NuPlayerRenderer.cpp revision 8edb3f85f58e8738582e8f9abbc018c85100b712
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
23#include <media/stagefright/foundation/ABuffer.h>
24#include <media/stagefright/foundation/ADebug.h>
25#include <media/stagefright/foundation/AMessage.h>
26#include <media/stagefright/foundation/AUtils.h>
27#include <media/stagefright/foundation/AWakeLock.h>
28#include <media/stagefright/MediaClock.h>
29#include <media/stagefright/MediaErrors.h>
30#include <media/stagefright/MetaData.h>
31#include <media/stagefright/Utils.h>
32
33#include <VideoFrameScheduler.h>
34
35#include <inttypes.h>
36
37namespace android {
38
39// Maximum time in paused state when offloading audio decompression. When elapsed, the AudioSink
40// is closed to allow the audio DSP to power down.
41static const int64_t kOffloadPauseMaxUs = 10000000ll;
42
43// static
44const NuPlayer::Renderer::PcmInfo NuPlayer::Renderer::AUDIO_PCMINFO_INITIALIZER = {
45        AUDIO_CHANNEL_NONE,
46        AUDIO_OUTPUT_FLAG_NONE,
47        AUDIO_FORMAT_INVALID,
48        0, // mNumChannels
49        0 // mSampleRate
50};
51
52// static
53const int64_t NuPlayer::Renderer::kMinPositionUpdateDelayUs = 100000ll;
54
55NuPlayer::Renderer::Renderer(
56        const sp<MediaPlayerBase::AudioSink> &sink,
57        const sp<AMessage> &notify,
58        uint32_t flags)
59    : mAudioSink(sink),
60      mNotify(notify),
61      mFlags(flags),
62      mNumFramesWritten(0),
63      mDrainAudioQueuePending(false),
64      mDrainVideoQueuePending(false),
65      mAudioQueueGeneration(0),
66      mVideoQueueGeneration(0),
67      mAudioDrainGeneration(0),
68      mVideoDrainGeneration(0),
69      mPlaybackRate(1.0),
70      mAudioFirstAnchorTimeMediaUs(-1),
71      mAnchorTimeMediaUs(-1),
72      mAnchorNumFramesWritten(-1),
73      mVideoLateByUs(0ll),
74      mHasAudio(false),
75      mHasVideo(false),
76      mNotifyCompleteAudio(false),
77      mNotifyCompleteVideo(false),
78      mSyncQueues(false),
79      mPaused(false),
80      mVideoSampleReceived(false),
81      mVideoRenderingStarted(false),
82      mVideoRenderingStartGeneration(0),
83      mAudioRenderingStartGeneration(0),
84      mAudioOffloadPauseTimeoutGeneration(0),
85      mAudioOffloadTornDown(false),
86      mCurrentOffloadInfo(AUDIO_INFO_INITIALIZER),
87      mCurrentPcmInfo(AUDIO_PCMINFO_INITIALIZER),
88      mTotalBuffersQueued(0),
89      mLastAudioBufferDrained(0),
90      mWakeLock(new AWakeLock()) {
91    mMediaClock = new MediaClock;
92}
93
94NuPlayer::Renderer::~Renderer() {
95    if (offloadingAudio()) {
96        mAudioSink->stop();
97        mAudioSink->flush();
98        mAudioSink->close();
99    }
100}
101
102void NuPlayer::Renderer::queueBuffer(
103        bool audio,
104        const sp<ABuffer> &buffer,
105        const sp<AMessage> &notifyConsumed) {
106    sp<AMessage> msg = new AMessage(kWhatQueueBuffer, this);
107    msg->setInt32("queueGeneration", getQueueGeneration(audio));
108    msg->setInt32("audio", static_cast<int32_t>(audio));
109    msg->setBuffer("buffer", buffer);
110    msg->setMessage("notifyConsumed", notifyConsumed);
111    msg->post();
112}
113
114void NuPlayer::Renderer::queueEOS(bool audio, status_t finalResult) {
115    CHECK_NE(finalResult, (status_t)OK);
116
117    sp<AMessage> msg = new AMessage(kWhatQueueEOS, this);
118    msg->setInt32("queueGeneration", getQueueGeneration(audio));
119    msg->setInt32("audio", static_cast<int32_t>(audio));
120    msg->setInt32("finalResult", finalResult);
121    msg->post();
122}
123
124void NuPlayer::Renderer::setPlaybackRate(float rate) {
125    sp<AMessage> msg = new AMessage(kWhatSetRate, this);
126    msg->setFloat("rate", rate);
127    msg->post();
128}
129
130void NuPlayer::Renderer::flush(bool audio, bool notifyComplete) {
131    {
132        Mutex::Autolock autoLock(mLock);
133        if (audio) {
134            mNotifyCompleteAudio |= notifyComplete;
135            ++mAudioQueueGeneration;
136            ++mAudioDrainGeneration;
137        } else {
138            mNotifyCompleteVideo |= notifyComplete;
139            ++mVideoQueueGeneration;
140            ++mVideoDrainGeneration;
141        }
142
143        clearAnchorTime_l();
144        clearAudioFirstAnchorTime_l();
145        mVideoLateByUs = 0;
146        mSyncQueues = false;
147    }
148
149    sp<AMessage> msg = new AMessage(kWhatFlush, this);
150    msg->setInt32("audio", static_cast<int32_t>(audio));
151    msg->post();
152}
153
154void NuPlayer::Renderer::signalTimeDiscontinuity() {
155}
156
157void NuPlayer::Renderer::signalDisableOffloadAudio() {
158    (new AMessage(kWhatDisableOffloadAudio, this))->post();
159}
160
161void NuPlayer::Renderer::signalEnableOffloadAudio() {
162    (new AMessage(kWhatEnableOffloadAudio, this))->post();
163}
164
165void NuPlayer::Renderer::pause() {
166    (new AMessage(kWhatPause, this))->post();
167}
168
169void NuPlayer::Renderer::resume() {
170    (new AMessage(kWhatResume, this))->post();
171}
172
173void NuPlayer::Renderer::setVideoFrameRate(float fps) {
174    sp<AMessage> msg = new AMessage(kWhatSetVideoFrameRate, this);
175    msg->setFloat("frame-rate", fps);
176    msg->post();
177}
178
179// Called on any threads.
