868e1f682e
Review URL: https://codereview.appspot.com/6590049 git-svn-id: http://skia.googlecode.com/svn/trunk@5779 2bbb7eff-a529-9590-31e7-b0007b416f81
477 lines
16 KiB
C++
477 lines
16 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 "PictureBenchmark.h"
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#include "SkBenchLogger.h"
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#include "SkCanvas.h"
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#include "SkGraphics.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 "SkTArray.h"
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#include "picture_utils.h"
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const int DEFAULT_REPEATS = 1;
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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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" [--logFile filename][--timers [wcgWC]*][--logPerIter 1|0][--min]\n"
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" [--repeat] \n"
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" [--mode pow2tile minWidth height[] | record | simple\n"
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" | tile width[] height[] | playbackCreation]\n"
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" [--pipe]\n"
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" [--multi numThreads]\n"
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" [--device bitmap"
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#if SK_SUPPORT_GPU
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" | gpu"
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#endif
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"]"
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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. Files are\n"
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" expected to have the .skp extension.\n\n"
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" --logFile filename : destination for writing log output, in addition to stdout.\n");
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SkDebugf(" --logPerIter 1|0 : "
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"Log each repeat timer instead of mean, default is disabled.\n");
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SkDebugf(" --min : Print the minimum times (instead of average).\n");
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SkDebugf(" --timers [wcgWC]* : "
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"Display wall, cpu, gpu, truncated wall or truncated cpu time for each picture.\n");
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SkDebugf(
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" --mode pow2tile minWidht height[] | record | simple\n"
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" | tile width[] height[] | playbackCreation:\n"
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" Run in the corresponding mode.\n"
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" Default is simple.\n");
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SkDebugf(
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" pow2tile minWidth height[], Creates tiles with widths\n"
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" that are all a power of two\n"
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" such that they minimize the\n"
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" amount of wasted tile space.\n"
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" minWidth is the minimum width\n"
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" of these tiles and must be a\n"
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" power of two. Simple\n"
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" rendering using these tiles\n"
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" is benchmarked.\n");
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SkDebugf(
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" record, Benchmark picture to picture recording.\n");
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SkDebugf(
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" simple, Benchmark a simple rendering.\n");
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SkDebugf(
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" tile width[] height[], Benchmark simple rendering using\n"
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" tiles with the given dimensions.\n");
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SkDebugf(
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" playbackCreation, Benchmark creation of the SkPicturePlayback.\n");
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SkDebugf("\n");
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SkDebugf(
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" --multi numThreads : Set the number of threads for multi threaded drawing. Must be greater\n"
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" than 1. Only works with tiled rendering.\n"
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" --pipe: Benchmark SkGPipe rendering. Compatible with tiled, multithreaded rendering.\n");
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SkDebugf(
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" --device bitmap"
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#if SK_SUPPORT_GPU
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" | gpu"
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#endif
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": Use the corresponding device. Default is bitmap.\n");
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SkDebugf(
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" bitmap, Render to a bitmap.\n");
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#if SK_SUPPORT_GPU
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SkDebugf(
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" gpu, Render to the GPU.\n");
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#endif
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SkDebugf("\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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}
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SkBenchLogger gLogger;
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static bool run_single_benchmark(const SkString& inputPath,
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sk_tools::PictureBenchmark& benchmark) {
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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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SkString err;
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err.printf("Could not open file %s\n", inputPath.c_str());
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gLogger.logError(err);
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return false;
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}
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bool success = false;
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SkPicture picture(&inputStream, &success);
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if (!success) {
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SkString err;
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err.printf("Could not read an SkPicture from %s\n", inputPath.c_str());
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gLogger.logError(err);
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return false;
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}
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SkString filename;
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sk_tools::get_basename(&filename, inputPath);
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SkString result;
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result.printf("running bench [%i %i] %s ", picture.width(),
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picture.height(), filename.c_str());
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gLogger.logProgress(result);
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benchmark.run(&picture);
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return true;
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}
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static void parse_commandline(int argc, char* const argv[], SkTArray<SkString>* inputs,
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sk_tools::PictureBenchmark* benchmark) {
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const char* argv0 = argv[0];
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char* const* stop = argv + argc;
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int repeats = DEFAULT_REPEATS;
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sk_tools::PictureRenderer::SkDeviceTypes deviceType =
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sk_tools::PictureRenderer::kBitmap_DeviceType;
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sk_tools::PictureRenderer* renderer = NULL;
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// Create a string to show our current settings.
