Assert that the consumer socket lock is taken during communication
[lttng-tools.git] / src / bin / lttng-sessiond / consumer.c
CommitLineData
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1/*
2 * Copyright (C) 2012 - David Goulet <dgoulet@efficios.com>
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms of the GNU General Public License, version 2 only, as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License along with
14 * this program; if not, write to the Free Software Foundation, Inc., 51
15 * Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
16 */
17
6c1c0768 18#define _LGPL_SOURCE
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19#include <assert.h>
20#include <stdio.h>
21#include <stdlib.h>
22#include <string.h>
23#include <sys/stat.h>
24#include <sys/types.h>
25#include <unistd.h>
d88aee68 26#include <inttypes.h>
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27
28#include <common/common.h>
29#include <common/defaults.h>
30#include <common/uri.h>
d3e2ba59 31#include <common/relayd/relayd.h>
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32
33#include "consumer.h"
8782cc74 34#include "health-sessiond.h"
7972aab2 35#include "ust-app.h"
0b2dc8df 36#include "utils.h"
00e2e675 37
52898cb1
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38/*
39 * Send a data payload using a given consumer socket of size len.
40 *
41 * The consumer socket lock MUST be acquired before calling this since this
42 * function can change the fd value.
43 *
44 * Return 0 on success else a negative value on error.
45 */
46int consumer_socket_send(struct consumer_socket *socket, void *msg, size_t len)
47{
48 int fd;
49 ssize_t size;
50
51 assert(socket);
9363801e 52 assert(socket->fd_ptr);
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53 assert(msg);
54
55 /* Consumer socket is invalid. Stopping. */
9363801e 56 fd = *socket->fd_ptr;
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57 if (fd < 0) {
58 goto error;
59 }
60
61 size = lttcomm_send_unix_sock(fd, msg, len);
62 if (size < 0) {
63 /* The above call will print a PERROR on error. */
64 DBG("Error when sending data to consumer on sock %d", fd);
65 /*
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66 * At this point, the socket is not usable anymore thus closing it and
67 * setting the file descriptor to -1 so it is not reused.
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68 */
69
70 /* This call will PERROR on error. */
71 (void) lttcomm_close_unix_sock(fd);
9363801e 72 *socket->fd_ptr = -1;
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73 goto error;
74 }
75
76 return 0;
77
78error:
79 return -1;
80}
81
82/*
83 * Receive a data payload using a given consumer socket of size len.
84 *
85 * The consumer socket lock MUST be acquired before calling this since this
86 * function can change the fd value.
87 *
88 * Return 0 on success else a negative value on error.
89 */
90int consumer_socket_recv(struct consumer_socket *socket, void *msg, size_t len)
91{
92 int fd;
93 ssize_t size;
94
95 assert(socket);
9363801e 96 assert(socket->fd_ptr);
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97 assert(msg);
98
99 /* Consumer socket is invalid. Stopping. */
9363801e 100 fd = *socket->fd_ptr;
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101 if (fd < 0) {
102 goto error;
103 }
104
105 size = lttcomm_recv_unix_sock(fd, msg, len);
106 if (size <= 0) {
107 /* The above call will print a PERROR on error. */
108 DBG("Error when receiving data from the consumer socket %d", fd);
109 /*
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110 * At this point, the socket is not usable anymore thus closing it and
111 * setting the file descriptor to -1 so it is not reused.
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112 */
113
114 /* This call will PERROR on error. */
115 (void) lttcomm_close_unix_sock(fd);
9363801e 116 *socket->fd_ptr = -1;
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117 goto error;
118 }
119
120 return 0;
121
122error:
123 return -1;
124}
125
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126/*
127 * Receive a reply command status message from the consumer. Consumer socket
128 * lock MUST be acquired before calling this function.
129 *
130 * Return 0 on success, -1 on recv error or a negative lttng error code which
131 * was possibly returned by the consumer.
132 */
133int consumer_recv_status_reply(struct consumer_socket *sock)
134{
135 int ret;
136 struct lttcomm_consumer_status_msg reply;
137
138 assert(sock);
139
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140 ret = consumer_socket_recv(sock, &reply, sizeof(reply));
141 if (ret < 0) {
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142 goto end;
143 }
144
0c759fc9 145 if (reply.ret_code == LTTCOMM_CONSUMERD_SUCCESS) {
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146 /* All good. */
147 ret = 0;
148 } else {
149 ret = -reply.ret_code;
ffe60014 150 DBG("Consumer ret code %d", ret);
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151 }
152
153end:
154 return ret;
155}
156
ffe60014
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157/*
158 * Once the ASK_CHANNEL command is sent to the consumer, the channel
159 * information are sent back. This call receives that data and populates key
160 * and stream_count.
161 *
162 * On success return 0 and both key and stream_count are set. On error, a
163 * negative value is sent back and both parameters are untouched.
164 */
165int consumer_recv_status_channel(struct consumer_socket *sock,
d88aee68 166 uint64_t *key, unsigned int *stream_count)
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167{
168 int ret;
169 struct lttcomm_consumer_status_channel reply;
170
171 assert(sock);
172 assert(stream_count);
173 assert(key);
174
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175 ret = consumer_socket_recv(sock, &reply, sizeof(reply));
176 if (ret < 0) {
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177 goto end;
178 }
179
180 /* An error is possible so don't touch the key and stream_count. */
0c759fc9 181 if (reply.ret_code != LTTCOMM_CONSUMERD_SUCCESS) {
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182 ret = -1;
183 goto end;
184 }
185
186 *key = reply.key;
187 *stream_count = reply.stream_count;
0c759fc9 188 ret = 0;
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189
190end:
191 return ret;
192}
193
2f77fc4b
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194/*
195 * Send destroy relayd command to consumer.
196 *
197 * On success return positive value. On error, negative value.
198 */
199int consumer_send_destroy_relayd(struct consumer_socket *sock,
200 struct consumer_output *consumer)
201{
202 int ret;
203 struct lttcomm_consumer_msg msg;
204
205 assert(consumer);
206 assert(sock);
207
9363801e 208 DBG2("Sending destroy relayd command to consumer sock %d", *sock->fd_ptr);
2f77fc4b 209
53efb85a 210 memset(&msg, 0, sizeof(msg));
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211 msg.cmd_type = LTTNG_CONSUMER_DESTROY_RELAYD;
212 msg.u.destroy_relayd.net_seq_idx = consumer->net_seq_index;
213
214 pthread_mutex_lock(sock->lock);
52898cb1 215 ret = consumer_socket_send(sock, &msg, sizeof(msg));
2f77fc4b 216 if (ret < 0) {
52898cb1 217 goto error;
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218 }
219
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220 /* Don't check the return value. The caller will do it. */
221 ret = consumer_recv_status_reply(sock);
222
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223 DBG2("Consumer send destroy relayd command done");
224
225error:
52898cb1 226 pthread_mutex_unlock(sock->lock);
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227 return ret;
228}
229
230/*
231 * For each consumer socket in the consumer output object, send a destroy
232 * relayd command.
