2 * Copyright (C) 2012 - David Goulet <dgoulet@efficios.com>
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms of the GNU General Public License, version 2 only, as
6 * published by the Free Software Foundation.
8 * This program is distributed in the hope that it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * You should have received a copy of the GNU General Public License along with
14 * this program; if not, write to the Free Software Foundation, Inc., 51
15 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21 #include <urcu/list.h>
22 #include <urcu/uatomic.h>
24 #include <common/defaults.h>
25 #include <common/common.h>
26 #include <common/sessiond-comm/sessiond-comm.h>
27 #include <common/relayd/relayd.h>
28 #include <common/utils.h>
35 #include "kernel-consumer.h"
36 #include "lttng-sessiond.h"
42 * Used to keep a unique index for each relayd socket created where this value
43 * is associated with streams on the consumer so it can match the right relayd
44 * to send to. It must be accessed with the relayd_net_seq_idx_lock
47 static pthread_mutex_t relayd_net_seq_idx_lock
= PTHREAD_MUTEX_INITIALIZER
;
48 static uint64_t relayd_net_seq_idx
;
51 * Create a session path used by list_lttng_sessions for the case that the
52 * session consumer is on the network.
54 static int build_network_session_path(char *dst
, size_t size
,
55 struct ltt_session
*session
)
57 int ret
, kdata_port
, udata_port
;
58 struct lttng_uri
*kuri
= NULL
, *uuri
= NULL
, *uri
= NULL
;
59 char tmp_uurl
[PATH_MAX
], tmp_urls
[PATH_MAX
];
64 memset(tmp_urls
, 0, sizeof(tmp_urls
));
65 memset(tmp_uurl
, 0, sizeof(tmp_uurl
));
67 kdata_port
= udata_port
= DEFAULT_NETWORK_DATA_PORT
;
69 if (session
->kernel_session
&& session
->kernel_session
->consumer
) {
70 kuri
= &session
->kernel_session
->consumer
->dst
.net
.control
;
71 kdata_port
= session
->kernel_session
->consumer
->dst
.net
.data
.port
;
74 if (session
->ust_session
&& session
->ust_session
->consumer
) {
75 uuri
= &session
->ust_session
->consumer
->dst
.net
.control
;
76 udata_port
= session
->ust_session
->consumer
->dst
.net
.data
.port
;
79 if (uuri
== NULL
&& kuri
== NULL
) {
80 uri
= &session
->consumer
->dst
.net
.control
;
81 kdata_port
= session
->consumer
->dst
.net
.data
.port
;
82 } else if (kuri
&& uuri
) {
83 ret
= uri_compare(kuri
, uuri
);
87 /* Build uuri URL string */
88 ret
= uri_to_str_url(uuri
, tmp_uurl
, sizeof(tmp_uurl
));
95 } else if (kuri
&& uuri
== NULL
) {
97 } else if (uuri
&& kuri
== NULL
) {
101 ret
= uri_to_str_url(uri
, tmp_urls
, sizeof(tmp_urls
));
107 * Do we have a UST url set. If yes, this means we have both kernel and UST
110 if (*tmp_uurl
!= '\0') {
111 ret
= snprintf(dst
, size
, "[K]: %s [data: %d] -- [U]: %s [data: %d]",
112 tmp_urls
, kdata_port
, tmp_uurl
, udata_port
);
115 if (kuri
|| (!kuri
&& !uuri
)) {
118 /* No kernel URI, use the UST port. */
121 ret
= snprintf(dst
, size
, "%s [data: %d]", tmp_urls
, dport
);
129 * Fill lttng_channel array of all channels.
131 static void list_lttng_channels(int domain
, struct ltt_session
*session
,
132 struct lttng_channel
*channels
)
135 struct ltt_kernel_channel
*kchan
;
137 DBG("Listing channels for session %s", session
->name
);
140 case LTTNG_DOMAIN_KERNEL
:
141 /* Kernel channels */
142 if (session
->kernel_session
!= NULL
) {
143 cds_list_for_each_entry(kchan
,
144 &session
->kernel_session
->channel_list
.head
, list
) {
145 /* Copy lttng_channel struct to array */
146 memcpy(&channels
[i
], kchan
->channel
, sizeof(struct lttng_channel
));
147 channels
[i
].enabled
= kchan
->enabled
;
152 case LTTNG_DOMAIN_UST
:
154 struct lttng_ht_iter iter
;
155 struct ltt_ust_channel
*uchan
;
158 cds_lfht_for_each_entry(session
->ust_session
->domain_global
.channels
->ht
,
159 &iter
.iter
, uchan
, node
.node
) {
160 strncpy(channels
[i
].name
, uchan
->name
, LTTNG_SYMBOL_NAME_LEN
);
161 channels
[i
].attr
.overwrite
= uchan
->attr
.overwrite
;
162 channels
[i
].attr
.subbuf_size
= uchan
->attr
.subbuf_size
;
163 channels
[i
].attr
.num_subbuf
= uchan
->attr
.num_subbuf
;
164 channels
[i
].attr
.switch_timer_interval
=
165 uchan
->attr
.switch_timer_interval
;
166 channels
[i
].attr
.read_timer_interval
=
167 uchan
->attr
.read_timer_interval
;
168 channels
[i
].enabled
= uchan
->enabled
;
169 switch (uchan
->attr
.output
) {
172 channels
[i
].attr
.output
= LTTNG_EVENT_MMAP
;
186 * Create a list of ust global domain events.
188 static int list_lttng_ust_global_events(char *channel_name
,
189 struct ltt_ust_domain_global
*ust_global
, struct lttng_event
**events
)
192 unsigned int nb_event
= 0;
193 struct lttng_ht_iter iter
;
194 struct lttng_ht_node_str
*node
;
195 struct ltt_ust_channel
*uchan
;
196 struct ltt_ust_event
*uevent
;
197 struct lttng_event
*tmp
;
199 DBG("Listing UST global events for channel %s", channel_name
);
203 lttng_ht_lookup(ust_global
->channels
, (void *)channel_name
, &iter
);
204 node
= lttng_ht_iter_get_node_str(&iter
);
206 ret
= LTTNG_ERR_UST_CHAN_NOT_FOUND
;
210 uchan
= caa_container_of(&node
->node
, struct ltt_ust_channel
, node
.node
);
212 nb_event
+= lttng_ht_get_count(uchan
->events
);
219 DBG3("Listing UST global %d events", nb_event
);
221 tmp
= zmalloc(nb_event
* sizeof(struct lttng_event
));
223 ret
= LTTNG_ERR_FATAL
;
227 cds_lfht_for_each_entry(uchan
->events
->ht
, &iter
.iter
, uevent
, node
.node
) {
228 strncpy(tmp
[i
].name
, uevent
->attr
.name
, LTTNG_SYMBOL_NAME_LEN
);
229 tmp
[i
].name
[LTTNG_SYMBOL_NAME_LEN
- 1] = '\0';
230 tmp
[i
].enabled
= uevent
->enabled
;
232 switch (uevent
->attr
.instrumentation
) {
233 case LTTNG_UST_TRACEPOINT
:
234 tmp
[i
].type
= LTTNG_EVENT_TRACEPOINT
;
236 case LTTNG_UST_PROBE
:
237 tmp
[i
].type
= LTTNG_EVENT_PROBE
;
239 case LTTNG_UST_FUNCTION
:
240 tmp
[i
].type
= LTTNG_EVENT_FUNCTION
;
244 tmp
[i
].loglevel
= uevent
->attr
.loglevel
;
245 switch (uevent
->attr
.loglevel_type
) {
246 case LTTNG_UST_LOGLEVEL_ALL
:
247 tmp
[i
].loglevel_type
= LTTNG_EVENT_LOGLEVEL_ALL
;
249 case LTTNG_UST_LOGLEVEL_RANGE
:
250 tmp
[i
].loglevel_type
= LTTNG_EVENT_LOGLEVEL_RANGE
;
252 case LTTNG_UST_LOGLEVEL_SINGLE
:
253 tmp
[i
].loglevel_type
= LTTNG_EVENT_LOGLEVEL_SINGLE
;
256 if (uevent
->filter
) {
271 * Fill lttng_event array of all kernel events in the channel.
