Fix: timer_expire_entry changed in 4.19.312
[lttng-modules.git] / lttng-events.c
1 /* SPDX-License-Identifier: (GPL-2.0 or LGPL-2.1)
2 *
3 * lttng-events.c
4 *
5 * Holds LTTng per-session event registry.
6 *
7 * Copyright (C) 2010-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
8 */
9
10 /*
11 * This page_alloc.h wrapper needs to be included before gfpflags.h because it
12 * overrides a function with a define.
13 */
14 #include "wrapper/page_alloc.h"
15
16 #include <linux/module.h>
17 #include <linux/mutex.h>
18 #include <linux/sched.h>
19 #include <linux/slab.h>
20 #include <linux/jiffies.h>
21 #include <linux/utsname.h>
22 #include <linux/err.h>
23 #include <linux/seq_file.h>
24 #include <linux/file.h>
25 #include <linux/anon_inodes.h>
26 #include <wrapper/file.h>
27 #include <linux/jhash.h>
28 #include <linux/uaccess.h>
29 #include <linux/vmalloc.h>
30
31 #include <wrapper/uuid.h>
32 #include <wrapper/vmalloc.h> /* for wrapper_vmalloc_sync_all() */
33 #include <wrapper/random.h>
34 #include <wrapper/tracepoint.h>
35 #include <wrapper/list.h>
36 #include <wrapper/types.h>
37 #include <lttng-kernel-version.h>
38 #include <lttng-events.h>
39 #include <lttng-tracer.h>
40 #include <lttng-abi-old.h>
41 #include <lttng-endian.h>
42 #include <lttng-string-utils.h>
43 #include <wrapper/vzalloc.h>
44 #include <wrapper/ringbuffer/backend.h>
45 #include <wrapper/ringbuffer/frontend.h>
46
47 #define METADATA_CACHE_DEFAULT_SIZE 4096
48
49 static LIST_HEAD(sessions);
50 static LIST_HEAD(lttng_transport_list);
51 /*
52 * Protect the sessions and metadata caches.
53 */
54 static DEFINE_MUTEX(sessions_mutex);
55 static struct kmem_cache *event_cache;
56
57 static void lttng_session_lazy_sync_enablers(struct lttng_session *session);
58 static void lttng_session_sync_enablers(struct lttng_session *session);
59 static void lttng_enabler_destroy(struct lttng_enabler *enabler);
60
61 static void _lttng_event_destroy(struct lttng_event *event);
62 static void _lttng_channel_destroy(struct lttng_channel *chan);
63 static int _lttng_event_unregister(struct lttng_event *event);
64 static
65 int _lttng_event_metadata_statedump(struct lttng_session *session,
66 struct lttng_channel *chan,
67 struct lttng_event *event);
68 static
69 int _lttng_session_metadata_statedump(struct lttng_session *session);
70 static
71 void _lttng_metadata_channel_hangup(struct lttng_metadata_stream *stream);
72 static
73 int _lttng_field_statedump(struct lttng_session *session,
74 const struct lttng_event_field *field,
75 size_t nesting);
76
77 void synchronize_trace(void)
78 {
79 synchronize_sched();
80 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0))
81 #ifdef CONFIG_PREEMPT_RT_FULL
82 synchronize_rcu();
83 #endif
84 #else /* (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0)) */
85 #ifdef CONFIG_PREEMPT_RT
86 synchronize_rcu();
87 #endif
88 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(3,4,0)) */
89 }
90
91 void lttng_lock_sessions(void)
92 {
93 mutex_lock(&sessions_mutex);
94 }
95
96 void lttng_unlock_sessions(void)
97 {
98 mutex_unlock(&sessions_mutex);
99 }
100
101 /*
102 * Called with sessions lock held.
103 */
104 int lttng_session_active(void)
105 {
106 struct lttng_session *iter;
107
108 list_for_each_entry(iter, &sessions, list) {
109 if (iter->active)
110 return 1;
111 }
112 return 0;
113 }
114
115 struct lttng_session *lttng_session_create(void)
116 {
117 struct lttng_session *session;
118 struct lttng_metadata_cache *metadata_cache;
119 int i;
120
121 mutex_lock(&sessions_mutex);
122 session = lttng_kvzalloc(sizeof(struct lttng_session), GFP_KERNEL);
123 if (!session)
124 goto err;
125 INIT_LIST_HEAD(&session->chan);
126 INIT_LIST_HEAD(&session->events);
127 uuid_le_gen(&session->uuid);
128
129 metadata_cache = kzalloc(sizeof(struct lttng_metadata_cache),
130 GFP_KERNEL);
131 if (!metadata_cache)
132 goto err_free_session;
133 metadata_cache->data = lttng_vzalloc(METADATA_CACHE_DEFAULT_SIZE);
134 if (!metadata_cache->data)
135 goto err_free_cache;
136 metadata_cache->cache_alloc = METADATA_CACHE_DEFAULT_SIZE;
137 kref_init(&metadata_cache->refcount);
138 mutex_init(&metadata_cache->lock);
139 session->metadata_cache = metadata_cache;
140 INIT_LIST_HEAD(&metadata_cache->metadata_stream);
141 memcpy(&metadata_cache->uuid, &session->uuid,
142 sizeof(metadata_cache->uuid));
143 INIT_LIST_HEAD(&session->enablers_head);
144 for (i = 0; i < LTTNG_EVENT_HT_SIZE; i++)
145 INIT_HLIST_HEAD(&session->events_ht.table[i]);
146 list_add(&session->list, &sessions);
147 mutex_unlock(&sessions_mutex);
148 return session;
149
150 err_free_cache:
151 kfree(metadata_cache);
152 err_free_session:
153 lttng_kvfree(session);
154 err:
155 mutex_unlock(&sessions_mutex);
156 return NULL;
157 }
158
159 void metadata_cache_destroy(struct kref *kref)
160 {
161 struct lttng_metadata_cache *cache =
162 container_of(kref, struct lttng_metadata_cache, refcount);
163 vfree(cache->data);
164 kfree(cache);
165 }
166
167 void lttng_session_destroy(struct lttng_session *session)
168 {
169 struct lttng_channel *chan, *tmpchan;
170 struct lttng_event *event, *tmpevent;
171 struct lttng_metadata_stream *metadata_stream;
172 struct lttng_enabler *enabler, *tmpenabler;
173 int ret;
174
175 mutex_lock(&sessions_mutex);
176 WRITE_ONCE(session->active, 0);
177 list_for_each_entry(chan, &session->chan, list) {
178 ret = lttng_syscalls_unregister(chan);
179 WARN_ON(ret);
180 }
181 list_for_each_entry(event, &session->events, list) {
182 ret = _lttng_event_unregister(event);
183 WARN_ON(ret);
184 }
185 synchronize_trace(); /* Wait for in-flight events to complete */
186 list_for_each_entry_safe(enabler, tmpenabler,
187 &session->enablers_head, node)
188 lttng_enabler_destroy(enabler);
189 list_for_each_entry_safe(event, tmpevent, &session->events, list)
190 _lttng_event_destroy(event);
191 list_for_each_entry_safe(chan, tmpchan, &session->chan, list) {
192 BUG_ON(chan->channel_type == METADATA_CHANNEL);
193 _lttng_channel_destroy(chan);
194 }
195 list_for_each_entry(metadata_stream, &session->metadata_cache->metadata_stream, list)
196 _lttng_metadata_channel_hangup(metadata_stream);
197 if (session->pid_tracker)
198 lttng_pid_tracker_destroy(session->pid_tracker);
199 kref_put(&session->metadata_cache->refcount, metadata_cache_destroy);
200 list_del(&session->list);
201 mutex_unlock(&sessions_mutex);
202 lttng_kvfree(session);
203 }
204
205 int lttng_session_statedump(struct lttng_session *session)
206 {
207 int ret;
208
209 mutex_lock(&sessions_mutex);
210 ret = lttng_statedump_start(session);
211 mutex_unlock(&sessions_mutex);
212 return ret;
213 }
214
215 int lttng_session_enable(struct lttng_session *session)
216 {
217 int ret = 0;
218 struct lttng_channel *chan;
219
220 mutex_lock(&sessions_mutex);
221 if (session->active) {
222 ret = -EBUSY;
223 goto end;
224 }
225
226 /* Set transient enabler state to "enabled" */
227 session->tstate = 1;
228
229 /*
230 * Snapshot the number of events per channel to know the type of header
231 * we need to use.
232 */
233 list_for_each_entry(chan, &session->chan, list) {
234 if (chan->header_type)
235 continue; /* don't change it if session stop/restart */
236 if (chan->free_event_id < 31)
237 chan->header_type = 1; /* compact */
238 else
239 chan->header_type = 2; /* large */
240 }
241
242 /* We need to sync enablers with session before activation. */
243 lttng_session_sync_enablers(session);
244
245 /* Clear each stream's quiescent state. */
246 list_for_each_entry(chan, &session->chan, list) {
247 if (chan->channel_type != METADATA_CHANNEL)
248 lib_ring_buffer_clear_quiescent_channel(chan->chan);
249 }
250
251 WRITE_ONCE(session->active, 1);
252 WRITE_ONCE(session->been_active, 1);
253 ret = _lttng_session_metadata_statedump(session);
254 if (ret) {
255 WRITE_ONCE(session->active, 0);
256 goto end;
257 }
258 ret = lttng_statedump_start(session);
259 if (ret)
260 WRITE_ONCE(session->active, 0);
261 end:
262 mutex_unlock(&sessions_mutex);
263 return ret;
264 }
265
266 int lttng_session_disable(struct lttng_session *session)
267 {
268 int ret = 0;
269 struct lttng_channel *chan;
270
271 mutex_lock(&sessions_mutex);
272 if (!session->active) {
273 ret = -EBUSY;
274 goto end;
275 }
276 WRITE_ONCE(session->active, 0);
277
278 /* Set transient enabler state to "disabled" */
279 session->tstate = 0;
280 lttng_session_sync_enablers(session);
281
282 /* Set each stream's quiescent state. */
283 list_for_each_entry(chan, &session->chan, list) {
284 if (chan->channel_type != METADATA_CHANNEL)
285 lib_ring_buffer_set_quiescent_channel(chan->chan);
286 }
287 end:
288 mutex_unlock(&sessions_mutex);
289 return ret;
290 }
291
292 int lttng_session_metadata_regenerate(struct lttng_session *session)
293 {
294 int ret = 0;
295 struct lttng_channel *chan;
296 struct lttng_event *event;
297 struct lttng_metadata_cache *cache = session->metadata_cache;
298 struct lttng_metadata_stream *stream;
299
300 mutex_lock(&sessions_mutex);
301 if (!session->active) {
302 ret = -EBUSY;
303 goto end;
304 }
305
306 mutex_lock(&cache->lock);
307 memset(cache->data, 0, cache->cache_alloc);
308 cache->metadata_written = 0;
309 cache->version++;
310 list_for_each_entry(stream, &session->metadata_cache->metadata_stream, list) {
311 stream->metadata_out = 0;
312 stream->metadata_in = 0;
313 }
314 mutex_unlock(&cache->lock);
315
316 session->metadata_dumped = 0;
317 list_for_each_entry(chan, &session->chan, list) {
318 chan->metadata_dumped = 0;
319 }
320
321 list_for_each_entry(event, &session->events, list) {
322 event->metadata_dumped = 0;
323 }
324
325 ret = _lttng_session_metadata_statedump(session);
326
327 end:
328 mutex_unlock(&sessions_mutex);
329 return ret;
330 }
331
332 int lttng_channel_enable(struct lttng_channel *channel)
333 {
334 int ret = 0;
335
336 mutex_lock(&sessions_mutex);
337 if (channel->channel_type == METADATA_CHANNEL) {
338 ret = -EPERM;
339 goto end;
340 }
341 if (channel->enabled) {
342 ret = -EEXIST;
343 goto end;
344 }
345 /* Set transient enabler state to "enabled" */
346 channel->tstate = 1;
347 lttng_session_sync_enablers(channel->session);
348 /* Set atomically the state to "enabled" */
349 WRITE_ONCE(channel->enabled, 1);
350 end:
351 mutex_unlock(&sessions_mutex);
352 return ret;