233 */
234void consumer_output_send_destroy_relayd(struct consumer_output *consumer)
235{
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236 struct lttng_ht_iter iter;
237 struct consumer_socket *socket;
238
239 assert(consumer);
240
241 /* Destroy any relayd connection */
6dc3064a 242 if (consumer->type == CONSUMER_DST_NET) {
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243 rcu_read_lock();
244 cds_lfht_for_each_entry(consumer->socks->ht, &iter.iter, socket,
245 node.node) {
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246 int ret;
247
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248 /* Send destroy relayd command */
249 ret = consumer_send_destroy_relayd(socket, consumer);
250 if (ret < 0) {
c5c45efa 251 DBG("Unable to send destroy relayd command to consumer");
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252 /* Continue since we MUST delete everything at this point. */
253 }
254 }
255 rcu_read_unlock();
256 }
257}
258
a4b92340
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259/*
260 * From a consumer_data structure, allocate and add a consumer socket to the
261 * consumer output.
262 *
263 * Return 0 on success, else negative value on error
264 */
265int consumer_create_socket(struct consumer_data *data,
266 struct consumer_output *output)
267{
268 int ret = 0;
269 struct consumer_socket *socket;
270
271 assert(data);
272
273 if (output == NULL || data->cmd_sock < 0) {
274 /*
275 * Not an error. Possible there is simply not spawned consumer or it's
276 * disabled for the tracing session asking the socket.
277 */
278 goto error;
279 }
280
281 rcu_read_lock();
282 socket = consumer_find_socket(data->cmd_sock, output);
283 rcu_read_unlock();
284 if (socket == NULL) {
4ce514c4 285 socket = consumer_allocate_socket(&data->cmd_sock);
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286 if (socket == NULL) {
287 ret = -1;
288 goto error;
289 }
290
2f77fc4b 291 socket->registered = 0;
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292 socket->lock = &data->lock;
293 rcu_read_lock();
294 consumer_add_socket(socket, output);
295 rcu_read_unlock();
296 }
297
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298 socket->type = data->type;
299
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300 DBG3("Consumer socket created (fd: %d) and added to output",
301 data->cmd_sock);
302
303error:
304 return ret;
305}
306
7972aab2
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307/*
308 * Return the consumer socket from the given consumer output with the right
309 * bitness. On error, returns NULL.
310 *
311 * The caller MUST acquire a rcu read side lock and keep it until the socket
312 * object reference is not needed anymore.
313 */
314struct consumer_socket *consumer_find_socket_by_bitness(int bits,
315 struct consumer_output *consumer)
316{
317 int consumer_fd;
318 struct consumer_socket *socket = NULL;
319
320 switch (bits) {
321 case 64:
322 consumer_fd = uatomic_read(&ust_consumerd64_fd);
323 break;
324 case 32:
325 consumer_fd = uatomic_read(&ust_consumerd32_fd);
326 break;
327 default:
328 assert(0);
329 goto end;
330 }
331
332 socket = consumer_find_socket(consumer_fd, consumer);
333 if (!socket) {
334 ERR("Consumer socket fd %d not found in consumer obj %p",
335 consumer_fd, consumer);
336 }
337
338end:
339 return socket;
340}
341
173af62f
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342/*
343 * Find a consumer_socket in a consumer_output hashtable. Read side lock must
344 * be acquired before calling this function and across use of the
345 * returned consumer_socket.
346 */
347struct consumer_socket *consumer_find_socket(int key,
348 struct consumer_output *consumer)
349{
350 struct lttng_ht_iter iter;
351 struct lttng_ht_node_ulong *node;
352 struct consumer_socket *socket = NULL;
353
354 /* Negative keys are lookup failures */
a4b92340 355 if (key < 0 || consumer == NULL) {
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356 return NULL;
357 }
358
359 lttng_ht_lookup(consumer->socks, (void *)((unsigned long) key),
360 &iter);
361 node = lttng_ht_iter_get_node_ulong(&iter);
362 if (node != NULL) {
363 socket = caa_container_of(node, struct consumer_socket, node);
364 }
365
366 return socket;
367}
368
369/*
370 * Allocate a new consumer_socket and return the pointer.
371 */
4ce514c4 372struct consumer_socket *consumer_allocate_socket(int *fd)
173af62f
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373{
374 struct consumer_socket *socket = NULL;
375
4ce514c4
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376 assert(fd);
377
173af62f
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378 socket = zmalloc(sizeof(struct consumer_socket));
379 if (socket == NULL) {
380 PERROR("zmalloc consumer socket");
381 goto error;
382 }
383
9363801e 384 socket->fd_ptr = fd;
4ce514c4 385 lttng_ht_node_init_ulong(&socket->node, *fd);
173af62f
DG
386
387error:
388 return socket;
389}
390
391/*
392 * Add consumer socket to consumer output object. Read side lock must be
393 * acquired before calling this function.
394 */
395void consumer_add_socket(struct consumer_socket *sock,
396 struct consumer_output *consumer)
397{
398 assert(sock);
399 assert(consumer);
400
401 lttng_ht_add_unique_ulong(consumer->socks, &sock->node);
402}
403
404/*
405 * Delte consumer socket to consumer output object. Read side lock must be
406 * acquired before calling this function.
407 */
408void consumer_del_socket(struct consumer_socket *sock,
409 struct consumer_output *consumer)
410{
411 int ret;
412 struct lttng_ht_iter iter;
413
414 assert(sock);
415 assert(consumer);
416
417 iter.iter.node = &sock->node.node;
418 ret = lttng_ht_del(consumer->socks, &iter);
419 assert(!ret);
420}
421
422/*
423 * RCU destroy call function.
424 */
425static void destroy_socket_rcu(struct rcu_head *head)
426{
427 struct lttng_ht_node_ulong *node =
428 caa_container_of(head, struct lttng_ht_node_ulong, head);
429 struct consumer_socket *socket =
430 caa_container_of(node, struct consumer_socket, node);
431
432 free(socket);
433}
434
435/*
436 * Destroy and free socket pointer in a call RCU. Read side lock must be
437 * acquired before calling this function.
438 */
439void consumer_destroy_socket(struct consumer_socket *sock)
440{
441 assert(sock);
442
443 /*
444 * We DO NOT close the file descriptor here since it is global to the
2f77fc4b
DG
445 * session daemon and is closed only if the consumer dies or a custom
446 * consumer was registered,
173af62f 447 */
2f77fc4b 448 if (sock->registered) {
9363801e
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449 DBG3("Consumer socket was registered. Closing fd %d", *sock->fd_ptr);
450 lttcomm_close_unix_sock(*sock->fd_ptr);
2f77fc4b 451 }
173af62f
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452
453 call_rcu(&sock->node.head, destroy_socket_rcu);
454}
455
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456/*
457 * Allocate and assign data to a consumer_output object.
458 *
459 * Return pointer to structure.