273 static int list_lttng_kernel_events(char *channel_name
,
274 struct ltt_kernel_session
*kernel_session
, struct lttng_event
**events
)
277 unsigned int nb_event
;
278 struct ltt_kernel_event
*event
;
279 struct ltt_kernel_channel
*kchan
;
281 kchan
= trace_kernel_get_channel_by_name(channel_name
, kernel_session
);
283 ret
= LTTNG_ERR_KERN_CHAN_NOT_FOUND
;
287 nb_event
= kchan
->event_count
;
289 DBG("Listing events for channel %s", kchan
->channel
->name
);
295 *events
= zmalloc(nb_event
* sizeof(struct lttng_event
));
296 if (*events
== NULL
) {
297 ret
= LTTNG_ERR_FATAL
;
301 /* Kernel channels */
302 cds_list_for_each_entry(event
, &kchan
->events_list
.head
, list
) {
303 strncpy((*events
)[i
].name
, event
->event
->name
, LTTNG_SYMBOL_NAME_LEN
);
304 (*events
)[i
].name
[LTTNG_SYMBOL_NAME_LEN
- 1] = '\0';
305 (*events
)[i
].enabled
= event
->enabled
;
307 switch (event
->event
->instrumentation
) {
308 case LTTNG_KERNEL_TRACEPOINT
:
309 (*events
)[i
].type
= LTTNG_EVENT_TRACEPOINT
;
311 case LTTNG_KERNEL_KRETPROBE
:
312 (*events
)[i
].type
= LTTNG_EVENT_FUNCTION
;
313 memcpy(&(*events
)[i
].attr
.probe
, &event
->event
->u
.kprobe
,
314 sizeof(struct lttng_kernel_kprobe
));
316 case LTTNG_KERNEL_KPROBE
:
317 (*events
)[i
].type
= LTTNG_EVENT_PROBE
;
318 memcpy(&(*events
)[i
].attr
.probe
, &event
->event
->u
.kprobe
,
319 sizeof(struct lttng_kernel_kprobe
));
321 case LTTNG_KERNEL_FUNCTION
:
322 (*events
)[i
].type
= LTTNG_EVENT_FUNCTION
;
323 memcpy(&((*events
)[i
].attr
.ftrace
), &event
->event
->u
.ftrace
,
324 sizeof(struct lttng_kernel_function
));
326 case LTTNG_KERNEL_NOOP
:
327 (*events
)[i
].type
= LTTNG_EVENT_NOOP
;
329 case LTTNG_KERNEL_SYSCALL
:
330 (*events
)[i
].type
= LTTNG_EVENT_SYSCALL
;
332 case LTTNG_KERNEL_ALL
:
343 /* Negate the error code to differentiate the size from an error */
348 * Add URI so the consumer output object. Set the correct path depending on the
349 * domain adding the default trace directory.
351 static int add_uri_to_consumer(struct consumer_output
*consumer
,
352 struct lttng_uri
*uri
, int domain
, const char *session_name
)
355 const char *default_trace_dir
;
359 if (consumer
== NULL
) {
360 DBG("No consumer detected. Don't add URI. Stopping.");
361 ret
= LTTNG_ERR_NO_CONSUMER
;
366 case LTTNG_DOMAIN_KERNEL
:
367 default_trace_dir
= DEFAULT_KERNEL_TRACE_DIR
;
369 case LTTNG_DOMAIN_UST
:
370 default_trace_dir
= DEFAULT_UST_TRACE_DIR
;
374 * This case is possible is we try to add the URI to the global tracing
375 * session consumer object which in this case there is no subdir.
377 default_trace_dir
= "";
380 switch (uri
->dtype
) {
383 DBG2("Setting network URI to consumer");
385 if (consumer
->type
== CONSUMER_DST_NET
) {
386 if ((uri
->stype
== LTTNG_STREAM_CONTROL
&&
387 consumer
->dst
.net
.control_isset
) ||
388 (uri
->stype
== LTTNG_STREAM_DATA
&&
389 consumer
->dst
.net
.data_isset
)) {
390 ret
= LTTNG_ERR_URL_EXIST
;
394 memset(&consumer
->dst
.net
, 0, sizeof(consumer
->dst
.net
));
397 consumer
->type
= CONSUMER_DST_NET
;
399 /* Set URI into consumer output object */
400 ret
= consumer_set_network_uri(consumer
, uri
);
404 } else if (ret
== 1) {
406 * URI was the same in the consumer so we do not append the subdir
407 * again so to not duplicate output dir.
412 if (uri
->stype
== LTTNG_STREAM_CONTROL
&& strlen(uri
->subdir
) == 0) {
413 ret
= consumer_set_subdir(consumer
, session_name
);
415 ret
= LTTNG_ERR_FATAL
;
420 if (uri
->stype
== LTTNG_STREAM_CONTROL
) {
421 /* On a new subdir, reappend the default trace dir. */
422 strncat(consumer
->subdir
, default_trace_dir
,
423 sizeof(consumer
->subdir
) - strlen(consumer
->subdir
) - 1);
424 DBG3("Append domain trace name to subdir %s", consumer
->subdir
);
429 DBG2("Setting trace directory path from URI to %s", uri
->dst
.path
);
430 memset(consumer
->dst
.trace_path
, 0,
431 sizeof(consumer
->dst
.trace_path
));
432 strncpy(consumer
->dst
.trace_path
, uri
->dst
.path
,
433 sizeof(consumer
->dst
.trace_path
));
434 /* Append default trace dir */
435 strncat(consumer
->dst
.trace_path
, default_trace_dir
,
436 sizeof(consumer
->dst
.trace_path
) -
437 strlen(consumer
->dst
.trace_path
) - 1);
438 /* Flag consumer as local. */
439 consumer
->type
= CONSUMER_DST_LOCAL
;
450 * Init tracing by creating trace directory and sending fds kernel consumer.
452 static int init_kernel_tracing(struct ltt_kernel_session
*session
)
455 struct lttng_ht_iter iter
;
456 struct consumer_socket
*socket
;
462 if (session
->consumer_fds_sent
== 0 && session
->consumer
!= NULL
) {
463 cds_lfht_for_each_entry(session
->consumer
->socks
->ht
, &iter
.iter
,
465 pthread_mutex_lock(socket
->lock
);
466 ret
= kernel_consumer_send_session(socket
, session
);
467 pthread_mutex_unlock(socket
->lock
);
469 ret
= LTTNG_ERR_KERN_CONSUMER_FAIL
;
481 * Create a socket to the relayd using the URI.
483 * On success, the relayd_sock pointer is set to the created socket.
484 * Else, it's stays untouched and a lttcomm error code is returned.
486 static int create_connect_relayd(struct lttng_uri
*uri
,
487 struct lttcomm_relayd_sock
**relayd_sock
)
490 struct lttcomm_relayd_sock
*rsock
;
492 rsock
= lttcomm_alloc_relayd_sock(uri
, RELAYD_VERSION_COMM_MAJOR
,
493 RELAYD_VERSION_COMM_MINOR
);
495 ret
= LTTNG_ERR_FATAL
;
500 * Connect to relayd so we can proceed with a session creation. This call
501 * can possibly block for an arbitrary amount of time to set the health
502 * state to be in poll execution.
505 ret
= relayd_connect(rsock
);
508 ERR("Unable to reach lttng-relayd");
509 ret
= LTTNG_ERR_RELAYD_CONNECT_FAIL
;
513 /* Create socket for control stream. */
514 if (uri
->stype
== LTTNG_STREAM_CONTROL
) {
515 DBG3("Creating relayd stream socket from URI");
517 /* Check relayd version */
518 ret
= relayd_version_check(rsock
);
520 ret
= LTTNG_ERR_RELAYD_VERSION_FAIL
;
523 } else if (uri
->stype
== LTTNG_STREAM_DATA
) {
524 DBG3("Creating relayd data socket from URI");
526 /* Command is not valid */
527 ERR("Relayd invalid stream type: %d", uri
->stype
);
528 ret
= LTTNG_ERR_INVALID
;
532 *relayd_sock
= rsock
;
537 /* The returned value is not useful since we are on an error path. */
538 (void) relayd_close(rsock
);
546 * Connect to the relayd using URI and send the socket to the right consumer.
548 static int send_consumer_relayd_socket(int domain
, unsigned int session_id
,
549 struct lttng_uri
*relayd_uri
, struct consumer_output
*consumer
,
550 struct consumer_socket
*consumer_sock
)
553 struct lttcomm_relayd_sock
*rsock
= NULL
;
555 /* Connect to relayd and make version check if uri is the control. */
556 ret
= create_connect_relayd(relayd_uri
, &rsock
);
557 if (ret
!= LTTNG_OK
) {
562 /* Set the network sequence index if not set. */
563 if (consumer
->net_seq_index
== (uint64_t) -1ULL) {
564 pthread_mutex_lock(&relayd_net_seq_idx_lock
);
566 * Increment net_seq_idx because we are about to transfer the
567 * new relayd socket to the consumer.
568 * Assign unique key so the consumer can match streams.
570 consumer
->net_seq_index
= ++relayd_net_seq_idx
;
571 pthread_mutex_unlock(&relayd_net_seq_idx_lock
);
574 /* Send relayd socket to consumer. */
575 ret
= consumer_send_relayd_socket(consumer_sock
, rsock
, consumer
,
576 relayd_uri
->stype
, session_id
);
578 ret
= LTTNG_ERR_ENABLE_CONSUMER_FAIL
;
582 /* Flag that the corresponding socket was sent. */
583 if (relayd_uri
->stype
== LTTNG_STREAM_CONTROL
) {
584 consumer_sock
->control_sock_sent
= 1;
585 } else if (relayd_uri
->stype
== LTTNG_STREAM_DATA
) {
586 consumer_sock
->data_sock_sent
= 1;
592 * Close socket which was dup on the consumer side. The session daemon does
593 * NOT keep track of the relayd socket(s) once transfer to the consumer.
597 (void) relayd_close(rsock
);
601 if (ret
!= LTTNG_OK
) {
603 * The consumer output for this session should not be used anymore
604 * since the relayd connection failed thus making any tracing or/and
605 * streaming not usable.