353 }
354
355 int lttng_channel_disable(struct lttng_channel *channel)
356 {
357 int ret = 0;
358
359 mutex_lock(&sessions_mutex);
360 if (channel->channel_type == METADATA_CHANNEL) {
361 ret = -EPERM;
362 goto end;
363 }
364 if (!channel->enabled) {
365 ret = -EEXIST;
366 goto end;
367 }
368 /* Set atomically the state to "disabled" */
369 WRITE_ONCE(channel->enabled, 0);
370 /* Set transient enabler state to "enabled" */
371 channel->tstate = 0;
372 lttng_session_sync_enablers(channel->session);
373 end:
374 mutex_unlock(&sessions_mutex);
375 return ret;
376 }
377
378 int lttng_event_enable(struct lttng_event *event)
379 {
380 int ret = 0;
381
382 mutex_lock(&sessions_mutex);
383 if (event->chan->channel_type == METADATA_CHANNEL) {
384 ret = -EPERM;
385 goto end;
386 }
387 if (event->enabled) {
388 ret = -EEXIST;
389 goto end;
390 }
391 switch (event->instrumentation) {
392 case LTTNG_KERNEL_TRACEPOINT:
393 case LTTNG_KERNEL_SYSCALL:
394 ret = -EINVAL;
395 break;
396 case LTTNG_KERNEL_KPROBE:
397 case LTTNG_KERNEL_FUNCTION:
398 case LTTNG_KERNEL_NOOP:
399 WRITE_ONCE(event->enabled, 1);
400 break;
401 case LTTNG_KERNEL_KRETPROBE:
402 ret = lttng_kretprobes_event_enable_state(event, 1);
403 break;
404 default:
405 WARN_ON_ONCE(1);
406 ret = -EINVAL;
407 }
408 end:
409 mutex_unlock(&sessions_mutex);
410 return ret;
411 }
412
413 int lttng_event_disable(struct lttng_event *event)
414 {
415 int ret = 0;
416
417 mutex_lock(&sessions_mutex);
418 if (event->chan->channel_type == METADATA_CHANNEL) {
419 ret = -EPERM;
420 goto end;
421 }
422 if (!event->enabled) {
423 ret = -EEXIST;
424 goto end;
425 }
426 switch (event->instrumentation) {
427 case LTTNG_KERNEL_TRACEPOINT:
428 case LTTNG_KERNEL_SYSCALL:
429 ret = -EINVAL;
430 break;
431 case LTTNG_KERNEL_KPROBE:
432 case LTTNG_KERNEL_FUNCTION:
433 case LTTNG_KERNEL_NOOP:
434 WRITE_ONCE(event->enabled, 0);
435 break;
436 case LTTNG_KERNEL_KRETPROBE:
437 ret = lttng_kretprobes_event_enable_state(event, 0);
438 break;
439 default:
440 WARN_ON_ONCE(1);
441 ret = -EINVAL;
442 }
443 end:
444 mutex_unlock(&sessions_mutex);
445 return ret;
446 }
447
448 static struct lttng_transport *lttng_transport_find(const char *name)
449 {
450 struct lttng_transport *transport;
451
452 list_for_each_entry(transport, &lttng_transport_list, node) {
453 if (!strcmp(transport->name, name))
454 return transport;
455 }
456 return NULL;
457 }
458
459 struct lttng_channel *lttng_channel_create(struct lttng_session *session,
460 const char *transport_name,
461 void *buf_addr,
462 size_t subbuf_size, size_t num_subbuf,
463 unsigned int switch_timer_interval,
464 unsigned int read_timer_interval,
465 enum channel_type channel_type)
466 {
467 struct lttng_channel *chan;
468 struct lttng_transport *transport = NULL;
469
470 mutex_lock(&sessions_mutex);
471 if (session->been_active && channel_type != METADATA_CHANNEL)
472 goto active; /* Refuse to add channel to active session */
473 transport = lttng_transport_find(transport_name);
474 if (!transport) {
475 printk(KERN_WARNING "LTTng transport %s not found\n",
476 transport_name);
477 goto notransport;
478 }
479 if (!try_module_get(transport->owner)) {
480 printk(KERN_WARNING "LTT : Can't lock transport module.\n");
481 goto notransport;
482 }
483 chan = kzalloc(sizeof(struct lttng_channel), GFP_KERNEL);
484 if (!chan)
485 goto nomem;
486 chan->session = session;
487 chan->id = session->free_chan_id++;
488 chan->ops = &transport->ops;
489 /*
490 * Note: the channel creation op already writes into the packet
491 * headers. Therefore the "chan" information used as input
492 * should be already accessible.
493 */
494 chan->chan = transport->ops.channel_create(transport_name,
495 chan, buf_addr, subbuf_size, num_subbuf,
496 switch_timer_interval, read_timer_interval);
497 if (!chan->chan)
498 goto create_error;
499 chan->tstate = 1;
500 chan->enabled = 1;
501 chan->transport = transport;
502 chan->channel_type = channel_type;
503 list_add(&chan->list, &session->chan);
504 mutex_unlock(&sessions_mutex);
505 return chan;
506
507 create_error:
508 kfree(chan);
509 nomem:
510 if (transport)
511 module_put(transport->owner);
512 notransport:
513 active:
514 mutex_unlock(&sessions_mutex);
515 return NULL;
516 }
517
518 /*
519 * Only used internally at session destruction for per-cpu channels, and
520 * when metadata channel is released.
521 * Needs to be called with sessions mutex held.
522 */
523 static
524 void _lttng_channel_destroy(struct lttng_channel *chan)
525 {
526 chan->ops->channel_destroy(chan->chan);
527 module_put(chan->transport->owner);
528 list_del(&chan->list);
529 lttng_destroy_context(chan->ctx);
530 kfree(chan);
531 }
532
533 void lttng_metadata_channel_destroy(struct lttng_channel *chan)
534 {
535 BUG_ON(chan->channel_type != METADATA_CHANNEL);
536
537 /* Protect the metadata cache with the sessions_mutex. */
538 mutex_lock(&sessions_mutex);
539 _lttng_channel_destroy(chan);
540 mutex_unlock(&sessions_mutex);
541 }
542 EXPORT_SYMBOL_GPL(lttng_metadata_channel_destroy);
543
544 static
545 void _lttng_metadata_channel_hangup(struct lttng_metadata_stream *stream)
546 {
547 stream->finalized = 1;
548 wake_up_interruptible(&stream->read_wait);
549 }
550
551 /*
552 * Supports event creation while tracing session is active.
553 * Needs to be called with sessions mutex held.
554 */
555 struct lttng_event *_lttng_event_create(struct lttng_channel *chan,
556 struct lttng_kernel_event *event_param,
557 void *filter,
558 const struct lttng_event_desc *event_desc,
559 enum lttng_kernel_instrumentation itype)
560 {
561 struct lttng_session *session = chan->session;
562 struct lttng_event *event;
563 const char *event_name;
564 struct hlist_head *head;
565 size_t name_len;
566 uint32_t hash;
567 int ret;
568
569 if (chan->free_event_id == -1U) {
570 ret = -EMFILE;
571 goto full;
572 }
573
574 switch (itype) {
575 case LTTNG_KERNEL_TRACEPOINT:
576 event_name = event_desc->name;
577 break;
578 case LTTNG_KERNEL_KPROBE:
579 case LTTNG_KERNEL_KRETPROBE:
580 case LTTNG_KERNEL_FUNCTION:
581 case LTTNG_KERNEL_NOOP:
582 case LTTNG_KERNEL_SYSCALL:
583 event_name = event_param->name;
584 break;
585 default:
586 WARN_ON_ONCE(1);
587 ret = -EINVAL;
588 goto type_error;
589 }
590 name_len = strlen(event_name);
591 hash = jhash(event_name, name_len, 0);
592 head = &session->events_ht.table[hash & (LTTNG_EVENT_HT_SIZE - 1)];
593 lttng_hlist_for_each_entry(event, head, hlist) {
594 WARN_ON_ONCE(!event->desc);
595 if (!strncmp(event->desc->name, event_name,
596 LTTNG_KERNEL_SYM_NAME_LEN - 1)
597 && chan == event->chan) {
598 ret = -EEXIST;
599 goto exist;
600 }
601 }
602
603 event = kmem_cache_zalloc(event_cache, GFP_KERNEL);
604 if (!event) {
605 ret = -ENOMEM;
606 goto cache_error;
607 }
608 event->chan = chan;
609 event->filter = filter;
610 event->id = chan->free_event_id++;
611 event->instrumentation = itype;
612 event->evtype = LTTNG_TYPE_EVENT;
613 INIT_LIST_HEAD(&event->bytecode_runtime_head);
614 INIT_LIST_HEAD(&event->enablers_ref_head);
615
616 switch (itype) {
617 case LTTNG_KERNEL_TRACEPOINT:
618 /* Event will be enabled by enabler sync. */
619 event->enabled = 0;
620 event->registered = 0;
621 event->desc = lttng_event_get(event_name);
622 if (!event->desc) {
623 ret = -ENOENT;
624 goto register_error;
625 }
626 /* Populate lttng_event structure before event registration. */
627 smp_wmb();
628 break;
629 case LTTNG_KERNEL_KPROBE:
630 /*
631 * Needs to be explicitly enabled after creation, since
632 * we may want to apply filters.
633 */
634 event->enabled = 0;
635 event->registered = 1;
636 /*
637 * Populate lttng_event structure before event
638 * registration.
639 */
640 smp_wmb();
641 ret = lttng_kprobes_register(event_name,
642 event_param->u.kprobe.symbol_name,
643 event_param->u.kprobe.offset,
644 event_param->u.kprobe.addr,
645 event);
646 if (ret) {
647 ret = -EINVAL;
648 goto register_error;
649 }
650 ret = try_module_get(event->desc->owner);
651 WARN_ON_ONCE(!ret);
652 break;
653 case LTTNG_KERNEL_KRETPROBE:
654 {
655 struct lttng_event *event_return;
656
657 /* kretprobe defines 2 events */
658 /*
659 * Needs to be explicitly enabled after creation, since
660 * we may want to apply filters.
661 */
662 event->enabled = 0;
663 event->registered = 1;
664 event_return =
665 kmem_cache_zalloc(event_cache, GFP_KERNEL);
666 if (!event_return) {
667 ret = -ENOMEM;
668 goto register_error;
669 }
670 event_return->chan = chan;
671 event_return->filter = filter;
672 event_return->id = chan->free_event_id++;
673 event_return->enabled = 0;
674 event_return->registered = 1;
675 event_return->instrumentation = itype;
676 /*
677 * Populate lttng_event structure before kretprobe registration.
678 */
679 smp_wmb();
680 ret = lttng_kretprobes_register(event_name,
681 event_param->u.kretprobe.symbol_name,
682 event_param->u.kretprobe.offset,
683 event_param->u.kretprobe.addr,
684 event, event_return);
685 if (ret) {
686 kmem_cache_free(event_cache, event_return);
687 ret = -EINVAL;
688 goto register_error;
689 }
690 /* Take 2 refs on the module: one per event. */
691 ret = try_module_get(event->desc->owner);
692 WARN_ON_ONCE(!ret);
693 ret = try_module_get(event->desc->owner);
694 WARN_ON_ONCE(!ret);
695 ret = _lttng_event_metadata_statedump(chan->session, chan,
696 event_return);
697 WARN_ON_ONCE(ret > 0);
698 if (ret) {
699 kmem_cache_free(event_cache, event_return);
700 module_put(event->desc->owner);
701 module_put(event->desc->owner);
702 goto statedump_error;
703 }
704 list_add(&event_return->list, &chan->session->events);
705 break;
706 }
707 case LTTNG_KERNEL_FUNCTION:
708 /*
709 * Needs to be explicitly enabled after creation, since
710 * we may want to apply filters.
711 */
712 event->enabled = 0;
713 event->registered = 1;
714 /*
715 * Populate lttng_event structure before event
716 * registration.
717 */
718 smp_wmb();
719 ret = lttng_ftrace_register(event_name,
720 event_param->u.ftrace.symbol_name,
721 event);
722 if (ret) {
723 goto register_error;
724 }
725 ret = try_module_get(event->desc->owner);
726 WARN_ON_ONCE(!ret);
727 break;
728 case LTTNG_KERNEL_NOOP:
729 case LTTNG_KERNEL_SYSCALL:
730 /*
731 * Needs to be explicitly enabled after creation, since
732 * we may want to apply filters.
