Fix: close indexes when rotating the trace files in mmap mode
[lttng-tools.git] / src / common / consumer.c
CommitLineData
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1/*
2 * Copyright (C) 2011 - Julien Desfossez <julien.desfossez@polymtl.ca>
3 * Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
00e2e675 4 * 2012 - David Goulet <dgoulet@efficios.com>
3bd1e081 5 *
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6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License, version 2 only,
8 * as published by the Free Software Foundation.
3bd1e081 9 *
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10 * This program is distributed in the hope that it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
3bd1e081 14 *
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15 * You should have received a copy of the GNU General Public License along
16 * with this program; if not, write to the Free Software Foundation, Inc.,
17 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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18 */
19
20#define _GNU_SOURCE
6c1c0768 21#define _LGPL_SOURCE
3bd1e081 22#include <assert.h>
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23#include <poll.h>
24#include <pthread.h>
25#include <stdlib.h>
26#include <string.h>
27#include <sys/mman.h>
28#include <sys/socket.h>
29#include <sys/types.h>
30#include <unistd.h>
77c7c900 31#include <inttypes.h>
331744e3 32#include <signal.h>
3bd1e081 33
51a9e1c7 34#include <bin/lttng-consumerd/health-consumerd.h>
990570ed 35#include <common/common.h>
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36#include <common/utils.h>
37#include <common/compat/poll.h>
f263b7fd 38#include <common/compat/endian.h>
309167d2 39#include <common/index/index.h>
10a8a223 40#include <common/kernel-ctl/kernel-ctl.h>
00e2e675 41#include <common/sessiond-comm/relayd.h>
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42#include <common/sessiond-comm/sessiond-comm.h>
43#include <common/kernel-consumer/kernel-consumer.h>
00e2e675 44#include <common/relayd/relayd.h>
10a8a223 45#include <common/ust-consumer/ust-consumer.h>
d3e2ba59 46#include <common/consumer-timer.h>
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47
48#include "consumer.h"
1d1a276c 49#include "consumer-stream.h"
2d57de81 50#include "consumer-testpoint.h"
d07ceecd 51#include "align.h"
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52
53struct lttng_consumer_global_data consumer_data = {
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54 .stream_count = 0,
55 .need_update = 1,
56 .type = LTTNG_CONSUMER_UNKNOWN,
57};
58
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59enum consumer_channel_action {
60 CONSUMER_CHANNEL_ADD,
a0cbdd2e 61 CONSUMER_CHANNEL_DEL,
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62 CONSUMER_CHANNEL_QUIT,
63};
64
65struct consumer_channel_msg {
66 enum consumer_channel_action action;
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67 struct lttng_consumer_channel *chan; /* add */
68 uint64_t key; /* del */
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69};
70
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71/*
72 * Flag to inform the polling thread to quit when all fd hung up. Updated by
73 * the consumer_thread_receive_fds when it notices that all fds has hung up.
74 * Also updated by the signal handler (consumer_should_exit()). Read by the
75 * polling threads.
76 */
a98dae5f 77volatile int consumer_quit;
3bd1e081 78
43c34bc3 79/*
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80 * Global hash table containing respectively metadata and data streams. The
81 * stream element in this ht should only be updated by the metadata poll thread
82 * for the metadata and the data poll thread for the data.
83 */
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84static struct lttng_ht *metadata_ht;
85static struct lttng_ht *data_ht;
43c34bc3 86
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87/*
88 * Notify a thread lttng pipe to poll back again. This usually means that some
89 * global state has changed so we just send back the thread in a poll wait
90 * call.
91 */
92static void notify_thread_lttng_pipe(struct lttng_pipe *pipe)
93{
94 struct lttng_consumer_stream *null_stream = NULL;
95
96 assert(pipe);
97
98 (void) lttng_pipe_write(pipe, &null_stream, sizeof(null_stream));
99}
100
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101static void notify_health_quit_pipe(int *pipe)
102{
6cd525e8 103 ssize_t ret;
5c635c72 104
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105 ret = lttng_write(pipe[1], "4", 1);
106 if (ret < 1) {
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107 PERROR("write consumer health quit");
108 }
109}
110
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111static void notify_channel_pipe(struct lttng_consumer_local_data *ctx,
112 struct lttng_consumer_channel *chan,
a0cbdd2e 113 uint64_t key,
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114 enum consumer_channel_action action)
115{
116 struct consumer_channel_msg msg;
6cd525e8 117 ssize_t ret;
d8ef542d 118
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119 memset(&msg, 0, sizeof(msg));
120
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121 msg.action = action;
122 msg.chan = chan;
f21dae48 123 msg.key = key;
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124 ret = lttng_write(ctx->consumer_channel_pipe[1], &msg, sizeof(msg));
125 if (ret < sizeof(msg)) {
126 PERROR("notify_channel_pipe write error");
127 }
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128}
129
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130void notify_thread_del_channel(struct lttng_consumer_local_data *ctx,
131 uint64_t key)
132{
133 notify_channel_pipe(ctx, NULL, key, CONSUMER_CHANNEL_DEL);
134}
135
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136static int read_channel_pipe(struct lttng_consumer_local_data *ctx,
137 struct lttng_consumer_channel **chan,
a0cbdd2e 138 uint64_t *key,
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139 enum consumer_channel_action *action)
140{
141 struct consumer_channel_msg msg;
6cd525e8 142 ssize_t ret;
d8ef542d 143
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144 ret = lttng_read(ctx->consumer_channel_pipe[0], &msg, sizeof(msg));
145 if (ret < sizeof(msg)) {
146 ret = -1;
147 goto error;
d8ef542d 148 }
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149 *action = msg.action;
150 *chan = msg.chan;
151 *key = msg.key;
152error:
153 return (int) ret;
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154}
155
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156/*
157 * Cleanup the stream list of a channel. Those streams are not yet globally
158 * visible
159 */
160static void clean_channel_stream_list(struct lttng_consumer_channel *channel)
161{
162 struct lttng_consumer_stream *stream, *stmp;
163
164 assert(channel);
165
166 /* Delete streams that might have been left in the stream list. */
167 cds_list_for_each_entry_safe(stream, stmp, &channel->streams.head,
168 send_node) {
169 cds_list_del(&stream->send_node);
170 /*
171 * Once a stream is added to this list, the buffers were created so we
172 * have a guarantee that this call will succeed. Setting the monitor
173 * mode to 0 so we don't lock nor try to delete the stream from the
174 * global hash table.
175 */
176 stream->monitor = 0;
177 consumer_stream_destroy(stream, NULL);
178 }
179}
180
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181/*
182 * Find a stream. The consumer_data.lock must be locked during this
183 * call.
184 */
d88aee68 185static struct lttng_consumer_stream *find_stream(uint64_t key,
8389e4f8 186 struct lttng_ht *ht)
3bd1e081 187{
e4421fec 188 struct lttng_ht_iter iter;
d88aee68 189 struct lttng_ht_node_u64 *node;
e4421fec 190 struct lttng_consumer_stream *stream = NULL;
3bd1e081 191
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192 assert(ht);
193
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194 /* -1ULL keys are lookup failures */
195 if (key == (uint64_t) -1ULL) {
7ad0a0cb 196 return NULL;
7a57cf92 197 }
e4421fec 198
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199 rcu_read_lock();
200
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201 lttng_ht_lookup(ht, &key, &iter);
202 node = lttng_ht_iter_get_node_u64(&iter);
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203 if (node != NULL) {
204 stream = caa_container_of(node, struct lttng_consumer_stream, node);
3bd1e081 205 }
e4421fec 206
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207 rcu_read_unlock();
208
e4421fec 209 return stream;
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210}
211
da009f2c 212static void steal_stream_key(uint64_t key, struct lttng_ht *ht)
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213{
214 struct lttng_consumer_stream *stream;
215
04253271 216 rcu_read_lock();
ffe60014 217 stream = find_stream(key, ht);
04253271 218 if (stream) {
da009f2c 219 stream->key = (uint64_t) -1ULL;
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220 /*
221 * We don't want the lookup to match, but we still need
222 * to iterate on this stream when iterating over the hash table. Just
223 * change the node key.
224 */
da009f2c 225 stream->node.key = (uint64_t) -1ULL;
04253271
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226 }
227 rcu_read_unlock();
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228}
229
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230/*
231 * Return a channel object for the given key.
232 *
233 * RCU read side lock MUST be acquired before calling this function and
234 * protects the channel ptr.
235 */
d88aee68 236struct lttng_consumer_channel *consumer_find_channel(uint64_t key)
3bd1e081 237{
e4421fec 238 struct lttng_ht_iter iter;
d88aee68 239 struct lttng_ht_node_u64 *node;
e4421fec 240 struct lttng_consumer_channel *channel = NULL;
3bd1e081 241
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242 /* -1ULL keys are lookup failures */
243 if (key == (uint64_t) -1ULL) {
7ad0a0cb 244 return NULL;
7a57cf92 245 }
e4421fec 246
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247 lttng_ht_lookup(consumer_data.channel_ht, &key, &iter);
248 node = lttng_ht_iter_get_node_u64(&iter);
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249 if (node != NULL) {
250 channel = caa_container_of(node, struct lttng_consumer_channel, node);
3bd1e081 251 }
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252
253 return channel;
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254}
255
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256/*
257 * There is a possibility that the consumer does not have enough time between
258 * the close of the channel on the session daemon and the cleanup in here thus
259 * once we have a channel add with an existing key, we know for sure that this
260 * channel will eventually get cleaned up by all streams being closed.
261 *
262 * This function just nullifies the already existing channel key.
263 */
264static void steal_channel_key(uint64_t key)
265{
266 struct lttng_consumer_channel *channel;
267
268 rcu_read_lock();
269 channel = consumer_find_channel(key);
270 if (channel) {
271 channel->key = (uint64_t) -1ULL;
272 /*
273 * We don't want the lookup to match, but we still need to iterate on
274 * this channel when iterating over the hash table. Just change the
275 * node key.
276 */
277 channel->node.key = (uint64_t) -1ULL;
278 }
279 rcu_read_unlock();
280}
281
ffe60014 282static void free_channel_rcu(struct rcu_head *head)
702b1ea4 283{
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284 struct lttng_ht_node_u64 *node =
285 caa_container_of(head, struct lttng_ht_node_u64, head);
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286 struct lttng_consumer_channel *channel =
287 caa_container_of(node, struct lttng_consumer_channel, node);
702b1ea4 288
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289 switch (consumer_data.type) {
290 case LTTNG_CONSUMER_KERNEL:
291 break;
292 case LTTNG_CONSUMER32_UST:
293 case LTTNG_CONSUMER64_UST:
294 lttng_ustconsumer_free_channel(channel);
295 break;
296 default:
297 ERR("Unknown consumer_data type");
298 abort();
299 }
ffe60014 300 free(channel);
702b1ea4
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301}
302
00e2e675
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303/*
304 * RCU protected relayd socket pair free.
305 */
ffe60014 306static void free_relayd_rcu(struct rcu_head *head)
00e2e675 307{
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308 struct lttng_ht_node_u64 *node =
309 caa_container_of(head, struct lttng_ht_node_u64, head);
00e2e675
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310 struct consumer_relayd_sock_pair *relayd =
311 caa_container_of(node, struct consumer_relayd_sock_pair, node);
312
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313 /*
314 * Close all sockets. This is done in the call RCU since we don't want the
315 * socket fds to be reassigned thus potentially creating bad state of the
316 * relayd object.
317 *
318 * We do not have to lock the control socket mutex here since at this stage
319 * there is no one referencing to this relayd object.
320 */
321 (void) relayd_close(&relayd->control_sock);
322 (void) relayd_close(&relayd->data_sock);
323
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324 free(relayd);
325}
326
327/*
328 * Destroy and free relayd socket pair object.
00e2e675 329 */
51230d70 330void consumer_destroy_relayd(struct consumer_relayd_sock_pair *relayd)
00e2e675
DG
331{
332 int ret;
333 struct lttng_ht_iter iter;
334
173af62f
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335 if (relayd == NULL) {
336 return;
337 }
338
00e2e675
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339 DBG("Consumer destroy and close relayd socket pair");
340
341 iter.iter.node = &relayd->node.node;
342 ret = lttng_ht_del(consumer_data.relayd_ht, &iter);
173af62f 343 if (ret != 0) {
8994307f 344 /* We assume the relayd is being or is destroyed */
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345 return;
346 }
00e2e675 347
00e2e675 348 /* RCU free() call */
ffe60014
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349 call_rcu(&relayd->node.head, free_relayd_rcu);
350}
351
352/*
353 * Remove a channel from the global list protected by a mutex. This function is
354 * also responsible for freeing its data structures.
355 */
356void consumer_del_channel(struct lttng_consumer_channel *channel)
357{
358 int ret;
359 struct lttng_ht_iter iter;
360
d88aee68 361 DBG("Consumer delete channel key %" PRIu64, channel->key);
ffe60014
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362
363 pthread_mutex_lock(&consumer_data.lock);
a9838785 364 pthread_mutex_lock(&channel->lock);
ffe60014 365
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366 /* Destroy streams that might have been left in the stream list. */
367 clean_channel_stream_list(channel);
51e762e5 368
d3e2ba59
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369 if (channel->live_timer_enabled == 1) {
370 consumer_timer_live_stop(channel);
371 }
372
ffe60014
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373 switch (consumer_data.type) {
374 case LTTNG_CONSUMER_KERNEL:
375 break;
376 case LTTNG_CONSUMER32_UST:
377 case LTTNG_CONSUMER64_UST:
378 lttng_ustconsumer_del_channel(channel);
379 break;
380 default:
381 ERR("Unknown consumer_data type");
382 assert(0);
383 goto end;
384 }
385
386 rcu_read_lock();
387 iter.iter.node = &channel->node.node;
388 ret = lttng_ht_del(consumer_data.channel_ht, &iter);
389 assert(!ret);
390 rcu_read_unlock();
391
392 call_rcu(&channel->node.head, free_channel_rcu);
393end:
a9838785 394 pthread_mutex_unlock(&channel->lock);
ffe60014 395 pthread_mutex_unlock(&consumer_data.lock);
00e2e675
DG
396}
397
228b5bf7
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398/*
399 * Iterate over the relayd hash table and destroy each element. Finally,
400 * destroy the whole hash table.
401 */
402static void cleanup_relayd_ht(void)
403{
404 struct lttng_ht_iter iter;
405 struct consumer_relayd_sock_pair *relayd;
406
407 rcu_read_lock();
408
409 cds_lfht_for_each_entry(consumer_data.relayd_ht->ht, &iter.iter, relayd,
410 node.node) {
51230d70 411 consumer_destroy_relayd(relayd);
228b5bf7
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412 }
413
228b5bf7 414 rcu_read_unlock();
36b588ed
MD
415
416 lttng_ht_destroy(consumer_data.relayd_ht);
228b5bf7
DG
417}
418
8994307f
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419/*
420 * Update the end point status of all streams having the given network sequence
421 * index (relayd index).
422 *
423 * It's atomically set without having the stream mutex locked which is fine
424 * because we handle the write/read race with a pipe wakeup for each thread.
425 */
da009f2c 426static void update_endpoint_status_by_netidx(uint64_t net_seq_idx,
8994307f
DG
427 enum consumer_endpoint_status status)
428{
429 struct lttng_ht_iter iter;
430 struct lttng_consumer_stream *stream;
431
da009f2c 432 DBG("Consumer set delete flag on stream by idx %" PRIu64, net_seq_idx);
8994307f
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433
434 rcu_read_lock();
435
436 /* Let's begin with metadata */
437 cds_lfht_for_each_entry(metadata_ht->ht, &iter.iter, stream, node.node) {
438 if (stream->net_seq_idx == net_seq_idx) {
439 uatomic_set(&stream->endpoint_status, status);
440 DBG("Delete flag set to metadata stream %d", stream->wait_fd);
441 }
442 }
443
444 /* Follow up by the data streams */
445 cds_lfht_for_each_entry(data_ht->ht, &iter.iter, stream, node.node) {
446 if (stream->net_seq_idx == net_seq_idx) {
447 uatomic_set(&stream->endpoint_status, status);
448 DBG("Delete flag set to data stream %d", stream->wait_fd);
449 }
450 }
451 rcu_read_unlock();
452}
453
454/*
455 * Cleanup a relayd object by flagging every associated streams for deletion,
456 * destroying the object meaning removing it from the relayd hash table,
457 * closing the sockets and freeing the memory in a RCU call.
458 *
459 * If a local data context is available, notify the threads that the streams'
460 * state have changed.
461 */
462static void cleanup_relayd(struct consumer_relayd_sock_pair *relayd,
463 struct lttng_consumer_local_data *ctx)
464{
da009f2c 465 uint64_t netidx;
8994307f
DG
466
467 assert(relayd);
468
9617607b
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469 DBG("Cleaning up relayd sockets");
470
8994307f
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471 /* Save the net sequence index before destroying the object */
472 netidx = relayd->net_seq_idx;
473
474 /*
475 * Delete the relayd from the relayd hash table, close the sockets and free
476 * the object in a RCU call.
477 */
51230d70 478 consumer_destroy_relayd(relayd);
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479
480 /* Set inactive endpoint to all streams */
481 update_endpoint_status_by_netidx(netidx, CONSUMER_ENDPOINT_INACTIVE);
482
483 /*
484 * With a local data context, notify the threads that the streams' state
485 * have changed. The write() action on the pipe acts as an "implicit"
486 * memory barrier ordering the updates of the end point status from the
487 * read of this status which happens AFTER receiving this notify.
488 */
489 if (ctx) {
acdb9057 490 notify_thread_lttng_pipe(ctx->consumer_data_pipe);
13886d2d 491 notify_thread_lttng_pipe(ctx->consumer_metadata_pipe);
8994307f
DG
492 }
493}
494
a6ba4fe1
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495/*
496 * Flag a relayd socket pair for destruction. Destroy it if the refcount
497 * reaches zero.
498 *
499 * RCU read side lock MUST be aquired before calling this function.
500 */
501void consumer_flag_relayd_for_destroy(struct consumer_relayd_sock_pair *relayd)
502{
503 assert(relayd);
504
505 /* Set destroy flag for this object */
506 uatomic_set(&relayd->destroy_flag, 1);
507
508 /* Destroy the relayd if refcount is 0 */
509 if (uatomic_read(&relayd->refcount) == 0) {
51230d70 510 consumer_destroy_relayd(relayd);
a6ba4fe1
DG
511 }
512}
513
3bd1e081 514/*
1d1a276c
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515 * Completly destroy stream from every visiable data structure and the given
516 * hash table if one.
517 *
518 * One this call returns, the stream object is not longer usable nor visible.
3bd1e081 519 */
e316aad5
DG
520void consumer_del_stream(struct lttng_consumer_stream *stream,
521 struct lttng_ht *ht)
3bd1e081 522{
1d1a276c 523 consumer_stream_destroy(stream, ht);
3bd1e081
MD
524}
525
5ab66908
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526/*
527 * XXX naming of del vs destroy is all mixed up.
