Reset vtid after fork in child
[lttng-ust.git] / libust / lttng-ust-abi.c
CommitLineData
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1/*
2 * lttng-ust-abi.c
3 *
4 * Copyright 2010-2011 (c) - Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
5 *
6 * LTTng UST ABI
7 *
8 * Mimic system calls for:
9 * - session creation, returns an object descriptor or failure.
10 * - channel creation, returns an object descriptor or failure.
11 * - Operates on a session object descriptor
12 * - Takes all channel options as parameters.
13 * - stream get, returns an object descriptor or failure.
14 * - Operates on a channel object descriptor.
15 * - stream notifier get, returns an object descriptor or failure.
16 * - Operates on a channel object descriptor.
17 * - event creation, returns an object descriptor or failure.
18 * - Operates on a channel object descriptor
19 * - Takes an event name as parameter
20 * - Takes an instrumentation source as parameter
21 * - e.g. tracepoints, dynamic_probes...
22 * - Takes instrumentation source specific arguments.
23 *
24 * Dual LGPL v2.1/GPL v2 license.
25 */
26
27#include <ust/lttng-ust-abi.h>
28#include <urcu/compiler.h>
29#include <urcu/list.h>
30#include <ust/lttng-events.h>
1dbfff0c 31#include <ust/usterr-signal-safe.h>
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32#include "ust/core.h"
33#include "ltt-tracer.h"
34
35/*
36 * Object descriptor table. Should be protected from concurrent access
37 * by the caller.
38 */
39
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40struct obj {
41 union {
42 struct {
43 void *private_data;
44 const struct objd_ops *ops;
45 int f_count;
46 } s;
47 int freelist_next; /* offset freelist. end is -1. */
48 } u;
49};
50
51struct objd_table {
52 struct obj *array;
53 unsigned int len, allocated_len;
54 int freelist_head; /* offset freelist head. end is -1 */
55};
56
57static struct objd_table objd_table = {
58 .freelist_head = -1,
59};
60
61static
62int objd_alloc(void *private_data, const struct objd_ops *ops)
63{
64 struct obj *obj;
65
66 if (objd_table.freelist_head != -1) {
67 obj = &objd_table.array[objd_table.freelist_head];
68 objd_table.freelist_head = obj->u.freelist_next;
69 goto end;
70 }
71
72 if (objd_table.len >= objd_table.allocated_len) {
73 unsigned int new_allocated_len, old_allocated_len;
74 struct obj *new_table, *old_table;
75
76 old_allocated_len = objd_table.allocated_len;
77 old_table = objd_table.array;
78 if (!old_allocated_len)
79 new_allocated_len = 1;
80 else
81 new_allocated_len = old_allocated_len << 1;
82 new_table = zmalloc(sizeof(struct obj) * new_allocated_len);
83 if (!new_table)
84 return -ENOMEM;
85 memcpy(new_table, old_table,
86 sizeof(struct obj) * old_allocated_len);
87 free(old_table);
88 objd_table.array = new_table;
89 objd_table.allocated_len = new_allocated_len;
90 }
91 obj = &objd_table.array[objd_table.len];
92 objd_table.len++;
93end:
94 obj->u.s.private_data = private_data;
95 obj->u.s.ops = ops;
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96 obj->u.s.f_count = 2; /* count == 1 : object is allocated */
97 /* count == 2 : allocated + hold ref */
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98 return obj - objd_table.array;
99}
100
101static
102struct obj *_objd_get(int id)
103{
104 if (id >= objd_table.len)
105 return NULL;
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106 if (!objd_table.array[id].u.s.f_count)
107 return NULL;
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108 return &objd_table.array[id];
109}
110
111static
112void *objd_private(int id)
113{
114 struct obj *obj = _objd_get(id);
115 assert(obj);
116 return obj->u.s.private_data;
117}
118
119static
120void objd_set_private(int id, void *private_data)
121{
122 struct obj *obj = _objd_get(id);
123 assert(obj);
124 obj->u.s.private_data = private_data;
125}
126
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127const struct objd_ops *objd_ops(int id)
128{
129 struct obj *obj = _objd_get(id);
46050b1a 130
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131 if (!obj)
132 return NULL;
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133 return obj->u.s.ops;
134}
135
136static
137void objd_free(int id)
138{
139 struct obj *obj = _objd_get(id);
140
141 assert(obj);
142 obj->u.freelist_next = objd_table.freelist_head;
143 objd_table.freelist_head = obj - objd_table.array;
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144 assert(obj->u.s.f_count == 1);
145 obj->u.s.f_count = 0; /* deallocated */
