зеркало из https://github.com/mozilla/gecko-dev.git
308 строки
9.9 KiB
C++
308 строки
9.9 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 "MP4Decoder.h"
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#include "MediaContentType.h"
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#include "MediaDecoderStateMachine.h"
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#include "MP4Demuxer.h"
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#include "mozilla/Preferences.h"
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#include "nsCharSeparatedTokenizer.h"
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#include "mozilla/CDMProxy.h"
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#include "mozilla/Logging.h"
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#include "mozilla/SharedThreadPool.h"
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#include "nsMimeTypes.h"
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#include "VideoUtils.h"
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#ifdef XP_WIN
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#include "mozilla/WindowsVersion.h"
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#endif
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#ifdef MOZ_WIDGET_ANDROID
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#include "nsIGfxInfo.h"
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#endif
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#include "mozilla/layers/LayersTypes.h"
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#include "PDMFactory.h"
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namespace mozilla {
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MP4Decoder::MP4Decoder(MediaDecoderOwner* aOwner)
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: MediaDecoder(aOwner)
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{
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}
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MediaDecoderStateMachine* MP4Decoder::CreateStateMachine()
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{
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mReader =
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new MediaFormatReader(this,
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new MP4Demuxer(GetResource()),
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GetVideoFrameContainer());
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return new MediaDecoderStateMachine(this, mReader);
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}
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static bool
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IsWhitelistedH264Codec(const nsAString& aCodec)
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{
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int16_t profile = 0, level = 0;
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if (!ExtractH264CodecDetails(aCodec, profile, level)) {
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return false;
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}
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#ifdef XP_WIN
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// Disable 4k video on windows vista since it performs poorly.
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if (!IsWin7OrLater() &&
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level >= H264_LEVEL_5) {
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return false;
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}
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#endif
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// Just assume what we can play on all platforms the codecs/formats that
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// WMF can play, since we don't have documentation about what other
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// platforms can play... According to the WMF documentation:
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// http://msdn.microsoft.com/en-us/library/windows/desktop/dd797815%28v=vs.85%29.aspx
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// "The Media Foundation H.264 video decoder is a Media Foundation Transform
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// that supports decoding of Baseline, Main, and High profiles, up to level
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// 5.1.". We also report that we can play Extended profile, as there are
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// bitstreams that are Extended compliant that are also Baseline compliant.
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return level >= H264_LEVEL_1 &&
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level <= H264_LEVEL_5_1 &&
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(profile == H264_PROFILE_BASE ||
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profile == H264_PROFILE_MAIN ||
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profile == H264_PROFILE_EXTENDED ||
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profile == H264_PROFILE_HIGH);
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}
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/* static */
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bool
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MP4Decoder::CanHandleMediaType(const MediaContentType& aType,
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DecoderDoctorDiagnostics* aDiagnostics)
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{
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if (!IsEnabled()) {
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return false;
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}
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// Whitelist MP4 types, so they explicitly match what we encounter on
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// the web, as opposed to what we use internally (i.e. what our demuxers
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// etc output).
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const bool isMP4Audio = aType.GetMIMEType().EqualsASCII("audio/mp4") ||
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aType.GetMIMEType().EqualsASCII("audio/x-m4a");
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const bool isMP4Video =
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// On B2G, treat 3GPP as MP4 when Gonk PDM is available.
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#ifdef MOZ_GONK_MEDIACODEC
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aType.GetMIMEType().EqualsASCII(VIDEO_3GPP) ||
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#endif
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aType.GetMIMEType().EqualsASCII("video/mp4") ||
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aType.GetMIMEType().EqualsASCII("video/quicktime") ||
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aType.GetMIMEType().EqualsASCII("video/x-m4v");
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if (!isMP4Audio && !isMP4Video) {
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return false;
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}
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nsTArray<UniquePtr<TrackInfo>> trackInfos;
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if (aType.GetCodecs().IsEmpty()) {
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// No codecs specified. Assume H.264
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if (isMP4Audio) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("audio/mp4a-latm"), aType));
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} else {
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MOZ_ASSERT(isMP4Video);
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("video/avc"), aType));
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}
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} else {
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// Verify that all the codecs specified are ones that we expect that
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// we can play.
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nsTArray<nsString> codecs;
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if (!ParseCodecsString(aType.GetCodecs(), codecs)) {
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return false;
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}
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for (const nsString& codec : codecs) {
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if (IsAACCodecString(codec)) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("audio/mp4a-latm"), aType));
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continue;
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}
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if (codec.EqualsLiteral("mp3")) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("audio/mpeg"), aType));
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continue;
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}
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if (codec.EqualsLiteral("opus")) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("audio/opus"), aType));
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continue;
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}
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if (codec.EqualsLiteral("flac")) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("audio/flac"), aType));
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continue;
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}
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// Note: Only accept H.264 in a video content type, not in an audio
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// content type.
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if (IsWhitelistedH264Codec(codec) && isMP4Video) {
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trackInfos.AppendElement(
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CreateTrackInfoWithMIMETypeAndContentTypeExtraParameters(
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NS_LITERAL_CSTRING("video/avc"), aType));
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continue;
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}
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// Some unsupported codec.
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return false;
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}
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}
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// Verify that we have a PDM that supports the whitelisted types.
