зеркало из https://github.com/mozilla/gecko-dev.git
469 строки
13 KiB
C++
469 строки
13 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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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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#if !defined(MediaInfo_h)
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# define MediaInfo_h
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# include "mozilla/UniquePtr.h"
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# include "mozilla/RefPtr.h"
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# include "nsTHashMap.h"
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# include "nsString.h"
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# include "nsTArray.h"
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# include "AudioConfig.h"
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# include "ImageTypes.h"
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# include "MediaData.h"
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# include "TimeUnits.h"
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# include "mozilla/gfx/Point.h" // for gfx::IntSize
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# include "mozilla/gfx/Rect.h" // for gfx::IntRect
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# include "mozilla/gfx/Types.h" // for gfx::ColorDepth
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namespace mozilla {
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class AudioInfo;
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class VideoInfo;
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class TextInfo;
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class MetadataTag {
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public:
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MetadataTag(const nsACString& aKey, const nsACString& aValue)
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: mKey(aKey), mValue(aValue) {}
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nsCString mKey;
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nsCString mValue;
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bool operator==(const MetadataTag& rhs) const {
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return mKey == rhs.mKey && mValue == rhs.mValue;
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}
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};
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typedef nsTHashMap<nsCStringHashKey, nsCString> MetadataTags;
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class TrackInfo {
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public:
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enum TrackType { kUndefinedTrack, kAudioTrack, kVideoTrack, kTextTrack };
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TrackInfo(TrackType aType, const nsAString& aId, const nsAString& aKind,
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const nsAString& aLabel, const nsAString& aLanguage, bool aEnabled,
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uint32_t aTrackId)
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: mId(aId),
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mKind(aKind),
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mLabel(aLabel),
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mLanguage(aLanguage),
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mEnabled(aEnabled),
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mTrackId(aTrackId),
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mIsRenderedExternally(false),
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mType(aType) {
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MOZ_COUNT_CTOR(TrackInfo);
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}
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// Only used for backward compatibility. Do not use in new code.
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void Init(const nsAString& aId, const nsAString& aKind,
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const nsAString& aLabel, const nsAString& aLanguage,
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bool aEnabled) {
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mId = aId;
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mKind = aKind;
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mLabel = aLabel;
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mLanguage = aLanguage;
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mEnabled = aEnabled;
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}
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// Fields common with MediaTrack object.
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nsString mId;
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nsString mKind;
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nsString mLabel;
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nsString mLanguage;
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bool mEnabled;
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uint32_t mTrackId;
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nsCString mMimeType;
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media::TimeUnit mDuration;
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media::TimeUnit mMediaTime;
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CryptoTrack mCrypto;
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CopyableTArray<MetadataTag> mTags;
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// True if the track is gonna be (decrypted)/decoded and
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// rendered directly by non-gecko components.
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bool mIsRenderedExternally;
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virtual AudioInfo* GetAsAudioInfo() { return nullptr; }
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virtual VideoInfo* GetAsVideoInfo() { return nullptr; }
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virtual TextInfo* GetAsTextInfo() { return nullptr; }
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virtual const AudioInfo* GetAsAudioInfo() const { return nullptr; }
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virtual const VideoInfo* GetAsVideoInfo() const { return nullptr; }
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virtual const TextInfo* GetAsTextInfo() const { return nullptr; }
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bool IsAudio() const { return !!GetAsAudioInfo(); }
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bool IsVideo() const { return !!GetAsVideoInfo(); }
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bool IsText() const { return !!GetAsTextInfo(); }
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TrackType GetType() const { return mType; }
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bool virtual IsValid() const = 0;
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virtual UniquePtr<TrackInfo> Clone() const = 0;
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MOZ_COUNTED_DTOR_VIRTUAL(TrackInfo)
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protected:
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TrackInfo(const TrackInfo& aOther) {
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mId = aOther.mId;
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mKind = aOther.mKind;
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mLabel = aOther.mLabel;
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mLanguage = aOther.mLanguage;
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mEnabled = aOther.mEnabled;
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mTrackId = aOther.mTrackId;
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mMimeType = aOther.mMimeType;
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mDuration = aOther.mDuration;
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mMediaTime = aOther.mMediaTime;
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mCrypto = aOther.mCrypto;
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mIsRenderedExternally = aOther.mIsRenderedExternally;
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mType = aOther.mType;
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mTags = aOther.mTags.Clone();
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MOZ_COUNT_CTOR(TrackInfo);
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}
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bool IsEqualTo(const TrackInfo& rhs) const;
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private:
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TrackType mType;
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};
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// String version of track type.
