1 /*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 //#define LOG_NDEBUG 0
18 #define LOG_TAG "NuPlayerRenderer"
19 #include <utils/Log.h>
20
21 #include "NuPlayerRenderer.h"
22 #include <algorithm>
23 #include <cutils/properties.h>
24 #include <media/stagefright/foundation/ABuffer.h>
25 #include <media/stagefright/foundation/ADebug.h>
26 #include <media/stagefright/foundation/AMessage.h>
27 #include <media/stagefright/foundation/AUtils.h>
28 #include <media/stagefright/foundation/AWakeLock.h>
29 #include <media/stagefright/MediaClock.h>
30 #include <media/stagefright/MediaErrors.h>
31 #include <media/stagefright/MetaData.h>
32 #include <media/stagefright/Utils.h>
33 #include <media/stagefright/VideoFrameScheduler.h>
34
35 #include <inttypes.h>
36
37 namespace android {
38
39 /*
40 * Example of common configuration settings in shell script form
41
42 #Turn offload audio off (use PCM for Play Music) -- AudioPolicyManager
43 adb shell setprop audio.offload.disable 1
44
45 #Allow offload audio with video (requires offloading to be enabled) -- AudioPolicyManager
46 adb shell setprop audio.offload.video 1
47
48 #Use audio callbacks for PCM data
49 adb shell setprop media.stagefright.audio.cbk 1
50
51 #Use deep buffer for PCM data with video (it is generally enabled for audio-only)
52 adb shell setprop media.stagefright.audio.deep 1
53
54 #Set size of buffers for pcm audio sink in msec (example: 1000 msec)
55 adb shell setprop media.stagefright.audio.sink 1000
56
57 * These configurations take effect for the next track played (not the current track).
58 */
59
getUseAudioCallbackSetting()60 static inline bool getUseAudioCallbackSetting() {
61 return property_get_bool("media.stagefright.audio.cbk", false /* default_value */);
62 }
63
getAudioSinkPcmMsSetting()64 static inline int32_t getAudioSinkPcmMsSetting() {
65 return property_get_int32(
66 "media.stagefright.audio.sink", 500 /* default_value */);
67 }
68
69 // Maximum time in paused state when offloading audio decompression. When elapsed, the AudioSink
70 // is closed to allow the audio DSP to power down.
71 static const int64_t kOffloadPauseMaxUs = 10000000ll;
72
73 // Maximum allowed delay from AudioSink, 1.5 seconds.
74 static const int64_t kMaxAllowedAudioSinkDelayUs = 1500000ll;
75
76 static const int64_t kMinimumAudioClockUpdatePeriodUs = 20 /* msec */ * 1000;
77
78 // static
79 const NuPlayer::Renderer::PcmInfo NuPlayer::Renderer::AUDIO_PCMINFO_INITIALIZER = {
80 AUDIO_CHANNEL_NONE,
81 AUDIO_OUTPUT_FLAG_NONE,
82 AUDIO_FORMAT_INVALID,
83 0, // mNumChannels
84 0 // mSampleRate
85 };
86
87 // static
88 const int64_t NuPlayer::Renderer::kMinPositionUpdateDelayUs = 100000ll;
89
Renderer(const sp<MediaPlayerBase::AudioSink> & sink,const sp<AMessage> & notify,uint32_t flags)90 NuPlayer::Renderer::Renderer(
91 const sp<MediaPlayerBase::AudioSink> &sink,
92 const sp<AMessage> ¬ify,
93 uint32_t flags)
94 : mAudioSink(sink),
95 mUseVirtualAudioSink(false),
96 mNotify(notify),
97 mFlags(flags),
98 mNumFramesWritten(0),
99 mDrainAudioQueuePending(false),
100 mDrainVideoQueuePending(false),
101 mAudioQueueGeneration(0),
102 mVideoQueueGeneration(0),
103 mAudioDrainGeneration(0),
104 mVideoDrainGeneration(0),
105 mAudioEOSGeneration(0),
106 mPlaybackSettings(AUDIO_PLAYBACK_RATE_DEFAULT),
107 mAudioFirstAnchorTimeMediaUs(-1),
108 mAnchorTimeMediaUs(-1),
109 mAnchorNumFramesWritten(-1),
110 mVideoLateByUs(0ll),
111 mHasAudio(false),
112 mHasVideo(false),
113 mNotifyCompleteAudio(false),
114 mNotifyCompleteVideo(false),
115 mSyncQueues(false),
116 mPaused(false),
117 mPauseDrainAudioAllowedUs(0),
118 mVideoSampleReceived(false),
119 mVideoRenderingStarted(false),
120 mVideoRenderingStartGeneration(0),
121 mAudioRenderingStartGeneration(0),
122 mRenderingDataDelivered(false),
123 mNextAudioClockUpdateTimeUs(-1),
124 mLastAudioMediaTimeUs(-1),
125 mAudioOffloadPauseTimeoutGeneration(0),
126 mAudioTornDown(false),
127 mCurrentOffloadInfo(AUDIO_INFO_INITIALIZER),
128 mCurrentPcmInfo(AUDIO_PCMINFO_INITIALIZER),
129 mTotalBuffersQueued(0),
130 mLastAudioBufferDrained(0),
131 mUseAudioCallback(false),
132 mWakeLock(new AWakeLock()) {
133 mMediaClock = new MediaClock;
134 mPlaybackRate = mPlaybackSettings.mSpeed;
135 mMediaClock->setPlaybackRate(mPlaybackRate);
136 }
137
~Renderer()138 NuPlayer::Renderer::~Renderer() {
139 if (offloadingAudio()) {
140 mAudioSink->stop();
141 mAudioSink->flush();
142 mAudioSink->close();
143 }
144 }
145
queueBuffer(bool audio,const sp<ABuffer> & buffer,const sp<AMessage> & notifyConsumed)146 void NuPlayer::Renderer::queueBuffer(
147 bool audio,
148 const sp<ABuffer> &buffer,
149 const sp<AMessage> ¬ifyConsumed) {
150 sp<AMessage> msg = new AMessage(kWhatQueueBuffer, this);
151 msg->setInt32("queueGeneration", getQueueGeneration(audio));
152 msg->setInt32("audio", static_cast<int32_t>(audio));
153 msg->setBuffer("buffer", buffer);
154 msg->setMessage("notifyConsumed", notifyConsumed);
155 msg->post();
156 }
157
queueEOS(bool audio,status_t finalResult)158 void NuPlayer::Renderer::queueEOS(bool audio, status_t finalResult) {
159 CHECK_NE(finalResult, (status_t)OK);
160
161 sp<AMessage> msg = new AMessage(kWhatQueueEOS, this);
162 msg->setInt32("queueGeneration", getQueueGeneration(audio));
163 msg->setInt32("audio", static_cast<int32_t>(audio));
164 msg->setInt32("finalResult", finalResult);
165 msg->post();
166 }
167
setPlaybackSettings(const AudioPlaybackRate & rate)168 status_t NuPlayer::Renderer::setPlaybackSettings(const AudioPlaybackRate &rate) {
169 sp<AMessage> msg = new AMessage(kWhatConfigPlayback, this);
170 writeToAMessage(msg, rate);
171 sp<AMessage> response;
172 status_t err = msg->postAndAwaitResponse(&response);
173 if (err == OK && response != NULL) {
174 CHECK(response->findInt32("err", &err));
175 }
176 return err;
177 }
178
onConfigPlayback(const AudioPlaybackRate & rate)179 status_t NuPlayer::Renderer::onConfigPlayback(const AudioPlaybackRate &rate /* sanitized */) {
180 if (rate.mSpeed == 0.f) {
181 onPause();
182 // don't call audiosink's setPlaybackRate if pausing, as pitch does not
183 // have to correspond to the any non-0 speed (e.g old speed). Keep
184 // settings nonetheless, using the old speed, in case audiosink changes.
185 AudioPlaybackRate newRate = rate;
186 newRate.mSpeed = mPlaybackSettings.mSpeed;
187 mPlaybackSettings = newRate;
188 return OK;
189 }
190
191 if (mAudioSink != NULL && mAudioSink->ready()) {
192 status_t err = mAudioSink->setPlaybackRate(rate);
193 if (err != OK) {
194 return err;
195 }
196 }
197 mPlaybackSettings = rate;
198 mPlaybackRate = rate.mSpeed;
199 mMediaClock->setPlaybackRate(mPlaybackRate);
200 return OK;
201 }
202
getPlaybackSettings(AudioPlaybackRate * rate)203 status_t NuPlayer::Renderer::getPlaybackSettings(AudioPlaybackRate *rate /* nonnull */) {
204 sp<AMessage> msg = new AMessage(kWhatGetPlaybackSettings, this);
205 sp<AMessage> response;
206 status_t err = msg->postAndAwaitResponse(&response);
207 if (err == OK && response != NULL) {
208 CHECK(response->findInt32("err", &err));
209 if (err == OK) {
210 readFromAMessage(response, rate);
211 }
212 }
213 return err;
214 }
215
onGetPlaybackSettings(AudioPlaybackRate * rate)216 status_t NuPlayer::Renderer::onGetPlaybackSettings(AudioPlaybackRate *rate /* nonnull */) {
217 if (mAudioSink != NULL && mAudioSink->ready()) {
218 status_t err = mAudioSink->getPlaybackRate(rate);
219 if (err == OK) {
220 if (!isAudioPlaybackRateEqual(*rate, mPlaybackSettings)) {
221 ALOGW("correcting mismatch in internal/external playback rate");
222 }
223 // get playback settings used by audiosink, as it may be
224 // slightly off due to audiosink not taking small changes.
