forked from mirrors/gecko-dev
According to [1], currently we can only set a labeled boolean from the chrome process, so we need to adjust our design to report result from reporting from the GPU/RDD process to the chrome process. Therefore, we have to always check HEVC first, and trim it later in order to not to incorrectly support HEVC if the pref for HEVC is off. [1] https://firefox-source-docs.mozilla.org/toolkit/components/glean/dev/ipc.html#forbidding-non-commutative-operations Differential Revision: https://phabricator.services.mozilla.com/D208716
563 lines
20 KiB
C++
563 lines
20 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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#ifndef VideoUtils_h
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#define VideoUtils_h
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#include "AudioSampleFormat.h"
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#include "MediaInfo.h"
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#include "MediaCodecsSupport.h"
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#include "VideoLimits.h"
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#include "mozilla/AbstractThread.h"
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#include "mozilla/Attributes.h"
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#include "mozilla/CheckedInt.h"
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#include "mozilla/MozPromise.h"
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#include "mozilla/ReentrantMonitor.h"
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#include "mozilla/RefPtr.h"
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#include "mozilla/SharedThreadPool.h"
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#include "mozilla/TaskQueue.h"
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#include "mozilla/UniquePtr.h"
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#include "mozilla/gfx/Point.h" // for gfx::IntSize
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#include "mozilla/gfx/Types.h"
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#include "nsCOMPtr.h"
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#include "nsINamed.h"
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#include "nsIThread.h"
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#include "nsITimer.h"
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#include "nsThreadUtils.h"
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#include "prtime.h"
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using mozilla::CheckedInt32;
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using mozilla::CheckedInt64;
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using mozilla::CheckedUint32;
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using mozilla::CheckedUint64;
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// This file contains stuff we'd rather put elsewhere, but which is
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// dependent on other changes which we don't want to wait for. We plan to
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// remove this file in the near future.
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// This belongs in xpcom/monitor/Monitor.h, once we've made
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// mozilla::Monitor non-reentrant.
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namespace mozilla {
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class MediaContainerType;
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/**
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* ReentrantMonitorConditionallyEnter
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*
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* Enters the supplied monitor only if the conditional value |aEnter| is true.
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* E.g. Used to allow unmonitored read access on the decode thread,
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* and monitored access on all other threads.
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*/
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class MOZ_STACK_CLASS ReentrantMonitorConditionallyEnter {
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public:
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ReentrantMonitorConditionallyEnter(bool aEnter,
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ReentrantMonitor& aReentrantMonitor)
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: mReentrantMonitor(nullptr) {
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MOZ_COUNT_CTOR(ReentrantMonitorConditionallyEnter);
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if (aEnter) {
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mReentrantMonitor = &aReentrantMonitor;
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NS_ASSERTION(mReentrantMonitor, "null monitor");
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mReentrantMonitor->Enter();
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}
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}
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~ReentrantMonitorConditionallyEnter(void) {
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if (mReentrantMonitor) {
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mReentrantMonitor->Exit();
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}
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MOZ_COUNT_DTOR(ReentrantMonitorConditionallyEnter);
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}
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private:
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// Restrict to constructor and destructor defined above.
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ReentrantMonitorConditionallyEnter();
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ReentrantMonitorConditionallyEnter(const ReentrantMonitorConditionallyEnter&);
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ReentrantMonitorConditionallyEnter& operator=(
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const ReentrantMonitorConditionallyEnter&);
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static void* operator new(size_t) noexcept(true);
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static void operator delete(void*);
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ReentrantMonitor* mReentrantMonitor;
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};
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// Shuts down a thread asynchronously.