733 */
734 event->enabled = 0;
735 event->registered = 0;
736 event->desc = event_desc;
737 if (!event->desc) {
738 ret = -EINVAL;
739 goto register_error;
740 }
741 break;
742 default:
743 WARN_ON_ONCE(1);
744 ret = -EINVAL;
745 goto register_error;
746 }
747 ret = _lttng_event_metadata_statedump(chan->session, chan, event);
748 WARN_ON_ONCE(ret > 0);
749 if (ret) {
750 goto statedump_error;
751 }
752 hlist_add_head(&event->hlist, head);
753 list_add(&event->list, &chan->session->events);
754 return event;
755
756 statedump_error:
757 /* If a statedump error occurs, events will not be readable. */
758 register_error:
759 kmem_cache_free(event_cache, event);
760 cache_error:
761 exist:
762 type_error:
763 full:
764 return ERR_PTR(ret);
765 }
766
767 struct lttng_event *lttng_event_create(struct lttng_channel *chan,
768 struct lttng_kernel_event *event_param,
769 void *filter,
770 const struct lttng_event_desc *event_desc,
771 enum lttng_kernel_instrumentation itype)
772 {
773 struct lttng_event *event;
774
775 mutex_lock(&sessions_mutex);
776 event = _lttng_event_create(chan, event_param, filter, event_desc,
777 itype);
778 mutex_unlock(&sessions_mutex);
779 return event;
780 }
781
782 /* Only used for tracepoints for now. */
783 static
784 void register_event(struct lttng_event *event)
785 {
786 const struct lttng_event_desc *desc;
787 int ret = -EINVAL;
788
789 if (event->registered)
790 return;
791
792 desc = event->desc;
793 switch (event->instrumentation) {
794 case LTTNG_KERNEL_TRACEPOINT:
795 ret = lttng_wrapper_tracepoint_probe_register(desc->kname,
796 desc->probe_callback,
797 event);
798 break;
799 case LTTNG_KERNEL_SYSCALL:
800 ret = lttng_syscall_filter_enable(event->chan,
801 desc->name);
802 break;
803 case LTTNG_KERNEL_KPROBE:
804 case LTTNG_KERNEL_KRETPROBE:
805 case LTTNG_KERNEL_FUNCTION:
806 case LTTNG_KERNEL_NOOP:
807 ret = 0;
808 break;
809 default:
810 WARN_ON_ONCE(1);
811 }
812 if (!ret)
813 event->registered = 1;
814 }
815
816 /*
817 * Only used internally at session destruction.
818 */
819 int _lttng_event_unregister(struct lttng_event *event)
820 {
821 const struct lttng_event_desc *desc;
822 int ret = -EINVAL;
823
824 if (!event->registered)
825 return 0;
826
827 desc = event->desc;
828 switch (event->instrumentation) {
829 case LTTNG_KERNEL_TRACEPOINT:
830 ret = lttng_wrapper_tracepoint_probe_unregister(event->desc->kname,
831 event->desc->probe_callback,
832 event);
833 break;
834 case LTTNG_KERNEL_KPROBE:
835 lttng_kprobes_unregister(event);
836 ret = 0;
837 break;
838 case LTTNG_KERNEL_KRETPROBE:
839 lttng_kretprobes_unregister(event);
840 ret = 0;
841 break;
842 case LTTNG_KERNEL_FUNCTION:
843 lttng_ftrace_unregister(event);
844 ret = 0;
845 break;
846 case LTTNG_KERNEL_SYSCALL:
847 ret = lttng_syscall_filter_disable(event->chan,
848 desc->name);
849 break;
850 case LTTNG_KERNEL_NOOP:
851 ret = 0;
852 break;
853 default:
854 WARN_ON_ONCE(1);
855 }
856 if (!ret)
857 event->registered = 0;
858 return ret;
859 }
860
861 /*
862 * Only used internally at session destruction.
863 */
864 static
865 void _lttng_event_destroy(struct lttng_event *event)
866 {
867 switch (event->instrumentation) {
868 case LTTNG_KERNEL_TRACEPOINT:
869 lttng_event_put(event->desc);
870 break;
871 case LTTNG_KERNEL_KPROBE:
872 module_put(event->desc->owner);
873 lttng_kprobes_destroy_private(event);
874 break;
875 case LTTNG_KERNEL_KRETPROBE:
876 module_put(event->desc->owner);
877 lttng_kretprobes_destroy_private(event);
878 break;
879 case LTTNG_KERNEL_FUNCTION:
880 module_put(event->desc->owner);
881 lttng_ftrace_destroy_private(event);
882 break;
883 case LTTNG_KERNEL_NOOP:
884 case LTTNG_KERNEL_SYSCALL:
885 break;
886 default:
887 WARN_ON_ONCE(1);
888 }
889 list_del(&event->list);
890 lttng_destroy_context(event->ctx);
891 kmem_cache_free(event_cache, event);
892 }
893
894 int lttng_session_track_pid(struct lttng_session *session, int pid)
895 {
896 int ret;
897
898 if (pid < -1)
899 return -EINVAL;
900 mutex_lock(&sessions_mutex);
901 if (pid == -1) {
902 /* track all pids: destroy tracker. */
903 if (session->pid_tracker) {
904 struct lttng_pid_tracker *lpf;
905
906 lpf = session->pid_tracker;
907 rcu_assign_pointer(session->pid_tracker, NULL);
908 synchronize_trace();
909 lttng_pid_tracker_destroy(lpf);
910 }
911 ret = 0;
912 } else {
913 if (!session->pid_tracker) {
914 struct lttng_pid_tracker *lpf;
915
916 lpf = lttng_pid_tracker_create();
917 if (!lpf) {
918 ret = -ENOMEM;
919 goto unlock;
920 }
921 ret = lttng_pid_tracker_add(lpf, pid);
922 rcu_assign_pointer(session->pid_tracker, lpf);
923 } else {
924 ret = lttng_pid_tracker_add(session->pid_tracker, pid);
925 }
926 }
927 unlock:
928 mutex_unlock(&sessions_mutex);
929 return ret;
930 }
931
932 int lttng_session_untrack_pid(struct lttng_session *session, int pid)
933 {
934 int ret;
935
936 if (pid < -1)
937 return -EINVAL;
938 mutex_lock(&sessions_mutex);
939 if (pid == -1) {
940 /* untrack all pids: replace by empty tracker. */
941 struct lttng_pid_tracker *old_lpf = session->pid_tracker;
942 struct lttng_pid_tracker *lpf;
943
944 lpf = lttng_pid_tracker_create();
945 if (!lpf) {
946 ret = -ENOMEM;
947 goto unlock;
948 }
949 rcu_assign_pointer(session->pid_tracker, lpf);
950 synchronize_trace();
951 if (old_lpf)
952 lttng_pid_tracker_destroy(old_lpf);
953 ret = 0;
954 } else {
955 if (!session->pid_tracker) {
956 ret = -ENOENT;
957 goto unlock;
958 }
959 ret = lttng_pid_tracker_del(session->pid_tracker, pid);
960 }
961 unlock:
962 mutex_unlock(&sessions_mutex);
963 return ret;
964 }
965
966 static
967 void *pid_list_start(struct seq_file *m, loff_t *pos)
968 {
969 struct lttng_session *session = m->private;
970 struct lttng_pid_tracker *lpf;
971 struct lttng_pid_hash_node *e;
972 int iter = 0, i;
973
974 mutex_lock(&sessions_mutex);
975 lpf = session->pid_tracker;
976 if (lpf) {
977 for (i = 0; i < LTTNG_PID_TABLE_SIZE; i++) {
978 struct hlist_head *head = &lpf->pid_hash[i];
979
980 lttng_hlist_for_each_entry(e, head, hlist) {
981 if (iter++ >= *pos)
982 return e;
983 }
984 }
985 } else {
986 /* PID tracker disabled. */
987 if (iter >= *pos && iter == 0) {
988 return session; /* empty tracker */
989 }
990 iter++;
991 }
992 /* End of list */
993 return NULL;
994 }
995
996 /* Called with sessions_mutex held. */
997 static
998 void *pid_list_next(struct seq_file *m, void *p, loff_t *ppos)
999 {
1000 struct lttng_session *session = m->private;
1001 struct lttng_pid_tracker *lpf;
1002 struct lttng_pid_hash_node *e;
1003 int iter = 0, i;
1004
1005 (*ppos)++;
1006 lpf = session->pid_tracker;
1007 if (lpf) {
1008 for (i = 0; i < LTTNG_PID_TABLE_SIZE; i++) {
1009 struct hlist_head *head = &lpf->pid_hash[i];
1010
1011 lttng_hlist_for_each_entry(e, head, hlist) {
1012 if (iter++ >= *ppos)
1013 return e;
1014 }
1015 }
1016 } else {
1017 /* PID tracker disabled. */
1018 if (iter >= *ppos && iter == 0)
1019 return session; /* empty tracker */
1020 iter++;
1021 }
1022
1023 /* End of list */
1024 return NULL;
1025 }
1026
1027 static
1028 void pid_list_stop(struct seq_file *m, void *p)
1029 {
1030 mutex_unlock(&sessions_mutex);
1031 }
1032
1033 static
1034 int pid_list_show(struct seq_file *m, void *p)
1035 {
1036 int pid;
1037
1038 if (p == m->private) {
1039 /* Tracker disabled. */
1040 pid = -1;
1041 } else {
1042 const struct lttng_pid_hash_node *e = p;
1043
1044 pid = lttng_pid_tracker_get_node_pid(e);
1045 }
1046 seq_printf(m, "process { pid = %d; };\n", pid);
1047 return 0;
1048 }
1049
1050 static
1051 const struct seq_operations lttng_tracker_pids_list_seq_ops = {
1052 .start = pid_list_start,
1053 .next = pid_list_next,
1054 .stop = pid_list_stop,
1055 .show = pid_list_show,
1056 };
1057
1058 static
1059 int lttng_tracker_pids_list_open(struct inode *inode, struct file *file)
1060 {
1061 return seq_open(file, &lttng_tracker_pids_list_seq_ops);
1062 }
1063
1064 static
1065 int lttng_tracker_pids_list_release(struct inode *inode, struct file *file)
1066 {
1067 struct seq_file *m = file->private_data;
1068 struct lttng_session *session = m->private;
1069 int ret;
1070
1071 WARN_ON_ONCE(!session);
1072 ret = seq_release(inode, file);
1073 if (!ret && session)
1074 fput(session->file);
1075 return ret;
1076 }
1077
1078 const struct file_operations lttng_tracker_pids_list_fops = {
1079 .owner = THIS_MODULE,
1080 .open = lttng_tracker_pids_list_open,
1081 .read = seq_read,
1082 .llseek = seq_lseek,
1083 .release = lttng_tracker_pids_list_release,
1084 };
1085
1086 int lttng_session_list_tracker_pids(struct lttng_session *session)
1087 {
1088 struct file *tracker_pids_list_file;
1089 struct seq_file *m;
1090 int file_fd, ret;
1091
1092 file_fd = lttng_get_unused_fd();
1093 if (file_fd < 0) {
1094 ret = file_fd;
1095 goto fd_error;
1096 }
1097
1098 tracker_pids_list_file = anon_inode_getfile("[lttng_tracker_pids_list]",
1099 &lttng_tracker_pids_list_fops,
1100 NULL, O_RDWR);
1101 if (IS_ERR(tracker_pids_list_file)) {
1102 ret = PTR_ERR(tracker_pids_list_file);
1103 goto file_error;
1104 }
1105 if (atomic_long_add_unless(&session->file->f_count,
1106 1, INT_MAX) == INT_MAX) {
1107 goto refcount_error;
1108 }
1109 ret = lttng_tracker_pids_list_fops.open(NULL, tracker_pids_list_file);
1110 if (ret < 0)
1111 goto open_error;
1112 m = tracker_pids_list_file->private_data;
1113 m->private = session;
1114 fd_install(file_fd, tracker_pids_list_file);
1115
1116 return file_fd;
1117
1118 open_error:
1119 atomic_long_dec(&session->file->f_count);
1120 refcount_error:
1121 fput(tracker_pids_list_file);
1122 file_error:
1123 put_unused_fd(file_fd);
1124 fd_error:
1125 return ret;
1126 }
1127
1128 /*
1129 * Enabler management.