180status_t NuPlayer::Renderer::getCurrentPosition(int64_t *mediaUs) {
181    return mMediaClock->getMediaTime(ALooper::GetNowUs(), mediaUs);
182}
183
184void NuPlayer::Renderer::clearAudioFirstAnchorTime_l() {
185    mAudioFirstAnchorTimeMediaUs = -1;
186    mMediaClock->setStartingTimeMedia(-1);
187}
188
189void NuPlayer::Renderer::setAudioFirstAnchorTimeIfNeeded_l(int64_t mediaUs) {
190    if (mAudioFirstAnchorTimeMediaUs == -1) {
191        mAudioFirstAnchorTimeMediaUs = mediaUs;
192        mMediaClock->setStartingTimeMedia(mediaUs);
193    }
194}
195
196void NuPlayer::Renderer::clearAnchorTime_l() {
197    mMediaClock->clearAnchor();
198    mAnchorTimeMediaUs = -1;
199    mAnchorNumFramesWritten = -1;
200}
201
202void NuPlayer::Renderer::setVideoLateByUs(int64_t lateUs) {
203    Mutex::Autolock autoLock(mLock);
204    mVideoLateByUs = lateUs;
205}
206
207int64_t NuPlayer::Renderer::getVideoLateByUs() {
208    Mutex::Autolock autoLock(mLock);
209    return mVideoLateByUs;
210}
211
212status_t NuPlayer::Renderer::openAudioSink(
213        const sp<AMessage> &format,
214        bool offloadOnly,
215        bool hasVideo,
216        uint32_t flags,
217        bool *isOffloaded) {
218    sp<AMessage> msg = new AMessage(kWhatOpenAudioSink, this);
219    msg->setMessage("format", format);
220    msg->setInt32("offload-only", offloadOnly);
221    msg->setInt32("has-video", hasVideo);
222    msg->setInt32("flags", flags);
223
224    sp<AMessage> response;
225    msg->postAndAwaitResponse(&response);
226
227    int32_t err;
228    if (!response->findInt32("err", &err)) {
229        err = INVALID_OPERATION;
230    } else if (err == OK && isOffloaded != NULL) {
231        int32_t offload;
232        CHECK(response->findInt32("offload", &offload));
233        *isOffloaded = (offload != 0);
234    }
235    return err;
236}
237
238void NuPlayer::Renderer::closeAudioSink() {
239    sp<AMessage> msg = new AMessage(kWhatCloseAudioSink, this);
240
241    sp<AMessage> response;
242    msg->postAndAwaitResponse(&response);
243}
244
245void NuPlayer::Renderer::onMessageReceived(const sp<AMessage> &msg) {
246    switch (msg->what()) {
247        case kWhatOpenAudioSink:
248        {
249            sp<AMessage> format;
250            CHECK(msg->findMessage("format", &format));
251
252            int32_t offloadOnly;
253            CHECK(msg->findInt32("offload-only", &offloadOnly));
254
255            int32_t hasVideo;
256            CHECK(msg->findInt32("has-video", &hasVideo));
257
258            uint32_t flags;
259            CHECK(msg->findInt32("flags", (int32_t *)&flags));
260
261            status_t err = onOpenAudioSink(format, offloadOnly, hasVideo, flags);
262
263            sp<AMessage> response = new AMessage;
264            response->setInt32("err", err);
265            response->setInt32("offload", offloadingAudio());
266
267            uint32_t replyID;
268            CHECK(msg->senderAwaitsResponse(&replyID));
269            response->postReply(replyID);
270
271            break;
272        }
273
274        case kWhatCloseAudioSink:
275        {
276            uint32_t replyID;
277            CHECK(msg->senderAwaitsResponse(&replyID));
278
279            onCloseAudioSink();
280
281            sp<AMessage> response = new AMessage;
282            response->postReply(replyID);
283            break;
284        }
285
286        case kWhatStopAudioSink:
287        {
288            mAudioSink->stop();
289            break;
290        }
291
292        case kWhatDrainAudioQueue:
293        {
294            int32_t generation;
295            CHECK(msg->findInt32("drainGeneration", &generation));
296            if (generation != getDrainGeneration(true /* audio */)) {
297                break;
298            }
299
300            mDrainAudioQueuePending = false;
301
302            if (onDrainAudioQueue()) {
303                uint32_t numFramesPlayed;
304                CHECK_EQ(mAudioSink->getPosition(&numFramesPlayed),
305                         (status_t)OK);
306
307                uint32_t numFramesPendingPlayout =
308                    mNumFramesWritten - numFramesPlayed;
309
310                // This is how long the audio sink will have data to
311                // play back.
312                int64_t delayUs =
313                    mAudioSink->msecsPerFrame()
314                        * numFramesPendingPlayout * 1000ll;
315
316                // Let's give it more data after about half that time
317                // has elapsed.
318                Mutex::Autolock autoLock(mLock);
319                postDrainAudioQueue_l(delayUs / 2);
320            }
321            break;
322        }
323
324        case kWhatDrainVideoQueue:
325        {
326            int32_t generation;
327            CHECK(msg->findInt32("drainGeneration", &generation));
328            if (generation != getDrainGeneration(false /* audio */)) {
329                break;
330            }
331
332            mDrainVideoQueuePending = false;
333
334            onDrainVideoQueue();
335
336            postDrainVideoQueue();
337            break;
338        }
339
340        case kWhatPostDrainVideoQueue:
341        {
342            int32_t generation;
343            CHECK(msg->findInt32("drainGeneration", &generation));
344            if (generation != getDrainGeneration(false /* audio */)) {
345                break;
346            }
347
348            mDrainVideoQueuePending = false;
349            postDrainVideoQueue();
350            break;
351        }
352
353        case kWhatQueueBuffer:
354        {
355            onQueueBuffer(msg);
356            break;
357        }
358
359        case kWhatQueueEOS:
360        {
361            onQueueEOS(msg);
362            break;
363        }
364
365        case kWhatSetRate:
366        {
367            CHECK(msg->findFloat("rate", &mPlaybackRate));
368            int32_t ratePermille = (int32_t)(0.5f + 1000 * mPlaybackRate);
369            mPlaybackRate = ratePermille / 1000.0f;
370            mMediaClock->setPlaybackRate(mPlaybackRate);
371            mAudioSink->setPlaybackRatePermille(ratePermille);
372            break;
373        }
374
375        case kWhatFlush:
376        {
377            onFlush(msg);
378            break;
379        }
380
381        case kWhatDisableOffloadAudio:
382        {
383            onDisableOffloadAudio();
384            break;
385        }
386
387        case kWhatEnableOffloadAudio:
388        {
389            onEnableOffloadAudio();
390            break;
391        }
392
393        case kWhatPause:
394        {
395            onPause();
396            break;
397        }
398
399        case kWhatResume:
400        {
401            onResume();
402            break;
403        }
404
405        case kWhatSetVideoFrameRate:
406        {
407            float fps;
408            CHECK(msg->findFloat("frame-rate", &fps));
409            onSetVideoFrameRate(fps);
410            break;
411        }
412
413        case kWhatAudioOffloadTearDown:
414        {
415            onAudioOffloadTearDown(kDueToError);
