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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2010-2012 Bert Vermeulen <bert@biot.com>
5 *
6 * This program is free software: you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation, either version 3 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
20#include <stdio.h>
21#include <stdlib.h>
22#include <unistd.h>
23#include <string.h>
24#include <glib.h>
25#include "libsigrok.h"
26#include "libsigrok-internal.h"
27
28/** @cond PRIVATE */
29#define LOG_PREFIX "session"
30/** @endcond */
31
32/**
33 * @file
34 *
35 * Creating, using, or destroying libsigrok sessions.
36 */
37
38/**
39 * @defgroup grp_session Session handling
40 *
41 * Creating, using, or destroying libsigrok sessions.
42 *
43 * @{
44 */
45
46struct source {
47 int timeout;
48 sr_receive_data_callback cb;
49 void *cb_data;
50
51 /* This is used to keep track of the object (fd, pollfd or channel) which is
52 * being polled and will be used to match the source when removing it again.
53 */
54 gintptr poll_object;
55};
56
57struct datafeed_callback {
58 sr_datafeed_callback cb;
59 void *cb_data;
60};
61
62/**
63 * Create a new session.
64 *
65 * @param new_session This will contain a pointer to the newly created
66 * session if the return value is SR_OK, otherwise the value
67 * is undefined and should not be used. Must not be NULL.
68 *
69 * @retval SR_OK Success.
70 * @retval SR_ERR_ARG Invalid argument.
71 *
72 * @since 0.4.0
73 */
74SR_API int sr_session_new(struct sr_session **new_session)
75{
76 struct sr_session *session;
77
78 if (!new_session)
79 return SR_ERR_ARG;
80
81 session = g_malloc0(sizeof(struct sr_session));
82
83 session->source_timeout = -1;
84 session->running = FALSE;
85 session->abort_session = FALSE;
86 g_mutex_init(&session->stop_mutex);
87
88 *new_session = session;
89
90 return SR_OK;
91}
92
93/**
94 * Destroy a session.
95 * This frees up all memory used by the session.
96 *
97 * @param session The session to destroy. Must not be NULL.
98 *
99 * @retval SR_OK Success.
100 * @retval SR_ERR_ARG Invalid session passed.
101 *
102 * @since 0.4.0
103 */
104SR_API int sr_session_destroy(struct sr_session *session)
105{
106 if (!session) {
107 sr_err("%s: session was NULL", __func__);
108 return SR_ERR_ARG;
109 }
110
111 sr_session_dev_remove_all(session);
112 g_mutex_clear(&session->stop_mutex);
113 if (session->trigger)
114 sr_trigger_free(session->trigger);
115
116 g_free(session);
117
118 return SR_OK;
119}
120
121/**
122 * Remove all the devices from a session.
123 *
124 * The session itself (i.e., the struct sr_session) is not free'd and still
125 * exists after this function returns.
126 *
127 * @param session The session to use. Must not be NULL.
128 *
129 * @retval SR_OK Success.
130 * @retval SR_ERR_BUG Invalid session passed.
131 *
132 * @since 0.4.0
133 */
134SR_API int sr_session_dev_remove_all(struct sr_session *session)
135{
136 struct sr_dev_inst *sdi;
137 GSList *l;
138
139 if (!session) {
140 sr_err("%s: session was NULL", __func__);
141 return SR_ERR_ARG;
142 }
143
144 for (l = session->devs; l; l = l->next) {
145 sdi = (struct sr_dev_inst *) l->data;
146 sdi->session = NULL;
147 }
148
149 g_slist_free(session->devs);
150 session->devs = NULL;
151
152 return SR_OK;
153}
154
155/**
156 * Add a device instance to a session.
157 *
158 * @param session The session to add to. Must not be NULL.
159 * @param sdi The device instance to add to a session. Must not
160 * be NULL. Also, sdi->driver and sdi->driver->dev_open must
161 * not be NULL.
162 *
163 * @retval SR_OK Success.
164 * @retval SR_ERR_ARG Invalid argument.
