Files
palemoon27/dom/media/platforms/android/AndroidDecoderModule.cpp
T
roytam1 6b21bacef6 import changes from `dev' branch of rmottola/Arctic-Fox:
- Bug 1206298 - Part 1: Update the expiration time on the fake cache entry object for an intercepted request in the non-e10s case; r=mcmanus (0fa1afb14d)
- Bug 1206298 - Part 2: Add a test to make sure that we respect Cache-Control headers on the synthesized response; r=jdm (c7a05d4415)
- Bug 121442 - Add platform to GMP storage base dir. r=gerald (6f40a18f39)
- Bug 1214967 - Proxy observer service notification across to content process when GMPs are added/removed. r=billm,jwwang (088f770b47)
- Bug 1211812 - Add pref to select GMP to use for unencrypted decoding. r=jwwang Bug 1212670 - Implement GMPDecoderModule::SupportsMimeType() and EMEDecoderModule::SupportsMimeType(). r=jwwang (10acef26cd)
- Bug 1214932 - Remove fragmented-mp4 from media prefs. r=jya (f2935767c1)
- Bug 1214967 - Create a list of GMPs/codecs that can be used for <video> decoding. r=jwwang (3c68f6e08b)
- import some vars and prefs to compile again (5456bb7124)
- Bug 1205083 - Don't enable low latency WMF video decoding as it crashes sometimes. r=jya (353e727811)
- Bug 1101885: P1. Make pref dynamic. r=cpearce (8a3de82e1e)
- Bug 1189776: Store our audio decode time in TimeUnits. r=cpearce (0a01637580)
- Bug 1202296 - Hide the MFTDecoder within MFTManager so that we can recreate it opaquely. r=cpearce (148e4d1923)
- Bug 1211339 - Ensure WMFDecoderModule::SupportsMimeType checks it can create decoders. r=jya (f6e53ff08c)
- Bug 1101885: P2. Don't shutdown WMF framework before releasing decoder. r=cpearce (b373402e74)
- Bug 1101885: P3. Allow decoder creation fallback. r=cpearce (650ef55564)
- Bug 1219300 - Add mutex to protect the |result| because the variable will be access by multiple threads at the same time. r=cpearce (a0f489cbcf)
- Bug 1101885: P4. Enable Intel VP8/VP9 HW decoder by default. r=cpearce (cffbca2905)
- Bug 1101885: P5. Only attempt to use HW VP decoder if DXVA active. r=cpearce (fd0f12c118)
- spaces (f110c8ab3d)
- Bug 1203217 - Add some logging when we detect and skip an ID3v2 tag. r=kinetik (74533f7c1e)
- small changes (1ab8008527)
- Bug 1164453 - Assert that decoder callback is set before using it. r=snorp (79bee3ccbe)
- Bug 1190379 - Use AndroidDecoderModule for VP8/9. r=jya (2c672b6630)
- Bug 1188871: P2. Call DrainComplete should an error occurs while draining. r=snorp (81f5669010)
- Bug 1163667 - [5.1] Ensure empty demuxer sample queue before initiating draining. r=snorp (8a4dd86a28)
- Bug 1204483 - Fix busted audio decoding output on Android r=esawin (b0c7dca1ce)
- Bug 1220491 - clarify ownership relationships for creators of AudioData; r=gerald (cd043d3ef1)
- bug 1162364 detect and abort MF_E_TRANSFORM_STREAM_CHANGE infinite loops r=cpearce (a0f3e17e5f)
- Bug 1214065 - Remove unused arguments from MediaDecoder::Load() and its friends. r=kinetik. (6e610f3aed)
- Bug 1211766 - Remove AbstractMediaDecoder::GetReentrantMonitor(). r=jya. (beb1a22439)
- some cleanup and add back some gestreamer stuff (55c4a19f78)
