Fix: sessiond: ust: deadlock with per-pid buffers
[lttng-tools.git] / src / bin / lttng-sessiond / ust-app.c
CommitLineData
91d76f53
DG
1/*
2 * Copyright (C) 2011 - David Goulet <david.goulet@polymtl.ca>
bdf64013 3 * Copyright (C) 2016 - Jérémie Galarneau <jeremie.galarneau@efficios.com>
91d76f53 4 *
d14d33bf
AM
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License, version 2 only,
7 * as published by the Free Software Foundation.
91d76f53
DG
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
d14d33bf
AM
14 * You should have received a copy of the GNU General Public License along
15 * with this program; if not, write to the Free Software Foundation, Inc.,
16 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
91d76f53
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17 */
18
6c1c0768 19#define _LGPL_SOURCE
91d76f53 20#include <errno.h>
7972aab2 21#include <inttypes.h>
91d76f53
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22#include <pthread.h>
23#include <stdio.h>
24#include <stdlib.h>
099e26bd 25#include <string.h>
aba8e916
DG
26#include <sys/stat.h>
27#include <sys/types.h>
099e26bd 28#include <unistd.h>
0df502fd 29#include <urcu/compiler.h>
331744e3 30#include <signal.h>
bec39940 31
990570ed 32#include <common/common.h>
86acf0da 33#include <common/sessiond-comm/sessiond-comm.h>
1e307fab 34
7972aab2 35#include "buffer-registry.h"
86acf0da 36#include "fd-limit.h"
8782cc74 37#include "health-sessiond.h"
56fff090 38#include "ust-app.h"
48842b30 39#include "ust-consumer.h"
c57c2c74
JG
40#include "lttng-ust-ctl.h"
41#include "lttng-ust-error.h"
0b2dc8df 42#include "utils.h"
fb83fe64 43#include "session.h"
e9404c27
JG
44#include "lttng-sessiond.h"
45#include "notification-thread-commands.h"
d80a6244 46
c4b88406
MD
47static
48int ust_app_flush_app_session(struct ust_app *app, struct ust_app_session *ua_sess);
49
d9bf3ca4
MD
50/* Next available channel key. Access under next_channel_key_lock. */
51static uint64_t _next_channel_key;
52static pthread_mutex_t next_channel_key_lock = PTHREAD_MUTEX_INITIALIZER;
53
54/* Next available session ID. Access under next_session_id_lock. */
55static uint64_t _next_session_id;
56static pthread_mutex_t next_session_id_lock = PTHREAD_MUTEX_INITIALIZER;
ffe60014
DG
57
58/*
d9bf3ca4 59 * Return the incremented value of next_channel_key.
ffe60014 60 */
d9bf3ca4 61static uint64_t get_next_channel_key(void)
ffe60014 62{
d9bf3ca4
MD
63 uint64_t ret;
64
65 pthread_mutex_lock(&next_channel_key_lock);
66 ret = ++_next_channel_key;
67 pthread_mutex_unlock(&next_channel_key_lock);
68 return ret;
ffe60014
DG
69}
70
71/*
7972aab2 72 * Return the atomically incremented value of next_session_id.
ffe60014 73 */
d9bf3ca4 74static uint64_t get_next_session_id(void)
ffe60014 75{
d9bf3ca4
MD
76 uint64_t ret;
77
78 pthread_mutex_lock(&next_session_id_lock);
79 ret = ++_next_session_id;
80 pthread_mutex_unlock(&next_session_id_lock);
81 return ret;
ffe60014
DG
82}
83
d65d2de8
DG
84static void copy_channel_attr_to_ustctl(
85 struct ustctl_consumer_channel_attr *attr,
86 struct lttng_ust_channel_attr *uattr)
87{
88 /* Copy event attributes since the layout is different. */
89 attr->subbuf_size = uattr->subbuf_size;
90 attr->num_subbuf = uattr->num_subbuf;
91 attr->overwrite = uattr->overwrite;
92 attr->switch_timer_interval = uattr->switch_timer_interval;
93 attr->read_timer_interval = uattr->read_timer_interval;
94 attr->output = uattr->output;
f515d318 95 attr->blocking_timeout = uattr->u.s.blocking_timeout;
d65d2de8
DG
96}
97
025faf73
DG
98/*
99 * Match function for the hash table lookup.
100 *
101 * It matches an ust app event based on three attributes which are the event
102 * name, the filter bytecode and the loglevel.
103 */
18eace3b
DG
104static int ht_match_ust_app_event(struct cds_lfht_node *node, const void *_key)
105{
106 struct ust_app_event *event;
107 const struct ust_app_ht_key *key;
2106efa0 108 int ev_loglevel_value;
18eace3b
DG
109
110 assert(node);
111 assert(_key);
112
113 event = caa_container_of(node, struct ust_app_event, node.node);
114 key = _key;
2106efa0 115 ev_loglevel_value = event->attr.loglevel;
18eace3b 116
1af53eb5 117 /* Match the 4 elements of the key: name, filter, loglevel, exclusions */
18eace3b
DG
118
119 /* Event name */
120 if (strncmp(event->attr.name, key->name, sizeof(event->attr.name)) != 0) {
121 goto no_match;
122 }
123
124 /* Event loglevel. */
2106efa0 125 if (ev_loglevel_value != key->loglevel_type) {
025faf73 126 if (event->attr.loglevel_type == LTTNG_UST_LOGLEVEL_ALL
2106efa0
PP
127 && key->loglevel_type == 0 &&
128 ev_loglevel_value == -1) {
025faf73
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129 /*
130 * Match is accepted. This is because on event creation, the
131 * loglevel is set to -1 if the event loglevel type is ALL so 0 and
132 * -1 are accepted for this loglevel type since 0 is the one set by
133 * the API when receiving an enable event.
134 */
135 } else {
136 goto no_match;
137 }
18eace3b
DG
138 }
139
140 /* One of the filters is NULL, fail. */
141 if ((key->filter && !event->filter) || (!key->filter && event->filter)) {
142 goto no_match;
143 }
144
025faf73
DG
145 if (key->filter && event->filter) {
146 /* Both filters exists, check length followed by the bytecode. */
147 if (event->filter->len != key->filter->len ||
148 memcmp(event->filter->data, key->filter->data,
149 event->filter->len) != 0) {
150 goto no_match;
151 }
18eace3b
DG
152 }
153
1af53eb5
JI
154 /* One of the exclusions is NULL, fail. */
155 if ((key->exclusion && !event->exclusion) || (!key->exclusion && event->exclusion)) {
156 goto no_match;
157 }
158
159 if (key->exclusion && event->exclusion) {
160 /* Both exclusions exists, check count followed by the names. */
161 if (event->exclusion->count != key->exclusion->count ||
162 memcmp(event->exclusion->names, key->exclusion->names,
163 event->exclusion->count * LTTNG_UST_SYM_NAME_LEN) != 0) {
164 goto no_match;
165 }
166 }
167
168
025faf73 169 /* Match. */
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170 return 1;
171
172no_match:
173 return 0;
18eace3b
DG
174}
175
025faf73
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176/*
177 * Unique add of an ust app event in the given ht. This uses the custom
178 * ht_match_ust_app_event match function and the event name as hash.
179 */
d0b96690 180static void add_unique_ust_app_event(struct ust_app_channel *ua_chan,
18eace3b
DG
181 struct ust_app_event *event)
182{
183 struct cds_lfht_node *node_ptr;
184 struct ust_app_ht_key key;
d0b96690 185 struct lttng_ht *ht;
18eace3b 186
d0b96690
DG
187 assert(ua_chan);
188 assert(ua_chan->events);
18eace3b
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189 assert(event);
190
d0b96690 191 ht = ua_chan->events;
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DG
192 key.name = event->attr.name;
193 key.filter = event->filter;
2106efa0 194 key.loglevel_type = event->attr.loglevel;
91c89f23 195 key.exclusion = event->exclusion;
18eace3b
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196
197 node_ptr = cds_lfht_add_unique(ht->ht,
198 ht->hash_fct(event->node.key, lttng_ht_seed),
199 ht_match_ust_app_event, &key, &event->node.node);
200 assert(node_ptr == &event->node.node);
201}
202
d88aee68
DG
203/*
204 * Close the notify socket from the given RCU head object. This MUST be called
205 * through a call_rcu().
206 */
207static void close_notify_sock_rcu(struct rcu_head *head)
208{
209 int ret;
210 struct ust_app_notify_sock_obj *obj =
211 caa_container_of(head, struct ust_app_notify_sock_obj, head);
212
213 /* Must have a valid fd here. */
214 assert(obj->fd >= 0);
215
216 ret = close(obj->fd);
217 if (ret) {
218 ERR("close notify sock %d RCU", obj->fd);
219 }
220 lttng_fd_put(LTTNG_FD_APPS, 1);
221
222 free(obj);
223}
224
7972aab2
DG
225/*
226 * Return the session registry according to the buffer type of the given
227 * session.
228 *
229 * A registry per UID object MUST exists before calling this function or else
230 * it assert() if not found. RCU read side lock must be acquired.
231 */
232static struct ust_registry_session *get_session_registry(
233 struct ust_app_session *ua_sess)
234{
235 struct ust_registry_session *registry = NULL;
236
237 assert(ua_sess);
238
239 switch (ua_sess->buffer_type) {
240 case LTTNG_BUFFER_PER_PID:
241 {
242 struct buffer_reg_pid *reg_pid = buffer_reg_pid_find(ua_sess->id);
243 if (!reg_pid) {
244 goto error;
245 }
246 registry = reg_pid->registry->reg.ust;
247 break;
248 }
249 case LTTNG_BUFFER_PER_UID:
250 {
251 struct buffer_reg_uid *reg_uid = buffer_reg_uid_find(
252 ua_sess->tracing_id, ua_sess->bits_per_long, ua_sess->uid);
253 if (!reg_uid) {
254 goto error;
255 }
256 registry = reg_uid->registry->reg.ust;
257 break;
258 }
259 default:
260 assert(0);
261 };
262
263error:
264 return registry;
265}
266
55cc08a6
DG
267/*
268 * Delete ust context safely. RCU read lock must be held before calling
269 * this function.
270 */
271static
fb45065e
MD
272void delete_ust_app_ctx(int sock, struct ust_app_ctx *ua_ctx,
273 struct ust_app *app)
55cc08a6 274{
ffe60014
DG
275 int ret;
276
277 assert(ua_ctx);
278
55cc08a6 279 if (ua_ctx->obj) {
fb45065e 280 pthread_mutex_lock(&app->sock_lock);
ffe60014 281 ret = ustctl_release_object(sock, ua_ctx->obj);
fb45065e 282 pthread_mutex_unlock(&app->sock_lock);
d0b96690
DG
283 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
284 ERR("UST app sock %d release ctx obj handle %d failed with ret %d",
285 sock, ua_ctx->obj->handle, ret);
ffe60014 286 }
55cc08a6
DG
287 free(ua_ctx->obj);
288 }
289 free(ua_ctx);
290}
291
d80a6244
DG
292/*
293 * Delete ust app event safely. RCU read lock must be held before calling
294 * this function.
295 */
8b366481 296static
fb45065e
MD
297void delete_ust_app_event(int sock, struct ust_app_event *ua_event,
298 struct ust_app *app)
d80a6244 299{
ffe60014
DG
300 int ret;
301
302 assert(ua_event);
303
53a80697 304 free(ua_event->filter);
951f0b71
JI
305 if (ua_event->exclusion != NULL)
306 free(ua_event->exclusion);
edb67388 307 if (ua_event->obj != NULL) {
fb45065e 308 pthread_mutex_lock(&app->sock_lock);
ffe60014 309 ret = ustctl_release_object(sock, ua_event->obj);
fb45065e 310 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
311 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
312 ERR("UST app sock %d release event obj failed with ret %d",
313 sock, ret);
314 }
edb67388
DG
315 free(ua_event->obj);
316 }
d80a6244
DG
317 free(ua_event);
318}
319
320/*
7972aab2
DG
321 * Release ust data object of the given stream.
322 *
323 * Return 0 on success or else a negative value.
d80a6244 324 */
fb45065e
MD
325static int release_ust_app_stream(int sock, struct ust_app_stream *stream,
326 struct ust_app *app)
d80a6244 327{
7972aab2 328 int ret = 0;
ffe60014
DG
329
330 assert(stream);
331
8b366481 332 if (stream->obj) {
fb45065e 333 pthread_mutex_lock(&app->sock_lock);
ffe60014 334 ret = ustctl_release_object(sock, stream->obj);
fb45065e 335 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
336 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
337 ERR("UST app sock %d release stream obj failed with ret %d",
338 sock, ret);
339 }
4063050c 340 lttng_fd_put(LTTNG_FD_APPS, 2);
8b366481
DG
341 free(stream->obj);
342 }
7972aab2
DG
343
344 return ret;
345}
346
347/*
348 * Delete ust app stream safely. RCU read lock must be held before calling
349 * this function.
350 */
351static
fb45065e
MD
352void delete_ust_app_stream(int sock, struct ust_app_stream *stream,
353 struct ust_app *app)
7972aab2
DG
354{
355 assert(stream);
356
fb45065e 357 (void) release_ust_app_stream(sock, stream, app);
84cd17c6 358 free(stream);
d80a6244
DG
359}
360
36b588ed
MD
361/*
362 * We need to execute ht_destroy outside of RCU read-side critical
0b2dc8df
MD
363 * section and outside of call_rcu thread, so we postpone its execution
364 * using ht_cleanup_push. It is simpler than to change the semantic of
365 * the many callers of delete_ust_app_session().
36b588ed
MD
366 */
367static
368void delete_ust_app_channel_rcu(struct rcu_head *head)
369{
370 struct ust_app_channel *ua_chan =
371 caa_container_of(head, struct ust_app_channel, rcu_head);
372
0b2dc8df
MD
373 ht_cleanup_push(ua_chan->ctx);
374 ht_cleanup_push(ua_chan->events);
36b588ed
MD
375 free(ua_chan);
376}
377
fb83fe64
JD
378/*
379 * Extract the lost packet or discarded events counter when the channel is
380 * being deleted and store the value in the parent channel so we can
381 * access it from lttng list and at stop/destroy.
82cac6d2
JG
382 *
383 * The session list lock must be held by the caller.
fb83fe64
JD
384 */
385static
386void save_per_pid_lost_discarded_counters(struct ust_app_channel *ua_chan)
387{
388 uint64_t discarded = 0, lost = 0;
389 struct ltt_session *session;
390 struct ltt_ust_channel *uchan;
391
392 if (ua_chan->attr.type != LTTNG_UST_CHAN_PER_CPU) {
393 return;
394 }
395
396 rcu_read_lock();
397 session = session_find_by_id(ua_chan->session->tracing_id);
d68ec974
JG
398 if (!session || !session->ust_session) {
399 /*
400 * Not finding the session is not an error because there are
401 * multiple ways the channels can be torn down.
402 *
403 * 1) The session daemon can initiate the destruction of the
404 * ust app session after receiving a destroy command or
405 * during its shutdown/teardown.
406 * 2) The application, since we are in per-pid tracing, is
407 * unregistering and tearing down its ust app session.
408 *
409 * Both paths are protected by the session list lock which
410 * ensures that the accounting of lost packets and discarded
411 * events is done exactly once. The session is then unpublished
412 * from the session list, resulting in this condition.
413 */
fb83fe64
JD
414 goto end;
415 }
416
417 if (ua_chan->attr.overwrite) {
418 consumer_get_lost_packets(ua_chan->session->tracing_id,
419 ua_chan->key, session->ust_session->consumer,
420 &lost);
421 } else {
422 consumer_get_discarded_events(ua_chan->session->tracing_id,
423 ua_chan->key, session->ust_session->consumer,
424 &discarded);
425 }
426 uchan = trace_ust_find_channel_by_name(
427 session->ust_session->domain_global.channels,
428 ua_chan->name);
429 if (!uchan) {
430 ERR("Missing UST channel to store discarded counters");
431 goto end;
432 }
433
434 uchan->per_pid_closed_app_discarded += discarded;
435 uchan->per_pid_closed_app_lost += lost;
436
437end:
438 rcu_read_unlock();
439}
440
d80a6244
DG
441/*
442 * Delete ust app channel safely. RCU read lock must be held before calling
443 * this function.
82cac6d2
JG
444 *
445 * The session list lock must be held by the caller.
d80a6244 446 */
8b366481 447static
d0b96690
DG
448void delete_ust_app_channel(int sock, struct ust_app_channel *ua_chan,
449 struct ust_app *app)
d80a6244
DG
450{
451 int ret;
bec39940 452 struct lttng_ht_iter iter;
d80a6244 453 struct ust_app_event *ua_event;
55cc08a6 454 struct ust_app_ctx *ua_ctx;
030a66fa 455 struct ust_app_stream *stream, *stmp;
7972aab2 456 struct ust_registry_session *registry;
d80a6244 457
ffe60014
DG
458 assert(ua_chan);
459
460 DBG3("UST app deleting channel %s", ua_chan->name);
461
55cc08a6 462 /* Wipe stream */
d80a6244 463 cds_list_for_each_entry_safe(stream, stmp, &ua_chan->streams.head, list) {
84cd17c6 464 cds_list_del(&stream->list);
fb45065e 465 delete_ust_app_stream(sock, stream, app);
d80a6244
DG
466 }
467
55cc08a6 468 /* Wipe context */
bec39940 469 cds_lfht_for_each_entry(ua_chan->ctx->ht, &iter.iter, ua_ctx, node.node) {
31746f93 470 cds_list_del(&ua_ctx->list);
bec39940 471 ret = lttng_ht_del(ua_chan->ctx, &iter);
55cc08a6 472 assert(!ret);
fb45065e 473 delete_ust_app_ctx(sock, ua_ctx, app);
55cc08a6 474 }
d80a6244 475
55cc08a6 476 /* Wipe events */
bec39940
DG
477 cds_lfht_for_each_entry(ua_chan->events->ht, &iter.iter, ua_event,
478 node.node) {
479 ret = lttng_ht_del(ua_chan->events, &iter);
525b0740 480 assert(!ret);
fb45065e 481 delete_ust_app_event(sock, ua_event, app);
d80a6244 482 }
edb67388 483
c8335706
MD
484 if (ua_chan->session->buffer_type == LTTNG_BUFFER_PER_PID) {
485 /* Wipe and free registry from session registry. */
486 registry = get_session_registry(ua_chan->session);
487 if (registry) {
e9404c27 488 ust_registry_channel_del_free(registry, ua_chan->key,
2ac146ae
MD
489 sock >= 0);
490 }
491 if (sock >= 0) {
492 save_per_pid_lost_discarded_counters(ua_chan);
c8335706 493 }
7972aab2 494 }
d0b96690 495
edb67388 496 if (ua_chan->obj != NULL) {
d0b96690
DG
497 /* Remove channel from application UST object descriptor. */
498 iter.iter.node = &ua_chan->ust_objd_node.node;
c6e62271
DG
499 ret = lttng_ht_del(app->ust_objd, &iter);
500 assert(!ret);
fb45065e 501 pthread_mutex_lock(&app->sock_lock);
ffe60014 502 ret = ustctl_release_object(sock, ua_chan->obj);
fb45065e 503 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
504 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
505 ERR("UST app sock %d release channel obj failed with ret %d",
506 sock, ret);
507 }
7972aab2 508 lttng_fd_put(LTTNG_FD_APPS, 1);
edb67388
DG
509 free(ua_chan->obj);
510 }
36b588ed 511 call_rcu(&ua_chan->rcu_head, delete_ust_app_channel_rcu);
d80a6244
DG
512}
513
fb45065e
MD
514int ust_app_register_done(struct ust_app *app)
515{
516 int ret;
517
518 pthread_mutex_lock(&app->sock_lock);
519 ret = ustctl_register_done(app->sock);
520 pthread_mutex_unlock(&app->sock_lock);
521 return ret;
522}
523
524int ust_app_release_object(struct ust_app *app, struct lttng_ust_object_data *data)
525{
526 int ret, sock;
527
528 if (app) {
529 pthread_mutex_lock(&app->sock_lock);
530 sock = app->sock;
531 } else {
532 sock = -1;
533 }
534 ret = ustctl_release_object(sock, data);
535 if (app) {
536 pthread_mutex_unlock(&app->sock_lock);
537 }
538 return ret;
539}
540
331744e3 541/*
1b532a60
DG
542 * Push metadata to consumer socket.
543 *
dc2bbdae
MD
544 * RCU read-side lock must be held to guarantee existance of socket.
545 * Must be called with the ust app session lock held.
546 * Must be called with the registry lock held.
331744e3
JD
547 *
548 * On success, return the len of metadata pushed or else a negative value.
2c57e06d
MD
549 * Returning a -EPIPE return value means we could not send the metadata,
550 * but it can be caused by recoverable errors (e.g. the application has
551 * terminated concurrently).
331744e3
JD
552 */
553ssize_t ust_app_push_metadata(struct ust_registry_session *registry,
554 struct consumer_socket *socket, int send_zero_data)
555{
556 int ret;
557 char *metadata_str = NULL;
c585821b 558 size_t len, offset, new_metadata_len_sent;
331744e3 559 ssize_t ret_val;
93ec662e 560 uint64_t metadata_key, metadata_version;
331744e3
JD
561
562 assert(registry);
563 assert(socket);
1b532a60 564
c585821b
MD
565 metadata_key = registry->metadata_key;
566
ce34fcd0 567 /*
dc2bbdae
MD
568 * Means that no metadata was assigned to the session. This can
569 * happens if no start has been done previously.
ce34fcd0 570 */
c585821b 571 if (!metadata_key) {
ce34fcd0
MD
572 return 0;
573 }
574
331744e3
JD
575 offset = registry->metadata_len_sent;
576 len = registry->metadata_len - registry->metadata_len_sent;
c585821b 577 new_metadata_len_sent = registry->metadata_len;
93ec662e 578 metadata_version = registry->metadata_version;
331744e3
JD
579 if (len == 0) {
580 DBG3("No metadata to push for metadata key %" PRIu64,
581 registry->metadata_key);
582 ret_val = len;
583 if (send_zero_data) {
584 DBG("No metadata to push");
585 goto push_data;
586 }
587 goto end;
588 }
589
590 /* Allocate only what we have to send. */
591 metadata_str = zmalloc(len);
592 if (!metadata_str) {
593 PERROR("zmalloc ust app metadata string");
594 ret_val = -ENOMEM;
595 goto error;
596 }
c585821b 597 /* Copy what we haven't sent out. */
331744e3 598 memcpy(metadata_str, registry->metadata + offset, len);
331744e3
JD
599
600push_data:
c585821b
MD
601 pthread_mutex_unlock(&registry->lock);
602 /*
603 * We need to unlock the registry while we push metadata to
604 * break a circular dependency between the consumerd metadata
605 * lock and the sessiond registry lock. Indeed, pushing metadata
606 * to the consumerd awaits that it gets pushed all the way to
607 * relayd, but doing so requires grabbing the metadata lock. If
608 * a concurrent metadata request is being performed by
609 * consumerd, this can try to grab the registry lock on the
610 * sessiond while holding the metadata lock on the consumer
611 * daemon. Those push and pull schemes are performed on two
612 * different bidirectionnal communication sockets.
613 */
614 ret = consumer_push_metadata(socket, metadata_key,
93ec662e 615 metadata_str, len, offset, metadata_version);
c585821b 616 pthread_mutex_lock(&registry->lock);
331744e3 617 if (ret < 0) {
000baf6a 618 /*
dc2bbdae
MD
619 * There is an acceptable race here between the registry
620 * metadata key assignment and the creation on the
621 * consumer. The session daemon can concurrently push
622 * metadata for this registry while being created on the
623 * consumer since the metadata key of the registry is
624 * assigned *before* it is setup to avoid the consumer
625 * to ask for metadata that could possibly be not found
626 * in the session daemon.
000baf6a 627 *
dc2bbdae
MD
628 * The metadata will get pushed either by the session
629 * being stopped or the consumer requesting metadata if
630 * that race is triggered.
000baf6a
DG
631 */
632 if (ret == -LTTCOMM_CONSUMERD_CHANNEL_FAIL) {
633 ret = 0;
c585821b
MD
634 } else {
635 ERR("Error pushing metadata to consumer");
000baf6a 636 }
331744e3
JD
637 ret_val = ret;
638 goto error_push;
c585821b
MD
639 } else {
640 /*
641 * Metadata may have been concurrently pushed, since
642 * we're not holding the registry lock while pushing to
643 * consumer. This is handled by the fact that we send
644 * the metadata content, size, and the offset at which
645 * that metadata belongs. This may arrive out of order
646 * on the consumer side, and the consumer is able to
647 * deal with overlapping fragments. The consumer
648 * supports overlapping fragments, which must be
649 * contiguous starting from offset 0. We keep the
650 * largest metadata_len_sent value of the concurrent
651 * send.
652 */
653 registry->metadata_len_sent =
654 max_t(size_t, registry->metadata_len_sent,
655 new_metadata_len_sent);
331744e3 656 }
331744e3
JD
657 free(metadata_str);
658 return len;
659
660end:
661error:
ce34fcd0
MD
662 if (ret_val) {
663 /*
dc2bbdae
MD
664 * On error, flag the registry that the metadata is
665 * closed. We were unable to push anything and this
666 * means that either the consumer is not responding or
667 * the metadata cache has been destroyed on the
668 * consumer.
ce34fcd0
MD
669 */
670 registry->metadata_closed = 1;
671 }
331744e3
JD
672error_push:
673 free(metadata_str);
674 return ret_val;
675}
676
d88aee68 677/*
ce34fcd0 678 * For a given application and session, push metadata to consumer.
331744e3
JD
679 * Either sock or consumer is required : if sock is NULL, the default
680 * socket to send the metadata is retrieved from consumer, if sock
681 * is not NULL we use it to send the metadata.
ce34fcd0 682 * RCU read-side lock must be held while calling this function,
dc2bbdae
MD
683 * therefore ensuring existance of registry. It also ensures existance
684 * of socket throughout this function.
d88aee68
DG
685 *
686 * Return 0 on success else a negative error.
2c57e06d
MD
687 * Returning a -EPIPE return value means we could not send the metadata,
688 * but it can be caused by recoverable errors (e.g. the application has
689 * terminated concurrently).
d88aee68 690 */
7972aab2
DG
691static int push_metadata(struct ust_registry_session *registry,
692 struct consumer_output *consumer)
d88aee68 693{
331744e3
JD
694 int ret_val;
695 ssize_t ret;
d88aee68
DG
696 struct consumer_socket *socket;
697
7972aab2
DG
698 assert(registry);
699 assert(consumer);
700
ce34fcd0 701 pthread_mutex_lock(&registry->lock);
ce34fcd0 702 if (registry->metadata_closed) {
dc2bbdae
MD
703 ret_val = -EPIPE;
704 goto error;
d88aee68
DG
705 }
706
d88aee68 707 /* Get consumer socket to use to push the metadata.*/
7972aab2
DG
708 socket = consumer_find_socket_by_bitness(registry->bits_per_long,
709 consumer);
d88aee68 710 if (!socket) {
331744e3 711 ret_val = -1;
ce34fcd0 712 goto error;
d88aee68
DG
713 }
714
331744e3 715 ret = ust_app_push_metadata(registry, socket, 0);
d88aee68 716 if (ret < 0) {
331744e3 717 ret_val = ret;
ce34fcd0 718 goto error;
d88aee68 719 }
dc2bbdae 720 pthread_mutex_unlock(&registry->lock);
d88aee68
DG
721 return 0;
722
ce34fcd0 723error:
dc2bbdae 724 pthread_mutex_unlock(&registry->lock);
331744e3 725 return ret_val;
d88aee68
DG
726}
727
728/*
729 * Send to the consumer a close metadata command for the given session. Once
730 * done, the metadata channel is deleted and the session metadata pointer is
dc2bbdae 731 * nullified. The session lock MUST be held unless the application is
d88aee68
DG
732 * in the destroy path.
733 *
c27a42ef
MD
734 * Do not hold the registry lock while communicating with the consumerd, because
735 * doing so causes inter-process deadlocks between consumerd and sessiond with
736 * the metadata request notification.
737 *
d88aee68
DG
738 * Return 0 on success else a negative value.
739 */
7972aab2
DG
740static int close_metadata(struct ust_registry_session *registry,
741 struct consumer_output *consumer)
d88aee68
DG
742{
743 int ret;
744 struct consumer_socket *socket;
c27a42ef
MD
745 uint64_t metadata_key;
746 bool registry_was_already_closed;
d88aee68 747
7972aab2
DG
748 assert(registry);
749 assert(consumer);
d88aee68 750
7972aab2
DG
751 rcu_read_lock();
752
ce34fcd0 753 pthread_mutex_lock(&registry->lock);
c27a42ef
MD
754 metadata_key = registry->metadata_key;
755 registry_was_already_closed = registry->metadata_closed;
756 if (metadata_key != 0) {
757 /*
758 * Metadata closed. Even on error this means that the consumer
759 * is not responding or not found so either way a second close
760 * should NOT be emit for this registry.
761 */
762 registry->metadata_closed = 1;
763 }
764 pthread_mutex_unlock(&registry->lock);
ce34fcd0 765
c27a42ef 766 if (metadata_key == 0 || registry_was_already_closed) {
d88aee68 767 ret = 0;
1b532a60 768 goto end;
d88aee68
DG
769 }
770
d88aee68 771 /* Get consumer socket to use to push the metadata.*/
7972aab2
DG
772 socket = consumer_find_socket_by_bitness(registry->bits_per_long,
773 consumer);
d88aee68
DG
774 if (!socket) {
775 ret = -1;
c27a42ef 776 goto end;
d88aee68
DG
777 }
778
c27a42ef 779 ret = consumer_close_metadata(socket, metadata_key);
d88aee68 780 if (ret < 0) {
c27a42ef 781 goto end;
d88aee68
DG
782 }
783
1b532a60 784end:
7972aab2 785 rcu_read_unlock();
d88aee68
DG
786 return ret;
787}
788
36b588ed
MD
789/*
790 * We need to execute ht_destroy outside of RCU read-side critical
0b2dc8df
MD
791 * section and outside of call_rcu thread, so we postpone its execution
792 * using ht_cleanup_push. It is simpler than to change the semantic of
793 * the many callers of delete_ust_app_session().
36b588ed
MD
794 */
795static
796void delete_ust_app_session_rcu(struct rcu_head *head)
797{
798 struct ust_app_session *ua_sess =
799 caa_container_of(head, struct ust_app_session, rcu_head);
800
0b2dc8df 801 ht_cleanup_push(ua_sess->channels);
36b588ed
MD
802 free(ua_sess);
803}
804
d80a6244
DG
805/*
806 * Delete ust app session safely. RCU read lock must be held before calling
807 * this function.
