mirror of
https://github.com/roytam1/palemoon27.git
synced 2026-05-26 14:18:48 +00:00
dd9173e4d3
- Bug 1146086: use promise to Init() in PlatformDecoderModule. r=jya,r=cpearce (aed679865) - partial of Bug 1128380: Add IsHardwareAccelerated implementation for AVCC and mac decoder. r=cpearce (8b376df05) - Bug 1192675: P1. Ensure VDA/VT APIs are only ever accessed from the same thread. r=cpearce (fa9c8de6a) - Bug 1178098 - Report why DXVA initialization failed to about:support. r=cpearce (0b06a28e9) - Bug 1167690 - Part 1: Hook up NPPVpluginIsPlayingAudio to the plugin process; r=josh (30df04ca2) - Bug 1167690 - Add NPAPI:AudioControl enums to npapi.h. r=josh (5369f6fa9) - Bug 1167690 - Part 2: Integrate plugins which support the NPAPI audio extensions with the Audio Channel Service; r=BenWa (145cecdc4) - Bug 1167690 - Part 3: Hook up NPNVmuteAudioBool to the plugin process; r=josh (36558b729) - Bug 1167690 - Part 4: Add support for testing plugin audio channel integration to the test plugin; r=josh (04af51882)
216 lines
6.8 KiB
C++
216 lines
6.8 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim:set ts=2 sw=2 sts=2 et cindent: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "mozilla/TaskQueue.h"
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#include "FFmpegRuntimeLinker.h"
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#include "FFmpegAudioDecoder.h"
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#include "TimeUnits.h"
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#define MAX_CHANNELS 16
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namespace mozilla
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{
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static int (*avcodec_decode_audio4)(AVCodecContext*,AVFrame*,
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int*,const AVPacket*) = nullptr;
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static void (*av_init_packet1)(AVPacket*) = nullptr;
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FFmpegAudioDecoder<LIBAV_VER>::FFmpegAudioDecoder(
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FlushableTaskQueue* aTaskQueue, MediaDataDecoderCallback* aCallback,
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const AudioInfo& aConfig)
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: FFmpegDataDecoder(aTaskQueue, GetCodecId(aConfig.mMimeType))
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, mCallback(aCallback)
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{
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MOZ_COUNT_CTOR(FFmpegAudioDecoder);
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// Use a new MediaByteBuffer as the object will be modified during initialization.
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mExtraData = new MediaByteBuffer;
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mExtraData->AppendElements(*aConfig.mCodecSpecificConfig);
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}
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nsRefPtr<MediaDataDecoder::InitPromise>
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FFmpegAudioDecoder<LIBAV_VER>::Init()
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{
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nsresult rv = InitDecoder();
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if(rv == NS_OK) {
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avcodec_decode_audio4 = (decltype(avcodec_decode_audio4))FFmpegRuntimeLinker::avc_ptr[_decode_audio4];
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av_init_packet1 = (decltype(av_init_packet1))FFmpegRuntimeLinker::avc_ptr[_init_packet];
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}
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return rv == NS_OK ? InitPromise::CreateAndResolve(TrackInfo::kAudioTrack, __func__)
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: InitPromise::CreateAndReject(DecoderFailureReason::INIT_ERROR, __func__);
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}
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void
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FFmpegAudioDecoder<LIBAV_VER>::InitCodecContext()
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{
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MOZ_ASSERT(mCodecContext);
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// We do not want to set this value to 0 as FFmpeg by default will
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// use the number of cores, which with our mozlibavutil get_cpu_count
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// isn't implemented.
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mCodecContext->thread_count = 1;
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// FFmpeg takes this as a suggestion for what format to use for audio samples.
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uint32_t major, minor, micro;
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FFmpegRuntimeLinker::GetVersion(major, minor, micro);
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// LibAV 0.8 produces rubbish float interleaved samples, request 16 bits audio.
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mCodecContext->request_sample_fmt =
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(major == 53) ? AV_SAMPLE_FMT_S16 : AV_SAMPLE_FMT_FLT;
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}
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static AudioDataValue*
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CopyAndPackAudio(AVFrame* aFrame, uint32_t aNumChannels, uint32_t aNumAFrames)
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{
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MOZ_ASSERT(aNumChannels <= MAX_CHANNELS);
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nsAutoArrayPtr<AudioDataValue> audio(
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new AudioDataValue[aNumChannels * aNumAFrames]);
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if (aFrame->format == AV_SAMPLE_FMT_FLT) {
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// Audio data already packed. No need to do anything other than copy it
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// into a buffer we own.
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memcpy(audio, aFrame->data[0],
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aNumChannels * aNumAFrames * sizeof(AudioDataValue));
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} else if (aFrame->format == AV_SAMPLE_FMT_FLTP) {
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// Planar audio data. Pack it into something we can understand.
