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[lttng-tools.git] / src / common / ust-consumer / ust-consumer.c
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3bd1e081 1/*
a4eb26f0 2 * Copyright (C) 2011 EfficiOS Inc.
ab5be9fa
MJ
3 * Copyright (C) 2011 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
4 * Copyright (C) 2017 Jérémie Galarneau <jeremie.galarneau@efficios.com>
3bd1e081 5 *
ab5be9fa 6 * SPDX-License-Identifier: GPL-2.0-only
3bd1e081 7 *
3bd1e081
MD
8 */
9
6c1c0768 10#define _LGPL_SOURCE
3bd1e081 11#include <assert.h>
f02e1e8a 12#include <lttng/ust-ctl.h>
3bd1e081
MD
13#include <poll.h>
14#include <pthread.h>
15#include <stdlib.h>
16#include <string.h>
17#include <sys/mman.h>
18#include <sys/socket.h>
dbb5dfe6 19#include <sys/stat.h>
3bd1e081 20#include <sys/types.h>
77c7c900 21#include <inttypes.h>
3bd1e081 22#include <unistd.h>
ffe60014 23#include <urcu/list.h>
331744e3 24#include <signal.h>
02d02e31 25#include <stdbool.h>
bdc8d1bb 26#include <stdint.h>
0857097f 27
51a9e1c7 28#include <bin/lttng-consumerd/health-consumerd.h>
990570ed 29#include <common/common.h>
10a8a223 30#include <common/sessiond-comm/sessiond-comm.h>
00e2e675 31#include <common/relayd/relayd.h>
dbb5dfe6 32#include <common/compat/fcntl.h>
f263b7fd 33#include <common/compat/endian.h>
c8fea79c
JR
34#include <common/consumer/consumer-metadata-cache.h>
35#include <common/consumer/consumer-stream.h>
36#include <common/consumer/consumer-timer.h>
fe4477ee 37#include <common/utils.h>
309167d2 38#include <common/index/index.h>
bdc8d1bb 39#include <common/consumer/consumer.h>
e426953d 40#include <common/optional.h>
10a8a223
DG
41
42#include "ust-consumer.h"
3bd1e081 43
45863397 44#define INT_MAX_STR_LEN 12 /* includes \0 */
4628484a 45
3bd1e081
MD
46extern struct lttng_consumer_global_data consumer_data;
47extern int consumer_poll_timeout;
3bd1e081
MD
48
49/*
ffe60014
DG
50 * Free channel object and all streams associated with it. This MUST be used
51 * only and only if the channel has _NEVER_ been added to the global channel
52 * hash table.
3bd1e081 53 */
ffe60014 54static void destroy_channel(struct lttng_consumer_channel *channel)
3bd1e081 55{
ffe60014
DG
56 struct lttng_consumer_stream *stream, *stmp;
57
58 assert(channel);
59
60 DBG("UST consumer cleaning stream list");
61
62 cds_list_for_each_entry_safe(stream, stmp, &channel->streams.head,
63 send_node) {
9ce5646a
MD
64
65 health_code_update();
66
ffe60014
DG
67 cds_list_del(&stream->send_node);
68 ustctl_destroy_stream(stream->ustream);
d2956687 69 lttng_trace_chunk_put(stream->trace_chunk);
ffe60014
DG
70 free(stream);
71 }
72
73 /*
74 * If a channel is available meaning that was created before the streams
75 * were, delete it.
76 */
77 if (channel->uchan) {
78 lttng_ustconsumer_del_channel(channel);
b83e03c4 79 lttng_ustconsumer_free_channel(channel);
ffe60014 80 }
ab4df052
JR
81
82 if (channel->trace_chunk) {
83 lttng_trace_chunk_put(channel->trace_chunk);
84 }
85
ffe60014
DG
86 free(channel);
87}
3bd1e081
MD
88
89/*
ffe60014 90 * Add channel to internal consumer state.
3bd1e081 91 *
ffe60014 92 * Returns 0 on success or else a negative value.
3bd1e081 93 */
ffe60014
DG
94static int add_channel(struct lttng_consumer_channel *channel,
95 struct lttng_consumer_local_data *ctx)
3bd1e081
MD
96{
97 int ret = 0;
98
ffe60014
DG
99 assert(channel);
100 assert(ctx);
101
102 if (ctx->on_recv_channel != NULL) {
103 ret = ctx->on_recv_channel(channel);
104 if (ret == 0) {
d8ef542d 105 ret = consumer_add_channel(channel, ctx);
ffe60014
DG
106 } else if (ret < 0) {
107 /* Most likely an ENOMEM. */
108 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_OUTFD_ERROR);
109 goto error;
110 }
111 } else {
d8ef542d 112 ret = consumer_add_channel(channel, ctx);
3bd1e081
MD
113 }
114
d88aee68 115 DBG("UST consumer channel added (key: %" PRIu64 ")", channel->key);
ffe60014
DG
116
117error:
3bd1e081
MD
118 return ret;
119}
120
ffe60014
DG
121/*
122 * Allocate and return a consumer stream object. If _alloc_ret is not NULL, the
123 * error value if applicable is set in it else it is kept untouched.
3bd1e081 124 *
ffe60014 125 * Return NULL on error else the newly allocated stream object.
3bd1e081 126 */
ffe60014
DG
127static struct lttng_consumer_stream *allocate_stream(int cpu, int key,
128 struct lttng_consumer_channel *channel,
d2956687 129 struct lttng_consumer_local_data *ctx, int *_alloc_ret)
ffe60014
DG
130{
131 int alloc_ret;
132 struct lttng_consumer_stream *stream = NULL;
133
134 assert(channel);
135 assert(ctx);
136
bdc8d1bb 137 stream = consumer_stream_create(
212cee3c
JG
138 channel,
139 channel->key,
ffe60014 140 key,
ffe60014 141 channel->name,
ffe60014
DG
142 channel->relayd_id,
143 channel->session_id,
d2956687 144 channel->trace_chunk,
ffe60014
DG
145 cpu,
146 &alloc_ret,
4891ece8 147 channel->type,
d2956687 148 channel->monitor);
ffe60014
DG
149 if (stream == NULL) {
150 switch (alloc_ret) {
151 case -ENOENT:
152 /*
153 * We could not find the channel. Can happen if cpu hotplug
154 * happens while tearing down.
155 */
156 DBG3("Could not find channel");
157 break;
158 case -ENOMEM:
159 case -EINVAL:
160 default:
161 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_OUTFD_ERROR);
162 break;
163 }
164 goto error;
165 }
166
d9a2e16e 167 consumer_stream_update_channel_attributes(stream, channel);
ffe60014
DG
168
169error:
170 if (_alloc_ret) {
171 *_alloc_ret = alloc_ret;
172 }
173 return stream;
174}
175
176/*
177 * Send the given stream pointer to the corresponding thread.
178 *
179 * Returns 0 on success else a negative value.
180 */
181static int send_stream_to_thread(struct lttng_consumer_stream *stream,
182 struct lttng_consumer_local_data *ctx)
183{
dae10966
DG
184 int ret;
185 struct lttng_pipe *stream_pipe;
ffe60014
DG
186
187 /* Get the right pipe where the stream will be sent. */
188 if (stream->metadata_flag) {
66d583dc 189 consumer_add_metadata_stream(stream);
dae10966 190 stream_pipe = ctx->consumer_metadata_pipe;
ffe60014 191 } else {
66d583dc 192 consumer_add_data_stream(stream);
dae10966 193 stream_pipe = ctx->consumer_data_pipe;
ffe60014
DG
194 }
195
5ab66908
MD
196 /*
197 * From this point on, the stream's ownership has been moved away from
a8086cf4
JR
198 * the channel and it becomes globally visible. Hence, remove it from
199 * the local stream list to prevent the stream from being both local and
200 * global.
5ab66908
MD
201 */
202 stream->globally_visible = 1;
a8086cf4 203 cds_list_del(&stream->send_node);
5ab66908 204
dae10966 205 ret = lttng_pipe_write(stream_pipe, &stream, sizeof(stream));
ffe60014 206 if (ret < 0) {
dae10966
DG
207 ERR("Consumer write %s stream to pipe %d",
208 stream->metadata_flag ? "metadata" : "data",
209 lttng_pipe_get_writefd(stream_pipe));
5ab66908
MD
210 if (stream->metadata_flag) {
211 consumer_del_stream_for_metadata(stream);
212 } else {
213 consumer_del_stream_for_data(stream);
214 }
a8086cf4 215 goto error;
ffe60014 216 }
a8086cf4 217
5ab66908 218error:
ffe60014
DG
219 return ret;
220}
221
4628484a
MD
222static
223int get_stream_shm_path(char *stream_shm_path, const char *shm_path, int cpu)
224{
45863397 225 char cpu_nr[INT_MAX_STR_LEN]; /* int max len */
4628484a
MD
226 int ret;
227
228 strncpy(stream_shm_path, shm_path, PATH_MAX);
229 stream_shm_path[PATH_MAX - 1] = '\0';
45863397 230 ret = snprintf(cpu_nr, INT_MAX_STR_LEN, "%i", cpu);
67f8cb8d
MD
231 if (ret < 0) {
232 PERROR("snprintf");
4628484a
MD
233 goto end;
234 }
235 strncat(stream_shm_path, cpu_nr,
236 PATH_MAX - strlen(stream_shm_path) - 1);
237 ret = 0;
238end:
239 return ret;
240}
241
d88aee68
DG
242/*
243 * Create streams for the given channel using liblttng-ust-ctl.
d2956687 244 * The channel lock must be acquired by the caller.
d88aee68
DG
245 *
246 * Return 0 on success else a negative value.
247 */
ffe60014 248static int create_ust_streams(struct lttng_consumer_channel *channel,
d2956687 249 struct lttng_consumer_local_data *ctx)
ffe60014
DG
250{
251 int ret, cpu = 0;
252 struct ustctl_consumer_stream *ustream;
253 struct lttng_consumer_stream *stream;
d2956687 254 pthread_mutex_t *current_stream_lock = NULL;
ffe60014
DG
255
256 assert(channel);
257 assert(ctx);
258
259 /*
260 * While a stream is available from ustctl. When NULL is returned, we've
261 * reached the end of the possible stream for the channel.
262 */
263 while ((ustream = ustctl_create_stream(channel->uchan, cpu))) {
264 int wait_fd;
04ef1097 265 int ust_metadata_pipe[2];
ffe60014 266
9ce5646a
MD
267 health_code_update();
268
04ef1097
MD
269 if (channel->type == CONSUMER_CHANNEL_TYPE_METADATA && channel->monitor) {
270 ret = utils_create_pipe_cloexec_nonblock(ust_metadata_pipe);
271 if (ret < 0) {
272 ERR("Create ust metadata poll pipe");
273 goto error;
274 }
275 wait_fd = ust_metadata_pipe[0];
276 } else {
277 wait_fd = ustctl_stream_get_wait_fd(ustream);
278 }
ffe60014
DG
279
280 /* Allocate consumer stream object. */
d2956687 281 stream = allocate_stream(cpu, wait_fd, channel, ctx, &ret);
ffe60014
DG
282 if (!stream) {
283 goto error_alloc;
284 }
285 stream->ustream = ustream;
286 /*
287 * Store it so we can save multiple function calls afterwards since
288 * this value is used heavily in the stream threads. This is UST
289 * specific so this is why it's done after allocation.
290 */
291 stream->wait_fd = wait_fd;
292
b31398bb
DG
293 /*
294 * Increment channel refcount since the channel reference has now been
295 * assigned in the allocation process above.
296 */
10a50311
JD
297 if (stream->chan->monitor) {
298 uatomic_inc(&stream->chan->refcount);
299 }
b31398bb 300
d2956687
JG
301 pthread_mutex_lock(&stream->lock);
302 current_stream_lock = &stream->lock;
ffe60014
DG
303 /*
304 * Order is important this is why a list is used. On error, the caller
305 * should clean this list.
306 */
307 cds_list_add_tail(&stream->send_node, &channel->streams.head);
308
309 ret = ustctl_get_max_subbuf_size(stream->ustream,
310 &stream->max_sb_size);
311 if (ret < 0) {
312 ERR("ustctl_get_max_subbuf_size failed for stream %s",
313 stream->name);
314 goto error;
315 }
316
317 /* Do actions once stream has been received. */
318 if (ctx->on_recv_stream) {
319 ret = ctx->on_recv_stream(stream);
320 if (ret < 0) {
321 goto error;
322 }
323 }
324
d88aee68 325 DBG("UST consumer add stream %s (key: %" PRIu64 ") with relayd id %" PRIu64,
ffe60014
DG
326 stream->name, stream->key, stream->relayd_stream_id);
327
328 /* Set next CPU stream. */
329 channel->streams.count = ++cpu;
d88aee68
DG
330
331 /* Keep stream reference when creating metadata. */
332 if (channel->type == CONSUMER_CHANNEL_TYPE_METADATA) {
333 channel->metadata_stream = stream;
8de4f941
JG
334 if (channel->monitor) {
335 /* Set metadata poll pipe if we created one */
336 memcpy(stream->ust_metadata_poll_pipe,
337 ust_metadata_pipe,
338 sizeof(ust_metadata_pipe));
339 }
d88aee68 340 }
d2956687
JG
341 pthread_mutex_unlock(&stream->lock);
342 current_stream_lock = NULL;
ffe60014
DG
343 }
344
345 return 0;
346
347error:
348error_alloc:
d2956687
JG
349 if (current_stream_lock) {
350 pthread_mutex_unlock(current_stream_lock);
351 }
ffe60014
DG
352 return ret;
353}
354
4628484a
MD
355/*
356 * create_posix_shm is never called concurrently within a process.
357 */
358static
359int create_posix_shm(void)
360{
361 char tmp_name[NAME_MAX];
362 int shmfd, ret;
363
364 ret = snprintf(tmp_name, NAME_MAX, "/ust-shm-consumer-%d", getpid());
365 if (ret < 0) {
366 PERROR("snprintf");
367 return -1;
368 }
369 /*
370 * Allocate shm, and immediately unlink its shm oject, keeping
371 * only the file descriptor as a reference to the object.
372 * We specifically do _not_ use the / at the beginning of the
373 * pathname so that some OS implementations can keep it local to
374 * the process (POSIX leaves this implementation-defined).
375 */
376 shmfd = shm_open(tmp_name, O_CREAT | O_EXCL | O_RDWR, 0700);
377 if (shmfd < 0) {
378 PERROR("shm_open");
379 goto error_shm_open;
380 }
381 ret = shm_unlink(tmp_name);
382 if (ret < 0 && errno != ENOENT) {
383 PERROR("shm_unlink");
384 goto error_shm_release;
385 }
386 return shmfd;
387
388error_shm_release:
389 ret = close(shmfd);
390 if (ret) {
391 PERROR("close");
392 }
393error_shm_open:
394 return -1;
395}
396
d2956687
JG
397static int open_ust_stream_fd(struct lttng_consumer_channel *channel, int cpu,
398 const struct lttng_credentials *session_credentials)
4628484a
MD
399{
400 char shm_path[PATH_MAX];
401 int ret;
402
403 if (!channel->shm_path[0]) {
404 return create_posix_shm();
405 }
406 ret = get_stream_shm_path(shm_path, channel->shm_path, cpu);
407 if (ret) {
408 goto error_shm_path;
409 }
410 return run_as_open(shm_path,
411 O_RDWR | O_CREAT | O_EXCL, S_IRUSR | S_IWUSR,
d2956687 412 session_credentials->uid, session_credentials->gid);
4628484a
MD
413
414error_shm_path:
415 return -1;
416}
417
ffe60014
DG
418/*
419 * Create an UST channel with the given attributes and send it to the session
420 * daemon using the ust ctl API.
421 *
422 * Return 0 on success or else a negative value.
