Commit | Line | Data |
---|---|---|
3bd1e081 | 1 | /* |
ab5be9fa MJ |
2 | * Copyright (C) 2011 Julien Desfossez <julien.desfossez@polymtl.ca> |
3 | * Copyright (C) 2011 Mathieu Desnoyers <mathieu.desnoyers@efficios.com> | |
4 | * Copyright (C) 2012 David Goulet <dgoulet@efficios.com> | |
3bd1e081 | 5 | * |
ab5be9fa | 6 | * SPDX-License-Identifier: GPL-2.0-only |
3bd1e081 | 7 | * |
3bd1e081 MD |
8 | */ |
9 | ||
6f9449c2 | 10 | #include "common/index/ctf-index.h" |
6c1c0768 | 11 | #define _LGPL_SOURCE |
3bd1e081 MD |
12 | #include <poll.h> |
13 | #include <pthread.h> | |
14 | #include <stdlib.h> | |
15 | #include <string.h> | |
16 | #include <sys/mman.h> | |
17 | #include <sys/socket.h> | |
18 | #include <sys/types.h> | |
19 | #include <unistd.h> | |
77c7c900 | 20 | #include <inttypes.h> |
331744e3 | 21 | #include <signal.h> |
3bd1e081 | 22 | |
51a9e1c7 | 23 | #include <bin/lttng-consumerd/health-consumerd.h> |
990570ed | 24 | #include <common/common.h> |
fb3a43a9 | 25 | #include <common/utils.h> |
d2956687 | 26 | #include <common/time.h> |
fb3a43a9 | 27 | #include <common/compat/poll.h> |
f263b7fd | 28 | #include <common/compat/endian.h> |
309167d2 | 29 | #include <common/index/index.h> |
10a8a223 | 30 | #include <common/kernel-ctl/kernel-ctl.h> |
00e2e675 | 31 | #include <common/sessiond-comm/relayd.h> |
10a8a223 DG |
32 | #include <common/sessiond-comm/sessiond-comm.h> |
33 | #include <common/kernel-consumer/kernel-consumer.h> | |
00e2e675 | 34 | #include <common/relayd/relayd.h> |
10a8a223 | 35 | #include <common/ust-consumer/ust-consumer.h> |
c8fea79c JR |
36 | #include <common/consumer/consumer-timer.h> |
37 | #include <common/consumer/consumer.h> | |
38 | #include <common/consumer/consumer-stream.h> | |
39 | #include <common/consumer/consumer-testpoint.h> | |
40 | #include <common/align.h> | |
5feafd41 | 41 | #include <common/consumer/consumer-metadata-cache.h> |
d2956687 JG |
42 | #include <common/trace-chunk.h> |
43 | #include <common/trace-chunk-registry.h> | |
44 | #include <common/string-utils/format.h> | |
c35f9726 | 45 | #include <common/dynamic-array.h> |
3bd1e081 | 46 | |
97535efa | 47 | lttng_consumer_global_data the_consumer_data; |
3bd1e081 | 48 | |
d8ef542d MD |
49 | enum consumer_channel_action { |
50 | CONSUMER_CHANNEL_ADD, | |
a0cbdd2e | 51 | CONSUMER_CHANNEL_DEL, |
d8ef542d MD |
52 | CONSUMER_CHANNEL_QUIT, |
53 | }; | |
54 | ||
55 | struct consumer_channel_msg { | |
56 | enum consumer_channel_action action; | |
a0cbdd2e MD |
57 | struct lttng_consumer_channel *chan; /* add */ |
58 | uint64_t key; /* del */ | |
d8ef542d MD |
59 | }; |
60 | ||
80957876 | 61 | /* Flag used to temporarily pause data consumption from testpoints. */ |
cf0bcb51 JG |
62 | int data_consumption_paused; |
63 | ||
3bd1e081 MD |
64 | /* |
65 | * Flag to inform the polling thread to quit when all fd hung up. Updated by | |
66 | * the consumer_thread_receive_fds when it notices that all fds has hung up. | |
67 | * Also updated by the signal handler (consumer_should_exit()). Read by the | |
68 | * polling threads. | |
69 | */ | |
10211f5c | 70 | int consumer_quit; |
3bd1e081 | 71 | |
43c34bc3 | 72 | /* |
43c34bc3 DG |
73 | * Global hash table containing respectively metadata and data streams. The |
74 | * stream element in this ht should only be updated by the metadata poll thread | |
75 | * for the metadata and the data poll thread for the data. | |
76 | */ | |
40dc48e0 DG |
77 | static struct lttng_ht *metadata_ht; |
78 | static struct lttng_ht *data_ht; | |
43c34bc3 | 79 | |
5da88b0f MD |
80 | static const char *get_consumer_domain(void) |
81 | { | |
fa29bfbf | 82 | switch (the_consumer_data.type) { |
5da88b0f MD |
83 | case LTTNG_CONSUMER_KERNEL: |
84 | return DEFAULT_KERNEL_TRACE_DIR; | |
85 | case LTTNG_CONSUMER64_UST: | |
86 | /* Fall-through. */ | |
87 | case LTTNG_CONSUMER32_UST: | |
88 | return DEFAULT_UST_TRACE_DIR; | |
89 | default: | |
90 | abort(); | |
91 | } | |
92 | } | |
93 | ||
acdb9057 DG |
94 | /* |
95 | * Notify a thread lttng pipe to poll back again. This usually means that some | |
96 | * global state has changed so we just send back the thread in a poll wait | |
97 | * call. | |
98 | */ | |
99 | static void notify_thread_lttng_pipe(struct lttng_pipe *pipe) | |
100 | { | |
101 | struct lttng_consumer_stream *null_stream = NULL; | |
102 | ||
a0377dfe | 103 | LTTNG_ASSERT(pipe); |
acdb9057 DG |
104 | |
105 | (void) lttng_pipe_write(pipe, &null_stream, sizeof(null_stream)); | |
106 | } | |
107 | ||
5c635c72 MD |
108 | static void notify_health_quit_pipe(int *pipe) |
109 | { | |
6cd525e8 | 110 | ssize_t ret; |
5c635c72 | 111 | |
6cd525e8 MD |
112 | ret = lttng_write(pipe[1], "4", 1); |
113 | if (ret < 1) { | |
5c635c72 MD |
114 | PERROR("write consumer health quit"); |
115 | } | |
116 | } | |
117 | ||
d8ef542d MD |
118 | static void notify_channel_pipe(struct lttng_consumer_local_data *ctx, |
119 | struct lttng_consumer_channel *chan, | |
a0cbdd2e | 120 | uint64_t key, |
d8ef542d MD |
121 | enum consumer_channel_action action) |
122 | { | |
123 | struct consumer_channel_msg msg; | |
6cd525e8 | 124 | ssize_t ret; |
d8ef542d | 125 | |
e56251fc DG |
126 | memset(&msg, 0, sizeof(msg)); |
127 | ||
d8ef542d MD |
128 | msg.action = action; |
129 | msg.chan = chan; | |
f21dae48 | 130 | msg.key = key; |
6cd525e8 MD |
131 | ret = lttng_write(ctx->consumer_channel_pipe[1], &msg, sizeof(msg)); |
132 | if (ret < sizeof(msg)) { | |
133 | PERROR("notify_channel_pipe write error"); | |
134 | } | |
d8ef542d MD |
135 | } |
136 | ||
a0cbdd2e MD |
137 | void notify_thread_del_channel(struct lttng_consumer_local_data *ctx, |
138 | uint64_t key) | |
139 | { | |
140 | notify_channel_pipe(ctx, NULL, key, CONSUMER_CHANNEL_DEL); | |
141 | } | |
142 | ||
d8ef542d MD |
143 | static int read_channel_pipe(struct lttng_consumer_local_data *ctx, |
144 | struct lttng_consumer_channel **chan, | |
a0cbdd2e | 145 | uint64_t *key, |
d8ef542d MD |
146 | enum consumer_channel_action *action) |
147 | { | |
148 | struct consumer_channel_msg msg; | |
6cd525e8 | 149 | ssize_t ret; |
d8ef542d | 150 | |
6cd525e8 MD |
151 | ret = lttng_read(ctx->consumer_channel_pipe[0], &msg, sizeof(msg)); |
152 | if (ret < sizeof(msg)) { | |
153 | ret = -1; | |
154 | goto error; | |
d8ef542d | 155 | } |
6cd525e8 MD |
156 | *action = msg.action; |
157 | *chan = msg.chan; | |
158 | *key = msg.key; | |
159 | error: | |
160 | return (int) ret; | |
d8ef542d MD |
161 | } |
162 | ||
212d67a2 DG |
163 | /* |
164 | * Cleanup the stream list of a channel. Those streams are not yet globally | |
165 | * visible | |
166 | */ | |
167 | static void clean_channel_stream_list(struct lttng_consumer_channel *channel) | |
168 | { | |
169 | struct lttng_consumer_stream *stream, *stmp; | |
170 | ||
a0377dfe | 171 | LTTNG_ASSERT(channel); |
212d67a2 DG |
172 | |
173 | /* Delete streams that might have been left in the stream list. */ | |
174 | cds_list_for_each_entry_safe(stream, stmp, &channel->streams.head, | |
175 | send_node) { | |
176 | cds_list_del(&stream->send_node); | |
177 | /* | |
178 | * Once a stream is added to this list, the buffers were created so we | |
179 | * have a guarantee that this call will succeed. Setting the monitor | |
180 | * mode to 0 so we don't lock nor try to delete the stream from the | |
181 | * global hash table. | |
182 | */ | |
183 | stream->monitor = 0; | |
184 | consumer_stream_destroy(stream, NULL); | |
185 | } | |
186 | } | |
187 | ||
3bd1e081 MD |
188 | /* |
189 | * Find a stream. The consumer_data.lock must be locked during this | |
190 | * call. | |
191 | */ | |
d88aee68 | 192 | static struct lttng_consumer_stream *find_stream(uint64_t key, |
8389e4f8 | 193 | struct lttng_ht *ht) |
3bd1e081 | 194 | { |
e4421fec | 195 | struct lttng_ht_iter iter; |
d88aee68 | 196 | struct lttng_ht_node_u64 *node; |
e4421fec | 197 | struct lttng_consumer_stream *stream = NULL; |
3bd1e081 | 198 | |
a0377dfe | 199 | LTTNG_ASSERT(ht); |
8389e4f8 | 200 | |
d88aee68 DG |
201 | /* -1ULL keys are lookup failures */ |
202 | if (key == (uint64_t) -1ULL) { | |
7ad0a0cb | 203 | return NULL; |
7a57cf92 | 204 | } |
e4421fec | 205 | |
6065ceec DG |
206 | rcu_read_lock(); |
207 | ||
d88aee68 DG |
208 | lttng_ht_lookup(ht, &key, &iter); |
209 | node = lttng_ht_iter_get_node_u64(&iter); | |
e4421fec DG |
210 | if (node != NULL) { |
211 | stream = caa_container_of(node, struct lttng_consumer_stream, node); | |
3bd1e081 | 212 | } |
e4421fec | 213 | |
6065ceec DG |
214 | rcu_read_unlock(); |
215 | ||
e4421fec | 216 | return stream; |
3bd1e081 MD |
217 | } |
218 | ||
da009f2c | 219 | static void steal_stream_key(uint64_t key, struct lttng_ht *ht) |
7ad0a0cb MD |
220 | { |
221 | struct lttng_consumer_stream *stream; | |
222 | ||
04253271 | 223 | rcu_read_lock(); |
ffe60014 | 224 | stream = find_stream(key, ht); |
04253271 | 225 | if (stream) { |
da009f2c | 226 | stream->key = (uint64_t) -1ULL; |
04253271 MD |
227 | /* |
228 | * We don't want the lookup to match, but we still need | |
229 | * to iterate on this stream when iterating over the hash table. Just | |
230 | * change the node key. | |
231 | */ | |
da009f2c | 232 | stream->node.key = (uint64_t) -1ULL; |
04253271 MD |
233 | } |
234 | rcu_read_unlock(); | |
7ad0a0cb MD |
235 | } |
236 | ||
d56db448 DG |
237 | /* |
238 | * Return a channel object for the given key. | |
239 | * | |
240 | * RCU read side lock MUST be acquired before calling this function and | |
241 | * protects the channel ptr. | |
242 | */ | |
d88aee68 | 243 | struct lttng_consumer_channel *consumer_find_channel(uint64_t key) |
3bd1e081 | 244 | { |
e4421fec | 245 | struct lttng_ht_iter iter; |
d88aee68 | 246 | struct lttng_ht_node_u64 *node; |
e4421fec | 247 | struct lttng_consumer_channel *channel = NULL; |
3bd1e081 | 248 | |
d88aee68 DG |
249 | /* -1ULL keys are lookup failures */ |
250 | if (key == (uint64_t) -1ULL) { | |
7ad0a0cb | 251 | return NULL; |
7a57cf92 | 252 | } |
e4421fec | 253 | |
fa29bfbf | 254 | lttng_ht_lookup(the_consumer_data.channel_ht, &key, &iter); |
d88aee68 | 255 | node = lttng_ht_iter_get_node_u64(&iter); |
e4421fec DG |
256 | if (node != NULL) { |
257 | channel = caa_container_of(node, struct lttng_consumer_channel, node); | |
3bd1e081 | 258 | } |
e4421fec DG |
259 | |
260 | return channel; | |
3bd1e081 MD |
261 | } |
262 | ||
b5a6470f DG |
263 | /* |
264 | * There is a possibility that the consumer does not have enough time between | |
265 | * the close of the channel on the session daemon and the cleanup in here thus | |
266 | * once we have a channel add with an existing key, we know for sure that this | |
267 | * channel will eventually get cleaned up by all streams being closed. | |
268 | * | |
269 | * This function just nullifies the already existing channel key. | |
270 | */ | |
271 | static void steal_channel_key(uint64_t key) | |
272 | { | |
273 | struct lttng_consumer_channel *channel; | |
274 | ||
275 | rcu_read_lock(); | |
276 | channel = consumer_find_channel(key); | |
277 | if (channel) { | |
278 | channel->key = (uint64_t) -1ULL; | |
279 | /* | |
280 | * We don't want the lookup to match, but we still need to iterate on | |
281 | * this channel when iterating over the hash table. Just change the | |
282 | * node key. | |
283 | */ | |
284 | channel->node.key = (uint64_t) -1ULL; | |
285 | } | |
286 | rcu_read_unlock(); | |
287 | } | |
288 | ||
ffe60014 | 289 | static void free_channel_rcu(struct rcu_head *head) |
702b1ea4 | 290 | { |
d88aee68 DG |
291 | struct lttng_ht_node_u64 *node = |
292 | caa_container_of(head, struct lttng_ht_node_u64, head); | |
ffe60014 DG |
293 | struct lttng_consumer_channel *channel = |
294 | caa_container_of(node, struct lttng_consumer_channel, node); | |
702b1ea4 | 295 | |
fa29bfbf | 296 | switch (the_consumer_data.type) { |
b83e03c4 MD |
297 | case LTTNG_CONSUMER_KERNEL: |
298 | break; | |
299 | case LTTNG_CONSUMER32_UST: | |
300 | case LTTNG_CONSUMER64_UST: | |
301 | lttng_ustconsumer_free_channel(channel); | |
302 | break; | |
303 | default: | |
304 | ERR("Unknown consumer_data type"); | |
305 | abort(); | |
306 | } | |
ffe60014 | 307 | free(channel); |
702b1ea4 MD |
308 | } |
309 | ||
00e2e675 DG |
310 | /* |
311 | * RCU protected relayd socket pair free. | |
312 | */ | |
ffe60014 | 313 | static void free_relayd_rcu(struct rcu_head *head) |
00e2e675 | 314 | { |
d88aee68 DG |
315 | struct lttng_ht_node_u64 *node = |
316 | caa_container_of(head, struct lttng_ht_node_u64, head); | |
00e2e675 DG |
317 | struct consumer_relayd_sock_pair *relayd = |
318 | caa_container_of(node, struct consumer_relayd_sock_pair, node); | |
319 | ||
8994307f DG |
320 | /* |
321 | * Close all sockets. This is done in the call RCU since we don't want the | |
322 | * socket fds to be reassigned thus potentially creating bad state of the | |
323 | * relayd object. | |
324 | * | |
325 | * We do not have to lock the control socket mutex here since at this stage | |
326 | * there is no one referencing to this relayd object. | |
327 | */ | |
328 | (void) relayd_close(&relayd->control_sock); | |
329 | (void) relayd_close(&relayd->data_sock); | |
330 | ||
3a84e2f3 | 331 | pthread_mutex_destroy(&relayd->ctrl_sock_mutex); |
00e2e675 DG |
332 | free(relayd); |
333 | } | |
334 | ||
335 | /* | |
336 | * Destroy and free relayd socket pair object. | |
00e2e675 | 337 | */ |
51230d70 | 338 | void consumer_destroy_relayd(struct consumer_relayd_sock_pair *relayd) |
00e2e675 DG |
339 | { |
340 | int ret; | |
341 | struct lttng_ht_iter iter; | |
342 | ||
173af62f DG |
343 | if (relayd == NULL) { |
344 | return; | |
345 | } | |
346 | ||
00e2e675 DG |
347 | DBG("Consumer destroy and close relayd socket pair"); |
348 | ||
349 | iter.iter.node = &relayd->node.node; | |
fa29bfbf | 350 | ret = lttng_ht_del(the_consumer_data.relayd_ht, &iter); |
173af62f | 351 | if (ret != 0) { |
8994307f | 352 | /* We assume the relayd is being or is destroyed */ |
173af62f DG |
353 | return; |
354 | } | |
00e2e675 | 355 | |
00e2e675 | 356 | /* RCU free() call */ |
ffe60014 DG |
357 | call_rcu(&relayd->node.head, free_relayd_rcu); |
358 | } | |
359 | ||
360 | /* | |
361 | * Remove a channel from the global list protected by a mutex. This function is | |
362 | * also responsible for freeing its data structures. | |
363 | */ | |
364 | void consumer_del_channel(struct lttng_consumer_channel *channel) | |
365 | { | |
ffe60014 DG |
366 | struct lttng_ht_iter iter; |
367 | ||
d88aee68 | 368 | DBG("Consumer delete channel key %" PRIu64, channel->key); |
ffe60014 | 369 | |
fa29bfbf | 370 | pthread_mutex_lock(&the_consumer_data.lock); |
a9838785 | 371 | pthread_mutex_lock(&channel->lock); |
ffe60014 | 372 | |
212d67a2 DG |
373 | /* Destroy streams that might have been left in the stream list. */ |
374 | clean_channel_stream_list(channel); | |
51e762e5 | 375 | |
d3e2ba59 JD |
376 | if (channel->live_timer_enabled == 1) { |
377 | consumer_timer_live_stop(channel); | |
378 | } | |
e9404c27 JG |
379 | if (channel->monitor_timer_enabled == 1) { |
380 | consumer_timer_monitor_stop(channel); | |
381 | } | |
d3e2ba59 | 382 | |
fa29bfbf | 383 | switch (the_consumer_data.type) { |
ffe60014 DG |
384 | case LTTNG_CONSUMER_KERNEL: |
385 | break; | |
386 | case LTTNG_CONSUMER32_UST: | |
387 | case LTTNG_CONSUMER64_UST: | |
388 | lttng_ustconsumer_del_channel(channel); | |
389 | break; | |
390 | default: | |
391 | ERR("Unknown consumer_data type"); | |
a0377dfe | 392 | abort(); |
ffe60014 DG |
393 | goto end; |
394 | } | |
395 | ||
d2956687 JG |
396 | lttng_trace_chunk_put(channel->trace_chunk); |
397 | channel->trace_chunk = NULL; | |
5c3892a6 | 398 | |
d2956687 JG |
399 | if (channel->is_published) { |
400 | int ret; | |
401 | ||
402 | rcu_read_lock(); | |
403 | iter.iter.node = &channel->node.node; | |
fa29bfbf | 404 | ret = lttng_ht_del(the_consumer_data.channel_ht, &iter); |
a0377dfe | 405 | LTTNG_ASSERT(!ret); |
ffe60014 | 406 | |
d2956687 | 407 | iter.iter.node = &channel->channels_by_session_id_ht_node.node; |
fa29bfbf | 408 | ret = lttng_ht_del(the_consumer_data.channels_by_session_id_ht, |
d2956687 | 409 | &iter); |
a0377dfe | 410 | LTTNG_ASSERT(!ret); |
d2956687 JG |
411 | rcu_read_unlock(); |
412 | } | |
413 | ||
b6921a17 JG |
414 | channel->is_deleted = true; |
415 | call_rcu(&channel->node.head, free_channel_rcu); | |
ffe60014 | 416 | end: |
a9838785 | 417 | pthread_mutex_unlock(&channel->lock); |
fa29bfbf | 418 | pthread_mutex_unlock(&the_consumer_data.lock); |
00e2e675 DG |
419 | } |
420 | ||
228b5bf7 DG |
421 | /* |
422 | * Iterate over the relayd hash table and destroy each element. Finally, | |
423 | * destroy the whole hash table. | |
424 | */ | |
425 | static void cleanup_relayd_ht(void) | |
426 | { | |
427 | struct lttng_ht_iter iter; | |
428 | struct consumer_relayd_sock_pair *relayd; | |
429 | ||
430 | rcu_read_lock(); | |
431 | ||
fa29bfbf SM |
432 | cds_lfht_for_each_entry(the_consumer_data.relayd_ht->ht, &iter.iter, |
433 | relayd, node.node) { | |
51230d70 | 434 | consumer_destroy_relayd(relayd); |
228b5bf7 DG |
435 | } |
436 | ||
228b5bf7 | 437 | rcu_read_unlock(); |
36b588ed | 438 | |
fa29bfbf | 439 | lttng_ht_destroy(the_consumer_data.relayd_ht); |
228b5bf7 DG |
440 | } |
441 | ||
8994307f DG |
442 | /* |
443 | * Update the end point status of all streams having the given network sequence | |
444 | * index (relayd index). | |
445 | * | |
446 | * It's atomically set without having the stream mutex locked which is fine | |
447 | * because we handle the write/read race with a pipe wakeup for each thread. | |
448 | */ | |
da009f2c | 449 | static void update_endpoint_status_by_netidx(uint64_t net_seq_idx, |
8994307f DG |
450 | enum consumer_endpoint_status status) |
451 | { | |
452 | struct lttng_ht_iter iter; | |
453 | struct lttng_consumer_stream *stream; | |
454 | ||
da009f2c | 455 | DBG("Consumer set delete flag on stream by idx %" PRIu64, net_seq_idx); |
8994307f DG |
456 | |
457 | rcu_read_lock(); | |
458 | ||
459 | /* Let's begin with metadata */ | |
460 | cds_lfht_for_each_entry(metadata_ht->ht, &iter.iter, stream, node.node) { | |
461 | if (stream->net_seq_idx == net_seq_idx) { | |
462 | uatomic_set(&stream->endpoint_status, status); | |
463 | DBG("Delete flag set to metadata stream %d", stream->wait_fd); | |
464 | } | |
465 | } | |
466 | ||
467 | /* Follow up by the data streams */ | |
468 | cds_lfht_for_each_entry(data_ht->ht, &iter.iter, stream, node.node) { | |
469 | if (stream->net_seq_idx == net_seq_idx) { | |
470 | uatomic_set(&stream->endpoint_status, status); | |
471 | DBG("Delete flag set to data stream %d", stream->wait_fd); | |
472 | } | |
473 | } | |
474 | rcu_read_unlock(); | |
475 | } | |
476 | ||
477 | /* | |
478 | * Cleanup a relayd object by flagging every associated streams for deletion, | |
479 | * destroying the object meaning removing it from the relayd hash table, | |
480 | * closing the sockets and freeing the memory in a RCU call. | |
481 | * | |
482 | * If a local data context is available, notify the threads that the streams' | |
483 | * state have changed. | |
484 | */ | |
9276e5c8 | 485 | void lttng_consumer_cleanup_relayd(struct consumer_relayd_sock_pair *relayd) |
8994307f | 486 | { |
da009f2c | 487 | uint64_t netidx; |
8994307f | 488 | |
a0377dfe | 489 | LTTNG_ASSERT(relayd); |
8994307f | 490 | |
97535efa | 491 | DBG("Cleaning up relayd object ID %" PRIu64, relayd->net_seq_idx); |
9617607b | 492 | |
8994307f DG |
493 | /* Save the net sequence index before destroying the object */ |
494 | netidx = relayd->net_seq_idx; | |
495 | ||
496 | /* | |
497 | * Delete the relayd from the relayd hash table, close the sockets and free | |
498 | * the object in a RCU call. | |
499 | */ | |
51230d70 | 500 | consumer_destroy_relayd(relayd); |
8994307f DG |
501 | |
502 | /* Set inactive endpoint to all streams */ | |
503 | update_endpoint_status_by_netidx(netidx, CONSUMER_ENDPOINT_INACTIVE); | |
504 | ||
505 | /* | |
506 | * With a local data context, notify the threads that the streams' state | |
507 | * have changed. The write() action on the pipe acts as an "implicit" | |
508 | * memory barrier ordering the updates of the end point status from the | |
509 | * read of this status which happens AFTER receiving this notify. | |
510 | */ | |
9276e5c8 JR |
511 | notify_thread_lttng_pipe(relayd->ctx->consumer_data_pipe); |
512 | notify_thread_lttng_pipe(relayd->ctx->consumer_metadata_pipe); | |
8994307f DG |
513 | } |
514 | ||
a6ba4fe1 DG |
515 | /* |
516 | * Flag a relayd socket pair for destruction. Destroy it if the refcount | |
517 | * reaches zero. | |
518 | * | |
519 | * RCU read side lock MUST be aquired before calling this function. | |
520 | */ | |
521 | void consumer_flag_relayd_for_destroy(struct consumer_relayd_sock_pair *relayd) | |
522 | { | |
a0377dfe | 523 | LTTNG_ASSERT(relayd); |
a6ba4fe1 DG |
524 | |
525 | /* Set destroy flag for this object */ | |
526 | uatomic_set(&relayd->destroy_flag, 1); | |
527 | ||
528 | /* Destroy the relayd if refcount is 0 */ | |
529 | if (uatomic_read(&relayd->refcount) == 0) { | |
51230d70 | 530 | consumer_destroy_relayd(relayd); |
a6ba4fe1 DG |
531 | } |
532 | } | |
533 | ||
3bd1e081 | 534 | /* |
1d1a276c DG |
535 | * Completly destroy stream from every visiable data structure and the given |
536 | * hash table if one. | |
537 | * | |
538 | * One this call returns, the stream object is not longer usable nor visible. | |
3bd1e081 | 539 | */ |
e316aad5 DG |
540 | void consumer_del_stream(struct lttng_consumer_stream *stream, |
541 | struct lttng_ht *ht) | |
3bd1e081 | 542 | { |
1d1a276c | 543 | consumer_stream_destroy(stream, ht); |
3bd1e081 MD |
544 | } |
545 | ||
5ab66908 MD |
546 | /* |
547 | * XXX naming of del vs destroy is all mixed up. | |
548 | */ | |
549 | void consumer_del_stream_for_data(struct lttng_consumer_stream *stream) | |
550 | { | |
551 | consumer_stream_destroy(stream, data_ht); | |
552 | } | |
553 | ||
554 | void consumer_del_stream_for_metadata(struct lttng_consumer_stream *stream) | |
555 | { | |
556 | consumer_stream_destroy(stream, metadata_ht); | |
557 | } | |
558 | ||
d9a2e16e JD |
559 | void consumer_stream_update_channel_attributes( |
560 | struct lttng_consumer_stream *stream, | |
561 | struct lttng_consumer_channel *channel) | |
562 | { | |
563 | stream->channel_read_only_attributes.tracefile_size = | |
564 | channel->tracefile_size; | |
d9a2e16e JD |
565 | } |
566 | ||
3bd1e081 MD |
567 | /* |
568 | * Add a stream to the global list protected by a mutex. | |
569 | */ | |
66d583dc | 570 | void consumer_add_data_stream(struct lttng_consumer_stream *stream) |
3bd1e081 | 571 | { |
5ab66908 | 572 | struct lttng_ht *ht = data_ht; |
3bd1e081 | 573 | |
a0377dfe FD |
574 | LTTNG_ASSERT(stream); |
575 | LTTNG_ASSERT(ht); | |
c77fc10a | 576 | |
d88aee68 | 577 | DBG3("Adding consumer stream %" PRIu64, stream->key); |
e316aad5 | 578 | |
fa29bfbf | 579 | pthread_mutex_lock(&the_consumer_data.lock); |
a9838785 | 580 | pthread_mutex_lock(&stream->chan->lock); |
ec6ea7d0 | 581 | pthread_mutex_lock(&stream->chan->timer_lock); |
2e818a6a | 582 | pthread_mutex_lock(&stream->lock); |
b0b335c8 | 583 | rcu_read_lock(); |
e316aad5 | 584 | |
43c34bc3 | 585 | /* Steal stream identifier to avoid having streams with the same key */ |
ffe60014 | 586 | steal_stream_key(stream->key, ht); |
43c34bc3 | 587 | |
d88aee68 | 588 | lttng_ht_add_unique_u64(ht, &stream->node); |
00e2e675 | 589 | |
fa29bfbf | 590 | lttng_ht_add_u64(the_consumer_data.stream_per_chan_id_ht, |
d8ef542d MD |
591 | &stream->node_channel_id); |
592 | ||
ca22feea DG |
593 | /* |
594 | * Add stream to the stream_list_ht of the consumer data. No need to steal | |
595 | * the key since the HT does not use it and we allow to add redundant keys | |
596 | * into this table. | |
597 | */ | |
fa29bfbf SM |
598 | lttng_ht_add_u64(the_consumer_data.stream_list_ht, |
599 | &stream->node_session_id); | |
ca22feea | 600 | |
e316aad5 | 601 | /* |
ffe60014 DG |
602 | * When nb_init_stream_left reaches 0, we don't need to trigger any action |
603 | * in terms of destroying the associated channel, because the action that | |
e316aad5 DG |
604 | * causes the count to become 0 also causes a stream to be added. The |
605 | * channel deletion will thus be triggered by the following removal of this | |
606 | * stream. | |
607 | */ | |
ffe60014 | 608 | if (uatomic_read(&stream->chan->nb_init_stream_left) > 0) { |
f2ad556d MD |
609 | /* Increment refcount before decrementing nb_init_stream_left */ |
610 | cmm_smp_wmb(); | |
ffe60014 | 611 | uatomic_dec(&stream->chan->nb_init_stream_left); |
e316aad5 DG |
612 | } |
613 | ||
614 | /* Update consumer data once the node is inserted. */ | |
fa29bfbf SM |
615 | the_consumer_data.stream_count++; |
616 | the_consumer_data.need_update = 1; | |
3bd1e081 | 617 | |
e316aad5 | 618 | rcu_read_unlock(); |
2e818a6a | 619 | pthread_mutex_unlock(&stream->lock); |
ec6ea7d0 | 620 | pthread_mutex_unlock(&stream->chan->timer_lock); |
a9838785 | 621 | pthread_mutex_unlock(&stream->chan->lock); |
fa29bfbf | 622 | pthread_mutex_unlock(&the_consumer_data.lock); |
3bd1e081 MD |
623 | } |
624 | ||
00e2e675 | 625 | /* |
3f8e211f DG |
626 | * Add relayd socket to global consumer data hashtable. RCU read side lock MUST |
627 | * be acquired before calling this. | |
00e2e675 | 628 | */ |
d09e1200 | 629 | static int add_relayd(struct consumer_relayd_sock_pair *relayd) |
00e2e675 DG |
630 | { |
631 | int ret = 0; | |
d88aee68 | 632 | struct lttng_ht_node_u64 *node; |
00e2e675 DG |
633 | struct lttng_ht_iter iter; |
634 | ||
a0377dfe | 635 | LTTNG_ASSERT(relayd); |
00e2e675 | 636 | |
fa29bfbf SM |
637 | lttng_ht_lookup(the_consumer_data.relayd_ht, &relayd->net_seq_idx, |
638 | &iter); | |
d88aee68 | 639 | node = lttng_ht_iter_get_node_u64(&iter); |
00e2e675 | 640 | if (node != NULL) { |
00e2e675 DG |
641 | goto end; |
642 | } | |
fa29bfbf | 643 | lttng_ht_add_unique_u64(the_consumer_data.relayd_ht, &relayd->node); |
00e2e675 | 644 | |
00e2e675 DG |
645 | end: |
646 | return ret; | |
647 | } | |
648 | ||
649 | /* | |
650 | * Allocate and return a consumer relayd socket. | |
651 | */ | |
027a694f | 652 | static struct consumer_relayd_sock_pair *consumer_allocate_relayd_sock_pair( |
da009f2c | 653 | uint64_t net_seq_idx) |
00e2e675 DG |
654 | { |
655 | struct consumer_relayd_sock_pair *obj = NULL; | |
656 | ||
da009f2c MD |
657 | /* net sequence index of -1 is a failure */ |