225 mPlaybackSettings = *rate;
226 if (mPaused) {
227 rate->mSpeed = 0.f;
228 }
229 }
230 return err;
231 }
232 *rate = mPlaybackSettings;
233 return OK;
234 }
235
setSyncSettings(const AVSyncSettings & sync,float videoFpsHint)236 status_t NuPlayer::Renderer::setSyncSettings(const AVSyncSettings &sync, float videoFpsHint) {
237 sp<AMessage> msg = new AMessage(kWhatConfigSync, this);
238 writeToAMessage(msg, sync, videoFpsHint);
239 sp<AMessage> response;
240 status_t err = msg->postAndAwaitResponse(&response);
241 if (err == OK && response != NULL) {
242 CHECK(response->findInt32("err", &err));
243 }
244 return err;
245 }
246
onConfigSync(const AVSyncSettings & sync,float videoFpsHint __unused)247 status_t NuPlayer::Renderer::onConfigSync(const AVSyncSettings &sync, float videoFpsHint __unused) {
248 if (sync.mSource != AVSYNC_SOURCE_DEFAULT) {
249 return BAD_VALUE;
250 }
251 // TODO: support sync sources
252 return INVALID_OPERATION;
253 }
254
getSyncSettings(AVSyncSettings * sync,float * videoFps)255 status_t NuPlayer::Renderer::getSyncSettings(AVSyncSettings *sync, float *videoFps) {
256 sp<AMessage> msg = new AMessage(kWhatGetSyncSettings, this);
257 sp<AMessage> response;
258 status_t err = msg->postAndAwaitResponse(&response);
259 if (err == OK && response != NULL) {
260 CHECK(response->findInt32("err", &err));
261 if (err == OK) {
262 readFromAMessage(response, sync, videoFps);
263 }
264 }
265 return err;
266 }
267
onGetSyncSettings(AVSyncSettings * sync,float * videoFps)268 status_t NuPlayer::Renderer::onGetSyncSettings(
269 AVSyncSettings *sync /* nonnull */, float *videoFps /* nonnull */) {
270 *sync = mSyncSettings;
271 *videoFps = -1.f;
272 return OK;
273 }
274
flush(bool audio,bool notifyComplete)275 void NuPlayer::Renderer::flush(bool audio, bool notifyComplete) {
276 {
277 Mutex::Autolock autoLock(mLock);
278 if (audio) {
279 mNotifyCompleteAudio |= notifyComplete;
280 clearAudioFirstAnchorTime_l();
281 ++mAudioQueueGeneration;
282 ++mAudioDrainGeneration;
283 } else {
284 mNotifyCompleteVideo |= notifyComplete;
285 ++mVideoQueueGeneration;
286 ++mVideoDrainGeneration;
287 }
288
289 clearAnchorTime_l();
290 mVideoLateByUs = 0;
291 mSyncQueues = false;
292 }
293
294 sp<AMessage> msg = new AMessage(kWhatFlush, this);
295 msg->setInt32("audio", static_cast<int32_t>(audio));
296 msg->post();
297 }
298
signalTimeDiscontinuity()299 void NuPlayer::Renderer::signalTimeDiscontinuity() {
300 }
301
signalDisableOffloadAudio()302 void NuPlayer::Renderer::signalDisableOffloadAudio() {
303 (new AMessage(kWhatDisableOffloadAudio, this))->post();
304 }
305
signalEnableOffloadAudio()306 void NuPlayer::Renderer::signalEnableOffloadAudio() {
307 (new AMessage(kWhatEnableOffloadAudio, this))->post();
308 }
309
pause()310 void NuPlayer::Renderer::pause() {
311 (new AMessage(kWhatPause, this))->post();
312 }
313
resume()314 void NuPlayer::Renderer::resume() {
315 (new AMessage(kWhatResume, this))->post();
316 }
317
setVideoFrameRate(float fps)318 void NuPlayer::Renderer::setVideoFrameRate(float fps) {
319 sp<AMessage> msg = new AMessage(kWhatSetVideoFrameRate, this);
320 msg->setFloat("frame-rate", fps);
321 msg->post();
322 }
323
324 // Called on any threads without mLock acquired.
getCurrentPosition(int64_t * mediaUs)325 status_t NuPlayer::Renderer::getCurrentPosition(int64_t *mediaUs) {
326 status_t result = mMediaClock->getMediaTime(ALooper::GetNowUs(), mediaUs);
327 if (result == OK) {
328 return result;
329 }
330
331 // MediaClock has not started yet. Try to start it if possible.
332 {
333 Mutex::Autolock autoLock(mLock);
334 if (mAudioFirstAnchorTimeMediaUs == -1) {
335 return result;
336 }
337
338 AudioTimestamp ts;
339 status_t res = mAudioSink->getTimestamp(ts);
340 if (res != OK) {
341 return result;
342 }
343
344 // AudioSink has rendered some frames.
345 int64_t nowUs = ALooper::GetNowUs();
346 int64_t nowMediaUs = mAudioSink->getPlayedOutDurationUs(nowUs)
347 + mAudioFirstAnchorTimeMediaUs;
348 mMediaClock->updateAnchor(nowMediaUs, nowUs, -1);
349 }
350
351 return mMediaClock->getMediaTime(ALooper::GetNowUs(), mediaUs);
352 }
353
clearAudioFirstAnchorTime_l()354 void NuPlayer::Renderer::clearAudioFirstAnchorTime_l() {
355 mAudioFirstAnchorTimeMediaUs = -1;
356 mMediaClock->setStartingTimeMedia(-1);
357 }
358
setAudioFirstAnchorTimeIfNeeded_l(int64_t mediaUs)359 void NuPlayer::Renderer::setAudioFirstAnchorTimeIfNeeded_l(int64_t mediaUs) {
360 if (mAudioFirstAnchorTimeMediaUs == -1) {
361 mAudioFirstAnchorTimeMediaUs = mediaUs;
362 mMediaClock->setStartingTimeMedia(mediaUs);
363 }
364 }
365
clearAnchorTime_l()366 void NuPlayer::Renderer::clearAnchorTime_l() {
367 mMediaClock->clearAnchor();
368 mAnchorTimeMediaUs = -1;
369 mAnchorNumFramesWritten = -1;
370 }
371
setVideoLateByUs(int64_t lateUs)372 void NuPlayer::Renderer::setVideoLateByUs(int64_t lateUs) {
373 Mutex::Autolock autoLock(mLock);
374 mVideoLateByUs = lateUs;
375 }
376
getVideoLateByUs()377 int64_t NuPlayer::Renderer::getVideoLateByUs() {
378 Mutex::Autolock autoLock(mLock);
379 return mVideoLateByUs;
380 }
381
openAudioSink(const sp<AMessage> & format,bool offloadOnly,bool hasVideo,uint32_t flags,bool * isOffloaded)382 status_t NuPlayer::Renderer::openAudioSink(
383 const sp<AMessage> &format,
384 bool offloadOnly,
385 bool hasVideo,
386 uint32_t flags,
387 bool *isOffloaded) {
388 sp<AMessage> msg = new AMessage(kWhatOpenAudioSink, this);
389 msg->setMessage("format", format);
390 msg->setInt32("offload-only", offloadOnly);
391 msg->setInt32("has-video", hasVideo);
392 msg->setInt32("flags", flags);
393
394 sp<AMessage> response;
395 msg->postAndAwaitResponse(&response);
396
397 int32_t err;
398 if (!response->findInt32("err", &err)) {
399 err = INVALID_OPERATION;
400 } else if (err == OK && isOffloaded != NULL) {
401 int32_t offload;
402 CHECK(response->findInt32("offload", &offload));
403 *isOffloaded = (offload != 0);
404 }
405 return err;
406 }
407
closeAudioSink()408 void NuPlayer::Renderer::closeAudioSink() {
409 sp<AMessage> msg = new AMessage(kWhatCloseAudioSink, this);
410
411 sp<AMessage> response;
412 msg->postAndAwaitResponse(&response);
413 }
414
onMessageReceived(const sp<AMessage> & msg)415 void NuPlayer::Renderer::onMessageReceived(const sp<AMessage> &msg) {
416 switch (msg->what()) {
417 case kWhatOpenAudioSink:
418 {
419 sp<AMessage> format;
420 CHECK(msg->findMessage("format", &format));
421
422 int32_t offloadOnly;
423 CHECK(msg->findInt32("offload-only", &offloadOnly));
424
425 int32_t hasVideo;
426 CHECK(msg->findInt32("has-video", &hasVideo));
427
428 uint32_t flags;
429 CHECK(msg->findInt32("flags", (int32_t *)&flags));
430
431 status_t err = onOpenAudioSink(format, offloadOnly, hasVideo, flags);
432
433 sp<AMessage> response = new AMessage;
434 response->setInt32("err", err);
435 response->setInt32("offload", offloadingAudio());
436
437 sp<AReplyToken> replyID;
438 CHECK(msg->senderAwaitsResponse(&replyID));
439 response->postReply(replyID);
440
441 break;
442 }
443
444 case kWhatCloseAudioSink:
445 {
446 sp<AReplyToken> replyID;
447 CHECK(msg->senderAwaitsResponse(&replyID));
448
449 onCloseAudioSink();
450
451 sp<AMessage> response = new AMessage;
452 response->postReply(replyID);
453 break;
454 }
455
456 case kWhatStopAudioSink:
457 {
458 mAudioSink->stop();
459 break;
460 }
461
462 case kWhatDrainAudioQueue:
463 {
464 mDrainAudioQueuePending = false;
465
466 int32_t generation;
467 CHECK(msg->findInt32("drainGeneration", &generation));
468 if (generation != getDrainGeneration(true /* audio */)) {
469 break;
470 }
471
472 if (onDrainAudioQueue()) {
473 uint32_t numFramesPlayed;
474 CHECK_EQ(mAudioSink->getPosition(&numFramesPlayed),
475 (status_t)OK);
476
477 uint32_t numFramesPendingPlayout =
478 mNumFramesWritten - numFramesPlayed;
479
480 // This is how long the audio sink will have data to
481 // play back.
