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369 lines
12 KiB
369 lines
12 KiB
// Copyright (c) 2011 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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// This file input format is based loosely on
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// Tools/DumpRenderTree/ImageDiff.m
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// The exact format of this tool's output to stdout is important, to match
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// what the run-webkit-tests script expects.
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#include <assert.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <string.h>
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#include <algorithm>
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#include <map>
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#include <string>
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#include <vector>
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#include "core/fxcrt/fx_memory.h"
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#include "testing/image_diff/image_diff_png.h"
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#include "testing/utils/path_service.h"
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#include "third_party/base/logging.h"
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#include "third_party/base/numerics/safe_conversions.h"
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#if defined(OS_WIN)
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#include <windows.h>
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#endif
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// Return codes used by this utility.
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constexpr int kStatusSame = 0;
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constexpr int kStatusDifferent = 1;
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constexpr int kStatusError = 2;
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// Color codes.
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constexpr uint32_t RGBA_RED = 0x000000ff;
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constexpr uint32_t RGBA_ALPHA = 0xff000000;
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class Image {
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public:
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Image() : w_(0), h_(0) {}
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Image(const Image& image) : w_(image.w_), h_(image.h_), data_(image.data_) {}
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bool has_image() const { return w_ > 0 && h_ > 0; }
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int w() const { return w_; }
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int h() const { return h_; }
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pdfium::span<const uint8_t> span() const { return data_; }
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// Creates the image from the given filename on disk, and returns true on
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// success.
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bool CreateFromFilename(const std::string& path) {
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return CreateFromFilenameImpl(path, /*reverse_byte_order=*/false);
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}
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// Same as CreateFromFilename(), but with BGRA instead of RGBA ordering.
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bool CreateFromFilenameWithReverseByteOrder(const std::string& path) {
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return CreateFromFilenameImpl(path, /*reverse_byte_order=*/true);
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}
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void Clear() {
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w_ = h_ = 0;
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data_.clear();
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}
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// Returns the RGBA value of the pixel at the given location
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uint32_t pixel_at(int x, int y) const {
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if (!pixel_in_bounds(x, y))
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return 0;
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return *reinterpret_cast<const uint32_t*>(&(data_[pixel_address(x, y)]));
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}
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void set_pixel_at(int x, int y, uint32_t color) {
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if (!pixel_in_bounds(x, y))
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return;
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void* addr = &data_[pixel_address(x, y)];
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*reinterpret_cast<uint32_t*>(addr) = color;
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}
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private:
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bool CreateFromFilenameImpl(const std::string& path,
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bool reverse_byte_order) {
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FILE* f = fopen(path.c_str(), "rb");
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if (!f)
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return false;
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std::vector<uint8_t> compressed;
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const size_t kBufSize = 1024;
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uint8_t buf[kBufSize];
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size_t num_read = 0;
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while ((num_read = fread(buf, 1, kBufSize, f)) > 0) {
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compressed.insert(compressed.end(), buf, buf + num_read);
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}
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fclose(f);
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data_ = image_diff_png::DecodePNG(compressed, reverse_byte_order, &w_, &h_);
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if (data_.empty()) {
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Clear();
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return false;
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}
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return true;
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}
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bool pixel_in_bounds(int x, int y) const {
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return x >= 0 && x < w_ && y >= 0 && y < h_;
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}
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size_t pixel_address(int x, int y) const { return (y * w_ + x) * 4; }
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// Pixel dimensions of the image.
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int w_;
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int h_;
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std::vector<uint8_t> data_;
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};
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float CalculateDifferencePercentage(const Image& actual, int pixels_different) {
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// Like the WebKit ImageDiff tool, we define percentage different in terms
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// of the size of the 'actual' bitmap.
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float total_pixels =
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static_cast<float>(actual.w()) * static_cast<float>(actual.h());
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if (total_pixels == 0) {
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// When the bitmap is empty, they are 100% different.
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return 100.0f;
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}
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return 100.0f * pixels_different / total_pixels;
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}
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void CountImageSizeMismatchAsPixelDifference(const Image& baseline,
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const Image& actual,
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int* pixels_different) {
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int w = std::min(baseline.w(), actual.w());
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int h = std::min(baseline.h(), actual.h());
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// Count pixels that are a difference in size as also being different.
