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https://github.com/flutter/flutter.git
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331 lines
12 KiB
C++
331 lines
12 KiB
C++
/*
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* Copyright (C) 2012 Google Inc. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY APPLE COMPUTER, INC. ``AS IS'' AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE COMPUTER, INC. OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
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* OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "sky/engine/platform/graphics/ImageFrameGenerator.h"
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#include "platform/image-decoders/ImageDecoder.h"
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#include "sky/engine/platform/SharedBuffer.h"
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#include "sky/engine/platform/TraceEvent.h"
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#include "sky/engine/platform/graphics/ImageDecodingStore.h"
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#include "skia/ext/image_operations.h"
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#include "third_party/skia/include/core/SkMallocPixelRef.h"
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namespace blink {
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// Creates a SkPixelRef such that the memory for pixels is given by an external body.
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// This is used to write directly to the memory given by Skia during decoding.
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class ImageFrameGenerator::ExternalMemoryAllocator : public SkBitmap::Allocator {
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public:
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ExternalMemoryAllocator(const SkImageInfo& info, void* pixels, size_t rowBytes)
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: m_info(info)
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, m_pixels(pixels)
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, m_rowBytes(rowBytes)
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{
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}
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virtual bool allocPixelRef(SkBitmap* dst, SkColorTable* ctable) override
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{
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const SkImageInfo& info = dst->info();
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if (kUnknown_SkColorType == info.colorType())
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return false;
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if (info != m_info || m_rowBytes != dst->rowBytes())
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return false;
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if (!dst->installPixels(m_info, m_pixels, m_rowBytes))
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return false;
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dst->lockPixels();
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return true;
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}
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private:
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SkImageInfo m_info;
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void* m_pixels;
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size_t m_rowBytes;
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};
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ImageFrameGenerator::ImageFrameGenerator(const SkISize& fullSize, PassRefPtr<SharedBuffer> data, bool allDataReceived, bool isMultiFrame)
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: m_fullSize(fullSize)
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, m_isMultiFrame(isMultiFrame)
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, m_decodeFailedAndEmpty(false)
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, m_decodeCount(0)
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{
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setData(data.get(), allDataReceived);
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}
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ImageFrameGenerator::~ImageFrameGenerator()
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{
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ImageDecodingStore::instance()->removeCacheIndexedByGenerator(this);
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}
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void ImageFrameGenerator::setData(PassRefPtr<SharedBuffer> data, bool allDataReceived)
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{
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m_data.setData(data.get(), allDataReceived);
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}
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void ImageFrameGenerator::copyData(RefPtr<SharedBuffer>* data, bool* allDataReceived)
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{
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SharedBuffer* buffer = 0;
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m_data.data(&buffer, allDataReceived);
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if (buffer)
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*data = buffer->copy();
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}
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bool ImageFrameGenerator::decodeAndScale(const SkImageInfo& info, size_t index, void* pixels, size_t rowBytes)
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{
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// This method is called to populate a discardable memory owned by Skia.
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// Prevents concurrent decode or scale operations on the same image data.
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MutexLocker lock(m_decodeMutex);
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// This implementation does not support scaling so check the requested size.
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SkISize scaledSize = SkISize::Make(info.width(), info.height());
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ASSERT(m_fullSize == scaledSize);
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if (m_decodeFailedAndEmpty)
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return false;
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TRACE_EVENT2("blink", "ImageFrameGenerator::decodeAndScale", "generator", this, "decodeCount", m_decodeCount);
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m_externalAllocator = adoptPtr(new ExternalMemoryAllocator(info, pixels, rowBytes));
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SkBitmap bitmap = tryToResumeDecode(scaledSize, index);
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if (bitmap.isNull())
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return false;
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// Don't keep the allocator because it contains a pointer to memory
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// that we do not own.
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m_externalAllocator.clear();
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ASSERT(bitmap.width() == scaledSize.width());
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ASSERT(bitmap.height() == scaledSize.height());
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bool result = true;
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// Check to see if decoder has written directly to the memory provided
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// by Skia. If not make a copy.