482 int64_t delayUs =
483 mAudioSink->msecsPerFrame()
484 * numFramesPendingPlayout * 1000ll;
485 if (mPlaybackRate > 1.0f) {
486 delayUs /= mPlaybackRate;
487 }
488
489 // Let's give it more data after about half that time
490 // has elapsed.
491 delayUs /= 2;
492 // check the buffer size to estimate maximum delay permitted.
493 const int64_t maxDrainDelayUs = std::max(
494 mAudioSink->getBufferDurationInUs(), (int64_t)500000 /* half second */);
495 ALOGD_IF(delayUs > maxDrainDelayUs, "postDrainAudioQueue long delay: %lld > %lld",
496 (long long)delayUs, (long long)maxDrainDelayUs);
497 Mutex::Autolock autoLock(mLock);
498 postDrainAudioQueue_l(delayUs);
499 }
500 break;
501 }
502
503 case kWhatDrainVideoQueue:
504 {
505 int32_t generation;
506 CHECK(msg->findInt32("drainGeneration", &generation));
507 if (generation != getDrainGeneration(false /* audio */)) {
508 break;
509 }
510
511 mDrainVideoQueuePending = false;
512
513 onDrainVideoQueue();
514
515 postDrainVideoQueue();
516 break;
517 }
518
519 case kWhatPostDrainVideoQueue:
520 {
521 int32_t generation;
522 CHECK(msg->findInt32("drainGeneration", &generation));
523 if (generation != getDrainGeneration(false /* audio */)) {
524 break;
525 }
526
527 mDrainVideoQueuePending = false;
528 postDrainVideoQueue();
529 break;
530 }
531
532 case kWhatQueueBuffer:
533 {
534 onQueueBuffer(msg);
535 break;
536 }
537
538 case kWhatQueueEOS:
539 {
540 onQueueEOS(msg);
541 break;
542 }
543
544 case kWhatEOS:
545 {
546 int32_t generation;
547 CHECK(msg->findInt32("audioEOSGeneration", &generation));
548 if (generation != mAudioEOSGeneration) {
549 break;
550 }
551 status_t finalResult;
552 CHECK(msg->findInt32("finalResult", &finalResult));
553 notifyEOS(true /* audio */, finalResult);
554 break;
555 }
556
557 case kWhatConfigPlayback:
558 {
559 sp<AReplyToken> replyID;
560 CHECK(msg->senderAwaitsResponse(&replyID));
561 AudioPlaybackRate rate;
562 readFromAMessage(msg, &rate);
563 status_t err = onConfigPlayback(rate);
564 sp<AMessage> response = new AMessage;
565 response->setInt32("err", err);
566 response->postReply(replyID);
567 break;
568 }
569
570 case kWhatGetPlaybackSettings:
571 {
572 sp<AReplyToken> replyID;
573 CHECK(msg->senderAwaitsResponse(&replyID));
574 AudioPlaybackRate rate = AUDIO_PLAYBACK_RATE_DEFAULT;
575 status_t err = onGetPlaybackSettings(&rate);
576 sp<AMessage> response = new AMessage;
577 if (err == OK) {
578 writeToAMessage(response, rate);
579 }
580 response->setInt32("err", err);
581 response->postReply(replyID);
582 break;
583 }
584
585 case kWhatConfigSync:
586 {
587 sp<AReplyToken> replyID;
588 CHECK(msg->senderAwaitsResponse(&replyID));
589 AVSyncSettings sync;
590 float videoFpsHint;
591 readFromAMessage(msg, &sync, &videoFpsHint);
592 status_t err = onConfigSync(sync, videoFpsHint);
593 sp<AMessage> response = new AMessage;
594 response->setInt32("err", err);
595 response->postReply(replyID);
596 break;
597 }
598
599 case kWhatGetSyncSettings:
600 {
601 sp<AReplyToken> replyID;
602 CHECK(msg->senderAwaitsResponse(&replyID));
603
604 ALOGV("kWhatGetSyncSettings");
605 AVSyncSettings sync;
606 float videoFps = -1.f;
607 status_t err = onGetSyncSettings(&sync, &videoFps);
608 sp<AMessage> response = new AMessage;
609 if (err == OK) {
610 writeToAMessage(response, sync, videoFps);
611 }
612 response->setInt32("err", err);
613 response->postReply(replyID);
614 break;
615 }
616
617 case kWhatFlush:
618 {
619 onFlush(msg);
620 break;
621 }
622
623 case kWhatDisableOffloadAudio:
624 {
625 onDisableOffloadAudio();
626 break;
627 }
628
629 case kWhatEnableOffloadAudio:
630 {
631 onEnableOffloadAudio();
632 break;
633 }
634
635 case kWhatPause:
636 {
637 onPause();
638 break;
639 }
640
641 case kWhatResume:
642 {
643 onResume();
644 break;
645 }
646
647 case kWhatSetVideoFrameRate:
648 {
649 float fps;
650 CHECK(msg->findFloat("frame-rate", &fps));
651 onSetVideoFrameRate(fps);
652 break;
653 }
654
655 case kWhatAudioTearDown:
656 {
657 int32_t reason;
658 CHECK(msg->findInt32("reason", &reason));
659
660 onAudioTearDown((AudioTearDownReason)reason);
661 break;
662 }
663
664 case kWhatAudioOffloadPauseTimeout:
665 {
666 int32_t generation;
667 CHECK(msg->findInt32("drainGeneration", &generation));
668 if (generation != mAudioOffloadPauseTimeoutGeneration) {
669 break;
670 }
671 ALOGV("Audio Offload tear down due to pause timeout.");
672 onAudioTearDown(kDueToTimeout);
673 mWakeLock->release();
674 break;
675 }
676
677 default:
678 TRESPASS();
679 break;
680 }
681 }
682
postDrainAudioQueue_l(int64_t delayUs)683 void NuPlayer::Renderer::postDrainAudioQueue_l(int64_t delayUs) {
684 if (mDrainAudioQueuePending || mSyncQueues || mUseAudioCallback) {
685 return;
686 }
687
688 if (mAudioQueue.empty()) {
689 return;
690 }
691
692 // FIXME: if paused, wait until AudioTrack stop() is complete before delivering data.
693 if (mPaused) {
694 const int64_t diffUs = mPauseDrainAudioAllowedUs - ALooper::GetNowUs();
695 if (diffUs > delayUs) {
696 delayUs = diffUs;
697 }
698 }
699
700 mDrainAudioQueuePending = true;
701 sp<AMessage> msg = new AMessage(kWhatDrainAudioQueue, this);
702 msg->setInt32("drainGeneration", mAudioDrainGeneration);
703 msg->post(delayUs);
704 }
705
prepareForMediaRenderingStart_l()706 void NuPlayer::Renderer::prepareForMediaRenderingStart_l() {
707 mAudioRenderingStartGeneration = mAudioDrainGeneration;
708 mVideoRenderingStartGeneration = mVideoDrainGeneration;
709 mRenderingDataDelivered = false;
710 }
711
notifyIfMediaRenderingStarted_l()712 void NuPlayer::Renderer::notifyIfMediaRenderingStarted_l() {
713 if (mVideoRenderingStartGeneration == mVideoDrainGeneration &&
714 mAudioRenderingStartGeneration == mAudioDrainGeneration) {
715 mRenderingDataDelivered = true;
716 if (mPaused) {
717 return;
718 }
719 mVideoRenderingStartGeneration = -1;
720 mAudioRenderingStartGeneration = -1;
721
722 sp<AMessage> notify = mNotify->dup();
723 notify->setInt32("what", kWhatMediaRenderingStart);
724 notify->post();
725 }
726 }
727
728 // static
AudioSinkCallback(MediaPlayerBase::AudioSink *,void * buffer,size_t size,void * cookie,MediaPlayerBase::AudioSink::cb_event_t event)729 size_t NuPlayer::Renderer::AudioSinkCallback(
730 MediaPlayerBase::AudioSink * /* audioSink */,
731 void *buffer,
732 size_t size,
733 void *cookie,
734 MediaPlayerBase::AudioSink::cb_event_t event) {
735 NuPlayer::Renderer *me = (NuPlayer::Renderer *)cookie;
736
737 switch (event) {
738 case MediaPlayerBase::AudioSink::CB_EVENT_FILL_BUFFER:
739 {
740 return me->fillAudioBuffer(buffer, size);
741 break;
742 }
743
744 case MediaPlayerBase::AudioSink::CB_EVENT_STREAM_END:
745 {
746 ALOGV("AudioSink::CB_EVENT_STREAM_END");
747 me->notifyEOS(true /* audio */, ERROR_END_OF_STREAM);
748 break;
749 }
750
751 case MediaPlayerBase::AudioSink::CB_EVENT_TEAR_DOWN:
752 {
753 ALOGV("AudioSink::CB_EVENT_TEAR_DOWN");
754 me->notifyAudioTearDown(kDueToError);
755 break;
756 }
757 }
758
759 return 0;
760 }
761
fillAudioBuffer(void * buffer,size_t size)762 size_t NuPlayer::Renderer::fillAudioBuffer(void *buffer, size_t size) {
763 Mutex::Autolock autoLock(mLock);
764
765 if (!mUseAudioCallback) {
766 return 0;
767 }
768
769 bool hasEOS = false;
770
771 size_t sizeCopied = 0;
772 bool firstEntry = true;
773 QueueEntry *entry; // will be valid after while loop if hasEOS is set.
774 while (sizeCopied < size && !mAudioQueue.empty()) {
775 entry = &*mAudioQueue.begin();
776
777 if (entry->mBuffer == NULL) { // EOS
778 hasEOS = true;
779 mAudioQueue.erase(mAudioQueue.begin());
780 break;
781 }
782
783 if (firstEntry && entry->mOffset == 0) {
784 firstEntry = false;
785 int64_t mediaTimeUs;
786 CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
787 ALOGV("fillAudioBuffer: rendering audio at media time %.2f secs", mediaTimeUs / 1E6);
788 setAudioFirstAnchorTimeIfNeeded_l(mediaTimeUs);
789 }
790
791 size_t copy = entry->mBuffer->size() - entry->mOffset;
792 size_t sizeRemaining = size - sizeCopied;
793 if (copy > sizeRemaining) {
794 copy = sizeRemaining;
795 }
796
797 memcpy((char *)buffer + sizeCopied,
798 entry->mBuffer->data() + entry->mOffset,
799 copy);
800
801 entry->mOffset += copy;
802 if (entry->mOffset == entry->mBuffer->size()) {
803 entry->mNotifyConsumed->post();
804 mAudioQueue.erase(mAudioQueue.begin());
805 entry = NULL;
806 }
807 sizeCopied += copy;
808
809 notifyIfMediaRenderingStarted_l();
810 }
811
812 if (mAudioFirstAnchorTimeMediaUs >= 0) {
813 int64_t nowUs = ALooper::GetNowUs();
814 int64_t nowMediaUs =
815 mAudioFirstAnchorTimeMediaUs + mAudioSink->getPlayedOutDurationUs(nowUs);
816 // we don't know how much data we are queueing for offloaded tracks.