423 */
4628484a
MD
424static int create_ust_channel(struct lttng_consumer_channel *channel,
425 struct ustctl_consumer_channel_attr *attr,
426 struct ustctl_consumer_channel **ust_chanp)
ffe60014 427{
4628484a
MD
428 int ret, nr_stream_fds, i, j;
429 int *stream_fds;
430 struct ustctl_consumer_channel *ust_channel;
ffe60014 431
4628484a 432 assert(channel);
ffe60014 433 assert(attr);
4628484a 434 assert(ust_chanp);
d2956687 435 assert(channel->buffer_credentials.is_set);
ffe60014
DG
436
437 DBG3("Creating channel to ustctl with attr: [overwrite: %d, "
438 "subbuf_size: %" PRIu64 ", num_subbuf: %" PRIu64 ", "
439 "switch_timer_interval: %u, read_timer_interval: %u, "
440 "output: %d, type: %d", attr->overwrite, attr->subbuf_size,
441 attr->num_subbuf, attr->switch_timer_interval,
442 attr->read_timer_interval, attr->output, attr->type);
443
4628484a
MD
444 if (channel->type == CONSUMER_CHANNEL_TYPE_METADATA)
445 nr_stream_fds = 1;
446 else
447 nr_stream_fds = ustctl_get_nr_stream_per_channel();
448 stream_fds = zmalloc(nr_stream_fds * sizeof(*stream_fds));
449 if (!stream_fds) {
450 ret = -1;
451 goto error_alloc;
452 }
453 for (i = 0; i < nr_stream_fds; i++) {
d2956687
JG
454 stream_fds[i] = open_ust_stream_fd(channel, i,
455 &channel->buffer_credentials.value);
4628484a
MD
456 if (stream_fds[i] < 0) {
457 ret = -1;
458 goto error_open;
459 }
460 }
461 ust_channel = ustctl_create_channel(attr, stream_fds, nr_stream_fds);
462 if (!ust_channel) {
ffe60014
DG
463 ret = -1;
464 goto error_create;
465 }
4628484a
MD
466 channel->nr_stream_fds = nr_stream_fds;
467 channel->stream_fds = stream_fds;
468 *ust_chanp = ust_channel;
ffe60014
DG
469
470 return 0;
471
472error_create:
4628484a
MD
473error_open:
474 for (j = i - 1; j >= 0; j--) {
475 int closeret;
476
477 closeret = close(stream_fds[j]);
478 if (closeret) {
479 PERROR("close");
480 }
481 if (channel->shm_path[0]) {
482 char shm_path[PATH_MAX];
483
484 closeret = get_stream_shm_path(shm_path,
485 channel->shm_path, j);
486 if (closeret) {
487 ERR("Cannot get stream shm path");
488 }
489 closeret = run_as_unlink(shm_path,
d2956687
JG
490 channel->buffer_credentials.value.uid,
491 channel->buffer_credentials.value.gid);
4628484a 492 if (closeret) {
4628484a
MD
493 PERROR("unlink %s", shm_path);
494 }
495 }
496 }
497 /* Try to rmdir all directories under shm_path root. */
498 if (channel->root_shm_path[0]) {
602766ec 499 (void) run_as_rmdir_recursive(channel->root_shm_path,
d2956687 500 channel->buffer_credentials.value.uid,
f75c5439
MD
501 channel->buffer_credentials.value.gid,
502 LTTNG_DIRECTORY_HANDLE_SKIP_NON_EMPTY_FLAG);
4628484a
MD
503 }
504 free(stream_fds);
505error_alloc:
ffe60014
DG
506 return ret;
507}
508
d88aee68
DG
509/*
510 * Send a single given stream to the session daemon using the sock.
511 *
512 * Return 0 on success else a negative value.
513 */
ffe60014
DG
514static int send_sessiond_stream(int sock, struct lttng_consumer_stream *stream)
515{
516 int ret;
517
518 assert(stream);
519 assert(sock >= 0);
520
3eb914c0 521 DBG("UST consumer sending stream %" PRIu64 " to sessiond", stream->key);
ffe60014
DG
522
523 /* Send stream to session daemon. */
524 ret = ustctl_send_stream_to_sessiond(sock, stream->ustream);
525 if (ret < 0) {
526 goto error;
527 }
528
ffe60014
DG
529error:
530 return ret;
531}
532
533/*
a3a86f35 534 * Send channel to sessiond and relayd if applicable.
ffe60014 535 *
d88aee68 536 * Return 0 on success or else a negative value.
ffe60014 537 */
a3a86f35 538static int send_channel_to_sessiond_and_relayd(int sock,
ffe60014
DG
539 struct lttng_consumer_channel *channel,
540 struct lttng_consumer_local_data *ctx, int *relayd_error)
541{
0c759fc9 542 int ret, ret_code = LTTCOMM_CONSUMERD_SUCCESS;
ffe60014 543 struct lttng_consumer_stream *stream;
a4baae1b 544 uint64_t net_seq_idx = -1ULL;
ffe60014
DG
545
546 assert(channel);
547 assert(ctx);
548 assert(sock >= 0);
549
550 DBG("UST consumer sending channel %s to sessiond", channel->name);
551
62285ea4
DG
552 if (channel->relayd_id != (uint64_t) -1ULL) {
553 cds_list_for_each_entry(stream, &channel->streams.head, send_node) {
9ce5646a
MD
554
555 health_code_update();
556
62285ea4 557 /* Try to send the stream to the relayd if one is available. */
a3a86f35
JG
558 DBG("Sending stream %" PRIu64 " of channel \"%s\" to relayd",
559 stream->key, channel->name);
62285ea4
DG
560 ret = consumer_send_relayd_stream(stream, stream->chan->pathname);
561 if (ret < 0) {
562 /*
563 * Flag that the relayd was the problem here probably due to a
564 * communicaton error on the socket.
565 */
566 if (relayd_error) {
567 *relayd_error = 1;
568 }
725d28b2 569 ret_code = LTTCOMM_CONSUMERD_RELAYD_FAIL;
ffe60014 570 }
a4baae1b
JD
571 if (net_seq_idx == -1ULL) {
572 net_seq_idx = stream->net_seq_idx;
573 }
574 }
f2a444f1 575 }
ffe60014 576
f2a444f1
DG
577 /* Inform sessiond that we are about to send channel and streams. */
578 ret = consumer_send_status_msg(sock, ret_code);
0c759fc9 579 if (ret < 0 || ret_code != LTTCOMM_CONSUMERD_SUCCESS) {
f2a444f1
DG
580 /*
581 * Either the session daemon is not responding or the relayd died so we
582 * stop now.
583 */
584 goto error;
585 }
586
587 /* Send channel to sessiond. */
588 ret = ustctl_send_channel_to_sessiond(sock, channel->uchan);
589 if (ret < 0) {
590 goto error;
591 }
592
593 ret = ustctl_channel_close_wakeup_fd(channel->uchan);
594 if (ret < 0) {
595 goto error;
596 }
597
598 /* The channel was sent successfully to the sessiond at this point. */
599 cds_list_for_each_entry(stream, &channel->streams.head, send_node) {
9ce5646a
MD
600
601 health_code_update();
602
ffe60014
DG
603 /* Send stream to session daemon. */
604 ret = send_sessiond_stream(sock, stream);
605 if (ret < 0) {
606 goto error;
607 }
608 }
609
610 /* Tell sessiond there is no more stream. */
611 ret = ustctl_send_stream_to_sessiond(sock, NULL);
612 if (ret < 0) {
613 goto error;
614 }
615
616 DBG("UST consumer NULL stream sent to sessiond");
617
618 return 0;
619
620error:
0c759fc9 621 if (ret_code != LTTCOMM_CONSUMERD_SUCCESS) {
f2a444f1
DG
622 ret = -1;
623 }
ffe60014
DG
624 return ret;
625}
626
627/*
628 * Creates a channel and streams and add the channel it to the channel internal
629 * state. The created stream must ONLY be sent once the GET_CHANNEL command is
630 * received.
631 *
632 * Return 0 on success or else, a negative value is returned and the channel
633 * MUST be destroyed by consumer_del_channel().
634 */
75cfe9e6 635static int ask_channel(struct lttng_consumer_local_data *ctx,
ffe60014 636 struct lttng_consumer_channel *channel,
d2956687 637 struct ustctl_consumer_channel_attr *attr)
3bd1e081
MD
638{
639 int ret;
640
ffe60014
DG
641 assert(ctx);
642 assert(channel);
643 assert(attr);
644
645 /*
646 * This value is still used by the kernel consumer since for the kernel,
647 * the stream ownership is not IN the consumer so we need to have the
648 * number of left stream that needs to be initialized so we can know when
649 * to delete the channel (see consumer.c).
650 *
651 * As for the user space tracer now, the consumer creates and sends the
652 * stream to the session daemon which only sends them to the application
653 * once every stream of a channel is received making this value useless
654 * because we they will be added to the poll thread before the application
655 * receives them. This ensures that a stream can not hang up during
656 * initilization of a channel.
657 */
658 channel->nb_init_stream_left = 0;
659
660 /* The reply msg status is handled in the following call. */
4628484a 661 ret = create_ust_channel(channel, attr, &channel->uchan);
ffe60014 662 if (ret < 0) {
10a50311 663 goto end;
3bd1e081
MD
664 }
665
d8ef542d
MD
666 channel->wait_fd = ustctl_channel_get_wait_fd(channel->uchan);
667
10a50311
JD
668 /*
669 * For the snapshots (no monitor), we create the metadata streams
670 * on demand, not during the channel creation.
671 */
672 if (channel->type == CONSUMER_CHANNEL_TYPE_METADATA && !channel->monitor) {
673 ret = 0;
674 goto end;
675 }
676
ffe60014 677 /* Open all streams for this channel. */
d2956687
JG
678 pthread_mutex_lock(&channel->lock);
679 ret = create_ust_streams(channel, ctx);
680 pthread_mutex_unlock(&channel->lock);
ffe60014 681 if (ret < 0) {
10a50311 682 goto end;
ffe60014
DG
683 }
684
10a50311 685end:
3bd1e081
MD
686 return ret;
687}
688
d88aee68
DG
689/*
690 * Send all stream of a channel to the right thread handling it.
691 *
692 * On error, return a negative value else 0 on success.
693 */
694static int send_streams_to_thread(struct lttng_consumer_channel *channel,
695 struct lttng_consumer_local_data *ctx)
696{
697 int ret = 0;
698 struct lttng_consumer_stream *stream, *stmp;
699
700 assert(channel);
701 assert(ctx);
702
703 /* Send streams to the corresponding thread. */
704 cds_list_for_each_entry_safe(stream, stmp, &channel->streams.head,
705 send_node) {
9ce5646a
MD
706
707 health_code_update();
708
d88aee68
DG
709 /* Sending the stream to the thread. */
710 ret = send_stream_to_thread(stream, ctx);
711 if (ret < 0) {
712 /*
713 * If we are unable to send the stream to the thread, there is
714 * a big problem so just stop everything.
715 */
716 goto error;
717 }
d88aee68
DG
718 }
719
720error:
721 return ret;
722}
723
7972aab2
DG
724/*
725 * Flush channel's streams using the given key to retrieve the channel.
726 *
727 * Return 0 on success else an LTTng error code.
728 */
729static int flush_channel(uint64_t chan_key)
730{
731 int ret = 0;
732 struct lttng_consumer_channel *channel;
733 struct lttng_consumer_stream *stream;
734 struct lttng_ht *ht;
735 struct lttng_ht_iter iter;
736
8fd623e0 737 DBG("UST consumer flush channel key %" PRIu64, chan_key);
7972aab2 738
a500c257 739 rcu_read_lock();
7972aab2
DG
740 channel = consumer_find_channel(chan_key);
741 if (!channel) {
8fd623e0 742 ERR("UST consumer flush channel %" PRIu64 " not found", chan_key);
7972aab2
DG
743 ret = LTTNG_ERR_UST_CHAN_NOT_FOUND;
744 goto error;
745 }
746
747 ht = consumer_data.stream_per_chan_id_ht;
748
749 /* For each stream of the channel id, flush it. */
7972aab2
DG
750 cds_lfht_for_each_entry_duplicate(ht->ht,
751 ht->hash_fct(&channel->key, lttng_ht_seed), ht->match_fct,
752 &channel->key, &iter.iter, stream, node_channel_id.node) {
9ce5646a
MD
753
754 health_code_update();
755
0dd01979 756 pthread_mutex_lock(&stream->lock);
5cfcab67
JR
757
758 /*
759 * Protect against concurrent teardown of a stream.
760 */
761 if (cds_lfht_is_node_deleted(&stream->node.node)) {
762 goto next;
763 }
764
0dd01979
MD
765 if (!stream->quiescent) {
766 ustctl_flush_buffer(stream->ustream, 0);
767 stream->quiescent = true;
768 }
5cfcab67 769next:
0dd01979
MD
770 pthread_mutex_unlock(&stream->lock);
771 }
772error:
773 rcu_read_unlock();
774 return ret;
775}
776
777/*
778 * Clear quiescent state from channel's streams using the given key to
779 * retrieve the channel.
780 *
781 * Return 0 on success else an LTTng error code.
782 */
783static int clear_quiescent_channel(uint64_t chan_key)
784{
785 int ret = 0;
786 struct lttng_consumer_channel *channel;
787 struct lttng_consumer_stream *stream;
788 struct lttng_ht *ht;
789 struct lttng_ht_iter iter;
790
791 DBG("UST consumer clear quiescent channel key %" PRIu64, chan_key);
792
793 rcu_read_lock();
794 channel = consumer_find_channel(chan_key);
795 if (!channel) {
796 ERR("UST consumer clear quiescent channel %" PRIu64 " not found", chan_key);
797 ret = LTTNG_ERR_UST_CHAN_NOT_FOUND;
798 goto error;
799 }
800
801 ht = consumer_data.stream_per_chan_id_ht;
802
803 /* For each stream of the channel id, clear quiescent state. */
804 cds_lfht_for_each_entry_duplicate(ht->ht,
805 ht->hash_fct(&channel->key, lttng_ht_seed), ht->match_fct,
806 &channel->key, &iter.iter, stream, node_channel_id.node) {
807
808 health_code_update();
809
810 pthread_mutex_lock(&stream->lock);
811 stream->quiescent = false;
812 pthread_mutex_unlock(&stream->lock);
7972aab2 813 }
7972aab2 814error:
a500c257 815 rcu_read_unlock();
7972aab2
DG
816 return ret;
817}
818
d88aee68
DG
819/*
820 * Close metadata stream wakeup_fd using the given key to retrieve the channel.
821 *
822 * Return 0 on success else an LTTng error code.
823 */
824static int close_metadata(uint64_t chan_key)
825{
ea88ca2a 826 int ret = 0;
d88aee68 827 struct lttng_consumer_channel *channel;
f65a74be 828 unsigned int channel_monitor;
d88aee68 829
8fd623e0 830 DBG("UST consumer close metadata key %" PRIu64, chan_key);
d88aee68
DG
831
832 channel = consumer_find_channel(chan_key);
833 if (!channel) {
84cc9aa0
DG
834 /*
835 * This is possible if the metadata thread has issue a delete because
836 * the endpoint point of the stream hung up. There is no way the
837 * session daemon can know about it thus use a DBG instead of an actual
838 * error.
839 */
840 DBG("UST consumer close metadata %" PRIu64 " not found", chan_key);
d88aee68
DG
841 ret = LTTNG_ERR_UST_CHAN_NOT_FOUND;
842 goto error;
843 }
844
ea88ca2a 845 pthread_mutex_lock(&consumer_data.lock);
a9838785 846 pthread_mutex_lock(&channel->lock);
f65a74be 847 channel_monitor = channel->monitor;
73811ecc
DG
848 if (cds_lfht_is_node_deleted(&channel->node.node)) {
849 goto error_unlock;
850 }
851
6d574024 852 lttng_ustconsumer_close_metadata(channel);
f65a74be
JG
853 pthread_mutex_unlock(&channel->lock);
854 pthread_mutex_unlock(&consumer_data.lock);
d88aee68 855
f65a74be
JG
856 /*
857 * The ownership of a metadata channel depends on the type of
858 * session to which it belongs. In effect, the monitor flag is checked
859 * to determine if this metadata channel is in "snapshot" mode or not.
860 *
861 * In the non-snapshot case, the metadata channel is created along with
862 * a single stream which will remain present until the metadata channel
863 * is destroyed (on the destruction of its session). In this case, the
864 * metadata stream in "monitored" by the metadata poll thread and holds
865 * the ownership of its channel.
866 *
867 * Closing the metadata will cause the metadata stream's "metadata poll
868 * pipe" to be closed. Closing this pipe will wake-up the metadata poll
869 * thread which will teardown the metadata stream which, in return,
870 * deletes the metadata channel.
871 *
872 * In the snapshot case, the metadata stream is created and destroyed
873 * on every snapshot record. Since the channel doesn't have an owner
874 * other than the session daemon, it is safe to destroy it immediately
875 * on reception of the CLOSE_METADATA command.
876 */
877 if (!channel_monitor) {
878 /*
879 * The channel and consumer_data locks must be
880 * released before this call since consumer_del_channel
881 * re-acquires the channel and consumer_data locks to teardown
882 * the channel and queue its reclamation by the "call_rcu"
883 * worker thread.
884 */
885 consumer_del_channel(channel);
886 }
887
888 return ret;
ea88ca2a 889error_unlock:
a9838785 890 pthread_mutex_unlock(&channel->lock);
ea88ca2a 891 pthread_mutex_unlock(&consumer_data.lock);
d88aee68
DG
892error:
893 return ret;
894}
895
896/*
897 * RCU read side lock MUST be acquired before calling this function.
898 *
899 * Return 0 on success else an LTTng error code.