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const char* TrackTypeToStr(TrackInfo::TrackType aTrack);
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// Stores info relevant to presenting media frames.
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class VideoInfo : public TrackInfo {
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public:
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enum Rotation {
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kDegree_0 = 0,
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kDegree_90 = 90,
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kDegree_180 = 180,
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kDegree_270 = 270,
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};
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VideoInfo() : VideoInfo(-1, -1) {}
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VideoInfo(int32_t aWidth, int32_t aHeight)
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: VideoInfo(gfx::IntSize(aWidth, aHeight)) {}
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explicit VideoInfo(const gfx::IntSize& aSize)
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: TrackInfo(kVideoTrack, u"2"_ns, u"main"_ns, u""_ns, u""_ns, true, 2),
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mDisplay(aSize),
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mStereoMode(StereoMode::MONO),
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mImage(aSize),
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mCodecSpecificConfig(new MediaByteBuffer),
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mExtraData(new MediaByteBuffer),
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mRotation(kDegree_0) {}
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VideoInfo(const VideoInfo& aOther) = default;
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bool operator==(const VideoInfo& rhs) const;
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bool IsValid() const override {
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return mDisplay.width > 0 && mDisplay.height > 0;
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}
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VideoInfo* GetAsVideoInfo() override { return this; }
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const VideoInfo* GetAsVideoInfo() const override { return this; }
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UniquePtr<TrackInfo> Clone() const override {
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return MakeUnique<VideoInfo>(*this);
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}
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void SetAlpha(bool aAlphaPresent) { mAlphaPresent = aAlphaPresent; }
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bool HasAlpha() const { return mAlphaPresent; }
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gfx::IntRect ImageRect() const {
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if (!mImageRect) {
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return gfx::IntRect(0, 0, mImage.width, mImage.height);
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}
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return *mImageRect;
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}
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void SetImageRect(const gfx::IntRect& aRect) { mImageRect = Some(aRect); }
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void ResetImageRect() { mImageRect.reset(); }
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// Returned the crop rectangle scaled to aWidth/aHeight size relative to
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// mImage size.
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// If aWidth and aHeight are identical to the original
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// mImage.width/mImage.height then the scaling ratio will be 1. This is used
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// for when the frame size is different from what the container reports. This
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// is legal in WebM, and we will preserve the ratio of the crop rectangle as
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// it was reported relative to the picture size reported by the container.
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gfx::IntRect ScaledImageRect(int64_t aWidth, int64_t aHeight) const {
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if ((aWidth == mImage.width && aHeight == mImage.height) || !mImage.width ||
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!mImage.height) {
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return ImageRect();
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}
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gfx::IntRect imageRect = ImageRect();
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int64_t w = (aWidth * imageRect.Width()) / mImage.width;
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int64_t h = (aHeight * imageRect.Height()) / mImage.height;
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if (!w || !h) {
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return imageRect;
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}
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imageRect.x = (imageRect.x * aWidth) / mImage.width;
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imageRect.y = (imageRect.y * aHeight) / mImage.height;
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imageRect.SetWidth(w);
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imageRect.SetHeight(h);
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return imageRect;
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}
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Rotation ToSupportedRotation(int32_t aDegree) const {
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switch (aDegree) {
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case 90:
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return kDegree_90;
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case 180:
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return kDegree_180;
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case 270:
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return kDegree_270;
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default:
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NS_WARNING_ASSERTION(aDegree == 0, "Invalid rotation degree, ignored");
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return kDegree_0;
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}
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}
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// Size in pixels at which the video is rendered. This is after it has
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// been scaled by its aspect ratio.
