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a41280816e
This is in preparation of removing TemporaryRef. It should help make already_AddRefed a drop-in replacement for it.
230 lines
8.0 KiB
C++
230 lines
8.0 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 "SharedPlanarYCbCrImage.h"
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#include <stddef.h> // for size_t
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#include <stdio.h> // for printf
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#include "gfx2DGlue.h" // for Moz2D transition helpers
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#include "ISurfaceAllocator.h" // for ISurfaceAllocator, etc
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#include "mozilla/Assertions.h" // for MOZ_ASSERT, etc
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#include "mozilla/gfx/Types.h" // for SurfaceFormat::SurfaceFormat::YUV
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#include "mozilla/ipc/SharedMemory.h" // for SharedMemory, etc
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#include "mozilla/layers/ImageClient.h" // for ImageClient
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#include "mozilla/layers/LayersSurfaces.h" // for SurfaceDescriptor, etc
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#include "mozilla/layers/TextureClient.h" // for BufferTextureClient, etc
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#include "mozilla/layers/YCbCrImageDataSerializer.h"
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#include "mozilla/layers/ImageBridgeChild.h" // for ImageBridgeChild
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#include "mozilla/mozalloc.h" // for operator delete
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#include "nsISupportsImpl.h" // for Image::AddRef
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#include "mozilla/ipc/Shmem.h"
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namespace mozilla {
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namespace layers {
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using namespace mozilla::ipc;
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SharedPlanarYCbCrImage::SharedPlanarYCbCrImage(ImageClient* aCompositable)
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: PlanarYCbCrImage(nullptr)
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, mCompositable(aCompositable)
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{
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MOZ_COUNT_CTOR(SharedPlanarYCbCrImage);
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}
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SharedPlanarYCbCrImage::~SharedPlanarYCbCrImage() {
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MOZ_COUNT_DTOR(SharedPlanarYCbCrImage);
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if (mCompositable->GetAsyncID() != 0 &&
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!InImageBridgeChildThread()) {
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ImageBridgeChild::DispatchReleaseTextureClient(mTextureClient.forget().take());
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ImageBridgeChild::DispatchReleaseImageClient(mCompositable.forget().take());
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}
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}
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size_t
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SharedPlanarYCbCrImage::SizeOfExcludingThis(MallocSizeOf aMallocSizeOf) const
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{
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// NB: Explicitly skipping mTextureClient, the memory is already reported
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// at time of allocation in GfxMemoryImageReporter.
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// Not owned:
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// - mCompositable
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size_t size = PlanarYCbCrImage::SizeOfExcludingThis(aMallocSizeOf);
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return size;
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}
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TextureClient*
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SharedPlanarYCbCrImage::GetTextureClient(CompositableClient* aClient)
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{
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return mTextureClient.get();
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}
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uint8_t*
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SharedPlanarYCbCrImage::GetBuffer()
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{
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return mTextureClient->GetBuffer();
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}
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TemporaryRef<gfx::SourceSurface>
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SharedPlanarYCbCrImage::GetAsSourceSurface()
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{
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if (!mTextureClient) {
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NS_WARNING("Can't get as surface");
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return nullptr;
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}
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return PlanarYCbCrImage::GetAsSourceSurface();
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}
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void
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SharedPlanarYCbCrImage::SetData(const PlanarYCbCrData& aData)
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{
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// If mTextureClient has not already been allocated (through Allocate(aData))
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// allocate it. This code path is slower than the one used when Allocate has
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// been called since it will trigger a full copy.
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PlanarYCbCrData data = aData;
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if (!mTextureClient && !Allocate(data)) {
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return;
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}
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MOZ_ASSERT(mTextureClient->AsTextureClientYCbCr());
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if (!mTextureClient->Lock(OpenMode::OPEN_WRITE_ONLY)) {
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MOZ_ASSERT(false, "Failed to lock the texture.");
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return;
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}
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TextureClientAutoUnlock unlock(mTextureClient);
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if (!mTextureClient->AsTextureClientYCbCr()->UpdateYCbCr(aData)) {
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MOZ_ASSERT(false, "Failed to copy YCbCr data into the TextureClient");
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return;
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}
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mTextureClient->MarkImmutable();
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}
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// needs to be overriden because the parent class sets mBuffer which we
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// do not want to happen.
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uint8_t*
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SharedPlanarYCbCrImage::AllocateAndGetNewBuffer(uint32_t aSize)
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{
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NS_ABORT_IF_FALSE(!mTextureClient, "This image already has allocated data");
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size_t size = YCbCrImageDataSerializer::ComputeMinBufferSize(aSize);
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if (!size) {
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return nullptr;
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}
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mTextureClient = TextureClient::CreateWithBufferSize(mCompositable->GetForwarder(),
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gfx::SurfaceFormat::YUV, size,
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mCompositable->GetTextureFlags());
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// get new buffer _without_ setting mBuffer.