528 */
529void consumer_del_stream_for_data(struct lttng_consumer_stream *stream)
530{
531 consumer_stream_destroy(stream, data_ht);
532}
533
534void consumer_del_stream_for_metadata(struct lttng_consumer_stream *stream)
535{
536 consumer_stream_destroy(stream, metadata_ht);
537}
538
d88aee68
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539struct lttng_consumer_stream *consumer_allocate_stream(uint64_t channel_key,
540 uint64_t stream_key,
3bd1e081 541 enum lttng_consumer_stream_state state,
ffe60014 542 const char *channel_name,
6df2e2c9 543 uid_t uid,
00e2e675 544 gid_t gid,
57a269f2 545 uint64_t relayd_id,
53632229 546 uint64_t session_id,
ffe60014
DG
547 int cpu,
548 int *alloc_ret,
4891ece8
DG
549 enum consumer_channel_type type,
550 unsigned int monitor)
3bd1e081 551{
ffe60014 552 int ret;
3bd1e081 553 struct lttng_consumer_stream *stream;
3bd1e081 554
effcf122 555 stream = zmalloc(sizeof(*stream));
3bd1e081 556 if (stream == NULL) {
7a57cf92 557 PERROR("malloc struct lttng_consumer_stream");
ffe60014 558 ret = -ENOMEM;
7a57cf92 559 goto end;
3bd1e081 560 }
7a57cf92 561
d56db448
DG
562 rcu_read_lock();
563
3bd1e081 564 stream->key = stream_key;
3bd1e081
MD
565 stream->out_fd = -1;
566 stream->out_fd_offset = 0;
e5d1a9b3 567 stream->output_written = 0;
3bd1e081 568 stream->state = state;
6df2e2c9
MD
569 stream->uid = uid;
570 stream->gid = gid;
ffe60014 571 stream->net_seq_idx = relayd_id;
53632229 572 stream->session_id = session_id;
4891ece8 573 stream->monitor = monitor;
774d490c 574 stream->endpoint_status = CONSUMER_ENDPOINT_ACTIVE;
309167d2 575 stream->index_fd = -1;
53632229 576 pthread_mutex_init(&stream->lock, NULL);
288bdb30 577 pthread_mutex_init(&stream->metadata_timer_lock, NULL);
58b1f425 578
ffe60014
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579 /* If channel is the metadata, flag this stream as metadata. */
580 if (type == CONSUMER_CHANNEL_TYPE_METADATA) {
581 stream->metadata_flag = 1;
582 /* Metadata is flat out. */
583 strncpy(stream->name, DEFAULT_METADATA_NAME, sizeof(stream->name));
94d49140
JD
584 /* Live rendez-vous point. */
585 pthread_cond_init(&stream->metadata_rdv, NULL);
586 pthread_mutex_init(&stream->metadata_rdv_lock, NULL);
58b1f425 587 } else {
ffe60014
DG
588 /* Format stream name to <channel_name>_<cpu_number> */
589 ret = snprintf(stream->name, sizeof(stream->name), "%s_%d",
590 channel_name, cpu);
591 if (ret < 0) {
592 PERROR("snprintf stream name");
593 goto error;
594 }
58b1f425 595 }
c30aaa51 596
ffe60014 597 /* Key is always the wait_fd for streams. */
d88aee68 598 lttng_ht_node_init_u64(&stream->node, stream->key);
ffe60014 599
d8ef542d
MD
600 /* Init node per channel id key */
601 lttng_ht_node_init_u64(&stream->node_channel_id, channel_key);
602
53632229 603 /* Init session id node with the stream session id */
d88aee68 604 lttng_ht_node_init_u64(&stream->node_session_id, stream->session_id);
53632229 605
07b86b52
JD
606 DBG3("Allocated stream %s (key %" PRIu64 ", chan_key %" PRIu64
607 " relayd_id %" PRIu64 ", session_id %" PRIu64,
608 stream->name, stream->key, channel_key,
609 stream->net_seq_idx, stream->session_id);
d56db448
DG
610
611 rcu_read_unlock();
3bd1e081 612 return stream;
c80048c6
MD
613
614error:
d56db448 615 rcu_read_unlock();
c80048c6 616 free(stream);
7a57cf92 617end:
ffe60014
DG
618 if (alloc_ret) {
619 *alloc_ret = ret;
620 }
c80048c6 621 return NULL;
3bd1e081
MD
622}
623
624/*
625 * Add a stream to the global list protected by a mutex.
626 */
5ab66908 627int consumer_add_data_stream(struct lttng_consumer_stream *stream)
3bd1e081 628{
5ab66908 629 struct lttng_ht *ht = data_ht;
3bd1e081
MD
630 int ret = 0;
631
e316aad5 632 assert(stream);
43c34bc3 633 assert(ht);
c77fc10a 634
d88aee68 635 DBG3("Adding consumer stream %" PRIu64, stream->key);
e316aad5
DG
636
637 pthread_mutex_lock(&consumer_data.lock);
a9838785 638 pthread_mutex_lock(&stream->chan->lock);
ec6ea7d0 639 pthread_mutex_lock(&stream->chan->timer_lock);
2e818a6a 640 pthread_mutex_lock(&stream->lock);
b0b335c8 641 rcu_read_lock();
e316aad5 642
43c34bc3 643 /* Steal stream identifier to avoid having streams with the same key */
ffe60014 644 steal_stream_key(stream->key, ht);
43c34bc3 645
d88aee68 646 lttng_ht_add_unique_u64(ht, &stream->node);
00e2e675 647
d8ef542d
MD
648 lttng_ht_add_u64(consumer_data.stream_per_chan_id_ht,
649 &stream->node_channel_id);
650
ca22feea
DG
651 /*
652 * Add stream to the stream_list_ht of the consumer data. No need to steal
653 * the key since the HT does not use it and we allow to add redundant keys
654 * into this table.
655 */
d88aee68 656 lttng_ht_add_u64(consumer_data.stream_list_ht, &stream->node_session_id);
ca22feea 657
e316aad5 658 /*
ffe60014
DG
659 * When nb_init_stream_left reaches 0, we don't need to trigger any action
660 * in terms of destroying the associated channel, because the action that
e316aad5
DG
661 * causes the count to become 0 also causes a stream to be added. The
662 * channel deletion will thus be triggered by the following removal of this
663 * stream.
664 */
ffe60014 665 if (uatomic_read(&stream->chan->nb_init_stream_left) > 0) {
f2ad556d
MD
666 /* Increment refcount before decrementing nb_init_stream_left */
667 cmm_smp_wmb();
ffe60014 668 uatomic_dec(&stream->chan->nb_init_stream_left);
e316aad5
DG
669 }
670
671 /* Update consumer data once the node is inserted. */
3bd1e081
MD
672 consumer_data.stream_count++;
673 consumer_data.need_update = 1;
674
e316aad5 675 rcu_read_unlock();
2e818a6a 676 pthread_mutex_unlock(&stream->lock);
ec6ea7d0 677 pthread_mutex_unlock(&stream->chan->timer_lock);
a9838785 678 pthread_mutex_unlock(&stream->chan->lock);
3bd1e081 679 pthread_mutex_unlock(&consumer_data.lock);
702b1ea4 680
3bd1e081
MD
681 return ret;
682}
683
5ab66908
MD
684void consumer_del_data_stream(struct lttng_consumer_stream *stream)
685{
686 consumer_del_stream(stream, data_ht);
687}
688
00e2e675 689/*
3f8e211f
DG
690 * Add relayd socket to global consumer data hashtable. RCU read side lock MUST
691 * be acquired before calling this.
00e2e675 692 */
d09e1200 693static int add_relayd(struct consumer_relayd_sock_pair *relayd)
00e2e675
DG
694{
695 int ret = 0;
d88aee68 696 struct lttng_ht_node_u64 *node;
00e2e675
DG
697 struct lttng_ht_iter iter;
698
ffe60014 699 assert(relayd);
00e2e675 700
00e2e675 701 lttng_ht_lookup(consumer_data.relayd_ht,
d88aee68
DG
702 &relayd->net_seq_idx, &iter);
703 node = lttng_ht_iter_get_node_u64(&iter);
00e2e675 704 if (node != NULL) {
00e2e675
DG
705 goto end;
706 }
d88aee68 707 lttng_ht_add_unique_u64(consumer_data.relayd_ht, &relayd->node);
00e2e675 708
00e2e675
DG
709end:
710 return ret;
711}
712
713/*
714 * Allocate and return a consumer relayd socket.
715 */
716struct consumer_relayd_sock_pair *consumer_allocate_relayd_sock_pair(
da009f2c 717 uint64_t net_seq_idx)
00e2e675
DG
718{
719 struct consumer_relayd_sock_pair *obj = NULL;
720
da009f2c
MD
721 /* net sequence index of -1 is a failure */
722 if (net_seq_idx == (uint64_t) -1ULL) {
00e2e675
DG
723 goto error;
724 }
725
726 obj = zmalloc(sizeof(struct consumer_relayd_sock_pair));
727 if (obj == NULL) {
728 PERROR("zmalloc relayd sock");
729 goto error;
730 }
731
732 obj->net_seq_idx = net_seq_idx;
733 obj->refcount = 0;
173af62f 734 obj->destroy_flag = 0;
f96e4545
MD
735 obj->control_sock.sock.fd = -1;
736 obj->data_sock.sock.fd = -1;
d88aee68 737 lttng_ht_node_init_u64(&obj->node, obj->net_seq_idx);
00e2e675
DG
738 pthread_mutex_init(&obj->ctrl_sock_mutex, NULL);
739
740error:
741 return obj;
742}
743
744/*
745 * Find a relayd socket pair in the global consumer data.
746 *
747 * Return the object if found else NULL.
b0b335c8
MD
748 * RCU read-side lock must be held across this call and while using the
749 * returned object.
00e2e675 750 */
d88aee68 751struct consumer_relayd_sock_pair *consumer_find_relayd(uint64_t key)
00e2e675
DG
752{
753 struct lttng_ht_iter iter;
d88aee68 754 struct lttng_ht_node_u64 *node;
00e2e675
DG
755 struct consumer_relayd_sock_pair *relayd = NULL;
756
757 /* Negative keys are lookup failures */
d88aee68 758 if (key == (uint64_t) -1ULL) {
00e2e675
DG
759 goto error;
760 }
761
d88aee68 762 lttng_ht_lookup(consumer_data.relayd_ht, &key,
00e2e675 763 &iter);
d88aee68 764 node = lttng_ht_iter_get_node_u64(&iter);
00e2e675
DG
765 if (node != NULL) {
766 relayd = caa_container_of(node, struct consumer_relayd_sock_pair, node);
767 }
768
00e2e675
DG
769error:
770 return relayd;
771}
772
10a50311
JD
773/*
774 * Find a relayd and send the stream
775 *
776 * Returns 0 on success, < 0 on error
777 */
778int consumer_send_relayd_stream(struct lttng_consumer_stream *stream,
779 char *path)
780{
781 int ret = 0;
782 struct consumer_relayd_sock_pair *relayd;
783
784 assert(stream);
785 assert(stream->net_seq_idx != -1ULL);
786 assert(path);
787
788 /* The stream is not metadata. Get relayd reference if exists. */
789 rcu_read_lock();
790 relayd = consumer_find_relayd(stream->net_seq_idx);
791 if (relayd != NULL) {
792 /* Add stream on the relayd */
793 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
794 ret = relayd_add_stream(&relayd->control_sock, stream->name,
795 path, &stream->relayd_stream_id,
796 stream->chan->tracefile_size, stream->chan->tracefile_count);
797 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
798 if (ret < 0) {
799 goto end;
800 }
1c20f0e2 801
10a50311 802 uatomic_inc(&relayd->refcount);
d01178b6 803 stream->sent_to_relayd = 1;
10a50311
JD
804 } else {
805 ERR("Stream %" PRIu64 " relayd ID %" PRIu64 " unknown. Can't send it.",
806 stream->key, stream->net_seq_idx);
807 ret = -1;
808 goto end;
809 }
810
811 DBG("Stream %s with key %" PRIu64 " sent to relayd id %" PRIu64,
812 stream->name, stream->key, stream->net_seq_idx);
813
814end:
815 rcu_read_unlock();
816 return ret;
817}
818
a4baae1b
JD
819/*
820 * Find a relayd and send the streams sent message
821 *
822 * Returns 0 on success, < 0 on error
823 */
824int consumer_send_relayd_streams_sent(uint64_t net_seq_idx)
825{
826 int ret = 0;
827 struct consumer_relayd_sock_pair *relayd;
828
829 assert(net_seq_idx != -1ULL);
830
831 /* The stream is not metadata. Get relayd reference if exists. */
832 rcu_read_lock();
833 relayd = consumer_find_relayd(net_seq_idx);
834 if (relayd != NULL) {
835 /* Add stream on the relayd */
836 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
837 ret = relayd_streams_sent(&relayd->control_sock);
838 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
839 if (ret < 0) {
840 goto end;
841 }
842 } else {
843 ERR("Relayd ID %" PRIu64 " unknown. Can't send streams_sent.",
844 net_seq_idx);
845 ret = -1;
846 goto end;
847 }
848
849 ret = 0;
850 DBG("All streams sent relayd id %" PRIu64, net_seq_idx);
851
852end:
853 rcu_read_unlock();
854 return ret;
855}
856
10a50311
JD
857/*
858 * Find a relayd and close the stream
859 */
860void close_relayd_stream(struct lttng_consumer_stream *stream)
861{
862 struct consumer_relayd_sock_pair *relayd;
863
864 /* The stream is not metadata. Get relayd reference if exists. */
865 rcu_read_lock();
866 relayd = consumer_find_relayd(stream->net_seq_idx);
867 if (relayd) {
868 consumer_stream_relayd_close(stream, relayd);
869 }
870 rcu_read_unlock();
871}
872
00e2e675
DG
873/*
874 * Handle stream for relayd transmission if the stream applies for network
875 * streaming where the net sequence index is set.
876 *
877 * Return destination file descriptor or negative value on error.
878 */
6197aea7 879static int write_relayd_stream_header(struct lttng_consumer_stream *stream,
1d4dfdef
DG
880 size_t data_size, unsigned long padding,
881 struct consumer_relayd_sock_pair *relayd)
00e2e675
DG
882{
883 int outfd = -1, ret;
00e2e675
DG
884 struct lttcomm_relayd_data_hdr data_hdr;
885
886 /* Safety net */
887 assert(stream);
6197aea7 888 assert(relayd);
00e2e675
DG
889
890 /* Reset data header */
891 memset(&data_hdr, 0, sizeof(data_hdr));
892
00e2e675
DG
893 if (stream->metadata_flag) {
894 /* Caller MUST acquire the relayd control socket lock */
895 ret = relayd_send_metadata(&relayd->control_sock, data_size);
896 if (ret < 0) {
897 goto error;
898 }
899
900 /* Metadata are always sent on the control socket. */
6151a90f 901 outfd = relayd->control_sock.sock.fd;
00e2e675
DG
902 } else {
903 /* Set header with stream information */
904 data_hdr.stream_id = htobe64(stream->relayd_stream_id);
905 data_hdr.data_size = htobe32(data_size);
1d4dfdef 906 data_hdr.padding_size = htobe32(padding);
39df6d9f
DG
907 /*
908 * Note that net_seq_num below is assigned with the *current* value of
909 * next_net_seq_num and only after that the next_net_seq_num will be
910 * increment. This is why when issuing a command on the relayd using
911 * this next value, 1 should always be substracted in order to compare
912 * the last seen sequence number on the relayd side to the last sent.
913 */
3604f373 914 data_hdr.net_seq_num = htobe64(stream->next_net_seq_num);
00e2e675
DG
915 /* Other fields are zeroed previously */
916
917 ret = relayd_send_data_hdr(&relayd->data_sock, &data_hdr,
918 sizeof(data_hdr));
919 if (ret < 0) {
920 goto error;
921 }
922
3604f373
DG
923 ++stream->next_net_seq_num;
924
00e2e675 925 /* Set to go on data socket */
6151a90f 926 outfd = relayd->data_sock.sock.fd;
00e2e675
DG
927 }
928
929error:
930 return outfd;
931}
932
3bd1e081 933/*
ffe60014
DG
934 * Allocate and return a new lttng_consumer_channel object using the given key
935 * to initialize the hash table node.
936 *
937 * On error, return NULL.
3bd1e081 938 */
886224ff 939struct lttng_consumer_channel *consumer_allocate_channel(uint64_t key,
ffe60014
DG
940 uint64_t session_id,
941 const char *pathname,
942 const char *name,
943 uid_t uid,
944 gid_t gid,
57a269f2 945 uint64_t relayd_id,
1624d5b7
JD
946 enum lttng_event_output output,
947 uint64_t tracefile_size,
2bba9e53 948 uint64_t tracefile_count,
1950109e 949 uint64_t session_id_per_pid,
ecc48a90 950 unsigned int monitor,
d7ba1388 951 unsigned int live_timer_interval,
3d071855 952 const char *root_shm_path,
d7ba1388 953 const char *shm_path)
3bd1e081
MD
954{
955 struct lttng_consumer_channel *channel;
3bd1e081 956
276b26d1 957 channel = zmalloc(sizeof(*channel));
3bd1e081 958 if (channel == NULL) {
7a57cf92 959 PERROR("malloc struct lttng_consumer_channel");
3bd1e081
MD
960 goto end;
961 }
ffe60014
DG
962
963 channel->key = key;
3bd1e081 964 channel->refcount = 0;
ffe60014 965 channel->session_id = session_id;
1950109e 966 channel->session_id_per_pid = session_id_per_pid;
ffe60014
DG
967 channel->uid = uid;
968 channel->gid = gid;
969 channel->relayd_id = relayd_id;
1624d5b7
JD
970 channel->tracefile_size = tracefile_size;
971 channel->tracefile_count = tracefile_count;
2bba9e53 972 channel->monitor = monitor;
ecc48a90 973 channel->live_timer_interval = live_timer_interval;
a9838785 974 pthread_mutex_init(&channel->lock, NULL);
ec6ea7d0 975 pthread_mutex_init(&channel->timer_lock, NULL);
ffe60014 976
0c759fc9
DG
977 switch (output) {
978 case LTTNG_EVENT_SPLICE:
979 channel->output = CONSUMER_CHANNEL_SPLICE;
980 break;
981 case LTTNG_EVENT_MMAP:
982 channel->output = CONSUMER_CHANNEL_MMAP;
983 break;
984 default:
985 assert(0);
986 free(channel);
987 channel = NULL;
988 goto end;
989 }
990
07b86b52
JD
991 /*
992 * In monitor mode, the streams associated with the channel will be put in
993 * a special list ONLY owned by this channel. So, the refcount is set to 1
994 * here meaning that the channel itself has streams that are referenced.
995 *
996 * On a channel deletion, once the channel is no longer visible, the
997 * refcount is decremented and checked for a zero value to delete it. With
998 * streams in no monitor mode, it will now be safe to destroy the channel.
