fbfcd56021
This CL is part I of IV (I broke down the 1280 files into 4 CLs). Review URL: https://codereview.appspot.com/6485054 git-svn-id: http://skia.googlecode.com/svn/trunk@5262 2bbb7eff-a529-9590-31e7-b0007b416f81
270 lines
8.7 KiB
C++
270 lines
8.7 KiB
C++
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/*
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* Copyright 2011 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 "SkBenchmark.h"
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#include "SkCanvas.h"
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#include "SkPaint.h"
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#include "SkRandom.h"
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#include "SkString.h"
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#include "SkShader.h"
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class RectBench : public SkBenchmark {
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public:
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int fShift, fStroke;
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enum {
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W = 640,
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H = 480,
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N = SkBENCHLOOP(300)
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};
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SkRect fRects[N];
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SkColor fColors[N];
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RectBench(void* param, int shift, int stroke = 0) : INHERITED(param), fShift(shift), fStroke(stroke) {
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SkRandom rand;
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const SkScalar offset = SK_Scalar1/3;
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for (int i = 0; i < N; i++) {
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int x = rand.nextU() % W;
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int y = rand.nextU() % H;
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int w = rand.nextU() % W;
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int h = rand.nextU() % H;
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w >>= shift;
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h >>= shift;
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x -= w/2;
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y -= h/2;
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fRects[i].set(SkIntToScalar(x), SkIntToScalar(y),
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SkIntToScalar(x+w), SkIntToScalar(y+h));
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fRects[i].offset(offset, offset);
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fColors[i] = rand.nextU() | 0xFF808080;
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}
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}
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SkString fName;
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const char* computeName(const char root[]) {
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fName.printf("%s_%d", root, fShift);
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if (fStroke > 0) {
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fName.appendf("_stroke_%d", fStroke);
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}
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return fName.c_str();
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}
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protected:
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virtual void drawThisRect(SkCanvas* c, const SkRect& r, const SkPaint& p) {
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c->drawRect(r, p);
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}
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virtual const char* onGetName() { return computeName("rects"); }
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virtual void onDraw(SkCanvas* canvas) {
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SkPaint paint;
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if (fStroke > 0) {
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paint.setStyle(SkPaint::kStroke_Style);
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paint.setStrokeWidth(SkIntToScalar(fStroke));
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}
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for (int i = 0; i < N; i++) {
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paint.setColor(fColors[i]);
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this->setupPaint(&paint);
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this->drawThisRect(canvas, fRects[i], paint);
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}
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}
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private:
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typedef SkBenchmark INHERITED;
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};
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class OvalBench : public RectBench {
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public:
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OvalBench(void* param, int shift) : RectBench(param, shift) {}
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protected:
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virtual void drawThisRect(SkCanvas* c, const SkRect& r, const SkPaint& p) {
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c->drawOval(r, p);
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}
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virtual const char* onGetName() { return computeName("ovals"); }
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};
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class RRectBench : public RectBench {
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public:
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RRectBench(void* param, int shift) : RectBench(param, shift) {}
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protected:
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virtual void drawThisRect(SkCanvas* c, const SkRect& r, const SkPaint& p) {
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c->drawRoundRect(r, r.width() / 4, r.height() / 4, p);
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}
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virtual const char* onGetName() { return computeName("rrects"); }
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};
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class PointsBench : public RectBench {
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public:
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SkCanvas::PointMode fMode;
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const char* fName;
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PointsBench(void* param, SkCanvas::PointMode mode, const char* name) :
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RectBench(param, 2), fMode(mode) {
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fName = name;
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}
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protected:
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virtual void onDraw(SkCanvas* canvas) {
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SkScalar gSizes[] = {
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SkIntToScalar(7), 0
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};
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size_t sizes = SK_ARRAY_COUNT(gSizes);
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if (this->hasStrokeWidth()) {
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gSizes[0] = this->getStrokeWidth();
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sizes = 1;
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}
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SkPaint paint;
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paint.setStrokeCap(SkPaint::kRound_Cap);
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for (size_t i = 0; i < sizes; i++) {
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paint.setStrokeWidth(gSizes[i]);
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this->setupPaint(&paint);
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canvas->drawPoints(fMode, N * 2, SkTCast<SkPoint*>(fRects), paint);
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paint.setColor(fColors[i]);
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}
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}
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virtual const char* onGetName() { return fName; }
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};
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/*******************************************************************************
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* to bench BlitMask [Opaque, Black, color, shader]
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*******************************************************************************/
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class BlitMaskBench : public RectBench {
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public:
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enum kMaskType {
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kMaskOpaque = 0,
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kMaskBlack,
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kMaskColor,
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KMaskShader
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};
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SkCanvas::PointMode fMode;
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const char* fName;