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gfx::IntSize mDisplay;
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// Indicates the frame layout for single track stereo videos.
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StereoMode mStereoMode;
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// Size of the decoded video's image.
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gfx::IntSize mImage;
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RefPtr<MediaByteBuffer> mCodecSpecificConfig;
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RefPtr<MediaByteBuffer> mExtraData;
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// Describing how many degrees video frames should be rotated in clock-wise to
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// get correct view.
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Rotation mRotation;
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// Should be 8, 10 or 12. Default value is 8.
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gfx::ColorDepth mColorDepth = gfx::ColorDepth::COLOR_8;
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Maybe<gfx::YUVColorSpace> mColorSpace;
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// True indicates no restriction on Y, U, V values (otherwise 16-235 for 8
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// bits etc)
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gfx::ColorRange mColorRange = gfx::ColorRange::LIMITED;
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Maybe<int32_t> GetFrameRate() const { return mFrameRate; }
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void SetFrameRate(int32_t aRate) { mFrameRate = Some(aRate); }
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private:
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friend struct IPC::ParamTraits<VideoInfo>;
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// mImage may be cropped; currently only used with the WebM container.
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// If unset, no cropping is to occur.
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Maybe<gfx::IntRect> mImageRect;
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// Indicates whether or not frames may contain alpha information.
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bool mAlphaPresent = false;
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Maybe<int32_t> mFrameRate;
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};
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class AudioInfo : public TrackInfo {
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public:
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AudioInfo()
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: TrackInfo(kAudioTrack, u"1"_ns, u"main"_ns, u""_ns, u""_ns, true, 1),
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mRate(0),
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mChannels(0),
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mChannelMap(AudioConfig::ChannelLayout::UNKNOWN_MAP),
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mBitDepth(0),
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mProfile(0),
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mExtendedProfile(0),
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mCodecSpecificConfig(new MediaByteBuffer),
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mExtraData(new MediaByteBuffer) {}
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AudioInfo(const AudioInfo& aOther) = default;
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bool operator==(const AudioInfo& rhs) const;
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static const uint32_t MAX_RATE = 640000;
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bool IsValid() const override {
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return mChannels > 0 && mRate > 0 && mRate <= MAX_RATE;
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}
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AudioInfo* GetAsAudioInfo() override { return this; }
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const AudioInfo* GetAsAudioInfo() const override { return this; }
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UniquePtr<TrackInfo> Clone() const override {
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return MakeUnique<AudioInfo>(*this);
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}
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// Sample rate.
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uint32_t mRate;
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// Number of audio channels.
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uint32_t mChannels;
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// The AudioConfig::ChannelLayout map. Channels are ordered as per SMPTE
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// definition. A value of UNKNOWN_MAP indicates unknown layout.
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// ChannelMap is an unsigned bitmap compatible with Windows' WAVE and FFmpeg
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// channel map.
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AudioConfig::ChannelLayout::ChannelMap mChannelMap;
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// Bits per sample.
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uint32_t mBitDepth;
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// Codec profile.
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int8_t mProfile;
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// Extended codec profile.
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int8_t mExtendedProfile;
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RefPtr<MediaByteBuffer> mCodecSpecificConfig;
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RefPtr<MediaByteBuffer> mExtraData;
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};
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class EncryptionInfo {
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public:
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EncryptionInfo() : mEncrypted(false) {}
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struct InitData {
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template <typename AInitDatas>
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InitData(const nsAString& aType, AInitDatas&& aInitData)
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: mType(aType), mInitData(std::forward<AInitDatas>(aInitData)) {}
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// Encryption type to be passed to JS. Usually `cenc'.
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nsString mType;
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// Encryption data.