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146}
147
148static
149void objd_ref(int id)
150{
151 struct obj *obj = _objd_get(id);
152 obj->u.s.f_count++;
153}
154
1ea11eab 155int objd_unref(int id)
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156{
157 struct obj *obj = _objd_get(id);
158
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159 if (!obj)
160 return -EINVAL;
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161 if (obj->u.s.f_count == 1) {
162 ERR("Reference counting error\n");
163 return -EINVAL;
164 }
165 if ((--obj->u.s.f_count) == 1) {
f4681817 166 const struct objd_ops *ops = objd_ops(id);
a4be8962 167
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168 if (ops->release)
169 ops->release(id);
170 objd_free(id);
171 }
1ea11eab 172 return 0;
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173}
174
175static
176void objd_table_destroy(void)
177{
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178 int i;
179
fb50c39d 180 for (i = 0; i < objd_table.allocated_len; i++)
824f40b8 181 (void) objd_unref(i);
f4681817 182 free(objd_table.array);
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183 objd_table.array = NULL;
184 objd_table.len = 0;
185 objd_table.allocated_len = 0;
17dfb34b 186 objd_table.freelist_head = -1;
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187}
188
189/*
190 * This is LTTng's own personal way to create an ABI for sessiond.
191 * We send commands over a socket.
192 */
193
194static const struct objd_ops lttng_ops;
195static const struct objd_ops lttng_session_ops;
196static const struct objd_ops lttng_channel_ops;
197static const struct objd_ops lttng_metadata_ops;
198static const struct objd_ops lttng_event_ops;
381c0f1e 199static const struct objd_ops lib_ring_buffer_objd_ops;
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200
201enum channel_type {
202 PER_CPU_CHANNEL,
203 METADATA_CHANNEL,
204};
205
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206int lttng_abi_create_root_handle(void)
207{
208 int root_handle;
209
210 root_handle = objd_alloc(NULL, &lttng_ops);
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211 return root_handle;
212}
213
818173b9 214static
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215int lttng_abi_create_session(void)
216{
217 struct ltt_session *session;
218 int session_objd, ret;
219
220 session = ltt_session_create();
221 if (!session)
222 return -ENOMEM;
223 session_objd = objd_alloc(session, &lttng_session_ops);
224 if (session_objd < 0) {
225 ret = session_objd;
226 goto objd_error;
227 }
228 session->objd = session_objd;
229 return session_objd;
230
231objd_error:
232 ltt_session_destroy(session);
233 return ret;
234}
235
236#if 0
237static
238int lttng_abi_tracepoint_list(void)
239{
240 int list_objd, ret;
241
242 /* TODO: Create list private data */
243 list_objd = objd_alloc(NULL, &lttng_tracepoint_list_ops);
244 if (list_objd < 0) {
245 ret = list_objd;
246 goto objd_error;
247 }
248
249 return list_objd;
250
251objd_error:
252 return ret;
253}
254#endif //0
255
256static
257long lttng_abi_tracer_version(int objd,
258 struct lttng_ust_tracer_version *v)
259{
260 v->version = LTTNG_UST_VERSION;
261 v->patchlevel = LTTNG_UST_PATCHLEVEL;
262 v->sublevel = LTTNG_UST_SUBLEVEL;
263 return 0;
264}
265
266static
267long lttng_abi_add_context(int objd,
268 struct lttng_ust_context *context_param,
269 struct lttng_ctx **ctx, struct ltt_session *session)
270{
271 if (session->been_active)
272 return -EPERM;
273
274 switch (context_param->ctx) {
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275 case LTTNG_UST_CONTEXT_PTHREAD_ID:
276 return lttng_add_pthread_id_to_ctx(ctx);
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277 case LTTNG_UST_CONTEXT_VTID:
278 return lttng_add_vtid_to_ctx(ctx);
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279 default:
280 return -EINVAL;
281 }
282}
283
284/**
285 * lttng_cmd - lttng control through socket commands
286 *
287 * @objd: the object descriptor
288 * @cmd: the command
289 * @arg: command arg
290 *
291 * This descriptor implements lttng commands:
292 * LTTNG_UST_SESSION
293 * Returns a LTTng trace session object descriptor
294 * LTTNG_UST_TRACER_VERSION
295 * Returns the LTTng kernel tracer version
296 * LTTNG_UST_TRACEPOINT_LIST
297 * Returns a file descriptor listing available tracepoints
298 * LTTNG_UST_WAIT_QUIESCENT
299 * Returns after all previously running probes have completed
300 *
301 * The returned session will be deleted when its file descriptor is closed.
