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reed6d3cef92016-01-22 01:04:29 -08001/*
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
herb42da45d2016-04-08 14:24:37 -07008#include "SkBitmapProcShader.h"
reed6d3cef92016-01-22 01:04:29 -08009#include "SkColor.h"
reed5f34e8e2016-01-23 14:19:06 -080010#include "SkColorMatrixFilter.h"
reed7f225cf2016-01-23 19:37:56 -080011#include "SkGradientShader.h"
12#include "SkImage.h"
reeddd9ffea2016-02-18 12:39:14 -080013#include "SkPM4f.h"
reed7f225cf2016-01-23 19:37:56 -080014#include "SkShader.h"
15
reed6d3cef92016-01-22 01:04:29 -080016#include "Test.h"
17#include "SkRandom.h"
18
reed7f225cf2016-01-23 19:37:56 -080019const float kTolerance = 1.0f / (1 << 20);
20
21static bool nearly_equal(float a, float b, float tol = kTolerance) {
22 SkASSERT(tol >= 0);
23 return fabsf(a - b) <= tol;
24}
25
26static bool nearly_equal(const SkPM4f a, const SkPM4f& b, float tol = kTolerance) {
27 for (int i = 0; i < 4; ++i) {
28 if (!nearly_equal(a.fVec[i], b.fVec[i], tol)) {
29 return false;
30 }
31 }
32 return true;
33}
34
reed6d3cef92016-01-22 01:04:29 -080035DEF_TEST(SkColor4f_FromColor, reporter) {
36 const struct {
37 SkColor fC;
38 SkColor4f fC4;
39 } recs[] = {
brianosmane074d1f2016-06-24 06:31:47 -070040 { SK_ColorBLACK, { 0, 0, 0, 1 } },
reed6d3cef92016-01-22 01:04:29 -080041 { SK_ColorWHITE, { 1, 1, 1, 1 } },
brianosmane074d1f2016-06-24 06:31:47 -070042 { SK_ColorRED, { 1, 0, 0, 1 } },
43 { SK_ColorGREEN, { 0, 1, 0, 1 } },
44 { SK_ColorBLUE, { 0, 0, 1, 1 } },
reed6d3cef92016-01-22 01:04:29 -080045 { 0, { 0, 0, 0, 0 } },
reed6d3cef92016-01-22 01:04:29 -080046 };
47
48 for (const auto& r : recs) {
49 SkColor4f c4 = SkColor4f::FromColor(r.fC);
50 REPORTER_ASSERT(reporter, c4 == r.fC4);
51 }
52}
53
reed7f225cf2016-01-23 19:37:56 -080054DEF_TEST(Color4f_premul, reporter) {
reed6d3cef92016-01-22 01:04:29 -080055 SkRandom rand;
56
57 for (int i = 0; i < 1000000; ++i) {
58 // First just test opaque colors, so that the premul should be exact
59 SkColor4f c4 {
brianosmane074d1f2016-06-24 06:31:47 -070060 rand.nextUScalar1(), rand.nextUScalar1(), rand.nextUScalar1(), 1
reed6d3cef92016-01-22 01:04:29 -080061 };
62 SkPM4f pm4 = c4.premul();
reed93bb0802016-03-08 10:09:18 -080063 REPORTER_ASSERT(reporter, pm4.a() == c4.fA);
64 REPORTER_ASSERT(reporter, pm4.r() == c4.fA * c4.fR);
65 REPORTER_ASSERT(reporter, pm4.g() == c4.fA * c4.fG);
66 REPORTER_ASSERT(reporter, pm4.b() == c4.fA * c4.fB);
reed6d3cef92016-01-22 01:04:29 -080067
68 // We compare with a tolerance, in case our premul multiply is implemented at slightly
69 // different precision than the test code.