- Bug 1204434 - Remove check of MediaDecoder::IsMediaSeekable from OggReader::ReadMetadata. r=cpearce. (75bf15a1f5)
- Bug 1209888 - Remove usage of decoder monitor from OggReader. r=jya. (4e92df9c1c)
- Bug 1204882 - Move MediaDecoder::FrameStatistics out of MediaDecoder for easier use in other classes. r=jwwang (7f5d6035be)
- Bug 1209887. Part 1 - add assertions. r=jya. (d5a7057c79)
- Bug 1209887. Part 2 - remove usage of decoder monitor. r=jya. (56a6de8874)
- Bug 1209887. Part 3 - remove unused code. r=jya. (7cd48c424b)
- missing bit of 1208930 (045f09408a)
- Bug 1211327 - Remove unnecessary usage of decoder monitor from MediaDecoderReader and sub-classes. r=jya. (2a15ac759a)
- missing bit 1211766 (221c0a957f)
- Bug 1214519 - Fix the coding style of member initializer lists of MediaDecoder. r=jya. (654636af36)
- Bug 1206977: P12. Properly shutdown all created test decoders. r=cpearce (79cd0ebc83)
- Bug 1206977: P14. Remove obsolete / redundant code. r=cpearce (b5a85ee060)
- Bug 1208348 - Check whether DirectShow can decode MP3 before assuming it will work. r=jya (988030aec7)
- Bug 1209886 - Clean up InstantiateDecoder() in DecoderTraits.cpp. r=kinetik. (822cac0dee)
- Bug 1213176: P1. Remove most MediaFormatReader dependencies on its MediaDecoder parent. r=jwwang (7b5b000408)
- Bug 1214989. Part 1 - add MediaDecoderOwner to the constructors of MediaDecoder and sub-classes. r=gerald. (f2f6df4bf2)
- Bug 1214989. Part 2 - add MediaDecoderOwner to Clone() and overrides. r=gerald. (db9947115d)
- Bug 1214989. Part 3 - remove MediaDecoder::Init() and its callers. r=gerald. (4353925106)
- Bug 1217714 - Remove some unused functions from MediaDecoderReader. r=jya. (ae50a0f881)
- Bug 1194524 - Use channel->ascynOpen2 in dom/media/MediaResource.cpp (r=sicking) (2a28e80f82)
- Bug 1218280. Part 1 - create MediaResourceCallback for MediaResource to send notifications. r=roc. (54c5f58cb0)
- Bug 1218280. Part 2 - remove unused code. r=roc. (161d4e28bb)
- Bug 1219169. Part 1 - Remove AbstractMediaDecoder::OnStateMachineTaskQueue(). r=jya. (1836fb4bbc)
- Bug 1219169. Part 2 - move MediaDecoderStateMachine::OnTaskQueue() to private. r=jya. (873ecac93a)
- Bug 1217692. Part 1 - move members that don't have to be public to protected or private sections. r=jya. (25ea01b514)
- Bug 1217692. Part 2 - fix some styles to keep 80 cols limit. r=jya. (0aabebd4ed)
- Bug 1220558. Part 1 - remove unused arguments from MediaDecoderReader::DispatchNotifyDataArrived() and its callees/callers. r=jya. (0e57bafdb4)
- Bug 1218157: Only ever read from cached data in NotifyDataArrived. r=cpearce (235ef09e63)
- Bug 1220551. Part 1 - fix the parameters passed to mBufferedState->NotifyDataArrived(). r=jya. (61bdc160b1)
- Bug 1220551. Part 2 - remove arguments from NotifyDataArrivedInternal(). r=jya. (edc0c18550)
2022-12-03 11:38:18 +08:00

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C++

/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "AndroidDecoderModule.h"
#include "AndroidBridge.h"
#include "GLBlitHelper.h"
#include "GLContext.h"
#include "GLContextEGL.h"
#include "GLContextProvider.h"
#include "GLImages.h"