165 *
166 * @since 0.4.0
167 */
168SR_API int sr_session_dev_add(struct sr_session *session,
169 struct sr_dev_inst *sdi)
170{
171 int ret;
172
173 if (!sdi) {
174 sr_err("%s: sdi was NULL", __func__);
175 return SR_ERR_ARG;
176 }
177
178 if (!session) {
179 sr_err("%s: session was NULL", __func__);
180 return SR_ERR_ARG;
181 }
182
183 /* If sdi->session is not NULL, the device is already in this or
184 * another session. */
185 if (sdi->session) {
186 sr_err("%s: already assigned to session", __func__);
187 return SR_ERR_ARG;
188 }
189
190 /* If sdi->driver is NULL, this is a virtual device. */
191 if (!sdi->driver) {
192 /* Just add the device, don't run dev_open(). */
193 session->devs = g_slist_append(session->devs, (gpointer)sdi);
194 sdi->session = session;
195 return SR_OK;
196 }
197
198 /* sdi->driver is non-NULL (i.e. we have a real device). */
199 if (!sdi->driver->dev_open) {
200 sr_err("%s: sdi->driver->dev_open was NULL", __func__);
201 return SR_ERR_BUG;
202 }
203
204 session->devs = g_slist_append(session->devs, (gpointer)sdi);
205 sdi->session = session;
206
207 if (session->running) {
208 /* Adding a device to a running session. Commit settings
209 * and start acquisition on that device now. */
210 if ((ret = sr_config_commit(sdi)) != SR_OK) {
211 sr_err("Failed to commit device settings before "
212 "starting acquisition in running session (%s)",
213 sr_strerror(ret));
214 return ret;
215 }
216 if ((ret = sdi->driver->dev_acquisition_start(sdi,
217 (void *)sdi)) != SR_OK) {
218 sr_err("Failed to start acquisition of device in "
219 "running session (%s)", sr_strerror(ret));
220 return ret;
221 }
222 }
223
224 return SR_OK;
225}
226
227/**
228 * List all device instances attached to a session.
229 *
230 * @param session The session to use. Must not be NULL.
231 * @param devlist A pointer where the device instance list will be
232 * stored on return. If no devices are in the session,
233 * this will be NULL. Each element in the list points
234 * to a struct sr_dev_inst *.
235 * The list must be freed by the caller, but not the
236 * elements pointed to.
237 *
238 * @retval SR_OK Success.
239 * @retval SR_ERR_ARG Invalid argument.
240 *
241 * @since 0.4.0
242 */
243SR_API int sr_session_dev_list(struct sr_session *session, GSList **devlist)
244{
245 if (!session)
246 return SR_ERR_ARG;
247
248 if (!devlist)
249 return SR_ERR_ARG;
250
251 *devlist = g_slist_copy(session->devs);
252
253 return SR_OK;
254}
255
256/**
257 * Remove all datafeed callbacks in a session.
258 *
259 * @param session The session to use. Must not be NULL.
260 *
261 * @retval SR_OK Success.
262 * @retval SR_ERR_ARG Invalid session passed.
263 *
264 * @since 0.4.0
265 */
266SR_API int sr_session_datafeed_callback_remove_all(struct sr_session *session)
267{
268 if (!session) {
269 sr_err("%s: session was NULL", __func__);
270 return SR_ERR_ARG;
271 }
272
273 g_slist_free_full(session->datafeed_callbacks, g_free);
274 session->datafeed_callbacks = NULL;
275
276 return SR_OK;
277}
278
279/**
280 * Add a datafeed callback to a session.
281 *
282 * @param session The session to use. Must not be NULL.
283 * @param cb Function to call when a chunk of data is received.
284 * Must not be NULL.
285 * @param cb_data Opaque pointer passed in by the caller.
286 *
287 * @retval SR_OK Success.
288 * @retval SR_ERR_BUG No session exists.
