2010-04-01 20:03:07 -07:00
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/* -*- 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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2012-05-21 04:12:37 -07:00
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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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2010-04-01 20:03:07 -07:00
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2010-04-27 01:53:44 -07:00
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#ifndef VideoUtils_h
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#define VideoUtils_h
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2013-05-29 13:43:41 -07:00
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#include "mozilla/Attributes.h"
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2011-04-29 12:21:57 -07:00
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#include "mozilla/ReentrantMonitor.h"
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2012-05-14 12:50:20 -07:00
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#include "mozilla/CheckedInt.h"
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2010-04-01 20:03:07 -07:00
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2013-09-05 13:25:17 -07:00
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#if !(defined(XP_WIN) || defined(XP_MACOSX) || defined(LINUX)) || \
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defined(MOZ_ASAN)
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// For MEDIA_THREAD_STACK_SIZE
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2011-07-26 20:28:03 -07:00
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#include "nsIThreadManager.h"
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2013-09-05 13:25:17 -07:00
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#endif
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2012-03-27 17:04:20 -07:00
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#include "nsThreadUtils.h"
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2013-06-10 08:30:00 -07:00
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#include "prtime.h"
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2013-09-26 12:06:59 -07:00
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#include "AudioSampleFormat.h"
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2011-06-23 15:08:54 -07:00
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2012-02-22 04:28:06 -08:00
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using mozilla::CheckedInt64;
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using mozilla::CheckedUint64;
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using mozilla::CheckedInt32;
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using mozilla::CheckedUint32;
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2013-09-05 13:25:17 -07:00
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struct nsIntSize;
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2014-02-03 17:49:21 -08:00
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struct nsIntRect;
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2013-09-05 13:25:17 -07:00
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2010-04-01 20:03:07 -07:00
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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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2012-12-06 15:27:08 -08:00
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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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2013-04-11 20:20:09 -07:00
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class MOZ_STACK_CLASS ReentrantMonitorConditionallyEnter
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{
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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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{
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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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{
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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 =(const ReentrantMonitorConditionallyEnter&);
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static void* operator new(size_t) CPP_THROW_NEW;
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static void operator delete(void*);
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ReentrantMonitor* mReentrantMonitor;
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};
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2012-03-27 17:04:20 -07:00
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// Shuts down a thread asynchronously.
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2013-11-03 14:45:19 -08:00
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class ShutdownThreadEvent : public nsRunnable
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2012-03-27 17:04:20 -07:00
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{
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public:
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ShutdownThreadEvent(nsIThread* aThread) : mThread(aThread) {}
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~ShutdownThreadEvent() {}
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NS_IMETHOD Run() MOZ_OVERRIDE {
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2012-03-27 17:04:20 -07:00
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mThread->Shutdown();
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2012-07-30 07:20:58 -07:00
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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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2012-09-02 15:56:29 -07:00
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class MediaResource;
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2010-08-12 19:28:15 -07:00
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2013-03-02 11:14:44 -08:00
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namespace dom {
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class TimeRanges;
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}
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2012-09-02 15:56:29 -07:00
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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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void GetEstimatedBufferedTimeRanges(mozilla::MediaResource* aStream,
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int64_t aDurationUsecs,
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mozilla::dom::TimeRanges* aOutBuffered);
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2012-09-02 15:56:29 -07:00
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2011-09-26 20:31:18 -07:00
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// Converts from number of audio frames (aFrames) to microseconds, given
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2011-09-29 16:34:37 -07:00
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// the specified audio rate (aRate). Stores result in aOutUsecs. Returns true
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// if the operation succeeded, or false if there was an integer overflow
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2010-08-12 19:28:15 -07:00
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// while calulating the conversion.
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2012-08-22 08:56:38 -07:00
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CheckedInt64 FramesToUsecs(int64_t aFrames, uint32_t aRate);
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2010-08-12 19:28:15 -07:00
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2011-09-26 20:31:18 -07:00
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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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2010-08-12 19:28:15 -07:00
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// overflow while calulating the conversion.
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2012-08-22 08:56:38 -07:00
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CheckedInt64 UsecsToFrames(int64_t aUsecs, uint32_t aRate);
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2011-04-13 15:12:23 -07:00
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// Number of microseconds per second. 1e6.
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static const int64_t USECS_PER_S = 1000000;
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2011-04-13 15:12:23 -07:00
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// Number of microseconds per millisecond.
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2012-08-22 08:56:38 -07:00
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static const int64_t USECS_PER_MS = 1000;
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2010-08-12 19:28:15 -07:00
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2013-06-10 08:30:00 -07:00
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// Converts seconds to milliseconds.
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2013-06-19 11:35:04 -07:00
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#define MS_TO_SECONDS(s) ((double)(s) / (PR_MSEC_PER_SEC))
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2013-06-10 08:30:00 -07:00
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2014-03-31 20:39:04 -07:00
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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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2011-06-23 15:08:54 -07:00
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// The maximum height and width of the video. Used for
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// sanitizing the memory allocation of the RGB buffer.
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// The maximum resolution we anticipate encountering in the
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// wild is 2160p - 3840x2160 pixels.
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2012-08-22 08:56:38 -07:00
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static const int32_t MAX_VIDEO_WIDTH = 4000;
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static const int32_t MAX_VIDEO_HEIGHT = 3000;
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2011-06-23 15:08:54 -07:00
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// Scales the display rect aDisplay by aspect ratio aAspectRatio.
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2014-02-03 17:49:21 -08:00
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// Note that aDisplay must be validated by IsValidVideoRegion()
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2011-06-23 15:08:54 -07:00
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// before being used!
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void ScaleDisplayByAspectRatio(nsIntSize& aDisplay, float aAspectRatio);
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2011-07-26 20:28:03 -07:00
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// The amount of virtual memory reserved for thread stacks.
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2012-06-03 12:43:09 -07:00
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#if (defined(XP_WIN) || defined(XP_MACOSX) || defined(LINUX)) && \
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!defined(MOZ_ASAN)
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2011-07-26 20:28:03 -07:00
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#define MEDIA_THREAD_STACK_SIZE (128 * 1024)
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#else
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// All other platforms use their system defaults.
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#define MEDIA_THREAD_STACK_SIZE nsIThreadManager::DEFAULT_STACK_SIZE
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#endif
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2013-09-26 12:06:59 -07:00
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// Downmix multichannel Audio samples to Stereo.
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// Input are the buffer contains multichannel data,
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// the number of channels and the number of frames.
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int DownmixAudioToStereo(mozilla::AudioDataValue* buffer,
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int channels,
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uint32_t frames);
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2013-11-03 14:45:19 -08:00
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bool IsVideoContentType(const nsCString& aContentType);
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2014-02-03 17:49:21 -08:00
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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 nsIntSize& aFrame, const nsIntRect& aPicture,
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const nsIntSize& aDisplay);
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2014-05-05 17:12:05 -07:00
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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)
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: mVar(aVar)
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, mValue(aValue)
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{}
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~AutoSetOnScopeExit() {
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mVar = mValue;
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}
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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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2013-11-03 14:45:19 -08:00
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} // end namespace mozilla
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2010-04-01 20:03:07 -07:00
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#endif
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