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if (!mTextureClient) {
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return nullptr;
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}
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// update buffer size
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mBufferSize = size;
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YCbCrImageDataSerializer serializer(mTextureClient->GetBuffer(), mTextureClient->GetBufferSize());
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return serializer.GetData();
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}
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void
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SharedPlanarYCbCrImage::SetDataNoCopy(const Data &aData)
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{
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NS_ABORT_IF_FALSE(mTextureClient, "This Image should have already allocated data");
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mData = aData;
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mSize = aData.mPicSize;
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/* SetDataNoCopy is used to update YUV plane offsets without (re)allocating
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* memory previously allocated with AllocateAndGetNewBuffer().
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* serializer.GetData() returns the address of the memory previously allocated
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* with AllocateAndGetNewBuffer(), that we subtract from the Y, Cb, Cr
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* channels to compute 0-based offsets to pass to InitializeBufferInfo.
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*/
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YCbCrImageDataSerializer serializer(mTextureClient->GetBuffer(), mTextureClient->GetBufferSize());
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uint8_t *base = serializer.GetData();
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uint32_t yOffset = aData.mYChannel - base;
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uint32_t cbOffset = aData.mCbChannel - base;
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uint32_t crOffset = aData.mCrChannel - base;
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serializer.InitializeBufferInfo(yOffset,
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cbOffset,
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crOffset,
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aData.mYStride,
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aData.mCbCrStride,
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aData.mYSize,
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aData.mCbCrSize,
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aData.mStereoMode);
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}
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uint8_t*
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SharedPlanarYCbCrImage::AllocateBuffer(uint32_t aSize)
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{
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NS_ABORT_IF_FALSE(!mTextureClient,
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"This image already has allocated data");
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mTextureClient = TextureClient::CreateWithBufferSize(mCompositable->GetForwarder(),
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gfx::SurfaceFormat::YUV, aSize,
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mCompositable->GetTextureFlags());
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if (!mTextureClient) {
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return nullptr;
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}
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return mTextureClient->GetBuffer();
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}
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bool
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SharedPlanarYCbCrImage::IsValid() {
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return !!mTextureClient;
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}
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bool
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SharedPlanarYCbCrImage::Allocate(PlanarYCbCrData& aData)
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{
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NS_ABORT_IF_FALSE(!mTextureClient,
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"This image already has allocated data");
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mTextureClient = TextureClient::CreateForYCbCr(mCompositable->GetForwarder(),
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aData.mYSize, aData.mCbCrSize,
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aData.mStereoMode,
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mCompositable->GetTextureFlags());
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if (!mTextureClient) {
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NS_WARNING("SharedPlanarYCbCrImage::Allocate failed.");
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return false;
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}
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YCbCrImageDataSerializer serializer(mTextureClient->GetBuffer(), mTextureClient->GetBufferSize());
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serializer.InitializeBufferInfo(aData.mYSize,
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aData.mCbCrSize,
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aData.mStereoMode);
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MOZ_ASSERT(serializer.IsValid());
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aData.mYChannel = serializer.GetYData();
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aData.mCbChannel = serializer.GetCbData();
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aData.mCrChannel = serializer.GetCrData();
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// copy some of aData's values in mData (most of them)
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mData.mYChannel = aData.mYChannel;
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mData.mCbChannel = aData.mCbChannel;
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mData.mCrChannel = aData.mCrChannel;
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mData.mYSize = aData.mYSize;
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mData.mCbCrSize = aData.mCbCrSize;
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mData.mPicX = aData.mPicX;
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mData.mPicY = aData.mPicY;
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mData.mPicSize = aData.mPicSize;
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mData.mStereoMode = aData.mStereoMode;
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// those members are not always equal to aData's, due to potentially different
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// packing.
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mData.mYSkip = 0;
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mData.mCbSkip = 0;
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mData.mCrSkip = 0;
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mData.mYStride = mData.mYSize.width;
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mData.mCbCrStride = mData.mCbCrSize.width;
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// do not set mBuffer like in PlanarYCbCrImage because the later
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// will try to manage this memory without knowing it belongs to a
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// shmem.
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mBufferSize = YCbCrImageDataSerializer::ComputeMinBufferSize(mData.mYSize,
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mData.mCbCrSize);
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mSize = mData.mPicSize;
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return mBufferSize > 0;
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}
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} // namespace
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} // namespace
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