xref: /aosp_15_r20/external/skia/modules/skcms/src/skcms_public.h (revision c8dee2aa9b3f27cf6c858bd81872bdeb2c07ed17)
1 /*
2  * Copyright 2018 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 #pragma once
9 
10 // skcms_public.h contains the entire public API for skcms.
11 
12 #ifndef SKCMS_API
13     #define SKCMS_API
14 #endif
15 
16 #include <stdbool.h>
17 #include <stddef.h>
18 #include <stdint.h>
19 #include <string.h>
20 
21 #ifdef __cplusplus
22 extern "C" {
23 #endif
24 
25 // A row-major 3x3 matrix (ie vals[row][col])
26 typedef struct skcms_Matrix3x3 {
27     float vals[3][3];
28 } skcms_Matrix3x3;
29 
30 // It is _not_ safe to alias the pointers to invert in-place.
31 SKCMS_API bool            skcms_Matrix3x3_invert(const skcms_Matrix3x3*, skcms_Matrix3x3*);
32 SKCMS_API skcms_Matrix3x3 skcms_Matrix3x3_concat(const skcms_Matrix3x3*, const skcms_Matrix3x3*);
33 
34 // A row-major 3x4 matrix (ie vals[row][col])
35 typedef struct skcms_Matrix3x4 {
36     float vals[3][4];
37 } skcms_Matrix3x4;
38 
39 // A transfer function mapping encoded values to linear values,
40 // represented by this 7-parameter piecewise function:
41 //
42 //   linear = sign(encoded) *  (c*|encoded| + f)       , 0 <= |encoded| < d
43 //          = sign(encoded) * ((a*|encoded| + b)^g + e), d <= |encoded|
44 //
45 // (A simple gamma transfer function sets g to gamma and a to 1.)
46 typedef struct skcms_TransferFunction {
47     float g, a,b,c,d,e,f;
48 } skcms_TransferFunction;
49 
50 SKCMS_API float skcms_TransferFunction_eval  (const skcms_TransferFunction*, float);
51 SKCMS_API bool  skcms_TransferFunction_invert(const skcms_TransferFunction*,
52                                               skcms_TransferFunction*);
53 
54 typedef enum skcms_TFType {
55     skcms_TFType_Invalid,
56     skcms_TFType_sRGBish,
57     skcms_TFType_PQish,
58     skcms_TFType_HLGish,
59     skcms_TFType_HLGinvish,
60 } skcms_TFType;
61 
62 // Identify which kind of transfer function is encoded in an skcms_TransferFunction
63 SKCMS_API skcms_TFType skcms_TransferFunction_getType(const skcms_TransferFunction*);
64 
65 // We can jam a couple alternate transfer function forms into skcms_TransferFunction,
66 // including those matching the general forms of the SMPTE ST 2084 PQ function or HLG.
67 //
68 // PQish:
69 //                              max(A + B|encoded|^C, 0)
70 //    linear = sign(encoded) * (------------------------) ^ F
71 //                                  D + E|encoded|^C
72 SKCMS_API bool skcms_TransferFunction_makePQish(skcms_TransferFunction*,
73                                                 float A, float B, float C,
74                                                 float D, float E, float F);
75 // HLGish:
76 //            { K * sign(encoded) * ( (R|encoded|)^G )          when 0   <= |encoded| <= 1/R
77 //   linear = { K * sign(encoded) * ( e^(a(|encoded|-c)) + b )  when 1/R <  |encoded|
78 SKCMS_API bool skcms_TransferFunction_makeScaledHLGish(skcms_TransferFunction*,
79                                                        float K, float R, float G,
80                                                        float a, float b, float c);
81 
82 // Compatibility shim with K=1 for old callers.