658 | if (net_seq_idx == (uint64_t) -1ULL) { | |
00e2e675 DG |
659 | goto error; |
660 | } | |
661 | ||
97535efa | 662 | obj = (consumer_relayd_sock_pair *) zmalloc(sizeof(struct consumer_relayd_sock_pair)); |
00e2e675 DG |
663 | if (obj == NULL) { |
664 | PERROR("zmalloc relayd sock"); | |
665 | goto error; | |
666 | } | |
667 | ||
668 | obj->net_seq_idx = net_seq_idx; | |
669 | obj->refcount = 0; | |
173af62f | 670 | obj->destroy_flag = 0; |
f96e4545 MD |
671 | obj->control_sock.sock.fd = -1; |
672 | obj->data_sock.sock.fd = -1; | |
d88aee68 | 673 | lttng_ht_node_init_u64(&obj->node, obj->net_seq_idx); |
00e2e675 DG |
674 | pthread_mutex_init(&obj->ctrl_sock_mutex, NULL); |
675 | ||
676 | error: | |
677 | return obj; | |
678 | } | |
679 | ||
680 | /* | |
681 | * Find a relayd socket pair in the global consumer data. | |
682 | * | |
683 | * Return the object if found else NULL. | |
b0b335c8 MD |
684 | * RCU read-side lock must be held across this call and while using the |
685 | * returned object. | |
00e2e675 | 686 | */ |
d88aee68 | 687 | struct consumer_relayd_sock_pair *consumer_find_relayd(uint64_t key) |
00e2e675 DG |
688 | { |
689 | struct lttng_ht_iter iter; | |
d88aee68 | 690 | struct lttng_ht_node_u64 *node; |
00e2e675 DG |
691 | struct consumer_relayd_sock_pair *relayd = NULL; |
692 | ||
693 | /* Negative keys are lookup failures */ | |
d88aee68 | 694 | if (key == (uint64_t) -1ULL) { |
00e2e675 DG |
695 | goto error; |
696 | } | |
697 | ||
fa29bfbf | 698 | lttng_ht_lookup(the_consumer_data.relayd_ht, &key, &iter); |
d88aee68 | 699 | node = lttng_ht_iter_get_node_u64(&iter); |
00e2e675 DG |
700 | if (node != NULL) { |
701 | relayd = caa_container_of(node, struct consumer_relayd_sock_pair, node); | |
702 | } | |
703 | ||
00e2e675 DG |
704 | error: |
705 | return relayd; | |
706 | } | |
707 | ||
10a50311 JD |
708 | /* |
709 | * Find a relayd and send the stream | |
710 | * | |
711 | * Returns 0 on success, < 0 on error | |
712 | */ | |
713 | int consumer_send_relayd_stream(struct lttng_consumer_stream *stream, | |
714 | char *path) | |
715 | { | |
716 | int ret = 0; | |
717 | struct consumer_relayd_sock_pair *relayd; | |
718 | ||
a0377dfe FD |
719 | LTTNG_ASSERT(stream); |
720 | LTTNG_ASSERT(stream->net_seq_idx != -1ULL); | |
721 | LTTNG_ASSERT(path); | |
10a50311 JD |
722 | |
723 | /* The stream is not metadata. Get relayd reference if exists. */ | |
724 | rcu_read_lock(); | |
725 | relayd = consumer_find_relayd(stream->net_seq_idx); | |
726 | if (relayd != NULL) { | |
727 | /* Add stream on the relayd */ | |
728 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
729 | ret = relayd_add_stream(&relayd->control_sock, stream->name, | |
5da88b0f | 730 | get_consumer_domain(), path, &stream->relayd_stream_id, |
d2956687 JG |
731 | stream->chan->tracefile_size, |
732 | stream->chan->tracefile_count, | |
733 | stream->trace_chunk); | |
10a50311 JD |
734 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); |
735 | if (ret < 0) { | |
9276e5c8 JR |
736 | ERR("Relayd add stream failed. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
737 | lttng_consumer_cleanup_relayd(relayd); | |
10a50311 JD |
738 | goto end; |
739 | } | |
1c20f0e2 | 740 | |
10a50311 | 741 | uatomic_inc(&relayd->refcount); |
d01178b6 | 742 | stream->sent_to_relayd = 1; |
10a50311 JD |
743 | } else { |
744 | ERR("Stream %" PRIu64 " relayd ID %" PRIu64 " unknown. Can't send it.", | |
745 | stream->key, stream->net_seq_idx); | |
746 | ret = -1; | |
747 | goto end; | |
748 | } | |
749 | ||
750 | DBG("Stream %s with key %" PRIu64 " sent to relayd id %" PRIu64, | |
751 | stream->name, stream->key, stream->net_seq_idx); | |
752 | ||
753 | end: | |
754 | rcu_read_unlock(); | |
755 | return ret; | |
756 | } | |
757 | ||
a4baae1b JD |
758 | /* |
759 | * Find a relayd and send the streams sent message | |
760 | * | |
761 | * Returns 0 on success, < 0 on error | |
762 | */ | |
763 | int consumer_send_relayd_streams_sent(uint64_t net_seq_idx) | |
764 | { | |
765 | int ret = 0; | |
766 | struct consumer_relayd_sock_pair *relayd; | |
767 | ||
a0377dfe | 768 | LTTNG_ASSERT(net_seq_idx != -1ULL); |
a4baae1b JD |
769 | |
770 | /* The stream is not metadata. Get relayd reference if exists. */ | |
771 | rcu_read_lock(); | |
772 | relayd = consumer_find_relayd(net_seq_idx); | |
773 | if (relayd != NULL) { | |
774 | /* Add stream on the relayd */ | |
775 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
776 | ret = relayd_streams_sent(&relayd->control_sock); | |
777 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
778 | if (ret < 0) { | |
9276e5c8 JR |
779 | ERR("Relayd streams sent failed. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
780 | lttng_consumer_cleanup_relayd(relayd); | |
a4baae1b JD |
781 | goto end; |
782 | } | |
783 | } else { | |
784 | ERR("Relayd ID %" PRIu64 " unknown. Can't send streams_sent.", | |
785 | net_seq_idx); | |
786 | ret = -1; | |
787 | goto end; | |
788 | } | |
789 | ||
790 | ret = 0; | |
791 | DBG("All streams sent relayd id %" PRIu64, net_seq_idx); | |
792 | ||
793 | end: | |
794 | rcu_read_unlock(); | |
795 | return ret; | |
796 | } | |
797 | ||
10a50311 JD |
798 | /* |
799 | * Find a relayd and close the stream | |
800 | */ | |
801 | void close_relayd_stream(struct lttng_consumer_stream *stream) | |
802 | { | |
803 | struct consumer_relayd_sock_pair *relayd; | |
804 | ||
805 | /* The stream is not metadata. Get relayd reference if exists. */ | |
806 | rcu_read_lock(); | |
807 | relayd = consumer_find_relayd(stream->net_seq_idx); | |
808 | if (relayd) { | |
809 | consumer_stream_relayd_close(stream, relayd); | |
810 | } | |
811 | rcu_read_unlock(); | |
812 | } | |
813 | ||
00e2e675 DG |
814 | /* |
815 | * Handle stream for relayd transmission if the stream applies for network | |
816 | * streaming where the net sequence index is set. | |
817 | * | |
818 | * Return destination file descriptor or negative value on error. | |
819 | */ | |
6197aea7 | 820 | static int write_relayd_stream_header(struct lttng_consumer_stream *stream, |
1d4dfdef DG |
821 | size_t data_size, unsigned long padding, |
822 | struct consumer_relayd_sock_pair *relayd) | |
00e2e675 DG |
823 | { |
824 | int outfd = -1, ret; | |
00e2e675 DG |
825 | struct lttcomm_relayd_data_hdr data_hdr; |
826 | ||
827 | /* Safety net */ | |
a0377dfe FD |
828 | LTTNG_ASSERT(stream); |
829 | LTTNG_ASSERT(relayd); | |
00e2e675 DG |
830 | |
831 | /* Reset data header */ | |
832 | memset(&data_hdr, 0, sizeof(data_hdr)); | |
833 | ||
00e2e675 DG |
834 | if (stream->metadata_flag) { |
835 | /* Caller MUST acquire the relayd control socket lock */ | |
836 | ret = relayd_send_metadata(&relayd->control_sock, data_size); | |
837 | if (ret < 0) { | |
838 | goto error; | |
839 | } | |
840 | ||
841 | /* Metadata are always sent on the control socket. */ | |
6151a90f | 842 | outfd = relayd->control_sock.sock.fd; |
00e2e675 DG |
843 | } else { |
844 | /* Set header with stream information */ | |
845 | data_hdr.stream_id = htobe64(stream->relayd_stream_id); | |
846 | data_hdr.data_size = htobe32(data_size); | |
1d4dfdef | 847 | data_hdr.padding_size = htobe32(padding); |
c35f9726 | 848 | |
39df6d9f DG |
849 | /* |
850 | * Note that net_seq_num below is assigned with the *current* value of | |
851 | * next_net_seq_num and only after that the next_net_seq_num will be | |
852 | * increment. This is why when issuing a command on the relayd using | |
853 | * this next value, 1 should always be substracted in order to compare | |
854 | * the last seen sequence number on the relayd side to the last sent. | |
855 | */ | |
3604f373 | 856 | data_hdr.net_seq_num = htobe64(stream->next_net_seq_num); |
00e2e675 DG |
857 | /* Other fields are zeroed previously */ |
858 | ||
859 | ret = relayd_send_data_hdr(&relayd->data_sock, &data_hdr, | |
860 | sizeof(data_hdr)); | |
861 | if (ret < 0) { | |
862 | goto error; | |
863 | } | |
864 | ||
3604f373 DG |
865 | ++stream->next_net_seq_num; |
866 | ||
00e2e675 | 867 | /* Set to go on data socket */ |
6151a90f | 868 | outfd = relayd->data_sock.sock.fd; |
00e2e675 DG |
869 | } |
870 | ||
871 | error: | |
872 | return outfd; | |
873 | } | |
874 | ||
b1316da1 JG |
875 | /* |
876 | * Write a character on the metadata poll pipe to wake the metadata thread. | |
877 | * Returns 0 on success, -1 on error. | |
878 | */ | |
879 | int consumer_metadata_wakeup_pipe(const struct lttng_consumer_channel *channel) | |
880 | { | |
881 | int ret = 0; | |
882 | ||
883 | DBG("Waking up metadata poll thread (writing to pipe): channel name = '%s'", | |
884 | channel->name); | |
885 | if (channel->monitor && channel->metadata_stream) { | |
886 | const char dummy = 'c'; | |
887 | const ssize_t write_ret = lttng_write( | |
888 | channel->metadata_stream->ust_metadata_poll_pipe[1], | |
889 | &dummy, 1); | |
890 | ||
891 | if (write_ret < 1) { | |
892 | if (errno == EWOULDBLOCK) { | |
893 | /* | |
894 | * This is fine, the metadata poll thread | |
895 | * is having a hard time keeping-up, but | |
896 | * it will eventually wake-up and consume | |
897 | * the available data. | |
898 | */ | |
899 | ret = 0; | |
900 | } else { | |
901 | PERROR("Failed to write to UST metadata pipe while attempting to wake-up the metadata poll thread"); | |
902 | ret = -1; | |
903 | goto end; | |
904 | } | |
905 | } | |
906 | } | |
907 | ||
908 | end: | |
909 | return ret; | |
910 | } | |
911 | ||
d2956687 JG |
912 | /* |
913 | * Trigger a dump of the metadata content. Following/during the succesful | |
914 | * completion of this call, the metadata poll thread will start receiving | |
915 | * metadata packets to consume. | |
916 | * | |
917 | * The caller must hold the channel and stream locks. | |
918 | */ | |
919 | static | |
920 | int consumer_metadata_stream_dump(struct lttng_consumer_stream *stream) | |
921 | { | |
922 | int ret; | |
923 | ||
924 | ASSERT_LOCKED(stream->chan->lock); | |
925 | ASSERT_LOCKED(stream->lock); | |
a0377dfe FD |
926 | LTTNG_ASSERT(stream->metadata_flag); |
927 | LTTNG_ASSERT(stream->chan->trace_chunk); | |
d2956687 | 928 | |
fa29bfbf | 929 | switch (the_consumer_data.type) { |
d2956687 JG |
930 | case LTTNG_CONSUMER_KERNEL: |
931 | /* | |
932 | * Reset the position of what has been read from the | |
933 | * metadata cache to 0 so we can dump it again. | |
934 | */ | |
935 | ret = kernctl_metadata_cache_dump(stream->wait_fd); | |
936 | break; | |
937 | case LTTNG_CONSUMER32_UST: | |
938 | case LTTNG_CONSUMER64_UST: | |
939 | /* | |
940 | * Reset the position pushed from the metadata cache so it | |
941 | * will write from the beginning on the next push. | |
942 | */ | |
943 | stream->ust_metadata_pushed = 0; | |
944 | ret = consumer_metadata_wakeup_pipe(stream->chan); | |
945 | break; | |
946 | default: | |
947 | ERR("Unknown consumer_data type"); | |
948 | abort(); | |
949 | } | |
950 | if (ret < 0) { | |
951 | ERR("Failed to dump the metadata cache"); | |
952 | } | |
953 | return ret; | |
954 | } | |
955 | ||
956 | static | |
957 | int lttng_consumer_channel_set_trace_chunk( | |
958 | struct lttng_consumer_channel *channel, | |
959 | struct lttng_trace_chunk *new_trace_chunk) | |
960 | { | |
d2956687 | 961 | pthread_mutex_lock(&channel->lock); |
b6921a17 JG |
962 | if (channel->is_deleted) { |
963 | /* | |
964 | * The channel has been logically deleted and should no longer | |
965 | * be used. It has released its reference to its current trace | |
966 | * chunk and should not acquire a new one. | |
967 | * | |
968 | * Return success as there is nothing for the caller to do. | |
969 | */ | |
970 | goto end; | |
971 | } | |
d2956687 JG |
972 | |
973 | /* | |
974 | * The acquisition of the reference cannot fail (barring | |
975 | * a severe internal error) since a reference to the published | |
976 | * chunk is already held by the caller. | |
977 | */ | |
978 | if (new_trace_chunk) { | |
979 | const bool acquired_reference = lttng_trace_chunk_get( | |
980 | new_trace_chunk); | |
981 | ||
a0377dfe | 982 | LTTNG_ASSERT(acquired_reference); |
d2956687 JG |
983 | } |
984 | ||
985 | lttng_trace_chunk_put(channel->trace_chunk); | |
986 | channel->trace_chunk = new_trace_chunk; | |
d2956687 JG |
987 | end: |
988 | pthread_mutex_unlock(&channel->lock); | |
ce1aa6fe | 989 | return 0; |
d2956687 JG |
990 | } |
991 | ||
3bd1e081 | 992 | /* |
ffe60014 DG |
993 | * Allocate and return a new lttng_consumer_channel object using the given key |
994 | * to initialize the hash table node. | |
995 | * | |
996 | * On error, return NULL. | |
3bd1e081 | 997 | */ |
886224ff | 998 | struct lttng_consumer_channel *consumer_allocate_channel(uint64_t key, |
ffe60014 | 999 | uint64_t session_id, |
d2956687 | 1000 | const uint64_t *chunk_id, |
ffe60014 DG |
1001 | const char *pathname, |
1002 | const char *name, | |
57a269f2 | 1003 | uint64_t relayd_id, |
1624d5b7 JD |
1004 | enum lttng_event_output output, |
1005 | uint64_t tracefile_size, | |
2bba9e53 | 1006 | uint64_t tracefile_count, |
1950109e | 1007 | uint64_t session_id_per_pid, |
ecc48a90 | 1008 | unsigned int monitor, |
d7ba1388 | 1009 | unsigned int live_timer_interval, |
a2814ea7 | 1010 | bool is_in_live_session, |
3d071855 | 1011 | const char *root_shm_path, |
d7ba1388 | 1012 | const char *shm_path) |
3bd1e081 | 1013 | { |
d2956687 JG |
1014 | struct lttng_consumer_channel *channel = NULL; |
1015 | struct lttng_trace_chunk *trace_chunk = NULL; | |
1016 | ||
1017 | if (chunk_id) { | |
1018 | trace_chunk = lttng_trace_chunk_registry_find_chunk( | |
fa29bfbf | 1019 | the_consumer_data.chunk_registry, session_id, |
d2956687 JG |
1020 | *chunk_id); |
1021 | if (!trace_chunk) { | |
1022 | ERR("Failed to find trace chunk reference during creation of channel"); | |
1023 | goto end; | |
1024 | } | |
1025 | } | |
3bd1e081 | 1026 | |
97535efa | 1027 | channel = (lttng_consumer_channel *) zmalloc(sizeof(*channel)); |
3bd1e081 | 1028 | if (channel == NULL) { |
7a57cf92 | 1029 | PERROR("malloc struct lttng_consumer_channel"); |
3bd1e081 MD |
1030 | goto end; |
1031 | } | |
ffe60014 DG |
1032 | |
1033 | channel->key = key; | |
3bd1e081 | 1034 | channel->refcount = 0; |
ffe60014 | 1035 | channel->session_id = session_id; |
1950109e | 1036 | channel->session_id_per_pid = session_id_per_pid; |
ffe60014 | 1037 | channel->relayd_id = relayd_id; |
1624d5b7 JD |
1038 | channel->tracefile_size = tracefile_size; |
1039 | channel->tracefile_count = tracefile_count; | |
2bba9e53 | 1040 | channel->monitor = monitor; |
ecc48a90 | 1041 | channel->live_timer_interval = live_timer_interval; |
a2814ea7 | 1042 | channel->is_live = is_in_live_session; |
a9838785 | 1043 | pthread_mutex_init(&channel->lock, NULL); |
ec6ea7d0 | 1044 | pthread_mutex_init(&channel->timer_lock, NULL); |
ffe60014 | 1045 | |
0c759fc9 DG |
1046 | switch (output) { |
1047 | case LTTNG_EVENT_SPLICE: | |
1048 | channel->output = CONSUMER_CHANNEL_SPLICE; | |
1049 | break; | |
1050 | case LTTNG_EVENT_MMAP: | |
1051 | channel->output = CONSUMER_CHANNEL_MMAP; | |
1052 | break; | |
1053 | default: | |
a0377dfe | 1054 | abort(); |
0c759fc9 DG |
1055 | free(channel); |
1056 | channel = NULL; | |
1057 | goto end; | |
1058 | } | |
1059 | ||
07b86b52 JD |
1060 | /* |
1061 | * In monitor mode, the streams associated with the channel will be put in | |
1062 | * a special list ONLY owned by this channel. So, the refcount is set to 1 | |
1063 | * here meaning that the channel itself has streams that are referenced. | |
1064 | * | |
1065 | * On a channel deletion, once the channel is no longer visible, the | |
1066 | * refcount is decremented and checked for a zero value to delete it. With | |
1067 | * streams in no monitor mode, it will now be safe to destroy the channel. | |
1068 | */ | |
1069 | if (!channel->monitor) { | |
1070 | channel->refcount = 1; | |
1071 | } | |
1072 | ||
ffe60014 DG |
1073 | strncpy(channel->pathname, pathname, sizeof(channel->pathname)); |
1074 | channel->pathname[sizeof(channel->pathname) - 1] = '\0'; | |
1075 | ||
1076 | strncpy(channel->name, name, sizeof(channel->name)); | |
1077 | channel->name[sizeof(channel->name) - 1] = '\0'; | |
1078 | ||
3d071855 MD |
1079 | if (root_shm_path) { |
1080 | strncpy(channel->root_shm_path, root_shm_path, sizeof(channel->root_shm_path)); | |
1081 | channel->root_shm_path[sizeof(channel->root_shm_path) - 1] = '\0'; | |
1082 | } | |
d7ba1388 MD |
1083 | if (shm_path) { |
1084 | strncpy(channel->shm_path, shm_path, sizeof(channel->shm_path)); | |
1085 | channel->shm_path[sizeof(channel->shm_path) - 1] = '\0'; | |
1086 | } | |
1087 | ||
d88aee68 | 1088 | lttng_ht_node_init_u64(&channel->node, channel->key); |
5c3892a6 JG |
1089 | lttng_ht_node_init_u64(&channel->channels_by_session_id_ht_node, |
1090 | channel->session_id); | |
d8ef542d MD |
1091 | |
1092 | channel->wait_fd = -1; | |
ffe60014 DG |
1093 | CDS_INIT_LIST_HEAD(&channel->streams.head); |
1094 | ||
d2956687 JG |
1095 | if (trace_chunk) { |
1096 | int ret = lttng_consumer_channel_set_trace_chunk(channel, | |
1097 | trace_chunk); | |
1098 | if (ret) { | |
1099 | goto error; | |
1100 | } | |
1101 | } | |
1102 | ||
62a7b8ed | 1103 | DBG("Allocated channel (key %" PRIu64 ")", channel->key); |
3bd1e081 | 1104 | |
3bd1e081 | 1105 | end: |
d2956687 | 1106 | lttng_trace_chunk_put(trace_chunk); |
3bd1e081 | 1107 | return channel; |
d2956687 JG |
1108 | error: |
1109 | consumer_del_channel(channel); | |
1110 | channel = NULL; | |
1111 | goto end; | |
3bd1e081 MD |
1112 | } |
1113 | ||
1114 | /* | |
1115 | * Add a channel to the global list protected by a mutex. | |
821fffb2 | 1116 | * |
b5a6470f | 1117 | * Always return 0 indicating success. |
3bd1e081 | 1118 | */ |
d8ef542d MD |
1119 | int consumer_add_channel(struct lttng_consumer_channel *channel, |
1120 | struct lttng_consumer_local_data *ctx) | |
3bd1e081 | 1121 | { |
fa29bfbf | 1122 | pthread_mutex_lock(&the_consumer_data.lock); |
a9838785 | 1123 | pthread_mutex_lock(&channel->lock); |
ec6ea7d0 | 1124 | pthread_mutex_lock(&channel->timer_lock); |
c77fc10a | 1125 | |
b5a6470f DG |
1126 | /* |
1127 | * This gives us a guarantee that the channel we are about to add to the | |
1128 | * channel hash table will be unique. See this function comment on the why | |
1129 | * we need to steel the channel key at this stage. | |
1130 | */ | |
1131 | steal_channel_key(channel->key); | |
c77fc10a | 1132 | |
b5a6470f | 1133 | rcu_read_lock(); |
fa29bfbf SM |
1134 | lttng_ht_add_unique_u64(the_consumer_data.channel_ht, &channel->node); |
1135 | lttng_ht_add_u64(the_consumer_data.channels_by_session_id_ht, | |
5c3892a6 | 1136 | &channel->channels_by_session_id_ht_node); |
6065ceec | 1137 | rcu_read_unlock(); |
d2956687 | 1138 | channel->is_published = true; |
b5a6470f | 1139 | |
ec6ea7d0 | 1140 | pthread_mutex_unlock(&channel->timer_lock); |
a9838785 | 1141 | pthread_mutex_unlock(&channel->lock); |
fa29bfbf | 1142 | pthread_mutex_unlock(&the_consumer_data.lock); |
702b1ea4 | 1143 | |
b5a6470f | 1144 | if (channel->wait_fd != -1 && channel->type == CONSUMER_CHANNEL_TYPE_DATA) { |
a0cbdd2e | 1145 | notify_channel_pipe(ctx, channel, -1, CONSUMER_CHANNEL_ADD); |
d8ef542d | 1146 | } |
b5a6470f DG |
1147 | |
1148 | return 0; | |
3bd1e081 MD |
1149 | } |
1150 | ||
1151 | /* | |
1152 | * Allocate the pollfd structure and the local view of the out fds to avoid | |
1153 | * doing a lookup in the linked list and concurrency issues when writing is | |
1154 | * needed. Called with consumer_data.lock held. | |
1155 | * | |
1156 | * Returns the number of fds in the structures. | |
1157 | */ | |
ffe60014 DG |
1158 | static int update_poll_array(struct lttng_consumer_local_data *ctx, |
1159 | struct pollfd **pollfd, struct lttng_consumer_stream **local_stream, | |
9a2fcf78 | 1160 | struct lttng_ht *ht, int *nb_inactive_fd) |
3bd1e081 | 1161 | { |
3bd1e081 | 1162 | int i = 0; |
e4421fec DG |
1163 | struct lttng_ht_iter iter; |
1164 | struct lttng_consumer_stream *stream; | |
3bd1e081 | 1165 | |
a0377dfe FD |
1166 | LTTNG_ASSERT(ctx); |
1167 | LTTNG_ASSERT(ht); | |
1168 | LTTNG_ASSERT(pollfd); | |
1169 | LTTNG_ASSERT(local_stream); | |
ffe60014 | 1170 | |
3bd1e081 | 1171 | DBG("Updating poll fd array"); |
9a2fcf78 | 1172 | *nb_inactive_fd = 0; |
481d6c57 | 1173 | rcu_read_lock(); |
43c34bc3 | 1174 | cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) { |
8994307f DG |
1175 | /* |
1176 | * Only active streams with an active end point can be added to the | |
1177 | * poll set and local stream storage of the thread. | |
1178 | * | |
1179 | * There is a potential race here for endpoint_status to be updated | |
1180 | * just after the check. However, this is OK since the stream(s) will | |
1181 | * be deleted once the thread is notified that the end point state has | |
1182 | * changed where this function will be called back again. | |
9a2fcf78 JD |
1183 | * |
1184 | * We track the number of inactive FDs because they still need to be | |
1185 | * closed by the polling thread after a wakeup on the data_pipe or | |
1186 | * metadata_pipe. | |
8994307f | 1187 | */ |
d2956687 | 1188 | if (stream->endpoint_status == CONSUMER_ENDPOINT_INACTIVE) { |
9a2fcf78 | 1189 | (*nb_inactive_fd)++; |
3bd1e081 MD |
1190 | continue; |
1191 | } | |
7972aab2 DG |
1192 | /* |
1193 | * This clobbers way too much the debug output. Uncomment that if you | |
1194 | * need it for debugging purposes. | |
7972aab2 | 1195 | */ |
e4421fec | 1196 | (*pollfd)[i].fd = stream->wait_fd; |
3bd1e081 | 1197 | (*pollfd)[i].events = POLLIN | POLLPRI; |
e4421fec | 1198 | local_stream[i] = stream; |
3bd1e081 MD |
1199 | i++; |
1200 | } | |
481d6c57 | 1201 | rcu_read_unlock(); |
3bd1e081 MD |
1202 | |
1203 | /* | |
50f8ae69 | 1204 | * Insert the consumer_data_pipe at the end of the array and don't |
3bd1e081 MD |
1205 | * increment i so nb_fd is the number of real FD. |
1206 | */ | |
acdb9057 | 1207 | (*pollfd)[i].fd = lttng_pipe_get_readfd(ctx->consumer_data_pipe); |
509bb1cf | 1208 | (*pollfd)[i].events = POLLIN | POLLPRI; |
02b3d176 DG |
1209 | |
1210 | (*pollfd)[i + 1].fd = lttng_pipe_get_readfd(ctx->consumer_wakeup_pipe); | |
1211 | (*pollfd)[i + 1].events = POLLIN | POLLPRI; | |
3bd1e081 MD |
1212 | return i; |
1213 | } | |
1214 | ||
1215 | /* | |
84382d49 MD |
1216 | * Poll on the should_quit pipe and the command socket return -1 on |
1217 | * error, 1 if should exit, 0 if data is available on the command socket | |
3bd1e081 MD |
1218 | */ |
1219 | int lttng_consumer_poll_socket(struct pollfd *consumer_sockpoll) | |
1220 | { | |
1221 | int num_rdy; | |
1222 | ||
88f2b785 | 1223 | restart: |
3bd1e081 MD |
1224 | num_rdy = poll(consumer_sockpoll, 2, -1); |
1225 | if (num_rdy == -1) { | |
88f2b785 MD |
1226 | /* |
1227 | * Restart interrupted system call. | |
1228 | */ | |
1229 | if (errno == EINTR) { | |
1230 | goto restart; | |
1231 | } | |
7a57cf92 | 1232 | PERROR("Poll error"); |
84382d49 | 1233 | return -1; |
3bd1e081 | 1234 | } |
509bb1cf | 1235 | if (consumer_sockpoll[0].revents & (POLLIN | POLLPRI)) { |
3bd1e081 | 1236 | DBG("consumer_should_quit wake up"); |
84382d49 | 1237 | return 1; |
3bd1e081 MD |
1238 | } |
1239 | return 0; | |
3bd1e081 MD |
1240 | } |
1241 | ||
1242 | /* | |
1243 | * Set the error socket. | |
1244 | */ | |
ffe60014 DG |
1245 | void lttng_consumer_set_error_sock(struct lttng_consumer_local_data *ctx, |
1246 | int sock) | |
3bd1e081 MD |
1247 | { |
1248 | ctx->consumer_error_socket = sock; | |
1249 | } | |
1250 | ||
1251 | /* | |
1252 | * Set the command socket path. | |
1253 | */ | |
3bd1e081 MD |
1254 | void lttng_consumer_set_command_sock_path( |
1255 | struct lttng_consumer_local_data *ctx, char *sock) | |
1256 | { | |
1257 | ctx->consumer_command_sock_path = sock; | |
1258 | } | |
1259 | ||
1260 | /* | |
1261 | * Send return code to the session daemon. | |
1262 | * If the socket is not defined, we return 0, it is not a fatal error | |
1263 | */ | |
ffe60014 | 1264 | int lttng_consumer_send_error(struct lttng_consumer_local_data *ctx, int cmd) |
3bd1e081 MD |
1265 | { |
1266 | if (ctx->consumer_error_socket > 0) { | |
1267 | return lttcomm_send_unix_sock(ctx->consumer_error_socket, &cmd, | |
1268 | sizeof(enum lttcomm_sessiond_command)); | |
1269 | } | |
1270 | ||
1271 | return 0; | |
1272 | } | |
1273 | ||
1274 | /* | |
228b5bf7 DG |
1275 | * Close all the tracefiles and stream fds and MUST be called when all |
1276 | * instances are destroyed i.e. when all threads were joined and are ended. | |
3bd1e081 MD |
1277 | */ |
1278 | void lttng_consumer_cleanup(void) | |
1279 | { | |
e4421fec | 1280 | struct lttng_ht_iter iter; |
ffe60014 | 1281 | struct lttng_consumer_channel *channel; |
e10aec8f | 1282 | unsigned int trace_chunks_left; |
6065ceec DG |
1283 | |
1284 | rcu_read_lock(); | |
3bd1e081 | 1285 | |
fa29bfbf SM |
1286 | cds_lfht_for_each_entry(the_consumer_data.channel_ht->ht, &iter.iter, |
1287 | channel, node.node) { | |
702b1ea4 | 1288 | consumer_del_channel(channel); |
3bd1e081 | 1289 | } |
6065ceec DG |
1290 | |
1291 | rcu_read_unlock(); | |
d6ce1df2 | 1292 | |
fa29bfbf SM |
1293 | lttng_ht_destroy(the_consumer_data.channel_ht); |
1294 | lttng_ht_destroy(the_consumer_data.channels_by_session_id_ht); | |
228b5bf7 DG |
1295 | |
1296 | cleanup_relayd_ht(); | |
1297 | ||
fa29bfbf | 1298 | lttng_ht_destroy(the_consumer_data.stream_per_chan_id_ht); |
d8ef542d | 1299 | |
228b5bf7 DG |
1300 | /* |
1301 | * This HT contains streams that are freed by either the metadata thread or | |
1302 | * the data thread so we do *nothing* on the hash table and simply destroy | |
1303 | * it. | |
1304 | */ | |
fa29bfbf | 1305 | lttng_ht_destroy(the_consumer_data.stream_list_ht); |
28cc88f3 | 1306 | |
e10aec8f MD |
1307 | /* |
1308 | * Trace chunks in the registry may still exist if the session | |
1309 | * daemon has encountered an internal error and could not | |
1310 | * tear down its sessions and/or trace chunks properly. | |
1311 | * | |
1312 | * Release the session daemon's implicit reference to any remaining | |
1313 | * trace chunk and print an error if any trace chunk was found. Note | |
1314 | * that there are _no_ legitimate cases for trace chunks to be left, | |
1315 | * it is a leak. However, it can happen following a crash of the | |
1316 | * session daemon and not emptying the registry would cause an assertion | |
1317 | * to hit. | |
1318 | */ | |
1319 | trace_chunks_left = lttng_trace_chunk_registry_put_each_chunk( | |