460 */
461struct consumer_output *consumer_create_output(enum consumer_dst_type type)
462{
463 struct consumer_output *output = NULL;
464
465 output = zmalloc(sizeof(struct consumer_output));
466 if (output == NULL) {
467 PERROR("zmalloc consumer_output");
468 goto error;
469 }
470
471 /* By default, consumer output is enabled */
472 output->enabled = 1;
473 output->type = type;
d88aee68 474 output->net_seq_index = (uint64_t) -1ULL;
6addfa37 475 urcu_ref_init(&output->ref);
173af62f
DG
476
477 output->socks = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
00e2e675
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478
479error:
480 return output;
481}
482
af706bb7
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483/*
484 * Iterate over the consumer output socket hash table and destroy them. The
485 * socket file descriptor are only closed if the consumer output was
486 * registered meaning it's an external consumer.
487 */
488void consumer_destroy_output_sockets(struct consumer_output *obj)
489{
490 struct lttng_ht_iter iter;
491 struct consumer_socket *socket;
492
493 if (!obj->socks) {
494 return;
495 }
496
497 rcu_read_lock();
498 cds_lfht_for_each_entry(obj->socks->ht, &iter.iter, socket, node.node) {
499 consumer_del_socket(socket, obj);
500 consumer_destroy_socket(socket);
501 }
502 rcu_read_unlock();
503}
504
00e2e675
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505/*
506 * Delete the consumer_output object from the list and free the ptr.
36b588ed
MD
507 *
508 * Should *NOT* be called with RCU read-side lock held.
00e2e675 509 */
6addfa37 510static void consumer_release_output(struct urcu_ref *ref)
00e2e675 511{
6addfa37
MD
512 struct consumer_output *obj =
513 caa_container_of(ref, struct consumer_output, ref);
00e2e675 514
af706bb7 515 consumer_destroy_output_sockets(obj);
2f77fc4b 516
af706bb7 517 if (obj->socks) {
2f77fc4b 518 /* Finally destroy HT */
0b2dc8df 519 ht_cleanup_push(obj->socks);
00e2e675 520 }
173af62f 521
00e2e675
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522 free(obj);
523}
524
6addfa37
MD
525/*
526 * Get the consumer_output object.
527 */
528void consumer_output_get(struct consumer_output *obj)
529{
530 urcu_ref_get(&obj->ref);
531}
532
533/*
534 * Put the consumer_output object.
535 *
536 * Should *NOT* be called with RCU read-side lock held.
537 */
538void consumer_output_put(struct consumer_output *obj)
539{
540 if (!obj) {
541 return;
542 }
543 urcu_ref_put(&obj->ref, consumer_release_output);
544}
545
00e2e675
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546/*
547 * Copy consumer output and returned the newly allocated copy.
36b588ed
MD
548 *
549 * Should *NOT* be called with RCU read-side lock held.
00e2e675
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550 */
551struct consumer_output *consumer_copy_output(struct consumer_output *obj)
552{
6dc3064a 553 int ret;
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554 struct consumer_output *output;
555
556 assert(obj);
557
558 output = consumer_create_output(obj->type);
559 if (output == NULL) {
6addfa37 560 goto end;
00e2e675 561 }
6addfa37
MD
562 output->enabled = obj->enabled;
563 output->net_seq_index = obj->net_seq_index;
564 memcpy(output->subdir, obj->subdir, PATH_MAX);
565 output->snapshot = obj->snapshot;
b31610f2
JD
566 output->relay_major_version = obj->relay_major_version;
567 output->relay_minor_version = obj->relay_minor_version;
6addfa37 568 memcpy(&output->dst, &obj->dst, sizeof(output->dst));
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DG
569 ret = consumer_copy_sockets(output, obj);
570 if (ret < 0) {
6addfa37 571 goto error_put;
6dc3064a 572 }
6addfa37 573end:
6dc3064a
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574 return output;
575
6addfa37
MD
576error_put:
577 consumer_output_put(output);
6dc3064a
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578 return NULL;
579}
580
581/*
582 * Copy consumer sockets from src to dst.
583 *
584 * Return 0 on success or else a negative value.
585 */
586int consumer_copy_sockets(struct consumer_output *dst,
587 struct consumer_output *src)
588{
589 int ret = 0;
590 struct lttng_ht_iter iter;
591 struct consumer_socket *socket, *copy_sock;
592
593 assert(dst);
594 assert(src);
595
b82c5c4d 596 rcu_read_lock();
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597 cds_lfht_for_each_entry(src->socks->ht, &iter.iter, socket, node.node) {
598 /* Ignore socket that are already there. */
9363801e 599 copy_sock = consumer_find_socket(*socket->fd_ptr, dst);
6dc3064a
DG
600 if (copy_sock) {
601 continue;
602 }
603
173af62f 604 /* Create new socket object. */
9363801e 605 copy_sock = consumer_allocate_socket(socket->fd_ptr);
173af62f 606 if (copy_sock == NULL) {
b82c5c4d 607 rcu_read_unlock();
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608 ret = -ENOMEM;
609 goto error;
173af62f
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610 }
611
09a90bcd 612 copy_sock->registered = socket->registered;
6dc3064a
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613 /*
614 * This is valid because this lock is shared accross all consumer
615 * object being the global lock of the consumer data structure of the
616 * session daemon.
617 */
173af62f 618 copy_sock->lock = socket->lock;
6dc3064a 619 consumer_add_socket(copy_sock, dst);
173af62f 620 }
b82c5c4d 621 rcu_read_unlock();
173af62f 622
00e2e675 623error:
6dc3064a 624 return ret;
00e2e675
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625}
626
627/*
628 * Set network URI to the consumer output object.
629 *
ad20f474
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630 * Return 0 on success. Return 1 if the URI were equal. Else, negative value on
631 * error.