skcms_TransferFunction_makeHLGish(skcms_TransferFunction * fn,float R,float G,float a,float b,float c)83 static inline bool skcms_TransferFunction_makeHLGish(skcms_TransferFunction* fn,
84                                                      float R, float G,
85                                                      float a, float b, float c) {
86     return skcms_TransferFunction_makeScaledHLGish(fn, 1.0f, R,G, a,b,c);
87 }
88 
89 // PQ mapping encoded [0,1] to linear [0,1].
skcms_TransferFunction_makePQ(skcms_TransferFunction * tf)90 static inline bool skcms_TransferFunction_makePQ(skcms_TransferFunction* tf) {
91     return skcms_TransferFunction_makePQish(tf, -107/128.0f,         1.0f,   32/2523.0f
92                                               , 2413/128.0f, -2392/128.0f, 8192/1305.0f);
93 }
94 // HLG mapping encoded [0,1] to linear [0,12].
skcms_TransferFunction_makeHLG(skcms_TransferFunction * tf)95 static inline bool skcms_TransferFunction_makeHLG(skcms_TransferFunction* tf) {
96     return skcms_TransferFunction_makeHLGish(tf, 2.0f, 2.0f
97                                                , 1/0.17883277f, 0.28466892f, 0.55991073f);
98 }
99 
100 // Is this an ordinary sRGB-ish transfer function, or one of the HDR forms we support?
101 SKCMS_API bool skcms_TransferFunction_isSRGBish(const skcms_TransferFunction*);
102 SKCMS_API bool skcms_TransferFunction_isPQish  (const skcms_TransferFunction*);
103 SKCMS_API bool skcms_TransferFunction_isHLGish (const skcms_TransferFunction*);
104 
105 // Unified representation of 'curv' or 'para' tag data, or a 1D table from 'mft1' or 'mft2'
106 typedef union skcms_Curve {
107     struct {
108         // this needs to line up with alias_of_table_entries so we can tell if there are or
109         // are not table entries. If this is 0, this struct is a parametric function,
110         // otherwise it's a table entry.
111         uint32_t alias_of_table_entries;
112         skcms_TransferFunction parametric;
113     };
114     struct {
115         uint32_t table_entries;
116         const uint8_t* table_8;
117         const uint8_t* table_16;
118     };
119 } skcms_Curve;
120 
121 // Complex transforms between device space (A) and profile connection space (B):
122 //   A2B:  device -> [ "A" curves -> CLUT ] -> [ "M" curves -> matrix ] -> "B" curves -> PCS
123 //   B2A:  device <- [ "A" curves <- CLUT ] <- [ "M" curves <- matrix ] <- "B" curves <- PCS
124 
125 typedef struct skcms_A2B {
126     // Optional: N 1D "A" curves, followed by an N-dimensional CLUT.
127     // If input_channels == 0, these curves and CLUT are skipped,
128     // Otherwise, input_channels must be in [1, 4].
129     skcms_Curve     input_curves[4];
130     const uint8_t*  grid_8;
131     const uint8_t*  grid_16;
132     uint32_t        input_channels;
133     uint8_t         grid_points[4];
134 
135     // Optional: 3 1D "M" curves, followed by a color matrix.
136     // If matrix_channels == 0, these curves and matrix are skipped,
137     // Otherwise, matrix_channels must be 3.
138     skcms_Curve     matrix_curves[3];
139     skcms_Matrix3x4 matrix;
140     uint32_t        matrix_channels;
141 
142     // Required: 3 1D "B" curves. Always present, and output_channels must be 3.
143     uint32_t        output_channels; // list first to pack with matrix_channels
144     skcms_Curve     output_curves[3];
145 } skcms_A2B;
146 
147 typedef struct skcms_B2A {
148     // Required: 3 1D "B" curves. Always present, and input_channels must be 3.
149     skcms_Curve     input_curves[3];
150     uint32_t        input_channels;
151 
152     // Optional: a color matrix, followed by 3 1D "M" curves.
153     // If matrix_channels == 0, this matrix and these curves are skipped,
154     // Otherwise, matrix_channels must be 3.