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class ShutdownThreadEvent : public Runnable {
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public:
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explicit ShutdownThreadEvent(nsIThread* aThread)
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: Runnable("ShutdownThreadEvent"), mThread(aThread) {}
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~ShutdownThreadEvent() = default;
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NS_IMETHOD Run() override {
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mThread->Shutdown();
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mThread = nullptr;
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return NS_OK;
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}
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private:
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nsCOMPtr<nsIThread> mThread;
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};
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class MediaResource;
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// Estimates the buffered ranges of a MediaResource using a simple
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// (byteOffset/length)*duration method. Probably inaccurate, but won't
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// do file I/O, and can be used when we don't have detailed knowledge
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// of the byte->time mapping of a resource. aDurationUsecs is the duration
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// of the media in microseconds. Estimated buffered ranges are stored in
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// aOutBuffered. Ranges are 0-normalized, i.e. in the range of (0,duration].
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media::TimeIntervals GetEstimatedBufferedTimeRanges(
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mozilla::MediaResource* aStream, int64_t aDurationUsecs);
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double ToMicrosecondResolution(double aSeconds);
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// Converts from number of audio frames (aFrames) to microseconds, given
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// the specified audio rate (aRate).
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CheckedInt64 FramesToUsecs(int64_t aFrames, uint32_t aRate);
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// Converts from number of audio frames (aFrames) TimeUnit, given
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// the specified audio rate (aRate).
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media::TimeUnit FramesToTimeUnit(int64_t aFrames, uint32_t aRate);
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// Perform aValue * aMul / aDiv, reducing the possibility of overflow due to
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// aValue * aMul overflowing.
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CheckedInt64 SaferMultDiv(int64_t aValue, uint64_t aMul, uint64_t aDiv);
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// Converts from microseconds (aUsecs) to number of audio frames, given the
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// specified audio rate (aRate). Stores the result in aOutFrames. Returns
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// true if the operation succeeded, or false if there was an integer
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// overflow while calulating the conversion.
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CheckedInt64 UsecsToFrames(int64_t aUsecs, uint32_t aRate);
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// Format TimeUnit as number of frames at given rate.
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CheckedInt64 TimeUnitToFrames(const media::TimeUnit& aTime, uint32_t aRate);
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// Converts milliseconds to seconds.
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#define MS_TO_SECONDS(ms) ((double)(ms) / (PR_MSEC_PER_SEC))
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// Converts seconds to milliseconds.
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#define SECONDS_TO_MS(s) ((int)((s) * (PR_MSEC_PER_SEC)))
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// Converts from seconds to microseconds. Returns failure if the resulting
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// integer is too big to fit in an int64_t.
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nsresult SecondsToUsecs(double aSeconds, int64_t& aOutUsecs);
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// Scales the display rect aDisplay by aspect ratio aAspectRatio.
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// Note that aDisplay must be validated by IsValidVideoRegion()
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// before being used!
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void ScaleDisplayByAspectRatio(gfx::IntSize& aDisplay, float aAspectRatio);
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// Downmix Stereo audio samples to Mono.
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// Input are the buffer contains stereo data and the number of frames.
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void DownmixStereoToMono(mozilla::AudioDataValue* aBuffer, uint32_t aFrames);
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// Decide the number of playback channels according to the
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// given AudioInfo and the prefs that are being set.
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uint32_t DecideAudioPlaybackChannels(const AudioInfo& info);
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// Decide the sample-rate to use for audio output according to the
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// given AudioInfo and the prefs that are being set.
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uint32_t DecideAudioPlaybackSampleRate(const AudioInfo& info,
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bool aShouldResistFingerprinting);
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bool IsDefaultPlaybackDeviceMono();
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bool IsVideoContentType(const nsCString& aContentType);
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// Returns true if it's safe to use aPicture as the picture to be
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// extracted inside a frame of size aFrame, and scaled up to and displayed
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// at a size of aDisplay. You should validate the frame, picture, and
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// display regions before using them to display video frames.
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bool IsValidVideoRegion(const gfx::IntSize& aFrame,
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const gfx::IntRect& aPicture,
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const gfx::IntSize& aDisplay);
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// Template to automatically set a variable to a value on scope exit.
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// Useful for unsetting flags, etc.