fa29bfbf | 1320 | the_consumer_data.chunk_registry); |
e10aec8f MD |
1321 | if (trace_chunks_left) { |
1322 | ERR("%u trace chunks are leaked by lttng-consumerd. " | |
1323 | "This can be caused by an internal error of the session daemon.", | |
1324 | trace_chunks_left); | |
1325 | } | |
1326 | /* Run all callbacks freeing each chunk. */ | |
1327 | rcu_barrier(); | |
fa29bfbf | 1328 | lttng_trace_chunk_registry_destroy(the_consumer_data.chunk_registry); |
3bd1e081 MD |
1329 | } |
1330 | ||
1331 | /* | |
1332 | * Called from signal handler. | |
1333 | */ | |
1334 | void lttng_consumer_should_exit(struct lttng_consumer_local_data *ctx) | |
1335 | { | |
6cd525e8 MD |
1336 | ssize_t ret; |
1337 | ||
10211f5c | 1338 | CMM_STORE_SHARED(consumer_quit, 1); |
6cd525e8 MD |
1339 | ret = lttng_write(ctx->consumer_should_quit[1], "4", 1); |
1340 | if (ret < 1) { | |
7a57cf92 | 1341 | PERROR("write consumer quit"); |
3bd1e081 | 1342 | } |
ab1027f4 DG |
1343 | |
1344 | DBG("Consumer flag that it should quit"); | |
3bd1e081 MD |
1345 | } |
1346 | ||
5199ffc4 JG |
1347 | |
1348 | /* | |
1349 | * Flush pending writes to trace output disk file. | |
1350 | */ | |
1351 | static | |
00e2e675 DG |
1352 | void lttng_consumer_sync_trace_file(struct lttng_consumer_stream *stream, |
1353 | off_t orig_offset) | |
3bd1e081 | 1354 | { |
c7a78aab | 1355 | int ret; |
3bd1e081 MD |
1356 | int outfd = stream->out_fd; |
1357 | ||
1358 | /* | |
1359 | * This does a blocking write-and-wait on any page that belongs to the | |
1360 | * subbuffer prior to the one we just wrote. | |
1361 | * Don't care about error values, as these are just hints and ways to | |
1362 | * limit the amount of page cache used. | |
1363 | */ | |
ffe60014 | 1364 | if (orig_offset < stream->max_sb_size) { |
3bd1e081 MD |
1365 | return; |
1366 | } | |
ffe60014 DG |
1367 | lttng_sync_file_range(outfd, orig_offset - stream->max_sb_size, |
1368 | stream->max_sb_size, | |
3bd1e081 MD |
1369 | SYNC_FILE_RANGE_WAIT_BEFORE |
1370 | | SYNC_FILE_RANGE_WRITE | |
1371 | | SYNC_FILE_RANGE_WAIT_AFTER); | |
1372 | /* | |
1373 | * Give hints to the kernel about how we access the file: | |
1374 | * POSIX_FADV_DONTNEED : we won't re-access data in a near future after | |
1375 | * we write it. | |
1376 | * | |
1377 | * We need to call fadvise again after the file grows because the | |
1378 | * kernel does not seem to apply fadvise to non-existing parts of the | |
1379 | * file. | |
1380 | * | |
1381 | * Call fadvise _after_ having waited for the page writeback to | |
1382 | * complete because the dirty page writeback semantic is not well | |
1383 | * defined. So it can be expected to lead to lower throughput in | |
1384 | * streaming. | |
1385 | */ | |
c7a78aab | 1386 | ret = posix_fadvise(outfd, orig_offset - stream->max_sb_size, |
ffe60014 | 1387 | stream->max_sb_size, POSIX_FADV_DONTNEED); |
a0d0e127 | 1388 | if (ret && ret != -ENOSYS) { |
a74a5f4a JG |
1389 | errno = ret; |
1390 | PERROR("posix_fadvise on fd %i", outfd); | |
c7a78aab | 1391 | } |
3bd1e081 MD |
1392 | } |
1393 | ||
1394 | /* | |
1395 | * Initialise the necessary environnement : | |
1396 | * - create a new context | |
1397 | * - create the poll_pipe | |
1398 | * - create the should_quit pipe (for signal handler) | |
1399 | * - create the thread pipe (for splice) | |
1400 | * | |
1401 | * Takes a function pointer as argument, this function is called when data is | |
1402 | * available on a buffer. This function is responsible to do the | |
1403 | * kernctl_get_next_subbuf, read the data with mmap or splice depending on the | |
1404 | * buffer configuration and then kernctl_put_next_subbuf at the end. | |
1405 | * | |
1406 | * Returns a pointer to the new context or NULL on error. | |
1407 | */ | |
1408 | struct lttng_consumer_local_data *lttng_consumer_create( | |
1409 | enum lttng_consumer_type type, | |
4078b776 | 1410 | ssize_t (*buffer_ready)(struct lttng_consumer_stream *stream, |
6f9449c2 | 1411 | struct lttng_consumer_local_data *ctx, bool locked_by_caller), |
3bd1e081 MD |
1412 | int (*recv_channel)(struct lttng_consumer_channel *channel), |
1413 | int (*recv_stream)(struct lttng_consumer_stream *stream), | |
30319bcb | 1414 | int (*update_stream)(uint64_t stream_key, uint32_t state)) |
3bd1e081 | 1415 | { |
d8ef542d | 1416 | int ret; |
3bd1e081 MD |
1417 | struct lttng_consumer_local_data *ctx; |
1418 | ||
a0377dfe | 1419 | LTTNG_ASSERT(the_consumer_data.type == LTTNG_CONSUMER_UNKNOWN || |
fa29bfbf SM |
1420 | the_consumer_data.type == type); |
1421 | the_consumer_data.type = type; | |
3bd1e081 | 1422 | |
97535efa | 1423 | ctx = (lttng_consumer_local_data *) zmalloc(sizeof(struct lttng_consumer_local_data)); |
3bd1e081 | 1424 | if (ctx == NULL) { |
7a57cf92 | 1425 | PERROR("allocating context"); |
3bd1e081 MD |
1426 | goto error; |
1427 | } | |
1428 | ||
1429 | ctx->consumer_error_socket = -1; | |
331744e3 | 1430 | ctx->consumer_metadata_socket = -1; |
75d83e50 | 1431 | pthread_mutex_init(&ctx->metadata_socket_lock, NULL); |
3bd1e081 MD |
1432 | /* assign the callbacks */ |
1433 | ctx->on_buffer_ready = buffer_ready; | |
1434 | ctx->on_recv_channel = recv_channel; | |
1435 | ctx->on_recv_stream = recv_stream; | |
1436 | ctx->on_update_stream = update_stream; | |
1437 | ||
acdb9057 DG |
1438 | ctx->consumer_data_pipe = lttng_pipe_open(0); |
1439 | if (!ctx->consumer_data_pipe) { | |
3bd1e081 MD |
1440 | goto error_poll_pipe; |
1441 | } | |
1442 | ||
02b3d176 DG |
1443 | ctx->consumer_wakeup_pipe = lttng_pipe_open(0); |
1444 | if (!ctx->consumer_wakeup_pipe) { | |
1445 | goto error_wakeup_pipe; | |
1446 | } | |
1447 | ||
3bd1e081 MD |
1448 | ret = pipe(ctx->consumer_should_quit); |
1449 | if (ret < 0) { | |
7a57cf92 | 1450 | PERROR("Error creating recv pipe"); |
3bd1e081 MD |
1451 | goto error_quit_pipe; |
1452 | } | |
1453 | ||
d8ef542d MD |
1454 | ret = pipe(ctx->consumer_channel_pipe); |
1455 | if (ret < 0) { | |
1456 | PERROR("Error creating channel pipe"); | |
1457 | goto error_channel_pipe; | |
1458 | } | |
1459 | ||
13886d2d DG |
1460 | ctx->consumer_metadata_pipe = lttng_pipe_open(0); |
1461 | if (!ctx->consumer_metadata_pipe) { | |
fb3a43a9 DG |
1462 | goto error_metadata_pipe; |
1463 | } | |
3bd1e081 | 1464 | |
e9404c27 JG |
1465 | ctx->channel_monitor_pipe = -1; |
1466 | ||
fb3a43a9 | 1467 | return ctx; |
3bd1e081 | 1468 | |
fb3a43a9 | 1469 | error_metadata_pipe: |
d8ef542d MD |
1470 | utils_close_pipe(ctx->consumer_channel_pipe); |
1471 | error_channel_pipe: | |
d8ef542d | 1472 | utils_close_pipe(ctx->consumer_should_quit); |
3bd1e081 | 1473 | error_quit_pipe: |
02b3d176 DG |
1474 | lttng_pipe_destroy(ctx->consumer_wakeup_pipe); |
1475 | error_wakeup_pipe: | |
acdb9057 | 1476 | lttng_pipe_destroy(ctx->consumer_data_pipe); |
3bd1e081 MD |
1477 | error_poll_pipe: |
1478 | free(ctx); | |
1479 | error: | |
1480 | return NULL; | |
1481 | } | |
1482 | ||
282dadbc MD |
1483 | /* |
1484 | * Iterate over all streams of the hashtable and free them properly. | |
1485 | */ | |
1486 | static void destroy_data_stream_ht(struct lttng_ht *ht) | |
1487 | { | |
1488 | struct lttng_ht_iter iter; | |
1489 | struct lttng_consumer_stream *stream; | |
1490 | ||
1491 | if (ht == NULL) { | |
1492 | return; | |
1493 | } | |
1494 | ||
1495 | rcu_read_lock(); | |
1496 | cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) { | |
1497 | /* | |
1498 | * Ignore return value since we are currently cleaning up so any error | |
1499 | * can't be handled. | |
1500 | */ | |
1501 | (void) consumer_del_stream(stream, ht); | |
1502 | } | |
1503 | rcu_read_unlock(); | |
1504 | ||
1505 | lttng_ht_destroy(ht); | |
1506 | } | |
1507 | ||
1508 | /* | |
1509 | * Iterate over all streams of the metadata hashtable and free them | |
1510 | * properly. | |
1511 | */ | |
1512 | static void destroy_metadata_stream_ht(struct lttng_ht *ht) | |
1513 | { | |
1514 | struct lttng_ht_iter iter; | |
1515 | struct lttng_consumer_stream *stream; | |
1516 | ||
1517 | if (ht == NULL) { | |
1518 | return; | |
1519 | } | |
1520 | ||
1521 | rcu_read_lock(); | |
1522 | cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) { | |
1523 | /* | |
1524 | * Ignore return value since we are currently cleaning up so any error | |
1525 | * can't be handled. | |
1526 | */ | |
1527 | (void) consumer_del_metadata_stream(stream, ht); | |
1528 | } | |
1529 | rcu_read_unlock(); | |
1530 | ||
1531 | lttng_ht_destroy(ht); | |
1532 | } | |
1533 | ||
3bd1e081 MD |
1534 | /* |
1535 | * Close all fds associated with the instance and free the context. | |
1536 | */ | |
1537 | void lttng_consumer_destroy(struct lttng_consumer_local_data *ctx) | |
1538 | { | |
4c462e79 MD |
1539 | int ret; |
1540 | ||
ab1027f4 DG |
1541 | DBG("Consumer destroying it. Closing everything."); |
1542 | ||
4f2e75b9 DG |
1543 | if (!ctx) { |
1544 | return; | |
1545 | } | |
1546 | ||
282dadbc MD |
1547 | destroy_data_stream_ht(data_ht); |
1548 | destroy_metadata_stream_ht(metadata_ht); | |
1549 | ||
4c462e79 MD |
1550 | ret = close(ctx->consumer_error_socket); |
1551 | if (ret) { | |
1552 | PERROR("close"); | |
1553 | } | |
331744e3 JD |
1554 | ret = close(ctx->consumer_metadata_socket); |
1555 | if (ret) { | |
1556 | PERROR("close"); | |
1557 | } | |
d8ef542d | 1558 | utils_close_pipe(ctx->consumer_channel_pipe); |
acdb9057 | 1559 | lttng_pipe_destroy(ctx->consumer_data_pipe); |
13886d2d | 1560 | lttng_pipe_destroy(ctx->consumer_metadata_pipe); |
02b3d176 | 1561 | lttng_pipe_destroy(ctx->consumer_wakeup_pipe); |
d8ef542d | 1562 | utils_close_pipe(ctx->consumer_should_quit); |
fb3a43a9 | 1563 | |
3bd1e081 MD |
1564 | unlink(ctx->consumer_command_sock_path); |
1565 | free(ctx); | |
1566 | } | |
1567 | ||
6197aea7 DG |
1568 | /* |
1569 | * Write the metadata stream id on the specified file descriptor. | |
1570 | */ | |
1571 | static int write_relayd_metadata_id(int fd, | |
1572 | struct lttng_consumer_stream *stream, | |
239f61af | 1573 | unsigned long padding) |
6197aea7 | 1574 | { |
6cd525e8 | 1575 | ssize_t ret; |
1d4dfdef | 1576 | struct lttcomm_relayd_metadata_payload hdr; |
6197aea7 | 1577 | |
1d4dfdef DG |
1578 | hdr.stream_id = htobe64(stream->relayd_stream_id); |
1579 | hdr.padding_size = htobe32(padding); | |
6cd525e8 MD |
1580 | ret = lttng_write(fd, (void *) &hdr, sizeof(hdr)); |
1581 | if (ret < sizeof(hdr)) { | |
d7b75ec8 | 1582 | /* |
6f04ed72 | 1583 | * This error means that the fd's end is closed so ignore the PERROR |
d7b75ec8 DG |
1584 | * not to clubber the error output since this can happen in a normal |
1585 | * code path. | |
1586 | */ | |
1587 | if (errno != EPIPE) { | |
1588 | PERROR("write metadata stream id"); | |
1589 | } | |
1590 | DBG3("Consumer failed to write relayd metadata id (errno: %d)", errno); | |
534d2592 DG |
1591 | /* |
1592 | * Set ret to a negative value because if ret != sizeof(hdr), we don't | |
1593 | * handle writting the missing part so report that as an error and | |
1594 | * don't lie to the caller. | |
1595 | */ | |
1596 | ret = -1; | |
6197aea7 DG |
1597 | goto end; |
1598 | } | |
1d4dfdef DG |
1599 | DBG("Metadata stream id %" PRIu64 " with padding %lu written before data", |
1600 | stream->relayd_stream_id, padding); | |
6197aea7 DG |
1601 | |
1602 | end: | |
6cd525e8 | 1603 | return (int) ret; |
6197aea7 DG |
1604 | } |
1605 | ||
3bd1e081 | 1606 | /* |
09e26845 DG |
1607 | * Mmap the ring buffer, read it and write the data to the tracefile. This is a |
1608 | * core function for writing trace buffers to either the local filesystem or | |
1609 | * the network. | |
1610 | * | |
d2956687 | 1611 | * It must be called with the stream and the channel lock held. |
79d4ffb7 | 1612 | * |
09e26845 | 1613 | * Careful review MUST be put if any changes occur! |
3bd1e081 MD |
1614 | * |
1615 | * Returns the number of bytes written | |
1616 | */ | |
4078b776 | 1617 | ssize_t lttng_consumer_on_read_subbuffer_mmap( |
128708c3 | 1618 | struct lttng_consumer_stream *stream, |
fd424d99 | 1619 | const struct lttng_buffer_view *buffer, |
6f9449c2 | 1620 | unsigned long padding) |
3bd1e081 | 1621 | { |
994ab360 | 1622 | ssize_t ret = 0; |
f02e1e8a DG |
1623 | off_t orig_offset = stream->out_fd_offset; |
1624 | /* Default is on the disk */ | |
1625 | int outfd = stream->out_fd; | |
f02e1e8a | 1626 | struct consumer_relayd_sock_pair *relayd = NULL; |
8994307f | 1627 | unsigned int relayd_hang_up = 0; |
fd424d99 JG |
1628 | const size_t subbuf_content_size = buffer->size - padding; |
1629 | size_t write_len; | |
f02e1e8a DG |
1630 | |
1631 | /* RCU lock for the relayd pointer */ | |
1632 | rcu_read_lock(); | |
a0377dfe | 1633 | LTTNG_ASSERT(stream->net_seq_idx != (uint64_t) -1ULL || |
948411cd | 1634 | stream->trace_chunk); |
d2956687 | 1635 | |
f02e1e8a | 1636 | /* Flag that the current stream if set for network streaming. */ |
da009f2c | 1637 | if (stream->net_seq_idx != (uint64_t) -1ULL) { |
f02e1e8a DG |
1638 | relayd = consumer_find_relayd(stream->net_seq_idx); |
1639 | if (relayd == NULL) { | |
56591bac | 1640 | ret = -EPIPE; |
f02e1e8a DG |
1641 | goto end; |
1642 | } | |
1643 | } | |
1644 | ||
f02e1e8a DG |
1645 | /* Handle stream on the relayd if the output is on the network */ |
1646 | if (relayd) { | |
fd424d99 | 1647 | unsigned long netlen = subbuf_content_size; |
f02e1e8a DG |
1648 | |
1649 | /* | |
1650 | * Lock the control socket for the complete duration of the function | |
1651 | * since from this point on we will use the socket. | |
1652 | */ | |
1653 | if (stream->metadata_flag) { | |
1654 | /* Metadata requires the control socket. */ | |
1655 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
93ec662e JD |
1656 | if (stream->reset_metadata_flag) { |
1657 | ret = relayd_reset_metadata(&relayd->control_sock, | |
1658 | stream->relayd_stream_id, | |
1659 | stream->metadata_version); | |
1660 | if (ret < 0) { | |
1661 | relayd_hang_up = 1; | |
1662 | goto write_error; | |
1663 | } | |
1664 | stream->reset_metadata_flag = 0; | |
1665 | } | |
1d4dfdef | 1666 | netlen += sizeof(struct lttcomm_relayd_metadata_payload); |
f02e1e8a DG |
1667 | } |
1668 | ||
1d4dfdef | 1669 | ret = write_relayd_stream_header(stream, netlen, padding, relayd); |
994ab360 DG |
1670 | if (ret < 0) { |
1671 | relayd_hang_up = 1; | |
1672 | goto write_error; | |
1673 | } | |
1674 | /* Use the returned socket. */ | |
1675 | outfd = ret; | |
f02e1e8a | 1676 | |
994ab360 DG |
1677 | /* Write metadata stream id before payload */ |
1678 | if (stream->metadata_flag) { | |
239f61af | 1679 | ret = write_relayd_metadata_id(outfd, stream, padding); |
994ab360 | 1680 | if (ret < 0) { |
8994307f DG |
1681 | relayd_hang_up = 1; |
1682 | goto write_error; | |
1683 | } | |
f02e1e8a | 1684 | } |
1624d5b7 | 1685 | |
fd424d99 JG |
1686 | write_len = subbuf_content_size; |
1687 | } else { | |
1688 | /* No streaming; we have to write the full padding. */ | |
93ec662e JD |
1689 | if (stream->metadata_flag && stream->reset_metadata_flag) { |
1690 | ret = utils_truncate_stream_file(stream->out_fd, 0); | |
1691 | if (ret < 0) { | |
1692 | ERR("Reset metadata file"); | |
1693 | goto end; | |
1694 | } | |
1695 | stream->reset_metadata_flag = 0; | |
1696 | } | |
1697 | ||
1624d5b7 JD |
1698 | /* |
1699 | * Check if we need to change the tracefile before writing the packet. | |
1700 | */ | |
1701 | if (stream->chan->tracefile_size > 0 && | |
fd424d99 | 1702 | (stream->tracefile_size_current + buffer->size) > |
1624d5b7 | 1703 | stream->chan->tracefile_size) { |
d2956687 JG |
1704 | ret = consumer_stream_rotate_output_files(stream); |
1705 | if (ret) { | |
1624d5b7 JD |
1706 | goto end; |
1707 | } | |
309167d2 | 1708 | outfd = stream->out_fd; |
a1ae300f | 1709 | orig_offset = 0; |
1624d5b7 | 1710 | } |
fd424d99 | 1711 | stream->tracefile_size_current += buffer->size; |
fd424d99 | 1712 | write_len = buffer->size; |
f02e1e8a DG |
1713 | } |
1714 | ||
d02b8372 DG |
1715 | /* |
1716 | * This call guarantee that len or less is returned. It's impossible to | |
1717 | * receive a ret value that is bigger than len. | |
1718 | */ | |
fd424d99 | 1719 | ret = lttng_write(outfd, buffer->data, write_len); |
e2d1190b | 1720 | DBG("Consumer mmap write() ret %zd (len %zu)", ret, write_len); |
fd424d99 | 1721 | if (ret < 0 || ((size_t) ret != write_len)) { |
d02b8372 DG |
1722 | /* |
1723 | * Report error to caller if nothing was written else at least send the | |
1724 | * amount written. | |
1725 | */ | |
1726 | if (ret < 0) { | |
994ab360 | 1727 | ret = -errno; |
f02e1e8a | 1728 | } |
994ab360 | 1729 | relayd_hang_up = 1; |
f02e1e8a | 1730 | |
d02b8372 | 1731 | /* Socket operation failed. We consider the relayd dead */ |
fcf0f774 | 1732 | if (errno == EPIPE) { |
d02b8372 DG |
1733 | /* |
1734 | * This is possible if the fd is closed on the other side | |
1735 | * (outfd) or any write problem. It can be verbose a bit for a | |
1736 | * normal execution if for instance the relayd is stopped | |
1737 | * abruptly. This can happen so set this to a DBG statement. | |
1738 | */ | |
1739 | DBG("Consumer mmap write detected relayd hang up"); | |
994ab360 DG |
1740 | } else { |
1741 | /* Unhandled error, print it and stop function right now. */ | |
fd424d99 JG |
1742 | PERROR("Error in write mmap (ret %zd != write_len %zu)", ret, |
1743 | write_len); | |
f02e1e8a | 1744 | } |
994ab360 | 1745 | goto write_error; |
d02b8372 DG |
1746 | } |
1747 | stream->output_written += ret; | |
d02b8372 DG |
1748 | |
1749 | /* This call is useless on a socket so better save a syscall. */ | |
1750 | if (!relayd) { | |
1751 | /* This won't block, but will start writeout asynchronously */ | |
fd424d99 | 1752 | lttng_sync_file_range(outfd, stream->out_fd_offset, write_len, |
d02b8372 | 1753 | SYNC_FILE_RANGE_WRITE); |
fd424d99 | 1754 | stream->out_fd_offset += write_len; |
f5dbe415 | 1755 | lttng_consumer_sync_trace_file(stream, orig_offset); |
f02e1e8a | 1756 | } |
f02e1e8a | 1757 | |
8994307f DG |
1758 | write_error: |
1759 | /* | |
1760 | * This is a special case that the relayd has closed its socket. Let's | |
1761 | * cleanup the relayd object and all associated streams. | |
1762 | */ | |
1763 | if (relayd && relayd_hang_up) { | |
9276e5c8 JR |
1764 | ERR("Relayd hangup. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
1765 | lttng_consumer_cleanup_relayd(relayd); | |
8994307f DG |
1766 | } |
1767 | ||
f02e1e8a DG |
1768 | end: |
1769 | /* Unlock only if ctrl socket used */ | |
1770 | if (relayd && stream->metadata_flag) { | |
1771 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
1772 | } | |
1773 | ||
1774 | rcu_read_unlock(); | |
994ab360 | 1775 | return ret; |
3bd1e081 MD |
1776 | } |
1777 | ||
1778 | /* | |
1779 | * Splice the data from the ring buffer to the tracefile. | |
1780 | * | |
79d4ffb7 DG |
1781 | * It must be called with the stream lock held. |
1782 | * | |
3bd1e081 MD |
1783 | * Returns the number of bytes spliced. |
1784 | */ | |
4078b776 | 1785 | ssize_t lttng_consumer_on_read_subbuffer_splice( |
3bd1e081 | 1786 | struct lttng_consumer_local_data *ctx, |
1d4dfdef | 1787 | struct lttng_consumer_stream *stream, unsigned long len, |
6f9449c2 | 1788 | unsigned long padding) |
3bd1e081 | 1789 | { |
f02e1e8a DG |
1790 | ssize_t ret = 0, written = 0, ret_splice = 0; |
1791 | loff_t offset = 0; | |
1792 | off_t orig_offset = stream->out_fd_offset; | |
1793 | int fd = stream->wait_fd; | |
1794 | /* Default is on the disk */ | |
1795 | int outfd = stream->out_fd; | |
f02e1e8a | 1796 | struct consumer_relayd_sock_pair *relayd = NULL; |
fb3a43a9 | 1797 | int *splice_pipe; |
8994307f | 1798 | unsigned int relayd_hang_up = 0; |
f02e1e8a | 1799 | |
fa29bfbf | 1800 | switch (the_consumer_data.type) { |
3bd1e081 | 1801 | case LTTNG_CONSUMER_KERNEL: |
f02e1e8a | 1802 | break; |
7753dea8 MD |
1803 | case LTTNG_CONSUMER32_UST: |
1804 | case LTTNG_CONSUMER64_UST: | |
f02e1e8a | 1805 | /* Not supported for user space tracing */ |
3bd1e081 MD |
1806 | return -ENOSYS; |
1807 | default: | |
1808 | ERR("Unknown consumer_data type"); | |
a0377dfe | 1809 | abort(); |
3bd1e081 MD |
1810 | } |
1811 | ||
f02e1e8a DG |
1812 | /* RCU lock for the relayd pointer */ |
1813 | rcu_read_lock(); | |
1814 | ||
1815 | /* Flag that the current stream if set for network streaming. */ | |
da009f2c | 1816 | if (stream->net_seq_idx != (uint64_t) -1ULL) { |
f02e1e8a DG |
1817 | relayd = consumer_find_relayd(stream->net_seq_idx); |
1818 | if (relayd == NULL) { | |
ad0b0d23 | 1819 | written = -ret; |
f02e1e8a DG |
1820 | goto end; |
1821 | } | |
1822 | } | |
a2361a61 | 1823 | splice_pipe = stream->splice_pipe; |
fb3a43a9 | 1824 | |
f02e1e8a | 1825 | /* Write metadata stream id before payload */ |
1d4dfdef | 1826 | if (relayd) { |
ad0b0d23 | 1827 | unsigned long total_len = len; |
f02e1e8a | 1828 | |
1d4dfdef DG |
1829 | if (stream->metadata_flag) { |
1830 | /* | |
1831 | * Lock the control socket for the complete duration of the function | |
1832 | * since from this point on we will use the socket. | |
1833 | */ | |
1834 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
1835 | ||
93ec662e JD |
1836 | if (stream->reset_metadata_flag) { |
1837 | ret = relayd_reset_metadata(&relayd->control_sock, | |
1838 | stream->relayd_stream_id, | |
1839 | stream->metadata_version); | |
1840 | if (ret < 0) { | |
1841 | relayd_hang_up = 1; | |
1842 | goto write_error; | |
1843 | } | |
1844 | stream->reset_metadata_flag = 0; | |
1845 | } | |
239f61af | 1846 | ret = write_relayd_metadata_id(splice_pipe[1], stream, |
1d4dfdef DG |
1847 | padding); |
1848 | if (ret < 0) { | |
1849 | written = ret; | |
ad0b0d23 DG |
1850 | relayd_hang_up = 1; |
1851 | goto write_error; | |
1d4dfdef DG |
1852 | } |
1853 | ||
1854 | total_len += sizeof(struct lttcomm_relayd_metadata_payload); | |
1855 | } | |
1856 | ||
1857 | ret = write_relayd_stream_header(stream, total_len, padding, relayd); | |
ad0b0d23 DG |
1858 | if (ret < 0) { |
1859 | written = ret; | |
1860 | relayd_hang_up = 1; | |
1861 | goto write_error; | |
f02e1e8a | 1862 | } |
ad0b0d23 DG |
1863 | /* Use the returned socket. */ |
1864 | outfd = ret; | |
1d4dfdef DG |
1865 | } else { |
1866 | /* No streaming, we have to set the len with the full padding */ | |
1867 | len += padding; | |
1624d5b7 | 1868 | |
93ec662e JD |
1869 | if (stream->metadata_flag && stream->reset_metadata_flag) { |
1870 | ret = utils_truncate_stream_file(stream->out_fd, 0); | |
1871 | if (ret < 0) { | |
1872 | ERR("Reset metadata file"); | |
1873 | goto end; | |
1874 | } | |
1875 | stream->reset_metadata_flag = 0; | |
1876 | } | |
1624d5b7 JD |
1877 | /* |
1878 | * Check if we need to change the tracefile before writing the packet. | |
1879 | */ | |
1880 | if (stream->chan->tracefile_size > 0 && | |
1881 | (stream->tracefile_size_current + len) > | |
1882 | stream->chan->tracefile_size) { | |
d2956687 | 1883 | ret = consumer_stream_rotate_output_files(stream); |
1624d5b7 | 1884 | if (ret < 0) { |
ad0b0d23 | 1885 | written = ret; |
1624d5b7 JD |
1886 | goto end; |
1887 | } | |
309167d2 | 1888 | outfd = stream->out_fd; |
a1ae300f | 1889 | orig_offset = 0; |
1624d5b7 JD |
1890 | } |
1891 | stream->tracefile_size_current += len; | |
f02e1e8a DG |
1892 | } |
1893 | ||
1894 | while (len > 0) { | |
1d4dfdef DG |
1895 | DBG("splice chan to pipe offset %lu of len %lu (fd : %d, pipe: %d)", |
1896 | (unsigned long)offset, len, fd, splice_pipe[1]); | |
fb3a43a9 | 1897 | ret_splice = splice(fd, &offset, splice_pipe[1], NULL, len, |
f02e1e8a DG |
1898 | SPLICE_F_MOVE | SPLICE_F_MORE); |
1899 | DBG("splice chan to pipe, ret %zd", ret_splice); | |
1900 | if (ret_splice < 0) { | |
d02b8372 | 1901 | ret = errno; |
ad0b0d23 | 1902 | written = -ret; |
d02b8372 | 1903 | PERROR("Error in relay splice"); |
f02e1e8a DG |
1904 | goto splice_error; |
1905 | } | |
1906 | ||
1907 | /* Handle stream on the relayd if the output is on the network */ | |
ad0b0d23 DG |
1908 | if (relayd && stream->metadata_flag) { |
1909 | size_t metadata_payload_size = | |
1910 | sizeof(struct lttcomm_relayd_metadata_payload); | |
1911 | ||
1912 | /* Update counter to fit the spliced data */ | |
1913 | ret_splice += metadata_payload_size; | |
1914 | len += metadata_payload_size; | |
1915 | /* | |
1916 | * We do this so the return value can match the len passed as | |
1917 | * argument to this function. | |
1918 | */ | |
1919 | written -= metadata_payload_size; | |
f02e1e8a DG |
1920 | } |
1921 | ||
1922 | /* Splice data out */ | |
fb3a43a9 | 1923 | ret_splice = splice(splice_pipe[0], NULL, outfd, NULL, |
f02e1e8a | 1924 | ret_splice, SPLICE_F_MOVE | SPLICE_F_MORE); |
a2361a61 JD |
1925 | DBG("Consumer splice pipe to file (out_fd: %d), ret %zd", |
1926 | outfd, ret_splice); | |
f02e1e8a | 1927 | if (ret_splice < 0) { |
d02b8372 | 1928 | ret = errno; |
ad0b0d23 DG |
1929 | written = -ret; |
1930 | relayd_hang_up = 1; | |
1931 | goto write_error; | |
f02e1e8a | 1932 | } else if (ret_splice > len) { |
d02b8372 DG |
1933 | /* |
1934 | * We don't expect this code path to be executed but you never know | |
1935 | * so this is an extra protection agains a buggy splice(). | |
1936 | */ | |
f02e1e8a | 1937 | ret = errno; |
ad0b0d23 | 1938 | written += ret_splice; |
d02b8372 DG |
1939 | PERROR("Wrote more data than requested %zd (len: %lu)", ret_splice, |
1940 | len); | |
f02e1e8a | 1941 | goto splice_error; |
d02b8372 DG |
1942 | } else { |
1943 | /* All good, update current len and continue. */ | |
1944 | len -= ret_splice; | |
f02e1e8a | 1945 | } |
f02e1e8a DG |
1946 | |
1947 | /* This call is useless on a socket so better save a syscall. */ | |
1948 | if (!relayd) { | |
1949 | /* This won't block, but will start writeout asynchronously */ | |
1950 | lttng_sync_file_range(outfd, stream->out_fd_offset, ret_splice, | |
1951 | SYNC_FILE_RANGE_WRITE); | |
1952 | stream->out_fd_offset += ret_splice; | |
1953 | } | |
e5d1a9b3 | 1954 | stream->output_written += ret_splice; |
f02e1e8a DG |
1955 | written += ret_splice; |
1956 | } | |
f5dbe415 JG |
1957 | if (!relayd) { |
1958 | lttng_consumer_sync_trace_file(stream, orig_offset); | |
1959 | } | |
f02e1e8a DG |
1960 | goto end; |
1961 | ||
8994307f DG |
1962 | write_error: |
1963 | /* | |
1964 | * This is a special case that the relayd has closed its socket. Let's | |
1965 | * cleanup the relayd object and all associated streams. | |
1966 | */ | |
1967 | if (relayd && relayd_hang_up) { | |
9276e5c8 JR |