289 *
290 * @since 0.3.0
291 */
292SR_API int sr_session_datafeed_callback_add(struct sr_session *session,
293 sr_datafeed_callback cb, void *cb_data)
294{
295 struct datafeed_callback *cb_struct;
296
297 if (!session) {
298 sr_err("%s: session was NULL", __func__);
299 return SR_ERR_BUG;
300 }
301
302 if (!cb) {
303 sr_err("%s: cb was NULL", __func__);
304 return SR_ERR_ARG;
305 }
306
307 if (!(cb_struct = g_try_malloc0(sizeof(struct datafeed_callback))))
308 return SR_ERR_MALLOC;
309
310 cb_struct->cb = cb;
311 cb_struct->cb_data = cb_data;
312
313 session->datafeed_callbacks =
314 g_slist_append(session->datafeed_callbacks, cb_struct);
315
316 return SR_OK;
317}
318
319SR_API struct sr_trigger *sr_session_trigger_get(struct sr_session *session)
320{
321 return session->trigger;
322}
323
324SR_API int sr_session_trigger_set(struct sr_session *session, struct sr_trigger *trig)
325{
326 session->trigger = trig;
327
328 return SR_OK;
329}
330
331/**
332 * Call every device in the current session's callback.
333 *
334 * For sessions not driven by select loops such as sr_session_run(),
335 * but driven by another scheduler, this can be used to poll the devices
336 * from within that scheduler.
337 *
338 * @param session The session to use. Must not be NULL.
339 * @param block If TRUE, this call will wait for any of the session's
340 * sources to fire an event on the file descriptors, or
341 * any of their timeouts to activate. In other words, this
342 * can be used as a select loop.
343 * If FALSE, all sources have their callback run, regardless
344 * of file descriptor or timeout status.
345 *
346 * @retval SR_OK Success.
347 * @retval SR_ERR Error occured.
348 */
349static int sr_session_iteration(struct sr_session *session, gboolean block)
350{
351 unsigned int i;
352 int ret;
353
354 ret = g_poll(session->pollfds, session->num_sources,
355 block ? session->source_timeout : 0);
356 for (i = 0; i < session->num_sources; i++) {
357 if (session->pollfds[i].revents > 0 || (ret == 0
358 && session->source_timeout == session->sources[i].timeout)) {
359 /*
360 * Invoke the source's callback on an event,
361 * or if the poll timed out and this source
362 * asked for that timeout.
363 */
364 if (!session->sources[i].cb(session->pollfds[i].fd,
365 session->pollfds[i].revents,
366 session->sources[i].cb_data))
367 sr_session_source_remove(session,
368 session->sources[i].poll_object);
369 }
370 /*
371 * We want to take as little time as possible to stop
372 * the session if we have been told to do so. Therefore,
373 * we check the flag after processing every source, not
374 * just once per main event loop.
375 */
376 g_mutex_lock(&session->stop_mutex);
377 if (session->abort_session) {
378 sr_session_stop_sync(session);
379 /* But once is enough. */
380 session->abort_session = FALSE;
381 }
382 g_mutex_unlock(&session->stop_mutex);
383 }
384
385 return SR_OK;
386}
387
388
389static int verify_trigger(struct sr_trigger *trigger)
390{
391 struct sr_trigger_stage *stage;
392 struct sr_trigger_match *match;
393 GSList *l, *m;
394
395 if (!trigger->stages) {
396 sr_err("No trigger stages defined.");
397 return SR_ERR;
398 }
399
400 sr_spew("Checking trigger:");
401 for (l = trigger->stages; l; l = l->next) {
402 stage = l->data;
403 if (!stage->matches) {
404 sr_err("Stage %d has no matches defined.", stage->stage);
405 return SR_ERR;
406 }
407 for (m = stage->matches; m; m = m->next) {
408 match = m->data;
409 if (!match->channel) {
410 sr_err("Stage %d match has no channel.", stage->stage);
411 return SR_ERR;
412 }
413 if (!match->match) {
414 sr_err("Stage %d match is not defined.", stage->stage);
415 return SR_ERR;
416 }
417 sr_spew("Stage %d match on channel %s, match %d", stage->stage,
418 match->channel->name, match->match);
419 }
420 }
421
422 return SR_OK;
423}
424/**
425 * Start a session.
426 *
427 * @param session The session to use. Must not be NULL.
428 *
429 * @retval SR_OK Success.
430 * @retval SR_ERR_ARG Invalid session passed.