900 */
901static int setup_metadata(struct lttng_consumer_local_data *ctx, uint64_t key)
902{
903 int ret;
904 struct lttng_consumer_channel *metadata;
905
8fd623e0 906 DBG("UST consumer setup metadata key %" PRIu64, key);
d88aee68
DG
907
908 metadata = consumer_find_channel(key);
909 if (!metadata) {
910 ERR("UST consumer push metadata %" PRIu64 " not found", key);
911 ret = LTTNG_ERR_UST_CHAN_NOT_FOUND;
10a50311
JD
912 goto end;
913 }
914
915 /*
916 * In no monitor mode, the metadata channel has no stream(s) so skip the
917 * ownership transfer to the metadata thread.
918 */
919 if (!metadata->monitor) {
920 DBG("Metadata channel in no monitor");
921 ret = 0;
922 goto end;
d88aee68
DG
923 }
924
925 /*
926 * Send metadata stream to relayd if one available. Availability is
927 * known if the stream is still in the list of the channel.
928 */
929 if (cds_list_empty(&metadata->streams.head)) {
930 ERR("Metadata channel key %" PRIu64 ", no stream available.", key);
931 ret = LTTCOMM_CONSUMERD_ERROR_METADATA;
f5a0c9cf 932 goto error_no_stream;
d88aee68
DG
933 }
934
935 /* Send metadata stream to relayd if needed. */
62285ea4
DG
936 if (metadata->metadata_stream->net_seq_idx != (uint64_t) -1ULL) {
937 ret = consumer_send_relayd_stream(metadata->metadata_stream,
938 metadata->pathname);
939 if (ret < 0) {
940 ret = LTTCOMM_CONSUMERD_ERROR_METADATA;
941 goto error;
942 }
601262d6
JD
943 ret = consumer_send_relayd_streams_sent(
944 metadata->metadata_stream->net_seq_idx);
945 if (ret < 0) {
946 ret = LTTCOMM_CONSUMERD_RELAYD_FAIL;
947 goto error;
948 }
d88aee68
DG
949 }
950
a8086cf4
JR
951 /*
952 * Ownership of metadata stream is passed along. Freeing is handled by
953 * the callee.
954 */
d88aee68
DG
955 ret = send_streams_to_thread(metadata, ctx);
956 if (ret < 0) {
957 /*
958 * If we are unable to send the stream to the thread, there is
959 * a big problem so just stop everything.
960 */
961 ret = LTTCOMM_CONSUMERD_FATAL;
a8086cf4 962 goto send_streams_error;
d88aee68
DG
963 }
964 /* List MUST be empty after or else it could be reused. */
965 assert(cds_list_empty(&metadata->streams.head));
966
10a50311
JD
967 ret = 0;
968 goto end;
d88aee68
DG
969
970error:
f2a444f1
DG
971 /*
972 * Delete metadata channel on error. At this point, the metadata stream can
973 * NOT be monitored by the metadata thread thus having the guarantee that
974 * the stream is still in the local stream list of the channel. This call
975 * will make sure to clean that list.
976 */
f5a0c9cf 977 consumer_stream_destroy(metadata->metadata_stream, NULL);
212d67a2
DG
978 cds_list_del(&metadata->metadata_stream->send_node);
979 metadata->metadata_stream = NULL;
a8086cf4 980send_streams_error:
f5a0c9cf 981error_no_stream:
10a50311
JD
982end:
983 return ret;
984}
985
986/*
987 * Snapshot the whole metadata.
d2956687 988 * RCU read-side lock must be held by the caller.
10a50311
JD
989 *
990 * Returns 0 on success, < 0 on error
991 */
3eb928aa
MD
992static int snapshot_metadata(struct lttng_consumer_channel *metadata_channel,
993 uint64_t key, char *path, uint64_t relayd_id,
d2956687 994 struct lttng_consumer_local_data *ctx)
10a50311
JD
995{
996 int ret = 0;
10a50311
JD
997 struct lttng_consumer_stream *metadata_stream;
998
999 assert(path);
1000 assert(ctx);
1001
1002 DBG("UST consumer snapshot metadata with key %" PRIu64 " at path %s",
1003 key, path);
1004
1005 rcu_read_lock();
1006
10a50311
JD
1007 assert(!metadata_channel->monitor);
1008
9ce5646a
MD
1009 health_code_update();
1010
10a50311
JD
1011 /*
1012 * Ask the sessiond if we have new metadata waiting and update the
1013 * consumer metadata cache.
1014 */
94d49140 1015 ret = lttng_ustconsumer_request_metadata(ctx, metadata_channel, 0, 1);
10a50311
JD
1016 if (ret < 0) {
1017 goto error;
1018 }
1019
9ce5646a
MD
1020 health_code_update();
1021
10a50311
JD
1022 /*
1023 * The metadata stream is NOT created in no monitor mode when the channel
1024 * is created on a sessiond ask channel command.
1025 */
d2956687 1026 ret = create_ust_streams(metadata_channel, ctx);
10a50311
JD
1027 if (ret < 0) {
1028 goto error;
1029 }
1030
1031 metadata_stream = metadata_channel->metadata_stream;
1032 assert(metadata_stream);
1033
8aaed9e7 1034 metadata_stream->read_subbuffer_ops.lock(metadata_stream);
10a50311
JD
1035 if (relayd_id != (uint64_t) -1ULL) {
1036 metadata_stream->net_seq_idx = relayd_id;
1037 ret = consumer_send_relayd_stream(metadata_stream, path);
10a50311 1038 } else {
d2956687
JG
1039 ret = consumer_stream_create_output_files(metadata_stream,
1040 false);
1041 }
d2956687
JG
1042 if (ret < 0) {
1043 goto error_stream;
10a50311
JD
1044 }
1045
04ef1097 1046 do {
9ce5646a 1047 health_code_update();
bdc8d1bb 1048 ret = lttng_consumer_read_subbuffer(metadata_stream, ctx, true);
10a50311 1049 if (ret < 0) {
94d49140 1050 goto error_stream;
10a50311 1051 }
04ef1097 1052 } while (ret > 0);
10a50311 1053
10a50311 1054error_stream:
8aaed9e7 1055 metadata_stream->read_subbuffer_ops.unlock(metadata_stream);
10a50311 1056 /*
8aaed9e7
JR
1057 * Clean up the stream completely because the next snapshot will use a
1058 * new metadata stream.
10a50311 1059 */
10a50311 1060 consumer_stream_destroy(metadata_stream, NULL);
212d67a2 1061 cds_list_del(&metadata_stream->send_node);
10a50311
JD
1062 metadata_channel->metadata_stream = NULL;
1063
1064error:
1065 rcu_read_unlock();
1066 return ret;
1067}
1068
276cd1d7
JG
1069static
1070int get_current_subbuf_addr(struct lttng_consumer_stream *stream,
1071 const char **addr)
1072{
1073 int ret;
1074 unsigned long mmap_offset;
1075 const char *mmap_base;
1076
1077 mmap_base = ustctl_get_mmap_base(stream->ustream);
1078 if (!mmap_base) {
1079 ERR("Failed to get mmap base for stream `%s`",
1080 stream->name);
1081 ret = -EPERM;
1082 goto error;
1083 }
1084
1085 ret = ustctl_get_mmap_read_offset(stream->ustream, &mmap_offset);
1086 if (ret != 0) {
1087 ERR("Failed to get mmap offset for stream `%s`", stream->name);
1088 ret = -EINVAL;
1089 goto error;
1090 }
1091
1092 *addr = mmap_base + mmap_offset;
1093error:
1094 return ret;
1095
1096}
1097
10a50311
JD
1098/*
1099 * Take a snapshot of all the stream of a channel.
d2956687 1100 * RCU read-side lock and the channel lock must be held by the caller.
10a50311
JD
1101 *
1102 * Returns 0 on success, < 0 on error
1103 */
3eb928aa
MD
1104static int snapshot_channel(struct lttng_consumer_channel *channel,
1105 uint64_t key, char *path, uint64_t relayd_id,
e098433c
JG
1106 uint64_t nb_packets_per_stream,
1107 struct lttng_consumer_local_data *ctx)
10a50311
JD
1108{
1109 int ret;
1110 unsigned use_relayd = 0;
1111 unsigned long consumed_pos, produced_pos;
10a50311
JD
1112 struct lttng_consumer_stream *stream;
1113
1114 assert(path);
1115 assert(ctx);
1116
1117 rcu_read_lock();
1118
1119 if (relayd_id != (uint64_t) -1ULL) {
1120 use_relayd = 1;
1121 }
1122
10a50311 1123 assert(!channel->monitor);
6a00837f 1124 DBG("UST consumer snapshot channel %" PRIu64, key);
10a50311
JD
1125
1126 cds_list_for_each_entry(stream, &channel->streams.head, send_node) {
9ce5646a
MD
1127 health_code_update();
1128
10a50311
JD
1129 /* Lock stream because we are about to change its state. */
1130 pthread_mutex_lock(&stream->lock);
d2956687
JG
1131 assert(channel->trace_chunk);
1132 if (!lttng_trace_chunk_get(channel->trace_chunk)) {
1133 /*
1134 * Can't happen barring an internal error as the channel
1135 * holds a reference to the trace chunk.
1136 */
1137 ERR("Failed to acquire reference to channel's trace chunk");
1138 ret = -1;
1139 goto error_unlock;
1140 }
1141 assert(!stream->trace_chunk);
1142 stream->trace_chunk = channel->trace_chunk;
1143
10a50311
JD
1144 stream->net_seq_idx = relayd_id;
1145
1146 if (use_relayd) {
1147 ret = consumer_send_relayd_stream(stream, path);
1148 if (ret < 0) {
1149 goto error_unlock;
1150 }
1151 } else {
d2956687
JG
1152 ret = consumer_stream_create_output_files(stream,
1153 false);
10a50311
JD
1154 if (ret < 0) {
1155 goto error_unlock;
1156 }
d2956687
JG
1157 DBG("UST consumer snapshot stream (%" PRIu64 ")",
1158 stream->key);
10a50311
JD
1159 }
1160
d4d80f77
MD
1161 /*
1162 * If tracing is active, we want to perform a "full" buffer flush.
1163 * Else, if quiescent, it has already been done by the prior stop.
1164 */
1165 if (!stream->quiescent) {
1166 ustctl_flush_buffer(stream->ustream, 0);
1167 }
10a50311
JD
1168
1169 ret = lttng_ustconsumer_take_snapshot(stream);
1170 if (ret < 0) {
1171 ERR("Taking UST snapshot");
1172 goto error_unlock;
1173 }
1174
1175 ret = lttng_ustconsumer_get_produced_snapshot(stream, &produced_pos);
1176 if (ret < 0) {
1177 ERR("Produced UST snapshot position");
1178 goto error_unlock;
1179 }
1180
1181 ret = lttng_ustconsumer_get_consumed_snapshot(stream, &consumed_pos);
1182 if (ret < 0) {
1183 ERR("Consumerd UST snapshot position");
1184 goto error_unlock;
1185 }
1186
5c786ded
JD
1187 /*
1188 * The original value is sent back if max stream size is larger than
d07ceecd 1189 * the possible size of the snapshot. Also, we assume that the session
5c786ded
JD
1190 * daemon should never send a maximum stream size that is lower than
1191 * subbuffer size.
1192 */
d07ceecd
MD
1193 consumed_pos = consumer_get_consume_start_pos(consumed_pos,
1194 produced_pos, nb_packets_per_stream,
1195 stream->max_sb_size);
5c786ded 1196
9377d830 1197 while ((long) (consumed_pos - produced_pos) < 0) {
10a50311
JD
1198 ssize_t read_len;
1199 unsigned long len, padded_len;
276cd1d7 1200 const char *subbuf_addr;
a587bd64 1201 struct lttng_buffer_view subbuf_view;
10a50311 1202
9ce5646a
MD
1203 health_code_update();
1204
10a50311
JD
1205 DBG("UST consumer taking snapshot at pos %lu", consumed_pos);
1206
1207 ret = ustctl_get_subbuf(stream->ustream, &consumed_pos);
1208 if (ret < 0) {
1209 if (ret != -EAGAIN) {
1210 PERROR("ustctl_get_subbuf snapshot");
1211 goto error_close_stream;
1212 }
1213 DBG("UST consumer get subbuf failed. Skipping it.");
1214 consumed_pos += stream->max_sb_size;
ddc93ee4 1215 stream->chan->lost_packets++;
10a50311
JD
1216 continue;
1217 }
1218
1219 ret = ustctl_get_subbuf_size(stream->ustream, &len);
1220 if (ret < 0) {
1221 ERR("Snapshot ustctl_get_subbuf_size");
1222 goto error_put_subbuf;
1223 }
1224
1225 ret = ustctl_get_padded_subbuf_size(stream->ustream, &padded_len);
1226 if (ret < 0) {
1227 ERR("Snapshot ustctl_get_padded_subbuf_size");
1228 goto error_put_subbuf;
1229 }
1230
276cd1d7
JG
1231 ret = get_current_subbuf_addr(stream, &subbuf_addr);
1232 if (ret) {
1233 goto error_put_subbuf;
1234 }
1235
a587bd64
JG
1236 subbuf_view = lttng_buffer_view_init(
1237 subbuf_addr, 0, padded_len);
e426953d 1238 read_len = lttng_consumer_on_read_subbuffer_mmap(
bdc8d1bb 1239 stream, &subbuf_view, padded_len - len);
10a50311
JD
1240 if (use_relayd) {
1241 if (read_len != len) {
56591bac 1242 ret = -EPERM;
10a50311
JD
1243 goto error_put_subbuf;
1244 }
1245 } else {
1246 if (read_len != padded_len) {
56591bac 1247 ret = -EPERM;
10a50311
JD
1248 goto error_put_subbuf;
1249 }
1250 }
1251
1252 ret = ustctl_put_subbuf(stream->ustream);
1253 if (ret < 0) {
1254 ERR("Snapshot ustctl_put_subbuf");
1255 goto error_close_stream;
1256 }
1257 consumed_pos += stream->max_sb_size;
1258 }
1259
1260 /* Simply close the stream so we can use it on the next snapshot. */
1261 consumer_stream_close(stream);
1262 pthread_mutex_unlock(&stream->lock);
1263 }
1264
1265 rcu_read_unlock();
1266 return 0;
1267
1268error_put_subbuf:
1269 if (ustctl_put_subbuf(stream->ustream) < 0) {
1270 ERR("Snapshot ustctl_put_subbuf");
1271 }
1272error_close_stream:
1273 consumer_stream_close(stream);
1274error_unlock:
1275 pthread_mutex_unlock(&stream->lock);
10a50311 1276 rcu_read_unlock();
d88aee68
DG
1277 return ret;
1278}
1279
920f2ddb
JG
1280static
1281void metadata_stream_reset_cache_consumed_position(
1282 struct lttng_consumer_stream *stream)
1283{
1284 ASSERT_LOCKED(stream->lock);
1285
1286 DBG("Reset metadata cache of session %" PRIu64,
1287 stream->chan->session_id);
1288 stream->ust_metadata_pushed = 0;
1289}
1290
331744e3 1291/*
c585821b
MD
1292 * Receive the metadata updates from the sessiond. Supports receiving
1293 * overlapping metadata, but is needs to always belong to a contiguous
1294 * range starting from 0.
1295 * Be careful about the locks held when calling this function: it needs
1296 * the metadata cache flush to concurrently progress in order to
1297 * complete.
331744e3
JD
1298 */
1299int lttng_ustconsumer_recv_metadata(int sock, uint64_t key, uint64_t offset,
93ec662e
JD
1300 uint64_t len, uint64_t version,
1301 struct lttng_consumer_channel *channel, int timer, int wait)
331744e3 1302{
0c759fc9 1303 int ret, ret_code = LTTCOMM_CONSUMERD_SUCCESS;
331744e3 1304 char *metadata_str;
920f2ddb 1305 enum consumer_metadata_cache_write_status cache_write_status;
331744e3 1306
8fd623e0 1307 DBG("UST consumer push metadata key %" PRIu64 " of len %" PRIu64, key, len);
331744e3
JD
1308
1309 metadata_str = zmalloc(len * sizeof(char));
1310 if (!metadata_str) {
1311 PERROR("zmalloc metadata string");
1312 ret_code = LTTCOMM_CONSUMERD_ENOMEM;
1313 goto end;
1314 }
1315
9ce5646a
MD
1316 health_code_update();
1317
331744e3
JD
1318 /* Receive metadata string. */
1319 ret = lttcomm_recv_unix_sock(sock, metadata_str, len);
1320 if (ret < 0) {
1321 /* Session daemon is dead so return gracefully. */
1322 ret_code = ret;
1323 goto end_free;
1324 }
1325
9ce5646a
MD
1326 health_code_update();
1327
331744e3 1328 pthread_mutex_lock(&channel->metadata_cache->lock);
920f2ddb
JG
1329 cache_write_status = consumer_metadata_cache_write(
1330 channel, offset, len, version, metadata_str);
7f1b22f2 1331 pthread_mutex_unlock(&channel->metadata_cache->lock);
920f2ddb
JG
1332 switch (cache_write_status) {
1333 case CONSUMER_METADATA_CACHE_WRITE_STATUS_NO_CHANGE:
1334 /*
1335 * The write entirely overlapped with existing contents of the
1336 * same metadata version (same content); there is nothing to do.