416            break;
417        }
418
419        case kWhatAudioOffloadPauseTimeout:
420        {
421            int32_t generation;
422            CHECK(msg->findInt32("drainGeneration", &generation));
423            if (generation != mAudioOffloadPauseTimeoutGeneration) {
424                break;
425            }
426            ALOGV("Audio Offload tear down due to pause timeout.");
427            onAudioOffloadTearDown(kDueToTimeout);
428            mWakeLock->release();
429            break;
430        }
431
432        default:
433            TRESPASS();
434            break;
435    }
436}
437
438void NuPlayer::Renderer::postDrainAudioQueue_l(int64_t delayUs) {
439    if (mDrainAudioQueuePending || mSyncQueues || mPaused
440            || offloadingAudio()) {
441        return;
442    }
443
444    if (mAudioQueue.empty()) {
445        return;
446    }
447
448    mDrainAudioQueuePending = true;
449    sp<AMessage> msg = new AMessage(kWhatDrainAudioQueue, this);
450    msg->setInt32("drainGeneration", mAudioDrainGeneration);
451    msg->post(delayUs);
452}
453
454void NuPlayer::Renderer::prepareForMediaRenderingStart_l() {
455    mAudioRenderingStartGeneration = mAudioDrainGeneration;
456    mVideoRenderingStartGeneration = mVideoDrainGeneration;
457}
458
459void NuPlayer::Renderer::notifyIfMediaRenderingStarted_l() {
460    if (mVideoRenderingStartGeneration == mVideoDrainGeneration &&
461        mAudioRenderingStartGeneration == mAudioDrainGeneration) {
462        mVideoRenderingStartGeneration = -1;
463        mAudioRenderingStartGeneration = -1;
464
465        sp<AMessage> notify = mNotify->dup();
466        notify->setInt32("what", kWhatMediaRenderingStart);
467        notify->post();
468    }
469}
470
471// static
472size_t NuPlayer::Renderer::AudioSinkCallback(
473        MediaPlayerBase::AudioSink * /* audioSink */,
474        void *buffer,
475        size_t size,
476        void *cookie,
477        MediaPlayerBase::AudioSink::cb_event_t event) {
478    NuPlayer::Renderer *me = (NuPlayer::Renderer *)cookie;
479
480    switch (event) {
481        case MediaPlayerBase::AudioSink::CB_EVENT_FILL_BUFFER:
482        {
483            return me->fillAudioBuffer(buffer, size);
484            break;
485        }
486
487        case MediaPlayerBase::AudioSink::CB_EVENT_STREAM_END:
488        {
489            me->notifyEOS(true /* audio */, ERROR_END_OF_STREAM);
490            break;
491        }
492
493        case MediaPlayerBase::AudioSink::CB_EVENT_TEAR_DOWN:
494        {
495            me->notifyAudioOffloadTearDown();
496            break;
497        }
498    }
499
500    return 0;
501}
502
503size_t NuPlayer::Renderer::fillAudioBuffer(void *buffer, size_t size) {
504    Mutex::Autolock autoLock(mLock);
505
506    if (!offloadingAudio() || mPaused) {
507        return 0;
508    }
509
510    bool hasEOS = false;
511
512    size_t sizeCopied = 0;
513    bool firstEntry = true;
514    while (sizeCopied < size && !mAudioQueue.empty()) {
515        QueueEntry *entry = &*mAudioQueue.begin();
516
517        if (entry->mBuffer == NULL) { // EOS
518            hasEOS = true;
519            mAudioQueue.erase(mAudioQueue.begin());
520            entry = NULL;
521            break;
522        }
523
524        if (firstEntry && entry->mOffset == 0) {
525            firstEntry = false;
526            int64_t mediaTimeUs;
527            CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
528            ALOGV("rendering audio at media time %.2f secs", mediaTimeUs / 1E6);
529            setAudioFirstAnchorTimeIfNeeded_l(mediaTimeUs);
530        }
531
532        size_t copy = entry->mBuffer->size() - entry->mOffset;
533        size_t sizeRemaining = size - sizeCopied;
534        if (copy > sizeRemaining) {
535            copy = sizeRemaining;
536        }
537
538        memcpy((char *)buffer + sizeCopied,
539               entry->mBuffer->data() + entry->mOffset,
540               copy);
541
542        entry->mOffset += copy;
543        if (entry->mOffset == entry->mBuffer->size()) {
544            entry->mNotifyConsumed->post();
545            mAudioQueue.erase(mAudioQueue.begin());
546            entry = NULL;
547        }
548        sizeCopied += copy;
549
550        notifyIfMediaRenderingStarted_l();
551    }
552
553    if (mAudioFirstAnchorTimeMediaUs >= 0) {
554        int64_t nowUs = ALooper::GetNowUs();
555        int64_t nowMediaUs =
556            mAudioFirstAnchorTimeMediaUs + getPlayedOutAudioDurationUs(nowUs);
557        // we don't know how much data we are queueing for offloaded tracks.
558        mMediaClock->updateAnchor(nowMediaUs, nowUs, INT64_MAX);
559    }
560
561    if (hasEOS) {
562        (new AMessage(kWhatStopAudioSink, this))->post();
563    }
564
565    return sizeCopied;
566}
567
568bool NuPlayer::Renderer::onDrainAudioQueue() {
569#if 0
570    uint32_t numFramesPlayed;
571    if (mAudioSink->getPosition(&numFramesPlayed) != OK) {
572        return false;
573    }
574
575    ssize_t numFramesAvailableToWrite =
576        mAudioSink->frameCount() - (mNumFramesWritten - numFramesPlayed);
577
578    if (numFramesAvailableToWrite == mAudioSink->frameCount()) {
579        ALOGI("audio sink underrun");
580    } else {
581        ALOGV("audio queue has %d frames left to play",
582             mAudioSink->frameCount() - numFramesAvailableToWrite);
583    }
584#endif
585
586    while (!mAudioQueue.empty()) {
587        QueueEntry *entry = &*mAudioQueue.begin();
588
589        mLastAudioBufferDrained = entry->mBufferOrdinal;
590
591        if (entry->mBuffer == NULL) {
592            // EOS
593            int64_t postEOSDelayUs = 0;
594            if (mAudioSink->needsTrailingPadding()) {
595                postEOSDelayUs = getPendingAudioPlayoutDurationUs(ALooper::GetNowUs());
596            }
597            notifyEOS(true /* audio */, entry->mFinalResult, postEOSDelayUs);
598
599            mAudioQueue.erase(mAudioQueue.begin());
600            entry = NULL;
601            if (mAudioSink->needsTrailingPadding()) {
602                // If we're not in gapless playback (i.e. through setNextPlayer), we
603                // need to stop the track here, because that will play out the last
604                // little bit at the end of the file. Otherwise short files won't play.
605                mAudioSink->stop();
606                mNumFramesWritten = 0;
607            }
608            return false;
609        }
610
611        if (entry->mOffset == 0) {
612            int64_t mediaTimeUs;
613            CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
614            ALOGV("rendering audio at media time %.2f secs", mediaTimeUs / 1E6);
615            onNewAudioMediaTime(mediaTimeUs);
616        }
617
618        size_t copy = entry->mBuffer->size() - entry->mOffset;
619
620        ssize_t written = mAudioSink->write(entry->mBuffer->data() + entry->mOffset,
621                                            copy, false /* blocking */);
622        if (written < 0) {
623            // An error in AudioSink write. Perhaps the AudioSink was not properly opened.
