03682beb8c
git-svn-id: http://skia.googlecode.com/svn/trunk@8143 2bbb7eff-a529-9590-31e7-b0007b416f81
374 lines
12 KiB
C++
374 lines
12 KiB
C++
/*
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* Copyright 2012 Google Inc.
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*
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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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*/
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#include "CopyTilesRenderer.h"
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#include "SkBitmap.h"
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#include "SkBitmapFactory.h"
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#include "SkCanvas.h"
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#include "SkDevice.h"
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#include "SkFlags.h"
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#include "SkGraphics.h"
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#include "SkImageDecoder.h"
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#include "SkImageEncoder.h"
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#include "SkMath.h"
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#include "SkOSFile.h"
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#include "SkPicture.h"
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#include "SkStream.h"
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#include "SkString.h"
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#include "SkTArray.h"
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#include "PictureRenderer.h"
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#include "PictureRenderingFlags.h"
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#include "picture_utils.h"
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// Flags used by this file, alphabetically:
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DEFINE_int32(clone, 0, "Clone the picture n times before rendering.");
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DECLARE_bool(deferImageDecoding);
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DEFINE_int32(maxComponentDiff, 256, "Maximum diff on a component, 0 - 256. Components that differ "
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"by more than this amount are considered errors, though all diffs are reported. "
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"Requires --validate.");
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DECLARE_string(r);
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DEFINE_string(w, "", "Directory to write the rendered images.");
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DEFINE_bool(writeWholeImage, false, "In tile mode, write the entire rendered image to a "
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"file, instead of an image for each tile.");
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DEFINE_bool(validate, false, "Verify that the rendered image contains the same pixels as "
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"the picture rendered in simple mode. When used in conjunction with --bbh, results "
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"are validated against the picture rendered in the same mode, but without the bbh.");
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static void make_output_filepath(SkString* path, const SkString& dir,
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const SkString& name) {
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sk_tools::make_filepath(path, dir, name);
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// Remove ".skp"
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path->remove(path->size() - 4, 4);
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}
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#include "SkData.h"
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#include "SkLruImageCache.h"
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static SkLruImageCache gLruImageCache(1024*1024);
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#ifdef SK_BUILD_FOR_ANDROID
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#include "SkAshmemImageCache.h"
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#include "SkImage.h"
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static SkImageCache* cache_selector(const SkImage::Info& info) {
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if (info.fWidth * info.fHeight > 32 * 1024) {
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return SkAshmemImageCache::GetAshmemImageCache();
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}
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return &gLruImageCache;
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}
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#endif
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static bool lazy_decode_bitmap(const void* buffer, size_t size, SkBitmap* bitmap) {
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void* copiedBuffer = sk_malloc_throw(size);
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memcpy(copiedBuffer, buffer, size);
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SkAutoDataUnref data(SkData::NewFromMalloc(copiedBuffer, size));
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SkBitmapFactory factory(&SkImageDecoder::DecodeMemoryToTarget);
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#ifdef SK_BUILD_FOR_ANDROID
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factory.setCacheSelector(&cache_selector);
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#else
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factory.setImageCache(&gLruImageCache);
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#endif
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return factory.installPixelRef(data, bitmap);
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}
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static bool render_picture(const SkString& inputPath, const SkString* outputDir,
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sk_tools::PictureRenderer& renderer,
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SkBitmap** out) {
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SkString inputFilename;
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sk_tools::get_basename(&inputFilename, inputPath);
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SkFILEStream inputStream;
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inputStream.setPath(inputPath.c_str());
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if (!inputStream.isValid()) {
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SkDebugf("Could not open file %s\n", inputPath.c_str());
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return false;
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}
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bool success = false;
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SkPicture* picture;
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if (FLAGS_deferImageDecoding) {
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picture = SkNEW_ARGS(SkPicture, (&inputStream, &success, &lazy_decode_bitmap));
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} else {
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picture = SkNEW_ARGS(SkPicture, (&inputStream, &success, &SkImageDecoder::DecodeMemory));
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}
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if (!success) {
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SkDebugf("Could not read an SkPicture from %s\n", inputPath.c_str());
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return false;
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}
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for (int i = 0; i < FLAGS_clone; ++i) {
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SkPicture* clone = picture->clone();
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SkDELETE(picture);
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picture = clone;
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}
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SkDebugf("drawing... [%i %i] %s\n", picture->width(), picture->height(),
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inputPath.c_str());
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renderer.init(picture);
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renderer.setup();
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SkString* outputPath = NULL;
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if (NULL != outputDir && outputDir->size() > 0) {
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outputPath = SkNEW(SkString);
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make_output_filepath(outputPath, *outputDir, inputFilename);