82cac6d2
JG
808 *
809 * The session list lock must be held by the caller.
d80a6244 810 */
8b366481 811static
d0b96690
DG
812void delete_ust_app_session(int sock, struct ust_app_session *ua_sess,
813 struct ust_app *app)
d80a6244
DG
814{
815 int ret;
bec39940 816 struct lttng_ht_iter iter;
d80a6244 817 struct ust_app_channel *ua_chan;
7972aab2 818 struct ust_registry_session *registry;
d80a6244 819
d88aee68
DG
820 assert(ua_sess);
821
1b532a60
DG
822 pthread_mutex_lock(&ua_sess->lock);
823
b161602a
MD
824 assert(!ua_sess->deleted);
825 ua_sess->deleted = true;
826
7972aab2 827 registry = get_session_registry(ua_sess);
5e98072f 828 /* Registry can be null on error path during initialization. */
ce34fcd0 829 if (registry) {
d88aee68 830 /* Push metadata for application before freeing the application. */
7972aab2 831 (void) push_metadata(registry, ua_sess->consumer);
d88aee68 832
7972aab2
DG
833 /*
834 * Don't ask to close metadata for global per UID buffers. Close
1b532a60
DG
835 * metadata only on destroy trace session in this case. Also, the
836 * previous push metadata could have flag the metadata registry to
837 * close so don't send a close command if closed.
7972aab2 838 */
ce34fcd0 839 if (ua_sess->buffer_type != LTTNG_BUFFER_PER_UID) {
7972aab2
DG
840 /* And ask to close it for this session registry. */
841 (void) close_metadata(registry, ua_sess->consumer);
842 }
d80a6244
DG
843 }
844
bec39940
DG
845 cds_lfht_for_each_entry(ua_sess->channels->ht, &iter.iter, ua_chan,
846 node.node) {
847 ret = lttng_ht_del(ua_sess->channels, &iter);
525b0740 848 assert(!ret);
d0b96690 849 delete_ust_app_channel(sock, ua_chan, app);
d80a6244 850 }
d80a6244 851
7972aab2
DG
852 /* In case of per PID, the registry is kept in the session. */
853 if (ua_sess->buffer_type == LTTNG_BUFFER_PER_PID) {
854 struct buffer_reg_pid *reg_pid = buffer_reg_pid_find(ua_sess->id);
855 if (reg_pid) {
5e98072f
JR
856 /*
857 * Registry can be null on error path during
858 * initialization.
859 */
7972aab2
DG
860 buffer_reg_pid_remove(reg_pid);
861 buffer_reg_pid_destroy(reg_pid);
862 }
863 }
d0b96690 864
aee6bafd 865 if (ua_sess->handle != -1) {
fb45065e 866 pthread_mutex_lock(&app->sock_lock);
ffe60014 867 ret = ustctl_release_handle(sock, ua_sess->handle);
fb45065e 868 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
869 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
870 ERR("UST app sock %d release session handle failed with ret %d",
871 sock, ret);
872 }
10b56aef
MD
873 /* Remove session from application UST object descriptor. */
874 iter.iter.node = &ua_sess->ust_objd_node.node;
875 ret = lttng_ht_del(app->ust_sessions_objd, &iter);
876 assert(!ret);
aee6bafd 877 }
10b56aef 878
1b532a60
DG
879 pthread_mutex_unlock(&ua_sess->lock);
880
6addfa37
MD
881 consumer_output_put(ua_sess->consumer);
882
36b588ed 883 call_rcu(&ua_sess->rcu_head, delete_ust_app_session_rcu);
d80a6244 884}
91d76f53
DG
885
886/*
284d8f55
DG
887 * Delete a traceable application structure from the global list. Never call
888 * this function outside of a call_rcu call.
36b588ed
MD
889 *
890 * RCU read side lock should _NOT_ be held when calling this function.
91d76f53 891 */
8b366481
DG
892static
893void delete_ust_app(struct ust_app *app)
91d76f53 894{
8b366481 895 int ret, sock;
d42f20df 896 struct ust_app_session *ua_sess, *tmp_ua_sess;
44d3bd01 897
82cac6d2
JG
898 /*
899 * The session list lock must be held during this function to guarantee
900 * the existence of ua_sess.
901 */
902 session_lock_list();
d80a6244 903 /* Delete ust app sessions info */
852d0037
DG
904 sock = app->sock;
905 app->sock = -1;
d80a6244 906
8b366481 907 /* Wipe sessions */
d42f20df
DG
908 cds_list_for_each_entry_safe(ua_sess, tmp_ua_sess, &app->teardown_head,
909 teardown_node) {
910 /* Free every object in the session and the session. */
36b588ed 911 rcu_read_lock();
d0b96690 912 delete_ust_app_session(sock, ua_sess, app);
36b588ed 913 rcu_read_unlock();
d80a6244 914 }
36b588ed 915
0b2dc8df 916 ht_cleanup_push(app->sessions);
10b56aef 917 ht_cleanup_push(app->ust_sessions_objd);
0b2dc8df 918 ht_cleanup_push(app->ust_objd);
d80a6244 919
6414a713 920 /*
852d0037
DG
921 * Wait until we have deleted the application from the sock hash table
922 * before closing this socket, otherwise an application could re-use the
923 * socket ID and race with the teardown, using the same hash table entry.
924 *
925 * It's OK to leave the close in call_rcu. We want it to stay unique for
926 * all RCU readers that could run concurrently with unregister app,
927 * therefore we _need_ to only close that socket after a grace period. So
928 * it should stay in this RCU callback.
929 *
930 * This close() is a very important step of the synchronization model so
931 * every modification to this function must be carefully reviewed.
6414a713 932 */
799e2c4f
MD
933 ret = close(sock);
934 if (ret) {
935 PERROR("close");
936 }
4063050c 937 lttng_fd_put(LTTNG_FD_APPS, 1);
d80a6244 938
852d0037 939 DBG2("UST app pid %d deleted", app->pid);
284d8f55 940 free(app);
82cac6d2 941 session_unlock_list();
099e26bd
DG
942}
943
944/*
f6a9efaa 945 * URCU intermediate call to delete an UST app.
099e26bd 946 */
8b366481
DG
947static
948void delete_ust_app_rcu(struct rcu_head *head)
099e26bd 949{
bec39940
DG
950 struct lttng_ht_node_ulong *node =
951 caa_container_of(head, struct lttng_ht_node_ulong, head);
f6a9efaa 952 struct ust_app *app =
852d0037 953 caa_container_of(node, struct ust_app, pid_n);
f6a9efaa 954
852d0037 955 DBG3("Call RCU deleting app PID %d", app->pid);
f6a9efaa 956 delete_ust_app(app);
099e26bd
DG
957}
958
ffe60014
DG
959/*
960 * Delete the session from the application ht and delete the data structure by
961 * freeing every object inside and releasing them.
82cac6d2
JG
962 *
963 * The session list lock must be held by the caller.
ffe60014 964 */
d0b96690 965static void destroy_app_session(struct ust_app *app,
ffe60014
DG
966 struct ust_app_session *ua_sess)
967{
968 int ret;
969 struct lttng_ht_iter iter;
970
971 assert(app);
972 assert(ua_sess);
973
974 iter.iter.node = &ua_sess->node.node;
975 ret = lttng_ht_del(app->sessions, &iter);
976 if (ret) {
977 /* Already scheduled for teardown. */
978 goto end;
979 }
980
981 /* Once deleted, free the data structure. */
d0b96690 982 delete_ust_app_session(app->sock, ua_sess, app);
ffe60014
DG
983
984end:
985 return;
986}
987
8b366481
DG
988/*
989 * Alloc new UST app session.
990 */
991static
d0b96690 992struct ust_app_session *alloc_ust_app_session(struct ust_app *app)
8b366481
DG
993{
994 struct ust_app_session *ua_sess;
995
996 /* Init most of the default value by allocating and zeroing */
997 ua_sess = zmalloc(sizeof(struct ust_app_session));
998 if (ua_sess == NULL) {
999 PERROR("malloc");
ffe60014 1000 goto error_free;
8b366481
DG
1001 }
1002
1003 ua_sess->handle = -1;
bec39940 1004 ua_sess->channels = lttng_ht_new(0, LTTNG_HT_TYPE_STRING);
ad7a9107 1005 ua_sess->metadata_attr.type = LTTNG_UST_CHAN_METADATA;
84ad93e8 1006 pthread_mutex_init(&ua_sess->lock, NULL);
ad7a9107 1007
8b366481
DG
1008 return ua_sess;
1009
ffe60014 1010error_free:
8b366481
DG
1011 return NULL;
1012}
1013
1014/*
1015 * Alloc new UST app channel.
1016 */
1017static
1018struct ust_app_channel *alloc_ust_app_channel(char *name,
d0b96690 1019 struct ust_app_session *ua_sess,
ffe60014 1020 struct lttng_ust_channel_attr *attr)
8b366481
DG
1021{
1022 struct ust_app_channel *ua_chan;
1023
1024 /* Init most of the default value by allocating and zeroing */
1025 ua_chan = zmalloc(sizeof(struct ust_app_channel));
1026 if (ua_chan == NULL) {
1027 PERROR("malloc");
1028 goto error;
1029 }
1030
1031 /* Setup channel name */
1032 strncpy(ua_chan->name, name, sizeof(ua_chan->name));
1033 ua_chan->name[sizeof(ua_chan->name) - 1] = '\0';
1034
1035 ua_chan->enabled = 1;
1036 ua_chan->handle = -1;
45893984 1037 ua_chan->session = ua_sess;
ffe60014 1038 ua_chan->key = get_next_channel_key();
bec39940
DG
1039 ua_chan->ctx = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
1040 ua_chan->events = lttng_ht_new(0, LTTNG_HT_TYPE_STRING);
1041 lttng_ht_node_init_str(&ua_chan->node, ua_chan->name);
8b366481
DG
1042
1043 CDS_INIT_LIST_HEAD(&ua_chan->streams.head);
31746f93 1044 CDS_INIT_LIST_HEAD(&ua_chan->ctx_list);
8b366481
DG
1045
1046 /* Copy attributes */
1047 if (attr) {
ffe60014 1048 /* Translate from lttng_ust_channel to ustctl_consumer_channel_attr. */
2fe6e7f5
DG
1049 ua_chan->attr.subbuf_size = attr->subbuf_size;
1050 ua_chan->attr.num_subbuf = attr->num_subbuf;
1051 ua_chan->attr.overwrite = attr->overwrite;
1052 ua_chan->attr.switch_timer_interval = attr->switch_timer_interval;
1053 ua_chan->attr.read_timer_interval = attr->read_timer_interval;
1054 ua_chan->attr.output = attr->output;
f515d318 1055 ua_chan->attr.blocking_timeout = attr->u.s.blocking_timeout;
8b366481 1056 }
ffe60014
DG
1057 /* By default, the channel is a per cpu channel. */
1058 ua_chan->attr.type = LTTNG_UST_CHAN_PER_CPU;
8b366481
DG
1059
1060 DBG3("UST app channel %s allocated", ua_chan->name);
1061
1062 return ua_chan;
1063
1064error:
1065 return NULL;
1066}
1067
37f1c236
DG
1068/*
1069 * Allocate and initialize a UST app stream.
1070 *
1071 * Return newly allocated stream pointer or NULL on error.
1072 */
ffe60014 1073struct ust_app_stream *ust_app_alloc_stream(void)
37f1c236
DG
1074{
1075 struct ust_app_stream *stream = NULL;
1076
1077 stream = zmalloc(sizeof(*stream));
1078 if (stream == NULL) {
1079 PERROR("zmalloc ust app stream");
1080 goto error;
1081 }
1082
1083 /* Zero could be a valid value for a handle so flag it to -1. */
1084 stream->handle = -1;
1085
1086error:
1087 return stream;
1088}
1089
8b366481
DG
1090/*
1091 * Alloc new UST app event.
1092 */
1093static
1094struct ust_app_event *alloc_ust_app_event(char *name,
1095 struct lttng_ust_event *attr)
1096{
1097 struct ust_app_event *ua_event;
1098
1099 /* Init most of the default value by allocating and zeroing */
1100 ua_event = zmalloc(sizeof(struct ust_app_event));
1101 if (ua_event == NULL) {
1102 PERROR("malloc");
1103 goto error;
1104 }
1105
1106 ua_event->enabled = 1;
1107 strncpy(ua_event->name, name, sizeof(ua_event->name));
1108 ua_event->name[sizeof(ua_event->name) - 1] = '\0';
bec39940 1109 lttng_ht_node_init_str(&ua_event->node, ua_event->name);
8b366481
DG
1110
1111 /* Copy attributes */
1112 if (attr) {
1113 memcpy(&ua_event->attr, attr, sizeof(ua_event->attr));
1114 }
1115
1116 DBG3("UST app event %s allocated", ua_event->name);
1117
1118 return ua_event;
1119
1120error:
1121 return NULL;
1122}
1123
1124/*
1125 * Alloc new UST app context.
1126 */
1127static
bdf64013 1128struct ust_app_ctx *alloc_ust_app_ctx(struct lttng_ust_context_attr *uctx)
8b366481
DG
1129{
1130 struct ust_app_ctx *ua_ctx;
1131
1132 ua_ctx = zmalloc(sizeof(struct ust_app_ctx));
1133 if (ua_ctx == NULL) {
1134 goto error;
1135 }
1136
31746f93
DG
1137 CDS_INIT_LIST_HEAD(&ua_ctx->list);
1138
8b366481
DG
1139 if (uctx) {
1140 memcpy(&ua_ctx->ctx, uctx, sizeof(ua_ctx->ctx));
bdf64013
JG
1141 if (uctx->ctx == LTTNG_UST_CONTEXT_APP_CONTEXT) {
1142 char *provider_name = NULL, *ctx_name = NULL;
1143
1144 provider_name = strdup(uctx->u.app_ctx.provider_name);
1145 ctx_name = strdup(uctx->u.app_ctx.ctx_name);
1146 if (!provider_name || !ctx_name) {
1147 free(provider_name);
1148 free(ctx_name);
1149 goto error;
1150 }
1151
1152 ua_ctx->ctx.u.app_ctx.provider_name = provider_name;
1153 ua_ctx->ctx.u.app_ctx.ctx_name = ctx_name;
1154 }
8b366481
DG
1155 }
1156
1157 DBG3("UST app context %d allocated", ua_ctx->ctx.ctx);
8b366481 1158 return ua_ctx;
bdf64013
JG
1159error:
1160 free(ua_ctx);
1161 return NULL;
8b366481
DG
1162}
1163
025faf73
DG
1164/*
1165 * Allocate a filter and copy the given original filter.
1166 *
1167 * Return allocated filter or NULL on error.
1168 */
51755dc8
JG
1169static struct lttng_filter_bytecode *copy_filter_bytecode(
1170 struct lttng_filter_bytecode *orig_f)
025faf73 1171{
51755dc8 1172 struct lttng_filter_bytecode *filter = NULL;
025faf73
DG
1173
1174 /* Copy filter bytecode */
1175 filter = zmalloc(sizeof(*filter) + orig_f->len);
1176 if (!filter) {
51755dc8 1177 PERROR("zmalloc alloc filter bytecode");
025faf73
DG
1178 goto error;
1179 }
1180
1181 memcpy(filter, orig_f, sizeof(*filter) + orig_f->len);
1182
1183error:
1184 return filter;
1185}
1186
51755dc8
JG
1187/*
1188 * Create a liblttng-ust filter bytecode from given bytecode.
1189 *
1190 * Return allocated filter or NULL on error.
1191 */
1192static struct lttng_ust_filter_bytecode *create_ust_bytecode_from_bytecode(
1193 struct lttng_filter_bytecode *orig_f)
1194{
1195 struct lttng_ust_filter_bytecode *filter = NULL;
1196
1197 /* Copy filter bytecode */
1198 filter = zmalloc(sizeof(*filter) + orig_f->len);
1199 if (!filter) {
1200 PERROR("zmalloc alloc ust filter bytecode");
1201 goto error;
1202 }
1203
1204 assert(sizeof(struct lttng_filter_bytecode) ==
1205 sizeof(struct lttng_ust_filter_bytecode));
1206 memcpy(filter, orig_f, sizeof(*filter) + orig_f->len);
1207error:
1208 return filter;
1209}
1210
099e26bd 1211/*
421cb601
DG
1212 * Find an ust_app using the sock and return it. RCU read side lock must be
1213 * held before calling this helper function.
099e26bd 1214 */
f20baf8e 1215struct ust_app *ust_app_find_by_sock(int sock)
099e26bd 1216{
bec39940 1217 struct lttng_ht_node_ulong *node;
bec39940 1218 struct lttng_ht_iter iter;
f6a9efaa 1219
852d0037 1220 lttng_ht_lookup(ust_app_ht_by_sock, (void *)((unsigned long) sock), &iter);
bec39940 1221 node = lttng_ht_iter_get_node_ulong(&iter);
f6a9efaa
DG
1222 if (node == NULL) {
1223 DBG2("UST app find by sock %d not found", sock);
f6a9efaa
DG
1224 goto error;
1225 }
852d0037
DG
1226
1227 return caa_container_of(node, struct ust_app, sock_n);
f6a9efaa
DG
1228
1229error:
1230 return NULL;
099e26bd
DG
1231}
1232
d0b96690
DG
1233/*
1234 * Find an ust_app using the notify sock and return it. RCU read side lock must
1235 * be held before calling this helper function.
1236 */
1237static struct ust_app *find_app_by_notify_sock(int sock)
1238{
1239 struct lttng_ht_node_ulong *node;
1240 struct lttng_ht_iter iter;
1241
1242 lttng_ht_lookup(ust_app_ht_by_notify_sock, (void *)((unsigned long) sock),
1243 &iter);
1244 node = lttng_ht_iter_get_node_ulong(&iter);
1245 if (node == NULL) {
1246 DBG2("UST app find by notify sock %d not found", sock);
1247 goto error;
1248 }
1249
1250 return caa_container_of(node, struct ust_app, notify_sock_n);
1251
1252error:
1253 return NULL;
1254}
1255
025faf73
DG
1256/*
1257 * Lookup for an ust app event based on event name, filter bytecode and the
1258 * event loglevel.
1259 *
1260 * Return an ust_app_event object or NULL on error.
1261 */
18eace3b 1262static struct ust_app_event *find_ust_app_event(struct lttng_ht *ht,
2106efa0
PP
1263 char *name, struct lttng_filter_bytecode *filter,
1264 int loglevel_value,
39c5a3a7 1265 const struct lttng_event_exclusion *exclusion)
18eace3b
DG
1266{
1267 struct lttng_ht_iter iter;
1268 struct lttng_ht_node_str *node;
1269 struct ust_app_event *event = NULL;
1270 struct ust_app_ht_key key;
18eace3b
DG
1271
1272 assert(name);
1273 assert(ht);
1274
1275 /* Setup key for event lookup. */
1276 key.name = name;
1277 key.filter = filter;
2106efa0 1278 key.loglevel_type = loglevel_value;
39c5a3a7 1279 /* lttng_event_exclusion and lttng_ust_event_exclusion structures are similar */
51755dc8 1280 key.exclusion = exclusion;
18eace3b 1281
025faf73
DG
1282 /* Lookup using the event name as hash and a custom match fct. */
1283 cds_lfht_lookup(ht->ht, ht->hash_fct((void *) name, lttng_ht_seed),
1284 ht_match_ust_app_event, &key, &iter.iter);
18eace3b
DG
1285 node = lttng_ht_iter_get_node_str(&iter);
1286 if (node == NULL) {
1287 goto end;
1288 }
1289
1290 event = caa_container_of(node, struct ust_app_event, node);
1291
1292end:
18eace3b
DG
1293 return event;
1294}
1295
55cc08a6
DG
1296/*
1297 * Create the channel context on the tracer.
d0b96690
DG
1298 *
1299 * Called with UST app session lock held.
55cc08a6
DG
1300 */
1301static
1302int create_ust_channel_context(struct ust_app_channel *ua_chan,
1303 struct ust_app_ctx *ua_ctx, struct ust_app *app)
1304{
1305 int ret;
1306
840cb59c 1307 health_code_update();
86acf0da 1308
fb45065e 1309 pthread_mutex_lock(&app->sock_lock);
852d0037 1310 ret = ustctl_add_context(app->sock, &ua_ctx->ctx,
55cc08a6 1311 ua_chan->obj, &ua_ctx->obj);
fb45065e 1312 pthread_mutex_unlock(&app->sock_lock);
55cc08a6 1313 if (ret < 0) {
ffe60014
DG
1314 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1315 ERR("UST app create channel context failed for app (pid: %d) "
1316 "with ret %d", app->pid, ret);
1317 } else {
3757b385
DG
1318 /*
1319 * This is normal behavior, an application can die during the
1320 * creation process. Don't report an error so the execution can
1321 * continue normally.
1322 */
1323 ret = 0;
ffe60014
DG
1324 DBG3("UST app disable event failed. Application is dead.");
1325 }
55cc08a6
DG
1326 goto error;
1327 }
1328
1329 ua_ctx->handle = ua_ctx->obj->handle;
1330
d0b96690
DG
1331 DBG2("UST app context handle %d created successfully for channel %s",
1332 ua_ctx->handle, ua_chan->name);
55cc08a6
DG
1333
1334error:
840cb59c 1335 health_code_update();
55cc08a6
DG
1336 return ret;
1337}
1338
53a80697
MD
1339/*
1340 * Set the filter on the tracer.
1341 */
1342static
1343int set_ust_event_filter(struct ust_app_event *ua_event,
1344 struct ust_app *app)
1345{
1346 int ret;
51755dc8 1347 struct lttng_ust_filter_bytecode *ust_bytecode = NULL;
53a80697 1348
840cb59c 1349 health_code_update();
86acf0da 1350
53a80697 1351 if (!ua_event->filter) {
86acf0da
DG
1352 ret = 0;
1353 goto error;
53a80697
MD
1354 }
1355
51755dc8
JG
1356 ust_bytecode = create_ust_bytecode_from_bytecode(ua_event->filter);
1357 if (!ust_bytecode) {
1358 ret = -LTTNG_ERR_NOMEM;
1359 goto error;
1360 }
fb45065e 1361 pthread_mutex_lock(&app->sock_lock);
51755dc8 1362 ret = ustctl_set_filter(app->sock, ust_bytecode,
53a80697 1363 ua_event->obj);
fb45065e 1364 pthread_mutex_unlock(&app->sock_lock);
53a80697 1365 if (ret < 0) {
ffe60014
DG
1366 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1367 ERR("UST app event %s filter failed for app (pid: %d) "
1368 "with ret %d", ua_event->attr.name, app->pid, ret);
1369 } else {
3757b385
DG
1370 /*
1371 * This is normal behavior, an application can die during the
1372 * creation process. Don't report an error so the execution can
1373 * continue normally.
1374 */
1375 ret = 0;
ffe60014
DG
1376 DBG3("UST app filter event failed. Application is dead.");
1377 }
53a80697
MD
1378 goto error;
1379 }
1380
1381 DBG2("UST filter set successfully for event %s", ua_event->name);
1382
1383error:
840cb59c 1384 health_code_update();
51755dc8 1385 free(ust_bytecode);
53a80697
MD
1386 return ret;
1387}
1388
51755dc8
JG
1389static
1390struct lttng_ust_event_exclusion *create_ust_exclusion_from_exclusion(
1391 struct lttng_event_exclusion *exclusion)
1392{
1393 struct lttng_ust_event_exclusion *ust_exclusion = NULL;
1394 size_t exclusion_alloc_size = sizeof(struct lttng_ust_event_exclusion) +
1395 LTTNG_UST_SYM_NAME_LEN * exclusion->count;
1396
1397 ust_exclusion = zmalloc(exclusion_alloc_size);
1398 if (!ust_exclusion) {
1399 PERROR("malloc");
1400 goto end;
1401 }
1402
1403 assert(sizeof(struct lttng_event_exclusion) ==
1404 sizeof(struct lttng_ust_event_exclusion));
1405 memcpy(ust_exclusion, exclusion, exclusion_alloc_size);
1406end:
1407 return ust_exclusion;
1408}
1409
7cc9a73c
JI
1410/*
1411 * Set event exclusions on the tracer.
1412 */
1413static
1414int set_ust_event_exclusion(struct ust_app_event *ua_event,
1415 struct ust_app *app)
1416{
1417 int ret;
51755dc8 1418 struct lttng_ust_event_exclusion *ust_exclusion = NULL;
7cc9a73c
JI
1419
1420 health_code_update();
1421
1422 if (!ua_event->exclusion || !ua_event->exclusion->count) {
1423 ret = 0;
1424 goto error;
1425 }
1426
51755dc8
JG
1427 ust_exclusion = create_ust_exclusion_from_exclusion(
1428 ua_event->exclusion);
1429 if (!ust_exclusion) {
1430 ret = -LTTNG_ERR_NOMEM;
1431 goto error;
1432 }
fb45065e 1433 pthread_mutex_lock(&app->sock_lock);
51755dc8 1434 ret = ustctl_set_exclusion(app->sock, ust_exclusion, ua_event->obj);
fb45065e 1435 pthread_mutex_unlock(&app->sock_lock);
7cc9a73c
JI
1436 if (ret < 0) {
1437 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1438 ERR("UST app event %s exclusions failed for app (pid: %d) "
1439 "with ret %d", ua_event->attr.name, app->pid, ret);
1440 } else {
1441 /*
1442 * This is normal behavior, an application can die during the
1443 * creation process. Don't report an error so the execution can
1444 * continue normally.
1445 */
1446 ret = 0;
1447 DBG3("UST app event exclusion failed. Application is dead.");
1448 }
1449 goto error;
1450 }
1451
1452 DBG2("UST exclusion set successfully for event %s", ua_event->name);
1453
1454error:
1455 health_code_update();
51755dc8 1456 free(ust_exclusion);
7cc9a73c
JI
1457 return ret;
1458}
1459
9730260e
DG
1460/*
1461 * Disable the specified event on to UST tracer for the UST session.
1462 */
1463static int disable_ust_event(struct ust_app *app,
1464 struct ust_app_session *ua_sess, struct ust_app_event *ua_event)
1465{
1466 int ret;
1467
840cb59c 1468 health_code_update();
86acf0da 1469
fb45065e 1470 pthread_mutex_lock(&app->sock_lock);
852d0037 1471 ret = ustctl_disable(app->sock, ua_event->obj);
fb45065e 1472 pthread_mutex_unlock(&app->sock_lock);
9730260e 1473 if (ret < 0) {
ffe60014
DG
1474 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1475 ERR("UST app event %s disable failed for app (pid: %d) "
1476 "and session handle %d with ret %d",
1477 ua_event->attr.name, app->pid, ua_sess->handle, ret);
1478 } else {
3757b385
DG
1479 /*
1480 * This is normal behavior, an application can die during the
1481 * creation process. Don't report an error so the execution can
1482 * continue normally.
1483 */
1484 ret = 0;
ffe60014
DG
1485 DBG3("UST app disable event failed. Application is dead.");
1486 }
9730260e
DG
1487 goto error;
1488 }
1489
1490 DBG2("UST app event %s disabled successfully for app (pid: %d)",
852d0037 1491 ua_event->attr.name, app->pid);
9730260e
DG
1492
1493error:
840cb59c 1494 health_code_update();
9730260e
DG
1495 return ret;
1496}
1497
78f0bacd
DG
1498/*
1499 * Disable the specified channel on to UST tracer for the UST session.
1500 */
1501static int disable_ust_channel(struct ust_app *app,
1502 struct ust_app_session *ua_sess, struct ust_app_channel *ua_chan)
1503{
1504 int ret;
1505
840cb59c 1506 health_code_update();
86acf0da 1507
fb45065e 1508 pthread_mutex_lock(&app->sock_lock);
852d0037 1509 ret = ustctl_disable(app->sock, ua_chan->obj);
fb45065e 1510 pthread_mutex_unlock(&app->sock_lock);
78f0bacd 1511 if (ret < 0) {
ffe60014
DG
1512 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1513 ERR("UST app channel %s disable failed for app (pid: %d) "
1514 "and session handle %d with ret %d",
1515 ua_chan->name, app->pid, ua_sess->handle, ret);
1516 } else {
3757b385
DG
1517 /*
1518 * This is normal behavior, an application can die during the
1519 * creation process. Don't report an error so the execution can
1520 * continue normally.
1521 */
1522 ret = 0;
ffe60014
DG
1523 DBG3("UST app disable channel failed. Application is dead.");
1524 }
78f0bacd
DG
1525 goto error;
1526 }
1527
78f0bacd 1528 DBG2("UST app channel %s disabled successfully for app (pid: %d)",
852d0037 1529 ua_chan->name, app->pid);
78f0bacd
DG
1530
1531error:
840cb59c 1532 health_code_update();
78f0bacd
DG
1533 return ret;
1534}
1535
1536/*
1537 * Enable the specified channel on to UST tracer for the UST session.
1538 */
1539static int enable_ust_channel(struct ust_app *app,
1540 struct ust_app_session *ua_sess, struct ust_app_channel *ua_chan)
1541{
1542 int ret;
1543
840cb59c 1544 health_code_update();
86acf0da 1545
fb45065e 1546 pthread_mutex_lock(&app->sock_lock);
852d0037 1547 ret = ustctl_enable(app->sock, ua_chan->obj);
fb45065e 1548 pthread_mutex_unlock(&app->sock_lock);
78f0bacd 1549 if (ret < 0) {
ffe60014
DG
1550 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1551 ERR("UST app channel %s enable failed for app (pid: %d) "
1552 "and session handle %d with ret %d",
1553 ua_chan->name, app->pid, ua_sess->handle, ret);
1554 } else {
3757b385
DG
1555 /*
1556 * This is normal behavior, an application can die during the
1557 * creation process. Don't report an error so the execution can
1558 * continue normally.
1559 */
1560 ret = 0;
ffe60014
DG
1561 DBG3("UST app enable channel failed. Application is dead.");
1562 }
78f0bacd
DG
1563 goto error;
1564 }
1565
1566 ua_chan->enabled = 1;
1567
1568 DBG2("UST app channel %s enabled successfully for app (pid: %d)",
852d0037 1569 ua_chan->name, app->pid);
78f0bacd
DG
1570
1571error:
840cb59c 1572 health_code_update();
78f0bacd
DG
1573 return ret;
1574}
1575
edb67388
DG
1576/*
1577 * Enable the specified event on to UST tracer for the UST session.
1578 */
1579static int enable_ust_event(struct ust_app *app,
1580 struct ust_app_session *ua_sess, struct ust_app_event *ua_event)
1581{
1582 int ret;
1583
840cb59c 1584 health_code_update();
86acf0da 1585
fb45065e 1586 pthread_mutex_lock(&app->sock_lock);
852d0037 1587 ret = ustctl_enable(app->sock, ua_event->obj);
fb45065e 1588 pthread_mutex_unlock(&app->sock_lock);
edb67388 1589 if (ret < 0) {
ffe60014
DG
1590 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1591 ERR("UST app event %s enable failed for app (pid: %d) "
1592 "and session handle %d with ret %d",
1593 ua_event->attr.name, app->pid, ua_sess->handle, ret);
1594 } else {
3757b385
DG
1595 /*
1596 * This is normal behavior, an application can die during the
1597 * creation process. Don't report an error so the execution can
1598 * continue normally.