607 consumer
->enabled
= 0;
613 * Send both relayd sockets to a specific consumer and domain. This is a
614 * helper function to facilitate sending the information to the consumer for a
617 static int send_consumer_relayd_sockets(int domain
, unsigned int session_id
,
618 struct consumer_output
*consumer
, struct consumer_socket
*sock
)
625 /* Sending control relayd socket. */
626 if (!sock
->control_sock_sent
) {
627 ret
= send_consumer_relayd_socket(domain
, session_id
,
628 &consumer
->dst
.net
.control
, consumer
, sock
);
629 if (ret
!= LTTNG_OK
) {
634 /* Sending data relayd socket. */
635 if (!sock
->data_sock_sent
) {
636 ret
= send_consumer_relayd_socket(domain
, session_id
,
637 &consumer
->dst
.net
.data
, consumer
, sock
);
638 if (ret
!= LTTNG_OK
) {
648 * Setup relayd connections for a tracing session. First creates the socket to
649 * the relayd and send them to the right domain consumer. Consumer type MUST be
652 int cmd_setup_relayd(struct ltt_session
*session
)
655 struct ltt_ust_session
*usess
;
656 struct ltt_kernel_session
*ksess
;
657 struct consumer_socket
*socket
;
658 struct lttng_ht_iter iter
;
662 usess
= session
->ust_session
;
663 ksess
= session
->kernel_session
;
665 DBG("Setting relayd for session %s", session
->name
);
669 if (usess
&& usess
->consumer
&& usess
->consumer
->type
== CONSUMER_DST_NET
670 && usess
->consumer
->enabled
) {
671 /* For each consumer socket, send relayd sockets */
672 cds_lfht_for_each_entry(usess
->consumer
->socks
->ht
, &iter
.iter
,
674 pthread_mutex_lock(socket
->lock
);
675 ret
= send_consumer_relayd_sockets(LTTNG_DOMAIN_UST
, session
->id
,
676 usess
->consumer
, socket
);
677 pthread_mutex_unlock(socket
->lock
);
678 if (ret
!= LTTNG_OK
) {
681 /* Session is now ready for network streaming. */
682 session
->net_handle
= 1;
686 if (ksess
&& ksess
->consumer
&& ksess
->consumer
->type
== CONSUMER_DST_NET
687 && ksess
->consumer
->enabled
) {
688 cds_lfht_for_each_entry(ksess
->consumer
->socks
->ht
, &iter
.iter
,
690 pthread_mutex_lock(socket
->lock
);
691 ret
= send_consumer_relayd_sockets(LTTNG_DOMAIN_KERNEL
, session
->id
,
692 ksess
->consumer
, socket
);
693 pthread_mutex_unlock(socket
->lock
);
694 if (ret
!= LTTNG_OK
) {
697 /* Session is now ready for network streaming. */
698 session
->net_handle
= 1;
708 * Start a kernel session by opening all necessary streams.
710 static int start_kernel_session(struct ltt_kernel_session
*ksess
, int wpipe
)
713 struct ltt_kernel_channel
*kchan
;
715 /* Open kernel metadata */
716 if (ksess
->metadata
== NULL
&& ksess
->output_traces
) {
717 ret
= kernel_open_metadata(ksess
);
719 ret
= LTTNG_ERR_KERN_META_FAIL
;
724 /* Open kernel metadata stream */
725 if (ksess
->metadata
&& ksess
->metadata_stream_fd
< 0) {
726 ret
= kernel_open_metadata_stream(ksess
);
728 ERR("Kernel create metadata stream failed");
729 ret
= LTTNG_ERR_KERN_STREAM_FAIL
;
734 /* For each channel */
735 cds_list_for_each_entry(kchan
, &ksess
->channel_list
.head
, list
) {
736 if (kchan
->stream_count
== 0) {
737 ret
= kernel_open_channel_stream(kchan
);
739 ret
= LTTNG_ERR_KERN_STREAM_FAIL
;
742 /* Update the stream global counter */
743 ksess
->stream_count_global
+= ret
;
747 /* Setup kernel consumer socket and send fds to it */
748 ret
= init_kernel_tracing(ksess
);
750 ret
= LTTNG_ERR_KERN_START_FAIL
;
754 /* This start the kernel tracing */
755 ret
= kernel_start_session(ksess
);
757 ret
= LTTNG_ERR_KERN_START_FAIL
;
761 /* Quiescent wait after starting trace */
762 kernel_wait_quiescent(kernel_tracer_fd
);
773 * Command LTTNG_DISABLE_CHANNEL processed by the client thread.
775 int cmd_disable_channel(struct ltt_session
*session
, int domain
,
779 struct ltt_ust_session
*usess
;
781 usess
= session
->ust_session
;
786 case LTTNG_DOMAIN_KERNEL
:
788 ret
= channel_kernel_disable(session
->kernel_session
,
790 if (ret
!= LTTNG_OK
) {
794 kernel_wait_quiescent(kernel_tracer_fd
);
797 case LTTNG_DOMAIN_UST
:
799 struct ltt_ust_channel
*uchan
;
800 struct lttng_ht
*chan_ht
;
802 chan_ht
= usess
->domain_global
.channels
;
804 uchan
= trace_ust_find_channel_by_name(chan_ht
, channel_name
);
806 ret
= LTTNG_ERR_UST_CHAN_NOT_FOUND
;
810 ret
= channel_ust_disable(usess
, uchan
);
811 if (ret
!= LTTNG_OK
) {
817 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
818 case LTTNG_DOMAIN_UST_EXEC_NAME
:
819 case LTTNG_DOMAIN_UST_PID
:
822 ret
= LTTNG_ERR_UNKNOWN_DOMAIN
;
834 * Command LTTNG_ENABLE_CHANNEL processed by the client thread.
836 * The wpipe arguments is used as a notifier for the kernel thread.
838 int cmd_enable_channel(struct ltt_session
*session
,
839 struct lttng_domain
*domain
, struct lttng_channel
*attr
, int wpipe
)
842 struct ltt_ust_session
*usess
= session
->ust_session
;
843 struct lttng_ht
*chan_ht
;
849 DBG("Enabling channel %s for session %s", attr
->name
, session
->name
);
853 switch (domain
->type
) {
854 case LTTNG_DOMAIN_KERNEL
:
856 struct ltt_kernel_channel
*kchan
;
858 kchan
= trace_kernel_get_channel_by_name(attr
->name
,
859 session
->kernel_session
);
862 * Don't try to create a channel if the session
863 * has been started at some point in time
864 * before. The tracer does not allow it.
866 if (session
->started
) {
867 ret
= LTTNG_ERR_TRACE_ALREADY_STARTED
;
870 ret
= channel_kernel_create(session
->kernel_session
, attr
, wpipe
);
871 if (attr
->name
[0] != '\0') {
872 session
->kernel_session
->has_non_default_channel
= 1;
875 ret
= channel_kernel_enable(session
->kernel_session
, kchan
);
878 if (ret
!= LTTNG_OK
) {
882 kernel_wait_quiescent(kernel_tracer_fd
);
885 case LTTNG_DOMAIN_UST
:
887 struct ltt_ust_channel
*uchan
;
889 chan_ht
= usess
->domain_global
.channels
;
891 uchan
= trace_ust_find_channel_by_name(chan_ht
, attr
->name
);
894 * Don't try to create a channel if the session
895 * has been started at some point in time
896 * before. The tracer does not allow it.
898 if (session
->started
) {
899 ret
= LTTNG_ERR_TRACE_ALREADY_STARTED
;
902 ret
= channel_ust_create(usess
, attr
, domain
->buf_type
);
903 if (attr
->name
[0] != '\0') {
904 usess
->has_non_default_channel
= 1;
907 ret
= channel_ust_enable(usess
, uchan
);
912 ret
= LTTNG_ERR_UNKNOWN_DOMAIN
;
923 * Command LTTNG_DISABLE_EVENT processed by the client thread.
925 int cmd_disable_event(struct ltt_session
*session
, int domain
,
926 char *channel_name
, char *event_name
)
933 case LTTNG_DOMAIN_KERNEL
:
935 struct ltt_kernel_channel
*kchan
;
936 struct ltt_kernel_session
*ksess
;
938 ksess
= session
->kernel_session
;
941 * If a non-default channel has been created in the
942 * session, explicitely require that -c chan_name needs
945 if (ksess
->has_non_default_channel
&& channel_name
[0] == '\0') {
946 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
950 kchan
= trace_kernel_get_channel_by_name(channel_name
, ksess
);
952 ret
= LTTNG_ERR_KERN_CHAN_NOT_FOUND
;
956 ret
= event_kernel_disable_tracepoint(kchan
, event_name
);
957 if (ret
!= LTTNG_OK
) {
961 kernel_wait_quiescent(kernel_tracer_fd
);
964 case LTTNG_DOMAIN_UST
:
966 struct ltt_ust_channel
*uchan
;
967 struct ltt_ust_session
*usess
;
969 usess
= session
->ust_session
;
972 * If a non-default channel has been created in the
973 * session, explicitely require that -c chan_name needs
976 if (usess
->has_non_default_channel
&& channel_name
[0] == '\0') {
977 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
981 uchan
= trace_ust_find_channel_by_name(usess
->domain_global
.channels
,
984 ret
= LTTNG_ERR_UST_CHAN_NOT_FOUND
;
988 ret
= event_ust_disable_tracepoint(usess
, uchan
, event_name
);
989 if (ret
!= LTTNG_OK
) {
993 DBG3("Disable UST event %s in channel %s completed", event_name
,
998 case LTTNG_DOMAIN_UST_EXEC_NAME
:
999 case LTTNG_DOMAIN_UST_PID
:
1000 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
1003 ret
= LTTNG_ERR_UND
;
1015 * Command LTTNG_DISABLE_ALL_EVENT processed by the client thread.