431 *
432 * @since 0.4.0
433 */
434SR_API int sr_session_start(struct sr_session *session)
435{
436 struct sr_dev_inst *sdi;
437 struct sr_channel *ch;
438 GSList *l, *c;
439 int enabled_channels, ret;
440
441 if (!session) {
442 sr_err("%s: session was NULL", __func__);
443 return SR_ERR_ARG;
444 }
445
446 if (!session->devs) {
447 sr_err("%s: session->devs was NULL; a session "
448 "cannot be started without devices.", __func__);
449 return SR_ERR_ARG;
450 }
451
452 if (session->trigger && verify_trigger(session->trigger) != SR_OK)
453 return SR_ERR;
454
455 sr_info("Starting.");
456
457 ret = SR_OK;
458 for (l = session->devs; l; l = l->next) {
459 sdi = l->data;
460 enabled_channels = 0;
461 for (c = sdi->channels; c; c = c->next) {
462 ch = c->data;
463 if (ch->enabled) {
464 enabled_channels++;
465 break;
466 }
467 }
468 if (enabled_channels == 0) {
469 ret = SR_ERR;
470 sr_err("%s using connection %s has no enabled channels!",
471 sdi->driver->name, sdi->connection_id);
472 break;
473 }
474
475 if ((ret = sr_config_commit(sdi)) != SR_OK) {
476 sr_err("Failed to commit device settings before "
477 "starting acquisition (%s)", sr_strerror(ret));
478 break;
479 }
480 if ((ret = sdi->driver->dev_acquisition_start(sdi, sdi)) != SR_OK) {
481 sr_err("%s: could not start an acquisition "
482 "(%s)", __func__, sr_strerror(ret));
483 break;
484 }
485 }
486
487 /* TODO: What if there are multiple devices? Which return code? */
488
489 return ret;
490}
491
492/**
493 * Run a session.
494 *
495 * @param session The session to use. Must not be NULL.
496 *
497 * @retval SR_OK Success.
498 * @retval SR_ERR_ARG Invalid session passed.
499 *
500 * @since 0.4.0
501 */
502SR_API int sr_session_run(struct sr_session *session)
503{
504 if (!session) {
505 sr_err("%s: session was NULL", __func__);
506 return SR_ERR_ARG;
507 }
508
509 if (!session->devs) {
510 /* TODO: Actually the case? */
511 sr_err("%s: session->devs was NULL; a session "
512 "cannot be run without devices.", __func__);
513 return SR_ERR_ARG;
514 }
515 session->running = TRUE;
516
517 sr_info("Running.");
518
519 /* Do we have real sources? */
520 if (session->num_sources == 1 && session->pollfds[0].fd == -1) {
521 /* Dummy source, freewheel over it. */
522 while (session->num_sources)
523 session->sources[0].cb(-1, 0, session->sources[0].cb_data);
524 } else {
525 /* Real sources, use g_poll() main loop. */
526 while (session->num_sources)
527 sr_session_iteration(session, TRUE);
528 }
529
530 return SR_OK;
531}
532
533/**
534 * Stop a session.
535 *
536 * The session is stopped immediately, with all acquisition sessions stopped
537 * and hardware drivers cleaned up.
538 *
539 * This must be called from within the session thread, to prevent freeing
540 * resources that the session thread will try to use.
541 *
542 * @param session The session to use. Must not be NULL.
543 *
544 * @retval SR_OK Success.
545 * @retval SR_ERR_ARG Invalid session passed.
546 *
547 * @private
548 */
549SR_PRIV int sr_session_stop_sync(struct sr_session *session)
550{
551 struct sr_dev_inst *sdi;
552 GSList *l;
553
554 if (!session) {
555 sr_err("%s: session was NULL", __func__);
556 return SR_ERR_ARG;
557 }
558
559 sr_info("Stopping.");
560
561 for (l = session->devs; l; l = l->next) {
562 sdi = l->data;
563 if (sdi->driver) {
564 if (sdi->driver->dev_acquisition_stop)
565 sdi->driver->dev_acquisition_stop(sdi, sdi);
566 }
567 }
568 session->running = FALSE;
569
570 return SR_OK;
571}
572
573/**
574 * Stop a session.
575 *
576 * The session is stopped immediately, with all acquisition sessions being
577 * stopped and hardware drivers cleaned up.
578 *
579 * If the session is run in a separate thread, this function will not block
580 * until the session is finished executing. It is the caller's responsibility
581 * to wait for the session thread to return before assuming that the session is
582 * completely decommissioned.
583 *
584 * @param session The session to use. Must not be NULL.
585 *
586 * @retval SR_OK Success.
