Implement file-backed ring buffer
[lttng-ust.git] / liblttng-ust-ctl / ustctl.c
1 /*
2 * Copyright (C) 2011 - Julien Desfossez <julien.desfossez@polymtl.ca>
3 * Copyright (C) 2011-2013 - Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; version 2 of the License only.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License along
15 * with this program; if not, write to the Free Software Foundation, Inc.,
16 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
17 */
18
19 #define _GNU_SOURCE
20 #include <string.h>
21 #include <lttng/ust-ctl.h>
22 #include <lttng/ust-abi.h>
23 #include <lttng/ust-events.h>
24 #include <sys/mman.h>
25 #include <byteswap.h>
26
27 #include <usterr-signal-safe.h>
28 #include <ust-comm.h>
29 #include <helper.h>
30
31 #include "../libringbuffer/backend.h"
32 #include "../libringbuffer/frontend.h"
33 #include "../liblttng-ust/wait.h"
34 #include "../liblttng-ust/lttng-rb-clients.h"
35
36 /*
37 * Number of milliseconds to retry before failing metadata writes on
38 * buffer full condition. (10 seconds)
39 */
40 #define LTTNG_METADATA_TIMEOUT_MSEC 10000
41
42 /*
43 * Channel representation within consumer.
44 */
45 struct ustctl_consumer_channel {
46 struct lttng_channel *chan; /* lttng channel buffers */
47
48 /* initial attributes */
49 struct ustctl_consumer_channel_attr attr;
50 int wait_fd; /* monitor close() */
51 int wakeup_fd; /* monitor close() */
52 };
53
54 /*
55 * Stream representation within consumer.
56 */
57 struct ustctl_consumer_stream {
58 struct lttng_ust_shm_handle *handle; /* shared-memory handle */
59 struct lttng_ust_lib_ring_buffer *buf;
60 struct ustctl_consumer_channel *chan;
61 int shm_fd, wait_fd, wakeup_fd;
62 int cpu;
63 uint64_t memory_map_size;
64 };
65
66 extern void lttng_ring_buffer_client_overwrite_init(void);
67 extern void lttng_ring_buffer_client_overwrite_rt_init(void);
68 extern void lttng_ring_buffer_client_discard_init(void);
69 extern void lttng_ring_buffer_client_discard_rt_init(void);
70 extern void lttng_ring_buffer_metadata_client_init(void);
71 extern void lttng_ring_buffer_client_overwrite_exit(void);
72 extern void lttng_ring_buffer_client_overwrite_rt_exit(void);
73 extern void lttng_ring_buffer_client_discard_exit(void);
74 extern void lttng_ring_buffer_client_discard_rt_exit(void);
75 extern void lttng_ring_buffer_metadata_client_exit(void);
76
77 volatile enum ust_loglevel ust_loglevel;
78
79 int ustctl_release_handle(int sock, int handle)
80 {
81 struct ustcomm_ust_msg lum;
82 struct ustcomm_ust_reply lur;
83
84 if (sock < 0 || handle < 0)
85 return 0;
86 memset(&lum, 0, sizeof(lum));
87 lum.handle = handle;
88 lum.cmd = LTTNG_UST_RELEASE;
89 return ustcomm_send_app_cmd(sock, &lum, &lur);
90 }
91
92 /*
93 * If sock is negative, it means we don't have to notify the other side
94 * (e.g. application has already vanished).
95 */
96 int ustctl_release_object(int sock, struct lttng_ust_object_data *data)
97 {
98 int ret;
99
100 if (!data)
101 return -EINVAL;
102
103 switch (data->type) {
104 case LTTNG_UST_OBJECT_TYPE_CHANNEL:
105 if (data->u.channel.wakeup_fd >= 0) {
106 ret = close(data->u.channel.wakeup_fd);
107 if (ret < 0) {
108 ret = -errno;
109 return ret;
110 }
111 }
112 free(data->u.channel.data);
113 break;
114 case LTTNG_UST_OBJECT_TYPE_STREAM:
115 if (data->u.stream.shm_fd >= 0) {
116 ret = close(data->u.stream.shm_fd);
117 if (ret < 0) {
118 ret = -errno;
119 return ret;
120 }
121 }
122 if (data->u.stream.wakeup_fd >= 0) {
123 ret = close(data->u.stream.wakeup_fd);
124 if (ret < 0) {
125 ret = -errno;
126 return ret;
127 }
128 }
129 break;
130 case LTTNG_UST_OBJECT_TYPE_EVENT:
131 case LTTNG_UST_OBJECT_TYPE_CONTEXT:
132 break;
133 default:
134 assert(0);
135 }
136 return ustctl_release_handle(sock, data->handle);
137 }
138
139 /*
140 * Send registration done packet to the application.
141 */
142 int ustctl_register_done(int sock)
143 {
144 struct ustcomm_ust_msg lum;
145 struct ustcomm_ust_reply lur;
146 int ret;
147
148 DBG("Sending register done command to %d", sock);
149 memset(&lum, 0, sizeof(lum));
150 lum.handle = LTTNG_UST_ROOT_HANDLE;
151 lum.cmd = LTTNG_UST_REGISTER_DONE;
152 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
153 if (ret)
154 return ret;
155 return 0;
156 }
157
158 /*
159 * returns session handle.
160 */
161 int ustctl_create_session(int sock)
162 {
163 struct ustcomm_ust_msg lum;
164 struct ustcomm_ust_reply lur;
165 int ret, session_handle;
166
167 /* Create session */
168 memset(&lum, 0, sizeof(lum));
169 lum.handle = LTTNG_UST_ROOT_HANDLE;
170 lum.cmd = LTTNG_UST_SESSION;
171 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
172 if (ret)
173 return ret;
174 session_handle = lur.ret_val;
175 DBG("received session handle %u", session_handle);
176 return session_handle;
177 }
178
179 int ustctl_create_event(int sock, struct lttng_ust_event *ev,
180 struct lttng_ust_object_data *channel_data,
181 struct lttng_ust_object_data **_event_data)
182 {
183 struct ustcomm_ust_msg lum;
184 struct ustcomm_ust_reply lur;
185 struct lttng_ust_object_data *event_data;
186 int ret;
187
188 if (!channel_data || !_event_data)
189 return -EINVAL;
190
191 event_data = zmalloc(sizeof(*event_data));
192 if (!event_data)
193 return -ENOMEM;
194 event_data->type = LTTNG_UST_OBJECT_TYPE_EVENT;
195 memset(&lum, 0, sizeof(lum));
196 lum.handle = channel_data->handle;
197 lum.cmd = LTTNG_UST_EVENT;
198 strncpy(lum.u.event.name, ev->name,
199 LTTNG_UST_SYM_NAME_LEN);
200 lum.u.event.instrumentation = ev->instrumentation;
201 lum.u.event.loglevel_type = ev->loglevel_type;
202 lum.u.event.loglevel = ev->loglevel;
203 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
204 if (ret) {
205 free(event_data);
206 return ret;
207 }
208 event_data->handle = lur.ret_val;
209 DBG("received event handle %u", event_data->handle);
210 *_event_data = event_data;
211 return 0;
212 }
213
214 int ustctl_add_context(int sock, struct lttng_ust_context *ctx,
215 struct lttng_ust_object_data *obj_data,
216 struct lttng_ust_object_data **_context_data)
217 {
218 struct ustcomm_ust_msg lum;
219 struct ustcomm_ust_reply lur;
220 struct lttng_ust_object_data *context_data;
221 int ret;
222
223 if (!obj_data || !_context_data)
224 return -EINVAL;
225
226 context_data = zmalloc(sizeof(*context_data));
227 if (!context_data)
228 return -ENOMEM;
229 context_data->type = LTTNG_UST_OBJECT_TYPE_CONTEXT;
230 memset(&lum, 0, sizeof(lum));
231 lum.handle = obj_data->handle;
232 lum.cmd = LTTNG_UST_CONTEXT;
233 lum.u.context = *ctx;
234 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
235 if (ret) {
236 free(context_data);
237 return ret;
238 }
239 context_data->handle = -1;
240 DBG("Context created successfully");
241 *_context_data = context_data;
242 return ret;