817 mMediaClock->updateAnchor(nowMediaUs, nowUs, INT64_MAX);
818 }
819
820 // for non-offloaded audio, we need to compute the frames written because
821 // there is no EVENT_STREAM_END notification. The frames written gives
822 // an estimate on the pending played out duration.
823 if (!offloadingAudio()) {
824 mNumFramesWritten += sizeCopied / mAudioSink->frameSize();
825 }
826
827 if (hasEOS) {
828 (new AMessage(kWhatStopAudioSink, this))->post();
829 // As there is currently no EVENT_STREAM_END callback notification for
830 // non-offloaded audio tracks, we need to post the EOS ourselves.
831 if (!offloadingAudio()) {
832 int64_t postEOSDelayUs = 0;
833 if (mAudioSink->needsTrailingPadding()) {
834 postEOSDelayUs = getPendingAudioPlayoutDurationUs(ALooper::GetNowUs());
835 }
836 ALOGV("fillAudioBuffer: notifyEOS "
837 "mNumFramesWritten:%u finalResult:%d postEOSDelay:%lld",
838 mNumFramesWritten, entry->mFinalResult, (long long)postEOSDelayUs);
839 notifyEOS(true /* audio */, entry->mFinalResult, postEOSDelayUs);
840 }
841 }
842 return sizeCopied;
843 }
844
drainAudioQueueUntilLastEOS()845 void NuPlayer::Renderer::drainAudioQueueUntilLastEOS() {
846 List<QueueEntry>::iterator it = mAudioQueue.begin(), itEOS = it;
847 bool foundEOS = false;
848 while (it != mAudioQueue.end()) {
849 int32_t eos;
850 QueueEntry *entry = &*it++;
851 if (entry->mBuffer == NULL
852 || (entry->mNotifyConsumed->findInt32("eos", &eos) && eos != 0)) {
853 itEOS = it;
854 foundEOS = true;
855 }
856 }
857
858 if (foundEOS) {
859 // post all replies before EOS and drop the samples
860 for (it = mAudioQueue.begin(); it != itEOS; it++) {
861 if (it->mBuffer == NULL) {
862 // delay doesn't matter as we don't even have an AudioTrack
863 notifyEOS(true /* audio */, it->mFinalResult);
864 } else {
865 it->mNotifyConsumed->post();
866 }
867 }
868 mAudioQueue.erase(mAudioQueue.begin(), itEOS);
869 }
870 }
871
onDrainAudioQueue()872 bool NuPlayer::Renderer::onDrainAudioQueue() {
873 // do not drain audio during teardown as queued buffers may be invalid.
874 if (mAudioTornDown) {
875 return false;
876 }
877 // TODO: This call to getPosition checks if AudioTrack has been created
878 // in AudioSink before draining audio. If AudioTrack doesn't exist, then
879 // CHECKs on getPosition will fail.
880 // We still need to figure out why AudioTrack is not created when
881 // this function is called. One possible reason could be leftover
882 // audio. Another possible place is to check whether decoder
883 // has received INFO_FORMAT_CHANGED as the first buffer since
884 // AudioSink is opened there, and possible interactions with flush
885 // immediately after start. Investigate error message
886 // "vorbis_dsp_synthesis returned -135", along with RTSP.
887 uint32_t numFramesPlayed;
888 if (mAudioSink->getPosition(&numFramesPlayed) != OK) {
889 // When getPosition fails, renderer will not reschedule the draining
890 // unless new samples are queued.
891 // If we have pending EOS (or "eos" marker for discontinuities), we need
892 // to post these now as NuPlayerDecoder might be waiting for it.
893 drainAudioQueueUntilLastEOS();
894
895 ALOGW("onDrainAudioQueue(): audio sink is not ready");
896 return false;
897 }
898
899 #if 0
900 ssize_t numFramesAvailableToWrite =
901 mAudioSink->frameCount() - (mNumFramesWritten - numFramesPlayed);
902
903 if (numFramesAvailableToWrite == mAudioSink->frameCount()) {
904 ALOGI("audio sink underrun");
905 } else {
906 ALOGV("audio queue has %d frames left to play",
907 mAudioSink->frameCount() - numFramesAvailableToWrite);
908 }
909 #endif
910
911 uint32_t prevFramesWritten = mNumFramesWritten;
912 while (!mAudioQueue.empty()) {
913 QueueEntry *entry = &*mAudioQueue.begin();
914
915 mLastAudioBufferDrained = entry->mBufferOrdinal;
916
917 if (entry->mBuffer == NULL) {
918 // EOS
919 int64_t postEOSDelayUs = 0;
920 if (mAudioSink->needsTrailingPadding()) {
921 postEOSDelayUs = getPendingAudioPlayoutDurationUs(ALooper::GetNowUs());
922 }
923 notifyEOS(true /* audio */, entry->mFinalResult, postEOSDelayUs);
924 mLastAudioMediaTimeUs = getDurationUsIfPlayedAtSampleRate(mNumFramesWritten);
925
926 mAudioQueue.erase(mAudioQueue.begin());
927 entry = NULL;
928 if (mAudioSink->needsTrailingPadding()) {
929 // If we're not in gapless playback (i.e. through setNextPlayer), we
930 // need to stop the track here, because that will play out the last
931 // little bit at the end of the file. Otherwise short files won't play.
932 mAudioSink->stop();
933 mNumFramesWritten = 0;
934 }
935 return false;
936 }
937
938 // ignore 0-sized buffer which could be EOS marker with no data
939 if (entry->mOffset == 0 && entry->mBuffer->size() > 0) {
940 int64_t mediaTimeUs;
941 CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
942 ALOGV("onDrainAudioQueue: rendering audio at media time %.2f secs",
943 mediaTimeUs / 1E6);
944 onNewAudioMediaTime(mediaTimeUs);
945 }
946
947 size_t copy = entry->mBuffer->size() - entry->mOffset;
948
949 ssize_t written = mAudioSink->write(entry->mBuffer->data() + entry->mOffset,
950 copy, false /* blocking */);
951 if (written < 0) {
952 // An error in AudioSink write. Perhaps the AudioSink was not properly opened.
953 if (written == WOULD_BLOCK) {
954 ALOGV("AudioSink write would block when writing %zu bytes", copy);
955 } else {
956 ALOGE("AudioSink write error(%zd) when writing %zu bytes", written, copy);
957 // This can only happen when AudioSink was opened with doNotReconnect flag set to
958 // true, in which case the NuPlayer will handle the reconnect.
959 notifyAudioTearDown(kDueToError);
960 }
961 break;
962 }
963
964 entry->mOffset += written;
965 size_t remainder = entry->mBuffer->size() - entry->mOffset;
966 if ((ssize_t)remainder < mAudioSink->frameSize()) {
967 if (remainder > 0) {
968 ALOGW("Corrupted audio buffer has fractional frames, discarding %zu bytes.",
969 remainder);
970 entry->mOffset += remainder;
971 copy -= remainder;
972 }
973
974 entry->mNotifyConsumed->post();
975 mAudioQueue.erase(mAudioQueue.begin());
976
977 entry = NULL;
978 }
979
980 size_t copiedFrames = written / mAudioSink->frameSize();
981 mNumFramesWritten += copiedFrames;
982
983 {
984 Mutex::Autolock autoLock(mLock);
985 int64_t maxTimeMedia;
986 maxTimeMedia =
987 mAnchorTimeMediaUs +
988 (int64_t)(max((long long)mNumFramesWritten - mAnchorNumFramesWritten, 0LL)
989 * 1000LL * mAudioSink->msecsPerFrame());
990 mMediaClock->updateMaxTimeMedia(maxTimeMedia);
991
992 notifyIfMediaRenderingStarted_l();
993 }
994
995 if (written != (ssize_t)copy) {
996 // A short count was received from AudioSink::write()
997 //
998 // AudioSink write is called in non-blocking mode.
999 // It may return with a short count when:
1000 //
1001 // 1) Size to be copied is not a multiple of the frame size. Fractional frames are
1002 // discarded.
1003 // 2) The data to be copied exceeds the available buffer in AudioSink.
1004 // 3) An error occurs and data has been partially copied to the buffer in AudioSink.
1005 // 4) AudioSink is an AudioCache for data retrieval, and the AudioCache is exceeded.
1006
1007 // (Case 1)
1008 // Must be a multiple of the frame size. If it is not a multiple of a frame size, it
1009 // needs to fail, as we should not carry over fractional frames between calls.
1010 CHECK_EQ(copy % mAudioSink->frameSize(), 0);
1011
1012 // (Case 2, 3, 4)
1013 // Return early to the caller.
1014 // Beware of calling immediately again as this may busy-loop if you are not careful.