1017 int cmd_disable_event_all(struct ltt_session
*session
, int domain
,
1025 case LTTNG_DOMAIN_KERNEL
:
1027 struct ltt_kernel_session
*ksess
;
1028 struct ltt_kernel_channel
*kchan
;
1030 ksess
= session
->kernel_session
;
1033 * If a non-default channel has been created in the
1034 * session, explicitely require that -c chan_name needs
1037 if (ksess
->has_non_default_channel
&& channel_name
[0] == '\0') {
1038 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1042 kchan
= trace_kernel_get_channel_by_name(channel_name
, ksess
);
1043 if (kchan
== NULL
) {
1044 ret
= LTTNG_ERR_KERN_CHAN_NOT_FOUND
;
1048 ret
= event_kernel_disable_all(kchan
);
1049 if (ret
!= LTTNG_OK
) {
1053 kernel_wait_quiescent(kernel_tracer_fd
);
1056 case LTTNG_DOMAIN_UST
:
1058 struct ltt_ust_session
*usess
;
1059 struct ltt_ust_channel
*uchan
;
1061 usess
= session
->ust_session
;
1064 * If a non-default channel has been created in the
1065 * session, explicitely require that -c chan_name needs
1068 if (usess
->has_non_default_channel
&& channel_name
[0] == '\0') {
1069 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1073 uchan
= trace_ust_find_channel_by_name(usess
->domain_global
.channels
,
1075 if (uchan
== NULL
) {
1076 ret
= LTTNG_ERR_UST_CHAN_NOT_FOUND
;
1080 ret
= event_ust_disable_all_tracepoints(usess
, uchan
);
1085 DBG3("Disable all UST events in channel %s completed", channel_name
);
1090 case LTTNG_DOMAIN_UST_EXEC_NAME
:
1091 case LTTNG_DOMAIN_UST_PID
:
1092 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
1095 ret
= LTTNG_ERR_UND
;
1107 * Command LTTNG_ADD_CONTEXT processed by the client thread.
1109 int cmd_add_context(struct ltt_session
*session
, int domain
,
1110 char *channel_name
, struct lttng_event_context
*ctx
, int kwpipe
)
1112 int ret
, chan_kern_created
= 0, chan_ust_created
= 0;
1115 case LTTNG_DOMAIN_KERNEL
:
1116 assert(session
->kernel_session
);
1118 if (session
->kernel_session
->channel_count
== 0) {
1119 /* Create default channel */
1120 ret
= channel_kernel_create(session
->kernel_session
, NULL
, kwpipe
);
1121 if (ret
!= LTTNG_OK
) {
1124 chan_kern_created
= 1;
1126 /* Add kernel context to kernel tracer */
1127 ret
= context_kernel_add(session
->kernel_session
, ctx
, channel_name
);
1128 if (ret
!= LTTNG_OK
) {
1132 case LTTNG_DOMAIN_UST
:
1134 struct ltt_ust_session
*usess
= session
->ust_session
;
1135 unsigned int chan_count
;
1139 chan_count
= lttng_ht_get_count(usess
->domain_global
.channels
);
1140 if (chan_count
== 0) {
1141 struct lttng_channel
*attr
;
1142 /* Create default channel */
1143 attr
= channel_new_default_attr(domain
, usess
->buffer_type
);
1145 ret
= LTTNG_ERR_FATAL
;
1149 ret
= channel_ust_create(usess
, attr
, usess
->buffer_type
);
1150 if (ret
!= LTTNG_OK
) {
1155 chan_ust_created
= 1;
1158 ret
= context_ust_add(usess
, domain
, ctx
, channel_name
);
1159 if (ret
!= LTTNG_OK
) {
1165 case LTTNG_DOMAIN_UST_EXEC_NAME
:
1166 case LTTNG_DOMAIN_UST_PID
:
1167 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
1170 ret
= LTTNG_ERR_UND
;
1177 if (chan_kern_created
) {
1178 struct ltt_kernel_channel
*kchan
=
1179 trace_kernel_get_channel_by_name(DEFAULT_CHANNEL_NAME
,
1180 session
->kernel_session
);
1181 /* Created previously, this should NOT fail. */
1183 kernel_destroy_channel(kchan
);
1186 if (chan_ust_created
) {
1187 struct ltt_ust_channel
*uchan
=
1188 trace_ust_find_channel_by_name(
1189 session
->ust_session
->domain_global
.channels
,
1190 DEFAULT_CHANNEL_NAME
);
1191 /* Created previously, this should NOT fail. */
1193 /* Remove from the channel list of the session. */
1194 trace_ust_delete_channel(session
->ust_session
->domain_global
.channels
,
1196 trace_ust_destroy_channel(uchan
);
1202 * Command LTTNG_ENABLE_EVENT processed by the client thread.
1204 int cmd_enable_event(struct ltt_session
*session
, struct lttng_domain
*domain
,
1205 char *channel_name
, struct lttng_event
*event
,
1206 struct lttng_filter_bytecode
*filter
, int wpipe
)
1208 int ret
, channel_created
= 0;
1209 struct lttng_channel
*attr
;
1213 assert(channel_name
);
1217 switch (domain
->type
) {
1218 case LTTNG_DOMAIN_KERNEL
:
1220 struct ltt_kernel_channel
*kchan
;
1223 * If a non-default channel has been created in the
1224 * session, explicitely require that -c chan_name needs
1227 if (session
->kernel_session
->has_non_default_channel
1228 && channel_name
[0] == '\0') {
1229 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1233 kchan
= trace_kernel_get_channel_by_name(channel_name
,
1234 session
->kernel_session
);
1235 if (kchan
== NULL
) {
1236 attr
= channel_new_default_attr(LTTNG_DOMAIN_KERNEL
,
1237 LTTNG_BUFFER_GLOBAL
);
1239 ret
= LTTNG_ERR_FATAL
;
1242 strncpy(attr
->name
, channel_name
, sizeof(attr
->name
));
1244 ret
= cmd_enable_channel(session
, domain
, attr
, wpipe
);
1245 if (ret
!= LTTNG_OK
) {
1251 channel_created
= 1;
1254 /* Get the newly created kernel channel pointer */
1255 kchan
= trace_kernel_get_channel_by_name(channel_name
,
1256 session
->kernel_session
);
1257 if (kchan
== NULL
) {
1258 /* This sould not happen... */
1259 ret
= LTTNG_ERR_FATAL
;
1263 ret
= event_kernel_enable_tracepoint(kchan
, event
);
1264 if (ret
!= LTTNG_OK
) {
1265 if (channel_created
) {
1266 /* Let's not leak a useless channel. */
1267 kernel_destroy_channel(kchan
);
1272 kernel_wait_quiescent(kernel_tracer_fd
);
1275 case LTTNG_DOMAIN_UST
:
1277 struct ltt_ust_channel
*uchan
;
1278 struct ltt_ust_session
*usess
= session
->ust_session
;
1283 * If a non-default channel has been created in the
1284 * session, explicitely require that -c chan_name needs
1287 if (usess
->has_non_default_channel
&& channel_name
[0] == '\0') {
1288 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1292 /* Get channel from global UST domain */
1293 uchan
= trace_ust_find_channel_by_name(usess
->domain_global
.channels
,
1295 if (uchan
== NULL
) {
1296 /* Create default channel */
1297 attr
= channel_new_default_attr(LTTNG_DOMAIN_UST
,
1298 usess
->buffer_type
);
1300 ret
= LTTNG_ERR_FATAL
;
1303 strncpy(attr
->name
, channel_name
, sizeof(attr
->name
));
1305 ret
= cmd_enable_channel(session
, domain
, attr
, wpipe
);
1306 if (ret
!= LTTNG_OK
) {
1312 /* Get the newly created channel reference back */
1313 uchan
= trace_ust_find_channel_by_name(
1314 usess
->domain_global
.channels
, channel_name
);
1318 /* At this point, the session and channel exist on the tracer */
1319 ret
= event_ust_enable_tracepoint(usess
, uchan
, event
, filter
);
1320 if (ret
!= LTTNG_OK
) {
1326 case LTTNG_DOMAIN_UST_EXEC_NAME
:
1327 case LTTNG_DOMAIN_UST_PID
:
1328 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
1331 ret
= LTTNG_ERR_UND
;
1343 * Command LTTNG_ENABLE_ALL_EVENT processed by the client thread.
1345 int cmd_enable_event_all(struct ltt_session
*session
,
1346 struct lttng_domain
*domain
, char *channel_name
, int event_type
,
1347 struct lttng_filter_bytecode
*filter
, int wpipe
)
1350 struct lttng_channel
*attr
;
1353 assert(channel_name
);
1357 switch (domain
->type
) {
1358 case LTTNG_DOMAIN_KERNEL
:
1360 struct ltt_kernel_channel
*kchan
;
1362 assert(session
->kernel_session
);
1365 * If a non-default channel has been created in the
1366 * session, explicitely require that -c chan_name needs
1369 if (session
->kernel_session
->has_non_default_channel
1370 && channel_name
[0] == '\0') {
1371 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1375 kchan
= trace_kernel_get_channel_by_name(channel_name
,
1376 session
->kernel_session
);
1377 if (kchan
== NULL
) {
1378 /* Create default channel */
1379 attr
= channel_new_default_attr(LTTNG_DOMAIN_KERNEL
,
1380 LTTNG_BUFFER_GLOBAL
);
1382 ret
= LTTNG_ERR_FATAL
;
1385 strncpy(attr
->name
, channel_name
, sizeof(attr
->name
));
1387 ret
= cmd_enable_channel(session
, domain
, attr
, wpipe
);
1388 if (ret
!= LTTNG_OK
) {
1394 /* Get the newly created kernel channel pointer */
1395 kchan
= trace_kernel_get_channel_by_name(channel_name
,
1396 session
->kernel_session
);
1400 switch (event_type
) {
1401 case LTTNG_EVENT_SYSCALL
:
1402 ret
= event_kernel_enable_all_syscalls(kchan
, kernel_tracer_fd
);
1404 case LTTNG_EVENT_TRACEPOINT
:
1406 * This call enables all LTTNG_KERNEL_TRACEPOINTS and
1407 * events already registered to the channel.