243 }
244
245 int ustctl_set_filter(int sock, struct lttng_ust_filter_bytecode *bytecode,
246 struct lttng_ust_object_data *obj_data)
247 {
248 struct ustcomm_ust_msg lum;
249 struct ustcomm_ust_reply lur;
250 int ret;
251
252 if (!obj_data)
253 return -EINVAL;
254
255 memset(&lum, 0, sizeof(lum));
256 lum.handle = obj_data->handle;
257 lum.cmd = LTTNG_UST_FILTER;
258 lum.u.filter.data_size = bytecode->len;
259 lum.u.filter.reloc_offset = bytecode->reloc_offset;
260 lum.u.filter.seqnum = bytecode->seqnum;
261
262 ret = ustcomm_send_app_msg(sock, &lum);
263 if (ret)
264 return ret;
265 /* send var len bytecode */
266 ret = ustcomm_send_unix_sock(sock, bytecode->data,
267 bytecode->len);
268 if (ret < 0) {
269 return ret;
270 }
271 if (ret != bytecode->len)
272 return -EINVAL;
273 return ustcomm_recv_app_reply(sock, &lur, lum.handle, lum.cmd);
274 }
275
276 int ustctl_set_exclusion(int sock, struct lttng_ust_event_exclusion *exclusion,
277 struct lttng_ust_object_data *obj_data)
278 {
279 struct ustcomm_ust_msg lum;
280 struct ustcomm_ust_reply lur;
281 int ret;
282
283 if (!obj_data) {
284 return -EINVAL;
285 }
286
287 memset(&lum, 0, sizeof(lum));
288 lum.handle = obj_data->handle;
289 lum.cmd = LTTNG_UST_EXCLUSION;
290 lum.u.exclusion.count = exclusion->count;
291
292 ret = ustcomm_send_app_msg(sock, &lum);
293 if (ret) {
294 return ret;
295 }
296
297 /* send var len exclusion names */
298 ret = ustcomm_send_unix_sock(sock,
299 exclusion->names,
300 exclusion->count * LTTNG_UST_SYM_NAME_LEN);
301 if (ret < 0) {
302 return ret;
303 }
304 if (ret != exclusion->count * LTTNG_UST_SYM_NAME_LEN) {
305 return -EINVAL;
306 }
307 return ustcomm_recv_app_reply(sock, &lur, lum.handle, lum.cmd);
308 }
309
310 /* Enable event, channel and session ioctl */
311 int ustctl_enable(int sock, struct lttng_ust_object_data *object)
312 {
313 struct ustcomm_ust_msg lum;
314 struct ustcomm_ust_reply lur;
315 int ret;
316
317 if (!object)
318 return -EINVAL;
319
320 memset(&lum, 0, sizeof(lum));
321 lum.handle = object->handle;
322 lum.cmd = LTTNG_UST_ENABLE;
323 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
324 if (ret)
325 return ret;
326 DBG("enabled handle %u", object->handle);
327 return 0;
328 }
329
330 /* Disable event, channel and session ioctl */
331 int ustctl_disable(int sock, struct lttng_ust_object_data *object)
332 {
333 struct ustcomm_ust_msg lum;
334 struct ustcomm_ust_reply lur;
335 int ret;
336
337 if (!object)
338 return -EINVAL;
339
340 memset(&lum, 0, sizeof(lum));
341 lum.handle = object->handle;
342 lum.cmd = LTTNG_UST_DISABLE;
343 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
344 if (ret)
345 return ret;
346 DBG("disable handle %u", object->handle);
347 return 0;
348 }
349
350 int ustctl_start_session(int sock, int handle)
351 {
352 struct lttng_ust_object_data obj;
353
354 obj.handle = handle;
355 return ustctl_enable(sock, &obj);
356 }
357
358 int ustctl_stop_session(int sock, int handle)
359 {
360 struct lttng_ust_object_data obj;
361
362 obj.handle = handle;
363 return ustctl_disable(sock, &obj);
364 }
365
366 int ustctl_tracepoint_list(int sock)
367 {
368 struct ustcomm_ust_msg lum;
369 struct ustcomm_ust_reply lur;
370 int ret, tp_list_handle;
371
372 memset(&lum, 0, sizeof(lum));
373 lum.handle = LTTNG_UST_ROOT_HANDLE;
374 lum.cmd = LTTNG_UST_TRACEPOINT_LIST;
375 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
376 if (ret)
377 return ret;
378 tp_list_handle = lur.ret_val;
379 DBG("received tracepoint list handle %u", tp_list_handle);
380 return tp_list_handle;
381 }
382
383 int ustctl_tracepoint_list_get(int sock, int tp_list_handle,
384 struct lttng_ust_tracepoint_iter *iter)
385 {
386 struct ustcomm_ust_msg lum;
387 struct ustcomm_ust_reply lur;
388 int ret;
389
390 if (!iter)
391 return -EINVAL;
392
393 memset(&lum, 0, sizeof(lum));
394 lum.handle = tp_list_handle;
395 lum.cmd = LTTNG_UST_TRACEPOINT_LIST_GET;
396 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
397 if (ret)
398 return ret;
399 DBG("received tracepoint list entry name %s loglevel %d",
400 lur.u.tracepoint.name,
401 lur.u.tracepoint.loglevel);
402 memcpy(iter, &lur.u.tracepoint, sizeof(*iter));
403 return 0;
404 }
405
406 int ustctl_tracepoint_field_list(int sock)
407 {
408 struct ustcomm_ust_msg lum;
409 struct ustcomm_ust_reply lur;
410 int ret, tp_field_list_handle;
411
412 memset(&lum, 0, sizeof(lum));
413 lum.handle = LTTNG_UST_ROOT_HANDLE;
414 lum.cmd = LTTNG_UST_TRACEPOINT_FIELD_LIST;
415 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
416 if (ret)
417 return ret;
418 tp_field_list_handle = lur.ret_val;
419 DBG("received tracepoint field list handle %u", tp_field_list_handle);
420 return tp_field_list_handle;
421 }
422
423 int ustctl_tracepoint_field_list_get(int sock, int tp_field_list_handle,
424 struct lttng_ust_field_iter *iter)
425 {
426 struct ustcomm_ust_msg lum;
427 struct ustcomm_ust_reply lur;
428 int ret;
429 ssize_t len;
430
431 if (!iter)
432 return -EINVAL;
433
434 memset(&lum, 0, sizeof(lum));
435 lum.handle = tp_field_list_handle;
436 lum.cmd = LTTNG_UST_TRACEPOINT_FIELD_LIST_GET;
437 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
438 if (ret)
439 return ret;
440 len = ustcomm_recv_unix_sock(sock, iter, sizeof(*iter));
441 if (len != sizeof(*iter)) {
442 return -EINVAL;
443 }
444 DBG("received tracepoint field list entry event_name %s event_loglevel %d field_name %s field_type %d",
445 iter->event_name,
446 iter->loglevel,
447 iter->field_name,
448 iter->type);
449 return 0;
450 }
451
452 int ustctl_tracer_version(int sock, struct lttng_ust_tracer_version *v)
453 {
454 struct ustcomm_ust_msg lum;
455 struct ustcomm_ust_reply lur;
456 int ret;
457
458 if (!v)
459 return -EINVAL;
460
461 memset(&lum, 0, sizeof(lum));
462 lum.handle = LTTNG_UST_ROOT_HANDLE;
463 lum.cmd = LTTNG_UST_TRACER_VERSION;
464 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
465 if (ret)
466 return ret;
467 memcpy(v, &lur.u.version, sizeof(*v));
468 DBG("received tracer version");
469 return 0;
470 }
471
472 int ustctl_wait_quiescent(int sock)
473 {
474 struct ustcomm_ust_msg lum;
475 struct ustcomm_ust_reply lur;
476 int ret;
477
478 memset(&lum, 0, sizeof(lum));
479 lum.handle = LTTNG_UST_ROOT_HANDLE;
480 lum.cmd = LTTNG_UST_WAIT_QUIESCENT;
481 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
482 if (ret)
483 return ret;
484 DBG("waited for quiescent state");
485 return 0;
486 }
487
488 int ustctl_calibrate(int sock, struct lttng_ust_calibrate *calibrate)
489 {
490 if (!calibrate)
491 return -EINVAL;
492
493 return -ENOSYS;
494 }
495
496 int ustctl_sock_flush_buffer(int sock, struct lttng_ust_object_data *object)
497 {
498 struct ustcomm_ust_msg lum;
499 struct ustcomm_ust_reply lur;
500 int ret;
501