999 */
1000 if (!channel->monitor) {
1001 channel->refcount = 1;
1002 }
1003
ffe60014
DG
1004 strncpy(channel->pathname, pathname, sizeof(channel->pathname));
1005 channel->pathname[sizeof(channel->pathname) - 1] = '\0';
1006
1007 strncpy(channel->name, name, sizeof(channel->name));
1008 channel->name[sizeof(channel->name) - 1] = '\0';
1009
3d071855
MD
1010 if (root_shm_path) {
1011 strncpy(channel->root_shm_path, root_shm_path, sizeof(channel->root_shm_path));
1012 channel->root_shm_path[sizeof(channel->root_shm_path) - 1] = '\0';
1013 }
d7ba1388
MD
1014 if (shm_path) {
1015 strncpy(channel->shm_path, shm_path, sizeof(channel->shm_path));
1016 channel->shm_path[sizeof(channel->shm_path) - 1] = '\0';
1017 }
1018
d88aee68 1019 lttng_ht_node_init_u64(&channel->node, channel->key);
d8ef542d
MD
1020
1021 channel->wait_fd = -1;
1022
ffe60014
DG
1023 CDS_INIT_LIST_HEAD(&channel->streams.head);
1024
d88aee68 1025 DBG("Allocated channel (key %" PRIu64 ")", channel->key)
3bd1e081 1026
3bd1e081
MD
1027end:
1028 return channel;
1029}
1030
1031/*
1032 * Add a channel to the global list protected by a mutex.
821fffb2 1033 *
b5a6470f 1034 * Always return 0 indicating success.
3bd1e081 1035 */
d8ef542d
MD
1036int consumer_add_channel(struct lttng_consumer_channel *channel,
1037 struct lttng_consumer_local_data *ctx)
3bd1e081 1038{
3bd1e081 1039 pthread_mutex_lock(&consumer_data.lock);
a9838785 1040 pthread_mutex_lock(&channel->lock);
ec6ea7d0 1041 pthread_mutex_lock(&channel->timer_lock);
c77fc10a 1042
b5a6470f
DG
1043 /*
1044 * This gives us a guarantee that the channel we are about to add to the
1045 * channel hash table will be unique. See this function comment on the why
1046 * we need to steel the channel key at this stage.
1047 */
1048 steal_channel_key(channel->key);
c77fc10a 1049
b5a6470f 1050 rcu_read_lock();
d88aee68 1051 lttng_ht_add_unique_u64(consumer_data.channel_ht, &channel->node);
6065ceec 1052 rcu_read_unlock();
b5a6470f 1053
ec6ea7d0 1054 pthread_mutex_unlock(&channel->timer_lock);
a9838785 1055 pthread_mutex_unlock(&channel->lock);
3bd1e081 1056 pthread_mutex_unlock(&consumer_data.lock);
702b1ea4 1057
b5a6470f 1058 if (channel->wait_fd != -1 && channel->type == CONSUMER_CHANNEL_TYPE_DATA) {
a0cbdd2e 1059 notify_channel_pipe(ctx, channel, -1, CONSUMER_CHANNEL_ADD);
d8ef542d 1060 }
b5a6470f
DG
1061
1062 return 0;
3bd1e081
MD
1063}
1064
1065/*
1066 * Allocate the pollfd structure and the local view of the out fds to avoid
1067 * doing a lookup in the linked list and concurrency issues when writing is
1068 * needed. Called with consumer_data.lock held.
1069 *
1070 * Returns the number of fds in the structures.
1071 */
ffe60014
DG
1072static int update_poll_array(struct lttng_consumer_local_data *ctx,
1073 struct pollfd **pollfd, struct lttng_consumer_stream **local_stream,
1074 struct lttng_ht *ht)
3bd1e081 1075{
3bd1e081 1076 int i = 0;
e4421fec
DG
1077 struct lttng_ht_iter iter;
1078 struct lttng_consumer_stream *stream;
3bd1e081 1079
ffe60014
DG
1080 assert(ctx);
1081 assert(ht);
1082 assert(pollfd);
1083 assert(local_stream);
1084
3bd1e081 1085 DBG("Updating poll fd array");
481d6c57 1086 rcu_read_lock();
43c34bc3 1087 cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) {
8994307f
DG
1088 /*
1089 * Only active streams with an active end point can be added to the
1090 * poll set and local stream storage of the thread.
1091 *
1092 * There is a potential race here for endpoint_status to be updated
1093 * just after the check. However, this is OK since the stream(s) will
1094 * be deleted once the thread is notified that the end point state has
1095 * changed where this function will be called back again.
1096 */
1097 if (stream->state != LTTNG_CONSUMER_ACTIVE_STREAM ||
79d4ffb7 1098 stream->endpoint_status == CONSUMER_ENDPOINT_INACTIVE) {
3bd1e081
MD
1099 continue;
1100 }
7972aab2
DG
1101 /*
1102 * This clobbers way too much the debug output. Uncomment that if you
1103 * need it for debugging purposes.
1104 *
1105 * DBG("Active FD %d", stream->wait_fd);
1106 */
e4421fec 1107 (*pollfd)[i].fd = stream->wait_fd;
3bd1e081 1108 (*pollfd)[i].events = POLLIN | POLLPRI;
e4421fec 1109 local_stream[i] = stream;
3bd1e081
MD
1110 i++;
1111 }
481d6c57 1112 rcu_read_unlock();
3bd1e081
MD
1113
1114 /*
50f8ae69 1115 * Insert the consumer_data_pipe at the end of the array and don't
3bd1e081
MD
1116 * increment i so nb_fd is the number of real FD.
1117 */
acdb9057 1118 (*pollfd)[i].fd = lttng_pipe_get_readfd(ctx->consumer_data_pipe);
509bb1cf 1119 (*pollfd)[i].events = POLLIN | POLLPRI;
02b3d176
DG
1120
1121 (*pollfd)[i + 1].fd = lttng_pipe_get_readfd(ctx->consumer_wakeup_pipe);
1122 (*pollfd)[i + 1].events = POLLIN | POLLPRI;
3bd1e081
MD
1123 return i;
1124}
1125
1126/*
84382d49
MD
1127 * Poll on the should_quit pipe and the command socket return -1 on
1128 * error, 1 if should exit, 0 if data is available on the command socket
3bd1e081
MD
1129 */
1130int lttng_consumer_poll_socket(struct pollfd *consumer_sockpoll)
1131{
1132 int num_rdy;
1133
88f2b785 1134restart:
3bd1e081
MD
1135 num_rdy = poll(consumer_sockpoll, 2, -1);
1136 if (num_rdy == -1) {
88f2b785
MD
1137 /*
1138 * Restart interrupted system call.
1139 */
1140 if (errno == EINTR) {
1141 goto restart;
1142 }
7a57cf92 1143 PERROR("Poll error");
84382d49 1144 return -1;
3bd1e081 1145 }
509bb1cf 1146 if (consumer_sockpoll[0].revents & (POLLIN | POLLPRI)) {
3bd1e081 1147 DBG("consumer_should_quit wake up");
84382d49 1148 return 1;
3bd1e081
MD
1149 }
1150 return 0;
3bd1e081
MD
1151}
1152
1153/*
1154 * Set the error socket.
1155 */
ffe60014
DG
1156void lttng_consumer_set_error_sock(struct lttng_consumer_local_data *ctx,
1157 int sock)
3bd1e081
MD
1158{
1159 ctx->consumer_error_socket = sock;
1160}
1161
1162/*
1163 * Set the command socket path.
1164 */
3bd1e081
MD
1165void lttng_consumer_set_command_sock_path(
1166 struct lttng_consumer_local_data *ctx, char *sock)
1167{
1168 ctx->consumer_command_sock_path = sock;
1169}
1170
1171/*
1172 * Send return code to the session daemon.
1173 * If the socket is not defined, we return 0, it is not a fatal error
1174 */
ffe60014 1175int lttng_consumer_send_error(struct lttng_consumer_local_data *ctx, int cmd)
3bd1e081
MD
1176{
1177 if (ctx->consumer_error_socket > 0) {
1178 return lttcomm_send_unix_sock(ctx->consumer_error_socket, &cmd,
1179 sizeof(enum lttcomm_sessiond_command));
1180 }
1181
1182 return 0;
1183}
1184
1185/*
228b5bf7
DG
1186 * Close all the tracefiles and stream fds and MUST be called when all
1187 * instances are destroyed i.e. when all threads were joined and are ended.
3bd1e081
MD
1188 */
1189void lttng_consumer_cleanup(void)
1190{
e4421fec 1191 struct lttng_ht_iter iter;
ffe60014 1192 struct lttng_consumer_channel *channel;
6065ceec
DG
1193
1194 rcu_read_lock();
3bd1e081 1195
ffe60014
DG
1196 cds_lfht_for_each_entry(consumer_data.channel_ht->ht, &iter.iter, channel,
1197 node.node) {
702b1ea4 1198 consumer_del_channel(channel);
3bd1e081 1199 }
6065ceec
DG
1200
1201 rcu_read_unlock();
d6ce1df2 1202
d6ce1df2 1203 lttng_ht_destroy(consumer_data.channel_ht);
228b5bf7
DG
1204
1205 cleanup_relayd_ht();
1206
d8ef542d
MD
1207 lttng_ht_destroy(consumer_data.stream_per_chan_id_ht);
1208
228b5bf7
DG
1209 /*
1210 * This HT contains streams that are freed by either the metadata thread or
1211 * the data thread so we do *nothing* on the hash table and simply destroy
1212 * it.
1213 */
1214 lttng_ht_destroy(consumer_data.stream_list_ht);
3bd1e081
MD
1215}
1216
1217/*
1218 * Called from signal handler.
1219 */
1220void lttng_consumer_should_exit(struct lttng_consumer_local_data *ctx)
1221{
6cd525e8
MD
1222 ssize_t ret;
1223
3bd1e081 1224 consumer_quit = 1;
6cd525e8
MD
1225 ret = lttng_write(ctx->consumer_should_quit[1], "4", 1);
1226 if (ret < 1) {
7a57cf92 1227 PERROR("write consumer quit");
3bd1e081 1228 }
ab1027f4
DG
1229
1230 DBG("Consumer flag that it should quit");
3bd1e081
MD
1231}
1232
00e2e675
DG
1233void lttng_consumer_sync_trace_file(struct lttng_consumer_stream *stream,
1234 off_t orig_offset)
3bd1e081
MD
1235{
1236 int outfd = stream->out_fd;
1237
1238 /*
1239 * This does a blocking write-and-wait on any page that belongs to the
1240 * subbuffer prior to the one we just wrote.
1241 * Don't care about error values, as these are just hints and ways to
1242 * limit the amount of page cache used.
1243 */
ffe60014 1244 if (orig_offset < stream->max_sb_size) {
3bd1e081
MD
1245 return;
1246 }
ffe60014
DG
1247 lttng_sync_file_range(outfd, orig_offset - stream->max_sb_size,
1248 stream->max_sb_size,
3bd1e081
MD
1249 SYNC_FILE_RANGE_WAIT_BEFORE
1250 | SYNC_FILE_RANGE_WRITE
1251 | SYNC_FILE_RANGE_WAIT_AFTER);
1252 /*
1253 * Give hints to the kernel about how we access the file:
1254 * POSIX_FADV_DONTNEED : we won't re-access data in a near future after
1255 * we write it.
1256 *
1257 * We need to call fadvise again after the file grows because the
1258 * kernel does not seem to apply fadvise to non-existing parts of the
1259 * file.
1260 *
1261 * Call fadvise _after_ having waited for the page writeback to
1262 * complete because the dirty page writeback semantic is not well
1263 * defined. So it can be expected to lead to lower throughput in
1264 * streaming.
1265 */
ffe60014
DG
1266 posix_fadvise(outfd, orig_offset - stream->max_sb_size,
1267 stream->max_sb_size, POSIX_FADV_DONTNEED);
3bd1e081
MD
1268}
1269
1270/*
1271 * Initialise the necessary environnement :
1272 * - create a new context
1273 * - create the poll_pipe
1274 * - create the should_quit pipe (for signal handler)
1275 * - create the thread pipe (for splice)
1276 *
1277 * Takes a function pointer as argument, this function is called when data is
1278 * available on a buffer. This function is responsible to do the
1279 * kernctl_get_next_subbuf, read the data with mmap or splice depending on the
1280 * buffer configuration and then kernctl_put_next_subbuf at the end.
1281 *
1282 * Returns a pointer to the new context or NULL on error.
1283 */
1284struct lttng_consumer_local_data *lttng_consumer_create(
1285 enum lttng_consumer_type type,
4078b776 1286 ssize_t (*buffer_ready)(struct lttng_consumer_stream *stream,
d41f73b7 1287 struct lttng_consumer_local_data *ctx),
3bd1e081
MD
1288 int (*recv_channel)(struct lttng_consumer_channel *channel),
1289 int (*recv_stream)(struct lttng_consumer_stream *stream),
30319bcb 1290 int (*update_stream)(uint64_t stream_key, uint32_t state))
3bd1e081 1291{
d8ef542d 1292 int ret;
3bd1e081
MD
1293 struct lttng_consumer_local_data *ctx;
1294
1295 assert(consumer_data.type == LTTNG_CONSUMER_UNKNOWN ||
1296 consumer_data.type == type);
1297 consumer_data.type = type;
1298
effcf122 1299 ctx = zmalloc(sizeof(struct lttng_consumer_local_data));
3bd1e081 1300 if (ctx == NULL) {
7a57cf92 1301 PERROR("allocating context");
3bd1e081
MD
1302 goto error;
1303 }
1304
1305 ctx->consumer_error_socket = -1;
331744e3 1306 ctx->consumer_metadata_socket = -1;
75d83e50 1307 pthread_mutex_init(&ctx->metadata_socket_lock, NULL);
3bd1e081
MD
1308 /* assign the callbacks */
1309 ctx->on_buffer_ready = buffer_ready;
1310 ctx->on_recv_channel = recv_channel;
1311 ctx->on_recv_stream = recv_stream;
1312 ctx->on_update_stream = update_stream;
1313
acdb9057
DG
1314 ctx->consumer_data_pipe = lttng_pipe_open(0);
1315 if (!ctx->consumer_data_pipe) {
3bd1e081
MD
1316 goto error_poll_pipe;
1317 }
1318
02b3d176
DG
1319 ctx->consumer_wakeup_pipe = lttng_pipe_open(0);
1320 if (!ctx->consumer_wakeup_pipe) {
1321 goto error_wakeup_pipe;
1322 }
1323
3bd1e081
MD
1324 ret = pipe(ctx->consumer_should_quit);
1325 if (ret < 0) {
7a57cf92 1326 PERROR("Error creating recv pipe");
3bd1e081
MD
1327 goto error_quit_pipe;
1328 }
1329
d8ef542d
MD
1330 ret = pipe(ctx->consumer_channel_pipe);
1331 if (ret < 0) {
1332 PERROR("Error creating channel pipe");
1333 goto error_channel_pipe;
1334 }
1335
13886d2d
DG
1336 ctx->consumer_metadata_pipe = lttng_pipe_open(0);
1337 if (!ctx->consumer_metadata_pipe) {
fb3a43a9
DG
1338 goto error_metadata_pipe;
1339 }
3bd1e081 1340
fb3a43a9 1341 return ctx;
3bd1e081 1342
fb3a43a9 1343error_metadata_pipe:
d8ef542d
MD
1344 utils_close_pipe(ctx->consumer_channel_pipe);
1345error_channel_pipe:
d8ef542d 1346 utils_close_pipe(ctx->consumer_should_quit);
3bd1e081 1347error_quit_pipe:
02b3d176
DG
1348 lttng_pipe_destroy(ctx->consumer_wakeup_pipe);
1349error_wakeup_pipe:
acdb9057 1350 lttng_pipe_destroy(ctx->consumer_data_pipe);
3bd1e081
MD
1351error_poll_pipe:
1352 free(ctx);
1353error:
1354 return NULL;
1355}
1356
282dadbc
MD
1357/*
1358 * Iterate over all streams of the hashtable and free them properly.
1359 */
1360static void destroy_data_stream_ht(struct lttng_ht *ht)
1361{
1362 struct lttng_ht_iter iter;
1363 struct lttng_consumer_stream *stream;
1364
1365 if (ht == NULL) {
1366 return;
1367 }
1368
1369 rcu_read_lock();
1370 cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) {
1371 /*
1372 * Ignore return value since we are currently cleaning up so any error
1373 * can't be handled.
1374 */
1375 (void) consumer_del_stream(stream, ht);
1376 }
1377 rcu_read_unlock();
1378
1379 lttng_ht_destroy(ht);
1380}
1381
1382/*
1383 * Iterate over all streams of the metadata hashtable and free them
1384 * properly.
1385 */
1386static void destroy_metadata_stream_ht(struct lttng_ht *ht)
1387{
1388 struct lttng_ht_iter iter;
1389 struct lttng_consumer_stream *stream;
1390
1391 if (ht == NULL) {
1392 return;
1393 }
1394
1395 rcu_read_lock();
1396 cds_lfht_for_each_entry(ht->ht, &iter.iter, stream, node.node) {
1397 /*
1398 * Ignore return value since we are currently cleaning up so any error
1399 * can't be handled.
1400 */
1401 (void) consumer_del_metadata_stream(stream, ht);
1402 }
1403 rcu_read_unlock();
1404
1405 lttng_ht_destroy(ht);
1406}
1407
3bd1e081
MD
1408/*
1409 * Close all fds associated with the instance and free the context.
1410 */
1411void lttng_consumer_destroy(struct lttng_consumer_local_data *ctx)
1412{
4c462e79
MD
1413 int ret;
1414
ab1027f4
DG
1415 DBG("Consumer destroying it. Closing everything.");
1416
4f2e75b9
DG
1417 if (!ctx) {
1418 return;
1419 }
1420
282dadbc
MD
1421 destroy_data_stream_ht(data_ht);
1422 destroy_metadata_stream_ht(metadata_ht);
1423
4c462e79
MD
1424 ret = close(ctx->consumer_error_socket);
1425 if (ret) {
1426 PERROR("close");
1427 }
331744e3
JD
1428 ret = close(ctx->consumer_metadata_socket);
1429 if (ret) {
1430 PERROR("close");
1431 }
d8ef542d 1432 utils_close_pipe(ctx->consumer_channel_pipe);
acdb9057 1433 lttng_pipe_destroy(ctx->consumer_data_pipe);
13886d2d 1434 lttng_pipe_destroy(ctx->consumer_metadata_pipe);
02b3d176 1435 lttng_pipe_destroy(ctx->consumer_wakeup_pipe);
d8ef542d 1436 utils_close_pipe(ctx->consumer_should_quit);
fb3a43a9 1437
3bd1e081
MD
1438 unlink(ctx->consumer_command_sock_path);
1439 free(ctx);
1440}
1441
6197aea7
DG
1442/*
1443 * Write the metadata stream id on the specified file descriptor.
