| Index: third_party/WebKit/Source/platform/image-encoders/JPEGImageEncoder.cpp
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| diff --git a/third_party/WebKit/Source/platform/image-encoders/JPEGImageEncoder.cpp b/third_party/WebKit/Source/platform/image-encoders/JPEGImageEncoder.cpp
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| deleted file mode 100644
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| index 0a21e190976f1ae1f7ff5ce0d0c3bd7e1d12cd34..0000000000000000000000000000000000000000
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| --- a/third_party/WebKit/Source/platform/image-encoders/JPEGImageEncoder.cpp
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| +++ /dev/null
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| @@ -1,318 +0,0 @@
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| -/*
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| - * Copyright (c) 2010, 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 are
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| - * met:
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| - *
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| - * * 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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| - * * Redistributions in binary form must reproduce the above
|
| - * copyright notice, this list of conditions and the following disclaimer
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| - * in the documentation and/or other materials provided with the
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| - * distribution.
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| - * * Neither the name of Google Inc. nor the names of its
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| - * contributors may be used to endorse or promote products derived from
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| - * this software without specific prior written permission.
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| - *
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| - * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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| - * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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| - * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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| - * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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| - * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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| - * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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| - * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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| - * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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| - * THEORY 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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| -
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| -#include "platform/image-encoders/JPEGImageEncoder.h"
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| -
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| -#include <memory>
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| -#include "SkColorPriv.h"
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| -#include "platform/geometry/IntSize.h"
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| -#include "platform/graphics/ImageBuffer.h"
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| -#include "platform/image-encoders/RGBAtoRGB.h"
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| -#include "platform/wtf/CurrentTime.h"
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| -#include "platform/wtf/PtrUtil.h"
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| -
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| -extern "C" {
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| -#include <setjmp.h>
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| -#include <stdio.h> // jpeglib.h needs stdio.h FILE
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| -#include "jpeglib.h"
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| -}
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| -
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| -namespace blink {
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| -
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| -void RGBAtoRGBScalar(const unsigned char* pixels,
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| - unsigned pixel_count,
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| - unsigned char* output) {
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| - // Per <canvas> spec, composite the input image pixels source-over on black.
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| - for (; pixel_count-- > 0; pixels += 4) {
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| - unsigned char alpha = pixels[3];
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| - if (alpha != 255) {
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| - *output++ = SkMulDiv255Round(pixels[0], alpha);
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| - *output++ = SkMulDiv255Round(pixels[1], alpha);
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| - *output++ = SkMulDiv255Round(pixels[2], alpha);
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| - } else {
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| - *output++ = pixels[0];
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| - *output++ = pixels[1];
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| - *output++ = pixels[2];
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| - }
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| - }
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| -}
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| -
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| -// TODO(cavalcantii): use regular macro, see https://crbug.com/673067.
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| -#ifdef __ARM_NEON__
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| -void RGBAtoRGBNeon(const unsigned char* input,
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| - const unsigned pixel_count,
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| - unsigned char* output) {
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| - const unsigned kPixelsPerLoad = 16;
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| - const unsigned kRgbaStep = kPixelsPerLoad * 4, kRgbStep = kPixelsPerLoad * 3;
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| - // Input registers.
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| - uint8x16x4_t rgba;
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| - // Output registers.
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| - uint8x16x3_t rgb;
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| - // Intermediate registers.
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| - uint8x8_t low, high;
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| - uint8x16_t result;
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| - unsigned counter;
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| - auto transform_color = [&](size_t channel) {
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| - // Extracts the low/high part of the 128 bits.
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| - low = vget_low_u8(rgba.val[channel]);
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| - high = vget_high_u8(rgba.val[channel]);
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| - // Scale the color and combine.
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| - uint16x8_t temp = vmull_u8(low, vget_low_u8(rgba.val[3]));
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| - low = vraddhn_u16(temp, vrshrq_n_u16(temp, 8));
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| - temp = vmull_u8(high, vget_high_u8(rgba.val[3]));
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| - high = vraddhn_u16(temp, vrshrq_n_u16(temp, 8));
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| - result = vcombine_u8(low, high);
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| - // Write back the channel to a 128 bits register.
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| - rgb.val[channel] = result;
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| - };
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| -
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| - for (counter = 0; counter + kPixelsPerLoad <= pixel_count;
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| - counter += kPixelsPerLoad) {
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| - // Reads 16 pixels at once, each color channel in a different
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| - // 128 bits register.
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| - rgba = vld4q_u8(input);
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| -
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| - transform_color(0);
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| - transform_color(1);
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| - transform_color(2);
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| -
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| - // Write back (interleaved) results to output.
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| - vst3q_u8(output, rgb);
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| -
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| - // Advance to next elements (could be avoided loading register with
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| - // increment after i.e. "vld4 {vector}, [r1]!").