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if (bitmap.getPixels() != pixels)
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result = bitmap.copyPixelsTo(pixels, rowBytes * info.height(), rowBytes);
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return result;
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}
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bool ImageFrameGenerator::decodeToYUV(void* planes[3], size_t rowBytes[3])
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{
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// This method is called to populate a discardable memory owned by Skia.
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// Prevents concurrent decode or scale operations on the same image data.
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MutexLocker lock(m_decodeMutex);
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if (m_decodeFailedAndEmpty)
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return false;
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TRACE_EVENT2("blink", "ImageFrameGenerator::decodeToYUV", "generator", this, "decodeCount", static_cast<int>(m_decodeCount));
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if (!planes || !planes[0] || !planes[1] || !planes[2]
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|| !rowBytes || !rowBytes[0] || !rowBytes[1] || !rowBytes[2]) {
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return false;
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}
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SharedBuffer* data = 0;
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bool allDataReceived = false;
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m_data.data(&data, &allDataReceived);
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// FIXME: YUV decoding does not currently support progressive decoding.
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if (!allDataReceived)
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return false;
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OwnPtr<ImageDecoder> decoder = ImageDecoder::create(*data, ImageSource::AlphaPremultiplied, ImageSource::GammaAndColorProfileApplied);
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if (!decoder)
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return false;
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decoder->setData(data, allDataReceived);
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OwnPtr<ImagePlanes> imagePlanes = adoptPtr(new ImagePlanes(planes, rowBytes));
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decoder->setImagePlanes(imagePlanes.release());
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bool yuvDecoded = decoder->decodeToYUV();
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if (yuvDecoded)
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setHasAlpha(0, false); // YUV is always opaque
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return yuvDecoded;
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}
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SkBitmap ImageFrameGenerator::tryToResumeDecode(const SkISize& scaledSize, size_t index)
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{
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TRACE_EVENT1("blink", "ImageFrameGenerator::tryToResumeDecodeAndScale", "index", static_cast<int>(index));
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ImageDecoder* decoder = 0;
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const bool resumeDecoding = ImageDecodingStore::instance()->lockDecoder(this, m_fullSize, &decoder);
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ASSERT(!resumeDecoding || decoder);
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SkBitmap fullSizeImage;
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bool complete = decode(index, &decoder, &fullSizeImage);
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if (!decoder)
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return SkBitmap();
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// If we are not resuming decoding that means the decoder is freshly
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// created and we have ownership. If we are resuming decoding then
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// the decoder is owned by ImageDecodingStore.
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OwnPtr<ImageDecoder> decoderContainer;
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if (!resumeDecoding)
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decoderContainer = adoptPtr(decoder);
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if (fullSizeImage.isNull()) {
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// If decode has failed and resulted an empty image we can save work
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// in the future by returning early.
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m_decodeFailedAndEmpty = !m_isMultiFrame && decoder->failed();
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if (resumeDecoding)
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ImageDecodingStore::instance()->unlockDecoder(this, decoder);
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return SkBitmap();
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}
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// If the image generated is complete then there is no need to keep
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// the decoder. The exception is multi-frame decoder which can generate
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// multiple complete frames.
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const bool removeDecoder = complete && !m_isMultiFrame;
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if (resumeDecoding) {
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if (removeDecoder)
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ImageDecodingStore::instance()->removeDecoder(this, decoder);
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else
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ImageDecodingStore::instance()->unlockDecoder(this, decoder);
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} else if (!removeDecoder) {
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ImageDecodingStore::instance()->insertDecoder(this, decoderContainer.release());
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}
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return fullSizeImage;
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}
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void ImageFrameGenerator::setHasAlpha(size_t index, bool hasAlpha)
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{
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MutexLocker lock(m_alphaMutex);
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if (index >= m_hasAlpha.size()) {
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const size_t oldSize = m_hasAlpha.size();
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m_hasAlpha.resize(index + 1);
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for (size_t i = oldSize; i < m_hasAlpha.size(); ++i)
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m_hasAlpha[i] = true;
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}
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m_hasAlpha[index] = hasAlpha;
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}
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bool ImageFrameGenerator::decode(size_t index, ImageDecoder** decoder, SkBitmap* bitmap)
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{
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TRACE_EVENT2("blink", "ImageFrameGenerator::decode", "width", m_fullSize.width(), "height", m_fullSize.height());
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ASSERT(decoder);
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SharedBuffer* data = 0;
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bool allDataReceived = false;
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bool newDecoder = false;
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m_data.data(&data, &allDataReceived);
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// Try to create an ImageDecoder if we are not given one.