624            if (written == WOULD_BLOCK) {
625                ALOGW("AudioSink write would block when writing %zu bytes", copy);
626            } else {
627                ALOGE("AudioSink write error(%zd) when writing %zu bytes", written, copy);
628            }
629            break;
630        }
631
632        entry->mOffset += written;
633        if (entry->mOffset == entry->mBuffer->size()) {
634            entry->mNotifyConsumed->post();
635            mAudioQueue.erase(mAudioQueue.begin());
636
637            entry = NULL;
638        }
639
640        size_t copiedFrames = written / mAudioSink->frameSize();
641        mNumFramesWritten += copiedFrames;
642
643        {
644            Mutex::Autolock autoLock(mLock);
645            notifyIfMediaRenderingStarted_l();
646        }
647
648        if (written != (ssize_t)copy) {
649            // A short count was received from AudioSink::write()
650            //
651            // AudioSink write is called in non-blocking mode.
652            // It may return with a short count when:
653            //
654            // 1) Size to be copied is not a multiple of the frame size. We consider this fatal.
655            // 2) The data to be copied exceeds the available buffer in AudioSink.
656            // 3) An error occurs and data has been partially copied to the buffer in AudioSink.
657            // 4) AudioSink is an AudioCache for data retrieval, and the AudioCache is exceeded.
658
659            // (Case 1)
660            // Must be a multiple of the frame size.  If it is not a multiple of a frame size, it
661            // needs to fail, as we should not carry over fractional frames between calls.
662            CHECK_EQ(copy % mAudioSink->frameSize(), 0);
663
664            // (Case 2, 3, 4)
665            // Return early to the caller.
666            // Beware of calling immediately again as this may busy-loop if you are not careful.
667            ALOGV("AudioSink write short frame count %zd < %zu", written, copy);
668            break;
669        }
670    }
671    int64_t maxTimeMedia;
672    {
673        Mutex::Autolock autoLock(mLock);
674        maxTimeMedia =
675            mAnchorTimeMediaUs +
676                    (int64_t)(max((long long)mNumFramesWritten - mAnchorNumFramesWritten, 0LL)
677                            * 1000LL * mAudioSink->msecsPerFrame());
678    }
679    mMediaClock->updateMaxTimeMedia(maxTimeMedia);
680
681    return !mAudioQueue.empty();
682}
683
684int64_t NuPlayer::Renderer::getDurationUsIfPlayedAtSampleRate(uint32_t numFrames) {
685    int32_t sampleRate = offloadingAudio() ?
686            mCurrentOffloadInfo.sample_rate : mCurrentPcmInfo.mSampleRate;
687    // TODO: remove the (int32_t) casting below as it may overflow at 12.4 hours.
688    return (int64_t)((int32_t)numFrames * 1000000LL / sampleRate);
689}
690
691// Calculate duration of pending samples if played at normal rate (i.e., 1.0).
692int64_t NuPlayer::Renderer::getPendingAudioPlayoutDurationUs(int64_t nowUs) {
693    int64_t writtenAudioDurationUs = getDurationUsIfPlayedAtSampleRate(mNumFramesWritten);
694    return writtenAudioDurationUs - getPlayedOutAudioDurationUs(nowUs);
695}
696
697int64_t NuPlayer::Renderer::getRealTimeUs(int64_t mediaTimeUs, int64_t nowUs) {
698    int64_t realUs;
699    if (mMediaClock->getRealTimeFor(mediaTimeUs, &realUs) != OK) {
700        // If failed to get current position, e.g. due to audio clock is
701        // not ready, then just play out video immediately without delay.
702        return nowUs;
703    }
704    return realUs;
705}
706
707void NuPlayer::Renderer::onNewAudioMediaTime(int64_t mediaTimeUs) {
708    Mutex::Autolock autoLock(mLock);
709    // TRICKY: vorbis decoder generates multiple frames with the same
710    // timestamp, so only update on the first frame with a given timestamp
711    if (mediaTimeUs == mAnchorTimeMediaUs) {
712        return;
713    }
714    setAudioFirstAnchorTimeIfNeeded_l(mediaTimeUs);
715    int64_t nowUs = ALooper::GetNowUs();
716    int64_t nowMediaUs = mediaTimeUs - getPendingAudioPlayoutDurationUs(nowUs);
717    mMediaClock->updateAnchor(nowMediaUs, nowUs, mediaTimeUs);
718    mAnchorNumFramesWritten = mNumFramesWritten;
719    mAnchorTimeMediaUs = mediaTimeUs;
720}
721
722// Called without mLock acquired.
723void NuPlayer::Renderer::postDrainVideoQueue() {
724    if (mDrainVideoQueuePending
725            || getSyncQueues()
726            || (mPaused && mVideoSampleReceived)) {
727        return;
728    }
729
730    if (mVideoQueue.empty()) {
731        return;
732    }
733
734    QueueEntry &entry = *mVideoQueue.begin();
735
736    sp<AMessage> msg = new AMessage(kWhatDrainVideoQueue, this);
737    msg->setInt32("drainGeneration", getDrainGeneration(false /* audio */));
738
739    if (entry.mBuffer == NULL) {
740        // EOS doesn't carry a timestamp.
741        msg->post();
742        mDrainVideoQueuePending = true;
743        return;
744    }
745
746    int64_t delayUs;
747    int64_t nowUs = ALooper::GetNowUs();
748    int64_t realTimeUs;
749    if (mFlags & FLAG_REAL_TIME) {
750        int64_t mediaTimeUs;
751        CHECK(entry.mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
752        realTimeUs = mediaTimeUs;
753    } else {
754        int64_t mediaTimeUs;
755        CHECK(entry.mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
756
757        {
758            Mutex::Autolock autoLock(mLock);
759            if (mAnchorTimeMediaUs < 0) {
760                mMediaClock->updateAnchor(mediaTimeUs, nowUs, mediaTimeUs);
761                mAnchorTimeMediaUs = mediaTimeUs;
762                realTimeUs = nowUs;
763            } else {
764                realTimeUs = getRealTimeUs(mediaTimeUs, nowUs);
765            }
766        }
767        if (!mHasAudio) {
768            // smooth out videos >= 10fps
769            mMediaClock->updateMaxTimeMedia(mediaTimeUs + 100000);
770        }
771
772        // Heuristics to handle situation when media time changed without a
773        // discontinuity. If we have not drained an audio buffer that was
774        // received after this buffer, repost in 10 msec. Otherwise repost
775        // in 500 msec.
