "(1)" - line 417, "pan.___", state 294, "(1)" - line 417, "pan.___", state 294, "(1)" - line 415, "pan.___", state 299, "((i<1))" - line 415, "pan.___", state 299, "((i>=1))" - line 422, "pan.___", state 306, "(1)" - line 422, "pan.___", state 307, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 307, "else" - line 422, "pan.___", state 310, "(1)" - line 422, "pan.___", state 311, "(1)" - line 422, "pan.___", state 311, "(1)" - line 426, "pan.___", state 319, "(1)" - line 426, "pan.___", state 320, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 320, "else" - line 426, "pan.___", state 323, "(1)" - line 426, "pan.___", state 324, "(1)" - line 426, "pan.___", state 324, "(1)" - line 424, "pan.___", state 329, "((i<2))" - line 424, "pan.___", state 329, "((i>=2))" - line 431, "pan.___", state 333, "(1)" - line 431, "pan.___", state 333, "(1)" - line 396, "pan.___", state 344, "(1)" - line 396, "pan.___", state 345, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 345, "else" - line 396, "pan.___", state 348, "(1)" - line 400, "pan.___", state 356, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 362, "(1)" - line 400, "pan.___", state 363, "(1)" - line 400, "pan.___", state 363, "(1)" - line 398, "pan.___", state 368, "((i<1))" - line 398, "pan.___", state 368, "((i>=1))" - line 405, "pan.___", state 374, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 380, "(1)" - line 405, "pan.___", state 381, "(1)" - line 405, "pan.___", state 381, "(1)" - line 409, "pan.___", state 388, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 394, "(1)" - line 409, "pan.___", state 395, "(1)" - line 409, "pan.___", state 395, "(1)" - line 407, "pan.___", state 400, "((i<2))" - line 407, "pan.___", state 400, "((i>=2))" - line 413, "pan.___", state 407, "(1)" - line 413, "pan.___", state 408, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 408, "else" - line 413, "pan.___", state 411, "(1)" - line 413, "pan.___", state 412, "(1)" - line 413, "pan.___", state 412, "(1)" - line 417, "pan.___", state 420, "(1)" - line 417, "pan.___", state 421, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 421, "else" - line 417, "pan.___", state 424, "(1)" - line 417, "pan.___", state 425, "(1)" - line 417, "pan.___", state 425, "(1)" - line 415, "pan.___", state 430, "((i<1))" - line 415, "pan.___", state 430, "((i>=1))" - line 422, "pan.___", state 437, "(1)" - line 422, "pan.___", state 438, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 438, "else" - line 422, "pan.___", state 441, "(1)" - line 422, "pan.___", state 442, "(1)" - line 422, "pan.___", state 442, "(1)" - line 426, "pan.___", state 450, "(1)" - line 426, "pan.___", state 451, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 451, "else" - line 426, "pan.___", state 454, "(1)" - line 426, "pan.___", state 455, "(1)" - line 426, "pan.___", state 455, "(1)" - line 424, "pan.___", state 460, "((i<2))" - line 424, "pan.___", state 460, "((i>=2))" - line 431, "pan.___", state 464, "(1)" - line 431, "pan.___", state 464, "(1)" - line 396, "pan.___", state 477, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 479, "(1)" - line 396, "pan.___", state 480, "((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid)))" - line 396, "pan.___", state 480, "else" - line 396, "pan.___", state 483, "(1)" - line 400, "pan.___", state 491, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 493, "(1)" - line 400, "pan.___", state 494, "((cache_dirty_urcu_active_readers.bitfield&(1<<_pid)))" - line 400, "pan.___", state 494, "else" - line 400, "pan.___", state 497, "(1)" - line 400, "pan.___", state 498, "(1)" - line 400, "pan.___", state 498, "(1)" - line 398, "pan.___", state 503, "((i<1))" - line 398, "pan.___", state 503, "((i>=1))" - line 405, "pan.___", state 509, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 511, "(1)" - line 405, "pan.___", state 512, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 405, "pan.___", state 512, "else" - line 405, "pan.___", state 515, "(1)" - line 405, "pan.___", state 516, "(1)" - line 405, "pan.___", state 516, "(1)" - line 409, "pan.___", state 523, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 525, "(1)" - line 409, "pan.___", state 526, "((cache_dirty_rcu_data[i].bitfield&(1<<_pid)))" - line 409, "pan.___", state 526, "else" - line 409, "pan.___", state 529, "(1)" - line 409, "pan.___", state 530, "(1)" - line 409, "pan.___", state 530, "(1)" - line 407, "pan.___", state 535, "((i<2))" - line 407, "pan.___", state 535, "((i>=2))" - line 413, "pan.___", state 542, "(1)" - line 413, "pan.___", state 543, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 543, "else" - line 413, "pan.___", state 546, "(1)" - line 413, "pan.___", state 547, "(1)" - line 413, "pan.___", state 547, "(1)" - line 417, "pan.___", state 555, "(1)" - line 417, "pan.___", state 556, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 556, "else" - line 417, "pan.___", state 559, "(1)" - line 417, "pan.___", state 560, "(1)" - line 417, "pan.___", state 560, "(1)" - line 415, "pan.___", state 565, "((i<1))" - line 415, "pan.___", state 565, "((i>=1))" - line 422, "pan.___", state 572, "(1)" - line 422, "pan.___", state 573, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 573, "else" - line 422, "pan.___", state 576, "(1)" - line 422, "pan.___", state 577, "(1)" - line 422, "pan.