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/*
* Copyright (C) 2012 Google Inc. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
*
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY APPLE AND ITS CONTRIBUTORS "AS IS" AND ANY
* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL APPLE OR ITS CONTRIBUTORS BE LIABLE FOR ANY
* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "platform/graphics/ImageFrameGenerator.h"
#include "platform/CrossThreadFunctional.h"
#include "platform/SharedBuffer.h"
#include "platform/WebTaskRunner.h"
#include "platform/graphics/ImageDecodingStore.h"
#include "platform/graphics/test/MockImageDecoder.h"
#include "platform/image-decoders/SegmentReader.h"
#include "public/platform/Platform.h"
#include "public/platform/WebThread.h"
#include "public/platform/WebTraceLocation.h"
#include "testing/gtest/include/gtest/gtest.h"
#include "wtf/PtrUtil.h"
#include <memory>
namespace blink {
namespace {
// Helper methods to generate standard sizes.
SkISize fullSize() {
return SkISize::Make(100, 100);
}
SkImageInfo imageInfo() {
return SkImageInfo::Make(100, 100, kBGRA_8888_SkColorType,
kOpaque_SkAlphaType);
}
} // namespace
class ImageFrameGeneratorTest : public ::testing::Test,
public MockImageDecoderClient {
public:
void SetUp() override {
ImageDecodingStore::instance().setCacheLimitInBytes(1024 * 1024);
m_generator =
ImageFrameGenerator::create(fullSize(), false, ColorBehavior::ignore());
m_data = SharedBuffer::create();
m_segmentReader = SegmentReader::createFromSharedBuffer(m_data);
useMockImageDecoderFactory();
m_decodersDestroyed = 0;
m_decodeRequestCount = 0;
m_status = ImageFrame::FrameEmpty;
m_frameCount = 1;
m_requestedClearExceptFrame = kNotFound;
}
void TearDown() override { ImageDecodingStore::instance().clear(); }
void decoderBeingDestroyed() override { ++m_decodersDestroyed; }
void decodeRequested() override { ++m_decodeRequestCount; }
ImageFrame::Status status() override {
ImageFrame::Status currentStatus = m_status;
m_status = m_nextFrameStatus;
return currentStatus;
}
void clearCacheExceptFrameRequested(size_t clearExceptFrame) override {
m_requestedClearExceptFrame = clearExceptFrame;
};
size_t frameCount() override { return m_frameCount; }
int repetitionCount() const override {
return m_frameCount == 1 ? cAnimationNone : cAnimationLoopOnce;
}
float frameDuration() const override { return 0; }
protected:
void useMockImageDecoderFactory() {
m_generator->setImageDecoderFactory(
MockImageDecoderFactory::create(this, fullSize()));
}
void addNewData() { m_data->append("g", 1u); }
void setFrameStatus(ImageFrame::Status status) {
m_status = m_nextFrameStatus = status;
}
void setNextFrameStatus(ImageFrame::Status status) {
m_nextFrameStatus = status;
}
void setFrameCount(size_t count) {
m_frameCount = count;
if (count > 1) {
m_generator.clear();
m_generator = ImageFrameGenerator::create(fullSize(), true,
ColorBehavior::ignore());
useMockImageDecoderFactory();
}
}
RefPtr<SharedBuffer> m_data;
RefPtr<SegmentReader> m_segmentReader;
RefPtr<ImageFrameGenerator> m_generator;
int m_decodersDestroyed;
int m_decodeRequestCount;
ImageFrame::Status m_status;
ImageFrame::Status m_nextFrameStatus;
size_t m_frameCount;
size_t m_requestedClearExceptFrame;
};
TEST_F(ImageFrameGeneratorTest, incompleteDecode) {
setFrameStatus(ImageFrame::FramePartial);
char buffer[100 * 100 * 4];
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(1, m_decodeRequestCount);
addNewData();
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(2, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
}
TEST_F(ImageFrameGeneratorTest, incompleteDecodeBecomesComplete) {
setFrameStatus(ImageFrame::FramePartial);
char buffer[100 * 100 * 4];
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(1, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
setFrameStatus(ImageFrame::FrameComplete);
addNewData();
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(2, m_decodeRequestCount);
EXPECT_EQ(1, m_decodersDestroyed);
// Decoder created again.
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(3, m_decodeRequestCount);
}
static void decodeThreadMain(ImageFrameGenerator* generator,
SegmentReader* segmentReader) {
char buffer[100 * 100 * 4];
generator->decodeAndScale(segmentReader, false, 0, imageInfo(), buffer,
100 * 4);
}
TEST_F(ImageFrameGeneratorTest, incompleteDecodeBecomesCompleteMultiThreaded) {
setFrameStatus(ImageFrame::FramePartial);
char buffer[100 * 100 * 4];
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(1, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
// LocalFrame can now be decoded completely.
setFrameStatus(ImageFrame::FrameComplete);
addNewData();
std::unique_ptr<WebThread> thread =
WTF::wrapUnique(Platform::current()->createThread("DecodeThread"));
thread->getWebTaskRunner()->postTask(
BLINK_FROM_HERE,
crossThreadBind(&decodeThreadMain, m_generator, m_segmentReader));
thread.reset();
EXPECT_EQ(2, m_decodeRequestCount);
EXPECT_EQ(1, m_decodersDestroyed);
// Decoder created again.
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(3, m_decodeRequestCount);
addNewData();
// Delete generator.
m_generator = nullptr;
}
TEST_F(ImageFrameGeneratorTest, frameHasAlpha) {
setFrameStatus(ImageFrame::FramePartial);
char buffer[100 * 100 * 4];
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_TRUE(m_generator->hasAlpha(0));
EXPECT_EQ(1, m_decodeRequestCount);
ImageDecoder* tempDecoder = 0;
EXPECT_TRUE(ImageDecodingStore::instance().lockDecoder(
m_generator.get(), fullSize(), &tempDecoder));
ASSERT_TRUE(tempDecoder);
tempDecoder->frameBufferAtIndex(0)->setHasAlpha(false);
ImageDecodingStore::instance().unlockDecoder(m_generator.get(), tempDecoder);
EXPECT_EQ(2, m_decodeRequestCount);
setFrameStatus(ImageFrame::FrameComplete);
m_generator->decodeAndScale(m_segmentReader.get(), false, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(3, m_decodeRequestCount);
EXPECT_FALSE(m_generator->hasAlpha(0));
}
TEST_F(ImageFrameGeneratorTest, clearMultiFrameDecoder) {
setFrameCount(3);
setFrameStatus(ImageFrame::FrameComplete);
char buffer[100 * 100 * 4];
m_generator->decodeAndScale(m_segmentReader.get(), true, 0, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(1, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
EXPECT_EQ(0U, m_requestedClearExceptFrame);
setFrameStatus(ImageFrame::FrameComplete);
m_generator->decodeAndScale(m_segmentReader.get(), true, 1, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(2, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
EXPECT_EQ(1U, m_requestedClearExceptFrame);
setFrameStatus(ImageFrame::FrameComplete);
// Decoding the last frame of a multi-frame images should trigger clearing
// all the frame data, but not destroying the decoder. See comments in
// ImageFrameGenerator::tryToResumeDecode().
m_generator->decodeAndScale(m_segmentReader.get(), true, 2, imageInfo(),
buffer, 100 * 4);
EXPECT_EQ(3, m_decodeRequestCount);
EXPECT_EQ(0, m_decodersDestroyed);
EXPECT_EQ(kNotFound, m_requestedClearExceptFrame);
}
} // namespace blink