1599 */
1600 ret = 0;
ffe60014
DG
1601 DBG3("UST app enable event failed. Application is dead.");
1602 }
edb67388
DG
1603 goto error;
1604 }
1605
1606 DBG2("UST app event %s enabled successfully for app (pid: %d)",
852d0037 1607 ua_event->attr.name, app->pid);
edb67388
DG
1608
1609error:
840cb59c 1610 health_code_update();
edb67388
DG
1611 return ret;
1612}
1613
099e26bd 1614/*
7972aab2 1615 * Send channel and stream buffer to application.
4f3ab6ee 1616 *
ffe60014 1617 * Return 0 on success. On error, a negative value is returned.
4f3ab6ee 1618 */
7972aab2
DG
1619static int send_channel_pid_to_ust(struct ust_app *app,
1620 struct ust_app_session *ua_sess, struct ust_app_channel *ua_chan)
4f3ab6ee
DG
1621{
1622 int ret;
ffe60014 1623 struct ust_app_stream *stream, *stmp;
4f3ab6ee
DG
1624
1625 assert(app);
ffe60014 1626 assert(ua_sess);
4f3ab6ee 1627 assert(ua_chan);
4f3ab6ee 1628
840cb59c 1629 health_code_update();
4f3ab6ee 1630
7972aab2
DG
1631 DBG("UST app sending channel %s to UST app sock %d", ua_chan->name,
1632 app->sock);
86acf0da 1633
ffe60014
DG
1634 /* Send channel to the application. */
1635 ret = ust_consumer_send_channel_to_ust(app, ua_sess, ua_chan);
a7169585
MD
1636 if (ret == -EPIPE || ret == -LTTNG_UST_ERR_EXITING) {
1637 ret = -ENOTCONN; /* Caused by app exiting. */
1638 goto error;
1639 } else if (ret < 0) {
b551a063
DG
1640 goto error;
1641 }
1642
d88aee68
DG
1643 health_code_update();
1644
ffe60014
DG
1645 /* Send all streams to application. */
1646 cds_list_for_each_entry_safe(stream, stmp, &ua_chan->streams.head, list) {
1647 ret = ust_consumer_send_stream_to_ust(app, ua_chan, stream);
a7169585
MD
1648 if (ret == -EPIPE || ret == -LTTNG_UST_ERR_EXITING) {
1649 ret = -ENOTCONN; /* Caused by app exiting. */
1650 goto error;
1651 } else if (ret < 0) {
ffe60014
DG
1652 goto error;
1653 }
1654 /* We don't need the stream anymore once sent to the tracer. */
1655 cds_list_del(&stream->list);
fb45065e 1656 delete_ust_app_stream(-1, stream, app);
ffe60014 1657 }
ffe60014
DG
1658 /* Flag the channel that it is sent to the application. */
1659 ua_chan->is_sent = 1;
ffe60014 1660
b551a063 1661error:
840cb59c 1662 health_code_update();
b551a063
DG
1663 return ret;
1664}
1665
91d76f53 1666/*
5b4a0ec0 1667 * Create the specified event onto the UST tracer for a UST session.
d0b96690
DG
1668 *
1669 * Should be called with session mutex held.
91d76f53 1670 */
edb67388
DG
1671static
1672int create_ust_event(struct ust_app *app, struct ust_app_session *ua_sess,
1673 struct ust_app_channel *ua_chan, struct ust_app_event *ua_event)
91d76f53 1674{
5b4a0ec0 1675 int ret = 0;
284d8f55 1676
840cb59c 1677 health_code_update();
86acf0da 1678
5b4a0ec0 1679 /* Create UST event on tracer */
fb45065e 1680 pthread_mutex_lock(&app->sock_lock);
852d0037 1681 ret = ustctl_create_event(app->sock, &ua_event->attr, ua_chan->obj,
5b4a0ec0 1682 &ua_event->obj);
fb45065e 1683 pthread_mutex_unlock(&app->sock_lock);
5b4a0ec0 1684 if (ret < 0) {
ffe60014
DG
1685 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
1686 ERR("Error ustctl create event %s for app pid: %d with ret %d",
1687 ua_event->attr.name, app->pid, ret);
1688 } else {
3757b385
DG
1689 /*
1690 * This is normal behavior, an application can die during the
1691 * creation process. Don't report an error so the execution can
1692 * continue normally.
1693 */
1694 ret = 0;
ffe60014
DG
1695 DBG3("UST app create event failed. Application is dead.");
1696 }
5b4a0ec0 1697 goto error;
91d76f53 1698 }
f6a9efaa 1699
5b4a0ec0 1700 ua_event->handle = ua_event->obj->handle;
284d8f55 1701
5b4a0ec0 1702 DBG2("UST app event %s created successfully for pid:%d",
852d0037 1703 ua_event->attr.name, app->pid);
f6a9efaa 1704
840cb59c 1705 health_code_update();
86acf0da 1706
025faf73
DG
1707 /* Set filter if one is present. */
1708 if (ua_event->filter) {
1709 ret = set_ust_event_filter(ua_event, app);
1710 if (ret < 0) {
1711 goto error;
1712 }
1713 }
1714
7cc9a73c
JI
1715 /* Set exclusions for the event */
1716 if (ua_event->exclusion) {
1717 ret = set_ust_event_exclusion(ua_event, app);
1718 if (ret < 0) {
1719 goto error;
1720 }
1721 }
1722
8535a6d9 1723 /* If event not enabled, disable it on the tracer */
40113787
MD
1724 if (ua_event->enabled) {
1725 /*
1726 * We now need to explicitly enable the event, since it
1727 * is now disabled at creation.
1728 */
1729 ret = enable_ust_event(app, ua_sess, ua_event);
1730 if (ret < 0) {
1731 /*
1732 * If we hit an EPERM, something is wrong with our enable call. If
1733 * we get an EEXIST, there is a problem on the tracer side since we
1734 * just created it.
1735 */
1736 switch (ret) {
1737 case -LTTNG_UST_ERR_PERM:
1738 /* Code flow problem */
1739 assert(0);
1740 case -LTTNG_UST_ERR_EXIST:
1741 /* It's OK for our use case. */
1742 ret = 0;
1743 break;
1744 default:
1745 break;
1746 }
1747 goto error;
1748 }
8535a6d9
DG
1749 }
1750
5b4a0ec0 1751error:
840cb59c 1752 health_code_update();
5b4a0ec0 1753 return ret;
91d76f53 1754}
48842b30 1755
5b4a0ec0
DG
1756/*
1757 * Copy data between an UST app event and a LTT event.
1758 */
421cb601 1759static void shadow_copy_event(struct ust_app_event *ua_event,
48842b30
DG
1760 struct ltt_ust_event *uevent)
1761{
b4ffad32
JI
1762 size_t exclusion_alloc_size;
1763
48842b30
DG
1764 strncpy(ua_event->name, uevent->attr.name, sizeof(ua_event->name));
1765 ua_event->name[sizeof(ua_event->name) - 1] = '\0';
1766
fc34caaa
DG
1767 ua_event->enabled = uevent->enabled;
1768
5b4a0ec0
DG
1769 /* Copy event attributes */
1770 memcpy(&ua_event->attr, &uevent->attr, sizeof(ua_event->attr));
1771
53a80697
MD
1772 /* Copy filter bytecode */
1773 if (uevent->filter) {
51755dc8 1774 ua_event->filter = copy_filter_bytecode(uevent->filter);
025faf73 1775 /* Filter might be NULL here in case of ENONEM. */
53a80697 1776 }
b4ffad32
JI
1777
1778 /* Copy exclusion data */
1779 if (uevent->exclusion) {
51755dc8 1780 exclusion_alloc_size = sizeof(struct lttng_event_exclusion) +
b4ffad32
JI
1781 LTTNG_UST_SYM_NAME_LEN * uevent->exclusion->count;
1782 ua_event->exclusion = zmalloc(exclusion_alloc_size);
5f8df26c
JI
1783 if (ua_event->exclusion == NULL) {
1784 PERROR("malloc");
1785 } else {
1786 memcpy(ua_event->exclusion, uevent->exclusion,
1787 exclusion_alloc_size);
b4ffad32
JI
1788 }
1789 }
48842b30
DG
1790}
1791
5b4a0ec0
DG
1792/*
1793 * Copy data between an UST app channel and a LTT channel.
1794 */
421cb601 1795static void shadow_copy_channel(struct ust_app_channel *ua_chan,
48842b30
DG
1796 struct ltt_ust_channel *uchan)
1797{
bec39940 1798 struct lttng_ht_iter iter;
48842b30 1799 struct ltt_ust_event *uevent;
55cc08a6 1800 struct ltt_ust_context *uctx;
48842b30
DG
1801 struct ust_app_event *ua_event;
1802
fc34caaa 1803 DBG2("UST app shadow copy of channel %s started", ua_chan->name);
48842b30
DG
1804
1805 strncpy(ua_chan->name, uchan->name, sizeof(ua_chan->name));
1806 ua_chan->name[sizeof(ua_chan->name) - 1] = '\0';
ffe60014 1807
1624d5b7
JD
1808 ua_chan->tracefile_size = uchan->tracefile_size;
1809 ua_chan->tracefile_count = uchan->tracefile_count;
1810
ffe60014
DG
1811 /* Copy event attributes since the layout is different. */
1812 ua_chan->attr.subbuf_size = uchan->attr.subbuf_size;
1813 ua_chan->attr.num_subbuf = uchan->attr.num_subbuf;
1814 ua_chan->attr.overwrite = uchan->attr.overwrite;
1815 ua_chan->attr.switch_timer_interval = uchan->attr.switch_timer_interval;
1816 ua_chan->attr.read_timer_interval = uchan->attr.read_timer_interval;
e9404c27 1817 ua_chan->monitor_timer_interval = uchan->monitor_timer_interval;
ffe60014 1818 ua_chan->attr.output = uchan->attr.output;
f515d318
MD
1819 ua_chan->attr.blocking_timeout = uchan->attr.u.s.blocking_timeout;
1820
ffe60014
DG
1821 /*
1822 * Note that the attribute channel type is not set since the channel on the
1823 * tracing registry side does not have this information.
1824 */
48842b30 1825
fc34caaa 1826 ua_chan->enabled = uchan->enabled;
7972aab2 1827 ua_chan->tracing_channel_id = uchan->id;
fc34caaa 1828
31746f93 1829 cds_list_for_each_entry(uctx, &uchan->ctx_list, list) {
bdf64013
JG
1830 struct ust_app_ctx *ua_ctx = alloc_ust_app_ctx(&uctx->ctx);
1831
55cc08a6
DG
1832 if (ua_ctx == NULL) {
1833 continue;
1834 }
bec39940
DG
1835 lttng_ht_node_init_ulong(&ua_ctx->node,
1836 (unsigned long) ua_ctx->ctx.ctx);
aa3514e9 1837 lttng_ht_add_ulong(ua_chan->ctx, &ua_ctx->node);
31746f93 1838 cds_list_add_tail(&ua_ctx->list, &ua_chan->ctx_list);
55cc08a6 1839 }
48842b30 1840
421cb601 1841 /* Copy all events from ltt ust channel to ust app channel */
bec39940 1842 cds_lfht_for_each_entry(uchan->events->ht, &iter.iter, uevent, node.node) {
18eace3b 1843 ua_event = find_ust_app_event(ua_chan->events, uevent->attr.name,
39c5a3a7 1844 uevent->filter, uevent->attr.loglevel, uevent->exclusion);
18eace3b 1845 if (ua_event == NULL) {
421cb601 1846 DBG2("UST event %s not found on shadow copy channel",
48842b30 1847 uevent->attr.name);
284d8f55 1848 ua_event = alloc_ust_app_event(uevent->attr.name, &uevent->attr);
48842b30 1849 if (ua_event == NULL) {
5b4a0ec0 1850 continue;
48842b30 1851 }
421cb601 1852 shadow_copy_event(ua_event, uevent);
d0b96690 1853 add_unique_ust_app_event(ua_chan, ua_event);
48842b30 1854 }
48842b30
DG
1855 }
1856
fc34caaa 1857 DBG3("UST app shadow copy of channel %s done", ua_chan->name);
48842b30
DG
1858}
1859
5b4a0ec0
DG
1860/*
1861 * Copy data between a UST app session and a regular LTT session.
1862 */
421cb601 1863static void shadow_copy_session(struct ust_app_session *ua_sess,
bec39940 1864 struct ltt_ust_session *usess, struct ust_app *app)
48842b30 1865{
bec39940
DG
1866 struct lttng_ht_node_str *ua_chan_node;
1867 struct lttng_ht_iter iter;
48842b30
DG
1868 struct ltt_ust_channel *uchan;
1869 struct ust_app_channel *ua_chan;
477d7741
MD
1870 time_t rawtime;
1871 struct tm *timeinfo;
1872 char datetime[16];
1873 int ret;
d7ba1388 1874 char tmp_shm_path[PATH_MAX];
477d7741
MD
1875
1876 /* Get date and time for unique app path */
1877 time(&rawtime);
1878 timeinfo = localtime(&rawtime);
1879 strftime(datetime, sizeof(datetime), "%Y%m%d-%H%M%S", timeinfo);
48842b30 1880
421cb601 1881 DBG2("Shadow copy of session handle %d", ua_sess->handle);
48842b30 1882
7972aab2
DG
1883 ua_sess->tracing_id = usess->id;
1884 ua_sess->id = get_next_session_id();
1885 ua_sess->uid = app->uid;
1886 ua_sess->gid = app->gid;
1887 ua_sess->euid = usess->uid;
1888 ua_sess->egid = usess->gid;
1889 ua_sess->buffer_type = usess->buffer_type;
1890 ua_sess->bits_per_long = app->bits_per_long;
6addfa37 1891
7972aab2 1892 /* There is only one consumer object per session possible. */
6addfa37 1893 consumer_output_get(usess->consumer);
7972aab2 1894 ua_sess->consumer = usess->consumer;
6addfa37 1895
2bba9e53 1896 ua_sess->output_traces = usess->output_traces;
ecc48a90 1897 ua_sess->live_timer_interval = usess->live_timer_interval;
84ad93e8
DG
1898 copy_channel_attr_to_ustctl(&ua_sess->metadata_attr,
1899 &usess->metadata_attr);
7972aab2
DG
1900
1901 switch (ua_sess->buffer_type) {
1902 case LTTNG_BUFFER_PER_PID:
1903 ret = snprintf(ua_sess->path, sizeof(ua_sess->path),
dec56f6c 1904 DEFAULT_UST_TRACE_PID_PATH "/%s-%d-%s", app->name, app->pid,
7972aab2
DG
1905 datetime);
1906 break;
1907 case LTTNG_BUFFER_PER_UID:
1908 ret = snprintf(ua_sess->path, sizeof(ua_sess->path),
1909 DEFAULT_UST_TRACE_UID_PATH, ua_sess->uid, app->bits_per_long);
1910 break;
1911 default:
1912 assert(0);
1913 goto error;
1914 }
477d7741
MD
1915 if (ret < 0) {
1916 PERROR("asprintf UST shadow copy session");
477d7741 1917 assert(0);
7972aab2 1918 goto error;
477d7741
MD
1919 }
1920
3d071855
MD
1921 strncpy(ua_sess->root_shm_path, usess->root_shm_path,
1922 sizeof(ua_sess->root_shm_path));
1923 ua_sess->root_shm_path[sizeof(ua_sess->root_shm_path) - 1] = '\0';
d7ba1388
MD
1924 strncpy(ua_sess->shm_path, usess->shm_path,
1925 sizeof(ua_sess->shm_path));
1926 ua_sess->shm_path[sizeof(ua_sess->shm_path) - 1] = '\0';
1927 if (ua_sess->shm_path[0]) {
1928 switch (ua_sess->buffer_type) {
1929 case LTTNG_BUFFER_PER_PID:
1930 ret = snprintf(tmp_shm_path, sizeof(tmp_shm_path),
1931 DEFAULT_UST_TRACE_PID_PATH "/%s-%d-%s",
1932 app->name, app->pid, datetime);
1933 break;
1934 case LTTNG_BUFFER_PER_UID:
1935 ret = snprintf(tmp_shm_path, sizeof(tmp_shm_path),
1936 DEFAULT_UST_TRACE_UID_PATH,
1937 app->uid, app->bits_per_long);
1938 break;
1939 default:
1940 assert(0);
1941 goto error;
1942 }
1943 if (ret < 0) {
1944 PERROR("sprintf UST shadow copy session");
1945 assert(0);
1946 goto error;
1947 }
1948 strncat(ua_sess->shm_path, tmp_shm_path,
1949 sizeof(ua_sess->shm_path) - strlen(ua_sess->shm_path) - 1);
1950 ua_sess->shm_path[sizeof(ua_sess->shm_path) - 1] = '\0';
1951 }
1952
48842b30 1953 /* Iterate over all channels in global domain. */
bec39940
DG
1954 cds_lfht_for_each_entry(usess->domain_global.channels->ht, &iter.iter,
1955 uchan, node.node) {
1956 struct lttng_ht_iter uiter;
ba767faf 1957
bec39940
DG
1958 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
1959 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
5b4a0ec0 1960 if (ua_chan_node != NULL) {
fc34caaa 1961 /* Session exist. Contiuing. */
5b4a0ec0
DG
1962 continue;
1963 }
421cb601 1964
5b4a0ec0
DG
1965 DBG2("Channel %s not found on shadow session copy, creating it",
1966 uchan->name);
fb83fe64
JD
1967 ua_chan = alloc_ust_app_channel(uchan->name, ua_sess,
1968 &uchan->attr);
5b4a0ec0 1969 if (ua_chan == NULL) {
fc34caaa 1970 /* malloc failed FIXME: Might want to do handle ENOMEM .. */
5b4a0ec0 1971 continue;
48842b30 1972 }
5b4a0ec0 1973 shadow_copy_channel(ua_chan, uchan);
ffe60014
DG
1974 /*
1975 * The concept of metadata channel does not exist on the tracing
1976 * registry side of the session daemon so this can only be a per CPU
1977 * channel and not metadata.
1978 */
1979 ua_chan->attr.type = LTTNG_UST_CHAN_PER_CPU;
1980
bec39940 1981 lttng_ht_add_unique_str(ua_sess->channels, &ua_chan->node);
48842b30 1982 }
6addfa37 1983 return;
7972aab2
DG
1984
1985error:
6addfa37 1986 consumer_output_put(ua_sess->consumer);
48842b30
DG
1987}
1988
78f0bacd
DG
1989/*
1990 * Lookup sesison wrapper.
1991 */
84cd17c6
MD
1992static
1993void __lookup_session_by_app(struct ltt_ust_session *usess,
bec39940 1994 struct ust_app *app, struct lttng_ht_iter *iter)
84cd17c6
MD
1995{
1996 /* Get right UST app session from app */
d9bf3ca4 1997 lttng_ht_lookup(app->sessions, &usess->id, iter);
84cd17c6
MD
1998}
1999
421cb601
DG
2000/*
2001 * Return ust app session from the app session hashtable using the UST session
a991f516 2002 * id.
421cb601 2003 */
48842b30
DG
2004static struct ust_app_session *lookup_session_by_app(
2005 struct ltt_ust_session *usess, struct ust_app *app)
2006{
bec39940 2007 struct lttng_ht_iter iter;
d9bf3ca4 2008 struct lttng_ht_node_u64 *node;
48842b30 2009
84cd17c6 2010 __lookup_session_by_app(usess, app, &iter);
d9bf3ca4 2011 node = lttng_ht_iter_get_node_u64(&iter);
48842b30
DG
2012 if (node == NULL) {
2013 goto error;
2014 }
2015
2016 return caa_container_of(node, struct ust_app_session, node);
2017
2018error:
2019 return NULL;
2020}
2021
7972aab2
DG
2022/*
2023 * Setup buffer registry per PID for the given session and application. If none
2024 * is found, a new one is created, added to the global registry and
2025 * initialized. If regp is valid, it's set with the newly created object.
2026 *
2027 * Return 0 on success or else a negative value.
2028 */
2029static int setup_buffer_reg_pid(struct ust_app_session *ua_sess,
2030 struct ust_app *app, struct buffer_reg_pid **regp)
2031{
2032 int ret = 0;
2033 struct buffer_reg_pid *reg_pid;
2034
2035 assert(ua_sess);
2036 assert(app);
2037
2038 rcu_read_lock();
2039
2040 reg_pid = buffer_reg_pid_find(ua_sess->id);
2041 if (!reg_pid) {
2042 /*
2043 * This is the create channel path meaning that if there is NO
2044 * registry available, we have to create one for this session.
2045 */
d7ba1388 2046 ret = buffer_reg_pid_create(ua_sess->id, &reg_pid,
3d071855 2047 ua_sess->root_shm_path, ua_sess->shm_path);
7972aab2
DG
2048 if (ret < 0) {
2049 goto error;
2050 }
7972aab2
DG
2051 } else {
2052 goto end;
2053 }
2054
2055 /* Initialize registry. */
2056 ret = ust_registry_session_init(&reg_pid->registry->reg.ust, app,
2057 app->bits_per_long, app->uint8_t_alignment,
2058 app->uint16_t_alignment, app->uint32_t_alignment,
af6142cf
MD
2059 app->uint64_t_alignment, app->long_alignment,
2060 app->byte_order, app->version.major,
3d071855
MD
2061 app->version.minor, reg_pid->root_shm_path,
2062 reg_pid->shm_path,
d7ba1388 2063 ua_sess->euid, ua_sess->egid);
7972aab2 2064 if (ret < 0) {
286c991a
MD
2065 /*
2066 * reg_pid->registry->reg.ust is NULL upon error, so we need to
2067 * destroy the buffer registry, because it is always expected
2068 * that if the buffer registry can be found, its ust registry is
2069 * non-NULL.
2070 */
2071 buffer_reg_pid_destroy(reg_pid);
7972aab2
DG
2072 goto error;
2073 }
2074
286c991a
MD
2075 buffer_reg_pid_add(reg_pid);
2076
7972aab2
DG
2077 DBG3("UST app buffer registry per PID created successfully");
2078
2079end:
2080 if (regp) {
2081 *regp = reg_pid;
2082 }
2083error:
2084 rcu_read_unlock();
2085 return ret;
2086}
2087
2088/*
2089 * Setup buffer registry per UID for the given session and application. If none
2090 * is found, a new one is created, added to the global registry and
2091 * initialized. If regp is valid, it's set with the newly created object.
2092 *
2093 * Return 0 on success or else a negative value.
2094 */
2095static int setup_buffer_reg_uid(struct ltt_ust_session *usess,
d7ba1388 2096 struct ust_app_session *ua_sess,
7972aab2
DG
2097 struct ust_app *app, struct buffer_reg_uid **regp)
2098{
2099 int ret = 0;
2100 struct buffer_reg_uid *reg_uid;
2101
2102 assert(usess);
2103 assert(app);
2104
2105 rcu_read_lock();
2106
2107 reg_uid = buffer_reg_uid_find(usess->id, app->bits_per_long, app->uid);
2108 if (!reg_uid) {
2109 /*
2110 * This is the create channel path meaning that if there is NO
2111 * registry available, we have to create one for this session.
2112 */
2113 ret = buffer_reg_uid_create(usess->id, app->bits_per_long, app->uid,
3d071855
MD
2114 LTTNG_DOMAIN_UST, &reg_uid,
2115 ua_sess->root_shm_path, ua_sess->shm_path);
7972aab2
DG
2116 if (ret < 0) {
2117 goto error;
2118 }
7972aab2
DG
2119 } else {
2120 goto end;
2121 }
2122
2123 /* Initialize registry. */
af6142cf 2124 ret = ust_registry_session_init(&reg_uid->registry->reg.ust, NULL,
7972aab2
DG
2125 app->bits_per_long, app->uint8_t_alignment,
2126 app->uint16_t_alignment, app->uint32_t_alignment,
af6142cf
MD
2127 app->uint64_t_alignment, app->long_alignment,
2128 app->byte_order, app->version.major,
3d071855
MD
2129 app->version.minor, reg_uid->root_shm_path,
2130 reg_uid->shm_path, usess->uid, usess->gid);
7972aab2 2131 if (ret < 0) {
286c991a
MD
2132 /*
2133 * reg_uid->registry->reg.ust is NULL upon error, so we need to
2134 * destroy the buffer registry, because it is always expected
2135 * that if the buffer registry can be found, its ust registry is
2136 * non-NULL.
2137 */
2138 buffer_reg_uid_destroy(reg_uid, NULL);
7972aab2
DG
2139 goto error;
2140 }
2141 /* Add node to teardown list of the session. */
2142 cds_list_add(&reg_uid->lnode, &usess->buffer_reg_uid_list);
2143
286c991a 2144 buffer_reg_uid_add(reg_uid);
7972aab2 2145
286c991a 2146 DBG3("UST app buffer registry per UID created successfully");
7972aab2
DG
2147end:
2148 if (regp) {
2149 *regp = reg_uid;
2150 }
2151error:
2152 rcu_read_unlock();
2153 return ret;
2154}
2155
421cb601 2156/*
3d8ca23b 2157 * Create a session on the tracer side for the given app.
421cb601 2158 *
3d8ca23b
DG
2159 * On success, ua_sess_ptr is populated with the session pointer or else left
2160 * untouched. If the session was created, is_created is set to 1. On error,
2161 * it's left untouched. Note that ua_sess_ptr is mandatory but is_created can
2162 * be NULL.
2163 *
2164 * Returns 0 on success or else a negative code which is either -ENOMEM or
2165 * -ENOTCONN which is the default code if the ustctl_create_session fails.
421cb601 2166 */
3d8ca23b
DG
2167static int create_ust_app_session(struct ltt_ust_session *usess,
2168 struct ust_app *app, struct ust_app_session **ua_sess_ptr,
2169 int *is_created)
421cb601 2170{
3d8ca23b 2171 int ret, created = 0;
421cb601
DG
2172 struct ust_app_session *ua_sess;
2173
3d8ca23b
DG
2174 assert(usess);
2175 assert(app);
2176 assert(ua_sess_ptr);
2177
840cb59c 2178 health_code_update();
86acf0da 2179
421cb601
DG
2180 ua_sess = lookup_session_by_app(usess, app);
2181 if (ua_sess == NULL) {
d9bf3ca4 2182 DBG2("UST app pid: %d session id %" PRIu64 " not found, creating it",
852d0037 2183 app->pid, usess->id);
d0b96690 2184 ua_sess = alloc_ust_app_session(app);
421cb601
DG
2185 if (ua_sess == NULL) {
2186 /* Only malloc can failed so something is really wrong */
3d8ca23b
DG
2187 ret = -ENOMEM;
2188 goto error;
421cb601 2189 }
477d7741 2190 shadow_copy_session(ua_sess, usess, app);
3d8ca23b 2191 created = 1;
421cb601
DG
2192 }
2193
7972aab2
DG
2194 switch (usess->buffer_type) {
2195 case LTTNG_BUFFER_PER_PID:
2196 /* Init local registry. */
2197 ret = setup_buffer_reg_pid(ua_sess, app, NULL);
421cb601 2198 if (ret < 0) {
e64207cf 2199 delete_ust_app_session(-1, ua_sess, app);
7972aab2
DG
2200 goto error;
2201 }
2202 break;
2203 case LTTNG_BUFFER_PER_UID:
2204 /* Look for a global registry. If none exists, create one. */
d7ba1388 2205 ret = setup_buffer_reg_uid(usess, ua_sess, app, NULL);
7972aab2 2206 if (ret < 0) {
e64207cf 2207 delete_ust_app_session(-1, ua_sess, app);
7972aab2
DG
2208 goto error;
2209 }
2210 break;
2211 default:
2212 assert(0);
2213 ret = -EINVAL;
2214 goto error;
2215 }
2216
2217 health_code_update();
2218
2219 if (ua_sess->handle == -1) {
fb45065e 2220 pthread_mutex_lock(&app->sock_lock);
7972aab2 2221 ret = ustctl_create_session(app->sock);
fb45065e 2222 pthread_mutex_unlock(&app->sock_lock);
7972aab2
DG
2223 if (ret < 0) {
2224 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
2225 ERR("Creating session for app pid %d with ret %d",
ffe60014
DG
2226 app->pid, ret);
2227 } else {
2228 DBG("UST app creating session failed. Application is dead");
3757b385
DG
2229 /*
2230 * This is normal behavior, an application can die during the
2231 * creation process. Don't report an error so the execution can
2232 * continue normally. This will get flagged ENOTCONN and the
2233 * caller will handle it.
2234 */
2235 ret = 0;
ffe60014 2236 }
d0b96690 2237 delete_ust_app_session(-1, ua_sess, app);
3d8ca23b
DG
2238 if (ret != -ENOMEM) {
2239 /*
2240 * Tracer is probably gone or got an internal error so let's
2241 * behave like it will soon unregister or not usable.
2242 */
2243 ret = -ENOTCONN;
2244 }
2245 goto error;
421cb601
DG
2246 }
2247
7972aab2
DG
2248 ua_sess->handle = ret;
2249
2250 /* Add ust app session to app's HT */
d9bf3ca4
MD
2251 lttng_ht_node_init_u64(&ua_sess->node,
2252 ua_sess->tracing_id);
2253 lttng_ht_add_unique_u64(app->sessions, &ua_sess->node);
10b56aef
MD
2254 lttng_ht_node_init_ulong(&ua_sess->ust_objd_node, ua_sess->handle);
2255 lttng_ht_add_unique_ulong(app->ust_sessions_objd,
2256 &ua_sess->ust_objd_node);
7972aab2
DG
2257
2258 DBG2("UST app session created successfully with handle %d", ret);
2259 }
2260
2261 *ua_sess_ptr = ua_sess;
2262 if (is_created) {
2263 *is_created = created;
2264 }
2265
2266 /* Everything went well. */
2267 ret = 0;
2268
2269error:
2270 health_code_update();
2271 return ret;
2272}
2273
6a6b2068
JG
2274/*
2275 * Match function for a hash table lookup of ust_app_ctx.
2276 *
2277 * It matches an ust app context based on the context type and, in the case
2278 * of perf counters, their name.
2279 */
2280static int ht_match_ust_app_ctx(struct cds_lfht_node *node, const void *_key)
2281{
2282 struct ust_app_ctx *ctx;
bdf64013 2283 const struct lttng_ust_context_attr *key;
6a6b2068
JG
2284
2285 assert(node);
2286 assert(_key);
2287
2288 ctx = caa_container_of(node, struct ust_app_ctx, node.node);
2289 key = _key;
2290
2291 /* Context type */
2292 if (ctx->ctx.ctx != key->ctx) {
2293 goto no_match;
2294 }
2295
bdf64013
JG
2296 switch(key->ctx) {
2297 case LTTNG_UST_CONTEXT_PERF_THREAD_COUNTER:
6a6b2068 2298 if (strncmp(key->u.perf_counter.name,
bdf64013
JG
2299 ctx->ctx.u.perf_counter.name,
2300 sizeof(key->u.perf_counter.name))) {
2301 goto no_match;
2302 }
2303 break;
2304 case LTTNG_UST_CONTEXT_APP_CONTEXT:
2305 if (strcmp(key->u.app_ctx.provider_name,
2306 ctx->ctx.u.app_ctx.provider_name) ||
2307 strcmp(key->u.app_ctx.ctx_name,
2308 ctx->ctx.u.app_ctx.ctx_name)) {
6a6b2068
JG
2309 goto no_match;
2310 }
bdf64013
JG
2311 break;
2312 default:
2313 break;
6a6b2068
JG
2314 }
2315
2316 /* Match. */
2317 return 1;
2318
2319no_match:
2320 return 0;
2321}
2322
2323/*
2324 * Lookup for an ust app context from an lttng_ust_context.