00e2e675
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632 */
633int consumer_set_network_uri(struct consumer_output *obj,
634 struct lttng_uri *uri)
635{
636 int ret;
637 char tmp_path[PATH_MAX];
638 char hostname[HOST_NAME_MAX];
639 struct lttng_uri *dst_uri = NULL;
640
641 /* Code flow error safety net. */
642 assert(obj);
643 assert(uri);
644
645 switch (uri->stype) {
646 case LTTNG_STREAM_CONTROL:
647 dst_uri = &obj->dst.net.control;
648 obj->dst.net.control_isset = 1;
649 if (uri->port == 0) {
650 /* Assign default port. */
651 uri->port = DEFAULT_NETWORK_CONTROL_PORT;
a74934ba
DG
652 } else {
653 if (obj->dst.net.data_isset && uri->port ==
654 obj->dst.net.data.port) {
655 ret = -LTTNG_ERR_INVALID;
656 goto error;
657 }
00e2e675 658 }
ad20f474 659 DBG3("Consumer control URI set with port %d", uri->port);
00e2e675
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660 break;
661 case LTTNG_STREAM_DATA:
662 dst_uri = &obj->dst.net.data;
663 obj->dst.net.data_isset = 1;
664 if (uri->port == 0) {
665 /* Assign default port. */
666 uri->port = DEFAULT_NETWORK_DATA_PORT;
a74934ba
DG
667 } else {
668 if (obj->dst.net.control_isset && uri->port ==
669 obj->dst.net.control.port) {
670 ret = -LTTNG_ERR_INVALID;
671 goto error;
672 }
00e2e675 673 }
ad20f474 674 DBG3("Consumer data URI set with port %d", uri->port);
00e2e675
DG
675 break;
676 default:
677 ERR("Set network uri type unknown %d", uri->stype);
a74934ba 678 ret = -LTTNG_ERR_INVALID;
00e2e675
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679 goto error;
680 }
681
682 ret = uri_compare(dst_uri, uri);
683 if (!ret) {
684 /* Same URI, don't touch it and return success. */
685 DBG3("URI network compare are the same");
ad20f474 686 goto equal;
00e2e675
DG
687 }
688
689 /* URIs were not equal, replacing it. */
690 memset(dst_uri, 0, sizeof(struct lttng_uri));
691 memcpy(dst_uri, uri, sizeof(struct lttng_uri));
692 obj->type = CONSUMER_DST_NET;
693
694 /* Handle subdir and add hostname in front. */
695 if (dst_uri->stype == LTTNG_STREAM_CONTROL) {
696 /* Get hostname to append it in the pathname */
697 ret = gethostname(hostname, sizeof(hostname));
698 if (ret < 0) {
699 PERROR("gethostname. Fallback on default localhost");
700 strncpy(hostname, "localhost", sizeof(hostname));
701 }
702 hostname[sizeof(hostname) - 1] = '\0';
703
704 /* Setup consumer subdir if none present in the control URI */
705 if (strlen(dst_uri->subdir) == 0) {
706 ret = snprintf(tmp_path, sizeof(tmp_path), "%s/%s",
707 hostname, obj->subdir);
708 } else {
709 ret = snprintf(tmp_path, sizeof(tmp_path), "%s/%s",
710 hostname, dst_uri->subdir);
711 }
712 if (ret < 0) {
713 PERROR("snprintf set consumer uri subdir");
a74934ba 714 ret = -LTTNG_ERR_NOMEM;
00e2e675
DG
715 goto error;
716 }
717
bfc6eff0
MD
718 if (lttng_strncpy(obj->subdir, tmp_path, sizeof(obj->subdir))) {
719 ret = -LTTNG_ERR_INVALID;
720 goto error;
721 }
00e2e675
DG
722 DBG3("Consumer set network uri subdir path %s", tmp_path);
723 }
724
00e2e675 725 return 0;
ad20f474
DG
726equal:
727 return 1;
00e2e675 728error:
a74934ba 729 return ret;
00e2e675
DG
730}
731
732/*
733 * Send file descriptor to consumer via sock.
734 */
f50f23d9 735int consumer_send_fds(struct consumer_socket *sock, int *fds, size_t nb_fd)
00e2e675
DG
736{
737 int ret;
738
739 assert(fds);
f50f23d9 740 assert(sock);
00e2e675
DG
741 assert(nb_fd > 0);
742
9363801e 743 ret = lttcomm_send_fds_unix_sock(*sock->fd_ptr, fds, nb_fd);
00e2e675 744 if (ret < 0) {
3448e266 745 /* The above call will print a PERROR on error. */
9363801e 746 DBG("Error when sending consumer fds on sock %d", *sock->fd_ptr);
00e2e675
DG
747 goto error;
748 }
749
f50f23d9
DG
750 ret = consumer_recv_status_reply(sock);
751
00e2e675
DG
752error:
753 return ret;
754}
755
ffe60014
DG
756/*
757 * Consumer send communication message structure to consumer.
758 */
759int consumer_send_msg(struct consumer_socket *sock,
760 struct lttcomm_consumer_msg *msg)
761{
762 int ret;
763
764 assert(msg);
765 assert(sock);
11b56a52 766 assert(pthread_mutex_trylock(sock->lock) == EBUSY);
ffe60014 767
52898cb1 768 ret = consumer_socket_send(sock, msg, sizeof(struct lttcomm_consumer_msg));
ffe60014 769 if (ret < 0) {
ffe60014
DG
770 goto error;
771 }
772
773 ret = consumer_recv_status_reply(sock);
774
775error:
776 return ret;
777}
778
00e2e675
DG
779/*
780 * Consumer send channel communication message structure to consumer.
781 */
f50f23d9
DG
782int consumer_send_channel(struct consumer_socket *sock,
783 struct lttcomm_consumer_msg *msg)
00e2e675
DG
784{
785 int ret;
786
787 assert(msg);
f50f23d9 788 assert(sock);
00e2e675 789
52898cb1 790 ret = consumer_send_msg(sock, msg);
00e2e675 791 if (ret < 0) {
00e2e675
DG
792 goto error;
793 }
794
795error:
796 return ret;
797}
798
ffe60014
DG
799/*
800 * Populate the given consumer msg structure with the ask_channel command
801 * information.
802 */
803void consumer_init_ask_channel_comm_msg(struct lttcomm_consumer_msg *msg,
804 uint64_t subbuf_size,
805 uint64_t num_subbuf,
806 int overwrite,
807 unsigned int switch_timer_interval,
808 unsigned int read_timer_interval,
ecc48a90 809 unsigned int live_timer_interval,
ffe60014
DG
810 int output,
811 int type,
812 uint64_t session_id,
813 const char *pathname,
814 const char *name,
815 uid_t uid,
816 gid_t gid,
d88aee68
DG
817 uint64_t relayd_id,
818 uint64_t key,
7972aab2 819 unsigned char *uuid,
1624d5b7
JD
820 uint32_t chan_id,
821 uint64_t tracefile_size,
2bba9e53 822 uint64_t tracefile_count,
1950109e 823 uint64_t session_id_per_pid,
567eb353 824 unsigned int monitor,
d7ba1388 825 uint32_t ust_app_uid,
3d071855 826 const char *root_shm_path,
d7ba1388 827 const char *shm_path)
ffe60014
DG
828{
829 assert(msg);
830
831 /* Zeroed structure */
832 memset(msg, 0, sizeof(struct lttcomm_consumer_msg));
833
834 msg->cmd_type = LTTNG_CONSUMER_ASK_CHANNEL_CREATION;
835 msg->u.ask_channel.subbuf_size = subbuf_size;
836 msg->u.ask_channel.num_subbuf = num_subbuf ;
837 msg->u.ask_channel.overwrite = overwrite;
838 msg->u.ask_channel.switch_timer_interval = switch_timer_interval;
839 msg->u.ask_channel.read_timer_interval = read_timer_interval;
ecc48a90 840 msg->u.ask_channel.live_timer_interval = live_timer_interval;
ffe60014
DG
841 msg->u.ask_channel.output = output;
842 msg->u.ask_channel.type = type;
843 msg->u.ask_channel.session_id = session_id;
1950109e 844 msg->u.ask_channel.session_id_per_pid = session_id_per_pid;
ffe60014
DG
845 msg->u.ask_channel.uid = uid;
846 msg->u.ask_channel.gid = gid;
847 msg->u.ask_channel.relayd_id = relayd_id;
848 msg->u.ask_channel.key = key;
7972aab2 849 msg->u.ask_channel.chan_id = chan_id;
1624d5b7
JD
850 msg->u.ask_channel.tracefile_size = tracefile_size;
851 msg->u.ask_channel.tracefile_count = tracefile_count;
2bba9e53 852 msg->u.ask_channel.monitor = monitor;
567eb353 853 msg->u.ask_channel.ust_app_uid = ust_app_uid;
ffe60014
DG
854
855 memcpy(msg->u.ask_channel.uuid, uuid, sizeof(msg->u.ask_channel.uuid));
856
10a50311
JD
857 if (pathname) {
858 strncpy(msg->u.ask_channel.pathname, pathname,
859 sizeof(msg->u.ask_channel.pathname));
860 msg->u.ask_channel.pathname[sizeof(msg->u.ask_channel.pathname)-1] = '\0';
861 }
ffe60014
DG
862
863 strncpy(msg->u.ask_channel.name, name, sizeof(msg->u.ask_channel.name));
864 msg->u.ask_channel.name[sizeof(msg->u.ask_channel.name) - 1] = '\0';
d7ba1388 865
3d071855
MD
866 if (root_shm_path) {
867 strncpy(msg->u.ask_channel.root_shm_path, root_shm_path,
868 sizeof(msg->u.ask_channel.root_shm_path));
869 msg->u.ask_channel.root_shm_path[sizeof(msg->u.ask_channel.root_shm_path) - 1] = '\0';
870 }
d7ba1388
MD
871 if (shm_path) {
872 strncpy(msg->u.ask_channel.shm_path, shm_path,
873 sizeof(msg->u.ask_channel.shm_path));
874 msg->u.ask_channel.shm_path[sizeof(msg->u.ask_channel.shm_path) - 1] = '\0';
875 }
ffe60014
DG
876}
877
00e2e675
DG
878/*
879 * Init channel communication message structure.