155     uint32_t        matrix_channels; // list first to pack with input_channels
156     skcms_Curve     matrix_curves[3];
157     skcms_Matrix3x4 matrix;
158 
159     // Optional: an N-dimensional CLUT, followed by N 1D "A" curves.
160     // If output_channels == 0, this CLUT and these curves are skipped,
161     // Otherwise, output_channels must be in [1, 4].
162     skcms_Curve     output_curves[4];
163     const uint8_t*  grid_8;
164     const uint8_t*  grid_16;
165     uint8_t         grid_points[4];
166     uint32_t        output_channels;
167 } skcms_B2A;
168 
169 typedef struct skcms_CICP {
170     uint8_t color_primaries;
171     uint8_t transfer_characteristics;
172     uint8_t matrix_coefficients;
173     uint8_t video_full_range_flag;
174 } skcms_CICP;
175 
176 typedef struct skcms_ICCProfile {
177     const uint8_t* buffer;
178 
179     uint32_t size;
180     uint32_t data_color_space;
181     uint32_t pcs;
182     uint32_t tag_count;
183 
184     // skcms_Parse() will set commonly-used fields for you when possible:
185 
186     // If we can parse red, green and blue transfer curves from the profile,
187     // trc will be set to those three curves, and has_trc will be true.
188     skcms_Curve            trc[3];
189 
190     // If this profile's gamut can be represented by a 3x3 transform to XYZD50,
191     // skcms_Parse() sets toXYZD50 to that transform and has_toXYZD50 to true.
192     skcms_Matrix3x3        toXYZD50;
193 
194     // If the profile has a valid A2B0 or A2B1 tag, skcms_Parse() sets A2B to
195     // that data, and has_A2B to true.  skcms_ParseWithA2BPriority() does the
196     // same following any user-provided prioritization of A2B0, A2B1, or A2B2.
197     skcms_A2B              A2B;
198 
199     // If the profile has a valid B2A0 or B2A1 tag, skcms_Parse() sets B2A to
200     // that data, and has_B2A to true.  skcms_ParseWithA2BPriority() does the
201     // same following any user-provided prioritization of B2A0, B2A1, or B2A2.
202     skcms_B2A              B2A;
203 
204     // If the profile has a valid CICP tag, skcms_Parse() sets CICP to that data,
205     // and has_CICP to true.
206     skcms_CICP             CICP;
207 
208     bool                   has_trc;
209     bool                   has_toXYZD50;
210     bool                   has_A2B;
211     bool                   has_B2A;
212     bool                   has_CICP;
213 } skcms_ICCProfile;
214 
215 // The sRGB color profile is so commonly used that we offer a canonical skcms_ICCProfile for it.
216 SKCMS_API const skcms_ICCProfile* skcms_sRGB_profile(void);
217 // Ditto for XYZD50, the most common profile connection space.
218 SKCMS_API const skcms_ICCProfile* skcms_XYZD50_profile(void);
219 
220 SKCMS_API const skcms_TransferFunction* skcms_sRGB_TransferFunction(void);
221 SKCMS_API const skcms_TransferFunction* skcms_sRGB_Inverse_TransferFunction(void);
222 SKCMS_API const skcms_TransferFunction* skcms_Identity_TransferFunction(void);
223 
224 // Practical equality test for two skcms_ICCProfiles.
225 // The implementation is subject to change, but it will always try to answer
226 // "can I substitute A for B?" and "can I skip transforming from A to B?".
227 SKCMS_API bool skcms_ApproximatelyEqualProfiles(const skcms_ICCProfile* A,
228                                                 const skcms_ICCProfile* B);
229 
230 // Practical test that answers: Is curve roughly the inverse of inv_tf? Typically used by passing
231 // the inverse of a known parametric transfer function (like sRGB), to determine if a particular
232 // curve is very close to sRGB.