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}
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success = renderer.render(outputPath, out);
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if (outputPath) {
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if (!success) {
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SkDebugf("Could not write to file %s\n", outputPath->c_str());
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}
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SkDELETE(outputPath);
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}
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renderer.end();
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SkDELETE(picture);
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return success;
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}
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static inline int getByte(uint32_t value, int index) {
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SkASSERT(0 <= index && index < 4);
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return (value >> (index * 8)) & 0xFF;
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}
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static int MaxByteDiff(uint32_t v1, uint32_t v2) {
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return SkMax32(SkMax32(abs(getByte(v1, 0) - getByte(v2, 0)), abs(getByte(v1, 1) - getByte(v2, 1))),
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SkMax32(abs(getByte(v1, 2) - getByte(v2, 2)), abs(getByte(v1, 3) - getByte(v2, 3))));
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}
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namespace {
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class AutoRestoreBbhType {
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public:
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AutoRestoreBbhType() {
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fRenderer = NULL;
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fSavedBbhType = sk_tools::PictureRenderer::kNone_BBoxHierarchyType;
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}
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void set(sk_tools::PictureRenderer* renderer,
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sk_tools::PictureRenderer::BBoxHierarchyType bbhType) {
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fRenderer = renderer;
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fSavedBbhType = renderer->getBBoxHierarchyType();
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renderer->setBBoxHierarchyType(bbhType);
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}
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~AutoRestoreBbhType() {
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if (NULL != fRenderer) {
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fRenderer->setBBoxHierarchyType(fSavedBbhType);
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}
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}
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private:
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sk_tools::PictureRenderer* fRenderer;
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sk_tools::PictureRenderer::BBoxHierarchyType fSavedBbhType;
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};
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}
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static bool render_picture(const SkString& inputPath, const SkString* outputDir,
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sk_tools::PictureRenderer& renderer) {
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int diffs[256] = {0};
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SkBitmap* bitmap = NULL;
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bool success = render_picture(inputPath,
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FLAGS_writeWholeImage ? NULL : outputDir,
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renderer,
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FLAGS_validate || FLAGS_writeWholeImage ? &bitmap : NULL);
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if (!success || ((FLAGS_validate || FLAGS_writeWholeImage) && bitmap == NULL)) {
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SkDebugf("Failed to draw the picture.\n");
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SkDELETE(bitmap);
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return false;
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}
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if (FLAGS_validate) {
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SkBitmap* referenceBitmap = NULL;
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sk_tools::PictureRenderer* referenceRenderer;
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// If the renderer uses a BBoxHierarchy, then the reference renderer
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// will be the same renderer, without the bbh.
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AutoRestoreBbhType arbbh;
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if (sk_tools::PictureRenderer::kNone_BBoxHierarchyType !=
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renderer.getBBoxHierarchyType()) {
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referenceRenderer = &renderer;
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referenceRenderer->ref(); // to match auto unref below
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arbbh.set(referenceRenderer, sk_tools::PictureRenderer::kNone_BBoxHierarchyType);
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} else {
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referenceRenderer = SkNEW(sk_tools::SimplePictureRenderer);
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}
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SkAutoTUnref<sk_tools::PictureRenderer> aurReferenceRenderer(referenceRenderer);
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success = render_picture(inputPath, NULL, *referenceRenderer,
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&referenceBitmap);
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if (!success || NULL == referenceBitmap || NULL == referenceBitmap->getPixels()) {
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SkDebugf("Failed to draw the reference picture.\n");
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SkDELETE(bitmap);
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SkDELETE(referenceBitmap);
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return false;
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}
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if (success && (bitmap->width() != referenceBitmap->width())) {
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SkDebugf("Expected image width: %i, actual image width %i.\n",
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referenceBitmap->width(), bitmap->width());
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SkDELETE(bitmap);
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SkDELETE(referenceBitmap);
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return false;
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}
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if (success && (bitmap->height() != referenceBitmap->height())) {
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SkDebugf("Expected image height: %i, actual image height %i",
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referenceBitmap->height(), bitmap->height());
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SkDELETE(bitmap);
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SkDELETE(referenceBitmap);
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return false;
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}
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for (int y = 0; success && y < bitmap->height(); y++) {
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for (int x = 0; success && x < bitmap->width(); x++) {
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int diff = MaxByteDiff(*referenceBitmap->getAddr32(x, y),
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*bitmap->getAddr32(x, y));
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SkASSERT(diff >= 0 && diff <= 255);
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diffs[diff]++;
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if (diff > FLAGS_maxComponentDiff) {
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SkDebugf("Expected pixel at (%i %i) exceedds maximum "
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"component diff of %i: 0x%x, actual 0x%x\n",
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x, y, FLAGS_maxComponentDiff,
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*referenceBitmap->getAddr32(x, y),
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*bitmap->getAddr32(x, y));
