]> code.delx.au - pulseaudio/blob - src/modules/module-alsa-source.c
Some strings done in German translation
[pulseaudio] / src / modules / module-alsa-source.c
1 /***
2 This file is part of PulseAudio.
3
4 Copyright 2004-2008 Lennart Poettering
5 Copyright 2006 Pierre Ossman <ossman@cendio.se> for Cendio AB
6
7 PulseAudio is free software; you can redistribute it and/or modify
8 it under the terms of the GNU Lesser General Public License as published
9 by the Free Software Foundation; either version 2 of the License,
10 or (at your option) any later version.
11
12 PulseAudio is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 General Public License for more details.
16
17 You should have received a copy of the GNU Lesser General Public License
18 along with PulseAudio; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
20 USA.
21 ***/
22
23 #ifdef HAVE_CONFIG_H
24 #include <config.h>
25 #endif
26
27 #include <stdio.h>
28
29 #include <asoundlib.h>
30
31 #ifdef HAVE_VALGRIND_MEMCHECK_H
32 #include <valgrind/memcheck.h>
33 #endif
34
35 #include <pulse/xmalloc.h>
36 #include <pulse/util.h>
37 #include <pulse/timeval.h>
38
39 #include <pulsecore/core-error.h>
40 #include <pulsecore/core.h>
41 #include <pulsecore/module.h>
42 #include <pulsecore/memchunk.h>
43 #include <pulsecore/sink.h>
44 #include <pulsecore/modargs.h>
45 #include <pulsecore/core-util.h>
46 #include <pulsecore/sample-util.h>
47 #include <pulsecore/log.h>
48 #include <pulsecore/macro.h>
49 #include <pulsecore/thread.h>
50 #include <pulsecore/core-error.h>
51 #include <pulsecore/thread-mq.h>
52 #include <pulsecore/rtpoll.h>
53 #include <pulsecore/time-smoother.h>
54 #include <pulsecore/rtclock.h>
55
56 #include "alsa-util.h"
57 #include "module-alsa-source-symdef.h"
58
59 PA_MODULE_AUTHOR("Lennart Poettering");
60 PA_MODULE_DESCRIPTION("ALSA Source");
61 PA_MODULE_VERSION(PACKAGE_VERSION);
62 PA_MODULE_LOAD_ONCE(FALSE);
63 PA_MODULE_USAGE(
64 "source_name=<name for the source> "
65 "device=<ALSA device> "
66 "device_id=<ALSA card index> "
67 "format=<sample format> "
68 "rate=<sample rate> "
69 "channels=<number of channels> "
70 "channel_map=<channel map> "
71 "fragments=<number of fragments> "
72 "fragment_size=<fragment size> "
73 "mmap=<enable memory mapping?> "
74 "tsched=<enable system timer based scheduling mode?> "
75 "tsched_buffer_size=<buffer size when using timer based scheduling> "
76 "tsched_buffer_watermark=<upper fill watermark>");
77
78 static const char* const valid_modargs[] = {
79 "source_name",
80 "device",
81 "device_id",
82 "format",
83 "rate",
84 "channels",
85 "channel_map",
86 "fragments",
87 "fragment_size",
88 "mmap",
89 "tsched",
90 "tsched_buffer_size",
91 "tsched_buffer_watermark",
92 NULL
93 };
94
95 #define DEFAULT_DEVICE "default"
96 #define DEFAULT_TSCHED_BUFFER_USEC (2*PA_USEC_PER_SEC) /* 2s */
97 #define DEFAULT_TSCHED_WATERMARK_USEC (20*PA_USEC_PER_MSEC) /* 20ms */
98 #define TSCHED_MIN_SLEEP_USEC (3*PA_USEC_PER_MSEC) /* 3ms */
99 #define TSCHED_MIN_WAKEUP_USEC (3*PA_USEC_PER_MSEC) /* 3ms */
100
101 struct userdata {
102 pa_core *core;
103 pa_module *module;
104 pa_source *source;
105
106 pa_thread *thread;
107 pa_thread_mq thread_mq;
108 pa_rtpoll *rtpoll;
109
110 snd_pcm_t *pcm_handle;
111
112 pa_alsa_fdlist *mixer_fdl;
113 snd_mixer_t *mixer_handle;
114 snd_mixer_elem_t *mixer_elem;
115 long hw_volume_max, hw_volume_min;
116 long hw_dB_max, hw_dB_min;
117 pa_bool_t hw_dB_supported;
118 pa_bool_t mixer_seperate_channels;
119
120 pa_cvolume hardware_volume;
121
122 size_t frame_size, fragment_size, hwbuf_size, tsched_watermark;
123 unsigned nfragments;
124
125 char *device_name;
126
127 pa_bool_t use_mmap, use_tsched;
128
129 pa_rtpoll_item *alsa_rtpoll_item;
130
131 snd_mixer_selem_channel_id_t mixer_map[SND_MIXER_SCHN_LAST];
132
133 pa_smoother *smoother;
134 int64_t frame_index;
135
136 snd_pcm_sframes_t hwbuf_unused_frames;
137 };
138
139 static void fix_tsched_watermark(struct userdata *u) {
140 size_t max_use;
141 size_t min_sleep, min_wakeup;
142 pa_assert(u);
143
144 max_use = u->hwbuf_size - (size_t) u->hwbuf_unused_frames * u->frame_size;
145
146 min_sleep = pa_usec_to_bytes(TSCHED_MIN_SLEEP_USEC, &u->source->sample_spec);
147 min_wakeup = pa_usec_to_bytes(TSCHED_MIN_WAKEUP_USEC, &u->source->sample_spec);
148
149 if (min_sleep > max_use/2)
150 min_sleep = pa_frame_align(max_use/2, &u->source->sample_spec);
151 if (min_sleep < u->frame_size)
152 min_sleep = u->frame_size;
153
154 if (min_wakeup > max_use/2)
155 min_wakeup = pa_frame_align(max_use/2, &u->source->sample_spec);
156 if (min_wakeup < u->frame_size)
157 min_wakeup = u->frame_size;
158
159 if (u->tsched_watermark > max_use-min_sleep)
160 u->tsched_watermark = max_use-min_sleep;
161
162 if (u->tsched_watermark < min_wakeup)
163 u->tsched_watermark = min_wakeup;