776        delayUs = realTimeUs - nowUs;
777        if (delayUs > 500000) {
778            int64_t postDelayUs = 500000;
779            if (mHasAudio && (mLastAudioBufferDrained - entry.mBufferOrdinal) <= 0) {
780                postDelayUs = 10000;
781            }
782            msg->setWhat(kWhatPostDrainVideoQueue);
783            msg->post(postDelayUs);
784            mVideoScheduler->restart();
785            ALOGI("possible video time jump of %dms, retrying in %dms",
786                    (int)(delayUs / 1000), (int)(postDelayUs / 1000));
787            mDrainVideoQueuePending = true;
788            return;
789        }
790    }
791
792    realTimeUs = mVideoScheduler->schedule(realTimeUs * 1000) / 1000;
793    int64_t twoVsyncsUs = 2 * (mVideoScheduler->getVsyncPeriod() / 1000);
794
795    delayUs = realTimeUs - nowUs;
796
797    ALOGW_IF(delayUs > 500000, "unusually high delayUs: %" PRId64, delayUs);
798    // post 2 display refreshes before rendering is due
799    msg->post(delayUs > twoVsyncsUs ? delayUs - twoVsyncsUs : 0);
800
801    mDrainVideoQueuePending = true;
802}
803
804void NuPlayer::Renderer::onDrainVideoQueue() {
805    if (mVideoQueue.empty()) {
806        return;
807    }
808
809    QueueEntry *entry = &*mVideoQueue.begin();
810
811    if (entry->mBuffer == NULL) {
812        // EOS
813
814        notifyEOS(false /* audio */, entry->mFinalResult);
815
816        mVideoQueue.erase(mVideoQueue.begin());
817        entry = NULL;
818
819        setVideoLateByUs(0);
820        return;
821    }
822
823    int64_t nowUs = -1;
824    int64_t realTimeUs;
825    if (mFlags & FLAG_REAL_TIME) {
826        CHECK(entry->mBuffer->meta()->findInt64("timeUs", &realTimeUs));
827    } else {
828        int64_t mediaTimeUs;
829        CHECK(entry->mBuffer->meta()->findInt64("timeUs", &mediaTimeUs));
830
831        nowUs = ALooper::GetNowUs();
832        realTimeUs = getRealTimeUs(mediaTimeUs, nowUs);
833    }
834
835    bool tooLate = false;
836
837    if (!mPaused) {
838        if (nowUs == -1) {
839            nowUs = ALooper::GetNowUs();
840        }
841        setVideoLateByUs(nowUs - realTimeUs);
842        tooLate = (mVideoLateByUs > 40000);
843
844        if (tooLate) {
845            ALOGV("video late by %lld us (%.2f secs)",
846                 mVideoLateByUs, mVideoLateByUs / 1E6);
847        } else {
848            int64_t mediaUs = 0;
849            mMediaClock->getMediaTime(realTimeUs, &mediaUs);
850            ALOGV("rendering video at media time %.2f secs",
851                    (mFlags & FLAG_REAL_TIME ? realTimeUs :
852                    mediaUs) / 1E6);
853        }
854    } else {
855        setVideoLateByUs(0);
856        if (!mVideoSampleReceived && !mHasAudio) {
857            // This will ensure that the first frame after a flush won't be used as anchor
858            // when renderer is in paused state, because resume can happen any time after seek.
859            Mutex::Autolock autoLock(mLock);
860            clearAnchorTime_l();
861        }
862    }
863
864    entry->mNotifyConsumed->setInt64("timestampNs", realTimeUs * 1000ll);
865    entry->mNotifyConsumed->setInt32("render", !tooLate);
866    entry->mNotifyConsumed->post();
867    mVideoQueue.erase(mVideoQueue.begin());
868    entry = NULL;
869
870    mVideoSampleReceived = true;
871
872    if (!mPaused) {
873        if (!mVideoRenderingStarted) {
874            mVideoRenderingStarted = true;
875            notifyVideoRenderingStart();
876        }
877        Mutex::Autolock autoLock(mLock);
878        notifyIfMediaRenderingStarted_l();
879    }
880}
881
882void NuPlayer::Renderer::notifyVideoRenderingStart() {
883    sp<AMessage> notify = mNotify->dup();
884    notify->setInt32("what", kWhatVideoRenderingStart);
885    notify->post();
886}
887
888void NuPlayer::Renderer::notifyEOS(bool audio, status_t finalResult, int64_t delayUs) {
889    sp<AMessage> notify = mNotify->dup();
890    notify->setInt32("what", kWhatEOS);
891    notify->setInt32("audio", static_cast<int32_t>(audio));
892    notify->setInt32("finalResult", finalResult);
893    notify->post(delayUs);
894}
895
896void NuPlayer::Renderer::notifyAudioOffloadTearDown() {
897    (new AMessage(kWhatAudioOffloadTearDown, this))->post();
898}
899
900void NuPlayer::Renderer::onQueueBuffer(const sp<AMessage> &msg) {
901    int32_t audio;
902    CHECK(msg->findInt32("audio", &audio));
903
904    if (dropBufferIfStale(audio, msg)) {
905        return;
906    }
907
908    if (audio) {
909        mHasAudio = true;
910    } else {
911        mHasVideo = true;
912    }
913
914    if (mHasVideo) {
915        if (mVideoScheduler == NULL) {
916            mVideoScheduler = new VideoFrameScheduler();
917            mVideoScheduler->init();
918        }
919    }
920
921    sp<ABuffer> buffer;
922    CHECK(msg->findBuffer("buffer", &buffer));
923
924    sp<AMessage> notifyConsumed;
925    CHECK(msg->findMessage("notifyConsumed", &notifyConsumed));
926
927    QueueEntry entry;
928    entry.mBuffer = buffer;
929    entry.mNotifyConsumed = notifyConsumed;
930    entry.mOffset = 0;
931    entry.mFinalResult = OK;
932    entry.mBufferOrdinal = ++mTotalBuffersQueued;
933
934    if (audio) {
935        Mutex::Autolock autoLock(mLock);
936        mAudioQueue.push_back(entry);
937        postDrainAudioQueue_l();
938    } else {
939        mVideoQueue.push_back(entry);
940        postDrainVideoQueue();
941    }
942
943    Mutex::Autolock autoLock(mLock);
944    if (!mSyncQueues || mAudioQueue.empty() || mVideoQueue.empty()) {
945        return;
946    }
947
948    sp<ABuffer> firstAudioBuffer = (*mAudioQueue.begin()).mBuffer;
949    sp<ABuffer> firstVideoBuffer = (*mVideoQueue.begin()).mBuffer;
950
951    if (firstAudioBuffer == NULL || firstVideoBuffer == NULL) {
952        // EOS signalled on either queue.
953        syncQueuesDone_l();
954        return;
955    }
956
957    int64_t firstAudioTimeUs;
958    int64_t firstVideoTimeUs;
959    CHECK(firstAudioBuffer->meta()
960            ->findInt64("timeUs", &firstAudioTimeUs));
961    CHECK(firstVideoBuffer->meta()
962            ->findInt64("timeUs", &firstVideoTimeUs));
963
964    int64_t diff = firstVideoTimeUs - firstAudioTimeUs;
965
966    ALOGV("queueDiff = %.2f secs", diff / 1E6);
967
968    if (diff > 100000ll) {
969        // Audio data starts More than 0.1 secs before video.
970        // Drop some audio.