233 SKCMS_API bool skcms_AreApproximateInverses(const skcms_Curve* curve,
234                                             const skcms_TransferFunction* inv_tf);
235 
236 // Similar to above, answering the question for all three TRC curves of the given profile. Again,
237 // passing skcms_sRGB_InverseTransferFunction as inv_tf will answer the question:
238 // "Does this profile have a transfer function that is very close to sRGB?"
239 SKCMS_API bool skcms_TRCs_AreApproximateInverse(const skcms_ICCProfile* profile,
240                                                 const skcms_TransferFunction* inv_tf);
241 
242 // Parse an ICC profile and return true if possible, otherwise return false.
243 // Selects an A2B profile (if present) according to priority list (each entry 0-2).
244 // The buffer is not copied; it must remain valid as long as the skcms_ICCProfile will be used.
245 SKCMS_API bool skcms_ParseWithA2BPriority(const void*, size_t,
246                                           const int priority[], int priorities,
247                                           skcms_ICCProfile*);
248 
skcms_Parse(const void * buf,size_t len,skcms_ICCProfile * profile)249 static inline bool skcms_Parse(const void* buf, size_t len, skcms_ICCProfile* profile) {
250     // For continuity of existing user expectations,
251     // prefer A2B0 (perceptual) over A2B1 (relative colormetric), and ignore A2B2 (saturation).
252     const int priority[] = {0,1};
253     return skcms_ParseWithA2BPriority(buf, len,
254                                       priority, sizeof(priority)/sizeof(*priority),
255                                       profile);
256 }
257 
258 SKCMS_API bool skcms_ApproximateCurve(const skcms_Curve* curve,
259                                       skcms_TransferFunction* approx,
260                                       float* max_error);
261 
262 SKCMS_API bool skcms_GetCHAD(const skcms_ICCProfile*, skcms_Matrix3x3*);
263 SKCMS_API bool skcms_GetWTPT(const skcms_ICCProfile*, float xyz[3]);
264 
265 // Returns the number of channels of input data that are expected on the "A" side of the profile.
266 // This is useful for image codecs, where the image data and the accompanying profile might have
267 // conflicting data shapes. In some cases, the result is unclear or invalid. In that case, the
268 // function will return a negative value to signal an error.
269 SKCMS_API int skcms_GetInputChannelCount(const skcms_ICCProfile*);
270 
271 // These are common ICC signature values
272 enum {
273     // common data_color_space values
274     skcms_Signature_CMYK = 0x434D594B,
275     skcms_Signature_Gray = 0x47524159,
276     skcms_Signature_RGB  = 0x52474220,
277 
278     // pcs (or data_color_space)
279     skcms_Signature_Lab  = 0x4C616220,
280     skcms_Signature_XYZ  = 0x58595A20,
281 
282     // other, less common data_color_space values
283     skcms_Signature_CIELUV = 0x4C757620,
284     skcms_Signature_YCbCr  = 0x59436272,
285     skcms_Signature_CIEYxy = 0x59787920,
286     skcms_Signature_HSV    = 0x48535620,
287     skcms_Signature_HLS    = 0x484C5320,
288     skcms_Signature_CMY    = 0x434D5920,
289     skcms_Signature_2CLR   = 0x32434C52,
290     skcms_Signature_3CLR   = 0x33434C52,
291     skcms_Signature_4CLR   = 0x34434C52,
292     skcms_Signature_5CLR   = 0x35434C52,
293     skcms_Signature_6CLR   = 0x36434C52,
294     skcms_Signature_7CLR   = 0x37434C52,
295     skcms_Signature_8CLR   = 0x38434C52,
296     skcms_Signature_9CLR   = 0x39434C52,
297     skcms_Signature_10CLR  = 0x41434C52,
298     skcms_Signature_11CLR  = 0x42434C52,
299     skcms_Signature_12CLR  = 0x43434C52,
300     skcms_Signature_13CLR  = 0x44434C52,
301     skcms_Signature_14CLR  = 0x45434C52,
302     skcms_Signature_15CLR  = 0x46434C52,
303 };
304 
305 typedef enum skcms_PixelFormat {
306     skcms_PixelFormat_A_8,
307     skcms_PixelFormat_A_8_,
308     skcms_PixelFormat_G_8,
309     skcms_PixelFormat_G_8_,
310     skcms_PixelFormat_GA_88,  // Grayscale with alpha.