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// TODO: Make it prettier. Currently it just repeats the command line.
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SkString commandLine("bench_pictures:");
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for (int i = 1; i < argc; i++) {
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commandLine.appendf(" %s", *(argv+i));
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}
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commandLine.append("\n");
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bool usePipe = false;
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int numThreads = 1;
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bool useTiles = false;
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const char* widthString = NULL;
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const char* heightString = NULL;
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bool isPowerOf2Mode = false;
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const char* mode = NULL;
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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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repeats = atoi(*argv);
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if (repeats < 1) {
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gLogger.logError("--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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gLogger.logError("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, "--pipe")) {
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usePipe = true;
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} else if (0 == strcmp(*argv, "--logFile")) {
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argv++;
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if (argv < stop) {
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if (!gLogger.SetLogFile(*argv)) {
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SkString str;
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str.printf("Could not open %s for writing.", *argv);
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gLogger.logError(str);
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usage(argv0);
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// TODO(borenet): We're disabling this for now, due to
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// write-protected Android devices. The very short-term
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// solution is to ignore the fact that we have no log file.
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//exit(-1);
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}
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} else {
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gLogger.logError("Missing arg for --logFile\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, "--multi")) {
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++argv;
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if (argv >= stop) {
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gLogger.logError("Missing arg for --multi\n");
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usage(argv0);
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exit(-1);
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}
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numThreads = atoi(*argv);
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if (numThreads < 2) {
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gLogger.logError("Number of threads must be at least 2.\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, "--mode")) {
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++argv;
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if (argv >= stop) {
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gLogger.logError("Missing mode for --mode\n");
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usage(argv0);
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exit(-1);
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}
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if (0 == strcmp(*argv, "record")) {
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renderer = SkNEW(sk_tools::RecordPictureRenderer);
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} else if (0 == strcmp(*argv, "simple")) {
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renderer = SkNEW(sk_tools::SimplePictureRenderer);
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} else if ((0 == strcmp(*argv, "tile")) || (0 == strcmp(*argv, "pow2tile"))) {
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useTiles = true;
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mode = *argv;
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if (0 == strcmp(*argv, "pow2tile")) {
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isPowerOf2Mode = true;
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}
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++argv;
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if (argv >= stop) {
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SkString err;
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err.printf("Missing width for --mode %s\n", mode);
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gLogger.logError(err);
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usage(argv0);
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exit(-1);
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}
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widthString = *argv;
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++argv;
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if (argv >= stop) {
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gLogger.logError("Missing height for --mode tile\n");
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usage(argv0);
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exit(-1);
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}
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heightString = *argv;
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} else if (0 == strcmp(*argv, "playbackCreation")) {
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renderer = SkNEW(sk_tools::PlaybackCreationRenderer);
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} else {
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SkString err;
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err.printf("%s is not a valid mode for --mode\n", *argv);
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gLogger.logError(err);
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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, "--device")) {
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++argv;
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if (argv >= stop) {
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gLogger.logError("Missing mode for --device\n");
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usage(argv0);
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exit(-1);
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}
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if (0 == strcmp(*argv, "bitmap")) {
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deviceType = sk_tools::PictureRenderer::kBitmap_DeviceType;
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}
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#if SK_SUPPORT_GPU
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else if (0 == strcmp(*argv, "gpu")) {
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deviceType = sk_tools::PictureRenderer::kGPU_DeviceType;
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}
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#endif
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else {
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SkString err;
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err.printf("%s is not a valid mode for --device\n", *argv);
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gLogger.logError(err);
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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, "--timers")) {
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++argv;
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if (argv < stop) {
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bool timerWall = false;
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bool truncatedTimerWall = false;
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bool timerCpu = false;
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bool truncatedTimerCpu = false;
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bool timerGpu = false;
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for (char* t = *argv; *t; ++t) {
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switch (*t) {
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case 'w':
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timerWall = true;
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break;
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case 'c':
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timerCpu = true;
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break;
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case 'W':
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truncatedTimerWall = true;
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break;
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case 'C':
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truncatedTimerCpu = true;
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break;
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case 'g':
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timerGpu = true;
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break;
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default: {
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break;
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}
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}
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}
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benchmark->setTimersToShow(timerWall, truncatedTimerWall, timerCpu,
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truncatedTimerCpu, timerGpu);