1337 */
1338 break;
1339 case CONSUMER_METADATA_CACHE_WRITE_STATUS_INVALIDATED:
1340 /*
1341 * The metadata cache was invalidated (previously pushed
1342 * content has been overwritten). Reset the stream's consumed
1343 * metadata position to ensure the metadata poll thread consumes
1344 * the whole cache.
1345 */
8aaed9e7
JR
1346
1347 /*
1348 * channel::metadata_stream can be null when the metadata
1349 * channel is under a snapshot session type. No need to update
1350 * the stream position in that scenario.
1351 */
1352 if (channel->metadata_stream != NULL) {
1353 pthread_mutex_lock(&channel->metadata_stream->lock);
1354 metadata_stream_reset_cache_consumed_position(
1355 channel->metadata_stream);
1356 pthread_mutex_unlock(&channel->metadata_stream->lock);
1357 }
920f2ddb
JG
1358 /* Fall-through. */
1359 case CONSUMER_METADATA_CACHE_WRITE_STATUS_APPENDED_CONTENT:
1360 /*
1361 * In both cases, the metadata poll thread has new data to
1362 * consume.
1363 */
1364 ret = consumer_metadata_wakeup_pipe(channel);
1365 if (ret) {
1366 ret_code = LTTCOMM_CONSUMERD_ERROR_METADATA;
1367 goto end_free;
1368 }
1369 break;
1370 case CONSUMER_METADATA_CACHE_WRITE_STATUS_ERROR:
331744e3
JD
1371 /* Unable to handle metadata. Notify session daemon. */
1372 ret_code = LTTCOMM_CONSUMERD_ERROR_METADATA;
a32bd775
DG
1373 /*
1374 * Skip metadata flush on write error since the offset and len might
1375 * not have been updated which could create an infinite loop below when
1376 * waiting for the metadata cache to be flushed.
1377 */
a32bd775 1378 goto end_free;
920f2ddb
JG
1379 default:
1380 abort();
331744e3 1381 }
331744e3 1382
94d49140
JD
1383 if (!wait) {
1384 goto end_free;
1385 }
5e41ebe1 1386 while (consumer_metadata_cache_flushed(channel, offset + len, timer)) {
331744e3 1387 DBG("Waiting for metadata to be flushed");
9ce5646a
MD
1388
1389 health_code_update();
1390
331744e3
JD
1391 usleep(DEFAULT_METADATA_AVAILABILITY_WAIT_TIME);
1392 }
1393
1394end_free:
1395 free(metadata_str);
1396end:
1397 return ret_code;
1398}
1399
4cbc1a04
DG
1400/*
1401 * Receive command from session daemon and process it.
1402 *
1403 * Return 1 on success else a negative value or 0.
1404 */
3bd1e081
MD
1405int lttng_ustconsumer_recv_cmd(struct lttng_consumer_local_data *ctx,
1406 int sock, struct pollfd *consumer_sockpoll)
1407{
1408 ssize_t ret;
0c759fc9 1409 enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS;
3bd1e081 1410 struct lttcomm_consumer_msg msg;
ffe60014 1411 struct lttng_consumer_channel *channel = NULL;
3bd1e081 1412
9ce5646a
MD
1413 health_code_update();
1414
3bd1e081
MD
1415 ret = lttcomm_recv_unix_sock(sock, &msg, sizeof(msg));
1416 if (ret != sizeof(msg)) {
173af62f
DG
1417 DBG("Consumer received unexpected message size %zd (expects %zu)",
1418 ret, sizeof(msg));
3be74084
DG
1419 /*
1420 * The ret value might 0 meaning an orderly shutdown but this is ok
1421 * since the caller handles this.
1422 */
489f70e9 1423 if (ret > 0) {
c6857fcf 1424 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_ERROR_RECV_CMD);
489f70e9
MD
1425 ret = -1;
1426 }
3bd1e081
MD
1427 return ret;
1428 }
9ce5646a
MD
1429
1430 health_code_update();
1431
84382d49
MD
1432 /* deprecated */
1433 assert(msg.cmd_type != LTTNG_CONSUMER_STOP);
3bd1e081 1434
9ce5646a
MD
1435 health_code_update();
1436
3f8e211f 1437 /* relayd needs RCU read-side lock */
b0b335c8
MD
1438 rcu_read_lock();
1439
3bd1e081 1440 switch (msg.cmd_type) {
00e2e675
DG
1441 case LTTNG_CONSUMER_ADD_RELAYD_SOCKET:
1442 {
f50f23d9 1443 /* Session daemon status message are handled in the following call. */
2527bf85 1444 consumer_add_relayd_socket(msg.u.relayd_sock.net_index,
7735ef9e 1445 msg.u.relayd_sock.type, ctx, sock, consumer_sockpoll,
d3e2ba59
JD
1446 &msg.u.relayd_sock.sock, msg.u.relayd_sock.session_id,
1447 msg.u.relayd_sock.relayd_session_id);
00e2e675
DG
1448 goto end_nosignal;
1449 }
173af62f
DG
1450 case LTTNG_CONSUMER_DESTROY_RELAYD:
1451 {
a6ba4fe1 1452 uint64_t index = msg.u.destroy_relayd.net_seq_idx;
173af62f
DG
1453 struct consumer_relayd_sock_pair *relayd;
1454
a6ba4fe1 1455 DBG("UST consumer destroying relayd %" PRIu64, index);
173af62f
DG
1456
1457 /* Get relayd reference if exists. */
a6ba4fe1 1458 relayd = consumer_find_relayd(index);
173af62f 1459 if (relayd == NULL) {
3448e266 1460 DBG("Unable to find relayd %" PRIu64, index);
e462382a 1461 ret_code = LTTCOMM_CONSUMERD_RELAYD_FAIL;
173af62f
DG
1462 }
1463
a6ba4fe1
DG
1464 /*
1465 * Each relayd socket pair has a refcount of stream attached to it
1466 * which tells if the relayd is still active or not depending on the
1467 * refcount value.
1468 *
1469 * This will set the destroy flag of the relayd object and destroy it
1470 * if the refcount reaches zero when called.
1471 *
1472 * The destroy can happen either here or when a stream fd hangs up.
1473 */
f50f23d9
DG
1474 if (relayd) {
1475 consumer_flag_relayd_for_destroy(relayd);
1476 }
1477
d88aee68 1478 goto end_msg_sessiond;
173af62f 1479 }
3bd1e081
MD
1480 case LTTNG_CONSUMER_UPDATE_STREAM:
1481 {
3f8e211f 1482 rcu_read_unlock();
7ad0a0cb 1483 return -ENOSYS;
3bd1e081 1484 }
6d805429 1485 case LTTNG_CONSUMER_DATA_PENDING:
53632229 1486 {
3be74084 1487 int ret, is_data_pending;
6d805429 1488 uint64_t id = msg.u.data_pending.session_id;
ca22feea 1489
6d805429 1490 DBG("UST consumer data pending command for id %" PRIu64, id);
ca22feea 1491
3be74084 1492 is_data_pending = consumer_data_pending(id);
ca22feea
DG
1493
1494 /* Send back returned value to session daemon */
3be74084
DG
1495 ret = lttcomm_send_unix_sock(sock, &is_data_pending,
1496 sizeof(is_data_pending));
ca22feea 1497 if (ret < 0) {
3be74084 1498 DBG("Error when sending the data pending ret code: %d", ret);
489f70e9 1499 goto error_fatal;
ca22feea 1500 }
f50f23d9
DG
1501
1502 /*
1503 * No need to send back a status message since the data pending
1504 * returned value is the response.
1505 */
ca22feea 1506 break;
53632229 1507 }
ffe60014
DG
1508 case LTTNG_CONSUMER_ASK_CHANNEL_CREATION:
1509 {
1510 int ret;
1511 struct ustctl_consumer_channel_attr attr;
d2956687
JG
1512 const uint64_t chunk_id = msg.u.ask_channel.chunk_id.value;
1513 const struct lttng_credentials buffer_credentials = {
1514 .uid = msg.u.ask_channel.buffer_credentials.uid,
1515 .gid = msg.u.ask_channel.buffer_credentials.gid,
1516 };
ffe60014
DG
1517
1518 /* Create a plain object and reserve a channel key. */
ee8935c3
JG
1519 channel = consumer_allocate_channel(
1520 msg.u.ask_channel.key,
1521 msg.u.ask_channel.session_id,
d2956687
JG
1522 msg.u.ask_channel.chunk_id.is_set ?
1523 &chunk_id : NULL,
1524 msg.u.ask_channel.pathname,
1525 msg.u.ask_channel.name,
1526 msg.u.ask_channel.relayd_id,
1624d5b7
JD
1527 (enum lttng_event_output) msg.u.ask_channel.output,
1528 msg.u.ask_channel.tracefile_size,
2bba9e53 1529 msg.u.ask_channel.tracefile_count,
1950109e 1530 msg.u.ask_channel.session_id_per_pid,
ecc48a90 1531 msg.u.ask_channel.monitor,
d7ba1388 1532 msg.u.ask_channel.live_timer_interval,
ee8935c3 1533 msg.u.ask_channel.is_live,
3d071855 1534 msg.u.ask_channel.root_shm_path,
d7ba1388 1535 msg.u.ask_channel.shm_path);
ffe60014
DG
1536 if (!channel) {
1537 goto end_channel_error;
1538 }
1539
d2956687
JG
1540 LTTNG_OPTIONAL_SET(&channel->buffer_credentials,
1541 buffer_credentials);
1542
567eb353
DG
1543 /*
1544 * Assign UST application UID to the channel. This value is ignored for
1545 * per PID buffers. This is specific to UST thus setting this after the
1546 * allocation.
1547 */
1548 channel->ust_app_uid = msg.u.ask_channel.ust_app_uid;
1549
ffe60014
DG
1550 /* Build channel attributes from received message. */
1551 attr.subbuf_size = msg.u.ask_channel.subbuf_size;
1552 attr.num_subbuf = msg.u.ask_channel.num_subbuf;
1553 attr.overwrite = msg.u.ask_channel.overwrite;
1554 attr.switch_timer_interval = msg.u.ask_channel.switch_timer_interval;
1555 attr.read_timer_interval = msg.u.ask_channel.read_timer_interval;
7972aab2 1556 attr.chan_id = msg.u.ask_channel.chan_id;
ffe60014 1557 memcpy(attr.uuid, msg.u.ask_channel.uuid, sizeof(attr.uuid));
491d1539 1558 attr.blocking_timeout= msg.u.ask_channel.blocking_timeout;
ffe60014 1559
0c759fc9
DG
1560 /* Match channel buffer type to the UST abi. */
1561 switch (msg.u.ask_channel.output) {
1562 case LTTNG_EVENT_MMAP:
1563 default:
1564 attr.output = LTTNG_UST_MMAP;
1565 break;
1566 }
1567
ffe60014
DG
1568 /* Translate and save channel type. */
1569 switch (msg.u.ask_channel.type) {
1570 case LTTNG_UST_CHAN_PER_CPU:
1571 channel->type = CONSUMER_CHANNEL_TYPE_DATA;
1572 attr.type = LTTNG_UST_CHAN_PER_CPU;
8633d6e3
MD
1573 /*
1574 * Set refcount to 1 for owner. Below, we will
1575 * pass ownership to the
1576 * consumer_thread_channel_poll() thread.
1577 */
1578 channel->refcount = 1;
ffe60014
DG
1579 break;
1580 case LTTNG_UST_CHAN_METADATA:
1581 channel->type = CONSUMER_CHANNEL_TYPE_METADATA;
1582 attr.type = LTTNG_UST_CHAN_METADATA;
1583 break;
1584 default:
1585 assert(0);
1586 goto error_fatal;
1587 };
1588
9ce5646a
MD
1589 health_code_update();
1590
d2956687 1591 ret = ask_channel(ctx, channel, &attr);
ffe60014
DG
1592 if (ret < 0) {
1593 goto end_channel_error;
1594 }
1595
fc643247
MD
1596 if (msg.u.ask_channel.type == LTTNG_UST_CHAN_METADATA) {
1597 ret = consumer_metadata_cache_allocate(channel);
1598 if (ret < 0) {
1599 ERR("Allocating metadata cache");
1600 goto end_channel_error;
1601 }
1602 consumer_timer_switch_start(channel, attr.switch_timer_interval);
1603 attr.switch_timer_interval = 0;
94d49140 1604 } else {
e9404c27
JG
1605 int monitor_start_ret;
1606
94d49140
JD
1607 consumer_timer_live_start(channel,
1608 msg.u.ask_channel.live_timer_interval);
e9404c27
JG
1609 monitor_start_ret = consumer_timer_monitor_start(
1610 channel,
1611 msg.u.ask_channel.monitor_timer_interval);
1612 if (monitor_start_ret < 0) {
1613 ERR("Starting channel monitoring timer failed");
1614 goto end_channel_error;
1615 }
fc643247
MD
1616 }
1617
9ce5646a
MD
1618 health_code_update();
1619
ffe60014
DG
1620 /*
1621 * Add the channel to the internal state AFTER all streams were created
1622 * and successfully sent to session daemon. This way, all streams must
1623 * be ready before this channel is visible to the threads.
fc643247
MD
1624 * If add_channel succeeds, ownership of the channel is
1625 * passed to consumer_thread_channel_poll().
ffe60014
DG
1626 */
1627 ret = add_channel(channel, ctx);
1628 if (ret < 0) {
ea88ca2a
MD
1629 if (msg.u.ask_channel.type == LTTNG_UST_CHAN_METADATA) {
1630 if (channel->switch_timer_enabled == 1) {
1631 consumer_timer_switch_stop(channel);
1632 }
1633 consumer_metadata_cache_destroy(channel);
1634 }
d3e2ba59
JD
1635 if (channel->live_timer_enabled == 1) {
1636 consumer_timer_live_stop(channel);
1637 }
e9404c27
JG
1638 if (channel->monitor_timer_enabled == 1) {
1639 consumer_timer_monitor_stop(channel);
1640 }
ffe60014
DG
1641 goto end_channel_error;
1642 }
1643
9ce5646a
MD
1644 health_code_update();
1645
ffe60014
DG
1646 /*
1647 * Channel and streams are now created. Inform the session daemon that
1648 * everything went well and should wait to receive the channel and
1649 * streams with ustctl API.
1650 */
1651 ret = consumer_send_status_channel(sock, channel);
1652 if (ret < 0) {
1653 /*
489f70e9 1654 * There is probably a problem on the socket.
ffe60014 1655 */
489f70e9 1656 goto error_fatal;
ffe60014
DG
1657 }
1658
1659 break;
1660 }
1661 case LTTNG_CONSUMER_GET_CHANNEL:
1662 {
1663 int ret, relayd_err = 0;
d88aee68 1664 uint64_t key = msg.u.get_channel.key;
ffe60014 1665 struct lttng_consumer_channel *channel;
ffe60014
DG
1666
1667 channel = consumer_find_channel(key);
1668 if (!channel) {
8fd623e0 1669 ERR("UST consumer get channel key %" PRIu64 " not found", key);
e462382a 1670 ret_code = LTTCOMM_CONSUMERD_CHAN_NOT_FOUND;
f3a1fc7b 1671 goto end_get_channel;
ffe60014
DG
1672 }
1673
9ce5646a
MD
1674 health_code_update();
1675
a3a86f35
JG
1676 /* Send the channel to sessiond (and relayd, if applicable). */
1677 ret = send_channel_to_sessiond_and_relayd(sock, channel, ctx,
1678 &relayd_err);
ffe60014
DG
1679 if (ret < 0) {
1680 if (relayd_err) {
1681 /*
1682 * We were unable to send to the relayd the stream so avoid
1683 * sending back a fatal error to the thread since this is OK
f2a444f1
DG
1684 * and the consumer can continue its work. The above call
1685 * has sent the error status message to the sessiond.
ffe60014 1686 */
f3a1fc7b 1687 goto end_get_channel_nosignal;
ffe60014
DG
1688 }
1689 /*
1690 * The communicaton was broken hence there is a bad state between
1691 * the consumer and sessiond so stop everything.
1692 */
f3a1fc7b 1693 goto error_get_channel_fatal;
ffe60014
DG
1694 }
1695
9ce5646a
MD
1696 health_code_update();
1697
10a50311
JD
1698 /*
1699 * In no monitor mode, the streams ownership is kept inside the channel
1700 * so don't send them to the data thread.
1701 */
1702 if (!channel->monitor) {
f3a1fc7b 1703 goto end_get_channel;
10a50311
JD
1704 }
1705
d88aee68
DG
1706 ret = send_streams_to_thread(channel, ctx);
1707 if (ret < 0) {
1708 /*
1709 * If we are unable to send the stream to the thread, there is
1710 * a big problem so just stop everything.
