зеркало из https://github.com/mozilla/gecko-dev.git
225 строки
6.8 KiB
C++
225 строки
6.8 KiB
C++
/* -*- Mode: C++; tab-width: 20; indent-tabs-mode: nil; c-basic-offset: 2 -*-
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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 "ImageDataSerializer.h"
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#include "gfx2DGlue.h" // for SurfaceFormatToImageFormat
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#include "mozilla/gfx/Point.h" // for IntSize
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#include "mozilla/Assertions.h" // for MOZ_ASSERT, etc
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#include "mozilla/gfx/2D.h" // for DataSourceSurface, Factory
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#include "mozilla/gfx/Logging.h" // for gfxDebug
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#include "mozilla/gfx/Tools.h" // for GetAlignedStride, etc
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#include "mozilla/gfx/Types.h"
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#include "mozilla/mozalloc.h" // for operator delete, etc
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#include "YCbCrUtils.h" // for YCbCr conversions
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namespace mozilla {
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namespace layers {
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namespace ImageDataSerializer {
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using namespace gfx;
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#define MOZ_ALIGN_WORD(x) (((x) + 3) & ~3)
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int32_t
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ComputeRGBStride(SurfaceFormat aFormat, int32_t aWidth)
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{
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CheckedInt<int32_t> size = BytesPerPixel(aFormat);
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size *= aWidth;
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if (!size.isValid() || size.value() <= 0) {
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gfxDebug() << "ComputeStride overflow " << aWidth;
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return 0;
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}
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return GetAlignedStride<4>(size.value());
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}
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int32_t
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GetRGBStride(const RGBDescriptor& aDescriptor)
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{
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return ComputeRGBStride(aDescriptor.format(), aDescriptor.size().width);
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}
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uint32_t
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ComputeRGBBufferSize(IntSize aSize, SurfaceFormat aFormat)
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{
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MOZ_ASSERT(aSize.height >= 0 && aSize.width >= 0);
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// This takes care of checking whether there could be overflow
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// with enough margin for the metadata.
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if (!gfx::Factory::AllowedSurfaceSize(aSize)) {
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return 0;
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}
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int32_t bufsize = GetAlignedStride<16>(ComputeRGBStride(aFormat, aSize.width)
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* aSize.height);
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if (bufsize < 0) {
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// This should not be possible thanks to Factory::AllowedSurfaceSize
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return 0;
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}
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return bufsize;
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}
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// Minimum required shmem size in bytes
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uint32_t
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ComputeYCbCrBufferSize(const gfx::IntSize& aYSize, int32_t aYStride,
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const gfx::IntSize& aCbCrSize, int32_t aCbCrStride)
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{
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MOZ_ASSERT(aYSize.height >= 0 && aYSize.width >= 0);
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if (aYSize.height < 0 || aYSize.width < 0 || aCbCrSize.height < 0 || aCbCrSize.width < 0 ||
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!gfx::Factory::AllowedSurfaceSize(IntSize(aYStride, aYSize.height)) ||
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!gfx::Factory::AllowedSurfaceSize(IntSize(aCbCrStride, aCbCrSize.height))) {
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return 0;
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}
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// Overflow checks are performed in AllowedSurfaceSize
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return MOZ_ALIGN_WORD(aYSize.height * aYStride)
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+ 2 * MOZ_ALIGN_WORD(aCbCrSize.height * aCbCrStride);
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}
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// Minimum required shmem size in bytes
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uint32_t
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ComputeYCbCrBufferSize(const gfx::IntSize& aYSize, const gfx::IntSize& aCbCrSize)
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{
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return ComputeYCbCrBufferSize(aYSize, aYSize.width, aCbCrSize, aCbCrSize.width);
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}
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uint32_t
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ComputeYCbCrBufferSize(uint32_t aBufferSize)
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{
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return MOZ_ALIGN_WORD(aBufferSize);
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}
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void ComputeYCbCrOffsets(int32_t yStride, int32_t yHeight,
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int32_t cbCrStride, int32_t cbCrHeight,
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uint32_t& outYOffset, uint32_t& outCbOffset, uint32_t& outCrOffset)
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{
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outYOffset = 0;
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outCbOffset = outYOffset + MOZ_ALIGN_WORD(yStride * yHeight);
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outCrOffset = outCbOffset + MOZ_ALIGN_WORD(cbCrStride * cbCrHeight);
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}
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gfx::SurfaceFormat FormatFromBufferDescriptor(const BufferDescriptor& aDescriptor)
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{
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switch (aDescriptor.type()) {
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case BufferDescriptor::TRGBDescriptor:
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return aDescriptor.get_RGBDescriptor().format();
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case BufferDescriptor::TYCbCrDescriptor:
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return gfx::SurfaceFormat::YUV;