164 }
165
166 static pa_usec_t hw_sleep_time(struct userdata *u, pa_usec_t *sleep_usec, pa_usec_t*process_usec) {
167 pa_usec_t wm, usec;
168
169 pa_assert(u);
170
171 usec = pa_source_get_requested_latency_within_thread(u->source);
172
173 if (usec == (pa_usec_t) -1)
174 usec = pa_bytes_to_usec(u->hwbuf_size, &u->source->sample_spec);
175
176 /* pa_log_debug("hw buffer time: %u ms", (unsigned) (usec / PA_USEC_PER_MSEC)); */
177
178 wm = pa_bytes_to_usec(u->tsched_watermark, &u->source->sample_spec);
179
180 if (usec >= wm) {
181 *sleep_usec = usec - wm;
182 *process_usec = wm;
183 } else
184 *process_usec = *sleep_usec = usec /= 2;
185
186 /* pa_log_debug("after watermark: %u ms", (unsigned) (*sleep_usec / PA_USEC_PER_MSEC)); */
187
188 return usec;
189 }
190
191 static int try_recover(struct userdata *u, const char *call, int err) {
192 pa_assert(u);
193 pa_assert(call);
194 pa_assert(err < 0);
195
196 pa_log_debug("%s: %s", call, snd_strerror(err));
197
198 pa_assert(err != -EAGAIN);
199
200 if (err == -EPIPE)
201 pa_log_debug("%s: Buffer overrun!", call);
202
203 if ((err = snd_pcm_recover(u->pcm_handle, err, 1)) == 0) {
204 snd_pcm_start(u->pcm_handle);
205 return 0;
206 }
207
208 pa_log("%s: %s", call, snd_strerror(err));
209 return -1;
210 }
211
212 static size_t check_left_to_record(struct userdata *u, snd_pcm_sframes_t n) {
213 size_t left_to_record;
214
215 if ((size_t) n*u->frame_size < u->hwbuf_size)
216 left_to_record = u->hwbuf_size - ((size_t) n*u->frame_size);
217 else
218 left_to_record = 0;
219
220 if (left_to_record > 0) {
221 /* pa_log_debug("%0.2f ms left to record", (double) pa_bytes_to_usec(left_to_record, &u->source->sample_spec) / PA_USEC_PER_MSEC); */
222 } else {
223 pa_log_info("Overrun!");
224
225 if (u->use_tsched) {
226 size_t old_watermark = u->tsched_watermark;
227
228 u->tsched_watermark *= 2;
229 fix_tsched_watermark(u);
230
231 if (old_watermark != u->tsched_watermark)
232 pa_log_notice("Increasing wakeup watermark to %0.2f ms",
233 (double) pa_bytes_to_usec(u->tsched_watermark, &u->source->sample_spec) / PA_USEC_PER_MSEC);
234 }
235 }
236
237 return left_to_record;
238 }
239
240 static int mmap_read(struct userdata *u, pa_usec_t *sleep_usec) {
241 int work_done = 0;
242 pa_usec_t max_sleep_usec = 0, process_usec = 0;
243 size_t left_to_record;
244
245 pa_assert(u);
246 pa_source_assert_ref(u->source);
247
248 if (u->use_tsched)
249 hw_sleep_time(u, &max_sleep_usec, &process_usec);
250
251 for (;;) {
252 snd_pcm_sframes_t n;
253 int r;
254
255 snd_pcm_hwsync(u->pcm_handle);
256
257 if (PA_UNLIKELY((n = snd_pcm_avail_update(u->pcm_handle)) < 0)) {
258
259 if ((r = try_recover(u, "snd_pcm_avail_update", (int) n)) == 0)
260 continue;
261
262 return r;
263 }
264
265 left_to_record = check_left_to_record(u, n);
266
267 if (u->use_tsched)
268 if (pa_bytes_to_usec(left_to_record, &u->source->sample_spec) > process_usec+max_sleep_usec/2)
269 break;
270
271 if (PA_UNLIKELY(n <= 0))
272 break;
273
274 for (;;) {
275 int err;
276 const snd_pcm_channel_area_t *areas;
277 snd_pcm_uframes_t offset, frames = (snd_pcm_uframes_t) n;
278 pa_memchunk chunk;
279 void *p;
280 snd_pcm_sframes_t sframes;
281
282 /* pa_log_debug("%lu frames to read", (unsigned long) frames); */
283
284 if (PA_UNLIKELY((err = snd_pcm_mmap_begin(u->pcm_handle, &areas, &offset, &frames)) < 0)) {
285
286 if ((r = try_recover(u, "snd_pcm_mmap_begin", err)) == 0)
287 continue;
288
289 return r;
290 }
291
292 /* Make sure that if these memblocks need to be copied they will fit into one slot */
293 if (frames > pa_mempool_block_size_max(u->source->core->mempool)/u->frame_size)
294 frames = pa_mempool_block_size_max(u->source->core->mempool)/u->frame_size;
295
296 /* Check these are multiples of 8 bit */
297 pa_assert((areas[0].first & 7) == 0);
298 pa_assert((areas[0].step & 7)== 0);
299
300 /* We assume a single interleaved memory buffer */
301 pa_assert((areas[0].first >> 3) == 0);
302 pa_assert((areas[0].step >> 3) == u->frame_size);
303
304 p = (uint8_t*) areas[0].addr + (offset * u->frame_size);
305
306 chunk.memblock = pa_memblock_new_fixed(u->core->mempool, p, frames * u->frame_size, TRUE);
307 chunk.length = pa_memblock_get_length(chunk.memblock);
308 chunk.index = 0;
309
310 pa_source_post(u->source, &chunk);
311 pa_memblock_unref_fixed(chunk.memblock);
312
313 if (PA_UNLIKELY((sframes = snd_pcm_mmap_commit(u->pcm_handle, offset, frames)) < 0)) {
314
315 if ((r = try_recover(u, "snd_pcm_mmap_commit", (int) sframes)) == 0)
316 continue;
317
318 return r;
319 }
320
321 work_done = 1;
322
323 u->frame_index += (int64_t) frames;
324
325 /* pa_log_debug("read %lu frames", (unsigned long) frames); */
326
327 if (frames >= (snd_pcm_uframes_t) n)
328 break;
329
330 n -= (snd_pcm_sframes_t) frames;
331 }
332 }
333