1711 */
f3a1fc7b 1712 goto error_get_channel_fatal;
ffe60014 1713 }
ffe60014
DG
1714 /* List MUST be empty after or else it could be reused. */
1715 assert(cds_list_empty(&channel->streams.head));
f3a1fc7b 1716end_get_channel:
d88aee68 1717 goto end_msg_sessiond;
f3a1fc7b
JG
1718error_get_channel_fatal:
1719 goto error_fatal;
1720end_get_channel_nosignal:
1721 goto end_nosignal;
d88aee68
DG
1722 }
1723 case LTTNG_CONSUMER_DESTROY_CHANNEL:
1724 {
1725 uint64_t key = msg.u.destroy_channel.key;
d88aee68 1726
a0cbdd2e
MD
1727 /*
1728 * Only called if streams have not been sent to stream
1729 * manager thread. However, channel has been sent to
1730 * channel manager thread.
1731 */
1732 notify_thread_del_channel(ctx, key);
d88aee68 1733 goto end_msg_sessiond;
ffe60014 1734 }
d88aee68
DG
1735 case LTTNG_CONSUMER_CLOSE_METADATA:
1736 {
1737 int ret;
1738
1739 ret = close_metadata(msg.u.close_metadata.key);
1740 if (ret != 0) {
1741 ret_code = ret;
1742 }
1743
1744 goto end_msg_sessiond;
1745 }
7972aab2
DG
1746 case LTTNG_CONSUMER_FLUSH_CHANNEL:
1747 {
1748 int ret;
1749
1750 ret = flush_channel(msg.u.flush_channel.key);
1751 if (ret != 0) {
1752 ret_code = ret;
1753 }
1754
1755 goto end_msg_sessiond;
1756 }
0dd01979
MD
1757 case LTTNG_CONSUMER_CLEAR_QUIESCENT_CHANNEL:
1758 {
1759 int ret;
1760
1761 ret = clear_quiescent_channel(
1762 msg.u.clear_quiescent_channel.key);
1763 if (ret != 0) {
1764 ret_code = ret;
1765 }
1766
1767 goto end_msg_sessiond;
1768 }
d88aee68 1769 case LTTNG_CONSUMER_PUSH_METADATA:
ffe60014
DG
1770 {
1771 int ret;
d88aee68 1772 uint64_t len = msg.u.push_metadata.len;
d88aee68 1773 uint64_t key = msg.u.push_metadata.key;
331744e3 1774 uint64_t offset = msg.u.push_metadata.target_offset;
93ec662e 1775 uint64_t version = msg.u.push_metadata.version;
ffe60014
DG
1776 struct lttng_consumer_channel *channel;
1777
8fd623e0
DG
1778 DBG("UST consumer push metadata key %" PRIu64 " of len %" PRIu64, key,
1779 len);
ffe60014
DG
1780
1781 channel = consumer_find_channel(key);
1782 if (!channel) {
000baf6a
DG
1783 /*
1784 * This is possible if the metadata creation on the consumer side
1785 * is in flight vis-a-vis a concurrent push metadata from the
1786 * session daemon. Simply return that the channel failed and the
1787 * session daemon will handle that message correctly considering
1788 * that this race is acceptable thus the DBG() statement here.
1789 */
1790 DBG("UST consumer push metadata %" PRIu64 " not found", key);
1791 ret_code = LTTCOMM_CONSUMERD_CHANNEL_FAIL;
a8ffe244 1792 goto end_push_metadata_msg_sessiond;
d88aee68
DG
1793 }
1794
9ce5646a
MD
1795 health_code_update();
1796
c585821b
MD
1797 if (!len) {
1798 /*
1799 * There is nothing to receive. We have simply
1800 * checked whether the channel can be found.
1801 */
1802 ret_code = LTTCOMM_CONSUMERD_SUCCESS;
a8ffe244 1803 goto end_push_metadata_msg_sessiond;
c585821b
MD
1804 }
1805
d88aee68 1806 /* Tell session daemon we are ready to receive the metadata. */
0c759fc9 1807 ret = consumer_send_status_msg(sock, LTTCOMM_CONSUMERD_SUCCESS);
ffe60014
DG
1808 if (ret < 0) {
1809 /* Somehow, the session daemon is not responding anymore. */
a8ffe244 1810 goto error_push_metadata_fatal;
d88aee68
DG
1811 }
1812
9ce5646a
MD
1813 health_code_update();
1814
d88aee68 1815 /* Wait for more data. */
9ce5646a
MD
1816 health_poll_entry();
1817 ret = lttng_consumer_poll_socket(consumer_sockpoll);
1818 health_poll_exit();
84382d49 1819 if (ret) {
a8ffe244 1820 goto error_push_metadata_fatal;
d88aee68
DG
1821 }
1822
9ce5646a
MD
1823 health_code_update();
1824
331744e3 1825 ret = lttng_ustconsumer_recv_metadata(sock, key, offset,
93ec662e 1826 len, version, channel, 0, 1);
d88aee68 1827 if (ret < 0) {
331744e3 1828 /* error receiving from sessiond */
a8ffe244 1829 goto error_push_metadata_fatal;
331744e3
JD
1830 } else {
1831 ret_code = ret;
a8ffe244 1832 goto end_push_metadata_msg_sessiond;
d88aee68 1833 }
a8ffe244
JG
1834end_push_metadata_msg_sessiond:
1835 goto end_msg_sessiond;
1836error_push_metadata_fatal:
1837 goto error_fatal;
d88aee68
DG
1838 }
1839 case LTTNG_CONSUMER_SETUP_METADATA:
1840 {
1841 int ret;
1842
1843 ret = setup_metadata(ctx, msg.u.setup_metadata.key);
1844 if (ret) {
1845 ret_code = ret;
1846 }
1847 goto end_msg_sessiond;
ffe60014 1848 }
6dc3064a
DG
1849 case LTTNG_CONSUMER_SNAPSHOT_CHANNEL:
1850 {
3eb928aa
MD
1851 struct lttng_consumer_channel *channel;
1852 uint64_t key = msg.u.snapshot_channel.key;
1853
1854 channel = consumer_find_channel(key);
1855 if (!channel) {
1856 DBG("UST snapshot channel not found for key %" PRIu64, key);
1857 ret_code = LTTCOMM_CONSUMERD_CHAN_NOT_FOUND;
10a50311 1858 } else {
3eb928aa
MD
1859 if (msg.u.snapshot_channel.metadata) {
1860 ret = snapshot_metadata(channel, key,
1861 msg.u.snapshot_channel.pathname,
1862 msg.u.snapshot_channel.relayd_id,
d2956687 1863 ctx);
3eb928aa
MD
1864 if (ret < 0) {
1865 ERR("Snapshot metadata failed");
1866 ret_code = LTTCOMM_CONSUMERD_SNAPSHOT_FAILED;
1867 }
1868 } else {
1869 ret = snapshot_channel(channel, key,
1870 msg.u.snapshot_channel.pathname,
1871 msg.u.snapshot_channel.relayd_id,
1872 msg.u.snapshot_channel.nb_packets_per_stream,
1873 ctx);
1874 if (ret < 0) {
1875 ERR("Snapshot channel failed");
1876 ret_code = LTTCOMM_CONSUMERD_SNAPSHOT_FAILED;
1877 }
10a50311
JD
1878 }
1879 }
9ce5646a 1880 health_code_update();
6dc3064a
DG
1881 ret = consumer_send_status_msg(sock, ret_code);
1882 if (ret < 0) {
1883 /* Somehow, the session daemon is not responding anymore. */
1884 goto end_nosignal;
1885 }
9ce5646a 1886 health_code_update();
6dc3064a
DG
1887 break;
1888 }
fb83fe64
JD
1889 case LTTNG_CONSUMER_DISCARDED_EVENTS:
1890 {
beb59458
MJ
1891 int ret = 0;
1892 uint64_t discarded_events;
fb83fe64
JD
1893 struct lttng_ht_iter iter;
1894 struct lttng_ht *ht;
1895 struct lttng_consumer_stream *stream;
1896 uint64_t id = msg.u.discarded_events.session_id;
1897 uint64_t key = msg.u.discarded_events.channel_key;
1898
1899 DBG("UST consumer discarded events command for session id %"
1900 PRIu64, id);
1901 rcu_read_lock();
1902 pthread_mutex_lock(&consumer_data.lock);
1903
1904 ht = consumer_data.stream_list_ht;
1905
1906 /*
1907 * We only need a reference to the channel, but they are not
1908 * directly indexed, so we just use the first matching stream
1909 * to extract the information we need, we default to 0 if not
1910 * found (no events are dropped if the channel is not yet in
1911 * use).
1912 */
beb59458 1913 discarded_events = 0;
fb83fe64
JD
1914 cds_lfht_for_each_entry_duplicate(ht->ht,
1915 ht->hash_fct(&id, lttng_ht_seed),
1916 ht->match_fct, &id,
1917 &iter.iter, stream, node_session_id.node) {
1918 if (stream->chan->key == key) {
beb59458 1919 discarded_events = stream->chan->discarded_events;
fb83fe64
JD
1920 break;
1921 }
1922 }
1923 pthread_mutex_unlock(&consumer_data.lock);
1924 rcu_read_unlock();
1925
1926 DBG("UST consumer discarded events command for session id %"
1927 PRIu64 ", channel key %" PRIu64, id, key);
1928
1929 health_code_update();
1930
1931 /* Send back returned value to session daemon */
beb59458 1932 ret = lttcomm_send_unix_sock(sock, &discarded_events, sizeof(discarded_events));
fb83fe64
JD
1933 if (ret < 0) {
1934 PERROR("send discarded events");
1935 goto error_fatal;
1936 }
1937
1938 break;
1939 }
1940 case LTTNG_CONSUMER_LOST_PACKETS:
1941 {
9a06e8d4
JG
1942 int ret;
1943 uint64_t lost_packets;
fb83fe64
JD
1944 struct lttng_ht_iter iter;
1945 struct lttng_ht *ht;
1946 struct lttng_consumer_stream *stream;
1947 uint64_t id = msg.u.lost_packets.session_id;
1948 uint64_t key = msg.u.lost_packets.channel_key;
1949
1950 DBG("UST consumer lost packets command for session id %"
1951 PRIu64, id);
1952 rcu_read_lock();
1953 pthread_mutex_lock(&consumer_data.lock);
1954
1955 ht = consumer_data.stream_list_ht;
1956
1957 /*
1958 * We only need a reference to the channel, but they are not
1959 * directly indexed, so we just use the first matching stream
1960 * to extract the information we need, we default to 0 if not
1961 * found (no packets lost if the channel is not yet in use).
1962 */
9a06e8d4 1963 lost_packets = 0;
fb83fe64
JD
1964 cds_lfht_for_each_entry_duplicate(ht->ht,
1965 ht->hash_fct(&id, lttng_ht_seed),
1966 ht->match_fct, &id,
1967 &iter.iter, stream, node_session_id.node) {
1968 if (stream->chan->key == key) {
9a06e8d4 1969 lost_packets = stream->chan->lost_packets;
fb83fe64
JD
1970 break;
1971 }
1972 }
1973 pthread_mutex_unlock(&consumer_data.lock);
1974 rcu_read_unlock();
1975
1976 DBG("UST consumer lost packets command for session id %"
1977 PRIu64 ", channel key %" PRIu64, id, key);
1978
1979 health_code_update();
1980
1981 /* Send back returned value to session daemon */
9a06e8d4
JG
1982 ret = lttcomm_send_unix_sock(sock, &lost_packets,
1983 sizeof(lost_packets));
fb83fe64
JD
1984 if (ret < 0) {
1985 PERROR("send lost packets");
1986 goto error_fatal;
1987 }
1988
1989 break;
1990 }
b3530820
JG
1991 case LTTNG_CONSUMER_SET_CHANNEL_MONITOR_PIPE:
1992 {
1993 int channel_monitor_pipe;
1994
1995 ret_code = LTTCOMM_CONSUMERD_SUCCESS;
1996 /* Successfully received the command's type. */
1997 ret = consumer_send_status_msg(sock, ret_code);
1998 if (ret < 0) {
1999 goto error_fatal;
2000 }
2001
2002 ret = lttcomm_recv_fds_unix_sock(sock, &channel_monitor_pipe,
2003 1);
2004 if (ret != sizeof(channel_monitor_pipe)) {
2005 ERR("Failed to receive channel monitor pipe");
2006 goto error_fatal;
2007 }
2008
2009 DBG("Received channel monitor pipe (%d)", channel_monitor_pipe);
2010 ret = consumer_timer_thread_set_channel_monitor_pipe(
2011 channel_monitor_pipe);
2012 if (!ret) {
2013 int flags;
2014
2015 ret_code = LTTCOMM_CONSUMERD_SUCCESS;
2016 /* Set the pipe as non-blocking. */
2017 ret = fcntl(channel_monitor_pipe, F_GETFL, 0);
2018 if (ret == -1) {
2019 PERROR("fcntl get flags of the channel monitoring pipe");
2020 goto error_fatal;
2021 }
2022 flags = ret;
2023
2024 ret = fcntl(channel_monitor_pipe, F_SETFL,
2025 flags | O_NONBLOCK);
2026 if (ret == -1) {
2027 PERROR("fcntl set O_NONBLOCK flag of the channel monitoring pipe");
2028 goto error_fatal;
2029 }
2030 DBG("Channel monitor pipe set as non-blocking");
2031 } else {
2032 ret_code = LTTCOMM_CONSUMERD_ALREADY_SET;
2033 }
2034 goto end_msg_sessiond;
2035 }
b99a8d42
JD
2036 case LTTNG_CONSUMER_ROTATE_CHANNEL:
2037 {
92b7a7f8
MD
2038 struct lttng_consumer_channel *channel;
2039 uint64_t key = msg.u.rotate_channel.key;
b99a8d42 2040
92b7a7f8
MD
2041 channel = consumer_find_channel(key);
2042 if (!channel) {
2043 DBG("Channel %" PRIu64 " not found", key);
2044 ret_code = LTTCOMM_CONSUMERD_CHAN_NOT_FOUND;
2045 } else {
2046 /*
2047 * Sample the rotate position of all the streams in
2048 * this channel.
2049 */
2050 ret = lttng_consumer_rotate_channel(channel, key,
92b7a7f8
MD
2051 msg.u.rotate_channel.relayd_id,
2052 msg.u.rotate_channel.metadata,
92b7a7f8
MD
2053 ctx);
2054 if (ret < 0) {
2055 ERR("Rotate channel failed");
2056 ret_code = LTTCOMM_CONSUMERD_ROTATION_FAIL;
2057 }
b99a8d42 2058
92b7a7f8
MD
2059 health_code_update();
2060 }
b99a8d42
JD
2061 ret = consumer_send_status_msg(sock, ret_code);
2062 if (ret < 0) {
2063 /* Somehow, the session daemon is not responding anymore. */
41c7a76d 2064 goto end_rotate_channel_nosignal;
b99a8d42
JD
2065 }
2066
2067 /*
2068 * Rotate the streams that are ready right now.
2069 * FIXME: this is a second consecutive iteration over the
2070 * streams in a channel, there is probably a better way to
2071 * handle this, but it needs to be after the
2072 * consumer_send_status_msg() call.
2073 */
92b7a7f8
MD
2074 if (channel) {
2075 ret = lttng_consumer_rotate_ready_streams(
2076 channel, key, ctx);
2077 if (ret < 0) {
2078 ERR("Rotate channel failed");
2079 }
b99a8d42
JD
2080 }
2081 break;
41c7a76d
JG
2082end_rotate_channel_nosignal:
2083 goto end_nosignal;
b99a8d42 2084 }
5f3aff8b
MD
2085 case LTTNG_CONSUMER_CLEAR_CHANNEL:
2086 {
2087 struct lttng_consumer_channel *channel;
2088 uint64_t key = msg.u.clear_channel.key;
2089
2090 channel = consumer_find_channel(key);
2091 if (!channel) {
2092 DBG("Channel %" PRIu64 " not found", key);
2093 ret_code = LTTCOMM_CONSUMERD_CHAN_NOT_FOUND;
2094 } else {
2095 ret = lttng_consumer_clear_channel(channel);
2096 if (ret) {
2097 ERR("Clear channel failed key %" PRIu64, key);
2098 ret_code = ret;
2099 }
2100
2101 health_code_update();
2102 }
2103 ret = consumer_send_status_msg(sock, ret_code);
2104 if (ret < 0) {
2105 /* Somehow, the session daemon is not responding anymore. */
2106 goto end_nosignal;
2107 }
2108 break;
2109 }
d2956687 2110 case LTTNG_CONSUMER_INIT:
00fb02ac 2111 {
d2956687
JG
2112 ret_code = lttng_consumer_init_command(ctx,
2113 msg.u.init.sessiond_uuid);
d88744a4 2114 health_code_update();
d88744a4
JD
2115 ret = consumer_send_status_msg(sock, ret_code);
2116 if (ret < 0) {
2117 /* Somehow, the session daemon is not responding anymore. */
2118 goto end_nosignal;
2119 }
2120 break;
2121 }
d2956687 2122 case LTTNG_CONSUMER_CREATE_TRACE_CHUNK:
d88744a4 2123 {
d2956687 2124 const struct lttng_credentials credentials = {
e5add6d0
JG
2125 .uid = msg.u.create_trace_chunk.credentials.value.uid,
2126 .gid = msg.u.create_trace_chunk.credentials.value.gid,
d2956687
JG
2127 };
2128 const bool is_local_trace =
2129 !msg.u.create_trace_chunk.relayd_id.is_set;
2130 const uint64_t relayd_id =
2131 msg.u.create_trace_chunk.relayd_id.value;
2132 const char *chunk_override_name =
2133 *msg.u.create_trace_chunk.override_name ?