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| - input += kRgbaStep;
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| - output += kRgbStep;
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| - }
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| -
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| - // Handle the tail elements.
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| - unsigned remaining = pixel_count;
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| - remaining -= counter;
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| - if (remaining != 0) {
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| - RGBAtoRGBScalar(input, remaining, output);
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| - }
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| -}
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| -#endif
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| -
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| -struct JPEGOutputBuffer : public jpeg_destination_mgr {
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| - DISALLOW_NEW();
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| - Vector<unsigned char>* output;
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| - Vector<unsigned char> buffer;
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| -};
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| -
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| -class JPEGImageEncoderStateImpl final : public JPEGImageEncoderState {
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| - public:
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| - JPEGImageEncoderStateImpl() {}
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| - ~JPEGImageEncoderStateImpl() override {
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| - jpeg_destroy_compress(&cinfo_);
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| - cinfo_.client_data = 0;
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| - }
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| - JPEGOutputBuffer* OutputBuffer() { return &output_buffer_; }
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| - jpeg_compress_struct* Cinfo() { return &cinfo_; }
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| - jpeg_error_mgr* GetError() { return &error_; }
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| -
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| - private:
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| - JPEGOutputBuffer output_buffer_;
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| - jpeg_compress_struct cinfo_;
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| - jpeg_error_mgr error_;
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| -};
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| -
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| -static void PrepareOutput(j_compress_ptr cinfo) {
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| - JPEGOutputBuffer* out = static_cast<JPEGOutputBuffer*>(cinfo->dest);
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| - const size_t kInternalBufferSize = 8192;
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| - out->buffer.resize(kInternalBufferSize);
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| - out->next_output_byte = out->buffer.data();
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| - out->free_in_buffer = out->buffer.size();
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| -}
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| -
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| -static boolean WriteOutput(j_compress_ptr cinfo) {
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| - JPEGOutputBuffer* out = static_cast<JPEGOutputBuffer*>(cinfo->dest);
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| - out->output->Append(out->buffer.data(), out->buffer.size());
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| - out->next_output_byte = out->buffer.data();
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| - out->free_in_buffer = out->buffer.size();
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| - return TRUE;
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| -}
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| -
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| -static void FinishOutput(j_compress_ptr cinfo) {
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| - JPEGOutputBuffer* out = static_cast<JPEGOutputBuffer*>(cinfo->dest);
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| - const size_t size = out->buffer.size() - out->free_in_buffer;
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| - out->output->Append(out->buffer.data(), size);
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| -}
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| -
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| -static void HandleError(j_common_ptr common) {
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| - jmp_buf* jump_buffer_ptr = static_cast<jmp_buf*>(common->client_data);
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| - longjmp(*jump_buffer_ptr, -1);
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| -}
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| -
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| -static void DisableSubsamplingForHighQuality(jpeg_compress_struct* cinfo,
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| - int quality) {
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| - if (quality < 100)
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| - return;
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| -
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| - for (int i = 0; i < MAX_COMPONENTS; ++i) {
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| - cinfo->comp_info[i].h_samp_factor = 1;
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| - cinfo->comp_info[i].v_samp_factor = 1;
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| - }
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| -}
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| -
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| -#define SET_JUMP_BUFFER(jpeg_compress_struct_ptr, what_to_return) \
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| - jmp_buf jump_buffer; \
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| - jpeg_compress_struct_ptr->client_data = &jump_buffer; \
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| - if (setjmp(jump_buffer)) { \
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| - return what_to_return; \
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| - }
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| -
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| -std::unique_ptr<JPEGImageEncoderState> JPEGImageEncoderState::Create(
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| - const IntSize& image_size,
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| - const double& quality,
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| - Vector<unsigned char>* output) {
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| - if (image_size.Width() <= 0 || image_size.Height() <= 0)
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| - return nullptr;
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| -
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| - std::unique_ptr<JPEGImageEncoderStateImpl> encoder_state =
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| - WTF::MakeUnique<JPEGImageEncoderStateImpl>();
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| -
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| - jpeg_compress_struct* cinfo = encoder_state->Cinfo();
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| - jpeg_error_mgr* error = encoder_state->GetError();
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| - cinfo->err = jpeg_std_error(error);
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| - error->error_exit = HandleError;
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| -
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| - SET_JUMP_BUFFER(cinfo, nullptr);
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| -
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| - JPEGOutputBuffer* destination = encoder_state->OutputBuffer();
