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brianosman2c4b64e2016-09-07 07:04:44 -07001/*
2 * Copyright 2016 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
8#include "gm.h"
9
raftias7c602de2016-10-13 10:45:44 -070010#include "SkColorSpace_Base.h"
brianosman2c4b64e2016-09-07 07:04:44 -070011#include "SkGradientShader.h"
Brian Osman0d4ff6c2017-01-17 16:10:07 -050012#include "SkImagePriv.h"
brianosman2c4b64e2016-09-07 07:04:44 -070013#include "SkPM4fPriv.h"
raftias7c602de2016-10-13 10:45:44 -070014#include "SkSurface.h"
brianosman2c4b64e2016-09-07 07:04:44 -070015
16static const int gRectSize = 50;
17static const SkScalar gScalarSize = SkIntToScalar(gRectSize);
18static const int gTestWidth = 700;
19static const int gTestHeight = 300;
20
21struct CellRenderer {
22 virtual void draw(SkCanvas* canvas) = 0;
23 virtual const char* label() = 0;
24 virtual ~CellRenderer() {}
25};
26
27struct PaintColorCellRenderer : public CellRenderer {
28 PaintColorCellRenderer(SkColor color) : fColor(color) {}
29 void draw(SkCanvas* canvas) override {
30 canvas->drawColor(fColor);
31 }
32 const char* label() override {
33 return "Paint Color";
34 }
35protected:
36 SkColor fColor;
37};
38
39struct BitmapCellRenderer : public CellRenderer {
40 BitmapCellRenderer(SkColor color, SkFilterQuality quality, float scale = 1.0f)
41 : fQuality(quality) {
42 int scaledSize = SkFloatToIntRound(scale * gRectSize);
43 fBitmap.allocPixels(SkImageInfo::MakeS32(scaledSize, scaledSize, kPremul_SkAlphaType));
44 fBitmap.eraseColor(color);
45 const char* qualityNames[] = { "None", "Low", "Medium", "High" };
46 fLabel = SkStringPrintf("Bitmap (%s)", qualityNames[quality]);
47 }
48 void draw(SkCanvas* canvas) override {
49 SkPaint paint;
50 paint.setFilterQuality(fQuality);
51 canvas->drawBitmapRect(fBitmap, SkRect::MakeIWH(gRectSize, gRectSize), &paint);
52 }
53 const char* label() override {
54 return fLabel.c_str();
55 }
56protected:
57 SkFilterQuality fQuality;
58 SkBitmap fBitmap;
59 SkString fLabel;
60};
61
62struct GradientCellRenderer : public CellRenderer {
brianosmand4546092016-09-22 12:31:58 -070063 GradientCellRenderer(SkColor colorOne, SkColor colorTwo, bool manyStops) {
brianosman2c4b64e2016-09-07 07:04:44 -070064 fColors[0] = colorOne;
65 fColors[1] = colorTwo;
brianosmand4546092016-09-22 12:31:58 -070066 fManyStops = manyStops;
brianosman2c4b64e2016-09-07 07:04:44 -070067 }
68 void draw(SkCanvas* canvas) override {
69 SkPoint points[2] = {
70 SkPoint::Make(0, 0),
71 SkPoint::Make(0, gScalarSize)
72 };
73 SkPaint paint;
brianosmand4546092016-09-22 12:31:58 -070074 if (fManyStops) {
75 SkColor colors[4] ={
76 fColors[0], fColors[0], fColors[1], fColors[1]
77 };
78 paint.setShader(SkGradientShader::MakeLinear(points, colors, nullptr, 4,
79 SkShader::kClamp_TileMode));
80 } else {
81 paint.setShader(SkGradientShader::MakeLinear(points, fColors, nullptr, 2,
82 SkShader::kClamp_TileMode));
83 }
brianosman2c4b64e2016-09-07 07:04:44 -070084 canvas->drawPaint(paint);
85 }
86 const char* label() override {
87 return "Linear Gradient";
88 }
89protected:
90 SkColor fColors[2];
brianosmand4546092016-09-22 12:31:58 -070091 bool fManyStops;
brianosman2c4b64e2016-09-07 07:04:44 -070092};
93
94struct VerticesCellRenderer : public CellRenderer {
95 VerticesCellRenderer(SkColor colorOne, SkColor colorTwo) {
96 fColors[0] = fColors[1] = colorOne;
97 fColors[2] = fColors[3] = colorTwo;
98 }
99 void draw(SkCanvas* canvas) override {
100 SkPaint paint;
101 SkPoint vertices[4] = {
102 SkPoint::Make(0, 0),
103 SkPoint::Make(gScalarSize, 0),
104 SkPoint::Make(gScalarSize, gScalarSize),
105 SkPoint::Make(0, gScalarSize)
106 };
107 canvas->drawVertices(SkCanvas::kTriangleFan_VertexMode, 4, vertices, nullptr, fColors,
Mike Reed7d954ad2016-10-28 15:42:34 -0400108 SkBlendMode::kModulate, nullptr, 0, paint);
brianosman2c4b64e2016-09-07 07:04:44 -0700109 }
110 const char* label() override {