311     skcms_PixelFormat_GA_88_,
312 
313     skcms_PixelFormat_RGB_565,
314     skcms_PixelFormat_BGR_565,
315 
316     skcms_PixelFormat_ABGR_4444,
317     skcms_PixelFormat_ARGB_4444,
318 
319     skcms_PixelFormat_RGB_888,
320     skcms_PixelFormat_BGR_888,
321     skcms_PixelFormat_RGBA_8888,
322     skcms_PixelFormat_BGRA_8888,
323     skcms_PixelFormat_RGBA_8888_sRGB,  // Automatic sRGB encoding / decoding.
324     skcms_PixelFormat_BGRA_8888_sRGB,  // (Generally used with linear transfer functions.)
325 
326     skcms_PixelFormat_RGBA_1010102,
327     skcms_PixelFormat_BGRA_1010102,
328 
329     skcms_PixelFormat_RGB_161616LE,  // Little-endian.  Pointers must be 16-bit aligned.
330     skcms_PixelFormat_BGR_161616LE,
331     skcms_PixelFormat_RGBA_16161616LE,
332     skcms_PixelFormat_BGRA_16161616LE,
333 
334     skcms_PixelFormat_RGB_161616BE,  // Big-endian.  Pointers must be 16-bit aligned.
335     skcms_PixelFormat_BGR_161616BE,
336     skcms_PixelFormat_RGBA_16161616BE,
337     skcms_PixelFormat_BGRA_16161616BE,
338 
339     skcms_PixelFormat_RGB_hhh_Norm,  // 1-5-10 half-precision float in [0,1]
340     skcms_PixelFormat_BGR_hhh_Norm,  // Pointers must be 16-bit aligned.
341     skcms_PixelFormat_RGBA_hhhh_Norm,
342     skcms_PixelFormat_BGRA_hhhh_Norm,
343 
344     skcms_PixelFormat_RGB_hhh,  // 1-5-10 half-precision float.
345     skcms_PixelFormat_BGR_hhh,  // Pointers must be 16-bit aligned.
346     skcms_PixelFormat_RGBA_hhhh,
347     skcms_PixelFormat_BGRA_hhhh,
348 
349     skcms_PixelFormat_RGB_fff,  // 1-8-23 single-precision float (the normal kind).
350     skcms_PixelFormat_BGR_fff,  // Pointers must be 32-bit aligned.
351     skcms_PixelFormat_RGBA_ffff,
352     skcms_PixelFormat_BGRA_ffff,
353 
354     skcms_PixelFormat_RGB_101010x_XR,    // Note: This is located here to signal no clamping.
355     skcms_PixelFormat_BGR_101010x_XR,    // Compatible with MTLPixelFormatBGR10_XR.
356     skcms_PixelFormat_RGBA_10101010_XR,  // Note: This is located here to signal no clamping.
357     skcms_PixelFormat_BGRA_10101010_XR,  // Compatible with MTLPixelFormatBGRA10_XR.
358 } skcms_PixelFormat;
359 
360 // We always store any alpha channel linearly.  In the chart below, tf-1() is the inverse
361 // transfer function for the given color profile (applying the transfer function linearizes).
362 
363 // We treat opaque as a strong requirement, not just a performance hint: we will ignore
364 // any source alpha and treat it as 1.0, and will make sure that any destination alpha
365 // channel is filled with the equivalent of 1.0.
366 
367 // We used to offer multiple types of premultiplication, but now just one, PremulAsEncoded.
368 // This is the premul you're probably used to working with.