1444 */
1445static int write_relayd_metadata_id(int fd,
1446 struct lttng_consumer_stream *stream,
ffe60014 1447 struct consumer_relayd_sock_pair *relayd, unsigned long padding)
6197aea7 1448{
6cd525e8 1449 ssize_t ret;
1d4dfdef 1450 struct lttcomm_relayd_metadata_payload hdr;
6197aea7 1451
1d4dfdef
DG
1452 hdr.stream_id = htobe64(stream->relayd_stream_id);
1453 hdr.padding_size = htobe32(padding);
6cd525e8
MD
1454 ret = lttng_write(fd, (void *) &hdr, sizeof(hdr));
1455 if (ret < sizeof(hdr)) {
d7b75ec8 1456 /*
6f04ed72 1457 * This error means that the fd's end is closed so ignore the PERROR
d7b75ec8
DG
1458 * not to clubber the error output since this can happen in a normal
1459 * code path.
1460 */
1461 if (errno != EPIPE) {
1462 PERROR("write metadata stream id");
1463 }
1464 DBG3("Consumer failed to write relayd metadata id (errno: %d)", errno);
534d2592
DG
1465 /*
1466 * Set ret to a negative value because if ret != sizeof(hdr), we don't
1467 * handle writting the missing part so report that as an error and
1468 * don't lie to the caller.
1469 */
1470 ret = -1;
6197aea7
DG
1471 goto end;
1472 }
1d4dfdef
DG
1473 DBG("Metadata stream id %" PRIu64 " with padding %lu written before data",
1474 stream->relayd_stream_id, padding);
6197aea7
DG
1475
1476end:
6cd525e8 1477 return (int) ret;
6197aea7
DG
1478}
1479
3bd1e081 1480/*
09e26845
DG
1481 * Mmap the ring buffer, read it and write the data to the tracefile. This is a
1482 * core function for writing trace buffers to either the local filesystem or
1483 * the network.
1484 *
79d4ffb7
DG
1485 * It must be called with the stream lock held.
1486 *
09e26845 1487 * Careful review MUST be put if any changes occur!
3bd1e081
MD
1488 *
1489 * Returns the number of bytes written
1490 */
4078b776 1491ssize_t lttng_consumer_on_read_subbuffer_mmap(
3bd1e081 1492 struct lttng_consumer_local_data *ctx,
1d4dfdef 1493 struct lttng_consumer_stream *stream, unsigned long len,
309167d2 1494 unsigned long padding,
50adc264 1495 struct ctf_packet_index *index)
3bd1e081 1496{
f02e1e8a 1497 unsigned long mmap_offset;
ffe60014 1498 void *mmap_base;
994ab360 1499 ssize_t ret = 0;
f02e1e8a
DG
1500 off_t orig_offset = stream->out_fd_offset;
1501 /* Default is on the disk */
1502 int outfd = stream->out_fd;
f02e1e8a 1503 struct consumer_relayd_sock_pair *relayd = NULL;
8994307f 1504 unsigned int relayd_hang_up = 0;
f02e1e8a
DG
1505
1506 /* RCU lock for the relayd pointer */
1507 rcu_read_lock();
1508
1509 /* Flag that the current stream if set for network streaming. */
da009f2c 1510 if (stream->net_seq_idx != (uint64_t) -1ULL) {
f02e1e8a
DG
1511 relayd = consumer_find_relayd(stream->net_seq_idx);
1512 if (relayd == NULL) {
56591bac 1513 ret = -EPIPE;
f02e1e8a
DG
1514 goto end;
1515 }
1516 }
1517
1518 /* get the offset inside the fd to mmap */
3bd1e081
MD
1519 switch (consumer_data.type) {
1520 case LTTNG_CONSUMER_KERNEL:
ffe60014 1521 mmap_base = stream->mmap_base;
f02e1e8a 1522 ret = kernctl_get_mmap_read_offset(stream->wait_fd, &mmap_offset);
994ab360
DG
1523 if (ret < 0) {
1524 ret = -errno;
56591bac 1525 PERROR("tracer ctl get_mmap_read_offset");
56591bac
MD
1526 goto end;
1527 }
f02e1e8a 1528 break;
7753dea8
MD
1529 case LTTNG_CONSUMER32_UST:
1530 case LTTNG_CONSUMER64_UST:
ffe60014
DG
1531 mmap_base = lttng_ustctl_get_mmap_base(stream);
1532 if (!mmap_base) {
1533 ERR("read mmap get mmap base for stream %s", stream->name);
994ab360 1534 ret = -EPERM;
ffe60014
DG
1535 goto end;
1536 }
1537 ret = lttng_ustctl_get_mmap_read_offset(stream, &mmap_offset);
56591bac
MD
1538 if (ret != 0) {
1539 PERROR("tracer ctl get_mmap_read_offset");
994ab360 1540 ret = -EINVAL;
56591bac
MD
1541 goto end;
1542 }
f02e1e8a 1543 break;
3bd1e081
MD
1544 default:
1545 ERR("Unknown consumer_data type");
1546 assert(0);
1547 }
b9182dd9 1548
f02e1e8a
DG
1549 /* Handle stream on the relayd if the output is on the network */
1550 if (relayd) {
1551 unsigned long netlen = len;
1552
1553 /*
1554 * Lock the control socket for the complete duration of the function
1555 * since from this point on we will use the socket.
1556 */
1557 if (stream->metadata_flag) {
1558 /* Metadata requires the control socket. */
1559 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
1d4dfdef 1560 netlen += sizeof(struct lttcomm_relayd_metadata_payload);
f02e1e8a
DG
1561 }
1562
1d4dfdef 1563 ret = write_relayd_stream_header(stream, netlen, padding, relayd);
994ab360
DG
1564 if (ret < 0) {
1565 relayd_hang_up = 1;
1566 goto write_error;
1567 }
1568 /* Use the returned socket. */
1569 outfd = ret;
f02e1e8a 1570
994ab360
DG
1571 /* Write metadata stream id before payload */
1572 if (stream->metadata_flag) {
1573 ret = write_relayd_metadata_id(outfd, stream, relayd, padding);
1574 if (ret < 0) {
8994307f
DG
1575 relayd_hang_up = 1;
1576 goto write_error;
1577 }
f02e1e8a 1578 }
1d4dfdef
DG
1579 } else {
1580 /* No streaming, we have to set the len with the full padding */
1581 len += padding;
1624d5b7
JD
1582
1583 /*
1584 * Check if we need to change the tracefile before writing the packet.
1585 */
1586 if (stream->chan->tracefile_size > 0 &&
1587 (stream->tracefile_size_current + len) >
1588 stream->chan->tracefile_size) {
fe4477ee
JD
1589 ret = utils_rotate_stream_file(stream->chan->pathname,
1590 stream->name, stream->chan->tracefile_size,
1591 stream->chan->tracefile_count, stream->uid, stream->gid,
309167d2
JD
1592 stream->out_fd, &(stream->tracefile_count_current),
1593 &stream->out_fd);
1624d5b7
JD
1594 if (ret < 0) {
1595 ERR("Rotating output file");
1596 goto end;
1597 }
309167d2
JD
1598 outfd = stream->out_fd;
1599
1600 if (stream->index_fd >= 0) {
778d7cda
JG
1601 ret = close(stream->index_fd);
1602 if (ret < 0) {
1603 PERROR("Closing index");
1604 goto end;
1605 }
1606 stream->index_fd = -1;
309167d2
JD
1607 ret = index_create_file(stream->chan->pathname,
1608 stream->name, stream->uid, stream->gid,
1609 stream->chan->tracefile_size,
1610 stream->tracefile_count_current);
1611 if (ret < 0) {
1612 goto end;
1613 }
1614 stream->index_fd = ret;
1615 }
1616
a6976990
DG
1617 /* Reset current size because we just perform a rotation. */
1618 stream->tracefile_size_current = 0;
a1ae300f
JD
1619 stream->out_fd_offset = 0;
1620 orig_offset = 0;
1624d5b7
JD
1621 }
1622 stream->tracefile_size_current += len;
309167d2
JD
1623 if (index) {
1624 index->offset = htobe64(stream->out_fd_offset);
1625 }
f02e1e8a
DG
1626 }
1627
d02b8372
DG
1628 /*
1629 * This call guarantee that len or less is returned. It's impossible to
1630 * receive a ret value that is bigger than len.
1631 */
1632 ret = lttng_write(outfd, mmap_base + mmap_offset, len);
1633 DBG("Consumer mmap write() ret %zd (len %lu)", ret, len);
1634 if (ret < 0 || ((size_t) ret != len)) {
1635 /*
1636 * Report error to caller if nothing was written else at least send the
1637 * amount written.
1638 */
1639 if (ret < 0) {
994ab360 1640 ret = -errno;
f02e1e8a 1641 }
994ab360 1642 relayd_hang_up = 1;
f02e1e8a 1643
d02b8372 1644 /* Socket operation failed. We consider the relayd dead */
994ab360 1645 if (errno == EPIPE || errno == EINVAL || errno == EBADF) {
d02b8372
DG
1646 /*
1647 * This is possible if the fd is closed on the other side
1648 * (outfd) or any write problem. It can be verbose a bit for a
1649 * normal execution if for instance the relayd is stopped
1650 * abruptly. This can happen so set this to a DBG statement.
1651 */
1652 DBG("Consumer mmap write detected relayd hang up");
994ab360
DG
1653 } else {
1654 /* Unhandled error, print it and stop function right now. */
1655 PERROR("Error in write mmap (ret %zd != len %lu)", ret, len);
f02e1e8a 1656 }
994ab360 1657 goto write_error;
d02b8372
DG
1658 }
1659 stream->output_written += ret;
d02b8372
DG
1660
1661 /* This call is useless on a socket so better save a syscall. */
1662 if (!relayd) {
1663 /* This won't block, but will start writeout asynchronously */
1664 lttng_sync_file_range(outfd, stream->out_fd_offset, len,
1665 SYNC_FILE_RANGE_WRITE);
1666 stream->out_fd_offset += len;
f02e1e8a
DG
1667 }
1668 lttng_consumer_sync_trace_file(stream, orig_offset);
1669
8994307f
DG
1670write_error:
1671 /*
1672 * This is a special case that the relayd has closed its socket. Let's
1673 * cleanup the relayd object and all associated streams.
1674 */
1675 if (relayd && relayd_hang_up) {
1676 cleanup_relayd(relayd, ctx);
1677 }
1678
f02e1e8a
DG
1679end:
1680 /* Unlock only if ctrl socket used */
1681 if (relayd && stream->metadata_flag) {
1682 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
1683 }
1684
1685 rcu_read_unlock();
994ab360 1686 return ret;
3bd1e081
MD
1687}
1688
1689/*
1690 * Splice the data from the ring buffer to the tracefile.
1691 *
79d4ffb7
DG
1692 * It must be called with the stream lock held.
1693 *
3bd1e081
MD
1694 * Returns the number of bytes spliced.
1695 */
4078b776 1696ssize_t lttng_consumer_on_read_subbuffer_splice(
3bd1e081 1697 struct lttng_consumer_local_data *ctx,
1d4dfdef 1698 struct lttng_consumer_stream *stream, unsigned long len,
309167d2 1699 unsigned long padding,
50adc264 1700 struct ctf_packet_index *index)
3bd1e081 1701{
f02e1e8a
DG
1702 ssize_t ret = 0, written = 0, ret_splice = 0;
1703 loff_t offset = 0;
1704 off_t orig_offset = stream->out_fd_offset;
1705 int fd = stream->wait_fd;
1706 /* Default is on the disk */
1707 int outfd = stream->out_fd;
f02e1e8a 1708 struct consumer_relayd_sock_pair *relayd = NULL;
fb3a43a9 1709 int *splice_pipe;
8994307f 1710 unsigned int relayd_hang_up = 0;
f02e1e8a 1711
3bd1e081
MD
1712 switch (consumer_data.type) {
1713 case LTTNG_CONSUMER_KERNEL:
f02e1e8a 1714 break;
7753dea8
MD
1715 case LTTNG_CONSUMER32_UST:
1716 case LTTNG_CONSUMER64_UST:
f02e1e8a 1717 /* Not supported for user space tracing */
3bd1e081
MD
1718 return -ENOSYS;
1719 default:
1720 ERR("Unknown consumer_data type");
1721 assert(0);
3bd1e081
MD
1722 }
1723
f02e1e8a
DG
1724 /* RCU lock for the relayd pointer */
1725 rcu_read_lock();
1726
1727 /* Flag that the current stream if set for network streaming. */
da009f2c 1728 if (stream->net_seq_idx != (uint64_t) -1ULL) {
f02e1e8a
DG
1729 relayd = consumer_find_relayd(stream->net_seq_idx);
1730 if (relayd == NULL) {
ad0b0d23 1731 written = -ret;
f02e1e8a
DG
1732 goto end;
1733 }
1734 }
a2361a61 1735 splice_pipe = stream->splice_pipe;
fb3a43a9 1736
f02e1e8a 1737 /* Write metadata stream id before payload */
1d4dfdef 1738 if (relayd) {
ad0b0d23 1739 unsigned long total_len = len;
f02e1e8a 1740
1d4dfdef
DG
1741 if (stream->metadata_flag) {
1742 /*
1743 * Lock the control socket for the complete duration of the function
1744 * since from this point on we will use the socket.
1745 */
1746 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
1747
1748 ret = write_relayd_metadata_id(splice_pipe[1], stream, relayd,
1749 padding);
1750 if (ret < 0) {
1751 written = ret;
ad0b0d23
DG
1752 relayd_hang_up = 1;
1753 goto write_error;
1d4dfdef
DG
1754 }
1755
1756 total_len += sizeof(struct lttcomm_relayd_metadata_payload);
1757 }
1758
1759 ret = write_relayd_stream_header(stream, total_len, padding, relayd);
ad0b0d23
DG
1760 if (ret < 0) {
1761 written = ret;
1762 relayd_hang_up = 1;
1763 goto write_error;
f02e1e8a 1764 }
ad0b0d23
DG
1765 /* Use the returned socket. */
1766 outfd = ret;
1d4dfdef
DG
1767 } else {
1768 /* No streaming, we have to set the len with the full padding */
1769 len += padding;
1624d5b7
JD
1770
1771 /*
1772 * Check if we need to change the tracefile before writing the packet.
1773 */
1774 if (stream->chan->tracefile_size > 0 &&
1775 (stream->tracefile_size_current + len) >
1776 stream->chan->tracefile_size) {
fe4477ee
JD
1777 ret = utils_rotate_stream_file(stream->chan->pathname,
1778 stream->name, stream->chan->tracefile_size,
1779 stream->chan->tracefile_count, stream->uid, stream->gid,
309167d2
JD
1780 stream->out_fd, &(stream->tracefile_count_current),
1781 &stream->out_fd);
1624d5b7 1782 if (ret < 0) {
ad0b0d23 1783 written = ret;
1624d5b7
JD
1784 ERR("Rotating output file");
1785 goto end;
1786 }
309167d2
JD
1787 outfd = stream->out_fd;
1788
1789 if (stream->index_fd >= 0) {
ad772158
JD
1790 ret = close(stream->index_fd);
1791 if (ret < 0) {
1792 PERROR("Closing index");
1793 goto end;
1794 }
1795 stream->index_fd = -1;
309167d2
JD
1796 ret = index_create_file(stream->chan->pathname,
1797 stream->name, stream->uid, stream->gid,
1798 stream->chan->tracefile_size,
1799 stream->tracefile_count_current);
1800 if (ret < 0) {
ad0b0d23 1801 written = ret;
309167d2
JD
1802 goto end;
1803 }
1804 stream->index_fd = ret;
1805 }
1806
a6976990
DG
1807 /* Reset current size because we just perform a rotation. */
1808 stream->tracefile_size_current = 0;
a1ae300f
JD
1809 stream->out_fd_offset = 0;
1810 orig_offset = 0;
1624d5b7
JD
1811 }
1812 stream->tracefile_size_current += len;
309167d2 1813 index->offset = htobe64(stream->out_fd_offset);
f02e1e8a
DG
1814 }
1815
1816 while (len > 0) {
1d4dfdef
DG
1817 DBG("splice chan to pipe offset %lu of len %lu (fd : %d, pipe: %d)",
1818 (unsigned long)offset, len, fd, splice_pipe[1]);
fb3a43a9 1819 ret_splice = splice(fd, &offset, splice_pipe[1], NULL, len,
f02e1e8a
DG
1820 SPLICE_F_MOVE | SPLICE_F_MORE);
1821 DBG("splice chan to pipe, ret %zd", ret_splice);
1822 if (ret_splice < 0) {
d02b8372 1823 ret = errno;
ad0b0d23 1824 written = -ret;
d02b8372 1825 PERROR("Error in relay splice");
f02e1e8a
DG
1826 goto splice_error;
1827 }
1828
1829 /* Handle stream on the relayd if the output is on the network */
ad0b0d23
DG
1830 if (relayd && stream->metadata_flag) {
1831 size_t metadata_payload_size =
1832 sizeof(struct lttcomm_relayd_metadata_payload);
1833
1834 /* Update counter to fit the spliced data */
1835 ret_splice += metadata_payload_size;
1836 len += metadata_payload_size;
1837 /*
1838 * We do this so the return value can match the len passed as
1839 * argument to this function.
1840 */
1841 written -= metadata_payload_size;
f02e1e8a
DG
1842 }
1843
1844 /* Splice data out */
fb3a43a9 1845 ret_splice = splice(splice_pipe[0], NULL, outfd, NULL,
f02e1e8a 1846 ret_splice, SPLICE_F_MOVE | SPLICE_F_MORE);
a2361a61
JD
1847 DBG("Consumer splice pipe to file (out_fd: %d), ret %zd",
1848 outfd, ret_splice);
f02e1e8a 1849 if (ret_splice < 0) {
d02b8372 1850 ret = errno;
ad0b0d23
DG
1851 written = -ret;
1852 relayd_hang_up = 1;
1853 goto write_error;
f02e1e8a 1854 } else if (ret_splice > len) {
d02b8372
DG
1855 /*
1856 * We don't expect this code path to be executed but you never know
1857 * so this is an extra protection agains a buggy splice().
1858 */
f02e1e8a 1859 ret = errno;
ad0b0d23 1860 written += ret_splice;
d02b8372
DG
1861 PERROR("Wrote more data than requested %zd (len: %lu)", ret_splice,
1862 len);
f02e1e8a 1863 goto splice_error;
d02b8372
DG
1864 } else {
1865 /* All good, update current len and continue. */
1866 len -= ret_splice;
f02e1e8a 1867 }
f02e1e8a
DG
1868
1869 /* This call is useless on a socket so better save a syscall. */
1870 if (!relayd) {
1871 /* This won't block, but will start writeout asynchronously */
1872 lttng_sync_file_range(outfd, stream->out_fd_offset, ret_splice,
1873 SYNC_FILE_RANGE_WRITE);
1874 stream->out_fd_offset += ret_splice;
1875 }
e5d1a9b3 1876 stream->output_written += ret_splice;
f02e1e8a
DG
1877 written += ret_splice;
1878 }
1879 lttng_consumer_sync_trace_file(stream, orig_offset);
f02e1e8a
DG
1880 goto end;
1881
8994307f
DG
1882write_error:
1883 /*
1884 * This is a special case that the relayd has closed its socket. Let's
1885 * cleanup the relayd object and all associated streams.