1968 | ERR("Relayd hangup. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
1969 | lttng_consumer_cleanup_relayd(relayd); | |
8994307f DG |
1970 | /* Skip splice error so the consumer does not fail */ |
1971 | goto end; | |
1972 | } | |
1973 | ||
f02e1e8a DG |
1974 | splice_error: |
1975 | /* send the appropriate error description to sessiond */ | |
1976 | switch (ret) { | |
f02e1e8a | 1977 | case EINVAL: |
f73fabfd | 1978 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_EINVAL); |
f02e1e8a DG |
1979 | break; |
1980 | case ENOMEM: | |
f73fabfd | 1981 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_ENOMEM); |
f02e1e8a DG |
1982 | break; |
1983 | case ESPIPE: | |
f73fabfd | 1984 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_ESPIPE); |
f02e1e8a DG |
1985 | break; |
1986 | } | |
1987 | ||
1988 | end: | |
1989 | if (relayd && stream->metadata_flag) { | |
1990 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
1991 | } | |
1992 | ||
1993 | rcu_read_unlock(); | |
1994 | return written; | |
3bd1e081 MD |
1995 | } |
1996 | ||
15055ce5 JD |
1997 | /* |
1998 | * Sample the snapshot positions for a specific fd | |
1999 | * | |
2000 | * Returns 0 on success, < 0 on error | |
2001 | */ | |
2002 | int lttng_consumer_sample_snapshot_positions(struct lttng_consumer_stream *stream) | |
2003 | { | |
fa29bfbf | 2004 | switch (the_consumer_data.type) { |
15055ce5 JD |
2005 | case LTTNG_CONSUMER_KERNEL: |
2006 | return lttng_kconsumer_sample_snapshot_positions(stream); | |
2007 | case LTTNG_CONSUMER32_UST: | |
2008 | case LTTNG_CONSUMER64_UST: | |
2009 | return lttng_ustconsumer_sample_snapshot_positions(stream); | |
2010 | default: | |
2011 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2012 | abort(); |
15055ce5 JD |
2013 | return -ENOSYS; |
2014 | } | |
2015 | } | |
3bd1e081 MD |
2016 | /* |
2017 | * Take a snapshot for a specific fd | |
2018 | * | |
2019 | * Returns 0 on success, < 0 on error | |
2020 | */ | |
ffe60014 | 2021 | int lttng_consumer_take_snapshot(struct lttng_consumer_stream *stream) |
3bd1e081 | 2022 | { |
fa29bfbf | 2023 | switch (the_consumer_data.type) { |
3bd1e081 | 2024 | case LTTNG_CONSUMER_KERNEL: |
ffe60014 | 2025 | return lttng_kconsumer_take_snapshot(stream); |
7753dea8 MD |
2026 | case LTTNG_CONSUMER32_UST: |
2027 | case LTTNG_CONSUMER64_UST: | |
ffe60014 | 2028 | return lttng_ustconsumer_take_snapshot(stream); |
3bd1e081 MD |
2029 | default: |
2030 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2031 | abort(); |
3bd1e081 MD |
2032 | return -ENOSYS; |
2033 | } | |
3bd1e081 MD |
2034 | } |
2035 | ||
2036 | /* | |
2037 | * Get the produced position | |
2038 | * | |
2039 | * Returns 0 on success, < 0 on error | |
2040 | */ | |
ffe60014 | 2041 | int lttng_consumer_get_produced_snapshot(struct lttng_consumer_stream *stream, |
3bd1e081 MD |
2042 | unsigned long *pos) |
2043 | { | |
fa29bfbf | 2044 | switch (the_consumer_data.type) { |
3bd1e081 | 2045 | case LTTNG_CONSUMER_KERNEL: |
ffe60014 | 2046 | return lttng_kconsumer_get_produced_snapshot(stream, pos); |
7753dea8 MD |
2047 | case LTTNG_CONSUMER32_UST: |
2048 | case LTTNG_CONSUMER64_UST: | |
ffe60014 | 2049 | return lttng_ustconsumer_get_produced_snapshot(stream, pos); |
3bd1e081 MD |
2050 | default: |
2051 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2052 | abort(); |
3bd1e081 MD |
2053 | return -ENOSYS; |
2054 | } | |
2055 | } | |
2056 | ||
15055ce5 JD |
2057 | /* |
2058 | * Get the consumed position (free-running counter position in bytes). | |
2059 | * | |
2060 | * Returns 0 on success, < 0 on error | |
2061 | */ | |
2062 | int lttng_consumer_get_consumed_snapshot(struct lttng_consumer_stream *stream, | |
2063 | unsigned long *pos) | |
2064 | { | |
fa29bfbf | 2065 | switch (the_consumer_data.type) { |
15055ce5 JD |
2066 | case LTTNG_CONSUMER_KERNEL: |
2067 | return lttng_kconsumer_get_consumed_snapshot(stream, pos); | |
2068 | case LTTNG_CONSUMER32_UST: | |
2069 | case LTTNG_CONSUMER64_UST: | |
2070 | return lttng_ustconsumer_get_consumed_snapshot(stream, pos); | |
2071 | default: | |
2072 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2073 | abort(); |
15055ce5 JD |
2074 | return -ENOSYS; |
2075 | } | |
2076 | } | |
2077 | ||
3bd1e081 MD |
2078 | int lttng_consumer_recv_cmd(struct lttng_consumer_local_data *ctx, |
2079 | int sock, struct pollfd *consumer_sockpoll) | |
2080 | { | |
fa29bfbf | 2081 | switch (the_consumer_data.type) { |
3bd1e081 MD |
2082 | case LTTNG_CONSUMER_KERNEL: |
2083 | return lttng_kconsumer_recv_cmd(ctx, sock, consumer_sockpoll); | |
7753dea8 MD |
2084 | case LTTNG_CONSUMER32_UST: |
2085 | case LTTNG_CONSUMER64_UST: | |
3bd1e081 MD |
2086 | return lttng_ustconsumer_recv_cmd(ctx, sock, consumer_sockpoll); |
2087 | default: | |
2088 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2089 | abort(); |
3bd1e081 MD |
2090 | return -ENOSYS; |
2091 | } | |
2092 | } | |
2093 | ||
1f8d1c14 | 2094 | static |
6d574024 | 2095 | void lttng_consumer_close_all_metadata(void) |
d88aee68 | 2096 | { |
fa29bfbf | 2097 | switch (the_consumer_data.type) { |
d88aee68 DG |
2098 | case LTTNG_CONSUMER_KERNEL: |
2099 | /* | |
2100 | * The Kernel consumer has a different metadata scheme so we don't | |
2101 | * close anything because the stream will be closed by the session | |
2102 | * daemon. | |
2103 | */ | |
2104 | break; | |
2105 | case LTTNG_CONSUMER32_UST: | |
2106 | case LTTNG_CONSUMER64_UST: | |
2107 | /* | |
2108 | * Close all metadata streams. The metadata hash table is passed and | |
2109 | * this call iterates over it by closing all wakeup fd. This is safe | |
2110 | * because at this point we are sure that the metadata producer is | |
2111 | * either dead or blocked. | |
2112 | */ | |
6d574024 | 2113 | lttng_ustconsumer_close_all_metadata(metadata_ht); |
d88aee68 DG |
2114 | break; |
2115 | default: | |
2116 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2117 | abort(); |
d88aee68 DG |
2118 | } |
2119 | } | |
2120 | ||
fb3a43a9 DG |
2121 | /* |
2122 | * Clean up a metadata stream and free its memory. | |
2123 | */ | |
e316aad5 DG |
2124 | void consumer_del_metadata_stream(struct lttng_consumer_stream *stream, |
2125 | struct lttng_ht *ht) | |
fb3a43a9 | 2126 | { |
a6ef8ee6 JG |
2127 | struct lttng_consumer_channel *channel = NULL; |
2128 | bool free_channel = false; | |
fb3a43a9 | 2129 | |
a0377dfe | 2130 | LTTNG_ASSERT(stream); |
fb3a43a9 DG |
2131 | /* |
2132 | * This call should NEVER receive regular stream. It must always be | |
2133 | * metadata stream and this is crucial for data structure synchronization. | |
2134 | */ | |
a0377dfe | 2135 | LTTNG_ASSERT(stream->metadata_flag); |
fb3a43a9 | 2136 | |
e316aad5 DG |
2137 | DBG3("Consumer delete metadata stream %d", stream->wait_fd); |
2138 | ||
fa29bfbf | 2139 | pthread_mutex_lock(&the_consumer_data.lock); |
a6ef8ee6 JG |
2140 | /* |
2141 | * Note that this assumes that a stream's channel is never changed and | |
2142 | * that the stream's lock doesn't need to be taken to sample its | |
2143 | * channel. | |
2144 | */ | |
2145 | channel = stream->chan; | |
2146 | pthread_mutex_lock(&channel->lock); | |
3dad2c0f | 2147 | pthread_mutex_lock(&stream->lock); |
a6ef8ee6 | 2148 | if (channel->metadata_cache) { |
081424af | 2149 | /* Only applicable to userspace consumers. */ |
a6ef8ee6 | 2150 | pthread_mutex_lock(&channel->metadata_cache->lock); |
081424af | 2151 | } |
8994307f | 2152 | |
6d574024 DG |
2153 | /* Remove any reference to that stream. */ |
2154 | consumer_stream_delete(stream, ht); | |
ca22feea | 2155 | |
6d574024 DG |
2156 | /* Close down everything including the relayd if one. */ |
2157 | consumer_stream_close(stream); | |
2158 | /* Destroy tracer buffers of the stream. */ | |
2159 | consumer_stream_destroy_buffers(stream); | |
fb3a43a9 DG |
2160 | |
2161 | /* Atomically decrement channel refcount since other threads can use it. */ | |
a6ef8ee6 JG |
2162 | if (!uatomic_sub_return(&channel->refcount, 1) |
2163 | && !uatomic_read(&channel->nb_init_stream_left)) { | |
c30aaa51 | 2164 | /* Go for channel deletion! */ |
a6ef8ee6 | 2165 | free_channel = true; |
fb3a43a9 | 2166 | } |
a6ef8ee6 | 2167 | stream->chan = NULL; |
fb3a43a9 | 2168 | |
73811ecc DG |
2169 | /* |
2170 | * Nullify the stream reference so it is not used after deletion. The | |
6d574024 DG |
2171 | * channel lock MUST be acquired before being able to check for a NULL |
2172 | * pointer value. | |
73811ecc | 2173 | */ |
a6ef8ee6 | 2174 | channel->metadata_stream = NULL; |
73811ecc | 2175 | |
a6ef8ee6 JG |
2176 | if (channel->metadata_cache) { |
2177 | pthread_mutex_unlock(&channel->metadata_cache->lock); | |
081424af | 2178 | } |
3dad2c0f | 2179 | pthread_mutex_unlock(&stream->lock); |
a6ef8ee6 | 2180 | pthread_mutex_unlock(&channel->lock); |
fa29bfbf | 2181 | pthread_mutex_unlock(&the_consumer_data.lock); |
e316aad5 | 2182 | |
a6ef8ee6 JG |
2183 | if (free_channel) { |
2184 | consumer_del_channel(channel); | |
e316aad5 DG |
2185 | } |
2186 | ||
d2956687 JG |
2187 | lttng_trace_chunk_put(stream->trace_chunk); |
2188 | stream->trace_chunk = NULL; | |
6d574024 | 2189 | consumer_stream_free(stream); |
fb3a43a9 DG |
2190 | } |
2191 | ||
2192 | /* | |
2193 | * Action done with the metadata stream when adding it to the consumer internal | |
2194 | * data structures to handle it. | |
2195 | */ | |
66d583dc | 2196 | void consumer_add_metadata_stream(struct lttng_consumer_stream *stream) |
fb3a43a9 | 2197 | { |
5ab66908 | 2198 | struct lttng_ht *ht = metadata_ht; |
76082088 | 2199 | struct lttng_ht_iter iter; |
d88aee68 | 2200 | struct lttng_ht_node_u64 *node; |
fb3a43a9 | 2201 | |
a0377dfe FD |
2202 | LTTNG_ASSERT(stream); |
2203 | LTTNG_ASSERT(ht); | |
e316aad5 | 2204 | |
d88aee68 | 2205 | DBG3("Adding metadata stream %" PRIu64 " to hash table", stream->key); |
e316aad5 | 2206 | |
fa29bfbf | 2207 | pthread_mutex_lock(&the_consumer_data.lock); |
a9838785 | 2208 | pthread_mutex_lock(&stream->chan->lock); |
ec6ea7d0 | 2209 | pthread_mutex_lock(&stream->chan->timer_lock); |
2e818a6a | 2210 | pthread_mutex_lock(&stream->lock); |
e316aad5 | 2211 | |
e316aad5 DG |
2212 | /* |
2213 | * From here, refcounts are updated so be _careful_ when returning an error | |
2214 | * after this point. | |
2215 | */ | |
2216 | ||
fb3a43a9 | 2217 | rcu_read_lock(); |
76082088 DG |
2218 | |
2219 | /* | |
2220 | * Lookup the stream just to make sure it does not exist in our internal | |
2221 | * state. This should NEVER happen. | |
2222 | */ | |
d88aee68 DG |
2223 | lttng_ht_lookup(ht, &stream->key, &iter); |
2224 | node = lttng_ht_iter_get_node_u64(&iter); | |
a0377dfe | 2225 | LTTNG_ASSERT(!node); |
76082088 | 2226 | |
e316aad5 | 2227 | /* |
ffe60014 DG |
2228 | * When nb_init_stream_left reaches 0, we don't need to trigger any action |
2229 | * in terms of destroying the associated channel, because the action that | |
e316aad5 DG |
2230 | * causes the count to become 0 also causes a stream to be added. The |
2231 | * channel deletion will thus be triggered by the following removal of this | |
2232 | * stream. | |
2233 | */ | |
ffe60014 | 2234 | if (uatomic_read(&stream->chan->nb_init_stream_left) > 0) { |
f2ad556d MD |
2235 | /* Increment refcount before decrementing nb_init_stream_left */ |
2236 | cmm_smp_wmb(); | |
ffe60014 | 2237 | uatomic_dec(&stream->chan->nb_init_stream_left); |
e316aad5 DG |
2238 | } |
2239 | ||
d88aee68 | 2240 | lttng_ht_add_unique_u64(ht, &stream->node); |
ca22feea | 2241 | |
fa29bfbf SM |
2242 | lttng_ht_add_u64(the_consumer_data.stream_per_chan_id_ht, |
2243 | &stream->node_channel_id); | |
d8ef542d | 2244 | |
ca22feea DG |
2245 | /* |
2246 | * Add stream to the stream_list_ht of the consumer data. No need to steal | |
2247 | * the key since the HT does not use it and we allow to add redundant keys | |
2248 | * into this table. | |
2249 | */ | |
fa29bfbf SM |
2250 | lttng_ht_add_u64(the_consumer_data.stream_list_ht, |
2251 | &stream->node_session_id); | |
ca22feea | 2252 | |
fb3a43a9 | 2253 | rcu_read_unlock(); |
e316aad5 | 2254 | |
2e818a6a | 2255 | pthread_mutex_unlock(&stream->lock); |
a9838785 | 2256 | pthread_mutex_unlock(&stream->chan->lock); |
ec6ea7d0 | 2257 | pthread_mutex_unlock(&stream->chan->timer_lock); |
fa29bfbf | 2258 | pthread_mutex_unlock(&the_consumer_data.lock); |
fb3a43a9 DG |
2259 | } |
2260 | ||
8994307f DG |
2261 | /* |
2262 | * Delete data stream that are flagged for deletion (endpoint_status). | |
2263 | */ | |
2264 | static void validate_endpoint_status_data_stream(void) | |
2265 | { | |
2266 | struct lttng_ht_iter iter; | |
2267 | struct lttng_consumer_stream *stream; | |
2268 | ||
2269 | DBG("Consumer delete flagged data stream"); | |
2270 | ||
2271 | rcu_read_lock(); | |
2272 | cds_lfht_for_each_entry(data_ht->ht, &iter.iter, stream, node.node) { | |
2273 | /* Validate delete flag of the stream */ | |
79d4ffb7 | 2274 | if (stream->endpoint_status == CONSUMER_ENDPOINT_ACTIVE) { |
8994307f DG |
2275 | continue; |
2276 | } | |
2277 | /* Delete it right now */ | |
2278 | consumer_del_stream(stream, data_ht); | |
2279 | } | |
2280 | rcu_read_unlock(); | |
2281 | } | |
2282 | ||
2283 | /* | |
2284 | * Delete metadata stream that are flagged for deletion (endpoint_status). | |
2285 | */ | |
2286 | static void validate_endpoint_status_metadata_stream( | |
2287 | struct lttng_poll_event *pollset) | |
2288 | { | |
2289 | struct lttng_ht_iter iter; | |
2290 | struct lttng_consumer_stream *stream; | |
2291 | ||
2292 | DBG("Consumer delete flagged metadata stream"); | |
2293 | ||
a0377dfe | 2294 | LTTNG_ASSERT(pollset); |
8994307f DG |
2295 | |
2296 | rcu_read_lock(); | |
2297 | cds_lfht_for_each_entry(metadata_ht->ht, &iter.iter, stream, node.node) { | |
2298 | /* Validate delete flag of the stream */ | |
79d4ffb7 | 2299 | if (stream->endpoint_status == CONSUMER_ENDPOINT_ACTIVE) { |
8994307f DG |
2300 | continue; |
2301 | } | |
2302 | /* | |
2303 | * Remove from pollset so the metadata thread can continue without | |
2304 | * blocking on a deleted stream. | |
2305 | */ | |
2306 | lttng_poll_del(pollset, stream->wait_fd); | |
2307 | ||
2308 | /* Delete it right now */ | |
2309 | consumer_del_metadata_stream(stream, metadata_ht); | |
2310 | } | |
2311 | rcu_read_unlock(); | |
2312 | } | |
2313 | ||
fb3a43a9 DG |
2314 | /* |
2315 | * Thread polls on metadata file descriptor and write them on disk or on the | |
2316 | * network. | |
2317 | */ | |
7d980def | 2318 | void *consumer_thread_metadata_poll(void *data) |
fb3a43a9 | 2319 | { |
1fc79fb4 | 2320 | int ret, i, pollfd, err = -1; |
fb3a43a9 | 2321 | uint32_t revents, nb_fd; |
e316aad5 | 2322 | struct lttng_consumer_stream *stream = NULL; |
fb3a43a9 | 2323 | struct lttng_ht_iter iter; |
d88aee68 | 2324 | struct lttng_ht_node_u64 *node; |
fb3a43a9 | 2325 | struct lttng_poll_event events; |
97535efa | 2326 | struct lttng_consumer_local_data *ctx = (lttng_consumer_local_data *) data; |
fb3a43a9 DG |
2327 | ssize_t len; |
2328 | ||
2329 | rcu_register_thread(); | |
2330 | ||
1fc79fb4 MD |
2331 | health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_METADATA); |
2332 | ||
2d57de81 MD |
2333 | if (testpoint(consumerd_thread_metadata)) { |
2334 | goto error_testpoint; | |
2335 | } | |
2336 | ||
9ce5646a MD |
2337 | health_code_update(); |
2338 | ||
fb3a43a9 DG |
2339 | DBG("Thread metadata poll started"); |
2340 | ||
fb3a43a9 DG |
2341 | /* Size is set to 1 for the consumer_metadata pipe */ |
2342 | ret = lttng_poll_create(&events, 2, LTTNG_CLOEXEC); | |
2343 | if (ret < 0) { | |
2344 | ERR("Poll set creation failed"); | |
d8ef542d | 2345 | goto end_poll; |
fb3a43a9 DG |
2346 | } |
2347 | ||
13886d2d DG |
2348 | ret = lttng_poll_add(&events, |
2349 | lttng_pipe_get_readfd(ctx->consumer_metadata_pipe), LPOLLIN); | |
fb3a43a9 DG |
2350 | if (ret < 0) { |
2351 | goto end; | |
2352 | } | |
2353 | ||
2354 | /* Main loop */ | |
2355 | DBG("Metadata main loop started"); | |
2356 | ||
2357 | while (1) { | |
fb3a43a9 | 2358 | restart: |
7fa2082e | 2359 | health_code_update(); |
9ce5646a | 2360 | health_poll_entry(); |
7fa2082e | 2361 | DBG("Metadata poll wait"); |
fb3a43a9 | 2362 | ret = lttng_poll_wait(&events, -1); |
7fa2082e MD |
2363 | DBG("Metadata poll return from wait with %d fd(s)", |
2364 | LTTNG_POLL_GETNB(&events)); | |
9ce5646a | 2365 | health_poll_exit(); |
40063ead | 2366 | DBG("Metadata event caught in thread"); |
fb3a43a9 DG |
2367 | if (ret < 0) { |
2368 | if (errno == EINTR) { | |
40063ead | 2369 | ERR("Poll EINTR caught"); |
fb3a43a9 DG |
2370 | goto restart; |
2371 | } | |
d9607cd7 MD |
2372 | if (LTTNG_POLL_GETNB(&events) == 0) { |
2373 | err = 0; /* All is OK */ | |
2374 | } | |
2375 | goto end; | |
fb3a43a9 DG |
2376 | } |
2377 | ||
0d9c5d77 DG |
2378 | nb_fd = ret; |
2379 | ||
e316aad5 | 2380 | /* From here, the event is a metadata wait fd */ |
fb3a43a9 | 2381 | for (i = 0; i < nb_fd; i++) { |
9ce5646a MD |
2382 | health_code_update(); |
2383 | ||
fb3a43a9 DG |
2384 | revents = LTTNG_POLL_GETEV(&events, i); |
2385 | pollfd = LTTNG_POLL_GETFD(&events, i); | |
2386 | ||
13886d2d | 2387 | if (pollfd == lttng_pipe_get_readfd(ctx->consumer_metadata_pipe)) { |
03e43155 | 2388 | if (revents & LPOLLIN) { |
13886d2d DG |
2389 | ssize_t pipe_len; |
2390 | ||
2391 | pipe_len = lttng_pipe_read(ctx->consumer_metadata_pipe, | |
2392 | &stream, sizeof(stream)); | |
6cd525e8 | 2393 | if (pipe_len < sizeof(stream)) { |
03e43155 MD |
2394 | if (pipe_len < 0) { |
2395 | PERROR("read metadata stream"); | |
2396 | } | |
fb3a43a9 | 2397 | /* |
03e43155 MD |
2398 | * Remove the pipe from the poll set and continue the loop |
2399 | * since their might be data to consume. | |
fb3a43a9 | 2400 | */ |
03e43155 MD |
2401 | lttng_poll_del(&events, |
2402 | lttng_pipe_get_readfd(ctx->consumer_metadata_pipe)); | |
2403 | lttng_pipe_read_close(ctx->consumer_metadata_pipe); | |
fb3a43a9 DG |
2404 | continue; |
2405 | } | |
2406 | ||
8994307f DG |
2407 | /* A NULL stream means that the state has changed. */ |
2408 | if (stream == NULL) { | |
2409 | /* Check for deleted streams. */ | |
2410 | validate_endpoint_status_metadata_stream(&events); | |
3714380f | 2411 | goto restart; |
8994307f DG |
2412 | } |
2413 | ||
fb3a43a9 DG |
2414 | DBG("Adding metadata stream %d to poll set", |
2415 | stream->wait_fd); | |
2416 | ||
fb3a43a9 DG |
2417 | /* Add metadata stream to the global poll events list */ |
2418 | lttng_poll_add(&events, stream->wait_fd, | |
6d574024 | 2419 | LPOLLIN | LPOLLPRI | LPOLLHUP); |
03e43155 MD |
2420 | } else if (revents & (LPOLLERR | LPOLLHUP)) { |
2421 | DBG("Metadata thread pipe hung up"); | |
2422 | /* | |
2423 | * Remove the pipe from the poll set and continue the loop | |
2424 | * since their might be data to consume. | |
2425 | */ | |
2426 | lttng_poll_del(&events, | |
2427 | lttng_pipe_get_readfd(ctx->consumer_metadata_pipe)); | |
2428 | lttng_pipe_read_close(ctx->consumer_metadata_pipe); | |
2429 | continue; | |
2430 | } else { | |
2431 | ERR("Unexpected poll events %u for sock %d", revents, pollfd); | |
2432 | goto end; | |
fb3a43a9 DG |
2433 | } |
2434 | ||
e316aad5 | 2435 | /* Handle other stream */ |
fb3a43a9 DG |
2436 | continue; |
2437 | } | |
2438 | ||
d09e1200 | 2439 | rcu_read_lock(); |
d88aee68 DG |
2440 | { |
2441 | uint64_t tmp_id = (uint64_t) pollfd; | |
2442 | ||
2443 | lttng_ht_lookup(metadata_ht, &tmp_id, &iter); | |
2444 | } | |
2445 | node = lttng_ht_iter_get_node_u64(&iter); | |
a0377dfe | 2446 | LTTNG_ASSERT(node); |
fb3a43a9 DG |
2447 | |
2448 | stream = caa_container_of(node, struct lttng_consumer_stream, | |
58b1f425 | 2449 | node); |
fb3a43a9 | 2450 | |
03e43155 MD |
2451 | if (revents & (LPOLLIN | LPOLLPRI)) { |
2452 | /* Get the data out of the metadata file descriptor */ | |
2453 | DBG("Metadata available on fd %d", pollfd); | |
a0377dfe | 2454 | LTTNG_ASSERT(stream->wait_fd == pollfd); |
03e43155 MD |
2455 | |
2456 | do { | |
2457 | health_code_update(); | |
2458 | ||
6f9449c2 | 2459 | len = ctx->on_buffer_ready(stream, ctx, false); |
03e43155 MD |
2460 | /* |
2461 | * We don't check the return value here since if we get | |
83f4233d | 2462 | * a negative len, it means an error occurred thus we |
03e43155 MD |
2463 | * simply remove it from the poll set and free the |
2464 | * stream. | |
2465 | */ | |
2466 | } while (len > 0); | |
2467 | ||
2468 | /* It's ok to have an unavailable sub-buffer */ | |
2469 | if (len < 0 && len != -EAGAIN && len != -ENODATA) { | |
2470 | /* Clean up stream from consumer and free it. */ | |
2471 | lttng_poll_del(&events, stream->wait_fd); | |
2472 | consumer_del_metadata_stream(stream, metadata_ht); | |
2473 | } | |
2474 | } else if (revents & (LPOLLERR | LPOLLHUP)) { | |
e316aad5 | 2475 | DBG("Metadata fd %d is hup|err.", pollfd); |
fa29bfbf SM |
2476 | if (!stream->hangup_flush_done && |
2477 | (the_consumer_data.type == LTTNG_CONSUMER32_UST || | |
2478 | the_consumer_data.type == | |
2479 | LTTNG_CONSUMER64_UST)) { | |
fb3a43a9 DG |
2480 | DBG("Attempting to flush and consume the UST buffers"); |
2481 | lttng_ustconsumer_on_stream_hangup(stream); | |
2482 | ||
2483 | /* We just flushed the stream now read it. */ | |
4bb94b75 | 2484 | do { |
9ce5646a MD |
2485 | health_code_update(); |
2486 | ||
6f9449c2 | 2487 | len = ctx->on_buffer_ready(stream, ctx, false); |
4bb94b75 DG |
2488 | /* |
2489 | * We don't check the return value here since if we get | |
83f4233d | 2490 | * a negative len, it means an error occurred thus we |
4bb94b75 DG |
2491 | * simply remove it from the poll set and free the |
2492 | * stream. | |
2493 | */ | |
2494 | } while (len > 0); | |
fb3a43a9 DG |
2495 | } |
2496 | ||
fb3a43a9 | 2497 | lttng_poll_del(&events, stream->wait_fd); |
e316aad5 DG |
2498 | /* |
2499 | * This call update the channel states, closes file descriptors | |
2500 | * and securely free the stream. | |
2501 | */ | |
2502 | consumer_del_metadata_stream(stream, metadata_ht); | |
03e43155 MD |
2503 | } else { |
2504 | ERR("Unexpected poll events %u for sock %d", revents, pollfd); | |
6f2f1a70 | 2505 | rcu_read_unlock(); |
03e43155 | 2506 | goto end; |
fb3a43a9 | 2507 | } |
e316aad5 | 2508 | /* Release RCU lock for the stream looked up */ |
d09e1200 | 2509 | rcu_read_unlock(); |
fb3a43a9 DG |
2510 | } |
2511 | } | |
2512 | ||
1fc79fb4 MD |
2513 | /* All is OK */ |
2514 | err = 0; | |
fb3a43a9 DG |
2515 | end: |
2516 | DBG("Metadata poll thread exiting"); | |
fb3a43a9 | 2517 | |
d8ef542d MD |
2518 | lttng_poll_clean(&events); |
2519 | end_poll: | |
2d57de81 | 2520 | error_testpoint: |
1fc79fb4 MD |
2521 | if (err) { |
2522 | health_error(); | |
2523 | ERR("Health error occurred in %s", __func__); | |
2524 | } | |
2525 | health_unregister(health_consumerd); | |
fb3a43a9 DG |
2526 | rcu_unregister_thread(); |
2527 | return NULL; | |
2528 | } | |
2529 | ||
3bd1e081 | 2530 | /* |
e4421fec | 2531 | * This thread polls the fds in the set to consume the data and write |
3bd1e081 MD |
2532 | * it to tracefile if necessary. |
2533 | */ | |
7d980def | 2534 | void *consumer_thread_data_poll(void *data) |
3bd1e081 | 2535 | { |
1fc79fb4 | 2536 | int num_rdy, num_hup, high_prio, ret, i, err = -1; |
3bd1e081 MD |
2537 | struct pollfd *pollfd = NULL; |
2538 | /* local view of the streams */ | |
c869f647 | 2539 | struct lttng_consumer_stream **local_stream = NULL, *new_stream = NULL; |
3bd1e081 | 2540 | /* local view of consumer_data.fds_count */ |
8bdcc002 JG |
2541 | int nb_fd = 0; |
2542 | /* 2 for the consumer_data_pipe and wake up pipe */ | |
2543 | const int nb_pipes_fd = 2; | |
9a2fcf78 JD |
2544 | /* Number of FDs with CONSUMER_ENDPOINT_INACTIVE but still open. */ |
2545 | int nb_inactive_fd = 0; | |
97535efa | 2546 | struct lttng_consumer_local_data *ctx = (lttng_consumer_local_data *) data; |
00e2e675 | 2547 | ssize_t len; |
3bd1e081 | 2548 | |
e7b994a3 DG |
2549 | rcu_register_thread(); |
2550 | ||
1fc79fb4 MD |
2551 | health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_DATA); |
2552 | ||
2d57de81 MD |
2553 | if (testpoint(consumerd_thread_data)) { |
2554 | goto error_testpoint; | |
2555 | } | |
2556 | ||
9ce5646a MD |
2557 | health_code_update(); |
2558 | ||
97535efa | 2559 | local_stream = (lttng_consumer_stream **) zmalloc(sizeof(struct lttng_consumer_stream *)); |
4df6c8cb MD |
2560 | if (local_stream == NULL) { |
2561 | PERROR("local_stream malloc"); | |
2562 | goto end; | |
2563 | } | |
3bd1e081 MD |
2564 | |
2565 | while (1) { | |
9ce5646a MD |
2566 | health_code_update(); |
2567 | ||
3bd1e081 MD |
2568 | high_prio = 0; |
2569 | num_hup = 0; | |
2570 | ||
2571 | /* | |
e4421fec | 2572 | * the fds set has been updated, we need to update our |
3bd1e081 MD |
2573 | * local array as well |
2574 | */ | |
fa29bfbf SM |
2575 | pthread_mutex_lock(&the_consumer_data.lock); |
2576 | if (the_consumer_data.need_update) { | |
0e428499 DG |
2577 | free(pollfd); |
2578 | pollfd = NULL; | |
2579 | ||
2580 | free(local_stream); | |
2581 | local_stream = NULL; | |
3bd1e081 | 2582 | |
8bdcc002 | 2583 | /* Allocate for all fds */ |
97535efa | 2584 | pollfd = (struct pollfd *) zmalloc((the_consumer_data.stream_count + |
fa29bfbf SM |
2585 | nb_pipes_fd) * |
2586 | sizeof(struct pollfd)); | |
3bd1e081 | 2587 | if (pollfd == NULL) { |
7a57cf92 | 2588 | PERROR("pollfd malloc"); |
fa29bfbf | 2589 | pthread_mutex_unlock(&the_consumer_data.lock); |
3bd1e081 MD |
2590 | goto end; |
2591 | } | |
2592 | ||
97535efa | 2593 | local_stream = (lttng_consumer_stream **) zmalloc((the_consumer_data.stream_count + |
fa29bfbf | 2594 | nb_pipes_fd) * |
747f8642 | 2595 | sizeof(struct lttng_consumer_stream *)); |
3bd1e081 | 2596 | if (local_stream == NULL) { |
7a57cf92 | 2597 | PERROR("local_stream malloc"); |
fa29bfbf | 2598 | pthread_mutex_unlock(&the_consumer_data.lock); |
3bd1e081 MD |
2599 | goto end; |
2600 | } | |
ffe60014 | 2601 | ret = update_poll_array(ctx, &pollfd, local_stream, |
9a2fcf78 | 2602 | data_ht, &nb_inactive_fd); |
3bd1e081 MD |
2603 | if (ret < 0) { |
2604 | ERR("Error in allocating pollfd or local_outfds"); | |
f73fabfd | 2605 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR); |
fa29bfbf | 2606 | pthread_mutex_unlock(&the_consumer_data.lock); |
3bd1e081 MD |
2607 | goto end; |
2608 | } | |
2609 | nb_fd = ret; | |
fa29bfbf | 2610 | the_consumer_data.need_update = 0; |
3bd1e081 | 2611 | } |
fa29bfbf | 2612 | pthread_mutex_unlock(&the_consumer_data.lock); |
3bd1e081 | 2613 | |