2325 *
be184a0f 2326 * Must be called while holding RCU read side lock.
6a6b2068
JG
2327 * Return an ust_app_ctx object or NULL on error.
2328 */
2329static
2330struct ust_app_ctx *find_ust_app_context(struct lttng_ht *ht,
bdf64013 2331 struct lttng_ust_context_attr *uctx)
6a6b2068
JG
2332{
2333 struct lttng_ht_iter iter;
2334 struct lttng_ht_node_ulong *node;
2335 struct ust_app_ctx *app_ctx = NULL;
2336
2337 assert(uctx);
2338 assert(ht);
2339
2340 /* Lookup using the lttng_ust_context_type and a custom match fct. */
2341 cds_lfht_lookup(ht->ht, ht->hash_fct((void *) uctx->ctx, lttng_ht_seed),
2342 ht_match_ust_app_ctx, uctx, &iter.iter);
2343 node = lttng_ht_iter_get_node_ulong(&iter);
2344 if (!node) {
2345 goto end;
2346 }
2347
2348 app_ctx = caa_container_of(node, struct ust_app_ctx, node);
2349
2350end:
2351 return app_ctx;
2352}
2353
7972aab2
DG
2354/*
2355 * Create a context for the channel on the tracer.
2356 *
2357 * Called with UST app session lock held and a RCU read side lock.
2358 */
2359static
2360int create_ust_app_channel_context(struct ust_app_session *ua_sess,
bdf64013
JG
2361 struct ust_app_channel *ua_chan,
2362 struct lttng_ust_context_attr *uctx,
7972aab2
DG
2363 struct ust_app *app)
2364{
2365 int ret = 0;
7972aab2
DG
2366 struct ust_app_ctx *ua_ctx;
2367
2368 DBG2("UST app adding context to channel %s", ua_chan->name);
2369
6a6b2068
JG
2370 ua_ctx = find_ust_app_context(ua_chan->ctx, uctx);
2371 if (ua_ctx) {
7972aab2
DG
2372 ret = -EEXIST;
2373 goto error;
2374 }
2375
2376 ua_ctx = alloc_ust_app_ctx(uctx);
2377 if (ua_ctx == NULL) {
2378 /* malloc failed */
2379 ret = -1;
2380 goto error;
2381 }
2382
2383 lttng_ht_node_init_ulong(&ua_ctx->node, (unsigned long) ua_ctx->ctx.ctx);
aa3514e9 2384 lttng_ht_add_ulong(ua_chan->ctx, &ua_ctx->node);
31746f93 2385 cds_list_add_tail(&ua_ctx->list, &ua_chan->ctx_list);
7972aab2
DG
2386
2387 ret = create_ust_channel_context(ua_chan, ua_ctx, app);
2388 if (ret < 0) {
2389 goto error;
2390 }
2391
2392error:
2393 return ret;
2394}
2395
2396/*
2397 * Enable on the tracer side a ust app event for the session and channel.
2398 *
2399 * Called with UST app session lock held.
2400 */
2401static
2402int enable_ust_app_event(struct ust_app_session *ua_sess,
2403 struct ust_app_event *ua_event, struct ust_app *app)
2404{
2405 int ret;
2406
2407 ret = enable_ust_event(app, ua_sess, ua_event);
2408 if (ret < 0) {
2409 goto error;
2410 }
2411
2412 ua_event->enabled = 1;
2413
2414error:
2415 return ret;
2416}
2417
2418/*
2419 * Disable on the tracer side a ust app event for the session and channel.
2420 */
2421static int disable_ust_app_event(struct ust_app_session *ua_sess,
2422 struct ust_app_event *ua_event, struct ust_app *app)
2423{
2424 int ret;
2425
2426 ret = disable_ust_event(app, ua_sess, ua_event);
2427 if (ret < 0) {
2428 goto error;
2429 }
2430
2431 ua_event->enabled = 0;
2432
2433error:
2434 return ret;
2435}
2436
2437/*
2438 * Lookup ust app channel for session and disable it on the tracer side.
2439 */
2440static
2441int disable_ust_app_channel(struct ust_app_session *ua_sess,
2442 struct ust_app_channel *ua_chan, struct ust_app *app)
2443{
2444 int ret;
2445
2446 ret = disable_ust_channel(app, ua_sess, ua_chan);
2447 if (ret < 0) {
2448 goto error;
2449 }
2450
2451 ua_chan->enabled = 0;
2452
2453error:
2454 return ret;
2455}
2456
2457/*
2458 * Lookup ust app channel for session and enable it on the tracer side. This
2459 * MUST be called with a RCU read side lock acquired.
2460 */
2461static int enable_ust_app_channel(struct ust_app_session *ua_sess,
2462 struct ltt_ust_channel *uchan, struct ust_app *app)
2463{
2464 int ret = 0;
2465 struct lttng_ht_iter iter;
2466 struct lttng_ht_node_str *ua_chan_node;
2467 struct ust_app_channel *ua_chan;
2468
2469 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &iter);
2470 ua_chan_node = lttng_ht_iter_get_node_str(&iter);
2471 if (ua_chan_node == NULL) {
d9bf3ca4 2472 DBG2("Unable to find channel %s in ust session id %" PRIu64,
7972aab2
DG
2473 uchan->name, ua_sess->tracing_id);
2474 goto error;
2475 }
2476
2477 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
2478
2479 ret = enable_ust_channel(app, ua_sess, ua_chan);
2480 if (ret < 0) {
2481 goto error;
2482 }
2483
2484error:
2485 return ret;
2486}
2487
2488/*
2489 * Ask the consumer to create a channel and get it if successful.
2490 *
5e98072f
JR
2491 * Called with UST app session lock held.
2492 *
7972aab2
DG
2493 * Return 0 on success or else a negative value.
2494 */
2495static int do_consumer_create_channel(struct ltt_ust_session *usess,
2496 struct ust_app_session *ua_sess, struct ust_app_channel *ua_chan,
2497 int bitness, struct ust_registry_session *registry)
2498{
2499 int ret;
2500 unsigned int nb_fd = 0;
2501 struct consumer_socket *socket;
2502
2503 assert(usess);
2504 assert(ua_sess);
2505 assert(ua_chan);
2506 assert(registry);
2507
2508 rcu_read_lock();
2509 health_code_update();
2510
2511 /* Get the right consumer socket for the application. */
2512 socket = consumer_find_socket_by_bitness(bitness, usess->consumer);
2513 if (!socket) {
2514 ret = -EINVAL;
2515 goto error;
2516 }
2517
2518 health_code_update();
2519
2520 /* Need one fd for the channel. */
2521 ret = lttng_fd_get(LTTNG_FD_APPS, 1);
2522 if (ret < 0) {
2523 ERR("Exhausted number of available FD upon create channel");
2524 goto error;
2525 }
2526
2527 /*
2528 * Ask consumer to create channel. The consumer will return the number of
2529 * stream we have to expect.
2530 */
2531 ret = ust_consumer_ask_channel(ua_sess, ua_chan, usess->consumer, socket,
2532 registry);
2533 if (ret < 0) {
2534 goto error_ask;
2535 }
2536
2537 /*
2538 * Compute the number of fd needed before receiving them. It must be 2 per
2539 * stream (2 being the default value here).
2540 */
2541 nb_fd = DEFAULT_UST_STREAM_FD_NUM * ua_chan->expected_stream_count;
2542
2543 /* Reserve the amount of file descriptor we need. */
2544 ret = lttng_fd_get(LTTNG_FD_APPS, nb_fd);
2545 if (ret < 0) {
2546 ERR("Exhausted number of available FD upon create channel");
2547 goto error_fd_get_stream;
2548 }
2549
2550 health_code_update();
2551
2552 /*
2553 * Now get the channel from the consumer. This call wil populate the stream
2554 * list of that channel and set the ust objects.
2555 */
d9078d0c
DG
2556 if (usess->consumer->enabled) {
2557 ret = ust_consumer_get_channel(socket, ua_chan);
2558 if (ret < 0) {
2559 goto error_destroy;
2560 }
7972aab2
DG
2561 }
2562
2563 rcu_read_unlock();
2564 return 0;
2565
2566error_destroy:
2567 lttng_fd_put(LTTNG_FD_APPS, nb_fd);
2568error_fd_get_stream:
2569 /*
2570 * Initiate a destroy channel on the consumer since we had an error
2571 * handling it on our side. The return value is of no importance since we
2572 * already have a ret value set by the previous error that we need to
2573 * return.
2574 */
2575 (void) ust_consumer_destroy_channel(socket, ua_chan);
2576error_ask:
2577 lttng_fd_put(LTTNG_FD_APPS, 1);
2578error:
2579 health_code_update();
2580 rcu_read_unlock();
2581 return ret;
2582}
2583
2584/*
2585 * Duplicate the ust data object of the ust app stream and save it in the
2586 * buffer registry stream.
2587 *
2588 * Return 0 on success or else a negative value.
2589 */
2590static int duplicate_stream_object(struct buffer_reg_stream *reg_stream,
2591 struct ust_app_stream *stream)
2592{
2593 int ret;
2594
2595 assert(reg_stream);
2596 assert(stream);
2597
2598 /* Reserve the amount of file descriptor we need. */
2599 ret = lttng_fd_get(LTTNG_FD_APPS, 2);
2600 if (ret < 0) {
2601 ERR("Exhausted number of available FD upon duplicate stream");
2602 goto error;
2603 }
2604
2605 /* Duplicate object for stream once the original is in the registry. */
2606 ret = ustctl_duplicate_ust_object_data(&stream->obj,
2607 reg_stream->obj.ust);
2608 if (ret < 0) {
2609 ERR("Duplicate stream obj from %p to %p failed with ret %d",
2610 reg_stream->obj.ust, stream->obj, ret);
2611 lttng_fd_put(LTTNG_FD_APPS, 2);
2612 goto error;
2613 }
2614 stream->handle = stream->obj->handle;
2615
2616error:
2617 return ret;
2618}
2619
2620/*
2621 * Duplicate the ust data object of the ust app. channel and save it in the
2622 * buffer registry channel.
2623 *
2624 * Return 0 on success or else a negative value.
2625 */
2626static int duplicate_channel_object(struct buffer_reg_channel *reg_chan,
2627 struct ust_app_channel *ua_chan)
2628{
2629 int ret;
2630
2631 assert(reg_chan);
2632 assert(ua_chan);
2633
2634 /* Need two fds for the channel. */
2635 ret = lttng_fd_get(LTTNG_FD_APPS, 1);
2636 if (ret < 0) {
2637 ERR("Exhausted number of available FD upon duplicate channel");
2638 goto error_fd_get;
2639 }
2640
2641 /* Duplicate object for stream once the original is in the registry. */
2642 ret = ustctl_duplicate_ust_object_data(&ua_chan->obj, reg_chan->obj.ust);
2643 if (ret < 0) {
2644 ERR("Duplicate channel obj from %p to %p failed with ret: %d",
2645 reg_chan->obj.ust, ua_chan->obj, ret);
2646 goto error;
2647 }
2648 ua_chan->handle = ua_chan->obj->handle;
2649
2650 return 0;
2651
2652error:
2653 lttng_fd_put(LTTNG_FD_APPS, 1);
2654error_fd_get:
2655 return ret;
2656}
2657
2658/*
2659 * For a given channel buffer registry, setup all streams of the given ust
2660 * application channel.
2661 *
2662 * Return 0 on success or else a negative value.
2663 */
2664static int setup_buffer_reg_streams(struct buffer_reg_channel *reg_chan,
fb45065e
MD
2665 struct ust_app_channel *ua_chan,
2666 struct ust_app *app)
7972aab2
DG
2667{
2668 int ret = 0;
2669 struct ust_app_stream *stream, *stmp;
2670
2671 assert(reg_chan);
2672 assert(ua_chan);
2673
2674 DBG2("UST app setup buffer registry stream");
2675
2676 /* Send all streams to application. */
2677 cds_list_for_each_entry_safe(stream, stmp, &ua_chan->streams.head, list) {
2678 struct buffer_reg_stream *reg_stream;
2679
2680 ret = buffer_reg_stream_create(&reg_stream);
2681 if (ret < 0) {
2682 goto error;
2683 }
2684
2685 /*
2686 * Keep original pointer and nullify it in the stream so the delete
2687 * stream call does not release the object.
2688 */
2689 reg_stream->obj.ust = stream->obj;
2690 stream->obj = NULL;
2691 buffer_reg_stream_add(reg_stream, reg_chan);
421cb601 2692
7972aab2
DG
2693 /* We don't need the streams anymore. */
2694 cds_list_del(&stream->list);
fb45065e 2695 delete_ust_app_stream(-1, stream, app);
7972aab2 2696 }
421cb601 2697
7972aab2
DG
2698error:
2699 return ret;
2700}
2701
2702/*
2703 * Create a buffer registry channel for the given session registry and
2704 * application channel object. If regp pointer is valid, it's set with the
2705 * created object. Important, the created object is NOT added to the session
2706 * registry hash table.
2707 *
2708 * Return 0 on success else a negative value.
2709 */
2710static int create_buffer_reg_channel(struct buffer_reg_session *reg_sess,
2711 struct ust_app_channel *ua_chan, struct buffer_reg_channel **regp)
2712{
2713 int ret;
2714 struct buffer_reg_channel *reg_chan = NULL;
2715
2716 assert(reg_sess);
2717 assert(ua_chan);
2718
2719 DBG2("UST app creating buffer registry channel for %s", ua_chan->name);
2720
2721 /* Create buffer registry channel. */
2722 ret = buffer_reg_channel_create(ua_chan->tracing_channel_id, &reg_chan);
2723 if (ret < 0) {
2724 goto error_create;
421cb601 2725 }
7972aab2
DG
2726 assert(reg_chan);
2727 reg_chan->consumer_key = ua_chan->key;
8c924c7b 2728 reg_chan->subbuf_size = ua_chan->attr.subbuf_size;
d07ceecd 2729 reg_chan->num_subbuf = ua_chan->attr.num_subbuf;
421cb601 2730
7972aab2
DG
2731 /* Create and add a channel registry to session. */
2732 ret = ust_registry_channel_add(reg_sess->reg.ust,
2733 ua_chan->tracing_channel_id);
2734 if (ret < 0) {
2735 goto error;
d88aee68 2736 }
7972aab2 2737 buffer_reg_channel_add(reg_sess, reg_chan);
d88aee68 2738
7972aab2
DG
2739 if (regp) {
2740 *regp = reg_chan;
3d8ca23b 2741 }
d88aee68 2742
7972aab2 2743 return 0;
3d8ca23b
DG
2744
2745error:
7972aab2
DG
2746 /* Safe because the registry channel object was not added to any HT. */
2747 buffer_reg_channel_destroy(reg_chan, LTTNG_DOMAIN_UST);
2748error_create:
3d8ca23b 2749 return ret;
421cb601
DG
2750}
2751
55cc08a6 2752/*
7972aab2
DG
2753 * Setup buffer registry channel for the given session registry and application
2754 * channel object. If regp pointer is valid, it's set with the created object.
d0b96690 2755 *
7972aab2 2756 * Return 0 on success else a negative value.
55cc08a6 2757 */
7972aab2 2758static int setup_buffer_reg_channel(struct buffer_reg_session *reg_sess,
fb45065e
MD
2759 struct ust_app_channel *ua_chan, struct buffer_reg_channel *reg_chan,
2760 struct ust_app *app)
55cc08a6 2761{
7972aab2 2762 int ret;
55cc08a6 2763
7972aab2
DG
2764 assert(reg_sess);
2765 assert(reg_chan);
2766 assert(ua_chan);
2767 assert(ua_chan->obj);
55cc08a6 2768
7972aab2 2769 DBG2("UST app setup buffer registry channel for %s", ua_chan->name);
55cc08a6 2770
7972aab2 2771 /* Setup all streams for the registry. */
fb45065e 2772 ret = setup_buffer_reg_streams(reg_chan, ua_chan, app);
7972aab2 2773 if (ret < 0) {
55cc08a6
DG
2774 goto error;
2775 }
2776
7972aab2
DG
2777 reg_chan->obj.ust = ua_chan->obj;
2778 ua_chan->obj = NULL;
55cc08a6 2779
7972aab2 2780 return 0;
55cc08a6
DG
2781
2782error:
7972aab2
DG
2783 buffer_reg_channel_remove(reg_sess, reg_chan);
2784 buffer_reg_channel_destroy(reg_chan, LTTNG_DOMAIN_UST);
55cc08a6
DG
2785 return ret;
2786}
2787
edb67388 2788/*
7972aab2 2789 * Send buffer registry channel to the application.
d0b96690 2790 *
7972aab2 2791 * Return 0 on success else a negative value.
edb67388 2792 */
7972aab2
DG
2793static int send_channel_uid_to_ust(struct buffer_reg_channel *reg_chan,
2794 struct ust_app *app, struct ust_app_session *ua_sess,
2795 struct ust_app_channel *ua_chan)
edb67388
DG
2796{
2797 int ret;
7972aab2 2798 struct buffer_reg_stream *reg_stream;
edb67388 2799
7972aab2
DG
2800 assert(reg_chan);
2801 assert(app);
2802 assert(ua_sess);
2803 assert(ua_chan);
2804
2805 DBG("UST app sending buffer registry channel to ust sock %d", app->sock);
2806
2807 ret = duplicate_channel_object(reg_chan, ua_chan);
edb67388
DG
2808 if (ret < 0) {
2809 goto error;
2810 }
2811
7972aab2
DG
2812 /* Send channel to the application. */
2813 ret = ust_consumer_send_channel_to_ust(app, ua_sess, ua_chan);
a7169585
MD
2814 if (ret == -EPIPE || ret == -LTTNG_UST_ERR_EXITING) {
2815 ret = -ENOTCONN; /* Caused by app exiting. */
2816 goto error;
2817 } else if (ret < 0) {
7972aab2
DG
2818 goto error;
2819 }
2820
2821 health_code_update();
2822
2823 /* Send all streams to application. */
2824 pthread_mutex_lock(&reg_chan->stream_list_lock);
2825 cds_list_for_each_entry(reg_stream, &reg_chan->streams, lnode) {
2826 struct ust_app_stream stream;
2827
2828 ret = duplicate_stream_object(reg_stream, &stream);
2829 if (ret < 0) {
2830 goto error_stream_unlock;
2831 }
2832
2833 ret = ust_consumer_send_stream_to_ust(app, ua_chan, &stream);
2834 if (ret < 0) {
fb45065e 2835 (void) release_ust_app_stream(-1, &stream, app);
a7169585
MD
2836 if (ret == -EPIPE || ret == -LTTNG_UST_ERR_EXITING) {
2837 ret = -ENOTCONN; /* Caused by app exiting. */
a7169585 2838 }
7972aab2
DG
2839 goto error_stream_unlock;
2840 }
edb67388 2841
7972aab2
DG
2842 /*
2843 * The return value is not important here. This function will output an
2844 * error if needed.
2845 */
fb45065e 2846 (void) release_ust_app_stream(-1, &stream, app);
7972aab2
DG
2847 }
2848 ua_chan->is_sent = 1;
2849
2850error_stream_unlock:
2851 pthread_mutex_unlock(&reg_chan->stream_list_lock);
edb67388
DG
2852error:
2853 return ret;
2854}
2855
9730260e 2856/*
7972aab2
DG
2857 * Create and send to the application the created buffers with per UID buffers.
2858 *
2859 * Return 0 on success else a negative value.
9730260e 2860 */
7972aab2
DG
2861static int create_channel_per_uid(struct ust_app *app,
2862 struct ltt_ust_session *usess, struct ust_app_session *ua_sess,
2863 struct ust_app_channel *ua_chan)
9730260e
DG
2864{
2865 int ret;
7972aab2
DG
2866 struct buffer_reg_uid *reg_uid;
2867 struct buffer_reg_channel *reg_chan;
e9404c27 2868 bool created = false;
9730260e 2869
7972aab2
DG
2870 assert(app);
2871 assert(usess);
2872 assert(ua_sess);
2873 assert(ua_chan);
2874
2875 DBG("UST app creating channel %s with per UID buffers", ua_chan->name);
2876
2877 reg_uid = buffer_reg_uid_find(usess->id, app->bits_per_long, app->uid);
2878 /*
2879 * The session creation handles the creation of this global registry
2880 * object. If none can be find, there is a code flow problem or a
2881 * teardown race.
2882 */
2883 assert(reg_uid);
2884
2885 reg_chan = buffer_reg_channel_find(ua_chan->tracing_channel_id,
2886 reg_uid);
2887 if (!reg_chan) {
2888 /* Create the buffer registry channel object. */
2889 ret = create_buffer_reg_channel(reg_uid->registry, ua_chan, &reg_chan);
2890 if (ret < 0) {
f14256d6
MD
2891 ERR("Error creating the UST channel \"%s\" registry instance",
2892 ua_chan->name);
7972aab2
DG
2893 goto error;
2894 }
2895 assert(reg_chan);
2896
2897 /*
2898 * Create the buffers on the consumer side. This call populates the
2899 * ust app channel object with all streams and data object.
2900 */
2901 ret = do_consumer_create_channel(usess, ua_sess, ua_chan,
2902 app->bits_per_long, reg_uid->registry->reg.ust);
2903 if (ret < 0) {
f14256d6
MD
2904 ERR("Error creating UST channel \"%s\" on the consumer daemon",
2905 ua_chan->name);
2906
07d2ae95
DG
2907 /*
2908 * Let's remove the previously created buffer registry channel so
2909 * it's not visible anymore in the session registry.
2910 */
2911 ust_registry_channel_del_free(reg_uid->registry->reg.ust,
e9404c27 2912 ua_chan->tracing_channel_id, false);
07d2ae95
DG
2913 buffer_reg_channel_remove(reg_uid->registry, reg_chan);
2914 buffer_reg_channel_destroy(reg_chan, LTTNG_DOMAIN_UST);
7972aab2
DG
2915 goto error;
2916 }
2917
2918 /*
2919 * Setup the streams and add it to the session registry.
2920 */
fb45065e
MD
2921 ret = setup_buffer_reg_channel(reg_uid->registry,
2922 ua_chan, reg_chan, app);
7972aab2 2923 if (ret < 0) {
f14256d6
MD
2924 ERR("Error setting up UST channel \"%s\"",
2925 ua_chan->name);
7972aab2
DG
2926 goto error;
2927 }
e9404c27 2928 created = true;
7972aab2
DG
2929 }
2930
e9404c27
JG
2931 if (created) {
2932 enum lttng_error_code cmd_ret;
2933 struct ltt_session *session;
2934 uint64_t chan_reg_key;
2935 struct ust_registry_channel *chan_reg;
2936
2937 rcu_read_lock();
2938 chan_reg_key = ua_chan->tracing_channel_id;
2939
2940 pthread_mutex_lock(&reg_uid->registry->reg.ust->lock);
2941 chan_reg = ust_registry_channel_find(reg_uid->registry->reg.ust,
2942 chan_reg_key);
2943 assert(chan_reg);
2944 chan_reg->consumer_key = ua_chan->key;
2945 chan_reg = NULL;
2946 pthread_mutex_unlock(&reg_uid->registry->reg.ust->lock);
2947
2948 session = session_find_by_id(ua_sess->tracing_id);
2949 assert(session);
2950
2951 cmd_ret = notification_thread_command_add_channel(
2952 notification_thread_handle, session->name,
2953 ua_sess->euid, ua_sess->egid,
2954 ua_chan->name,
2955 ua_chan->key,
2956 LTTNG_DOMAIN_UST,
2957 ua_chan->attr.subbuf_size * ua_chan->attr.num_subbuf);
2958 rcu_read_unlock();
2959 if (cmd_ret != LTTNG_OK) {
2960 ret = - (int) cmd_ret;
2961 ERR("Failed to add channel to notification thread");
2962 goto error;
2963 }
2964 }
2965
8a06890a
JG
2966 /* Send buffers to the application. */
2967 ret = send_channel_uid_to_ust(reg_chan, app, ua_sess, ua_chan);
2968 if (ret < 0) {
2969 if (ret != -ENOTCONN) {
2970 ERR("Error sending channel to application");
2971 }
2972 goto error;
2973 }
2974
9730260e
DG
2975error:
2976 return ret;
2977}
2978
78f0bacd 2979/*
7972aab2
DG
2980 * Create and send to the application the created buffers with per PID buffers.
2981 *
5e98072f
JR
2982 * Called with UST app session lock held.
2983 *
7972aab2 2984 * Return 0 on success else a negative value.
78f0bacd 2985 */
7972aab2
DG
2986static int create_channel_per_pid(struct ust_app *app,
2987 struct ltt_ust_session *usess, struct ust_app_session *ua_sess,
2988 struct ust_app_channel *ua_chan)
78f0bacd 2989{
8535a6d9 2990 int ret;
7972aab2 2991 struct ust_registry_session *registry;
e9404c27
JG
2992 enum lttng_error_code cmd_ret;
2993 struct ltt_session *session;
2994 uint64_t chan_reg_key;
2995 struct ust_registry_channel *chan_reg;
78f0bacd 2996
7972aab2
DG
2997 assert(app);
2998 assert(usess);
2999 assert(ua_sess);
3000 assert(ua_chan);
3001
3002 DBG("UST app creating channel %s with per PID buffers", ua_chan->name);
3003
3004 rcu_read_lock();
3005
3006 registry = get_session_registry(ua_sess);
5e98072f 3007 /* The UST app session lock is held, registry shall not be null. */
7972aab2
DG
3008 assert(registry);
3009
3010 /* Create and add a new channel registry to session. */
3011 ret = ust_registry_channel_add(registry, ua_chan->key);
78f0bacd 3012 if (ret < 0) {
f14256d6
MD
3013 ERR("Error creating the UST channel \"%s\" registry instance",
3014 ua_chan->name);
78f0bacd
DG
3015 goto error;
3016 }
3017
7972aab2
DG
3018 /* Create and get channel on the consumer side. */
3019 ret = do_consumer_create_channel(usess, ua_sess, ua_chan,
3020 app->bits_per_long, registry);
3021 if (ret < 0) {
f14256d6
MD
3022 ERR("Error creating UST channel \"%s\" on the consumer daemon",
3023 ua_chan->name);
cebb8722 3024 goto error_remove_from_registry;
7972aab2
DG
3025 }
3026
3027 ret = send_channel_pid_to_ust(app, ua_sess, ua_chan);
3028 if (ret < 0) {
a7169585
MD
3029 if (ret != -ENOTCONN) {
3030 ERR("Error sending channel to application");
3031 }
cebb8722 3032 goto error_remove_from_registry;
7972aab2 3033 }
8535a6d9 3034
e9404c27
JG
3035 session = session_find_by_id(ua_sess->tracing_id);
3036 assert(session);
3037
3038 chan_reg_key = ua_chan->key;
3039 pthread_mutex_lock(&registry->lock);
3040 chan_reg = ust_registry_channel_find(registry, chan_reg_key);
3041 assert(chan_reg);
3042 chan_reg->consumer_key = ua_chan->key;
3043 pthread_mutex_unlock(&registry->lock);
3044
3045 cmd_ret = notification_thread_command_add_channel(
3046 notification_thread_handle, session->name,
3047 ua_sess->euid, ua_sess->egid,
3048 ua_chan->name,
3049 ua_chan->key,
3050 LTTNG_DOMAIN_UST,
3051 ua_chan->attr.subbuf_size * ua_chan->attr.num_subbuf);
3052 if (cmd_ret != LTTNG_OK) {
3053 ret = - (int) cmd_ret;
3054 ERR("Failed to add channel to notification thread");
cebb8722 3055 goto error_remove_from_registry;
e9404c27
JG
3056 }
3057
cebb8722
MD
3058error_remove_from_registry:
3059 if (ret) {
3060 ust_registry_channel_del_free(registry, ua_chan->key, false);
3061 }
78f0bacd 3062error:
7972aab2 3063 rcu_read_unlock();
78f0bacd
DG
3064 return ret;
3065}
3066
3067/*
7972aab2
DG
3068 * From an already allocated ust app channel, create the channel buffers if
3069 * need and send it to the application. This MUST be called with a RCU read
3070 * side lock acquired.
3071 *
5e98072f
JR
3072 * Called with UST app session lock held.
3073 *
a7169585
MD
3074 * Return 0 on success or else a negative value. Returns -ENOTCONN if
3075 * the application exited concurrently.
78f0bacd 3076 */
7972aab2
DG
3077static int do_create_channel(struct ust_app *app,
3078 struct ltt_ust_session *usess, struct ust_app_session *ua_sess,
3079 struct ust_app_channel *ua_chan)
78f0bacd 3080{
7972aab2 3081 int ret;
78f0bacd 3082
7972aab2
DG
3083 assert(app);
3084 assert(usess);
3085 assert(ua_sess);
3086 assert(ua_chan);
3087
3088 /* Handle buffer type before sending the channel to the application. */
3089 switch (usess->buffer_type) {
3090 case LTTNG_BUFFER_PER_UID:
3091 {
3092 ret = create_channel_per_uid(app, usess, ua_sess, ua_chan);
3093 if (ret < 0) {
3094 goto error;
3095 }
3096 break;
3097 }
3098 case LTTNG_BUFFER_PER_PID:
3099 {
3100 ret = create_channel_per_pid(app, usess, ua_sess, ua_chan);
3101 if (ret < 0) {
3102 goto error;
3103 }
3104 break;
3105 }
3106 default:
3107 assert(0);
3108 ret = -EINVAL;
78f0bacd
DG
3109 goto error;
3110 }
3111
7972aab2
DG
3112 /* Initialize ust objd object using the received handle and add it. */
3113 lttng_ht_node_init_ulong(&ua_chan->ust_objd_node, ua_chan->handle);
3114 lttng_ht_add_unique_ulong(app->ust_objd, &ua_chan->ust_objd_node);
78f0bacd 3115
7972aab2
DG
3116 /* If channel is not enabled, disable it on the tracer */
3117 if (!ua_chan->enabled) {
3118 ret = disable_ust_channel(app, ua_sess, ua_chan);
3119 if (ret < 0) {
3120 goto error;
3121 }
78f0bacd
DG
3122 }
3123
3124error:
3125 return ret;
3126}
3127
284d8f55 3128/*
4d710ac2
DG
3129 * Create UST app channel and create it on the tracer. Set ua_chanp of the
3130 * newly created channel if not NULL.
d0b96690 3131 *
36b588ed 3132 * Called with UST app session lock and RCU read-side lock held.
