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1 /*
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 "SkColorSpaceXformSteps.h"
9 #include "SkRasterPipeline.h"
10 #include "SkTypes.h"
11 #include "Test.h"
12 
13 #include <math.h>
14 
DEF_TEST(srgb_roundtrip,r)15 DEF_TEST(srgb_roundtrip, r) {
16     for (int normalized = 0; normalized < 2; normalized++) {
17         uint32_t reds[256];
18         for (int i = 0; i < 256; i++) {
19             reds[i] = i;
20         }
21 
22         SkRasterPipeline_MemoryCtx ptr = { reds, 0 };
23 
24         sk_sp<SkColorSpace> sRGB = SkColorSpace::MakeSRGB(),
25                             linear = sRGB->makeLinearGamma();
26         const SkAlphaType upm = kUnpremul_SkAlphaType;
27 
28         SkColorSpaceXformSteps linearize{  sRGB.get(),upm,  linear.get(),upm},
29                                reencode {linear.get(),upm,    sRGB.get(),upm};
30 
31         SkRasterPipeline_<256> p;
32         p.append(SkRasterPipeline::load_8888,  &ptr);
33         linearize.apply(&p, !!normalized);
34         reencode .apply(&p, !!normalized);
35         p.append(SkRasterPipeline::store_8888, &ptr);
36 
37         p.run(0,0,256,1);
38 
39         for (int i = 0; i < 256; i++) {
40             if (reds[i] != (uint32_t)i) {
41                 ERRORF(r, "%d doesn't round trip, %d", i, reds[i]);
42             }
43         }
44     }
45 }
46 
DEF_TEST(srgb_edge_cases,r)47 DEF_TEST(srgb_edge_cases, r) {
48     // We need to run at least 4 pixels to make sure we hit all specializations.
49     float colors[4][4] = { {0,1,1,1}, {0,0,0,0}, {0,0,0,0}, {0,0,0,0} };
50     auto& color = colors[0];
51 
52     SkRasterPipeline_MemoryCtx dst = { &color, 0 };
53 
54     sk_sp<SkColorSpace> sRGB = SkColorSpace::MakeSRGB(),
55                         linear = sRGB->makeLinearGamma();
56     const SkAlphaType upm = kUnpremul_SkAlphaType;
57 
58     SkColorSpaceXformSteps steps {linear.get(),upm,    sRGB.get(),upm};
59 
60     SkSTArenaAlloc<256> alloc;
61     SkRasterPipeline p(&alloc);
62     p.append_constant_color(&alloc, color);
63     steps.apply(&p, true/*inputs are normalized*/);
64     p.append(SkRasterPipeline::store_f32, &dst);
65     p.run(0,0,4,1);
66 
67     if (color[0] != 0.0f) {
68         ERRORF(r, "expected to_srgb() to map 0.0f to 0.0f, got %f", color[0]);
69     }
70     if (color[1] != 1.0f) {
71         float f = color[1];
72         uint32_t x;
73         memcpy(&x, &f, 4);
74         ERRORF(r, "expected to_srgb() to map 1.0f to 1.0f, got %f (%08x)", color[1], x);
75     }
76 }
77 
78 // Linearize and then re-encode pixel values, testing that the output is close to the input.
test_roundtripping(skiatest::Reporter * r,sk_sp<SkColorSpace> cs,float range,float tolerance,bool normalized)79 static void test_roundtripping(skiatest::Reporter* r,
80                                sk_sp<SkColorSpace> cs,
81                                float range,
82                                float tolerance,
83                                bool normalized) {
84     static const int kSteps = 128;
85     SkColor4f rgba[kSteps];
86 
87     auto expected = [=](int i) {
88         float scale = range / (3*kSteps);
89         return SkColor4f{
90             (3*i+0) * scale,
91             (3*i+1) * scale,
92             (3*i+2) * scale,
93             1.0f,
94         };
95     };
96 
97     for (int i = 0; i < kSteps; i++) {
98         rgba[i] = expected(i);
99     }
100 
101     SkRasterPipeline_MemoryCtx ptr = { rgba, 0 };
102 
103     sk_sp<SkColorSpace> linear = cs->makeLinearGamma();
104     const SkAlphaType upm = kUnpremul_SkAlphaType;
105 
106     SkColorSpaceXformSteps linearize{    cs.get(),upm,  linear.get(),upm},
107                            reencode {linear.get(),upm,      cs.get(),upm};
108 
109     SkRasterPipeline_<256> p;
110     p.append(SkRasterPipeline::load_f32,  &ptr);
111     linearize.apply(&p, normalized);
112     reencode .apply(&p, normalized);
113     p.append(SkRasterPipeline::store_f32, &ptr);
114     p.run(0,0,kSteps,1);
115 
116     auto close = [=](float x, float y) {
117         return x == y
118             || (x/y < tolerance && y/x < tolerance);
119     };
120 
121     for (int i = 0; i < kSteps; i++) {
122         SkColor4f want = expected(i);
123     #if 0
124         SkDebugf("got %g %g %g, want %g %g %g\n",
125                  rgba[i].fR, rgba[i].fG, rgba[i].fB,
126                  want.fR, want.fG, want.fB);
127     #endif
128         REPORTER_ASSERT(r, close(rgba[i].fR, want.fR));
129         REPORTER_ASSERT(r, close(rgba[i].fG, want.fG));
130         REPORTER_ASSERT(r, close(rgba[i].fB, want.fB));
131     }
132 }
133 
DEF_TEST(srgb_roundtrip_extended,r)134 DEF_TEST(srgb_roundtrip_extended, r) {
135     // We're lying when we set normalized=true, but it allows us to test the to_srgb/from_srgb path.
136     test_roundtripping(r,  SkColorSpace::MakeSRGB(), 2.0f, 1.025f, true);
137 
138     // This normalized=false path should have much better round-tripping properties.
139     test_roundtripping(r,  SkColorSpace::MakeSRGB(), 10000.0f, 1.001f, false);
140 }
141