302 */
303static
304long lttng_cmd(int objd, unsigned int cmd, unsigned long arg)
305{
306 switch (cmd) {
307 case LTTNG_UST_SESSION:
308 return lttng_abi_create_session();
309 case LTTNG_UST_TRACER_VERSION:
310 return lttng_abi_tracer_version(objd,
311 (struct lttng_ust_tracer_version *) arg);
312 case LTTNG_UST_TRACEPOINT_LIST:
313 return -ENOSYS; //TODO
314 //return lttng_abi_tracepoint_list();
315 case LTTNG_UST_WAIT_QUIESCENT:
316 synchronize_trace();
317 return 0;
318 default:
319 return -EINVAL;
320 }
321}
322
323static const struct objd_ops lttng_ops = {
324 .cmd = lttng_cmd,
325};
326
327/*
328 * We tolerate no failure in this function (if one happens, we print a dmesg
329 * error, but cannot return any error, because the channel information is
330 * invariant.
331 */
332static
333void lttng_metadata_create_events(int channel_objd)
334{
335 struct ltt_channel *channel = objd_private(channel_objd);
336 static struct lttng_ust_event metadata_params = {
337 .instrumentation = LTTNG_UST_TRACEPOINT,
338 .name = "lttng_metadata",
339 };
340 struct ltt_event *event;
341 int ret;
342
343 /*
344 * We tolerate no failure path after event creation. It will stay
345 * invariant for the rest of the session.
346 */
347 event = ltt_event_create(channel, &metadata_params, NULL);
348 if (!event) {
349 ret = -EINVAL;
350 goto create_error;
351 }
352 return;
353
354create_error:
355 WARN_ON(1);
356 return; /* not allowed to return error */
357}
358
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359int lttng_abi_create_channel(int session_objd,
360 struct lttng_ust_channel *chan_param,
361 enum channel_type channel_type)
362{
363 struct ltt_session *session = objd_private(session_objd);
364 const struct objd_ops *ops;
365 const char *transport_name;
366 struct ltt_channel *chan;
367 int chan_objd;
368 int ret = 0;
369
370 chan_objd = objd_alloc(NULL, &lttng_channel_ops);
371 if (chan_objd < 0) {
372 ret = chan_objd;
373 goto objd_error;
374 }
375 switch (channel_type) {
376 case PER_CPU_CHANNEL:
377 if (chan_param->output == LTTNG_UST_MMAP) {
378 transport_name = chan_param->overwrite ?
379 "relay-overwrite-mmap" : "relay-discard-mmap";
380 } else {
381 return -EINVAL;
382 }
383 ops = &lttng_channel_ops;
384 break;
385 case METADATA_CHANNEL:
386 if (chan_param->output == LTTNG_UST_MMAP)
387 transport_name = "relay-metadata-mmap";
388 else
389 return -EINVAL;
390 ops = &lttng_metadata_ops;
391 break;
392 default:
393 transport_name = "<unknown>";
394 break;
395 }
396 /*
397 * We tolerate no failure path after channel creation. It will stay
398 * invariant for the rest of the session.