502 if (!object)
503 return -EINVAL;
504
505 memset(&lum, 0, sizeof(lum));
506 lum.handle = object->handle;
507 lum.cmd = LTTNG_UST_FLUSH_BUFFER;
508 ret = ustcomm_send_app_cmd(sock, &lum, &lur);
509 if (ret)
510 return ret;
511 DBG("flushed buffer handle %u", object->handle);
512 return 0;
513 }
514
515 static
516 int ustctl_send_channel(int sock,
517 enum lttng_ust_chan_type type,
518 void *data,
519 uint64_t size,
520 int wakeup_fd,
521 int send_fd_only)
522 {
523 ssize_t len;
524
525 if (!send_fd_only) {
526 /* Send mmap size */
527 len = ustcomm_send_unix_sock(sock, &size, sizeof(size));
528 if (len != sizeof(size)) {
529 if (len < 0)
530 return len;
531 else
532 return -EIO;
533 }
534
535 /* Send channel type */
536 len = ustcomm_send_unix_sock(sock, &type, sizeof(type));
537 if (len != sizeof(type)) {
538 if (len < 0)
539 return len;
540 else
541 return -EIO;
542 }
543 }
544
545 /* Send channel data */
546 len = ustcomm_send_unix_sock(sock, data, size);
547 if (len != size) {
548 if (len < 0)
549 return len;
550 else
551 return -EIO;
552 }
553
554 /* Send wakeup fd */
555 len = ustcomm_send_fds_unix_sock(sock, &wakeup_fd, 1);
556 if (len <= 0) {
557 if (len < 0)
558 return len;
559 else
560 return -EIO;
561 }
562 return 0;
563 }
564
565 static
566 int ustctl_send_stream(int sock,
567 uint32_t stream_nr,
568 uint64_t memory_map_size,
569 int shm_fd, int wakeup_fd,
570 int send_fd_only)
571 {
572 ssize_t len;
573 int fds[2];
574
575 if (!send_fd_only) {
576 if (shm_fd < 0) {
577 /* finish iteration */
578 uint64_t v = -1;
579
580 len = ustcomm_send_unix_sock(sock, &v, sizeof(v));
581 if (len != sizeof(v)) {
582 if (len < 0)
583 return len;
584 else
585 return -EIO;
586 }
587 return 0;
588 }
589
590 /* Send mmap size */
591 len = ustcomm_send_unix_sock(sock, &memory_map_size,
592 sizeof(memory_map_size));
593 if (len != sizeof(memory_map_size)) {
594 if (len < 0)
595 return len;
596 else
597 return -EIO;
598 }
599
600 /* Send stream nr */
601 len = ustcomm_send_unix_sock(sock, &stream_nr,
602 sizeof(stream_nr));
603 if (len != sizeof(stream_nr)) {
604 if (len < 0)
605 return len;
606 else
607 return -EIO;
608 }
609 }
610
611 /* Send shm fd and wakeup fd */
612 fds[0] = shm_fd;
613 fds[1] = wakeup_fd;
614 len = ustcomm_send_fds_unix_sock(sock, fds, 2);
615 if (len <= 0) {
616 if (len < 0)
617 return len;
618 else
619 return -EIO;
620 }
621 return 0;
622 }
623
624 int ustctl_recv_channel_from_consumer(int sock,
625 struct lttng_ust_object_data **_channel_data)
626 {
627 struct lttng_ust_object_data *channel_data;
628 ssize_t len;
629 int wakeup_fd;
630 int ret;
631
632 channel_data = zmalloc(sizeof(*channel_data));
633 if (!channel_data) {
634 ret = -ENOMEM;
635 goto error_alloc;
636 }
637 channel_data->type = LTTNG_UST_OBJECT_TYPE_CHANNEL;
638 channel_data->handle = -1;
639
640 /* recv mmap size */
641 len = ustcomm_recv_unix_sock(sock, &channel_data->size,
642 sizeof(channel_data->size));
643 if (len != sizeof(channel_data->size)) {
644 if (len < 0)
645 ret = len;
646 else
647 ret = -EINVAL;
648 goto error;
649 }
650
651 /* recv channel type */
652 len = ustcomm_recv_unix_sock(sock, &channel_data->u.channel.type,
653 sizeof(channel_data->u.channel.type));
654 if (len != sizeof(channel_data->u.channel.type)) {
655 if (len < 0)
656 ret = len;
657 else
658 ret = -EINVAL;
659 goto error;
660 }
661
662 /* recv channel data */
663 channel_data->u.channel.data = zmalloc(channel_data->size);
664 if (!channel_data->u.channel.data) {
665 ret = -ENOMEM;
666 goto error;
667 }
668 len = ustcomm_recv_unix_sock(sock, channel_data->u.channel.data,
669 channel_data->size);
670 if (len != channel_data->size) {
671 if (len < 0)
672 ret = len;
673 else
674 ret = -EINVAL;
675 goto error_recv_data;
676 }
677 /* recv wakeup fd */
678 len = ustcomm_recv_fds_unix_sock(sock, &wakeup_fd, 1);
679 if (len <= 0) {
680 if (len < 0) {
681 ret = len;
682 goto error_recv_data;
683 } else {
684 ret = -EIO;
685 goto error_recv_data;
686 }
687 }
688 channel_data->u.channel.wakeup_fd = wakeup_fd;
689 *_channel_data = channel_data;
690 return 0;
691
692 error_recv_data:
693 free(channel_data->u.channel.data);
694 error:
695 free(channel_data);
696 error_alloc:
697 return ret;
698 }
699
700 int ustctl_recv_stream_from_consumer(int sock,
701 struct lttng_ust_object_data **_stream_data)
702 {
703 struct lttng_ust_object_data *stream_data;
704 ssize_t len;
705 int ret;
706 int fds[2];
707
708 stream_data = zmalloc(sizeof(*stream_data));
709 if (!stream_data) {
710 ret = -ENOMEM;
711 goto error_alloc;
712 }
713
714 stream_data->type = LTTNG_UST_OBJECT_TYPE_STREAM;
715 stream_data->handle = -1;
716
717 /* recv mmap size */
718 len = ustcomm_recv_unix_sock(sock, &stream_data->size,
719 sizeof(stream_data->size));
720 if (len != sizeof(stream_data->size)) {
721 if (len < 0)
722 ret = len;
723 else
724 ret = -EINVAL;
725 goto error;
726 }
727 if (stream_data->size == -1) {
728 ret = -LTTNG_UST_ERR_NOENT;
729 goto error;
730 }
731
732 /* recv stream nr */
733 len = ustcomm_recv_unix_sock(sock, &stream_data->u.stream.stream_nr,
734 sizeof(stream_data->u.stream.stream_nr));
735 if (len != sizeof(stream_data->u.stream.stream_nr)) {
736 if (len < 0)
737 ret = len;
738 else
739 ret = -EINVAL;
740 goto error;
741 }
742
743 /* recv shm fd and wakeup fd */
744 len = ustcomm_recv_fds_unix_sock(sock, fds, 2);
745 if (len <= 0) {
746 if (len < 0) {
747 ret = len;
748 goto error;
749 } else {
750 ret = -EIO;
751 goto error;
752 }
753 }
754 stream_data->u.stream.shm_fd = fds[0];
755 stream_data->u.stream.wakeup_fd = fds[1];
756 *_stream_data = stream_data;
757 return 0;
758
759 error:
760 free(stream_data);
761 error_alloc:
762 return ret;
763 }
764
765 int ustctl_send_channel_to_ust(int sock, int session_handle,
766 struct lttng_ust_object_data *channel_data)
767 {
768 struct ustcomm_ust_msg lum;
769 struct ustcomm_ust_reply lur;
770 int ret;
771
772 if (!channel_data)
773 return -EINVAL;
774
775 memset(&lum, 0, sizeof(lum));
776 lum.handle = session_handle;
777 lum.cmd = LTTNG_UST_CHANNEL;
778 lum.u.channel.len = channel_data->size;
779 lum.u.channel.type = channel_data->u.channel.type;
780 ret = ustcomm_send_app_msg(sock, &lum);
781 if (ret)
782 return ret;
783
784 ret = ustctl_send_channel(sock,
785 channel_data->u.channel.type,
786 channel_data->u.channel.data,
787 channel_data->size,
788 channel_data->u.channel.wakeup_fd,
789 1);
790 if (ret)
791 return ret;
792 ret = ustcomm_recv_app_reply(sock, &lur, lum.handle, lum.cmd);
793 if (!ret) {
794 channel_data->handle = lur.ret_val;
795 }
796 return ret;
797 }
798
799 int ustctl_send_stream_to_ust(int sock,
800 struct lttng_ust_object_data *channel_data,
801 struct lttng_ust_object_data *stream_data)
802 {
803 struct ustcomm_ust_msg lum;