111 return "Vertices";
112 }
113protected:
114 SkColor fColors[4];
115};
116
Ben Wagner145dbcd2016-11-03 14:40:50 -0400117static void draw_gamut_grid(SkCanvas* canvas, SkTArray<std::unique_ptr<CellRenderer>>& renderers) {
brianosman2c4b64e2016-09-07 07:04:44 -0700118 // We want our colors in our wide gamut to be obviously visibly distorted from sRGB, so we use
119 // Wide Gamut RGB (with sRGB gamma, for HW acceleration) as the working space for this test:
120 const float gWideGamutRGB_toXYZD50[]{
brianosmande68d6c2016-09-09 10:36:17 -0700121 0.7161046f, 0.1009296f, 0.1471858f, // -> X
122 0.2581874f, 0.7249378f, 0.0168748f, // -> Y
123 0.0000000f, 0.0517813f, 0.7734287f, // -> Z
brianosman2c4b64e2016-09-07 07:04:44 -0700124 };
125
126 SkMatrix44 wideGamutRGB_toXYZD50(SkMatrix44::kUninitialized_Constructor);
127 wideGamutRGB_toXYZD50.set3x3RowMajorf(gWideGamutRGB_toXYZD50);
128
129 // Use the original canvas' color type, but account for gamma requirements
fmalitaed387722016-09-30 06:14:49 -0700130 SkImageInfo origInfo = canvas->imageInfo();
raftias94888332016-10-18 10:02:51 -0700131 sk_sp<SkColorSpace> srgbCS;
132 sk_sp<SkColorSpace> wideCS;
fmalitaed387722016-09-30 06:14:49 -0700133 switch (origInfo.colorType()) {
brianosman2c4b64e2016-09-07 07:04:44 -0700134 case kRGBA_8888_SkColorType:
135 case kBGRA_8888_SkColorType:
Brian Osman526972e2016-10-24 09:24:02 -0400136 srgbCS = SkColorSpace::MakeNamed(SkColorSpace::kSRGB_Named);
137 wideCS = SkColorSpace::MakeRGB(SkColorSpace::kSRGB_RenderTargetGamma,
raftias94888332016-10-18 10:02:51 -0700138 wideGamutRGB_toXYZD50);
brianosman2c4b64e2016-09-07 07:04:44 -0700139 break;
140 case kRGBA_F16_SkColorType:
Brian Osman526972e2016-10-24 09:24:02 -0400141 srgbCS = SkColorSpace::MakeNamed(SkColorSpace::kSRGBLinear_Named);
142 wideCS = SkColorSpace::MakeRGB(SkColorSpace::kLinear_RenderTargetGamma,
raftias94888332016-10-18 10:02:51 -0700143 wideGamutRGB_toXYZD50);
brianosman2c4b64e2016-09-07 07:04:44 -0700144 break;
145 default:
146 return;
147 }
raftias94888332016-10-18 10:02:51 -0700148 SkASSERT(srgbCS);
149 SkASSERT(wideCS);
brianosman2c4b64e2016-09-07 07:04:44 -0700150
Brian Osman0d4ff6c2017-01-17 16:10:07 -0500151 // Make our two working surfaces (one sRGB, one Wide)
fmalitaed387722016-09-30 06:14:49 -0700152 SkImageInfo srgbGamutInfo = SkImageInfo::Make(gRectSize, gRectSize, origInfo.colorType(),
brianosman2c4b64e2016-09-07 07:04:44 -0700153 kPremul_SkAlphaType, srgbCS);
fmalitaed387722016-09-30 06:14:49 -0700154 SkImageInfo wideGamutInfo = SkImageInfo::Make(gRectSize, gRectSize, origInfo.colorType(),
brianosman2c4b64e2016-09-07 07:04:44 -0700155 kPremul_SkAlphaType, wideCS);
Brian Osman0d4ff6c2017-01-17 16:10:07 -0500156
brianosman2c4b64e2016-09-07 07:04:44 -0700157 sk_sp<SkSurface> srgbGamutSurface = canvas->makeSurface(srgbGamutInfo);
158 sk_sp<SkSurface> wideGamutSurface = canvas->makeSurface(wideGamutInfo);
fmalitaed387722016-09-30 06:14:49 -0700159 if (!srgbGamutSurface || !wideGamutSurface) {
160 return;
brianosman2c4b64e2016-09-07 07:04:44 -0700161 }
162 SkCanvas* srgbGamutCanvas = srgbGamutSurface->getCanvas();
163 SkCanvas* wideGamutCanvas = wideGamutSurface->getCanvas();
164
165 SkPaint textPaint;
166 textPaint.setAntiAlias(true);
167 textPaint.setColor(SK_ColorWHITE);
168 sk_tool_utils::set_portable_typeface(&textPaint);
169
170 SkScalar x = 0, y = 0;
171 SkScalar textHeight = textPaint.getFontSpacing();
172
173 for (const auto& renderer : renderers) {
174 srgbGamutCanvas->clear(SK_ColorBLACK);
175 renderer->draw(srgbGamutCanvas);
176 wideGamutCanvas->clear(SK_ColorBLACK);
177 renderer->draw(wideGamutCanvas);
178
179 canvas->drawText(renderer->label(), strlen(renderer->label()), x, y + textHeight,
180 textPaint);
181
Brian Osman0d4ff6c2017-01-17 16:10:07 -0500182 // Re-interpret the off-screen images, so we can see the raw data (eg, Wide gamut squares
183 // will look desaturated, relative to sRGB).