971
972        (*mAudioQueue.begin()).mNotifyConsumed->post();
973        mAudioQueue.erase(mAudioQueue.begin());
974        return;
975    }
976
977    syncQueuesDone_l();
978}
979
980void NuPlayer::Renderer::syncQueuesDone_l() {
981    if (!mSyncQueues) {
982        return;
983    }
984
985    mSyncQueues = false;
986
987    if (!mAudioQueue.empty()) {
988        postDrainAudioQueue_l();
989    }
990
991    if (!mVideoQueue.empty()) {
992        mLock.unlock();
993        postDrainVideoQueue();
994        mLock.lock();
995    }
996}
997
998void NuPlayer::Renderer::onQueueEOS(const sp<AMessage> &msg) {
999    int32_t audio;
1000    CHECK(msg->findInt32("audio", &audio));
1001
1002    if (dropBufferIfStale(audio, msg)) {
1003        return;
1004    }
1005
1006    int32_t finalResult;
1007    CHECK(msg->findInt32("finalResult", &finalResult));
1008
1009    QueueEntry entry;
1010    entry.mOffset = 0;
1011    entry.mFinalResult = finalResult;
1012
1013    if (audio) {
1014        Mutex::Autolock autoLock(mLock);
1015        if (mAudioQueue.empty() && mSyncQueues) {
1016            syncQueuesDone_l();
1017        }
1018        mAudioQueue.push_back(entry);
1019        postDrainAudioQueue_l();
1020    } else {
1021        if (mVideoQueue.empty() && getSyncQueues()) {
1022            Mutex::Autolock autoLock(mLock);
1023            syncQueuesDone_l();
1024        }
1025        mVideoQueue.push_back(entry);
1026        postDrainVideoQueue();
1027    }
1028}
1029
1030void NuPlayer::Renderer::onFlush(const sp<AMessage> &msg) {
1031    int32_t audio, notifyComplete;
1032    CHECK(msg->findInt32("audio", &audio));
1033
1034    {
1035        Mutex::Autolock autoLock(mLock);
1036        if (audio) {
1037            notifyComplete = mNotifyCompleteAudio;
1038            mNotifyCompleteAudio = false;
1039        } else {
1040            notifyComplete = mNotifyCompleteVideo;
1041            mNotifyCompleteVideo = false;
1042        }
1043
1044        // If we're currently syncing the queues, i.e. dropping audio while
1045        // aligning the first audio/video buffer times and only one of the
1046        // two queues has data, we may starve that queue by not requesting
1047        // more buffers from the decoder. If the other source then encounters
1048        // a discontinuity that leads to flushing, we'll never find the
1049        // corresponding discontinuity on the other queue.
1050        // Therefore we'll stop syncing the queues if at least one of them
1051        // is flushed.
1052        syncQueuesDone_l();
1053        clearAnchorTime_l();
1054    }
1055
1056    ALOGV("flushing %s", audio ? "audio" : "video");
1057    if (audio) {
1058        {
1059            Mutex::Autolock autoLock(mLock);
1060            flushQueue(&mAudioQueue);
1061
1062            ++mAudioDrainGeneration;
1063            prepareForMediaRenderingStart_l();
1064
1065            if (offloadingAudio()) {
1066                clearAudioFirstAnchorTime_l();
1067            }
1068        }
1069
1070        mDrainAudioQueuePending = false;
1071
1072        if (offloadingAudio()) {
1073            mAudioSink->pause();
1074            mAudioSink->flush();
1075            mAudioSink->start();
1076        }
1077    } else {
1078        flushQueue(&mVideoQueue);
1079
1080        mDrainVideoQueuePending = false;
1081
1082        if (mVideoScheduler != NULL) {
1083            mVideoScheduler->restart();
1084        }
1085
1086        Mutex::Autolock autoLock(mLock);
1087        ++mVideoDrainGeneration;
1088        prepareForMediaRenderingStart_l();
1089    }
1090
1091    mVideoSampleReceived = false;
1092
1093    if (notifyComplete) {
1094        notifyFlushComplete(audio);
1095    }
1096}
1097
1098void NuPlayer::Renderer::flushQueue(List<QueueEntry> *queue) {
1099    while (!queue->empty()) {
1100        QueueEntry *entry = &*queue->begin();
1101
1102        if (entry->mBuffer != NULL) {
1103            entry->mNotifyConsumed->post();
1104        }
1105
1106        queue->erase(queue->begin());
1107        entry = NULL;
1108    }
1109}
1110
1111void NuPlayer::Renderer::notifyFlushComplete(bool audio) {
1112    sp<AMessage> notify = mNotify->dup();
1113    notify->setInt32("what", kWhatFlushComplete);
1114    notify->setInt32("audio", static_cast<int32_t>(audio));
1115    notify->post();
1116}
1117
1118bool NuPlayer::Renderer::dropBufferIfStale(
1119        bool audio, const sp<AMessage> &msg) {
1120    int32_t queueGeneration;
1121    CHECK(msg->findInt32("queueGeneration", &queueGeneration));
1122
1123    if (queueGeneration == getQueueGeneration(audio)) {
1124        return false;
1125    }
1126
1127    sp<AMessage> notifyConsumed;
1128    if (msg->findMessage("notifyConsumed", &notifyConsumed)) {
1129        notifyConsumed->post();
1130    }
1131
1132    return true;
1133}
1134
1135void NuPlayer::Renderer::onAudioSinkChanged() {
1136    if (offloadingAudio()) {
1137        return;
1138    }
1139    CHECK(!mDrainAudioQueuePending);
1140    mNumFramesWritten = 0;
1141    {
1142        Mutex::Autolock autoLock(mLock);
1143        mAnchorNumFramesWritten = -1;
1144    }
1145    uint32_t written;
1146    if (mAudioSink->getFramesWritten(&written) == OK) {
1147        mNumFramesWritten = written;
1148    }
1149}
1150
1151void NuPlayer::Renderer::onDisableOffloadAudio() {
1152    Mutex::Autolock autoLock(mLock);
1153    mFlags &= ~FLAG_OFFLOAD_AUDIO;
1154    ++mAudioDrainGeneration;
1155}
1156
1157void NuPlayer::Renderer::onEnableOffloadAudio() {
1158    Mutex::Autolock autoLock(mLock);
1159    mFlags |= FLAG_OFFLOAD_AUDIO;
1160    ++mAudioDrainGeneration;
1161}
1162
1163void NuPlayer::Renderer::onPause() {
1164    if (mPaused) {
1165        ALOGW("Renderer::onPause() called while already paused!");
1166        return;
1167    }
1168    int64_t currentPositionUs;
1169    {
1170        Mutex::Autolock autoLock(mLock);
1171        ++mAudioDrainGeneration;
1172        ++mVideoDrainGeneration;
1173        prepareForMediaRenderingStart_l();
1174        mPaused = true;
1175        mMediaClock->setPlaybackRate(0.0);
1176    }
1177
1178    mDrainAudioQueuePending = false;
1179    mDrainVideoQueuePending = false;
1180
1181    if (mHasAudio) {
1182        mAudioSink->pause();
1183        startAudioOffloadPauseTimeout();
1184    }
1185
1186    ALOGV("now paused audio queue has %d entries, video has %d entries",
1187          mAudioQueue.size(), mVideoQueue.size());
1188}
1189
1190void NuPlayer::Renderer::onResume() {
1191    if (!mPaused) {
1192        return;
1193    }
1194
1195    if (mHasAudio) {
1196        cancelAudioOffloadPauseTimeout();
1197        mAudioSink->start();
1198    }
1199
1200    {
1201        Mutex::Autolock autoLock(mLock);
1202        mPaused = false;
1203        mMediaClock->setPlaybackRate(mPlaybackRate);
1204
1205        if (!mAudioQueue.empty()) {
1206            postDrainAudioQueue_l();
1207        }
1208    }
1209
1210    if (!mVideoQueue.empty()) {
1211        postDrainVideoQueue();
1212    }
1213}
1214
1215void NuPlayer::Renderer::onSetVideoFrameRate(float fps) {
1216    if (mVideoScheduler == NULL) {
1217        mVideoScheduler = new VideoFrameScheduler();
1218    }
1219    mVideoScheduler->init(fps);
1220}
1221
1222int32_t NuPlayer::Renderer::getQueueGeneration(bool audio) {
1223    Mutex::Autolock autoLock(mLock);
1224    return (audio ? mAudioQueueGeneration : mVideoQueueGeneration);
1225}
1226
1227int32_t NuPlayer::Renderer::getDrainGeneration(bool audio) {
1228    Mutex::Autolock autoLock(mLock);
1229    return (audio ? mAudioDrainGeneration : mVideoDrainGeneration);
1230}
1231
1232bool NuPlayer::Renderer::getSyncQueues() {
1233    Mutex::Autolock autoLock(mLock);
1234    return mSyncQueues;
1235}
1236
1237// TODO: Remove unnecessary calls to getPlayedOutAudioDurationUs()
1238// as it acquires locks and may query the audio driver.
