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1 /* | 1 /* |
2 * Copyright 2016 Google Inc. | 2 * Copyright 2016 Google Inc. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license that can be | 4 * Use of this source code is governed by a BSD-style license that can be |
5 * found in the LICENSE file. | 5 * found in the LICENSE file. |
6 */ | 6 */ |
7 | 7 |
8 #ifndef SkColorXform_opts_DEFINED | 8 #ifndef SkColorXform_opts_DEFINED |
9 #define SkColorXform_opts_DEFINED | 9 #define SkColorXform_opts_DEFINED |
10 | 10 |
11 #include "SkNx.h" | 11 #include "SkNx.h" |
12 #include "SkColorPriv.h" | 12 #include "SkColorPriv.h" |
| 13 #include "SkSRGB.h" |
13 | 14 |
14 extern const float sk_linear_from_srgb[256]; | |
15 extern const float sk_linear_from_2dot2[256]; | 15 extern const float sk_linear_from_2dot2[256]; |
16 | 16 |
17 namespace SK_OPTS_NS { | 17 namespace SK_OPTS_NS { |
18 | 18 |
19 static Sk4f linear_to_2dot2(const Sk4f& x) { | 19 static Sk4f linear_to_2dot2(const Sk4f& x) { |
20 // x^(29/64) is a very good approximation of the true value, x^(1/2.2). | 20 // x^(29/64) is a very good approximation of the true value, x^(1/2.2). |
21 auto x2 = x.rsqrt(), // x^(-1/2) | 21 auto x2 = x.rsqrt(), // x^(-1/2) |
22 x32 = x2.rsqrt().rsqrt().rsqrt().rsqrt(), // x^(-1/32) | 22 x32 = x2.rsqrt().rsqrt().rsqrt().rsqrt(), // x^(-1/32) |
23 x64 = x32.rsqrt(); // x^(+1/64) | 23 x64 = x32.rsqrt(); // x^(+1/64) |
24 | 24 |
25 // 29 = 32 - 2 - 1 | 25 // 29 = 32 - 2 - 1 |
26 return 255.0f * x2.invert() * x32 * x64.invert(); | 26 return 255.0f * x2.invert() * x32 * x64.invert(); |
27 } | 27 } |
28 | 28 |
29 static Sk4f linear_to_srgb(const Sk4f& x) { | |
30 // Approximation of the sRGB gamma curve (within 1 when scaled to 8-bit pixe
ls). | |
31 // For 0.00000f <= x < 0.00349f, 12.92 * x | |
32 // For 0.00349f <= x <= 1.00000f, 0.679*(x.^0.5) + 0.423*x.^(0.25) - 0.10
1 | |
33 // Note that 0.00349 was selected because it is a point where both functions
produce the | |
34 // same pixel value when rounded. | |
35 auto rsqrt = x.rsqrt(), | |
36 sqrt = rsqrt.invert(), | |
37 ftrt = rsqrt.rsqrt(); | |
38 | |
39 auto hi = (-0.101115084998961f * 255.0f) + | |
40 (+0.678513029959381f * 255.0f) * sqrt + | |
41 (+0.422602055039580f * 255.0f) * ftrt; | |
42 | |
43 auto lo = (12.92f * 255.0f) * x; | |
44 | |
45 auto mask = (x < 0.00349f); | |
46 return mask.thenElse(lo, hi); | |
47 } | |
48 | |
49 static Sk4f clamp_0_to_255(const Sk4f& x) { | 29 static Sk4f clamp_0_to_255(const Sk4f& x) { |
50 // The order of the arguments is important here. We want to make sure that
NaN | 30 // The order of the arguments is important here. We want to make sure that
NaN |
51 // clamps to zero. Note that max(NaN, 0) = 0, while max(0, NaN) = NaN. | 31 // clamps to zero. Note that max(NaN, 0) = 0, while max(0, NaN) = NaN. |
52 return Sk4f::Min(Sk4f::Max(x, 0.0f), 255.0f); | 32 return Sk4f::Min(Sk4f::Max(x, 0.0f), 255.0f); |
53 } | 33 } |
54 | 34 |
55 template <const float (&linear_from_curve)[256], Sk4f (*linear_to_curve)(const S
k4f&)> | 35 template <const float (&linear_from_curve)[256], Sk4f (*linear_to_curve)(const S
k4f&)> |
56 static void color_xform_RGB1(uint32_t* dst, const uint32_t* src, int len, | 36 static void color_xform_RGB1(uint32_t* dst, const uint32_t* src, int len, |
57 const float matrix[16]) { | 37 const float matrix[16]) { |
58 Sk4f rXgXbX = Sk4f::Load(matrix + 0), | 38 Sk4f rXgXbX = Sk4f::Load(matrix + 0), |
(...skipping 88 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
147 color_xform_RGB1<sk_linear_from_srgb, linear_to_2dot2>(dst, src, len, matrix
); | 127 color_xform_RGB1<sk_linear_from_srgb, linear_to_2dot2>(dst, src, len, matrix
); |
148 } | 128 } |
149 | 129 |
150 static void color_xform_RGB1_2dot2_to_2dot2(uint32_t* dst, const uint32_t* src,
int len, | 130 static void color_xform_RGB1_2dot2_to_2dot2(uint32_t* dst, const uint32_t* src,
int len, |
151 const float matrix[16]) { | 131 const float matrix[16]) { |
152 color_xform_RGB1<sk_linear_from_2dot2, linear_to_2dot2>(dst, src, len, matri
x); | 132 color_xform_RGB1<sk_linear_from_2dot2, linear_to_2dot2>(dst, src, len, matri
x); |
153 } | 133 } |
154 | 134 |
155 static void color_xform_RGB1_srgb_to_srgb(uint32_t* dst, const uint32_t* src, in
t len, | 135 static void color_xform_RGB1_srgb_to_srgb(uint32_t* dst, const uint32_t* src, in
t len, |
156 const float matrix[16]) { | 136 const float matrix[16]) { |
157 color_xform_RGB1<sk_linear_from_srgb, linear_to_srgb>(dst, src, len, matrix)
; | 137 color_xform_RGB1<sk_linear_from_srgb, sk_linear_to_srgb>(dst, src, len, matr
ix); |
158 } | 138 } |
159 | 139 |
160 static void color_xform_RGB1_2dot2_to_srgb(uint32_t* dst, const uint32_t* src, i
nt len, | 140 static void color_xform_RGB1_2dot2_to_srgb(uint32_t* dst, const uint32_t* src, i
nt len, |
161 const float matrix[16]) { | 141 const float matrix[16]) { |
162 color_xform_RGB1<sk_linear_from_2dot2, linear_to_srgb>(dst, src, len, matrix
); | 142 color_xform_RGB1<sk_linear_from_2dot2, sk_linear_to_srgb>(dst, src, len, mat
rix); |
163 } | 143 } |
164 | 144 |
165 } // namespace SK_OPTS_NS | 145 } // namespace SK_OPTS_NS |
166 | 146 |
167 #endif // SkColorXform_opts_DEFINED | 147 #endif // SkColorXform_opts_DEFINED |
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