1886 */
1887 if (relayd && relayd_hang_up) {
1888 cleanup_relayd(relayd, ctx);
1889 /* Skip splice error so the consumer does not fail */
1890 goto end;
1891 }
1892
f02e1e8a
DG
1893splice_error:
1894 /* send the appropriate error description to sessiond */
1895 switch (ret) {
f02e1e8a 1896 case EINVAL:
f73fabfd 1897 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_EINVAL);
f02e1e8a
DG
1898 break;
1899 case ENOMEM:
f73fabfd 1900 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_ENOMEM);
f02e1e8a
DG
1901 break;
1902 case ESPIPE:
f73fabfd 1903 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_SPLICE_ESPIPE);
f02e1e8a
DG
1904 break;
1905 }
1906
1907end:
1908 if (relayd && stream->metadata_flag) {
1909 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
1910 }
1911
1912 rcu_read_unlock();
1913 return written;
3bd1e081
MD
1914}
1915
1916/*
1917 * Take a snapshot for a specific fd
1918 *
1919 * Returns 0 on success, < 0 on error
1920 */
ffe60014 1921int lttng_consumer_take_snapshot(struct lttng_consumer_stream *stream)
3bd1e081
MD
1922{
1923 switch (consumer_data.type) {
1924 case LTTNG_CONSUMER_KERNEL:
ffe60014 1925 return lttng_kconsumer_take_snapshot(stream);
7753dea8
MD
1926 case LTTNG_CONSUMER32_UST:
1927 case LTTNG_CONSUMER64_UST:
ffe60014 1928 return lttng_ustconsumer_take_snapshot(stream);
3bd1e081
MD
1929 default:
1930 ERR("Unknown consumer_data type");
1931 assert(0);
1932 return -ENOSYS;
1933 }
3bd1e081
MD
1934}
1935
1936/*
1937 * Get the produced position
1938 *
1939 * Returns 0 on success, < 0 on error
1940 */
ffe60014 1941int lttng_consumer_get_produced_snapshot(struct lttng_consumer_stream *stream,
3bd1e081
MD
1942 unsigned long *pos)
1943{
1944 switch (consumer_data.type) {
1945 case LTTNG_CONSUMER_KERNEL:
ffe60014 1946 return lttng_kconsumer_get_produced_snapshot(stream, pos);
7753dea8
MD
1947 case LTTNG_CONSUMER32_UST:
1948 case LTTNG_CONSUMER64_UST:
ffe60014 1949 return lttng_ustconsumer_get_produced_snapshot(stream, pos);
3bd1e081
MD
1950 default:
1951 ERR("Unknown consumer_data type");
1952 assert(0);
1953 return -ENOSYS;
1954 }
1955}
1956
1957int lttng_consumer_recv_cmd(struct lttng_consumer_local_data *ctx,
1958 int sock, struct pollfd *consumer_sockpoll)
1959{
1960 switch (consumer_data.type) {
1961 case LTTNG_CONSUMER_KERNEL:
1962 return lttng_kconsumer_recv_cmd(ctx, sock, consumer_sockpoll);
7753dea8
MD
1963 case LTTNG_CONSUMER32_UST:
1964 case LTTNG_CONSUMER64_UST:
3bd1e081
MD
1965 return lttng_ustconsumer_recv_cmd(ctx, sock, consumer_sockpoll);
1966 default:
1967 ERR("Unknown consumer_data type");
1968 assert(0);
1969 return -ENOSYS;
1970 }
1971}
1972
6d574024 1973void lttng_consumer_close_all_metadata(void)
d88aee68
DG
1974{
1975 switch (consumer_data.type) {
1976 case LTTNG_CONSUMER_KERNEL:
1977 /*
1978 * The Kernel consumer has a different metadata scheme so we don't
1979 * close anything because the stream will be closed by the session
1980 * daemon.
1981 */
1982 break;
1983 case LTTNG_CONSUMER32_UST:
1984 case LTTNG_CONSUMER64_UST:
1985 /*
1986 * Close all metadata streams. The metadata hash table is passed and
1987 * this call iterates over it by closing all wakeup fd. This is safe
1988 * because at this point we are sure that the metadata producer is
1989 * either dead or blocked.
1990 */
6d574024 1991 lttng_ustconsumer_close_all_metadata(metadata_ht);
d88aee68
DG
1992 break;
1993 default:
1994 ERR("Unknown consumer_data type");
1995 assert(0);
1996 }
1997}
1998
fb3a43a9
DG
1999/*
2000 * Clean up a metadata stream and free its memory.
2001 */
e316aad5
DG
2002void consumer_del_metadata_stream(struct lttng_consumer_stream *stream,
2003 struct lttng_ht *ht)
fb3a43a9 2004{
e316aad5 2005 struct lttng_consumer_channel *free_chan = NULL;
fb3a43a9
DG
2006
2007 assert(stream);
2008 /*
2009 * This call should NEVER receive regular stream. It must always be
2010 * metadata stream and this is crucial for data structure synchronization.
2011 */
2012 assert(stream->metadata_flag);
2013
e316aad5
DG
2014 DBG3("Consumer delete metadata stream %d", stream->wait_fd);
2015
74251bb8 2016 pthread_mutex_lock(&consumer_data.lock);
a9838785 2017 pthread_mutex_lock(&stream->chan->lock);
8994307f
DG
2018 pthread_mutex_lock(&stream->lock);
2019
6d574024
DG
2020 /* Remove any reference to that stream. */
2021 consumer_stream_delete(stream, ht);
ca22feea 2022
6d574024
DG
2023 /* Close down everything including the relayd if one. */
2024 consumer_stream_close(stream);
2025 /* Destroy tracer buffers of the stream. */
2026 consumer_stream_destroy_buffers(stream);
fb3a43a9
DG
2027
2028 /* Atomically decrement channel refcount since other threads can use it. */
f2ad556d 2029 if (!uatomic_sub_return(&stream->chan->refcount, 1)
ffe60014 2030 && !uatomic_read(&stream->chan->nb_init_stream_left)) {
c30aaa51 2031 /* Go for channel deletion! */
e316aad5 2032 free_chan = stream->chan;
fb3a43a9
DG
2033 }
2034
73811ecc
DG
2035 /*
2036 * Nullify the stream reference so it is not used after deletion. The
6d574024
DG
2037 * channel lock MUST be acquired before being able to check for a NULL
2038 * pointer value.
73811ecc
DG
2039 */
2040 stream->chan->metadata_stream = NULL;
2041
8994307f 2042 pthread_mutex_unlock(&stream->lock);
a9838785 2043 pthread_mutex_unlock(&stream->chan->lock);
74251bb8 2044 pthread_mutex_unlock(&consumer_data.lock);
e316aad5
DG
2045
2046 if (free_chan) {
2047 consumer_del_channel(free_chan);
2048 }
2049
6d574024 2050 consumer_stream_free(stream);
fb3a43a9
DG
2051}
2052
2053/*
2054 * Action done with the metadata stream when adding it to the consumer internal
2055 * data structures to handle it.
2056 */
5ab66908 2057int consumer_add_metadata_stream(struct lttng_consumer_stream *stream)
fb3a43a9 2058{
5ab66908 2059 struct lttng_ht *ht = metadata_ht;
e316aad5 2060 int ret = 0;
76082088 2061 struct lttng_ht_iter iter;
d88aee68 2062 struct lttng_ht_node_u64 *node;
fb3a43a9 2063
e316aad5
DG
2064 assert(stream);
2065 assert(ht);
2066
d88aee68 2067 DBG3("Adding metadata stream %" PRIu64 " to hash table", stream->key);
e316aad5
DG
2068
2069 pthread_mutex_lock(&consumer_data.lock);
a9838785 2070 pthread_mutex_lock(&stream->chan->lock);
ec6ea7d0 2071 pthread_mutex_lock(&stream->chan->timer_lock);
2e818a6a 2072 pthread_mutex_lock(&stream->lock);
e316aad5 2073
e316aad5
DG
2074 /*
2075 * From here, refcounts are updated so be _careful_ when returning an error
2076 * after this point.
2077 */
2078
fb3a43a9 2079 rcu_read_lock();
76082088
DG
2080
2081 /*
2082 * Lookup the stream just to make sure it does not exist in our internal
2083 * state. This should NEVER happen.
2084 */
d88aee68
DG
2085 lttng_ht_lookup(ht, &stream->key, &iter);
2086 node = lttng_ht_iter_get_node_u64(&iter);
76082088
DG
2087 assert(!node);
2088
e316aad5 2089 /*
ffe60014
DG
2090 * When nb_init_stream_left reaches 0, we don't need to trigger any action
2091 * in terms of destroying the associated channel, because the action that
e316aad5
DG
2092 * causes the count to become 0 also causes a stream to be added. The
2093 * channel deletion will thus be triggered by the following removal of this
2094 * stream.
2095 */
ffe60014 2096 if (uatomic_read(&stream->chan->nb_init_stream_left) > 0) {
f2ad556d
MD
2097 /* Increment refcount before decrementing nb_init_stream_left */
2098 cmm_smp_wmb();
ffe60014 2099 uatomic_dec(&stream->chan->nb_init_stream_left);
e316aad5
DG
2100 }
2101
d88aee68 2102 lttng_ht_add_unique_u64(ht, &stream->node);
ca22feea 2103
d8ef542d
MD
2104 lttng_ht_add_unique_u64(consumer_data.stream_per_chan_id_ht,
2105 &stream->node_channel_id);
2106
ca22feea
DG
2107 /*
2108 * Add stream to the stream_list_ht of the consumer data. No need to steal
2109 * the key since the HT does not use it and we allow to add redundant keys
2110 * into this table.
2111 */
d88aee68 2112 lttng_ht_add_u64(consumer_data.stream_list_ht, &stream->node_session_id);
ca22feea 2113
fb3a43a9 2114 rcu_read_unlock();
e316aad5 2115
2e818a6a 2116 pthread_mutex_unlock(&stream->lock);
a9838785 2117 pthread_mutex_unlock(&stream->chan->lock);
ec6ea7d0 2118 pthread_mutex_unlock(&stream->chan->timer_lock);
e316aad5
DG
2119 pthread_mutex_unlock(&consumer_data.lock);
2120 return ret;
fb3a43a9
DG
2121}
2122
8994307f
DG
2123/*
2124 * Delete data stream that are flagged for deletion (endpoint_status).
2125 */
2126static void validate_endpoint_status_data_stream(void)
2127{
2128 struct lttng_ht_iter iter;
2129 struct lttng_consumer_stream *stream;
2130
2131 DBG("Consumer delete flagged data stream");
2132
2133 rcu_read_lock();
2134 cds_lfht_for_each_entry(data_ht->ht, &iter.iter, stream, node.node) {
2135 /* Validate delete flag of the stream */
79d4ffb7 2136 if (stream->endpoint_status == CONSUMER_ENDPOINT_ACTIVE) {
8994307f
DG
2137 continue;
2138 }
2139 /* Delete it right now */
2140 consumer_del_stream(stream, data_ht);
2141 }
2142 rcu_read_unlock();
2143}
2144
2145/*
2146 * Delete metadata stream that are flagged for deletion (endpoint_status).
2147 */
2148static void validate_endpoint_status_metadata_stream(
2149 struct lttng_poll_event *pollset)
2150{
2151 struct lttng_ht_iter iter;
2152 struct lttng_consumer_stream *stream;
2153
2154 DBG("Consumer delete flagged metadata stream");
2155
2156 assert(pollset);
2157
2158 rcu_read_lock();
2159 cds_lfht_for_each_entry(metadata_ht->ht, &iter.iter, stream, node.node) {
2160 /* Validate delete flag of the stream */
79d4ffb7 2161 if (stream->endpoint_status == CONSUMER_ENDPOINT_ACTIVE) {
8994307f
DG
2162 continue;
2163 }
2164 /*
2165 * Remove from pollset so the metadata thread can continue without
2166 * blocking on a deleted stream.
2167 */
2168 lttng_poll_del(pollset, stream->wait_fd);
2169
2170 /* Delete it right now */
2171 consumer_del_metadata_stream(stream, metadata_ht);
2172 }
2173 rcu_read_unlock();
2174}
2175
fb3a43a9
DG
2176/*
2177 * Thread polls on metadata file descriptor and write them on disk or on the
2178 * network.
2179 */
7d980def 2180void *consumer_thread_metadata_poll(void *data)
fb3a43a9 2181{
1fc79fb4 2182 int ret, i, pollfd, err = -1;
fb3a43a9 2183 uint32_t revents, nb_fd;
e316aad5 2184 struct lttng_consumer_stream *stream = NULL;
fb3a43a9 2185 struct lttng_ht_iter iter;
d88aee68 2186 struct lttng_ht_node_u64 *node;
fb3a43a9
DG
2187 struct lttng_poll_event events;
2188 struct lttng_consumer_local_data *ctx = data;
2189 ssize_t len;
2190
2191 rcu_register_thread();
2192
1fc79fb4
MD
2193 health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_METADATA);
2194
2d57de81
MD
2195 if (testpoint(consumerd_thread_metadata)) {
2196 goto error_testpoint;
2197 }
2198
9ce5646a
MD
2199 health_code_update();
2200
fb3a43a9
DG
2201 DBG("Thread metadata poll started");
2202
fb3a43a9
DG
2203 /* Size is set to 1 for the consumer_metadata pipe */
2204 ret = lttng_poll_create(&events, 2, LTTNG_CLOEXEC);
2205 if (ret < 0) {
2206 ERR("Poll set creation failed");
d8ef542d 2207 goto end_poll;
fb3a43a9
DG
2208 }
2209
13886d2d
DG
2210 ret = lttng_poll_add(&events,
2211 lttng_pipe_get_readfd(ctx->consumer_metadata_pipe), LPOLLIN);
fb3a43a9
DG
2212 if (ret < 0) {
2213 goto end;
2214 }
2215
2216 /* Main loop */
2217 DBG("Metadata main loop started");
2218
2219 while (1) {
fb3a43a9 2220restart:
7fa2082e 2221 health_code_update();
9ce5646a 2222 health_poll_entry();
7fa2082e 2223 DBG("Metadata poll wait");
fb3a43a9 2224 ret = lttng_poll_wait(&events, -1);
7fa2082e
MD
2225 DBG("Metadata poll return from wait with %d fd(s)",
2226 LTTNG_POLL_GETNB(&events));
9ce5646a 2227 health_poll_exit();
fb3a43a9
DG
2228 DBG("Metadata event catched in thread");
2229 if (ret < 0) {
2230 if (errno == EINTR) {
e316aad5 2231 ERR("Poll EINTR catched");
fb3a43a9
DG
2232 goto restart;
2233 }
d9607cd7
MD
2234 if (LTTNG_POLL_GETNB(&events) == 0) {
2235 err = 0; /* All is OK */
2236 }
2237 goto end;
fb3a43a9
DG
2238 }
2239
0d9c5d77
DG
2240 nb_fd = ret;
2241
e316aad5 2242 /* From here, the event is a metadata wait fd */
fb3a43a9 2243 for (i = 0; i < nb_fd; i++) {
9ce5646a
MD
2244 health_code_update();
2245
fb3a43a9
DG
2246 revents = LTTNG_POLL_GETEV(&events, i);
2247 pollfd = LTTNG_POLL_GETFD(&events, i);
2248
fd20dac9
MD
2249 if (!revents) {
2250 /* No activity for this FD (poll implementation). */
2251 continue;
2252 }
2253
13886d2d 2254 if (pollfd == lttng_pipe_get_readfd(ctx->consumer_metadata_pipe)) {
92d6debb 2255 if (revents & LPOLLIN) {
13886d2d
DG
2256 ssize_t pipe_len;
2257
2258 pipe_len = lttng_pipe_read(ctx->consumer_metadata_pipe,
2259 &stream, sizeof(stream));
6cd525e8 2260 if (pipe_len < sizeof(stream)) {
92d6debb
MD
2261 if (pipe_len < 0) {
2262 PERROR("read metadata stream");
2263 }
fb3a43a9 2264 /*
92d6debb
MD
2265 * Remove the pipe from the poll set and continue the loop
2266 * since their might be data to consume.
fb3a43a9 2267 */
92d6debb
MD
2268 lttng_poll_del(&events,
2269 lttng_pipe_get_readfd(ctx->consumer_metadata_pipe));
2270 lttng_pipe_read_close(ctx->consumer_metadata_pipe);
fb3a43a9
DG
2271 continue;
2272 }
2273
8994307f
DG
2274 /* A NULL stream means that the state has changed. */
2275 if (stream == NULL) {
2276 /* Check for deleted streams. */
2277 validate_endpoint_status_metadata_stream(&events);
3714380f 2278 goto restart;
8994307f
DG
2279 }
2280
fb3a43a9
DG
2281 DBG("Adding metadata stream %d to poll set",
2282 stream->wait_fd);
2283
fb3a43a9
DG
2284 /* Add metadata stream to the global poll events list */
2285 lttng_poll_add(&events, stream->wait_fd,
6d574024 2286 LPOLLIN | LPOLLPRI | LPOLLHUP);
92d6debb
MD
2287 } else if (revents & (LPOLLERR | LPOLLHUP)) {
2288 DBG("Metadata thread pipe hung up");
2289 /*
2290 * Remove the pipe from the poll set and continue the loop
2291 * since their might be data to consume.
2292 */
2293 lttng_poll_del(&events,
2294 lttng_pipe_get_readfd(ctx->consumer_metadata_pipe));
2295 lttng_pipe_read_close(ctx->consumer_metadata_pipe);
2296 continue;
2297 } else {
2298 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
2299 goto end;
fb3a43a9
DG
2300 }
2301
e316aad5 2302 /* Handle other stream */
fb3a43a9
DG
2303 continue;
2304 }
2305
d09e1200 2306 rcu_read_lock();
d88aee68
DG
2307 {
2308 uint64_t tmp_id = (uint64_t) pollfd;
2309
2310 lttng_ht_lookup(metadata_ht, &tmp_id, &iter);
2311 }
2312 node = lttng_ht_iter_get_node_u64(&iter);
e316aad5 2313 assert(node);
fb3a43a9
DG
2314
2315 stream = caa_container_of(node, struct lttng_consumer_stream,
58b1f425 2316 node);
fb3a43a9 2317
92d6debb
MD
2318 if (revents & (LPOLLIN | LPOLLPRI)) {
2319 /* Get the data out of the metadata file descriptor */
2320 DBG("Metadata available on fd %d", pollfd);
2321 assert(stream->wait_fd == pollfd);
2322
2323 do {
2324 health_code_update();
2325
2326 len = ctx->on_buffer_ready(stream, ctx);
2327 /*
2328 * We don't check the return value here since if we get
2329 * a negative len, it means an error occured thus we
2330 * simply remove it from the poll set and free the
2331 * stream.