1239//
1240// Some calls could conceivably retrieve extrapolated data instead of
1241// accessing getTimestamp() or getPosition() every time a data buffer with
1242// a media time is received.
1243//
1244// Calculate duration of played samples if played at normal rate (i.e., 1.0).
1245int64_t NuPlayer::Renderer::getPlayedOutAudioDurationUs(int64_t nowUs) {
1246    uint32_t numFramesPlayed;
1247    int64_t numFramesPlayedAt;
1248    AudioTimestamp ts;
1249    static const int64_t kStaleTimestamp100ms = 100000;
1250
1251    status_t res = mAudioSink->getTimestamp(ts);
1252    if (res == OK) {                 // case 1: mixing audio tracks and offloaded tracks.
1253        numFramesPlayed = ts.mPosition;
1254        numFramesPlayedAt =
1255            ts.mTime.tv_sec * 1000000LL + ts.mTime.tv_nsec / 1000;
1256        const int64_t timestampAge = nowUs - numFramesPlayedAt;
1257        if (timestampAge > kStaleTimestamp100ms) {
1258            // This is an audio FIXME.
1259            // getTimestamp returns a timestamp which may come from audio mixing threads.
1260            // After pausing, the MixerThread may go idle, thus the mTime estimate may
1261            // become stale. Assuming that the MixerThread runs 20ms, with FastMixer at 5ms,
1262            // the max latency should be about 25ms with an average around 12ms (to be verified).
1263            // For safety we use 100ms.
1264            ALOGV("getTimestamp: returned stale timestamp nowUs(%lld) numFramesPlayedAt(%lld)",
1265                    (long long)nowUs, (long long)numFramesPlayedAt);
1266            numFramesPlayedAt = nowUs - kStaleTimestamp100ms;
1267        }
1268        //ALOGD("getTimestamp: OK %d %lld", numFramesPlayed, (long long)numFramesPlayedAt);
1269    } else if (res == WOULD_BLOCK) { // case 2: transitory state on start of a new track
1270        numFramesPlayed = 0;
1271        numFramesPlayedAt = nowUs;
1272        //ALOGD("getTimestamp: WOULD_BLOCK %d %lld",
1273        //        numFramesPlayed, (long long)numFramesPlayedAt);
1274    } else {                         // case 3: transitory at new track or audio fast tracks.
1275        res = mAudioSink->getPosition(&numFramesPlayed);
1276        CHECK_EQ(res, (status_t)OK);
1277        numFramesPlayedAt = nowUs;
1278        numFramesPlayedAt += 1000LL * mAudioSink->latency() / 2; /* XXX */
1279        //ALOGD("getPosition: %d %lld", numFramesPlayed, numFramesPlayedAt);
1280    }
1281
1282    //CHECK_EQ(numFramesPlayed & (1 << 31), 0);  // can't be negative until 12.4 hrs, test
1283    int64_t durationUs = getDurationUsIfPlayedAtSampleRate(numFramesPlayed)
1284            + nowUs - numFramesPlayedAt;
1285    if (durationUs < 0) {
1286        // Occurs when numFramesPlayed position is very small and the following:
1287        // (1) In case 1, the time nowUs is computed before getTimestamp() is called and
1288        //     numFramesPlayedAt is greater than nowUs by time more than numFramesPlayed.
1289        // (2) In case 3, using getPosition and adding mAudioSink->latency() to
1290        //     numFramesPlayedAt, by a time amount greater than numFramesPlayed.
1291        //
1292        // Both of these are transitory conditions.
1293        ALOGV("getPlayedOutAudioDurationUs: negative duration %lld set to zero", (long long)durationUs);
1294        durationUs = 0;
1295    }
1296    ALOGV("getPlayedOutAudioDurationUs(%lld) nowUs(%lld) frames(%u) framesAt(%lld)",
1297            (long long)durationUs, (long long)nowUs, numFramesPlayed, (long long)numFramesPlayedAt);
1298    return durationUs;
1299}
1300
1301void NuPlayer::Renderer::onAudioOffloadTearDown(AudioOffloadTearDownReason reason) {
1302    if (mAudioOffloadTornDown) {
1303        return;
1304    }
1305    mAudioOffloadTornDown = true;
1306
1307    int64_t currentPositionUs;
1308    if (getCurrentPosition(&currentPositionUs) != OK) {
1309        currentPositionUs = 0;
1310    }
1311
1312    mAudioSink->stop();
1313    mAudioSink->flush();
1314
1315    sp<AMessage> notify = mNotify->dup();
1316    notify->setInt32("what", kWhatAudioOffloadTearDown);
1317    notify->setInt64("positionUs", currentPositionUs);
1318    notify->setInt32("reason", reason);
1319    notify->post();
1320}
1321
1322void NuPlayer::Renderer::startAudioOffloadPauseTimeout() {
1323    if (offloadingAudio()) {
1324        mWakeLock->acquire();
1325        sp<AMessage> msg = new AMessage(kWhatAudioOffloadPauseTimeout, this);
1326        msg->setInt32("drainGeneration", mAudioOffloadPauseTimeoutGeneration);
1327        msg->post(kOffloadPauseMaxUs);
1328    }
1329}
1330
1331void NuPlayer::Renderer::cancelAudioOffloadPauseTimeout() {
1332    if (offloadingAudio()) {
1333        mWakeLock->release(true);
1334        ++mAudioOffloadPauseTimeoutGeneration;
1335    }
1336}
1337
1338status_t NuPlayer::Renderer::onOpenAudioSink(
1339        const sp<AMessage> &format,
1340        bool offloadOnly,
1341        bool hasVideo,
1342        uint32_t flags) {
1343    ALOGV("openAudioSink: offloadOnly(%d) offloadingAudio(%d)",
1344            offloadOnly, offloadingAudio());
1345    bool audioSinkChanged = false;
1346
1347    int32_t numChannels;
1348    CHECK(format->findInt32("channel-count", &numChannels));
1349
1350    int32_t channelMask;
1351    if (!format->findInt32("channel-mask", &channelMask)) {
1352        // signal to the AudioSink to derive the mask from count.