2134 msg.u.create_trace_chunk.override_name :
2135 NULL;
cbf53d23 2136 struct lttng_directory_handle *chunk_directory_handle = NULL;
d88744a4 2137
d2956687
JG
2138 /*
2139 * The session daemon will only provide a chunk directory file
2140 * descriptor for local traces.
2141 */
2142 if (is_local_trace) {
2143 int chunk_dirfd;
19990ed5 2144
d2956687
JG
2145 /* Acnowledge the reception of the command. */
2146 ret = consumer_send_status_msg(sock,
2147 LTTCOMM_CONSUMERD_SUCCESS);
2148 if (ret < 0) {
2149 /* Somehow, the session daemon is not responding anymore. */
2150 goto end_nosignal;
2151 }
92816cc3 2152
5da88b0f
MD
2153 /*
2154 * Receive trace chunk domain dirfd.
2155 */
d2956687
JG
2156 ret = lttcomm_recv_fds_unix_sock(sock, &chunk_dirfd, 1);
2157 if (ret != sizeof(chunk_dirfd)) {
5da88b0f 2158 ERR("Failed to receive trace chunk domain directory file descriptor");
d2956687
JG
2159 goto error_fatal;
2160 }
92816cc3 2161
5da88b0f 2162 DBG("Received trace chunk domain directory fd (%d)",
d2956687 2163 chunk_dirfd);
cbf53d23 2164 chunk_directory_handle = lttng_directory_handle_create_from_dirfd(
d2956687 2165 chunk_dirfd);
cbf53d23 2166 if (!chunk_directory_handle) {
5da88b0f 2167 ERR("Failed to initialize chunk domain directory handle from directory file descriptor");
d2956687
JG
2168 if (close(chunk_dirfd)) {
2169 PERROR("Failed to close chunk directory file descriptor");
2170 }
2171 goto error_fatal;
2172 }
92816cc3
JG
2173 }
2174
d2956687
JG
2175 ret_code = lttng_consumer_create_trace_chunk(
2176 !is_local_trace ? &relayd_id : NULL,
2177 msg.u.create_trace_chunk.session_id,
2178 msg.u.create_trace_chunk.chunk_id,
e5add6d0
JG
2179 (time_t) msg.u.create_trace_chunk
2180 .creation_timestamp,
d2956687 2181 chunk_override_name,
e5add6d0
JG
2182 msg.u.create_trace_chunk.credentials.is_set ?
2183 &credentials :
2184 NULL,
cbf53d23
JG
2185 chunk_directory_handle);
2186 lttng_directory_handle_put(chunk_directory_handle);
d2956687 2187 goto end_msg_sessiond;
00fb02ac 2188 }
d2956687 2189 case LTTNG_CONSUMER_CLOSE_TRACE_CHUNK:
a1ae2ea5 2190 {
bbc4768c
JG
2191 enum lttng_trace_chunk_command_type close_command =
2192 msg.u.close_trace_chunk.close_command.value;
d2956687
JG
2193 const uint64_t relayd_id =
2194 msg.u.close_trace_chunk.relayd_id.value;
ecd1a12f 2195 struct lttcomm_consumer_close_trace_chunk_reply reply;
fe009695 2196 char closed_trace_chunk_path[LTTNG_PATH_MAX] = {};
ecd1a12f 2197 int ret;
d2956687
JG
2198
2199 ret_code = lttng_consumer_close_trace_chunk(
2200 msg.u.close_trace_chunk.relayd_id.is_set ?
bbc4768c
JG
2201 &relayd_id :
2202 NULL,
d2956687
JG
2203 msg.u.close_trace_chunk.session_id,
2204 msg.u.close_trace_chunk.chunk_id,
bbc4768c
JG
2205 (time_t) msg.u.close_trace_chunk.close_timestamp,
2206 msg.u.close_trace_chunk.close_command.is_set ?
2207 &close_command :
ecd1a12f
MD
2208 NULL, closed_trace_chunk_path);
2209 reply.ret_code = ret_code;
2210 reply.path_length = strlen(closed_trace_chunk_path) + 1;
2211 ret = lttcomm_send_unix_sock(sock, &reply, sizeof(reply));
2212 if (ret != sizeof(reply)) {
2213 goto error_fatal;
2214 }
2215 ret = lttcomm_send_unix_sock(sock, closed_trace_chunk_path,
2216 reply.path_length);
2217 if (ret != reply.path_length) {
2218 goto error_fatal;
2219 }
2220 goto end_nosignal;
a1ae2ea5 2221 }
d2956687 2222 case LTTNG_CONSUMER_TRACE_CHUNK_EXISTS:
3654ed19 2223 {
d2956687
JG
2224 const uint64_t relayd_id =
2225 msg.u.trace_chunk_exists.relayd_id.value;
2226
2227 ret_code = lttng_consumer_trace_chunk_exists(
2228 msg.u.trace_chunk_exists.relayd_id.is_set ?
2229 &relayd_id : NULL,
2230 msg.u.trace_chunk_exists.session_id,
2231 msg.u.trace_chunk_exists.chunk_id);
2232 goto end_msg_sessiond;
1223361a
JG
2233 }
2234 case LTTNG_CONSUMER_OPEN_CHANNEL_PACKETS:
2235 {
2236 const uint64_t key = msg.u.open_channel_packets.key;
2237 struct lttng_consumer_channel *channel =
2238 consumer_find_channel(key);
2239
2240 if (channel) {
2241 pthread_mutex_lock(&channel->lock);
2242 ret_code = lttng_consumer_open_channel_packets(channel);
2243 pthread_mutex_unlock(&channel->lock);
2244 } else {
2245 /*
2246 * The channel could have disappeared in per-pid
2247 * buffering mode.
2248 */
2249 DBG("Channel %" PRIu64 " not found", key);
2250 ret_code = LTTCOMM_CONSUMERD_CHAN_NOT_FOUND;
2251 }
2252
2253 health_code_update();
2254 goto end_msg_sessiond;
3654ed19 2255 }
3bd1e081
MD
2256 default:
2257 break;
2258 }
3f8e211f 2259
3bd1e081 2260end_nosignal:
4cbc1a04
DG
2261 /*
2262 * Return 1 to indicate success since the 0 value can be a socket
2263 * shutdown during the recv() or send() call.
2264 */
f3a1fc7b
JG
2265 ret = 1;
2266 goto end;
ffe60014
DG
2267
2268end_msg_sessiond:
2269 /*
2270 * The returned value here is not useful since either way we'll return 1 to
2271 * the caller because the session daemon socket management is done
2272 * elsewhere. Returning a negative code or 0 will shutdown the consumer.
2273 */
489f70e9
MD
2274 ret = consumer_send_status_msg(sock, ret_code);
2275 if (ret < 0) {
2276 goto error_fatal;
2277 }
f3a1fc7b
JG
2278 ret = 1;
2279 goto end;
9ce5646a 2280
ffe60014
DG
2281end_channel_error:
2282 if (channel) {
2283 /*
2284 * Free channel here since no one has a reference to it. We don't
2285 * free after that because a stream can store this pointer.
2286 */
2287 destroy_channel(channel);
2288 }
2289 /* We have to send a status channel message indicating an error. */
2290 ret = consumer_send_status_channel(sock, NULL);
2291 if (ret < 0) {
2292 /* Stop everything if session daemon can not be notified. */
2293 goto error_fatal;
2294 }
f3a1fc7b
JG
2295 ret = 1;
2296 goto end;
9ce5646a 2297
ffe60014 2298error_fatal:
ffe60014 2299 /* This will issue a consumer stop. */
f3a1fc7b
JG
2300 ret = -1;
2301 goto end;
2302
2303end:
2304 rcu_read_unlock();
2305 health_code_update();
2306 return ret;
3bd1e081
MD
2307}
2308
fc6d7a51
JD
2309void lttng_ustctl_flush_buffer(struct lttng_consumer_stream *stream,
2310 int producer_active)
2311{
2312 assert(stream);
2313 assert(stream->ustream);
2314
2315 ustctl_flush_buffer(stream->ustream, producer_active);
2316}
2317
ffe60014 2318/*
e9404c27 2319 * Take a snapshot for a specific stream.
ffe60014
DG
2320 *
2321 * Returns 0 on success, < 0 on error
2322 */
2323int lttng_ustconsumer_take_snapshot(struct lttng_consumer_stream *stream)
3bd1e081 2324{
ffe60014
DG
2325 assert(stream);
2326 assert(stream->ustream);
2327
2328 return ustctl_snapshot(stream->ustream);
3bd1e081
MD
2329}
2330
e9404c27
JG
2331/*
2332 * Sample consumed and produced positions for a specific stream.
2333 *
2334 * Returns 0 on success, < 0 on error.
2335 */
2336int lttng_ustconsumer_sample_snapshot_positions(
2337 struct lttng_consumer_stream *stream)
2338{
2339 assert(stream);
2340 assert(stream->ustream);
2341
2342 return ustctl_snapshot_sample_positions(stream->ustream);
2343}
2344
ffe60014
DG
2345/*
2346 * Get the produced position
2347 *
2348 * Returns 0 on success, < 0 on error
2349 */
2350int lttng_ustconsumer_get_produced_snapshot(
2351 struct lttng_consumer_stream *stream, unsigned long *pos)
3bd1e081 2352{
ffe60014
DG
2353 assert(stream);
2354 assert(stream->ustream);
2355 assert(pos);
7a57cf92 2356
ffe60014
DG
2357 return ustctl_snapshot_get_produced(stream->ustream, pos);
2358}
7a57cf92 2359
10a50311
JD
2360/*
2361 * Get the consumed position
2362 *
2363 * Returns 0 on success, < 0 on error
2364 */
2365int lttng_ustconsumer_get_consumed_snapshot(
2366 struct lttng_consumer_stream *stream, unsigned long *pos)
2367{
2368 assert(stream);
2369 assert(stream->ustream);
2370 assert(pos);
2371
2372 return ustctl_snapshot_get_consumed(stream->ustream, pos);
2373}
2374
84a182ce
DG
2375void lttng_ustconsumer_flush_buffer(struct lttng_consumer_stream *stream,
2376 int producer)
2377{
2378 assert(stream);
2379 assert(stream->ustream);
2380
2381 ustctl_flush_buffer(stream->ustream, producer);
2382}
2383
214f70e0
JR
2384void lttng_ustconsumer_clear_buffer(struct lttng_consumer_stream *stream)
2385{
2386 assert(stream);
2387 assert(stream->ustream);
2388
2389 ustctl_clear_buffer(stream->ustream);
2390}
2391
84a182ce
DG
2392int lttng_ustconsumer_get_current_timestamp(
2393 struct lttng_consumer_stream *stream, uint64_t *ts)
2394{
2395 assert(stream);
2396 assert(stream->ustream);
2397 assert(ts);
2398
2399 return ustctl_get_current_timestamp(stream->ustream, ts);
2400}
2401
fb83fe64
JD
2402int lttng_ustconsumer_get_sequence_number(
2403 struct lttng_consumer_stream *stream, uint64_t *seq)
2404{
2405 assert(stream);
2406 assert(stream->ustream);
2407 assert(seq);
2408
2409 return ustctl_get_sequence_number(stream->ustream, seq);
2410}
2411
ffe60014 2412/*
0dd01979 2413 * Called when the stream signals the consumer that it has hung up.
ffe60014
DG
2414 */
2415void lttng_ustconsumer_on_stream_hangup(struct lttng_consumer_stream *stream)
2416{
2417 assert(stream);
2418 assert(stream->ustream);
2c1dd183 2419
0dd01979
MD
2420 pthread_mutex_lock(&stream->lock);
2421 if (!stream->quiescent) {
2422 ustctl_flush_buffer(stream->ustream, 0);
2423 stream->quiescent = true;
2424 }
2425 pthread_mutex_unlock(&stream->lock);
ffe60014
DG
2426 stream->hangup_flush_done = 1;
2427}
ee77a7b0 2428
ffe60014
DG
2429void lttng_ustconsumer_del_channel(struct lttng_consumer_channel *chan)
2430{
4628484a
MD
2431 int i;
2432
ffe60014
DG
2433 assert(chan);
2434 assert(chan->uchan);
d2956687 2435 assert(chan->buffer_credentials.is_set);
e316aad5 2436
ea88ca2a
MD
2437 if (chan->switch_timer_enabled == 1) {
2438 consumer_timer_switch_stop(chan);
2439 }
4628484a
MD
2440 for (i = 0; i < chan->nr_stream_fds; i++) {
2441 int ret;
2442
2443 ret = close(chan->stream_fds[i]);
2444 if (ret) {
2445 PERROR("close");
2446 }
2447 if (chan->shm_path[0]) {
2448 char shm_path[PATH_MAX];
2449
2450 ret = get_stream_shm_path(shm_path, chan->shm_path, i);
2451 if (ret) {
2452 ERR("Cannot get stream shm path");
2453 }
d2956687
JG
2454 ret = run_as_unlink(shm_path,
2455 chan->buffer_credentials.value.uid,
2456 chan->buffer_credentials.value.gid);
4628484a 2457 if (ret) {
4628484a
MD
2458 PERROR("unlink %s", shm_path);
2459 }
2460 }
2461 }
3bd1e081
MD
2462}
2463
b83e03c4
MD
2464void lttng_ustconsumer_free_channel(struct lttng_consumer_channel *chan)
2465{
2466 assert(chan);
2467 assert(chan->uchan);
d2956687 2468 assert(chan->buffer_credentials.is_set);
b83e03c4
MD
2469
2470 consumer_metadata_cache_destroy(chan);
2471 ustctl_destroy_channel(chan->uchan);
ea853771
JR
2472 /* Try to rmdir all directories under shm_path root. */
2473 if (chan->root_shm_path[0]) {
602766ec 2474 (void) run_as_rmdir_recursive(chan->root_shm_path,
d2956687 2475 chan->buffer_credentials.value.uid,
f75c5439
MD
2476 chan->buffer_credentials.value.gid,
2477 LTTNG_DIRECTORY_HANDLE_SKIP_NON_EMPTY_FLAG);
ea853771 2478 }
b83e03c4
MD
2479 free(chan->stream_fds);
2480}
2481
3bd1e081
MD
2482void lttng_ustconsumer_del_stream(struct lttng_consumer_stream *stream)
2483{
ffe60014
DG
2484 assert(stream);
2485 assert(stream->ustream);
d41f73b7 2486
ea88ca2a
MD
2487 if (stream->chan->switch_timer_enabled == 1) {
2488 consumer_timer_switch_stop(stream->chan);
2489 }
ffe60014
DG
2490 ustctl_destroy_stream(stream->ustream);
2491}
d41f73b7 2492
6d574024
DG
2493int lttng_ustconsumer_get_wakeup_fd(struct lttng_consumer_stream *stream)
2494{
2495 assert(stream);
2496 assert(stream->ustream);
2497
2498 return ustctl_stream_get_wakeup_fd(stream->ustream);
2499}
2500
2501int lttng_ustconsumer_close_wakeup_fd(struct lttng_consumer_stream *stream)
2502{
2503 assert(stream);
2504 assert(stream->ustream);
2505
2506 return ustctl_stream_close_wakeup_fd(stream->ustream);
2507}
2508
94d49140
JD
2509/*
2510 * Write up to one packet from the metadata cache to the channel.
2511 *
835322da
JG
2512 * Returns the number of bytes pushed from the cache into the ring buffer, or a
2513 * negative value on error.
94d49140
JD
2514 */
2515static
2516int commit_one_metadata_packet(struct lttng_consumer_stream *stream)
2517{
2518 ssize_t write_len;
2519 int ret;
2520
2521 pthread_mutex_lock(&stream->chan->metadata_cache->lock);
3a2dcb5e
JG
2522 if (stream->chan->metadata_cache->max_offset ==
2523 stream->ust_metadata_pushed) {
2524 /*
2525 * In the context of a user space metadata channel, a
2526 * change in version can be detected in two ways:
2527 * 1) During the pre-consume of the `read_subbuffer` loop,
2528 * 2) When populating the metadata ring buffer (i.e. here).
2529 *
2530 * This function is invoked when there is no metadata
2531 * available in the ring-buffer. If all data was consumed
2532 * up to the size of the metadata cache, there is no metadata
2533 * to insert in the ring-buffer.