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RefPtr<PDMFactory> platform = new PDMFactory();
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for (const auto& trackInfo : trackInfos) {
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if (!trackInfo || !platform->Supports(*trackInfo, aDiagnostics)) {
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return false;
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}
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}
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return true;
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}
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/* static */
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bool
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MP4Decoder::IsH264(const nsACString& aMimeType)
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{
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return aMimeType.EqualsLiteral("video/mp4") ||
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aMimeType.EqualsLiteral("video/avc");
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}
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/* static */
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bool
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MP4Decoder::IsAAC(const nsACString& aMimeType)
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{
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return aMimeType.EqualsLiteral("audio/mp4a-latm");
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}
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/* static */
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bool
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MP4Decoder::IsEnabled()
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{
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return Preferences::GetBool("media.mp4.enabled", true);
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}
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// sTestH264ExtraData represents the content of the avcC atom found in
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// an AVC1 h264 video. It contains the H264 SPS and PPS NAL.
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// the structure of the avcC atom is as follow:
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// write(0x1); // version, always 1
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// write(sps[0].data[1]); // profile
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// write(sps[0].data[2]); // compatibility
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// write(sps[0].data[3]); // level
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// write(0xFC | 3); // reserved (6 bits), NULA length size - 1 (2 bits)
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// write(0xE0 | 1); // reserved (3 bits), num of SPS (5 bits)
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// write_word(sps[0].size); // 2 bytes for length of SPS
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// for(size_t i=0 ; i < sps[0].size ; ++i)
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// write(sps[0].data[i]); // data of SPS
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// write(&b, pps.size()); // num of PPS
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// for(size_t i=0 ; i < pps.size() ; ++i) {
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// write_word(pps[i].size); // 2 bytes for length of PPS
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// for(size_t j=0 ; j < pps[i].size ; ++j)
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// write(pps[i].data[j]); // data of PPS
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// }
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// }
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// here we have a h264 Baseline, 640x360
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// We use a 640x360 extradata, as some video framework (Apple VT) will never
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// attempt to use hardware decoding for small videos.
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static const uint8_t sTestH264ExtraData[] = {
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0x01, 0x42, 0xc0, 0x1e, 0xff, 0xe1, 0x00, 0x17, 0x67, 0x42,
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0xc0, 0x1e, 0xbb, 0x40, 0x50, 0x17, 0xfc, 0xb8, 0x08, 0x80,
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0x00, 0x00, 0x32, 0x00, 0x00, 0x0b, 0xb5, 0x07, 0x8b, 0x17,
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0x50, 0x01, 0x00, 0x04, 0x68, 0xce, 0x32, 0xc8
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};
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static already_AddRefed<MediaDataDecoder>
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CreateTestH264Decoder(layers::KnowsCompositor* aKnowsCompositor,
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VideoInfo& aConfig,
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TaskQueue* aTaskQueue)
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{
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aConfig.mMimeType = "video/avc";
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aConfig.mId = 1;
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aConfig.mDuration = 40000;
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aConfig.mMediaTime = 0;
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aConfig.mImage = aConfig.mDisplay = nsIntSize(640, 360);
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aConfig.mExtraData = new MediaByteBuffer();
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aConfig.mExtraData->AppendElements(sTestH264ExtraData,
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MOZ_ARRAY_LENGTH(sTestH264ExtraData));
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RefPtr<PDMFactory> platform = new PDMFactory();
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RefPtr<MediaDataDecoder> decoder(platform->CreateDecoder({ aConfig, aTaskQueue, aKnowsCompositor }));
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return decoder.forget();
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}
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/* static */ already_AddRefed<dom::Promise>
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MP4Decoder::IsVideoAccelerated(layers::KnowsCompositor* aKnowsCompositor, nsIGlobalObject* aParent)
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{
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MOZ_ASSERT(NS_IsMainThread());
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ErrorResult rv;
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RefPtr<dom::Promise> promise;
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promise = dom::Promise::Create(aParent, rv);
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if (rv.Failed()) {
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rv.SuppressException();
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return nullptr;
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}
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RefPtr<TaskQueue> taskQueue =
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new TaskQueue(GetMediaThreadPool(MediaThreadType::PLATFORM_DECODER));
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VideoInfo config;
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RefPtr<MediaDataDecoder> decoder(CreateTestH264Decoder(aKnowsCompositor, config, taskQueue));
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if (!decoder) {
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taskQueue->BeginShutdown();
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taskQueue->AwaitShutdownAndIdle();
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promise->MaybeResolve(NS_LITERAL_STRING("No; Failed to create H264 decoder"));
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return promise.forget();
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}
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decoder->Init()
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->Then(AbstractThread::MainThread(), __func__,
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[promise, decoder, taskQueue] (TrackInfo::TrackType aTrack) {
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nsCString failureReason;
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bool ok = decoder->IsHardwareAccelerated(failureReason);
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nsAutoString result;
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if (ok) {
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result.AssignLiteral("Yes");
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} else {
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result.AssignLiteral("No");
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}
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if (failureReason.Length()) {
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result.AppendLiteral("; ");
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AppendUTF8toUTF16(failureReason, result);
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}
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decoder->Shutdown();
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taskQueue->BeginShutdown();
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taskQueue->AwaitShutdownAndIdle();
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promise->MaybeResolve(result);
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},
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[promise, decoder, taskQueue] (MediaResult aError) {
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decoder->Shutdown();
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taskQueue->BeginShutdown();
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taskQueue->AwaitShutdownAndIdle();
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promise->MaybeResolve(NS_LITERAL_STRING("No; Failed to initialize H264 decoder"));
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});
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return promise.forget();
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}
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void
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MP4Decoder::GetMozDebugReaderData(nsAString& aString)
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{
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if (mReader) {
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mReader->GetMozDebugReaderData(aString);
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}
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}
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} // namespace mozilla
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