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BlitMaskBench(void* param, SkCanvas::PointMode mode,
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BlitMaskBench::kMaskType type, const char* name) :
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RectBench(param, 2), fMode(mode), _type(type) {
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fName = name;
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}
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protected:
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virtual void onDraw(SkCanvas* canvas) {
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SkScalar gSizes[] = {
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SkIntToScalar(13), SkIntToScalar(24)
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};
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size_t sizes = SK_ARRAY_COUNT(gSizes);
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if (this->hasStrokeWidth()) {
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gSizes[0] = this->getStrokeWidth();
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sizes = 1;
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}
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SkRandom rand;
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SkColor color = 0xFF000000;
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U8CPU alpha = 0xFF;
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SkPaint paint;
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paint.setStrokeCap(SkPaint::kRound_Cap);
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if (_type == KMaskShader) {
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SkBitmap srcBM;
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srcBM.setConfig(SkBitmap::kARGB_8888_Config, 10, 1);
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srcBM.allocPixels();
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srcBM.eraseColor(0xFF00FF00);
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SkShader* s;
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s = SkShader::CreateBitmapShader(srcBM, SkShader::kClamp_TileMode,
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SkShader::kClamp_TileMode);
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paint.setShader(s)->unref();
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}
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for (size_t i = 0; i < sizes; i++) {
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switch (_type) {
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case kMaskOpaque:
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color = fColors[i];
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alpha = 0xFF;
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break;
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case kMaskBlack:
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alpha = 0xFF;
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color = 0xFF000000;
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break;
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case kMaskColor:
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color = fColors[i];
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alpha = rand.nextU() & 255;
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break;
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case KMaskShader:
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break;
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}
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paint.setStrokeWidth(gSizes[i]);
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this->setupPaint(&paint);
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paint.setColor(color);
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paint.setAlpha(alpha);
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canvas->drawPoints(fMode, N * 2, SkTCast<SkPoint*>(fRects), paint);
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}
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}
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virtual const char* onGetName() { return fName; }
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private:
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typedef RectBench INHERITED;
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kMaskType _type;
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};
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static SkBenchmark* RectFactory1F(void* p) { return SkNEW_ARGS(RectBench, (p, 1)); }
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static SkBenchmark* RectFactory1S(void* p) { return SkNEW_ARGS(RectBench, (p, 1, 4)); }
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static SkBenchmark* RectFactory2F(void* p) { return SkNEW_ARGS(RectBench, (p, 3)); }
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static SkBenchmark* RectFactory2S(void* p) { return SkNEW_ARGS(RectBench, (p, 3, 4)); }
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static SkBenchmark* OvalFactory1(void* p) { return SkNEW_ARGS(OvalBench, (p, 1)); }
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static SkBenchmark* OvalFactory2(void* p) { return SkNEW_ARGS(OvalBench, (p, 3)); }
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static SkBenchmark* RRectFactory1(void* p) { return SkNEW_ARGS(RRectBench, (p, 1)); }
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static SkBenchmark* RRectFactory2(void* p) { return SkNEW_ARGS(RRectBench, (p, 3)); }
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static SkBenchmark* PointsFactory(void* p) {
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return SkNEW_ARGS(PointsBench, (p, SkCanvas::kPoints_PointMode, "points"));
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}
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static SkBenchmark* LinesFactory(void* p) {
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return SkNEW_ARGS(PointsBench, (p, SkCanvas::kLines_PointMode, "lines"));
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}
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static SkBenchmark* PolygonFactory(void* p) {
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return SkNEW_ARGS(PointsBench, (p, SkCanvas::kPolygon_PointMode, "polygon"));
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}
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/* init the blitmask bench
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*/
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static SkBenchmark* BlitMaskOpaqueFactory(void* p) {
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return SkNEW_ARGS(BlitMaskBench,
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(p, SkCanvas::kPoints_PointMode,
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BlitMaskBench::kMaskOpaque, "maskopaque")
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);
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}
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static SkBenchmark* BlitMaskBlackFactory(void* p) {
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return SkNEW_ARGS(BlitMaskBench,
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(p, SkCanvas::kPoints_PointMode,
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BlitMaskBench::kMaskBlack, "maskblack")
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);
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}
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static SkBenchmark* BlitMaskColorFactory(void* p) {
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return SkNEW_ARGS(BlitMaskBench,
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(p, SkCanvas::kPoints_PointMode,
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BlitMaskBench::kMaskColor, "maskcolor")
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);
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}
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static SkBenchmark* BlitMaskShaderFactory(void* p) {
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return SkNEW_ARGS(BlitMaskBench,
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(p, SkCanvas::kPoints_PointMode,
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BlitMaskBench::KMaskShader, "maskshader")
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);
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}
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static BenchRegistry gRectReg1F(RectFactory1F);
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static BenchRegistry gRectReg1S(RectFactory1S);
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static BenchRegistry gRectReg2F(RectFactory2F);
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static BenchRegistry gRectReg2S(RectFactory2S);
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static BenchRegistry gOvalReg1(OvalFactory1);
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static BenchRegistry gOvalReg2(OvalFactory2);
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static BenchRegistry gRRectReg1(RRectFactory1);
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static BenchRegistry gRRectReg2(RRectFactory2);
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static BenchRegistry gPointsReg(PointsFactory);
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static BenchRegistry gLinesReg(LinesFactory);
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static BenchRegistry gPolygonReg(PolygonFactory);
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static BenchRegistry gRectRegOpaque(BlitMaskOpaqueFactory);
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static BenchRegistry gRectRegBlack(BlitMaskBlackFactory);
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static BenchRegistry gRectRegColor(BlitMaskColorFactory);
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static BenchRegistry gRectRegShader(BlitMaskShaderFactory);
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