804 struct ustcomm_ust_reply lur;
805 int ret;
806
807 memset(&lum, 0, sizeof(lum));
808 lum.handle = channel_data->handle;
809 lum.cmd = LTTNG_UST_STREAM;
810 lum.u.stream.len = stream_data->size;
811 lum.u.stream.stream_nr = stream_data->u.stream.stream_nr;
812 ret = ustcomm_send_app_msg(sock, &lum);
813 if (ret)
814 return ret;
815
816 assert(stream_data);
817 assert(stream_data->type == LTTNG_UST_OBJECT_TYPE_STREAM);
818
819 ret = ustctl_send_stream(sock,
820 stream_data->u.stream.stream_nr,
821 stream_data->size,
822 stream_data->u.stream.shm_fd,
823 stream_data->u.stream.wakeup_fd, 1);
824 if (ret)
825 return ret;
826 return ustcomm_recv_app_reply(sock, &lur, lum.handle, lum.cmd);
827 }
828
829 int ustctl_duplicate_ust_object_data(struct lttng_ust_object_data **dest,
830 struct lttng_ust_object_data *src)
831 {
832 struct lttng_ust_object_data *obj;
833 int ret;
834
835 if (src->handle != -1) {
836 ret = -EINVAL;
837 goto error;
838 }
839
840 obj = zmalloc(sizeof(*obj));
841 if (!obj) {
842 ret = -ENOMEM;
843 goto error;
844 }
845
846 obj->type = src->type;
847 obj->handle = src->handle;
848 obj->size = src->size;
849
850 switch (obj->type) {
851 case LTTNG_UST_OBJECT_TYPE_CHANNEL:
852 {
853 obj->u.channel.type = src->u.channel.type;
854 if (src->u.channel.wakeup_fd >= 0) {
855 obj->u.channel.wakeup_fd =
856 dup(src->u.channel.wakeup_fd);
857 if (obj->u.channel.wakeup_fd < 0) {
858 ret = errno;
859 goto chan_error_wakeup_fd;
860 }
861 } else {
862 obj->u.channel.wakeup_fd =
863 src->u.channel.wakeup_fd;
864 }
865 obj->u.channel.data = zmalloc(obj->size);
866 if (!obj->u.channel.data) {
867 ret = -ENOMEM;
868 goto chan_error_alloc;
869 }
870 memcpy(obj->u.channel.data, src->u.channel.data, obj->size);
871 break;
872
873 chan_error_alloc:
874 if (src->u.channel.wakeup_fd >= 0) {
875 int closeret;
876
877 closeret = close(obj->u.channel.wakeup_fd);
878 if (closeret) {
879 PERROR("close");
880 }
881 }
882 chan_error_wakeup_fd:
883 goto error_type;
884
885 }
886
887 case LTTNG_UST_OBJECT_TYPE_STREAM:
888 {
889 obj->u.stream.stream_nr = src->u.stream.stream_nr;
890 if (src->u.stream.wakeup_fd >= 0) {
891 obj->u.stream.wakeup_fd =
892 dup(src->u.stream.wakeup_fd);
893 if (obj->u.stream.wakeup_fd < 0) {
894 ret = errno;
895 goto stream_error_wakeup_fd;
896 }
897 } else {
898 obj->u.stream.wakeup_fd =
899 src->u.stream.wakeup_fd;
900 }
901
902 if (src->u.stream.shm_fd >= 0) {
903 obj->u.stream.shm_fd =
904 dup(src->u.stream.shm_fd);
905 if (obj->u.stream.shm_fd < 0) {
906 ret = errno;
907 goto stream_error_shm_fd;
908 }
909 } else {
910 obj->u.stream.shm_fd =
911 src->u.stream.shm_fd;
912 }
913 break;
914
915 stream_error_shm_fd:
916 if (src->u.stream.wakeup_fd >= 0) {
917 int closeret;
918
919 closeret = close(obj->u.stream.wakeup_fd);
920 if (closeret) {
921 PERROR("close");
922 }
923 }
924 stream_error_wakeup_fd:
925 goto error_type;
926 }
927
928 default:
929 ret = -EINVAL;
930 goto error_type;
931 }
932
933 *dest = obj;
934 return 0;
935
936 error_type:
937 free(obj);
938 error:
939 return ret;
940 }
941
942
943 /* Buffer operations */
944
945 struct ustctl_consumer_channel *
946 ustctl_create_channel(struct ustctl_consumer_channel_attr *attr)
947 {
948 struct ustctl_consumer_channel *chan;
949 const char *transport_name;
950 struct lttng_transport *transport;
951
952 switch (attr->type) {
953 case LTTNG_UST_CHAN_PER_CPU:
954 if (attr->output == LTTNG_UST_MMAP) {
955 if (attr->overwrite) {
956 if (attr->read_timer_interval == 0) {
957 transport_name = "relay-overwrite-mmap";
958 } else {
959 transport_name = "relay-overwrite-rt-mmap";
960 }
961 } else {
962 if (attr->read_timer_interval == 0) {
963 transport_name = "relay-discard-mmap";
964 } else {
965 transport_name = "relay-discard-rt-mmap";
966 }
967 }
968 } else {
969 return NULL;
970 }
971 break;
972 case LTTNG_UST_CHAN_METADATA:
973 if (attr->output == LTTNG_UST_MMAP)
974 transport_name = "relay-metadata-mmap";
975 else
976 return NULL;
977 break;
978 default:
979 transport_name = "<unknown>";
980 return NULL;
981 }
982
983 transport = lttng_transport_find(transport_name);
984 if (!transport) {
985 DBG("LTTng transport %s not found\n",
986 transport_name);
987 return NULL;
988 }
989
990 chan = zmalloc(sizeof(*chan));
991 if (!chan)
992 return NULL;
993
994 chan->chan = transport->ops.channel_create(transport_name, NULL,
995 attr->subbuf_size, attr->num_subbuf,
996 attr->switch_timer_interval,
997 attr->read_timer_interval,
998 attr->uuid, attr->chan_id,
999 attr->shm_path[0] == '\0' ? NULL : attr->shm_path);
1000 if (!chan->chan) {
1001 goto chan_error;
1002 }
1003 chan->chan->ops = &transport->ops;
1004 memcpy(&chan->attr, attr, sizeof(chan->attr));
1005 chan->wait_fd = ustctl_channel_get_wait_fd(chan);
1006 chan->wakeup_fd = ustctl_channel_get_wakeup_fd(chan);
1007 return chan;
1008
1009 chan_error:
1010 free(chan);
1011 return NULL;
1012 }
1013
1014 void ustctl_destroy_channel(struct ustctl_consumer_channel *chan)
1015 {
1016 (void) ustctl_channel_close_wait_fd(chan);
1017 (void) ustctl_channel_close_wakeup_fd(chan);
1018 chan->chan->ops->channel_destroy(chan->chan);
1019 free(chan);
1020 }
1021
1022 int ustctl_send_channel_to_sessiond(int sock,
1023 struct ustctl_consumer_channel *channel)
1024 {
1025 struct shm_object_table *table;
1026
1027 table = channel->chan->handle->table;
1028 if (table->size <= 0)
1029 return -EINVAL;
1030 return ustctl_send_channel(sock,
1031 channel->attr.type,
1032 table->objects[0].memory_map,
1033 table->objects[0].memory_map_size,
1034 channel->wakeup_fd,
1035 0);
1036 }
1037
1038 int ustctl_send_stream_to_sessiond(int sock,
1039 struct ustctl_consumer_stream *stream)
1040 {
1041 if (!stream)
1042 return ustctl_send_stream(sock, -1U, -1U, -1, -1, 0);
1043
1044 return ustctl_send_stream(sock,
1045 stream->cpu,
1046 stream->memory_map_size,
1047 stream->shm_fd, stream->wakeup_fd,
1048 0);
1049 }
1050
1051 int ustctl_write_metadata_to_channel(
1052 struct ustctl_consumer_channel *channel,
1053 const char *metadata_str, /* NOT null-terminated */
1054 size_t len) /* metadata length */
1055 {
1056 struct lttng_ust_lib_ring_buffer_ctx ctx;
1057 struct lttng_channel *chan = channel->chan;
1058 const char *str = metadata_str;
1059 int ret = 0, waitret;
1060 size_t reserve_len, pos;
1061
1062 for (pos = 0; pos < len; pos += reserve_len) {
1063 reserve_len = min_t(size_t,
1064 chan->ops->packet_avail_size(chan->chan, chan->handle),
1065 len - pos);
1066 lib_ring_buffer_ctx_init(&ctx, chan->chan, NULL, reserve_len,
1067 sizeof(char), -1, chan->handle);
1068 /*
1069 * We don't care about metadata buffer's records lost
1070 * count, because we always retry here. Report error if
1071 * we need to bail out after timeout or being
1072 * interrupted.
