2011-07-28 14:26:00 +00:00
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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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2011-04-13 17:44:24 +00:00
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#include "SkBenchmark.h"
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#include "SkBitmap.h"
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#include "SkCanvas.h"
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#include "SkColorPriv.h"
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#include "SkGradientShader.h"
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#include "SkPaint.h"
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#include "SkShader.h"
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#include "SkString.h"
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#include "SkUnitMapper.h"
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struct GradData {
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int fCount;
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const SkColor* fColors;
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const SkScalar* fPos;
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};
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static const SkColor gColors[] = {
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SK_ColorRED, SK_ColorGREEN, SK_ColorBLUE, SK_ColorWHITE, SK_ColorBLACK
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};
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static const SkScalar gPos0[] = { 0, SK_Scalar1 };
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static const SkScalar gPos1[] = { SK_Scalar1/4, SK_Scalar1*3/4 };
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static const SkScalar gPos2[] = {
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0, SK_Scalar1/8, SK_Scalar1/2, SK_Scalar1*7/8, SK_Scalar1
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};
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static const GradData gGradData[] = {
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{ 2, gColors, NULL },
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{ 2, gColors, gPos0 },
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{ 2, gColors, gPos1 },
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{ 5, gColors, NULL },
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{ 5, gColors, gPos2 }
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};
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2011-09-26 15:03:55 +00:00
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/// Ignores scale
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static SkShader* MakeLinear(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale) {
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return SkGradientShader::CreateLinear(pts, data.fColors, data.fPos,
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data.fCount, tm, mapper);
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}
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static SkShader* MakeRadial(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale) {
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SkPoint center;
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center.set(SkScalarAve(pts[0].fX, pts[1].fX),
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SkScalarAve(pts[0].fY, pts[1].fY));
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return SkGradientShader::CreateRadial(center, center.fX * scale,
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data.fColors,
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data.fPos, data.fCount, tm, mapper);
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}
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2011-09-26 15:03:55 +00:00
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/// Ignores scale
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2011-04-13 17:44:24 +00:00
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static SkShader* MakeSweep(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale) {
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SkPoint center;
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center.set(SkScalarAve(pts[0].fX, pts[1].fX),
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SkScalarAve(pts[0].fY, pts[1].fY));
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return SkGradientShader::CreateSweep(center.fX, center.fY, data.fColors,
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data.fPos, data.fCount, mapper);
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}
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2011-09-26 15:03:55 +00:00
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/// Ignores scale
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2011-04-13 17:44:24 +00:00
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static SkShader* Make2Radial(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale) {
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SkPoint center0, center1;
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center0.set(SkScalarAve(pts[0].fX, pts[1].fX),
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SkScalarAve(pts[0].fY, pts[1].fY));
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center1.set(SkScalarInterp(pts[0].fX, pts[1].fX, SkIntToScalar(3)/5),
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SkScalarInterp(pts[0].fY, pts[1].fY, SkIntToScalar(1)/4));
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return SkGradientShader::CreateTwoPointRadial(
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center1, (pts[1].fX - pts[0].fX) / 7,
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center0, (pts[1].fX - pts[0].fX) / 2,
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data.fColors, data.fPos, data.fCount, tm, mapper);
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}
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/// Ignores scale
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static SkShader* MakeConical(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale) {
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SkPoint center0, center1;
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center0.set(SkScalarAve(pts[0].fX, pts[1].fX),
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SkScalarAve(pts[0].fY, pts[1].fY));
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center1.set(SkScalarInterp(pts[0].fX, pts[1].fX, SkIntToScalar(3)/5),
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SkScalarInterp(pts[0].fY, pts[1].fY, SkIntToScalar(1)/4));
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return SkGradientShader::CreateTwoPointConical(center1, (pts[1].fX - pts[0].fX) / 7,
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center0, (pts[1].fX - pts[0].fX) / 2,
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data.fColors, data.fPos, data.fCount, tm, mapper);
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}
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typedef SkShader* (*GradMaker)(const SkPoint pts[2], const GradData& data,
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SkShader::TileMode tm, SkUnitMapper* mapper,
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float scale);
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static const struct {
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GradMaker fMaker;
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const char* fName;
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int fRepeat;
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} gGrads[] = {
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{ MakeLinear, "linear", 15 },
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{ MakeRadial, "radial1", 10 },
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{ MakeSweep, "sweep", 1 },
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{ Make2Radial, "radial2", 5 },
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{ MakeConical, "conical", 5 },
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};
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enum GradType { // these must match the order in gGrads
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kLinear_GradType,
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kRadial_GradType,
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kSweep_GradType,
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kRadial2_GradType,
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kConical_GradType
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};
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enum GeomType {
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kRect_GeomType,
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kOval_GeomType
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};
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2011-06-15 21:17:37 +00:00
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static const char* tilemodename(SkShader::TileMode tm) {
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switch (tm) {
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case SkShader::kClamp_TileMode:
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return "clamp";
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case SkShader::kRepeat_TileMode:
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return "repeat";
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case SkShader::kMirror_TileMode:
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return "mirror";
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default:
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SkASSERT(!"unknown tilemode");
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return "error";
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}
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}
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static const char* geomtypename(GeomType gt) {