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} else {
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gLogger.logError("Missing arg for --timers\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, "--min")) {
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benchmark->setPrintMin(true);
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} else if (0 == strcmp(*argv, "--logPerIter")) {
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++argv;
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if (argv < stop) {
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bool log = atoi(*argv) != 0;
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benchmark->setLogPerIter(log);
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} else {
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gLogger.logError("Missing arg for --logPerIter\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, "--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 (numThreads > 1 && !useTiles) {
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gLogger.logError("Multithreaded drawing requires tiled rendering.\n");
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usage(argv0);
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exit(-1);
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}
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if (useTiles) {
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SkASSERT(NULL == renderer);
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sk_tools::TiledPictureRenderer* tiledRenderer = SkNEW(sk_tools::TiledPictureRenderer);
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if (isPowerOf2Mode) {
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int minWidth = atoi(widthString);
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if (!SkIsPow2(minWidth) || minWidth < 0) {
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tiledRenderer->unref();
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SkString err;
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err.printf("-mode %s must be given a width"
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" value that is a power of two\n", mode);
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gLogger.logError(err);
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usage(argv0);
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exit(-1);
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}
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tiledRenderer->setTileMinPowerOf2Width(minWidth);
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} else if (sk_tools::is_percentage(widthString)) {
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tiledRenderer->setTileWidthPercentage(atof(widthString));
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if (!(tiledRenderer->getTileWidthPercentage() > 0)) {
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tiledRenderer->unref();
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gLogger.logError("--mode tile must be given a width percentage > 0\n");
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usage(argv0);
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exit(-1);
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}
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} else {
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tiledRenderer->setTileWidth(atoi(widthString));
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if (!(tiledRenderer->getTileWidth() > 0)) {
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tiledRenderer->unref();
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gLogger.logError("--mode tile must be given a width > 0\n");
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usage(argv0);
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exit(-1);
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}
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}
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if (sk_tools::is_percentage(heightString)) {
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tiledRenderer->setTileHeightPercentage(atof(heightString));
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if (!(tiledRenderer->getTileHeightPercentage() > 0)) {
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tiledRenderer->unref();
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gLogger.logError("--mode tile must be given a height percentage > 0\n");
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usage(argv0);
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exit(-1);
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}
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} else {
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tiledRenderer->setTileHeight(atoi(heightString));
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if (!(tiledRenderer->getTileHeight() > 0)) {
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tiledRenderer->unref();
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gLogger.logError("--mode tile must be given a height > 0\n");
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usage(argv0);
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exit(-1);
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}
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}
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if (numThreads > 1) {
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#if SK_SUPPORT_GPU
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if (sk_tools::PictureRenderer::kGPU_DeviceType == deviceType) {
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tiledRenderer->unref();
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gLogger.logError("GPU not compatible with multithreaded tiling.\n");
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usage(argv0);
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exit(-1);
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}
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#endif
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tiledRenderer->setNumberOfThreads(numThreads);
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}
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tiledRenderer->setUsePipe(usePipe);
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renderer = tiledRenderer;
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} else if (usePipe) {
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renderer = SkNEW(sk_tools::PipePictureRenderer);
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}
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if (inputs->count() < 1) {
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SkSafeUnref(renderer);
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usage(argv0);
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exit(-1);
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}
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if (NULL == renderer) {
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renderer = SkNEW(sk_tools::SimplePictureRenderer);
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}
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benchmark->setRenderer(renderer)->unref();
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benchmark->setRepeats(repeats);
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benchmark->setDeviceType(deviceType);
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benchmark->setLogger(&gLogger);
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// Report current settings:
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gLogger.logProgress(commandLine);
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}
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static int process_input(const SkString& input,
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sk_tools::PictureBenchmark& benchmark) {
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SkOSFile::Iter iter(input.c_str(), "skp");
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SkString inputFilename;
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int failures = 0;
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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, inputFilename);
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if (!run_single_benchmark(inputPath, benchmark)) {
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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.c_str(), ".skp")) {
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if (!run_single_benchmark(input, benchmark)) {
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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.c_str());
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gLogger.logError(warning);
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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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#ifdef SK_ENABLE_INST_COUNT
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gPrintInstCount = true;
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#endif
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SkAutoGraphics ag;
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SkTArray<SkString> inputs;
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sk_tools::PictureBenchmark benchmark;
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parse_commandline(argc, argv, &inputs, &benchmark);
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int failures = 0;
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for (int i = 0; i < inputs.count(); ++i) {
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failures += process_input(inputs[i], benchmark);
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}
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if (failures != 0) {
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SkString err;
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err.printf("Failed to run %i benchmarks.\n", failures);
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gLogger.logError(err);
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return 1;
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}
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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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