1073 */
1074 waitret = wait_cond_interruptible_timeout(
1075 ({
1076 ret = chan->ops->event_reserve(&ctx, 0);
1077 ret != -ENOBUFS || !ret;
1078 }),
1079 LTTNG_METADATA_TIMEOUT_MSEC);
1080 if (waitret == -ETIMEDOUT || waitret == -EINTR || ret) {
1081 DBG("LTTng: Failure to write metadata to buffers (%s)\n",
1082 waitret == -EINTR ? "interrupted" :
1083 (ret == -ENOBUFS ? "timeout" : "I/O error"));
1084 if (waitret == -EINTR)
1085 ret = waitret;
1086 goto end;
1087 }
1088 chan->ops->event_write(&ctx, &str[pos], reserve_len);
1089 chan->ops->event_commit(&ctx);
1090 }
1091 end:
1092 return ret;
1093 }
1094
1095 /*
1096 * Write at most one packet in the channel.
1097 * Returns the number of bytes written on success, < 0 on error.
1098 */
1099 ssize_t ustctl_write_one_packet_to_channel(
1100 struct ustctl_consumer_channel *channel,
1101 const char *metadata_str, /* NOT null-terminated */
1102 size_t len) /* metadata length */
1103 {
1104 struct lttng_ust_lib_ring_buffer_ctx ctx;
1105 struct lttng_channel *chan = channel->chan;
1106 const char *str = metadata_str;
1107 ssize_t reserve_len;
1108 int ret;
1109
1110 reserve_len = min_t(ssize_t,
1111 chan->ops->packet_avail_size(chan->chan, chan->handle),
1112 len);
1113 lib_ring_buffer_ctx_init(&ctx, chan->chan, NULL, reserve_len,
1114 sizeof(char), -1, chan->handle);
1115 ret = chan->ops->event_reserve(&ctx, 0);
1116 if (ret != 0) {
1117 DBG("LTTng: event reservation failed");
1118 assert(ret < 0);
1119 reserve_len = ret;
1120 goto end;
1121 }
1122 chan->ops->event_write(&ctx, str, reserve_len);
1123 chan->ops->event_commit(&ctx);
1124
1125 end:
1126 return reserve_len;
1127 }
1128
1129 int ustctl_channel_close_wait_fd(struct ustctl_consumer_channel *consumer_chan)
1130 {
1131 struct channel *chan;
1132 int ret;
1133
1134 chan = consumer_chan->chan->chan;
1135 ret = ring_buffer_channel_close_wait_fd(&chan->backend.config,
1136 chan, chan->handle);
1137 if (!ret)
1138 consumer_chan->wait_fd = -1;
1139 return ret;
1140 }
1141
1142 int ustctl_channel_close_wakeup_fd(struct ustctl_consumer_channel *consumer_chan)
1143 {
1144 struct channel *chan;
1145 int ret;
1146
1147 chan = consumer_chan->chan->chan;
1148 ret = ring_buffer_channel_close_wakeup_fd(&chan->backend.config,
1149 chan, chan->handle);
1150 if (!ret)
1151 consumer_chan->wakeup_fd = -1;
1152 return ret;
1153 }
1154
1155 int ustctl_stream_close_wait_fd(struct ustctl_consumer_stream *stream)
1156 {
1157 struct channel *chan;
1158
1159 chan = stream->chan->chan->chan;
1160 return ring_buffer_stream_close_wait_fd(&chan->backend.config,
1161 chan, stream->handle, stream->cpu);
1162 }
1163
1164 int ustctl_stream_close_wakeup_fd(struct ustctl_consumer_stream *stream)
1165 {
1166 struct channel *chan;
1167
1168 chan = stream->chan->chan->chan;
1169 return ring_buffer_stream_close_wakeup_fd(&chan->backend.config,
1170 chan, stream->handle, stream->cpu);
1171 }
1172
1173 struct ustctl_consumer_stream *
1174 ustctl_create_stream(struct ustctl_consumer_channel *channel,
1175 int cpu)
1176 {
1177 struct ustctl_consumer_stream *stream;
1178 struct lttng_ust_shm_handle *handle;
1179 struct channel *chan;
1180 int shm_fd, wait_fd, wakeup_fd;
1181 uint64_t memory_map_size;
1182 struct lttng_ust_lib_ring_buffer *buf;
1183 int ret;
1184
1185 if (!channel)
1186 return NULL;
1187 handle = channel->chan->handle;
1188 if (!handle)
1189 return NULL;
1190
1191 chan = channel->chan->chan;
1192 buf = channel_get_ring_buffer(&chan->backend.config,
1193 chan, cpu, handle, &shm_fd, &wait_fd,
1194 &wakeup_fd, &memory_map_size);
1195 if (!buf)
1196 return NULL;
1197 ret = lib_ring_buffer_open_read(buf, handle);
1198 if (ret)
1199 return NULL;
1200
1201 stream = zmalloc(sizeof(*stream));
1202 if (!stream)
1203 goto alloc_error;
1204 stream->handle = handle;
1205 stream->buf = buf;
1206 stream->chan = channel;
1207 stream->shm_fd = shm_fd;
1208 stream->wait_fd = wait_fd;
1209 stream->wakeup_fd = wakeup_fd;
1210 stream->memory_map_size = memory_map_size;
1211 stream->cpu = cpu;
1212 return stream;
1213
1214 alloc_error:
1215 return NULL;
1216 }
1217
1218 void ustctl_destroy_stream(struct ustctl_consumer_stream *stream)
1219 {
1220 struct lttng_ust_lib_ring_buffer *buf;
1221 struct ustctl_consumer_channel *consumer_chan;
1222
1223 assert(stream);
1224 buf = stream->buf;
1225 consumer_chan = stream->chan;
1226 (void) ustctl_stream_close_wait_fd(stream);
1227 (void) ustctl_stream_close_wakeup_fd(stream);
1228 lib_ring_buffer_release_read(buf, consumer_chan->chan->handle);
1229 free(stream);
1230 }
1231
1232 int ustctl_channel_get_wait_fd(struct ustctl_consumer_channel *chan)
1233 {
1234 if (!chan)
1235 return -EINVAL;
1236 return shm_get_wait_fd(chan->chan->handle,
1237 &chan->chan->handle->chan._ref);
1238 }
1239
1240 int ustctl_channel_get_wakeup_fd(struct ustctl_consumer_channel *chan)
1241 {
1242 if (!chan)
1243 return -EINVAL;
1244 return shm_get_wakeup_fd(chan->chan->handle,
1245 &chan->chan->handle->chan._ref);
1246 }
1247
1248 int ustctl_stream_get_wait_fd(struct ustctl_consumer_stream *stream)
1249 {
1250 struct lttng_ust_lib_ring_buffer *buf;
1251 struct ustctl_consumer_channel *consumer_chan;
1252
1253 if (!stream)
1254 return -EINVAL;
1255 buf = stream->buf;
1256 consumer_chan = stream->chan;
1257 return shm_get_wait_fd(consumer_chan->chan->handle, &buf->self._ref);
1258 }
1259
1260 int ustctl_stream_get_wakeup_fd(struct ustctl_consumer_stream *stream)
1261 {
1262 struct lttng_ust_lib_ring_buffer *buf;
1263 struct ustctl_consumer_channel *consumer_chan;
1264
1265 if (!stream)
1266 return -EINVAL;
1267 buf = stream->buf;
1268 consumer_chan = stream->chan;
1269 return shm_get_wakeup_fd(consumer_chan->chan->handle, &buf->self._ref);
1270 }
1271
1272 /* For mmap mode, readable without "get" operation */
1273
1274 void *ustctl_get_mmap_base(struct ustctl_consumer_stream *stream)
1275 {
1276 struct lttng_ust_lib_ring_buffer *buf;
1277 struct ustctl_consumer_channel *consumer_chan;
1278
1279 if (!stream)
1280 return NULL;
1281 buf = stream->buf;
1282 consumer_chan = stream->chan;
1283 return shmp(consumer_chan->chan->handle, buf->backend.memory_map);
1284 }
1285
1286 /* returns the length to mmap. */
1287 int ustctl_get_mmap_len(struct ustctl_consumer_stream *stream,
1288 unsigned long *len)
1289 {
1290 struct ustctl_consumer_channel *consumer_chan;
1291 unsigned long mmap_buf_len;
1292 struct channel *chan;
1293
1294 if (!stream)
1295 return -EINVAL;
1296 consumer_chan = stream->chan;
1297 chan = consumer_chan->chan->chan;
1298 if (chan->backend.config.output != RING_BUFFER_MMAP)
1299 return -EINVAL;
1300 mmap_buf_len = chan->backend.buf_size;
1301 if (chan->backend.extra_reader_sb)
1302 mmap_buf_len += chan->backend.subbuf_size;
1303 if (mmap_buf_len > INT_MAX)
1304 return -EFBIG;
1305 *len = mmap_buf_len;
1306 return 0;
1307 }
1308
1309 /* returns the maximum size for sub-buffers. */
1310 int ustctl_get_max_subbuf_size(struct ustctl_consumer_stream *stream,
1311 unsigned long *len)
1312 {
1313 struct ustctl_consumer_channel *consumer_chan;
1314 struct channel *chan;
1315
1316 if (!stream)
1317 return -EINVAL;
1318 consumer_chan = stream->chan;
1319 chan = consumer_chan->chan->chan;
1320 *len = chan->backend.subbuf_size;
1321 return 0;
1322 }
1323
1324 /*
1325 * For mmap mode, operate on the current packet (between get/put or
1326 * get_next/put_next).