334 *sleep_usec = pa_bytes_to_usec(left_to_record, &u->source->sample_spec) - process_usec;
335 return work_done;
336 }
337
338 static int unix_read(struct userdata *u, pa_usec_t *sleep_usec) {
339 int work_done = 0;
340 pa_usec_t max_sleep_usec = 0, process_usec = 0;
341 size_t left_to_record;
342
343 pa_assert(u);
344 pa_source_assert_ref(u->source);
345
346 if (u->use_tsched)
347 hw_sleep_time(u, &max_sleep_usec, &process_usec);
348
349 for (;;) {
350 snd_pcm_sframes_t n;
351 int r;
352
353 snd_pcm_hwsync(u->pcm_handle);
354
355 if (PA_UNLIKELY((n = snd_pcm_avail_update(u->pcm_handle)) < 0)) {
356
357 if ((r = try_recover(u, "snd_pcm_avail_update", (int) n)) == 0)
358 continue;
359
360 return r;
361 }
362
363 left_to_record = check_left_to_record(u, n);
364
365 if (u->use_tsched)
366 if (pa_bytes_to_usec(left_to_record, &u->source->sample_spec) > process_usec+max_sleep_usec/2)
367 break;
368
369 if (PA_UNLIKELY(n <= 0))
370 return work_done;
371
372 for (;;) {
373 void *p;
374 snd_pcm_sframes_t frames;
375 pa_memchunk chunk;
376
377 chunk.memblock = pa_memblock_new(u->core->mempool, (size_t) -1);
378
379 frames = (snd_pcm_sframes_t) (pa_memblock_get_length(chunk.memblock) / u->frame_size);
380
381 if (frames > n)
382 frames = n;
383
384 /* pa_log_debug("%lu frames to read", (unsigned long) n); */
385
386 p = pa_memblock_acquire(chunk.memblock);
387 frames = snd_pcm_readi(u->pcm_handle, (uint8_t*) p, (snd_pcm_uframes_t) frames);
388 pa_memblock_release(chunk.memblock);
389
390 pa_assert(frames != 0);
391
392 if (PA_UNLIKELY(frames < 0)) {
393 pa_memblock_unref(chunk.memblock);
394
395 if ((r = try_recover(u, "snd_pcm_readi", (int) (frames))) == 0)
396 continue;
397
398 return r;
399 }
400
401 chunk.index = 0;
402 chunk.length = (size_t) frames * u->frame_size;
403
404 pa_source_post(u->source, &chunk);
405 pa_memblock_unref(chunk.memblock);
406
407 work_done = 1;
408
409 u->frame_index += frames;
410
411 /* pa_log_debug("read %lu frames", (unsigned long) frames); */
412
413 if (frames >= n)
414 break;
415
416 n -= frames;
417 }
418 }
419
420 *sleep_usec = pa_bytes_to_usec(left_to_record, &u->source->sample_spec) - process_usec;
421 return work_done;
422 }
423
424 static void update_smoother(struct userdata *u) {
425 snd_pcm_sframes_t delay = 0;
426 int64_t frames;
427 int err;
428 pa_usec_t now1, now2;
429
430 pa_assert(u);
431 pa_assert(u->pcm_handle);
432
433 /* Let's update the time smoother */
434
435 snd_pcm_hwsync(u->pcm_handle);
436 snd_pcm_avail_update(u->pcm_handle);
437
438 if (PA_UNLIKELY((err = snd_pcm_delay(u->pcm_handle, &delay)) < 0)) {
439 pa_log_warn("Failed to get delay: %s", snd_strerror(err));
440 return;
441 }
442
443 frames = u->frame_index + delay;
444
445 now1 = pa_rtclock_usec();
446 now2 = pa_bytes_to_usec((uint64_t) frames * u->frame_size, &u->source->sample_spec);
447
448 pa_smoother_put(u->smoother, now1, now2);
449 }
450
451 static pa_usec_t source_get_latency(struct userdata *u) {
452 pa_usec_t r = 0;
453 int64_t delay;
454 pa_usec_t now1, now2;
455
456 pa_assert(u);
457
458 now1 = pa_rtclock_usec();
459 now2 = pa_smoother_get(u->smoother, now1);
460
461 delay = (int64_t) now2 - (int64_t) pa_bytes_to_usec((uint64_t) u->frame_index * u->frame_size, &u->source->sample_spec);
462
463 if (delay > 0)
464 r = (pa_usec_t) delay;
465
466 return r;
467 }
468
469 static int build_pollfd(struct userdata *u) {
470 pa_assert(u);
471 pa_assert(u->pcm_handle);
472
473 if (u->alsa_rtpoll_item)
474 pa_rtpoll_item_free(u->alsa_rtpoll_item);
475
476 if (!(u->alsa_rtpoll_item = pa_alsa_build_pollfd(u->pcm_handle, u->rtpoll)))
477 return -1;
478
479 return 0;
480 }
481
482 static int suspend(struct userdata *u) {
483 pa_assert(u);
484 pa_assert(u->pcm_handle);
485
486 pa_smoother_pause(u->smoother, pa_rtclock_usec());
487
488 /* Let's suspend */
489 snd_pcm_close(u->pcm_handle);
490 u->pcm_handle = NULL;
491
492 if (u->alsa_rtpoll_item) {
493 pa_rtpoll_item_free(u->alsa_rtpoll_item);
494 u->alsa_rtpoll_item = NULL;
495 }
496
497 pa_log_info("Device suspended...");
498
499 return 0;
500 }
501
502 static int update_sw_params(struct userdata *u) {
503 snd_pcm_uframes_t avail_min;
504 int err;
505
506 pa_assert(u);
507
508 /* Use the full buffer if noone asked us for anything specific */
509 u->hwbuf_unused_frames = 0;
510
511 if (u->use_tsched) {
512 pa_usec_t latency;
513
514 if ((latency = pa_source_get_requested_latency_within_thread(u->source)) != (pa_usec_t) -1) {
515 size_t b;
516
517 pa_log_debug("latency set to %0.2f", (double) latency / PA_USEC_PER_MSEC);
518
519 b = pa_usec_to_bytes(latency, &u->source->sample_spec);
520
521 /* We need at least one sample in our buffer */
522
523 if (PA_UNLIKELY(b < u->frame_size))
524 b = u->frame_size;
525
526 u->hwbuf_unused_frames = (snd_pcm_sframes_t)
527 (PA_LIKELY(b < u->hwbuf_size) ?