1130 */
1131 static
1132 int lttng_match_enabler_star_glob(const char *desc_name,
1133 const char *pattern)
1134 {
1135 if (!strutils_star_glob_match(pattern, LTTNG_SIZE_MAX,
1136 desc_name, LTTNG_SIZE_MAX))
1137 return 0;
1138 return 1;
1139 }
1140
1141 static
1142 int lttng_match_enabler_name(const char *desc_name,
1143 const char *name)
1144 {
1145 if (strcmp(desc_name, name))
1146 return 0;
1147 return 1;
1148 }
1149
1150 static
1151 int lttng_desc_match_enabler(const struct lttng_event_desc *desc,
1152 struct lttng_enabler *enabler)
1153 {
1154 const char *desc_name, *enabler_name;
1155
1156 enabler_name = enabler->event_param.name;
1157 switch (enabler->event_param.instrumentation) {
1158 case LTTNG_KERNEL_TRACEPOINT:
1159 desc_name = desc->name;
1160 break;
1161 case LTTNG_KERNEL_SYSCALL:
1162 desc_name = desc->name;
1163 if (!strncmp(desc_name, "compat_", strlen("compat_")))
1164 desc_name += strlen("compat_");
1165 if (!strncmp(desc_name, "syscall_exit_",
1166 strlen("syscall_exit_"))) {
1167 desc_name += strlen("syscall_exit_");
1168 } else if (!strncmp(desc_name, "syscall_entry_",
1169 strlen("syscall_entry_"))) {
1170 desc_name += strlen("syscall_entry_");
1171 } else {
1172 WARN_ON_ONCE(1);
1173 return -EINVAL;
1174 }
1175 break;
1176 default:
1177 WARN_ON_ONCE(1);
1178 return -EINVAL;
1179 }
1180 switch (enabler->type) {
1181 case LTTNG_ENABLER_STAR_GLOB:
1182 return lttng_match_enabler_star_glob(desc_name, enabler_name);
1183 case LTTNG_ENABLER_NAME:
1184 return lttng_match_enabler_name(desc_name, enabler_name);
1185 default:
1186 return -EINVAL;
1187 }
1188 }
1189
1190 static
1191 int lttng_event_match_enabler(struct lttng_event *event,
1192 struct lttng_enabler *enabler)
1193 {
1194 if (enabler->event_param.instrumentation != event->instrumentation)
1195 return 0;
1196 if (lttng_desc_match_enabler(event->desc, enabler)
1197 && event->chan == enabler->chan)
1198 return 1;
1199 else
1200 return 0;
1201 }
1202
1203 static
1204 struct lttng_enabler_ref *lttng_event_enabler_ref(struct lttng_event *event,
1205 struct lttng_enabler *enabler)
1206 {
1207 struct lttng_enabler_ref *enabler_ref;
1208
1209 list_for_each_entry(enabler_ref,
1210 &event->enablers_ref_head, node) {
1211 if (enabler_ref->ref == enabler)
1212 return enabler_ref;
1213 }
1214 return NULL;
1215 }
1216
1217 static
1218 void lttng_create_tracepoint_if_missing(struct lttng_enabler *enabler)
1219 {
1220 struct lttng_session *session = enabler->chan->session;
1221 struct lttng_probe_desc *probe_desc;
1222 const struct lttng_event_desc *desc;
1223 int i;
1224 struct list_head *probe_list;
1225
1226 probe_list = lttng_get_probe_list_head();
1227 /*
1228 * For each probe event, if we find that a probe event matches
1229 * our enabler, create an associated lttng_event if not
1230 * already present.
1231 */
1232 list_for_each_entry(probe_desc, probe_list, head) {
1233 for (i = 0; i < probe_desc->nr_events; i++) {
1234 int found = 0;
1235 struct hlist_head *head;
1236 const char *event_name;
1237 size_t name_len;
1238 uint32_t hash;
1239 struct lttng_event *event;
1240
1241 desc = probe_desc->event_desc[i];
1242 if (!lttng_desc_match_enabler(desc, enabler))
1243 continue;
1244 event_name = desc->name;
1245 name_len = strlen(event_name);
1246
1247 /*
1248 * Check if already created.
1249 */
1250 hash = jhash(event_name, name_len, 0);
1251 head = &session->events_ht.table[hash & (LTTNG_EVENT_HT_SIZE - 1)];
1252 lttng_hlist_for_each_entry(event, head, hlist) {
1253 if (event->desc == desc
1254 && event->chan == enabler->chan)
1255 found = 1;
1256 }
1257 if (found)
1258 continue;
1259
1260 /*
1261 * We need to create an event for this
1262 * event probe.
1263 */
1264 event = _lttng_event_create(enabler->chan,
1265 NULL, NULL, desc,
1266 LTTNG_KERNEL_TRACEPOINT);
1267 if (!event) {
1268 printk(KERN_INFO "Unable to create event %s\n",
1269 probe_desc->event_desc[i]->name);
1270 }
1271 }
1272 }
1273 }
1274
1275 static
1276 void lttng_create_syscall_if_missing(struct lttng_enabler *enabler)
1277 {
1278 int ret;
1279
1280 ret = lttng_syscalls_register(enabler->chan, NULL);
1281 WARN_ON_ONCE(ret);
1282 }
1283
1284 /*
1285 * Create struct lttng_event if it is missing and present in the list of
1286 * tracepoint probes.
1287 * Should be called with sessions mutex held.
1288 */
1289 static
1290 void lttng_create_event_if_missing(struct lttng_enabler *enabler)
1291 {
1292 switch (enabler->event_param.instrumentation) {
1293 case LTTNG_KERNEL_TRACEPOINT:
1294 lttng_create_tracepoint_if_missing(enabler);
1295 break;
1296 case LTTNG_KERNEL_SYSCALL:
1297 lttng_create_syscall_if_missing(enabler);
1298 break;
1299 default:
1300 WARN_ON_ONCE(1);
1301 break;
1302 }
1303 }
1304
1305 /*
1306 * Create events associated with an enabler (if not already present),
1307 * and add backward reference from the event to the enabler.
1308 * Should be called with sessions mutex held.
1309 */
1310 static
1311 int lttng_enabler_ref_events(struct lttng_enabler *enabler)
1312 {
1313 struct lttng_session *session = enabler->chan->session;
1314 struct lttng_event *event;
1315
1316 /* First ensure that probe events are created for this enabler. */
1317 lttng_create_event_if_missing(enabler);
1318
1319 /* For each event matching enabler in session event list. */
1320 list_for_each_entry(event, &session->events, list) {
1321 struct lttng_enabler_ref *enabler_ref;
1322
1323 if (!lttng_event_match_enabler(event, enabler))
1324 continue;
1325 enabler_ref = lttng_event_enabler_ref(event, enabler);
1326 if (!enabler_ref) {
1327 /*
1328 * If no backward ref, create it.
1329 * Add backward ref from event to enabler.
1330 */
1331 enabler_ref = kzalloc(sizeof(*enabler_ref), GFP_KERNEL);
1332 if (!enabler_ref)
1333 return -ENOMEM;
1334 enabler_ref->ref = enabler;
1335 list_add(&enabler_ref->node,
1336 &event->enablers_ref_head);
1337 }
1338
1339 /*
1340 * Link filter bytecodes if not linked yet.
1341 */
1342 lttng_enabler_event_link_bytecode(event, enabler);
1343
1344 /* TODO: merge event context. */
1345 }
1346 return 0;
1347 }
1348
1349 /*
1350 * Called at module load: connect the probe on all enablers matching
1351 * this event.
1352 * Called with sessions lock held.
1353 */
1354 int lttng_fix_pending_events(void)
1355 {
1356 struct lttng_session *session;
1357
1358 list_for_each_entry(session, &sessions, list)
1359 lttng_session_lazy_sync_enablers(session);
1360 return 0;
1361 }
1362
1363 struct lttng_enabler *lttng_enabler_create(enum lttng_enabler_type type,
1364 struct lttng_kernel_event *event_param,
1365 struct lttng_channel *chan)
1366 {
1367 struct lttng_enabler *enabler;
1368
1369 enabler = kzalloc(sizeof(*enabler), GFP_KERNEL);
1370 if (!enabler)
1371 return NULL;
1372 enabler->type = type;
1373 INIT_LIST_HEAD(&enabler->filter_bytecode_head);
1374 memcpy(&enabler->event_param, event_param,
1375 sizeof(enabler->event_param));
1376 enabler->chan = chan;
1377 /* ctx left NULL */
1378 enabler->enabled = 0;
1379 enabler->evtype = LTTNG_TYPE_ENABLER;
1380 mutex_lock(&sessions_mutex);
1381 list_add(&enabler->node, &enabler->chan->session->enablers_head);
1382 lttng_session_lazy_sync_enablers(enabler->chan->session);
1383 mutex_unlock(&sessions_mutex);
1384 return enabler;
1385 }
1386
1387 int lttng_enabler_enable(struct lttng_enabler *enabler)
1388 {
1389 mutex_lock(&sessions_mutex);
1390 enabler->enabled = 1;
1391 lttng_session_lazy_sync_enablers(enabler->chan->session);
1392 mutex_unlock(&sessions_mutex);
1393 return 0;
1394 }
1395
1396 int lttng_enabler_disable(struct lttng_enabler *enabler)
1397 {
1398 mutex_lock(&sessions_mutex);
1399 enabler->enabled = 0;
1400 lttng_session_lazy_sync_enablers(enabler->chan->session);
1401 mutex_unlock(&sessions_mutex);
1402 return 0;
1403 }
1404
1405 int lttng_enabler_attach_bytecode(struct lttng_enabler *enabler,
1406 struct lttng_kernel_filter_bytecode __user *bytecode)
1407 {
1408 struct lttng_filter_bytecode_node *bytecode_node;
1409 uint32_t bytecode_len;
1410 int ret;
1411
1412 ret = get_user(bytecode_len, &bytecode->len);
1413 if (ret)
1414 return ret;
1415 bytecode_node = kzalloc(sizeof(*bytecode_node) + bytecode_len,
1416 GFP_KERNEL);
1417 if (!bytecode_node)
1418 return -ENOMEM;
1419 ret = copy_from_user(&bytecode_node->bc, bytecode,
1420 sizeof(*bytecode) + bytecode_len);
1421 if (ret)
1422 goto error_free;
1423 bytecode_node->enabler = enabler;
1424 /* Enforce length based on allocated size */
1425 bytecode_node->bc.len = bytecode_len;
1426 list_add_tail(&bytecode_node->node, &enabler->filter_bytecode_head);
1427 lttng_session_lazy_sync_enablers(enabler->chan->session);
1428 return 0;
1429
1430 error_free:
1431 kfree(bytecode_node);
1432 return ret;
1433 }
1434
1435 int lttng_enabler_attach_context(struct lttng_enabler *enabler,
1436 struct lttng_kernel_context *context_param)
1437 {
1438 return -ENOSYS;
1439 }
1440
1441 static
1442 void lttng_enabler_destroy(struct lttng_enabler *enabler)
1443 {
1444 struct lttng_filter_bytecode_node *filter_node, *tmp_filter_node;
1445
1446 /* Destroy filter bytecode */
1447 list_for_each_entry_safe(filter_node, tmp_filter_node,
1448 &enabler->filter_bytecode_head, node) {
1449 kfree(filter_node);
1450 }
1451
1452 /* Destroy contexts */
1453 lttng_destroy_context(enabler->ctx);
1454
1455 list_del(&enabler->node);
1456 kfree(enabler);
1457 }
1458
1459 /*
1460 * lttng_session_sync_enablers should be called just before starting a
1461 * session.
1462 * Should be called with sessions mutex held.
1463 */
1464 static
1465 void lttng_session_sync_enablers(struct lttng_session *session)
1466 {
1467 struct lttng_enabler *enabler;
1468 struct lttng_event *event;
1469
1470 list_for_each_entry(enabler, &session->enablers_head, node)
1471 lttng_enabler_ref_events(enabler);
1472 /*
1473 * For each event, if at least one of its enablers is enabled,
1474 * and its channel and session transient states are enabled, we
1475 * enable the event, else we disable it.
1476 */
1477 list_for_each_entry(event, &session->events, list) {
1478 struct lttng_enabler_ref *enabler_ref;
1479 struct lttng_bytecode_runtime *runtime;
1480 int enabled = 0, has_enablers_without_bytecode = 0;
1481
1482 switch (event->instrumentation) {
1483 case LTTNG_KERNEL_TRACEPOINT:
1484 case LTTNG_KERNEL_SYSCALL:
1485 /* Enable events */
1486 list_for_each_entry(enabler_ref,
1487 &event->enablers_ref_head, node) {
1488 if (enabler_ref->ref->enabled) {
1489 enabled = 1;
1490 break;
1491 }
1492 }
1493 break;
1494 default:
1495 /* Not handled with lazy sync. */
1496 continue;
1497 }
1498 /*
1499 * Enabled state is based on union of enablers, with
1500 * intesection of session and channel transient enable
1501 * states.
1502 */
1503 enabled = enabled && session->tstate && event->chan->tstate;
1504
1505 WRITE_ONCE(event->enabled, enabled);
1506 /*
1507 * Sync tracepoint registration with event enabled
1508 * state.