587 * @retval SR_ERR_ARG Invalid session passed.
588 *
589 * @since 0.4.0
590 */
591SR_API int sr_session_stop(struct sr_session *session)
592{
593 if (!session) {
594 sr_err("%s: session was NULL", __func__);
595 return SR_ERR_BUG;
596 }
597
598 g_mutex_lock(&session->stop_mutex);
599 session->abort_session = TRUE;
600 g_mutex_unlock(&session->stop_mutex);
601
602 return SR_OK;
603}
604
605/**
606 * Debug helper.
607 *
608 * @param packet The packet to show debugging information for.
609 */
610static void datafeed_dump(const struct sr_datafeed_packet *packet)
611{
612 const struct sr_datafeed_logic *logic;
613 const struct sr_datafeed_analog *analog;
614
615 switch (packet->type) {
616 case SR_DF_HEADER:
617 sr_dbg("bus: Received SR_DF_HEADER packet.");
618 break;
619 case SR_DF_TRIGGER:
620 sr_dbg("bus: Received SR_DF_TRIGGER packet.");
621 break;
622 case SR_DF_META:
623 sr_dbg("bus: Received SR_DF_META packet.");
624 break;
625 case SR_DF_LOGIC:
626 logic = packet->payload;
627 sr_dbg("bus: Received SR_DF_LOGIC packet (%" PRIu64 " bytes, "
628 "unitsize = %d).", logic->length, logic->unitsize);
629 break;
630 case SR_DF_ANALOG:
631 analog = packet->payload;
632 sr_dbg("bus: Received SR_DF_ANALOG packet (%d samples).",
633 analog->num_samples);
634 break;
635 case SR_DF_END:
636 sr_dbg("bus: Received SR_DF_END packet.");
637 break;
638 case SR_DF_FRAME_BEGIN:
639 sr_dbg("bus: Received SR_DF_FRAME_BEGIN packet.");
640 break;
641 case SR_DF_FRAME_END:
642 sr_dbg("bus: Received SR_DF_FRAME_END packet.");
643 break;
644 default:
645 sr_dbg("bus: Received unknown packet type: %d.", packet->type);
646 break;
647 }
648}
649
650/**
651 * Send a packet to whatever is listening on the datafeed bus.
652 *
653 * Hardware drivers use this to send a data packet to the frontend.
654 *
655 * @param sdi TODO.
656 * @param packet The datafeed packet to send to the session bus.
657 *
658 * @retval SR_OK Success.
659 * @retval SR_ERR_ARG Invalid argument.
660 *
661 * @private
662 */
663SR_PRIV int sr_session_send(const struct sr_dev_inst *sdi,
664 const struct sr_datafeed_packet *packet)
665{
666 GSList *l;
667 struct datafeed_callback *cb_struct;
668
669 if (!sdi) {
670 sr_err("%s: sdi was NULL", __func__);
671 return SR_ERR_ARG;
672 }
673
674 if (!packet) {
675 sr_err("%s: packet was NULL", __func__);
676 return SR_ERR_ARG;
677 }
678
679 if (!sdi->session) {
680 sr_err("%s: session was NULL", __func__);
681 return SR_ERR_BUG;
682 }
683
684 for (l = sdi->session->datafeed_callbacks; l; l = l->next) {
685 if (sr_log_loglevel_get() >= SR_LOG_DBG)
686 datafeed_dump(packet);
687 cb_struct = l->data;
688 cb_struct->cb(sdi, packet, cb_struct->cb_data);
689 }
690
691 return SR_OK;
692}
693
694/**
695 * Add an event source for a file descriptor.
696 *
697 * @param session The session to use. Must not be NULL.
698 * @param pollfd The GPollFD.
699 * @param[in] timeout Max time to wait before the callback is called,
700 * ignored if 0.
701 * @param cb Callback function to add. Must not be NULL.
702 * @param cb_data Data for the callback function. Can be NULL.
703 * @param poll_object TODO.
704 *
705 * @retval SR_OK Success.
706 * @retval SR_ERR_ARG Invalid argument.
707 * @retval SR_ERR_MALLOC Memory allocation error.