7972aab2 3133 *
a7169585
MD
3134 * Return 0 on success or else a negative value. Returns -ENOTCONN if
3135 * the application exited concurrently.
284d8f55 3136 */
4d710ac2
DG
3137static int create_ust_app_channel(struct ust_app_session *ua_sess,
3138 struct ltt_ust_channel *uchan, struct ust_app *app,
7972aab2 3139 enum lttng_ust_chan_type type, struct ltt_ust_session *usess,
4d710ac2 3140 struct ust_app_channel **ua_chanp)
5b4a0ec0
DG
3141{
3142 int ret = 0;
bec39940
DG
3143 struct lttng_ht_iter iter;
3144 struct lttng_ht_node_str *ua_chan_node;
5b4a0ec0
DG
3145 struct ust_app_channel *ua_chan;
3146
3147 /* Lookup channel in the ust app session */
bec39940
DG
3148 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &iter);
3149 ua_chan_node = lttng_ht_iter_get_node_str(&iter);
fc34caaa 3150 if (ua_chan_node != NULL) {
5b4a0ec0 3151 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
fc34caaa 3152 goto end;
5b4a0ec0
DG
3153 }
3154
d0b96690 3155 ua_chan = alloc_ust_app_channel(uchan->name, ua_sess, &uchan->attr);
fc34caaa
DG
3156 if (ua_chan == NULL) {
3157 /* Only malloc can fail here */
4d710ac2 3158 ret = -ENOMEM;
094d1690 3159 goto error_alloc;
fc34caaa
DG
3160 }
3161 shadow_copy_channel(ua_chan, uchan);
3162
ffe60014
DG
3163 /* Set channel type. */
3164 ua_chan->attr.type = type;
3165
7972aab2 3166 ret = do_create_channel(app, usess, ua_sess, ua_chan);
5b4a0ec0
DG
3167 if (ret < 0) {
3168 goto error;
3169 }
3170
fc34caaa 3171 DBG2("UST app create channel %s for PID %d completed", ua_chan->name,
852d0037 3172 app->pid);
fc34caaa 3173
d0b96690
DG
3174 /* Only add the channel if successful on the tracer side. */
3175 lttng_ht_add_unique_str(ua_sess->channels, &ua_chan->node);
fc34caaa 3176end:
4d710ac2
DG
3177 if (ua_chanp) {
3178 *ua_chanp = ua_chan;
3179 }
3180
3181 /* Everything went well. */
3182 return 0;
5b4a0ec0
DG
3183
3184error:
d0b96690 3185 delete_ust_app_channel(ua_chan->is_sent ? app->sock : -1, ua_chan, app);
094d1690 3186error_alloc:
4d710ac2 3187 return ret;
5b4a0ec0
DG
3188}
3189
3190/*
3191 * Create UST app event and create it on the tracer side.
d0b96690
DG
3192 *
3193 * Called with ust app session mutex held.
5b4a0ec0 3194 */
edb67388
DG
3195static
3196int create_ust_app_event(struct ust_app_session *ua_sess,
3197 struct ust_app_channel *ua_chan, struct ltt_ust_event *uevent,
3198 struct ust_app *app)
284d8f55 3199{
edb67388 3200 int ret = 0;
5b4a0ec0 3201 struct ust_app_event *ua_event;
284d8f55 3202
5b4a0ec0 3203 /* Get event node */
18eace3b 3204 ua_event = find_ust_app_event(ua_chan->events, uevent->attr.name,
39c5a3a7 3205 uevent->filter, uevent->attr.loglevel, uevent->exclusion);
18eace3b 3206 if (ua_event != NULL) {
fc34caaa 3207 ret = -EEXIST;
edb67388
DG
3208 goto end;
3209 }
5b4a0ec0 3210
edb67388
DG
3211 /* Does not exist so create one */
3212 ua_event = alloc_ust_app_event(uevent->attr.name, &uevent->attr);
3213 if (ua_event == NULL) {
3214 /* Only malloc can failed so something is really wrong */
3215 ret = -ENOMEM;
fc34caaa 3216 goto end;
5b4a0ec0 3217 }
edb67388 3218 shadow_copy_event(ua_event, uevent);
5b4a0ec0 3219
edb67388 3220 /* Create it on the tracer side */
5b4a0ec0 3221 ret = create_ust_event(app, ua_sess, ua_chan, ua_event);
284d8f55 3222 if (ret < 0) {
fc34caaa 3223 /* Not found previously means that it does not exist on the tracer */
76f66f63 3224 assert(ret != -LTTNG_UST_ERR_EXIST);
284d8f55
DG
3225 goto error;
3226 }
3227
d0b96690 3228 add_unique_ust_app_event(ua_chan, ua_event);
284d8f55 3229
fc34caaa 3230 DBG2("UST app create event %s for PID %d completed", ua_event->name,
852d0037 3231 app->pid);
7f79d3a1 3232
edb67388 3233end:
fc34caaa
DG
3234 return ret;
3235
5b4a0ec0 3236error:
fc34caaa 3237 /* Valid. Calling here is already in a read side lock */
fb45065e 3238 delete_ust_app_event(-1, ua_event, app);
edb67388 3239 return ret;
5b4a0ec0
DG
3240}
3241
3242/*
3243 * Create UST metadata and open it on the tracer side.
d0b96690 3244 *
7972aab2 3245 * Called with UST app session lock held and RCU read side lock.
5b4a0ec0
DG
3246 */
3247static int create_ust_app_metadata(struct ust_app_session *ua_sess,
ad7a9107 3248 struct ust_app *app, struct consumer_output *consumer)
5b4a0ec0
DG
3249{
3250 int ret = 0;
ffe60014 3251 struct ust_app_channel *metadata;
d88aee68 3252 struct consumer_socket *socket;
7972aab2 3253 struct ust_registry_session *registry;
5b4a0ec0 3254
ffe60014
DG
3255 assert(ua_sess);
3256 assert(app);
d88aee68 3257 assert(consumer);
5b4a0ec0 3258
7972aab2 3259 registry = get_session_registry(ua_sess);
5e98072f 3260 /* The UST app session is held registry shall not be null. */
7972aab2
DG
3261 assert(registry);
3262
ce34fcd0
MD
3263 pthread_mutex_lock(&registry->lock);
3264
1b532a60
DG
3265 /* Metadata already exists for this registry or it was closed previously */
3266 if (registry->metadata_key || registry->metadata_closed) {
7972aab2
DG
3267 ret = 0;
3268 goto error;
5b4a0ec0
DG
3269 }
3270
ffe60014 3271 /* Allocate UST metadata */
d0b96690 3272 metadata = alloc_ust_app_channel(DEFAULT_METADATA_NAME, ua_sess, NULL);
ffe60014
DG
3273 if (!metadata) {
3274 /* malloc() failed */
3275 ret = -ENOMEM;
3276 goto error;
3277 }
5b4a0ec0 3278
ad7a9107 3279 memcpy(&metadata->attr, &ua_sess->metadata_attr, sizeof(metadata->attr));
5b4a0ec0 3280
7972aab2
DG
3281 /* Need one fd for the channel. */
3282 ret = lttng_fd_get(LTTNG_FD_APPS, 1);
3283 if (ret < 0) {
3284 ERR("Exhausted number of available FD upon create metadata");
3285 goto error;
3286 }
3287
4dc3dfc5
DG
3288 /* Get the right consumer socket for the application. */
3289 socket = consumer_find_socket_by_bitness(app->bits_per_long, consumer);
3290 if (!socket) {
3291 ret = -EINVAL;
3292 goto error_consumer;
3293 }
3294
331744e3
JD
3295 /*
3296 * Keep metadata key so we can identify it on the consumer side. Assign it
3297 * to the registry *before* we ask the consumer so we avoid the race of the
3298 * consumer requesting the metadata and the ask_channel call on our side
3299 * did not returned yet.
3300 */
3301 registry->metadata_key = metadata->key;
3302
d88aee68
DG
3303 /*
3304 * Ask the metadata channel creation to the consumer. The metadata object
3305 * will be created by the consumer and kept their. However, the stream is
3306 * never added or monitored until we do a first push metadata to the
3307 * consumer.
3308 */
7972aab2
DG
3309 ret = ust_consumer_ask_channel(ua_sess, metadata, consumer, socket,
3310 registry);
d88aee68 3311 if (ret < 0) {
f2a444f1
DG
3312 /* Nullify the metadata key so we don't try to close it later on. */
3313 registry->metadata_key = 0;
d88aee68
DG
3314 goto error_consumer;
3315 }
3316
3317 /*
3318 * The setup command will make the metadata stream be sent to the relayd,
3319 * if applicable, and the thread managing the metadatas. This is important
3320 * because after this point, if an error occurs, the only way the stream
3321 * can be deleted is to be monitored in the consumer.
3322 */
7972aab2 3323 ret = consumer_setup_metadata(socket, metadata->key);
ffe60014 3324 if (ret < 0) {
f2a444f1
DG
3325 /* Nullify the metadata key so we don't try to close it later on. */
3326 registry->metadata_key = 0;
d88aee68 3327 goto error_consumer;
5b4a0ec0
DG
3328 }
3329
7972aab2
DG
3330 DBG2("UST metadata with key %" PRIu64 " created for app pid %d",
3331 metadata->key, app->pid);
5b4a0ec0 3332
d88aee68 3333error_consumer:
b80f0b6c 3334 lttng_fd_put(LTTNG_FD_APPS, 1);
d88aee68 3335 delete_ust_app_channel(-1, metadata, app);
5b4a0ec0 3336error:
ce34fcd0 3337 pthread_mutex_unlock(&registry->lock);
ffe60014 3338 return ret;
5b4a0ec0
DG
3339}
3340
5b4a0ec0 3341/*
d88aee68
DG
3342 * Return ust app pointer or NULL if not found. RCU read side lock MUST be
3343 * acquired before calling this function.
5b4a0ec0
DG
3344 */
3345struct ust_app *ust_app_find_by_pid(pid_t pid)
3346{
d88aee68 3347 struct ust_app *app = NULL;
bec39940
DG
3348 struct lttng_ht_node_ulong *node;
3349 struct lttng_ht_iter iter;
5b4a0ec0 3350
bec39940
DG
3351 lttng_ht_lookup(ust_app_ht, (void *)((unsigned long) pid), &iter);
3352 node = lttng_ht_iter_get_node_ulong(&iter);
5b4a0ec0
DG
3353 if (node == NULL) {
3354 DBG2("UST app no found with pid %d", pid);
3355 goto error;
3356 }
5b4a0ec0
DG
3357
3358 DBG2("Found UST app by pid %d", pid);
3359
d88aee68 3360 app = caa_container_of(node, struct ust_app, pid_n);
5b4a0ec0
DG
3361
3362error:
d88aee68 3363 return app;
5b4a0ec0
DG
3364}
3365
d88aee68
DG
3366/*
3367 * Allocate and init an UST app object using the registration information and
3368 * the command socket. This is called when the command socket connects to the
3369 * session daemon.
3370 *
3371 * The object is returned on success or else NULL.
3372 */
d0b96690 3373struct ust_app *ust_app_create(struct ust_register_msg *msg, int sock)
5b4a0ec0 3374{
d0b96690
DG
3375 struct ust_app *lta = NULL;
3376
3377 assert(msg);
3378 assert(sock >= 0);
3379
3380 DBG3("UST app creating application for socket %d", sock);
5b4a0ec0 3381
173af62f
DG
3382 if ((msg->bits_per_long == 64 &&
3383 (uatomic_read(&ust_consumerd64_fd) == -EINVAL))
3384 || (msg->bits_per_long == 32 &&
3385 (uatomic_read(&ust_consumerd32_fd) == -EINVAL))) {
f943b0fb 3386 ERR("Registration failed: application \"%s\" (pid: %d) has "
d0b96690
DG
3387 "%d-bit long, but no consumerd for this size is available.\n",
3388 msg->name, msg->pid, msg->bits_per_long);
3389 goto error;
3f2c5fcc 3390 }
d0b96690 3391
5b4a0ec0
DG
3392 lta = zmalloc(sizeof(struct ust_app));
3393 if (lta == NULL) {
3394 PERROR("malloc");
d0b96690 3395 goto error;
5b4a0ec0
DG
3396 }
3397
3398 lta->ppid = msg->ppid;
3399 lta->uid = msg->uid;
3400 lta->gid = msg->gid;
d0b96690 3401
7753dea8 3402 lta->bits_per_long = msg->bits_per_long;
d0b96690
DG
3403 lta->uint8_t_alignment = msg->uint8_t_alignment;
3404 lta->uint16_t_alignment = msg->uint16_t_alignment;
3405 lta->uint32_t_alignment = msg->uint32_t_alignment;
3406 lta->uint64_t_alignment = msg->uint64_t_alignment;
3407 lta->long_alignment = msg->long_alignment;
3408 lta->byte_order = msg->byte_order;
3409
5b4a0ec0
DG
3410 lta->v_major = msg->major;
3411 lta->v_minor = msg->minor;
d9bf3ca4 3412 lta->sessions = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
d0b96690 3413 lta->ust_objd = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
10b56aef 3414 lta->ust_sessions_objd = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
d0b96690 3415 lta->notify_sock = -1;
d88aee68
DG
3416
3417 /* Copy name and make sure it's NULL terminated. */
3418 strncpy(lta->name, msg->name, sizeof(lta->name));
3419 lta->name[UST_APP_PROCNAME_LEN] = '\0';
3420
3421 /*
3422 * Before this can be called, when receiving the registration information,
3423 * the application compatibility is checked. So, at this point, the
3424 * application can work with this session daemon.
3425 */
d0b96690 3426 lta->compatible = 1;
5b4a0ec0 3427
852d0037 3428 lta->pid = msg->pid;
d0b96690 3429 lttng_ht_node_init_ulong(&lta->pid_n, (unsigned long) lta->pid);
852d0037 3430 lta->sock = sock;
fb45065e 3431 pthread_mutex_init(&lta->sock_lock, NULL);
d0b96690 3432 lttng_ht_node_init_ulong(&lta->sock_n, (unsigned long) lta->sock);
5b4a0ec0 3433
d42f20df 3434 CDS_INIT_LIST_HEAD(&lta->teardown_head);
d0b96690
DG
3435error:
3436 return lta;
3437}
3438
d88aee68
DG
3439/*
3440 * For a given application object, add it to every hash table.
3441 */
d0b96690
DG
3442void ust_app_add(struct ust_app *app)
3443{
3444 assert(app);
3445 assert(app->notify_sock >= 0);
3446
5b4a0ec0 3447 rcu_read_lock();
852d0037
DG
3448
3449 /*
3450 * On a re-registration, we want to kick out the previous registration of
3451 * that pid
3452 */
d0b96690 3453 lttng_ht_add_replace_ulong(ust_app_ht, &app->pid_n);
852d0037
DG
3454
3455 /*
3456 * The socket _should_ be unique until _we_ call close. So, a add_unique
3457 * for the ust_app_ht_by_sock is used which asserts fail if the entry was
3458 * already in the table.
3459 */
d0b96690 3460 lttng_ht_add_unique_ulong(ust_app_ht_by_sock, &app->sock_n);
852d0037 3461
d0b96690
DG
3462 /* Add application to the notify socket hash table. */
3463 lttng_ht_node_init_ulong(&app->notify_sock_n, app->notify_sock);
3464 lttng_ht_add_unique_ulong(ust_app_ht_by_notify_sock, &app->notify_sock_n);
5b4a0ec0 3465
d0b96690 3466 DBG("App registered with pid:%d ppid:%d uid:%d gid:%d sock:%d name:%s "
d88aee68
DG
3467 "notify_sock:%d (version %d.%d)", app->pid, app->ppid, app->uid,
3468 app->gid, app->sock, app->name, app->notify_sock, app->v_major,
3469 app->v_minor);
5b4a0ec0 3470
d0b96690
DG
3471 rcu_read_unlock();
3472}
3473
d88aee68
DG
3474/*
3475 * Set the application version into the object.
3476 *
3477 * Return 0 on success else a negative value either an errno code or a
3478 * LTTng-UST error code.
3479 */
d0b96690
DG
3480int ust_app_version(struct ust_app *app)
3481{
d88aee68
DG
3482 int ret;
3483
d0b96690 3484 assert(app);
d88aee68 3485
fb45065e 3486 pthread_mutex_lock(&app->sock_lock);
d88aee68 3487 ret = ustctl_tracer_version(app->sock, &app->version);
fb45065e 3488 pthread_mutex_unlock(&app->sock_lock);
d88aee68
DG
3489 if (ret < 0) {
3490 if (ret != -LTTNG_UST_ERR_EXITING && ret != -EPIPE) {
5368d366 3491 ERR("UST app %d version failed with ret %d", app->sock, ret);
d88aee68 3492 } else {
5368d366 3493 DBG3("UST app %d version failed. Application is dead", app->sock);
d88aee68
DG
3494 }
3495 }
3496
3497 return ret;
5b4a0ec0
DG
3498}
3499
3500/*
3501 * Unregister app by removing it from the global traceable app list and freeing
3502 * the data struct.
3503 *
3504 * The socket is already closed at this point so no close to sock.
3505 */
3506void ust_app_unregister(int sock)
3507{
3508 struct ust_app *lta;
bec39940 3509 struct lttng_ht_node_ulong *node;
c4b88406 3510 struct lttng_ht_iter ust_app_sock_iter;
bec39940 3511 struct lttng_ht_iter iter;
d42f20df 3512 struct ust_app_session *ua_sess;
525b0740 3513 int ret;
5b4a0ec0
DG
3514
3515 rcu_read_lock();
886459c6 3516
5b4a0ec0 3517 /* Get the node reference for a call_rcu */
c4b88406
MD
3518 lttng_ht_lookup(ust_app_ht_by_sock, (void *)((unsigned long) sock), &ust_app_sock_iter);
3519 node = lttng_ht_iter_get_node_ulong(&ust_app_sock_iter);
d0b96690 3520 assert(node);
284d8f55 3521
852d0037 3522 lta = caa_container_of(node, struct ust_app, sock_n);
852d0037
DG
3523 DBG("PID %d unregistering with sock %d", lta->pid, sock);
3524
d88aee68 3525 /*
ce34fcd0
MD
3526 * For per-PID buffers, perform "push metadata" and flush all
3527 * application streams before removing app from hash tables,
3528 * ensuring proper behavior of data_pending check.
c4b88406 3529 * Remove sessions so they are not visible during deletion.
d88aee68 3530 */
d42f20df
DG
3531 cds_lfht_for_each_entry(lta->sessions->ht, &iter.iter, ua_sess,
3532 node.node) {
7972aab2
DG
3533 struct ust_registry_session *registry;
3534
d42f20df
DG
3535 ret = lttng_ht_del(lta->sessions, &iter);
3536 if (ret) {
3537 /* The session was already removed so scheduled for teardown. */
3538 continue;
3539 }
3540
ce34fcd0
MD
3541 if (ua_sess->buffer_type == LTTNG_BUFFER_PER_PID) {
3542 (void) ust_app_flush_app_session(lta, ua_sess);
3543 }
c4b88406 3544
d42f20df
DG
3545 /*
3546 * Add session to list for teardown. This is safe since at this point we
3547 * are the only one using this list.
3548 */
d88aee68
DG
3549 pthread_mutex_lock(&ua_sess->lock);
3550
b161602a
MD
3551 if (ua_sess->deleted) {
3552 pthread_mutex_unlock(&ua_sess->lock);
3553 continue;
3554 }
3555
d88aee68
DG
3556 /*
3557 * Normally, this is done in the delete session process which is
3558 * executed in the call rcu below. However, upon registration we can't
3559 * afford to wait for the grace period before pushing data or else the
3560 * data pending feature can race between the unregistration and stop
3561 * command where the data pending command is sent *before* the grace
3562 * period ended.
3563 *
3564 * The close metadata below nullifies the metadata pointer in the
3565 * session so the delete session will NOT push/close a second time.
3566 */
7972aab2 3567 registry = get_session_registry(ua_sess);
ce34fcd0 3568 if (registry) {
7972aab2
DG
3569 /* Push metadata for application before freeing the application. */
3570 (void) push_metadata(registry, ua_sess->consumer);
3571
3572 /*
3573 * Don't ask to close metadata for global per UID buffers. Close
1b532a60
DG
3574 * metadata only on destroy trace session in this case. Also, the
3575 * previous push metadata could have flag the metadata registry to
3576 * close so don't send a close command if closed.
7972aab2 3577 */
ce34fcd0 3578 if (ua_sess->buffer_type != LTTNG_BUFFER_PER_UID) {
7972aab2
DG
3579 /* And ask to close it for this session registry. */
3580 (void) close_metadata(registry, ua_sess->consumer);
3581 }
3582 }
d42f20df 3583 cds_list_add(&ua_sess->teardown_node, &lta->teardown_head);
c4b88406 3584
d88aee68 3585 pthread_mutex_unlock(&ua_sess->lock);
d42f20df
DG
3586 }
3587
c4b88406
MD
3588 /* Remove application from PID hash table */
3589 ret = lttng_ht_del(ust_app_ht_by_sock, &ust_app_sock_iter);
3590 assert(!ret);
3591
3592 /*
3593 * Remove application from notify hash table. The thread handling the
3594 * notify socket could have deleted the node so ignore on error because
3595 * either way it's valid. The close of that socket is handled by the other
3596 * thread.
3597 */
3598 iter.iter.node = &lta->notify_sock_n.node;
3599 (void) lttng_ht_del(ust_app_ht_by_notify_sock, &iter);
3600
3601 /*
3602 * Ignore return value since the node might have been removed before by an
3603 * add replace during app registration because the PID can be reassigned by
3604 * the OS.
3605 */
3606 iter.iter.node = &lta->pid_n.node;
3607 ret = lttng_ht_del(ust_app_ht, &iter);
3608 if (ret) {
3609 DBG3("Unregister app by PID %d failed. This can happen on pid reuse",
3610 lta->pid);
3611 }
3612
852d0037
DG
3613 /* Free memory */
3614 call_rcu(&lta->pid_n.head, delete_ust_app_rcu);
3615
5b4a0ec0
DG
3616 rcu_read_unlock();
3617 return;
284d8f55
DG
3618}
3619
5b4a0ec0
DG
3620/*
3621 * Fill events array with all events name of all registered apps.
3622 */
3623int ust_app_list_events(struct lttng_event **events)
421cb601 3624{
5b4a0ec0
DG
3625 int ret, handle;
3626 size_t nbmem, count = 0;
bec39940 3627 struct lttng_ht_iter iter;
5b4a0ec0 3628 struct ust_app *app;
c617c0c6 3629 struct lttng_event *tmp_event;
421cb601 3630
5b4a0ec0 3631 nbmem = UST_APP_EVENT_LIST_SIZE;
c617c0c6
MD
3632 tmp_event = zmalloc(nbmem * sizeof(struct lttng_event));
3633 if (tmp_event == NULL) {
5b4a0ec0
DG
3634 PERROR("zmalloc ust app events");
3635 ret = -ENOMEM;
421cb601
DG
3636 goto error;
3637 }
3638
5b4a0ec0 3639 rcu_read_lock();
421cb601 3640
852d0037 3641 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
90eaa0d2 3642 struct lttng_ust_tracepoint_iter uiter;
ac3bd9c0 3643
840cb59c 3644 health_code_update();
86acf0da 3645
e0c7ec2b
DG
3646 if (!app->compatible) {
3647 /*
3648 * TODO: In time, we should notice the caller of this error by
3649 * telling him that this is a version error.
3650 */
3651 continue;
3652 }
fb45065e 3653 pthread_mutex_lock(&app->sock_lock);
852d0037 3654 handle = ustctl_tracepoint_list(app->sock);
5b4a0ec0 3655 if (handle < 0) {
ffe60014
DG
3656 if (handle != -EPIPE && handle != -LTTNG_UST_ERR_EXITING) {
3657 ERR("UST app list events getting handle failed for app pid %d",
3658 app->pid);
3659 }
fb45065e 3660 pthread_mutex_unlock(&app->sock_lock);
5b4a0ec0
DG
3661 continue;
3662 }
421cb601 3663
852d0037 3664 while ((ret = ustctl_tracepoint_list_get(app->sock, handle,
fb54cdbf 3665 &uiter)) != -LTTNG_UST_ERR_NOENT) {
ffe60014
DG
3666 /* Handle ustctl error. */
3667 if (ret < 0) {
fb45065e
MD
3668 int release_ret;
3669
a2ba1ab0 3670 if (ret != -LTTNG_UST_ERR_EXITING && ret != -EPIPE) {
ffe60014
DG
3671 ERR("UST app tp list get failed for app %d with ret %d",
3672 app->sock, ret);
3673 } else {
3674 DBG3("UST app tp list get failed. Application is dead");
3757b385
DG
3675 /*
3676 * This is normal behavior, an application can die during the
3677 * creation process. Don't report an error so the execution can
3678 * continue normally. Continue normal execution.
3679 */
3680 break;
ffe60014 3681 }
98f595d4 3682 free(tmp_event);
fb45065e 3683 release_ret = ustctl_release_handle(app->sock, handle);
68313703
JG
3684 if (release_ret < 0 &&
3685 release_ret != -LTTNG_UST_ERR_EXITING &&
3686 release_ret != -EPIPE) {
fb45065e
MD
3687 ERR("Error releasing app handle for app %d with ret %d", app->sock, release_ret);
3688 }
3689 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
3690 goto rcu_error;
3691 }
3692
840cb59c 3693 health_code_update();
815564d8 3694 if (count >= nbmem) {
d7b3776f 3695 /* In case the realloc fails, we free the memory */
53efb85a
MD
3696 struct lttng_event *new_tmp_event;
3697 size_t new_nbmem;
3698
3699 new_nbmem = nbmem << 1;
3700 DBG2("Reallocating event list from %zu to %zu entries",
3701 nbmem, new_nbmem);
3702 new_tmp_event = realloc(tmp_event,
3703 new_nbmem * sizeof(struct lttng_event));
3704 if (new_tmp_event == NULL) {
fb45065e
MD
3705 int release_ret;
3706
5b4a0ec0 3707 PERROR("realloc ust app events");
c617c0c6 3708 free(tmp_event);
5b4a0ec0 3709 ret = -ENOMEM;
fb45065e 3710 release_ret = ustctl_release_handle(app->sock, handle);
68313703
JG
3711 if (release_ret < 0 &&
3712 release_ret != -LTTNG_UST_ERR_EXITING &&
3713 release_ret != -EPIPE) {
fb45065e
MD
3714 ERR("Error releasing app handle for app %d with ret %d", app->sock, release_ret);
3715 }
3716 pthread_mutex_unlock(&app->sock_lock);
5b4a0ec0
DG
3717 goto rcu_error;
3718 }
53efb85a
MD
3719 /* Zero the new memory */
3720 memset(new_tmp_event + nbmem, 0,
3721 (new_nbmem - nbmem) * sizeof(struct lttng_event));
3722 nbmem = new_nbmem;
3723 tmp_event = new_tmp_event;
5b4a0ec0 3724 }
c617c0c6
MD
3725 memcpy(tmp_event[count].name, uiter.name, LTTNG_UST_SYM_NAME_LEN);
3726 tmp_event[count].loglevel = uiter.loglevel;
3727 tmp_event[count].type = (enum lttng_event_type) LTTNG_UST_TRACEPOINT;
3728 tmp_event[count].pid = app->pid;
3729 tmp_event[count].enabled = -1;
5b4a0ec0 3730 count++;
421cb601 3731 }
fb45065e
MD
3732 ret = ustctl_release_handle(app->sock, handle);
3733 pthread_mutex_unlock(&app->sock_lock);
68313703 3734 if (ret < 0 && ret != -LTTNG_UST_ERR_EXITING && ret != -EPIPE) {
fb45065e
MD
3735 ERR("Error releasing app handle for app %d with ret %d", app->sock, ret);
3736 }
421cb601
DG
3737 }
3738
5b4a0ec0 3739 ret = count;
c617c0c6 3740 *events = tmp_event;
421cb601 3741
5b4a0ec0 3742 DBG2("UST app list events done (%zu events)", count);
421cb601 3743
5b4a0ec0
DG
3744rcu_error:
3745 rcu_read_unlock();
421cb601 3746error:
840cb59c 3747 health_code_update();
5b4a0ec0 3748 return ret;
421cb601
DG
3749}
3750
f37d259d
MD
3751/*
3752 * Fill events array with all events name of all registered apps.
3753 */
3754int ust_app_list_event_fields(struct lttng_event_field **fields)
3755{
3756 int ret, handle;
3757 size_t nbmem, count = 0;
3758 struct lttng_ht_iter iter;
3759 struct ust_app *app;
c617c0c6 3760 struct lttng_event_field *tmp_event;
f37d259d
MD
3761
3762 nbmem = UST_APP_EVENT_LIST_SIZE;
c617c0c6
MD
3763 tmp_event = zmalloc(nbmem * sizeof(struct lttng_event_field));
3764 if (tmp_event == NULL) {
f37d259d
MD
3765 PERROR("zmalloc ust app event fields");
3766 ret = -ENOMEM;
3767 goto error;
3768 }
3769
3770 rcu_read_lock();
3771
3772 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
3773 struct lttng_ust_field_iter uiter;
3774
840cb59c 3775 health_code_update();
86acf0da 3776
f37d259d
MD
3777 if (!app->compatible) {
3778 /*
3779 * TODO: In time, we should notice the caller of this error by
3780 * telling him that this is a version error.
3781 */
3782 continue;
3783 }
fb45065e 3784 pthread_mutex_lock(&app->sock_lock);
f37d259d
MD
3785 handle = ustctl_tracepoint_field_list(app->sock);
3786 if (handle < 0) {
ffe60014
DG
3787 if (handle != -EPIPE && handle != -LTTNG_UST_ERR_EXITING) {
3788 ERR("UST app list field getting handle failed for app pid %d",
3789 app->pid);
3790 }
fb45065e 3791 pthread_mutex_unlock(&app->sock_lock);
f37d259d
MD
3792 continue;
3793 }
3794
3795 while ((ret = ustctl_tracepoint_field_list_get(app->sock, handle,
fb54cdbf 3796 &uiter)) != -LTTNG_UST_ERR_NOENT) {
ffe60014
DG
3797 /* Handle ustctl error. */
3798 if (ret < 0) {
fb45065e
MD
3799 int release_ret;
3800
a2ba1ab0 3801 if (ret != -LTTNG_UST_ERR_EXITING && ret != -EPIPE) {
ffe60014
DG
3802 ERR("UST app tp list field failed for app %d with ret %d",
3803 app->sock, ret);
3804 } else {
3805 DBG3("UST app tp list field failed. Application is dead");
3757b385
DG
3806 /*
3807 * This is normal behavior, an application can die during the
3808 * creation process. Don't report an error so the execution can
98f595d4 3809 * continue normally. Reset list and count for next app.