1509 */
1510 if (enabled) {
1511 register_event(event);
1512 } else {
1513 _lttng_event_unregister(event);
1514 }
1515
1516 /* Check if has enablers without bytecode enabled */
1517 list_for_each_entry(enabler_ref,
1518 &event->enablers_ref_head, node) {
1519 if (enabler_ref->ref->enabled
1520 && list_empty(&enabler_ref->ref->filter_bytecode_head)) {
1521 has_enablers_without_bytecode = 1;
1522 break;
1523 }
1524 }
1525 event->has_enablers_without_bytecode =
1526 has_enablers_without_bytecode;
1527
1528 /* Enable filters */
1529 list_for_each_entry(runtime,
1530 &event->bytecode_runtime_head, node)
1531 lttng_filter_sync_state(runtime);
1532 }
1533 }
1534
1535 /*
1536 * Apply enablers to session events, adding events to session if need
1537 * be. It is required after each modification applied to an active
1538 * session, and right before session "start".
1539 * "lazy" sync means we only sync if required.
1540 * Should be called with sessions mutex held.
1541 */
1542 static
1543 void lttng_session_lazy_sync_enablers(struct lttng_session *session)
1544 {
1545 /* We can skip if session is not active */
1546 if (!session->active)
1547 return;
1548 lttng_session_sync_enablers(session);
1549 }
1550
1551 /*
1552 * Serialize at most one packet worth of metadata into a metadata
1553 * channel.
1554 * We grab the metadata cache mutex to get exclusive access to our metadata
1555 * buffer and to the metadata cache. Exclusive access to the metadata buffer
1556 * allows us to do racy operations such as looking for remaining space left in
1557 * packet and write, since mutual exclusion protects us from concurrent writes.
1558 * Mutual exclusion on the metadata cache allow us to read the cache content
1559 * without racing against reallocation of the cache by updates.
1560 * Returns the number of bytes written in the channel, 0 if no data
1561 * was written and a negative value on error.
1562 */
1563 int lttng_metadata_output_channel(struct lttng_metadata_stream *stream,
1564 struct channel *chan)
1565 {
1566 struct lib_ring_buffer_ctx ctx;
1567 int ret = 0;
1568 size_t len, reserve_len;
1569
1570 /*
1571 * Ensure we support mutiple get_next / put sequences followed by
1572 * put_next. The metadata cache lock protects reading the metadata
1573 * cache. It can indeed be read concurrently by "get_next_subbuf" and
1574 * "flush" operations on the buffer invoked by different processes.
1575 * Moreover, since the metadata cache memory can be reallocated, we
1576 * need to have exclusive access against updates even though we only
1577 * read it.
1578 */
1579 mutex_lock(&stream->metadata_cache->lock);
1580 WARN_ON(stream->metadata_in < stream->metadata_out);
1581 if (stream->metadata_in != stream->metadata_out)
1582 goto end;
1583
1584 /* Metadata regenerated, change the version. */
1585 if (stream->metadata_cache->version != stream->version)
1586 stream->version = stream->metadata_cache->version;
1587
1588 len = stream->metadata_cache->metadata_written -
1589 stream->metadata_in;
1590 if (!len)
1591 goto end;
1592 reserve_len = min_t(size_t,
1593 stream->transport->ops.packet_avail_size(chan),
1594 len);
1595 lib_ring_buffer_ctx_init(&ctx, chan, NULL, reserve_len,
1596 sizeof(char), -1);
1597 /*
1598 * If reservation failed, return an error to the caller.
1599 */
1600 ret = stream->transport->ops.event_reserve(&ctx, 0);
1601 if (ret != 0) {
1602 printk(KERN_WARNING "LTTng: Metadata event reservation failed\n");
1603 goto end;
1604 }
1605 stream->transport->ops.event_write(&ctx,
1606 stream->metadata_cache->data + stream->metadata_in,
1607 reserve_len);
1608 stream->transport->ops.event_commit(&ctx);
1609 stream->metadata_in += reserve_len;
1610 ret = reserve_len;
1611
1612 end:
1613 mutex_unlock(&stream->metadata_cache->lock);
1614 return ret;
1615 }
1616
1617 /*
1618 * Write the metadata to the metadata cache.
1619 * Must be called with sessions_mutex held.
1620 * The metadata cache lock protects us from concurrent read access from
1621 * thread outputting metadata content to ring buffer.
1622 */
1623 int lttng_metadata_printf(struct lttng_session *session,
1624 const char *fmt, ...)
1625 {
1626 char *str;
1627 size_t len;
1628 va_list ap;
1629 struct lttng_metadata_stream *stream;
1630
1631 WARN_ON_ONCE(!READ_ONCE(session->active));
1632
1633 va_start(ap, fmt);
1634 str = kvasprintf(GFP_KERNEL, fmt, ap);
1635 va_end(ap);
1636 if (!str)
1637 return -ENOMEM;
1638
1639 len = strlen(str);
1640 mutex_lock(&session->metadata_cache->lock);
1641 if (session->metadata_cache->metadata_written + len >
1642 session->metadata_cache->cache_alloc) {
1643 char *tmp_cache_realloc;
1644 unsigned int tmp_cache_alloc_size;
1645
1646 tmp_cache_alloc_size = max_t(unsigned int,
1647 session->metadata_cache->cache_alloc + len,
1648 session->metadata_cache->cache_alloc << 1);
1649 tmp_cache_realloc = lttng_vzalloc(tmp_cache_alloc_size);
1650 if (!tmp_cache_realloc)
1651 goto err;
1652 if (session->metadata_cache->data) {
1653 memcpy(tmp_cache_realloc,
1654 session->metadata_cache->data,
1655 session->metadata_cache->cache_alloc);
1656 vfree(session->metadata_cache->data);
1657 }
1658
1659 session->metadata_cache->cache_alloc = tmp_cache_alloc_size;
1660 session->metadata_cache->data = tmp_cache_realloc;
1661 }
1662 memcpy(session->metadata_cache->data +
1663 session->metadata_cache->metadata_written,
1664 str, len);
1665 session->metadata_cache->metadata_written += len;
1666 mutex_unlock(&session->metadata_cache->lock);
1667 kfree(str);
1668
1669 list_for_each_entry(stream, &session->metadata_cache->metadata_stream, list)
1670 wake_up_interruptible(&stream->read_wait);
1671
1672 return 0;
1673
1674 err:
1675 mutex_unlock(&session->metadata_cache->lock);
1676 kfree(str);
1677 return -ENOMEM;
1678 }
1679
1680 static
1681 int print_tabs(struct lttng_session *session, size_t nesting)
1682 {
1683 size_t i;
1684
1685 for (i = 0; i < nesting; i++) {
1686 int ret;
1687
1688 ret = lttng_metadata_printf(session, " ");
1689 if (ret) {
1690 return ret;
1691 }
1692 }
1693 return 0;
1694 }
1695
1696 /*
1697 * Must be called with sessions_mutex held.
1698 */
1699 static
1700 int _lttng_struct_type_statedump(struct lttng_session *session,
1701 const struct lttng_type *type,
1702 size_t nesting)
1703 {
1704 int ret;
1705 uint32_t i, nr_fields;
1706
1707 ret = print_tabs(session, nesting);
1708 if (ret)
1709 return ret;
1710 ret = lttng_metadata_printf(session,
1711 "struct {\n");
1712 if (ret)
1713 return ret;
1714 nr_fields = type->u._struct.nr_fields;
1715 for (i = 0; i < nr_fields; i++) {
1716 const struct lttng_event_field *iter_field;
1717
1718 iter_field = &type->u._struct.fields[i];
1719 ret = _lttng_field_statedump(session, iter_field, nesting + 1);
1720 if (ret)
1721 return ret;
1722 }
1723 ret = print_tabs(session, nesting);
1724 if (ret)
1725 return ret;
1726 ret = lttng_metadata_printf(session,
1727 "}");
1728 return ret;
1729 }
1730
1731 /*
1732 * Must be called with sessions_mutex held.
1733 */
1734 static
1735 int _lttng_struct_statedump(struct lttng_session *session,
1736 const struct lttng_event_field *field,
1737 size_t nesting)
1738 {
1739 int ret;
1740
1741 ret = _lttng_struct_type_statedump(session,
1742 &field->type, nesting);
1743 if (ret)
1744 return ret;
1745 ret = lttng_metadata_printf(session,
1746 "_%s;\n",
1747 field->name);
1748 return ret;
1749 }
1750
1751 /*
1752 * Must be called with sessions_mutex held.
1753 */
1754 static
1755 int _lttng_variant_type_statedump(struct lttng_session *session,
1756 const struct lttng_type *type,
1757 size_t nesting)
1758 {
1759 int ret;
1760 uint32_t i, nr_choices;
1761
1762 ret = print_tabs(session, nesting);
1763 if (ret)
1764 return ret;
1765 ret = lttng_metadata_printf(session,
1766 "variant <_%s> {\n",
1767 type->u.variant.tag_name);
1768 if (ret)
1769 return ret;
1770 nr_choices = type->u.variant.nr_choices;
1771 for (i = 0; i < nr_choices; i++) {
1772 const struct lttng_event_field *iter_field;
1773
1774 iter_field = &type->u.variant.choices[i];
1775 ret = _lttng_field_statedump(session, iter_field, nesting + 1);
1776 if (ret)
1777 return ret;
1778 }
1779 ret = print_tabs(session, nesting);
1780 if (ret)
1781 return ret;
1782 ret = lttng_metadata_printf(session,
1783 "}");
1784 return ret;
1785 }
1786
1787 /*
1788 * Must be called with sessions_mutex held.
1789 */
1790 static
1791 int _lttng_variant_statedump(struct lttng_session *session,
1792 const struct lttng_event_field *field,
1793 size_t nesting)
1794 {
1795 int ret;
1796
1797 ret = _lttng_variant_type_statedump(session,
1798 &field->type, nesting);
1799 if (ret)
1800 return ret;
1801 ret = lttng_metadata_printf(session,
1802 "_%s;\n",
1803 field->name);
1804 return ret;
1805 }
1806
1807 /*
1808 * Must be called with sessions_mutex held.
1809 */
1810 static
1811 int _lttng_array_compound_statedump(struct lttng_session *session,
1812 const struct lttng_event_field *field,
1813 size_t nesting)
1814 {
1815 int ret;
1816 const struct lttng_type *elem_type;
1817
1818 /* Only array of structures and variants are currently supported. */
1819 elem_type = field->type.u.array_compound.elem_type;
1820 switch (elem_type->atype) {
1821 case atype_struct:
1822 ret = _lttng_struct_type_statedump(session, elem_type, nesting);
1823 if (ret)
1824 return ret;
1825 break;
1826 case atype_variant:
1827 ret = _lttng_variant_type_statedump(session, elem_type, nesting);
1828 if (ret)
1829 return ret;
1830 break;
1831 default:
1832 return -EINVAL;
1833 }
1834 ret = lttng_metadata_printf(session,
1835 " _%s[%u];\n",
1836 field->name,
1837 field->type.u.array_compound.length);
1838 return ret;
1839 }
1840
1841 /*
1842 * Must be called with sessions_mutex held.
1843 */
1844 static
1845 int _lttng_sequence_compound_statedump(struct lttng_session *session,
1846 const struct lttng_event_field *field,
1847 size_t nesting)
1848 {
1849 int ret;
1850 const char *length_name;
1851 const struct lttng_type *elem_type;
1852
1853 length_name = field->type.u.sequence_compound.length_name;
1854
1855 /* Only array of structures and variants are currently supported. */
1856 elem_type = field->type.u.sequence_compound.elem_type;
1857 switch (elem_type->atype) {
1858 case atype_struct:
1859 ret = _lttng_struct_type_statedump(session, elem_type, nesting);
1860 if (ret)
1861 return ret;
1862 break;
1863 case atype_variant:
1864 ret = _lttng_variant_type_statedump(session, elem_type, nesting);
1865 if (ret)
1866 return ret;
1867 break;
1868 default:
1869 return -EINVAL;
1870 }
1871 ret = lttng_metadata_printf(session,
1872 " _%s[ _%s ];\n",
1873 field->name,
1874 length_name);
1875 return ret;
1876 }
1877
1878 /*
1879 * Must be called with sessions_mutex held.