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CopyableTArray<uint8_t> mInitData;
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};
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typedef CopyableTArray<InitData> InitDatas;
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// True if the stream has encryption metadata
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bool IsEncrypted() const { return mEncrypted; }
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void Reset() {
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mEncrypted = false;
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mInitDatas.Clear();
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}
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template <typename AInitDatas>
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void AddInitData(const nsAString& aType, AInitDatas&& aInitData) {
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mInitDatas.AppendElement(
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InitData(aType, std::forward<AInitDatas>(aInitData)));
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mEncrypted = true;
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}
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void AddInitData(const EncryptionInfo& aInfo) {
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mInitDatas.AppendElements(aInfo.mInitDatas);
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mEncrypted = !!mInitDatas.Length();
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}
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// One 'InitData' per encrypted buffer.
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InitDatas mInitDatas;
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private:
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bool mEncrypted;
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};
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class MediaInfo {
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public:
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bool HasVideo() const { return mVideo.IsValid(); }
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void EnableVideo() {
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if (HasVideo()) {
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return;
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}
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// Set dummy values so that HasVideo() will return true;
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// See VideoInfo::IsValid()
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mVideo.mDisplay = gfx::IntSize(1, 1);
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}
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bool HasAudio() const { return mAudio.IsValid(); }
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void EnableAudio() {
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if (HasAudio()) {
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return;
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}
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// Set dummy values so that HasAudio() will return true;
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// See AudioInfo::IsValid()
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mAudio.mChannels = 2;
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mAudio.mRate = 44100;
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}
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bool IsEncrypted() const {
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return (HasAudio() && mAudio.mCrypto.IsEncrypted()) ||
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(HasVideo() && mVideo.mCrypto.IsEncrypted());
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}
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bool HasValidMedia() const { return HasVideo() || HasAudio(); }
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// TODO: Store VideoInfo and AudioIndo in arrays to support multi-tracks.
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VideoInfo mVideo;
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AudioInfo mAudio;
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// If the metadata includes a duration, we store it here.
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media::NullableTimeUnit mMetadataDuration;
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// The Ogg reader tries to kinda-sorta compute the duration by seeking to the
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// end and determining the timestamp of the last frame. This isn't useful as
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// a duration until we know the start time, so we need to track it separately.
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media::NullableTimeUnit mUnadjustedMetadataEndTime;
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// True if the media is seekable (i.e. supports random access).
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bool mMediaSeekable = true;
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// True if the media is only seekable within its buffered ranges.
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bool mMediaSeekableOnlyInBufferedRanges = false;
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EncryptionInfo mCrypto;
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// The minimum of start times of audio and video tracks.
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// Use to map the zero time on the media timeline to the first frame.
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media::TimeUnit mStartTime;
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};
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class TrackInfoSharedPtr {
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NS_INLINE_DECL_THREADSAFE_REFCOUNTING(TrackInfoSharedPtr)
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public:
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TrackInfoSharedPtr(const TrackInfo& aOriginal, uint32_t aStreamID)
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: mInfo(aOriginal.Clone()),
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mStreamSourceID(aStreamID),
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mMimeType(mInfo->mMimeType) {}
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uint32_t GetID() const { return mStreamSourceID; }
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operator const TrackInfo*() const { return mInfo.get(); }
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const TrackInfo* operator*() const { return mInfo.get(); }
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const TrackInfo* operator->() const {
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MOZ_ASSERT(mInfo.get(), "dereferencing a UniquePtr containing nullptr");
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return mInfo.get();
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}
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const AudioInfo* GetAsAudioInfo() const {
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return mInfo ? mInfo->GetAsAudioInfo() : nullptr;
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}
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const VideoInfo* GetAsVideoInfo() const {
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return mInfo ? mInfo->GetAsVideoInfo() : nullptr;
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}
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const TextInfo* GetAsTextInfo() const {
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return mInfo ? mInfo->GetAsTextInfo() : nullptr;
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}
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private:
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~TrackInfoSharedPtr() = default;
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UniquePtr<TrackInfo> mInfo;
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// A unique ID, guaranteed to change when changing streams.
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uint32_t mStreamSourceID;
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public:
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const nsCString& mMimeType;
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};
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} // namespace mozilla
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#endif // MediaInfo_h
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