1327 */
1328
1329 /* returns the offset of the subbuffer belonging to the mmap reader. */
1330 int ustctl_get_mmap_read_offset(struct ustctl_consumer_stream *stream,
1331 unsigned long *off)
1332 {
1333 struct channel *chan;
1334 unsigned long sb_bindex;
1335 struct lttng_ust_lib_ring_buffer *buf;
1336 struct ustctl_consumer_channel *consumer_chan;
1337
1338 if (!stream)
1339 return -EINVAL;
1340 buf = stream->buf;
1341 consumer_chan = stream->chan;
1342 chan = consumer_chan->chan->chan;
1343 if (chan->backend.config.output != RING_BUFFER_MMAP)
1344 return -EINVAL;
1345 sb_bindex = subbuffer_id_get_index(&chan->backend.config,
1346 buf->backend.buf_rsb.id);
1347 *off = shmp(consumer_chan->chan->handle,
1348 shmp_index(consumer_chan->chan->handle, buf->backend.array, sb_bindex)->shmp)->mmap_offset;
1349 return 0;
1350 }
1351
1352 /* returns the size of the current sub-buffer, without padding (for mmap). */
1353 int ustctl_get_subbuf_size(struct ustctl_consumer_stream *stream,
1354 unsigned long *len)
1355 {
1356 struct ustctl_consumer_channel *consumer_chan;
1357 struct channel *chan;
1358 struct lttng_ust_lib_ring_buffer *buf;
1359
1360 if (!stream)
1361 return -EINVAL;
1362
1363 buf = stream->buf;
1364 consumer_chan = stream->chan;
1365 chan = consumer_chan->chan->chan;
1366 *len = lib_ring_buffer_get_read_data_size(&chan->backend.config, buf,
1367 consumer_chan->chan->handle);
1368 return 0;
1369 }
1370
1371 /* returns the size of the current sub-buffer, without padding (for mmap). */
1372 int ustctl_get_padded_subbuf_size(struct ustctl_consumer_stream *stream,
1373 unsigned long *len)
1374 {
1375 struct ustctl_consumer_channel *consumer_chan;
1376 struct channel *chan;
1377 struct lttng_ust_lib_ring_buffer *buf;
1378
1379 if (!stream)
1380 return -EINVAL;
1381 buf = stream->buf;
1382 consumer_chan = stream->chan;
1383 chan = consumer_chan->chan->chan;
1384 *len = lib_ring_buffer_get_read_data_size(&chan->backend.config, buf,
1385 consumer_chan->chan->handle);
1386 *len = PAGE_ALIGN(*len);
1387 return 0;
1388 }
1389
1390 /* Get exclusive read access to the next sub-buffer that can be read. */
1391 int ustctl_get_next_subbuf(struct ustctl_consumer_stream *stream)
1392 {
1393 struct lttng_ust_lib_ring_buffer *buf;
1394 struct ustctl_consumer_channel *consumer_chan;
1395
1396 if (!stream)
1397 return -EINVAL;
1398 buf = stream->buf;
1399 consumer_chan = stream->chan;
1400 return lib_ring_buffer_get_next_subbuf(buf,
1401 consumer_chan->chan->handle);
1402 }
1403
1404
1405 /* Release exclusive sub-buffer access, move consumer forward. */
1406 int ustctl_put_next_subbuf(struct ustctl_consumer_stream *stream)
1407 {
1408 struct lttng_ust_lib_ring_buffer *buf;
1409 struct ustctl_consumer_channel *consumer_chan;
1410
1411 if (!stream)
1412 return -EINVAL;
1413 buf = stream->buf;
1414 consumer_chan = stream->chan;
1415 lib_ring_buffer_put_next_subbuf(buf, consumer_chan->chan->handle);
1416 return 0;
1417 }
1418
1419 /* snapshot */
1420
1421 /* Get a snapshot of the current ring buffer producer and consumer positions */
1422 int ustctl_snapshot(struct ustctl_consumer_stream *stream)
1423 {
1424 struct lttng_ust_lib_ring_buffer *buf;
1425 struct ustctl_consumer_channel *consumer_chan;
1426
1427 if (!stream)
1428 return -EINVAL;
1429 buf = stream->buf;
1430 consumer_chan = stream->chan;
1431 return lib_ring_buffer_snapshot(buf, &buf->cons_snapshot,
1432 &buf->prod_snapshot, consumer_chan->chan->handle);
1433 }
1434
1435 /* Get the consumer position (iteration start) */
1436 int ustctl_snapshot_get_consumed(struct ustctl_consumer_stream *stream,
1437 unsigned long *pos)
1438 {
1439 struct lttng_ust_lib_ring_buffer *buf;
1440
1441 if (!stream)
1442 return -EINVAL;
1443 buf = stream->buf;
1444 *pos = buf->cons_snapshot;
1445 return 0;
1446 }
1447
1448 /* Get the producer position (iteration end) */
1449 int ustctl_snapshot_get_produced(struct ustctl_consumer_stream *stream,
1450 unsigned long *pos)
1451 {
1452 struct lttng_ust_lib_ring_buffer *buf;
1453
1454 if (!stream)
1455 return -EINVAL;
1456 buf = stream->buf;
1457 *pos = buf->prod_snapshot;
1458 return 0;
1459 }
1460
1461 /* Get exclusive read access to the specified sub-buffer position */
1462 int ustctl_get_subbuf(struct ustctl_consumer_stream *stream,
1463 unsigned long *pos)
1464 {
1465 struct lttng_ust_lib_ring_buffer *buf;
1466 struct ustctl_consumer_channel *consumer_chan;
1467
1468 if (!stream)
1469 return -EINVAL;
1470 buf = stream->buf;
1471 consumer_chan = stream->chan;
1472 return lib_ring_buffer_get_subbuf(buf, *pos,
1473 consumer_chan->chan->handle);
1474 }
1475
1476 /* Release exclusive sub-buffer access */
1477 int ustctl_put_subbuf(struct ustctl_consumer_stream *stream)
1478 {
1479 struct lttng_ust_lib_ring_buffer *buf;
1480 struct ustctl_consumer_channel *consumer_chan;
1481
1482 if (!stream)
1483 return -EINVAL;
1484 buf = stream->buf;
1485 consumer_chan = stream->chan;
1486 lib_ring_buffer_put_subbuf(buf, consumer_chan->chan->handle);
1487 return 0;
1488 }
1489
1490 void ustctl_flush_buffer(struct ustctl_consumer_stream *stream,
1491 int producer_active)
1492 {
1493 struct lttng_ust_lib_ring_buffer *buf;
1494 struct ustctl_consumer_channel *consumer_chan;
1495
1496 assert(stream);
1497 buf = stream->buf;
1498 consumer_chan = stream->chan;
1499 lib_ring_buffer_switch_slow(buf,
1500 producer_active ? SWITCH_ACTIVE : SWITCH_FLUSH,
1501 consumer_chan->chan->handle);
1502 }
1503
1504 static
1505 struct lttng_ust_client_lib_ring_buffer_client_cb *get_client_cb(
1506 struct lttng_ust_lib_ring_buffer *buf,
1507 struct lttng_ust_shm_handle *handle)
1508 {
1509 struct channel *chan;
1510 const struct lttng_ust_lib_ring_buffer_config *config;
1511 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1512
1513 chan = shmp(handle, buf->backend.chan);
1514 config = &chan->backend.config;
1515 if (!config->cb_ptr)
1516 return NULL;
1517 client_cb = caa_container_of(config->cb_ptr,
1518 struct lttng_ust_client_lib_ring_buffer_client_cb,
1519 parent);
1520 return client_cb;
1521 }
1522
1523 int ustctl_get_timestamp_begin(struct ustctl_consumer_stream *stream,
1524 uint64_t *timestamp_begin)
1525 {
1526 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1527 struct lttng_ust_lib_ring_buffer *buf;
1528 struct lttng_ust_shm_handle *handle;
1529
1530 if (!stream || !timestamp_begin)
1531 return -EINVAL;
1532 buf = stream->buf;