880 */
881void consumer_init_channel_comm_msg(struct lttcomm_consumer_msg *msg,
882 enum lttng_consumer_command cmd,
d88aee68 883 uint64_t channel_key,
ffe60014
DG
884 uint64_t session_id,
885 const char *pathname,
886 uid_t uid,
887 gid_t gid,
d88aee68 888 uint64_t relayd_id,
c30aaa51 889 const char *name,
ffe60014
DG
890 unsigned int nb_init_streams,
891 enum lttng_event_output output,
1624d5b7
JD
892 int type,
893 uint64_t tracefile_size,
2bba9e53 894 uint64_t tracefile_count,
ecc48a90
JD
895 unsigned int monitor,
896 unsigned int live_timer_interval)
00e2e675
DG
897{
898 assert(msg);
899
00e2e675
DG
900 /* Zeroed structure */
901 memset(msg, 0, sizeof(struct lttcomm_consumer_msg));
902
903 /* Send channel */
904 msg->cmd_type = cmd;
905 msg->u.channel.channel_key = channel_key;
ffe60014
DG
906 msg->u.channel.session_id = session_id;
907 msg->u.channel.uid = uid;
908 msg->u.channel.gid = gid;
909 msg->u.channel.relayd_id = relayd_id;
c30aaa51 910 msg->u.channel.nb_init_streams = nb_init_streams;
ffe60014
DG
911 msg->u.channel.output = output;
912 msg->u.channel.type = type;
1624d5b7
JD
913 msg->u.channel.tracefile_size = tracefile_size;
914 msg->u.channel.tracefile_count = tracefile_count;
2bba9e53 915 msg->u.channel.monitor = monitor;
ecc48a90 916 msg->u.channel.live_timer_interval = live_timer_interval;
ffe60014
DG
917
918 strncpy(msg->u.channel.pathname, pathname,
919 sizeof(msg->u.channel.pathname));
920 msg->u.channel.pathname[sizeof(msg->u.channel.pathname) - 1] = '\0';
921
922 strncpy(msg->u.channel.name, name, sizeof(msg->u.channel.name));
923 msg->u.channel.name[sizeof(msg->u.channel.name) - 1] = '\0';
00e2e675
DG
924}
925
926/*
927 * Init stream communication message structure.
928 */
929void consumer_init_stream_comm_msg(struct lttcomm_consumer_msg *msg,
930 enum lttng_consumer_command cmd,
d88aee68
DG
931 uint64_t channel_key,
932 uint64_t stream_key,
ffe60014 933 int cpu)
00e2e675
DG
934{
935 assert(msg);
936
937 memset(msg, 0, sizeof(struct lttcomm_consumer_msg));
938
00e2e675
DG
939 msg->cmd_type = cmd;
940 msg->u.stream.channel_key = channel_key;
941 msg->u.stream.stream_key = stream_key;
ffe60014 942 msg->u.stream.cpu = cpu;
00e2e675
DG
943}
944
a4baae1b
JD
945void consumer_init_streams_sent_comm_msg(struct lttcomm_consumer_msg *msg,
946 enum lttng_consumer_command cmd,
947 uint64_t channel_key, uint64_t net_seq_idx)
948{
949 assert(msg);
950
951 memset(msg, 0, sizeof(struct lttcomm_consumer_msg));
952
953 msg->cmd_type = cmd;
954 msg->u.sent_streams.channel_key = channel_key;
955 msg->u.sent_streams.net_seq_idx = net_seq_idx;
956}
957
00e2e675
DG
958/*
959 * Send stream communication structure to the consumer.
960 */
f50f23d9
DG
961int consumer_send_stream(struct consumer_socket *sock,
962 struct consumer_output *dst, struct lttcomm_consumer_msg *msg,
963 int *fds, size_t nb_fd)
00e2e675
DG
964{
965 int ret;
966
967 assert(msg);
968 assert(dst);
f50f23d9 969 assert(sock);
ffe60014 970 assert(fds);
00e2e675 971
52898cb1 972 ret = consumer_send_msg(sock, msg);
f50f23d9
DG
973 if (ret < 0) {
974 goto error;
975 }
976
00e2e675
DG
977 ret = consumer_send_fds(sock, fds, nb_fd);
978 if (ret < 0) {
979 goto error;
980 }
981
982error:
983 return ret;
984}
37278a1e
DG
985
986/*
987 * Send relayd socket to consumer associated with a session name.
988 *
989 * On success return positive value. On error, negative value.