2332 */
2333 } while (len > 0);
2334
2335 /* It's ok to have an unavailable sub-buffer */
2336 if (len < 0 && len != -EAGAIN && len != -ENODATA) {
2337 /* Clean up stream from consumer and free it. */
2338 lttng_poll_del(&events, stream->wait_fd);
2339 consumer_del_metadata_stream(stream, metadata_ht);
2340 }
2341 } else if (revents & (LPOLLERR | LPOLLHUP)) {
e316aad5 2342 DBG("Metadata fd %d is hup|err.", pollfd);
fb3a43a9
DG
2343 if (!stream->hangup_flush_done
2344 && (consumer_data.type == LTTNG_CONSUMER32_UST
2345 || consumer_data.type == LTTNG_CONSUMER64_UST)) {
2346 DBG("Attempting to flush and consume the UST buffers");
2347 lttng_ustconsumer_on_stream_hangup(stream);
2348
2349 /* We just flushed the stream now read it. */
4bb94b75 2350 do {
9ce5646a
MD
2351 health_code_update();
2352
4bb94b75
DG
2353 len = ctx->on_buffer_ready(stream, ctx);
2354 /*
2355 * We don't check the return value here since if we get
2356 * a negative len, it means an error occured thus we
2357 * simply remove it from the poll set and free the
2358 * stream.
2359 */
2360 } while (len > 0);
fb3a43a9
DG
2361 }
2362
fb3a43a9 2363 lttng_poll_del(&events, stream->wait_fd);
e316aad5
DG
2364 /*
2365 * This call update the channel states, closes file descriptors
2366 * and securely free the stream.
2367 */
2368 consumer_del_metadata_stream(stream, metadata_ht);
92d6debb
MD
2369 } else {
2370 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
19cee80d 2371 rcu_read_unlock();
92d6debb 2372 goto end;
fb3a43a9 2373 }
e316aad5 2374 /* Release RCU lock for the stream looked up */
d09e1200 2375 rcu_read_unlock();
fb3a43a9
DG
2376 }
2377 }
2378
1fc79fb4
MD
2379 /* All is OK */
2380 err = 0;
fb3a43a9
DG
2381end:
2382 DBG("Metadata poll thread exiting");
fb3a43a9 2383
d8ef542d
MD
2384 lttng_poll_clean(&events);
2385end_poll:
2d57de81 2386error_testpoint:
1fc79fb4
MD
2387 if (err) {
2388 health_error();
2389 ERR("Health error occurred in %s", __func__);
2390 }
2391 health_unregister(health_consumerd);
fb3a43a9
DG
2392 rcu_unregister_thread();
2393 return NULL;
2394}
2395
3bd1e081 2396/*
e4421fec 2397 * This thread polls the fds in the set to consume the data and write
3bd1e081
MD
2398 * it to tracefile if necessary.
2399 */
7d980def 2400void *consumer_thread_data_poll(void *data)
3bd1e081 2401{
1fc79fb4 2402 int num_rdy, num_hup, high_prio, ret, i, err = -1;
3bd1e081
MD
2403 struct pollfd *pollfd = NULL;
2404 /* local view of the streams */
c869f647 2405 struct lttng_consumer_stream **local_stream = NULL, *new_stream = NULL;
3bd1e081
MD
2406 /* local view of consumer_data.fds_count */
2407 int nb_fd = 0;
3bd1e081 2408 struct lttng_consumer_local_data *ctx = data;
00e2e675 2409 ssize_t len;
3bd1e081 2410
e7b994a3
DG
2411 rcu_register_thread();
2412
1fc79fb4
MD
2413 health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_DATA);
2414
2d57de81
MD
2415 if (testpoint(consumerd_thread_data)) {
2416 goto error_testpoint;
2417 }
2418
9ce5646a
MD
2419 health_code_update();
2420
4df6c8cb
MD
2421 local_stream = zmalloc(sizeof(struct lttng_consumer_stream *));
2422 if (local_stream == NULL) {
2423 PERROR("local_stream malloc");
2424 goto end;
2425 }
3bd1e081
MD
2426
2427 while (1) {
9ce5646a
MD
2428 health_code_update();
2429
3bd1e081
MD
2430 high_prio = 0;
2431 num_hup = 0;
2432
2433 /*
e4421fec 2434 * the fds set has been updated, we need to update our
3bd1e081
MD
2435 * local array as well
2436 */
2437 pthread_mutex_lock(&consumer_data.lock);
2438 if (consumer_data.need_update) {
0e428499
DG
2439 free(pollfd);
2440 pollfd = NULL;
2441
2442 free(local_stream);
2443 local_stream = NULL;
3bd1e081 2444
02b3d176
DG
2445 /*
2446 * Allocate for all fds +1 for the consumer_data_pipe and +1 for
2447 * wake up pipe.
2448 */
2449 pollfd = zmalloc((consumer_data.stream_count + 2) * sizeof(struct pollfd));
3bd1e081 2450 if (pollfd == NULL) {
7a57cf92 2451 PERROR("pollfd malloc");
3bd1e081
MD
2452 pthread_mutex_unlock(&consumer_data.lock);
2453 goto end;
2454 }
2455
02b3d176 2456 local_stream = zmalloc((consumer_data.stream_count + 2) *
747f8642 2457 sizeof(struct lttng_consumer_stream *));
3bd1e081 2458 if (local_stream == NULL) {
7a57cf92 2459 PERROR("local_stream malloc");
3bd1e081
MD
2460 pthread_mutex_unlock(&consumer_data.lock);
2461 goto end;
2462 }
ffe60014 2463 ret = update_poll_array(ctx, &pollfd, local_stream,
43c34bc3 2464 data_ht);
3bd1e081
MD
2465 if (ret < 0) {
2466 ERR("Error in allocating pollfd or local_outfds");
f73fabfd 2467 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR);
3bd1e081
MD
2468 pthread_mutex_unlock(&consumer_data.lock);
2469 goto end;
2470 }
2471 nb_fd = ret;
2472 consumer_data.need_update = 0;
2473 }
2474 pthread_mutex_unlock(&consumer_data.lock);
2475
4078b776
MD
2476 /* No FDs and consumer_quit, consumer_cleanup the thread */
2477 if (nb_fd == 0 && consumer_quit == 1) {
1fc79fb4 2478 err = 0; /* All is OK */
4078b776
MD
2479 goto end;
2480 }
3bd1e081 2481 /* poll on the array of fds */
88f2b785 2482 restart:
02b3d176 2483 DBG("polling on %d fd", nb_fd + 2);
9ce5646a 2484 health_poll_entry();
02b3d176 2485 num_rdy = poll(pollfd, nb_fd + 2, -1);
9ce5646a 2486 health_poll_exit();
3bd1e081
MD
2487 DBG("poll num_rdy : %d", num_rdy);
2488 if (num_rdy == -1) {
88f2b785
MD
2489 /*
2490 * Restart interrupted system call.
2491 */
2492 if (errno == EINTR) {
2493 goto restart;
2494 }
7a57cf92 2495 PERROR("Poll error");
f73fabfd 2496 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR);
3bd1e081
MD
2497 goto end;
2498 } else if (num_rdy == 0) {
2499 DBG("Polling thread timed out");
2500 goto end;
2501 }
2502
3bd1e081 2503 /*
50f8ae69 2504 * If the consumer_data_pipe triggered poll go directly to the
00e2e675
DG
2505 * beginning of the loop to update the array. We want to prioritize
2506 * array update over low-priority reads.
3bd1e081 2507 */
509bb1cf 2508 if (pollfd[nb_fd].revents & (POLLIN | POLLPRI)) {
ab30f567 2509 ssize_t pipe_readlen;
04fdd819 2510
50f8ae69 2511 DBG("consumer_data_pipe wake up");
acdb9057
DG
2512 pipe_readlen = lttng_pipe_read(ctx->consumer_data_pipe,
2513 &new_stream, sizeof(new_stream));
6cd525e8
MD
2514 if (pipe_readlen < sizeof(new_stream)) {
2515 PERROR("Consumer data pipe");
23f5f35d
DG
2516 /* Continue so we can at least handle the current stream(s). */
2517 continue;
2518 }
c869f647
DG
2519
2520 /*
2521 * If the stream is NULL, just ignore it. It's also possible that
2522 * the sessiond poll thread changed the consumer_quit state and is
2523 * waking us up to test it.
2524 */
2525 if (new_stream == NULL) {
8994307f 2526 validate_endpoint_status_data_stream();
c869f647
DG
2527 continue;
2528 }
2529
c869f647 2530 /* Continue to update the local streams and handle prio ones */
3bd1e081
MD
2531 continue;
2532 }
2533
02b3d176
DG
2534 /* Handle wakeup pipe. */
2535 if (pollfd[nb_fd + 1].revents & (POLLIN | POLLPRI)) {
2536 char dummy;
2537 ssize_t pipe_readlen;
2538
2539 pipe_readlen = lttng_pipe_read(ctx->consumer_wakeup_pipe, &dummy,
2540 sizeof(dummy));
2541 if (pipe_readlen < 0) {
2542 PERROR("Consumer data wakeup pipe");
2543 }
2544 /* We've been awakened to handle stream(s). */
2545 ctx->has_wakeup = 0;
2546 }
2547
3bd1e081
MD
2548 /* Take care of high priority channels first. */
2549 for (i = 0; i < nb_fd; i++) {
9ce5646a
MD
2550 health_code_update();
2551
9617607b
DG
2552 if (local_stream[i] == NULL) {
2553 continue;
2554 }
fb3a43a9 2555 if (pollfd[i].revents & POLLPRI) {
d41f73b7
MD
2556 DBG("Urgent read on fd %d", pollfd[i].fd);
2557 high_prio = 1;
4078b776 2558 len = ctx->on_buffer_ready(local_stream[i], ctx);
d41f73b7 2559 /* it's ok to have an unavailable sub-buffer */
b64403e3 2560 if (len < 0 && len != -EAGAIN && len != -ENODATA) {
ab1027f4
DG
2561 /* Clean the stream and free it. */
2562 consumer_del_stream(local_stream[i], data_ht);
9617607b 2563 local_stream[i] = NULL;
4078b776
MD
2564 } else if (len > 0) {
2565 local_stream[i]->data_read = 1;
d41f73b7 2566 }
3bd1e081
MD
2567 }
2568 }
2569
4078b776
MD
2570 /*
2571 * If we read high prio channel in this loop, try again
2572 * for more high prio data.
2573 */
2574 if (high_prio) {
3bd1e081
MD
2575 continue;
2576 }
2577
2578 /* Take care of low priority channels. */
4078b776 2579 for (i = 0; i < nb_fd; i++) {
9ce5646a
MD
2580 health_code_update();
2581
9617607b
DG
2582 if (local_stream[i] == NULL) {
2583 continue;
2584 }
4078b776 2585 if ((pollfd[i].revents & POLLIN) ||
02b3d176
DG
2586 local_stream[i]->hangup_flush_done ||
2587 local_stream[i]->has_data) {
4078b776
MD
2588 DBG("Normal read on fd %d", pollfd[i].fd);
2589 len = ctx->on_buffer_ready(local_stream[i], ctx);
2590 /* it's ok to have an unavailable sub-buffer */
b64403e3 2591 if (len < 0 && len != -EAGAIN && len != -ENODATA) {
ab1027f4
DG
2592 /* Clean the stream and free it. */
2593 consumer_del_stream(local_stream[i], data_ht);
9617607b 2594 local_stream[i] = NULL;
4078b776
MD
2595 } else if (len > 0) {
2596 local_stream[i]->data_read = 1;
2597 }
2598 }
2599 }
2600
2601 /* Handle hangup and errors */
2602 for (i = 0; i < nb_fd; i++) {
9ce5646a
MD
2603 health_code_update();
2604
9617607b
DG
2605 if (local_stream[i] == NULL) {
2606 continue;
2607 }
4078b776
MD
2608 if (!local_stream[i]->hangup_flush_done
2609 && (pollfd[i].revents & (POLLHUP | POLLERR | POLLNVAL))
2610 && (consumer_data.type == LTTNG_CONSUMER32_UST
2611 || consumer_data.type == LTTNG_CONSUMER64_UST)) {
2612 DBG("fd %d is hup|err|nval. Attempting flush and read.",
9617607b 2613 pollfd[i].fd);
4078b776
MD
2614 lttng_ustconsumer_on_stream_hangup(local_stream[i]);
2615 /* Attempt read again, for the data we just flushed. */
2616 local_stream[i]->data_read = 1;
2617 }
2618 /*
2619 * If the poll flag is HUP/ERR/NVAL and we have
2620 * read no data in this pass, we can remove the
2621 * stream from its hash table.
2622 */
2623 if ((pollfd[i].revents & POLLHUP)) {
2624 DBG("Polling fd %d tells it has hung up.", pollfd[i].fd);
2625 if (!local_stream[i]->data_read) {
43c34bc3 2626 consumer_del_stream(local_stream[i], data_ht);
9617607b 2627 local_stream[i] = NULL;
4078b776
MD
2628 num_hup++;
2629 }
2630 } else if (pollfd[i].revents & POLLERR) {
2631 ERR("Error returned in polling fd %d.", pollfd[i].fd);
2632 if (!local_stream[i]->data_read) {
43c34bc3 2633 consumer_del_stream(local_stream[i], data_ht);
9617607b 2634 local_stream[i] = NULL;
4078b776
MD
2635 num_hup++;
2636 }
2637 } else if (pollfd[i].revents & POLLNVAL) {
2638 ERR("Polling fd %d tells fd is not open.", pollfd[i].fd);
2639 if (!local_stream[i]->data_read) {
43c34bc3 2640 consumer_del_stream(local_stream[i], data_ht);
9617607b 2641 local_stream[i] = NULL;
4078b776 2642 num_hup++;
3bd1e081
MD
2643 }
2644 }
9617607b
DG
2645 if (local_stream[i] != NULL) {
2646 local_stream[i]->data_read = 0;
2647 }
3bd1e081
MD
2648 }
2649 }
1fc79fb4
MD
2650 /* All is OK */
2651 err = 0;
3bd1e081
MD
2652end:
2653 DBG("polling thread exiting");
0e428499
DG
2654 free(pollfd);
2655 free(local_stream);
fb3a43a9
DG
2656
2657 /*
2658 * Close the write side of the pipe so epoll_wait() in
7d980def
DG
2659 * consumer_thread_metadata_poll can catch it. The thread is monitoring the
2660 * read side of the pipe. If we close them both, epoll_wait strangely does
2661 * not return and could create a endless wait period if the pipe is the
2662 * only tracked fd in the poll set. The thread will take care of closing
2663 * the read side.
fb3a43a9 2664 */
13886d2d 2665 (void) lttng_pipe_write_close(ctx->consumer_metadata_pipe);
fb3a43a9 2666
2d57de81 2667error_testpoint:
1fc79fb4
MD
2668 if (err) {
2669 health_error();
2670 ERR("Health error occurred in %s", __func__);
2671 }
2672 health_unregister(health_consumerd);
2673
e7b994a3 2674 rcu_unregister_thread();
3bd1e081
MD
2675 return NULL;
2676}
2677
d8ef542d
MD
2678/*
2679 * Close wake-up end of each stream belonging to the channel. This will
2680 * allow the poll() on the stream read-side to detect when the
2681 * write-side (application) finally closes them.
2682 */
2683static
2684void consumer_close_channel_streams(struct lttng_consumer_channel *channel)
2685{
2686 struct lttng_ht *ht;
2687 struct lttng_consumer_stream *stream;
2688 struct lttng_ht_iter iter;
2689
2690 ht = consumer_data.stream_per_chan_id_ht;
2691
2692 rcu_read_lock();
2693 cds_lfht_for_each_entry_duplicate(ht->ht,
2694 ht->hash_fct(&channel->key, lttng_ht_seed),
2695 ht->match_fct, &channel->key,
2696 &iter.iter, stream, node_channel_id.node) {
f2ad556d
MD
2697 /*
2698 * Protect against teardown with mutex.
2699 */
2700 pthread_mutex_lock(&stream->lock);
2701 if (cds_lfht_is_node_deleted(&stream->node.node)) {
2702 goto next;
2703 }
d8ef542d
MD
2704 switch (consumer_data.type) {
2705 case LTTNG_CONSUMER_KERNEL:
2706 break;
2707 case LTTNG_CONSUMER32_UST:
2708 case LTTNG_CONSUMER64_UST:
b4a650f3
DG
2709 if (stream->metadata_flag) {
2710 /* Safe and protected by the stream lock. */
2711 lttng_ustconsumer_close_metadata(stream->chan);
2712 } else {
2713 /*
2714 * Note: a mutex is taken internally within
2715 * liblttng-ust-ctl to protect timer wakeup_fd
2716 * use from concurrent close.
2717 */
2718 lttng_ustconsumer_close_stream_wakeup(stream);
2719 }
d8ef542d
MD
2720 break;
2721 default:
2722 ERR("Unknown consumer_data type");
2723 assert(0);
2724 }
f2ad556d
MD
2725 next:
2726 pthread_mutex_unlock(&stream->lock);
d8ef542d
MD
2727 }
2728 rcu_read_unlock();
2729}
2730
2731static void destroy_channel_ht(struct lttng_ht *ht)
2732{
2733 struct lttng_ht_iter iter;
2734 struct lttng_consumer_channel *channel;
2735 int ret;
2736
2737 if (ht == NULL) {
2738 return;
2739 }
2740
2741 rcu_read_lock();
2742 cds_lfht_for_each_entry(ht->ht, &iter.iter, channel, wait_fd_node.node) {
2743 ret = lttng_ht_del(ht, &iter);
2744 assert(ret != 0);
2745 }
2746 rcu_read_unlock();
2747
2748 lttng_ht_destroy(ht);
2749}
2750
2751/*
2752 * This thread polls the channel fds to detect when they are being
2753 * closed. It closes all related streams if the channel is detected as
2754 * closed. It is currently only used as a shim layer for UST because the
2755 * consumerd needs to keep the per-stream wakeup end of pipes open for
2756 * periodical flush.