1533 handle = stream->chan->chan->handle;
1534 client_cb = get_client_cb(buf, handle);
1535 if (!client_cb)
1536 return -ENOSYS;
1537 return client_cb->timestamp_begin(buf, handle, timestamp_begin);
1538 }
1539
1540 int ustctl_get_timestamp_end(struct ustctl_consumer_stream *stream,
1541 uint64_t *timestamp_end)
1542 {
1543 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1544 struct lttng_ust_lib_ring_buffer *buf;
1545 struct lttng_ust_shm_handle *handle;
1546
1547 if (!stream || !timestamp_end)
1548 return -EINVAL;
1549 buf = stream->buf;
1550 handle = stream->chan->chan->handle;
1551 client_cb = get_client_cb(buf, handle);
1552 if (!client_cb)
1553 return -ENOSYS;
1554 return client_cb->timestamp_end(buf, handle, timestamp_end);
1555 }
1556
1557 int ustctl_get_events_discarded(struct ustctl_consumer_stream *stream,
1558 uint64_t *events_discarded)
1559 {
1560 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1561 struct lttng_ust_lib_ring_buffer *buf;
1562 struct lttng_ust_shm_handle *handle;
1563
1564 if (!stream || !events_discarded)
1565 return -EINVAL;
1566 buf = stream->buf;
1567 handle = stream->chan->chan->handle;
1568 client_cb = get_client_cb(buf, handle);
1569 if (!client_cb)
1570 return -ENOSYS;
1571 return client_cb->events_discarded(buf, handle, events_discarded);
1572 }
1573
1574 int ustctl_get_content_size(struct ustctl_consumer_stream *stream,
1575 uint64_t *content_size)
1576 {
1577 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1578 struct lttng_ust_lib_ring_buffer *buf;
1579 struct lttng_ust_shm_handle *handle;
1580
1581 if (!stream || !content_size)
1582 return -EINVAL;
1583 buf = stream->buf;
1584 handle = stream->chan->chan->handle;
1585 client_cb = get_client_cb(buf, handle);
1586 if (!client_cb)
1587 return -ENOSYS;
1588 return client_cb->content_size(buf, handle, content_size);
1589 }
1590
1591 int ustctl_get_packet_size(struct ustctl_consumer_stream *stream,
1592 uint64_t *packet_size)
1593 {
1594 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1595 struct lttng_ust_lib_ring_buffer *buf;
1596 struct lttng_ust_shm_handle *handle;
1597
1598 if (!stream || !packet_size)
1599 return -EINVAL;
1600 buf = stream->buf;
1601 handle = stream->chan->chan->handle;
1602 client_cb = get_client_cb(buf, handle);
1603 if (!client_cb)
1604 return -ENOSYS;
1605 return client_cb->packet_size(buf, handle, packet_size);
1606 }
1607
1608 int ustctl_get_stream_id(struct ustctl_consumer_stream *stream,
1609 uint64_t *stream_id)
1610 {
1611 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1612 struct lttng_ust_lib_ring_buffer *buf;
1613 struct lttng_ust_shm_handle *handle;
1614
1615 if (!stream || !stream_id)
1616 return -EINVAL;
1617 buf = stream->buf;
1618 handle = stream->chan->chan->handle;
1619 client_cb = get_client_cb(buf, handle);
1620 if (!client_cb)
1621 return -ENOSYS;
1622 return client_cb->stream_id(buf, handle, stream_id);
1623 }
1624
1625 int ustctl_get_current_timestamp(struct ustctl_consumer_stream *stream,
1626 uint64_t *ts)
1627 {
1628 struct lttng_ust_client_lib_ring_buffer_client_cb *client_cb;
1629 struct lttng_ust_lib_ring_buffer *buf;
1630 struct lttng_ust_shm_handle *handle;
1631
1632 if (!stream || !ts)
1633 return -EINVAL;
1634 buf = stream->buf;
1635 handle = stream->chan->chan->handle;
1636 client_cb = get_client_cb(buf, handle);
1637 if (!client_cb || !client_cb->current_timestamp)
1638 return -ENOSYS;
1639 return client_cb->current_timestamp(buf, handle, ts);
1640 }
1641
1642 #if defined(__x86_64__) || defined(__i386__)
1643
1644 int ustctl_has_perf_counters(void)
1645 {
1646 return 1;
1647 }
1648
1649 #else
1650
1651 int ustctl_has_perf_counters(void)
1652 {
1653 return 0;
1654 }
1655
1656 #endif
1657
1658 /*
1659 * Returns 0 on success, negative error value on error.
1660 */
1661 int ustctl_recv_reg_msg(int sock,
1662 enum ustctl_socket_type *type,
1663 uint32_t *major,
1664 uint32_t *minor,
1665 uint32_t *pid,
1666 uint32_t *ppid,
1667 uint32_t *uid,
1668 uint32_t *gid,
1669 uint32_t *bits_per_long,
1670 uint32_t *uint8_t_alignment,
1671 uint32_t *uint16_t_alignment,
1672 uint32_t *uint32_t_alignment,
1673 uint32_t *uint64_t_alignment,
1674 uint32_t *long_alignment,
1675 int *byte_order,
1676 char *name)
1677 {
1678 ssize_t len;
1679 struct ustctl_reg_msg reg_msg;
1680
1681 len = ustcomm_recv_unix_sock(sock, &reg_msg, sizeof(reg_msg));
1682 if (len > 0 && len != sizeof(reg_msg))
1683 return -EIO;
1684 if (len == 0)
1685 return -EPIPE;
1686 if (len < 0)
1687 return len;
1688
1689 if (reg_msg.magic == LTTNG_UST_COMM_MAGIC) {
1690 *byte_order = BYTE_ORDER == BIG_ENDIAN ?
1691 BIG_ENDIAN : LITTLE_ENDIAN;
1692 } else if (reg_msg.magic == bswap_32(LTTNG_UST_COMM_MAGIC)) {
1693 *byte_order = BYTE_ORDER == BIG_ENDIAN ?
1694 LITTLE_ENDIAN : BIG_ENDIAN;
1695 } else {
1696 return -LTTNG_UST_ERR_INVAL_MAGIC;
1697 }
1698 switch (reg_msg.socket_type) {
1699 case 0: *type = USTCTL_SOCKET_CMD;
1700 break;
1701 case 1: *type = USTCTL_SOCKET_NOTIFY;
1702 break;
1703 default:
1704 return -LTTNG_UST_ERR_INVAL_SOCKET_TYPE;
1705 }
1706 *major = reg_msg.major;
1707 *minor = reg_msg.minor;
1708 *pid = reg_msg.pid;
1709 *ppid = reg_msg.ppid;
1710 *uid = reg_msg.uid;
1711 *gid = reg_msg.gid;
1712 *bits_per_long = reg_msg.bits_per_long;
1713 *uint8_t_alignment = reg_msg.uint8_t_alignment;
1714 *uint16_t_alignment = reg_msg.uint16_t_alignment;
1715 *uint32_t_alignment = reg_msg.uint32_t_alignment;
1716 *uint64_t_alignment = reg_msg.uint64_t_alignment;
1717 *long_alignment = reg_msg.long_alignment;
1718 memcpy(name, reg_msg.name, LTTNG_UST_ABI_PROCNAME_LEN);
1719 if (reg_msg.major != LTTNG_UST_ABI_MAJOR_VERSION) {
1720 return -LTTNG_UST_ERR_UNSUP_MAJOR;
1721 }
1722
1723 return 0;
1724 }
1725
1726 int ustctl_recv_notify(int sock, enum ustctl_notify_cmd *notify_cmd)
1727 {
1728 struct ustcomm_notify_hdr header;
1729 ssize_t len;
1730
1731 len = ustcomm_recv_unix_sock(sock, &header, sizeof(header));
1732 if (len > 0 && len != sizeof(header))
1733 return -EIO;
1734 if (len == 0)
1735 return -EPIPE;
1736 if (len < 0)
1737 return len;
1738 switch (header.notify_cmd) {
1739 case 0:
1740 *notify_cmd = USTCTL_NOTIFY_CMD_EVENT;
1741 break;
1742 case 1:
1743 *notify_cmd = USTCTL_NOTIFY_CMD_CHANNEL;
1744 break;
1745 default:
1746 return -EINVAL;
1747 }
1748 return 0;
1749 }
1750
1751 /*
1752 * Returns 0 on success, negative error value on error.