2534 *
2535 * However, the metadata version could still have changed (a
2536 * regeneration without any new data will yield the same cache
2537 * size).
2538 *
2539 * The cache's version is checked for a version change and the
2540 * consumed position is reset if one occurred.
2541 *
2542 * This check is only necessary for the user space domain as
2543 * it has to manage the cache explicitly. If this reset was not
2544 * performed, no metadata would be consumed (and no reset would
2545 * occur as part of the pre-consume) until the metadata size
2546 * exceeded the cache size.
2547 */
2548 if (stream->metadata_version !=
2549 stream->chan->metadata_cache->version) {
2550 metadata_stream_reset_cache_consumed_position(stream);
2551 consumer_stream_metadata_set_version(stream,
2552 stream->chan->metadata_cache->version);
2553 } else {
2554 ret = 0;
2555 goto end;
2556 }
94d49140
JD
2557 }
2558
2559 write_len = ustctl_write_one_packet_to_channel(stream->chan->uchan,
2560 &stream->chan->metadata_cache->data[stream->ust_metadata_pushed],
c585821b 2561 stream->chan->metadata_cache->max_offset
94d49140
JD
2562 - stream->ust_metadata_pushed);
2563 assert(write_len != 0);
2564 if (write_len < 0) {
2565 ERR("Writing one metadata packet");
e426953d 2566 ret = write_len;
94d49140
JD
2567 goto end;
2568 }
2569 stream->ust_metadata_pushed += write_len;
2570
c585821b 2571 assert(stream->chan->metadata_cache->max_offset >=
94d49140
JD
2572 stream->ust_metadata_pushed);
2573 ret = write_len;
2574
0d88e046
JG
2575 /*
2576 * Switch packet (but don't open the next one) on every commit of
2577 * a metadata packet. Since the subbuffer is fully filled (with padding,
2578 * if needed), the stream is "quiescent" after this commit.
2579 */
2580 ustctl_flush_buffer(stream->ustream, 1);
2581 stream->quiescent = true;
94d49140
JD
2582end:
2583 pthread_mutex_unlock(&stream->chan->metadata_cache->lock);
2584 return ret;
2585}
2586
309167d2 2587
94d49140
JD
2588/*
2589 * Sync metadata meaning request them to the session daemon and snapshot to the
2590 * metadata thread can consumer them.
2591 *
c585821b
MD
2592 * Metadata stream lock is held here, but we need to release it when
2593 * interacting with sessiond, else we cause a deadlock with live
2594 * awaiting on metadata to be pushed out.
94d49140 2595 *
cdb72e4e 2596 * The RCU read side lock must be held by the caller.
94d49140 2597 */
835322da
JG
2598enum sync_metadata_status lttng_ustconsumer_sync_metadata(
2599 struct lttng_consumer_local_data *ctx,
cdb72e4e 2600 struct lttng_consumer_stream *metadata_stream)
94d49140
JD
2601{
2602 int ret;
835322da 2603 enum sync_metadata_status status;
cdb72e4e 2604 struct lttng_consumer_channel *metadata_channel;
94d49140
JD
2605
2606 assert(ctx);
cdb72e4e 2607 assert(metadata_stream);
94d49140 2608
cdb72e4e
JG
2609 metadata_channel = metadata_stream->chan;
2610 pthread_mutex_unlock(&metadata_stream->lock);
94d49140
JD
2611 /*
2612 * Request metadata from the sessiond, but don't wait for the flush
2613 * because we locked the metadata thread.
2614 */
cdb72e4e
JG
2615 ret = lttng_ustconsumer_request_metadata(ctx, metadata_channel, 0, 0);
2616 pthread_mutex_lock(&metadata_stream->lock);
94d49140 2617 if (ret < 0) {
835322da 2618 status = SYNC_METADATA_STATUS_ERROR;
94d49140
JD
2619 goto end;
2620 }
2621
cdb72e4e
JG
2622 /*
2623 * The metadata stream and channel can be deleted while the
2624 * metadata stream lock was released. The streamed is checked
2625 * for deletion before we use it further.
2626 *
2627 * Note that it is safe to access a logically-deleted stream since its
2628 * existence is still guaranteed by the RCU read side lock. However,
2629 * it should no longer be used. The close/deletion of the metadata
2630 * channel and stream already guarantees that all metadata has been
2631 * consumed. Therefore, there is nothing left to do in this function.
2632 */
2633 if (consumer_stream_is_deleted(metadata_stream)) {
2634 DBG("Metadata stream %" PRIu64 " was deleted during the metadata synchronization",
2635 metadata_stream->key);
835322da 2636 status = SYNC_METADATA_STATUS_NO_DATA;
cdb72e4e
JG
2637 goto end;
2638 }
2639
2640 ret = commit_one_metadata_packet(metadata_stream);
835322da
JG
2641 if (ret < 0) {
2642 status = SYNC_METADATA_STATUS_ERROR;
94d49140
JD
2643 goto end;
2644 } else if (ret > 0) {
835322da
JG
2645 status = SYNC_METADATA_STATUS_NEW_DATA;
2646 } else /* ret == 0 */ {
2647 status = SYNC_METADATA_STATUS_NO_DATA;
2648 goto end;
94d49140
JD
2649 }
2650
cdb72e4e 2651 ret = ustctl_snapshot(metadata_stream->ustream);
94d49140 2652 if (ret < 0) {
835322da
JG
2653 ERR("Failed to take a snapshot of the metadata ring-buffer positions, ret = %d", ret);
2654 status = SYNC_METADATA_STATUS_ERROR;
94d49140
JD
2655 goto end;
2656 }
2657
94d49140 2658end:
835322da 2659 return status;
94d49140
JD
2660}
2661
02b3d176
DG
2662/*
2663 * Return 0 on success else a negative value.
2664 */
2665static int notify_if_more_data(struct lttng_consumer_stream *stream,
2666 struct lttng_consumer_local_data *ctx)
2667{
2668 int ret;
2669 struct ustctl_consumer_stream *ustream;
2670
2671 assert(stream);
2672 assert(ctx);
2673
2674 ustream = stream->ustream;
2675
2676 /*
2677 * First, we are going to check if there is a new subbuffer available
2678 * before reading the stream wait_fd.
2679 */
2680 /* Get the next subbuffer */
2681 ret = ustctl_get_next_subbuf(ustream);
2682 if (ret) {
2683 /* No more data found, flag the stream. */
2684 stream->has_data = 0;
2685 ret = 0;
2686 goto end;
2687 }
2688
5420e5db 2689 ret = ustctl_put_subbuf(ustream);
02b3d176
DG
2690 assert(!ret);
2691
2692 /* This stream still has data. Flag it and wake up the data thread. */
2693 stream->has_data = 1;
2694
2695 if (stream->monitor && !stream->hangup_flush_done && !ctx->has_wakeup) {
2696 ssize_t writelen;
2697
2698 writelen = lttng_pipe_write(ctx->consumer_wakeup_pipe, "!", 1);
2699 if (writelen < 0 && errno != EAGAIN && errno != EWOULDBLOCK) {
2700 ret = writelen;
2701 goto end;
2702 }
2703
2704 /* The wake up pipe has been notified. */
2705 ctx->has_wakeup = 1;
2706 }
2707 ret = 0;
2708
2709end:
2710 return ret;
2711}
2712
bdc8d1bb 2713static int consumer_stream_ust_on_wake_up(struct lttng_consumer_stream *stream)
fb83fe64 2714{
bdc8d1bb 2715 int ret = 0;
fb83fe64 2716
fb83fe64 2717 /*
bdc8d1bb
JG
2718 * We can consume the 1 byte written into the wait_fd by
2719 * UST. Don't trigger error if we cannot read this one byte
2720 * (read returns 0), or if the error is EAGAIN or EWOULDBLOCK.
2721 *
2722 * This is only done when the stream is monitored by a thread,
2723 * before the flush is done after a hangup and if the stream
2724 * is not flagged with data since there might be nothing to
2725 * consume in the wait fd but still have data available
2726 * flagged by the consumer wake up pipe.
fb83fe64 2727 */
bdc8d1bb
JG
2728 if (stream->monitor && !stream->hangup_flush_done && !stream->has_data) {
2729 char dummy;
2730 ssize_t readlen;
2731
2732 readlen = lttng_read(stream->wait_fd, &dummy, 1);
2733 if (readlen < 0 && errno != EAGAIN && errno != EWOULDBLOCK) {
2734 ret = readlen;
2735 }
fb83fe64 2736 }
fb83fe64 2737
bdc8d1bb
JG
2738 return ret;
2739}
2740
2741static int extract_common_subbuffer_info(struct lttng_consumer_stream *stream,
2742 struct stream_subbuffer *subbuf)
2743{
2744 int ret;
2745
2746 ret = ustctl_get_subbuf_size(
2747 stream->ustream, &subbuf->info.data.subbuf_size);
2748 if (ret) {
fb83fe64
JD
2749 goto end;
2750 }
bdc8d1bb
JG
2751
2752 ret = ustctl_get_padded_subbuf_size(
2753 stream->ustream, &subbuf->info.data.padded_subbuf_size);
2754 if (ret) {
2755 goto end;
fb83fe64 2756 }
fb83fe64
JD
2757
2758end:
2759 return ret;
2760}
2761
bdc8d1bb
JG
2762static int extract_metadata_subbuffer_info(struct lttng_consumer_stream *stream,
2763 struct stream_subbuffer *subbuf)
d41f73b7 2764{
bdc8d1bb 2765 int ret;
ffe60014 2766
bdc8d1bb
JG
2767 ret = extract_common_subbuffer_info(stream, subbuf);
2768 if (ret) {
2769 goto end;
2770 }
d41f73b7 2771
3a2dcb5e 2772 subbuf->info.metadata.version = stream->metadata_version;
ffe60014 2773
bdc8d1bb
JG
2774end:
2775 return ret;
2776}
d41f73b7 2777
bdc8d1bb
JG
2778static int extract_data_subbuffer_info(struct lttng_consumer_stream *stream,
2779 struct stream_subbuffer *subbuf)
2780{
2781 int ret;
c617c0c6 2782
bdc8d1bb
JG
2783 ret = extract_common_subbuffer_info(stream, subbuf);
2784 if (ret) {
2785 goto end;
02d02e31
JD
2786 }
2787
bdc8d1bb
JG
2788 ret = ustctl_get_packet_size(
2789 stream->ustream, &subbuf->info.data.packet_size);
2790 if (ret < 0) {
2791 PERROR("Failed to get sub-buffer packet size");
2792 goto end;
2793 }
04ef1097 2794
bdc8d1bb
JG
2795 ret = ustctl_get_content_size(
2796 stream->ustream, &subbuf->info.data.content_size);
2797 if (ret < 0) {
2798 PERROR("Failed to get sub-buffer content size");
2799 goto end;
d41f73b7 2800 }
309167d2 2801
bdc8d1bb
JG
2802 ret = ustctl_get_timestamp_begin(
2803 stream->ustream, &subbuf->info.data.timestamp_begin);
2804 if (ret < 0) {
2805 PERROR("Failed to get sub-buffer begin timestamp");
2806 goto end;
2807 }
fb83fe64 2808
bdc8d1bb
JG
2809 ret = ustctl_get_timestamp_end(
2810 stream->ustream, &subbuf->info.data.timestamp_end);
2811 if (ret < 0) {
2812 PERROR("Failed to get sub-buffer end timestamp");
2813 goto end;
2814 }
2815
2816 ret = ustctl_get_events_discarded(
2817 stream->ustream, &subbuf->info.data.events_discarded);
2818 if (ret) {
2819 PERROR("Failed to get sub-buffer events discarded count");
2820 goto end;
2821 }
2822
2823 ret = ustctl_get_sequence_number(stream->ustream,
2824 &subbuf->info.data.sequence_number.value);
2825 if (ret) {
2826 /* May not be supported by older LTTng-modules. */
2827 if (ret != -ENOTTY) {
2828 PERROR("Failed to get sub-buffer sequence number");
2829 goto end;
fb83fe64 2830 }
1c20f0e2 2831 } else {
bdc8d1bb 2832 subbuf->info.data.sequence_number.is_set = true;
309167d2
JD
2833 }
2834
bdc8d1bb
JG
2835 ret = ustctl_get_stream_id(
2836 stream->ustream, &subbuf->info.data.stream_id);
2837 if (ret < 0) {
2838 PERROR("Failed to get stream id");
2839 goto end;
2840 }
1d4dfdef 2841
bdc8d1bb
JG
2842 ret = ustctl_get_instance_id(stream->ustream,
2843 &subbuf->info.data.stream_instance_id.value);
2844 if (ret) {
2845 /* May not be supported by older LTTng-modules. */
2846 if (ret != -ENOTTY) {
2847 PERROR("Failed to get stream instance id");
2848 goto end;
2849 }
2850 } else {
2851 subbuf->info.data.stream_instance_id.is_set = true;
2852 }
2853end:
2854 return ret;
2855}
1d4dfdef 2856
bdc8d1bb
JG
2857static int get_next_subbuffer_common(struct lttng_consumer_stream *stream,
2858 struct stream_subbuffer *subbuffer)
2859{
2860 int ret;
2861 const char *addr;
1d4dfdef 2862
bdc8d1bb
JG
2863 ret = stream->read_subbuffer_ops.extract_subbuffer_info(
2864 stream, subbuffer);
2865 if (ret) {
2866 goto end;
2867 }
02d02e31 2868
bdc8d1bb 2869 ret = get_current_subbuf_addr(stream, &addr);
276cd1d7 2870 if (ret) {
bdc8d1bb 2871 goto end;
276cd1d7
JG
2872 }
2873
bdc8d1bb
JG
2874 subbuffer->buffer.buffer = lttng_buffer_view_init(
2875 addr, 0, subbuffer->info.data.padded_subbuf_size);
2876 assert(subbuffer->buffer.buffer.data != NULL);
2877end:
2878 return ret;
2879}
a587bd64 2880
bdc8d1bb
JG
2881static int get_next_subbuffer(struct lttng_consumer_stream *stream,
2882 struct stream_subbuffer *subbuffer)
2883{
2884 int ret;
331744e3 2885
bdc8d1bb
JG
2886 ret = ustctl_get_next_subbuf(stream->ustream);
2887 if (ret) {
2888 goto end;
02b3d176
DG
2889 }
2890
bdc8d1bb
JG
2891 ret = get_next_subbuffer_common(stream, subbuffer);
2892 if (ret) {
9573993e 2893 goto end;
1c20f0e2 2894 }
bdc8d1bb
JG
2895end:
2896 return ret;
2897}
1c20f0e2 2898
bdc8d1bb
JG
2899static int get_next_subbuffer_metadata(struct lttng_consumer_stream *stream,
2900 struct stream_subbuffer *subbuffer)
2901{
2902 int ret;
e426953d
JG
2903 bool cache_empty;
2904 bool got_subbuffer;
2905 bool coherent;
2906 bool buffer_empty;
2907 unsigned long consumed_pos, produced_pos;
bdc8d1bb 2908
e426953d
JG
2909 do {
2910 ret = ustctl_get_next_subbuf(stream->ustream);
2911 if (ret == 0) {
2912 got_subbuffer = true;
2913 } else {
2914 got_subbuffer = false;
2915 if (ret != -EAGAIN) {
2916 /* Fatal error. */
2917 goto end;
2918 }
c585821b
MD
2919 }
2920
e426953d
JG
2921 /*
2922 * Determine if the cache is empty and ensure that a sub-buffer
2923 * is made available if the cache is not empty.
2924 */
2925 if (!got_subbuffer) {
2926 ret = commit_one_metadata_packet(stream);
2927 if (ret < 0 && ret != -ENOBUFS) {
2928 goto end;
2929 } else if (ret == 0) {
2930 /* Not an error, the cache is empty. */
2931 cache_empty = true;
2932 ret = -ENODATA;
2933 goto end;
2934 } else {
2935 cache_empty = false;
2936 }
2937 } else {
2938 pthread_mutex_lock(&stream->chan->metadata_cache->lock);
2939 cache_empty = stream->chan->metadata_cache->max_offset ==
2940 stream->ust_metadata_pushed;
2941 pthread_mutex_unlock(&stream->chan->metadata_cache->lock);
94d49140 2942 }
e426953d 2943 } while (!got_subbuffer);
94d49140 2944
e426953d 2945 /* Populate sub-buffer infos and view. */
bdc8d1bb
JG
2946 ret = get_next_subbuffer_common(stream, subbuffer);
2947 if (ret) {
2948 goto end;
309167d2 2949 }
e426953d
JG
2950
2951 ret = lttng_ustconsumer_sample_snapshot_positions(stream);
2952 if (ret < 0) {
2953 /*
2954 * -EAGAIN is not expected since we got a sub-buffer and haven't
2955 * pushed the consumption position yet (on put_next).