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template <typename T>
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class AutoSetOnScopeExit {
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public:
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AutoSetOnScopeExit(T& aVar, T aValue) : mVar(aVar), mValue(aValue) {}
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~AutoSetOnScopeExit() { mVar = mValue; }
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private:
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T& mVar;
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const T mValue;
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};
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enum class MediaThreadType {
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SUPERVISOR, // MediaFormatReader, RemoteDecoderManager, MediaDecodeTask and
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// others
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PLATFORM_DECODER, // MediaDataDecoder
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PLATFORM_ENCODER, // MediaDataEncoder
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WEBRTC_CALL_THREAD,
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WEBRTC_WORKER,
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MDSM, // MediaDecoderStateMachine
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};
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// Returns the thread pool that is shared amongst all decoder state machines
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// for decoding streams.
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already_AddRefed<SharedThreadPool> GetMediaThreadPool(MediaThreadType aType);
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// Extracts the H.264/AVC profile and level from an H.264 codecs string.
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// H.264 codecs parameters have a type defined as avc1.PPCCLL, where
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// PP = profile_idc, CC = constraint_set flags, LL = level_idc.
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// See
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// http://blog.pearce.org.nz/2013/11/what-does-h264avc1-codecs-parameters.html
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// for more details.
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// Returns false on failure.
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bool ExtractH264CodecDetails(const nsAString& aCodecs, uint8_t& aProfile,
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uint8_t& aConstraint, uint8_t& aLevel);
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struct VideoColorSpace {
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// Default values are set according to
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// https://www.webmproject.org/vp9/mp4/#optional-fields
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// and https://aomediacodec.github.io/av1-isobmff/#codecsparam
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gfx::CICP::ColourPrimaries mPrimaries = gfx::CICP::CP_BT709;
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gfx::CICP::TransferCharacteristics mTransfer = gfx::CICP::TC_BT709;
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gfx::CICP::MatrixCoefficients mMatrix = gfx::CICP::MC_BT709;
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gfx::ColorRange mRange = gfx::ColorRange::LIMITED;
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bool operator==(const VideoColorSpace& aOther) const {
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return mPrimaries == aOther.mPrimaries && mTransfer == aOther.mTransfer &&
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mMatrix == aOther.mMatrix && mRange == aOther.mRange;
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}
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bool operator!=(const VideoColorSpace& aOther) const {
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return !(*this == aOther);
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}
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};
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// Extracts the VPX codecs parameter string.
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// See https://www.webmproject.org/vp9/mp4/#codecs-parameter-string
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// for more details.
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// Returns false on failure.
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bool ExtractVPXCodecDetails(const nsAString& aCodec, uint8_t& aProfile,
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uint8_t& aLevel, uint8_t& aBitDepth);
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bool ExtractVPXCodecDetails(const nsAString& aCodec, uint8_t& aProfile,
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uint8_t& aLevel, uint8_t& aBitDepth,
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uint8_t& aChromaSubsampling,
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mozilla::VideoColorSpace& aColorSpace);
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// Extracts AV1 codecs parameter string.
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// See https://aomediacodec.github.io/av1-isobmff/#codecsparam
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// Returns false if the codec is invalid.
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bool ExtractAV1CodecDetails(const nsAString& aCodec, uint8_t& aProfile,
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uint8_t& aLevel, uint8_t& aTier, uint8_t& aBitDepth,
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bool& aMonochrome, bool& aSubsamplingX,
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bool& aSubsamplingY, uint8_t& aChromaSamplePosition,
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mozilla::VideoColorSpace& aColorSpace);
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// Use a cryptographic quality PRNG to generate raw random bytes
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// and convert that to a base64 string.
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nsresult GenerateRandomName(nsCString& aOutSalt, uint32_t aLength);
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// This version returns a string suitable for use as a file or URL
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// path. This is based on code from nsExternalAppHandler::SetUpTempFile.
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nsresult GenerateRandomPathName(nsCString& aOutSalt, uint32_t aLength);
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already_AddRefed<TaskQueue> CreateMediaDecodeTaskQueue(const char* aName);
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// Iteratively invokes aWork until aCondition returns true, or aWork returns
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// false. Use this rather than a while loop to avoid bogarting the task queue.