708 */
709static int _sr_session_source_add(struct sr_session *session, GPollFD *pollfd,
710 int timeout, sr_receive_data_callback cb, void *cb_data, gintptr poll_object)
711{
712 struct source *new_sources, *s;
713 GPollFD *new_pollfds;
714
715 if (!cb) {
716 sr_err("%s: cb was NULL", __func__);
717 return SR_ERR_ARG;
718 }
719
720 /* Note: cb_data can be NULL, that's not a bug. */
721
722 new_pollfds = g_try_realloc(session->pollfds,
723 sizeof(GPollFD) * (session->num_sources + 1));
724 if (!new_pollfds) {
725 sr_err("%s: new_pollfds malloc failed", __func__);
726 return SR_ERR_MALLOC;
727 }
728
729 new_sources = g_try_realloc(session->sources, sizeof(struct source) *
730 (session->num_sources + 1));
731 if (!new_sources) {
732 sr_err("%s: new_sources malloc failed", __func__);
733 return SR_ERR_MALLOC;
734 }
735
736 new_pollfds[session->num_sources] = *pollfd;
737 s = &new_sources[session->num_sources++];
738 s->timeout = timeout;
739 s->cb = cb;
740 s->cb_data = cb_data;
741 s->poll_object = poll_object;
742 session->pollfds = new_pollfds;
743 session->sources = new_sources;
744
745 if (timeout != session->source_timeout && timeout > 0
746 && (session->source_timeout == -1 || timeout < session->source_timeout))
747 session->source_timeout = timeout;
748
749 return SR_OK;
750}
751
752/**
753 * Add an event source for a file descriptor.
754 *
755 * @param session The session to use. Must not be NULL.
756 * @param fd The file descriptor.
757 * @param events Events to check for.
758 * @param timeout Max time to wait before the callback is called, ignored if 0.
759 * @param cb Callback function to add. Must not be NULL.
760 * @param cb_data Data for the callback function. Can be NULL.
761 *
762 * @retval SR_OK Success.
763 * @retval SR_ERR_ARG Invalid argument.
764 * @retval SR_ERR_MALLOC Memory allocation error.
765 *
766 * @since 0.3.0
767 */
768SR_API int sr_session_source_add(struct sr_session *session, int fd,
769 int events, int timeout, sr_receive_data_callback cb, void *cb_data)
770{
771 GPollFD p;
772
773 p.fd = fd;
774 p.events = events;
775
776 return _sr_session_source_add(session, &p, timeout, cb, cb_data, (gintptr)fd);
777}
778
779/**
780 * Add an event source for a GPollFD.
781 *
782 * @param session The session to use. Must not be NULL.
783 * @param pollfd The GPollFD.
784 * @param timeout Max time to wait before the callback is called, ignored if 0.
785 * @param cb Callback function to add. Must not be NULL.
786 * @param cb_data Data for the callback function. Can be NULL.
787 *
788 * @retval SR_OK Success.
789 * @retval SR_ERR_ARG Invalid argument.
790 * @retval SR_ERR_MALLOC Memory allocation error.
791 *
792 * @since 0.3.0
793 */
794SR_API int sr_session_source_add_pollfd(struct sr_session *session,
795 GPollFD *pollfd, int timeout, sr_receive_data_callback cb,
796 void *cb_data)
797{
798 return _sr_session_source_add(session, pollfd, timeout, cb,
799 cb_data, (gintptr)pollfd);
800}
801
802/**
803 * Add an event source for a GIOChannel.
804 *
805 * @param session The session to use. Must not be NULL.
806 * @param channel The GIOChannel.
807 * @param events Events to poll on.
808 * @param timeout Max time to wait before the callback is called, ignored if 0.
809 * @param cb Callback function to add. Must not be NULL.
810 * @param cb_data Data for the callback function. Can be NULL.
811 *
812 * @retval SR_OK Success.
813 * @retval SR_ERR_ARG Invalid argument.
814 * @retval SR_ERR_MALLOC Memory allocation error.
815 *
816 * @since 0.3.0
817 */
818SR_API int sr_session_source_add_channel(struct sr_session *session,
819 GIOChannel *channel, int events, int timeout,
820 sr_receive_data_callback cb, void *cb_data)
821{
822 GPollFD p;
823
824#ifdef _WIN32
825 g_io_channel_win32_make_pollfd(channel, events, &p);
826#else
827 p.fd = g_io_channel_unix_get_fd(channel);
828 p.events = events;
829#endif
830
831 return _sr_session_source_add(session, &p, timeout, cb, cb_data, (gintptr)channel);
832}
833
834/**
835 * Remove the source belonging to the specified channel.