1015 ALOGV("AudioSink write short frame count %zd < %zu", written, copy);
1016 break;
1017 }
1018 }
1019
1020 // calculate whether we need to reschedule another write.
1021 bool reschedule = !mAudioQueue.empty()
1022 && (!mPaused
1023 || prevFramesWritten != mNumFramesWritten); // permit pause to fill buffers
1024 //ALOGD("reschedule:%d empty:%d mPaused:%d prevFramesWritten:%u mNumFramesWritten:%u",
1025 // reschedule, mAudioQueue.empty(), mPaused, prevFramesWritten, mNumFramesWritten);
1026 return reschedule;
1027 }
1028
getDurationUsIfPlayedAtSampleRate(uint32_t numFrames)1029 int64_t NuPlayer::Renderer::getDurationUsIfPlayedAtSampleRate(uint32_t numFrames) {
1030 int32_t sampleRate = offloadingAudio() ?
1031 mCurrentOffloadInfo.sample_rate : mCurrentPcmInfo.mSampleRate;
1032 if (sampleRate == 0) {
1033 ALOGE("sampleRate is 0 in %s mode", offloadingAudio() ? "offload" : "non-offload");
1034 return 0;
1035 }
1036 // TODO: remove the (int32_t) casting below as it may overflow at 12.4 hours.
1037 return (int64_t)((int32_t)numFrames * 1000000LL / sampleRate);
1038 }
1039
1040 // Calculate duration of pending samples if played at normal rate (i.e., 1.0).
getPendingAudioPlayoutDurationUs(int64_t nowUs)1041 int64_t NuPlayer::Renderer::getPendingAudioPlayoutDurationUs(int64_t nowUs) {
1042 int64_t writtenAudioDurationUs = getDurationUsIfPlayedAtSampleRate(mNumFramesWritten);
1043 if (mUseVirtualAudioSink) {
1044 int64_t nowUs = ALooper::GetNowUs();
1045 int64_t mediaUs;
1046 if (mMediaClock->getMediaTime(nowUs, &mediaUs) != OK) {
1047 return 0ll;
1048 } else {
1049 return writtenAudioDurationUs - (mediaUs - mAudioFirstAnchorTimeMediaUs);
1050 }
1051 }
1052 return writtenAudioDurationUs - mAudioSink->getPlayedOutDurationUs(nowUs);
1053 }
1054
getRealTimeUs(int64_t mediaTimeUs,int64_t nowUs)1055 int64_t NuPlayer::Renderer::getRealTimeUs(int64_t mediaTimeUs, int64_t nowUs) {
1056 int64_t realUs;
1057 if (mMediaClock->getRealTimeFor(mediaTimeUs, &realUs) != OK) {
1058 // If failed to get current position, e.g. due to audio clock is
1059 // not ready, then just play out video immediately without delay.
1060 return nowUs;
1061 }
1062 return realUs;
1063 }
1064
onNewAudioMediaTime(int64_t mediaTimeUs)1065 void NuPlayer::Renderer::onNewAudioMediaTime(int64_t mediaTimeUs) {
1066 Mutex::Autolock autoLock(mLock);
1067 // TRICKY: vorbis decoder generates multiple frames with the same
1068 // timestamp, so only update on the first frame with a given timestamp
1069 if (mediaTimeUs == mAnchorTimeMediaUs) {
1070 return;
1071 }
1072 setAudioFirstAnchorTimeIfNeeded_l(mediaTimeUs);
1073
1074 // mNextAudioClockUpdateTimeUs is -1 if we're waiting for audio sink to start
1075 if (mNextAudioClockUpdateTimeUs == -1) {
1076 AudioTimestamp ts;
1077 if (mAudioSink->getTimestamp(ts) == OK && ts.mPosition > 0) {
1078 mNextAudioClockUpdateTimeUs = 0; // start our clock updates
1079 }
1080 }
1081 int64_t nowUs = ALooper::GetNowUs();
1082 if (mNextAudioClockUpdateTimeUs >= 0) {
1083 if (nowUs >= mNextAudioClockUpdateTimeUs) {
1084 int64_t nowMediaUs = mediaTimeUs - getPendingAudioPlayoutDurationUs(nowUs);
1085 mMediaClock->updateAnchor(nowMediaUs, nowUs, mediaTimeUs);
1086 mUseVirtualAudioSink = false;
1087 mNextAudioClockUpdateTimeUs = nowUs + kMinimumAudioClockUpdatePeriodUs;
1088 }
1089 } else {
1090 int64_t unused;
1091 if ((mMediaClock->getMediaTime(nowUs, &unused) != OK)
1092 && (getDurationUsIfPlayedAtSampleRate(mNumFramesWritten)
1093 > kMaxAllowedAudioSinkDelayUs)) {
1094 // Enough data has been sent to AudioSink, but AudioSink has not rendered
1095 // any data yet. Something is wrong with AudioSink, e.g., the device is not
1096 // connected to audio out.
1097 // Switch to system clock. This essentially creates a virtual AudioSink with
1098 // initial latenty of getDurationUsIfPlayedAtSampleRate(mNumFramesWritten).
1099 // This virtual AudioSink renders audio data starting from the very first sample
1100 // and it's paced by system clock.
1101 ALOGW("AudioSink stuck. ARE YOU CONNECTED TO AUDIO OUT? Switching to system clock.");
1102 mMediaClock->updateAnchor(mAudioFirstAnchorTimeMediaUs, nowUs, mediaTimeUs);
1103 mUseVirtualAudioSink = true;
1104 }
1105 }
1106 mAnchorNumFramesWritten = mNumFramesWritten;
1107 mAnchorTimeMediaUs = mediaTimeUs;
1108 }
1109
1110 // Called without mLock acquired.
postDrainVideoQueue()1111 void NuPlayer::Renderer::postDrainVideoQueue() {
1112 if (mDrainVideoQueuePending
1113 || getSyncQueues()
1114 || (mPaused && mVideoSampleReceived)) {
1115 return;
1116 }
1117
1118 if (mVideoQueue.empty()) {
1119 return;
1120 }
1121
1122 QueueEntry &entry = *mVideoQueue.begin();
1123
1124 sp<AMessage> msg = new AMessage(kWhatDrainVideoQueue, this);
1125 msg->setInt32("drainGeneration", getDrainGeneration(false /* audio */));
1126
1127 if (entry.mBuffer == NULL) {
1128 // EOS doesn't carry a timestamp.
1129 msg->post();
1130 mDrainVideoQueuePending = true;
1131 return;
1132 }
1133
1134 bool needRepostDrainVideoQueue = false;
1135 int64_t delayUs;
1136 int64_t nowUs = ALooper::GetNowUs();
1137 int64_t realTimeUs;
1138 if (mFlags & FLAG_REAL_TIME) {
1139 int64_t mediaTimeUs;
1140 CHECK(entry.mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
1141 realTimeUs = mediaTimeUs;
1142 } else {
1143 int64_t mediaTimeUs;
1144 CHECK(entry.mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
1145
1146 {
1147 Mutex::Autolock autoLock(mLock);
1148 if (mAnchorTimeMediaUs < 0) {
1149 mMediaClock->updateAnchor(mediaTimeUs, nowUs, mediaTimeUs);
1150 mAnchorTimeMediaUs = mediaTimeUs;
1151 realTimeUs = nowUs;
1152 } else if (!mVideoSampleReceived) {
1153 // Always render the first video frame.
1154 realTimeUs = nowUs;
1155 } else if (mAudioFirstAnchorTimeMediaUs < 0
1156 || mMediaClock->getRealTimeFor(mediaTimeUs, &realTimeUs) == OK) {
1157 realTimeUs = getRealTimeUs(mediaTimeUs, nowUs);
1158 } else if (mediaTimeUs - mAudioFirstAnchorTimeMediaUs >= 0) {
1159 needRepostDrainVideoQueue = true;
1160 realTimeUs = nowUs;
1161 } else {
1162 realTimeUs = nowUs;
1163 }
1164 }
1165 if (!mHasAudio) {
1166 // smooth out videos >= 10fps
1167 mMediaClock->updateMaxTimeMedia(mediaTimeUs + 100000);
1168 }
1169
1170 // Heuristics to handle situation when media time changed without a
1171 // discontinuity. If we have not drained an audio buffer that was
1172 // received after this buffer, repost in 10 msec. Otherwise repost
1173 // in 500 msec.