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template <class Work, class Condition>
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RefPtr<GenericPromise> InvokeUntil(Work aWork, Condition aCondition) {
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RefPtr<GenericPromise::Private> p = new GenericPromise::Private(__func__);
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if (aCondition()) {
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p->Resolve(true, __func__);
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}
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struct Helper {
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static void Iteration(const RefPtr<GenericPromise::Private>& aPromise,
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Work aLocalWork, Condition aLocalCondition) {
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if (!aLocalWork()) {
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aPromise->Reject(NS_ERROR_FAILURE, __func__);
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} else if (aLocalCondition()) {
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aPromise->Resolve(true, __func__);
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} else {
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nsCOMPtr<nsIRunnable> r = NS_NewRunnableFunction(
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"InvokeUntil::Helper::Iteration",
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[aPromise, aLocalWork, aLocalCondition]() {
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Iteration(aPromise, aLocalWork, aLocalCondition);
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});
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AbstractThread::GetCurrent()->Dispatch(r.forget());
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}
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}
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};
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Helper::Iteration(p, aWork, aCondition);
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return p;
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}
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// Simple timer to run a runnable after a timeout.
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class SimpleTimer : public nsITimerCallback, public nsINamed {
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public:
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NS_DECL_ISUPPORTS
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NS_DECL_NSINAMED
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// Create a new timer to run aTask after aTimeoutMs milliseconds
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// on thread aTarget. If aTarget is null, task is run on the main thread.
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static already_AddRefed<SimpleTimer> Create(
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nsIRunnable* aTask, uint32_t aTimeoutMs,
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nsIEventTarget* aTarget = nullptr);
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void Cancel();
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NS_IMETHOD Notify(nsITimer* timer) override;
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private:
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virtual ~SimpleTimer() = default;
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nsresult Init(nsIRunnable* aTask, uint32_t aTimeoutMs,
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nsIEventTarget* aTarget);
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RefPtr<nsIRunnable> mTask;
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nsCOMPtr<nsITimer> mTimer;
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};
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void LogToBrowserConsole(const nsAString& aMsg);
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bool ParseMIMETypeString(const nsAString& aMIMEType,
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nsString& aOutContainerType,
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nsTArray<nsString>& aOutCodecs);
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bool ParseCodecsString(const nsAString& aCodecs,
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nsTArray<nsString>& aOutCodecs);
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bool IsH264CodecString(const nsAString& aCodec);
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bool IsH265CodecString(const nsAString& aCodec);
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bool IsAACCodecString(const nsAString& aCodec);
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bool IsVP8CodecString(const nsAString& aCodec);
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bool IsVP9CodecString(const nsAString& aCodec);
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bool IsAV1CodecString(const nsAString& aCodec);
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// Try and create a TrackInfo with a given codec MIME type.
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UniquePtr<TrackInfo> CreateTrackInfoWithMIMEType(
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const nsACString& aCodecMIMEType);
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// Try and create a TrackInfo with a given codec MIME type, and optional extra
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// parameters from a container type (its MIME type and codecs are ignored).
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UniquePtr<TrackInfo> CreateTrackInfoWithMIMETypeAndContainerTypeExtraParameters(
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const nsACString& aCodecMIMEType, const MediaContainerType& aContainerType);
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namespace detail {
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// aString should start with aMajor + '/'.
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constexpr bool StartsWithMIMETypeMajor(const char* aString, const char* aMajor,
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size_t aMajorRemaining) {
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return (aMajorRemaining == 0 && *aString == '/') ||
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(*aString == *aMajor &&
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StartsWithMIMETypeMajor(aString + 1, aMajor + 1,
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aMajorRemaining - 1));
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}
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// aString should only contain [a-z0-9\-\.] and a final '\0'.
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constexpr bool EndsWithMIMESubtype(const char* aString, size_t aRemaining) {
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return aRemaining == 0 || (((*aString >= 'a' && *aString <= 'z') ||
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(*aString >= '0' && *aString <= '9') ||
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*aString == '-' || *aString == '.') &&
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EndsWithMIMESubtype(aString + 1, aRemaining - 1));
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}
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// Simple MIME-type literal string checker with a given (major) type.