528 ((u->hwbuf_size - b) / u->frame_size) : 0);
529
530 fix_tsched_watermark(u);
531 }
532 }
533
534 pa_log_debug("hwbuf_unused_frames=%lu", (unsigned long) u->hwbuf_unused_frames);
535
536 avail_min = 1;
537
538 if (u->use_tsched) {
539 pa_usec_t sleep_usec, process_usec;
540
541 hw_sleep_time(u, &sleep_usec, &process_usec);
542 avail_min += pa_usec_to_bytes(sleep_usec, &u->source->sample_spec);
543 }
544
545 pa_log_debug("setting avail_min=%lu", (unsigned long) avail_min);
546
547 if ((err = pa_alsa_set_sw_params(u->pcm_handle, avail_min)) < 0) {
548 pa_log("Failed to set software parameters: %s", snd_strerror(err));
549 return err;
550 }
551
552 return 0;
553 }
554
555 static int unsuspend(struct userdata *u) {
556 pa_sample_spec ss;
557 int err;
558 pa_bool_t b, d;
559 unsigned nfrags;
560 snd_pcm_uframes_t period_size;
561
562 pa_assert(u);
563 pa_assert(!u->pcm_handle);
564
565 pa_log_info("Trying resume...");
566
567 snd_config_update_free_global();
568
569 if ((err = snd_pcm_open(&u->pcm_handle, u->device_name, SND_PCM_STREAM_CAPTURE,
570 /*SND_PCM_NONBLOCK|*/
571 SND_PCM_NO_AUTO_RESAMPLE|
572 SND_PCM_NO_AUTO_CHANNELS|
573 SND_PCM_NO_AUTO_FORMAT)) < 0) {
574 pa_log("Error opening PCM device %s: %s", u->device_name, snd_strerror(err));
575 goto fail;
576 }
577
578 ss = u->source->sample_spec;
579 nfrags = u->nfragments;
580 period_size = u->fragment_size / u->frame_size;
581 b = u->use_mmap;
582 d = u->use_tsched;
583
584 if ((err = pa_alsa_set_hw_params(u->pcm_handle, &ss, &nfrags, &period_size, u->hwbuf_size / u->frame_size, &b, &d, TRUE)) < 0) {
585 pa_log("Failed to set hardware parameters: %s", snd_strerror(err));
586 goto fail;
587 }
588
589 if (b != u->use_mmap || d != u->use_tsched) {
590 pa_log_warn("Resume failed, couldn't get original access mode.");
591 goto fail;
592 }
593
594 if (!pa_sample_spec_equal(&ss, &u->source->sample_spec)) {
595 pa_log_warn("Resume failed, couldn't restore original sample settings.");
596 goto fail;
597 }
598
599 if (nfrags != u->nfragments || period_size*u->frame_size != u->fragment_size) {
600 pa_log_warn("Resume failed, couldn't restore original fragment settings. (Old: %lu*%lu, New %lu*%lu)",
601 (unsigned long) u->nfragments, (unsigned long) u->fragment_size,
602 (unsigned long) nfrags, period_size * u->frame_size);
603 goto fail;
604 }
605
606 if (update_sw_params(u) < 0)
607 goto fail;
608
609 if (build_pollfd(u) < 0)
610 goto fail;
611
612 /* FIXME: We need to reload the volume somehow */
613
614 snd_pcm_start(u->pcm_handle);
615 pa_smoother_resume(u->smoother, pa_rtclock_usec());
616
617 pa_log_info("Resumed successfully...");
618
619 return 0;
620
621 fail:
622 if (u->pcm_handle) {
623 snd_pcm_close(u->pcm_handle);
624 u->pcm_handle = NULL;
625 }
626
627 return -1;
628 }
629
630 static int source_process_msg(pa_msgobject *o, int code, void *data, int64_t offset, pa_memchunk *chunk) {
631 struct userdata *u = PA_SOURCE(o)->userdata;
632
633 switch (code) {
634
635 case PA_SOURCE_MESSAGE_GET_LATENCY: {
636 pa_usec_t r = 0;
637
638 if (u->pcm_handle)
639 r = source_get_latency(u);
640
641 *((pa_usec_t*) data) = r;
642
643 return 0;
644 }
645
646 case PA_SOURCE_MESSAGE_SET_STATE:
647
648 switch ((pa_source_state_t) PA_PTR_TO_UINT(data)) {
649
650 case PA_SOURCE_SUSPENDED:
651 pa_assert(PA_SOURCE_IS_OPENED(u->source->thread_info.state));
652
653 if (suspend(u) < 0)
654 return -1;
655
656 break;
657
658 case PA_SOURCE_IDLE:
659 case PA_SOURCE_RUNNING:
660
661 if (u->source->thread_info.state == PA_SOURCE_INIT) {
662 if (build_pollfd(u) < 0)
663 return -1;
664
665 snd_pcm_start(u->pcm_handle);
666 }
667
668 if (u->source->thread_info.state == PA_SOURCE_SUSPENDED) {
669 if (unsuspend(u) < 0)
670 return -1;
671 }
672
673 break;
674
675 case PA_SOURCE_UNLINKED:
676 case PA_SOURCE_INIT:
677 ;
678 }
679
680 break;
681 }
682
683 return pa_source_process_msg(o, code, data, offset, chunk);
684 }
685
686 static int mixer_callback(snd_mixer_elem_t *elem, unsigned int mask) {
687 struct userdata *u = snd_mixer_elem_get_callback_private(elem);
688
689 pa_assert(u);
690 pa_assert(u->mixer_handle);
691
692 if (mask == SND_CTL_EVENT_MASK_REMOVE)
693 return 0;
694
695 if (mask & SND_CTL_EVENT_MASK_VALUE) {
696 pa_source_get_volume(u->source, TRUE);
697 pa_source_get_mute(u->source, TRUE);
698 }
699
700 return 0;
701 }
702
703 static int source_get_volume_cb(pa_source *s) {
704 struct userdata *u = s->userdata;
705 int err;
706 unsigned i;
707 pa_cvolume r;
708 char t[PA_CVOLUME_SNPRINT_MAX];
709
710 pa_assert(u);
711 pa_assert(u->mixer_elem);
712
713 if (u->mixer_seperate_channels) {
714
715 r.channels = s->sample_spec.channels;
716
717 for (i = 0; i < s->sample_spec.channels; i++) {
718 long alsa_vol;
719
720 if (u->hw_dB_supported) {
721
722 if ((err = snd_mixer_selem_get_capture_dB(u->mixer_elem, u->mixer_map[i], &alsa_vol)) < 0)
723 goto fail;
724
725 #ifdef HAVE_VALGRIND_MEMCHECK_H
726 VALGRIND_MAKE_MEM_DEFINED(&alsa_vol, sizeof(alsa_vol));
727 #endif
728
729 r.values[i] = pa_sw_volume_from_dB((double) alsa_vol / 100.0);
730 } else {
731
732 if ((err = snd_mixer_selem_get_capture_volume(u->mixer_elem, u->mixer_map[i], &alsa_vol)) < 0)