70 c4.fA = rand.nextUScalar1();
71 pm4 = c4.premul();
72 REPORTER_ASSERT(reporter, pm4.fVec[SK_A_INDEX] == c4.fA);
reed93bb0802016-03-08 10:09:18 -080073 REPORTER_ASSERT(reporter, nearly_equal(pm4.r(), c4.fA * c4.fR));
74 REPORTER_ASSERT(reporter, nearly_equal(pm4.g(), c4.fA * c4.fG));
75 REPORTER_ASSERT(reporter, nearly_equal(pm4.b(), c4.fA * c4.fB));
reed6d3cef92016-01-22 01:04:29 -080076 }
77}
reed7f225cf2016-01-23 19:37:56 -080078
79//////////////////////////////////////////////////////////////////////////////////////////////////
80
reedd053ce92016-03-22 10:17:23 -070081static sk_sp<SkColorFilter> make_mode_cf() {
82 return SkColorFilter::MakeModeFilter(0xFFBB8855, SkXfermode::kPlus_Mode);
reed3b69b822016-01-24 11:15:14 -080083}
reed7f225cf2016-01-23 19:37:56 -080084
reedd053ce92016-03-22 10:17:23 -070085static sk_sp<SkColorFilter> make_mx_cf() {
reed3b69b822016-01-24 11:15:14 -080086 const float mx[] = {
87 0.5f, 0, 0, 0, 0.1f,
88 0, 0.5f, 0, 0, 0.2f,
89 0, 0, 1, 0, -0.1f,
90 0, 0, 0, 1, 0,
91 };
reedd053ce92016-03-22 10:17:23 -070092 return SkColorFilter::MakeMatrixFilterRowMajor255(mx);
reed3b69b822016-01-24 11:15:14 -080093}
94
reedd053ce92016-03-22 10:17:23 -070095static sk_sp<SkColorFilter> make_compose_cf() {
96 return SkColorFilter::MakeComposeFilter(make_mode_cf(), make_mx_cf());
reed3b69b822016-01-24 11:15:14 -080097}
98
reed93bb0802016-03-08 10:09:18 -080099static bool compare_spans(const SkPM4f span4f[], const SkPMColor span4b[], int count,
100 float tolerance = 1.0f/255) {
reed7f225cf2016-01-23 19:37:56 -0800101 for (int i = 0; i < count; ++i) {
102 SkPM4f c0 = SkPM4f::FromPMColor(span4b[i]);
103 SkPM4f c1 = span4f[i];
reed93bb0802016-03-08 10:09:18 -0800104 if (!nearly_equal(c0, c1, tolerance)) {
105 return false;
106 }
reed7f225cf2016-01-23 19:37:56 -0800107 }
reed93bb0802016-03-08 10:09:18 -0800108 return true;
reed7f225cf2016-01-23 19:37:56 -0800109}
110
reed7f225cf2016-01-23 19:37:56 -0800111DEF_TEST(Color4f_colorfilter, reporter) {
112 struct {
reedd053ce92016-03-22 10:17:23 -0700113 sk_sp<SkColorFilter> (*fFact)();
114 bool fSupports4f;
115 const char* fName;
reed7f225cf2016-01-23 19:37:56 -0800116 } recs[] = {
reed93bb0802016-03-08 10:09:18 -0800117 { make_mode_cf, true, "mode" },
118 { make_mx_cf, true, "matrix" },
119 { make_compose_cf, true, "compose" },
reed7f225cf2016-01-23 19:37:56 -0800120 };
121
122 // prepare the src
123 const int N = 100;
124 SkPMColor src4b[N];
125 SkPM4f src4f[N];
126 SkRandom rand;
127 for (int i = 0; i < N; ++i) {
128 src4b[i] = SkPreMultiplyColor(rand.nextU());
129 src4f[i] = SkPM4f::FromPMColor(src4b[i]);
130 }
131 // confirm that our srcs are (nearly) equal
reed93bb0802016-03-08 10:09:18 -0800132 REPORTER_ASSERT(reporter, compare_spans(src4f, src4b, N));
reed7f225cf2016-01-23 19:37:56 -0800133
134 for (const auto& rec : recs) {
reedd053ce92016-03-22 10:17:23 -0700135 auto filter(rec.fFact());
reedc5b12282016-02-19 13:38:53 -0800136 SkPMColor dst4b[N];
137 filter->filterSpan(src4b, N, dst4b);
138 SkPM4f dst4f[N];
139 filter->filterSpan4f(src4f, N, dst4f);
reed93bb0802016-03-08 10:09:18 -0800140 REPORTER_ASSERT(reporter, compare_spans(dst4f, dst4b, N));
reed7f225cf2016-01-23 19:37:56 -0800141 }
142}
reed31255652016-02-08 12:56:56 -0800143
144///////////////////////////////////////////////////////////////////////////////////////////////////
145
146typedef SkPM4f (*SkXfermodeProc4f)(const SkPM4f& src, const SkPM4f& dst);
147
148static bool compare_procs(SkXfermodeProc proc32, SkXfermodeProc4f proc4f) {
149 const float kTolerance = 1.0f / 255;
150
151 const SkColor colors[] = {
152 0, 0xFF000000, 0xFFFFFFFF, 0x80FF0000
153 };
154
155 for (auto s32 : colors) {
156 SkPMColor s_pm32 = SkPreMultiplyColor(s32);
157 SkPM4f s_pm4f = SkColor4f::FromColor(s32).premul();
158 for (auto d32 : colors) {
159 SkPMColor d_pm32 = SkPreMultiplyColor(d32);
160 SkPM4f d_pm4f = SkColor4f::FromColor(d32).premul();
161
162 SkPMColor r32 = proc32(s_pm32, d_pm32);
163 SkPM4f r4f = proc4f(s_pm4f, d_pm4f);
164
165 SkPM4f r32_4f = SkPM4f::FromPMColor(r32);
166 if (!nearly_equal(r4f, r32_4f, kTolerance)) {
167 return false;
168 }
169 }
170 }
171 return true;
172}
173
174// Check that our Proc and Proc4f return (nearly) the same results
175//
176DEF_TEST(Color4f_xfermode_proc4f, reporter) {
177 // TODO: extend xfermodes so that all cases can be tested.
178 //
179 for (int mode = SkXfermode::kClear_Mode; mode <= SkXfermode::kScreen_Mode; ++mode) {
180 SkXfermodeProc proc32 = SkXfermode::GetProc((SkXfermode::Mode)mode);
181 SkXfermodeProc4f proc4f = SkXfermode::GetProc4f((SkXfermode::Mode)mode);
182 REPORTER_ASSERT(reporter, compare_procs(proc32, proc4f));
183 }
184}