990 */
f50f23d9 991int consumer_send_relayd_socket(struct consumer_socket *consumer_sock,
6151a90f 992 struct lttcomm_relayd_sock *rsock, struct consumer_output *consumer,
d3e2ba59
JD
993 enum lttng_stream_type type, uint64_t session_id,
994 char *session_name, char *hostname, int session_live_timer)
37278a1e
DG
995{
996 int ret;
997 struct lttcomm_consumer_msg msg;
998
999 /* Code flow error. Safety net. */
6151a90f 1000 assert(rsock);
37278a1e 1001 assert(consumer);
f50f23d9 1002 assert(consumer_sock);
37278a1e 1003
53efb85a 1004 memset(&msg, 0, sizeof(msg));
37278a1e
DG
1005 /* Bail out if consumer is disabled */
1006 if (!consumer->enabled) {
f73fabfd 1007 ret = LTTNG_OK;
37278a1e
DG
1008 goto error;
1009 }
1010
d3e2ba59
JD
1011 if (type == LTTNG_STREAM_CONTROL) {
1012 ret = relayd_create_session(rsock,
1013 &msg.u.relayd_sock.relayd_session_id,
7d2f7452
DG
1014 session_name, hostname, session_live_timer,
1015 consumer->snapshot);
d3e2ba59
JD
1016 if (ret < 0) {
1017 /* Close the control socket. */
1018 (void) relayd_close(rsock);
1019 goto error;
1020 }
1021 }
1022
37278a1e
DG
1023 msg.cmd_type = LTTNG_CONSUMER_ADD_RELAYD_SOCKET;
1024 /*
1025 * Assign network consumer output index using the temporary consumer since
1026 * this call should only be made from within a set_consumer_uri() function
1027 * call in the session daemon.
1028 */
1029 msg.u.relayd_sock.net_index = consumer->net_seq_index;
1030 msg.u.relayd_sock.type = type;
46e6455f 1031 msg.u.relayd_sock.session_id = session_id;
6151a90f 1032 memcpy(&msg.u.relayd_sock.sock, rsock, sizeof(msg.u.relayd_sock.sock));
37278a1e 1033
9363801e 1034 DBG3("Sending relayd sock info to consumer on %d", *consumer_sock->fd_ptr);
52898cb1 1035 ret = consumer_send_msg(consumer_sock, &msg);
f50f23d9
DG
1036 if (ret < 0) {
1037 goto error;
1038 }
1039
37278a1e 1040 DBG3("Sending relayd socket file descriptor to consumer");
6151a90f 1041 ret = consumer_send_fds(consumer_sock, &rsock->sock.fd, 1);
37278a1e
DG
1042 if (ret < 0) {
1043 goto error;
1044 }
1045
1046 DBG2("Consumer relayd socket sent");
1047
1048error:
1049 return ret;
1050}
173af62f
DG
1051
1052/*
2f77fc4b
DG
1053 * Set consumer subdirectory using the session name and a generated datetime if
1054 * needed. This is appended to the current subdirectory.
173af62f 1055 */
2f77fc4b
DG
1056int consumer_set_subdir(struct consumer_output *consumer,
1057 const char *session_name)
173af62f 1058{
2f77fc4b
DG
1059 int ret = 0;
1060 unsigned int have_default_name = 0;
1061 char datetime[16], tmp_path[PATH_MAX];
1062 time_t rawtime;
1063 struct tm *timeinfo;
173af62f
DG
1064
1065 assert(consumer);
2f77fc4b
DG
1066 assert(session_name);
1067
1068 memset(tmp_path, 0, sizeof(tmp_path));
1069
1070 /* Flag if we have a default session. */
1071 if (strncmp(session_name, DEFAULT_SESSION_NAME "-",
1072 strlen(DEFAULT_SESSION_NAME) + 1) == 0) {
1073 have_default_name = 1;
1074 } else {
1075 /* Get date and time for session path */
1076 time(&rawtime);
1077 timeinfo = localtime(&rawtime);
1078 strftime(datetime, sizeof(datetime), "%Y%m%d-%H%M%S", timeinfo);
173af62f
DG
1079 }
1080
2f77fc4b
DG
1081 if (have_default_name) {
1082 ret = snprintf(tmp_path, sizeof(tmp_path),
1083 "%s/%s", consumer->subdir, session_name);
1084 } else {
1085 ret = snprintf(tmp_path, sizeof(tmp_path),
1086 "%s/%s-%s/", consumer->subdir, session_name, datetime);
1087 }
173af62f 1088 if (ret < 0) {
2f77fc4b 1089 PERROR("snprintf session name date");
173af62f
DG
1090 goto error;
1091 }
1092
2edf492f
MD
1093 if (lttng_strncpy(consumer->subdir, tmp_path,
1094 sizeof(consumer->subdir))) {
1095 ret = -EINVAL;
1096 goto error;
1097 }
2f77fc4b 1098 DBG2("Consumer subdir set to %s", consumer->subdir);
173af62f
DG
1099
1100error:
1101 return ret;
1102}
806e2684
DG
1103
1104/*
5e280d77
MD
1105 * Ask the consumer if the data is pending for the specific session id.
1106 * Returns 1 if data is pending, 0 otherwise, or < 0 on error.
806e2684 1107 */
d88aee68 1108int consumer_is_data_pending(uint64_t session_id,
806e2684
DG
1109 struct consumer_output *consumer)
1110{
1111 int ret;
6d805429 1112 int32_t ret_code = 0; /* Default is that the data is NOT pending */
806e2684
DG
1113 struct consumer_socket *socket;
1114 struct lttng_ht_iter iter;
1115 struct lttcomm_consumer_msg msg;
1116
1117 assert(consumer);
1118
53efb85a 1119 DBG3("Consumer data pending for id %" PRIu64, session_id);
806e2684 1120
53efb85a
MD
1121 memset(&msg, 0, sizeof(msg));
1122 msg.cmd_type = LTTNG_CONSUMER_DATA_PENDING;
d88aee68 1123 msg.u.data_pending.session_id = session_id;
806e2684 1124
c8f59ee5 1125 /* Send command for each consumer */
b82c5c4d 1126 rcu_read_lock();
806e2684
DG
1127 cds_lfht_for_each_entry(consumer->socks->ht, &iter.iter, socket,
1128 node.node) {
806e2684 1129 pthread_mutex_lock(socket->lock);
52898cb1 1130 ret = consumer_socket_send(socket, &msg, sizeof(msg));
806e2684 1131 if (ret < 0) {
806e2684 1132 pthread_mutex_unlock(socket->lock);
b82c5c4d 1133 goto error_unlock;
806e2684
DG
1134 }
1135
f50f23d9
DG
1136 /*
1137 * No need for a recv reply status because the answer to the command is
1138 * the reply status message.
1139 */
1140
52898cb1
DG
1141 ret = consumer_socket_recv(socket, &ret_code, sizeof(ret_code));
1142 if (ret < 0) {
806e2684 1143 pthread_mutex_unlock(socket->lock);
b82c5c4d 1144 goto error_unlock;
806e2684 1145 }
806e2684
DG
1146 pthread_mutex_unlock(socket->lock);
1147
6d805429 1148 if (ret_code == 1) {
806e2684
DG
1149 break;
1150 }
1151 }
b82c5c4d 1152 rcu_read_unlock();
806e2684 1153
d88aee68
DG
1154 DBG("Consumer data is %s pending for session id %" PRIu64,
1155 ret_code == 1 ? "" : "NOT", session_id);
806e2684
DG
1156 return ret_code;
1157
b82c5c4d
DG
1158error_unlock:
1159 rcu_read_unlock();
806e2684
DG
1160 return -1;
1161}
7972aab2
DG
1162
1163/*
1164 * Send a flush command to consumer using the given channel key.