1353        channelMask = CHANNEL_MASK_USE_CHANNEL_ORDER;
1354    }
1355
1356    int32_t sampleRate;
1357    CHECK(format->findInt32("sample-rate", &sampleRate));
1358
1359    if (offloadingAudio()) {
1360        audio_format_t audioFormat = AUDIO_FORMAT_PCM_16_BIT;
1361        AString mime;
1362        CHECK(format->findString("mime", &mime));
1363        status_t err = mapMimeToAudioFormat(audioFormat, mime.c_str());
1364
1365        if (err != OK) {
1366            ALOGE("Couldn't map mime \"%s\" to a valid "
1367                    "audio_format", mime.c_str());
1368            onDisableOffloadAudio();
1369        } else {
1370            ALOGV("Mime \"%s\" mapped to audio_format 0x%x",
1371                    mime.c_str(), audioFormat);
1372
1373            int avgBitRate = -1;
1374            format->findInt32("bit-rate", &avgBitRate);
1375
1376            int32_t aacProfile = -1;
1377            if (audioFormat == AUDIO_FORMAT_AAC
1378                    && format->findInt32("aac-profile", &aacProfile)) {
1379                // Redefine AAC format as per aac profile
1380                mapAACProfileToAudioFormat(
1381                        audioFormat,
1382                        aacProfile);
1383            }
1384
1385            audio_offload_info_t offloadInfo = AUDIO_INFO_INITIALIZER;
1386            offloadInfo.duration_us = -1;
1387            format->findInt64(
1388                    "durationUs", &offloadInfo.duration_us);
1389            offloadInfo.sample_rate = sampleRate;
1390            offloadInfo.channel_mask = channelMask;
1391            offloadInfo.format = audioFormat;
1392            offloadInfo.stream_type = AUDIO_STREAM_MUSIC;
1393            offloadInfo.bit_rate = avgBitRate;
1394            offloadInfo.has_video = hasVideo;
1395            offloadInfo.is_streaming = true;
1396
1397            if (memcmp(&mCurrentOffloadInfo, &offloadInfo, sizeof(offloadInfo)) == 0) {
1398                ALOGV("openAudioSink: no change in offload mode");
1399                // no change from previous configuration, everything ok.
1400                return OK;
1401            }
1402            mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1403
1404            ALOGV("openAudioSink: try to open AudioSink in offload mode");
1405            uint32_t offloadFlags = flags;
1406            offloadFlags |= AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD;
1407            offloadFlags &= ~AUDIO_OUTPUT_FLAG_DEEP_BUFFER;
1408            audioSinkChanged = true;
1409            mAudioSink->close();
1410            err = mAudioSink->open(
1411                    sampleRate,
1412                    numChannels,
1413                    (audio_channel_mask_t)channelMask,
1414                    audioFormat,
1415                    8 /* bufferCount */,
1416                    &NuPlayer::Renderer::AudioSinkCallback,
1417                    this,
1418                    (audio_output_flags_t)offloadFlags,
1419                    &offloadInfo);
1420
1421            if (err == OK) {
1422                if (mPlaybackRate != 1.0) {
1423                    mAudioSink->setPlaybackRatePermille(
1424                            (int32_t)(mPlaybackRate * 1000 + 0.5f));
1425                }
1426                // If the playback is offloaded to h/w, we pass
1427                // the HAL some metadata information.
1428                // We don't want to do this for PCM because it
1429                // will be going through the AudioFlinger mixer
1430                // before reaching the hardware.
1431                // TODO
1432                mCurrentOffloadInfo = offloadInfo;
1433                err = mAudioSink->start();
1434                ALOGV_IF(err == OK, "openAudioSink: offload succeeded");
1435            }
1436            if (err != OK) {
1437                // Clean up, fall back to non offload mode.
1438                mAudioSink->close();
1439                onDisableOffloadAudio();
1440                mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1441                ALOGV("openAudioSink: offload failed");
1442            }
1443        }
1444    }
1445    if (!offloadOnly && !offloadingAudio()) {
1446        ALOGV("openAudioSink: open AudioSink in NON-offload mode");
1447        uint32_t pcmFlags = flags;
1448        pcmFlags &= ~AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD;
1449
1450        const PcmInfo info = {
1451                (audio_channel_mask_t)channelMask,
1452                (audio_output_flags_t)pcmFlags,
1453                AUDIO_FORMAT_PCM_16_BIT, // TODO: change to audioFormat
1454                numChannels,
1455                sampleRate
1456        };
1457        if (memcmp(&mCurrentPcmInfo, &info, sizeof(info)) == 0) {
1458            ALOGV("openAudioSink: no change in pcm mode");
1459            // no change from previous configuration, everything ok.
1460            return OK;
1461        }
1462
1463        audioSinkChanged = true;
1464        mAudioSink->close();
1465        mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1466        status_t err = mAudioSink->open(
1467                    sampleRate,
1468                    numChannels,
1469                    (audio_channel_mask_t)channelMask,
1470                    AUDIO_FORMAT_PCM_16_BIT,
1471                    8 /* bufferCount */,
1472                    NULL,
1473                    NULL,
1474                    (audio_output_flags_t)pcmFlags);
1475        if (err != OK) {
1476            ALOGW("openAudioSink: non offloaded open failed status: %d", err);
1477            mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1478            return err;
1479        }
1480        mCurrentPcmInfo = info;
1481        if (mPlaybackRate != 1.0) {
1482            mAudioSink->setPlaybackRatePermille(
1483                    (int32_t)(mPlaybackRate * 1000 + 0.5f));
1484        }
1485        mAudioSink->start();
1486    }
1487    if (audioSinkChanged) {
1488        onAudioSinkChanged();
1489    }
1490    if (offloadingAudio()) {
1491        mAudioOffloadTornDown = false;
1492    }
1493    return OK;
1494}
1495
1496void NuPlayer::Renderer::onCloseAudioSink() {
1497    mAudioSink->close();
1498    mCurrentOffloadInfo = AUDIO_INFO_INITIALIZER;
1499    mCurrentPcmInfo = AUDIO_PCMINFO_INITIALIZER;
1500}
1501
1502}  // namespace android
1503
1504