733 goto fail;
734
735 r.values[i] = (pa_volume_t) round(((double) (alsa_vol - u->hw_volume_min) * PA_VOLUME_NORM) / (double) (u->hw_volume_max - u->hw_volume_min));
736 }
737 }
738
739 } else {
740 long alsa_vol;
741
742 pa_assert(u->hw_dB_supported);
743
744 if ((err = snd_mixer_selem_get_capture_dB(u->mixer_elem, SND_MIXER_SCHN_MONO, &alsa_vol)) < 0)
745 goto fail;
746
747 #ifdef HAVE_VALGRIND_MEMCHECK_H
748 VALGRIND_MAKE_MEM_DEFINED(&alsa_vol, sizeof(alsa_vol));
749 #endif
750
751 pa_cvolume_set(&r, s->sample_spec.channels, pa_sw_volume_from_dB((double) alsa_vol / 100.0));
752 }
753
754 pa_log_debug("Read hardware volume: %s", pa_cvolume_snprint(t, sizeof(t), &r));
755
756 if (!pa_cvolume_equal(&u->hardware_volume, &r)) {
757
758 u->hardware_volume = s->volume = r;
759
760 if (u->hw_dB_supported) {
761 pa_cvolume reset;
762
763 /* Hmm, so the hardware volume changed, let's reset our software volume */
764
765 pa_cvolume_reset(&reset, s->sample_spec.channels);
766 pa_source_set_soft_volume(s, &reset);
767 }
768 }
769
770 return 0;
771
772 fail:
773 pa_log_error("Unable to read volume: %s", snd_strerror(err));
774
775 return -1;
776 }
777
778 static int source_set_volume_cb(pa_source *s) {
779 struct userdata *u = s->userdata;
780 int err;
781 unsigned i;
782 pa_cvolume r;
783
784 pa_assert(u);
785 pa_assert(u->mixer_elem);
786
787 if (u->mixer_seperate_channels) {
788
789 r.channels = s->sample_spec.channels;
790
791 for (i = 0; i < s->sample_spec.channels; i++) {
792 long alsa_vol;
793 pa_volume_t vol;
794
795 vol = s->volume.values[i];
796
797 if (u->hw_dB_supported) {
798
799 alsa_vol = (long) (pa_sw_volume_to_dB(vol) * 100);
800 alsa_vol = PA_CLAMP_UNLIKELY(alsa_vol, u->hw_dB_min, u->hw_dB_max);
801
802 if ((err = snd_mixer_selem_set_capture_dB(u->mixer_elem, u->mixer_map[i], alsa_vol, 1)) < 0)
803 goto fail;
804
805 if ((err = snd_mixer_selem_get_capture_dB(u->mixer_elem, u->mixer_map[i], &alsa_vol)) < 0)
806 goto fail;
807
808 r.values[i] = pa_sw_volume_from_dB((double) alsa_vol / 100.0);
809 } else {
810
811 alsa_vol = (long) round(((double) vol * (double) (u->hw_volume_max - u->hw_volume_min)) / PA_VOLUME_NORM) + u->hw_volume_min;
812 alsa_vol = PA_CLAMP_UNLIKELY(alsa_vol, u->hw_volume_min, u->hw_volume_max);
813
814 if ((err = snd_mixer_selem_set_capture_volume(u->mixer_elem, u->mixer_map[i], alsa_vol)) < 0)
815 goto fail;
816
817 if ((err = snd_mixer_selem_get_capture_volume(u->mixer_elem, u->mixer_map[i], &alsa_vol)) < 0)
818 goto fail;
819
820 r.values[i] = (pa_volume_t) round(((double) (alsa_vol - u->hw_volume_min) * PA_VOLUME_NORM) / (double) (u->hw_volume_max - u->hw_volume_min));
821 }
822 }
823
824 } else {
825 pa_volume_t vol;
826 long alsa_vol;
827
828 pa_assert(u->hw_dB_supported);
829
830 vol = pa_cvolume_max(&s->volume);
831
832 alsa_vol = (long) (pa_sw_volume_to_dB(vol) * 100);
833 alsa_vol = PA_CLAMP_UNLIKELY(alsa_vol, u->hw_dB_min, u->hw_dB_max);
834
835 if ((err = snd_mixer_selem_set_capture_dB_all(u->mixer_elem, alsa_vol, 1)) < 0)
836 goto fail;
837
838 if ((err = snd_mixer_selem_get_capture_dB(u->mixer_elem, SND_MIXER_SCHN_MONO, &alsa_vol)) < 0)
839 goto fail;
840
841 pa_cvolume_set(&r, s->volume.channels, pa_sw_volume_from_dB((double) alsa_vol / 100.0));
842 }
843
844 u->hardware_volume = r;
845
846 if (u->hw_dB_supported) {
847 char t[PA_CVOLUME_SNPRINT_MAX];
848
849 /* Match exactly what the user requested by software */
850
851 pa_alsa_volume_divide(&r, &s->volume);
852 pa_source_set_soft_volume(s, &r);
853
854 pa_log_debug("Requested volume: %s", pa_cvolume_snprint(t, sizeof(t), &s->volume));
855 pa_log_debug("Got hardware volume: %s", pa_cvolume_snprint(t, sizeof(t), &u->hardware_volume));
856 pa_log_debug("Calculated software volume: %s", pa_cvolume_snprint(t, sizeof(t), &r));
857
858 } else
859
860 /* We can't match exactly what the user requested, hence let's
861 * at least tell the user about it */
862
863 s->volume = r;
864
865 return 0;
866
867 fail:
868 pa_log_error("Unable to set volume: %s", snd_strerror(err));
869
870 return -1;
871 }
872
873 static int source_get_mute_cb(pa_source *s) {
874 struct userdata *u = s->userdata;
875 int err, sw;
876
877 pa_assert(u);
878 pa_assert(u->mixer_elem);
879
880 if ((err = snd_mixer_selem_get_capture_switch(u->mixer_elem, 0, &sw)) < 0) {
881 pa_log_error("Unable to get switch: %s", snd_strerror(err));
882 return -1;
883 }
884
885 s->muted = !sw;
886
887 return 0;
888 }
889
890 static int source_set_mute_cb(pa_source *s) {
891 struct userdata *u = s->userdata;
892 int err;
893
894 pa_assert(u);
895 pa_assert(u->mixer_elem);
896
897 if ((err = snd_mixer_selem_set_capture_switch_all(u->mixer_elem, !s->muted)) < 0) {
898 pa_log_error("Unable to set switch: %s", snd_strerror(err));
899 return -1;
900 }
901
902 return 0;
903 }
904
905 static void source_update_requested_latency_cb(pa_source *s) {
906 struct userdata *u = s->userdata;
907 pa_assert(u);
908
909 if (!u->pcm_handle)
910 return;
911
912 update_sw_params(u);
913 }
914
915 static void thread_func(void *userdata) {
916 struct userdata *u = userdata;
917
918 pa_assert(u);
919
920 pa_log_debug("Thread starting up");
921