836 *
837 * @todo Add more error checks and logging.
838 *
839 * @param session The session to use. Must not be NULL.
840 * @param poll_object The channel for which the source should be removed.
841 *
842 * @retval SR_OK Success
843 * @retval SR_ERR_ARG Invalid arguments
844 * @retval SR_ERR_MALLOC Memory allocation error
845 * @retval SR_ERR_BUG Internal error
846 */
847static int _sr_session_source_remove(struct sr_session *session, gintptr poll_object)
848{
849 struct source *new_sources;
850 GPollFD *new_pollfds;
851 unsigned int old;
852
853 if (!session->sources || !session->num_sources) {
854 sr_err("%s: sources was NULL", __func__);
855 return SR_ERR_BUG;
856 }
857
858 for (old = 0; old < session->num_sources; old++) {
859 if (session->sources[old].poll_object == poll_object)
860 break;
861 }
862
863 /* fd not found, nothing to do */
864 if (old == session->num_sources)
865 return SR_OK;
866
867 session->num_sources -= 1;
868
869 if (old != session->num_sources) {
870 memmove(&session->pollfds[old], &session->pollfds[old+1],
871 (session->num_sources - old) * sizeof(GPollFD));
872 memmove(&session->sources[old], &session->sources[old+1],
873 (session->num_sources - old) * sizeof(struct source));
874 }
875
876 new_pollfds = g_try_realloc(session->pollfds, sizeof(GPollFD) * session->num_sources);
877 if (!new_pollfds && session->num_sources > 0) {
878 sr_err("%s: new_pollfds malloc failed", __func__);
879 return SR_ERR_MALLOC;
880 }
881
882 new_sources = g_try_realloc(session->sources, sizeof(struct source) * session->num_sources);
883 if (!new_sources && session->num_sources > 0) {
884 sr_err("%s: new_sources malloc failed", __func__);
885 return SR_ERR_MALLOC;
886 }
887
888 session->pollfds = new_pollfds;
889 session->sources = new_sources;
890
891 return SR_OK;
892}
893
894/**
895 * Remove the source belonging to the specified file descriptor.
896 *
897 * @param session The session to use. Must not be NULL.
898 * @param fd The file descriptor for which the source should be removed.
899 *
900 * @retval SR_OK Success
901 * @retval SR_ERR_ARG Invalid argument
902 * @retval SR_ERR_MALLOC Memory allocation error.
903 * @retval SR_ERR_BUG Internal error.
904 *
905 * @since 0.3.0
906 */
907SR_API int sr_session_source_remove(struct sr_session *session, int fd)
908{
909 return _sr_session_source_remove(session, (gintptr)fd);
910}
911
912/**
913 * Remove the source belonging to the specified poll descriptor.
914 *
915 * @param session The session to use. Must not be NULL.
916 * @param pollfd The poll descriptor for which the source should be removed.
917 *
918 * @return SR_OK upon success, SR_ERR_ARG upon invalid arguments, or
919 * SR_ERR_MALLOC upon memory allocation errors, SR_ERR_BUG upon
920 * internal errors.
921 *
922 * @since 0.2.0
923 */
924SR_API int sr_session_source_remove_pollfd(struct sr_session *session,
925 GPollFD *pollfd)
926{
927 return _sr_session_source_remove(session, (gintptr)pollfd);
928}
929
930/**
931 * Remove the source belonging to the specified channel.
932 *
933 * @param session The session to use. Must not be NULL.
934 * @param channel The channel for which the source should be removed.
935 *
936 * @retval SR_OK Success.
937 * @retval SR_ERR_ARG Invalid argument.
938 * @retval SR_ERR_MALLOC Memory allocation error.
939 * @return SR_ERR_BUG Internal error.