4078b776 | 2614 | /* No FDs and consumer_quit, consumer_cleanup the thread */ |
9a2fcf78 JD |
2615 | if (nb_fd == 0 && nb_inactive_fd == 0 && |
2616 | CMM_LOAD_SHARED(consumer_quit) == 1) { | |
1fc79fb4 | 2617 | err = 0; /* All is OK */ |
4078b776 MD |
2618 | goto end; |
2619 | } | |
3bd1e081 | 2620 | /* poll on the array of fds */ |
88f2b785 | 2621 | restart: |
261de637 | 2622 | DBG("polling on %d fd", nb_fd + nb_pipes_fd); |
cf0bcb51 JG |
2623 | if (testpoint(consumerd_thread_data_poll)) { |
2624 | goto end; | |
2625 | } | |
9ce5646a | 2626 | health_poll_entry(); |
261de637 | 2627 | num_rdy = poll(pollfd, nb_fd + nb_pipes_fd, -1); |
9ce5646a | 2628 | health_poll_exit(); |
3bd1e081 MD |
2629 | DBG("poll num_rdy : %d", num_rdy); |
2630 | if (num_rdy == -1) { | |
88f2b785 MD |
2631 | /* |
2632 | * Restart interrupted system call. | |
2633 | */ | |
2634 | if (errno == EINTR) { | |
2635 | goto restart; | |
2636 | } | |
7a57cf92 | 2637 | PERROR("Poll error"); |
f73fabfd | 2638 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR); |
3bd1e081 MD |
2639 | goto end; |
2640 | } else if (num_rdy == 0) { | |
2641 | DBG("Polling thread timed out"); | |
2642 | goto end; | |
2643 | } | |
2644 | ||
80957876 JG |
2645 | if (caa_unlikely(data_consumption_paused)) { |
2646 | DBG("Data consumption paused, sleeping..."); | |
2647 | sleep(1); | |
2648 | goto restart; | |
2649 | } | |
2650 | ||
3bd1e081 | 2651 | /* |
50f8ae69 | 2652 | * If the consumer_data_pipe triggered poll go directly to the |
00e2e675 DG |
2653 | * beginning of the loop to update the array. We want to prioritize |
2654 | * array update over low-priority reads. | |
3bd1e081 | 2655 | */ |
509bb1cf | 2656 | if (pollfd[nb_fd].revents & (POLLIN | POLLPRI)) { |
ab30f567 | 2657 | ssize_t pipe_readlen; |
04fdd819 | 2658 | |
50f8ae69 | 2659 | DBG("consumer_data_pipe wake up"); |
acdb9057 DG |
2660 | pipe_readlen = lttng_pipe_read(ctx->consumer_data_pipe, |
2661 | &new_stream, sizeof(new_stream)); | |
6cd525e8 MD |
2662 | if (pipe_readlen < sizeof(new_stream)) { |
2663 | PERROR("Consumer data pipe"); | |
23f5f35d DG |
2664 | /* Continue so we can at least handle the current stream(s). */ |
2665 | continue; | |
2666 | } | |
c869f647 DG |
2667 | |
2668 | /* | |
2669 | * If the stream is NULL, just ignore it. It's also possible that | |
2670 | * the sessiond poll thread changed the consumer_quit state and is | |
2671 | * waking us up to test it. | |
2672 | */ | |
2673 | if (new_stream == NULL) { | |
8994307f | 2674 | validate_endpoint_status_data_stream(); |
c869f647 DG |
2675 | continue; |
2676 | } | |
2677 | ||
c869f647 | 2678 | /* Continue to update the local streams and handle prio ones */ |
3bd1e081 MD |
2679 | continue; |
2680 | } | |
2681 | ||
02b3d176 DG |
2682 | /* Handle wakeup pipe. */ |
2683 | if (pollfd[nb_fd + 1].revents & (POLLIN | POLLPRI)) { | |
2684 | char dummy; | |
2685 | ssize_t pipe_readlen; | |
2686 | ||
2687 | pipe_readlen = lttng_pipe_read(ctx->consumer_wakeup_pipe, &dummy, | |
2688 | sizeof(dummy)); | |
2689 | if (pipe_readlen < 0) { | |
2690 | PERROR("Consumer data wakeup pipe"); | |
2691 | } | |
2692 | /* We've been awakened to handle stream(s). */ | |
2693 | ctx->has_wakeup = 0; | |
2694 | } | |
2695 | ||
3bd1e081 MD |
2696 | /* Take care of high priority channels first. */ |
2697 | for (i = 0; i < nb_fd; i++) { | |
9ce5646a MD |
2698 | health_code_update(); |
2699 | ||
9617607b DG |
2700 | if (local_stream[i] == NULL) { |
2701 | continue; | |
2702 | } | |
fb3a43a9 | 2703 | if (pollfd[i].revents & POLLPRI) { |
d41f73b7 MD |
2704 | DBG("Urgent read on fd %d", pollfd[i].fd); |
2705 | high_prio = 1; | |
6f9449c2 | 2706 | len = ctx->on_buffer_ready(local_stream[i], ctx, false); |
d41f73b7 | 2707 | /* it's ok to have an unavailable sub-buffer */ |
b64403e3 | 2708 | if (len < 0 && len != -EAGAIN && len != -ENODATA) { |
ab1027f4 DG |
2709 | /* Clean the stream and free it. */ |
2710 | consumer_del_stream(local_stream[i], data_ht); | |
9617607b | 2711 | local_stream[i] = NULL; |
4078b776 MD |
2712 | } else if (len > 0) { |
2713 | local_stream[i]->data_read = 1; | |
d41f73b7 | 2714 | } |
3bd1e081 MD |
2715 | } |
2716 | } | |
2717 | ||
4078b776 MD |
2718 | /* |
2719 | * If we read high prio channel in this loop, try again | |
2720 | * for more high prio data. | |
2721 | */ | |
2722 | if (high_prio) { | |
3bd1e081 MD |
2723 | continue; |
2724 | } | |
2725 | ||
2726 | /* Take care of low priority channels. */ | |
4078b776 | 2727 | for (i = 0; i < nb_fd; i++) { |
9ce5646a MD |
2728 | health_code_update(); |
2729 | ||
9617607b DG |
2730 | if (local_stream[i] == NULL) { |
2731 | continue; | |
2732 | } | |
4078b776 | 2733 | if ((pollfd[i].revents & POLLIN) || |
02b3d176 DG |
2734 | local_stream[i]->hangup_flush_done || |
2735 | local_stream[i]->has_data) { | |
4078b776 | 2736 | DBG("Normal read on fd %d", pollfd[i].fd); |
6f9449c2 | 2737 | len = ctx->on_buffer_ready(local_stream[i], ctx, false); |
4078b776 | 2738 | /* it's ok to have an unavailable sub-buffer */ |
b64403e3 | 2739 | if (len < 0 && len != -EAGAIN && len != -ENODATA) { |
ab1027f4 DG |
2740 | /* Clean the stream and free it. */ |
2741 | consumer_del_stream(local_stream[i], data_ht); | |
9617607b | 2742 | local_stream[i] = NULL; |
4078b776 MD |
2743 | } else if (len > 0) { |
2744 | local_stream[i]->data_read = 1; | |
2745 | } | |
2746 | } | |
2747 | } | |
2748 | ||
2749 | /* Handle hangup and errors */ | |
2750 | for (i = 0; i < nb_fd; i++) { | |
9ce5646a MD |
2751 | health_code_update(); |
2752 | ||
9617607b DG |
2753 | if (local_stream[i] == NULL) { |
2754 | continue; | |
2755 | } | |
4078b776 MD |
2756 | if (!local_stream[i]->hangup_flush_done |
2757 | && (pollfd[i].revents & (POLLHUP | POLLERR | POLLNVAL)) | |
fa29bfbf SM |
2758 | && (the_consumer_data.type == LTTNG_CONSUMER32_UST |
2759 | || the_consumer_data.type == LTTNG_CONSUMER64_UST)) { | |
4078b776 | 2760 | DBG("fd %d is hup|err|nval. Attempting flush and read.", |
9617607b | 2761 | pollfd[i].fd); |
4078b776 MD |
2762 | lttng_ustconsumer_on_stream_hangup(local_stream[i]); |
2763 | /* Attempt read again, for the data we just flushed. */ | |
2764 | local_stream[i]->data_read = 1; | |
2765 | } | |
2766 | /* | |
2767 | * If the poll flag is HUP/ERR/NVAL and we have | |
2768 | * read no data in this pass, we can remove the | |
2769 | * stream from its hash table. | |
2770 | */ | |
2771 | if ((pollfd[i].revents & POLLHUP)) { | |
2772 | DBG("Polling fd %d tells it has hung up.", pollfd[i].fd); | |
2773 | if (!local_stream[i]->data_read) { | |
43c34bc3 | 2774 | consumer_del_stream(local_stream[i], data_ht); |
9617607b | 2775 | local_stream[i] = NULL; |
4078b776 MD |
2776 | num_hup++; |
2777 | } | |
2778 | } else if (pollfd[i].revents & POLLERR) { | |
2779 | ERR("Error returned in polling fd %d.", pollfd[i].fd); | |
2780 | if (!local_stream[i]->data_read) { | |
43c34bc3 | 2781 | consumer_del_stream(local_stream[i], data_ht); |
9617607b | 2782 | local_stream[i] = NULL; |
4078b776 MD |
2783 | num_hup++; |
2784 | } | |
2785 | } else if (pollfd[i].revents & POLLNVAL) { | |
2786 | ERR("Polling fd %d tells fd is not open.", pollfd[i].fd); | |
2787 | if (!local_stream[i]->data_read) { | |
43c34bc3 | 2788 | consumer_del_stream(local_stream[i], data_ht); |
9617607b | 2789 | local_stream[i] = NULL; |
4078b776 | 2790 | num_hup++; |
3bd1e081 MD |
2791 | } |
2792 | } | |
9617607b DG |
2793 | if (local_stream[i] != NULL) { |
2794 | local_stream[i]->data_read = 0; | |
2795 | } | |
3bd1e081 MD |
2796 | } |
2797 | } | |
1fc79fb4 MD |
2798 | /* All is OK */ |
2799 | err = 0; | |
3bd1e081 MD |
2800 | end: |
2801 | DBG("polling thread exiting"); | |
0e428499 DG |
2802 | free(pollfd); |
2803 | free(local_stream); | |
fb3a43a9 DG |
2804 | |
2805 | /* | |
2806 | * Close the write side of the pipe so epoll_wait() in | |
7d980def DG |
2807 | * consumer_thread_metadata_poll can catch it. The thread is monitoring the |
2808 | * read side of the pipe. If we close them both, epoll_wait strangely does | |
2809 | * not return and could create a endless wait period if the pipe is the | |
2810 | * only tracked fd in the poll set. The thread will take care of closing | |
2811 | * the read side. | |
fb3a43a9 | 2812 | */ |
13886d2d | 2813 | (void) lttng_pipe_write_close(ctx->consumer_metadata_pipe); |
fb3a43a9 | 2814 | |
2d57de81 | 2815 | error_testpoint: |
1fc79fb4 MD |
2816 | if (err) { |
2817 | health_error(); | |
2818 | ERR("Health error occurred in %s", __func__); | |
2819 | } | |
2820 | health_unregister(health_consumerd); | |
2821 | ||
e7b994a3 | 2822 | rcu_unregister_thread(); |
3bd1e081 MD |
2823 | return NULL; |
2824 | } | |
2825 | ||
d8ef542d MD |
2826 | /* |
2827 | * Close wake-up end of each stream belonging to the channel. This will | |
2828 | * allow the poll() on the stream read-side to detect when the | |
2829 | * write-side (application) finally closes them. | |
2830 | */ | |
2831 | static | |
2832 | void consumer_close_channel_streams(struct lttng_consumer_channel *channel) | |
2833 | { | |
2834 | struct lttng_ht *ht; | |
2835 | struct lttng_consumer_stream *stream; | |
2836 | struct lttng_ht_iter iter; | |
2837 | ||
fa29bfbf | 2838 | ht = the_consumer_data.stream_per_chan_id_ht; |
d8ef542d MD |
2839 | |
2840 | rcu_read_lock(); | |
2841 | cds_lfht_for_each_entry_duplicate(ht->ht, | |
2842 | ht->hash_fct(&channel->key, lttng_ht_seed), | |
2843 | ht->match_fct, &channel->key, | |
2844 | &iter.iter, stream, node_channel_id.node) { | |
f2ad556d MD |
2845 | /* |
2846 | * Protect against teardown with mutex. | |
2847 | */ | |
2848 | pthread_mutex_lock(&stream->lock); | |
2849 | if (cds_lfht_is_node_deleted(&stream->node.node)) { | |
2850 | goto next; | |
2851 | } | |
fa29bfbf | 2852 | switch (the_consumer_data.type) { |
d8ef542d MD |
2853 | case LTTNG_CONSUMER_KERNEL: |
2854 | break; | |
2855 | case LTTNG_CONSUMER32_UST: | |
2856 | case LTTNG_CONSUMER64_UST: | |
b4a650f3 DG |
2857 | if (stream->metadata_flag) { |
2858 | /* Safe and protected by the stream lock. */ | |
2859 | lttng_ustconsumer_close_metadata(stream->chan); | |
2860 | } else { | |
2861 | /* | |
2862 | * Note: a mutex is taken internally within | |
2863 | * liblttng-ust-ctl to protect timer wakeup_fd | |
2864 | * use from concurrent close. | |
2865 | */ | |
2866 | lttng_ustconsumer_close_stream_wakeup(stream); | |
2867 | } | |
d8ef542d MD |
2868 | break; |
2869 | default: | |
2870 | ERR("Unknown consumer_data type"); | |
a0377dfe | 2871 | abort(); |
d8ef542d | 2872 | } |
f2ad556d MD |
2873 | next: |
2874 | pthread_mutex_unlock(&stream->lock); | |
d8ef542d MD |
2875 | } |
2876 | rcu_read_unlock(); | |
2877 | } | |
2878 | ||
2879 | static void destroy_channel_ht(struct lttng_ht *ht) | |
2880 | { | |
2881 | struct lttng_ht_iter iter; | |
2882 | struct lttng_consumer_channel *channel; | |
2883 | int ret; | |
2884 | ||
2885 | if (ht == NULL) { | |
2886 | return; | |
2887 | } | |
2888 | ||
2889 | rcu_read_lock(); | |
2890 | cds_lfht_for_each_entry(ht->ht, &iter.iter, channel, wait_fd_node.node) { | |
2891 | ret = lttng_ht_del(ht, &iter); | |
a0377dfe | 2892 | LTTNG_ASSERT(ret != 0); |
d8ef542d MD |
2893 | } |
2894 | rcu_read_unlock(); | |
2895 | ||
2896 | lttng_ht_destroy(ht); | |
2897 | } | |
2898 | ||
2899 | /* | |
2900 | * This thread polls the channel fds to detect when they are being | |
2901 | * closed. It closes all related streams if the channel is detected as | |
2902 | * closed. It is currently only used as a shim layer for UST because the | |
2903 | * consumerd needs to keep the per-stream wakeup end of pipes open for | |
2904 | * periodical flush. | |
2905 | */ | |
2906 | void *consumer_thread_channel_poll(void *data) | |
2907 | { | |
1fc79fb4 | 2908 | int ret, i, pollfd, err = -1; |
d8ef542d MD |
2909 | uint32_t revents, nb_fd; |
2910 | struct lttng_consumer_channel *chan = NULL; | |
2911 | struct lttng_ht_iter iter; | |
2912 | struct lttng_ht_node_u64 *node; | |
2913 | struct lttng_poll_event events; | |
97535efa | 2914 | struct lttng_consumer_local_data *ctx = (lttng_consumer_local_data *) data; |
d8ef542d MD |
2915 | struct lttng_ht *channel_ht; |
2916 | ||
2917 | rcu_register_thread(); | |
2918 | ||
1fc79fb4 MD |
2919 | health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_CHANNEL); |
2920 | ||
2d57de81 MD |
2921 | if (testpoint(consumerd_thread_channel)) { |
2922 | goto error_testpoint; | |
2923 | } | |
2924 | ||
9ce5646a MD |
2925 | health_code_update(); |
2926 | ||
d8ef542d MD |
2927 | channel_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); |
2928 | if (!channel_ht) { | |
2929 | /* ENOMEM at this point. Better to bail out. */ | |
2930 | goto end_ht; | |
2931 | } | |
2932 | ||
2933 | DBG("Thread channel poll started"); | |
2934 | ||
2935 | /* Size is set to 1 for the consumer_channel pipe */ | |
2936 | ret = lttng_poll_create(&events, 2, LTTNG_CLOEXEC); | |
2937 | if (ret < 0) { | |
2938 | ERR("Poll set creation failed"); | |
2939 | goto end_poll; | |
2940 | } | |
2941 | ||
2942 | ret = lttng_poll_add(&events, ctx->consumer_channel_pipe[0], LPOLLIN); | |
2943 | if (ret < 0) { | |
2944 | goto end; | |
2945 | } | |
2946 | ||
2947 | /* Main loop */ | |
2948 | DBG("Channel main loop started"); | |
2949 | ||
2950 | while (1) { | |
d8ef542d | 2951 | restart: |
7fa2082e MD |
2952 | health_code_update(); |
2953 | DBG("Channel poll wait"); | |
9ce5646a | 2954 | health_poll_entry(); |
d8ef542d | 2955 | ret = lttng_poll_wait(&events, -1); |
7fa2082e MD |
2956 | DBG("Channel poll return from wait with %d fd(s)", |
2957 | LTTNG_POLL_GETNB(&events)); | |
9ce5646a | 2958 | health_poll_exit(); |
40063ead | 2959 | DBG("Channel event caught in thread"); |
d8ef542d MD |
2960 | if (ret < 0) { |
2961 | if (errno == EINTR) { | |
40063ead | 2962 | ERR("Poll EINTR caught"); |
d8ef542d MD |
2963 | goto restart; |
2964 | } | |
d9607cd7 MD |
2965 | if (LTTNG_POLL_GETNB(&events) == 0) { |
2966 | err = 0; /* All is OK */ | |
2967 | } | |
d8ef542d MD |
2968 | goto end; |
2969 | } | |
2970 | ||
2971 | nb_fd = ret; | |
2972 | ||
2973 | /* From here, the event is a channel wait fd */ | |
2974 | for (i = 0; i < nb_fd; i++) { | |
9ce5646a MD |
2975 | health_code_update(); |
2976 | ||
d8ef542d MD |
2977 | revents = LTTNG_POLL_GETEV(&events, i); |
2978 | pollfd = LTTNG_POLL_GETFD(&events, i); | |
2979 | ||
d8ef542d | 2980 | if (pollfd == ctx->consumer_channel_pipe[0]) { |
03e43155 | 2981 | if (revents & LPOLLIN) { |
d8ef542d | 2982 | enum consumer_channel_action action; |
a0cbdd2e | 2983 | uint64_t key; |
d8ef542d | 2984 | |
a0cbdd2e | 2985 | ret = read_channel_pipe(ctx, &chan, &key, &action); |
d8ef542d | 2986 | if (ret <= 0) { |
03e43155 MD |
2987 | if (ret < 0) { |
2988 | ERR("Error reading channel pipe"); | |
2989 | } | |
2990 | lttng_poll_del(&events, ctx->consumer_channel_pipe[0]); | |
d8ef542d MD |
2991 | continue; |
2992 | } | |
2993 | ||
2994 | switch (action) { | |
2995 | case CONSUMER_CHANNEL_ADD: | |
2996 | DBG("Adding channel %d to poll set", | |
2997 | chan->wait_fd); | |
2998 | ||
2999 | lttng_ht_node_init_u64(&chan->wait_fd_node, | |
3000 | chan->wait_fd); | |
c7260a81 | 3001 | rcu_read_lock(); |
d8ef542d MD |
3002 | lttng_ht_add_unique_u64(channel_ht, |
3003 | &chan->wait_fd_node); | |
c7260a81 | 3004 | rcu_read_unlock(); |
d8ef542d MD |
3005 | /* Add channel to the global poll events list */ |
3006 | lttng_poll_add(&events, chan->wait_fd, | |
03e43155 | 3007 | LPOLLERR | LPOLLHUP); |
d8ef542d | 3008 | break; |
a0cbdd2e MD |
3009 | case CONSUMER_CHANNEL_DEL: |
3010 | { | |
b4a650f3 DG |
3011 | /* |
3012 | * This command should never be called if the channel | |
3013 | * has streams monitored by either the data or metadata | |
3014 | * thread. The consumer only notify this thread with a | |
3015 | * channel del. command if it receives a destroy | |
3016 | * channel command from the session daemon that send it | |
3017 | * if a command prior to the GET_CHANNEL failed. | |
3018 | */ | |
3019 | ||
c7260a81 | 3020 | rcu_read_lock(); |
a0cbdd2e MD |
3021 | chan = consumer_find_channel(key); |
3022 | if (!chan) { | |
c7260a81 | 3023 | rcu_read_unlock(); |
a0cbdd2e MD |
3024 | ERR("UST consumer get channel key %" PRIu64 " not found for del channel", key); |
3025 | break; | |
3026 | } | |
3027 | lttng_poll_del(&events, chan->wait_fd); | |
f623cc0b | 3028 | iter.iter.node = &chan->wait_fd_node.node; |
a0cbdd2e | 3029 | ret = lttng_ht_del(channel_ht, &iter); |
a0377dfe | 3030 | LTTNG_ASSERT(ret == 0); |
a0cbdd2e | 3031 | |
fa29bfbf | 3032 | switch (the_consumer_data.type) { |
f2a444f1 DG |
3033 | case LTTNG_CONSUMER_KERNEL: |
3034 | break; | |
3035 | case LTTNG_CONSUMER32_UST: | |
3036 | case LTTNG_CONSUMER64_UST: | |
212d67a2 DG |
3037 | health_code_update(); |
3038 | /* Destroy streams that might have been left in the stream list. */ | |
3039 | clean_channel_stream_list(chan); | |
f2a444f1 DG |
3040 | break; |
3041 | default: | |
3042 | ERR("Unknown consumer_data type"); | |
a0377dfe | 3043 | abort(); |
f2a444f1 DG |
3044 | } |
3045 | ||
a0cbdd2e MD |
3046 | /* |
3047 | * Release our own refcount. Force channel deletion even if | |
3048 | * streams were not initialized. | |
3049 | */ | |
3050 | if (!uatomic_sub_return(&chan->refcount, 1)) { | |
3051 | consumer_del_channel(chan); | |
3052 | } | |
c7260a81 | 3053 | rcu_read_unlock(); |
a0cbdd2e MD |
3054 | goto restart; |
3055 | } | |
d8ef542d MD |
3056 | case CONSUMER_CHANNEL_QUIT: |
3057 | /* | |
3058 | * Remove the pipe from the poll set and continue the loop | |
3059 | * since their might be data to consume. | |
3060 | */ | |
3061 | lttng_poll_del(&events, ctx->consumer_channel_pipe[0]); | |
3062 | continue; | |
3063 | default: | |
3064 | ERR("Unknown action"); | |
3065 | break; | |
3066 | } | |
03e43155 MD |
3067 | } else if (revents & (LPOLLERR | LPOLLHUP)) { |
3068 | DBG("Channel thread pipe hung up"); | |
3069 | /* | |
3070 | * Remove the pipe from the poll set and continue the loop | |
3071 | * since their might be data to consume. | |
3072 | */ | |
3073 | lttng_poll_del(&events, ctx->consumer_channel_pipe[0]); | |
3074 | continue; | |
3075 | } else { | |
3076 | ERR("Unexpected poll events %u for sock %d", revents, pollfd); | |
3077 | goto end; | |
d8ef542d MD |
3078 | } |
3079 | ||
3080 | /* Handle other stream */ | |
3081 | continue; | |
3082 | } | |
3083 | ||
3084 | rcu_read_lock(); | |
3085 | { | |
3086 | uint64_t tmp_id = (uint64_t) pollfd; | |
3087 | ||
3088 | lttng_ht_lookup(channel_ht, &tmp_id, &iter); | |
3089 | } | |
3090 | node = lttng_ht_iter_get_node_u64(&iter); | |
a0377dfe | 3091 | LTTNG_ASSERT(node); |
d8ef542d MD |
3092 | |
3093 | chan = caa_container_of(node, struct lttng_consumer_channel, | |
3094 | wait_fd_node); | |
3095 | ||
3096 | /* Check for error event */ | |
3097 | if (revents & (LPOLLERR | LPOLLHUP)) { | |
3098 | DBG("Channel fd %d is hup|err.", pollfd); | |
3099 | ||
3100 | lttng_poll_del(&events, chan->wait_fd); | |
3101 | ret = lttng_ht_del(channel_ht, &iter); | |
a0377dfe | 3102 | LTTNG_ASSERT(ret == 0); |
b4a650f3 DG |
3103 | |
3104 | /* | |
3105 | * This will close the wait fd for each stream associated to | |
3106 | * this channel AND monitored by the data/metadata thread thus | |
3107 | * will be clean by the right thread. | |
3108 | */ | |
d8ef542d | 3109 | consumer_close_channel_streams(chan); |
f2ad556d MD |
3110 | |
3111 | /* Release our own refcount */ | |
3112 | if (!uatomic_sub_return(&chan->refcount, 1) | |
3113 | && !uatomic_read(&chan->nb_init_stream_left)) { | |
3114 | consumer_del_channel(chan); | |
3115 | } | |
03e43155 MD |
3116 | } else { |
3117 | ERR("Unexpected poll events %u for sock %d", revents, pollfd); | |
3118 | rcu_read_unlock(); | |
3119 | goto end; | |
d8ef542d MD |
3120 | } |
3121 | ||
3122 | /* Release RCU lock for the channel looked up */ | |
3123 | rcu_read_unlock(); | |
3124 | } | |
3125 | } | |
3126 | ||
1fc79fb4 MD |
3127 | /* All is OK */ |
3128 | err = 0; | |
d8ef542d MD |
3129 | end: |
3130 | lttng_poll_clean(&events); | |
3131 | end_poll: | |
3132 | destroy_channel_ht(channel_ht); | |
3133 | end_ht: | |
2d57de81 | 3134 | error_testpoint: |
d8ef542d | 3135 | DBG("Channel poll thread exiting"); |
1fc79fb4 MD |
3136 | if (err) { |
3137 | health_error(); | |
3138 | ERR("Health error occurred in %s", __func__); | |
3139 | } | |
3140 | health_unregister(health_consumerd); | |
d8ef542d MD |
3141 | rcu_unregister_thread(); |
3142 | return NULL; | |
3143 | } | |
3144 | ||
331744e3 JD |
3145 | static int set_metadata_socket(struct lttng_consumer_local_data *ctx, |
3146 | struct pollfd *sockpoll, int client_socket) | |
3147 | { | |
3148 | int ret; | |
3149 | ||
a0377dfe FD |
3150 | LTTNG_ASSERT(ctx); |
3151 | LTTNG_ASSERT(sockpoll); | |
331744e3 | 3152 | |
84382d49 MD |
3153 | ret = lttng_consumer_poll_socket(sockpoll); |
3154 | if (ret) { | |
331744e3 JD |
3155 | goto error; |
3156 | } | |
3157 | DBG("Metadata connection on client_socket"); | |
3158 | ||
3159 | /* Blocking call, waiting for transmission */ | |
3160 | ctx->consumer_metadata_socket = lttcomm_accept_unix_sock(client_socket); | |
3161 | if (ctx->consumer_metadata_socket < 0) { | |
3162 | WARN("On accept metadata"); | |
3163 | ret = -1; | |
3164 | goto error; | |
3165 | } | |
3166 | ret = 0; | |
3167 | ||
3168 | error: | |
3169 | return ret; | |
3170 | } | |
3171 | ||
3bd1e081 MD |
3172 | /* |
3173 | * This thread listens on the consumerd socket and receives the file | |
3174 | * descriptors from the session daemon. | |
3175 | */ | |
7d980def | 3176 | void *consumer_thread_sessiond_poll(void *data) |
3bd1e081 | 3177 | { |
1fc79fb4 | 3178 | int sock = -1, client_socket, ret, err = -1; |
3bd1e081 MD |
3179 | /* |
3180 | * structure to poll for incoming data on communication socket avoids | |
3181 | * making blocking sockets. | |
3182 | */ | |
3183 | struct pollfd consumer_sockpoll[2]; | |
97535efa | 3184 | struct lttng_consumer_local_data *ctx = (lttng_consumer_local_data *) data; |
3bd1e081 | 3185 | |
e7b994a3 DG |
3186 | rcu_register_thread(); |
3187 | ||
1fc79fb4 MD |
3188 | health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_SESSIOND); |
3189 | ||
2d57de81 MD |
3190 | if (testpoint(consumerd_thread_sessiond)) { |
3191 | goto error_testpoint; | |
3192 | } | |
3193 | ||
9ce5646a MD |
3194 | health_code_update(); |
3195 | ||
3bd1e081 MD |
3196 | DBG("Creating command socket %s", ctx->consumer_command_sock_path); |
3197 | unlink(ctx->consumer_command_sock_path); | |
3198 | client_socket = lttcomm_create_unix_sock(ctx->consumer_command_sock_path); | |
3199 | if (client_socket < 0) { | |
3200 | ERR("Cannot create command socket"); | |
3201 | goto end; | |
3202 | } | |
3203 | ||
3204 | ret = lttcomm_listen_unix_sock(client_socket); | |
3205 | if (ret < 0) { | |
3206 | goto end; | |
3207 | } | |
3208 | ||
32258573 | 3209 | DBG("Sending ready command to lttng-sessiond"); |
f73fabfd | 3210 | ret = lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_COMMAND_SOCK_READY); |
3bd1e081 MD |
3211 | /* return < 0 on error, but == 0 is not fatal */ |
3212 | if (ret < 0) { | |
32258573 | 3213 | ERR("Error sending ready command to lttng-sessiond"); |
3bd1e081 MD |
3214 | goto end; |
3215 | } | |
3216 | ||
3bd1e081 MD |
3217 | /* prepare the FDs to poll : to client socket and the should_quit pipe */ |
3218 | consumer_sockpoll[0].fd = ctx->consumer_should_quit[0]; | |
3219 | consumer_sockpoll[0].events = POLLIN | POLLPRI; | |
3220 | consumer_sockpoll[1].fd = client_socket; | |
3221 | consumer_sockpoll[1].events = POLLIN | POLLPRI; | |
3222 | ||
84382d49 MD |
3223 | ret = lttng_consumer_poll_socket(consumer_sockpoll); |
3224 | if (ret) { | |
3225 | if (ret > 0) { | |
3226 | /* should exit */ | |
3227 | err = 0; | |
3228 | } | |
3bd1e081 MD |
3229 | goto end; |
3230 | } | |
3231 | DBG("Connection on client_socket"); | |
3232 | ||
3233 | /* Blocking call, waiting for transmission */ | |
3234 | sock = lttcomm_accept_unix_sock(client_socket); | |
534d2592 | 3235 | if (sock < 0) { |
3bd1e081 MD |
3236 | WARN("On accept"); |
3237 | goto end; | |
3238 | } | |
3bd1e081 | 3239 | |
331744e3 JD |
3240 | /* |
3241 | * Setup metadata socket which is the second socket connection on the | |
3242 | * command unix socket. | |
3243 | */ | |
3244 | ret = set_metadata_socket(ctx, consumer_sockpoll, client_socket); | |
84382d49 MD |
3245 | if (ret) { |
3246 | if (ret > 0) { | |
3247 | /* should exit */ | |
3248 | err = 0; | |
3249 | } | |
331744e3 JD |
3250 | goto end; |
3251 | } | |
3252 | ||
d96f09c6 DG |
3253 | /* This socket is not useful anymore. */ |
3254 | ret = close(client_socket); | |
3255 | if (ret < 0) { | |
3256 | PERROR("close client_socket"); | |
3257 | } | |
3258 | client_socket = -1; | |
3259 | ||
3bd1e081 MD |
3260 | /* update the polling structure to poll on the established socket */ |
3261 | consumer_sockpoll[1].fd = sock; | |
3262 | consumer_sockpoll[1].events = POLLIN | POLLPRI; | |
3263 | ||
3264 | while (1) { | |
9ce5646a MD |
3265 | health_code_update(); |
3266 | ||
3267 | health_poll_entry(); | |
3268 | ret = lttng_consumer_poll_socket(consumer_sockpoll); | |
3269 | health_poll_exit(); | |
84382d49 MD |
3270 | if (ret) { |
3271 | if (ret > 0) { | |
3272 | /* should exit */ | |
3273 | err = 0; | |
3274 | } | |
3bd1e081 MD |
3275 | goto end; |
3276 | } | |
3277 | DBG("Incoming command on sock"); | |
3278 | ret = lttng_consumer_recv_cmd(ctx, sock, consumer_sockpoll); | |
4cbc1a04 DG |
3279 | if (ret <= 0) { |
3280 | /* | |
3281 | * This could simply be a session daemon quitting. Don't output | |
3282 | * ERR() here. | |
3283 | */ | |
3284 | DBG("Communication interrupted on command socket"); | |
41ba6035 | 3285 | err = 0; |
3bd1e081 MD |
3286 | goto end; |
3287 | } | |
10211f5c | 3288 | if (CMM_LOAD_SHARED(consumer_quit)) { |
3bd1e081 | 3289 | DBG("consumer_thread_receive_fds received quit from signal"); |
1fc79fb4 | 3290 | err = 0; /* All is OK */ |
3bd1e081 MD |
3291 | goto end; |
3292 | } | |
a1ed855a | 3293 | DBG("Received command on sock"); |
3bd1e081 | 3294 | } |
1fc79fb4 MD |
3295 | /* All is OK */ |
3296 | err = 0; | |
3297 | ||
3bd1e081 | 3298 | end: |
ffe60014 | 3299 | DBG("Consumer thread sessiond poll exiting"); |
3bd1e081 | 3300 | |
d88aee68 DG |
3301 | /* |
3302 | * Close metadata streams since the producer is the session daemon which | |
3303 | * just died. | |
3304 | * | |
3305 | * NOTE: for now, this only applies to the UST tracer. | |
3306 | */ | |