1165 *
1166 * Return 0 on success else a negative value.
1167 */
1168int consumer_flush_channel(struct consumer_socket *socket, uint64_t key)
1169{
1170 int ret;
1171 struct lttcomm_consumer_msg msg;
1172
1173 assert(socket);
7972aab2
DG
1174
1175 DBG2("Consumer flush channel key %" PRIu64, key);
1176
53efb85a 1177 memset(&msg, 0, sizeof(msg));
7972aab2
DG
1178 msg.cmd_type = LTTNG_CONSUMER_FLUSH_CHANNEL;
1179 msg.u.flush_channel.key = key;
1180
1181 pthread_mutex_lock(socket->lock);
1182 health_code_update();
1183
1184 ret = consumer_send_msg(socket, &msg);
1185 if (ret < 0) {
1186 goto end;
1187 }
1188
1189end:
1190 health_code_update();
1191 pthread_mutex_unlock(socket->lock);
1192 return ret;
1193}
1194
0dd01979
MD
1195/*
1196 * Send a clear quiescent command to consumer using the given channel key.
1197 *
1198 * Return 0 on success else a negative value.
1199 */
1200int consumer_clear_quiescent_channel(struct consumer_socket *socket, uint64_t key)
1201{
1202 int ret;
1203 struct lttcomm_consumer_msg msg;
1204
1205 assert(socket);
1206
1207 DBG2("Consumer clear quiescent channel key %" PRIu64, key);
1208
1209 memset(&msg, 0, sizeof(msg));
1210 msg.cmd_type = LTTNG_CONSUMER_CLEAR_QUIESCENT_CHANNEL;
1211 msg.u.clear_quiescent_channel.key = key;
1212
1213 pthread_mutex_lock(socket->lock);
1214 health_code_update();
1215
1216 ret = consumer_send_msg(socket, &msg);
1217 if (ret < 0) {
1218 goto end;
1219 }
1220
1221end:
1222 health_code_update();
1223 pthread_mutex_unlock(socket->lock);
1224 return ret;
1225}
1226
7972aab2 1227/*
dc2bbdae
MD
1228 * Send a close metadata command to consumer using the given channel key.
1229 * Called with registry lock held.
7972aab2
DG
1230 *
1231 * Return 0 on success else a negative value.
1232 */
1233int consumer_close_metadata(struct consumer_socket *socket,
1234 uint64_t metadata_key)
1235{
1236 int ret;
1237 struct lttcomm_consumer_msg msg;
1238
1239 assert(socket);
7972aab2
DG
1240
1241 DBG2("Consumer close metadata channel key %" PRIu64, metadata_key);
1242
53efb85a 1243 memset(&msg, 0, sizeof(msg));
7972aab2
DG
1244 msg.cmd_type = LTTNG_CONSUMER_CLOSE_METADATA;
1245 msg.u.close_metadata.key = metadata_key;
1246
1247 pthread_mutex_lock(socket->lock);
1248 health_code_update();
1249
1250 ret = consumer_send_msg(socket, &msg);
1251 if (ret < 0) {
1252 goto end;
1253 }
1254
1255end:
1256 health_code_update();
1257 pthread_mutex_unlock(socket->lock);
1258 return ret;
1259}
1260
1261/*
1262 * Send a setup metdata command to consumer using the given channel key.
1263 *
1264 * Return 0 on success else a negative value.
1265 */
1266int consumer_setup_metadata(struct consumer_socket *socket,
1267 uint64_t metadata_key)
1268{
1269 int ret;
1270 struct lttcomm_consumer_msg msg;
1271
1272 assert(socket);
7972aab2
DG
1273
1274 DBG2("Consumer setup metadata channel key %" PRIu64, metadata_key);
1275
53efb85a 1276 memset(&msg, 0, sizeof(msg));
7972aab2
DG
1277 msg.cmd_type = LTTNG_CONSUMER_SETUP_METADATA;
1278 msg.u.setup_metadata.key = metadata_key;
1279
1280 pthread_mutex_lock(socket->lock);
1281 health_code_update();
1282
1283 ret = consumer_send_msg(socket, &msg);
1284 if (ret < 0) {
1285 goto end;
1286 }
1287
1288end:
1289 health_code_update();
1290 pthread_mutex_unlock(socket->lock);
1291 return ret;
1292}
1293
1294/*
dc2bbdae
MD
1295 * Send metadata string to consumer.
1296 * RCU read-side lock must be held to guarantee existence of socket.
7972aab2
DG
1297 *
1298 * Return 0 on success else a negative value.
1299 */
1300int consumer_push_metadata(struct consumer_socket *socket,
1301 uint64_t metadata_key, char *metadata_str, size_t len,
93ec662e 1302 size_t target_offset, uint64_t version)
7972aab2
DG
1303{
1304 int ret;
1305 struct lttcomm_consumer_msg msg;
1306
1307 assert(socket);
7972aab2 1308
9363801e 1309 DBG2("Consumer push metadata to consumer socket %d", *socket->fd_ptr);
7972aab2 1310
dc2bbdae
MD
1311 pthread_mutex_lock(socket->lock);
1312
53efb85a 1313 memset(&msg, 0, sizeof(msg));
7972aab2
DG
1314 msg.cmd_type = LTTNG_CONSUMER_PUSH_METADATA;
1315 msg.u.push_metadata.key = metadata_key;
1316 msg.u.push_metadata.target_offset = target_offset;
1317 msg.u.push_metadata.len = len;
93ec662e 1318 msg.u.push_metadata.version = version;
7972aab2 1319
7972aab2
DG
1320 health_code_update();
1321 ret = consumer_send_msg(socket, &msg);
331744e3 1322 if (ret < 0 || len == 0) {
7972aab2
DG
1323 goto end;
1324 }
1325
9363801e
DG
1326 DBG3("Consumer pushing metadata on sock %d of len %zu", *socket->fd_ptr,
1327 len);
7972aab2 1328
52898cb1 1329 ret = consumer_socket_send(socket, metadata_str, len);
7972aab2
DG
1330 if (ret < 0) {
1331 goto end;
1332 }
1333
1334 health_code_update();
1335 ret = consumer_recv_status_reply(socket);
1336 if (ret < 0) {
1337 goto end;
1338 }
1339
1340end:
dc2bbdae 1341 pthread_mutex_unlock(socket->lock);
7972aab2 1342 health_code_update();
7972aab2
DG
1343 return ret;
1344}
6dc3064a
DG
1345
1346/*
1347 * Ask the consumer to snapshot a specific channel using the key.
1348 *
1349 * Return 0 on success or else a negative error.