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// Only accepts "{aMajor}/[a-z0-9\-\.]+".
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template <size_t MajorLengthPlus1>
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constexpr bool IsMIMETypeWithMajor(const char* aString, size_t aLength,
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const char (&aMajor)[MajorLengthPlus1]) {
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return aLength > MajorLengthPlus1 && // Major + '/' + at least 1 char
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StartsWithMIMETypeMajor(aString, aMajor, MajorLengthPlus1 - 1) &&
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EndsWithMIMESubtype(aString + MajorLengthPlus1,
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aLength - MajorLengthPlus1);
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}
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} // namespace detail
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// Simple MIME-type string checker.
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// Only accepts lowercase "{application,audio,video}/[a-z0-9\-\.]+".
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// Add more if necessary.
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constexpr bool IsMediaMIMEType(const char* aString, size_t aLength) {
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return detail::IsMIMETypeWithMajor(aString, aLength, "application") ||
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detail::IsMIMETypeWithMajor(aString, aLength, "audio") ||
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detail::IsMIMETypeWithMajor(aString, aLength, "video");
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}
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// Simple MIME-type string literal checker.
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// Only accepts lowercase "{application,audio,video}/[a-z0-9\-\.]+".
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// Add more if necessary.
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template <size_t LengthPlus1>
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constexpr bool IsMediaMIMEType(const char (&aString)[LengthPlus1]) {
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return IsMediaMIMEType(aString, LengthPlus1 - 1);
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}
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// Simple MIME-type string checker.
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// Only accepts lowercase "{application,audio,video}/[a-z0-9\-\.]+".
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// Add more if necessary.
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inline bool IsMediaMIMEType(const nsACString& aString) {
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return IsMediaMIMEType(aString.Data(), aString.Length());
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}
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enum class StringListRangeEmptyItems {
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// Skip all empty items (empty string will process nothing)
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// E.g.: "a,,b" -> ["a", "b"], "" -> nothing
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Skip,
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// Process all, except if string is empty
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// E.g.: "a,,b" -> ["a", "", "b"], "" -> nothing
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ProcessEmptyItems,
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// Process all, including 1 empty item in an empty string
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// E.g.: "a,,b" -> ["a", "", "b"], "" -> [""]
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ProcessAll
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};
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template <typename String,
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StringListRangeEmptyItems empties = StringListRangeEmptyItems::Skip>
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class StringListRange {
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using CharType = typename String::char_type;
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using Pointer = const CharType*;
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public:
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// Iterator into range, trims items and optionally skips empty items.
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class Iterator {
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public:
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bool operator!=(const Iterator& a) const {
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return mStart != a.mStart || mEnd != a.mEnd;
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}
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Iterator& operator++() {
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SearchItemAt(mComma + 1);
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return *this;
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}
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// DereferencedType should be 'const nsDependent[C]String' pointing into
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// mList (which is 'const ns[C]String&').
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using DereferencedType = decltype(Substring(Pointer(), Pointer()));
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DereferencedType operator*() { return Substring(mStart, mEnd); }
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private:
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friend class StringListRange;
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Iterator(const CharType* aRangeStart, uint32_t aLength)
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: mRangeEnd(aRangeStart + aLength),
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mStart(nullptr),
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mEnd(nullptr),
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mComma(nullptr) {
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SearchItemAt(aRangeStart);
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}
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void SearchItemAt(Pointer start) {
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// First, skip leading whitespace.