6d574024 | 3307 | lttng_consumer_close_all_metadata(); |
d88aee68 | 3308 | |
3bd1e081 MD |
3309 | /* |
3310 | * when all fds have hung up, the polling thread | |
3311 | * can exit cleanly | |
3312 | */ | |
10211f5c | 3313 | CMM_STORE_SHARED(consumer_quit, 1); |
3bd1e081 | 3314 | |
04fdd819 | 3315 | /* |
c869f647 | 3316 | * Notify the data poll thread to poll back again and test the |
8994307f | 3317 | * consumer_quit state that we just set so to quit gracefully. |
04fdd819 | 3318 | */ |
acdb9057 | 3319 | notify_thread_lttng_pipe(ctx->consumer_data_pipe); |
c869f647 | 3320 | |
a0cbdd2e | 3321 | notify_channel_pipe(ctx, NULL, -1, CONSUMER_CHANNEL_QUIT); |
d8ef542d | 3322 | |
5c635c72 MD |
3323 | notify_health_quit_pipe(health_quit_pipe); |
3324 | ||
d96f09c6 DG |
3325 | /* Cleaning up possibly open sockets. */ |
3326 | if (sock >= 0) { | |
3327 | ret = close(sock); | |
3328 | if (ret < 0) { | |
3329 | PERROR("close sock sessiond poll"); | |
3330 | } | |
3331 | } | |
3332 | if (client_socket >= 0) { | |
38476d24 | 3333 | ret = close(client_socket); |
d96f09c6 DG |
3334 | if (ret < 0) { |
3335 | PERROR("close client_socket sessiond poll"); | |
3336 | } | |
3337 | } | |
3338 | ||
2d57de81 | 3339 | error_testpoint: |
1fc79fb4 MD |
3340 | if (err) { |
3341 | health_error(); | |
3342 | ERR("Health error occurred in %s", __func__); | |
3343 | } | |
3344 | health_unregister(health_consumerd); | |
3345 | ||
e7b994a3 | 3346 | rcu_unregister_thread(); |
3bd1e081 MD |
3347 | return NULL; |
3348 | } | |
d41f73b7 | 3349 | |
503fefca JG |
3350 | static int post_consume(struct lttng_consumer_stream *stream, |
3351 | const struct stream_subbuffer *subbuffer, | |
3352 | struct lttng_consumer_local_data *ctx) | |
f96af312 | 3353 | { |
503fefca | 3354 | size_t i; |
f96af312 | 3355 | int ret = 0; |
503fefca JG |
3356 | const size_t count = lttng_dynamic_array_get_count( |
3357 | &stream->read_subbuffer_ops.post_consume_cbs); | |
f96af312 | 3358 | |
503fefca JG |
3359 | for (i = 0; i < count; i++) { |
3360 | const post_consume_cb op = *(post_consume_cb *) lttng_dynamic_array_get_element( | |
3361 | &stream->read_subbuffer_ops.post_consume_cbs, | |
3362 | i); | |
3363 | ||
3364 | ret = op(stream, subbuffer, ctx); | |
3365 | if (ret) { | |
3366 | goto end; | |
f96af312 | 3367 | } |
f96af312 | 3368 | } |
f96af312 JG |
3369 | end: |
3370 | return ret; | |
3371 | } | |
3372 | ||
4078b776 | 3373 | ssize_t lttng_consumer_read_subbuffer(struct lttng_consumer_stream *stream, |
6f9449c2 JG |
3374 | struct lttng_consumer_local_data *ctx, |
3375 | bool locked_by_caller) | |
d41f73b7 | 3376 | { |
12bddd1d | 3377 | ssize_t ret, written_bytes = 0; |
23d56598 | 3378 | int rotation_ret; |
6f9449c2 | 3379 | struct stream_subbuffer subbuffer = {}; |
b6797c8e | 3380 | enum get_next_subbuffer_status get_next_status; |
74251bb8 | 3381 | |
6f9449c2 JG |
3382 | if (!locked_by_caller) { |
3383 | stream->read_subbuffer_ops.lock(stream); | |
947bd097 JR |
3384 | } else { |
3385 | stream->read_subbuffer_ops.assert_locked(stream); | |
6f9449c2 JG |
3386 | } |
3387 | ||
3388 | if (stream->read_subbuffer_ops.on_wake_up) { | |
3389 | ret = stream->read_subbuffer_ops.on_wake_up(stream); | |
3390 | if (ret) { | |
3391 | goto end; | |
3392 | } | |
94d49140 | 3393 | } |
74251bb8 | 3394 | |
23d56598 JG |
3395 | /* |
3396 | * If the stream was flagged to be ready for rotation before we extract | |
3397 | * the next packet, rotate it now. | |
3398 | */ | |
3399 | if (stream->rotate_ready) { | |
3400 | DBG("Rotate stream before consuming data"); | |
3401 | ret = lttng_consumer_rotate_stream(ctx, stream); | |
3402 | if (ret < 0) { | |
3403 | ERR("Stream rotation error before consuming data"); | |
3404 | goto end; | |
3405 | } | |
3406 | } | |
3407 | ||
b6797c8e JG |
3408 | get_next_status = stream->read_subbuffer_ops.get_next_subbuffer( |
3409 | stream, &subbuffer); | |
3410 | switch (get_next_status) { | |
3411 | case GET_NEXT_SUBBUFFER_STATUS_OK: | |
3412 | break; | |
3413 | case GET_NEXT_SUBBUFFER_STATUS_NO_DATA: | |
3414 | /* Not an error. */ | |
3415 | ret = 0; | |
3416 | goto sleep_stream; | |
3417 | case GET_NEXT_SUBBUFFER_STATUS_ERROR: | |
3418 | ret = -1; | |
6f9449c2 | 3419 | goto end; |
b6797c8e JG |
3420 | default: |
3421 | abort(); | |
d41f73b7 | 3422 | } |
74251bb8 | 3423 | |
6f9449c2 JG |
3424 | ret = stream->read_subbuffer_ops.pre_consume_subbuffer( |
3425 | stream, &subbuffer); | |
3426 | if (ret) { | |
3427 | goto error_put_subbuf; | |
3428 | } | |
3429 | ||
3430 | written_bytes = stream->read_subbuffer_ops.consume_subbuffer( | |
3431 | ctx, stream, &subbuffer); | |
514775d9 FD |
3432 | if (written_bytes <= 0) { |
3433 | ERR("Error consuming subbuffer: (%zd)", written_bytes); | |
3434 | ret = (int) written_bytes; | |
3435 | goto error_put_subbuf; | |
6f9449c2 JG |
3436 | } |
3437 | ||
3438 | ret = stream->read_subbuffer_ops.put_next_subbuffer(stream, &subbuffer); | |
3439 | if (ret) { | |
23d56598 JG |
3440 | goto end; |
3441 | } | |
3442 | ||
503fefca JG |
3443 | ret = post_consume(stream, &subbuffer, ctx); |
3444 | if (ret) { | |
3445 | goto end; | |
6f9449c2 JG |
3446 | } |
3447 | ||
23d56598 JG |
3448 | /* |
3449 | * After extracting the packet, we check if the stream is now ready to | |
3450 | * be rotated and perform the action immediately. | |
3451 | * | |
3452 | * Don't overwrite `ret` as callers expect the number of bytes | |
3453 | * consumed to be returned on success. | |
3454 | */ | |
3455 | rotation_ret = lttng_consumer_stream_is_rotate_ready(stream); | |
3456 | if (rotation_ret == 1) { | |
3457 | rotation_ret = lttng_consumer_rotate_stream(ctx, stream); | |
3458 | if (rotation_ret < 0) { | |
3459 | ret = rotation_ret; | |
3460 | ERR("Stream rotation error after consuming data"); | |
3461 | goto end; | |
3462 | } | |
503fefca | 3463 | |
23d56598 JG |
3464 | } else if (rotation_ret < 0) { |
3465 | ret = rotation_ret; | |
3466 | ERR("Failed to check if stream was ready to rotate after consuming data"); | |
3467 | goto end; | |
3468 | } | |
3469 | ||
82e72193 | 3470 | sleep_stream: |
6f9449c2 JG |
3471 | if (stream->read_subbuffer_ops.on_sleep) { |
3472 | stream->read_subbuffer_ops.on_sleep(stream, ctx); | |
3473 | } | |
3474 | ||
3475 | ret = written_bytes; | |
23d56598 | 3476 | end: |
6f9449c2 JG |
3477 | if (!locked_by_caller) { |
3478 | stream->read_subbuffer_ops.unlock(stream); | |
94d49140 | 3479 | } |
6f9449c2 | 3480 | |
74251bb8 | 3481 | return ret; |
6f9449c2 JG |
3482 | error_put_subbuf: |
3483 | (void) stream->read_subbuffer_ops.put_next_subbuffer(stream, &subbuffer); | |
3484 | goto end; | |
d41f73b7 MD |
3485 | } |
3486 | ||
3487 | int lttng_consumer_on_recv_stream(struct lttng_consumer_stream *stream) | |
3488 | { | |
fa29bfbf | 3489 | switch (the_consumer_data.type) { |
d41f73b7 MD |
3490 | case LTTNG_CONSUMER_KERNEL: |
3491 | return lttng_kconsumer_on_recv_stream(stream); | |
7753dea8 MD |
3492 | case LTTNG_CONSUMER32_UST: |
3493 | case LTTNG_CONSUMER64_UST: | |
d41f73b7 MD |
3494 | return lttng_ustconsumer_on_recv_stream(stream); |
3495 | default: | |
3496 | ERR("Unknown consumer_data type"); | |
a0377dfe | 3497 | abort(); |
d41f73b7 MD |
3498 | return -ENOSYS; |
3499 | } | |
3500 | } | |
e4421fec DG |
3501 | |
3502 | /* | |
3503 | * Allocate and set consumer data hash tables. | |
3504 | */ | |
282dadbc | 3505 | int lttng_consumer_init(void) |
e4421fec | 3506 | { |
fa29bfbf SM |
3507 | the_consumer_data.channel_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); |
3508 | if (!the_consumer_data.channel_ht) { | |
282dadbc MD |
3509 | goto error; |
3510 | } | |
3511 | ||
fa29bfbf | 3512 | the_consumer_data.channels_by_session_id_ht = |
5c3892a6 | 3513 | lttng_ht_new(0, LTTNG_HT_TYPE_U64); |
fa29bfbf | 3514 | if (!the_consumer_data.channels_by_session_id_ht) { |
5c3892a6 JG |
3515 | goto error; |
3516 | } | |
3517 | ||
fa29bfbf SM |
3518 | the_consumer_data.relayd_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); |
3519 | if (!the_consumer_data.relayd_ht) { | |
282dadbc MD |
3520 | goto error; |
3521 | } | |
3522 | ||
fa29bfbf SM |
3523 | the_consumer_data.stream_list_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); |
3524 | if (!the_consumer_data.stream_list_ht) { | |
282dadbc MD |
3525 | goto error; |
3526 | } | |
3527 | ||
fa29bfbf SM |
3528 | the_consumer_data.stream_per_chan_id_ht = |
3529 | lttng_ht_new(0, LTTNG_HT_TYPE_U64); | |
3530 | if (!the_consumer_data.stream_per_chan_id_ht) { | |
282dadbc MD |
3531 | goto error; |
3532 | } | |
3533 | ||
3534 | data_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); | |
3535 | if (!data_ht) { | |
3536 | goto error; | |
3537 | } | |
3538 | ||
3539 | metadata_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64); | |
3540 | if (!metadata_ht) { | |
3541 | goto error; | |
3542 | } | |
3543 | ||
fa29bfbf SM |
3544 | the_consumer_data.chunk_registry = lttng_trace_chunk_registry_create(); |
3545 | if (!the_consumer_data.chunk_registry) { | |
28cc88f3 JG |
3546 | goto error; |
3547 | } | |
3548 | ||
282dadbc MD |
3549 | return 0; |
3550 | ||
3551 | error: | |
3552 | return -1; | |
e4421fec | 3553 | } |
7735ef9e DG |
3554 | |
3555 | /* | |
3556 | * Process the ADD_RELAYD command receive by a consumer. | |
3557 | * | |
3558 | * This will create a relayd socket pair and add it to the relayd hash table. | |
3559 | * The caller MUST acquire a RCU read side lock before calling it. | |
3560 | */ | |
2527bf85 | 3561 | void consumer_add_relayd_socket(uint64_t net_seq_idx, int sock_type, |
7735ef9e | 3562 | struct lttng_consumer_local_data *ctx, int sock, |
6151a90f | 3563 | struct pollfd *consumer_sockpoll, |
d3e2ba59 JD |
3564 | struct lttcomm_relayd_sock *relayd_sock, uint64_t sessiond_id, |
3565 | uint64_t relayd_session_id) | |
7735ef9e | 3566 | { |
cd2b09ed | 3567 | int fd = -1, ret = -1, relayd_created = 0; |
0c759fc9 | 3568 | enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS; |
d4298c99 | 3569 | struct consumer_relayd_sock_pair *relayd = NULL; |
7735ef9e | 3570 | |
a0377dfe FD |
3571 | LTTNG_ASSERT(ctx); |
3572 | LTTNG_ASSERT(relayd_sock); | |
6151a90f | 3573 | |
da009f2c | 3574 | DBG("Consumer adding relayd socket (idx: %" PRIu64 ")", net_seq_idx); |
7735ef9e DG |
3575 | |
3576 | /* Get relayd reference if exists. */ | |
3577 | relayd = consumer_find_relayd(net_seq_idx); | |
3578 | if (relayd == NULL) { | |
a0377dfe | 3579 | LTTNG_ASSERT(sock_type == LTTNG_STREAM_CONTROL); |
7735ef9e DG |
3580 | /* Not found. Allocate one. */ |
3581 | relayd = consumer_allocate_relayd_sock_pair(net_seq_idx); | |
3582 | if (relayd == NULL) { | |
618a6a28 MD |
3583 | ret_code = LTTCOMM_CONSUMERD_ENOMEM; |
3584 | goto error; | |
0d08d75e | 3585 | } else { |
30319bcb | 3586 | relayd->sessiond_session_id = sessiond_id; |
0d08d75e | 3587 | relayd_created = 1; |
7735ef9e | 3588 | } |
0d08d75e DG |
3589 | |
3590 | /* | |
3591 | * This code path MUST continue to the consumer send status message to | |
3592 | * we can notify the session daemon and continue our work without | |
3593 | * killing everything. | |
3594 | */ | |
da009f2c MD |
3595 | } else { |
3596 | /* | |
3597 | * relayd key should never be found for control socket. | |
3598 | */ | |
a0377dfe | 3599 | LTTNG_ASSERT(sock_type != LTTNG_STREAM_CONTROL); |
0d08d75e DG |
3600 | } |
3601 | ||
3602 | /* First send a status message before receiving the fds. */ | |
0c759fc9 | 3603 | ret = consumer_send_status_msg(sock, LTTCOMM_CONSUMERD_SUCCESS); |
618a6a28 | 3604 | if (ret < 0) { |
0d08d75e | 3605 | /* Somehow, the session daemon is not responding anymore. */ |
618a6a28 MD |
3606 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL); |
3607 | goto error_nosignal; | |
7735ef9e DG |
3608 | } |
3609 | ||
3610 | /* Poll on consumer socket. */ | |
84382d49 MD |
3611 | ret = lttng_consumer_poll_socket(consumer_sockpoll); |
3612 | if (ret) { | |
3613 | /* Needing to exit in the middle of a command: error. */ | |
0d08d75e | 3614 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR); |
618a6a28 | 3615 | goto error_nosignal; |
7735ef9e DG |
3616 | } |
3617 | ||
3618 | /* Get relayd socket from session daemon */ | |
3619 | ret = lttcomm_recv_fds_unix_sock(sock, &fd, 1); | |
3620 | if (ret != sizeof(fd)) { | |
4028eeb9 | 3621 | fd = -1; /* Just in case it gets set with an invalid value. */ |
0d08d75e DG |
3622 | |
3623 | /* | |
3624 | * Failing to receive FDs might indicate a major problem such as | |
3625 | * reaching a fd limit during the receive where the kernel returns a | |
3626 | * MSG_CTRUNC and fails to cleanup the fd in the queue. Any case, we | |
3627 | * don't take any chances and stop everything. | |
3628 | * | |
3629 | * XXX: Feature request #558 will fix that and avoid this possible | |
3630 | * issue when reaching the fd limit. | |
3631 | */ | |
3632 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_ERROR_RECV_FD); | |
618a6a28 | 3633 | ret_code = LTTCOMM_CONSUMERD_ERROR_RECV_FD; |
f50f23d9 DG |
3634 | goto error; |
3635 | } | |
3636 | ||
7735ef9e DG |
3637 | /* Copy socket information and received FD */ |
3638 | switch (sock_type) { | |
3639 | case LTTNG_STREAM_CONTROL: | |
3640 | /* Copy received lttcomm socket */ | |
6151a90f JD |
3641 | lttcomm_copy_sock(&relayd->control_sock.sock, &relayd_sock->sock); |
3642 | ret = lttcomm_create_sock(&relayd->control_sock.sock); | |
4028eeb9 | 3643 | /* Handle create_sock error. */ |
f66c074c | 3644 | if (ret < 0) { |
618a6a28 | 3645 | ret_code = LTTCOMM_CONSUMERD_ENOMEM; |
4028eeb9 | 3646 | goto error; |
f66c074c | 3647 | } |
da009f2c MD |
3648 | /* |
3649 | * Close the socket created internally by | |
3650 | * lttcomm_create_sock, so we can replace it by the one | |
3651 | * received from sessiond. | |
3652 | */ | |
3653 | if (close(relayd->control_sock.sock.fd)) { | |
3654 | PERROR("close"); | |
3655 | } | |
7735ef9e DG |
3656 | |
3657 | /* Assign new file descriptor */ | |
6151a90f JD |
3658 | relayd->control_sock.sock.fd = fd; |
3659 | /* Assign version values. */ | |
3660 | relayd->control_sock.major = relayd_sock->major; | |
3661 | relayd->control_sock.minor = relayd_sock->minor; | |
c5b6f4f0 | 3662 | |
d3e2ba59 | 3663 | relayd->relayd_session_id = relayd_session_id; |
c5b6f4f0 | 3664 | |
7735ef9e DG |
3665 | break; |
3666 | case LTTNG_STREAM_DATA: | |
3667 | /* Copy received lttcomm socket */ | |
6151a90f JD |
3668 | lttcomm_copy_sock(&relayd->data_sock.sock, &relayd_sock->sock); |
3669 | ret = lttcomm_create_sock(&relayd->data_sock.sock); | |
4028eeb9 | 3670 | /* Handle create_sock error. */ |
f66c074c | 3671 | if (ret < 0) { |
618a6a28 | 3672 | ret_code = LTTCOMM_CONSUMERD_ENOMEM; |
4028eeb9 | 3673 | goto error; |
f66c074c | 3674 | } |
da009f2c MD |
3675 | /* |
3676 | * Close the socket created internally by | |
3677 | * lttcomm_create_sock, so we can replace it by the one | |
3678 | * received from sessiond. | |
3679 | */ | |
3680 | if (close(relayd->data_sock.sock.fd)) { | |
3681 | PERROR("close"); | |
3682 | } | |
7735ef9e DG |
3683 | |
3684 | /* Assign new file descriptor */ | |
6151a90f JD |
3685 | relayd->data_sock.sock.fd = fd; |
3686 | /* Assign version values. */ | |
3687 | relayd->data_sock.major = relayd_sock->major; | |
3688 | relayd->data_sock.minor = relayd_sock->minor; | |
7735ef9e DG |
3689 | break; |
3690 | default: | |
3691 | ERR("Unknown relayd socket type (%d)", sock_type); | |
618a6a28 | 3692 | ret_code = LTTCOMM_CONSUMERD_FATAL; |
7735ef9e DG |
3693 | goto error; |
3694 | } | |
3695 | ||
d88aee68 | 3696 | DBG("Consumer %s socket created successfully with net idx %" PRIu64 " (fd: %d)", |
7735ef9e DG |
3697 | sock_type == LTTNG_STREAM_CONTROL ? "control" : "data", |
3698 | relayd->net_seq_idx, fd); | |
39d9954c FD |
3699 | /* |
3700 | * We gave the ownership of the fd to the relayd structure. Set the | |
3701 | * fd to -1 so we don't call close() on it in the error path below. | |
3702 | */ | |
3703 | fd = -1; | |
7735ef9e | 3704 | |
618a6a28 MD |
3705 | /* We successfully added the socket. Send status back. */ |
3706 | ret = consumer_send_status_msg(sock, ret_code); | |
3707 | if (ret < 0) { | |
3708 | /* Somehow, the session daemon is not responding anymore. */ | |
3709 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL); | |
3710 | goto error_nosignal; | |
3711 | } | |
3712 | ||
7735ef9e DG |
3713 | /* |
3714 | * Add relayd socket pair to consumer data hashtable. If object already | |
3715 | * exists or on error, the function gracefully returns. | |
3716 | */ | |
9276e5c8 | 3717 | relayd->ctx = ctx; |
d09e1200 | 3718 | add_relayd(relayd); |
7735ef9e DG |
3719 | |
3720 | /* All good! */ | |
2527bf85 | 3721 | return; |
7735ef9e DG |
3722 | |
3723 | error: | |
618a6a28 MD |
3724 | if (consumer_send_status_msg(sock, ret_code) < 0) { |
3725 | lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL); | |
3726 | } | |
3727 | ||
3728 | error_nosignal: | |
4028eeb9 DG |
3729 | /* Close received socket if valid. */ |
3730 | if (fd >= 0) { | |
3731 | if (close(fd)) { | |
3732 | PERROR("close received socket"); | |
3733 | } | |
3734 | } | |
cd2b09ed DG |
3735 | |
3736 | if (relayd_created) { | |
cd2b09ed DG |
3737 | free(relayd); |
3738 | } | |
7735ef9e | 3739 | } |
ca22feea | 3740 | |
f7079f67 DG |
3741 | /* |
3742 | * Search for a relayd associated to the session id and return the reference. | |
3743 | * | |
3744 | * A rcu read side lock MUST be acquire before calling this function and locked | |
3745 | * until the relayd object is no longer necessary. | |
3746 | */ | |
3747 | static struct consumer_relayd_sock_pair *find_relayd_by_session_id(uint64_t id) | |
3748 | { | |
3749 | struct lttng_ht_iter iter; | |
f7079f67 | 3750 | struct consumer_relayd_sock_pair *relayd = NULL; |
f7079f67 DG |
3751 | |
3752 | /* Iterate over all relayd since they are indexed by net_seq_idx. */ | |
fa29bfbf SM |
3753 | cds_lfht_for_each_entry(the_consumer_data.relayd_ht->ht, &iter.iter, |
3754 | relayd, node.node) { | |
18261bd1 DG |
3755 | /* |
3756 | * Check by sessiond id which is unique here where the relayd session | |
3757 | * id might not be when having multiple relayd. | |
3758 | */ | |
3759 | if (relayd->sessiond_session_id == id) { | |
f7079f67 | 3760 | /* Found the relayd. There can be only one per id. */ |
18261bd1 | 3761 | goto found; |
f7079f67 DG |
3762 | } |
3763 | } | |
3764 | ||
18261bd1 DG |
3765 | return NULL; |
3766 | ||
3767 | found: | |
f7079f67 DG |
3768 | return relayd; |
3769 | } | |
3770 | ||
ca22feea DG |
3771 | /* |
3772 | * Check if for a given session id there is still data needed to be extract | |
3773 | * from the buffers. | |
3774 | * | |
6d805429 | 3775 | * Return 1 if data is pending or else 0 meaning ready to be read. |
ca22feea | 3776 | */ |
6d805429 | 3777 | int consumer_data_pending(uint64_t id) |
ca22feea DG |
3778 | { |
3779 | int ret; | |
3780 | struct lttng_ht_iter iter; | |
3781 | struct lttng_ht *ht; | |
3782 | struct lttng_consumer_stream *stream; | |
f7079f67 | 3783 | struct consumer_relayd_sock_pair *relayd = NULL; |
6d805429 | 3784 | int (*data_pending)(struct lttng_consumer_stream *); |
ca22feea | 3785 | |
6d805429 | 3786 | DBG("Consumer data pending command on session id %" PRIu64, id); |
ca22feea | 3787 | |
6f6eda74 | 3788 | rcu_read_lock(); |
fa29bfbf | 3789 | pthread_mutex_lock(&the_consumer_data.lock); |
ca22feea | 3790 | |
fa29bfbf | 3791 | switch (the_consumer_data.type) { |
ca22feea | 3792 | case LTTNG_CONSUMER_KERNEL: |
6d805429 | 3793 | data_pending = lttng_kconsumer_data_pending; |
ca22feea DG |
3794 | break; |
3795 | case LTTNG_CONSUMER32_UST: | |
3796 | case LTTNG_CONSUMER64_UST: | |
6d805429 | 3797 | data_pending = lttng_ustconsumer_data_pending; |
ca22feea DG |
3798 | break; |
3799 | default: | |
3800 | ERR("Unknown consumer data type"); | |
a0377dfe | 3801 | abort(); |
ca22feea DG |
3802 | } |
3803 | ||
3804 | /* Ease our life a bit */ | |
fa29bfbf | 3805 | ht = the_consumer_data.stream_list_ht; |
ca22feea | 3806 | |
c8f59ee5 | 3807 | cds_lfht_for_each_entry_duplicate(ht->ht, |
d88aee68 DG |
3808 | ht->hash_fct(&id, lttng_ht_seed), |
3809 | ht->match_fct, &id, | |
ca22feea | 3810 | &iter.iter, stream, node_session_id.node) { |
bb586a6e | 3811 | pthread_mutex_lock(&stream->lock); |
ca22feea | 3812 | |
4e9a4686 DG |
3813 | /* |
3814 | * A removed node from the hash table indicates that the stream has | |
3815 | * been deleted thus having a guarantee that the buffers are closed | |
3816 | * on the consumer side. However, data can still be transmitted | |
3817 | * over the network so don't skip the relayd check. | |
3818 | */ | |
3819 | ret = cds_lfht_is_node_deleted(&stream->node.node); | |
3820 | if (!ret) { | |
3821 | /* Check the stream if there is data in the buffers. */ | |
6d805429 DG |
3822 | ret = data_pending(stream); |
3823 | if (ret == 1) { | |
4e9a4686 | 3824 | pthread_mutex_unlock(&stream->lock); |
f7079f67 | 3825 | goto data_pending; |
4e9a4686 DG |
3826 | } |
3827 | } | |
3828 | ||
d9f0c7c7 JR |
3829 | pthread_mutex_unlock(&stream->lock); |
3830 | } | |
3831 | ||
3832 | relayd = find_relayd_by_session_id(id); | |
3833 | if (relayd) { | |
3834 | unsigned int is_data_inflight = 0; | |
3835 | ||
3836 | /* Send init command for data pending. */ | |
3837 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
3838 | ret = relayd_begin_data_pending(&relayd->control_sock, | |
3839 | relayd->relayd_session_id); | |
3840 | if (ret < 0) { | |
3841 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
3842 | /* Communication error thus the relayd so no data pending. */ | |
3843 | goto data_not_pending; | |
3844 | } | |
3845 | ||
3846 | cds_lfht_for_each_entry_duplicate(ht->ht, | |
3847 | ht->hash_fct(&id, lttng_ht_seed), | |
3848 | ht->match_fct, &id, | |
3849 | &iter.iter, stream, node_session_id.node) { | |
c8f59ee5 | 3850 | if (stream->metadata_flag) { |
ad7051c0 DG |
3851 | ret = relayd_quiescent_control(&relayd->control_sock, |
3852 | stream->relayd_stream_id); | |
c8f59ee5 | 3853 | } else { |
6d805429 | 3854 | ret = relayd_data_pending(&relayd->control_sock, |
39df6d9f DG |
3855 | stream->relayd_stream_id, |
3856 | stream->next_net_seq_num - 1); | |
c8f59ee5 | 3857 | } |
d9f0c7c7 JR |
3858 | |
3859 | if (ret == 1) { | |
3860 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
3861 | goto data_pending; | |
3862 | } else if (ret < 0) { | |
9276e5c8 JR |
3863 | ERR("Relayd data pending failed. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
3864 | lttng_consumer_cleanup_relayd(relayd); | |
3865 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
9276e5c8 JR |
3866 | goto data_not_pending; |
3867 | } | |
c8f59ee5 | 3868 | } |
f7079f67 | 3869 | |
d9f0c7c7 | 3870 | /* Send end command for data pending. */ |
f7079f67 DG |
3871 | ret = relayd_end_data_pending(&relayd->control_sock, |
3872 | relayd->relayd_session_id, &is_data_inflight); | |
3873 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
bdd88757 | 3874 | if (ret < 0) { |
9276e5c8 JR |
3875 | ERR("Relayd end data pending failed. Cleaning up relayd %" PRIu64".", relayd->net_seq_idx); |
3876 | lttng_consumer_cleanup_relayd(relayd); | |
f7079f67 DG |
3877 | goto data_not_pending; |
3878 | } | |
bdd88757 DG |
3879 | if (is_data_inflight) { |
3880 | goto data_pending; | |
3881 | } | |
f7079f67 DG |
3882 | } |
3883 | ||
ca22feea | 3884 | /* |
f7079f67 DG |
3885 | * Finding _no_ node in the hash table and no inflight data means that the |
3886 | * stream(s) have been removed thus data is guaranteed to be available for | |
3887 | * analysis from the trace files. | |
ca22feea DG |
3888 | */ |
3889 | ||
f7079f67 | 3890 | data_not_pending: |
ca22feea | 3891 | /* Data is available to be read by a viewer. */ |
fa29bfbf | 3892 | pthread_mutex_unlock(&the_consumer_data.lock); |
c8f59ee5 | 3893 | rcu_read_unlock(); |
6d805429 | 3894 | return 0; |
ca22feea | 3895 | |
f7079f67 | 3896 | data_pending: |
ca22feea | 3897 | /* Data is still being extracted from buffers. */ |
fa29bfbf | 3898 | pthread_mutex_unlock(&the_consumer_data.lock); |
c8f59ee5 | 3899 | rcu_read_unlock(); |
6d805429 | 3900 | return 1; |
ca22feea | 3901 | } |
f50f23d9 DG |
3902 | |
3903 | /* | |
3904 | * Send a ret code status message to the sessiond daemon. | |
3905 | * | |
3906 | * Return the sendmsg() return value. | |
3907 | */ | |
3908 | int consumer_send_status_msg(int sock, int ret_code) | |
3909 | { | |
3910 | struct lttcomm_consumer_status_msg msg; | |
3911 | ||
53efb85a | 3912 | memset(&msg, 0, sizeof(msg)); |
97535efa | 3913 | msg.ret_code = (lttcomm_return_code) ret_code; |
f50f23d9 DG |
3914 | |
3915 | return lttcomm_send_unix_sock(sock, &msg, sizeof(msg)); | |
3916 | } | |
ffe60014 DG |
3917 | |
3918 | /* | |
3919 | * Send a channel status message to the sessiond daemon. | |
3920 | * | |
3921 | * Return the sendmsg() return value. | |
3922 | */ | |
3923 | int consumer_send_status_channel(int sock, | |
3924 | struct lttng_consumer_channel *channel) | |
3925 | { | |
3926 | struct lttcomm_consumer_status_channel msg; | |
3927 | ||
a0377dfe | 3928 | LTTNG_ASSERT(sock >= 0); |
ffe60014 | 3929 | |
53efb85a | 3930 | memset(&msg, 0, sizeof(msg)); |
ffe60014 | 3931 | if (!channel) { |
0c759fc9 | 3932 | msg.ret_code = LTTCOMM_CONSUMERD_CHANNEL_FAIL; |
ffe60014 | 3933 | } else { |
0c759fc9 | 3934 | msg.ret_code = LTTCOMM_CONSUMERD_SUCCESS; |
ffe60014 DG |
3935 | msg.key = channel->key; |
3936 | msg.stream_count = channel->streams.count; | |
3937 | } | |
3938 | ||
3939 | return lttcomm_send_unix_sock(sock, &msg, sizeof(msg)); | |
3940 | } | |
5c786ded | 3941 | |
d07ceecd MD |
3942 | unsigned long consumer_get_consume_start_pos(unsigned long consumed_pos, |
3943 | unsigned long produced_pos, uint64_t nb_packets_per_stream, | |
3944 | uint64_t max_sb_size) | |
5c786ded | 3945 | { |
d07ceecd | 3946 | unsigned long start_pos; |
5c786ded | 3947 | |
d07ceecd MD |
3948 | if (!nb_packets_per_stream) { |
3949 | return consumed_pos; /* Grab everything */ | |
3950 | } | |
1cbd136b | 3951 | start_pos = produced_pos - lttng_offset_align_floor(produced_pos, max_sb_size); |
d07ceecd MD |
3952 | start_pos -= max_sb_size * nb_packets_per_stream; |
3953 | if ((long) (start_pos - consumed_pos) < 0) { | |
3954 | return consumed_pos; /* Grab everything */ | |
3955 | } | |
3956 | return start_pos; | |
5c786ded | 3957 | } |
a1ae2ea5 | 3958 | |
c1dcb8bb JG |
3959 | /* Stream lock must be held by the caller. */ |
3960 | static int sample_stream_positions(struct lttng_consumer_stream *stream, | |