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int max_w = std::max(baseline.w(), actual.w());
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int max_h = std::max(baseline.h(), actual.h());
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// These pixels are off the right side, not including the lower right corner.
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*pixels_different += (max_w - w) * h;
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// These pixels are along the bottom, including the lower right corner.
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*pixels_different += (max_h - h) * max_w;
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}
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float PercentageDifferent(const Image& baseline, const Image& actual) {
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int w = std::min(baseline.w(), actual.w());
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int h = std::min(baseline.h(), actual.h());
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// Compute pixels different in the overlap.
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int pixels_different = 0;
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for (int y = 0; y < h; ++y) {
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for (int x = 0; x < w; ++x) {
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if (baseline.pixel_at(x, y) != actual.pixel_at(x, y))
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++pixels_different;
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}
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}
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CountImageSizeMismatchAsPixelDifference(baseline, actual, &pixels_different);
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return CalculateDifferencePercentage(actual, pixels_different);
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}
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float HistogramPercentageDifferent(const Image& baseline, const Image& actual) {
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// TODO(johnme): Consider using a joint histogram instead, as described in
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// "Comparing Images Using Joint Histograms" by Pass & Zabih
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// http://www.cs.cornell.edu/~rdz/papers/pz-jms99.pdf
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int w = std::min(baseline.w(), actual.w());
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int h = std::min(baseline.h(), actual.h());
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// Count occurrences of each RGBA pixel value of baseline in the overlap.
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std::map<uint32_t, int32_t> baseline_histogram;
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for (int y = 0; y < h; ++y) {
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for (int x = 0; x < w; ++x) {
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// hash_map operator[] inserts a 0 (default constructor) if key not found.
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++baseline_histogram[baseline.pixel_at(x, y)];
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}
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}
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// Compute pixels different in the histogram of the overlap.
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int pixels_different = 0;
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for (int y = 0; y < h; ++y) {
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for (int x = 0; x < w; ++x) {
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uint32_t actual_rgba = actual.pixel_at(x, y);
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auto it = baseline_histogram.find(actual_rgba);
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if (it != baseline_histogram.end() && it->second > 0)
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--it->second;
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else
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++pixels_different;
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}
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}
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CountImageSizeMismatchAsPixelDifference(baseline, actual, &pixels_different);
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return CalculateDifferencePercentage(actual, pixels_different);
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}
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void PrintHelp(const std::string& binary_name) {
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fprintf(
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stderr,
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"Usage:\n"
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" %s OPTIONS <compare file> <reference file>\n"
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" Compares two files on disk, returning 0 when they are the same;\n"
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" Passing \"--histogram\" additionally calculates a diff of the\n"
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" RGBA value histograms. (which is resistant to shifts in layout)\n"
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" Passing \"--reverse-byte-order\" additionally assumes the compare\n"
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" file has BGRA byte ordering.\n"
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" %s --diff <compare file> <reference file> <output file>\n"
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" Compares two files on disk, outputs an image that visualizes the\n"
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" difference to <output file>\n",
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binary_name.c_str(), binary_name.c_str());
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}
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int CompareImages(const std::string& binary_name,
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const std::string& file1,
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const std::string& file2,
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bool compare_histograms,
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bool reverse_byte_order) {
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Image actual_image;
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Image baseline_image;
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bool actual_load_result =
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reverse_byte_order
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? actual_image.CreateFromFilenameWithReverseByteOrder(file1)
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: actual_image.CreateFromFilename(file1);
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if (!actual_load_result) {
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fprintf(stderr, "%s: Unable to open file \"%s\"\n", binary_name.c_str(),
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file1.c_str());
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return kStatusError;
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}
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if (!baseline_image.CreateFromFilename(file2)) {
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fprintf(stderr, "%s: Unable to open file \"%s\"\n", binary_name.c_str(),
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file2.c_str());
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return kStatusError;
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}
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if (compare_histograms) {
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float percent = HistogramPercentageDifferent(actual_image, baseline_image);
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const char* passed = percent > 0.0 ? "failed" : "passed";
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printf("histogram diff: %01.2f%% %s\n", percent, passed);
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}
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const char* const diff_name = compare_histograms ? "exact diff" : "diff";
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float percent = PercentageDifferent(actual_image, baseline_image);
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const char* const passed = percent > 0.0 ? "failed" : "passed";
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printf("%s: %01.2f%% %s\n", diff_name, percent, passed);
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if (percent > 0.0) {
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// failure: The WebKit version also writes the difference image to
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// stdout, which seems excessive for our needs.