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default:
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MOZ_CRASH("GFX: FormatFromBufferDescriptor");
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}
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}
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gfx::IntSize SizeFromBufferDescriptor(const BufferDescriptor& aDescriptor)
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{
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switch (aDescriptor.type()) {
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case BufferDescriptor::TRGBDescriptor:
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return aDescriptor.get_RGBDescriptor().size();
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case BufferDescriptor::TYCbCrDescriptor:
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return aDescriptor.get_YCbCrDescriptor().ySize();
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default:
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MOZ_CRASH("GFX: SizeFromBufferDescriptor");
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}
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}
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Maybe<gfx::IntSize> CbCrSizeFromBufferDescriptor(const BufferDescriptor& aDescriptor)
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{
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switch (aDescriptor.type()) {
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case BufferDescriptor::TRGBDescriptor:
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return Nothing();
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case BufferDescriptor::TYCbCrDescriptor:
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return Some(aDescriptor.get_YCbCrDescriptor().cbCrSize());
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default:
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MOZ_CRASH("GFX: CbCrSizeFromBufferDescriptor");
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}
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}
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Maybe<StereoMode> StereoModeFromBufferDescriptor(const BufferDescriptor& aDescriptor)
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{
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switch (aDescriptor.type()) {
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case BufferDescriptor::TRGBDescriptor:
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return Nothing();
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case BufferDescriptor::TYCbCrDescriptor:
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return Some(aDescriptor.get_YCbCrDescriptor().stereoMode());
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default:
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MOZ_CRASH("GFX: CbCrSizeFromBufferDescriptor");
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}
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}
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uint8_t* GetYChannel(uint8_t* aBuffer, const YCbCrDescriptor& aDescriptor)
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{
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return aBuffer + aDescriptor.yOffset();
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}
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uint8_t* GetCbChannel(uint8_t* aBuffer, const YCbCrDescriptor& aDescriptor)
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{
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return aBuffer + aDescriptor.cbOffset();
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}
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uint8_t* GetCrChannel(uint8_t* aBuffer, const YCbCrDescriptor& aDescriptor)
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{
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return aBuffer + aDescriptor.crOffset();
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}
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already_AddRefed<DataSourceSurface>
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DataSourceSurfaceFromYCbCrDescriptor(uint8_t* aBuffer, const YCbCrDescriptor& aDescriptor, gfx::DataSourceSurface* aSurface)
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{
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gfx::IntSize ySize = aDescriptor.ySize();
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gfx::IntSize cbCrSize = aDescriptor.cbCrSize();
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int32_t yStride = ySize.width;
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int32_t cbCrStride = cbCrSize.width;
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RefPtr<DataSourceSurface> result;
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if (aSurface) {
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MOZ_ASSERT(aSurface->GetSize() == ySize);
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MOZ_ASSERT(aSurface->GetFormat() == gfx::SurfaceFormat::B8G8R8X8);
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if (aSurface->GetSize() == ySize &&
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aSurface->GetFormat() == gfx::SurfaceFormat::B8G8R8X8) {
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result = aSurface;
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}
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}
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if (!result) {
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result =
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Factory::CreateDataSourceSurface(ySize, gfx::SurfaceFormat::B8G8R8X8);
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}
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if (NS_WARN_IF(!result)) {
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return nullptr;
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}
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DataSourceSurface::MappedSurface map;
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if (NS_WARN_IF(!result->Map(DataSourceSurface::MapType::WRITE, &map))) {
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return nullptr;
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}
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layers::PlanarYCbCrData ycbcrData;
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ycbcrData.mYChannel = GetYChannel(aBuffer, aDescriptor);
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ycbcrData.mYStride = yStride;
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ycbcrData.mYSize = ySize;
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ycbcrData.mCbChannel = GetCbChannel(aBuffer, aDescriptor);
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ycbcrData.mCrChannel = GetCrChannel(aBuffer, aDescriptor);
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ycbcrData.mCbCrStride = cbCrStride;
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ycbcrData.mCbCrSize = cbCrSize;
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ycbcrData.mPicSize = ySize;
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gfx::ConvertYCbCrToRGB(ycbcrData,
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gfx::SurfaceFormat::B8G8R8X8,
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ySize,
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map.mData,
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map.mStride);
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result->Unmap();
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return result.forget();
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}
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} // namespace ImageDataSerializer
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} // namespace layers
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} // namespace mozilla
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