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AudioDataValue* tmp = audio;
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AudioDataValue** data = reinterpret_cast<AudioDataValue**>(aFrame->data);
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for (uint32_t frame = 0; frame < aNumAFrames; frame++) {
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for (uint32_t channel = 0; channel < aNumChannels; channel++) {
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*tmp++ = data[channel][frame];
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}
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}
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} else if (aFrame->format == AV_SAMPLE_FMT_S16) {
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// Audio data already packed. Need to convert from S16 to 32 bits Float
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AudioDataValue* tmp = audio;
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int16_t* data = reinterpret_cast<int16_t**>(aFrame->data)[0];
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for (uint32_t frame = 0; frame < aNumAFrames; frame++) {
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for (uint32_t channel = 0; channel < aNumChannels; channel++) {
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*tmp++ = AudioSampleToFloat(*data++);
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}
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}
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} else if (aFrame->format == AV_SAMPLE_FMT_S16P) {
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// Planar audio data. Convert it from S16 to 32 bits float
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// and pack it into something we can understand.
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AudioDataValue* tmp = audio;
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int16_t** data = reinterpret_cast<int16_t**>(aFrame->data);
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for (uint32_t frame = 0; frame < aNumAFrames; frame++) {
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for (uint32_t channel = 0; channel < aNumChannels; channel++) {
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*tmp++ = AudioSampleToFloat(data[channel][frame]);
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}
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}
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}
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return audio.forget();
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}
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void
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FFmpegAudioDecoder<LIBAV_VER>::DecodePacket(MediaRawData* aSample)
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{
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AVPacket packet;
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av_init_packet1(&packet);
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packet.data = const_cast<uint8_t*>(aSample->Data());
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packet.size = aSample->Size();
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if (!PrepareFrame()) {
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NS_WARNING("FFmpeg audio decoder failed to allocate frame.");
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mCallback->Error();
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return;
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}
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int64_t samplePosition = aSample->mOffset;
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media::TimeUnit pts = media::TimeUnit::FromMicroseconds(aSample->mTime);
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while (packet.size > 0) {
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int decoded;
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int bytesConsumed =
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avcodec_decode_audio4(mCodecContext, mFrame, &decoded, &packet);
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if (bytesConsumed < 0) {
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NS_WARNING("FFmpeg audio decoder error.");
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mCallback->Error();
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return;
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}
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if (decoded) {
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uint32_t numChannels = mCodecContext->channels;
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uint32_t samplingRate = mCodecContext->sample_rate;
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nsAutoArrayPtr<AudioDataValue> audio(
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CopyAndPackAudio(mFrame, numChannels, mFrame->nb_samples));
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media::TimeUnit duration =
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FramesToTimeUnit(mFrame->nb_samples, samplingRate);
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if (!duration.IsValid()) {
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NS_WARNING("Invalid count of accumulated audio samples");
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mCallback->Error();
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return;
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}
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nsRefPtr<AudioData> data = new AudioData(samplePosition,
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pts.ToMicroseconds(),
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duration.ToMicroseconds(),
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mFrame->nb_samples,
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audio.forget(),
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numChannels,
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samplingRate);
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mCallback->Output(data);
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pts += duration;
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if (!pts.IsValid()) {
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NS_WARNING("Invalid count of accumulated audio samples");
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mCallback->Error();
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return;
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}
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}
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packet.data += bytesConsumed;
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packet.size -= bytesConsumed;
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samplePosition += bytesConsumed;
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}
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if (mTaskQueue->IsEmpty()) {
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mCallback->InputExhausted();
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}
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}
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nsresult
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FFmpegAudioDecoder<LIBAV_VER>::Input(MediaRawData* aSample)
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{
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nsCOMPtr<nsIRunnable> runnable(NS_NewRunnableMethodWithArg<nsRefPtr<MediaRawData>>(
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this, &FFmpegAudioDecoder::DecodePacket, nsRefPtr<MediaRawData>(aSample)));
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mTaskQueue->Dispatch(runnable.forget());
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return NS_OK;
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}
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nsresult
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FFmpegAudioDecoder<LIBAV_VER>::Drain()
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{
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mTaskQueue->AwaitIdle();
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mCallback->DrainComplete();
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return Flush();
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}
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AVCodecID
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FFmpegAudioDecoder<LIBAV_VER>::GetCodecId(const nsACString& aMimeType)
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{
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if (aMimeType.EqualsLiteral("audio/mpeg")) {
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return AV_CODEC_ID_MP3;
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}
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if (aMimeType.EqualsLiteral("audio/mp4a-latm")) {
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return AV_CODEC_ID_AAC;
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}
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return AV_CODEC_ID_NONE;
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}
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FFmpegAudioDecoder<LIBAV_VER>::~FFmpegAudioDecoder()
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{
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MOZ_COUNT_DTOR(FFmpegAudioDecoder);
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}
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} // namespace mozilla
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