2757 */
2758void *consumer_thread_channel_poll(void *data)
2759{
1fc79fb4 2760 int ret, i, pollfd, err = -1;
d8ef542d
MD
2761 uint32_t revents, nb_fd;
2762 struct lttng_consumer_channel *chan = NULL;
2763 struct lttng_ht_iter iter;
2764 struct lttng_ht_node_u64 *node;
2765 struct lttng_poll_event events;
2766 struct lttng_consumer_local_data *ctx = data;
2767 struct lttng_ht *channel_ht;
2768
2769 rcu_register_thread();
2770
1fc79fb4
MD
2771 health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_CHANNEL);
2772
2d57de81
MD
2773 if (testpoint(consumerd_thread_channel)) {
2774 goto error_testpoint;
2775 }
2776
9ce5646a
MD
2777 health_code_update();
2778
d8ef542d
MD
2779 channel_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
2780 if (!channel_ht) {
2781 /* ENOMEM at this point. Better to bail out. */
2782 goto end_ht;
2783 }
2784
2785 DBG("Thread channel poll started");
2786
2787 /* Size is set to 1 for the consumer_channel pipe */
2788 ret = lttng_poll_create(&events, 2, LTTNG_CLOEXEC);
2789 if (ret < 0) {
2790 ERR("Poll set creation failed");
2791 goto end_poll;
2792 }
2793
2794 ret = lttng_poll_add(&events, ctx->consumer_channel_pipe[0], LPOLLIN);
2795 if (ret < 0) {
2796 goto end;
2797 }
2798
2799 /* Main loop */
2800 DBG("Channel main loop started");
2801
2802 while (1) {
d8ef542d 2803restart:
7fa2082e
MD
2804 health_code_update();
2805 DBG("Channel poll wait");
9ce5646a 2806 health_poll_entry();
d8ef542d 2807 ret = lttng_poll_wait(&events, -1);
7fa2082e
MD
2808 DBG("Channel poll return from wait with %d fd(s)",
2809 LTTNG_POLL_GETNB(&events));
9ce5646a 2810 health_poll_exit();
d8ef542d
MD
2811 DBG("Channel event catched in thread");
2812 if (ret < 0) {
2813 if (errno == EINTR) {
2814 ERR("Poll EINTR catched");
2815 goto restart;
2816 }
d9607cd7
MD
2817 if (LTTNG_POLL_GETNB(&events) == 0) {
2818 err = 0; /* All is OK */
2819 }
d8ef542d
MD
2820 goto end;
2821 }
2822
2823 nb_fd = ret;
2824
2825 /* From here, the event is a channel wait fd */
2826 for (i = 0; i < nb_fd; i++) {
9ce5646a
MD
2827 health_code_update();
2828
d8ef542d
MD
2829 revents = LTTNG_POLL_GETEV(&events, i);
2830 pollfd = LTTNG_POLL_GETFD(&events, i);
2831
d8ef542d 2832 if (!revents) {
fd20dac9 2833 /* No activity for this FD (poll implementation). */
d8ef542d
MD
2834 continue;
2835 }
fd20dac9 2836
d8ef542d 2837 if (pollfd == ctx->consumer_channel_pipe[0]) {
92d6debb 2838 if (revents & LPOLLIN) {
d8ef542d 2839 enum consumer_channel_action action;
a0cbdd2e 2840 uint64_t key;
d8ef542d 2841
a0cbdd2e 2842 ret = read_channel_pipe(ctx, &chan, &key, &action);
d8ef542d 2843 if (ret <= 0) {
92d6debb
MD
2844 if (ret < 0) {
2845 ERR("Error reading channel pipe");
2846 }
2847 lttng_poll_del(&events, ctx->consumer_channel_pipe[0]);
d8ef542d
MD
2848 continue;
2849 }
2850
2851 switch (action) {
2852 case CONSUMER_CHANNEL_ADD:
2853 DBG("Adding channel %d to poll set",
2854 chan->wait_fd);
2855
2856 lttng_ht_node_init_u64(&chan->wait_fd_node,
2857 chan->wait_fd);
c7260a81 2858 rcu_read_lock();
d8ef542d
MD
2859 lttng_ht_add_unique_u64(channel_ht,
2860 &chan->wait_fd_node);
c7260a81 2861 rcu_read_unlock();
d8ef542d
MD
2862 /* Add channel to the global poll events list */
2863 lttng_poll_add(&events, chan->wait_fd,
92d6debb 2864 LPOLLERR | LPOLLHUP);
d8ef542d 2865 break;
a0cbdd2e
MD
2866 case CONSUMER_CHANNEL_DEL:
2867 {
b4a650f3
DG
2868 /*
2869 * This command should never be called if the channel
2870 * has streams monitored by either the data or metadata
2871 * thread. The consumer only notify this thread with a
2872 * channel del. command if it receives a destroy
2873 * channel command from the session daemon that send it
2874 * if a command prior to the GET_CHANNEL failed.
2875 */
2876
c7260a81 2877 rcu_read_lock();
a0cbdd2e
MD
2878 chan = consumer_find_channel(key);
2879 if (!chan) {
c7260a81 2880 rcu_read_unlock();
a0cbdd2e
MD
2881 ERR("UST consumer get channel key %" PRIu64 " not found for del channel", key);
2882 break;
2883 }
2884 lttng_poll_del(&events, chan->wait_fd);
f623cc0b 2885 iter.iter.node = &chan->wait_fd_node.node;
a0cbdd2e
MD
2886 ret = lttng_ht_del(channel_ht, &iter);
2887 assert(ret == 0);
a0cbdd2e 2888
f2a444f1
DG
2889 switch (consumer_data.type) {
2890 case LTTNG_CONSUMER_KERNEL:
2891 break;
2892 case LTTNG_CONSUMER32_UST:
2893 case LTTNG_CONSUMER64_UST:
212d67a2
DG
2894 health_code_update();
2895 /* Destroy streams that might have been left in the stream list. */
2896 clean_channel_stream_list(chan);
f2a444f1
DG
2897 break;
2898 default:
2899 ERR("Unknown consumer_data type");
2900 assert(0);
2901 }
2902
a0cbdd2e
MD
2903 /*
2904 * Release our own refcount. Force channel deletion even if
2905 * streams were not initialized.
2906 */
2907 if (!uatomic_sub_return(&chan->refcount, 1)) {
2908 consumer_del_channel(chan);
2909 }
c7260a81 2910 rcu_read_unlock();
a0cbdd2e
MD
2911 goto restart;
2912 }
d8ef542d
MD
2913 case CONSUMER_CHANNEL_QUIT:
2914 /*
2915 * Remove the pipe from the poll set and continue the loop
2916 * since their might be data to consume.
2917 */
2918 lttng_poll_del(&events, ctx->consumer_channel_pipe[0]);
2919 continue;
2920 default:
2921 ERR("Unknown action");
2922 break;
2923 }
92d6debb
MD
2924 } else if (revents & (LPOLLERR | LPOLLHUP)) {
2925 DBG("Channel thread pipe hung up");
2926 /*
2927 * Remove the pipe from the poll set and continue the loop
2928 * since their might be data to consume.
2929 */
2930 lttng_poll_del(&events, ctx->consumer_channel_pipe[0]);
2931 continue;
2932 } else {
2933 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
2934 goto end;
d8ef542d
MD
2935 }
2936
2937 /* Handle other stream */
2938 continue;
2939 }
2940
2941 rcu_read_lock();
2942 {
2943 uint64_t tmp_id = (uint64_t) pollfd;
2944
2945 lttng_ht_lookup(channel_ht, &tmp_id, &iter);
2946 }
2947 node = lttng_ht_iter_get_node_u64(&iter);
2948 assert(node);
2949
2950 chan = caa_container_of(node, struct lttng_consumer_channel,
2951 wait_fd_node);
2952
2953 /* Check for error event */
2954 if (revents & (LPOLLERR | LPOLLHUP)) {
2955 DBG("Channel fd %d is hup|err.", pollfd);
2956
2957 lttng_poll_del(&events, chan->wait_fd);
2958 ret = lttng_ht_del(channel_ht, &iter);
2959 assert(ret == 0);
b4a650f3
DG
2960
2961 /*
2962 * This will close the wait fd for each stream associated to
2963 * this channel AND monitored by the data/metadata thread thus
2964 * will be clean by the right thread.
2965 */
d8ef542d 2966 consumer_close_channel_streams(chan);
f2ad556d
MD
2967
2968 /* Release our own refcount */
2969 if (!uatomic_sub_return(&chan->refcount, 1)
2970 && !uatomic_read(&chan->nb_init_stream_left)) {
2971 consumer_del_channel(chan);
2972 }
92d6debb
MD
2973 } else {
2974 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
2975 rcu_read_unlock();
2976 goto end;
d8ef542d
MD
2977 }
2978
2979 /* Release RCU lock for the channel looked up */
2980 rcu_read_unlock();
2981 }
2982 }
2983
1fc79fb4
MD
2984 /* All is OK */
2985 err = 0;
d8ef542d
MD
2986end:
2987 lttng_poll_clean(&events);
2988end_poll:
2989 destroy_channel_ht(channel_ht);
2990end_ht:
2d57de81 2991error_testpoint:
d8ef542d 2992 DBG("Channel poll thread exiting");
1fc79fb4
MD
2993 if (err) {
2994 health_error();
2995 ERR("Health error occurred in %s", __func__);
2996 }
2997 health_unregister(health_consumerd);
d8ef542d
MD
2998 rcu_unregister_thread();
2999 return NULL;
3000}
3001
331744e3
JD
3002static int set_metadata_socket(struct lttng_consumer_local_data *ctx,
3003 struct pollfd *sockpoll, int client_socket)
3004{
3005 int ret;
3006
3007 assert(ctx);
3008 assert(sockpoll);
3009
84382d49
MD
3010 ret = lttng_consumer_poll_socket(sockpoll);
3011 if (ret) {
331744e3
JD
3012 goto error;
3013 }
3014 DBG("Metadata connection on client_socket");
3015
3016 /* Blocking call, waiting for transmission */
3017 ctx->consumer_metadata_socket = lttcomm_accept_unix_sock(client_socket);
3018 if (ctx->consumer_metadata_socket < 0) {
3019 WARN("On accept metadata");
3020 ret = -1;
3021 goto error;
3022 }
3023 ret = 0;
3024
3025error:
3026 return ret;
3027}
3028
3bd1e081
MD
3029/*
3030 * This thread listens on the consumerd socket and receives the file
3031 * descriptors from the session daemon.
3032 */
7d980def 3033void *consumer_thread_sessiond_poll(void *data)
3bd1e081 3034{
1fc79fb4 3035 int sock = -1, client_socket, ret, err = -1;
3bd1e081
MD
3036 /*
3037 * structure to poll for incoming data on communication socket avoids
3038 * making blocking sockets.
3039 */
3040 struct pollfd consumer_sockpoll[2];
3041 struct lttng_consumer_local_data *ctx = data;
3042
e7b994a3
DG
3043 rcu_register_thread();
3044
1fc79fb4
MD
3045 health_register(health_consumerd, HEALTH_CONSUMERD_TYPE_SESSIOND);
3046
2d57de81
MD
3047 if (testpoint(consumerd_thread_sessiond)) {
3048 goto error_testpoint;
3049 }
3050
9ce5646a
MD
3051 health_code_update();
3052
3bd1e081
MD
3053 DBG("Creating command socket %s", ctx->consumer_command_sock_path);
3054 unlink(ctx->consumer_command_sock_path);
3055 client_socket = lttcomm_create_unix_sock(ctx->consumer_command_sock_path);
3056 if (client_socket < 0) {
3057 ERR("Cannot create command socket");
3058 goto end;
3059 }
3060
3061 ret = lttcomm_listen_unix_sock(client_socket);
3062 if (ret < 0) {
3063 goto end;
3064 }
3065
32258573 3066 DBG("Sending ready command to lttng-sessiond");
f73fabfd 3067 ret = lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_COMMAND_SOCK_READY);
3bd1e081
MD
3068 /* return < 0 on error, but == 0 is not fatal */
3069 if (ret < 0) {
32258573 3070 ERR("Error sending ready command to lttng-sessiond");
3bd1e081
MD
3071 goto end;
3072 }
3073
3bd1e081
MD
3074 /* prepare the FDs to poll : to client socket and the should_quit pipe */
3075 consumer_sockpoll[0].fd = ctx->consumer_should_quit[0];
3076 consumer_sockpoll[0].events = POLLIN | POLLPRI;
3077 consumer_sockpoll[1].fd = client_socket;
3078 consumer_sockpoll[1].events = POLLIN | POLLPRI;
3079
84382d49
MD
3080 ret = lttng_consumer_poll_socket(consumer_sockpoll);
3081 if (ret) {
3082 if (ret > 0) {
3083 /* should exit */
3084 err = 0;
3085 }
3bd1e081
MD
3086 goto end;
3087 }
3088 DBG("Connection on client_socket");
3089
3090 /* Blocking call, waiting for transmission */
3091 sock = lttcomm_accept_unix_sock(client_socket);
534d2592 3092 if (sock < 0) {
3bd1e081
MD
3093 WARN("On accept");
3094 goto end;
3095 }
3bd1e081 3096
331744e3
JD
3097 /*
3098 * Setup metadata socket which is the second socket connection on the
3099 * command unix socket.
3100 */
3101 ret = set_metadata_socket(ctx, consumer_sockpoll, client_socket);
84382d49
MD
3102 if (ret) {
3103 if (ret > 0) {
3104 /* should exit */
3105 err = 0;
3106 }
331744e3
JD
3107 goto end;
3108 }
3109
d96f09c6
DG
3110 /* This socket is not useful anymore. */
3111 ret = close(client_socket);
3112 if (ret < 0) {
3113 PERROR("close client_socket");
3114 }
3115 client_socket = -1;
3116
3bd1e081
MD
3117 /* update the polling structure to poll on the established socket */
3118 consumer_sockpoll[1].fd = sock;
3119 consumer_sockpoll[1].events = POLLIN | POLLPRI;
3120
3121 while (1) {
9ce5646a
MD
3122 health_code_update();
3123
3124 health_poll_entry();
3125 ret = lttng_consumer_poll_socket(consumer_sockpoll);
3126 health_poll_exit();
84382d49
MD
3127 if (ret) {
3128 if (ret > 0) {
3129 /* should exit */
3130 err = 0;
3131 }
3bd1e081
MD
3132 goto end;
3133 }
3134 DBG("Incoming command on sock");
3135 ret = lttng_consumer_recv_cmd(ctx, sock, consumer_sockpoll);
4cbc1a04
DG
3136 if (ret <= 0) {
3137 /*
3138 * This could simply be a session daemon quitting. Don't output
3139 * ERR() here.
3140 */
3141 DBG("Communication interrupted on command socket");
41ba6035 3142 err = 0;
3bd1e081
MD
3143 goto end;
3144 }
3145 if (consumer_quit) {
3146 DBG("consumer_thread_receive_fds received quit from signal");
1fc79fb4 3147 err = 0; /* All is OK */
3bd1e081
MD
3148 goto end;
3149 }
ffe60014 3150 DBG("received command on sock");
3bd1e081 3151 }
1fc79fb4
MD
3152 /* All is OK */
3153 err = 0;
3154
3bd1e081 3155end:
ffe60014 3156 DBG("Consumer thread sessiond poll exiting");
3bd1e081 3157
d88aee68
DG
3158 /*
3159 * Close metadata streams since the producer is the session daemon which
3160 * just died.
3161 *
3162 * NOTE: for now, this only applies to the UST tracer.
3163 */
6d574024 3164 lttng_consumer_close_all_metadata();
d88aee68 3165
3bd1e081
MD
3166 /*
3167 * when all fds have hung up, the polling thread
3168 * can exit cleanly
3169 */
3170 consumer_quit = 1;
3171
04fdd819 3172 /*
c869f647 3173 * Notify the data poll thread to poll back again and test the
8994307f 3174 * consumer_quit state that we just set so to quit gracefully.
04fdd819 3175 */
acdb9057 3176 notify_thread_lttng_pipe(ctx->consumer_data_pipe);
c869f647 3177
a0cbdd2e 3178 notify_channel_pipe(ctx, NULL, -1, CONSUMER_CHANNEL_QUIT);
d8ef542d 3179
5c635c72
MD
3180 notify_health_quit_pipe(health_quit_pipe);
3181
d96f09c6
DG
3182 /* Cleaning up possibly open sockets. */
3183 if (sock >= 0) {
3184 ret = close(sock);
3185 if (ret < 0) {
3186 PERROR("close sock sessiond poll");
3187 }
3188 }
3189 if (client_socket >= 0) {
38476d24 3190 ret = close(client_socket);
d96f09c6
DG
3191 if (ret < 0) {
3192 PERROR("close client_socket sessiond poll");
3193 }
3194 }
3195
2d57de81 3196error_testpoint:
1fc79fb4
MD
3197 if (err) {
3198 health_error();
3199 ERR("Health error occurred in %s", __func__);
3200 }
3201 health_unregister(health_consumerd);
3202
e7b994a3 3203 rcu_unregister_thread();
3bd1e081
MD
3204 return NULL;
3205}
d41f73b7 3206
4078b776 3207ssize_t lttng_consumer_read_subbuffer(struct lttng_consumer_stream *stream,
d41f73b7
MD
3208 struct lttng_consumer_local_data *ctx)
3209{
74251bb8
DG
3210 ssize_t ret;
3211
3212 pthread_mutex_lock(&stream->lock);
94d49140
JD
3213 if (stream->metadata_flag) {
3214 pthread_mutex_lock(&stream->metadata_rdv_lock);
3215 }
74251bb8 3216
d41f73b7
MD
3217 switch (consumer_data.type) {
3218 case LTTNG_CONSUMER_KERNEL:
74251bb8
DG
3219 ret = lttng_kconsumer_read_subbuffer(stream, ctx);
3220 break;
7753dea8
MD
3221 case LTTNG_CONSUMER32_UST:
3222 case LTTNG_CONSUMER64_UST:
74251bb8
DG
3223 ret = lttng_ustconsumer_read_subbuffer(stream, ctx);
3224 break;
d41f73b7
MD
3225 default:
3226 ERR("Unknown consumer_data type");
3227 assert(0);
74251bb8
DG
3228 ret = -ENOSYS;
3229 break;
d41f73b7 3230 }
74251bb8 3231
94d49140
JD
3232 if (stream->metadata_flag) {
3233 pthread_cond_broadcast(&stream->metadata_rdv);
3234 pthread_mutex_unlock(&stream->metadata_rdv_lock);
3235 }
74251bb8
DG
3236 pthread_mutex_unlock(&stream->lock);
3237 return ret;
d41f73b7
MD
3238}
3239
3240int lttng_consumer_on_recv_stream(struct lttng_consumer_stream *stream)
3241{
3242 switch (consumer_data.type) {
3243 case LTTNG_CONSUMER_KERNEL:
3244 return lttng_kconsumer_on_recv_stream(stream);
7753dea8
MD
3245 case LTTNG_CONSUMER32_UST:
3246 case LTTNG_CONSUMER64_UST:
d41f73b7
MD
3247 return lttng_ustconsumer_on_recv_stream(stream);
3248 default:
3249 ERR("Unknown consumer_data type");
3250 assert(0);
3251 return -ENOSYS;
3252 }
3253}
e4421fec
DG
3254
3255/*
3256 * Allocate and set consumer data hash tables.
3257 */
282dadbc 3258int lttng_consumer_init(void)
e4421fec 3259{
d88aee68 3260 consumer_data.channel_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
282dadbc
MD
3261 if (!consumer_data.channel_ht) {
3262 goto error;
3263 }
3264
d88aee68 3265 consumer_data.relayd_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
282dadbc
MD
3266 if (!consumer_data.relayd_ht) {
3267 goto error;
3268 }
3269
d88aee68 3270 consumer_data.stream_list_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
282dadbc
MD
3271 if (!consumer_data.stream_list_ht) {
3272 goto error;
3273 }
3274
d8ef542d 3275 consumer_data.stream_per_chan_id_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
282dadbc
MD
3276 if (!consumer_data.stream_per_chan_id_ht) {
3277 goto error;
3278 }
3279
3280 data_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
3281 if (!data_ht) {
3282 goto error;
3283 }
3284
3285 metadata_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
3286 if (!metadata_ht) {
3287 goto error;
3288 }
3289
3290 return 0;
3291
3292error:
3293 return -1;
e4421fec 3294}
7735ef9e
DG
3295
3296/*
3297 * Process the ADD_RELAYD command receive by a consumer.