___", state 577, "(1)" - line 426, "pan.___", state 585, "(1)" - line 426, "pan.___", state 586, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 586, "else" - line 426, "pan.___", state 589, "(1)" - line 426, "pan.___", state 590, "(1)" - line 426, "pan.___", state 590, "(1)" - line 431, "pan.___", state 599, "(1)" - line 431, "pan.___", state 599, "(1)" - line 396, "pan.___", state 605, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 611, "(1)" - line 400, "pan.___", state 619, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 625, "(1)" - line 400, "pan.___", state 626, "(1)" - line 400, "pan.___", state 626, "(1)" - line 398, "pan.___", state 631, "((i<1))" - line 398, "pan.___", state 631, "((i>=1))" - line 405, "pan.___", state 637, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 643, "(1)" - line 405, "pan.___", state 644, "(1)" - line 405, "pan.___", state 644, "(1)" - line 409, "pan.___", state 651, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 657, "(1)" - line 409, "pan.___", state 658, "(1)" - line 409, "pan.___", state 658, "(1)" - line 407, "pan.___", state 663, "((i<2))" - line 407, "pan.___", state 663, "((i>=2))" - line 413, "pan.___", state 670, "(1)" - line 413, "pan.___", state 671, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 671, "else" - line 413, "pan.___", state 674, "(1)" - line 413, "pan.___", state 675, "(1)" - line 413, "pan.___", state 675, "(1)" - line 417, "pan.___", state 683, "(1)" - line 417, "pan.___", state 684, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 684, "else" - line 417, "pan.___", state 687, "(1)" - line 417, "pan.___", state 688, "(1)" - line 417, "pan.___", state 688, "(1)" - line 415, "pan.___", state 693, "((i<1))" - line 415, "pan.___", state 693, "((i>=1))" - line 422, "pan.___", state 700, "(1)" - line 422, "pan.___", state 701, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 701, "else" - line 422, "pan.___", state 704, "(1)" - line 422, "pan.___", state 705, "(1)" - line 422, "pan.___", state 705, "(1)" - line 426, "pan.___", state 713, "(1)" - line 426, "pan.___", state 714, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 714, "else" - line 426, "pan.___", state 717, "(1)" - line 426, "pan.___", state 718, "(1)" - line 426, "pan.___", state 718, "(1)" - line 431, "pan.___", state 727, "(1)" - line 431, "pan.___", state 727, "(1)" - line 396, "pan.___", state 734, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 396, "pan.___", state 740, "(1)" - line 400, "pan.___", state 748, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 754, "(1)" - line 400, "pan.___", state 755, "(1)" - line 400, "pan.___", state 755, "(1)" - line 398, "pan.___", state 760, "((i<1))" - line 398, "pan.___", state 760, "((i>=1))" - line 405, "pan.___", state 766, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 772, "(1)" - line 405, "pan.___", state 773, "(1)" - line 405, "pan.___", state 773, "(1)" - line 409, "pan.___", state 780, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 409, "pan.___", state 786, "(1)" - line 409, "pan.___", state 787, "(1)" - line 409, "pan.___", state 787, "(1)" - line 407, "pan.___", state 792, "((i<2))" - line 407, "pan.___", state 792, "((i>=2))" - line 413, "pan.___", state 799, "(1)" - line 413, "pan.___", state 800, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 413, "pan.___", state 800, "else" - line 413, "pan.___", state 803, "(1)" - line 413, "pan.___", state 804, "(1)" - line 413, "pan.___", state 804, "(1)" - line 417, "pan.___", state 812, "(1)" - line 417, "pan.___", state 813, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 417, "pan.___", state 813, "else" - line 417, "pan.___", state 816, "(1)" - line 417, "pan.___", state 817, "(1)" - line 417, "pan.___", state 817, "(1)" - line 415, "pan.___", state 822, "((i<1))" - line 415, "pan.___", state 822, "((i>=1))" - line 422, "pan.___", state 829, "(1)" - line 422, "pan.___", state 830, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 422, "pan.___", state 830, "else" - line 422, "pan.___", state 833, "(1)" - line 422, "pan.___", state 834, "(1)" - line 422, "pan.___", state 834, "(1)" - line 426, "pan.___", state 842, "(1)" - line 426, "pan.___", state 843, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 426, "pan.___", state 843, "else" - line 426, "pan.___", state 846, "(1)" - line 426, "pan.___", state 847, "(1)" - line 426, "pan.___", state 847, "(1)" - line 424, "pan.___", state 852, "((i<2))" - line 424, "pan.___", state 852, "((i>=2))" - line 431, "pan.___", state 856, "(1)" - line 431, "pan.___", state 856, "(1)" - line 400, "pan.___", state 879, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 897, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 911, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 417, "pan.___", state 943, "(1)" - line 422, "pan.___", state 960, "(1)" - line 426, "pan.___", state 973, "(1)" - line 396, "pan.___", state 999, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 400, "pan.___", state 1013, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 405, "pan.___", state 1031, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 409, "pan.___", state 1045, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 413, "pan.___", state 1064, "(1)" - line 417, "pan.___", state 1077, "(1)" - line 422, "pan.___", state 1094, "(1)" - line 426, "pan.