1753 */
1754 int ustctl_recv_register_event(int sock,
1755 int *session_objd,
1756 int *channel_objd,
1757 char *event_name,
1758 int *loglevel,
1759 char **signature,
1760 size_t *nr_fields,
1761 struct ustctl_field **fields,
1762 char **model_emf_uri)
1763 {
1764 ssize_t len;
1765 struct ustcomm_notify_event_msg msg;
1766 size_t signature_len, fields_len, model_emf_uri_len;
1767 char *a_sign = NULL, *a_model_emf_uri = NULL;
1768 struct ustctl_field *a_fields = NULL;
1769
1770 len = ustcomm_recv_unix_sock(sock, &msg, sizeof(msg));
1771 if (len > 0 && len != sizeof(msg))
1772 return -EIO;
1773 if (len == 0)
1774 return -EPIPE;
1775 if (len < 0)
1776 return len;
1777
1778 *session_objd = msg.session_objd;
1779 *channel_objd = msg.channel_objd;
1780 strncpy(event_name, msg.event_name, LTTNG_UST_SYM_NAME_LEN);
1781 event_name[LTTNG_UST_SYM_NAME_LEN - 1] = '\0';
1782 *loglevel = msg.loglevel;
1783 signature_len = msg.signature_len;
1784 fields_len = msg.fields_len;
1785
1786 if (fields_len % sizeof(*a_fields) != 0) {
1787 return -EINVAL;
1788 }
1789
1790 model_emf_uri_len = msg.model_emf_uri_len;
1791
1792 /* recv signature. contains at least \0. */
1793 a_sign = zmalloc(signature_len);
1794 if (!a_sign)
1795 return -ENOMEM;
1796 len = ustcomm_recv_unix_sock(sock, a_sign, signature_len);
1797 if (len > 0 && len != signature_len) {
1798 len = -EIO;
1799 goto signature_error;
1800 }
1801 if (len == 0) {
1802 len = -EPIPE;
1803 goto signature_error;
1804 }
1805 if (len < 0) {
1806 goto signature_error;
1807 }
1808 /* Enforce end of string */
1809 a_sign[signature_len - 1] = '\0';
1810
1811 /* recv fields */
1812 if (fields_len) {
1813 a_fields = zmalloc(fields_len);
1814 if (!a_fields) {
1815 len = -ENOMEM;
1816 goto signature_error;
1817 }
1818 len = ustcomm_recv_unix_sock(sock, a_fields, fields_len);
1819 if (len > 0 && len != fields_len) {
1820 len = -EIO;
1821 goto fields_error;
1822 }
1823 if (len == 0) {
1824 len = -EPIPE;
1825 goto fields_error;
1826 }
1827 if (len < 0) {
1828 goto fields_error;
1829 }
1830 }
1831
1832 if (model_emf_uri_len) {
1833 /* recv model_emf_uri_len */
1834 a_model_emf_uri = zmalloc(model_emf_uri_len);
1835 if (!a_model_emf_uri) {
1836 len = -ENOMEM;
1837 goto fields_error;
1838 }
1839 len = ustcomm_recv_unix_sock(sock, a_model_emf_uri,
1840 model_emf_uri_len);
1841 if (len > 0 && len != model_emf_uri_len) {
1842 len = -EIO;
1843 goto model_error;
1844 }
1845 if (len == 0) {
1846 len = -EPIPE;
1847 goto model_error;
1848 }
1849 if (len < 0) {
1850 goto model_error;
1851 }
1852 /* Enforce end of string */
1853 a_model_emf_uri[model_emf_uri_len - 1] = '\0';
1854 }
1855
1856 *signature = a_sign;
1857 *nr_fields = fields_len / sizeof(*a_fields);
1858 *fields = a_fields;
1859 *model_emf_uri = a_model_emf_uri;
1860
1861 return 0;
1862
1863 model_error:
1864 free(a_model_emf_uri);
1865 fields_error:
1866 free(a_fields);
1867 signature_error:
1868 free(a_sign);
1869 return len;
1870 }
1871
1872 /*
1873 * Returns 0 on success, negative error value on error.
1874 */
1875 int ustctl_reply_register_event(int sock,
1876 uint32_t id,
1877 int ret_code)
1878 {
1879 ssize_t len;
1880 struct {
1881 struct ustcomm_notify_hdr header;
1882 struct ustcomm_notify_event_reply r;
1883 } reply;
1884
1885 memset(&reply, 0, sizeof(reply));
1886 reply.header.notify_cmd = USTCTL_NOTIFY_CMD_EVENT;
1887 reply.r.ret_code = ret_code;
1888 reply.r.event_id = id;
1889 len = ustcomm_send_unix_sock(sock, &reply, sizeof(reply));
1890 if (len > 0 && len != sizeof(reply))
1891 return -EIO;
1892 if (len < 0)
1893 return len;
1894 return 0;
1895 }
1896
1897 /*
1898 * Returns 0 on success, negative UST or system error value on error.
1899 */
1900 int ustctl_recv_register_channel(int sock,
1901 int *session_objd, /* session descriptor (output) */
1902 int *channel_objd, /* channel descriptor (output) */
1903 size_t *nr_fields,
1904 struct ustctl_field **fields)
1905 {
1906 ssize_t len;
1907 struct ustcomm_notify_channel_msg msg;
1908 size_t fields_len;
1909 struct ustctl_field *a_fields;
1910
1911 len = ustcomm_recv_unix_sock(sock, &msg, sizeof(msg));
1912 if (len > 0 && len != sizeof(msg))
1913 return -EIO;
1914 if (len == 0)
1915 return -EPIPE;
1916 if (len < 0)
1917 return len;
1918
1919 *session_objd = msg.session_objd;
1920 *channel_objd = msg.channel_objd;
1921 fields_len = msg.ctx_fields_len;
1922
1923 if (fields_len % sizeof(*a_fields) != 0) {
1924 return -EINVAL;
1925 }
1926
1927 /* recv fields */
1928 if (fields_len) {
1929 a_fields = zmalloc(fields_len);
1930 if (!a_fields) {
1931 len = -ENOMEM;
1932 goto alloc_error;
1933 }
1934 len = ustcomm_recv_unix_sock(sock, a_fields, fields_len);
1935 if (len > 0 && len != fields_len) {
1936 len = -EIO;
1937 goto fields_error;
1938 }
1939 if (len == 0) {
1940 len = -EPIPE;
1941 goto fields_error;
1942 }
1943 if (len < 0) {
1944 goto fields_error;
1945 }
1946 *fields = a_fields;
1947 } else {
1948 *fields = NULL;
1949 }
1950 *nr_fields = fields_len / sizeof(*a_fields);
1951 return 0;
1952
1953 fields_error:
1954 free(a_fields);
1955 alloc_error:
1956 return len;
1957 }
1958
1959 /*
1960 * Returns 0 on success, negative error value on error.
1961 */
1962 int ustctl_reply_register_channel(int sock,
1963 uint32_t chan_id,
1964 enum ustctl_channel_header header_type,
1965 int ret_code)
1966 {
1967 ssize_t len;
1968 struct {
1969 struct ustcomm_notify_hdr header;
1970 struct ustcomm_notify_channel_reply r;
1971 } reply;
1972
1973 memset(&reply, 0, sizeof(reply));
1974 reply.header.notify_cmd = USTCTL_NOTIFY_CMD_CHANNEL;
1975 reply.r.ret_code = ret_code;
1976 reply.r.chan_id = chan_id;
1977 switch (header_type) {
1978 case USTCTL_CHANNEL_HEADER_COMPACT:
1979 reply.r.header_type = 1;
1980 break;
1981 case USTCTL_CHANNEL_HEADER_LARGE:
1982 reply.r.header_type = 2;
1983 break;
1984 default:
1985 reply.r.header_type = 0;
1986 break;
1987 }
1988 len = ustcomm_send_unix_sock(sock, &reply, sizeof(reply));
1989 if (len > 0 && len != sizeof(reply))
1990 return -EIO;
1991 if (len < 0)
1992 return len;
1993 return 0;
1994 }
1995
1996 static __attribute__((constructor))
1997 void ustctl_init(void)
1998 {
1999 init_usterr();
2000 lttng_ring_buffer_metadata_client_init();
2001 lttng_ring_buffer_client_overwrite_init();
2002 lttng_ring_buffer_client_overwrite_rt_init();
2003 lttng_ring_buffer_client_discard_init();
2004 lttng_ring_buffer_client_discard_rt_init();
2005 lib_ringbuffer_signal_init();
2006 }
2007
2008 static __attribute__((destructor))
2009 void ustctl_exit(void)
2010 {
2011 lttng_ring_buffer_client_discard_rt_exit();
2012 lttng_ring_buffer_client_discard_exit();
2013 lttng_ring_buffer_client_overwrite_rt_exit();
2014 lttng_ring_buffer_client_overwrite_exit();
2015 lttng_ring_buffer_metadata_client_exit();
2016 }
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