922 if (u->core->realtime_scheduling)
923 pa_make_realtime(u->core->realtime_priority);
924
925 pa_thread_mq_install(&u->thread_mq);
926 pa_rtpoll_install(u->rtpoll);
927
928 for (;;) {
929 int ret;
930
931 /* pa_log_debug("loop"); */
932
933 /* Read some data and pass it to the sources */
934 if (PA_SOURCE_IS_OPENED(u->source->thread_info.state)) {
935 int work_done = 0;
936 pa_usec_t sleep_usec = 0;
937
938 if (u->use_mmap)
939 work_done = mmap_read(u, &sleep_usec);
940 else
941 work_done = unix_read(u, &sleep_usec);
942
943 if (work_done < 0)
944 goto fail;
945
946 /* pa_log_debug("work_done = %i", work_done); */
947
948 if (work_done)
949 update_smoother(u);
950
951 if (u->use_tsched) {
952 pa_usec_t cusec;
953
954 /* OK, the capture buffer is now empty, let's
955 * calculate when to wake up next */
956
957 /* pa_log_debug("Waking up in %0.2fms (sound card clock).", (double) sleep_usec / PA_USEC_PER_MSEC); */
958
959 /* Convert from the sound card time domain to the
960 * system time domain */
961 cusec = pa_smoother_translate(u->smoother, pa_rtclock_usec(), sleep_usec);
962
963 /* pa_log_debug("Waking up in %0.2fms (system clock).", (double) cusec / PA_USEC_PER_MSEC); */
964
965 /* We don't trust the conversion, so we wake up whatever comes first */
966 pa_rtpoll_set_timer_relative(u->rtpoll, PA_MIN(sleep_usec, cusec));
967 }
968 } else if (u->use_tsched)
969
970 /* OK, we're in an invalid state, let's disable our timers */
971 pa_rtpoll_set_timer_disabled(u->rtpoll);
972
973 /* Hmm, nothing to do. Let's sleep */
974 if ((ret = pa_rtpoll_run(u->rtpoll, 1)) < 0)
975 goto fail;
976
977 if (ret == 0)
978 goto finish;
979
980 /* Tell ALSA about this and process its response */
981 if (PA_SOURCE_IS_OPENED(u->source->thread_info.state)) {
982 struct pollfd *pollfd;
983 unsigned short revents = 0;
984 int err;
985 unsigned n;
986
987 pollfd = pa_rtpoll_item_get_pollfd(u->alsa_rtpoll_item, &n);
988
989 if ((err = snd_pcm_poll_descriptors_revents(u->pcm_handle, pollfd, n, &revents)) < 0) {
990 pa_log("snd_pcm_poll_descriptors_revents() failed: %s", snd_strerror(err));
991 goto fail;
992 }
993
994 if (revents & (POLLERR|POLLNVAL|POLLHUP|POLLPRI)) {
995 if (pa_alsa_recover_from_poll(u->pcm_handle, revents) < 0)
996 goto fail;
997
998 snd_pcm_start(u->pcm_handle);
999 }
1000
1001 if (revents && u->use_tsched)
1002 pa_log_debug("Wakeup from ALSA!%s%s", (revents & POLLIN) ? " INPUT" : "", (revents & POLLOUT) ? " OUTPUT" : "");
1003 }
1004 }
1005
1006 fail:
1007 /* If this was no regular exit from the loop we have to continue
1008 * processing messages until we received PA_MESSAGE_SHUTDOWN */
1009 pa_asyncmsgq_post(u->thread_mq.outq, PA_MSGOBJECT(u->core), PA_CORE_MESSAGE_UNLOAD_MODULE, u->module, 0, NULL, NULL);
1010 pa_asyncmsgq_wait_for(u->thread_mq.inq, PA_MESSAGE_SHUTDOWN);
1011
1012 finish:
1013 pa_log_debug("Thread shutting down");
1014 }
1015
1016 int pa__init(pa_module*m) {
1017
1018 pa_modargs *ma = NULL;
1019 struct userdata *u = NULL;
1020 const char *dev_id;
1021 pa_sample_spec ss;
1022 pa_channel_map map;
1023 uint32_t nfrags, hwbuf_size, frag_size, tsched_size, tsched_watermark;
1024 snd_pcm_uframes_t period_frames, tsched_frames;
1025 size_t frame_size;
1026 snd_pcm_info_t *pcm_info = NULL;
1027 int err;
1028 const char *name;
1029 char *name_buf = NULL;
1030 pa_bool_t namereg_fail;
1031 pa_bool_t use_mmap = TRUE, b, use_tsched = TRUE, d;
1032 pa_source_new_data data;
1033
1034 snd_pcm_info_alloca(&pcm_info);
1035
1036 pa_assert(m);
1037
1038 pa_alsa_redirect_errors_inc();
1039
1040 if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
1041 pa_log("Failed to parse module arguments");
1042 goto fail;
1043 }
1044
1045 ss = m->core->default_sample_spec;
1046 if (pa_modargs_get_sample_spec_and_channel_map(ma, &ss, &map, PA_CHANNEL_MAP_ALSA) < 0) {
1047 pa_log("Failed to parse sample specification");
1048 goto fail;
1049 }
1050
1051 frame_size = pa_frame_size(&ss);
1052
1053 nfrags = m->core->default_n_fragments;
1054 frag_size = (uint32_t) pa_usec_to_bytes(m->core->default_fragment_size_msec*PA_USEC_PER_MSEC, &ss);
1055 if (frag_size <= 0)
1056 frag_size = (uint32_t) frame_size;
1057 tsched_size = (uint32_t) pa_usec_to_bytes(DEFAULT_TSCHED_BUFFER_USEC, &ss);
1058 tsched_watermark = (uint32_t) pa_usec_to_bytes(DEFAULT_TSCHED_WATERMARK_USEC, &ss);
1059
1060 if (pa_modargs_get_value_u32(ma, "fragments", &nfrags) < 0 ||
1061 pa_modargs_get_value_u32(ma, "fragment_size", &frag_size) < 0 ||
1062 pa_modargs_get_value_u32(ma, "tsched_buffer_size", &tsched_size) < 0 ||
1063 pa_modargs_get_value_u32(ma, "tsched_buffer_watermark", &tsched_watermark) < 0) {
1064 pa_log("Failed to parse buffer metrics");
1065 goto fail;
1066 }
1067
1068 hwbuf_size = frag_size * nfrags;
1069 period_frames = frag_size/frame_size;
1070 tsched_frames = tsched_size/frame_size;
1071
1072 if (pa_modargs_get_value_boolean(ma, "mmap", &use_mmap) < 0) {
1073 pa_log("Failed to parse mmap argument.");
1074 goto fail;
1075 }
1076
1077 if (pa_modargs_get_value_boolean(ma, "tsched", &use_tsched) < 0) {
1078 pa_log("Failed to parse timer_scheduling argument.");
1079 goto fail;
1080 }
1081
1082 if (use_tsched && !pa_rtclock_hrtimer()) {