#include "GLLibraryEGL.h"
#include "MediaData.h"
#include "MediaInfo.h"
#include "nsThreadUtils.h"
#include "nsAutoPtr.h"
#include "nsPromiseFlatString.h"
#include <jni.h>
using namespace mozilla;
using namespace mozilla::gl;
using namespace mozilla::widget::sdk;
namespace mozilla {
#define INVOKE_CALLBACK(Func, ...) \
if (mCallback) { \
mCallback->Func(__VA_ARGS__); \
} else { \
NS_WARNING("callback not set"); \
}
static const char* TranslateMimeType(const nsACString& aMimeType)
{
if (aMimeType.EqualsLiteral("video/webm; codecs=vp8")) {
return "video/x-vnd.on2.vp8";
} else if (aMimeType.EqualsLiteral("video/webm; codecs=vp9")) {
return "video/x-vnd.on2.vp9";
}
return PromiseFlatCString(aMimeType).get();
}
static MediaCodec::LocalRef CreateDecoder(const nsACString& aMimeType)
{
MediaCodec::LocalRef codec;
NS_ENSURE_SUCCESS(MediaCodec::CreateDecoderByType(TranslateMimeType(aMimeType),
&codec), nullptr);
return codec;
}
class VideoDataDecoder : public MediaCodecDataDecoder {
public:
VideoDataDecoder(const VideoInfo& aConfig,
MediaFormat::Param aFormat, MediaDataDecoderCallback* aCallback,
layers::ImageContainer* aImageContainer)
: MediaCodecDataDecoder(MediaData::Type::VIDEO_DATA, aConfig.mMimeType, aFormat, aCallback)
, mImageContainer(aImageContainer)
, mConfig(aConfig)
{
}
RefPtr<InitPromise> Init() override {
mSurfaceTexture = AndroidSurfaceTexture::Create();
if (!mSurfaceTexture) {
NS_WARNING("Failed to create SurfaceTexture for video decode\n");
return InitPromise::CreateAndReject(DecoderFailureReason::INIT_ERROR, __func__);
}
if (NS_FAILED(InitDecoder(mSurfaceTexture->JavaSurface()))) {
return InitPromise::CreateAndReject(DecoderFailureReason::INIT_ERROR, __func__);
}
return InitPromise::CreateAndResolve(TrackInfo::kVideoTrack, __func__);
}
void Cleanup() override {
mGLContext = nullptr;
}
nsresult Input(MediaRawData* aSample) override {
return MediaCodecDataDecoder::Input(aSample);
}
bool WantCopy() {
// Allocating a texture is incredibly slow on PowerVR
return mGLContext->Vendor() != GLVendor::Imagination;
}
EGLImage CopySurface(layers::Image* img) {
mGLContext->MakeCurrent();
GLuint tex = CreateTextureForOffscreen(mGLContext, mGLContext->GetGLFormats(), img->GetSize());
GLBlitHelper helper(mGLContext);
if (!helper.BlitImageToTexture(img, img->GetSize(), tex, LOCAL_GL_TEXTURE_2D)) {
mGLContext->fDeleteTextures(1, &tex);
return nullptr;
}
EGLint attribs[] = {
LOCAL_EGL_IMAGE_PRESERVED_KHR, LOCAL_EGL_TRUE,
LOCAL_EGL_NONE, LOCAL_EGL_NONE
};
EGLContext eglContext = static_cast<GLContextEGL*>(mGLContext.get())->GetEGLContext();
EGLImage eglImage = sEGLLibrary.fCreateImage(EGL_DISPLAY(), eglContext,
LOCAL_EGL_GL_TEXTURE_2D_KHR,
(EGLClientBuffer)tex, attribs);
mGLContext->fDeleteTextures(1, &tex);
return eglImage;
}
nsresult PostOutput(BufferInfo::Param aInfo, MediaFormat::Param aFormat,
const media::TimeUnit& aDuration) override {
if (!EnsureGLContext()) {
return NS_ERROR_FAILURE;
}
RefPtr<layers::Image> img = mImageContainer->CreateImage(ImageFormat::SURFACE_TEXTURE);
layers::SurfaceTextureImage::Data data;
data.mSurfTex = mSurfaceTexture.get();
data.mSize = mConfig.mDisplay;