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SkDELETE(bitmap);
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SkDELETE(referenceBitmap);
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return false;
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}
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}
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}
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SkDELETE(referenceBitmap);
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for (int i = 1; i <= 255; ++i) {
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if(diffs[i] > 0) {
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SkDebugf("Number of pixels with max diff of %i is %i\n", i, diffs[i]);
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}
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}
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}
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if (FLAGS_writeWholeImage) {
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sk_tools::force_all_opaque(*bitmap);
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if (NULL != outputDir && FLAGS_writeWholeImage) {
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SkString inputFilename;
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sk_tools::get_basename(&inputFilename, inputPath);
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SkString outputPath;
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make_output_filepath(&outputPath, *outputDir, inputFilename);
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outputPath.append(".png");
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if (!SkImageEncoder::EncodeFile(outputPath.c_str(), *bitmap,
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SkImageEncoder::kPNG_Type, 100)) {
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SkDebugf("Failed to draw the picture.\n");
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success = false;
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}
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}
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}
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SkDELETE(bitmap);
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return success;
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}
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static int process_input(const char* input, const SkString* outputDir,
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sk_tools::PictureRenderer& renderer) {
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SkOSFile::Iter iter(input, "skp");
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SkString inputFilename;
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int failures = 0;
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SkDebugf("process_input, %s\n", input);
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if (iter.next(&inputFilename)) {
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do {
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SkString inputPath;
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SkString inputAsSkString(input);
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sk_tools::make_filepath(&inputPath, inputAsSkString, inputFilename);
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if (!render_picture(inputPath, outputDir, renderer)) {
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++failures;
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}
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} while(iter.next(&inputFilename));
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} else if (SkStrEndsWith(input, ".skp")) {
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SkString inputPath(input);
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if (!render_picture(inputPath, outputDir, renderer)) {
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++failures;
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}
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} else {
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SkString warning;
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warning.printf("Warning: skipping %s\n", input);
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SkDebugf(warning.c_str());
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}
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return failures;
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}
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int tool_main(int argc, char** argv);
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int tool_main(int argc, char** argv) {
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SkFlags::SetUsage("Render .skp files.");
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SkFlags::ParseCommandLine(argc, argv);
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if (FLAGS_r.isEmpty()) {
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SkDebugf(".skp files or directories are required.\n");
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exit(-1);
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}
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if (FLAGS_maxComponentDiff < 0 || FLAGS_maxComponentDiff > 256) {
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SkDebugf("--maxComponentDiff must be between 0 and 256\n");
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exit(-1);
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}
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if (FLAGS_maxComponentDiff != 256 && !FLAGS_validate) {
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SkDebugf("--maxComponentDiff requires --validate\n");
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exit(-1);
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}
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if (FLAGS_clone < 0) {
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SkDebugf("--clone must be >= 0. Was %i\n", FLAGS_clone);
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exit(-1);
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}
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SkString errorString;
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SkAutoTUnref<sk_tools::PictureRenderer> renderer(parseRenderer(errorString,
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kRender_PictureTool));
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if (errorString.size() > 0) {
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SkDebugf("%s\n", errorString.c_str());
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}
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if (renderer.get() == NULL) {
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exit(-1);
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}
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SkAutoGraphics ag;
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SkString outputDir;
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if (FLAGS_w.count() == 1) {
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outputDir.set(FLAGS_w[0]);
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}
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int failures = 0;
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for (int i = 0; i < FLAGS_r.count(); i ++) {
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failures += process_input(FLAGS_r[i], &outputDir, *renderer.get());
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}
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if (failures != 0) {
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SkDebugf("Failed to render %i pictures.\n", failures);
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return 1;
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}
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#if SK_SUPPORT_GPU
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#if GR_CACHE_STATS
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if (renderer->isUsingGpuDevice()) {
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GrContext* ctx = renderer->getGrContext();
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ctx->printCacheStats();
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}
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#endif
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#endif
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return 0;
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}
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#if !defined SK_BUILD_FOR_IOS
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int main(int argc, char * const argv[]) {
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return tool_main(argc, (char**) argv);
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}
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#endif
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