1083 pa_log_notice("Disabling timer-based scheduling because high-resolution timers are not available from the kernel.");
1084 use_tsched = FALSE;
1085 }
1086
1087 u = pa_xnew0(struct userdata, 1);
1088 u->core = m->core;
1089 u->module = m;
1090 m->userdata = u;
1091 u->use_mmap = use_mmap;
1092 u->use_tsched = use_tsched;
1093 u->rtpoll = pa_rtpoll_new();
1094 pa_thread_mq_init(&u->thread_mq, m->core->mainloop, u->rtpoll);
1095 u->alsa_rtpoll_item = NULL;
1096
1097 u->smoother = pa_smoother_new(DEFAULT_TSCHED_WATERMARK_USEC, DEFAULT_TSCHED_WATERMARK_USEC, TRUE, 5);
1098 pa_smoother_set_time_offset(u->smoother, pa_rtclock_usec());
1099
1100 snd_config_update_free_global();
1101
1102 b = use_mmap;
1103 d = use_tsched;
1104
1105 if ((dev_id = pa_modargs_get_value(ma, "device_id", NULL))) {
1106
1107 if (!(u->pcm_handle = pa_alsa_open_by_device_id(
1108 dev_id,
1109 &u->device_name,
1110 &ss, &map,
1111 SND_PCM_STREAM_CAPTURE,
1112 &nfrags, &period_frames, tsched_frames,
1113 &b, &d)))
1114 goto fail;
1115
1116 } else {
1117
1118 if (!(u->pcm_handle = pa_alsa_open_by_device_string(
1119 pa_modargs_get_value(ma, "device", DEFAULT_DEVICE),
1120 &u->device_name,
1121 &ss, &map,
1122 SND_PCM_STREAM_CAPTURE,
1123 &nfrags, &period_frames, tsched_frames,
1124 &b, &d)))
1125 goto fail;
1126 }
1127
1128 pa_assert(u->device_name);
1129 pa_log_info("Successfully opened device %s.", u->device_name);
1130
1131 if (use_mmap && !b) {
1132 pa_log_info("Device doesn't support mmap(), falling back to UNIX read/write mode.");
1133 u->use_mmap = use_mmap = FALSE;
1134 }
1135
1136 if (use_tsched && (!b || !d)) {
1137 pa_log_info("Cannot enabled timer-based scheduling, falling back to sound IRQ scheduling.");
1138 u->use_tsched = use_tsched = FALSE;
1139 }
1140
1141 if (u->use_mmap)
1142 pa_log_info("Successfully enabled mmap() mode.");
1143
1144 if (u->use_tsched)
1145 pa_log_info("Successfully enabled timer-based scheduling mode.");
1146
1147 if ((err = snd_pcm_info(u->pcm_handle, pcm_info)) < 0) {
1148 pa_log("Error fetching PCM info: %s", snd_strerror(err));
1149 goto fail;
1150 }
1151
1152 /* ALSA might tweak the sample spec, so recalculate the frame size */
1153 frame_size = pa_frame_size(&ss);
1154
1155 if ((err = snd_mixer_open(&u->mixer_handle, 0)) < 0)
1156 pa_log("Error opening mixer: %s", snd_strerror(err));
1157 else {
1158 pa_bool_t found = FALSE;
1159
1160 if (pa_alsa_prepare_mixer(u->mixer_handle, u->device_name) >= 0)
1161 found = TRUE;
1162 else {
1163 snd_pcm_info_t* info;
1164
1165 snd_pcm_info_alloca(&info);
1166
1167 if (snd_pcm_info(u->pcm_handle, info) >= 0) {
1168 char *md;
1169 int card;
1170
1171 if ((card = snd_pcm_info_get_card(info)) >= 0) {
1172
1173 md = pa_sprintf_malloc("hw:%i", card);
1174
1175 if (strcmp(u->device_name, md))
1176 if (pa_alsa_prepare_mixer(u->mixer_handle, md) >= 0)
1177 found = TRUE;
1178 pa_xfree(md);
1179 }
1180 }
1181 }
1182
1183 if (found)
1184 if (!(u->mixer_elem = pa_alsa_find_elem(u->mixer_handle, "Capture", "Mic")))
1185 found = FALSE;
1186
1187 if (!found) {
1188 snd_mixer_close(u->mixer_handle);
1189 u->mixer_handle = NULL;
1190 }
1191 }
1192
1193 if ((name = pa_modargs_get_value(ma, "source_name", NULL)))
1194 namereg_fail = TRUE;
1195 else {
1196 name = name_buf = pa_sprintf_malloc("alsa_input.%s", u->device_name);
1197 namereg_fail = FALSE;
1198 }
1199
1200 pa_source_new_data_init(&data);
1201 data.driver = __FILE__;
1202 data.module = m;
1203 pa_source_new_data_set_name(&data, name);
1204 data.namereg_fail = namereg_fail;
1205 pa_source_new_data_set_sample_spec(&data, &ss);
1206 pa_source_new_data_set_channel_map(&data, &map);
1207
1208 pa_alsa_init_proplist(data.proplist, pcm_info);
1209 pa_proplist_sets(data.proplist, PA_PROP_DEVICE_STRING, u->device_name);
1210 pa_proplist_setf(data.proplist, PA_PROP_DEVICE_BUFFERING_BUFFER_SIZE, "%lu", (unsigned long) (period_frames * frame_size * nfrags));
1211 pa_proplist_setf(data.proplist, PA_PROP_DEVICE_BUFFERING_FRAGMENT_SIZE, "%lu", (unsigned long) (period_frames * frame_size));
1212 pa_proplist_sets(data.proplist, PA_PROP_DEVICE_ACCESS_MODE, u->use_tsched ? "mmap+timer" : (u->use_mmap ? "mmap" : "serial"));
1213
1214 u->source = pa_source_new(m->core, &data, PA_SOURCE_HARDWARE|PA_SOURCE_LATENCY);
1215 pa_source_new_data_done(&data);
1216 pa_xfree(name_buf);
1217
1218 if (!u->source) {
1219 pa_log("Failed to create source object");
1220 goto fail;
1221 }
1222
1223 u->source->parent.process_msg = source_process_msg;
1224 u->source->update_requested_latency = source_update_requested_latency_cb;
1225 u->source->userdata = u;
1226
1227 pa_source_set_asyncmsgq(u->source, u->thread_mq.inq);
1228 pa_source_set_rtpoll(u->source, u->rtpoll);
1229
1230 u->frame_size = frame_size;
1231 u->fragment_size = frag_size = (uint32_t) (period_frames * frame_size);
1232 u->nfragments = nfrags;
1233 u->hwbuf_size = u->fragment_size * nfrags;
1234 u->hwbuf_unused_frames = 0;
1235 u->tsched_watermark = tsched_watermark;
1236 u->frame_index = 0;
1237 u->hw_dB_supported = FALSE;
1238 u->hw_dB_min = u->hw_dB_max = 0;
1239 u->hw_volume_min = u->hw_volume_max = 0;
1240 u->mixer_seperate_channels = FALSE;