1409 ret
= event_kernel_enable_all_tracepoints(kchan
, kernel_tracer_fd
);
1411 case LTTNG_EVENT_ALL
:
1412 /* Enable syscalls and tracepoints */
1413 ret
= event_kernel_enable_all(kchan
, kernel_tracer_fd
);
1416 ret
= LTTNG_ERR_KERN_ENABLE_FAIL
;
1420 /* Manage return value */
1421 if (ret
!= LTTNG_OK
) {
1423 * On error, cmd_enable_channel call will take care of destroying
1424 * the created channel if it was needed.
1429 kernel_wait_quiescent(kernel_tracer_fd
);
1432 case LTTNG_DOMAIN_UST
:
1434 struct ltt_ust_channel
*uchan
;
1435 struct ltt_ust_session
*usess
= session
->ust_session
;
1440 * If a non-default channel has been created in the
1441 * session, explicitely require that -c chan_name needs
1444 if (usess
->has_non_default_channel
&& channel_name
[0] == '\0') {
1445 ret
= LTTNG_ERR_NEED_CHANNEL_NAME
;
1449 /* Get channel from global UST domain */
1450 uchan
= trace_ust_find_channel_by_name(usess
->domain_global
.channels
,
1452 if (uchan
== NULL
) {
1453 /* Create default channel */
1454 attr
= channel_new_default_attr(LTTNG_DOMAIN_UST
,
1455 usess
->buffer_type
);
1457 ret
= LTTNG_ERR_FATAL
;
1460 strncpy(attr
->name
, channel_name
, sizeof(attr
->name
));
1462 ret
= cmd_enable_channel(session
, domain
, attr
, wpipe
);
1463 if (ret
!= LTTNG_OK
) {
1469 /* Get the newly created channel reference back */
1470 uchan
= trace_ust_find_channel_by_name(
1471 usess
->domain_global
.channels
, channel_name
);
1475 /* At this point, the session and channel exist on the tracer */
1477 switch (event_type
) {
1478 case LTTNG_EVENT_ALL
:
1479 case LTTNG_EVENT_TRACEPOINT
:
1480 ret
= event_ust_enable_all_tracepoints(usess
, uchan
, filter
);
1481 if (ret
!= LTTNG_OK
) {
1486 ret
= LTTNG_ERR_UST_ENABLE_FAIL
;
1490 /* Manage return value */
1491 if (ret
!= LTTNG_OK
) {
1498 case LTTNG_DOMAIN_UST_EXEC_NAME
:
1499 case LTTNG_DOMAIN_UST_PID
:
1500 case LTTNG_DOMAIN_UST_PID_FOLLOW_CHILDREN
:
1503 ret
= LTTNG_ERR_UND
;
1516 * Command LTTNG_LIST_TRACEPOINTS processed by the client thread.
1518 ssize_t
cmd_list_tracepoints(int domain
, struct lttng_event
**events
)
1521 ssize_t nb_events
= 0;
1524 case LTTNG_DOMAIN_KERNEL
:
1525 nb_events
= kernel_list_events(kernel_tracer_fd
, events
);
1526 if (nb_events
< 0) {
1527 ret
= LTTNG_ERR_KERN_LIST_FAIL
;
1531 case LTTNG_DOMAIN_UST
:
1532 nb_events
= ust_app_list_events(events
);
1533 if (nb_events
< 0) {
1534 ret
= LTTNG_ERR_UST_LIST_FAIL
;
1539 ret
= LTTNG_ERR_UND
;
1546 /* Return negative value to differentiate return code */
1551 * Command LTTNG_LIST_TRACEPOINT_FIELDS processed by the client thread.
1553 ssize_t
cmd_list_tracepoint_fields(int domain
,
1554 struct lttng_event_field
**fields
)
1557 ssize_t nb_fields
= 0;
1560 case LTTNG_DOMAIN_UST
:
1561 nb_fields
= ust_app_list_event_fields(fields
);
1562 if (nb_fields
< 0) {
1563 ret
= LTTNG_ERR_UST_LIST_FAIL
;
1567 case LTTNG_DOMAIN_KERNEL
:
1568 default: /* fall-through */
1569 ret
= LTTNG_ERR_UND
;
1576 /* Return negative value to differentiate return code */
1581 * Command LTTNG_START_TRACE processed by the client thread.
1583 int cmd_start_trace(struct ltt_session
*session
)
1586 unsigned long nb_chan
= 0;
1587 struct ltt_kernel_session
*ksession
;
1588 struct ltt_ust_session
*usess
;
1592 /* Ease our life a bit ;) */
1593 ksession
= session
->kernel_session
;
1594 usess
= session
->ust_session
;
1596 if (session
->enabled
) {
1597 /* Already started. */
1598 ret
= LTTNG_ERR_TRACE_ALREADY_STARTED
;
1603 * Starting a session without channel is useless since after that it's not
1604 * possible to enable channel thus inform the client.
1606 if (usess
&& usess
->domain_global
.channels
) {
1607 nb_chan
+= lttng_ht_get_count(usess
->domain_global
.channels
);
1610 nb_chan
+= ksession
->channel_count
;
1613 ret
= LTTNG_ERR_NO_CHANNEL
;
1617 session
->enabled
= 1;
1619 /* Kernel tracing */
1620 if (ksession
!= NULL
) {
1621 ret
= start_kernel_session(ksession
, kernel_tracer_fd
);
1622 if (ret
!= LTTNG_OK
) {
1627 /* Flag session that trace should start automatically */
1629 usess
->start_trace
= 1;
1631 ret
= ust_app_start_trace_all(usess
);
1633 ret
= LTTNG_ERR_UST_START_FAIL
;
1638 session
->started
= 1;
1647 * Command LTTNG_STOP_TRACE processed by the client thread.
1649 int cmd_stop_trace(struct ltt_session
*session
)
1652 struct ltt_kernel_channel
*kchan
;
1653 struct ltt_kernel_session
*ksession
;
1654 struct ltt_ust_session
*usess
;
1659 ksession
= session
->kernel_session
;
1660 usess
= session
->ust_session
;
1662 if (!session
->enabled
) {
1663 ret
= LTTNG_ERR_TRACE_ALREADY_STOPPED
;
1667 session
->enabled
= 0;
1670 if (ksession
&& ksession
->started
) {
1671 DBG("Stop kernel tracing");
1673 /* Flush metadata if exist */
1674 if (ksession
->metadata_stream_fd
>= 0) {
1675 ret
= kernel_metadata_flush_buffer(ksession
->metadata_stream_fd
);
1677 ERR("Kernel metadata flush failed");
1681 /* Flush all buffers before stopping */
1682 cds_list_for_each_entry(kchan
, &ksession
->channel_list
.head
, list
) {
1683 ret
= kernel_flush_buffer(kchan
);
1685 ERR("Kernel flush buffer error");
1689 ret
= kernel_stop_session(ksession
);
1691 ret
= LTTNG_ERR_KERN_STOP_FAIL
;
1695 kernel_wait_quiescent(kernel_tracer_fd
);
1697 ksession
->started
= 0;
1700 if (usess
&& usess
->start_trace
) {
1701 usess
->start_trace
= 0;
1703 ret
= ust_app_stop_trace_all(usess
);
1705 ret
= LTTNG_ERR_UST_STOP_FAIL
;
1717 * Command LTTNG_SET_CONSUMER_URI processed by the client thread.
1719 int cmd_set_consumer_uri(int domain
, struct ltt_session
*session
,
1720 size_t nb_uri
, struct lttng_uri
*uris
)
1723 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
1724 struct ltt_ust_session
*usess
= session
->ust_session
;
1725 struct consumer_output
*consumer
= NULL
;
1731 /* Can't enable consumer after session started. */
1732 if (session
->enabled
) {
1733 ret
= LTTNG_ERR_TRACE_ALREADY_STARTED
;
1738 * This case switch makes sure the domain session has a temporary consumer
1739 * so the URL can be set.
1743 /* Code flow error. A session MUST always have a consumer object */
1744 assert(session
->consumer
);
1746 * The URL will be added to the tracing session consumer instead of a
1747 * specific domain consumer.
1749 consumer
= session
->consumer
;
1751 case LTTNG_DOMAIN_KERNEL
:
1752 /* Code flow error if we don't have a kernel session here. */
1754 assert(ksess
->consumer
);
1755 consumer
= ksess
->consumer
;
1757 case LTTNG_DOMAIN_UST
:
1758 /* Code flow error if we don't have a kernel session here. */
1760 assert(usess
->consumer
);
1761 consumer
= usess
->consumer
;
1765 for (i
= 0; i
< nb_uri
; i
++) {
1766 ret
= add_uri_to_consumer(consumer
, &uris
[i
], domain
, session
->name
);
1767 if (ret
!= LTTNG_OK
) {
1780 * Command LTTNG_CREATE_SESSION processed by the client thread.