399 */
400 chan = ltt_channel_create(session, transport_name, NULL,
401 chan_param->subbuf_size,
402 chan_param->num_subbuf,
403 chan_param->switch_timer_interval,
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404 chan_param->read_timer_interval,
405 &chan_param->shm_fd,
406 &chan_param->wait_fd,
407 &chan_param->memory_map_size);
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408 if (!chan) {
409 ret = -EINVAL;
410 goto chan_error;
411 }
412 objd_set_private(chan_objd, chan);
413 chan->objd = chan_objd;
414 if (channel_type == METADATA_CHANNEL) {
415 session->metadata = chan;
416 lttng_metadata_create_events(chan_objd);
417 }
418
419 /* The channel created holds a reference on the session */
420 objd_ref(session_objd);
421
422 return chan_objd;
423
424chan_error:
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425 {
426 int err;
427
428 err = objd_unref(chan_objd);
429 assert(!err);
430 }
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431objd_error:
432 return ret;
433}
434
435/**
436 * lttng_session_cmd - lttng session object command
437 *
438 * @obj: the object
439 * @cmd: the command
440 * @arg: command arg
441 *
442 * This descriptor implements lttng commands:
443 * LTTNG_UST_CHANNEL
444 * Returns a LTTng channel object descriptor
445 * LTTNG_UST_ENABLE
446 * Enables tracing for a session (weak enable)
447 * LTTNG_UST_DISABLE
448 * Disables tracing for a session (strong disable)
449 * LTTNG_UST_METADATA
450 * Returns a LTTng metadata object descriptor
451 *
452 * The returned channel will be deleted when its file descriptor is closed.
453 */
454static
455long lttng_session_cmd(int objd, unsigned int cmd, unsigned long arg)
456{
457 struct ltt_session *session = objd_private(objd);
458
459 switch (cmd) {
460 case LTTNG_UST_CHANNEL:
461 return lttng_abi_create_channel(objd,
462 (struct lttng_ust_channel *) arg,
463 PER_CPU_CHANNEL);
464 case LTTNG_UST_SESSION_START:
465 case LTTNG_UST_ENABLE:
466 return ltt_session_enable(session);
467 case LTTNG_UST_SESSION_STOP:
468 case LTTNG_UST_DISABLE:
469 return ltt_session_disable(session);
470 case LTTNG_UST_METADATA:
471 return lttng_abi_create_channel(objd,
472 (struct lttng_ust_channel *) arg,
473 METADATA_CHANNEL);
474 default:
475 return -EINVAL;
476 }
477}
478
479/*
480 * Called when the last file reference is dropped.
481 *
482 * Big fat note: channels and events are invariant for the whole session after
483 * their creation. So this session destruction also destroys all channel and
484 * event structures specific to this session (they are not destroyed when their
485 * individual file is released).
486 */
487static
1ea11eab 488int lttng_release_session(int objd)
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489{
490 struct ltt_session *session = objd_private(objd);
491
1ea11eab 492 if (session) {
f4681817 493 ltt_session_destroy(session);
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MD
494 return 0;
495 } else {
496 return -EINVAL;
497 }
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498}
499
500static const struct objd_ops lttng_session_ops = {
1ea11eab 501 .release = lttng_release_session,
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502 .cmd = lttng_session_cmd,
503};
504
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505struct stream_priv_data {
506 struct lib_ring_buffer *buf;
507 struct ltt_channel *ltt_chan;
508};
509
f4681817 510static
381c0f1e 511int lttng_abi_open_stream(int channel_objd, struct lttng_ust_stream *info)
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512{
513 struct ltt_channel *channel = objd_private(channel_objd);
514 struct lib_ring_buffer *buf;
381c0f1e 515 struct stream_priv_data *priv;
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516 int stream_objd, ret;
517
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518 buf = channel->ops->buffer_read_open(channel->chan, channel->handle,
519 &info->shm_fd, &info->wait_fd, &info->memory_map_size);
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520 if (!buf)
521 return -ENOENT;
522
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523 priv = zmalloc(sizeof(*priv));
524 if (!priv) {
525 ret = -ENOMEM;
526 goto alloc_error;
527 }
528 priv->buf = buf;
529 priv->ltt_chan = channel;
530 stream_objd = objd_alloc(priv, &lib_ring_buffer_objd_ops);
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531 if (stream_objd < 0) {
532 ret = stream_objd;
533 goto objd_error;
534 }
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535 /* Hold a reference on the channel object descriptor */
536 objd_ref(channel_objd);
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537 return stream_objd;
538
539objd_error:
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540 free(priv);
541alloc_error:
542 channel->ops->buffer_read_close(buf, channel->handle);
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543 return ret;
544}
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545
546static
547int lttng_abi_create_event(int channel_objd,
548 struct lttng_ust_event *event_param)
549{
550 struct ltt_channel *channel = objd_private(channel_objd);
551 struct ltt_event *event;
552 int event_objd, ret;
553
554 event_param->name[LTTNG_UST_SYM_NAME_LEN - 1] = '\0';
555 event_objd = objd_alloc(NULL, &lttng_event_ops);
556 if (event_objd < 0) {
557 ret = event_objd;
558 goto objd_error;
559 }
560 /*
561 * We tolerate no failure path after event creation. It will stay
562 * invariant for the rest of the session.