1241 pa_cvolume_mute(&u->hardware_volume, u->source->sample_spec.channels);
1242
1243 if (use_tsched)
1244 fix_tsched_watermark(u);
1245
1246 pa_source_set_latency_range(u->source,
1247 !use_tsched ? pa_bytes_to_usec(u->hwbuf_size, &ss) : (pa_usec_t) -1,
1248 pa_bytes_to_usec(u->hwbuf_size, &ss));
1249
1250 pa_log_info("Using %u fragments of size %lu bytes, buffer time is %0.2fms",
1251 nfrags, (long unsigned) u->fragment_size,
1252 (double) pa_bytes_to_usec(u->hwbuf_size, &ss) / PA_USEC_PER_MSEC);
1253
1254 if (use_tsched)
1255 pa_log_info("Time scheduling watermark is %0.2fms",
1256 (double) pa_bytes_to_usec(u->tsched_watermark, &ss) / PA_USEC_PER_MSEC);
1257
1258 if (update_sw_params(u) < 0)
1259 goto fail;
1260
1261 if (u->mixer_handle) {
1262 pa_assert(u->mixer_elem);
1263
1264 if (snd_mixer_selem_has_capture_volume(u->mixer_elem)) {
1265 pa_bool_t suitable = TRUE;
1266
1267 if (snd_mixer_selem_get_capture_volume_range(u->mixer_elem, &u->hw_volume_min, &u->hw_volume_max) < 0) {
1268 pa_log_info("Failed to get volume range. Falling back to software volume control.");
1269 suitable = FALSE;
1270 } else {
1271 pa_log_info("Volume ranges from %li to %li.", u->hw_volume_min, u->hw_volume_max);
1272 pa_assert(u->hw_volume_min < u->hw_volume_max);
1273 }
1274
1275 if (snd_mixer_selem_get_capture_dB_range(u->mixer_elem, &u->hw_dB_min, &u->hw_dB_max) < 0)
1276 pa_log_info("Mixer doesn't support dB information.");
1277 else {
1278 #ifdef HAVE_VALGRIND_MEMCHECK_H
1279 VALGRIND_MAKE_MEM_DEFINED(&u->hw_dB_min, sizeof(u->hw_dB_min));
1280 VALGRIND_MAKE_MEM_DEFINED(&u->hw_dB_max, sizeof(u->hw_dB_max));
1281 #endif
1282
1283 pa_log_info("Volume ranges from %0.2f dB to %0.2f dB.", (double) u->hw_dB_min/100.0, (double) u->hw_dB_max/100.0);
1284 pa_assert(u->hw_dB_min < u->hw_dB_max);
1285 u->hw_dB_supported = TRUE;
1286 }
1287
1288 if (suitable &&
1289 !u->hw_dB_supported &&
1290 u->hw_volume_max - u->hw_volume_min < 3) {
1291
1292 pa_log_info("Device has less than 4 volume levels. Falling back to software volume control.");
1293 suitable = FALSE;
1294 }
1295
1296
1297 if (suitable) {
1298 u->mixer_seperate_channels = pa_alsa_calc_mixer_map(u->mixer_elem, &map, u->mixer_map, FALSE) >= 0;
1299
1300 u->source->get_volume = source_get_volume_cb;
1301 u->source->set_volume = source_set_volume_cb;
1302 u->source->flags |= PA_SOURCE_HW_VOLUME_CTRL | (u->hw_dB_supported ? PA_SOURCE_DECIBEL_VOLUME : 0);
1303 pa_log_info("Using hardware volume control. Hardware dB scale %s.", u->hw_dB_supported ? "supported" : "not supported");
1304 } else
1305 pa_log_info("Using software volume control.");
1306 }
1307
1308 if (snd_mixer_selem_has_capture_switch(u->mixer_elem)) {
1309 u->source->get_mute = source_get_mute_cb;
1310 u->source->set_mute = source_set_mute_cb;
1311 u->source->flags |= PA_SOURCE_HW_MUTE_CTRL;
1312 } else
1313 pa_log_info("Using software mute control.");
1314
1315 u->mixer_fdl = pa_alsa_fdlist_new();
1316
1317 if (pa_alsa_fdlist_set_mixer(u->mixer_fdl, u->mixer_handle, m->core->mainloop) < 0) {
1318 pa_log("Failed to initialize file descriptor monitoring");
1319 goto fail;
1320 }
1321
1322 snd_mixer_elem_set_callback(u->mixer_elem, mixer_callback);
1323 snd_mixer_elem_set_callback_private(u->mixer_elem, u);
1324 } else
1325 u->mixer_fdl = NULL;
1326
1327 pa_alsa_dump(u->pcm_handle);
1328
1329 if (!(u->thread = pa_thread_new(thread_func, u))) {
1330 pa_log("Failed to create thread.");
1331 goto fail;
1332 }
1333 /* Get initial mixer settings */
1334 if (data.volume_is_set) {
1335 if (u->source->set_volume)
1336 u->source->set_volume(u->source);
1337 } else {
1338 if (u->source->get_volume)
1339 u->source->get_volume(u->source);
1340 }
1341
1342 if (data.muted_is_set) {
1343 if (u->source->set_mute)
1344 u->source->set_mute(u->source);
1345 } else {
1346 if (u->source->get_mute)
1347 u->source->get_mute(u->source);
1348 }
1349
1350 pa_source_put(u->source);
1351
1352 pa_modargs_free(ma);
1353
1354 return 0;
1355
1356 fail:
1357
1358 if (ma)
1359 pa_modargs_free(ma);
1360
1361 pa__done(m);
1362
1363 return -1;
1364 }
1365
1366 void pa__done(pa_module*m) {
1367 struct userdata *u;
1368
1369 pa_assert(m);
1370
1371 if (!(u = m->userdata)) {
1372 pa_alsa_redirect_errors_dec();
1373 return;
1374 }
1375
1376 if (u->source)
1377 pa_source_unlink(u->source);
1378
1379 if (u->thread) {
1380 pa_asyncmsgq_send(u->thread_mq.inq, NULL, PA_MESSAGE_SHUTDOWN, NULL, 0, NULL);
1381 pa_thread_free(u->thread);
1382 }
1383
1384 pa_thread_mq_done(&u->thread_mq);
1385
1386 if (u->source)
1387 pa_source_unref(u->source);
1388
1389 if (u->alsa_rtpoll_item)
1390 pa_rtpoll_item_free(u->alsa_rtpoll_item);
1391
1392 if (u->rtpoll)
1393 pa_rtpoll_free(u->rtpoll);
1394
1395 if (u->mixer_fdl)
1396 pa_alsa_fdlist_free(u->mixer_fdl);
1397
1398 if (u->mixer_handle)
1399 snd_mixer_close(u->mixer_handle);
1400
1401 if (u->pcm_handle) {
1402 snd_pcm_drop(u->pcm_handle);
1403 snd_pcm_close(u->pcm_handle);
1404 }
1405
1406 if (u->smoother)
1407 pa_smoother_free(u->smoother);
1408
1409 pa_xfree(u->device_name);
1410 pa_xfree(u);
1411
1412 snd_config_update_free_global();
1413 pa_alsa_redirect_errors_dec();
1414 }