3757b385
DG
3810 */
3811 break;
ffe60014 3812 }
98f595d4 3813 free(tmp_event);
fb45065e
MD
3814 release_ret = ustctl_release_handle(app->sock, handle);
3815 pthread_mutex_unlock(&app->sock_lock);
68313703
JG
3816 if (release_ret < 0 &&
3817 release_ret != -LTTNG_UST_ERR_EXITING &&
3818 release_ret != -EPIPE) {
fb45065e
MD
3819 ERR("Error releasing app handle for app %d with ret %d", app->sock, release_ret);
3820 }
ffe60014
DG
3821 goto rcu_error;
3822 }
3823
840cb59c 3824 health_code_update();
f37d259d 3825 if (count >= nbmem) {
d7b3776f 3826 /* In case the realloc fails, we free the memory */
53efb85a
MD
3827 struct lttng_event_field *new_tmp_event;
3828 size_t new_nbmem;
3829
3830 new_nbmem = nbmem << 1;
3831 DBG2("Reallocating event field list from %zu to %zu entries",
3832 nbmem, new_nbmem);
3833 new_tmp_event = realloc(tmp_event,
3834 new_nbmem * sizeof(struct lttng_event_field));
3835 if (new_tmp_event == NULL) {
fb45065e
MD
3836 int release_ret;
3837
f37d259d 3838 PERROR("realloc ust app event fields");
c617c0c6 3839 free(tmp_event);
f37d259d 3840 ret = -ENOMEM;
fb45065e
MD
3841 release_ret = ustctl_release_handle(app->sock, handle);
3842 pthread_mutex_unlock(&app->sock_lock);
68313703
JG
3843 if (release_ret &&
3844 release_ret != -LTTNG_UST_ERR_EXITING &&
3845 release_ret != -EPIPE) {
fb45065e
MD
3846 ERR("Error releasing app handle for app %d with ret %d", app->sock, release_ret);
3847 }
f37d259d
MD
3848 goto rcu_error;
3849 }
53efb85a
MD
3850 /* Zero the new memory */
3851 memset(new_tmp_event + nbmem, 0,
3852 (new_nbmem - nbmem) * sizeof(struct lttng_event_field));
3853 nbmem = new_nbmem;
3854 tmp_event = new_tmp_event;
f37d259d 3855 }
f37d259d 3856
c617c0c6 3857 memcpy(tmp_event[count].field_name, uiter.field_name, LTTNG_UST_SYM_NAME_LEN);
2e84128e
DG
3858 /* Mapping between these enums matches 1 to 1. */
3859 tmp_event[count].type = (enum lttng_event_field_type) uiter.type;
c617c0c6 3860 tmp_event[count].nowrite = uiter.nowrite;
f37d259d 3861
c617c0c6
MD
3862 memcpy(tmp_event[count].event.name, uiter.event_name, LTTNG_UST_SYM_NAME_LEN);
3863 tmp_event[count].event.loglevel = uiter.loglevel;
2e84128e 3864 tmp_event[count].event.type = LTTNG_EVENT_TRACEPOINT;
c617c0c6
MD
3865 tmp_event[count].event.pid = app->pid;
3866 tmp_event[count].event.enabled = -1;
f37d259d
MD
3867 count++;
3868 }
fb45065e
MD
3869 ret = ustctl_release_handle(app->sock, handle);
3870 pthread_mutex_unlock(&app->sock_lock);
68313703
JG
3871 if (ret < 0 &&
3872 ret != -LTTNG_UST_ERR_EXITING &&
3873 ret != -EPIPE) {
fb45065e
MD
3874 ERR("Error releasing app handle for app %d with ret %d", app->sock, ret);
3875 }
f37d259d
MD
3876 }
3877
3878 ret = count;
c617c0c6 3879 *fields = tmp_event;
f37d259d
MD
3880
3881 DBG2("UST app list event fields done (%zu events)", count);
3882
3883rcu_error:
3884 rcu_read_unlock();
3885error:
840cb59c 3886 health_code_update();
f37d259d
MD
3887 return ret;
3888}
3889
5b4a0ec0
DG
3890/*
3891 * Free and clean all traceable apps of the global list.
36b588ed
MD
3892 *
3893 * Should _NOT_ be called with RCU read-side lock held.
5b4a0ec0
DG
3894 */
3895void ust_app_clean_list(void)
421cb601 3896{
5b4a0ec0 3897 int ret;
659ed79f 3898 struct ust_app *app;
bec39940 3899 struct lttng_ht_iter iter;
421cb601 3900
5b4a0ec0 3901 DBG2("UST app cleaning registered apps hash table");
421cb601 3902
5b4a0ec0 3903 rcu_read_lock();
421cb601 3904
f1b711c4
MD
3905 if (ust_app_ht) {
3906 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
3907 ret = lttng_ht_del(ust_app_ht, &iter);
3908 assert(!ret);
3909 call_rcu(&app->pid_n.head, delete_ust_app_rcu);
3910 }
421cb601
DG
3911 }
3912
852d0037 3913 /* Cleanup socket hash table */
f1b711c4
MD
3914 if (ust_app_ht_by_sock) {
3915 cds_lfht_for_each_entry(ust_app_ht_by_sock->ht, &iter.iter, app,
3916 sock_n.node) {
3917 ret = lttng_ht_del(ust_app_ht_by_sock, &iter);
3918 assert(!ret);
3919 }
bec39940 3920 }
852d0037 3921
d88aee68 3922 /* Cleanup notify socket hash table */
f1b711c4
MD
3923 if (ust_app_ht_by_notify_sock) {
3924 cds_lfht_for_each_entry(ust_app_ht_by_notify_sock->ht, &iter.iter, app,
3925 notify_sock_n.node) {
3926 ret = lttng_ht_del(ust_app_ht_by_notify_sock, &iter);
3927 assert(!ret);
3928 }
d88aee68 3929 }
36b588ed 3930 rcu_read_unlock();
d88aee68 3931
bec39940 3932 /* Destroy is done only when the ht is empty */
f1b711c4
MD
3933 if (ust_app_ht) {
3934 ht_cleanup_push(ust_app_ht);
3935 }
3936 if (ust_app_ht_by_sock) {
3937 ht_cleanup_push(ust_app_ht_by_sock);
3938 }
3939 if (ust_app_ht_by_notify_sock) {
3940 ht_cleanup_push(ust_app_ht_by_notify_sock);
3941 }
5b4a0ec0
DG
3942}
3943
3944/*
3945 * Init UST app hash table.
3946 */
57703f6e 3947int ust_app_ht_alloc(void)
5b4a0ec0 3948{
bec39940 3949 ust_app_ht = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
57703f6e
MD
3950 if (!ust_app_ht) {
3951 return -1;
3952 }
852d0037 3953 ust_app_ht_by_sock = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
57703f6e
MD
3954 if (!ust_app_ht_by_sock) {
3955 return -1;
3956 }
d0b96690 3957 ust_app_ht_by_notify_sock = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
57703f6e
MD
3958 if (!ust_app_ht_by_notify_sock) {
3959 return -1;
3960 }
3961 return 0;
421cb601
DG
3962}
3963
78f0bacd
DG
3964/*
3965 * For a specific UST session, disable the channel for all registered apps.
3966 */
35a9059d 3967int ust_app_disable_channel_glb(struct ltt_ust_session *usess,
78f0bacd
DG
3968 struct ltt_ust_channel *uchan)
3969{
3970 int ret = 0;
bec39940
DG
3971 struct lttng_ht_iter iter;
3972 struct lttng_ht_node_str *ua_chan_node;
78f0bacd
DG
3973 struct ust_app *app;
3974 struct ust_app_session *ua_sess;
8535a6d9 3975 struct ust_app_channel *ua_chan;
78f0bacd
DG
3976
3977 if (usess == NULL || uchan == NULL) {
3978 ERR("Disabling UST global channel with NULL values");
3979 ret = -1;
3980 goto error;
3981 }
3982
d9bf3ca4 3983 DBG2("UST app disabling channel %s from global domain for session id %" PRIu64,
a991f516 3984 uchan->name, usess->id);
78f0bacd
DG
3985
3986 rcu_read_lock();
3987
3988 /* For every registered applications */
852d0037 3989 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
bec39940 3990 struct lttng_ht_iter uiter;
e0c7ec2b
DG
3991 if (!app->compatible) {
3992 /*
3993 * TODO: In time, we should notice the caller of this error by
3994 * telling him that this is a version error.
3995 */
3996 continue;
3997 }
78f0bacd
DG
3998 ua_sess = lookup_session_by_app(usess, app);
3999 if (ua_sess == NULL) {
4000 continue;
4001 }
4002
8535a6d9 4003 /* Get channel */
bec39940
DG
4004 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
4005 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
8535a6d9
DG
4006 /* If the session if found for the app, the channel must be there */
4007 assert(ua_chan_node);
4008
4009 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
4010 /* The channel must not be already disabled */
4011 assert(ua_chan->enabled == 1);
4012
4013 /* Disable channel onto application */
4014 ret = disable_ust_app_channel(ua_sess, ua_chan, app);
78f0bacd
DG
4015 if (ret < 0) {
4016 /* XXX: We might want to report this error at some point... */
4017 continue;
4018 }
4019 }
4020
4021 rcu_read_unlock();
4022
4023error:
4024 return ret;
4025}
4026
4027/*
4028 * For a specific UST session, enable the channel for all registered apps.
4029 */
35a9059d 4030int ust_app_enable_channel_glb(struct ltt_ust_session *usess,
78f0bacd
DG
4031 struct ltt_ust_channel *uchan)
4032{
4033 int ret = 0;
bec39940 4034 struct lttng_ht_iter iter;
78f0bacd
DG
4035 struct ust_app *app;
4036 struct ust_app_session *ua_sess;
4037
4038 if (usess == NULL || uchan == NULL) {
4039 ERR("Adding UST global channel to NULL values");
4040 ret = -1;
4041 goto error;
4042 }
4043
d9bf3ca4 4044 DBG2("UST app enabling channel %s to global domain for session id %" PRIu64,
a991f516 4045 uchan->name, usess->id);
78f0bacd
DG
4046
4047 rcu_read_lock();
4048
4049 /* For every registered applications */
852d0037 4050 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
4051 if (!app->compatible) {
4052 /*
4053 * TODO: In time, we should notice the caller of this error by
4054 * telling him that this is a version error.
4055 */
4056 continue;
4057 }
78f0bacd
DG
4058 ua_sess = lookup_session_by_app(usess, app);
4059 if (ua_sess == NULL) {
4060 continue;
4061 }
4062
4063 /* Enable channel onto application */
4064 ret = enable_ust_app_channel(ua_sess, uchan, app);
4065 if (ret < 0) {
4066 /* XXX: We might want to report this error at some point... */
4067 continue;
4068 }
4069 }
4070
4071 rcu_read_unlock();
4072
4073error:
4074 return ret;
4075}
4076
b0a40d28
DG
4077/*
4078 * Disable an event in a channel and for a specific session.
4079 */
35a9059d
DG
4080int ust_app_disable_event_glb(struct ltt_ust_session *usess,
4081 struct ltt_ust_channel *uchan, struct ltt_ust_event *uevent)
b0a40d28
DG
4082{
4083 int ret = 0;
bec39940 4084 struct lttng_ht_iter iter, uiter;
700c5a9d 4085 struct lttng_ht_node_str *ua_chan_node;
b0a40d28
DG
4086 struct ust_app *app;
4087 struct ust_app_session *ua_sess;
4088 struct ust_app_channel *ua_chan;
4089 struct ust_app_event *ua_event;
4090
4091 DBG("UST app disabling event %s for all apps in channel "
d9bf3ca4
MD
4092 "%s for session id %" PRIu64,
4093 uevent->attr.name, uchan->name, usess->id);
b0a40d28
DG
4094
4095 rcu_read_lock();
4096
4097 /* For all registered applications */
852d0037 4098 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
4099 if (!app->compatible) {
4100 /*
4101 * TODO: In time, we should notice the caller of this error by
4102 * telling him that this is a version error.
4103 */
4104 continue;
4105 }
b0a40d28
DG
4106 ua_sess = lookup_session_by_app(usess, app);
4107 if (ua_sess == NULL) {
4108 /* Next app */
4109 continue;
4110 }
4111
4112 /* Lookup channel in the ust app session */
bec39940
DG
4113 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
4114 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
b0a40d28 4115 if (ua_chan_node == NULL) {
d9bf3ca4 4116 DBG2("Channel %s not found in session id %" PRIu64 " for app pid %d."
852d0037 4117 "Skipping", uchan->name, usess->id, app->pid);
b0a40d28
DG
4118 continue;
4119 }
4120 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
4121
700c5a9d
JR
4122 ua_event = find_ust_app_event(ua_chan->events, uevent->attr.name,
4123 uevent->filter, uevent->attr.loglevel,
4124 uevent->exclusion);
4125 if (ua_event == NULL) {
b0a40d28 4126 DBG2("Event %s not found in channel %s for app pid %d."
852d0037 4127 "Skipping", uevent->attr.name, uchan->name, app->pid);
b0a40d28
DG
4128 continue;
4129 }
b0a40d28 4130
7f79d3a1 4131 ret = disable_ust_app_event(ua_sess, ua_event, app);
b0a40d28
DG
4132 if (ret < 0) {
4133 /* XXX: Report error someday... */
4134 continue;
4135 }
4136 }
4137
4138 rcu_read_unlock();
4139
4140 return ret;
4141}
4142
421cb601 4143/*
5b4a0ec0 4144 * For a specific UST session, create the channel for all registered apps.
421cb601 4145 */
35a9059d 4146int ust_app_create_channel_glb(struct ltt_ust_session *usess,
48842b30
DG
4147 struct ltt_ust_channel *uchan)
4148{
3d8ca23b 4149 int ret = 0, created;
bec39940 4150 struct lttng_ht_iter iter;
48842b30 4151 struct ust_app *app;
3d8ca23b 4152 struct ust_app_session *ua_sess = NULL;
48842b30 4153
fc34caaa
DG
4154 /* Very wrong code flow */
4155 assert(usess);
4156 assert(uchan);
421cb601 4157
d9bf3ca4 4158 DBG2("UST app adding channel %s to UST domain for session id %" PRIu64,
a991f516 4159 uchan->name, usess->id);
48842b30
DG
4160
4161 rcu_read_lock();
421cb601 4162
5b4a0ec0 4163 /* For every registered applications */
852d0037 4164 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
4165 if (!app->compatible) {
4166 /*
4167 * TODO: In time, we should notice the caller of this error by
4168 * telling him that this is a version error.
4169 */
4170 continue;
4171 }
a9ad0c8f
MD
4172 if (!trace_ust_pid_tracker_lookup(usess, app->pid)) {
4173 /* Skip. */
4174 continue;
4175 }
4176
edb67388
DG
4177 /*
4178 * Create session on the tracer side and add it to app session HT. Note
4179 * that if session exist, it will simply return a pointer to the ust
4180 * app session.
4181 */
3d8ca23b
DG
4182 ret = create_ust_app_session(usess, app, &ua_sess, &created);
4183 if (ret < 0) {
4184 switch (ret) {
4185 case -ENOTCONN:
4186 /*
4187 * The application's socket is not valid. Either a bad socket
4188 * or a timeout on it. We can't inform the caller that for a
4189 * specific app, the session failed so lets continue here.
4190 */
a7169585 4191 ret = 0; /* Not an error. */
3d8ca23b
DG
4192 continue;
4193 case -ENOMEM:
4194 default:
4195 goto error_rcu_unlock;
4196 }
48842b30 4197 }
3d8ca23b 4198 assert(ua_sess);
48842b30 4199
d0b96690 4200 pthread_mutex_lock(&ua_sess->lock);
b161602a
MD
4201
4202 if (ua_sess->deleted) {
4203 pthread_mutex_unlock(&ua_sess->lock);
4204 continue;
4205 }
4206
d65d2de8
DG
4207 if (!strncmp(uchan->name, DEFAULT_METADATA_NAME,
4208 sizeof(uchan->name))) {
ad7a9107
DG
4209 copy_channel_attr_to_ustctl(&ua_sess->metadata_attr, &uchan->attr);
4210 ret = 0;
d65d2de8
DG
4211 } else {
4212 /* Create channel onto application. We don't need the chan ref. */
4213 ret = create_ust_app_channel(ua_sess, uchan, app,
4214 LTTNG_UST_CHAN_PER_CPU, usess, NULL);
4215 }
d0b96690 4216 pthread_mutex_unlock(&ua_sess->lock);
3d8ca23b 4217 if (ret < 0) {
3d8ca23b
DG
4218 /* Cleanup the created session if it's the case. */
4219 if (created) {
d0b96690 4220 destroy_app_session(app, ua_sess);
3d8ca23b 4221 }
a7169585
MD
4222 switch (ret) {
4223 case -ENOTCONN:
4224 /*
4225 * The application's socket is not valid. Either a bad socket
4226 * or a timeout on it. We can't inform the caller that for a
4227 * specific app, the session failed so lets continue here.
4228 */
4229 ret = 0; /* Not an error. */
4230 continue;
4231 case -ENOMEM:
4232 default:
4233 goto error_rcu_unlock;
4234 }
48842b30 4235 }
48842b30 4236 }
5b4a0ec0 4237
95e047ff 4238error_rcu_unlock:
48842b30 4239 rcu_read_unlock();
3c14c33f 4240 return ret;
48842b30
DG
4241}
4242
5b4a0ec0 4243/*
edb67388 4244 * Enable event for a specific session and channel on the tracer.
5b4a0ec0 4245 */
35a9059d 4246int ust_app_enable_event_glb(struct ltt_ust_session *usess,
48842b30
DG
4247 struct ltt_ust_channel *uchan, struct ltt_ust_event *uevent)
4248{
4249 int ret = 0;
bec39940 4250 struct lttng_ht_iter iter, uiter;
18eace3b 4251 struct lttng_ht_node_str *ua_chan_node;
48842b30
DG
4252 struct ust_app *app;
4253 struct ust_app_session *ua_sess;
4254 struct ust_app_channel *ua_chan;
4255 struct ust_app_event *ua_event;
48842b30 4256
d9bf3ca4 4257 DBG("UST app enabling event %s for all apps for session id %" PRIu64,
a991f516 4258 uevent->attr.name, usess->id);
48842b30 4259
edb67388
DG
4260 /*
4261 * NOTE: At this point, this function is called only if the session and
4262 * channel passed are already created for all apps. and enabled on the
4263 * tracer also.
4264 */
4265
48842b30 4266 rcu_read_lock();
421cb601
DG
4267
4268 /* For all registered applications */
852d0037 4269 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
4270 if (!app->compatible) {
4271 /*
4272 * TODO: In time, we should notice the caller of this error by
4273 * telling him that this is a version error.
4274 */
4275 continue;
4276 }
edb67388 4277 ua_sess = lookup_session_by_app(usess, app);
c4a1715b
DG
4278 if (!ua_sess) {
4279 /* The application has problem or is probably dead. */
4280 continue;
4281 }
ba767faf 4282
d0b96690
DG
4283 pthread_mutex_lock(&ua_sess->lock);
4284
b161602a
MD
4285 if (ua_sess->deleted) {
4286 pthread_mutex_unlock(&ua_sess->lock);
4287 continue;
4288 }
4289
edb67388 4290 /* Lookup channel in the ust app session */
bec39940
DG
4291 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
4292 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
a7169585
MD
4293 /*
4294 * It is possible that the channel cannot be found is
4295 * the channel/event creation occurs concurrently with
4296 * an application exit.
4297 */
4298 if (!ua_chan_node) {
4299 pthread_mutex_unlock(&ua_sess->lock);
4300 continue;
4301 }
edb67388
DG
4302
4303 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
4304
18eace3b
DG
4305 /* Get event node */
4306 ua_event = find_ust_app_event(ua_chan->events, uevent->attr.name,
39c5a3a7 4307 uevent->filter, uevent->attr.loglevel, uevent->exclusion);
18eace3b 4308 if (ua_event == NULL) {
7f79d3a1 4309 DBG3("UST app enable event %s not found for app PID %d."
852d0037 4310 "Skipping app", uevent->attr.name, app->pid);
d0b96690 4311 goto next_app;
35a9059d 4312 }
35a9059d
DG
4313
4314 ret = enable_ust_app_event(ua_sess, ua_event, app);
4315 if (ret < 0) {
d0b96690 4316 pthread_mutex_unlock(&ua_sess->lock);
7f79d3a1 4317 goto error;
48842b30 4318 }
d0b96690
DG
4319 next_app:
4320 pthread_mutex_unlock(&ua_sess->lock);
edb67388
DG
4321 }
4322
7f79d3a1 4323error:
edb67388 4324 rcu_read_unlock();
edb67388
DG
4325 return ret;
4326}
4327
4328/*
4329 * For a specific existing UST session and UST channel, creates the event for
4330 * all registered apps.
4331 */
35a9059d 4332int ust_app_create_event_glb(struct ltt_ust_session *usess,
edb67388
DG
4333 struct ltt_ust_channel *uchan, struct ltt_ust_event *uevent)
4334{
4335 int ret = 0;
bec39940
DG
4336 struct lttng_ht_iter iter, uiter;
4337 struct lttng_ht_node_str *ua_chan_node;
edb67388
DG
4338 struct ust_app *app;
4339 struct ust_app_session *ua_sess;
4340 struct ust_app_channel *ua_chan;
4341
d9bf3ca4 4342 DBG("UST app creating event %s for all apps for session id %" PRIu64,
a991f516 4343 uevent->attr.name, usess->id);
edb67388 4344
edb67388
DG
4345 rcu_read_lock();
4346
4347 /* For all registered applications */
852d0037 4348 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
4349 if (!app->compatible) {
4350 /*
4351 * TODO: In time, we should notice the caller of this error by
4352 * telling him that this is a version error.
4353 */
4354 continue;
4355 }
edb67388 4356 ua_sess = lookup_session_by_app(usess, app);
c4a1715b
DG
4357 if (!ua_sess) {
4358 /* The application has problem or is probably dead. */
4359 continue;
4360 }
48842b30 4361
d0b96690 4362 pthread_mutex_lock(&ua_sess->lock);
b161602a
MD
4363
4364 if (ua_sess->deleted) {
4365 pthread_mutex_unlock(&ua_sess->lock);
4366 continue;
4367 }
4368
48842b30 4369 /* Lookup channel in the ust app session */
bec39940
DG
4370 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
4371 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
edb67388
DG
4372 /* If the channel is not found, there is a code flow error */
4373 assert(ua_chan_node);
4374
48842b30
DG
4375 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
4376
edb67388 4377 ret = create_ust_app_event(ua_sess, ua_chan, uevent, app);
d0b96690 4378 pthread_mutex_unlock(&ua_sess->lock);
edb67388 4379 if (ret < 0) {
49c336c1 4380 if (ret != -LTTNG_UST_ERR_EXIST) {
fc34caaa
DG
4381 /* Possible value at this point: -ENOMEM. If so, we stop! */
4382 break;
4383 }
4384 DBG2("UST app event %s already exist on app PID %d",
852d0037 4385 uevent->attr.name, app->pid);
5b4a0ec0 4386 continue;
48842b30 4387 }
48842b30 4388 }
5b4a0ec0 4389
48842b30
DG
4390 rcu_read_unlock();
4391
4392 return ret;
4393}
4394
5b4a0ec0
DG
4395/*
4396 * Start tracing for a specific UST session and app.
5e98072f
JR
4397 *
4398 * Called with UST app session lock held.
4399 *
5b4a0ec0 4400 */
b34cbebf 4401static
421cb601 4402int ust_app_start_trace(struct ltt_ust_session *usess, struct ust_app *app)
48842b30
DG
4403{
4404 int ret = 0;
48842b30 4405 struct ust_app_session *ua_sess;
48842b30 4406
852d0037 4407 DBG("Starting tracing for ust app pid %d", app->pid);
5cf5d0e7 4408
509cbaf8
MD
4409 rcu_read_lock();
4410
e0c7ec2b
DG
4411 if (!app->compatible) {
4412 goto end;
4413 }
4414
421cb601
DG
4415 ua_sess = lookup_session_by_app(usess, app);
4416 if (ua_sess == NULL) {
d42f20df
DG
4417 /* The session is in teardown process. Ignore and continue. */
4418 goto end;
421cb601 4419 }
48842b30 4420
d0b96690
DG
4421 pthread_mutex_lock(&ua_sess->lock);
4422
b161602a
MD
4423 if (ua_sess->deleted) {
4424 pthread_mutex_unlock(&ua_sess->lock);
4425 goto end;
4426 }
4427
aea829b3
DG
4428 /* Upon restart, we skip the setup, already done */
4429 if (ua_sess->started) {
8be98f9a 4430 goto skip_setup;
aea829b3 4431 }
8be98f9a 4432
a4b92340
DG
4433 /* Create directories if consumer is LOCAL and has a path defined. */
4434 if (usess->consumer->type == CONSUMER_DST_LOCAL &&
4435 strlen(usess->consumer->dst.trace_path) > 0) {
4436 ret = run_as_mkdir_recursive(usess->consumer->dst.trace_path,
7972aab2 4437 S_IRWXU | S_IRWXG, ua_sess->euid, ua_sess->egid);
a4b92340 4438 if (ret < 0) {
df5b86c8 4439 if (errno != EEXIST) {
a4b92340 4440 ERR("Trace directory creation error");
d0b96690 4441 goto error_unlock;
421cb601 4442 }
173af62f 4443 }
7753dea8 4444 }
aea829b3 4445
d65d2de8
DG
4446 /*
4447 * Create the metadata for the application. This returns gracefully if a
4448 * metadata was already set for the session.
4449 */
ad7a9107 4450 ret = create_ust_app_metadata(ua_sess, app, usess->consumer);
421cb601 4451 if (ret < 0) {
d0b96690 4452 goto error_unlock;
421cb601 4453 }
48842b30 4454
840cb59c 4455 health_code_update();
86acf0da 4456
8be98f9a 4457skip_setup:
421cb601 4458 /* This start the UST tracing */
fb45065e 4459 pthread_mutex_lock(&app->sock_lock);
852d0037 4460 ret = ustctl_start_session(app->sock, ua_sess->handle);
fb45065e 4461 pthread_mutex_unlock(&app->sock_lock);
421cb601 4462 if (ret < 0) {
ffe60014
DG
4463 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
4464 ERR("Error starting tracing for app pid: %d (ret: %d)",
4465 app->pid, ret);
4466 } else {
4467 DBG("UST app start session failed. Application is dead.");
3757b385
DG
4468 /*
4469 * This is normal behavior, an application can die during the
4470 * creation process. Don't report an error so the execution can
4471 * continue normally.
4472 */
4473 pthread_mutex_unlock(&ua_sess->lock);
4474 goto end;
ffe60014 4475 }
d0b96690 4476 goto error_unlock;
421cb601 4477 }
5b4a0ec0 4478
55c3953d
DG
4479 /* Indicate that the session has been started once */
4480 ua_sess->started = 1;
4481
d0b96690
DG
4482 pthread_mutex_unlock(&ua_sess->lock);
4483
840cb59c 4484 health_code_update();
86acf0da 4485
421cb601 4486 /* Quiescent wait after starting trace */
fb45065e 4487 pthread_mutex_lock(&app->sock_lock);
ffe60014 4488 ret = ustctl_wait_quiescent(app->sock);
fb45065e 4489 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
4490 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
4491 ERR("UST app wait quiescent failed for app pid %d ret %d",
4492 app->pid, ret);
4493 }
48842b30 4494
e0c7ec2b
DG
4495end:
4496 rcu_read_unlock();
840cb59c 4497 health_code_update();
421cb601 4498 return 0;
48842b30 4499
d0b96690
DG
4500error_unlock:
4501 pthread_mutex_unlock(&ua_sess->lock);
509cbaf8 4502 rcu_read_unlock();
840cb59c 4503 health_code_update();
421cb601
DG
4504 return -1;
4505}
48842b30 4506
8be98f9a
MD
4507/*
4508 * Stop tracing for a specific UST session and app.
4509 */
b34cbebf 4510static
8be98f9a
MD
4511int ust_app_stop_trace(struct ltt_ust_session *usess, struct ust_app *app)
4512{
4513 int ret = 0;
4514 struct ust_app_session *ua_sess;
7972aab2 4515 struct ust_registry_session *registry;
8be98f9a 4516
852d0037 4517 DBG("Stopping tracing for ust app pid %d", app->pid);
8be98f9a
MD
4518
4519 rcu_read_lock();
4520
e0c7ec2b 4521 if (!app->compatible) {
d88aee68 4522 goto end_no_session;
e0c7ec2b
DG
4523 }
4524
8be98f9a
MD
4525 ua_sess = lookup_session_by_app(usess, app);
4526 if (ua_sess == NULL) {
d88aee68 4527 goto end_no_session;
8be98f9a
MD
4528 }
4529
d88aee68
DG
4530 pthread_mutex_lock(&ua_sess->lock);
4531
b161602a
MD
4532 if (ua_sess->deleted) {
4533 pthread_mutex_unlock(&ua_sess->lock);
4534 goto end_no_session;
4535 }
4536
9bc07046
DG
4537 /*
4538 * If started = 0, it means that stop trace has been called for a session
c45536e1
DG
4539 * that was never started. It's possible since we can have a fail start
4540 * from either the application manager thread or the command thread. Simply
4541 * indicate that this is a stop error.
9bc07046 4542 */
f9dfc3d9 4543 if (!ua_sess->started) {
c45536e1
DG
4544 goto error_rcu_unlock;
4545 }
7db205b5 4546
840cb59c 4547 health_code_update();
86acf0da 4548
9d6c7d3f 4549 /* This inhibits UST tracing */
fb45065e 4550 pthread_mutex_lock(&app->sock_lock);
852d0037 4551 ret = ustctl_stop_session(app->sock, ua_sess->handle);
fb45065e 4552 pthread_mutex_unlock(&app->sock_lock);
9d6c7d3f 4553 if (ret < 0) {
ffe60014
DG
4554 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
4555 ERR("Error stopping tracing for app pid: %d (ret: %d)",
4556 app->pid, ret);
4557 } else {
4558 DBG("UST app stop session failed. Application is dead.");
3757b385
DG
4559 /*
4560 * This is normal behavior, an application can die during the
4561 * creation process. Don't report an error so the execution can
4562 * continue normally.