1880 */
1881 static
1882 int _lttng_enum_statedump(struct lttng_session *session,
1883 const struct lttng_event_field *field,
1884 size_t nesting)
1885 {
1886 const struct lttng_enum_desc *enum_desc;
1887 const struct lttng_integer_type *container_type;
1888 int ret;
1889 unsigned int i, nr_entries;
1890
1891 enum_desc = field->type.u.basic.enumeration.desc;
1892 container_type = &field->type.u.basic.enumeration.container_type;
1893 nr_entries = enum_desc->nr_entries;
1894
1895 ret = print_tabs(session, nesting);
1896 if (ret)
1897 goto end;
1898 ret = lttng_metadata_printf(session,
1899 "enum : integer { size = %u; align = %u; signed = %u; encoding = %s; base = %u;%s } {\n",
1900 container_type->size,
1901 container_type->alignment,
1902 container_type->signedness,
1903 (container_type->encoding == lttng_encode_none)
1904 ? "none"
1905 : (container_type->encoding == lttng_encode_UTF8)
1906 ? "UTF8"
1907 : "ASCII",
1908 container_type->base,
1909 #if __BYTE_ORDER == __BIG_ENDIAN
1910 container_type->reverse_byte_order ? " byte_order = le;" : ""
1911 #else
1912 container_type->reverse_byte_order ? " byte_order = be;" : ""
1913 #endif
1914 );
1915 if (ret)
1916 goto end;
1917 /* Dump all entries */
1918 for (i = 0; i < nr_entries; i++) {
1919 const struct lttng_enum_entry *entry = &enum_desc->entries[i];
1920 int j, len;
1921
1922 ret = print_tabs(session, nesting + 1);
1923 if (ret)
1924 goto end;
1925 ret = lttng_metadata_printf(session,
1926 "\"");
1927 if (ret)
1928 goto end;
1929 len = strlen(entry->string);
1930 /* Escape the character '"' */
1931 for (j = 0; j < len; j++) {
1932 char c = entry->string[j];
1933
1934 switch (c) {
1935 case '"':
1936 ret = lttng_metadata_printf(session,
1937 "\\\"");
1938 break;
1939 case '\\':
1940 ret = lttng_metadata_printf(session,
1941 "\\\\");
1942 break;
1943 default:
1944 ret = lttng_metadata_printf(session,
1945 "%c", c);
1946 break;
1947 }
1948 if (ret)
1949 goto end;
1950 }
1951 ret = lttng_metadata_printf(session, "\"");
1952 if (ret)
1953 goto end;
1954
1955 if (entry->options.is_auto) {
1956 ret = lttng_metadata_printf(session, ",\n");
1957 if (ret)
1958 goto end;
1959 } else {
1960 ret = lttng_metadata_printf(session,
1961 " = ");
1962 if (ret)
1963 goto end;
1964 if (entry->start.signedness)
1965 ret = lttng_metadata_printf(session,
1966 "%lld", (long long) entry->start.value);
1967 else
1968 ret = lttng_metadata_printf(session,
1969 "%llu", entry->start.value);
1970 if (ret)
1971 goto end;
1972 if (entry->start.signedness == entry->end.signedness &&
1973 entry->start.value
1974 == entry->end.value) {
1975 ret = lttng_metadata_printf(session,
1976 ",\n");
1977 } else {
1978 if (entry->end.signedness) {
1979 ret = lttng_metadata_printf(session,
1980 " ... %lld,\n",
1981 (long long) entry->end.value);
1982 } else {
1983 ret = lttng_metadata_printf(session,
1984 " ... %llu,\n",
1985 entry->end.value);
1986 }
1987 }
1988 if (ret)
1989 goto end;
1990 }
1991 }
1992 ret = print_tabs(session, nesting);
1993 if (ret)
1994 goto end;
1995 ret = lttng_metadata_printf(session, "} _%s;\n",
1996 field->name);
1997 end:
1998 return ret;
1999 }
2000
2001 /*
2002 * Must be called with sessions_mutex held.
2003 */
2004 static
2005 int _lttng_field_statedump(struct lttng_session *session,
2006 const struct lttng_event_field *field,
2007 size_t nesting)
2008 {
2009 int ret = 0;
2010
2011 switch (field->type.atype) {
2012 case atype_integer:
2013 ret = print_tabs(session, nesting);
2014 if (ret)
2015 return ret;
2016 ret = lttng_metadata_printf(session,
2017 "integer { size = %u; align = %u; signed = %u; encoding = %s; base = %u;%s } _%s;\n",
2018 field->type.u.basic.integer.size,
2019 field->type.u.basic.integer.alignment,
2020 field->type.u.basic.integer.signedness,
2021 (field->type.u.basic.integer.encoding == lttng_encode_none)
2022 ? "none"
2023 : (field->type.u.basic.integer.encoding == lttng_encode_UTF8)
2024 ? "UTF8"
2025 : "ASCII",
2026 field->type.u.basic.integer.base,
2027 #if __BYTE_ORDER == __BIG_ENDIAN
2028 field->type.u.basic.integer.reverse_byte_order ? " byte_order = le;" : "",
2029 #else
2030 field->type.u.basic.integer.reverse_byte_order ? " byte_order = be;" : "",
2031 #endif
2032 field->name);
2033 break;
2034 case atype_enum:
2035 ret = _lttng_enum_statedump(session, field, nesting);
2036 break;
2037 case atype_array:
2038 case atype_array_bitfield:
2039 {
2040 const struct lttng_basic_type *elem_type;
2041
2042 elem_type = &field->type.u.array.elem_type;
2043 if (field->type.u.array.elem_alignment) {
2044 ret = print_tabs(session, nesting);
2045 if (ret)
2046 return ret;
2047 ret = lttng_metadata_printf(session,
2048 "struct { } align(%u) _%s_padding;\n",
2049 field->type.u.array.elem_alignment * CHAR_BIT,
2050 field->name);
2051 if (ret)
2052 return ret;
2053 }
2054 ret = print_tabs(session, nesting);
2055 if (ret)
2056 return ret;
2057 ret = lttng_metadata_printf(session,
2058 "integer { size = %u; align = %u; signed = %u; encoding = %s; base = %u;%s } _%s[%u];\n",
2059 elem_type->u.basic.integer.size,
2060 elem_type->u.basic.integer.alignment,
2061 elem_type->u.basic.integer.signedness,
2062 (elem_type->u.basic.integer.encoding == lttng_encode_none)
2063 ? "none"
2064 : (elem_type->u.basic.integer.encoding == lttng_encode_UTF8)
2065 ? "UTF8"
2066 : "ASCII",
2067 elem_type->u.basic.integer.base,
2068 #if __BYTE_ORDER == __BIG_ENDIAN
2069 elem_type->u.basic.integer.reverse_byte_order ? " byte_order = le;" : "",
2070 #else
2071 elem_type->u.basic.integer.reverse_byte_order ? " byte_order = be;" : "",
2072 #endif
2073 field->name, field->type.u.array.length);
2074 break;
2075 }
2076 case atype_sequence:
2077 case atype_sequence_bitfield:
2078 {
2079 const struct lttng_basic_type *elem_type;
2080 const struct lttng_basic_type *length_type;
2081
2082 elem_type = &field->type.u.sequence.elem_type;
2083 length_type = &field->type.u.sequence.length_type;
2084 ret = print_tabs(session, nesting);
2085 if (ret)
2086 return ret;
2087 ret = lttng_metadata_printf(session,
2088 "integer { size = %u; align = %u; signed = %u; encoding = %s; base = %u;%s } __%s_length;\n",
2089 length_type->u.basic.integer.size,
2090 (unsigned int) length_type->u.basic.integer.alignment,
2091 length_type->u.basic.integer.signedness,
2092 (length_type->u.basic.integer.encoding == lttng_encode_none)
2093 ? "none"
2094 : ((length_type->u.basic.integer.encoding == lttng_encode_UTF8)
2095 ? "UTF8"
2096 : "ASCII"),
2097 length_type->u.basic.integer.base,
2098 #if __BYTE_ORDER == __BIG_ENDIAN
2099 length_type->u.basic.integer.reverse_byte_order ? " byte_order = le;" : "",
2100 #else
2101 length_type->u.basic.integer.reverse_byte_order ? " byte_order = be;" : "",
2102 #endif
2103 field->name);
2104 if (ret)
2105 return ret;
2106
2107 if (field->type.u.sequence.elem_alignment) {
2108 ret = print_tabs(session, nesting);
2109 if (ret)
2110 return ret;
2111 ret = lttng_metadata_printf(session,
2112 "struct { } align(%u) _%s_padding;\n",
2113 field->type.u.sequence.elem_alignment * CHAR_BIT,
2114 field->name);
2115 if (ret)
2116 return ret;
2117 }
2118 ret = print_tabs(session, nesting);
2119 if (ret)
2120 return ret;
2121 ret = lttng_metadata_printf(session,
2122 "integer { size = %u; align = %u; signed = %u; encoding = %s; base = %u;%s } _%s[ __%s_length ];\n",
2123 elem_type->u.basic.integer.size,
2124 (unsigned int) elem_type->u.basic.integer.alignment,
2125 elem_type->u.basic.integer.signedness,
2126 (elem_type->u.basic.integer.encoding == lttng_encode_none)
2127 ? "none"
2128 : ((elem_type->u.basic.integer.encoding == lttng_encode_UTF8)
2129 ? "UTF8"
2130 : "ASCII"),
2131 elem_type->u.basic.integer.base,
2132 #if __BYTE_ORDER == __BIG_ENDIAN
2133 elem_type->u.basic.integer.reverse_byte_order ? " byte_order = le;" : "",
2134 #else
2135 elem_type->u.basic.integer.reverse_byte_order ? " byte_order = be;" : "",
2136 #endif
2137 field->name,
2138 field->name);
2139 break;
2140 }
2141
2142 case atype_string:
2143 /* Default encoding is UTF8 */
2144 ret = print_tabs(session, nesting);
2145 if (ret)
2146 return ret;
2147 ret = lttng_metadata_printf(session,
2148 "string%s _%s;\n",
2149 field->type.u.basic.string.encoding == lttng_encode_ASCII ?
2150 " { encoding = ASCII; }" : "",
2151 field->name);
2152 break;
2153 case atype_struct:
2154 ret = _lttng_struct_statedump(session, field, nesting);
2155 break;
2156 case atype_array_compound:
2157 ret = _lttng_array_compound_statedump(session, field, nesting);
2158 break;
2159 case atype_sequence_compound:
2160 ret = _lttng_sequence_compound_statedump(session, field, nesting);
2161 break;
2162 case atype_variant:
2163 ret = _lttng_variant_statedump(session, field, nesting);
2164 break;
2165
2166 default:
2167 WARN_ON_ONCE(1);
2168 return -EINVAL;
2169 }
2170 return ret;
2171 }
2172
2173 static
2174 int _lttng_context_metadata_statedump(struct lttng_session *session,
2175 struct lttng_ctx *ctx)
2176 {
2177 int ret = 0;
2178 int i;
2179
2180 if (!ctx)
2181 return 0;
2182 for (i = 0; i < ctx->nr_fields; i++) {
2183 const struct lttng_ctx_field *field = &ctx->fields[i];
2184
2185 ret = _lttng_field_statedump(session, &field->event_field, 2);
2186 if (ret)
2187 return ret;
2188 }
2189 return ret;
2190 }
2191
2192 static
2193 int _lttng_fields_metadata_statedump(struct lttng_session *session,
2194 struct lttng_event *event)
2195 {
2196 const struct lttng_event_desc *desc = event->desc;
2197 int ret = 0;
2198 int i;
2199
2200 for (i = 0; i < desc->nr_fields; i++) {
2201 const struct lttng_event_field *field = &desc->fields[i];
2202
2203 ret = _lttng_field_statedump(session, field, 2);
2204 if (ret)
2205 return ret;
2206 }
2207 return ret;
2208 }
2209
2210 /*
2211 * Must be called with sessions_mutex held.
2212 */
2213 static
2214 int _lttng_event_metadata_statedump(struct lttng_session *session,
2215 struct lttng_channel *chan,
2216 struct lttng_event *event)
2217 {
2218 int ret = 0;
2219
2220 if (event->metadata_dumped || !READ_ONCE(session->active))
2221 return 0;
2222 if (chan->channel_type == METADATA_CHANNEL)
2223 return 0;
2224
2225 ret = lttng_metadata_printf(session,
2226 "event {\n"
2227 " name = \"%s\";\n"
2228 " id = %u;\n"
2229 " stream_id = %u;\n",
2230 event->desc->name,
2231 event->id,
2232 event->chan->id);
2233 if (ret)
2234 goto end;
2235
2236 if (event->ctx) {
2237 ret = lttng_metadata_printf(session,
2238 " context := struct {\n");
2239 if (ret)
2240 goto end;
2241 }
2242 ret = _lttng_context_metadata_statedump(session, event->ctx);
2243 if (ret)
2244 goto end;
2245 if (event->ctx) {
2246 ret = lttng_metadata_printf(session,
2247 " };\n");
2248 if (ret)
2249 goto end;
2250 }
2251
2252 ret = lttng_metadata_printf(session,
2253 " fields := struct {\n"
2254 );
2255 if (ret)
2256 goto end;
2257
2258 ret = _lttng_fields_metadata_statedump(session, event);
2259 if (ret)
2260 goto end;
2261
2262 /*
2263 * LTTng space reservation can only reserve multiples of the
2264 * byte size.