184 auto srgbImage = srgbGamutSurface->makeImageSnapshot();
185 srgbImage = SkImageMakeRasterCopyAndAssignColorSpace(srgbImage.get(),
186 origInfo.colorSpace());
187 canvas->drawImage(srgbImage, x, y + textHeight + 5);
brianosman2c4b64e2016-09-07 07:04:44 -0700188 x += (gScalarSize + 1);
189
Brian Osman0d4ff6c2017-01-17 16:10:07 -0500190 auto wideImage = wideGamutSurface->makeImageSnapshot();
191 wideImage = SkImageMakeRasterCopyAndAssignColorSpace(wideImage.get(),
192 origInfo.colorSpace());
193 canvas->drawImage(wideImage, x, y + textHeight + 5);
brianosman2c4b64e2016-09-07 07:04:44 -0700194 x += (gScalarSize + 10);
195
196 if (x + (2 * gScalarSize + 1) > gTestWidth) {
197 x = 0;
198 y += (textHeight + gScalarSize + 10);
199 }
200 }
201}
202
203DEF_SIMPLE_GM_BG(gamut, canvas, gTestWidth, gTestHeight, SK_ColorBLACK) {
Ben Wagner145dbcd2016-11-03 14:40:50 -0400204 SkTArray<std::unique_ptr<CellRenderer>> renderers;
brianosman2c4b64e2016-09-07 07:04:44 -0700205
206 // sRGB primaries, rendered as paint color
Ben Wagner145dbcd2016-11-03 14:40:50 -0400207 renderers.emplace_back(new PaintColorCellRenderer(SK_ColorRED));
208 renderers.emplace_back(new PaintColorCellRenderer(SK_ColorGREEN));
brianosman2c4b64e2016-09-07 07:04:44 -0700209
210 // sRGB primaries, rendered as bitmaps
Ben Wagner145dbcd2016-11-03 14:40:50 -0400211 renderers.emplace_back(new BitmapCellRenderer(SK_ColorRED, kNone_SkFilterQuality));
212 renderers.emplace_back(new BitmapCellRenderer(SK_ColorGREEN, kLow_SkFilterQuality));
brianosman2c4b64e2016-09-07 07:04:44 -0700213 // Larger bitmap to trigger mipmaps
Ben Wagner145dbcd2016-11-03 14:40:50 -0400214 renderers.emplace_back(new BitmapCellRenderer(SK_ColorRED, kMedium_SkFilterQuality, 2.0f));
brianosman2c4b64e2016-09-07 07:04:44 -0700215 // Smaller bitmap to trigger bicubic
Ben Wagner145dbcd2016-11-03 14:40:50 -0400216 renderers.emplace_back(new BitmapCellRenderer(SK_ColorGREEN, kHigh_SkFilterQuality, 0.5f));
brianosman2c4b64e2016-09-07 07:04:44 -0700217
218 // Various gradients involving sRGB primaries and white/black
brianosmand4546092016-09-22 12:31:58 -0700219
220 // First with just two stops (implemented with uniforms on GPU)
Ben Wagner145dbcd2016-11-03 14:40:50 -0400221 renderers.emplace_back(new GradientCellRenderer(SK_ColorRED, SK_ColorGREEN, false));
222 renderers.emplace_back(new GradientCellRenderer(SK_ColorGREEN, SK_ColorBLACK, false));
223 renderers.emplace_back(new GradientCellRenderer(SK_ColorGREEN, SK_ColorWHITE, false));
brianosmand4546092016-09-22 12:31:58 -0700224
225 // ... and then with four stops (implemented with textures on GPU)
Ben Wagner145dbcd2016-11-03 14:40:50 -0400226 renderers.emplace_back(new GradientCellRenderer(SK_ColorRED, SK_ColorGREEN, true));
227 renderers.emplace_back(new GradientCellRenderer(SK_ColorGREEN, SK_ColorBLACK, true));
228 renderers.emplace_back(new GradientCellRenderer(SK_ColorGREEN, SK_ColorWHITE, true));
brianosman2c4b64e2016-09-07 07:04:44 -0700229
230 // Vertex colors
Ben Wagner145dbcd2016-11-03 14:40:50 -0400231 renderers.emplace_back(new VerticesCellRenderer(SK_ColorRED, SK_ColorRED));
232 renderers.emplace_back(new VerticesCellRenderer(SK_ColorRED, SK_ColorGREEN));
brianosman2c4b64e2016-09-07 07:04:44 -0700233
234 draw_gamut_grid(canvas, renderers);
235}