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return kStatusDifferent;
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}
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// success
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return kStatusSame;
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}
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bool CreateImageDiff(const Image& image1, const Image& image2, Image* out) {
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int w = std::min(image1.w(), image2.w());
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int h = std::min(image1.h(), image2.h());
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*out = Image(image1);
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bool same = (image1.w() == image2.w()) && (image1.h() == image2.h());
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// TODO(estade): do something with the extra pixels if the image sizes
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// are different.
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for (int y = 0; y < h; ++y) {
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for (int x = 0; x < w; ++x) {
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uint32_t base_pixel = image1.pixel_at(x, y);
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if (base_pixel != image2.pixel_at(x, y)) {
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// Set differing pixels red.
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out->set_pixel_at(x, y, RGBA_RED | RGBA_ALPHA);
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same = false;
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} else {
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// Set same pixels as faded.
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uint32_t alpha = base_pixel & RGBA_ALPHA;
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uint32_t new_pixel = base_pixel - ((alpha / 2) & RGBA_ALPHA);
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out->set_pixel_at(x, y, new_pixel);
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}
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}
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}
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return same;
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}
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int DiffImages(const std::string& binary_name,
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const std::string& file1,
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const std::string& file2,
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const std::string& out_file) {
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Image actual_image;
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Image baseline_image;
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if (!actual_image.CreateFromFilename(file1)) {
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fprintf(stderr, "%s: Unable to open file \"%s\"\n", binary_name.c_str(),
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file1.c_str());
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return kStatusError;
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}
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if (!baseline_image.CreateFromFilename(file2)) {
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fprintf(stderr, "%s: Unable to open file \"%s\"\n", binary_name.c_str(),
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file2.c_str());
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return kStatusError;
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}
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Image diff_image;
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bool same = CreateImageDiff(baseline_image, actual_image, &diff_image);
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if (same)
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return kStatusSame;
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std::vector<uint8_t> png_encoding = image_diff_png::EncodeRGBAPNG(
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diff_image.span(), diff_image.w(), diff_image.h(), diff_image.w() * 4);
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if (png_encoding.empty())
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return kStatusError;
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FILE* f = fopen(out_file.c_str(), "wb");
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if (!f)
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return kStatusError;
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size_t size = png_encoding.size();
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char* ptr = reinterpret_cast<char*>(&png_encoding.front());
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if (fwrite(ptr, 1, size, f) != size)
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return kStatusError;
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return kStatusDifferent;
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}
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int main(int argc, const char* argv[]) {
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FXMEM_InitializePartitionAlloc();
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bool histograms = false;
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bool produce_diff_image = false;
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bool reverse_byte_order = false;
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std::string filename1;
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std::string filename2;
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std::string diff_filename;
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// Strip the path from the first arg
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const char* last_separator = strrchr(argv[0], PATH_SEPARATOR);
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std::string binary_name = last_separator ? last_separator + 1 : argv[0];
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int i;
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for (i = 1; i < argc; ++i) {
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const char* arg = argv[i];
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if (strstr(arg, "--") != arg)
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break;
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if (strcmp(arg, "--histogram") == 0) {
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histograms = true;
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} else if (strcmp(arg, "--diff") == 0) {
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produce_diff_image = true;
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} else if (strcmp(arg, "--reverse-byte-order") == 0) {
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reverse_byte_order = true;
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}
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}
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if (i < argc)
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filename1 = argv[i++];
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if (i < argc)
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filename2 = argv[i++];
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if (i < argc)
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diff_filename = argv[i++];
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if (produce_diff_image) {
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if (!diff_filename.empty()) {
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return DiffImages(binary_name, filename1, filename2, diff_filename);
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}
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} else if (!filename2.empty()) {
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return CompareImages(binary_name, filename1, filename2, histograms,
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reverse_byte_order);
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}
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PrintHelp(binary_name);
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return kStatusError;
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}
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