3298 *
3299 * This will create a relayd socket pair and add it to the relayd hash table.
3300 * The caller MUST acquire a RCU read side lock before calling it.
3301 */
da009f2c 3302int consumer_add_relayd_socket(uint64_t net_seq_idx, int sock_type,
7735ef9e 3303 struct lttng_consumer_local_data *ctx, int sock,
6151a90f 3304 struct pollfd *consumer_sockpoll,
d3e2ba59
JD
3305 struct lttcomm_relayd_sock *relayd_sock, uint64_t sessiond_id,
3306 uint64_t relayd_session_id)
7735ef9e 3307{
cd2b09ed 3308 int fd = -1, ret = -1, relayd_created = 0;
0c759fc9 3309 enum lttcomm_return_code ret_code = LTTCOMM_CONSUMERD_SUCCESS;
d4298c99 3310 struct consumer_relayd_sock_pair *relayd = NULL;
7735ef9e 3311
6151a90f
JD
3312 assert(ctx);
3313 assert(relayd_sock);
3314
da009f2c 3315 DBG("Consumer adding relayd socket (idx: %" PRIu64 ")", net_seq_idx);
7735ef9e
DG
3316
3317 /* Get relayd reference if exists. */
3318 relayd = consumer_find_relayd(net_seq_idx);
3319 if (relayd == NULL) {
da009f2c 3320 assert(sock_type == LTTNG_STREAM_CONTROL);
7735ef9e
DG
3321 /* Not found. Allocate one. */
3322 relayd = consumer_allocate_relayd_sock_pair(net_seq_idx);
3323 if (relayd == NULL) {
0d08d75e 3324 ret = -ENOMEM;
618a6a28
MD
3325 ret_code = LTTCOMM_CONSUMERD_ENOMEM;
3326 goto error;
0d08d75e 3327 } else {
30319bcb 3328 relayd->sessiond_session_id = sessiond_id;
0d08d75e 3329 relayd_created = 1;
7735ef9e 3330 }
0d08d75e
DG
3331
3332 /*
3333 * This code path MUST continue to the consumer send status message to
3334 * we can notify the session daemon and continue our work without
3335 * killing everything.
3336 */
da009f2c
MD
3337 } else {
3338 /*
3339 * relayd key should never be found for control socket.
3340 */
3341 assert(sock_type != LTTNG_STREAM_CONTROL);
0d08d75e
DG
3342 }
3343
3344 /* First send a status message before receiving the fds. */
0c759fc9 3345 ret = consumer_send_status_msg(sock, LTTCOMM_CONSUMERD_SUCCESS);
618a6a28 3346 if (ret < 0) {
0d08d75e 3347 /* Somehow, the session daemon is not responding anymore. */
618a6a28
MD
3348 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL);
3349 goto error_nosignal;
7735ef9e
DG
3350 }
3351
3352 /* Poll on consumer socket. */
84382d49
MD
3353 ret = lttng_consumer_poll_socket(consumer_sockpoll);
3354 if (ret) {
3355 /* Needing to exit in the middle of a command: error. */
0d08d75e 3356 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_POLL_ERROR);
7735ef9e 3357 ret = -EINTR;
618a6a28 3358 goto error_nosignal;
7735ef9e
DG
3359 }
3360
3361 /* Get relayd socket from session daemon */
3362 ret = lttcomm_recv_fds_unix_sock(sock, &fd, 1);
3363 if (ret != sizeof(fd)) {
7735ef9e 3364 ret = -1;
4028eeb9 3365 fd = -1; /* Just in case it gets set with an invalid value. */
0d08d75e
DG
3366
3367 /*
3368 * Failing to receive FDs might indicate a major problem such as
3369 * reaching a fd limit during the receive where the kernel returns a
3370 * MSG_CTRUNC and fails to cleanup the fd in the queue. Any case, we
3371 * don't take any chances and stop everything.
3372 *
3373 * XXX: Feature request #558 will fix that and avoid this possible
3374 * issue when reaching the fd limit.
3375 */
3376 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_ERROR_RECV_FD);
618a6a28 3377 ret_code = LTTCOMM_CONSUMERD_ERROR_RECV_FD;
f50f23d9
DG
3378 goto error;
3379 }
3380
7735ef9e
DG
3381 /* Copy socket information and received FD */
3382 switch (sock_type) {
3383 case LTTNG_STREAM_CONTROL:
3384 /* Copy received lttcomm socket */
6151a90f
JD
3385 lttcomm_copy_sock(&relayd->control_sock.sock, &relayd_sock->sock);
3386 ret = lttcomm_create_sock(&relayd->control_sock.sock);
4028eeb9 3387 /* Handle create_sock error. */
f66c074c 3388 if (ret < 0) {
618a6a28 3389 ret_code = LTTCOMM_CONSUMERD_ENOMEM;
4028eeb9 3390 goto error;
f66c074c 3391 }
da009f2c
MD
3392 /*
3393 * Close the socket created internally by
3394 * lttcomm_create_sock, so we can replace it by the one
3395 * received from sessiond.
3396 */
3397 if (close(relayd->control_sock.sock.fd)) {
3398 PERROR("close");
3399 }
7735ef9e
DG
3400
3401 /* Assign new file descriptor */
6151a90f 3402 relayd->control_sock.sock.fd = fd;
4b29f1ce 3403 fd = -1; /* For error path */
6151a90f
JD
3404 /* Assign version values. */
3405 relayd->control_sock.major = relayd_sock->major;
3406 relayd->control_sock.minor = relayd_sock->minor;
c5b6f4f0 3407
d3e2ba59 3408 relayd->relayd_session_id = relayd_session_id;
c5b6f4f0 3409
7735ef9e
DG
3410 break;
3411 case LTTNG_STREAM_DATA:
3412 /* Copy received lttcomm socket */
6151a90f
JD
3413 lttcomm_copy_sock(&relayd->data_sock.sock, &relayd_sock->sock);
3414 ret = lttcomm_create_sock(&relayd->data_sock.sock);
4028eeb9 3415 /* Handle create_sock error. */
f66c074c 3416 if (ret < 0) {
618a6a28 3417 ret_code = LTTCOMM_CONSUMERD_ENOMEM;
4028eeb9 3418 goto error;
f66c074c 3419 }
da009f2c
MD
3420 /*
3421 * Close the socket created internally by
3422 * lttcomm_create_sock, so we can replace it by the one
3423 * received from sessiond.
3424 */
3425 if (close(relayd->data_sock.sock.fd)) {
3426 PERROR("close");
3427 }
7735ef9e
DG
3428
3429 /* Assign new file descriptor */
6151a90f 3430 relayd->data_sock.sock.fd = fd;
4b29f1ce 3431 fd = -1; /* for eventual error paths */
6151a90f
JD
3432 /* Assign version values. */
3433 relayd->data_sock.major = relayd_sock->major;
3434 relayd->data_sock.minor = relayd_sock->minor;
7735ef9e
DG
3435 break;
3436 default:
3437 ERR("Unknown relayd socket type (%d)", sock_type);
59e71485 3438 ret = -1;
618a6a28 3439 ret_code = LTTCOMM_CONSUMERD_FATAL;
7735ef9e
DG
3440 goto error;
3441 }
3442
d88aee68 3443 DBG("Consumer %s socket created successfully with net idx %" PRIu64 " (fd: %d)",
7735ef9e
DG
3444 sock_type == LTTNG_STREAM_CONTROL ? "control" : "data",
3445 relayd->net_seq_idx, fd);
3446
618a6a28
MD
3447 /* We successfully added the socket. Send status back. */
3448 ret = consumer_send_status_msg(sock, ret_code);
3449 if (ret < 0) {
3450 /* Somehow, the session daemon is not responding anymore. */
3451 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL);
3452 goto error_nosignal;
3453 }
3454
7735ef9e
DG
3455 /*
3456 * Add relayd socket pair to consumer data hashtable. If object already
3457 * exists or on error, the function gracefully returns.
3458 */
d09e1200 3459 add_relayd(relayd);
7735ef9e
DG
3460
3461 /* All good! */
4028eeb9 3462 return 0;
7735ef9e
DG
3463
3464error:
618a6a28
MD
3465 if (consumer_send_status_msg(sock, ret_code) < 0) {
3466 lttng_consumer_send_error(ctx, LTTCOMM_CONSUMERD_FATAL);
3467 }
3468
3469error_nosignal:
4028eeb9
DG
3470 /* Close received socket if valid. */
3471 if (fd >= 0) {
3472 if (close(fd)) {
3473 PERROR("close received socket");
3474 }
3475 }
cd2b09ed
DG
3476
3477 if (relayd_created) {
cd2b09ed
DG
3478 free(relayd);
3479 }
3480
7735ef9e
DG
3481 return ret;
3482}
ca22feea 3483
4e9a4686
DG
3484/*
3485 * Try to lock the stream mutex.
3486 *
3487 * On success, 1 is returned else 0 indicating that the mutex is NOT lock.
3488 */
3489static int stream_try_lock(struct lttng_consumer_stream *stream)
3490{
3491 int ret;
3492
3493 assert(stream);
3494
3495 /*
3496 * Try to lock the stream mutex. On failure, we know that the stream is
3497 * being used else where hence there is data still being extracted.
3498 */
3499 ret = pthread_mutex_trylock(&stream->lock);
3500 if (ret) {
3501 /* For both EBUSY and EINVAL error, the mutex is NOT locked. */
3502 ret = 0;
3503 goto end;
3504 }
3505
3506 ret = 1;
3507
3508end:
3509 return ret;
3510}
3511
f7079f67
DG
3512/*
3513 * Search for a relayd associated to the session id and return the reference.
3514 *
3515 * A rcu read side lock MUST be acquire before calling this function and locked
3516 * until the relayd object is no longer necessary.
3517 */
3518static struct consumer_relayd_sock_pair *find_relayd_by_session_id(uint64_t id)
3519{
3520 struct lttng_ht_iter iter;
f7079f67 3521 struct consumer_relayd_sock_pair *relayd = NULL;
f7079f67
DG
3522
3523 /* Iterate over all relayd since they are indexed by net_seq_idx. */
3524 cds_lfht_for_each_entry(consumer_data.relayd_ht->ht, &iter.iter, relayd,
3525 node.node) {
18261bd1
DG
3526 /*
3527 * Check by sessiond id which is unique here where the relayd session
3528 * id might not be when having multiple relayd.
3529 */
3530 if (relayd->sessiond_session_id == id) {
f7079f67 3531 /* Found the relayd. There can be only one per id. */
18261bd1 3532 goto found;
f7079f67
DG
3533 }
3534 }
3535
18261bd1
DG
3536 return NULL;
3537
3538found:
f7079f67
DG
3539 return relayd;
3540}
3541
ca22feea
DG
3542/*
3543 * Check if for a given session id there is still data needed to be extract
3544 * from the buffers.
3545 *
6d805429 3546 * Return 1 if data is pending or else 0 meaning ready to be read.
ca22feea 3547 */
6d805429 3548int consumer_data_pending(uint64_t id)
ca22feea
DG
3549{
3550 int ret;
3551 struct lttng_ht_iter iter;
3552 struct lttng_ht *ht;
3553 struct lttng_consumer_stream *stream;
f7079f67 3554 struct consumer_relayd_sock_pair *relayd = NULL;
6d805429 3555 int (*data_pending)(struct lttng_consumer_stream *);
ca22feea 3556
6d805429 3557 DBG("Consumer data pending command on session id %" PRIu64, id);
ca22feea 3558
6f6eda74 3559 rcu_read_lock();
ca22feea
DG
3560 pthread_mutex_lock(&consumer_data.lock);
3561
3562 switch (consumer_data.type) {
3563 case LTTNG_CONSUMER_KERNEL:
6d805429 3564 data_pending = lttng_kconsumer_data_pending;
ca22feea
DG
3565 break;
3566 case LTTNG_CONSUMER32_UST:
3567 case LTTNG_CONSUMER64_UST:
6d805429 3568 data_pending = lttng_ustconsumer_data_pending;
ca22feea
DG
3569 break;
3570 default:
3571 ERR("Unknown consumer data type");
3572 assert(0);
3573 }
3574
3575 /* Ease our life a bit */
3576 ht = consumer_data.stream_list_ht;
3577
f7079f67
DG
3578 relayd = find_relayd_by_session_id(id);
3579 if (relayd) {
3580 /* Send init command for data pending. */
3581 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
3582 ret = relayd_begin_data_pending(&relayd->control_sock,
3583 relayd->relayd_session_id);
3584 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
3585 if (ret < 0) {
3586 /* Communication error thus the relayd so no data pending. */
3587 goto data_not_pending;
3588 }
3589 }
3590
c8f59ee5 3591 cds_lfht_for_each_entry_duplicate(ht->ht,
d88aee68
DG
3592 ht->hash_fct(&id, lttng_ht_seed),
3593 ht->match_fct, &id,
ca22feea 3594 &iter.iter, stream, node_session_id.node) {
4e9a4686
DG
3595 /* If this call fails, the stream is being used hence data pending. */
3596 ret = stream_try_lock(stream);
3597 if (!ret) {
f7079f67 3598 goto data_pending;
ca22feea 3599 }
ca22feea 3600
4e9a4686
DG
3601 /*
3602 * A removed node from the hash table indicates that the stream has
3603 * been deleted thus having a guarantee that the buffers are closed
3604 * on the consumer side. However, data can still be transmitted
3605 * over the network so don't skip the relayd check.
3606 */
3607 ret = cds_lfht_is_node_deleted(&stream->node.node);
3608 if (!ret) {
3609 /* Check the stream if there is data in the buffers. */
6d805429
DG
3610 ret = data_pending(stream);
3611 if (ret == 1) {
4e9a4686 3612 pthread_mutex_unlock(&stream->lock);
f7079f67 3613 goto data_pending;
4e9a4686
DG
3614 }
3615 }
3616
3617 /* Relayd check */
f7079f67 3618 if (relayd) {
c8f59ee5
DG
3619 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
3620 if (stream->metadata_flag) {
ad7051c0
DG
3621 ret = relayd_quiescent_control(&relayd->control_sock,
3622 stream->relayd_stream_id);
c8f59ee5 3623 } else {
6d805429 3624 ret = relayd_data_pending(&relayd->control_sock,
39df6d9f
DG
3625 stream->relayd_stream_id,
3626 stream->next_net_seq_num - 1);
c8f59ee5
DG
3627 }
3628 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
6d805429 3629 if (ret == 1) {
4e9a4686 3630 pthread_mutex_unlock(&stream->lock);
f7079f67 3631 goto data_pending;
c8f59ee5
DG
3632 }
3633 }
4e9a4686 3634 pthread_mutex_unlock(&stream->lock);
c8f59ee5 3635 }
ca22feea 3636
f7079f67
DG
3637 if (relayd) {
3638 unsigned int is_data_inflight = 0;
3639
3640 /* Send init command for data pending. */
3641 pthread_mutex_lock(&relayd->ctrl_sock_mutex);
3642 ret = relayd_end_data_pending(&relayd->control_sock,
3643 relayd->relayd_session_id, &is_data_inflight);
3644 pthread_mutex_unlock(&relayd->ctrl_sock_mutex);
bdd88757 3645 if (ret < 0) {
f7079f67
DG
3646 goto data_not_pending;
3647 }
bdd88757
DG
3648 if (is_data_inflight) {
3649 goto data_pending;
3650 }
f7079f67
DG
3651 }
3652
ca22feea 3653 /*
f7079f67
DG
3654 * Finding _no_ node in the hash table and no inflight data means that the
3655 * stream(s) have been removed thus data is guaranteed to be available for
3656 * analysis from the trace files.
ca22feea
DG
3657 */
3658
f7079f67 3659data_not_pending:
ca22feea
DG
3660 /* Data is available to be read by a viewer. */
3661 pthread_mutex_unlock(&consumer_data.lock);
c8f59ee5 3662 rcu_read_unlock();
6d805429 3663 return 0;
ca22feea 3664
f7079f67 3665data_pending:
ca22feea
DG
3666 /* Data is still being extracted from buffers. */
3667 pthread_mutex_unlock(&consumer_data.lock);
c8f59ee5 3668 rcu_read_unlock();
6d805429 3669 return 1;
ca22feea 3670}
f50f23d9
DG
3671
3672/*
3673 * Send a ret code status message to the sessiond daemon.
3674 *
3675 * Return the sendmsg() return value.
3676 */
3677int consumer_send_status_msg(int sock, int ret_code)
3678{
3679 struct lttcomm_consumer_status_msg msg;
3680
53efb85a 3681 memset(&msg, 0, sizeof(msg));
f50f23d9
DG
3682 msg.ret_code = ret_code;
3683
3684 return lttcomm_send_unix_sock(sock, &msg, sizeof(msg));
3685}
ffe60014
DG
3686
3687/*
3688 * Send a channel status message to the sessiond daemon.
3689 *
3690 * Return the sendmsg() return value.
3691 */
3692int consumer_send_status_channel(int sock,
3693 struct lttng_consumer_channel *channel)
3694{
3695 struct lttcomm_consumer_status_channel msg;
3696
3697 assert(sock >= 0);
3698
53efb85a 3699 memset(&msg, 0, sizeof(msg));
ffe60014 3700 if (!channel) {
0c759fc9 3701 msg.ret_code = LTTCOMM_CONSUMERD_CHANNEL_FAIL;
ffe60014 3702 } else {
0c759fc9 3703 msg.ret_code = LTTCOMM_CONSUMERD_SUCCESS;
ffe60014
DG
3704 msg.key = channel->key;
3705 msg.stream_count = channel->streams.count;
3706 }
3707
3708 return lttcomm_send_unix_sock(sock, &msg, sizeof(msg));
3709}
5c786ded 3710
d07ceecd
MD
3711unsigned long consumer_get_consume_start_pos(unsigned long consumed_pos,
3712 unsigned long produced_pos, uint64_t nb_packets_per_stream,
3713 uint64_t max_sb_size)
5c786ded 3714{
d07ceecd 3715 unsigned long start_pos;
5c786ded 3716
d07ceecd
MD
3717 if (!nb_packets_per_stream) {
3718 return consumed_pos; /* Grab everything */
3719 }
3720 start_pos = produced_pos - offset_align_floor(produced_pos, max_sb_size);
3721 start_pos -= max_sb_size * nb_packets_per_stream;
3722 if ((long) (start_pos - consumed_pos) < 0) {
3723 return consumed_pos; /* Grab everything */
3724 }
3725 return start_pos;
5c786ded 3726}
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