1174 delayUs = realTimeUs - nowUs;
1175 int64_t postDelayUs = -1;
1176 if (delayUs > 500000) {
1177 postDelayUs = 500000;
1178 if (mHasAudio && (mLastAudioBufferDrained - entry.mBufferOrdinal) <= 0) {
1179 postDelayUs = 10000;
1180 }
1181 } else if (needRepostDrainVideoQueue) {
1182 // CHECK(mPlaybackRate > 0);
1183 // CHECK(mAudioFirstAnchorTimeMediaUs >= 0);
1184 // CHECK(mediaTimeUs - mAudioFirstAnchorTimeMediaUs >= 0);
1185 postDelayUs = mediaTimeUs - mAudioFirstAnchorTimeMediaUs;
1186 postDelayUs /= mPlaybackRate;
1187 }
1188
1189 if (postDelayUs >= 0) {
1190 msg->setWhat(kWhatPostDrainVideoQueue);
1191 msg->post(postDelayUs);
1192 mVideoScheduler->restart();
1193 ALOGI("possible video time jump of %dms or uninitialized media clock, retrying in %dms",
1194 (int)(delayUs / 1000), (int)(postDelayUs / 1000));
1195 mDrainVideoQueuePending = true;
1196 return;
1197 }
1198 }
1199
1200 realTimeUs = mVideoScheduler->schedule(realTimeUs * 1000) / 1000;
1201 int64_t twoVsyncsUs = 2 * (mVideoScheduler->getVsyncPeriod() / 1000);
1202
1203 delayUs = realTimeUs - nowUs;
1204
1205 ALOGW_IF(delayUs > 500000, "unusually high delayUs: %" PRId64, delayUs);
1206 // post 2 display refreshes before rendering is due
1207 msg->post(delayUs > twoVsyncsUs ? delayUs - twoVsyncsUs : 0);
1208
1209 mDrainVideoQueuePending = true;
1210 }
1211
onDrainVideoQueue()1212 void NuPlayer::Renderer::onDrainVideoQueue() {
1213 if (mVideoQueue.empty()) {
1214 return;
1215 }
1216
1217 QueueEntry *entry = &*mVideoQueue.begin();
1218
1219 if (entry->mBuffer == NULL) {
1220 // EOS
1221
1222 notifyEOS(false /* audio */, entry->mFinalResult);
1223
1224 mVideoQueue.erase(mVideoQueue.begin());
1225 entry = NULL;
1226
1227 setVideoLateByUs(0);
1228 return;
1229 }
1230
1231 int64_t nowUs = ALooper::GetNowUs();
1232 int64_t realTimeUs;
1233 int64_t mediaTimeUs = -1;
1234 if (mFlags & FLAG_REAL_TIME) {
1235 CHECK(entry->mBuffer->meta()->findInt64("timeUs", &realTimeUs));
1236 } else {
1237 CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
1238
1239 realTimeUs = getRealTimeUs(mediaTimeUs, nowUs);
1240 }
1241
1242 bool tooLate = false;
1243
1244 if (!mPaused) {
1245 setVideoLateByUs(nowUs - realTimeUs);
1246 tooLate = (mVideoLateByUs > 40000);
1247
1248 if (tooLate) {
1249 ALOGV("video late by %lld us (%.2f secs)",
1250 (long long)mVideoLateByUs, mVideoLateByUs / 1E6);
1251 } else {
1252 int64_t mediaUs = 0;
1253 mMediaClock->getMediaTime(realTimeUs, &mediaUs);
1254 ALOGV("rendering video at media time %.2f secs",
1255 (mFlags & FLAG_REAL_TIME ? realTimeUs :
1256 mediaUs) / 1E6);
1257
1258 if (!(mFlags & FLAG_REAL_TIME)
1259 && mLastAudioMediaTimeUs != -1
1260 && mediaTimeUs > mLastAudioMediaTimeUs) {
1261 // If audio ends before video, video continues to drive media clock.
1262 // Also smooth out videos >= 10fps.
1263 mMediaClock->updateMaxTimeMedia(mediaTimeUs + 100000);
1264 }
1265 }
1266 } else {
1267 setVideoLateByUs(0);
1268 if (!mVideoSampleReceived && !mHasAudio) {
1269 // This will ensure that the first frame after a flush won't be used as anchor
1270 // when renderer is in paused state, because resume can happen any time after seek.
1271 Mutex::Autolock autoLock(mLock);
1272 clearAnchorTime_l();
1273 }
1274 }
1275
1276 // Always render the first video frame while keeping stats on A/V sync.
1277 if (!mVideoSampleReceived) {
1278 realTimeUs = nowUs;
1279 tooLate = false;
1280 }
1281
1282 entry->mNotifyConsumed->setInt64("timestampNs", realTimeUs * 1000ll);
1283 entry->mNotifyConsumed->setInt32("render", !tooLate);
1284 entry->mNotifyConsumed->post();
1285 mVideoQueue.erase(mVideoQueue.begin());
1286 entry = NULL;
1287
1288 mVideoSampleReceived = true;
1289
1290 if (!mPaused) {
1291 if (!mVideoRenderingStarted) {
1292 mVideoRenderingStarted = true;
1293 notifyVideoRenderingStart();
1294 }
1295 Mutex::Autolock autoLock(mLock);
1296 notifyIfMediaRenderingStarted_l();
1297 }
1298 }
1299
notifyVideoRenderingStart()1300 void NuPlayer::Renderer::notifyVideoRenderingStart() {
1301 sp<AMessage> notify = mNotify->dup();
1302 notify->setInt32("what", kWhatVideoRenderingStart);
1303 notify->post();
1304 }
1305
notifyEOS(bool audio,status_t finalResult,int64_t delayUs)1306 void NuPlayer::Renderer::notifyEOS(bool audio, status_t finalResult, int64_t delayUs) {
1307 if (audio && delayUs > 0) {
1308 sp<AMessage> msg = new AMessage(kWhatEOS, this);
1309 msg->setInt32("audioEOSGeneration", mAudioEOSGeneration);
1310 msg->setInt32("finalResult", finalResult);
1311 msg->post(delayUs);
1312 return;
1313 }
1314 sp<AMessage> notify = mNotify->dup();
1315 notify->setInt32("what", kWhatEOS);
1316 notify->setInt32("audio", static_cast<int32_t>(audio));
1317 notify->setInt32("finalResult", finalResult);
1318 notify->post(delayUs);
1319 }
1320
notifyAudioTearDown(AudioTearDownReason reason)1321 void NuPlayer::Renderer::notifyAudioTearDown(AudioTearDownReason reason) {
1322 sp<AMessage> msg = new AMessage(kWhatAudioTearDown, this);
1323 msg->setInt32("reason", reason);
1324 msg->post();
1325 }
1326
onQueueBuffer(const sp<AMessage> & msg)1327 void NuPlayer::Renderer::onQueueBuffer(const sp<AMessage> &msg) {
1328 int32_t audio;
1329 CHECK(msg->findInt32("audio", &audio));
1330
1331 if (dropBufferIfStale(audio, msg)) {
1332 return;
1333 }
1334
1335 if (audio) {
1336 mHasAudio = true;
1337 } else {
1338 mHasVideo = true;
1339 }
1340
1341 if (mHasVideo) {
1342 if (mVideoScheduler == NULL) {
1343 mVideoScheduler = new VideoFrameScheduler();
1344 mVideoScheduler->init();
1345 }
1346 }
1347
1348 sp<ABuffer> buffer;
1349 CHECK(msg->findBuffer("buffer", &buffer));
1350
1351 sp<AMessage> notifyConsumed;
1352 CHECK(msg->findMessage("notifyConsumed", ¬ifyConsumed));
1353
1354 QueueEntry entry;
1355 entry.mBuffer = buffer;
1356 entry.mNotifyConsumed = notifyConsumed;
1357 entry.mOffset = 0;
1358 entry.mFinalResult = OK;
1359 entry.mBufferOrdinal = ++mTotalBuffersQueued;
1360
1361 if (audio) {
1362 Mutex::Autolock autoLock(mLock);
1363 mAudioQueue.push_back(entry);
1364 postDrainAudioQueue_l();
1365 } else {
1366 mVideoQueue.push_back(entry);
1367 postDrainVideoQueue();
1368 }
1369
1370 Mutex::Autolock autoLock(mLock);
1371 if (!mSyncQueues || mAudioQueue.empty() || mVideoQueue.empty()) {
1372 return;
1373 }
1374
1375 sp<ABuffer> firstAudioBuffer = (*mAudioQueue.begin()).mBuffer;
1376 sp<ABuffer> firstVideoBuffer = (*mVideoQueue.begin()).mBuffer;
1377
1378 if (firstAudioBuffer == NULL || firstVideoBuffer == NULL) {
1379 // EOS signalled on either queue.
1380 syncQueuesDone_l();
1381 return;
1382 }
1383
1384 int64_t firstAudioTimeUs;
1385 int64_t firstVideoTimeUs;
1386 CHECK(firstAudioBuffer->meta()
1387 ->findInt64("timeUs", &firstAudioTimeUs));
1388 CHECK(firstVideoBuffer->meta()
1389 ->findInt64("timeUs", &firstVideoTimeUs));
1390
1391 int64_t diff = firstVideoTimeUs - firstAudioTimeUs;
1392
1393 ALOGV("queueDiff = %.2f secs", diff / 1E6);
1394
1395 if (diff > 100000ll) {
1396 // Audio data starts More than 0.1 secs before video.
1397 // Drop some audio.
1398
1399 (*mAudioQueue.begin()).mNotifyConsumed->post();
1400 mAudioQueue.erase(mAudioQueue.begin());
1401 return;
1402 }
1403
1404 syncQueuesDone_l();
1405 }
1406
syncQueuesDone_l()1407 void NuPlayer::Renderer::syncQueuesDone_l() {
1408 if (!mSyncQueues) {
1409 return;
1410 }
1411
1412 mSyncQueues = false;
1413
1414 if (!mAudioQueue.empty()) {
1415 postDrainAudioQueue_l();
1416 }
1417
1418 if (!mVideoQueue.empty()) {
1419 mLock.unlock();
1420 postDrainVideoQueue();
1421 mLock.lock();
1422 }
1423 }
1424
onQueueEOS(const sp<AMessage> & msg)1425 void NuPlayer::Renderer::onQueueEOS(const sp<AMessage> &msg) {
1426 int32_t audio;
1427 CHECK(msg->findInt32("audio", &audio));
1428
1429 if (dropBufferIfStale(audio, msg)) {
1430 return;
1431 }
1432
1433 int32_t finalResult;
1434 CHECK(msg->findInt32("finalResult", &finalResult));
1435
1436 QueueEntry entry;
1437 entry.mOffset = 0;
1438 entry.mFinalResult = finalResult;
1439
1440 if (audio) {
1441 Mutex::Autolock autoLock(mLock);
1442 if (mAudioQueue.empty() && mSyncQueues) {
1443 syncQueuesDone_l();
1444 }
1445 mAudioQueue.push_back(entry);
1446 postDrainAudioQueue_l();
1447 } else {
1448 if (mVideoQueue.empty() && getSyncQueues()) {
1449 Mutex::Autolock autoLock(mLock);
1450 syncQueuesDone_l();
1451 }
1452 mVideoQueue.push_back(entry);
1453 postDrainVideoQueue();
1454 }
1455 }
1456
onFlush(const sp<AMessage> & msg)1457 void NuPlayer::Renderer::onFlush(const sp<AMessage> &msg) {
1458 int32_t audio, notifyComplete;
1459 CHECK(msg->findInt32("audio", &audio));
1460
1461 {
1462 Mutex::Autolock autoLock(mLock);
1463 if (audio) {
1464 notifyComplete = mNotifyCompleteAudio;
1465 mNotifyCompleteAudio = false;
1466 mLastAudioMediaTimeUs = -1;
1467 } else {
1468 notifyComplete = mNotifyCompleteVideo;
1469 mNotifyCompleteVideo = false;
1470 }
1471
1472 // If we're currently syncing the queues, i.e. dropping audio while
1473 // aligning the first audio/video buffer times and only one of the
1474 // two queues has data, we may starve that queue by not requesting
1475 // more buffers from the decoder. If the other source then encounters
1476 // a discontinuity that leads to flushing, we'll never find the
1477 // corresponding discontinuity on the other queue.