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| - destination->output = output;
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| -
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| - jpeg_create_compress(cinfo);
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| - cinfo->dest = destination;
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| - cinfo->dest->init_destination = PrepareOutput;
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| - cinfo->dest->empty_output_buffer = WriteOutput;
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| - cinfo->dest->term_destination = FinishOutput;
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| -
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| - cinfo->image_height = image_size.Height();
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| - cinfo->image_width = image_size.Width();
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| - cinfo->in_color_space = JCS_RGB;
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| - cinfo->input_components = 3;
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| -
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| - jpeg_set_defaults(cinfo);
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| - int compression_quality =
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| - JPEGImageEncoder::ComputeCompressionQuality(quality);
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| - jpeg_set_quality(cinfo, compression_quality, TRUE);
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| - DisableSubsamplingForHighQuality(cinfo, compression_quality);
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| - jpeg_start_compress(cinfo, TRUE);
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| -
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| - cinfo->client_data = 0;
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| - return std::move(encoder_state);
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| -}
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| -
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| -int JPEGImageEncoder::ComputeCompressionQuality(const double& quality) {
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| - int compression_quality = JPEGImageEncoder::kDefaultCompressionQuality;
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| - if (quality >= 0.0 && quality <= 1.0)
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| - compression_quality = static_cast<int>(quality * 100 + 0.5);
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| - return compression_quality;
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| -}
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| -
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| -int JPEGImageEncoder::ProgressiveEncodeRowsJpegHelper(
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| - JPEGImageEncoderState* encoder_state,
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| - unsigned char* data,
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| - int current_rows_completed,
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| - const double slack_before_deadline,
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| - double deadline_seconds) {
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| - JPEGImageEncoderStateImpl* encoder_state_impl =
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| - static_cast<JPEGImageEncoderStateImpl*>(encoder_state);
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| - Vector<JSAMPLE> row(encoder_state_impl->Cinfo()->image_width *
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| - encoder_state_impl->Cinfo()->input_components);
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| - SET_JUMP_BUFFER(encoder_state_impl->Cinfo(), kProgressiveEncodeFailed);
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| -
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| - const size_t pixel_row_stride = encoder_state_impl->Cinfo()->image_width * 4;
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| - unsigned char* pixels = data + pixel_row_stride * current_rows_completed;
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| -
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| - while (encoder_state_impl->Cinfo()->next_scanline <
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| - encoder_state_impl->Cinfo()->image_height) {
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| - JSAMPLE* row_data = row.data();
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| - RGBAtoRGB(pixels, encoder_state_impl->Cinfo()->image_width, row_data);
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| - jpeg_write_scanlines(encoder_state_impl->Cinfo(), &row_data, 1);
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| - pixels += pixel_row_stride;
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| - current_rows_completed++;
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| -
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| - if (deadline_seconds - slack_before_deadline -
|
| - MonotonicallyIncreasingTime() <=
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| - 0) {
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| - return current_rows_completed;
|
| - }
|
| - }
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| -
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| - jpeg_finish_compress(encoder_state_impl->Cinfo());
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| - return current_rows_completed;
|
| -}
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| -
|
| -bool JPEGImageEncoder::EncodeWithPreInitializedState(
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| - std::unique_ptr<JPEGImageEncoderState> encoder_state,
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| - const unsigned char* input_pixels,
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| - int num_rows_completed) {
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| - JPEGImageEncoderStateImpl* encoder_state_impl =
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| - static_cast<JPEGImageEncoderStateImpl*>(encoder_state.get());
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| -
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| - Vector<JSAMPLE> row;
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| - row.resize(encoder_state_impl->Cinfo()->image_width *
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| - encoder_state_impl->Cinfo()->input_components);
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| -
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| - SET_JUMP_BUFFER(encoder_state_impl->Cinfo(), false);
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| -
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| - const size_t pixel_row_stride = encoder_state_impl->Cinfo()->image_width * 4;
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| - unsigned char* pixels = const_cast<unsigned char*>(input_pixels) +
|
| - pixel_row_stride * num_rows_completed;
|
| - while (encoder_state_impl->Cinfo()->next_scanline <
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| - encoder_state_impl->Cinfo()->image_height) {
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| - JSAMPLE* row_data = row.data();
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| - RGBAtoRGB(pixels, encoder_state_impl->Cinfo()->image_width, row_data);
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| - jpeg_write_scanlines(encoder_state_impl->Cinfo(), &row_data, 1);
|
| - pixels += pixel_row_stride;
|
| - }
|
| -
|
| - jpeg_finish_compress(encoder_state_impl->Cinfo());
|
| - return true;
|
| -}
|
| -
|
| -bool JPEGImageEncoder::Encode(const ImageDataBuffer& image_data,
|
| - const double& quality,
|
| - Vector<unsigned char>* output) {
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| - if (!image_data.Pixels())
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| - return false;
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| -
|
| - std::unique_ptr<JPEGImageEncoderState> encoder_state =
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| - JPEGImageEncoderState::Create(image_data.size(), quality, output);
|
| - if (!encoder_state)
|
| - return false;
|
| -
|
| - return JPEGImageEncoder::EncodeWithPreInitializedState(
|
| - std::move(encoder_state), image_data.Pixels());
|
| -}
|
| -
|
| -} // namespace blink
|
|
|