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if (!*decoder) {
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newDecoder = true;
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if (m_imageDecoderFactory)
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*decoder = m_imageDecoderFactory->create().leakPtr();
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if (!*decoder)
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*decoder = ImageDecoder::create(*data, ImageSource::AlphaPremultiplied, ImageSource::GammaAndColorProfileApplied).leakPtr();
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if (!*decoder)
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return false;
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}
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if (!m_isMultiFrame && newDecoder && allDataReceived) {
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// If we're using an external memory allocator that means we're decoding
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// directly into the output memory and we can save one memcpy.
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ASSERT(m_externalAllocator.get());
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(*decoder)->setMemoryAllocator(m_externalAllocator.get());
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}
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(*decoder)->setData(data, allDataReceived);
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ImageFrame* frame = (*decoder)->frameBufferAtIndex(index);
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(*decoder)->setData(0, false); // Unref SharedBuffer from ImageDecoder.
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(*decoder)->clearCacheExceptFrame(index);
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(*decoder)->setMemoryAllocator(0);
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if (!frame || frame->status() == ImageFrame::FrameEmpty)
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return false;
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// A cache object is considered complete if we can decode a complete frame.
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// Or we have received all data. The image might not be fully decoded in
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// the latter case.
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const bool isDecodeComplete = frame->status() == ImageFrame::FrameComplete || allDataReceived;
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SkBitmap fullSizeBitmap = frame->getSkBitmap();
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if (!fullSizeBitmap.isNull())
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{
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ASSERT(fullSizeBitmap.width() == m_fullSize.width() && fullSizeBitmap.height() == m_fullSize.height());
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setHasAlpha(index, !fullSizeBitmap.isOpaque());
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}
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*bitmap = fullSizeBitmap;
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return isDecodeComplete;
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}
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bool ImageFrameGenerator::hasAlpha(size_t index)
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{
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MutexLocker lock(m_alphaMutex);
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if (index < m_hasAlpha.size())
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return m_hasAlpha[index];
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return true;
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}
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bool ImageFrameGenerator::getYUVComponentSizes(SkISize componentSizes[3])
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{
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ASSERT(componentSizes);
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TRACE_EVENT2("webkit", "ImageFrameGenerator::getYUVComponentSizes", "width", m_fullSize.width(), "height", m_fullSize.height());
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SharedBuffer* data = 0;
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bool allDataReceived = false;
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m_data.data(&data, &allDataReceived);
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// FIXME: YUV decoding does not currently support progressive decoding.
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ASSERT(allDataReceived);
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OwnPtr<ImageDecoder> decoder = ImageDecoder::create(*data, ImageSource::AlphaPremultiplied, ImageSource::GammaAndColorProfileApplied);
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if (!decoder)
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return false;
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// Setting a dummy ImagePlanes object signals to the decoder that we want to do YUV decoding.
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decoder->setData(data, allDataReceived);
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OwnPtr<ImagePlanes> dummyImagePlanes = adoptPtr(new ImagePlanes);
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decoder->setImagePlanes(dummyImagePlanes.release());
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// canDecodeToYUV() has to be called AFTER isSizeAvailable(),
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// otherwise the output color space may not be set in the decoder.
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if (!decoder->isSizeAvailable() || !decoder->canDecodeToYUV())
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return false;
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IntSize size = decoder->decodedYUVSize(0);
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componentSizes[0].set(size.width(), size.height());
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size = decoder->decodedYUVSize(1);
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componentSizes[1].set(size.width(), size.height());
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size = decoder->decodedYUVSize(2);
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componentSizes[2].set(size.width(), size.height());
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return true;
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}
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} // namespace blink
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