___", state 1107, "(1)" - line 251, "pan.___", state 1153, "cache_dirty_urcu_gp_ctr.bitfield = (cache_dirty_urcu_gp_ctr.bitfield&~((1<<_pid)))" - line 255, "pan.___", state 1162, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 253, "pan.___", state 1170, "((i<1))" - line 253, "pan.___", state 1170, "((i>=1))" - line 259, "pan.___", state 1177, "(1)" - line 259, "pan.___", state 1178, "((cache_dirty_rcu_ptr.bitfield&(1<<_pid)))" - line 259, "pan.___", state 1178, "else" - line 263, "pan.___", state 1184, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 261, "pan.___", state 1192, "((i<2))" - line 261, "pan.___", state 1192, "((i>=2))" - line 228, "pan.___", state 1200, "(1)" - line 232, "pan.___", state 1208, "(1)" - line 232, "pan.___", state 1209, "(!((cache_dirty_urcu_active_readers.bitfield&(1<<_pid))))" - line 232, "pan.___", state 1209, "else" - line 230, "pan.___", state 1214, "((i<1))" - line 230, "pan.___", state 1214, "((i>=1))" - line 236, "pan.___", state 1220, "(1)" - line 236, "pan.___", state 1221, "(!((cache_dirty_rcu_ptr.bitfield&(1<<_pid))))" - line 236, "pan.___", state 1221, "else" - line 240, "pan.___", state 1228, "(1)" - line 240, "pan.___", state 1229, "(!((cache_dirty_rcu_data[i].bitfield&(1<<_pid))))" - line 240, "pan.___", state 1229, "else" - line 245, "pan.___", state 1238, "(!((cache_dirty_urcu_gp_ctr.bitfield&(1<<_pid))))" - line 245, "pan.___", state 1238, "else" - line 255, "pan.___", state 1253, "cache_dirty_urcu_active_readers.bitfield = (cache_dirty_urcu_active_readers.bitfield&~((1<<_pid)))" - line 259, "pan.___", state 1266, "cache_dirty_rcu_ptr.bitfield = (cache_dirty_rcu_ptr.bitfield&~((1<<_pid)))" - line 263, "pan.___", state 1275, "cache_dirty_rcu_data[i].bitfield = (cache_dirty_rcu_data[i].bitfield&~((1<<_pid)))" - line 228, "pan.___", state 1291, "(1)" - line 232, "pan.___", state 1299, "(1)" - line 236, "pan.___", state 1311, "(1)" - line 240, "pan.___", state 1319, "(1)" - line 1205, "pan.___", state 1334, "-end-" - (242 of 1334 states) -unreached in proctype :init: - (0 of 78 states) -unreached in proctype :never: - line 1266, "pan.___", state 11, "-end-" - (1 of 11 states) - -pan: elapsed time 24.3 seconds -pan: rate 3201.8077 states/second -pan: avg transition delay 1.3309e-06 usec -cp .input.spin urcu_progress_writer_error.spin.input -cp .input.spin.trail urcu_progress_writer_error.spin.input.trail diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input deleted file mode 100644 index ea022e9..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input +++ /dev/null @@ -1,1241 +0,0 @@ -#define WRITER_PROGRESS -#define GEN_ERROR_WRITER_PROGRESS - -// Poison value for freed memory -#define POISON 1 -// Memory with correct data -#define WINE 0 -#define SLAB_SIZE 2 - -#define read_poison (data_read_first[0] == POISON || data_read_second[0] == POISON) - -#define RCU_GP_CTR_BIT (1 << 7) -#define RCU_GP_CTR_NEST_MASK (RCU_GP_CTR_BIT - 1) - -//disabled -//#define REMOTE_BARRIERS -/* - * mem.spin: Promela code to validate memory barriers with OOO memory - * and out-of-order instruction scheduling. - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that it will be useful, - * but WITHOUT ANY WARRANTY; without even the implied warranty of - * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the - * GNU General Public License for more details. - * - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. - * - * Copyright (c) 2009 Mathieu Desnoyers - */ - -/* Promela validation variables. */ - -/* specific defines "included" here */ -/* DEFINES file "included" here */ - -#define NR_READERS 1 -#define NR_WRITERS 1 - -#define NR_PROCS 2 - -#define get_pid() (_pid) - -#define get_readerid() (get_pid()) - -/* - * Produced process control and data flow. Updated after each instruction to - * show which variables are ready. Using one-hot bit encoding per variable to - * save state space. Used as triggers to execute the instructions having those - * variables as input. Leaving bits active to inhibit instruction execution. - * Scheme used to make instruction disabling and automatic dependency fall-back - * automatic. - */ - -#define CONSUME_TOKENS(state, bits, notbits) \ - ((!(state & (notbits))) && (state & (bits)) == (bits)) - -#define PRODUCE_TOKENS(state, bits) \ - state = state | (bits); - -#define CLEAR_TOKENS(state, bits) \ - state = state & ~(bits) - -/* - * Types of dependency : - * - * Data dependency - * - * - True dependency, Read-after-Write (RAW) - * - * This type of dependency happens when a statement depends on the result of a - * previous statement. This applies to any statement which needs to read a - * variable written by a preceding statement. - * - * - False dependency, Write-after-Read (WAR) - * - * Typically, variable renaming can ensure that this dependency goes away. - * However, if the statements must read and then write from/to the same variable - * in the OOO memory model, renaming may be impossible, and therefore this - * causes a WAR dependency. - * - * - Output dependency, Write-after-Write (WAW) - * - * Two writes to the same variable in subsequent statements. Variable renaming - * can ensure this is not needed, but can be required when writing multiple - * times to the same OOO mem model variable. - * - * Control dependency - * - * Execution of a given instruction depends on a previous