4563 */
4564 goto end_unlock;
ffe60014 4565 }
9d6c7d3f
DG
4566 goto error_rcu_unlock;
4567 }
4568
840cb59c 4569 health_code_update();
86acf0da 4570
9d6c7d3f 4571 /* Quiescent wait after stopping trace */
fb45065e 4572 pthread_mutex_lock(&app->sock_lock);
ffe60014 4573 ret = ustctl_wait_quiescent(app->sock);
fb45065e 4574 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
4575 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
4576 ERR("UST app wait quiescent failed for app pid %d ret %d",
4577 app->pid, ret);
4578 }
9d6c7d3f 4579
840cb59c 4580 health_code_update();
86acf0da 4581
b34cbebf 4582 registry = get_session_registry(ua_sess);
5e98072f
JR
4583
4584 /* The UST app session is held registry shall not be null. */
b34cbebf 4585 assert(registry);
1b532a60 4586
ce34fcd0
MD
4587 /* Push metadata for application before freeing the application. */
4588 (void) push_metadata(registry, ua_sess->consumer);
b34cbebf 4589
3757b385 4590end_unlock:
b34cbebf
MD
4591 pthread_mutex_unlock(&ua_sess->lock);
4592end_no_session:
4593 rcu_read_unlock();
4594 health_code_update();
4595 return 0;
4596
4597error_rcu_unlock:
4598 pthread_mutex_unlock(&ua_sess->lock);
4599 rcu_read_unlock();
4600 health_code_update();
4601 return -1;
4602}
4603
b34cbebf 4604static
c4b88406
MD
4605int ust_app_flush_app_session(struct ust_app *app,
4606 struct ust_app_session *ua_sess)
b34cbebf 4607{
c4b88406 4608 int ret, retval = 0;
b34cbebf 4609 struct lttng_ht_iter iter;
b34cbebf 4610 struct ust_app_channel *ua_chan;
c4b88406 4611 struct consumer_socket *socket;
b34cbebf 4612
c4b88406 4613 DBG("Flushing app session buffers for ust app pid %d", app->pid);
b34cbebf
MD
4614
4615 rcu_read_lock();
4616
4617 if (!app->compatible) {
c4b88406 4618 goto end_not_compatible;
b34cbebf
MD
4619 }
4620
4621 pthread_mutex_lock(&ua_sess->lock);
4622
b161602a
MD
4623 if (ua_sess->deleted) {
4624 goto end_deleted;
4625 }
4626
b34cbebf
MD
4627 health_code_update();
4628
9d6c7d3f 4629 /* Flushing buffers */
c4b88406
MD
4630 socket = consumer_find_socket_by_bitness(app->bits_per_long,
4631 ua_sess->consumer);
ce34fcd0
MD
4632
4633 /* Flush buffers and push metadata. */
4634 switch (ua_sess->buffer_type) {
4635 case LTTNG_BUFFER_PER_PID:
4636 cds_lfht_for_each_entry(ua_sess->channels->ht, &iter.iter, ua_chan,
4637 node.node) {
4638 health_code_update();
ce34fcd0
MD
4639 ret = consumer_flush_channel(socket, ua_chan->key);
4640 if (ret) {
4641 ERR("Error flushing consumer channel");
4642 retval = -1;
4643 continue;
4644 }
8be98f9a 4645 }
ce34fcd0
MD
4646 break;
4647 case LTTNG_BUFFER_PER_UID:
4648 default:
4649 assert(0);
4650 break;
8be98f9a 4651 }
8be98f9a 4652
840cb59c 4653 health_code_update();
86acf0da 4654
b161602a 4655end_deleted:
d88aee68 4656 pthread_mutex_unlock(&ua_sess->lock);
ce34fcd0 4657
c4b88406
MD
4658end_not_compatible:
4659 rcu_read_unlock();
4660 health_code_update();
4661 return retval;
4662}
4663
4664/*
ce34fcd0
MD
4665 * Flush buffers for all applications for a specific UST session.
4666 * Called with UST session lock held.
c4b88406
MD
4667 */
4668static
ce34fcd0 4669int ust_app_flush_session(struct ltt_ust_session *usess)
c4b88406
MD
4670
4671{
99b1411c 4672 int ret = 0;
c4b88406 4673
ce34fcd0 4674 DBG("Flushing session buffers for all ust apps");
c4b88406
MD
4675
4676 rcu_read_lock();
4677
ce34fcd0
MD
4678 /* Flush buffers and push metadata. */
4679 switch (usess->buffer_type) {
4680 case LTTNG_BUFFER_PER_UID:
4681 {
4682 struct buffer_reg_uid *reg;
4683 struct lttng_ht_iter iter;
4684
4685 /* Flush all per UID buffers associated to that session. */
4686 cds_list_for_each_entry(reg, &usess->buffer_reg_uid_list, lnode) {
4687 struct ust_registry_session *ust_session_reg;
4688 struct buffer_reg_channel *reg_chan;
4689 struct consumer_socket *socket;
4690
4691 /* Get consumer socket to use to push the metadata.*/
4692 socket = consumer_find_socket_by_bitness(reg->bits_per_long,
4693 usess->consumer);
4694 if (!socket) {
4695 /* Ignore request if no consumer is found for the session. */
4696 continue;
4697 }
4698
4699 cds_lfht_for_each_entry(reg->registry->channels->ht, &iter.iter,
4700 reg_chan, node.node) {
4701 /*
4702 * The following call will print error values so the return
4703 * code is of little importance because whatever happens, we
4704 * have to try them all.
4705 */
4706 (void) consumer_flush_channel(socket, reg_chan->consumer_key);
4707 }
4708
4709 ust_session_reg = reg->registry->reg.ust;
4710 /* Push metadata. */
4711 (void) push_metadata(ust_session_reg, usess->consumer);
4712 }
ce34fcd0
MD
4713 break;
4714 }
4715 case LTTNG_BUFFER_PER_PID:
4716 {
4717 struct ust_app_session *ua_sess;
4718 struct lttng_ht_iter iter;
4719 struct ust_app *app;
4720
4721 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
4722 ua_sess = lookup_session_by_app(usess, app);
4723 if (ua_sess == NULL) {
4724 continue;
4725 }
4726 (void) ust_app_flush_app_session(app, ua_sess);
4727 }
4728 break;
4729 }
4730 default:
99b1411c 4731 ret = -1;
ce34fcd0
MD
4732 assert(0);
4733 break;
c4b88406 4734 }
c4b88406 4735
7db205b5 4736 rcu_read_unlock();
840cb59c 4737 health_code_update();
c4b88406 4738 return ret;
8be98f9a
MD
4739}
4740
0dd01979
MD
4741static
4742int ust_app_clear_quiescent_app_session(struct ust_app *app,
4743 struct ust_app_session *ua_sess)
4744{
4745 int ret = 0;
4746 struct lttng_ht_iter iter;
4747 struct ust_app_channel *ua_chan;
4748 struct consumer_socket *socket;
4749
4750 DBG("Clearing stream quiescent state for ust app pid %d", app->pid);
4751
4752 rcu_read_lock();
4753
4754 if (!app->compatible) {
4755 goto end_not_compatible;
4756 }
4757
4758 pthread_mutex_lock(&ua_sess->lock);
4759
4760 if (ua_sess->deleted) {
4761 goto end_unlock;
4762 }
4763
4764 health_code_update();
4765
4766 socket = consumer_find_socket_by_bitness(app->bits_per_long,
4767 ua_sess->consumer);
4768 if (!socket) {
4769 ERR("Failed to find consumer (%" PRIu32 ") socket",
4770 app->bits_per_long);
4771 ret = -1;
4772 goto end_unlock;
4773 }
4774
4775 /* Clear quiescent state. */
4776 switch (ua_sess->buffer_type) {
4777 case LTTNG_BUFFER_PER_PID:
4778 cds_lfht_for_each_entry(ua_sess->channels->ht, &iter.iter,
4779 ua_chan, node.node) {
4780 health_code_update();
4781 ret = consumer_clear_quiescent_channel(socket,
4782 ua_chan->key);
4783 if (ret) {
4784 ERR("Error clearing quiescent state for consumer channel");
4785 ret = -1;
4786 continue;
4787 }
4788 }
4789 break;
4790 case LTTNG_BUFFER_PER_UID:
4791 default:
4792 assert(0);
4793 ret = -1;
4794 break;
4795 }
4796
4797 health_code_update();
4798
4799end_unlock:
4800 pthread_mutex_unlock(&ua_sess->lock);
4801
4802end_not_compatible:
4803 rcu_read_unlock();
4804 health_code_update();
4805 return ret;
4806}
4807
4808/*
4809 * Clear quiescent state in each stream for all applications for a
4810 * specific UST session.
4811 * Called with UST session lock held.
4812 */
4813static
4814int ust_app_clear_quiescent_session(struct ltt_ust_session *usess)
4815
4816{
4817 int ret = 0;
4818
4819 DBG("Clearing stream quiescent state for all ust apps");
4820
4821 rcu_read_lock();
4822
4823 switch (usess->buffer_type) {
4824 case LTTNG_BUFFER_PER_UID:
4825 {
4826 struct lttng_ht_iter iter;
4827 struct buffer_reg_uid *reg;
4828
4829 /*
4830 * Clear quiescent for all per UID buffers associated to
4831 * that session.
4832 */
4833 cds_list_for_each_entry(reg, &usess->buffer_reg_uid_list, lnode) {
4834 struct consumer_socket *socket;
4835 struct buffer_reg_channel *reg_chan;
4836
4837 /* Get associated consumer socket.*/
4838 socket = consumer_find_socket_by_bitness(
4839 reg->bits_per_long, usess->consumer);
4840 if (!socket) {
4841 /*
4842 * Ignore request if no consumer is found for
4843 * the session.
4844 */
4845 continue;
4846 }
4847
4848 cds_lfht_for_each_entry(reg->registry->channels->ht,
4849 &iter.iter, reg_chan, node.node) {
4850 /*
4851 * The following call will print error values so
4852 * the return code is of little importance
4853 * because whatever happens, we have to try them
4854 * all.
4855 */
4856 (void) consumer_clear_quiescent_channel(socket,
4857 reg_chan->consumer_key);
4858 }
4859 }
4860 break;
4861 }
4862 case LTTNG_BUFFER_PER_PID:
4863 {
4864 struct ust_app_session *ua_sess;
4865 struct lttng_ht_iter iter;
4866 struct ust_app *app;
4867
4868 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app,
4869 pid_n.node) {
4870 ua_sess = lookup_session_by_app(usess, app);
4871 if (ua_sess == NULL) {
4872 continue;
4873 }
4874 (void) ust_app_clear_quiescent_app_session(app,
4875 ua_sess);
4876 }
4877 break;
4878 }
4879 default:
4880 ret = -1;
4881 assert(0);
4882 break;
4883 }
4884
4885 rcu_read_unlock();
4886 health_code_update();
4887 return ret;
4888}
4889
84cd17c6
MD
4890/*
4891 * Destroy a specific UST session in apps.
4892 */
3353de95 4893static int destroy_trace(struct ltt_ust_session *usess, struct ust_app *app)
84cd17c6 4894{
ffe60014 4895 int ret;
84cd17c6 4896 struct ust_app_session *ua_sess;
bec39940 4897 struct lttng_ht_iter iter;
d9bf3ca4 4898 struct lttng_ht_node_u64 *node;
84cd17c6 4899
852d0037 4900 DBG("Destroy tracing for ust app pid %d", app->pid);
84cd17c6
MD
4901
4902 rcu_read_lock();
4903
e0c7ec2b
DG
4904 if (!app->compatible) {
4905 goto end;
4906 }
4907
84cd17c6 4908 __lookup_session_by_app(usess, app, &iter);
d9bf3ca4 4909 node = lttng_ht_iter_get_node_u64(&iter);
84cd17c6 4910 if (node == NULL) {
d42f20df
DG
4911 /* Session is being or is deleted. */
4912 goto end;
84cd17c6
MD
4913 }
4914 ua_sess = caa_container_of(node, struct ust_app_session, node);
c4a1715b 4915
840cb59c 4916 health_code_update();
d0b96690 4917 destroy_app_session(app, ua_sess);
84cd17c6 4918
840cb59c 4919 health_code_update();
7db205b5 4920
84cd17c6 4921 /* Quiescent wait after stopping trace */
fb45065e 4922 pthread_mutex_lock(&app->sock_lock);
ffe60014 4923 ret = ustctl_wait_quiescent(app->sock);
fb45065e 4924 pthread_mutex_unlock(&app->sock_lock);
ffe60014
DG
4925 if (ret < 0 && ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
4926 ERR("UST app wait quiescent failed for app pid %d ret %d",
4927 app->pid, ret);
4928 }
e0c7ec2b
DG
4929end:
4930 rcu_read_unlock();
840cb59c 4931 health_code_update();
84cd17c6 4932 return 0;
84cd17c6
MD
4933}
4934
5b4a0ec0
DG
4935/*
4936 * Start tracing for the UST session.
4937 */
421cb601
DG
4938int ust_app_start_trace_all(struct ltt_ust_session *usess)
4939{
4940 int ret = 0;
bec39940 4941 struct lttng_ht_iter iter;
421cb601 4942 struct ust_app *app;
48842b30 4943
421cb601
DG
4944 DBG("Starting all UST traces");
4945
4946 rcu_read_lock();
421cb601 4947
0dd01979
MD
4948 /*
4949 * In a start-stop-start use-case, we need to clear the quiescent state
4950 * of each channel set by the prior stop command, thus ensuring that a
4951 * following stop or destroy is sure to grab a timestamp_end near those
4952 * operations, even if the packet is empty.
4953 */
4954 (void) ust_app_clear_quiescent_session(usess);
4955
852d0037 4956 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
421cb601 4957 ret = ust_app_start_trace(usess, app);
48842b30 4958 if (ret < 0) {
5b4a0ec0
DG
4959 /* Continue to next apps even on error */
4960 continue;
48842b30 4961 }
48842b30 4962 }
5b4a0ec0 4963
48842b30
DG
4964 rcu_read_unlock();
4965
4966 return 0;
4967}
487cf67c 4968
8be98f9a
MD
4969/*
4970 * Start tracing for the UST session.
ce34fcd0 4971 * Called with UST session lock held.
8be98f9a
MD
4972 */
4973int ust_app_stop_trace_all(struct ltt_ust_session *usess)
4974{
4975 int ret = 0;
bec39940 4976 struct lttng_ht_iter iter;
8be98f9a
MD
4977 struct ust_app *app;
4978
4979 DBG("Stopping all UST traces");
4980
4981 rcu_read_lock();
4982
b34cbebf
MD
4983 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
4984 ret = ust_app_stop_trace(usess, app);
4985 if (ret < 0) {
4986 /* Continue to next apps even on error */
4987 continue;
4988 }
4989 }
4990
ce34fcd0 4991 (void) ust_app_flush_session(usess);
8be98f9a
MD
4992
4993 rcu_read_unlock();
4994
4995 return 0;
4996}
4997
84cd17c6
MD
4998/*
4999 * Destroy app UST session.
5000 */
5001int ust_app_destroy_trace_all(struct ltt_ust_session *usess)
5002{
5003 int ret = 0;
bec39940 5004 struct lttng_ht_iter iter;
84cd17c6
MD
5005 struct ust_app *app;
5006
5007 DBG("Destroy all UST traces");
5008
5009 rcu_read_lock();
5010
852d0037 5011 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
3353de95 5012 ret = destroy_trace(usess, app);
84cd17c6
MD
5013 if (ret < 0) {
5014 /* Continue to next apps even on error */
5015 continue;
5016 }
5017 }
5018
5019 rcu_read_unlock();
5020
5021 return 0;
5022}
5023
a9ad0c8f
MD
5024static
5025void ust_app_global_create(struct ltt_ust_session *usess, struct ust_app *app)
487cf67c 5026{
55c54cce 5027 int ret = 0;
31746f93 5028 struct lttng_ht_iter iter, uiter;
3d8ca23b 5029 struct ust_app_session *ua_sess = NULL;
487cf67c
DG
5030 struct ust_app_channel *ua_chan;
5031 struct ust_app_event *ua_event;
727d5404 5032 struct ust_app_ctx *ua_ctx;
a9ad0c8f 5033 int is_created = 0;
1f3580c7 5034
a9ad0c8f 5035 ret = create_ust_app_session(usess, app, &ua_sess, &is_created);
3d8ca23b
DG
5036 if (ret < 0) {
5037 /* Tracer is probably gone or ENOMEM. */
487cf67c
DG
5038 goto error;
5039 }
a9ad0c8f
MD
5040 if (!is_created) {
5041 /* App session already created. */
5042 goto end;
5043 }
3d8ca23b 5044 assert(ua_sess);
487cf67c 5045
d0b96690
DG
5046 pthread_mutex_lock(&ua_sess->lock);
5047
b161602a
MD
5048 if (ua_sess->deleted) {
5049 pthread_mutex_unlock(&ua_sess->lock);
5050 goto end;
5051 }
5052
284d8f55 5053 /*
d0b96690 5054 * We can iterate safely here over all UST app session since the create ust
284d8f55
DG
5055 * app session above made a shadow copy of the UST global domain from the
5056 * ltt ust session.
5057 */
bec39940
DG
5058 cds_lfht_for_each_entry(ua_sess->channels->ht, &iter.iter, ua_chan,
5059 node.node) {
ad7a9107 5060 ret = do_create_channel(app, usess, ua_sess, ua_chan);
a7169585 5061 if (ret < 0 && ret != -ENOTCONN) {
ad7a9107 5062 /*
a7169585
MD
5063 * Stop everything. On error, the application
5064 * failed, no more file descriptor are available
5065 * or ENOMEM so stopping here is the only thing
5066 * we can do for now. The only exception is
5067 * -ENOTCONN, which indicates that the application
5068 * has exit.
ad7a9107
DG
5069 */
5070 goto error_unlock;
487cf67c
DG
5071 }
5072
31746f93
DG
5073 /*
5074 * Add context using the list so they are enabled in the same order the
5075 * user added them.
5076 */
5077 cds_list_for_each_entry(ua_ctx, &ua_chan->ctx_list, list) {
727d5404
DG
5078 ret = create_ust_channel_context(ua_chan, ua_ctx, app);
5079 if (ret < 0) {
d0b96690 5080 goto error_unlock;
727d5404
DG
5081 }
5082 }
5083
5084
284d8f55 5085 /* For each events */
bec39940
DG
5086 cds_lfht_for_each_entry(ua_chan->events->ht, &uiter.iter, ua_event,
5087 node.node) {
284d8f55
DG
5088 ret = create_ust_event(app, ua_sess, ua_chan, ua_event);
5089 if (ret < 0) {
d0b96690 5090 goto error_unlock;
487cf67c 5091 }
36dc12cc 5092 }
487cf67c
DG
5093 }
5094
d0b96690
DG
5095 pthread_mutex_unlock(&ua_sess->lock);
5096
14fb1ebe 5097 if (usess->active) {
421cb601 5098 ret = ust_app_start_trace(usess, app);
36dc12cc 5099 if (ret < 0) {
36dc12cc
DG
5100 goto error;
5101 }
5102
852d0037 5103 DBG2("UST trace started for app pid %d", app->pid);
36dc12cc 5104 }
a9ad0c8f 5105end:
ffe60014 5106 /* Everything went well at this point. */
ffe60014
DG
5107 return;
5108
d0b96690
DG
5109error_unlock:
5110 pthread_mutex_unlock(&ua_sess->lock);
487cf67c 5111error:
ffe60014 5112 if (ua_sess) {
d0b96690 5113 destroy_app_session(app, ua_sess);
ffe60014 5114 }
487cf67c
DG
5115 return;
5116}
55cc08a6 5117
a9ad0c8f
MD
5118static
5119void ust_app_global_destroy(struct ltt_ust_session *usess, struct ust_app *app)
5120{
5121 struct ust_app_session *ua_sess;
5122
5123 ua_sess = lookup_session_by_app(usess, app);
5124 if (ua_sess == NULL) {
5125 return;
5126 }
5127 destroy_app_session(app, ua_sess);
5128}
5129
5130/*
5131 * Add channels/events from UST global domain to registered apps at sock.
5132 *
5133 * Called with session lock held.
5134 * Called with RCU read-side lock held.
5135 */
5136void ust_app_global_update(struct ltt_ust_session *usess, struct ust_app *app)
5137{
5138 assert(usess);
5139
5140 DBG2("UST app global update for app sock %d for session id %" PRIu64,
5141 app->sock, usess->id);
5142
5143 if (!app->compatible) {
5144 return;
5145 }
5146
5147 if (trace_ust_pid_tracker_lookup(usess, app->pid)) {
5148 ust_app_global_create(usess, app);
5149 } else {
5150 ust_app_global_destroy(usess, app);
5151 }
5152}
5153
5154/*
5155 * Called with session lock held.
5156 */
5157void ust_app_global_update_all(struct ltt_ust_session *usess)
5158{
5159 struct lttng_ht_iter iter;
5160 struct ust_app *app;
5161
5162 rcu_read_lock();
5163 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
5164 ust_app_global_update(usess, app);
5165 }
5166 rcu_read_unlock();
5167}
5168
55cc08a6
DG
5169/*
5170 * Add context to a specific channel for global UST domain.
5171 */
5172int ust_app_add_ctx_channel_glb(struct ltt_ust_session *usess,
5173 struct ltt_ust_channel *uchan, struct ltt_ust_context *uctx)
5174{
5175 int ret = 0;
bec39940
DG
5176 struct lttng_ht_node_str *ua_chan_node;
5177 struct lttng_ht_iter iter, uiter;
55cc08a6
DG
5178 struct ust_app_channel *ua_chan = NULL;
5179 struct ust_app_session *ua_sess;
5180 struct ust_app *app;
5181
5182 rcu_read_lock();
5183
852d0037 5184 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
e0c7ec2b
DG
5185 if (!app->compatible) {
5186 /*
5187 * TODO: In time, we should notice the caller of this error by
5188 * telling him that this is a version error.
5189 */
5190 continue;
5191 }
55cc08a6
DG
5192 ua_sess = lookup_session_by_app(usess, app);
5193 if (ua_sess == NULL) {
5194 continue;
5195 }
5196
d0b96690 5197 pthread_mutex_lock(&ua_sess->lock);
b161602a
MD
5198
5199 if (ua_sess->deleted) {
5200 pthread_mutex_unlock(&ua_sess->lock);
5201 continue;
5202 }
5203
55cc08a6 5204 /* Lookup channel in the ust app session */
bec39940
DG
5205 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &uiter);
5206 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
55cc08a6 5207 if (ua_chan_node == NULL) {
d0b96690 5208 goto next_app;
55cc08a6
DG
5209 }
5210 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel,
5211 node);
55cc08a6
DG
5212 ret = create_ust_app_channel_context(ua_sess, ua_chan, &uctx->ctx, app);
5213 if (ret < 0) {
d0b96690 5214 goto next_app;
55cc08a6 5215 }
d0b96690
DG
5216 next_app:
5217 pthread_mutex_unlock(&ua_sess->lock);
55cc08a6
DG
5218 }
5219
55cc08a6
DG
5220 rcu_read_unlock();
5221 return ret;
5222}
5223
76d45b40
DG
5224/*
5225 * Enable event for a channel from a UST session for a specific PID.
5226 */
5227int ust_app_enable_event_pid(struct ltt_ust_session *usess,
5228 struct ltt_ust_channel *uchan, struct ltt_ust_event *uevent, pid_t pid)
5229{
5230 int ret = 0;
bec39940 5231 struct lttng_ht_iter iter;
18eace3b 5232 struct lttng_ht_node_str *ua_chan_node;
76d45b40
DG
5233 struct ust_app *app;
5234 struct ust_app_session *ua_sess;
5235 struct ust_app_channel *ua_chan;
5236 struct ust_app_event *ua_event;
5237
5238 DBG("UST app enabling event %s for PID %d", uevent->attr.name, pid);
5239
5240 rcu_read_lock();
5241
5242 app = ust_app_find_by_pid(pid);
5243 if (app == NULL) {
5244 ERR("UST app enable event per PID %d not found", pid);
5245 ret = -1;
d0b96690 5246 goto end;
76d45b40
DG
5247 }
5248
e0c7ec2b
DG
5249 if (!app->compatible) {
5250 ret = 0;
d0b96690 5251 goto end;
e0c7ec2b
DG
5252 }
5253
76d45b40 5254 ua_sess = lookup_session_by_app(usess, app);
c4a1715b
DG
5255 if (!ua_sess) {
5256 /* The application has problem or is probably dead. */
d0b96690
DG
5257 ret = 0;
5258 goto end;
c4a1715b 5259 }
76d45b40 5260
d0b96690 5261 pthread_mutex_lock(&ua_sess->lock);
b161602a
MD
5262
5263 if (ua_sess->deleted) {
5264 ret = 0;
5265 goto end_unlock;
5266 }
5267
76d45b40 5268 /* Lookup channel in the ust app session */
bec39940
DG
5269 lttng_ht_lookup(ua_sess->channels, (void *)uchan->name, &iter);
5270 ua_chan_node = lttng_ht_iter_get_node_str(&iter);
76d45b40
DG
5271 /* If the channel is not found, there is a code flow error */
5272 assert(ua_chan_node);
5273
5274 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
5275
18eace3b 5276 ua_event = find_ust_app_event(ua_chan->events, uevent->attr.name,
39c5a3a7 5277 uevent->filter, uevent->attr.loglevel, uevent->exclusion);
18eace3b 5278 if (ua_event == NULL) {
76d45b40
DG
5279 ret = create_ust_app_event(ua_sess, ua_chan, uevent, app);
5280 if (ret < 0) {
d0b96690 5281 goto end_unlock;
76d45b40
DG
5282 }
5283 } else {
76d45b40
DG
5284 ret = enable_ust_app_event(ua_sess, ua_event, app);
5285 if (ret < 0) {
d0b96690 5286 goto end_unlock;
76d45b40
DG
5287 }
5288 }
5289
d0b96690
DG
5290end_unlock:
5291 pthread_mutex_unlock(&ua_sess->lock);
5292end:
76d45b40
DG
5293 rcu_read_unlock();
5294 return ret;
5295}
7f79d3a1 5296
d0b96690
DG
5297/*
5298 * Receive registration and populate the given msg structure.
5299 *
5300 * On success return 0 else a negative value returned by the ustctl call.
5301 */
5302int ust_app_recv_registration(int sock, struct ust_register_msg *msg)
5303{
5304 int ret;
5305 uint32_t pid, ppid, uid, gid;
5306
5307 assert(msg);
5308
5309 ret = ustctl_recv_reg_msg(sock, &msg->type, &msg->major, &msg->minor,
5310 &pid, &ppid, &uid, &gid,
5311 &msg->bits_per_long,
5312 &msg->uint8_t_alignment,
5313 &msg->uint16_t_alignment,
5314 &msg->uint32_t_alignment,
5315 &msg->uint64_t_alignment,
5316 &msg->long_alignment,
5317 &msg->byte_order,
5318 msg->name);
5319 if (ret < 0) {
5320 switch (-ret) {
5321 case EPIPE:
5322 case ECONNRESET:
5323 case LTTNG_UST_ERR_EXITING:
5324 DBG3("UST app recv reg message failed. Application died");
5325 break;
5326 case LTTNG_UST_ERR_UNSUP_MAJOR:
5327 ERR("UST app recv reg unsupported version %d.%d. Supporting %d.%d",
5328 msg->major, msg->minor, LTTNG_UST_ABI_MAJOR_VERSION,
5329 LTTNG_UST_ABI_MINOR_VERSION);
5330 break;
5331 default:
5332 ERR("UST app recv reg message failed with ret %d", ret);
5333 break;
5334 }
5335 goto error;
5336 }
5337 msg->pid = (pid_t) pid;
5338 msg->ppid = (pid_t) ppid;
5339 msg->uid = (uid_t) uid;
5340 msg->gid = (gid_t) gid;
5341
5342error:
5343 return ret;
5344}
5345
10b56aef
MD
5346/*
5347 * Return a ust app session object using the application object and the
5348 * session object descriptor has a key. If not found, NULL is returned.
5349 * A RCU read side lock MUST be acquired when calling this function.
5350*/
5351static struct ust_app_session *find_session_by_objd(struct ust_app *app,
5352 int objd)
5353{
5354 struct lttng_ht_node_ulong *node;
5355 struct lttng_ht_iter iter;
5356 struct ust_app_session *ua_sess = NULL;
5357
5358 assert(app);
5359
5360 lttng_ht_lookup(app->ust_sessions_objd, (void *)((unsigned long) objd), &iter);
5361 node = lttng_ht_iter_get_node_ulong(&iter);
5362 if (node == NULL) {
5363 DBG2("UST app session find by objd %d not found", objd);
5364 goto error;
5365 }
5366
5367 ua_sess = caa_container_of(node, struct ust_app_session, ust_objd_node);
5368
5369error:
5370 return ua_sess;
5371}
5372
d88aee68
DG
5373/*
5374 * Return a ust app channel object using the application object and the channel
5375 * object descriptor has a key. If not found, NULL is returned. A RCU read side
5376 * lock MUST be acquired before calling this function.
5377 */
d0b96690
DG
5378static struct ust_app_channel *find_channel_by_objd(struct ust_app *app,
5379 int objd)
5380{
5381 struct lttng_ht_node_ulong *node;
5382 struct lttng_ht_iter iter;
5383 struct ust_app_channel *ua_chan = NULL;
5384
5385 assert(app);
5386
5387 lttng_ht_lookup(app->ust_objd, (void *)((unsigned long) objd), &iter);
5388 node = lttng_ht_iter_get_node_ulong(&iter);
5389 if (node == NULL) {
5390 DBG2("UST app channel find by objd %d not found", objd);
5391 goto error;
5392 }
5393
5394 ua_chan = caa_container_of(node, struct ust_app_channel, ust_objd_node);
5395
5396error:
5397 return ua_chan;
5398}
5399
d88aee68
DG
5400/*
5401 * Reply to a register channel notification from an application on the notify
5402 * socket. The channel metadata is also created.
5403 *
5404 * The session UST registry lock is acquired in this function.
5405 *
5406 * On success 0 is returned else a negative value.
5407 */
d0b96690
DG
5408static int reply_ust_register_channel(int sock, int sobjd, int cobjd,
5409 size_t nr_fields, struct ustctl_field *fields)
5410{
5411 int ret, ret_code = 0;
bd6e2c0b 5412 uint32_t chan_id;
7972aab2 5413 uint64_t chan_reg_key;
d0b96690
DG
5414 enum ustctl_channel_header type;
5415 struct ust_app *app;
5416 struct ust_app_channel *ua_chan;
5417 struct ust_app_session *ua_sess;
7972aab2 5418 struct ust_registry_session *registry;
45893984 5419 struct ust_registry_channel *chan_reg;
d0b96690
DG
5420
5421 rcu_read_lock();
5422
5423 /* Lookup application. If not found, there is a code flow error. */
5424 app = find_app_by_notify_sock(sock);
d88aee68 5425 if (!app) {
5e98072f 5426 DBG("Application socket %d is being torn down. Abort event notify",
d88aee68
DG
5427 sock);
5428 ret = 0;
5429 goto error_rcu_unlock;
5430 }
d0b96690 5431
4950b860 5432 /* Lookup channel by UST object descriptor. */
d0b96690 5433 ua_chan = find_channel_by_objd(app, cobjd);
4950b860 5434 if (!ua_chan) {
5e98072f 5435 DBG("Application channel is being torn down. Abort event notify");
4950b860
MD
5436 ret = 0;
5437 goto error_rcu_unlock;
5438 }
5439
d0b96690
DG
5440 assert(ua_chan->session);
5441 ua_sess = ua_chan->session;
d0b96690 5442
7972aab2
DG
5443 /* Get right session registry depending on the session buffer type. */
5444 registry = get_session_registry(ua_sess);
5e98072f
JR
5445 if (!registry) {
5446 DBG("Application session is being torn down. Abort event notify");
5447 ret = 0;
5448 goto error_rcu_unlock;
5449 };
45893984 5450
7972aab2
DG
5451 /* Depending on the buffer type, a different channel key is used. */
5452 if (ua_sess->buffer_type == LTTNG_BUFFER_PER_UID) {
5453 chan_reg_key = ua_chan->tracing_channel_id;
d0b96690 5454 } else {
7972aab2 5455 chan_reg_key = ua_chan->key;
d0b96690
DG
5456 }
5457
7972aab2
DG
5458 pthread_mutex_lock(&registry->lock);
5459
5460 chan_reg = ust_registry_channel_find(registry, chan_reg_key);
5461 assert(chan_reg);
5462
5463 if (!chan_reg->register_done) {
bd6e2c0b
MD
5464 /*
5465 * TODO: eventually use the registry event count for
5466 * this channel to better guess header type for per-pid
5467 * buffers.