940 *
941 * @since 0.2.0
942 */
943SR_API int sr_session_source_remove_channel(struct sr_session *session,
944 GIOChannel *channel)
945{
946 return _sr_session_source_remove(session, (gintptr)channel);
947}
948
949static void *copy_src(struct sr_config *src)
950{
951 struct sr_config *new_src;
952
953 new_src = g_malloc(sizeof(struct sr_config));
954 memcpy(new_src, src, sizeof(struct sr_config));
955 g_variant_ref(src->data);
956
957 return new_src;
958}
959
960SR_PRIV int sr_packet_copy(const struct sr_datafeed_packet *packet,
961 struct sr_datafeed_packet **copy)
962{
963 const struct sr_datafeed_meta *meta;
964 struct sr_datafeed_meta *meta_copy;
965 const struct sr_datafeed_logic *logic;
966 struct sr_datafeed_logic *logic_copy;
967 const struct sr_datafeed_analog *analog;
968 struct sr_datafeed_analog *analog_copy;
969 uint8_t *payload;
970
971 *copy = g_malloc0(sizeof(struct sr_datafeed_packet));
972 (*copy)->type = packet->type;
973
974 switch (packet->type) {
975 case SR_DF_TRIGGER:
976 case SR_DF_END:
977 /* No payload. */
978 break;
979 case SR_DF_HEADER:
980 payload = g_malloc(sizeof(struct sr_datafeed_header));
981 memcpy(payload, packet->payload, sizeof(struct sr_datafeed_header));
982 (*copy)->payload = payload;
983 break;
984 case SR_DF_META:
985 meta = packet->payload;
986 meta_copy = g_malloc(sizeof(struct sr_datafeed_meta));
987 meta_copy->config = g_slist_copy_deep(meta->config,
988 (GCopyFunc)copy_src, NULL);
989 (*copy)->payload = meta_copy;
990 break;
991 case SR_DF_LOGIC:
992 logic = packet->payload;
993 logic_copy = g_malloc(sizeof(logic));
994 logic_copy->length = logic->length;
995 logic_copy->unitsize = logic->unitsize;
996 memcpy(logic_copy->data, logic->data, logic->length * logic->unitsize);
997 (*copy)->payload = logic_copy;
998 break;
999 case SR_DF_ANALOG:
1000 analog = packet->payload;
1001 analog_copy = g_malloc(sizeof(analog));
1002 analog_copy->channels = g_slist_copy(analog->channels);
1003 analog_copy->num_samples = analog->num_samples;
1004 analog_copy->mq = analog->mq;
1005 analog_copy->unit = analog->unit;
1006 analog_copy->mqflags = analog->mqflags;
1007 memcpy(analog_copy->data, analog->data,
1008 analog->num_samples * sizeof(float));
1009 (*copy)->payload = analog_copy;
1010 break;
1011 default:
1012 sr_err("Unknown packet type %d", packet->type);
1013 return SR_ERR;
1014 }
1015
1016 return SR_OK;
1017}
1018
1019void sr_packet_free(struct sr_datafeed_packet *packet)
1020{
1021 const struct sr_datafeed_meta *meta;
1022 const struct sr_datafeed_logic *logic;
1023 const struct sr_datafeed_analog *analog;
1024 struct sr_config *src;
1025 GSList *l;
1026
1027 switch (packet->type) {
1028 case SR_DF_TRIGGER:
1029 case SR_DF_END:
1030 /* No payload. */
1031 break;
1032 case SR_DF_HEADER:
1033 /* Payload is a simple struct. */
1034 g_free((void *)packet->payload);
1035 break;
1036 case SR_DF_META:
1037 meta = packet->payload;
1038 for (l = meta->config; l; l = l->next) {
1039 src = l->data;
1040 g_variant_unref(src->data);
1041 g_free(src);
1042 }
1043 g_slist_free(meta->config);
1044 g_free((void *)packet->payload);
1045 break;
1046 case SR_DF_LOGIC:
1047 logic = packet->payload;
1048 g_free(logic->data);
1049 g_free((void *)packet->payload);
1050 break;
1051 case SR_DF_ANALOG:
1052 analog = packet->payload;
1053 g_slist_free(analog->channels);
1054 g_free(analog->data);
1055 g_free((void *)packet->payload);
1056 break;
1057 default:
1058 sr_err("Unknown packet type %d", packet->type);
1059 }
1060 g_free(packet);
1061
1062}
1063
1064/** @} */