2265 */
2266 ret = lttng_metadata_printf(session,
2267 " };\n"
2268 "};\n\n");
2269 if (ret)
2270 goto end;
2271
2272 event->metadata_dumped = 1;
2273 end:
2274 return ret;
2275
2276 }
2277
2278 /*
2279 * Must be called with sessions_mutex held.
2280 */
2281 static
2282 int _lttng_channel_metadata_statedump(struct lttng_session *session,
2283 struct lttng_channel *chan)
2284 {
2285 int ret = 0;
2286
2287 if (chan->metadata_dumped || !READ_ONCE(session->active))
2288 return 0;
2289
2290 if (chan->channel_type == METADATA_CHANNEL)
2291 return 0;
2292
2293 WARN_ON_ONCE(!chan->header_type);
2294 ret = lttng_metadata_printf(session,
2295 "stream {\n"
2296 " id = %u;\n"
2297 " event.header := %s;\n"
2298 " packet.context := struct packet_context;\n",
2299 chan->id,
2300 chan->header_type == 1 ? "struct event_header_compact" :
2301 "struct event_header_large");
2302 if (ret)
2303 goto end;
2304
2305 if (chan->ctx) {
2306 ret = lttng_metadata_printf(session,
2307 " event.context := struct {\n");
2308 if (ret)
2309 goto end;
2310 }
2311 ret = _lttng_context_metadata_statedump(session, chan->ctx);
2312 if (ret)
2313 goto end;
2314 if (chan->ctx) {
2315 ret = lttng_metadata_printf(session,
2316 " };\n");
2317 if (ret)
2318 goto end;
2319 }
2320
2321 ret = lttng_metadata_printf(session,
2322 "};\n\n");
2323
2324 chan->metadata_dumped = 1;
2325 end:
2326 return ret;
2327 }
2328
2329 /*
2330 * Must be called with sessions_mutex held.
2331 */
2332 static
2333 int _lttng_stream_packet_context_declare(struct lttng_session *session)
2334 {
2335 return lttng_metadata_printf(session,
2336 "struct packet_context {\n"
2337 " uint64_clock_monotonic_t timestamp_begin;\n"
2338 " uint64_clock_monotonic_t timestamp_end;\n"
2339 " uint64_t content_size;\n"
2340 " uint64_t packet_size;\n"
2341 " uint64_t packet_seq_num;\n"
2342 " unsigned long events_discarded;\n"
2343 " uint32_t cpu_id;\n"
2344 "};\n\n"
2345 );
2346 }
2347
2348 /*
2349 * Compact header:
2350 * id: range: 0 - 30.
2351 * id 31 is reserved to indicate an extended header.
2352 *
2353 * Large header:
2354 * id: range: 0 - 65534.
2355 * id 65535 is reserved to indicate an extended header.
2356 *
2357 * Must be called with sessions_mutex held.
2358 */
2359 static
2360 int _lttng_event_header_declare(struct lttng_session *session)
2361 {
2362 return lttng_metadata_printf(session,
2363 "struct event_header_compact {\n"
2364 " enum : uint5_t { compact = 0 ... 30, extended = 31 } id;\n"
2365 " variant <id> {\n"
2366 " struct {\n"
2367 " uint27_clock_monotonic_t timestamp;\n"
2368 " } compact;\n"
2369 " struct {\n"
2370 " uint32_t id;\n"
2371 " uint64_clock_monotonic_t timestamp;\n"
2372 " } extended;\n"
2373 " } v;\n"
2374 "} align(%u);\n"
2375 "\n"
2376 "struct event_header_large {\n"
2377 " enum : uint16_t { compact = 0 ... 65534, extended = 65535 } id;\n"
2378 " variant <id> {\n"
2379 " struct {\n"
2380 " uint32_clock_monotonic_t timestamp;\n"
2381 " } compact;\n"
2382 " struct {\n"
2383 " uint32_t id;\n"
2384 " uint64_clock_monotonic_t timestamp;\n"
2385 " } extended;\n"
2386 " } v;\n"
2387 "} align(%u);\n\n",
2388 lttng_alignof(uint32_t) * CHAR_BIT,
2389 lttng_alignof(uint16_t) * CHAR_BIT
2390 );
2391 }
2392
2393 /*
2394 * Approximation of NTP time of day to clock monotonic correlation,
2395 * taken at start of trace.
2396 * Yes, this is only an approximation. Yes, we can (and will) do better
2397 * in future versions.
2398 * This function may return a negative offset. It may happen if the
2399 * system sets the REALTIME clock to 0 after boot.
2400 */
2401 static
2402 int64_t measure_clock_offset(void)
2403 {
2404 uint64_t monotonic_avg, monotonic[2], realtime;
2405 uint64_t tcf = trace_clock_freq();
2406 int64_t offset;
2407 struct timespec rts = { 0, 0 };
2408 unsigned long flags;
2409
2410 /* Disable interrupts to increase correlation precision. */
2411 local_irq_save(flags);
2412 monotonic[0] = trace_clock_read64();
2413 getnstimeofday(&rts);
2414 monotonic[1] = trace_clock_read64();
2415 local_irq_restore(flags);
2416
2417 monotonic_avg = (monotonic[0] + monotonic[1]) >> 1;
2418 realtime = (uint64_t) rts.tv_sec * tcf;
2419 if (tcf == NSEC_PER_SEC) {
2420 realtime += rts.tv_nsec;
2421 } else {
2422 uint64_t n = rts.tv_nsec * tcf;
2423
2424 do_div(n, NSEC_PER_SEC);
2425 realtime += n;
2426 }
2427 offset = (int64_t) realtime - monotonic_avg;
2428 return offset;
2429 }
2430
2431 /*
2432 * Output metadata into this session's metadata buffers.
2433 * Must be called with sessions_mutex held.
2434 */
2435 static
2436 int _lttng_session_metadata_statedump(struct lttng_session *session)
2437 {
2438 unsigned char *uuid_c = session->uuid.b;
2439 unsigned char uuid_s[37], clock_uuid_s[BOOT_ID_LEN];
2440 struct lttng_channel *chan;
2441 struct lttng_event *event;
2442 int ret = 0;
2443
2444 if (!READ_ONCE(session->active))
2445 return 0;
2446 if (session->metadata_dumped)
2447 goto skip_session;
2448
2449 snprintf(uuid_s, sizeof(uuid_s),
2450 "%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
2451 uuid_c[0], uuid_c[1], uuid_c[2], uuid_c[3],
2452 uuid_c[4], uuid_c[5], uuid_c[6], uuid_c[7],
2453 uuid_c[8], uuid_c[9], uuid_c[10], uuid_c[11],
2454 uuid_c[12], uuid_c[13], uuid_c[14], uuid_c[15]);
2455
2456 ret = lttng_metadata_printf(session,
2457 "typealias integer { size = 8; align = %u; signed = false; } := uint8_t;\n"
2458 "typealias integer { size = 16; align = %u; signed = false; } := uint16_t;\n"
2459 "typealias integer { size = 32; align = %u; signed = false; } := uint32_t;\n"
2460 "typealias integer { size = 64; align = %u; signed = false; } := uint64_t;\n"
2461 "typealias integer { size = %u; align = %u; signed = false; } := unsigned long;\n"
2462 "typealias integer { size = 5; align = 1; signed = false; } := uint5_t;\n"
2463 "typealias integer { size = 27; align = 1; signed = false; } := uint27_t;\n"
2464 "\n"
2465 "trace {\n"
2466 " major = %u;\n"
2467 " minor = %u;\n"
2468 " uuid = \"%s\";\n"
2469 " byte_order = %s;\n"
2470 " packet.header := struct {\n"
2471 " uint32_t magic;\n"
2472 " uint8_t uuid[16];\n"
2473 " uint32_t stream_id;\n"
2474 " uint64_t stream_instance_id;\n"
2475 " };\n"
2476 "};\n\n",
2477 lttng_alignof(uint8_t) * CHAR_BIT,
2478 lttng_alignof(uint16_t) * CHAR_BIT,
2479 lttng_alignof(uint32_t) * CHAR_BIT,
2480 lttng_alignof(uint64_t) * CHAR_BIT,
2481 sizeof(unsigned long) * CHAR_BIT,
2482 lttng_alignof(unsigned long) * CHAR_BIT,
2483 CTF_SPEC_MAJOR,
2484 CTF_SPEC_MINOR,
2485 uuid_s,
2486 #if __BYTE_ORDER == __BIG_ENDIAN
2487 "be"
2488 #else
2489 "le"
2490 #endif
2491 );
2492 if (ret)
2493 goto end;
2494
2495 ret = lttng_metadata_printf(session,
2496 "env {\n"
2497 " hostname = \"%s\";\n"
2498 " domain = \"kernel\";\n"
2499 " sysname = \"%s\";\n"
2500 " kernel_release = \"%s\";\n"
2501 " kernel_version = \"%s\";\n"
2502 " tracer_name = \"lttng-modules\";\n"
2503 " tracer_major = %d;\n"
2504 " tracer_minor = %d;\n"
2505 " tracer_patchlevel = %d;\n"
2506 "};\n\n",
2507 current->nsproxy->uts_ns->name.nodename,
2508 utsname()->sysname,
2509 utsname()->release,
2510 utsname()->version,
2511 LTTNG_MODULES_MAJOR_VERSION,
2512 LTTNG_MODULES_MINOR_VERSION,
2513 LTTNG_MODULES_PATCHLEVEL_VERSION
2514 );
2515 if (ret)
2516 goto end;
2517
2518 ret = lttng_metadata_printf(session,
2519 "clock {\n"
2520 " name = \"%s\";\n",
2521 trace_clock_name()
2522 );
2523 if (ret)
2524 goto end;
2525
2526 if (!trace_clock_uuid(clock_uuid_s)) {
2527 ret = lttng_metadata_printf(session,
2528 " uuid = \"%s\";\n",
2529 clock_uuid_s
2530 );
2531 if (ret)
2532 goto end;
2533 }
2534
2535 ret = lttng_metadata_printf(session,
2536 " description = \"%s\";\n"
2537 " freq = %llu; /* Frequency, in Hz */\n"
2538 " /* clock value offset from Epoch is: offset * (1/freq) */\n"
2539 " offset = %lld;\n"
2540 "};\n\n",
2541 trace_clock_description(),
2542 (unsigned long long) trace_clock_freq(),
2543 (long long) measure_clock_offset()
2544 );
2545 if (ret)
2546 goto end;
2547
2548 ret = lttng_metadata_printf(session,
2549 "typealias integer {\n"
2550 " size = 27; align = 1; signed = false;\n"
2551 " map = clock.%s.value;\n"
2552 "} := uint27_clock_monotonic_t;\n"
2553 "\n"
2554 "typealias integer {\n"
2555 " size = 32; align = %u; signed = false;\n"
2556 " map = clock.%s.value;\n"
2557 "} := uint32_clock_monotonic_t;\n"
2558 "\n"
2559 "typealias integer {\n"
2560 " size = 64; align = %u; signed = false;\n"
2561 " map = clock.%s.value;\n"
2562 "} := uint64_clock_monotonic_t;\n\n",
2563 trace_clock_name(),
2564 lttng_alignof(uint32_t) * CHAR_BIT,
2565 trace_clock_name(),
2566 lttng_alignof(uint64_t) * CHAR_BIT,
2567 trace_clock_name()
2568 );
2569 if (ret)
2570 goto end;
2571
2572 ret = _lttng_stream_packet_context_declare(session);
2573 if (ret)
2574 goto end;
2575
2576 ret = _lttng_event_header_declare(session);
2577 if (ret)
2578 goto end;
2579
2580 skip_session:
2581 list_for_each_entry(chan, &session->chan, list) {
2582 ret = _lttng_channel_metadata_statedump(session, chan);
2583 if (ret)
2584 goto end;
2585 }
2586
2587 list_for_each_entry(event, &session->events, list) {
2588 ret = _lttng_event_metadata_statedump(session, event->chan, event);
2589 if (ret)
2590 goto end;
2591 }
2592 session->metadata_dumped = 1;
2593 end:
2594 return ret;
2595 }
2596
2597 /**
2598 * lttng_transport_register - LTT transport registration
2599 * @transport: transport structure
2600 *
2601 * Registers a transport which can be used as output to extract the data out of
2602 * LTTng. The module calling this registration function must ensure that no
2603 * trap-inducing code will be executed by the transport functions. E.g.