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switch (gt) {
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case kRect_GeomType:
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return "rectangle";
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case kOval_GeomType:
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return "oval";
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default:
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SkASSERT(!"unknown geometry type");
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return "error";
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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class GradientBench : public SkBenchmark {
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SkString fName;
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SkShader* fShader;
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int fCount;
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enum {
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W = 400,
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H = 400,
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N = 1
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};
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public:
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GradientBench(void* param, GradType gradType,
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SkShader::TileMode tm = SkShader::kClamp_TileMode,
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GeomType geomType = kRect_GeomType,
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float scale = 1.0f)
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: INHERITED(param) {
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fName.printf("gradient_%s_%s", gGrads[gradType].fName,
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tilemodename(tm));
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if (geomType != kRect_GeomType) {
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fName.append("_");
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fName.append(geomtypename(geomType));
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}
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const SkPoint pts[2] = {
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{ 0, 0 },
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{ SkIntToScalar(W), SkIntToScalar(H) }
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};
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2011-10-28 15:34:49 +00:00
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fCount = SkBENCHLOOP(N * gGrads[gradType].fRepeat);
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fShader = gGrads[gradType].fMaker(pts, gGradData[0], tm, NULL, scale);
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fGeomType = geomType;
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}
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virtual ~GradientBench() {
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fShader->unref();
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}
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protected:
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virtual const char* onGetName() {
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return fName.c_str();
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}
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virtual void onDraw(SkCanvas* canvas) {
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SkPaint paint;
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this->setupPaint(&paint);
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paint.setShader(fShader);
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SkRect r = { 0, 0, SkIntToScalar(W), SkIntToScalar(H) };
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for (int i = 0; i < fCount; i++) {
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switch (fGeomType) {
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case kRect_GeomType:
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canvas->drawRect(r, paint);
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break;
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case kOval_GeomType:
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canvas->drawOval(r, paint);
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break;
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}
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}
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}
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private:
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typedef SkBenchmark INHERITED;
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GeomType fGeomType;
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};
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2011-06-16 13:14:19 +00:00
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class Gradient2Bench : public SkBenchmark {
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public:
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Gradient2Bench(void* param) : INHERITED(param) {}
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protected:
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virtual const char* onGetName() {
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return "gradient_create";
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}
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virtual void onDraw(SkCanvas* canvas) {
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SkPaint paint;
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this->setupPaint(&paint);
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const SkRect r = { 0, 0, SkIntToScalar(4), SkIntToScalar(4) };
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const SkPoint pts[] = {
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{ 0, 0 },
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{ SkIntToScalar(100), SkIntToScalar(100) },
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};
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for (int i = 0; i < SkBENCHLOOP(1000); i++) {
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const int a = i % 256;
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SkColor colors[] = {
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SK_ColorBLACK,
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SkColorSetARGB(a, a, a, a),
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SK_ColorWHITE };
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SkShader* s = SkGradientShader::CreateLinear(pts, colors, NULL,
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SK_ARRAY_COUNT(colors),
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SkShader::kClamp_TileMode);
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paint.setShader(s)->unref();
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canvas->drawRect(r, 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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static SkBenchmark* Fact0(void* p) { return new GradientBench(p, kLinear_GradType); }
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static SkBenchmark* Fact01(void* p) { return new GradientBench(p, kLinear_GradType, SkShader::kMirror_TileMode); }
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// Draw a radial gradient of radius 1/2 on a rectangle; half the lines should
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// be completely pinned, the other half should pe partially pinned
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static SkBenchmark* Fact1(void* p) { return new GradientBench(p, kRadial_GradType, SkShader::kClamp_TileMode, kRect_GeomType, 0.5f); }
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// Draw a radial gradient on a circle of equal size; all the lines should
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// hit the unpinned fast path (so long as GradientBench.W == H)
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static SkBenchmark* Fact1o(void* p) { return new GradientBench(p, kRadial_GradType, SkShader::kClamp_TileMode, kOval_GeomType); }
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static SkBenchmark* Fact11(void* p) { return new GradientBench(p, kRadial_GradType, SkShader::kMirror_TileMode); }
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static SkBenchmark* Fact2(void* p) { return new GradientBench(p, kSweep_GradType); }
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static SkBenchmark* Fact3(void* p) { return new GradientBench(p, kRadial2_GradType); }
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static SkBenchmark* Fact31(void* p) { return new GradientBench(p, kRadial2_GradType, SkShader::kMirror_TileMode); }
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static SkBenchmark* Fact5(void* p) { return new GradientBench(p, kConical_GradType); }
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static SkBenchmark* Fact4(void* p) { return new Gradient2Bench(p); }
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static BenchRegistry gReg0(Fact0);
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static BenchRegistry gReg01(Fact01);
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static BenchRegistry gReg1(Fact1);
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static BenchRegistry gReg1o(Fact1o);
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static BenchRegistry gReg11(Fact11);
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static BenchRegistry gReg2(Fact2);
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static BenchRegistry gReg3(Fact3);
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static BenchRegistry gReg31(Fact31);
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static BenchRegistry gReg5(Fact5);
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static BenchRegistry gReg4(Fact4);
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