5468 */
5469 type = USTCTL_CHANNEL_HEADER_LARGE;
7972aab2
DG
5470 chan_reg->nr_ctx_fields = nr_fields;
5471 chan_reg->ctx_fields = fields;
5e98072f 5472 fields = NULL;
7972aab2 5473 chan_reg->header_type = type;
d0b96690 5474 } else {
7972aab2
DG
5475 /* Get current already assigned values. */
5476 type = chan_reg->header_type;
d0b96690 5477 }
7972aab2
DG
5478 /* Channel id is set during the object creation. */
5479 chan_id = chan_reg->chan_id;
d0b96690
DG
5480
5481 /* Append to metadata */
7972aab2
DG
5482 if (!chan_reg->metadata_dumped) {
5483 ret_code = ust_metadata_channel_statedump(registry, chan_reg);
d0b96690
DG
5484 if (ret_code) {
5485 ERR("Error appending channel metadata (errno = %d)", ret_code);
5486 goto reply;
5487 }
5488 }
5489
5490reply:
7972aab2
DG
5491 DBG3("UST app replying to register channel key %" PRIu64
5492 " with id %u, type: %d, ret: %d", chan_reg_key, chan_id, type,
5493 ret_code);
d0b96690
DG
5494
5495 ret = ustctl_reply_register_channel(sock, chan_id, type, ret_code);
5496 if (ret < 0) {
5497 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5498 ERR("UST app reply channel failed with ret %d", ret);
5499 } else {
5500 DBG3("UST app reply channel failed. Application died");
5501 }
5502 goto error;
5503 }
5504
7972aab2
DG
5505 /* This channel registry registration is completed. */
5506 chan_reg->register_done = 1;
5507
d0b96690 5508error:
7972aab2 5509 pthread_mutex_unlock(&registry->lock);
d88aee68 5510error_rcu_unlock:
d0b96690 5511 rcu_read_unlock();
5e98072f 5512 free(fields);
d0b96690
DG
5513 return ret;
5514}
5515
d88aee68
DG
5516/*
5517 * Add event to the UST channel registry. When the event is added to the
5518 * registry, the metadata is also created. Once done, this replies to the
5519 * application with the appropriate error code.
5520 *
5521 * The session UST registry lock is acquired in the function.
5522 *
5523 * On success 0 is returned else a negative value.
5524 */
d0b96690 5525static int add_event_ust_registry(int sock, int sobjd, int cobjd, char *name,
2106efa0
PP
5526 char *sig, size_t nr_fields, struct ustctl_field *fields,
5527 int loglevel_value, char *model_emf_uri)
d0b96690
DG
5528{
5529 int ret, ret_code;
5530 uint32_t event_id = 0;
7972aab2 5531 uint64_t chan_reg_key;
d0b96690
DG
5532 struct ust_app *app;
5533 struct ust_app_channel *ua_chan;
5534 struct ust_app_session *ua_sess;
7972aab2 5535 struct ust_registry_session *registry;
d0b96690
DG
5536
5537 rcu_read_lock();
5538
5539 /* Lookup application. If not found, there is a code flow error. */
5540 app = find_app_by_notify_sock(sock);
d88aee68 5541 if (!app) {
5e98072f 5542 DBG("Application socket %d is being torn down. Abort event notify",
d88aee68
DG
5543 sock);
5544 ret = 0;
5545 goto error_rcu_unlock;
5546 }
d0b96690 5547
4950b860 5548 /* Lookup channel by UST object descriptor. */
d0b96690 5549 ua_chan = find_channel_by_objd(app, cobjd);
4950b860 5550 if (!ua_chan) {
5e98072f 5551 DBG("Application channel is being torn down. Abort event notify");
4950b860
MD
5552 ret = 0;
5553 goto error_rcu_unlock;
5554 }
5555
d0b96690
DG
5556 assert(ua_chan->session);
5557 ua_sess = ua_chan->session;
5558
7972aab2 5559 registry = get_session_registry(ua_sess);
5e98072f
JR
5560 if (!registry) {
5561 DBG("Application session is being torn down. Abort event notify");
5562 ret = 0;
5563 goto error_rcu_unlock;
5564 }
7972aab2
DG
5565
5566 if (ua_sess->buffer_type == LTTNG_BUFFER_PER_UID) {
5567 chan_reg_key = ua_chan->tracing_channel_id;
5568 } else {
5569 chan_reg_key = ua_chan->key;
5570 }
5571
5572 pthread_mutex_lock(&registry->lock);
d0b96690 5573
d5d629b5
DG
5574 /*
5575 * From this point on, this call acquires the ownership of the sig, fields
5576 * and model_emf_uri meaning any free are done inside it if needed. These
5577 * three variables MUST NOT be read/write after this.
5578 */
7972aab2 5579 ret_code = ust_registry_create_event(registry, chan_reg_key,
2106efa0
PP
5580 sobjd, cobjd, name, sig, nr_fields, fields,
5581 loglevel_value, model_emf_uri, ua_sess->buffer_type,
5582 &event_id, app);
5e98072f
JR
5583 sig = NULL;
5584 fields = NULL;
5585 model_emf_uri = NULL;
d0b96690
DG
5586
5587 /*
5588 * The return value is returned to ustctl so in case of an error, the
5589 * application can be notified. In case of an error, it's important not to
5590 * return a negative error or else the application will get closed.
5591 */
5592 ret = ustctl_reply_register_event(sock, event_id, ret_code);
5593 if (ret < 0) {
5594 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5595 ERR("UST app reply event failed with ret %d", ret);
5596 } else {
5597 DBG3("UST app reply event failed. Application died");
5598 }
5599 /*
5600 * No need to wipe the create event since the application socket will
5601 * get close on error hence cleaning up everything by itself.
5602 */
5603 goto error;
5604 }
5605
7972aab2
DG
5606 DBG3("UST registry event %s with id %" PRId32 " added successfully",
5607 name, event_id);
d88aee68 5608
d0b96690 5609error:
7972aab2 5610 pthread_mutex_unlock(&registry->lock);
d88aee68 5611error_rcu_unlock:
d0b96690 5612 rcu_read_unlock();
5e98072f
JR
5613 free(sig);
5614 free(fields);
5615 free(model_emf_uri);
d0b96690
DG
5616 return ret;
5617}
5618
10b56aef
MD
5619/*
5620 * Add enum to the UST session registry. Once done, this replies to the
5621 * application with the appropriate error code.
5622 *
5623 * The session UST registry lock is acquired within this function.
5624 *
5625 * On success 0 is returned else a negative value.
5626 */
5627static int add_enum_ust_registry(int sock, int sobjd, char *name,
5628 struct ustctl_enum_entry *entries, size_t nr_entries)
5629{
5630 int ret = 0, ret_code;
5631 struct ust_app *app;
5632 struct ust_app_session *ua_sess;
5633 struct ust_registry_session *registry;
5634 uint64_t enum_id = -1ULL;
5635
5636 rcu_read_lock();
5637
5638 /* Lookup application. If not found, there is a code flow error. */
5639 app = find_app_by_notify_sock(sock);
5640 if (!app) {
5641 /* Return an error since this is not an error */
5642 DBG("Application socket %d is being torn down. Aborting enum registration",
5643 sock);
5644 free(entries);
5645 goto error_rcu_unlock;
5646 }
5647
5648 /* Lookup session by UST object descriptor. */
5649 ua_sess = find_session_by_objd(app, sobjd);
5650 if (!ua_sess) {
5651 /* Return an error since this is not an error */
5e98072f 5652 DBG("Application session is being torn down (session not found). Aborting enum registration.");
10b56aef
MD
5653 free(entries);
5654 goto error_rcu_unlock;
5655 }
5656
5657 registry = get_session_registry(ua_sess);
5e98072f
JR
5658 if (!registry) {
5659 DBG("Application session is being torn down (registry not found). Aborting enum registration.");
5660 free(entries);
5661 goto error_rcu_unlock;
5662 }
10b56aef
MD
5663
5664 pthread_mutex_lock(&registry->lock);
5665
5666 /*
5667 * From this point on, the callee acquires the ownership of
5668 * entries. The variable entries MUST NOT be read/written after
5669 * call.
5670 */
5671 ret_code = ust_registry_create_or_find_enum(registry, sobjd, name,
5672 entries, nr_entries, &enum_id);
5673 entries = NULL;
5674
5675 /*
5676 * The return value is returned to ustctl so in case of an error, the
5677 * application can be notified. In case of an error, it's important not to
5678 * return a negative error or else the application will get closed.
5679 */
5680 ret = ustctl_reply_register_enum(sock, enum_id, ret_code);
5681 if (ret < 0) {
5682 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5683 ERR("UST app reply enum failed with ret %d", ret);
5684 } else {
5685 DBG3("UST app reply enum failed. Application died");
5686 }
5687 /*
5688 * No need to wipe the create enum since the application socket will
5689 * get close on error hence cleaning up everything by itself.
5690 */
5691 goto error;
5692 }
5693
5694 DBG3("UST registry enum %s added successfully or already found", name);
5695
5696error:
5697 pthread_mutex_unlock(&registry->lock);
5698error_rcu_unlock:
5699 rcu_read_unlock();
5700 return ret;
5701}
5702
d88aee68
DG
5703/*
5704 * Handle application notification through the given notify socket.
5705 *
5706 * Return 0 on success or else a negative value.
5707 */
d0b96690
DG
5708int ust_app_recv_notify(int sock)
5709{
5710 int ret;
5711 enum ustctl_notify_cmd cmd;
5712
5713 DBG3("UST app receiving notify from sock %d", sock);
5714
5715 ret = ustctl_recv_notify(sock, &cmd);
5716 if (ret < 0) {
5717 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5718 ERR("UST app recv notify failed with ret %d", ret);
5719 } else {
5720 DBG3("UST app recv notify failed. Application died");
5721 }
5722 goto error;
5723 }
5724
5725 switch (cmd) {
5726 case USTCTL_NOTIFY_CMD_EVENT:
5727 {
2106efa0 5728 int sobjd, cobjd, loglevel_value;
d0b96690
DG
5729 char name[LTTNG_UST_SYM_NAME_LEN], *sig, *model_emf_uri;
5730 size_t nr_fields;
5731 struct ustctl_field *fields;
5732
5733 DBG2("UST app ustctl register event received");
5734
2106efa0
PP
5735 ret = ustctl_recv_register_event(sock, &sobjd, &cobjd, name,
5736 &loglevel_value, &sig, &nr_fields, &fields,
5737 &model_emf_uri);
d0b96690
DG
5738 if (ret < 0) {
5739 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5740 ERR("UST app recv event failed with ret %d", ret);
5741 } else {
5742 DBG3("UST app recv event failed. Application died");
5743 }
5744 goto error;
5745 }
5746
d5d629b5
DG
5747 /*
5748 * Add event to the UST registry coming from the notify socket. This
5749 * call will free if needed the sig, fields and model_emf_uri. This
5750 * code path loses the ownsership of these variables and transfer them
5751 * to the this function.
5752 */
d0b96690 5753 ret = add_event_ust_registry(sock, sobjd, cobjd, name, sig, nr_fields,
2106efa0 5754 fields, loglevel_value, model_emf_uri);
d0b96690
DG
5755 if (ret < 0) {
5756 goto error;
5757 }
5758
5759 break;
5760 }
5761 case USTCTL_NOTIFY_CMD_CHANNEL:
5762 {
5763 int sobjd, cobjd;
5764 size_t nr_fields;
5765 struct ustctl_field *fields;
5766
5767 DBG2("UST app ustctl register channel received");
5768
5769 ret = ustctl_recv_register_channel(sock, &sobjd, &cobjd, &nr_fields,
5770 &fields);
5771 if (ret < 0) {
5772 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5773 ERR("UST app recv channel failed with ret %d", ret);
5774 } else {
5775 DBG3("UST app recv channel failed. Application died");
5776 }
5777 goto error;
5778 }
5779
d5d629b5
DG
5780 /*
5781 * The fields ownership are transfered to this function call meaning
5782 * that if needed it will be freed. After this, it's invalid to access
5783 * fields or clean it up.
5784 */
d0b96690
DG
5785 ret = reply_ust_register_channel(sock, sobjd, cobjd, nr_fields,
5786 fields);
5787 if (ret < 0) {
5788 goto error;
5789 }
5790
5791 break;
5792 }
10b56aef
MD
5793 case USTCTL_NOTIFY_CMD_ENUM:
5794 {
5795 int sobjd;
5796 char name[LTTNG_UST_SYM_NAME_LEN];
5797 size_t nr_entries;
5798 struct ustctl_enum_entry *entries;
5799
5800 DBG2("UST app ustctl register enum received");
5801
5802 ret = ustctl_recv_register_enum(sock, &sobjd, name,
5803 &entries, &nr_entries);
5804 if (ret < 0) {
5805 if (ret != -EPIPE && ret != -LTTNG_UST_ERR_EXITING) {
5806 ERR("UST app recv enum failed with ret %d", ret);
5807 } else {
5808 DBG3("UST app recv enum failed. Application died");
5809 }
5810 goto error;
5811 }
5812
5813 /* Callee assumes ownership of entries */
5814 ret = add_enum_ust_registry(sock, sobjd, name,
5815 entries, nr_entries);
5816 if (ret < 0) {
5817 goto error;
5818 }
5819
5820 break;
5821 }
d0b96690
DG
5822 default:
5823 /* Should NEVER happen. */
5824 assert(0);
5825 }
5826
5827error:
5828 return ret;
5829}
d88aee68
DG
5830
5831/*
5832 * Once the notify socket hangs up, this is called. First, it tries to find the
5833 * corresponding application. On failure, the call_rcu to close the socket is
5834 * executed. If an application is found, it tries to delete it from the notify
5835 * socket hash table. Whathever the result, it proceeds to the call_rcu.
5836 *
5837 * Note that an object needs to be allocated here so on ENOMEM failure, the
5838 * call RCU is not done but the rest of the cleanup is.
5839 */
5840void ust_app_notify_sock_unregister(int sock)
5841{
5842 int err_enomem = 0;
5843 struct lttng_ht_iter iter;
5844 struct ust_app *app;
5845 struct ust_app_notify_sock_obj *obj;
5846
5847 assert(sock >= 0);
5848
5849 rcu_read_lock();
5850
5851 obj = zmalloc(sizeof(*obj));
5852 if (!obj) {
5853 /*
5854 * An ENOMEM is kind of uncool. If this strikes we continue the
5855 * procedure but the call_rcu will not be called. In this case, we
5856 * accept the fd leak rather than possibly creating an unsynchronized
5857 * state between threads.
5858 *
5859 * TODO: The notify object should be created once the notify socket is
5860 * registered and stored independantely from the ust app object. The
5861 * tricky part is to synchronize the teardown of the application and
5862 * this notify object. Let's keep that in mind so we can avoid this
5863 * kind of shenanigans with ENOMEM in the teardown path.
5864 */
5865 err_enomem = 1;
5866 } else {
5867 obj->fd = sock;
5868 }
5869
5870 DBG("UST app notify socket unregister %d", sock);
5871
5872 /*
5873 * Lookup application by notify socket. If this fails, this means that the
5874 * hash table delete has already been done by the application
5875 * unregistration process so we can safely close the notify socket in a
5876 * call RCU.
5877 */
5878 app = find_app_by_notify_sock(sock);
5879 if (!app) {
5880 goto close_socket;
5881 }
5882
5883 iter.iter.node = &app->notify_sock_n.node;
5884
5885 /*
5886 * Whatever happens here either we fail or succeed, in both cases we have
5887 * to close the socket after a grace period to continue to the call RCU
5888 * here. If the deletion is successful, the application is not visible
5889 * anymore by other threads and is it fails it means that it was already
5890 * deleted from the hash table so either way we just have to close the
5891 * socket.
5892 */
5893 (void) lttng_ht_del(ust_app_ht_by_notify_sock, &iter);
5894
5895close_socket:
5896 rcu_read_unlock();
5897
5898 /*
5899 * Close socket after a grace period to avoid for the socket to be reused
5900 * before the application object is freed creating potential race between
5901 * threads trying to add unique in the global hash table.
5902 */
5903 if (!err_enomem) {
5904 call_rcu(&obj->head, close_notify_sock_rcu);
5905 }
5906}
f45e313d
DG
5907
5908/*
5909 * Destroy a ust app data structure and free its memory.
5910 */
5911void ust_app_destroy(struct ust_app *app)
5912{
5913 if (!app) {
5914 return;
5915 }
5916
5917 call_rcu(&app->pid_n.head, delete_ust_app_rcu);
5918}
6dc3064a
DG
5919
5920/*
5921 * Take a snapshot for a given UST session. The snapshot is sent to the given
5922 * output.
5923 *
5924 * Return 0 on success or else a negative value.
5925 */
5926int ust_app_snapshot_record(struct ltt_ust_session *usess,
d07ceecd
MD
5927 struct snapshot_output *output, int wait,
5928 uint64_t nb_packets_per_stream)
6dc3064a
DG
5929{
5930 int ret = 0;
5931 struct lttng_ht_iter iter;
5932 struct ust_app *app;
af706bb7 5933 char pathname[PATH_MAX];
6dc3064a
DG
5934
5935 assert(usess);
5936 assert(output);
5937
5938 rcu_read_lock();
5939
8c924c7b
MD
5940 switch (usess->buffer_type) {
5941 case LTTNG_BUFFER_PER_UID:
5942 {
5943 struct buffer_reg_uid *reg;
6dc3064a 5944
8c924c7b
MD
5945 cds_list_for_each_entry(reg, &usess->buffer_reg_uid_list, lnode) {
5946 struct buffer_reg_channel *reg_chan;
5947 struct consumer_socket *socket;
6dc3064a 5948
a848acfd
JR
5949 if (!reg->registry->reg.ust->metadata_key) {
5950 /* Skip since no metadata is present */
5951 continue;
5952 }
5953
8c924c7b
MD
5954 /* Get consumer socket to use to push the metadata.*/
5955 socket = consumer_find_socket_by_bitness(reg->bits_per_long,
5956 usess->consumer);
5957 if (!socket) {
5958 ret = -EINVAL;
5959 goto error;
5960 }
6dc3064a 5961
8c924c7b
MD
5962 memset(pathname, 0, sizeof(pathname));
5963 ret = snprintf(pathname, sizeof(pathname),
5964 DEFAULT_UST_TRACE_DIR "/" DEFAULT_UST_TRACE_UID_PATH,
5965 reg->uid, reg->bits_per_long);
5966 if (ret < 0) {
5967 PERROR("snprintf snapshot path");
5968 goto error;
5969 }
5970
5971 /* Add the UST default trace dir to path. */
5972 cds_lfht_for_each_entry(reg->registry->channels->ht, &iter.iter,
5973 reg_chan, node.node) {
68808f4e
DG
5974 ret = consumer_snapshot_channel(socket, reg_chan->consumer_key,
5975 output, 0, usess->uid, usess->gid, pathname, wait,
d07ceecd 5976 nb_packets_per_stream);
8c924c7b
MD
5977 if (ret < 0) {
5978 goto error;
5979 }
5980 }
68808f4e
DG
5981 ret = consumer_snapshot_channel(socket,
5982 reg->registry->reg.ust->metadata_key, output, 1,
d07ceecd 5983 usess->uid, usess->gid, pathname, wait, 0);
8c924c7b
MD
5984 if (ret < 0) {
5985 goto error;
5986 }
af706bb7 5987 }
8c924c7b
MD
5988 break;
5989 }
5990 case LTTNG_BUFFER_PER_PID:
5991 {
5992 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
5993 struct consumer_socket *socket;
5994 struct lttng_ht_iter chan_iter;
5995 struct ust_app_channel *ua_chan;
5996 struct ust_app_session *ua_sess;
5997 struct ust_registry_session *registry;
5998
5999 ua_sess = lookup_session_by_app(usess, app);
6000 if (!ua_sess) {
6001 /* Session not associated with this app. */
6002 continue;
6003 }
af706bb7 6004
8c924c7b
MD
6005 /* Get the right consumer socket for the application. */
6006 socket = consumer_find_socket_by_bitness(app->bits_per_long,
6007 output->consumer);
6008 if (!socket) {
5c786ded 6009 ret = -EINVAL;
5c786ded
JD
6010 goto error;
6011 }
6012
8c924c7b
MD
6013 /* Add the UST default trace dir to path. */
6014 memset(pathname, 0, sizeof(pathname));
6015 ret = snprintf(pathname, sizeof(pathname), DEFAULT_UST_TRACE_DIR "/%s",
6016 ua_sess->path);
6dc3064a 6017 if (ret < 0) {
8c924c7b 6018 PERROR("snprintf snapshot path");
6dc3064a
DG
6019 goto error;
6020 }
6dc3064a 6021
8c924c7b
MD
6022 cds_lfht_for_each_entry(ua_sess->channels->ht, &chan_iter.iter,
6023 ua_chan, node.node) {
68808f4e
DG
6024 ret = consumer_snapshot_channel(socket, ua_chan->key, output,
6025 0, ua_sess->euid, ua_sess->egid, pathname, wait,
d07ceecd 6026 nb_packets_per_stream);
8c924c7b
MD
6027 if (ret < 0) {
6028 goto error;
6029 }
6030 }
6031
6032 registry = get_session_registry(ua_sess);
5e98072f
JR
6033 if (!registry) {
6034 DBG("Application session is being torn down. Abort snapshot record.");
6035 ret = -1;
6036 goto error;
6037 }
8c924c7b 6038 ret = consumer_snapshot_channel(socket, registry->metadata_key, output,
d07ceecd 6039 1, ua_sess->euid, ua_sess->egid, pathname, wait, 0);
8c924c7b
MD
6040 if (ret < 0) {
6041 goto error;
6042 }
6043 }
6044 break;
6045 }
6046 default:
6047 assert(0);
6048 break;
6dc3064a
DG
6049 }
6050
6051error:
6052 rcu_read_unlock();
6053 return ret;
6054}
5c786ded
JD
6055
6056/*
d07ceecd 6057 * Return the size taken by one more packet per stream.
5c786ded 6058 */
d07ceecd
MD
6059uint64_t ust_app_get_size_one_more_packet_per_stream(struct ltt_ust_session *usess,
6060 uint64_t cur_nr_packets)
5c786ded 6061{
d07ceecd 6062 uint64_t tot_size = 0;
5c786ded
JD
6063 struct ust_app *app;
6064 struct lttng_ht_iter iter;
6065
6066 assert(usess);
6067
6068 switch (usess->buffer_type) {
6069 case LTTNG_BUFFER_PER_UID:
6070 {
6071 struct buffer_reg_uid *reg;
6072
6073 cds_list_for_each_entry(reg, &usess->buffer_reg_uid_list, lnode) {
6074 struct buffer_reg_channel *reg_chan;
6075
b7064eaa 6076 rcu_read_lock();
5c786ded
JD
6077 cds_lfht_for_each_entry(reg->registry->channels->ht, &iter.iter,
6078 reg_chan, node.node) {
d07ceecd
MD
6079 if (cur_nr_packets >= reg_chan->num_subbuf) {
6080 /*
6081 * Don't take channel into account if we
6082 * already grab all its packets.
6083 */
6084 continue;
6085 }
6086 tot_size += reg_chan->subbuf_size * reg_chan->stream_count;
5c786ded 6087 }
b7064eaa 6088 rcu_read_unlock();
5c786ded
JD
6089 }
6090 break;
6091 }
6092 case LTTNG_BUFFER_PER_PID:
6093 {
6094 rcu_read_lock();
6095 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
6096 struct ust_app_channel *ua_chan;
6097 struct ust_app_session *ua_sess;
6098 struct lttng_ht_iter chan_iter;
6099
6100 ua_sess = lookup_session_by_app(usess, app);
6101 if (!ua_sess) {
6102 /* Session not associated with this app. */
6103 continue;
6104 }
6105
6106 cds_lfht_for_each_entry(ua_sess->channels->ht, &chan_iter.iter,
6107 ua_chan, node.node) {
d07ceecd
MD
6108 if (cur_nr_packets >= ua_chan->attr.num_subbuf) {
6109 /*
6110 * Don't take channel into account if we
6111 * already grab all its packets.
6112 */
6113 continue;
6114 }
6115 tot_size += ua_chan->attr.subbuf_size * ua_chan->streams.count;
5c786ded
JD
6116 }
6117 }
6118 rcu_read_unlock();
6119 break;
6120 }
6121 default:
6122 assert(0);
6123 break;
6124 }
6125
d07ceecd 6126 return tot_size;
5c786ded 6127}
fb83fe64
JD
6128
6129int ust_app_uid_get_channel_runtime_stats(uint64_t ust_session_id,
6130 struct cds_list_head *buffer_reg_uid_list,
6131 struct consumer_output *consumer, uint64_t uchan_id,
6132 int overwrite, uint64_t *discarded, uint64_t *lost)
6133{
6134 int ret;
6135 uint64_t consumer_chan_key;
6136
b1234e71
MD
6137 *discarded = 0;
6138 *lost = 0;
6139
fb83fe64
JD
6140 ret = buffer_reg_uid_consumer_channel_key(
6141 buffer_reg_uid_list, ust_session_id,
6142 uchan_id, &consumer_chan_key);
6143 if (ret < 0) {
b1234e71
MD
6144 /* Not found */
6145 ret = 0;
fb83fe64
JD
6146 goto end;
6147 }
6148
6149 if (overwrite) {
6150 ret = consumer_get_lost_packets(ust_session_id,
6151 consumer_chan_key, consumer, lost);
6152 } else {
6153 ret = consumer_get_discarded_events(ust_session_id,
6154 consumer_chan_key, consumer, discarded);
6155 }
6156
6157end:
6158 return ret;
6159}
6160
6161int ust_app_pid_get_channel_runtime_stats(struct ltt_ust_session *usess,
6162 struct ltt_ust_channel *uchan,
6163 struct consumer_output *consumer, int overwrite,
6164 uint64_t *discarded, uint64_t *lost)
6165{
6166 int ret = 0;
6167 struct lttng_ht_iter iter;
6168 struct lttng_ht_node_str *ua_chan_node;
6169 struct ust_app *app;
6170 struct ust_app_session *ua_sess;
6171 struct ust_app_channel *ua_chan;
6172
b1234e71
MD
6173 *discarded = 0;
6174 *lost = 0;
6175
fb83fe64
JD
6176 rcu_read_lock();
6177 /*
b1234e71
MD
6178 * Iterate over every registered applications. Sum counters for
6179 * all applications containing requested session and channel.
fb83fe64
JD
6180 */
6181 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
6182 struct lttng_ht_iter uiter;
6183
6184 ua_sess = lookup_session_by_app(usess, app);
6185 if (ua_sess == NULL) {
6186 continue;
6187 }
6188
6189 /* Get channel */
ee022399 6190 lttng_ht_lookup(ua_sess->channels, (void *) uchan->name, &uiter);
fb83fe64
JD
6191 ua_chan_node = lttng_ht_iter_get_node_str(&uiter);
6192 /* If the session is found for the app, the channel must be there */
6193 assert(ua_chan_node);
6194
6195 ua_chan = caa_container_of(ua_chan_node, struct ust_app_channel, node);
6196
6197 if (overwrite) {
b1234e71
MD
6198 uint64_t _lost;
6199
fb83fe64 6200 ret = consumer_get_lost_packets(usess->id, ua_chan->key,
b1234e71
MD
6201 consumer, &_lost);
6202 if (ret < 0) {
6203 break;
6204 }
6205 (*lost) += _lost;
fb83fe64 6206 } else {
b1234e71
MD
6207 uint64_t _discarded;
6208
fb83fe64 6209 ret = consumer_get_discarded_events(usess->id,
b1234e71
MD
6210 ua_chan->key, consumer, &_discarded);
6211 if (ret < 0) {
6212 break;
6213 }
6214 (*discarded) += _discarded;
fb83fe64 6215 }
fb83fe64
JD
6216 }
6217
fb83fe64
JD
6218 rcu_read_unlock();
6219 return ret;
6220}
c2561365
JD
6221
6222static
6223int ust_app_regenerate_statedump(struct ltt_ust_session *usess,
6224 struct ust_app *app)
6225{
6226 int ret = 0;
6227 struct ust_app_session *ua_sess;
6228
6229 DBG("Regenerating the metadata for ust app pid %d", app->pid);
6230
6231 rcu_read_lock();
6232
6233 ua_sess = lookup_session_by_app(usess, app);
6234 if (ua_sess == NULL) {
6235 /* The session is in teardown process. Ignore and continue. */
6236 goto end;
6237 }
6238
6239 pthread_mutex_lock(&ua_sess->lock);
6240
6241 if (ua_sess->deleted) {
6242 goto end_unlock;
6243 }
6244
6245 pthread_mutex_lock(&app->sock_lock);
6246 ret = ustctl_regenerate_statedump(app->sock, ua_sess->handle);
6247 pthread_mutex_unlock(&app->sock_lock);
6248
6249end_unlock:
6250 pthread_mutex_unlock(&ua_sess->lock);
6251
6252end:
6253 rcu_read_unlock();
6254 health_code_update();
6255 return ret;
6256}
6257
6258/*
6259 * Regenerate the statedump for each app in the session.
6260 */
6261int ust_app_regenerate_statedump_all(struct ltt_ust_session *usess)
6262{
6263 int ret = 0;
6264 struct lttng_ht_iter iter;
6265 struct ust_app *app;
6266
6267 DBG("Regenerating the metadata for all UST apps");
6268
6269 rcu_read_lock();
6270
6271 cds_lfht_for_each_entry(ust_app_ht->ht, &iter.iter, app, pid_n.node) {
6272 if (!app->compatible) {
6273 continue;
6274 }
6275
6276 ret = ust_app_regenerate_statedump(usess, app);
6277 if (ret < 0) {
6278 /* Continue to the next app even on error */
6279 continue;
6280 }
6281 }
6282
6283 rcu_read_unlock();
6284
6285 return 0;
6286}
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