data.mOriginPos = gl::OriginPos::BottomLeft;
layers::SurfaceTextureImage* stImg = static_cast<layers::SurfaceTextureImage*>(img.get());
stImg->SetData(data);
if (WantCopy()) {
EGLImage eglImage = CopySurface(img);
if (!eglImage) {
return NS_ERROR_FAILURE;
}
EGLSync eglSync = nullptr;
if (sEGLLibrary.IsExtensionSupported(GLLibraryEGL::KHR_fence_sync) &&
mGLContext->IsExtensionSupported(GLContext::OES_EGL_sync))
{
MOZ_ASSERT(mGLContext->IsCurrent());
eglSync = sEGLLibrary.fCreateSync(EGL_DISPLAY(),
LOCAL_EGL_SYNC_FENCE,
nullptr);
MOZ_ASSERT(eglSync);
mGLContext->fFlush();
} else {
NS_WARNING("No EGL fence support detected, rendering artifacts may occur!");
}
img = mImageContainer->CreateImage(ImageFormat::EGLIMAGE);
layers::EGLImageImage::Data data;
data.mImage = eglImage;
data.mSync = eglSync;
data.mOwns = true;
data.mSize = mConfig.mDisplay;
data.mOriginPos = gl::OriginPos::BottomLeft;
layers::EGLImageImage* typedImg = static_cast<layers::EGLImageImage*>(img.get());
typedImg->SetData(data);
}
nsresult rv;
int32_t flags;
NS_ENSURE_SUCCESS(rv = aInfo->Flags(&flags), rv);
bool isSync = !!(flags & MediaCodec::BUFFER_FLAG_SYNC_FRAME);
int32_t offset;
NS_ENSURE_SUCCESS(rv = aInfo->Offset(&offset), rv);
int64_t presentationTimeUs;
NS_ENSURE_SUCCESS(rv = aInfo->PresentationTimeUs(&presentationTimeUs), rv);
RefPtr<VideoData> v =
VideoData::CreateFromImage(mConfig,
mImageContainer,
offset,
presentationTimeUs,
aDuration.ToMicroseconds(),
img,
isSync,
presentationTimeUs,
gfx::IntRect(0, 0,
mConfig.mDisplay.width,
mConfig.mDisplay.height));
INVOKE_CALLBACK(Output, v);
return NS_OK;
}
protected:
bool EnsureGLContext() {
if (mGLContext) {
return true;
}
mGLContext = GLContextProvider::CreateHeadless(CreateContextFlags::NONE);
return mGLContext;
}
layers::ImageContainer* mImageContainer;
const VideoInfo& mConfig;
RefPtr<AndroidSurfaceTexture> mSurfaceTexture;
RefPtr<GLContext> mGLContext;
};
class AudioDataDecoder : public MediaCodecDataDecoder {
private:
uint8_t csd0[2];
public:
AudioDataDecoder(const AudioInfo& aConfig, MediaFormat::Param aFormat, MediaDataDecoderCallback* aCallback)
: MediaCodecDataDecoder(MediaData::Type::AUDIO_DATA, aConfig.mMimeType, aFormat, aCallback)
{
JNIEnv* env = GetJNIForThread();
jni::Object::LocalRef buffer(env);
NS_ENSURE_SUCCESS_VOID(aFormat->GetByteBuffer(NS_LITERAL_STRING("csd-0"), &buffer));
if (!buffer && aConfig.mCodecSpecificConfig->Length() >= 2) {
csd0[0] = (*aConfig.mCodecSpecificConfig)[0];
csd0[1] = (*aConfig.mCodecSpecificConfig)[1];
buffer = jni::Object::LocalRef::Adopt(env, env->NewDirectByteBuffer(csd0, 2));
NS_ENSURE_SUCCESS_VOID(aFormat->SetByteBuffer(NS_LITERAL_STRING("csd-0"), buffer));
}
}
nsresult Output(BufferInfo::Param aInfo, void* aBuffer,
MediaFormat::Param aFormat,
const media::TimeUnit& aDuration) {
// The output on Android is always 16-bit signed
nsresult rv;
int32_t numChannels;
NS_ENSURE_SUCCESS(rv =
aFormat->GetInteger(NS_LITERAL_STRING("channel-count"), &numChannels), rv);
int32_t sampleRate;
NS_ENSURE_SUCCESS(rv =
aFormat->GetInteger(NS_LITERAL_STRING("sample-rate"), &sampleRate), rv);
int32_t size;