2956 */
2957 PERROR("Failed to take a snapshot of metadata buffer positions");
2958 goto end;
2959 }
2960
2961 ret = lttng_ustconsumer_get_consumed_snapshot(stream, &consumed_pos);
2962 if (ret) {
2963 PERROR("Failed to get metadata consumed position");
2964 goto end;
2965 }
2966
2967 ret = lttng_ustconsumer_get_produced_snapshot(stream, &produced_pos);
2968 if (ret) {
2969 PERROR("Failed to get metadata produced position");
2970 goto end;
2971 }
2972
2973 /* Last sub-buffer of the ring buffer ? */
2974 buffer_empty = (consumed_pos + stream->max_sb_size) == produced_pos;
2975
2976 /*
2977 * The sessiond registry lock ensures that coherent units of metadata
2978 * are pushed to the consumer daemon at once. Hence, if a sub-buffer is
2979 * acquired, the cache is empty, and it is the only available sub-buffer
2980 * available, it is safe to assume that it is "coherent".
2981 */
2982 coherent = got_subbuffer && cache_empty && buffer_empty;
2983
2984 LTTNG_OPTIONAL_SET(&subbuffer->info.metadata.coherent, coherent);
9573993e 2985end:
d41f73b7
MD
2986 return ret;
2987}
2988
bdc8d1bb
JG
2989static int put_next_subbuffer(struct lttng_consumer_stream *stream,
2990 struct stream_subbuffer *subbuffer)
2991{
2992 const int ret = ustctl_put_next_subbuf(stream->ustream);
2993
2994 assert(ret == 0);
2995 return ret;
2996}
2997
2998static int signal_metadata(struct lttng_consumer_stream *stream,
2999 struct lttng_consumer_local_data *ctx)
3000{
3001 return pthread_cond_broadcast(&stream->metadata_rdv) ? -errno : 0;
3002}
3003
e426953d 3004static int lttng_ustconsumer_set_stream_ops(
bdc8d1bb
JG
3005 struct lttng_consumer_stream *stream)
3006{
e426953d
JG
3007 int ret = 0;
3008
bdc8d1bb
JG
3009 stream->read_subbuffer_ops.on_wake_up = consumer_stream_ust_on_wake_up;
3010 if (stream->metadata_flag) {
3011 stream->read_subbuffer_ops.get_next_subbuffer =
3012 get_next_subbuffer_metadata;
3013 stream->read_subbuffer_ops.extract_subbuffer_info =
3014 extract_metadata_subbuffer_info;
3015 stream->read_subbuffer_ops.reset_metadata =
3a2dcb5e 3016 metadata_stream_reset_cache_consumed_position;
e426953d
JG
3017 if (stream->chan->is_live) {
3018 stream->read_subbuffer_ops.on_sleep = signal_metadata;
3019 ret = consumer_stream_enable_metadata_bucketization(
3020 stream);
3021 if (ret) {
3022 goto end;
3023 }
3024 }
bdc8d1bb
JG
3025 } else {
3026 stream->read_subbuffer_ops.get_next_subbuffer =
3027 get_next_subbuffer;
3028 stream->read_subbuffer_ops.extract_subbuffer_info =
3029 extract_data_subbuffer_info;
3030 stream->read_subbuffer_ops.on_sleep = notify_if_more_data;
3031 if (stream->chan->is_live) {
3032 stream->read_subbuffer_ops.send_live_beacon =
3033 consumer_flush_ust_index;
3034 }
3035 }
3036
3037 stream->read_subbuffer_ops.put_next_subbuffer = put_next_subbuffer;
e426953d
JG
3038end:
3039 return ret;
bdc8d1bb
JG
3040}
3041
ffe60014
DG
3042/*
3043 * Called when a stream is created.
fe4477ee
JD
3044 *
3045 * Return 0 on success or else a negative value.
ffe60014 3046 */
d41f73b7
MD
3047int lttng_ustconsumer_on_recv_stream(struct lttng_consumer_stream *stream)
3048{
fe4477ee
JD
3049 int ret;
3050
10a50311
JD
3051 assert(stream);
3052
d2956687
JG
3053 /*
3054 * Don't create anything if this is set for streaming or if there is
3055 * no current trace chunk on the parent channel.
3056 */
3057 if (stream->net_seq_idx == (uint64_t) -1ULL && stream->chan->monitor &&
3058 stream->chan->trace_chunk) {
3059 ret = consumer_stream_create_output_files(stream, true);
3060 if (ret) {
fe4477ee
JD
3061 goto error;
3062 }
fe4477ee 3063 }
bdc8d1bb
JG
3064
3065 lttng_ustconsumer_set_stream_ops(stream);
fe4477ee
JD
3066 ret = 0;
3067
3068error:
3069 return ret;
d41f73b7 3070}
ca22feea
DG
3071
3072/*
3073 * Check if data is still being extracted from the buffers for a specific
4e9a4686
DG
3074 * stream. Consumer data lock MUST be acquired before calling this function
3075 * and the stream lock.
ca22feea 3076 *
6d805429 3077 * Return 1 if the traced data are still getting read else 0 meaning that the
ca22feea
DG
3078 * data is available for trace viewer reading.
3079 */
6d805429 3080int lttng_ustconsumer_data_pending(struct lttng_consumer_stream *stream)
ca22feea
DG
3081{
3082 int ret;
3083
3084 assert(stream);
ffe60014 3085 assert(stream->ustream);
920f2ddb 3086 ASSERT_LOCKED(stream->lock);
ca22feea 3087
6d805429 3088 DBG("UST consumer checking data pending");
c8f59ee5 3089
ca6b395f
MD
3090 if (stream->endpoint_status != CONSUMER_ENDPOINT_ACTIVE) {
3091 ret = 0;
3092 goto end;
3093 }
3094
04ef1097 3095 if (stream->chan->type == CONSUMER_CHANNEL_TYPE_METADATA) {
e6ee4eab
DG
3096 uint64_t contiguous, pushed;
3097
3098 /* Ease our life a bit. */
d5af2d07 3099 pthread_mutex_lock(&stream->chan->metadata_cache->lock);
c585821b 3100 contiguous = stream->chan->metadata_cache->max_offset;
d5af2d07 3101 pthread_mutex_unlock(&stream->chan->metadata_cache->lock);
e6ee4eab
DG
3102 pushed = stream->ust_metadata_pushed;
3103
04ef1097
MD
3104 /*
3105 * We can simply check whether all contiguously available data
3106 * has been pushed to the ring buffer, since the push operation
3107 * is performed within get_next_subbuf(), and because both
3108 * get_next_subbuf() and put_next_subbuf() are issued atomically
3109 * thanks to the stream lock within
3110 * lttng_ustconsumer_read_subbuffer(). This basically means that
3111 * whetnever ust_metadata_pushed is incremented, the associated
3112 * metadata has been consumed from the metadata stream.
3113 */
3114 DBG("UST consumer metadata pending check: contiguous %" PRIu64 " vs pushed %" PRIu64,
e6ee4eab 3115 contiguous, pushed);
aa01b94c 3116 assert(((int64_t) (contiguous - pushed)) >= 0);
e6ee4eab 3117 if ((contiguous != pushed) ||
6acdf328 3118 (((int64_t) contiguous - pushed) > 0 || contiguous == 0)) {
04ef1097
MD
3119 ret = 1; /* Data is pending */
3120 goto end;
3121 }
3122 } else {
3123 ret = ustctl_get_next_subbuf(stream->ustream);
3124 if (ret == 0) {
3125 /*
3126 * There is still data so let's put back this
3127 * subbuffer.
3128 */
3129 ret = ustctl_put_subbuf(stream->ustream);
3130 assert(ret == 0);
3131 ret = 1; /* Data is pending */
3132 goto end;
3133 }
ca22feea
DG
3134 }
3135
6d805429
DG
3136 /* Data is NOT pending so ready to be read. */
3137 ret = 0;
ca22feea 3138
6efae65e
DG
3139end:
3140 return ret;
ca22feea 3141}
d88aee68 3142
6d574024
DG
3143/*
3144 * Stop a given metadata channel timer if enabled and close the wait fd which
3145 * is the poll pipe of the metadata stream.
3146 *
d2c82a5a 3147 * This MUST be called with the metadata channel lock acquired.
6d574024
DG
3148 */
3149void lttng_ustconsumer_close_metadata(struct lttng_consumer_channel *metadata)
3150{
3151 int ret;
3152
3153 assert(metadata);
3154 assert(metadata->type == CONSUMER_CHANNEL_TYPE_METADATA);
3155
3156 DBG("Closing metadata channel key %" PRIu64, metadata->key);
3157
3158 if (metadata->switch_timer_enabled == 1) {
3159 consumer_timer_switch_stop(metadata);
3160 }
3161
3162 if (!metadata->metadata_stream) {
3163 goto end;
3164 }
3165
3166 /*
3167 * Closing write side so the thread monitoring the stream wakes up if any
3168 * and clean the metadata stream.
3169 */
3170 if (metadata->metadata_stream->ust_metadata_poll_pipe[1] >= 0) {
3171 ret = close(metadata->metadata_stream->ust_metadata_poll_pipe[1]);
3172 if (ret < 0) {
3173 PERROR("closing metadata pipe write side");
3174 }
3175 metadata->metadata_stream->ust_metadata_poll_pipe[1] = -1;
3176 }
3177
3178end:
3179 return;
3180}
3181
d88aee68
DG
3182/*
3183 * Close every metadata stream wait fd of the metadata hash table. This
3184 * function MUST be used very carefully so not to run into a race between the
3185 * metadata thread handling streams and this function closing their wait fd.
3186 *
3187 * For UST, this is used when the session daemon hangs up. Its the metadata
3188 * producer so calling this is safe because we are assured that no state change
3189 * can occur in the metadata thread for the streams in the hash table.
3190 */
6d574024 3191void lttng_ustconsumer_close_all_metadata(struct lttng_ht *metadata_ht)
d88aee68 3192{
d88aee68
DG
3193 struct lttng_ht_iter iter;
3194 struct lttng_consumer_stream *stream;
3195
3196 assert(metadata_ht);
3197 assert(metadata_ht->ht);
3198
3199 DBG("UST consumer closing all metadata streams");
3200
3201 rcu_read_lock();
3202 cds_lfht_for_each_entry(metadata_ht->ht, &iter.iter, stream,
3203 node.node) {
9ce5646a
MD
3204
3205 health_code_update();
3206
be2b50c7 3207 pthread_mutex_lock(&stream->chan->lock);
6d574024 3208 lttng_ustconsumer_close_metadata(stream->chan);
be2b50c7
DG
3209 pthread_mutex_unlock(&stream->chan->lock);
3210
d88aee68
DG
3211 }
3212 rcu_read_unlock();
3213}
d8ef542d
MD
3214
3215void lttng_ustconsumer_close_stream_wakeup(struct lttng_consumer_stream *stream)
3216{
3217 int ret;
3218
3219 ret = ustctl_stream_close_wakeup_fd(stream->ustream);
3220 if (ret < 0) {
3221 ERR("Unable to close wakeup fd");
3222 }
3223}
331744e3 3224
f666ae70
MD
3225/*
3226 * Please refer to consumer-timer.c before adding any lock within this
3227 * function or any of its callees. Timers have a very strict locking
3228 * semantic with respect to teardown. Failure to respect this semantic
3229 * introduces deadlocks.
c585821b
MD
3230 *
3231 * DON'T hold the metadata lock when calling this function, else this
3232 * can cause deadlock involving consumer awaiting for metadata to be
3233 * pushed out due to concurrent interaction with the session daemon.
f666ae70 3234 */
331744e3 3235int lttng_ustconsumer_request_metadata(struct lttng_consumer_local_data *ctx,
94d49140 3236 struct lttng_consumer_channel *channel, int timer, int wait)
331744e3
JD
3237{
3238 struct lttcomm_metadata_request_msg request;
3239 struct lttcomm_consumer_msg msg;
0c759fc9 3240 enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS;
93ec662e 3241 uint64_t len, key, offset, version;
331744e3
JD
3242 int ret;
3243
3244 assert(channel);
3245 assert(channel->metadata_cache);
3246
53efb85a
MD
3247 memset(&request, 0, sizeof(request));
3248
331744e3
JD
3249 /* send the metadata request to sessiond */
3250 switch (consumer_data.type) {
3251 case LTTNG_CONSUMER64_UST:
3252 request.bits_per_long = 64;
3253 break;
3254 case LTTNG_CONSUMER32_UST:
3255 request.bits_per_long = 32;
3256 break;
3257 default:
3258 request.bits_per_long = 0;
3259 break;
3260 }
3261
3262 request.session_id = channel->session_id;
1950109e 3263 request.session_id_per_pid = channel->session_id_per_pid;
567eb353
DG
3264 /*
3265 * Request the application UID here so the metadata of that application can
3266 * be sent back. The channel UID corresponds to the user UID of the session
3267 * used for the rights on the stream file(s).
3268 */
3269 request.uid = channel->ust_app_uid;
331744e3 3270 request.key = channel->key;
567eb353 3271
1950109e 3272 DBG("Sending metadata request to sessiond, session id %" PRIu64
3e25d926 3273 ", per-pid %" PRIu64 ", app UID %u and channel key %" PRIu64,
567eb353
DG
3274 request.session_id, request.session_id_per_pid, request.uid,
3275 request.key);
331744e3 3276
75d83e50 3277 pthread_mutex_lock(&ctx->metadata_socket_lock);
9ce5646a
MD
3278
3279 health_code_update();
3280
331744e3
JD
3281 ret = lttcomm_send_unix_sock(ctx->consumer_metadata_socket, &request,
3282 sizeof(request));
3283 if (ret < 0) {
3284 ERR("Asking metadata to sessiond");
3285 goto end;
3286 }
3287
9ce5646a
MD
3288 health_code_update();
3289
331744e3
JD
3290 /* Receive the metadata from sessiond */
3291 ret = lttcomm_recv_unix_sock(ctx->consumer_metadata_socket, &msg,
3292 sizeof(msg));
3293 if (ret != sizeof(msg)) {
8fd623e0 3294 DBG("Consumer received unexpected message size %d (expects %zu)",
331744e3
JD
3295 ret, sizeof(msg));
3296 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_ERROR_RECV_CMD);
3297 /*
3298 * The ret value might 0 meaning an orderly shutdown but this is ok
3299 * since the caller handles this.
3300 */
3301 goto end;
3302 }
3303
9ce5646a
MD
3304 health_code_update();
3305
331744e3
JD
3306 if (msg.cmd_type == LTTNG_ERR_UND) {
3307 /* No registry found */
3308 (void) consumer_send_status_msg(ctx->consumer_metadata_socket,
3309 ret_code);
3310 ret = 0;
3311 goto end;
3312 } else if (msg.cmd_type != LTTNG_CONSUMER_PUSH_METADATA) {
3313 ERR("Unexpected cmd_type received %d", msg.cmd_type);
3314 ret = -1;
3315 goto end;
3316 }
3317
3318 len = msg.u.push_metadata.len;
3319 key = msg.u.push_metadata.key;
3320 offset = msg.u.push_metadata.target_offset;
93ec662e 3321 version = msg.u.push_metadata.version;
331744e3
JD
3322
3323 assert(key == channel->key);
3324 if (len == 0) {
3325 DBG("No new metadata to receive for key %" PRIu64, key);
3326 }
3327
9ce5646a
MD
3328 health_code_update();
3329
331744e3
JD
3330 /* Tell session daemon we are ready to receive the metadata. */
3331 ret = consumer_send_status_msg(ctx->consumer_metadata_socket,
0c759fc9 3332 LTTCOMM_CONSUMERD_SUCCESS);
331744e3
JD
3333 if (ret < 0 || len == 0) {
3334 /*
3335 * Somehow, the session daemon is not responding anymore or there is
3336 * nothing to receive.
3337 */
3338 goto end;
3339 }
3340
9ce5646a
MD
3341 health_code_update();
3342
1eb682be 3343 ret = lttng_ustconsumer_recv_metadata(ctx->consumer_metadata_socket,
93ec662e 3344 key, offset, len, version, channel, timer, wait);
1eb682be 3345 if (ret >= 0) {
f2a444f1
DG
3346 /*
3347 * Only send the status msg if the sessiond is alive meaning a positive
3348 * ret code.
3349 */
1eb682be 3350 (void) consumer_send_status_msg(ctx->consumer_metadata_socket, ret);
f2a444f1 3351 }
331744e3
JD
3352 ret = 0;
3353
3354end:
9ce5646a
MD
3355 health_code_update();
3356
75d83e50 3357 pthread_mutex_unlock(&ctx->metadata_socket_lock);
331744e3
JD
3358 return ret;
3359}
70190e1c
DG
3360
3361/*
3362 * Return the ustctl call for the get stream id.
3363 */
3364int lttng_ustconsumer_get_stream_id(struct lttng_consumer_stream *stream,
3365 uint64_t *stream_id)
3366{
3367 assert(stream);
3368 assert(stream_id);
3369
3370 return ustctl_get_stream_id(stream->ustream, stream_id);
3371}
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