1cbd47c4b1
Review URL: https://codereview.appspot.com/6345107 git-svn-id: http://skia.googlecode.com/svn/trunk@4603 2bbb7eff-a529-9590-31e7-b0007b416f81
340 lines
11 KiB
C++
340 lines
11 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 "BenchTimer.h"
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#include "SamplePipeControllers.h"
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#include "SkBitmap.h"
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#include "SkCanvas.h"
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#include "SkGPipe.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 "SkTArray.h"
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#include "picture_utils.h"
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const int DEFAULT_REPEATS = 100;
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const int DEFAULT_TILE_WIDTH = 256;
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const int DEFAULT_TILE_HEIGHT = 256;
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struct Options;
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static void run_simple_benchmark(SkPicture* picture, const Options&);
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struct Options {
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int fRepeats;
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void (*fBenchmark) (SkPicture*, const Options& options);
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int fTileWidth;
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int fTileHeight;
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double fTileWidthPercentage;
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double fTileHeightPercentage;
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Options() : fRepeats(DEFAULT_REPEATS), fBenchmark(run_simple_benchmark),
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fTileWidth(DEFAULT_TILE_WIDTH), fTileHeight(DEFAULT_TILE_HEIGHT),
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fTileWidthPercentage(0), fTileHeightPercentage(0){}
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};
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static void usage(const char* argv0) {
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SkDebugf("SkPicture benchmarking tool\n");
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SkDebugf("\n"
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"Usage: \n"
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" %s <inputDir>...\n"
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" [--repeat] [--tile width height]"
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, argv0);
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SkDebugf("\n\n");
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SkDebugf(
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" inputDir: A list of directories and files to use as input.\n"
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" Files are expected to have the .skp extension.\n\n");
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SkDebugf(
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" --pipe : "
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"Set to use piping."
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" Default is to not use piping.\n");
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SkDebugf(
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" --repeat : "
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"Set the number of times to repeat each test."
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" Default is %i.\n", DEFAULT_REPEATS);
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SkDebugf(
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" --tile width[%] height[%]: "
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"Set to use the tiling size and specify the dimensions of each tile.\n"
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" Default is to not use tiling\n");
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SkDebugf(
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" --unflatten: "
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"Set to do a picture unflattening benchmark. Default is not to do this.\n");
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}
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static void run_simple_benchmark(SkPicture* picture, const Options& options) {
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SkBitmap bitmap;
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sk_tools::setup_bitmap(&bitmap, picture->width(), picture->height());
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SkCanvas canvas(bitmap);
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// We throw this away to remove first time effects (such as paging in this
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// program)
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canvas.drawPicture(*picture);
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BenchTimer timer = BenchTimer(NULL);
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timer.start();
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for (int i = 0; i < options.fRepeats; ++i) {
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canvas.drawPicture(*picture);
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}
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timer.end();
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printf("simple: msecs = %6.2f\n", timer.fWall / options.fRepeats);
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}
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struct TileInfo {
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SkBitmap* fBitmap;
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SkCanvas* fCanvas;
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};
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static void clip_tile(SkPicture* picture, const TileInfo& tile) {
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SkRect clip = SkRect::MakeWH(SkIntToScalar(picture->width()),
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SkIntToScalar(picture->height()));
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tile.fCanvas->clipRect(clip);
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}
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static void setup_single_tile(SkPicture* picture, const Options& options,
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SkTArray<TileInfo>* tiles, int tile_x_start, int tile_y_start) {
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TileInfo& tile = tiles->push_back();
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tile.fBitmap = new SkBitmap();
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sk_tools::setup_bitmap(tile.fBitmap, options.fTileWidth, options.fTileHeight);
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tile.fCanvas = new SkCanvas(*(tile.fBitmap));
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tile.fCanvas->translate(SkIntToScalar(-tile_x_start), SkIntToScalar(-tile_y_start));
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clip_tile(picture, tile);
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}
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static void setup_tiles(SkPicture* picture, const Options& options, SkTArray<TileInfo>* tiles) {
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for (int tile_y_start = 0; tile_y_start < picture->height();
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tile_y_start += options.fTileHeight) {
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for (int tile_x_start = 0; tile_x_start < picture->width();
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tile_x_start += options.fTileWidth) {
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setup_single_tile(picture, options, tiles, tile_x_start, tile_y_start);
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}
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}
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}
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static void run_tile_benchmark(SkPicture* picture, const Options& options) {
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SkTArray<TileInfo> tiles;
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setup_tiles(picture, options, &tiles);
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// We throw this away to remove first time effects (such as paging in this
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// program)
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for (int j = 0; j < tiles.count(); ++j) {
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tiles[j].fCanvas->drawPicture(*picture);
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}
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BenchTimer timer = BenchTimer(NULL);
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timer.start();
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for (int i = 0; i < options.fRepeats; ++i) {
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for (int j = 0; j < tiles.count(); ++j) {
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tiles[j].fCanvas->drawPicture(*picture);
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}
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}
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timer.end();
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for (int i = 0; i < tiles.count(); ++i) {
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delete tiles[i].fCanvas;
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delete tiles[i].fBitmap;
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}
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printf("%i_tiles_%ix%i: msecs = %6.2f\n", tiles.count(), options.fTileWidth,
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options.fTileHeight, timer.fWall / options.fRepeats);
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}
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static void pipe_run(SkPicture* picture, SkCanvas* canvas) {
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PipeController pipeController(canvas);
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SkGPipeWriter writer;
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SkCanvas* pipeCanvas = writer.startRecording(&pipeController);
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pipeCanvas->drawPicture(*picture);
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writer.endRecording();
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}
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static void run_pipe_benchmark(SkPicture* picture, const Options& options) {
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SkBitmap bitmap;
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sk_tools::setup_bitmap(&bitmap, picture->width(), picture->height());
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SkCanvas canvas(bitmap);
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// We throw this away to remove first time effects (such as paging in this
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// program)
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pipe_run(picture, &canvas);
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BenchTimer timer = BenchTimer(NULL);
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timer.start();