1782 int cmd_create_session_uri(char *name
, struct lttng_uri
*uris
,
1783 size_t nb_uri
, lttng_sock_cred
*creds
)
1786 struct ltt_session
*session
;
1792 * Verify if the session already exist
1794 * XXX: There is no need for the session lock list here since the caller
1795 * (process_client_msg) is holding it. We might want to change that so a
1796 * single command does not lock the entire session list.
1798 session
= session_find_by_name(name
);
1799 if (session
!= NULL
) {
1800 ret
= LTTNG_ERR_EXIST_SESS
;
1804 /* Create tracing session in the registry */
1805 ret
= session_create(name
, LTTNG_SOCK_GET_UID_CRED(creds
),
1806 LTTNG_SOCK_GET_GID_CRED(creds
));
1807 if (ret
!= LTTNG_OK
) {
1812 * Get the newly created session pointer back
1814 * XXX: There is no need for the session lock list here since the caller
1815 * (process_client_msg) is holding it. We might want to change that so a
1816 * single command does not lock the entire session list.
1818 session
= session_find_by_name(name
);
1821 /* Create default consumer output for the session not yet created. */
1822 session
->consumer
= consumer_create_output(CONSUMER_DST_LOCAL
);
1823 if (session
->consumer
== NULL
) {
1824 ret
= LTTNG_ERR_FATAL
;
1825 goto consumer_error
;
1829 ret
= cmd_set_consumer_uri(0, session
, nb_uri
, uris
);
1830 if (ret
!= LTTNG_OK
) {
1831 goto consumer_error
;
1833 session
->output_traces
= 1;
1835 session
->output_traces
= 0;
1836 DBG2("Session %s created with no output", session
->name
);
1839 session
->consumer
->enabled
= 1;
1844 session_destroy(session
);
1851 * Command LTTNG_CREATE_SESSION_SNAPSHOT processed by the client thread.
1853 int cmd_create_session_snapshot(char *name
, struct lttng_uri
*uris
,
1854 size_t nb_uri
, lttng_sock_cred
*creds
)
1857 struct ltt_session
*session
;
1858 struct snapshot_output
*new_output
= NULL
;
1864 * Create session in no output mode with URIs set to NULL. The uris we've
1865 * received are for a default snapshot output if one.
1867 ret
= cmd_create_session_uri(name
, NULL
, 0, creds
);
1868 if (ret
!= LTTNG_OK
) {
1872 /* Get the newly created session pointer back. This should NEVER fail. */
1873 session
= session_find_by_name(name
);
1876 /* Flag session for snapshot mode. */
1877 session
->snapshot_mode
= 1;
1879 /* Skip snapshot output creation if no URI is given. */
1884 new_output
= snapshot_output_alloc();
1886 ret
= LTTNG_ERR_NOMEM
;
1887 goto error_snapshot_alloc
;
1890 ret
= snapshot_output_init_with_uri(DEFAULT_SNAPSHOT_MAX_SIZE
, NULL
,
1891 uris
, nb_uri
, session
->consumer
, new_output
, &session
->snapshot
);
1893 if (ret
== -ENOMEM
) {
1894 ret
= LTTNG_ERR_NOMEM
;
1896 ret
= LTTNG_ERR_INVALID
;
1898 goto error_snapshot
;
1902 snapshot_add_output(&session
->snapshot
, new_output
);
1909 snapshot_output_destroy(new_output
);
1910 error_snapshot_alloc
:
1911 session_destroy(session
);
1917 * Command LTTNG_DESTROY_SESSION processed by the client thread.
1919 int cmd_destroy_session(struct ltt_session
*session
, int wpipe
)
1922 struct ltt_ust_session
*usess
;
1923 struct ltt_kernel_session
*ksess
;
1928 usess
= session
->ust_session
;
1929 ksess
= session
->kernel_session
;
1931 /* Clean kernel session teardown */
1932 kernel_destroy_session(ksess
);
1934 /* UST session teardown */
1936 /* Close any relayd session */
1937 consumer_output_send_destroy_relayd(usess
->consumer
);
1939 /* Destroy every UST application related to this session. */
1940 ret
= ust_app_destroy_trace_all(usess
);
1942 ERR("Error in ust_app_destroy_trace_all");
1945 /* Clean up the rest. */
1946 trace_ust_destroy_session(usess
);
1950 * Must notify the kernel thread here to update it's poll set in order to
1951 * remove the channel(s)' fd just destroyed.
1953 ret
= notify_thread_pipe(wpipe
);
1955 PERROR("write kernel poll pipe");
1958 ret
= session_destroy(session
);
1964 * Command LTTNG_CALIBRATE processed by the client thread.
1966 int cmd_calibrate(int domain
, struct lttng_calibrate
*calibrate
)
1971 case LTTNG_DOMAIN_KERNEL
:
1973 struct lttng_kernel_calibrate kcalibrate
;
1975 switch (calibrate
->type
) {
1976 case LTTNG_CALIBRATE_FUNCTION
:
1978 /* Default and only possible calibrate option. */
1979 kcalibrate
.type
= LTTNG_KERNEL_CALIBRATE_KRETPROBE
;
1983 ret
= kernel_calibrate(kernel_tracer_fd
, &kcalibrate
);
1985 ret
= LTTNG_ERR_KERN_ENABLE_FAIL
;
1990 case LTTNG_DOMAIN_UST
:
1992 struct lttng_ust_calibrate ucalibrate
;
1994 switch (calibrate
->type
) {
1995 case LTTNG_CALIBRATE_FUNCTION
:
1997 /* Default and only possible calibrate option. */
1998 ucalibrate
.type
= LTTNG_UST_CALIBRATE_TRACEPOINT
;
2002 ret
= ust_app_calibrate_glb(&ucalibrate
);
2004 ret
= LTTNG_ERR_UST_CALIBRATE_FAIL
;
2010 ret
= LTTNG_ERR_UND
;
2021 * Command LTTNG_REGISTER_CONSUMER processed by the client thread.
2023 int cmd_register_consumer(struct ltt_session
*session
, int domain
,
2024 const char *sock_path
, struct consumer_data
*cdata
)
2027 struct consumer_socket
*socket
= NULL
;
2034 case LTTNG_DOMAIN_KERNEL
:
2036 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
2040 /* Can't register a consumer if there is already one */
2041 if (ksess
->consumer_fds_sent
!= 0) {
2042 ret
= LTTNG_ERR_KERN_CONSUMER_FAIL
;
2046 sock
= lttcomm_connect_unix_sock(sock_path
);
2048 ret
= LTTNG_ERR_CONNECT_FAIL
;
2051 cdata
->cmd_sock
= sock
;
2053 socket
= consumer_allocate_socket(&cdata
->cmd_sock
);
2054 if (socket
== NULL
) {
2057 PERROR("close register consumer");
2059 cdata
->cmd_sock
= -1;
2060 ret
= LTTNG_ERR_FATAL
;
2064 socket
->lock
= zmalloc(sizeof(pthread_mutex_t
));
2065 if (socket
->lock
== NULL
) {
2066 PERROR("zmalloc pthread mutex");
2067 ret
= LTTNG_ERR_FATAL
;
2070 pthread_mutex_init(socket
->lock
, NULL
);
2071 socket
->registered
= 1;
2074 consumer_add_socket(socket
, ksess
->consumer
);
2077 pthread_mutex_lock(&cdata
->pid_mutex
);
2079 pthread_mutex_unlock(&cdata
->pid_mutex
);
2084 /* TODO: Userspace tracing */
2085 ret
= LTTNG_ERR_UND
;
2093 consumer_destroy_socket(socket
);
2099 * Command LTTNG_LIST_DOMAINS processed by the client thread.
2101 ssize_t
cmd_list_domains(struct ltt_session
*session
,
2102 struct lttng_domain
**domains
)
2107 if (session
->kernel_session
!= NULL
) {
2108 DBG3("Listing domains found kernel domain");
2112 if (session
->ust_session
!= NULL
) {
2113 DBG3("Listing domains found UST global domain");
2117 *domains
= zmalloc(nb_dom
* sizeof(struct lttng_domain
));
2118 if (*domains
== NULL
) {
2119 ret
= LTTNG_ERR_FATAL
;
2123 if (session
->kernel_session
!= NULL
) {
2124 (*domains
)[index
].type
= LTTNG_DOMAIN_KERNEL
;
2128 if (session
->ust_session
!= NULL
) {
2129 (*domains
)[index
].type
= LTTNG_DOMAIN_UST
;
2130 (*domains
)[index
].buf_type
= session
->ust_session
->buffer_type
;
2137 /* Return negative value to differentiate return code */
2143 * Command LTTNG_LIST_CHANNELS processed by the client thread.