563 */
564 event = ltt_event_create(channel, event_param, NULL);
565 if (!event) {
566 ret = -EINVAL;
567 goto event_error;
568 }
569 objd_set_private(event_objd, event);
570 /* The event holds a reference on the channel */
571 objd_ref(channel_objd);
572 return event_objd;
573
574event_error:
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575 {
576 int err;
577
578 err = objd_unref(event_objd);
579 assert(!err);
580 }
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581objd_error:
582 return ret;
583}
584
585/**
586 * lttng_channel_cmd - lttng control through object descriptors
587 *
588 * @objd: the object descriptor
589 * @cmd: the command
590 * @arg: command arg
591 *
592 * This object descriptor implements lttng commands:
593 * LTTNG_UST_STREAM
594 * Returns an event stream object descriptor or failure.
595 * (typically, one event stream records events from one CPU)
596 * LTTNG_UST_EVENT
597 * Returns an event object descriptor or failure.
598 * LTTNG_UST_CONTEXT
599 * Prepend a context field to each event in the channel
600 * LTTNG_UST_ENABLE
601 * Enable recording for events in this channel (weak enable)
602 * LTTNG_UST_DISABLE
603 * Disable recording for events in this channel (strong disable)
604 *
605 * Channel and event file descriptors also hold a reference on the session.
606 */
607static
608long lttng_channel_cmd(int objd, unsigned int cmd, unsigned long arg)
609{
610 struct ltt_channel *channel = objd_private(objd);
611
612 switch (cmd) {
613 case LTTNG_UST_STREAM:
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614 {
615 struct lttng_ust_stream *stream;
616
617 stream = (struct lttng_ust_stream *) arg;
618 /* stream used as output */
619 return lttng_abi_open_stream(objd, stream);
620 }
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621 case LTTNG_UST_EVENT:
622 return lttng_abi_create_event(objd, (struct lttng_ust_event *) arg);
623 case LTTNG_UST_CONTEXT:
624 return lttng_abi_add_context(objd,
625 (struct lttng_ust_context *) arg,
626 &channel->ctx, channel->session);
627 case LTTNG_UST_ENABLE:
628 return ltt_channel_enable(channel);
629 case LTTNG_UST_DISABLE:
630 return ltt_channel_disable(channel);
631 default:
632 return -EINVAL;
633 }
634}
635
636/**
637 * lttng_metadata_cmd - lttng control through object descriptors
638 *
639 * @objd: the object descriptor
640 * @cmd: the command
641 * @arg: command arg
642 *
643 * This object descriptor implements lttng commands:
644 * LTTNG_UST_STREAM
645 * Returns an event stream file descriptor or failure.
646 *
647 * Channel and event file descriptors also hold a reference on the session.