1350 */
1351int consumer_snapshot_channel(struct consumer_socket *socket, uint64_t key,
1352 struct snapshot_output *output, int metadata, uid_t uid, gid_t gid,
d07ceecd 1353 const char *session_path, int wait, uint64_t nb_packets_per_stream)
6dc3064a
DG
1354{
1355 int ret;
1356 struct lttcomm_consumer_msg msg;
1357
1358 assert(socket);
6dc3064a
DG
1359 assert(output);
1360 assert(output->consumer);
1361
1362 DBG("Consumer snapshot channel key %" PRIu64, key);
1363
ee91bab2 1364 memset(&msg, 0, sizeof(msg));
6dc3064a
DG
1365 msg.cmd_type = LTTNG_CONSUMER_SNAPSHOT_CHANNEL;
1366 msg.u.snapshot_channel.key = key;
d07ceecd 1367 msg.u.snapshot_channel.nb_packets_per_stream = nb_packets_per_stream;
6dc3064a
DG
1368 msg.u.snapshot_channel.metadata = metadata;
1369
1370 if (output->consumer->type == CONSUMER_DST_NET) {
1371 msg.u.snapshot_channel.relayd_id = output->consumer->net_seq_index;
1372 msg.u.snapshot_channel.use_relayd = 1;
1373 ret = snprintf(msg.u.snapshot_channel.pathname,
1bfe7328
DG
1374 sizeof(msg.u.snapshot_channel.pathname),
1375 "%s/%s-%s-%" PRIu64 "%s", output->consumer->subdir,
1376 output->name, output->datetime, output->nb_snapshot,
ee91bab2 1377 session_path);
6dc3064a
DG
1378 if (ret < 0) {
1379 ret = -LTTNG_ERR_NOMEM;
1380 goto error;
1381 }
1382 } else {
1383 ret = snprintf(msg.u.snapshot_channel.pathname,
1bfe7328
DG
1384 sizeof(msg.u.snapshot_channel.pathname),
1385 "%s/%s-%s-%" PRIu64 "%s", output->consumer->dst.trace_path,
1386 output->name, output->datetime, output->nb_snapshot,
1387 session_path);
6dc3064a
DG
1388 if (ret < 0) {
1389 ret = -LTTNG_ERR_NOMEM;
1390 goto error;
1391 }
07b86b52 1392 msg.u.snapshot_channel.relayd_id = (uint64_t) -1ULL;
6dc3064a
DG
1393
1394 /* Create directory. Ignore if exist. */
1395 ret = run_as_mkdir_recursive(msg.u.snapshot_channel.pathname,
1396 S_IRWXU | S_IRWXG, uid, gid);
1397 if (ret < 0) {
df5b86c8 1398 if (errno != EEXIST) {
6dc3064a
DG
1399 ERR("Trace directory creation error");
1400 goto error;
1401 }
1402 }
1403 }
1404
1405 health_code_update();
1406 ret = consumer_send_msg(socket, &msg);
1407 if (ret < 0) {
1408 goto error;
1409 }
1410
1411error:
1412 health_code_update();
1413 return ret;
1414}
fb83fe64
JD
1415
1416/*
1417 * Ask the consumer the number of discarded events for a channel.
1418 */
1419int consumer_get_discarded_events(uint64_t session_id, uint64_t channel_key,
1420 struct consumer_output *consumer, uint64_t *discarded)
1421{
1422 int ret;
1423 struct consumer_socket *socket;
1424 struct lttng_ht_iter iter;
1425 struct lttcomm_consumer_msg msg;
1426
1427 assert(consumer);
1428
1429 DBG3("Consumer discarded events id %" PRIu64, session_id);
1430
1431 memset(&msg, 0, sizeof(msg));
1432 msg.cmd_type = LTTNG_CONSUMER_DISCARDED_EVENTS;
1433 msg.u.discarded_events.session_id = session_id;
1434 msg.u.discarded_events.channel_key = channel_key;
1435
1436 *discarded = 0;
1437
1438 /* Send command for each consumer */
1439 rcu_read_lock();
1440 cds_lfht_for_each_entry(consumer->socks->ht, &iter.iter, socket,
1441 node.node) {
1442 uint64_t consumer_discarded = 0;
1443 pthread_mutex_lock(socket->lock);
1444 ret = consumer_socket_send(socket, &msg, sizeof(msg));
1445 if (ret < 0) {
1446 pthread_mutex_unlock(socket->lock);
1447 goto end;
1448 }
1449
1450 /*
1451 * No need for a recv reply status because the answer to the
1452 * command is the reply status message.
1453 */
1454 ret = consumer_socket_recv(socket, &consumer_discarded,
1455 sizeof(consumer_discarded));
1456 if (ret < 0) {
1457 ERR("get discarded events");
1458 pthread_mutex_unlock(socket->lock);
1459 goto end;
1460 }
1461 pthread_mutex_unlock(socket->lock);
1462 *discarded += consumer_discarded;
1463 }
1464 ret = 0;
1465 DBG("Consumer discarded %" PRIu64 " events in session id %" PRIu64,
1466 *discarded, session_id);
1467
1468end:
1469 rcu_read_unlock();
1470 return ret;
1471}
1472
1473/*
1474 * Ask the consumer the number of lost packets for a channel.
1475 */
1476int consumer_get_lost_packets(uint64_t session_id, uint64_t channel_key,
1477 struct consumer_output *consumer, uint64_t *lost)
1478{
1479 int ret;
1480 struct consumer_socket *socket;
1481 struct lttng_ht_iter iter;
1482 struct lttcomm_consumer_msg msg;
1483
1484 assert(consumer);
1485
1486 DBG3("Consumer lost packets id %" PRIu64, session_id);
1487
1488 memset(&msg, 0, sizeof(msg));
1489 msg.cmd_type = LTTNG_CONSUMER_LOST_PACKETS;
1490 msg.u.lost_packets.session_id = session_id;
1491 msg.u.lost_packets.channel_key = channel_key;
1492
1493 *lost = 0;
1494
1495 /* Send command for each consumer */
1496 rcu_read_lock();
1497 cds_lfht_for_each_entry(consumer->socks->ht, &iter.iter, socket,
1498 node.node) {
1499 uint64_t consumer_lost = 0;
1500 pthread_mutex_lock(socket->lock);
1501 ret = consumer_socket_send(socket, &msg, sizeof(msg));
1502 if (ret < 0) {
1503 pthread_mutex_unlock(socket->lock);
1504 goto end;
1505 }
1506
1507 /*
1508 * No need for a recv reply status because the answer to the
1509 * command is the reply status message.
1510 */
1511 ret = consumer_socket_recv(socket, &consumer_lost,
1512 sizeof(consumer_lost));
1513 if (ret < 0) {
1514 ERR("get lost packets");
1515 pthread_mutex_unlock(socket->lock);
1516 goto end;
1517 }
1518 pthread_mutex_unlock(socket->lock);
1519 *lost += consumer_lost;
1520 }
1521 ret = 0;
1522 DBG("Consumer lost %" PRIu64 " packets in session id %" PRIu64,
1523 *lost, session_id);
1524
1525end:
1526 rcu_read_unlock();
1527 return ret;
1528}
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