2604 * vmalloc_sync_all() must be called between a vmalloc and the moment the memory
2605 * is made visible to the transport function. This registration acts as a
2606 * vmalloc_sync_all. Therefore, only if the module allocates virtual memory
2607 * after its registration must it synchronize the TLBs.
2608 */
2609 void lttng_transport_register(struct lttng_transport *transport)
2610 {
2611 /*
2612 * Make sure no page fault can be triggered by the module about to be
2613 * registered. We deal with this here so we don't have to call
2614 * vmalloc_sync_all() in each module's init.
2615 */
2616 wrapper_vmalloc_sync_all();
2617
2618 mutex_lock(&sessions_mutex);
2619 list_add_tail(&transport->node, &lttng_transport_list);
2620 mutex_unlock(&sessions_mutex);
2621 }
2622 EXPORT_SYMBOL_GPL(lttng_transport_register);
2623
2624 /**
2625 * lttng_transport_unregister - LTT transport unregistration
2626 * @transport: transport structure
2627 */
2628 void lttng_transport_unregister(struct lttng_transport *transport)
2629 {
2630 mutex_lock(&sessions_mutex);
2631 list_del(&transport->node);
2632 mutex_unlock(&sessions_mutex);
2633 }
2634 EXPORT_SYMBOL_GPL(lttng_transport_unregister);
2635
2636 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(4,10,0))
2637
2638 enum cpuhp_state lttng_hp_prepare;
2639 enum cpuhp_state lttng_hp_online;
2640
2641 static int lttng_hotplug_prepare(unsigned int cpu, struct hlist_node *node)
2642 {
2643 struct lttng_cpuhp_node *lttng_node;
2644
2645 lttng_node = container_of(node, struct lttng_cpuhp_node, node);
2646 switch (lttng_node->component) {
2647 case LTTNG_RING_BUFFER_FRONTEND:
2648 return 0;
2649 case LTTNG_RING_BUFFER_BACKEND:
2650 return lttng_cpuhp_rb_backend_prepare(cpu, lttng_node);
2651 case LTTNG_RING_BUFFER_ITER:
2652 return 0;
2653 case LTTNG_CONTEXT_PERF_COUNTERS:
2654 return 0;
2655 default:
2656 return -EINVAL;
2657 }
2658 }
2659
2660 static int lttng_hotplug_dead(unsigned int cpu, struct hlist_node *node)
2661 {
2662 struct lttng_cpuhp_node *lttng_node;
2663
2664 lttng_node = container_of(node, struct lttng_cpuhp_node, node);
2665 switch (lttng_node->component) {
2666 case LTTNG_RING_BUFFER_FRONTEND:
2667 return lttng_cpuhp_rb_frontend_dead(cpu, lttng_node);
2668 case LTTNG_RING_BUFFER_BACKEND:
2669 return 0;
2670 case LTTNG_RING_BUFFER_ITER:
2671 return 0;
2672 case LTTNG_CONTEXT_PERF_COUNTERS:
2673 return lttng_cpuhp_perf_counter_dead(cpu, lttng_node);
2674 default:
2675 return -EINVAL;
2676 }
2677 }
2678
2679 static int lttng_hotplug_online(unsigned int cpu, struct hlist_node *node)
2680 {
2681 struct lttng_cpuhp_node *lttng_node;
2682
2683 lttng_node = container_of(node, struct lttng_cpuhp_node, node);
2684 switch (lttng_node->component) {
2685 case LTTNG_RING_BUFFER_FRONTEND:
2686 return lttng_cpuhp_rb_frontend_online(cpu, lttng_node);
2687 case LTTNG_RING_BUFFER_BACKEND:
2688 return 0;
2689 case LTTNG_RING_BUFFER_ITER:
2690 return lttng_cpuhp_rb_iter_online(cpu, lttng_node);
2691 case LTTNG_CONTEXT_PERF_COUNTERS:
2692 return lttng_cpuhp_perf_counter_online(cpu, lttng_node);
2693 default:
2694 return -EINVAL;
2695 }
2696 }
2697
2698 static int lttng_hotplug_offline(unsigned int cpu, struct hlist_node *node)
2699 {
2700 struct lttng_cpuhp_node *lttng_node;
2701
2702 lttng_node = container_of(node, struct lttng_cpuhp_node, node);
2703 switch (lttng_node->component) {
2704 case LTTNG_RING_BUFFER_FRONTEND:
2705 return lttng_cpuhp_rb_frontend_offline(cpu, lttng_node);
2706 case LTTNG_RING_BUFFER_BACKEND:
2707 return 0;
2708 case LTTNG_RING_BUFFER_ITER:
2709 return 0;
2710 case LTTNG_CONTEXT_PERF_COUNTERS:
2711 return 0;
2712 default:
2713 return -EINVAL;
2714 }
2715 }
2716
2717 static int __init lttng_init_cpu_hotplug(void)
2718 {
2719 int ret;
2720
2721 ret = cpuhp_setup_state_multi(CPUHP_BP_PREPARE_DYN, "lttng:prepare",
2722 lttng_hotplug_prepare,
2723 lttng_hotplug_dead);
2724 if (ret < 0) {
2725 return ret;
2726 }
2727 lttng_hp_prepare = ret;
2728 lttng_rb_set_hp_prepare(ret);
2729
2730 ret = cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN, "lttng:online",
2731 lttng_hotplug_online,
2732 lttng_hotplug_offline);
2733 if (ret < 0) {
2734 cpuhp_remove_multi_state(lttng_hp_prepare);
2735 lttng_hp_prepare = 0;
2736 return ret;
2737 }
2738 lttng_hp_online = ret;
2739 lttng_rb_set_hp_online(ret);
2740
2741 return 0;
2742 }
2743
2744 static void __exit lttng_exit_cpu_hotplug(void)
2745 {
2746 lttng_rb_set_hp_online(0);
2747 cpuhp_remove_multi_state(lttng_hp_online);
2748 lttng_rb_set_hp_prepare(0);
2749 cpuhp_remove_multi_state(lttng_hp_prepare);
2750 }
2751
2752 #else /* #if (LINUX_VERSION_CODE >= KERNEL_VERSION(4,10,0)) */
2753 static int lttng_init_cpu_hotplug(void)
2754 {
2755 return 0;
2756 }
2757 static void lttng_exit_cpu_hotplug(void)
2758 {
2759 }
2760 #endif /* #else #if (LINUX_VERSION_CODE >= KERNEL_VERSION(4,10,0)) */
2761
2762
2763 static int __init lttng_events_init(void)
2764 {
2765 int ret;
2766
2767 ret = wrapper_lttng_fixup_sig(THIS_MODULE);
2768 if (ret)
2769 return ret;
2770 ret = wrapper_get_pfnblock_flags_mask_init();
2771 if (ret)
2772 return ret;
2773 ret = wrapper_get_pageblock_flags_mask_init();
2774 if (ret)
2775 return ret;
2776 ret = lttng_probes_init();
2777 if (ret)
2778 return ret;
2779 ret = lttng_context_init();
2780 if (ret)
2781 return ret;
2782 ret = lttng_tracepoint_init();
2783 if (ret)
2784 goto error_tp;
2785 event_cache = KMEM_CACHE(lttng_event, 0);
2786 if (!event_cache) {
2787 ret = -ENOMEM;
2788 goto error_kmem;
2789 }
2790 ret = lttng_abi_init();
2791 if (ret)
2792 goto error_abi;
2793 ret = lttng_logger_init();
2794 if (ret)
2795 goto error_logger;
2796 ret = lttng_init_cpu_hotplug();
2797 if (ret)
2798 goto error_hotplug;
2799 printk(KERN_NOTICE "LTTng: Loaded modules v%s.%s.%s%s (%s)%s%s\n",
2800 __stringify(LTTNG_MODULES_MAJOR_VERSION),
2801 __stringify(LTTNG_MODULES_MINOR_VERSION),
2802 __stringify(LTTNG_MODULES_PATCHLEVEL_VERSION),
2803 LTTNG_MODULES_EXTRAVERSION,
2804 LTTNG_VERSION_NAME,
2805 #ifdef LTTNG_EXTRA_VERSION_GIT
2806 LTTNG_EXTRA_VERSION_GIT[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_GIT,
2807 #else
2808 "",
2809 #endif
2810 #ifdef LTTNG_EXTRA_VERSION_NAME
2811 LTTNG_EXTRA_VERSION_NAME[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_NAME);
2812 #else
2813 "");
2814 #endif
2815 return 0;
2816
2817 error_hotplug:
2818 lttng_logger_exit();
2819 error_logger:
2820 lttng_abi_exit();
2821 error_abi:
2822 kmem_cache_destroy(event_cache);
2823 error_kmem:
2824 lttng_tracepoint_exit();
2825 error_tp:
2826 lttng_context_exit();
2827 printk(KERN_NOTICE "LTTng: Failed to load modules v%s.%s.%s%s (%s)%s%s\n",
2828 __stringify(LTTNG_MODULES_MAJOR_VERSION),
2829 __stringify(LTTNG_MODULES_MINOR_VERSION),
2830 __stringify(LTTNG_MODULES_PATCHLEVEL_VERSION),
2831 LTTNG_MODULES_EXTRAVERSION,
2832 LTTNG_VERSION_NAME,
2833 #ifdef LTTNG_EXTRA_VERSION_GIT
2834 LTTNG_EXTRA_VERSION_GIT[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_GIT,
2835 #else
2836 "",
2837 #endif
2838 #ifdef LTTNG_EXTRA_VERSION_NAME
2839 LTTNG_EXTRA_VERSION_NAME[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_NAME);
2840 #else
2841 "");
2842 #endif
2843 return ret;
2844 }
2845
2846 module_init(lttng_events_init);
2847
2848 static void __exit lttng_events_exit(void)
2849 {
2850 struct lttng_session *session, *tmpsession;
2851
2852 lttng_exit_cpu_hotplug();
2853 lttng_logger_exit();
2854 lttng_abi_exit();
2855 list_for_each_entry_safe(session, tmpsession, &sessions, list)
2856 lttng_session_destroy(session);
2857 kmem_cache_destroy(event_cache);
2858 lttng_tracepoint_exit();
2859 lttng_context_exit();
2860 printk(KERN_NOTICE "LTTng: Unloaded modules v%s.%s.%s%s (%s)%s%s\n",
2861 __stringify(LTTNG_MODULES_MAJOR_VERSION),
2862 __stringify(LTTNG_MODULES_MINOR_VERSION),
2863 __stringify(LTTNG_MODULES_PATCHLEVEL_VERSION),
2864 LTTNG_MODULES_EXTRAVERSION,
2865 LTTNG_VERSION_NAME,
2866 #ifdef LTTNG_EXTRA_VERSION_GIT
2867 LTTNG_EXTRA_VERSION_GIT[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_GIT,
2868 #else
2869 "",
2870 #endif
2871 #ifdef LTTNG_EXTRA_VERSION_NAME
2872 LTTNG_EXTRA_VERSION_NAME[0] == '\0' ? "" : " - " LTTNG_EXTRA_VERSION_NAME);
2873 #else
2874 "");
2875 #endif
2876 }
2877
2878 module_exit(lttng_events_exit);
2879
2880 #include "extra_version/patches.i"
2881 #ifdef LTTNG_EXTRA_VERSION_GIT
2882 MODULE_INFO(extra_version_git, LTTNG_EXTRA_VERSION_GIT);
2883 #endif
2884 #ifdef LTTNG_EXTRA_VERSION_NAME
2885 MODULE_INFO(extra_version_name, LTTNG_EXTRA_VERSION_NAME);
2886 #endif
2887 MODULE_LICENSE("GPL and additional rights");
2888 MODULE_AUTHOR("Mathieu Desnoyers <mathieu.desnoyers@efficios.com>");
2889 MODULE_DESCRIPTION("LTTng tracer");
2890 MODULE_VERSION(__stringify(LTTNG_MODULES_MAJOR_VERSION) "."
2891 __stringify(LTTNG_MODULES_MINOR_VERSION) "."
2892 __stringify(LTTNG_MODULES_PATCHLEVEL_VERSION)
2893 LTTNG_MODULES_EXTRAVERSION);
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