369 
370 typedef enum skcms_AlphaFormat {
371     skcms_AlphaFormat_Opaque,          // alpha is always opaque
372                                        //   tf-1(r),   tf-1(g),   tf-1(b),   1.0
373     skcms_AlphaFormat_Unpremul,        // alpha and color are unassociated
374                                        //   tf-1(r),   tf-1(g),   tf-1(b),   a
375     skcms_AlphaFormat_PremulAsEncoded, // premultiplied while encoded
376                                        //   tf-1(r)*a, tf-1(g)*a, tf-1(b)*a, a
377 } skcms_AlphaFormat;
378 
379 // Convert npixels pixels from src format and color profile to dst format and color profile
380 // and return true, otherwise return false.  It is safe to alias dst == src if dstFmt == srcFmt.
381 SKCMS_API bool skcms_Transform(const void*             src,
382                                skcms_PixelFormat       srcFmt,
383                                skcms_AlphaFormat       srcAlpha,
384                                const skcms_ICCProfile* srcProfile,
385                                void*                   dst,
386                                skcms_PixelFormat       dstFmt,
387                                skcms_AlphaFormat       dstAlpha,
388                                const skcms_ICCProfile* dstProfile,
389                                size_t                  npixels);
390 
391 // If profile can be used as a destination in skcms_Transform, return true. Otherwise, attempt to
392 // rewrite it with approximations where reasonable. If successful, return true. If no reasonable
393 // approximation exists, leave the profile unchanged and return false.
394 SKCMS_API bool skcms_MakeUsableAsDestination(skcms_ICCProfile* profile);
395 
396 // If profile can be used as a destination with a single parametric transfer function (ie for
397 // rasterization), return true. Otherwise, attempt to rewrite it with approximations where
398 // reasonable. If successful, return true. If no reasonable approximation exists, leave the
399 // profile unchanged and return false.
400 SKCMS_API bool skcms_MakeUsableAsDestinationWithSingleCurve(skcms_ICCProfile* profile);
401 
402 // Returns a matrix to adapt XYZ color from given the whitepoint to D50.
403 SKCMS_API bool skcms_AdaptToXYZD50(float wx, float wy,
404                                    skcms_Matrix3x3* toXYZD50);
405 
406 // Returns a matrix to convert RGB color into XYZ adapted to D50, given the
407 // primaries and whitepoint of the RGB model.
408 SKCMS_API bool skcms_PrimariesToXYZD50(float rx, float ry,
409                                        float gx, float gy,
410                                        float bx, float by,
411                                        float wx, float wy,
412                                        skcms_Matrix3x3* toXYZD50);
413 
414 // Call before your first call to skcms_Transform() to skip runtime CPU detection.
415 SKCMS_API void skcms_DisableRuntimeCPUDetection(void);
416 
417 // Utilities for programmatically constructing profiles
skcms_Init(skcms_ICCProfile * p)418 static inline void skcms_Init(skcms_ICCProfile* p) {
419     memset(p, 0, sizeof(*p));
420     p->data_color_space = skcms_Signature_RGB;
421     p->pcs = skcms_Signature_XYZ;
422 }
423 
skcms_SetTransferFunction(skcms_ICCProfile * p,const skcms_TransferFunction * tf)424 static inline void skcms_SetTransferFunction(skcms_ICCProfile* p,
425                                              const skcms_TransferFunction* tf) {
426     p->has_trc = true;
427     for (int i = 0; i < 3; ++i) {
428         p->trc[i].table_entries = 0;
429         p->trc[i].parametric = *tf;
430     }
431 }
432 
skcms_SetXYZD50(skcms_ICCProfile * p,const skcms_Matrix3x3 * m)433 static inline void skcms_SetXYZD50(skcms_ICCProfile* p, const skcms_Matrix3x3* m) {
434     p->has_toXYZD50 = true;
435     p->toXYZD50 = *m;
436 }
437 
438 #ifdef __cplusplus
439 }
440 #endif
441