1478 // Therefore we'll stop syncing the queues if at least one of them
1479 // is flushed.
1480 syncQueuesDone_l();
1481 clearAnchorTime_l();
1482 }
1483
1484 ALOGV("flushing %s", audio ? "audio" : "video");
1485 if (audio) {
1486 {
1487 Mutex::Autolock autoLock(mLock);
1488 flushQueue(&mAudioQueue);
1489
1490 ++mAudioDrainGeneration;
1491 ++mAudioEOSGeneration;
1492 prepareForMediaRenderingStart_l();
1493
1494 // the frame count will be reset after flush.
1495 clearAudioFirstAnchorTime_l();
1496 }
1497
1498 mDrainAudioQueuePending = false;
1499
1500 if (offloadingAudio()) {
1501 mAudioSink->pause();
1502 mAudioSink->flush();
1503 if (!mPaused) {
1504 mAudioSink->start();
1505 }
1506 } else {
1507 mAudioSink->pause();
1508 mAudioSink->flush();
1509 // Call stop() to signal to the AudioSink to completely fill the
1510 // internal buffer before resuming playback.
1511 // FIXME: this is ignored after flush().
1512 mAudioSink->stop();
1513 if (mPaused) {
1514 // Race condition: if renderer is paused and audio sink is stopped,
1515 // we need to make sure that the audio track buffer fully drains
1516 // before delivering data.
1517 // FIXME: remove this if we can detect if stop() is complete.
1518 const int delayUs = 2 * 50 * 1000; // (2 full mixer thread cycles at 50ms)
1519 mPauseDrainAudioAllowedUs = ALooper::GetNowUs() + delayUs;
1520 } else {
1521 mAudioSink->start();
1522 }
1523 mNumFramesWritten = 0;
1524 }
1525 mNextAudioClockUpdateTimeUs = -1;
1526 } else {
1527 flushQueue(&mVideoQueue);
1528
1529 mDrainVideoQueuePending = false;
1530
1531 if (mVideoScheduler != NULL) {
1532 mVideoScheduler->restart();
1533 }
1534
1535 Mutex::Autolock autoLock(mLock);
1536 ++mVideoDrainGeneration;
1537 prepareForMediaRenderingStart_l();
1538 }
1539
1540 mVideoSampleReceived = false;
1541
1542 if (notifyComplete) {
1543 notifyFlushComplete(audio);
1544 }
1545 }
1546
flushQueue(List<QueueEntry> * queue)1547 void NuPlayer::Renderer::flushQueue(List<QueueEntry> *queue) {
1548 while (!queue->empty()) {
1549 QueueEntry *entry = &*queue->begin();
1550
1551 if (entry->mBuffer != NULL) {
1552 entry->mNotifyConsumed->post();
1553 }
1554
1555 queue->erase(queue->begin());
1556 entry = NULL;
1557 }
1558 }
1559
notifyFlushComplete(bool audio)1560 void NuPlayer::Renderer::notifyFlushComplete(bool audio) {
1561 sp<AMessage> notify = mNotify->dup();
1562 notify->setInt32("what", kWhatFlushComplete);
1563 notify->setInt32("audio", static_cast<int32_t>(audio));
1564 notify->post();
1565 }
1566
dropBufferIfStale(bool audio,const sp<AMessage> & msg)1567 bool NuPlayer::Renderer::dropBufferIfStale(
1568 bool audio, const sp<AMessage> &msg) {
1569 int32_t queueGeneration;
1570 CHECK(msg->findInt32("queueGeneration", &queueGeneration));
1571
1572 if (queueGeneration == getQueueGeneration(audio)) {
1573 return false;
1574 }
1575
1576 sp<AMessage> notifyConsumed;
1577 if (msg->findMessage("notifyConsumed", ¬ifyConsumed)) {
1578 notifyConsumed->post();
1579 }
1580
1581 return true;
1582 }
1583
onAudioSinkChanged()1584 void NuPlayer::Renderer::onAudioSinkChanged() {
1585 if (offloadingAudio()) {
1586 return;
1587 }
1588 CHECK(!mDrainAudioQueuePending);
1589 mNumFramesWritten = 0;
1590 {
1591 Mutex::Autolock autoLock(mLock);
1592 mAnchorNumFramesWritten = -1;
1593 }
1594 uint32_t written;
1595 if (mAudioSink->getFramesWritten(&written) == OK) {
1596 mNumFramesWritten = written;
1597 }
1598 }
1599
onDisableOffloadAudio()1600 void NuPlayer::Renderer::onDisableOffloadAudio() {
1601 Mutex::Autolock autoLock(mLock);
1602 mFlags &= ~FLAG_OFFLOAD_AUDIO;
1603 ++mAudioDrainGeneration;
1604 if (mAudioRenderingStartGeneration != -1) {
1605 prepareForMediaRenderingStart_l();
1606 }
1607 }
1608
onEnableOffloadAudio()1609 void NuPlayer::Renderer::onEnableOffloadAudio() {
1610 Mutex::Autolock autoLock(mLock);
1611 mFlags |= FLAG_OFFLOAD_AUDIO;
1612 ++mAudioDrainGeneration;
1613 if (mAudioRenderingStartGeneration != -1) {
1614 prepareForMediaRenderingStart_l();
1615 }
1616 }
1617
onPause()1618 void NuPlayer::Renderer::onPause() {
1619 if (mPaused) {
1620 return;
1621 }
1622
1623 {
1624 Mutex::Autolock autoLock(mLock);
1625 // we do not increment audio drain generation so that we fill audio buffer during pause.
1626 ++mVideoDrainGeneration;
1627 prepareForMediaRenderingStart_l();
1628 mPaused = true;
1629 mMediaClock->setPlaybackRate(0.0);
1630 }
1631
1632 mDrainAudioQueuePending = false;
1633 mDrainVideoQueuePending = false;
1634
1635 // Note: audio data may not have been decoded, and the AudioSink may not be opened.
1636 mAudioSink->pause();
1637 startAudioOffloadPauseTimeout();
1638
1639 ALOGV("now paused audio queue has %zu entries, video has %zu entries",
1640 mAudioQueue.size(), mVideoQueue.size());
1641 }
1642
onResume()1643 void NuPlayer::Renderer::onResume() {
1644 if (!mPaused) {
1645 return;
1646 }
1647
1648 // Note: audio data may not have been decoded, and the AudioSink may not be opened.
1649 cancelAudioOffloadPauseTimeout();
1650 if (mAudioSink->ready()) {
1651 status_t err = mAudioSink->start();
1652 if (err != OK) {
1653 ALOGE("cannot start AudioSink err %d", err);
1654 notifyAudioTearDown(kDueToError);
1655 }
1656 }
1657
1658 {
1659 Mutex::Autolock autoLock(mLock);
1660 mPaused = false;
1661 // rendering started message may have been delayed if we were paused.
1662 if (mRenderingDataDelivered) {
1663 notifyIfMediaRenderingStarted_l();
1664 }
1665 // configure audiosink as we did not do it when pausing
1666 if (mAudioSink != NULL && mAudioSink->ready()) {
1667 mAudioSink->setPlaybackRate(mPlaybackSettings);
1668 }
1669
1670 mMediaClock->setPlaybackRate(mPlaybackRate);
1671
1672 if (!mAudioQueue.empty()) {
1673 postDrainAudioQueue_l();
1674 }
1675 }
1676
1677 if (!mVideoQueue.empty()) {
1678 postDrainVideoQueue();
1679 }
1680 }
1681
onSetVideoFrameRate(float fps)1682 void NuPlayer::Renderer::onSetVideoFrameRate(float fps) {
1683 if (mVideoScheduler == NULL) {
1684 mVideoScheduler = new VideoFrameScheduler();
1685 }
1686 mVideoScheduler->init(fps);
1687 }
1688
getQueueGeneration(bool audio)1689 int32_t NuPlayer::Renderer::getQueueGeneration(bool audio) {
1690 Mutex::Autolock autoLock(mLock);
1691 return (audio ? mAudioQueueGeneration : mVideoQueueGeneration);
1692 }
1693
getDrainGeneration(bool audio)1694 int32_t NuPlayer::Renderer::getDrainGeneration(bool audio) {
1695 Mutex::Autolock autoLock(mLock);
1696 return (audio ? mAudioDrainGeneration : mVideoDrainGeneration);
1697 }
1698
getSyncQueues()1699 bool NuPlayer::Renderer::getSyncQueues() {
1700 Mutex::Autolock autoLock(mLock);
1701 return mSyncQueues;
1702 }
1703
onAudioTearDown(AudioTearDownReason reason)1704 void NuPlayer::Renderer::onAudioTearDown(AudioTearDownReason reason) {
1705 if (mAudioTornDown) {
1706 return;
1707 }
1708 mAudioTornDown = true;
1709
1710 int64_t currentPositionUs;
1711 sp<AMessage> notify = mNotify->dup();
1712 if (getCurrentPosition(¤tPositionUs) == OK) {
1713 notify->setInt64("positionUs", currentPositionUs);
1714 }
1715
1716 mAudioSink->stop();
1717 mAudioSink->flush();
1718
1719 notify->setInt32("what", kWhatAudioTearDown);
1720 notify->setInt32("reason", reason);
1721 notify->post();
1722 }
1723
startAudioOffloadPauseTimeout()1724 void NuPlayer::Renderer::startAudioOffloadPauseTimeout() {
1725 if (offloadingAudio()) {
1726 mWakeLock->acquire();
1727 sp<AMessage> msg = new AMessage(kWhatAudioOffloadPauseTimeout, this);
1728 msg->setInt32("drainGeneration", mAudioOffloadPauseTimeoutGeneration);
1729 msg->post(kOffloadPauseMaxUs);
1730 }
1731 }
1732
cancelAudioOffloadPauseTimeout()1733 void NuPlayer::Renderer::cancelAudioOffloadPauseTimeout() {
1734 // We may have called startAudioOffloadPauseTimeout() without
1735 // the AudioSink open and with offloadingAudio enabled.