648 */
649static
650long lttng_metadata_cmd(int objd, unsigned int cmd, unsigned long arg)
651{
652 switch (cmd) {
653 case LTTNG_UST_STREAM:
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654 {
655 struct lttng_ust_stream *stream;
656
657 stream = (struct lttng_ust_stream *) arg;
658 /* stream used as output */
659 return lttng_abi_open_stream(objd, stream);
660 }
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661 default:
662 return -EINVAL;
663 }
664}
665
666#if 0
667/**
668 * lttng_channel_poll - lttng stream addition/removal monitoring
669 *
670 * @file: the file
671 * @wait: poll table
672 */
673unsigned int lttng_channel_poll(struct file *file, poll_table *wait)
674{
675 struct ltt_channel *channel = file->private_data;
676 unsigned int mask = 0;
677
678 if (file->f_mode & FMODE_READ) {
679 poll_wait_set_exclusive(wait);
680 poll_wait(file, channel->ops->get_hp_wait_queue(channel->chan),
681 wait);
682
683 if (channel->ops->is_disabled(channel->chan))
684 return POLLERR;
685 if (channel->ops->is_finalized(channel->chan))
686 return POLLHUP;
687 if (channel->ops->buffer_has_read_closed_stream(channel->chan))
688 return POLLIN | POLLRDNORM;
689 return 0;
690 }
691 return mask;
692
693}
694#endif //0
695
696static
697int lttng_channel_release(int objd)
698{
699 struct ltt_channel *channel = objd_private(objd);
700
701 if (channel)
1ea11eab 702 return objd_unref(channel->session->objd);
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703 return 0;
704}
705
706static const struct objd_ops lttng_channel_ops = {
707 .release = lttng_channel_release,
708 //.poll = lttng_channel_poll,
709 .cmd = lttng_channel_cmd,
710};
711
712static const struct objd_ops lttng_metadata_ops = {
713 .release = lttng_channel_release,
714 .cmd = lttng_metadata_cmd,
715};
716
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717/**
718 * lttng_rb_cmd - lttng ring buffer control through object descriptors
719 *
720 * @objd: the object descriptor
721 * @cmd: the command
722 * @arg: command arg
723 *
724 * This object descriptor implements lttng commands:
725 * (None for now. Access is done directly though shm.)
726 * TODO: Add buffer flush.
727 */
728static
729long lttng_rb_cmd(int objd, unsigned int cmd, unsigned long arg)
730{
fb50c39d 731 //struct stream_priv_data *priv = objd_private(objd);
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MD
732
733 switch (cmd) {
734 default:
735 return -EINVAL;
736 }
737}
738
739static
740int lttng_rb_release(int objd)
741{
742 struct stream_priv_data *priv = objd_private(objd);
743 struct lib_ring_buffer *buf;
744 struct ltt_channel *channel;
745
746 if (priv) {
747 buf = priv->buf;
748 channel = priv->ltt_chan;
749 free(priv);
824f40b8 750 channel->ops->buffer_read_close(buf, channel->handle);
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751
752 return objd_unref(channel->objd);
753 }
754 return 0;
755}
756
757static const struct objd_ops lib_ring_buffer_objd_ops = {
758 .release = lttng_rb_release,
759 .cmd = lttng_rb_cmd,
760};
761
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762/**
763 * lttng_event_cmd - lttng control through object descriptors
764 *
765 * @objd: the object descriptor
766 * @cmd: the command
767 * @arg: command arg
768 *
769 * This object descriptor implements lttng commands:
770 * LTTNG_UST_CONTEXT
771 * Prepend a context field to each record of this event
772 * LTTNG_UST_ENABLE
773 * Enable recording for this event (weak enable)
774 * LTTNG_UST_DISABLE
775 * Disable recording for this event (strong disable)
776 */
777static
778long lttng_event_cmd(int objd, unsigned int cmd, unsigned long arg)
779{
780 struct ltt_event *event = objd_private(objd);
781
782 switch (cmd) {
783 case LTTNG_UST_CONTEXT:
784 return lttng_abi_add_context(objd,
785 (struct lttng_ust_context *) arg,
786 &event->ctx, event->chan->session);
787 case LTTNG_UST_ENABLE:
788 return ltt_event_enable(event);
789 case LTTNG_UST_DISABLE:
790 return ltt_event_disable(event);
791 default:
792 return -EINVAL;
793 }
794}
795
796static
797int lttng_event_release(int objd)
798{
799 struct ltt_event *event = objd_private(objd);
800
801 if (event)
1ea11eab 802 return objd_unref(event->chan->objd);
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803 return 0;
804}
805
806/* TODO: filter control ioctl */
807static const struct objd_ops lttng_event_ops = {
808 .release = lttng_event_release,
809 .cmd = lttng_event_cmd,
810};
811
b35d179d 812void lttng_ust_abi_exit(void)
f4681817 813{
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814 objd_table_destroy();
815}
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