instruction evaluating - * in a way that allows its execution. E.g. : branches. - * - * Useful considerations for joining dependencies after branch - * - * - Pre-dominance - * - * "We say box i dominates box j if every path (leading from input to output - * through the diagram) which passes through box j must also pass through box - * i. Thus box i dominates box j if box j is subordinate to box i in the - * program." - * - * http://www.hipersoft.rice.edu/grads/publications/dom14.pdf - * Other classic algorithm to calculate dominance : Lengauer-Tarjan (in gcc) - * - * - Post-dominance - * - * Just as pre-dominance, but with arcs of the data flow inverted, and input vs - * output exchanged. Therefore, i post-dominating j ensures that every path - * passing by j will pass by i before reaching the output. - * - * Other considerations - * - * Note about "volatile" keyword dependency : The compiler will order volatile - * accesses so they appear in the right order on a given CPU. They can be - * reordered by the CPU instruction scheduling. This therefore cannot be - * considered as a depencency. - * - * References : - * - * Cooper, Keith D.; & Torczon, Linda. (2005). Engineering a Compiler. Morgan - * Kaufmann. ISBN 1-55860-698-X. - * Kennedy, Ken; & Allen, Randy. (2001). Optimizing Compilers for Modern - * Architectures: A Dependence-based Approach. Morgan Kaufmann. ISBN - * 1-55860-286-0. - * Muchnick, Steven S. (1997). Advanced Compiler Design and Implementation. - * Morgan Kaufmann. ISBN 1-55860-320-4. - */ - -/* - * Note about loops and nested calls - * - * To keep this model simple, loops expressed in the framework will behave as if - * there was a core synchronizing instruction between loops. To see the effect - * of loop unrolling, manually unrolling loops is required. Note that if loops - * end or start with a core synchronizing instruction, the model is appropriate. - * Nested calls are not supported. - */ - -/* - * Each process have its own data in cache. Caches are randomly updated. - * smp_wmb and smp_rmb forces cache updates (write and read), smp_mb forces - * both. - */ - -typedef per_proc_byte { - byte val[NR_PROCS]; -}; - -typedef per_proc_bit { - bit val[NR_PROCS]; -}; - -/* Bitfield has a maximum of 8 procs */ -typedef per_proc_bitfield { - byte bitfield; -}; - -#define DECLARE_CACHED_VAR(type, x) \ - type mem_##x; \ - per_proc_##type cached_##x; \ - per_proc_bitfield cache_dirty_##x; - -#define INIT_CACHED_VAR(x, v, j) \ - mem_##x = v; \ - cache_dirty_##x.bitfield = 0; \ - j = 0; \ - do \ - :: j < NR_PROCS -> \ - cached_##x.val[j] = v; \ - j++ \ - :: j >= NR_PROCS -> break \ - od; - -#define IS_CACHE_DIRTY(x, id) (cache_dirty_##x.bitfield & (1 << id)) - -#define READ_CACHED_VAR(x) (cached_##x.val[get_pid()]) - -#define WRITE_CACHED_VAR(x, v) \ - atomic { \ - cached_##x.val[get_pid()] = v; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield | (1 << get_pid()); \ - } - -#define CACHE_WRITE_TO_MEM(x, id) \ - if \ - :: IS_CACHE_DIRTY(x, id) -> \ - mem_##x = cached_##x.val[id]; \ - cache_dirty_##x.bitfield = \ - cache_dirty_##x.bitfield & (~(1 << id)); \ - :: else -> \ - skip \ - fi; - -#define CACHE_READ_FROM_MEM(x, id) \ - if \ - :: !IS_CACHE_DIRTY(x, id) -> \ - cached_##x.val[id] = mem_##x;\ - :: else -> \ - skip \ - fi; - -/* - * May update other caches if cache is dirty, or not. - */ -#define RANDOM_CACHE_WRITE_TO_MEM(x, id)\ - if \ - :: 1 -> CACHE_WRITE_TO_MEM(x, id); \ - :: 1 -> skip \ - fi; - -#define RANDOM_CACHE_READ_FROM_MEM(x, id)\ - if \ - :: 1 -> CACHE_READ_FROM_MEM(x, id); \ - :: 1 -> skip \ - fi; - -/* Must consume all prior read tokens. All subsequent reads depend on it. */ -inline smp_rmb(i, j) -{ - atomic { - CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_READ_FROM_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Must consume all prior write tokens. All subsequent writes depend on it. */ -inline smp_wmb(i, j) -{ - atomic { - CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - CACHE_WRITE_TO_MEM(urcu_active_readers[i], get_pid()); - i++ - :: i >= NR_READERS -> break - od; - CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* Synchronization point. Must consume all prior read and write tokens. All - * subsequent reads and writes depend on it. */ -inline smp_mb(i, j) -{ - atomic { - smp_wmb(i, j); - smp_rmb(i, j); - } -} - -#ifdef REMOTE_BARRIERS - -bit reader_barrier[NR_READERS]; - -/* - * We cannot leave the barriers dependencies in place in REMOTE_BARRIERS mode - * because they would add unexisting core synchronization and would therefore - * create an incomplete model. - * Therefore, we model the read-side memory barriers by completely disabling the - * memory barriers and their dependencies from the read-side. One at a time - * (different verification runs), we make a different instruction listen for - * signals. - */ - -#define smp_mb_reader(i, j) - -/* - * Service 0, 1 or many barrier requests. - */ -inline smp_mb_recv(i, j) -{ - do - :: (reader_barrier[get_readerid()] == 1) -> - /* - * We choose to ignore cycles caused by writer busy-looping, - * waiting for the reader, sending barrier requests, and the - * reader always services them without continuing execution. - */ -progress_ignoring_mb1: - smp_mb(i, j); - reader_barrier[get_readerid()] = 0; - :: 1 -> - /* - * We choose to ignore writer's non-progress caused by the - * reader ignoring the writer's mb() requests. - */ -progress_ignoring_mb2: - break; - od; -} - -//#ifdef WRITER_PROGRESS -//#define PROGRESS_LABEL(progressid) -//#else -//#define PROGRESS_LABEL(progressid) -//#endif - -#define PROGRESS_LABEL(progressid) progress_writer_progid_##progressid: - -#define smp_mb_send(i, j, progressid) \ -{ \ - smp_mb(i, j); \ - i = 0; \ - do \ - :: i < NR_READERS -> \ - reader_barrier[i] = 1; \ - /* \ - * Busy-looping waiting for reader barrier handling is of little\ - * interest, given the reader has the ability to totally ignore \ - * barrier requests. \ - */ \ - do \ - :: (reader_barrier[i] == 1) -> \ -PROGRESS_LABEL(progressid) \ - skip; \ - :: (reader_barrier[i] == 0) -> break; \ - od; \ - i++; \ - :: i >= NR_READERS -> \ - break \ - od; \ - smp_mb(i, j); \ -} - -#else - -#define smp_mb_send(i, j, progressid) smp_mb(i, j) -#define smp_mb_reader smp_mb -#define smp_mb_recv(i, j) - -#endif - -/* Keep in sync manually with smp_rmb, smp_wmb, ooo_mem and init() */ -DECLARE_CACHED_VAR(byte, urcu_gp_ctr); -/* Note ! currently only one reader */ -DECLARE_CACHED_VAR(byte, urcu_active_readers[NR_READERS]); -/* RCU data */ -DECLARE_CACHED_VAR(bit, rcu_data[SLAB_SIZE]); - -/* RCU pointer */ -#if (SLAB_SIZE == 2) -DECLARE_CACHED_VAR(bit, rcu_ptr); -bit ptr_read_first[NR_READERS]; -bit ptr_read_second[NR_READERS]; -#else -DECLARE_CACHED_VAR(byte, rcu_ptr); -byte ptr_read_first[NR_READERS]; -byte ptr_read_second[NR_READERS]; -#endif - -bit data_read_first[NR_READERS]; -bit data_read_second[NR_READERS]; - -bit init_done = 0; - -inline wait_init_done() -{ - do - :: init_done == 0 -> skip; - :: else -> break; - od; -} - -inline ooo_mem(i) -{ - atomic { - RANDOM_CACHE_WRITE_TO_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_WRITE_TO_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_WRITE_TO_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_WRITE_TO_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - RANDOM_CACHE_READ_FROM_MEM(urcu_gp_ctr, get_pid()); - i = 0; - do - :: i < NR_READERS -> - RANDOM_CACHE_READ_FROM_MEM(urcu_active_readers[i], - get_pid()); - i++ - :: i >= NR_READERS -> break - od; - RANDOM_CACHE_READ_FROM_MEM(rcu_ptr, get_pid()); - i = 0; - do - :: i < SLAB_SIZE -> - RANDOM_CACHE_READ_FROM_MEM(rcu_data[i], get_pid()); - i++ - :: i >= SLAB_SIZE -> break - od; - } -} - -/* - * Bit encoding, urcu_reader : - */ - -int _proc_urcu_reader; -#define proc_urcu_reader _proc_urcu_reader - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROD_A_READ (1 << 0) -#define READ_PROD_B_IF_TRUE (1 << 1) -#define READ_PROD_B_IF_FALSE (1 << 2) -#define READ_PROD_C_IF_TRUE_READ (1 << 3) - -#define PROCEDURE_READ_LOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, consumetoken, READ_PROD_A_READ << base) -> \ - ooo_mem(i); \ - tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_A_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - READ_PROD_A_READ << base, /* RAW, pre-dominant */ \ - (READ_PROD_B_IF_TRUE | READ_PROD_B_IF_FALSE) << base) -> \ - if \ - :: (!(tmp & RCU_GP_CTR_NEST_MASK)) -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base); \ - :: else -> \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_B_IF_FALSE << base); \ - fi; \ - /* IF TRUE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_B_IF_TRUE << base, \ - READ_PROD_C_IF_TRUE_READ << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_gp_ctr); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_C_IF_TRUE_READ << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_C_IF_TRUE_READ /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ELSE */ \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - (READ_PROD_B_IF_FALSE /* pre-dominant */ \ - | READ_PROD_A_READ) << base, /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], \ - tmp + 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - /* IF_MERGE implies \ - * post-dominance */ \ - /* ENDIF */ \ - skip - -/* Body of PROCEDURE_READ_LOCK */ -#define READ_PROC_READ_UNLOCK (1 << 0) - -#define PROCEDURE_READ_UNLOCK(base, consumetoken, producetoken) \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken, \ - READ_PROC_READ_UNLOCK << base) -> \ - ooo_mem(i); \ - tmp2 = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); \ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_UNLOCK << base); \ - :: CONSUME_TOKENS(proc_urcu_reader, \ - consumetoken \ - | (READ_PROC_READ_UNLOCK << base), /* WAR */ \ - producetoken) -> \ - ooo_mem(i); \ - WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1); \ - PRODUCE_TOKENS(proc_urcu_reader, producetoken); \ - skip - - -#define READ_PROD_NONE (1 << 0) - -/* PROCEDURE_READ_LOCK base = << 1 : 1 to 5 */ -#define READ_LOCK_BASE 1 -#define READ_LOCK_OUT (1 << 5) - -#define READ_PROC_FIRST_MB (1 << 6) - -/* PROCEDURE_READ_LOCK (NESTED) base : << 7 : 7 to 11 */ -#define READ_LOCK_NESTED_BASE 7 -#define READ_LOCK_NESTED_OUT (1 << 11) - -#define READ_PROC_READ_GEN (1 << 12) -#define READ_PROC_ACCESS_GEN (1 << 13) - -/* PROCEDURE_READ_UNLOCK (NESTED) base = << 14 : 14 to 15 */ -#define READ_UNLOCK_NESTED_BASE 14 -#define READ_UNLOCK_NESTED_OUT (1 << 15) - -#define READ_PROC_SECOND_MB (1 << 16) - -/* PROCEDURE_READ_UNLOCK base = << 17 : 17 to 18 */ -#define READ_UNLOCK_BASE 17 -#define READ_UNLOCK_OUT (1 << 18) - -/* PROCEDURE_READ_LOCK_UNROLL base = << 19 : 19 to 23 */ -#define