1736 //
1737 // When we cancel, it may be that offloadingAudio is subsequently disabled, so regardless
1738 // we always release the wakelock and increment the pause timeout generation.
1739 //
1740 // Note: The acquired wakelock prevents the device from suspending
1741 // immediately after offload pause (in case a resume happens shortly thereafter).
1742 mWakeLock->release(true);
1743 ++mAudioOffloadPauseTimeoutGeneration;
1744 }
1745
onOpenAudioSink(const sp<AMessage> & format,bool offloadOnly,bool hasVideo,uint32_t flags)1746 status_t NuPlayer::Renderer::onOpenAudioSink(
1747 const sp<AMessage> &format,
1748 bool offloadOnly,
1749 bool hasVideo,
1750 uint32_t flags) {
1751 ALOGV("openAudioSink: offloadOnly(%d) offloadingAudio(%d)",
1752 offloadOnly, offloadingAudio());
1753 bool audioSinkChanged = false;
1754
1755 int32_t numChannels;
1756 CHECK(format->findInt32("channel-count", &numChannels));
1757
1758 int32_t channelMask;
1759 if (!format->findInt32("channel-mask", &channelMask)) {
1760 // signal to the AudioSink to derive the mask from count.
1761 channelMask = CHANNEL_MASK_USE_CHANNEL_ORDER;
1762 }
1763
1764 int32_t sampleRate;
1765 CHECK(format->findInt32("sample-rate", &sampleRate));
1766
1767 if (offloadingAudio()) {
1768 audio_format_t audioFormat = AUDIO_FORMAT_PCM_16_BIT;
1769 AString mime;
1770 CHECK(format->findString("mime", &mime));
1771 status_t err = mapMimeToAudioFormat(audioFormat, mime.c_str());
1772
1773 if (err != OK) {
1774 ALOGE("Couldn't map mime \"%s\" to a valid "
1775 "audio_format", mime.c_str());
1776 onDisableOffloadAudio();
1777 } else {
1778 ALOGV("Mime \"%s\" mapped to audio_format 0x%x",
1779 mime.c_str(), audioFormat);
1780
1781 int avgBitRate = -1;
1782 format->findInt32("bitrate", &avgBitRate);
1783
1784 int32_t aacProfile = -1;
1785 if (audioFormat == AUDIO_FORMAT_AAC
1786 && format->findInt32("aac-profile", &aacProfile)) {
1787 // Redefine AAC format as per aac profile
1788 mapAACProfileToAudioFormat(
1789 audioFormat,
1790 aacProfile);
1791 }
1792
1793 audio_offload_info_t offloadInfo = AUDIO_INFO_INITIALIZER;
1794 offloadInfo.duration_us = -1;
1795 format->findInt64(
1796 "durationUs", &offloadInfo.duration_us);
1797 offloadInfo.sample_rate = sampleRate;
1798 offloadInfo.channel_mask = channelMask;
1799 offloadInfo.format = audioFormat;
1800 offloadInfo.stream_type = AUDIO_STREAM_MUSIC;
1801 offloadInfo.bit_rate = avgBitRate;
1802 offloadInfo.has_video = hasVideo;
1803 offloadInfo.is_streaming = true;
1804
1805 if (memcmp(&mCurrentOffloadInfo, &offloadInfo, sizeof(offloadInfo)) == 0) {
1806 ALOGV("openAudioSink: no change in offload mode");
1807 // no change from previous configuration, everything ok.
1808 return OK;
1809 }
1810 mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1811
1812 ALOGV("openAudioSink: try to open AudioSink in offload mode");
1813 uint32_t offloadFlags = flags;
1814 offloadFlags |= AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD;
1815 offloadFlags &= ~AUDIO_OUTPUT_FLAG_DEEP_BUFFER;
1816 audioSinkChanged = true;
1817 mAudioSink->close();
1818
1819 err = mAudioSink->open(
1820 sampleRate,
1821 numChannels,
1822 (audio_channel_mask_t)channelMask,
1823 audioFormat,
1824 0 /* bufferCount - unused */,
1825 &NuPlayer::Renderer::AudioSinkCallback,
1826 this,
1827 (audio_output_flags_t)offloadFlags,
1828 &offloadInfo);
1829
1830 if (err == OK) {
1831 err = mAudioSink->setPlaybackRate(mPlaybackSettings);
1832 }
1833
1834 if (err == OK) {
1835 // If the playback is offloaded to h/w, we pass
1836 // the HAL some metadata information.
1837 // We don't want to do this for PCM because it
1838 // will be going through the AudioFlinger mixer
1839 // before reaching the hardware.
1840 // TODO
1841 mCurrentOffloadInfo = offloadInfo;
1842 if (!mPaused) { // for preview mode, don't start if paused
1843 err = mAudioSink->start();
1844 }
1845 ALOGV_IF(err == OK, "openAudioSink: offload succeeded");
1846 }
1847 if (err != OK) {
1848 // Clean up, fall back to non offload mode.
1849 mAudioSink->close();
1850 onDisableOffloadAudio();
1851 mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1852 ALOGV("openAudioSink: offload failed");
1853 if (offloadOnly) {
1854 notifyAudioTearDown(kForceNonOffload);
1855 }
1856 } else {
1857 mUseAudioCallback = true; // offload mode transfers data through callback
1858 ++mAudioDrainGeneration; // discard pending kWhatDrainAudioQueue message.
1859 }
1860 }
1861 }
1862 if (!offloadOnly && !offloadingAudio()) {
1863 ALOGV("openAudioSink: open AudioSink in NON-offload mode");
1864 uint32_t pcmFlags = flags;
1865 pcmFlags &= ~AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD;
1866
1867 const PcmInfo info = {
1868 (audio_channel_mask_t)channelMask,
1869 (audio_output_flags_t)pcmFlags,
1870 AUDIO_FORMAT_PCM_16_BIT, // TODO: change to audioFormat
1871 numChannels,
1872 sampleRate
1873 };
1874 if (memcmp(&mCurrentPcmInfo, &info, sizeof(info)) == 0) {
1875 ALOGV("openAudioSink: no change in pcm mode");
1876 // no change from previous configuration, everything ok.
1877 return OK;
1878 }
1879
1880 audioSinkChanged = true;
1881 mAudioSink->close();
1882 mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1883 // Note: It is possible to set up the callback, but not use it to send audio data.
1884 // This requires a fix in AudioSink to explicitly specify the transfer mode.
1885 mUseAudioCallback = getUseAudioCallbackSetting();
1886 if (mUseAudioCallback) {
1887 ++mAudioDrainGeneration; // discard pending kWhatDrainAudioQueue message.
1888 }
1889
1890 // Compute the desired buffer size.
1891 // For callback mode, the amount of time before wakeup is about half the buffer size.
1892 const uint32_t frameCount =
1893 (unsigned long long)sampleRate * getAudioSinkPcmMsSetting() / 1000;
1894
1895 // The doNotReconnect means AudioSink will signal back and let NuPlayer to re-construct
1896 // AudioSink. We don't want this when there's video because it will cause a video seek to
1897 // the previous I frame. But we do want this when there's only audio because it will give
1898 // NuPlayer a chance to switch from non-offload mode to offload mode.
1899 // So we only set doNotReconnect when there's no video.
1900 const bool doNotReconnect = !hasVideo;
1901
1902 // We should always be able to set our playback settings if the sink is closed.
1903 LOG_ALWAYS_FATAL_IF(mAudioSink->setPlaybackRate(mPlaybackSettings) != OK,
1904 "onOpenAudioSink: can't set playback rate on closed sink");
1905 status_t err = mAudioSink->open(
1906 sampleRate,
1907 numChannels,
1908 (audio_channel_mask_t)channelMask,
1909 AUDIO_FORMAT_PCM_16_BIT,
1910 0 /* bufferCount - unused */,
1911 mUseAudioCallback ? &NuPlayer::Renderer::AudioSinkCallback : NULL,
1912 mUseAudioCallback ? this : NULL,
1913 (audio_output_flags_t)pcmFlags,
1914 NULL,
1915 doNotReconnect,
1916 frameCount);
1917 if (err != OK) {
1918 ALOGW("openAudioSink: non offloaded open failed status: %d", err);
1919 mAudioSink->close();
1920 mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1921 return err;
1922 }
1923 mCurrentPcmInfo = info;
1924 if (!mPaused) { // for preview mode, don't start if paused
1925 mAudioSink->start();
1926 }
1927 }
1928 if (audioSinkChanged) {
1929 onAudioSinkChanged();
1930 }
1931 mAudioTornDown = false;
1932 return OK;
1933 }
1934
onCloseAudioSink()1935 void NuPlayer::Renderer::onCloseAudioSink() {
1936 mAudioSink->close();
1937 mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1938 mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1939 }
1940
1941 } // namespace android
1942
1943