NS_ENSURE_SUCCESS(rv = aInfo->Size(&size), rv);
int32_t offset;
NS_ENSURE_SUCCESS(rv = aInfo->Offset(&offset), rv);
#ifdef MOZ_SAMPLE_TYPE_S16
int32_t numSamples = size / 2;
#else
#error We only support 16-bit integer PCM
#endif
const int32_t numFrames = numSamples / numChannels;
auto audio = MakeUnique<AudioDataValue[]>(numSamples);
uint8_t* bufferStart = static_cast<uint8_t*>(aBuffer) + offset;
PodCopy(audio.get(), reinterpret_cast<AudioDataValue*>(bufferStart), numSamples);
int64_t presentationTimeUs;
NS_ENSURE_SUCCESS(rv = aInfo->PresentationTimeUs(&presentationTimeUs), rv);
RefPtr<AudioData> data = new AudioData(0, presentationTimeUs,
aDuration.ToMicroseconds(),
numFrames,
Move(audio),
numChannels,
sampleRate);
INVOKE_CALLBACK(Output, data);
return NS_OK;
}
};
bool AndroidDecoderModule::SupportsMimeType(const nsACString& aMimeType)
{
if (!AndroidBridge::Bridge() || (AndroidBridge::Bridge()->GetAPIVersion() < 16)) {
return false;
}
if (aMimeType.EqualsLiteral("video/mp4") ||
aMimeType.EqualsLiteral("video/avc")) {
return true;
}
return static_cast<bool>(mozilla::CreateDecoder(aMimeType));
}
already_AddRefed<MediaDataDecoder>
AndroidDecoderModule::CreateVideoDecoder(
const VideoInfo& aConfig,
layers::LayersBackend aLayersBackend,
layers::ImageContainer* aImageContainer,
FlushableTaskQueue* aVideoTaskQueue,
MediaDataDecoderCallback* aCallback)
{
MediaFormat::LocalRef format;
NS_ENSURE_SUCCESS(MediaFormat::CreateVideoFormat(
TranslateMimeType(aConfig.mMimeType),
aConfig.mDisplay.width,
aConfig.mDisplay.height,
&format), nullptr);
RefPtr<MediaDataDecoder> decoder =
new VideoDataDecoder(aConfig, format, aCallback, aImageContainer);
return decoder.forget();
}
already_AddRefed<MediaDataDecoder>
AndroidDecoderModule::CreateAudioDecoder(const AudioInfo& aConfig,
FlushableTaskQueue* aAudioTaskQueue,
MediaDataDecoderCallback* aCallback)
{
MOZ_ASSERT(aConfig.mBitDepth == 16, "We only handle 16-bit audio!");
MediaFormat::LocalRef format;
NS_ENSURE_SUCCESS(MediaFormat::CreateAudioFormat(
aConfig.mMimeType,
aConfig.mBitDepth,
aConfig.mChannels,
&format), nullptr);
RefPtr<MediaDataDecoder> decoder =
new AudioDataDecoder(aConfig, format, aCallback);
return decoder.forget();
}
PlatformDecoderModule::ConversionRequired
AndroidDecoderModule::DecoderNeedsConversion(const TrackInfo& aConfig) const
{
if (aConfig.IsVideo()) {
return kNeedAnnexB;
} else {
return kNeedNone;
}
}
MediaCodecDataDecoder::MediaCodecDataDecoder(MediaData::Type aType,
const nsACString& aMimeType,
MediaFormat::Param aFormat,
MediaDataDecoderCallback* aCallback)
: mType(aType)
, mMimeType(aMimeType)
, mFormat(aFormat)
, mCallback(aCallback)
, mInputBuffers(nullptr)
, mOutputBuffers(nullptr)
, mMonitor("MediaCodecDataDecoder::mMonitor")
, mFlushing(false)
, mDraining(false)
, mStopping(false)
{
}
MediaCodecDataDecoder::~MediaCodecDataDecoder()
{
Shutdown();
}
RefPtr<MediaDataDecoder::InitPromise> MediaCodecDataDecoder::Init()
{
nsresult rv = InitDecoder(nullptr);
TrackInfo::TrackType type =
(mType == MediaData::AUDIO_DATA ? TrackInfo::TrackType::kAudioTrack
: TrackInfo::TrackType::kVideoTrack);
return NS_SUCCEEDED(rv) ?