3961 | unsigned long *produced, unsigned long *consumed) | |
3962 | { | |
3963 | int ret; | |
3964 | ||
3965 | ASSERT_LOCKED(stream->lock); | |
3966 | ||
3967 | ret = lttng_consumer_sample_snapshot_positions(stream); | |
3968 | if (ret < 0) { | |
3969 | ERR("Failed to sample snapshot positions"); | |
3970 | goto end; | |
3971 | } | |
3972 | ||
3973 | ret = lttng_consumer_get_produced_snapshot(stream, produced); | |
3974 | if (ret < 0) { | |
3975 | ERR("Failed to sample produced position"); | |
3976 | goto end; | |
3977 | } | |
3978 | ||
3979 | ret = lttng_consumer_get_consumed_snapshot(stream, consumed); | |
3980 | if (ret < 0) { | |
3981 | ERR("Failed to sample consumed position"); | |
3982 | goto end; | |
3983 | } | |
3984 | ||
3985 | end: | |
3986 | return ret; | |
3987 | } | |
3988 | ||
b99a8d42 JD |
3989 | /* |
3990 | * Sample the rotate position for all the streams of a channel. If a stream | |
3991 | * is already at the rotate position (produced == consumed), we flag it as | |
3992 | * ready for rotation. The rotation of ready streams occurs after we have | |
3993 | * replied to the session daemon that we have finished sampling the positions. | |
92b7a7f8 | 3994 | * Must be called with RCU read-side lock held to ensure existence of channel. |
b99a8d42 JD |
3995 | * |
3996 | * Returns 0 on success, < 0 on error | |
3997 | */ | |
92b7a7f8 | 3998 | int lttng_consumer_rotate_channel(struct lttng_consumer_channel *channel, |
d2956687 | 3999 | uint64_t key, uint64_t relayd_id, uint32_t metadata, |
b99a8d42 JD |
4000 | struct lttng_consumer_local_data *ctx) |
4001 | { | |
4002 | int ret; | |
b99a8d42 JD |
4003 | struct lttng_consumer_stream *stream; |
4004 | struct lttng_ht_iter iter; | |
fa29bfbf | 4005 | struct lttng_ht *ht = the_consumer_data.stream_per_chan_id_ht; |
c35f9726 JG |
4006 | struct lttng_dynamic_array stream_rotation_positions; |
4007 | uint64_t next_chunk_id, stream_count = 0; | |
4008 | enum lttng_trace_chunk_status chunk_status; | |
4009 | const bool is_local_trace = relayd_id == -1ULL; | |
4010 | struct consumer_relayd_sock_pair *relayd = NULL; | |
4011 | bool rotating_to_new_chunk = true; | |
b32703d6 JG |
4012 | /* Array of `struct lttng_consumer_stream *` */ |
4013 | struct lttng_dynamic_pointer_array streams_packet_to_open; | |
4014 | size_t stream_idx; | |
b99a8d42 JD |
4015 | |
4016 | DBG("Consumer sample rotate position for channel %" PRIu64, key); | |
4017 | ||
c35f9726 JG |
4018 | lttng_dynamic_array_init(&stream_rotation_positions, |
4019 | sizeof(struct relayd_stream_rotation_position), NULL); | |
b32703d6 | 4020 | lttng_dynamic_pointer_array_init(&streams_packet_to_open, NULL); |
c35f9726 | 4021 | |
b99a8d42 JD |
4022 | rcu_read_lock(); |
4023 | ||
b99a8d42 | 4024 | pthread_mutex_lock(&channel->lock); |
a0377dfe | 4025 | LTTNG_ASSERT(channel->trace_chunk); |
c35f9726 JG |
4026 | chunk_status = lttng_trace_chunk_get_id(channel->trace_chunk, |
4027 | &next_chunk_id); | |
4028 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { | |
4029 | ret = -1; | |
4030 | goto end_unlock_channel; | |
4031 | } | |
b99a8d42 JD |
4032 | |
4033 | cds_lfht_for_each_entry_duplicate(ht->ht, | |
4034 | ht->hash_fct(&channel->key, lttng_ht_seed), | |
4035 | ht->match_fct, &channel->key, &iter.iter, | |
4036 | stream, node_channel_id.node) { | |
a40a503f | 4037 | unsigned long produced_pos = 0, consumed_pos = 0; |
b99a8d42 JD |
4038 | |
4039 | health_code_update(); | |
4040 | ||
4041 | /* | |
4042 | * Lock stream because we are about to change its state. | |
4043 | */ | |
4044 | pthread_mutex_lock(&stream->lock); | |
4045 | ||
c35f9726 JG |
4046 | if (stream->trace_chunk == stream->chan->trace_chunk) { |
4047 | rotating_to_new_chunk = false; | |
4048 | } | |
4049 | ||
a40a503f | 4050 | /* |
c1dcb8bb | 4051 | * Do not flush a packet when rotating from a NULL trace |
a9dde553 | 4052 | * chunk. The stream has no means to output data, and the prior |
c1dcb8bb JG |
4053 | * rotation which rotated to NULL performed that side-effect |
4054 | * already. No new data can be produced when a stream has no | |
4055 | * associated trace chunk (e.g. a stop followed by a rotate). | |
a40a503f | 4056 | */ |
a9dde553 | 4057 | if (stream->trace_chunk) { |
c1dcb8bb JG |
4058 | bool flush_active; |
4059 | ||
4060 | if (stream->metadata_flag) { | |
4061 | /* | |
4062 | * Don't produce an empty metadata packet, | |
4063 | * simply close the current one. | |
4064 | * | |
4065 | * Metadata is regenerated on every trace chunk | |
4066 | * switch; there is no concern that no data was | |
4067 | * produced. | |
4068 | */ | |
4069 | flush_active = true; | |
4070 | } else { | |
4071 | /* | |
4072 | * Only flush an empty packet if the "packet | |
4073 | * open" could not be performed on transition | |
4074 | * to a new trace chunk and no packets were | |
4075 | * consumed within the chunk's lifetime. | |
4076 | */ | |
4077 | if (stream->opened_packet_in_current_trace_chunk) { | |
4078 | flush_active = true; | |
4079 | } else { | |
4080 | /* | |
4081 | * Stream could have been full at the | |
4082 | * time of rotation, but then have had | |
4083 | * no activity at all. | |
4084 | * | |
4085 | * It is important to flush a packet | |
4086 | * to prevent 0-length files from being | |
4087 | * produced as most viewers choke on | |
4088 | * them. | |
4089 | * | |
4090 | * Unfortunately viewers will not be | |
4091 | * able to know that tracing was active | |
4092 | * for this stream during this trace | |
4093 | * chunk's lifetime. | |
4094 | */ | |
4095 | ret = sample_stream_positions(stream, &produced_pos, &consumed_pos); | |
4096 | if (ret) { | |
4097 | goto end_unlock_stream; | |
4098 | } | |
4099 | ||
4100 | /* | |
4101 | * Don't flush an empty packet if data | |
4102 | * was produced; it will be consumed | |
4103 | * before the rotation completes. | |
4104 | */ | |
4105 | flush_active = produced_pos != consumed_pos; | |
4106 | if (!flush_active) { | |
c1dcb8bb JG |
4107 | const char *trace_chunk_name; |
4108 | uint64_t trace_chunk_id; | |
4109 | ||
4110 | chunk_status = lttng_trace_chunk_get_name( | |
4111 | stream->trace_chunk, | |
4112 | &trace_chunk_name, | |
4113 | NULL); | |
4114 | if (chunk_status == LTTNG_TRACE_CHUNK_STATUS_NONE) { | |
4115 | trace_chunk_name = "none"; | |
4116 | } | |
4117 | ||
4118 | /* | |
4119 | * Consumer trace chunks are | |
4120 | * never anonymous. | |
4121 | */ | |
4122 | chunk_status = lttng_trace_chunk_get_id( | |
4123 | stream->trace_chunk, | |
4124 | &trace_chunk_id); | |
a0377dfe | 4125 | LTTNG_ASSERT(chunk_status == |
c1dcb8bb JG |
4126 | LTTNG_TRACE_CHUNK_STATUS_OK); |
4127 | ||
4128 | DBG("Unable to open packet for stream during trace chunk's lifetime. " | |
4129 | "Flushing an empty packet to prevent an empty file from being created: " | |
4130 | "stream id = %" PRIu64 ", trace chunk name = `%s`, trace chunk id = %" PRIu64, | |
4131 | stream->key, trace_chunk_name, trace_chunk_id); | |
4132 | } | |
4133 | } | |
4134 | } | |
4135 | ||
a9dde553 | 4136 | /* |
c1dcb8bb JG |
4137 | * Close the current packet before sampling the |
4138 | * ring buffer positions. | |
a9dde553 | 4139 | */ |
c1dcb8bb | 4140 | ret = consumer_stream_flush_buffer(stream, flush_active); |
a9dde553 MD |
4141 | if (ret < 0) { |
4142 | ERR("Failed to flush stream %" PRIu64 " during channel rotation", | |
4143 | stream->key); | |
4144 | goto end_unlock_stream; | |
4145 | } | |
b99a8d42 JD |
4146 | } |
4147 | ||
a40a503f MD |
4148 | ret = lttng_consumer_take_snapshot(stream); |
4149 | if (ret < 0 && ret != -ENODATA && ret != -EAGAIN) { | |
4150 | ERR("Failed to sample snapshot position during channel rotation"); | |
b99a8d42 JD |
4151 | goto end_unlock_stream; |
4152 | } | |
a40a503f MD |
4153 | if (!ret) { |
4154 | ret = lttng_consumer_get_produced_snapshot(stream, | |
4155 | &produced_pos); | |
4156 | if (ret < 0) { | |
4157 | ERR("Failed to sample produced position during channel rotation"); | |
4158 | goto end_unlock_stream; | |
4159 | } | |
b99a8d42 | 4160 | |
a40a503f MD |
4161 | ret = lttng_consumer_get_consumed_snapshot(stream, |
4162 | &consumed_pos); | |
4163 | if (ret < 0) { | |
4164 | ERR("Failed to sample consumed position during channel rotation"); | |
4165 | goto end_unlock_stream; | |
4166 | } | |
4167 | } | |
4168 | /* | |
4169 | * Align produced position on the start-of-packet boundary of the first | |
4170 | * packet going into the next trace chunk. | |
4171 | */ | |
1cbd136b | 4172 | produced_pos = lttng_align_floor(produced_pos, stream->max_sb_size); |
a40a503f | 4173 | if (consumed_pos == produced_pos) { |
f8528c7a MD |
4174 | DBG("Set rotate ready for stream %" PRIu64 " produced = %lu consumed = %lu", |
4175 | stream->key, produced_pos, consumed_pos); | |
b99a8d42 | 4176 | stream->rotate_ready = true; |
f8528c7a MD |
4177 | } else { |
4178 | DBG("Different consumed and produced positions " | |
4179 | "for stream %" PRIu64 " produced = %lu consumed = %lu", | |
4180 | stream->key, produced_pos, consumed_pos); | |
b99a8d42 | 4181 | } |
633d0182 | 4182 | /* |
a40a503f MD |
4183 | * The rotation position is based on the packet_seq_num of the |
4184 | * packet following the last packet that was consumed for this | |
4185 | * stream, incremented by the offset between produced and | |
4186 | * consumed positions. This rotation position is a lower bound | |
4187 | * (inclusive) at which the next trace chunk starts. Since it | |
4188 | * is a lower bound, it is OK if the packet_seq_num does not | |
4189 | * correspond exactly to the same packet identified by the | |
4190 | * consumed_pos, which can happen in overwrite mode. | |
633d0182 | 4191 | */ |
a40a503f MD |
4192 | if (stream->sequence_number_unavailable) { |
4193 | /* | |
4194 | * Rotation should never be performed on a session which | |
4195 | * interacts with a pre-2.8 lttng-modules, which does | |
4196 | * not implement packet sequence number. | |
4197 | */ | |
4198 | ERR("Failure to rotate stream %" PRIu64 ": sequence number unavailable", | |
b99a8d42 | 4199 | stream->key); |
a40a503f | 4200 | ret = -1; |
b99a8d42 JD |
4201 | goto end_unlock_stream; |
4202 | } | |
a40a503f MD |
4203 | stream->rotate_position = stream->last_sequence_number + 1 + |
4204 | ((produced_pos - consumed_pos) / stream->max_sb_size); | |
f8528c7a MD |
4205 | DBG("Set rotation position for stream %" PRIu64 " at position %" PRIu64, |
4206 | stream->key, stream->rotate_position); | |
b99a8d42 | 4207 | |
c35f9726 | 4208 | if (!is_local_trace) { |
633d0182 JG |
4209 | /* |
4210 | * The relay daemon control protocol expects a rotation | |
4211 | * position as "the sequence number of the first packet | |
a40a503f | 4212 | * _after_ the current trace chunk". |
633d0182 | 4213 | */ |
c35f9726 JG |
4214 | const struct relayd_stream_rotation_position position = { |
4215 | .stream_id = stream->relayd_stream_id, | |
a40a503f | 4216 | .rotate_at_seq_num = stream->rotate_position, |
c35f9726 JG |
4217 | }; |
4218 | ||
4219 | ret = lttng_dynamic_array_add_element( | |
4220 | &stream_rotation_positions, | |
4221 | &position); | |
4222 | if (ret) { | |
4223 | ERR("Failed to allocate stream rotation position"); | |
4224 | goto end_unlock_stream; | |
4225 | } | |
4226 | stream_count++; | |
4227 | } | |
f96af312 JG |
4228 | |
4229 | stream->opened_packet_in_current_trace_chunk = false; | |
4230 | ||
4231 | if (rotating_to_new_chunk && !stream->metadata_flag) { | |
4232 | /* | |
4233 | * Attempt to flush an empty packet as close to the | |
4234 | * rotation point as possible. In the event where a | |
4235 | * stream remains inactive after the rotation point, | |
4236 | * this ensures that the new trace chunk has a | |
4237 | * beginning timestamp set at the begining of the | |
4238 | * trace chunk instead of only creating an empty | |
4239 | * packet when the trace chunk is stopped. | |
4240 | * | |
4241 | * This indicates to the viewers that the stream | |
4242 | * was being recorded, but more importantly it | |
4243 | * allows viewers to determine a useable trace | |
4244 | * intersection. | |
4245 | * | |
4246 | * This presents a problem in the case where the | |
4247 | * ring-buffer is completely full. | |
4248 | * | |
4249 | * Consider the following scenario: | |
4250 | * - The consumption of data is slow (slow network, | |
4251 | * for instance), | |
4252 | * - The ring buffer is full, | |
4253 | * - A rotation is initiated, | |
4254 | * - The flush below does nothing (no space left to | |
4255 | * open a new packet), | |
4256 | * - The other streams rotate very soon, and new | |
4257 | * data is produced in the new chunk, | |
4258 | * - This stream completes its rotation long after the | |
4259 | * rotation was initiated | |
4260 | * - The session is stopped before any event can be | |
4261 | * produced in this stream's buffers. | |
4262 | * | |
4263 | * The resulting trace chunk will have a single packet | |
4264 | * temporaly at the end of the trace chunk for this | |
4265 | * stream making the stream intersection more narrow | |
4266 | * than it should be. | |
4267 | * | |
4268 | * To work-around this, an empty flush is performed | |
4269 | * after the first consumption of a packet during a | |
4270 | * rotation if open_packet fails. The idea is that | |
4271 | * consuming a packet frees enough space to switch | |
4272 | * packets in this scenario and allows the tracer to | |
4273 | * "stamp" the beginning of the new trace chunk at the | |
4274 | * earliest possible point. | |
b32703d6 JG |
4275 | * |
4276 | * The packet open is performed after the channel | |
4277 | * rotation to ensure that no attempt to open a packet | |
4278 | * is performed in a stream that has no active trace | |
4279 | * chunk. | |
f96af312 | 4280 | */ |
b32703d6 JG |
4281 | ret = lttng_dynamic_pointer_array_add_pointer( |
4282 | &streams_packet_to_open, stream); | |
4283 | if (ret) { | |
4284 | PERROR("Failed to add a stream pointer to array of streams in which to open a packet"); | |
f96af312 JG |
4285 | ret = -1; |
4286 | goto end_unlock_stream; | |
f96af312 JG |
4287 | } |
4288 | } | |
4289 | ||
b99a8d42 JD |
4290 | pthread_mutex_unlock(&stream->lock); |
4291 | } | |
c35f9726 | 4292 | stream = NULL; |
b99a8d42 | 4293 | |
b32703d6 JG |
4294 | if (!is_local_trace) { |
4295 | relayd = consumer_find_relayd(relayd_id); | |
4296 | if (!relayd) { | |
4297 | ERR("Failed to find relayd %" PRIu64, relayd_id); | |
4298 | ret = -1; | |
4299 | goto end_unlock_channel; | |
4300 | } | |
c35f9726 | 4301 | |
b32703d6 JG |
4302 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); |
4303 | ret = relayd_rotate_streams(&relayd->control_sock, stream_count, | |
4304 | rotating_to_new_chunk ? &next_chunk_id : NULL, | |
4305 | (const struct relayd_stream_rotation_position *) | |
4306 | stream_rotation_positions.buffer | |
4307 | .data); | |
4308 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
4309 | if (ret < 0) { | |
4310 | ERR("Relayd rotate stream failed. Cleaning up relayd %" PRIu64, | |
4311 | relayd->net_seq_idx); | |
4312 | lttng_consumer_cleanup_relayd(relayd); | |
4313 | goto end_unlock_channel; | |
4314 | } | |
c35f9726 JG |
4315 | } |
4316 | ||
b32703d6 JG |
4317 | for (stream_idx = 0; |
4318 | stream_idx < lttng_dynamic_pointer_array_get_count( | |
4319 | &streams_packet_to_open); | |
4320 | stream_idx++) { | |
4321 | enum consumer_stream_open_packet_status status; | |
4322 | ||
97535efa | 4323 | stream = (lttng_consumer_stream *) lttng_dynamic_pointer_array_get_pointer( |
b32703d6 JG |
4324 | &streams_packet_to_open, stream_idx); |
4325 | ||
4326 | pthread_mutex_lock(&stream->lock); | |
4327 | status = consumer_stream_open_packet(stream); | |
4328 | pthread_mutex_unlock(&stream->lock); | |
4329 | switch (status) { | |
4330 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_OPENED: | |
4331 | DBG("Opened a packet after a rotation: stream id = %" PRIu64 | |
4332 | ", channel name = %s, session id = %" PRIu64, | |
4333 | stream->key, stream->chan->name, | |
4334 | stream->chan->session_id); | |
4335 | break; | |
4336 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_NO_SPACE: | |
4337 | /* | |
4338 | * Can't open a packet as there is no space left | |
4339 | * in the buffer. A new packet will be opened | |
4340 | * once one has been consumed. | |
4341 | */ | |
4342 | DBG("No space left to open a packet after a rotation: stream id = %" PRIu64 | |
4343 | ", channel name = %s, session id = %" PRIu64, | |
4344 | stream->key, stream->chan->name, | |
4345 | stream->chan->session_id); | |
4346 | break; | |
4347 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_ERROR: | |
4348 | /* Logged by callee. */ | |
4349 | ret = -1; | |
7a86c13d | 4350 | goto end_unlock_channel; |
b32703d6 JG |
4351 | default: |
4352 | abort(); | |
4353 | } | |
c35f9726 JG |
4354 | } |
4355 | ||
b32703d6 | 4356 | pthread_mutex_unlock(&channel->lock); |
b99a8d42 JD |
4357 | ret = 0; |
4358 | goto end; | |
4359 | ||
4360 | end_unlock_stream: | |
4361 | pthread_mutex_unlock(&stream->lock); | |
c35f9726 | 4362 | end_unlock_channel: |
b99a8d42 JD |
4363 | pthread_mutex_unlock(&channel->lock); |
4364 | end: | |
4365 | rcu_read_unlock(); | |
c35f9726 | 4366 | lttng_dynamic_array_reset(&stream_rotation_positions); |
b32703d6 | 4367 | lttng_dynamic_pointer_array_reset(&streams_packet_to_open); |
b99a8d42 JD |
4368 | return ret; |
4369 | } | |
4370 | ||
5f3aff8b MD |
4371 | static |
4372 | int consumer_clear_buffer(struct lttng_consumer_stream *stream) | |
4373 | { | |
4374 | int ret = 0; | |
4375 | unsigned long consumed_pos_before, consumed_pos_after; | |
4376 | ||
4377 | ret = lttng_consumer_sample_snapshot_positions(stream); | |
4378 | if (ret < 0) { | |
4379 | ERR("Taking snapshot positions"); | |
4380 | goto end; | |
4381 | } | |
4382 | ||
4383 | ret = lttng_consumer_get_consumed_snapshot(stream, &consumed_pos_before); | |
4384 | if (ret < 0) { | |
4385 | ERR("Consumed snapshot position"); | |
4386 | goto end; | |
4387 | } | |
4388 | ||
fa29bfbf | 4389 | switch (the_consumer_data.type) { |
5f3aff8b MD |
4390 | case LTTNG_CONSUMER_KERNEL: |
4391 | ret = kernctl_buffer_clear(stream->wait_fd); | |
4392 | if (ret < 0) { | |
96393977 | 4393 | ERR("Failed to clear kernel stream (ret = %d)", ret); |
5f3aff8b MD |
4394 | goto end; |
4395 | } | |
4396 | break; | |
4397 | case LTTNG_CONSUMER32_UST: | |
4398 | case LTTNG_CONSUMER64_UST: | |
881fc67f MD |
4399 | ret = lttng_ustconsumer_clear_buffer(stream); |
4400 | if (ret < 0) { | |
4401 | ERR("Failed to clear ust stream (ret = %d)", ret); | |
4402 | goto end; | |
4403 | } | |
5f3aff8b MD |
4404 | break; |
4405 | default: | |
4406 | ERR("Unknown consumer_data type"); | |
4407 | abort(); | |
4408 | } | |
4409 | ||
4410 | ret = lttng_consumer_sample_snapshot_positions(stream); | |
4411 | if (ret < 0) { | |
4412 | ERR("Taking snapshot positions"); | |
4413 | goto end; | |
4414 | } | |
4415 | ret = lttng_consumer_get_consumed_snapshot(stream, &consumed_pos_after); | |
4416 | if (ret < 0) { | |
4417 | ERR("Consumed snapshot position"); | |
4418 | goto end; | |
4419 | } | |
4420 | DBG("clear: before: %lu after: %lu", consumed_pos_before, consumed_pos_after); | |
4421 | end: | |
4422 | return ret; | |
4423 | } | |
4424 | ||
4425 | static | |
4426 | int consumer_clear_stream(struct lttng_consumer_stream *stream) | |
4427 | { | |
4428 | int ret; | |
4429 | ||
503fefca | 4430 | ret = consumer_stream_flush_buffer(stream, 1); |
5f3aff8b MD |
4431 | if (ret < 0) { |
4432 | ERR("Failed to flush stream %" PRIu64 " during channel clear", | |
4433 | stream->key); | |
4434 | ret = LTTCOMM_CONSUMERD_FATAL; | |
4435 | goto error; | |
4436 | } | |
4437 | ||
4438 | ret = consumer_clear_buffer(stream); | |
4439 | if (ret < 0) { | |
4440 | ERR("Failed to clear stream %" PRIu64 " during channel clear", | |
4441 | stream->key); | |
4442 | ret = LTTCOMM_CONSUMERD_FATAL; | |
4443 | goto error; | |
4444 | } | |
4445 | ||
4446 | ret = LTTCOMM_CONSUMERD_SUCCESS; | |
4447 | error: | |
4448 | return ret; | |
4449 | } | |
4450 | ||
4451 | static | |
4452 | int consumer_clear_unmonitored_channel(struct lttng_consumer_channel *channel) | |
4453 | { | |
4454 | int ret; | |
4455 | struct lttng_consumer_stream *stream; | |
4456 | ||
4457 | rcu_read_lock(); | |
4458 | pthread_mutex_lock(&channel->lock); | |
4459 | cds_list_for_each_entry(stream, &channel->streams.head, send_node) { | |
4460 | health_code_update(); | |
4461 | pthread_mutex_lock(&stream->lock); | |
4462 | ret = consumer_clear_stream(stream); | |
4463 | if (ret) { | |
4464 | goto error_unlock; | |
4465 | } | |
4466 | pthread_mutex_unlock(&stream->lock); | |
4467 | } | |
4468 | pthread_mutex_unlock(&channel->lock); | |
4469 | rcu_read_unlock(); | |
4470 | return 0; | |
4471 | ||
4472 | error_unlock: | |
4473 | pthread_mutex_unlock(&stream->lock); | |
4474 | pthread_mutex_unlock(&channel->lock); | |
4475 | rcu_read_unlock(); | |
5f3aff8b MD |
4476 | return ret; |
4477 | } | |
4478 | ||
02d02e31 JD |
4479 | /* |
4480 | * Check if a stream is ready to be rotated after extracting it. | |
4481 | * | |
4482 | * Return 1 if it is ready for rotation, 0 if it is not, a negative value on | |
4483 | * error. Stream lock must be held. | |
4484 | */ | |
4485 | int lttng_consumer_stream_is_rotate_ready(struct lttng_consumer_stream *stream) | |
4486 | { | |
f8528c7a MD |
4487 | DBG("Check is rotate ready for stream %" PRIu64 |
4488 | " ready %u rotate_position %" PRIu64 | |
4489 | " last_sequence_number %" PRIu64, | |
4490 | stream->key, stream->rotate_ready, | |
4491 | stream->rotate_position, stream->last_sequence_number); | |
02d02e31 | 4492 | if (stream->rotate_ready) { |
a40a503f | 4493 | return 1; |
02d02e31 JD |
4494 | } |
4495 | ||
4496 | /* | |
a40a503f MD |
4497 | * If packet seq num is unavailable, it means we are interacting |
4498 | * with a pre-2.8 lttng-modules which does not implement the | |
4499 | * sequence number. Rotation should never be used by sessiond in this | |
4500 | * scenario. | |
02d02e31 | 4501 | */ |
a40a503f MD |
4502 | if (stream->sequence_number_unavailable) { |
4503 | ERR("Internal error: rotation used on stream %" PRIu64 | |
4504 | " with unavailable sequence number", | |
4505 | stream->key); | |
4506 | return -1; | |
02d02e31 JD |
4507 | } |
4508 | ||
a40a503f MD |
4509 | if (stream->rotate_position == -1ULL || |
4510 | stream->last_sequence_number == -1ULL) { | |
4511 | return 0; | |
02d02e31 JD |
4512 | } |
4513 | ||
a40a503f MD |
4514 | /* |
4515 | * Rotate position not reached yet. The stream rotate position is | |
4516 | * the position of the next packet belonging to the next trace chunk, | |
4517 | * but consumerd considers rotation ready when reaching the last | |
4518 | * packet of the current chunk, hence the "rotate_position - 1". | |
4519 | */ | |
f8528c7a MD |
4520 | |
4521 | DBG("Check is rotate ready for stream %" PRIu64 | |
4522 | " last_sequence_number %" PRIu64 | |
4523 | " rotate_position %" PRIu64, | |
4524 | stream->key, stream->last_sequence_number, | |
4525 | stream->rotate_position); | |
a40a503f MD |
4526 | if (stream->last_sequence_number >= stream->rotate_position - 1) { |
4527 | return 1; | |
02d02e31 | 4528 | } |
02d02e31 | 4529 | |
a40a503f | 4530 | return 0; |
02d02e31 JD |
4531 | } |
4532 | ||
d73bf3d7 JD |
4533 | /* |
4534 | * Reset the state for a stream after a rotation occurred. | |
4535 | */ | |
4536 | void lttng_consumer_reset_stream_rotate_state(struct lttng_consumer_stream *stream) | |
4537 | { | |
f8528c7a MD |
4538 | DBG("lttng_consumer_reset_stream_rotate_state for stream %" PRIu64, |
4539 | stream->key); | |
a40a503f | 4540 | stream->rotate_position = -1ULL; |
d73bf3d7 JD |
4541 | stream->rotate_ready = false; |
4542 | } | |
4543 | ||
4544 | /* | |
4545 | * Perform the rotation a local stream file. | |
4546 | */ | |
d2956687 | 4547 | static |
d73bf3d7 JD |
4548 | int rotate_local_stream(struct lttng_consumer_local_data *ctx, |
4549 | struct lttng_consumer_stream *stream) | |
4550 | { | |
d2956687 | 4551 | int ret = 0; |
d73bf3d7 | 4552 | |
d2956687 | 4553 | DBG("Rotate local stream: stream key %" PRIu64 ", channel key %" PRIu64, |
d73bf3d7 | 4554 | stream->key, |
d2956687 | 4555 | stream->chan->key); |
d73bf3d7 | 4556 | stream->tracefile_size_current = 0; |
d2956687 | 4557 | stream->tracefile_count_current = 0; |
d73bf3d7 | 4558 | |
d2956687 JG |
4559 | if (stream->out_fd >= 0) { |
4560 | ret = close(stream->out_fd); | |
4561 | if (ret) { | |
4562 | PERROR("Failed to close stream out_fd of channel \"%s\"", | |
4563 | stream->chan->name); | |
4564 | } | |
4565 | stream->out_fd = -1; | |
4566 | } | |
d73bf3d7 | 4567 | |
d2956687 | 4568 | if (stream->index_file) { |
d73bf3d7 | 4569 | lttng_index_file_put(stream->index_file); |
d2956687 | 4570 | stream->index_file = NULL; |
d73bf3d7 JD |
4571 | } |
4572 | ||
d2956687 JG |
4573 | if (!stream->trace_chunk) { |
4574 | goto end; | |
4575 | } | |
d73bf3d7 | 4576 | |
d2956687 | 4577 | ret = consumer_stream_create_output_files(stream, true); |
d73bf3d7 JD |
4578 | end: |
4579 | return ret; | |
d73bf3d7 JD |
4580 | } |
4581 | ||
d73bf3d7 JD |
4582 | /* |
4583 | * Performs the stream rotation for the rotate session feature if needed. | |
d2956687 | 4584 | * It must be called with the channel and stream locks held. |
d73bf3d7 JD |
4585 | * |
4586 | * Return 0 on success, a negative number of error. | |
4587 | */ | |
4588 | int lttng_consumer_rotate_stream(struct lttng_consumer_local_data *ctx, | |
d2956687 | 4589 | struct lttng_consumer_stream *stream) |
d73bf3d7 JD |
4590 | { |
4591 | int ret; | |
4592 | ||
4593 | DBG("Consumer rotate stream %" PRIu64, stream->key); | |
4594 | ||
d2956687 JG |
4595 | /* |
4596 | * Update the stream's 'current' chunk to the session's (channel) | |
4597 | * now-current chunk. | |
4598 | */ | |
4599 | lttng_trace_chunk_put(stream->trace_chunk); | |
4600 | if (stream->chan->trace_chunk == stream->trace_chunk) { | |
4601 | /* | |
4602 | * A channel can be rotated and not have a "next" chunk | |
4603 | * to transition to. In that case, the channel's "current chunk" | |
4604 | * has not been closed yet, but it has not been updated to | |
4605 | * a "next" trace chunk either. Hence, the stream, like its | |
4606 | * parent channel, becomes part of no chunk and can't output | |
4607 | * anything until a new trace chunk is created. | |
4608 | */ | |