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for (int i = 0; i < options.fRepeats; ++i) {
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pipe_run(picture, &canvas);
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}
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timer.end();
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printf("pipe: msecs = %6.2f\n", timer.fWall / options.fRepeats);
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}
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static void run_unflatten_benchmark(SkPicture* commands, const Options& options) {
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BenchTimer timer = BenchTimer(NULL);
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double wall_time = 0;
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for (int i = 0; i < options.fRepeats + 1; ++i) {
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SkPicture replayer;
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SkCanvas* recorder = replayer.beginRecording(commands->width(), commands->height());
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recorder->drawPicture(*commands);
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timer.start();
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replayer.endRecording();
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timer.end();
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// We want to ignore first time effects
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if (i > 0) {
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wall_time += timer.fWall;
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}
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}
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printf("unflatten: msecs = %6.4f\n", wall_time / options.fRepeats);
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}
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static void run_single_benchmark(const SkString& inputPath,
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Options* options) {
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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;
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}
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SkPicture picture(&inputStream);
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SkString filename;
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sk_tools::get_basename(&filename, inputPath);
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printf("running bench [%i %i] %s ", picture.width(), picture.height(),
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filename.c_str());
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if (options->fTileWidthPercentage > 0) {
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options->fTileWidth = sk_float_ceil2int(options->fTileWidthPercentage * picture.width()
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/ 100);
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}
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if (options->fTileHeightPercentage > 0) {
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options->fTileHeight = sk_float_ceil2int(options->fTileHeightPercentage * picture.height()
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/ 100);
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}
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options->fBenchmark(&picture, *options);
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}
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static bool is_percentage(char* const string) {
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SkString skString(string);
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return skString.endsWith("%");
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}
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static void parse_commandline(int argc, char* const argv[],
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SkTArray<SkString>* inputs, Options* options) {
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const char* argv0 = argv[0];
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char* const* stop = argv + argc;
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for (++argv; argv < stop; ++argv) {
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if (0 == strcmp(*argv, "--repeat")) {
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++argv;
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if (argv < stop) {
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options->fRepeats = atoi(*argv);
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if (options->fRepeats < 1) {
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SkDebugf("--repeat must be given a value > 0\n");
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exit(-1);
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}
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} else {
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SkDebugf("Missing arg for --repeat\n");
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usage(argv0);
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exit(-1);
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}
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} else if (0 == strcmp(*argv, "--tile")) {
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options->fBenchmark = run_tile_benchmark;
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++argv;
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if (argv < stop) {
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if (is_percentage(*argv)) {
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options->fTileWidthPercentage = atof(*argv);
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if (!(options->fTileWidthPercentage > 0)) {
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SkDebugf("--tile must be given a width percentage > 0\n");
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exit(-1);
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}
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} else {
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options->fTileWidth = atoi(*argv);
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if (!(options->fTileWidth > 0)) {
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SkDebugf("--tile must be given a width > 0\n");
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exit(-1);
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}
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}
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} else {
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SkDebugf("Missing width for --tile\n");
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usage(argv0);
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exit(-1);
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}
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++argv;
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if (argv < stop) {
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if (is_percentage(*argv)) {
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options->fTileHeightPercentage = atof(*argv);
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if (!(options->fTileHeightPercentage > 0)) {
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SkDebugf(
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"--tile must be given a height percentage > 0\n");
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exit(-1);
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}
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} else {
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options->fTileHeight = atoi(*argv);
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if (!(options->fTileHeight > 0)) {
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SkDebugf("--tile must be given a height > 0\n");
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exit(-1);
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}
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}
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} else {
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SkDebugf("Missing height for --tile\n");
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usage(argv0);
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exit(-1);
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}
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} else if (0 == strcmp(*argv, "--pipe")) {
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options->fBenchmark = run_pipe_benchmark;
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} else if (0 == strcmp(*argv, "--unflatten")) {
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options->fBenchmark = run_unflatten_benchmark;
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} else if (0 == strcmp(*argv, "--help") || 0 == strcmp(*argv, "-h")) {
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usage(argv0);
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exit(0);
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} else {
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inputs->push_back(SkString(*argv));
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}
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}
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if (inputs->count() < 1) {
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usage(argv0);
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exit(-1);
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}
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}
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static void process_input(const SkString& input, Options* options) {
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SkOSFile::Iter iter(input.c_str(), "skp");
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SkString inputFilename;
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if (iter.next(&inputFilename)) {
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do {
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SkString inputPath;
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sk_tools::make_filepath(&inputPath, input,
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inputFilename);
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run_single_benchmark(inputPath, options);
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} while(iter.next(&inputFilename));
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} else {
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run_single_benchmark(input, options);
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}
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}
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int main(int argc, char* const argv[]) {
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SkTArray<SkString> inputs;
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Options options;
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parse_commandline(argc, argv, &inputs, &options);
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for (int i = 0; i < inputs.count(); ++i) {
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process_input(inputs[i], &options);
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}
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}
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