READ_LOCK_UNROLL_BASE 19 -#define READ_LOCK_OUT_UNROLL (1 << 23) - -#define READ_PROC_THIRD_MB (1 << 24) - -#define READ_PROC_READ_GEN_UNROLL (1 << 25) -#define READ_PROC_ACCESS_GEN_UNROLL (1 << 26) - -#define READ_PROC_FOURTH_MB (1 << 27) - -/* PROCEDURE_READ_UNLOCK_UNROLL base = << 28 : 28 to 29 */ -#define READ_UNLOCK_UNROLL_BASE 28 -#define READ_UNLOCK_OUT_UNROLL (1 << 29) - - -/* Should not include branches */ -#define READ_PROC_ALL_TOKENS (READ_PROD_NONE \ - | READ_LOCK_OUT \ - | READ_PROC_FIRST_MB \ - | READ_LOCK_NESTED_OUT \ - | READ_PROC_READ_GEN \ - | READ_PROC_ACCESS_GEN \ - | READ_UNLOCK_NESTED_OUT \ - | READ_PROC_SECOND_MB \ - | READ_UNLOCK_OUT \ - | READ_LOCK_OUT_UNROLL \ - | READ_PROC_THIRD_MB \ - | READ_PROC_READ_GEN_UNROLL \ - | READ_PROC_ACCESS_GEN_UNROLL \ - | READ_PROC_FOURTH_MB \ - | READ_UNLOCK_OUT_UNROLL) - -/* Must clear all tokens, including branches */ -#define READ_PROC_ALL_TOKENS_CLEAR ((1 << 30) - 1) - -inline urcu_one_read(i, j, nest_i, tmp, tmp2) -{ - PRODUCE_TOKENS(proc_urcu_reader, READ_PROD_NONE); - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - -#ifdef REMOTE_BARRIERS - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); -#endif - - do - :: 1 -> - -#ifdef REMOTE_BARRIERS - /* - * Signal-based memory barrier will only execute when the - * execution order appears in program order. - */ - if - :: 1 -> - atomic { - if - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE, - READ_LOCK_OUT | READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT - | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT | READ_LOCK_NESTED_OUT, - READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN, - READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT, - READ_UNLOCK_OUT - | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL, - READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL, - READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN - | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL, - READ_UNLOCK_OUT_UNROLL) - || CONSUME_TOKENS(proc_urcu_reader, READ_PROD_NONE | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT | READ_PROC_READ_GEN | READ_PROC_ACCESS_GEN | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT | READ_LOCK_OUT_UNROLL - | READ_PROC_READ_GEN_UNROLL | READ_PROC_ACCESS_GEN_UNROLL | READ_UNLOCK_OUT_UNROLL, - 0) -> - goto non_atomic3; -non_atomic3_end: - skip; - fi; - } - fi; - - goto non_atomic3_skip; -non_atomic3: - smp_mb_recv(i, j); - goto non_atomic3_end; -non_atomic3_skip: - -#endif /* REMOTE_BARRIERS */ - - atomic { - if - PROCEDURE_READ_LOCK(READ_LOCK_BASE, READ_PROD_NONE, READ_LOCK_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_LOCK_OUT, /* post-dominant */ - READ_PROC_FIRST_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FIRST_MB); - - PROCEDURE_READ_LOCK(READ_LOCK_NESTED_BASE, READ_PROC_FIRST_MB | READ_LOCK_OUT, - READ_LOCK_NESTED_OUT); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB, /* mb() orders reads */ - READ_PROC_READ_GEN) -> - ooo_mem(i); - ptr_read_first[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_READ_GEN, - READ_PROC_ACCESS_GEN) -> - /* smp_read_barrier_depends */ - goto rmb1; -rmb1_end: - data_read_first[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_first[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN); - - - /* Note : we remove the nested memory barrier from the read unlock - * model, given it is not usually needed. The implementation has the barrier - * because the performance impact added by a branch in the common case does not - * justify it. - */ - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_NESTED_BASE, - READ_PROC_FIRST_MB - | READ_LOCK_OUT - | READ_LOCK_NESTED_OUT, - READ_UNLOCK_NESTED_OUT); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_ACCESS_GEN /* mb() orders reads */ - | READ_PROC_READ_GEN /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_LOCK_OUT /* post-dominant */ - | READ_LOCK_NESTED_OUT /* post-dominant */ - | READ_UNLOCK_NESTED_OUT, - READ_PROC_SECOND_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_SECOND_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_BASE, - READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT); - - /* Unrolling loop : second consecutive lock */ - /* reading urcu_active_readers, which have been written by - * READ_UNLOCK_OUT : RAW */ - PROCEDURE_READ_LOCK(READ_LOCK_UNROLL_BASE, - READ_UNLOCK_OUT /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_LOCK_OUT_UNROLL); - - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_THIRD_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_THIRD_MB); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_READ_GEN_UNROLL) -> - ooo_mem(i); - ptr_read_second[get_readerid()] = READ_CACHED_VAR(rcu_ptr); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_READ_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB, /* mb() orders reads */ - READ_PROC_ACCESS_GEN_UNROLL) -> - /* smp_read_barrier_depends */ - goto rmb2; -rmb2_end: - data_read_second[get_readerid()] = - READ_CACHED_VAR(rcu_data[ptr_read_second[get_readerid()]]); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_ACCESS_GEN_UNROLL); - - :: CONSUME_TOKENS(proc_urcu_reader, - READ_PROC_READ_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_ACCESS_GEN_UNROLL /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() ordered */ - | READ_PROC_SECOND_MB /* mb() ordered */ - | READ_PROC_THIRD_MB /* mb() ordered */ - | READ_LOCK_OUT_UNROLL /* post-dominant */ - | READ_LOCK_NESTED_OUT - | READ_LOCK_OUT - | READ_UNLOCK_NESTED_OUT - | READ_UNLOCK_OUT, - READ_PROC_FOURTH_MB) -> - smp_mb_reader(i, j); - PRODUCE_TOKENS(proc_urcu_reader, READ_PROC_FOURTH_MB); - - PROCEDURE_READ_UNLOCK(READ_UNLOCK_UNROLL_BASE, - READ_PROC_FOURTH_MB /* mb() orders reads */ - | READ_PROC_THIRD_MB /* mb() orders reads */ - | READ_LOCK_OUT_UNROLL /* RAW */ - | READ_PROC_SECOND_MB /* mb() orders reads */ - | READ_PROC_FIRST_MB /* mb() orders reads */ - | READ_LOCK_NESTED_OUT /* RAW */ - | READ_LOCK_OUT /* RAW */ - | READ_UNLOCK_NESTED_OUT, /* RAW */ - READ_UNLOCK_OUT_UNROLL); - :: CONSUME_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_reader, READ_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Dependency between consecutive loops : - * RAW dependency on - * WRITE_CACHED_VAR(urcu_active_readers[get_readerid()], tmp2 - 1) - * tmp = READ_CACHED_VAR(urcu_active_readers[get_readerid()]); - * between loops. - * _WHEN THE MB()s are in place_, they add full ordering of the - * generation pointer read wrt active reader count read, which ensures - * execution will not spill across loop execution. - * However, in the event mb()s are removed (execution using signal - * handler to promote barrier()() -> smp_mb()), nothing prevents one loop - * to spill its execution on other loop's execution. - */ - goto end; -rmb1: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb1_end; -rmb2: -#ifndef NO_RMB - smp_rmb(i, j); -#else - ooo_mem(i); -#endif - goto rmb2_end; -end: - skip; -} - - - -active proctype urcu_reader() -{ - byte i, j, nest_i; - byte tmp, tmp2; - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - -end_reader: - do - :: 1 -> - /* - * We do not test reader's progress here, because we are mainly - * interested in writer's progress. The reader never blocks - * anyway. We have to test for reader/writer's progress - * separately, otherwise we could think the writer is doing - * progress when it's blocked by an always progressing reader. - */ -#ifdef READER_PROGRESS -progress_reader: -#endif - urcu_one_read(i, j, nest_i, tmp, tmp2); - od; -} - -/* no name clash please */ -#undef proc_urcu_reader - - -/* Model the RCU update process. */ - -/* - * Bit encoding, urcu_writer : - * Currently only supports one reader. - */ - -int _proc_urcu_writer; -#define proc_urcu_writer _proc_urcu_writer - -#define WRITE_PROD_NONE (1 << 0) - -#define WRITE_DATA (1 << 1) -#define WRITE_PROC_WMB (1 << 2) -#define WRITE_XCHG_PTR (1 << 3) - -#define WRITE_PROC_FIRST_MB (1 << 4) - -/* first flip */ -#define WRITE_PROC_FIRST_READ_GP (1 << 5) -#define WRITE_PROC_FIRST_WRITE_GP (1 << 6) -#define WRITE_PROC_FIRST_WAIT (1 << 7) -#define WRITE_PROC_FIRST_WAIT_LOOP (1 << 8) - -/* second flip */ -#define WRITE_PROC_SECOND_READ_GP (1 << 9) -#define WRITE_PROC_SECOND_WRITE_GP (1 << 10) -#define WRITE_PROC_SECOND_WAIT (1 << 11) -#define WRITE_PROC_SECOND_WAIT_LOOP (1 << 12) - -#define WRITE_PROC_SECOND_MB (1 << 13) - -#define WRITE_FREE (1 << 14) - -#define WRITE_PROC_ALL_TOKENS (WRITE_PROD_NONE \ - | WRITE_DATA \ - | WRITE_PROC_WMB \ - | WRITE_XCHG_PTR \ - | WRITE_PROC_FIRST_MB \ - | WRITE_PROC_FIRST_READ_GP \ - | WRITE_PROC_FIRST_WRITE_GP \ - | WRITE_PROC_FIRST_WAIT \ - | WRITE_PROC_SECOND_READ_GP \ - | WRITE_PROC_SECOND_WRITE_GP \ - | WRITE_PROC_SECOND_WAIT \ - | WRITE_PROC_SECOND_MB \ - | WRITE_FREE) - -#define WRITE_PROC_ALL_TOKENS_CLEAR ((1 << 15) - 1) - -/* - * Mutexes are implied around writer execution. A single writer at a time. - */ -active proctype urcu_writer() -{ - byte i, j; - byte tmp, tmp2, tmpa; - byte cur_data = 0, old_data, loop_nr = 0; - byte cur_gp_val = 0; /* - * Keep a local trace of the current parity so - * we don't add non-existing dependencies on the global - * GP update. Needed to test single flip case. - */ - - wait_init_done(); - - assert(get_pid() < NR_PROCS); - - do - :: (loop_nr < 3) -> -#ifdef WRITER_PROGRESS -progress_writer1: -#endif - loop_nr = loop_nr + 1; - - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROD_NONE); - -#ifdef NO_WMB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); -#endif - -#ifdef NO_MB - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); -#endif - -#ifdef SINGLE_FLIP - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - /* For single flip, we need to know the current parity */ - cur_gp_val = cur_gp_val ^ RCU_GP_CTR_BIT; -#endif - - do :: 1 -> - atomic { - if - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROD_NONE, - WRITE_DATA) -> - ooo_mem(i); - cur_data = (cur_data + 1) % SLAB_SIZE; - WRITE_CACHED_VAR(rcu_data[cur_data], WINE); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_DATA); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA, - WRITE_PROC_WMB) -> - smp_wmb(i, j); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_WMB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_WMB, - WRITE_XCHG_PTR) -> - /* rcu_xchg_pointer() */ - atomic { - old_data = READ_CACHED_VAR(rcu_ptr); - WRITE_CACHED_VAR(rcu_ptr, cur_data); - } - PRODUCE_TOKENS(proc_urcu_writer, WRITE_XCHG_PTR); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR, - WRITE_PROC_FIRST_MB) -> - goto smp_mb_send1; -smp_mb_send1_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_MB); - - /* first flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB, - WRITE_PROC_FIRST_READ_GP) -> - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP, - WRITE_PROC_FIRST_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_FIRST_WAIT | WRITE_PROC_FIRST_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); -#ifndef SINGLE_FLIP - /* In normal execution, we are always starting by - * waiting for the even parity. - */ - cur_gp_val = RCU_GP_CTR_BIT; -#endif - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ cur_gp_val) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send2; -smp_mb_send2_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_FIRST_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_FIRST_WAIT_LOOP | WRITE_PROC_FIRST_WAIT); - - /* second flip */ - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT /* Control dependency : need to branch out of - * the loop to execute the next flip (CHECK) */ - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_READ_GP) -> - ooo_mem(i); - tmpa = READ_CACHED_VAR(urcu_gp_ctr); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_READ_GP); - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_MB - | WRITE_PROC_WMB - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP, - WRITE_PROC_SECOND_WRITE_GP) -> - ooo_mem(i); - WRITE_CACHED_VAR(urcu_gp_ctr, tmpa ^ RCU_GP_CTR_BIT); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WRITE_GP); - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - WRITE_PROC_SECOND_WAIT | WRITE_PROC_SECOND_WAIT_LOOP) -> - ooo_mem(i); - /* ONLY WAITING FOR READER 0 */ - tmp2 = READ_CACHED_VAR(urcu_active_readers[0]); - if - :: (tmp2 & RCU_GP_CTR_NEST_MASK) - && ((tmp2 ^ 0) & RCU_GP_CTR_BIT) -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP); - :: else -> - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT); - fi; - - :: CONSUME_TOKENS(proc_urcu_writer, - //WRITE_PROC_FIRST_WRITE_GP /* TEST ADDING SYNC CORE */ - WRITE_PROC_SECOND_WRITE_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_WAIT_LOOP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, /* can be reordered before/after flips */ - 0) -> -#ifndef GEN_ERROR_WRITER_PROGRESS - goto smp_mb_send3; -smp_mb_send3_end: -#else - ooo_mem(i); -#endif - /* This instruction loops to WRITE_PROC_SECOND_WAIT */ - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_WAIT_LOOP | WRITE_PROC_SECOND_WAIT); - - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_FIRST_READ_GP - | WRITE_PROC_SECOND_READ_GP - | WRITE_PROC_FIRST_WRITE_GP - | WRITE_PROC_SECOND_WRITE_GP - | WRITE_DATA | WRITE_PROC_WMB | WRITE_XCHG_PTR - | WRITE_PROC_FIRST_MB, - WRITE_PROC_SECOND_MB) -> - goto smp_mb_send4; -smp_mb_send4_end: - PRODUCE_TOKENS(proc_urcu_writer, WRITE_PROC_SECOND_MB); - - :: CONSUME_TOKENS(proc_urcu_writer, - WRITE_XCHG_PTR - | WRITE_PROC_FIRST_WAIT - | WRITE_PROC_SECOND_WAIT - | WRITE_PROC_WMB /* No dependency on - * WRITE_DATA because we - * write to a - * different location. */ - | WRITE_PROC_SECOND_MB - | WRITE_PROC_FIRST_MB, - WRITE_FREE) -> - WRITE_CACHED_VAR(rcu_data[old_data], POISON); - PRODUCE_TOKENS(proc_urcu_writer, WRITE_FREE); - - :: CONSUME_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS, 0) -> - CLEAR_TOKENS(proc_urcu_writer, WRITE_PROC_ALL_TOKENS_CLEAR); - break; - fi; - } - od; - /* - * Note : Promela model adds implicit serialization of the - * WRITE_FREE instruction. Normally, it would be permitted to - * spill on the next loop execution. Given the validation we do - * checks for the data entry read to be poisoned, it's ok if - * we do not check "late arriving" memory poisoning. - */ - :: else -> break; - od; - /* - * Given the reader loops infinitely, let the writer also busy-loop - * with progress here so, with weak fairness, we can test the - * writer's progress. - */ -end_writer: - do - :: 1 -> -#ifdef WRITER_PROGRESS -progress_writer2: -#endif -#ifdef READER_PROGRESS - /* - * Make sure we don't block the reader's progress. - */ - smp_mb_send(i, j, 5); -#endif - skip; - od; - - /* Non-atomic parts of the loop */ - goto end; -smp_mb_send1: - smp_mb_send(i, j, 1); - goto smp_mb_send1_end; -#ifndef GEN_ERROR_WRITER_PROGRESS -smp_mb_send2: - smp_mb_send(i, j, 2); - goto smp_mb_send2_end; -smp_mb_send3: - smp_mb_send(i, j, 3); - goto smp_mb_send3_end; -#endif -smp_mb_send4: - smp_mb_send(i, j, 4); - goto smp_mb_send4_end; -end: - skip; -} - -/* no name clash please */ -#undef proc_urcu_writer - - -/* Leave after the readers and writers so the pid count is ok. */ -init { - byte i, j; - - atomic { - INIT_CACHED_VAR(urcu_gp_ctr, 1, j); - INIT_CACHED_VAR(rcu_ptr, 0, j); - - i = 0; - do - :: i < NR_READERS -> - INIT_CACHED_VAR(urcu_active_readers[i], 0, j); - ptr_read_first[i] = 1; - ptr_read_second[i] = 1; - data_read_first[i] = WINE; - data_read_second[i] = WINE; - i++; - :: i >= NR_READERS -> break - od; - INIT_CACHED_VAR(rcu_data[0], WINE, j); - i = 1; - do - :: i < SLAB_SIZE -> - INIT_CACHED_VAR(rcu_data[i], POISON, j); - i++ - :: i >= SLAB_SIZE -> break - od; - - init_done = 1; - } -} diff --git a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input.trail b/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input.trail deleted file mode 100644 index 29e0696..0000000 --- a/formal-model/results/urcu-controldataflow-no-ipi/urcu_progress_writer_error.spin.input.trail +++ /dev/null @@ -1,8711 +0,0 @@ --2:3:-2 --4:-4:-4 -1:0:4529 -2:3:4449 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