4609 | stream->trace_chunk = NULL; | |
4610 | } else if (stream->chan->trace_chunk && | |
4611 | !lttng_trace_chunk_get(stream->chan->trace_chunk)) { | |
4612 | ERR("Failed to acquire a reference to channel's trace chunk during stream rotation"); | |
4613 | ret = -1; | |
4614 | goto error; | |
4615 | } else { | |
4616 | /* | |
4617 | * Update the stream's trace chunk to its parent channel's | |
4618 | * current trace chunk. | |
4619 | */ | |
4620 | stream->trace_chunk = stream->chan->trace_chunk; | |
4621 | } | |
4622 | ||
c35f9726 | 4623 | if (stream->net_seq_idx == (uint64_t) -1ULL) { |
d73bf3d7 | 4624 | ret = rotate_local_stream(ctx, stream); |
c35f9726 JG |
4625 | if (ret < 0) { |
4626 | ERR("Failed to rotate stream, ret = %i", ret); | |
4627 | goto error; | |
4628 | } | |
d73bf3d7 JD |
4629 | } |
4630 | ||
d2956687 JG |
4631 | if (stream->metadata_flag && stream->trace_chunk) { |
4632 | /* | |
4633 | * If the stream has transitioned to a new trace | |
4634 | * chunk, the metadata should be re-dumped to the | |
4635 | * newest chunk. | |
4636 | * | |
4637 | * However, it is possible for a stream to transition to | |
4638 | * a "no-chunk" state. This can happen if a rotation | |
4639 | * occurs on an inactive session. In such cases, the metadata | |
4640 | * regeneration will happen when the next trace chunk is | |
4641 | * created. | |
4642 | */ | |
4643 | ret = consumer_metadata_stream_dump(stream); | |
4644 | if (ret) { | |
4645 | goto error; | |
d73bf3d7 JD |
4646 | } |
4647 | } | |
4648 | lttng_consumer_reset_stream_rotate_state(stream); | |
4649 | ||
4650 | ret = 0; | |
4651 | ||
4652 | error: | |
4653 | return ret; | |
4654 | } | |
4655 | ||
b99a8d42 JD |
4656 | /* |
4657 | * Rotate all the ready streams now. | |
4658 | * | |
4659 | * This is especially important for low throughput streams that have already | |
4660 | * been consumed, we cannot wait for their next packet to perform the | |
4661 | * rotation. | |
92b7a7f8 MD |
4662 | * Need to be called with RCU read-side lock held to ensure existence of |
4663 | * channel. | |
b99a8d42 JD |
4664 | * |
4665 | * Returns 0 on success, < 0 on error | |
4666 | */ | |
92b7a7f8 MD |
4667 | int lttng_consumer_rotate_ready_streams(struct lttng_consumer_channel *channel, |
4668 | uint64_t key, struct lttng_consumer_local_data *ctx) | |
b99a8d42 JD |
4669 | { |
4670 | int ret; | |
b99a8d42 JD |
4671 | struct lttng_consumer_stream *stream; |
4672 | struct lttng_ht_iter iter; | |
fa29bfbf | 4673 | struct lttng_ht *ht = the_consumer_data.stream_per_chan_id_ht; |
b99a8d42 JD |
4674 | |
4675 | rcu_read_lock(); | |
4676 | ||
4677 | DBG("Consumer rotate ready streams in channel %" PRIu64, key); | |
4678 | ||
b99a8d42 JD |
4679 | cds_lfht_for_each_entry_duplicate(ht->ht, |
4680 | ht->hash_fct(&channel->key, lttng_ht_seed), | |
4681 | ht->match_fct, &channel->key, &iter.iter, | |
4682 | stream, node_channel_id.node) { | |
4683 | health_code_update(); | |
4684 | ||
d2956687 | 4685 | pthread_mutex_lock(&stream->chan->lock); |
b99a8d42 JD |
4686 | pthread_mutex_lock(&stream->lock); |
4687 | ||
4688 | if (!stream->rotate_ready) { | |
4689 | pthread_mutex_unlock(&stream->lock); | |
d2956687 | 4690 | pthread_mutex_unlock(&stream->chan->lock); |
b99a8d42 JD |
4691 | continue; |
4692 | } | |
4693 | DBG("Consumer rotate ready stream %" PRIu64, stream->key); | |
4694 | ||
d2956687 | 4695 | ret = lttng_consumer_rotate_stream(ctx, stream); |
b99a8d42 | 4696 | pthread_mutex_unlock(&stream->lock); |
d2956687 | 4697 | pthread_mutex_unlock(&stream->chan->lock); |
b99a8d42 JD |
4698 | if (ret) { |
4699 | goto end; | |
4700 | } | |
4701 | } | |
4702 | ||
4703 | ret = 0; | |
4704 | ||
4705 | end: | |
4706 | rcu_read_unlock(); | |
4707 | return ret; | |
4708 | } | |
4709 | ||
d2956687 JG |
4710 | enum lttcomm_return_code lttng_consumer_init_command( |
4711 | struct lttng_consumer_local_data *ctx, | |
4712 | const lttng_uuid sessiond_uuid) | |
00fb02ac | 4713 | { |
d2956687 | 4714 | enum lttcomm_return_code ret; |
c70636a7 | 4715 | char uuid_str[LTTNG_UUID_STR_LEN]; |
00fb02ac | 4716 | |
d2956687 JG |
4717 | if (ctx->sessiond_uuid.is_set) { |
4718 | ret = LTTCOMM_CONSUMERD_ALREADY_SET; | |
00fb02ac JD |
4719 | goto end; |
4720 | } | |
4721 | ||
d2956687 JG |
4722 | ctx->sessiond_uuid.is_set = true; |
4723 | memcpy(ctx->sessiond_uuid.value, sessiond_uuid, sizeof(lttng_uuid)); | |
4724 | ret = LTTCOMM_CONSUMERD_SUCCESS; | |
4725 | lttng_uuid_to_str(sessiond_uuid, uuid_str); | |
4726 | DBG("Received session daemon UUID: %s", uuid_str); | |
00fb02ac JD |
4727 | end: |
4728 | return ret; | |
4729 | } | |
4730 | ||
d2956687 JG |
4731 | enum lttcomm_return_code lttng_consumer_create_trace_chunk( |
4732 | const uint64_t *relayd_id, uint64_t session_id, | |
4733 | uint64_t chunk_id, | |
4734 | time_t chunk_creation_timestamp, | |
4735 | const char *chunk_override_name, | |
4736 | const struct lttng_credentials *credentials, | |
4737 | struct lttng_directory_handle *chunk_directory_handle) | |
00fb02ac JD |
4738 | { |
4739 | int ret; | |
d2956687 | 4740 | enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS; |
7ea24db3 | 4741 | struct lttng_trace_chunk *created_chunk = NULL, *published_chunk = NULL; |
d2956687 JG |
4742 | enum lttng_trace_chunk_status chunk_status; |
4743 | char relayd_id_buffer[MAX_INT_DEC_LEN(*relayd_id)]; | |
4744 | char creation_timestamp_buffer[ISO8601_STR_LEN]; | |
4745 | const char *relayd_id_str = "(none)"; | |
4746 | const char *creation_timestamp_str; | |
4747 | struct lttng_ht_iter iter; | |
4748 | struct lttng_consumer_channel *channel; | |
92816cc3 | 4749 | |
d2956687 JG |
4750 | if (relayd_id) { |
4751 | /* Only used for logging purposes. */ | |
4752 | ret = snprintf(relayd_id_buffer, sizeof(relayd_id_buffer), | |
4753 | "%" PRIu64, *relayd_id); | |
4754 | if (ret > 0 && ret < sizeof(relayd_id_buffer)) { | |
4755 | relayd_id_str = relayd_id_buffer; | |
4756 | } else { | |
4757 | relayd_id_str = "(formatting error)"; | |
4758 | } | |
d01ef216 | 4759 | } |
d2956687 | 4760 | |
d01ef216 | 4761 | /* Local protocol error. */ |
a0377dfe | 4762 | LTTNG_ASSERT(chunk_creation_timestamp); |
d2956687 JG |
4763 | ret = time_to_iso8601_str(chunk_creation_timestamp, |
4764 | creation_timestamp_buffer, | |
4765 | sizeof(creation_timestamp_buffer)); | |
4766 | creation_timestamp_str = !ret ? creation_timestamp_buffer : | |
4767 | "(formatting error)"; | |
4768 | ||
4769 | DBG("Consumer create trace chunk command: relay_id = %s" | |
4770 | ", session_id = %" PRIu64 ", chunk_id = %" PRIu64 | |
4771 | ", chunk_override_name = %s" | |
4772 | ", chunk_creation_timestamp = %s", | |
4773 | relayd_id_str, session_id, chunk_id, | |
4774 | chunk_override_name ? : "(none)", | |
4775 | creation_timestamp_str); | |
92816cc3 JG |
4776 | |
4777 | /* | |
d2956687 JG |
4778 | * The trace chunk registry, as used by the consumer daemon, implicitly |
4779 | * owns the trace chunks. This is only needed in the consumer since | |
4780 | * the consumer has no notion of a session beyond session IDs being | |
4781 | * used to identify other objects. | |
4782 | * | |
4783 | * The lttng_trace_chunk_registry_publish() call below provides a | |
4784 | * reference which is not released; it implicitly becomes the session | |
4785 | * daemon's reference to the chunk in the consumer daemon. | |
4786 | * | |
4787 | * The lifetime of trace chunks in the consumer daemon is managed by | |
4788 | * the session daemon through the LTTNG_CONSUMER_CREATE_TRACE_CHUNK | |
4789 | * and LTTNG_CONSUMER_DESTROY_TRACE_CHUNK commands. | |
92816cc3 | 4790 | */ |
d2956687 | 4791 | created_chunk = lttng_trace_chunk_create(chunk_id, |
a7ceb342 | 4792 | chunk_creation_timestamp, NULL); |
d2956687 JG |
4793 | if (!created_chunk) { |
4794 | ERR("Failed to create trace chunk"); | |
4795 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4796 | goto error; |
d2956687 | 4797 | } |
92816cc3 | 4798 | |
d2956687 JG |
4799 | if (chunk_override_name) { |
4800 | chunk_status = lttng_trace_chunk_override_name(created_chunk, | |
4801 | chunk_override_name); | |
4802 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { | |
4803 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4804 | goto error; |
92816cc3 JG |
4805 | } |
4806 | } | |
4807 | ||
d2956687 JG |
4808 | if (chunk_directory_handle) { |
4809 | chunk_status = lttng_trace_chunk_set_credentials(created_chunk, | |
4810 | credentials); | |
4811 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { | |
4812 | ERR("Failed to set trace chunk credentials"); | |
4813 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4814 | goto error; |
d2956687 JG |
4815 | } |
4816 | /* | |
4817 | * The consumer daemon has no ownership of the chunk output | |
4818 | * directory. | |
4819 | */ | |
4820 | chunk_status = lttng_trace_chunk_set_as_user(created_chunk, | |
4821 | chunk_directory_handle); | |
cbf53d23 | 4822 | chunk_directory_handle = NULL; |
d2956687 JG |
4823 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { |
4824 | ERR("Failed to set trace chunk's directory handle"); | |
4825 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4826 | goto error; |
92816cc3 JG |
4827 | } |
4828 | } | |
4829 | ||
d2956687 | 4830 | published_chunk = lttng_trace_chunk_registry_publish_chunk( |
fa29bfbf | 4831 | the_consumer_data.chunk_registry, session_id, |
d2956687 JG |
4832 | created_chunk); |
4833 | lttng_trace_chunk_put(created_chunk); | |
4834 | created_chunk = NULL; | |
4835 | if (!published_chunk) { | |
4836 | ERR("Failed to publish trace chunk"); | |
4837 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4838 | goto error; |
d88744a4 JD |
4839 | } |
4840 | ||
d2956687 | 4841 | rcu_read_lock(); |
fa29bfbf SM |
4842 | cds_lfht_for_each_entry_duplicate( |
4843 | the_consumer_data.channels_by_session_id_ht->ht, | |
4844 | the_consumer_data.channels_by_session_id_ht->hash_fct( | |
d2956687 | 4845 | &session_id, lttng_ht_seed), |
fa29bfbf | 4846 | the_consumer_data.channels_by_session_id_ht->match_fct, |
d2956687 JG |
4847 | &session_id, &iter.iter, channel, |
4848 | channels_by_session_id_ht_node.node) { | |
4849 | ret = lttng_consumer_channel_set_trace_chunk(channel, | |
4850 | published_chunk); | |
4851 | if (ret) { | |
4852 | /* | |
4853 | * Roll-back the creation of this chunk. | |
4854 | * | |
4855 | * This is important since the session daemon will | |
4856 | * assume that the creation of this chunk failed and | |
4857 | * will never ask for it to be closed, resulting | |
4858 | * in a leak and an inconsistent state for some | |
4859 | * channels. | |
4860 | */ | |
4861 | enum lttcomm_return_code close_ret; | |
ecd1a12f | 4862 | char path[LTTNG_PATH_MAX]; |
d2956687 JG |
4863 | |
4864 | DBG("Failed to set new trace chunk on existing channels, rolling back"); | |
4865 | close_ret = lttng_consumer_close_trace_chunk(relayd_id, | |
4866 | session_id, chunk_id, | |
ecd1a12f MD |
4867 | chunk_creation_timestamp, NULL, |
4868 | path); | |
d2956687 JG |
4869 | if (close_ret != LTTCOMM_CONSUMERD_SUCCESS) { |
4870 | ERR("Failed to roll-back the creation of new chunk: session_id = %" PRIu64 ", chunk_id = %" PRIu64, | |
4871 | session_id, chunk_id); | |
4872 | } | |
a1ae2ea5 | 4873 | |
d2956687 JG |
4874 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; |
4875 | break; | |
4876 | } | |
a1ae2ea5 JD |
4877 | } |
4878 | ||
e5add6d0 JG |
4879 | if (relayd_id) { |
4880 | struct consumer_relayd_sock_pair *relayd; | |
4881 | ||
4882 | relayd = consumer_find_relayd(*relayd_id); | |
4883 | if (relayd) { | |
4884 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
4885 | ret = relayd_create_trace_chunk( | |
4886 | &relayd->control_sock, published_chunk); | |
4887 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
4888 | } else { | |
4889 | ERR("Failed to find relay daemon socket: relayd_id = %" PRIu64, *relayd_id); | |
4890 | } | |
4891 | ||
4892 | if (!relayd || ret) { | |
4893 | enum lttcomm_return_code close_ret; | |
ecd1a12f | 4894 | char path[LTTNG_PATH_MAX]; |
e5add6d0 JG |
4895 | |
4896 | close_ret = lttng_consumer_close_trace_chunk(relayd_id, | |
4897 | session_id, | |
4898 | chunk_id, | |
bbc4768c | 4899 | chunk_creation_timestamp, |
ecd1a12f | 4900 | NULL, path); |
e5add6d0 JG |
4901 | if (close_ret != LTTCOMM_CONSUMERD_SUCCESS) { |
4902 | ERR("Failed to roll-back the creation of new chunk: session_id = %" PRIu64 ", chunk_id = %" PRIu64, | |
4903 | session_id, | |
4904 | chunk_id); | |
4905 | } | |
4906 | ||
4907 | ret_code = LTTCOMM_CONSUMERD_CREATE_TRACE_CHUNK_FAILED; | |
7ea24db3 | 4908 | goto error_unlock; |
e5add6d0 JG |
4909 | } |
4910 | } | |
7ea24db3 | 4911 | error_unlock: |
e5add6d0 | 4912 | rcu_read_unlock(); |
7ea24db3 | 4913 | error: |
d2956687 JG |
4914 | /* Release the reference returned by the "publish" operation. */ |
4915 | lttng_trace_chunk_put(published_chunk); | |
9bb5f1f8 | 4916 | lttng_trace_chunk_put(created_chunk); |
d2956687 | 4917 | return ret_code; |
a1ae2ea5 JD |
4918 | } |
4919 | ||
d2956687 JG |
4920 | enum lttcomm_return_code lttng_consumer_close_trace_chunk( |
4921 | const uint64_t *relayd_id, uint64_t session_id, | |
bbc4768c | 4922 | uint64_t chunk_id, time_t chunk_close_timestamp, |
ecd1a12f MD |
4923 | const enum lttng_trace_chunk_command_type *close_command, |
4924 | char *path) | |
a1ae2ea5 | 4925 | { |
d2956687 JG |
4926 | enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS; |
4927 | struct lttng_trace_chunk *chunk; | |
4928 | char relayd_id_buffer[MAX_INT_DEC_LEN(*relayd_id)]; | |
4929 | const char *relayd_id_str = "(none)"; | |
bbc4768c | 4930 | const char *close_command_name = "none"; |
d2956687 JG |
4931 | struct lttng_ht_iter iter; |
4932 | struct lttng_consumer_channel *channel; | |
4933 | enum lttng_trace_chunk_status chunk_status; | |
a1ae2ea5 | 4934 | |
d2956687 JG |
4935 | if (relayd_id) { |
4936 | int ret; | |
4937 | ||
4938 | /* Only used for logging purposes. */ | |
4939 | ret = snprintf(relayd_id_buffer, sizeof(relayd_id_buffer), | |
4940 | "%" PRIu64, *relayd_id); | |
4941 | if (ret > 0 && ret < sizeof(relayd_id_buffer)) { | |
4942 | relayd_id_str = relayd_id_buffer; | |
4943 | } else { | |
4944 | relayd_id_str = "(formatting error)"; | |
4945 | } | |
bbc4768c JG |
4946 | } |
4947 | if (close_command) { | |
4948 | close_command_name = lttng_trace_chunk_command_type_get_name( | |
4949 | *close_command); | |
4950 | } | |
d2956687 JG |
4951 | |
4952 | DBG("Consumer close trace chunk command: relayd_id = %s" | |
bbc4768c JG |
4953 | ", session_id = %" PRIu64 ", chunk_id = %" PRIu64 |
4954 | ", close command = %s", | |
4955 | relayd_id_str, session_id, chunk_id, | |
4956 | close_command_name); | |
4957 | ||
d2956687 | 4958 | chunk = lttng_trace_chunk_registry_find_chunk( |
fa29bfbf | 4959 | the_consumer_data.chunk_registry, session_id, chunk_id); |
bbc4768c | 4960 | if (!chunk) { |
d2956687 JG |
4961 | ERR("Failed to find chunk: session_id = %" PRIu64 |
4962 | ", chunk_id = %" PRIu64, | |
4963 | session_id, chunk_id); | |
4964 | ret_code = LTTCOMM_CONSUMERD_UNKNOWN_TRACE_CHUNK; | |
a1ae2ea5 JD |
4965 | goto end; |
4966 | } | |
4967 | ||
d2956687 JG |
4968 | chunk_status = lttng_trace_chunk_set_close_timestamp(chunk, |
4969 | chunk_close_timestamp); | |
4970 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { | |
4971 | ret_code = LTTCOMM_CONSUMERD_CLOSE_TRACE_CHUNK_FAILED; | |
4972 | goto end; | |
45f1d9a1 | 4973 | } |
bbc4768c JG |
4974 | |
4975 | if (close_command) { | |
4976 | chunk_status = lttng_trace_chunk_set_close_command( | |
4977 | chunk, *close_command); | |
4978 | if (chunk_status != LTTNG_TRACE_CHUNK_STATUS_OK) { | |
4979 | ret_code = LTTCOMM_CONSUMERD_CLOSE_TRACE_CHUNK_FAILED; | |
4980 | goto end; | |
4981 | } | |
4982 | } | |
a1ae2ea5 | 4983 | |
d2956687 JG |
4984 | /* |
4985 | * chunk is now invalid to access as we no longer hold a reference to | |
4986 | * it; it is only kept around to compare it (by address) to the | |
4987 | * current chunk found in the session's channels. | |
4988 | */ | |
4989 | rcu_read_lock(); | |
fa29bfbf | 4990 | cds_lfht_for_each_entry(the_consumer_data.channel_ht->ht, &iter.iter, |
d2956687 JG |
4991 | channel, node.node) { |
4992 | int ret; | |
a1ae2ea5 | 4993 | |
d2956687 JG |
4994 | /* |
4995 | * Only change the channel's chunk to NULL if it still | |
4996 | * references the chunk being closed. The channel may | |
4997 | * reference a newer channel in the case of a session | |
4998 | * rotation. When a session rotation occurs, the "next" | |
4999 | * chunk is created before the "current" chunk is closed. | |
5000 | */ | |
5001 | if (channel->trace_chunk != chunk) { | |
5002 | continue; | |
5003 | } | |
5004 | ret = lttng_consumer_channel_set_trace_chunk(channel, NULL); | |
5005 | if (ret) { | |
5006 | /* | |
5007 | * Attempt to close the chunk on as many channels as | |
5008 | * possible. | |
5009 | */ | |
5010 | ret_code = LTTCOMM_CONSUMERD_CLOSE_TRACE_CHUNK_FAILED; | |
5011 | } | |
a1ae2ea5 | 5012 | } |
bbc4768c JG |
5013 | |
5014 | if (relayd_id) { | |
5015 | int ret; | |
5016 | struct consumer_relayd_sock_pair *relayd; | |
5017 | ||
5018 | relayd = consumer_find_relayd(*relayd_id); | |
5019 | if (relayd) { | |
5020 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
5021 | ret = relayd_close_trace_chunk( | |
ecd1a12f MD |
5022 | &relayd->control_sock, chunk, |
5023 | path); | |
bbc4768c JG |
5024 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); |
5025 | } else { | |
5026 | ERR("Failed to find relay daemon socket: relayd_id = %" PRIu64, | |
5027 | *relayd_id); | |
5028 | } | |
5029 | ||
5030 | if (!relayd || ret) { | |
5031 | ret_code = LTTCOMM_CONSUMERD_CLOSE_TRACE_CHUNK_FAILED; | |
5032 | goto error_unlock; | |
5033 | } | |
5034 | } | |
5035 | error_unlock: | |
d2956687 JG |
5036 | rcu_read_unlock(); |
5037 | end: | |
bbc4768c JG |
5038 | /* |
5039 | * Release the reference returned by the "find" operation and | |
5040 | * the session daemon's implicit reference to the chunk. | |
5041 | */ | |
5042 | lttng_trace_chunk_put(chunk); | |
5043 | lttng_trace_chunk_put(chunk); | |
5044 | ||
d2956687 | 5045 | return ret_code; |
a1ae2ea5 | 5046 | } |
3654ed19 | 5047 | |
d2956687 JG |
5048 | enum lttcomm_return_code lttng_consumer_trace_chunk_exists( |
5049 | const uint64_t *relayd_id, uint64_t session_id, | |
5050 | uint64_t chunk_id) | |
3654ed19 | 5051 | { |
c35f9726 | 5052 | int ret; |
d2956687 | 5053 | enum lttcomm_return_code ret_code; |
d2956687 JG |
5054 | char relayd_id_buffer[MAX_INT_DEC_LEN(*relayd_id)]; |
5055 | const char *relayd_id_str = "(none)"; | |
c35f9726 JG |
5056 | const bool is_local_trace = !relayd_id; |
5057 | struct consumer_relayd_sock_pair *relayd = NULL; | |
6b584c2e | 5058 | bool chunk_exists_local, chunk_exists_remote; |
d2956687 JG |
5059 | |
5060 | if (relayd_id) { | |
d2956687 JG |
5061 | /* Only used for logging purposes. */ |
5062 | ret = snprintf(relayd_id_buffer, sizeof(relayd_id_buffer), | |
5063 | "%" PRIu64, *relayd_id); | |
5064 | if (ret > 0 && ret < sizeof(relayd_id_buffer)) { | |
5065 | relayd_id_str = relayd_id_buffer; | |
5066 | } else { | |
5067 | relayd_id_str = "(formatting error)"; | |
5068 | } | |
d01ef216 | 5069 | } |
d2956687 JG |
5070 | |
5071 | DBG("Consumer trace chunk exists command: relayd_id = %s" | |
d2956687 | 5072 | ", chunk_id = %" PRIu64, relayd_id_str, |
c35f9726 | 5073 | chunk_id); |
6b584c2e | 5074 | ret = lttng_trace_chunk_registry_chunk_exists( |
fa29bfbf SM |
5075 | the_consumer_data.chunk_registry, session_id, chunk_id, |
5076 | &chunk_exists_local); | |
6b584c2e JG |
5077 | if (ret) { |
5078 | /* Internal error. */ | |
5079 | ERR("Failed to query the existence of a trace chunk"); | |
5080 | ret_code = LTTCOMM_CONSUMERD_FATAL; | |
13e3b280 | 5081 | goto end; |
6b584c2e JG |
5082 | } |
5083 | DBG("Trace chunk %s locally", | |
5084 | chunk_exists_local ? "exists" : "does not exist"); | |
5085 | if (chunk_exists_local) { | |
c35f9726 | 5086 | ret_code = LTTCOMM_CONSUMERD_TRACE_CHUNK_EXISTS_LOCAL; |
c35f9726 JG |
5087 | goto end; |
5088 | } else if (is_local_trace) { | |
5089 | ret_code = LTTCOMM_CONSUMERD_UNKNOWN_TRACE_CHUNK; | |
5090 | goto end; | |
5091 | } | |
5092 | ||
5093 | rcu_read_lock(); | |
5094 | relayd = consumer_find_relayd(*relayd_id); | |
5095 | if (!relayd) { | |
5096 | ERR("Failed to find relayd %" PRIu64, *relayd_id); | |
5097 | ret_code = LTTCOMM_CONSUMERD_INVALID_PARAMETERS; | |
5098 | goto end_rcu_unlock; | |
5099 | } | |
5100 | DBG("Looking up existence of trace chunk on relay daemon"); | |
5101 | pthread_mutex_lock(&relayd->ctrl_sock_mutex); | |
5102 | ret = relayd_trace_chunk_exists(&relayd->control_sock, chunk_id, | |
5103 | &chunk_exists_remote); | |
5104 | pthread_mutex_unlock(&relayd->ctrl_sock_mutex); | |
5105 | if (ret < 0) { | |
5106 | ERR("Failed to look-up the existence of trace chunk on relay daemon"); | |
5107 | ret_code = LTTCOMM_CONSUMERD_RELAYD_FAIL; | |
5108 | goto end_rcu_unlock; | |
5109 | } | |
5110 | ||
5111 | ret_code = chunk_exists_remote ? | |
5112 | LTTCOMM_CONSUMERD_TRACE_CHUNK_EXISTS_REMOTE : | |
d2956687 | 5113 | LTTCOMM_CONSUMERD_UNKNOWN_TRACE_CHUNK; |
c35f9726 JG |
5114 | DBG("Trace chunk %s on relay daemon", |
5115 | chunk_exists_remote ? "exists" : "does not exist"); | |
d2956687 | 5116 | |
c35f9726 JG |
5117 | end_rcu_unlock: |
5118 | rcu_read_unlock(); | |
5119 | end: | |
d2956687 | 5120 | return ret_code; |
3654ed19 | 5121 | } |
5f3aff8b MD |
5122 | |
5123 | static | |
5124 | int consumer_clear_monitored_channel(struct lttng_consumer_channel *channel) | |
5125 | { | |
5126 | struct lttng_ht *ht; | |
5127 | struct lttng_consumer_stream *stream; | |
5128 | struct lttng_ht_iter iter; | |
5129 | int ret; | |
5130 | ||
fa29bfbf | 5131 | ht = the_consumer_data.stream_per_chan_id_ht; |
5f3aff8b MD |
5132 | |
5133 | rcu_read_lock(); | |
5134 | cds_lfht_for_each_entry_duplicate(ht->ht, | |
5135 | ht->hash_fct(&channel->key, lttng_ht_seed), | |
5136 | ht->match_fct, &channel->key, | |
5137 | &iter.iter, stream, node_channel_id.node) { | |
5138 | /* | |
5139 | * Protect against teardown with mutex. | |
5140 | */ | |
5141 | pthread_mutex_lock(&stream->lock); | |
5142 | if (cds_lfht_is_node_deleted(&stream->node.node)) { | |
5143 | goto next; | |
5144 | } | |
5145 | ret = consumer_clear_stream(stream); | |
5146 | if (ret) { | |
5147 | goto error_unlock; | |
5148 | } | |
5149 | next: | |
5150 | pthread_mutex_unlock(&stream->lock); | |
5151 | } | |
5152 | rcu_read_unlock(); | |
5153 | return LTTCOMM_CONSUMERD_SUCCESS; | |
5154 | ||
5155 | error_unlock: | |
5156 | pthread_mutex_unlock(&stream->lock); | |
5157 | rcu_read_unlock(); | |
5158 | return ret; | |
5159 | } | |
5160 | ||
5161 | int lttng_consumer_clear_channel(struct lttng_consumer_channel *channel) | |
5162 | { | |
5163 | int ret; | |
5164 | ||
5165 | DBG("Consumer clear channel %" PRIu64, channel->key); | |
5166 | ||
5167 | if (channel->type == CONSUMER_CHANNEL_TYPE_METADATA) { | |
5168 | /* | |
5169 | * Nothing to do for the metadata channel/stream. | |
5170 | * Snapshot mechanism already take care of the metadata | |
5171 | * handling/generation, and monitored channels only need to | |
5172 | * have their data stream cleared.. | |
5173 | */ | |
5174 | ret = LTTCOMM_CONSUMERD_SUCCESS; | |
5175 | goto end; | |
5176 | } | |
5177 | ||
5178 | if (!channel->monitor) { | |
5179 | ret = consumer_clear_unmonitored_channel(channel); | |
5180 | } else { | |
5181 | ret = consumer_clear_monitored_channel(channel); | |
5182 | } | |
5183 | end: | |
5184 | return ret; | |
5185 | } | |
04ed9e10 JG |
5186 | |
5187 | enum lttcomm_return_code lttng_consumer_open_channel_packets( | |
5188 | struct lttng_consumer_channel *channel) | |
5189 | { | |
5190 | struct lttng_consumer_stream *stream; | |
5191 | enum lttcomm_return_code ret = LTTCOMM_CONSUMERD_SUCCESS; | |
5192 | ||
5193 | if (channel->metadata_stream) { | |
5194 | ERR("Open channel packets command attempted on a metadata channel"); | |
5195 | ret = LTTCOMM_CONSUMERD_INVALID_PARAMETERS; | |
5196 | goto end; | |
5197 | } | |
5198 | ||
5199 | rcu_read_lock(); | |
5200 | cds_list_for_each_entry(stream, &channel->streams.head, send_node) { | |
503fefca | 5201 | enum consumer_stream_open_packet_status status; |
04ed9e10 JG |
5202 | |
5203 | pthread_mutex_lock(&stream->lock); | |
5204 | if (cds_lfht_is_node_deleted(&stream->node.node)) { | |
5205 | goto next; | |
5206 | } | |
5207 | ||
503fefca | 5208 | status = consumer_stream_open_packet(stream); |
04ed9e10 | 5209 | switch (status) { |
503fefca | 5210 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_OPENED: |
04ed9e10 JG |
5211 | DBG("Opened a packet in \"open channel packets\" command: stream id = %" PRIu64 |
5212 | ", channel name = %s, session id = %" PRIu64, | |
5213 | stream->key, stream->chan->name, | |
5214 | stream->chan->session_id); | |
5215 | stream->opened_packet_in_current_trace_chunk = true; | |
5216 | break; | |
503fefca | 5217 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_NO_SPACE: |
04ed9e10 JG |
5218 | DBG("No space left to open a packet in \"open channel packets\" command: stream id = %" PRIu64 |
5219 | ", channel name = %s, session id = %" PRIu64, | |
5220 | stream->key, stream->chan->name, | |
5221 | stream->chan->session_id); | |
5222 | break; | |
503fefca | 5223 | case CONSUMER_STREAM_OPEN_PACKET_STATUS_ERROR: |
04ed9e10 JG |
5224 | /* |
5225 | * Only unexpected internal errors can lead to this | |
5226 | * failing. Report an unknown error. | |
5227 | */ | |
5228 | ERR("Failed to flush empty buffer in \"open channel packets\" command: stream id = %" PRIu64 | |
5229 | ", channel id = %" PRIu64 | |
5230 | ", channel name = %s" | |
5231 | ", session id = %" PRIu64, | |
5232 | stream->key, channel->key, | |
5233 | channel->name, channel->session_id); | |
5234 | ret = LTTCOMM_CONSUMERD_UNKNOWN_ERROR; | |
5235 | goto error_unlock; | |
5236 | default: | |
5237 | abort(); | |
5238 | } | |
5239 | ||
5240 | next: | |
5241 | pthread_mutex_unlock(&stream->lock); | |
5242 | } | |
5243 | ||
5244 | end_rcu_unlock: | |
5245 | rcu_read_unlock(); | |
5246 | end: | |
5247 | return ret; | |
5248 | ||
5249 | error_unlock: | |
5250 | pthread_mutex_unlock(&stream->lock); | |
5251 | goto end_rcu_unlock; | |
5252 | } | |
881fc67f MD |
5253 | |
5254 | void lttng_consumer_sigbus_handle(void *addr) | |
5255 | { | |
5256 | lttng_ustconsumer_sigbus_handle(addr); | |
5257 | } |