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for (Pointer p = start;; ++p) {
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if (p >= mRangeEnd) {
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if (p > mRangeEnd +
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|
(empties != StringListRangeEmptyItems::Skip ? 1 : 0)) {
|
|
p = mRangeEnd +
|
|
(empties != StringListRangeEmptyItems::Skip ? 1 : 0);
|
|
}
|
|
mStart = mEnd = mComma = p;
|
|
return;
|
|
}
|
|
auto c = *p;
|
|
if (c == CharType(',')) {
|
|
// Comma -> Empty item -> Skip or process?
|
|
if (empties != StringListRangeEmptyItems::Skip) {
|
|
mStart = mEnd = mComma = p;
|
|
return;
|
|
}
|
|
} else if (c != CharType(' ')) {
|
|
mStart = p;
|
|
break;
|
|
}
|
|
}
|
|
// Find comma, recording start of trailing space.
|
|
Pointer trailingWhitespace = nullptr;
|
|
for (Pointer p = mStart + 1;; ++p) {
|
|
if (p >= mRangeEnd) {
|
|
mEnd = trailingWhitespace ? trailingWhitespace : p;
|
|
mComma = p;
|
|
return;
|
|
}
|
|
auto c = *p;
|
|
if (c == CharType(',')) {
|
|
mEnd = trailingWhitespace ? trailingWhitespace : p;
|
|
mComma = p;
|
|
return;
|
|
}
|
|
if (c == CharType(' ')) {
|
|
// Found a whitespace -> Record as trailing if not first one.
|
|
if (!trailingWhitespace) {
|
|
trailingWhitespace = p;
|
|
}
|
|
} else {
|
|
// Found a non-whitespace -> Reset trailing whitespace if needed.
|
|
if (trailingWhitespace) {
|
|
trailingWhitespace = nullptr;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
const Pointer mRangeEnd;
|
|
Pointer mStart;
|
|
Pointer mEnd;
|
|
Pointer mComma;
|
|
};
|
|
|
|
explicit StringListRange(const String& aList) : mList(aList) {}
|
|
Iterator begin() const {
|
|
return Iterator(
|
|
mList.Data() +
|
|
((empties == StringListRangeEmptyItems::ProcessEmptyItems &&
|
|
mList.Length() == 0)
|
|
? 1
|
|
: 0),
|
|
mList.Length());
|
|
}
|
|
Iterator end() const {
|
|
return Iterator(mList.Data() + mList.Length() +
|
|
(empties != StringListRangeEmptyItems::Skip ? 1 : 0),
|
|
0);
|
|
}
|
|
|
|
private:
|
|
const String& mList;
|
|
};
|
|
|
|
template <StringListRangeEmptyItems empties = StringListRangeEmptyItems::Skip,
|
|
typename String>
|
|
StringListRange<String, empties> MakeStringListRange(const String& aList) {
|
|
return StringListRange<String, empties>(aList);
|
|
}
|
|
|
|
template <StringListRangeEmptyItems empties = StringListRangeEmptyItems::Skip,
|
|
typename ListString, typename ItemString>
|
|
static bool StringListContains(const ListString& aList,
|
|
const ItemString& aItem) {
|
|
for (const auto& listItem : MakeStringListRange<empties>(aList)) {
|
|
if (listItem.Equals(aItem)) {
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
inline void AppendStringIfNotEmpty(nsACString& aDest, nsACString&& aSrc) {
|
|
if (!aSrc.IsEmpty()) {
|
|
aDest.Append("\n"_ns);
|
|
aDest.Append(aSrc);
|
|
}
|
|
}
|
|
|
|
// Returns true if we're running on a cellular connection; 2G, 3G, etc.
|
|
// Main thread only.
|
|
bool OnCellularConnection();
|
|
|
|
inline gfx::YUVColorSpace DefaultColorSpace(const gfx::IntSize& aSize) {
|
|
return aSize.height < 720 ? gfx::YUVColorSpace::BT601
|
|
: gfx::YUVColorSpace::BT709;
|
|
}
|
|
|
|
bool IsWaveMimetype(const nsACString& aMimeType);
|
|
|
|
void DetermineResolutionForTelemetry(const MediaInfo& aInfo,
|
|
nsCString& aResolutionOut);
|
|
|
|
// True if given MediaCodecsSupported contains any hardware decoding support.
|
|
bool ContainHardwareCodecsSupported(
|
|
const media::MediaCodecsSupported& aSupport);
|
|
|
|
} // end namespace mozilla
|
|
|
|
#endif
|