InitPromise::CreateAndResolve(type, __func__) :
InitPromise::CreateAndReject(MediaDataDecoder::DecoderFailureReason::INIT_ERROR, __func__);
}
nsresult MediaCodecDataDecoder::InitDecoder(Surface::Param aSurface)
{
mDecoder = CreateDecoder(mMimeType);
if (!mDecoder) {
INVOKE_CALLBACK(Error);
return NS_ERROR_FAILURE;
}
nsresult rv;
NS_ENSURE_SUCCESS(rv = mDecoder->Configure(mFormat, aSurface, nullptr, 0), rv);
NS_ENSURE_SUCCESS(rv = mDecoder->Start(), rv);
NS_ENSURE_SUCCESS(rv = ResetInputBuffers(), rv);
NS_ENSURE_SUCCESS(rv = ResetOutputBuffers(), rv);
NS_NewNamedThread("MC Decoder", getter_AddRefs(mThread),
NS_NewRunnableMethod(this, &MediaCodecDataDecoder::DecoderLoop));
return NS_OK;
}
// This is in usec, so that's 10ms
#define DECODER_TIMEOUT 10000
#define HANDLE_DECODER_ERROR() \
if (NS_FAILED(res)) { \
NS_WARNING("exiting decoder loop due to exception"); \
if (mDraining) { \
INVOKE_CALLBACK(DrainComplete); \
mDraining = false; \
} \
INVOKE_CALLBACK(Error); \
break; \
}
nsresult MediaCodecDataDecoder::GetInputBuffer(JNIEnv* env, int index, jni::Object::LocalRef* buffer)
{
bool retried = false;
while (!*buffer) {
*buffer = jni::Object::LocalRef::Adopt(env->GetObjectArrayElement(mInputBuffers.Get(), index));
if (!*buffer) {
if (!retried) {
// Reset the input buffers and then try again
nsresult res = ResetInputBuffers();
if (NS_FAILED(res)) {
return res;
}
retried = true;
} else {
// We already tried resetting the input buffers, return an error
return NS_ERROR_FAILURE;
}
}
}
return NS_OK;
}
void MediaCodecDataDecoder::DecoderLoop()
{
bool outputDone = false;
bool draining = false;
bool waitingEOF = false;
AutoLocalJNIFrame frame(GetJNIForThread(), 1);
RefPtr<MediaRawData> sample;
MediaFormat::LocalRef outputFormat(frame.GetEnv());
nsresult res;
for (;;) {
{
MonitorAutoLock lock(mMonitor);
while (!mStopping && !mDraining && !mFlushing && mQueue.empty()) {
if (mQueue.empty()) {
// We could be waiting here forever if we don't signal that we need more input
INVOKE_CALLBACK(InputExhausted);
}
lock.Wait();
}
if (mStopping) {
// Get out of the loop. This is the only exit point.
break;
}
if (mFlushing) {
mDecoder->Flush();
ClearQueue();
mFlushing = false;
lock.Notify();
continue;
}
// We're not stopping or draining, so try to get a sample
if (!mQueue.empty()) {
sample = mQueue.front();
}
if (mDraining && !sample && !waitingEOF) {
draining = true;
}
}
if (draining && !waitingEOF) {
MOZ_ASSERT(!sample, "Shouldn't have a sample when pushing EOF frame");
int32_t inputIndex;
res = mDecoder->DequeueInputBuffer(DECODER_TIMEOUT, &inputIndex);
HANDLE_DECODER_ERROR();
if (inputIndex >= 0) {
res = mDecoder->QueueInputBuffer(inputIndex, 0, 0, 0, MediaCodec::BUFFER_FLAG_END_OF_STREAM);
HANDLE_DECODER_ERROR();
waitingEOF = true;
}
}
if (sample) {
// We have a sample, try to feed it to the decoder
int inputIndex;
res = mDecoder->DequeueInputBuffer(DECODER_TIMEOUT, &inputIndex);
HANDLE_DECODER_ERROR();
if (inputIndex >= 0) {
jni::Object::LocalRef buffer(frame.GetEnv());
res = GetInputBuffer(frame.GetEnv(), inputIndex, &buffer);
HANDLE_DECODER_ERROR();
void* directBuffer = frame.GetEnv()->GetDirectBufferAddress(buffer.Get());
MOZ_ASSERT(frame.GetEnv()->GetDirectBufferCapacity(buffer.Get()) >= sample->Size(),
"Decoder buffer is not large enough for sample");
{
// We're feeding this to the decoder, so remove it from the queue
MonitorAutoLock lock(mMonitor);
mQueue.pop();
}
PodCopy((uint8_t*)directBuffer, sample->Data(), sample->Size());
res = mDecoder->QueueInputBuffer(inputIndex, 0, sample->Size(),
sample->mTime, 0);
HANDLE_DECODER_ERROR();
mDurations.push(media::TimeUnit::FromMicroseconds(sample->mDuration));
sample = nullptr;
outputDone = false;
}
}
if (!outputDone) {
BufferInfo::LocalRef bufferInfo;
res = BufferInfo::New(&bufferInfo);
HANDLE_DECODER_ERROR();
int32_t outputStatus;
res = mDecoder->DequeueOutputBuffer(bufferInfo, DECODER_TIMEOUT, &outputStatus);
HANDLE_DECODER_ERROR();
if (outputStatus == MediaCodec::INFO_TRY_AGAIN_LATER) {
// We might want to call mCallback->InputExhausted() here, but there seems to be
// some possible bad interactions here with the threading
} else if (outputStatus == MediaCodec::INFO_OUTPUT_BUFFERS_CHANGED) {
res = ResetOutputBuffers();
HANDLE_DECODER_ERROR();
} else if (outputStatus == MediaCodec::INFO_OUTPUT_FORMAT_CHANGED) {
res = mDecoder->GetOutputFormat(ReturnTo(&outputFormat));
HANDLE_DECODER_ERROR();
} else if (outputStatus < 0) {
NS_WARNING("unknown error from decoder!");
INVOKE_CALLBACK(Error);
// Don't break here just in case it's recoverable. If it's not, others stuff will fail later and
// we'll bail out.