2145 ssize_t
cmd_list_channels(int domain
, struct ltt_session
*session
,
2146 struct lttng_channel
**channels
)
2149 ssize_t nb_chan
= 0;
2152 case LTTNG_DOMAIN_KERNEL
:
2153 if (session
->kernel_session
!= NULL
) {
2154 nb_chan
= session
->kernel_session
->channel_count
;
2156 DBG3("Number of kernel channels %zd", nb_chan
);
2158 ret
= LTTNG_ERR_KERN_CHAN_NOT_FOUND
;
2161 case LTTNG_DOMAIN_UST
:
2162 if (session
->ust_session
!= NULL
) {
2163 nb_chan
= lttng_ht_get_count(
2164 session
->ust_session
->domain_global
.channels
);
2166 DBG3("Number of UST global channels %zd", nb_chan
);
2168 ret
= LTTNG_ERR_UST_CHAN_NOT_FOUND
;
2173 ret
= LTTNG_ERR_UND
;
2178 *channels
= zmalloc(nb_chan
* sizeof(struct lttng_channel
));
2179 if (*channels
== NULL
) {
2180 ret
= LTTNG_ERR_FATAL
;
2184 list_lttng_channels(domain
, session
, *channels
);
2187 /* Ret value was set in the domain switch case */
2194 /* Return negative value to differentiate return code */
2199 * Command LTTNG_LIST_EVENTS processed by the client thread.
2201 ssize_t
cmd_list_events(int domain
, struct ltt_session
*session
,
2202 char *channel_name
, struct lttng_event
**events
)
2205 ssize_t nb_event
= 0;
2208 case LTTNG_DOMAIN_KERNEL
:
2209 if (session
->kernel_session
!= NULL
) {
2210 nb_event
= list_lttng_kernel_events(channel_name
,
2211 session
->kernel_session
, events
);
2214 case LTTNG_DOMAIN_UST
:
2216 if (session
->ust_session
!= NULL
) {
2217 nb_event
= list_lttng_ust_global_events(channel_name
,
2218 &session
->ust_session
->domain_global
, events
);
2223 ret
= LTTNG_ERR_UND
;
2230 /* Return negative value to differentiate return code */
2235 * Using the session list, filled a lttng_session array to send back to the
2236 * client for session listing.
2238 * The session list lock MUST be acquired before calling this function. Use
2239 * session_lock_list() and session_unlock_list().
2241 void cmd_list_lttng_sessions(struct lttng_session
*sessions
, uid_t uid
,
2246 struct ltt_session
*session
;
2247 struct ltt_session_list
*list
= session_get_list();
2249 DBG("Getting all available session for UID %d GID %d",
2252 * Iterate over session list and append data after the control struct in
2255 cds_list_for_each_entry(session
, &list
->head
, list
) {
2257 * Only list the sessions the user can control.
2259 if (!session_access_ok(session
, uid
, gid
)) {
2263 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
2264 struct ltt_ust_session
*usess
= session
->ust_session
;
2266 if (session
->consumer
->type
== CONSUMER_DST_NET
||
2267 (ksess
&& ksess
->consumer
->type
== CONSUMER_DST_NET
) ||
2268 (usess
&& usess
->consumer
->type
== CONSUMER_DST_NET
)) {
2269 ret
= build_network_session_path(sessions
[i
].path
,
2270 sizeof(sessions
[i
].path
), session
);
2272 ret
= snprintf(sessions
[i
].path
, sizeof(sessions
[i
].path
), "%s",
2273 session
->consumer
->dst
.trace_path
);
2276 PERROR("snprintf session path");
2280 strncpy(sessions
[i
].name
, session
->name
, NAME_MAX
);
2281 sessions
[i
].name
[NAME_MAX
- 1] = '\0';
2282 sessions
[i
].enabled
= session
->enabled
;
2283 sessions
[i
].snapshot_mode
= session
->snapshot_mode
;
2289 * Command LTTNG_DATA_PENDING returning 0 if the data is NOT pending meaning
2290 * ready for trace analysis (or any kind of reader) or else 1 for pending data.
2292 int cmd_data_pending(struct ltt_session
*session
)
2295 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
2296 struct ltt_ust_session
*usess
= session
->ust_session
;
2300 /* Session MUST be stopped to ask for data availability. */
2301 if (session
->enabled
) {
2302 ret
= LTTNG_ERR_SESSION_STARTED
;
2306 if (ksess
&& ksess
->consumer
) {
2307 ret
= consumer_is_data_pending(ksess
->id
, ksess
->consumer
);
2309 /* Data is still being extracted for the kernel. */
2314 if (usess
&& usess
->consumer
) {
2315 ret
= consumer_is_data_pending(usess
->id
, usess
->consumer
);
2317 /* Data is still being extracted for the kernel. */
2322 /* Data is ready to be read by a viewer */
2330 * Command LTTNG_SNAPSHOT_ADD_OUTPUT from the lttng ctl library.
2332 * Return LTTNG_OK on success or else a LTTNG_ERR code.
2334 int cmd_snapshot_add_output(struct ltt_session
*session
,
2335 struct lttng_snapshot_output
*output
, uint32_t *id
)
2338 struct snapshot_output
*new_output
;
2343 DBG("Cmd snapshot add output for session %s", session
->name
);
2346 * Permission denied to create an output if the session is not
2347 * set in no output mode.
2349 if (session
->output_traces
) {
2350 ret
= LTTNG_ERR_EPERM
;
2354 /* Only one output is allowed until we have the "tee" feature. */
2355 if (session
->snapshot
.nb_output
== 1) {
2356 ret
= LTTNG_ERR_SNAPSHOT_OUTPUT_EXIST
;
2360 new_output
= snapshot_output_alloc();
2362 ret
= LTTNG_ERR_NOMEM
;
2366 ret
= snapshot_output_init(output
->max_size
, output
->name
,
2367 output
->ctrl_url
, output
->data_url
, session
->consumer
, new_output
,
2368 &session
->snapshot
);
2370 if (ret
== -ENOMEM
) {
2371 ret
= LTTNG_ERR_NOMEM
;
2373 ret
= LTTNG_ERR_INVALID
;
2379 snapshot_add_output(&session
->snapshot
, new_output
);
2381 *id
= new_output
->id
;
2388 snapshot_output_destroy(new_output
);
2394 * Command LTTNG_SNAPSHOT_DEL_OUTPUT from lib lttng ctl.
2396 * Return LTTNG_OK on success or else a LTTNG_ERR code.
2398 int cmd_snapshot_del_output(struct ltt_session
*session
,
2399 struct lttng_snapshot_output
*output
)
2402 struct snapshot_output
*sout
= NULL
;
2410 * Permission denied to create an output if the session is not
2411 * set in no output mode.
2413 if (session
->output_traces
) {
2414 ret
= LTTNG_ERR_EPERM
;
2419 DBG("Cmd snapshot del output id %" PRIu32
" for session %s", output
->id
,
2421 sout
= snapshot_find_output_by_id(output
->id
, &session
->snapshot
);
2422 } else if (*output
->name
!= '\0') {
2423 DBG("Cmd snapshot del output name %s for session %s", output
->name
,
2425 sout
= snapshot_find_output_by_name(output
->name
, &session
->snapshot
);
2428 ret
= LTTNG_ERR_INVALID
;
2432 snapshot_delete_output(&session
->snapshot
, sout
);
2433 snapshot_output_destroy(sout
);
2442 * Command LTTNG_SNAPSHOT_LIST_OUTPUT from lib lttng ctl.
2444 * If no output is available, outputs is untouched and 0 is returned.
2446 * Return the size of the newly allocated outputs or a negative LTTNG_ERR code.
2448 ssize_t
cmd_snapshot_list_outputs(struct ltt_session
*session
,
2449 struct lttng_snapshot_output
**outputs
)
2452 struct lttng_snapshot_output
*list
;
2453 struct lttng_ht_iter iter
;
2454 struct snapshot_output
*output
;
2459 DBG("Cmd snapshot list outputs for session %s", session
->name
);
2462 * Permission denied to create an output if the session is not
2463 * set in no output mode.
2465 if (session
->output_traces
) {
2466 ret
= LTTNG_ERR_EPERM
;
2470 if (session
->snapshot
.nb_output
== 0) {
2475 list
= zmalloc(session
->snapshot
.nb_output
* sizeof(*list
));
2477 ret
= LTTNG_ERR_NOMEM
;
2481 /* Copy list from session to the new list object. */
2482 cds_lfht_for_each_entry(session
->snapshot
.output_ht
->ht
, &iter
.iter
,
2483 output
, node
.node
) {
2484 assert(output
->consumer
);
2485 list
[idx
].id
= output
->id
;
2486 list
[idx
].max_size
= output
->max_size
;
2487 strncpy(list
[idx
].name
, output
->name
, sizeof(list
[idx
].name
));
2488 if (output
->consumer
->type
== CONSUMER_DST_LOCAL
) {
2489 strncpy(list
[idx
].ctrl_url
, output
->consumer
->dst
.trace_path
,
2490 sizeof(list
[idx
].ctrl_url
));
2493 ret
= uri_to_str_url(&output
->consumer
->dst
.net
.control
,
2494 list
[idx
].ctrl_url
, sizeof(list
[idx
].ctrl_url
));
2496 ret
= LTTNG_ERR_NOMEM
;
2501 ret
= uri_to_str_url(&output
->consumer
->dst
.net
.data
,
2502 list
[idx
].data_url
, sizeof(list
[idx
].data_url
));
2504 ret
= LTTNG_ERR_NOMEM
;
2512 return session
->snapshot
.nb_output
;
2521 * Send relayd sockets from snapshot output to consumer. Ignore request if the
2522 * snapshot output is *not* set with a remote destination.
2524 * Return 0 on success or a LTTNG_ERR code.
2526 static int set_relayd_for_snapshot(struct consumer_output
*consumer
,
2527 struct snapshot_output
*snap_output
, struct ltt_session
*session
)
2530 struct lttng_ht_iter iter
;
2531 struct consumer_socket
*socket
;
2534 assert(snap_output
);
2537 DBG2("Set relayd object from snapshot output");
2539 /* Ignore if snapshot consumer output is not network. */
2540 if (snap_output
->consumer
->type
!= CONSUMER_DST_NET
) {
2545 * For each consumer socket, create and send the relayd object of the
2549 cds_lfht_for_each_entry(snap_output
->consumer
->socks
->ht
, &iter
.iter
,
2550 socket
, node
.node
) {
2551 ret
= send_consumer_relayd_sockets(0, session
->id
,
2552 snap_output
->consumer
, socket
);
2553 if (ret
!= LTTNG_OK
) {
2565 * Record a kernel snapshot.
2567 * Return 0 on success or a LTTNG_ERR code.
2569 static int record_kernel_snapshot(struct ltt_kernel_session
*ksess
,
2570 struct snapshot_output
*output
, struct ltt_session
*session
,
2571 int wait
, int nb_streams
)
2579 /* Get the datetime for the snapshot output directory. */
2580 ret
= utils_get_current_time_str("%Y%m%d-%H%M%S", output
->datetime
,
2581 sizeof(output
->datetime
));
2583 ret
= LTTNG_ERR_INVALID
;
2588 * Copy kernel session sockets so we can communicate with the right
2589 * consumer for the snapshot record command.
2591 ret
= consumer_copy_sockets(output
->consumer
, ksess
->consumer
);
2593 ret
= LTTNG_ERR_NOMEM
;
2597 ret
= set_relayd_for_snapshot(ksess
->consumer
, output
, session
);
2598 if (ret
!= LTTNG_OK
) {
2599 goto error_snapshot
;
2602 ret
= kernel_snapshot_record(ksess
, output
, wait
, nb_streams
);
2603 if (ret
!= LTTNG_OK
) {
2604 goto error_snapshot
;
2610 /* Clean up copied sockets so this output can use some other later on. */
2611 consumer_destroy_output_sockets(output
->consumer
);
2617 * Record a UST snapshot.
2619 * Return 0 on success or a LTTNG_ERR error code.
2621 static int record_ust_snapshot(struct ltt_ust_session
*usess
,
2622 struct snapshot_output
*output
, struct ltt_session
*session
,
2623 int wait
, int nb_streams
)
2631 /* Get the datetime for the snapshot output directory. */
2632 ret
= utils_get_current_time_str("%Y%m%d-%H%M%S", output
->datetime
,
2633 sizeof(output
->datetime
));
2635 ret
= LTTNG_ERR_INVALID
;
2640 * Copy UST session sockets so we can communicate with the right
2641 * consumer for the snapshot record command.
2643 ret
= consumer_copy_sockets(output
->consumer
, usess
->consumer
);
2645 ret
= LTTNG_ERR_NOMEM
;
2649 ret
= set_relayd_for_snapshot(usess
->consumer
, output
, session
);
2650 if (ret
!= LTTNG_OK
) {
2651 goto error_snapshot
;
2654 ret
= ust_app_snapshot_record(usess
, output
, wait
, nb_streams
);
2658 ret
= LTTNG_ERR_INVALID
;
2661 ret
= LTTNG_ERR_SNAPSHOT_NODATA
;
2664 ret
= LTTNG_ERR_SNAPSHOT_FAIL
;
2667 goto error_snapshot
;
2673 /* Clean up copied sockets so this output can use some other later on. */
2674 consumer_destroy_output_sockets(output
->consumer
);
2680 * Returns the total number of streams for a session or a negative value
2683 static unsigned int get_total_nb_stream(struct ltt_session
*session
)
2685 unsigned int total_streams
= 0;
2687 if (session
->kernel_session
) {
2688 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
2690 total_streams
+= ksess
->stream_count_global
;
2693 if (session
->ust_session
) {
2694 struct ltt_ust_session
*usess
= session
->ust_session
;
2696 total_streams
+= ust_app_get_nb_stream(usess
);
2699 return total_streams
;
2703 * Command LTTNG_SNAPSHOT_RECORD from lib lttng ctl.
2705 * The wait parameter is ignored so this call always wait for the snapshot to
2706 * complete before returning.
2708 * Return LTTNG_OK on success or else a LTTNG_ERR code.
2710 int cmd_snapshot_record(struct ltt_session
*session
,
2711 struct lttng_snapshot_output
*output
, int wait
)
2714 unsigned int use_tmp_output
= 0;
2715 struct snapshot_output tmp_output
;
2716 unsigned int nb_streams
, snapshot_success
= 0;
2720 DBG("Cmd snapshot record for session %s", session
->name
);
2723 * Permission denied to create an output if the session is not
2724 * set in no output mode.
2726 if (session
->output_traces
) {
2727 ret
= LTTNG_ERR_EPERM
;
2731 /* The session needs to be started at least once. */
2732 if (!session
->started
) {
2733 ret
= LTTNG_ERR_START_SESSION_ONCE
;
2737 /* Use temporary output for the session. */
2738 if (output
&& *output
->ctrl_url
!= '\0') {
2739 ret
= snapshot_output_init(output
->max_size
, output
->name
,
2740 output
->ctrl_url
, output
->data_url
, session
->consumer
,
2743 if (ret
== -ENOMEM
) {
2744 ret
= LTTNG_ERR_NOMEM
;
2746 ret
= LTTNG_ERR_INVALID
;
2750 /* Use the global session count for the temporary snapshot. */
2751 tmp_output
.nb_snapshot
= session
->snapshot
.nb_snapshot
;
2756 * Get the total number of stream of that session which is used by the
2757 * maximum size of the snapshot feature.
2759 nb_streams
= get_total_nb_stream(session
);
2761 if (session
->kernel_session
) {
2762 struct ltt_kernel_session
*ksess
= session
->kernel_session
;
2764 if (use_tmp_output
) {
2765 ret
= record_kernel_snapshot(ksess
, &tmp_output
, session
,
2767 if (ret
!= LTTNG_OK
) {
2770 snapshot_success
= 1;
2772 struct snapshot_output
*sout
;
2773 struct lttng_ht_iter iter
;
2776 cds_lfht_for_each_entry(session
->snapshot
.output_ht
->ht
,
2777 &iter
.iter
, sout
, node
.node
) {
2779 * Make a local copy of the output and assign the possible
2780 * temporary value given by the caller.
2782 memset(&tmp_output
, 0, sizeof(tmp_output
));
2783 memcpy(&tmp_output
, sout
, sizeof(tmp_output
));
2785 /* Use temporary max size. */
2786 if (output
->max_size
!= (uint64_t) -1ULL) {
2787 tmp_output
.max_size
= output
->max_size
;
2790 /* Use temporary name. */
2791 if (*output
->name
!= '\0') {
2792 strncpy(tmp_output
.name
, output
->name
,
2793 sizeof(tmp_output
.name
));
2796 tmp_output
.nb_snapshot
= session
->snapshot
.nb_snapshot
;
2798 ret
= record_kernel_snapshot(ksess
, &tmp_output
,
2799 session
, wait
, nb_streams
);
2800 if (ret
!= LTTNG_OK
) {
2804 snapshot_success
= 1;
2810 if (session
->ust_session
) {
2811 struct ltt_ust_session
*usess
= session
->ust_session
;
2813 if (use_tmp_output
) {
2814 ret
= record_ust_snapshot(usess
, &tmp_output
, session
,
2816 if (ret
!= LTTNG_OK
) {
2819 snapshot_success
= 1;
2821 struct snapshot_output
*sout
;
2822 struct lttng_ht_iter iter
;
2825 cds_lfht_for_each_entry(session
->snapshot
.output_ht
->ht
,
2826 &iter
.iter
, sout
, node
.node
) {
2828 * Make a local copy of the output and assign the possible
2829 * temporary value given by the caller.
2831 memset(&tmp_output
, 0, sizeof(tmp_output
));
2832 memcpy(&tmp_output
, sout
, sizeof(tmp_output
));
2834 /* Use temporary max size. */
2835 if (output
->max_size
!= (uint64_t) -1ULL) {
2836 tmp_output
.max_size
= output
->max_size
;
2839 /* Use temporary name. */
2840 if (*output
->name
!= '\0') {
2841 strncpy(tmp_output
.name
, output
->name
,
2842 sizeof(tmp_output
.name
));
2845 tmp_output
.nb_snapshot
= session
->snapshot
.nb_snapshot
;
2847 ret
= record_ust_snapshot(usess
, &tmp_output
, session
,
2849 if (ret
!= LTTNG_OK
) {
2853 snapshot_success
= 1;
2859 if (snapshot_success
) {
2860 session
->snapshot
.nb_snapshot
++;
2862 ret
= LTTNG_ERR_SNAPSHOT_FAIL
;
2870 * Init command subsystem.
2875 * Set network sequence index to 1 for streams to match a relayd
2876 * socket on the consumer side.
2878 pthread_mutex_lock(&relayd_net_seq_idx_lock
);
2879 relayd_net_seq_idx
= 1;
2880 pthread_mutex_unlock(&relayd_net_seq_idx_lock
);
2882 DBG("Command subsystem initialized");