} else {
int32_t flags;
res = bufferInfo->Flags(&flags);
HANDLE_DECODER_ERROR();
// We have a valid buffer index >= 0 here
if (flags & MediaCodec::BUFFER_FLAG_END_OF_STREAM) {
if (draining) {
draining = false;
waitingEOF = false;
mMonitor.Lock();
mDraining = false;
mMonitor.Notify();
mMonitor.Unlock();
INVOKE_CALLBACK(DrainComplete);
}
mDecoder->ReleaseOutputBuffer(outputStatus, false);
outputDone = true;
// We only queue empty EOF frames, so we're done for now
continue;
}
MOZ_ASSERT(!mDurations.empty(), "Should have had a duration queued");
media::TimeUnit duration;
if (!mDurations.empty()) {
duration = mDurations.front();
mDurations.pop();
}
auto buffer = jni::Object::LocalRef::Adopt(
frame.GetEnv()->GetObjectArrayElement(mOutputBuffers.Get(), outputStatus));
if (buffer) {
// The buffer will be null on Android L if we are decoding to a Surface
void* directBuffer = frame.GetEnv()->GetDirectBufferAddress(buffer.Get());
Output(bufferInfo, directBuffer, outputFormat, duration);
}
// The Surface will be updated at this point (for video)
mDecoder->ReleaseOutputBuffer(outputStatus, true);
PostOutput(bufferInfo, outputFormat, duration);
}
}
}
Cleanup();
// We're done
MonitorAutoLock lock(mMonitor);
mStopping = false;
mMonitor.Notify();
}
void MediaCodecDataDecoder::ClearQueue()
{
mMonitor.AssertCurrentThreadOwns();
while (!mQueue.empty()) {
mQueue.pop();
}
while (!mDurations.empty()) {
mDurations.pop();
}
}
nsresult MediaCodecDataDecoder::Input(MediaRawData* aSample) {
MonitorAutoLock lock(mMonitor);
mQueue.push(aSample);
lock.NotifyAll();
return NS_OK;
}
nsresult MediaCodecDataDecoder::ResetInputBuffers()
{
return mDecoder->GetInputBuffers(ReturnTo(&mInputBuffers));
}
nsresult MediaCodecDataDecoder::ResetOutputBuffers()
{
return mDecoder->GetOutputBuffers(ReturnTo(&mOutputBuffers));
}
nsresult MediaCodecDataDecoder::Flush() {
MonitorAutoLock lock(mMonitor);
mFlushing = true;
lock.Notify();
while (mFlushing) {
lock.Wait();
}
return NS_OK;
}
nsresult MediaCodecDataDecoder::Drain() {
MonitorAutoLock lock(mMonitor);
if (mDraining) {
return NS_OK;
}
mDraining = true;
lock.Notify();
return NS_OK;
}
nsresult MediaCodecDataDecoder::Shutdown() {
MonitorAutoLock lock(mMonitor);
if (!mThread || mStopping) {
// Already shutdown or in the process of doing so
return NS_OK;
}
mStopping = true;
lock.Notify();
while (mStopping) {
lock.Wait();
}
mThread->Shutdown();
mThread = nullptr;
mDecoder->Stop();
mDecoder->Release();
return NS_OK;
}
} // mozilla