xref: /aosp_15_r20/external/pdfium/third_party/lcms/src/cmsmtrx.c (revision 3ac0a46f773bac49fa9476ec2b1cf3f8da5ec3a4)
1*3ac0a46fSAndroid Build Coastguard Worker //---------------------------------------------------------------------------------
2*3ac0a46fSAndroid Build Coastguard Worker //
3*3ac0a46fSAndroid Build Coastguard Worker //  Little Color Management System
4*3ac0a46fSAndroid Build Coastguard Worker //  Copyright (c) 1998-2023 Marti Maria Saguer
5*3ac0a46fSAndroid Build Coastguard Worker //
6*3ac0a46fSAndroid Build Coastguard Worker // Permission is hereby granted, free of charge, to any person obtaining
7*3ac0a46fSAndroid Build Coastguard Worker // a copy of this software and associated documentation files (the "Software"),
8*3ac0a46fSAndroid Build Coastguard Worker // to deal in the Software without restriction, including without limitation
9*3ac0a46fSAndroid Build Coastguard Worker // the rights to use, copy, modify, merge, publish, distribute, sublicense,
10*3ac0a46fSAndroid Build Coastguard Worker // and/or sell copies of the Software, and to permit persons to whom the Software
11*3ac0a46fSAndroid Build Coastguard Worker // is furnished to do so, subject to the following conditions:
12*3ac0a46fSAndroid Build Coastguard Worker //
13*3ac0a46fSAndroid Build Coastguard Worker // The above copyright notice and this permission notice shall be included in
14*3ac0a46fSAndroid Build Coastguard Worker // all copies or substantial portions of the Software.
15*3ac0a46fSAndroid Build Coastguard Worker //
16*3ac0a46fSAndroid Build Coastguard Worker // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
17*3ac0a46fSAndroid Build Coastguard Worker // EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO
18*3ac0a46fSAndroid Build Coastguard Worker // THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
19*3ac0a46fSAndroid Build Coastguard Worker // NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
20*3ac0a46fSAndroid Build Coastguard Worker // LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
21*3ac0a46fSAndroid Build Coastguard Worker // OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
22*3ac0a46fSAndroid Build Coastguard Worker // WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
23*3ac0a46fSAndroid Build Coastguard Worker //
24*3ac0a46fSAndroid Build Coastguard Worker //---------------------------------------------------------------------------------
25*3ac0a46fSAndroid Build Coastguard Worker //
26*3ac0a46fSAndroid Build Coastguard Worker 
27*3ac0a46fSAndroid Build Coastguard Worker #include "lcms2_internal.h"
28*3ac0a46fSAndroid Build Coastguard Worker 
29*3ac0a46fSAndroid Build Coastguard Worker 
30*3ac0a46fSAndroid Build Coastguard Worker #define DSWAP(x, y)     {cmsFloat64Number tmp = (x); (x)=(y); (y)=tmp;}
31*3ac0a46fSAndroid Build Coastguard Worker 
32*3ac0a46fSAndroid Build Coastguard Worker 
33*3ac0a46fSAndroid Build Coastguard Worker // Initiate a vector
_cmsVEC3init(cmsVEC3 * r,cmsFloat64Number x,cmsFloat64Number y,cmsFloat64Number z)34*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsVEC3init(cmsVEC3* r, cmsFloat64Number x, cmsFloat64Number y, cmsFloat64Number z)
35*3ac0a46fSAndroid Build Coastguard Worker {
36*3ac0a46fSAndroid Build Coastguard Worker     r -> n[VX] = x;
37*3ac0a46fSAndroid Build Coastguard Worker     r -> n[VY] = y;
38*3ac0a46fSAndroid Build Coastguard Worker     r -> n[VZ] = z;
39*3ac0a46fSAndroid Build Coastguard Worker }
40*3ac0a46fSAndroid Build Coastguard Worker 
41*3ac0a46fSAndroid Build Coastguard Worker // Vector subtraction
_cmsVEC3minus(cmsVEC3 * r,const cmsVEC3 * a,const cmsVEC3 * b)42*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsVEC3minus(cmsVEC3* r, const cmsVEC3* a, const cmsVEC3* b)
43*3ac0a46fSAndroid Build Coastguard Worker {
44*3ac0a46fSAndroid Build Coastguard Worker   r -> n[VX] = a -> n[VX] - b -> n[VX];
45*3ac0a46fSAndroid Build Coastguard Worker   r -> n[VY] = a -> n[VY] - b -> n[VY];
46*3ac0a46fSAndroid Build Coastguard Worker   r -> n[VZ] = a -> n[VZ] - b -> n[VZ];
47*3ac0a46fSAndroid Build Coastguard Worker }
48*3ac0a46fSAndroid Build Coastguard Worker 
49*3ac0a46fSAndroid Build Coastguard Worker // Vector cross product
_cmsVEC3cross(cmsVEC3 * r,const cmsVEC3 * u,const cmsVEC3 * v)50*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsVEC3cross(cmsVEC3* r, const cmsVEC3* u, const cmsVEC3* v)
51*3ac0a46fSAndroid Build Coastguard Worker {
52*3ac0a46fSAndroid Build Coastguard Worker     r ->n[VX] = u->n[VY] * v->n[VZ] - v->n[VY] * u->n[VZ];
53*3ac0a46fSAndroid Build Coastguard Worker     r ->n[VY] = u->n[VZ] * v->n[VX] - v->n[VZ] * u->n[VX];
54*3ac0a46fSAndroid Build Coastguard Worker     r ->n[VZ] = u->n[VX] * v->n[VY] - v->n[VX] * u->n[VY];
55*3ac0a46fSAndroid Build Coastguard Worker }
56*3ac0a46fSAndroid Build Coastguard Worker 
57*3ac0a46fSAndroid Build Coastguard Worker // Vector dot product
_cmsVEC3dot(const cmsVEC3 * u,const cmsVEC3 * v)58*3ac0a46fSAndroid Build Coastguard Worker cmsFloat64Number CMSEXPORT _cmsVEC3dot(const cmsVEC3* u, const cmsVEC3* v)
59*3ac0a46fSAndroid Build Coastguard Worker {
60*3ac0a46fSAndroid Build Coastguard Worker     return u->n[VX] * v->n[VX] + u->n[VY] * v->n[VY] + u->n[VZ] * v->n[VZ];
61*3ac0a46fSAndroid Build Coastguard Worker }
62*3ac0a46fSAndroid Build Coastguard Worker 
63*3ac0a46fSAndroid Build Coastguard Worker // Euclidean length
_cmsVEC3length(const cmsVEC3 * a)64*3ac0a46fSAndroid Build Coastguard Worker cmsFloat64Number CMSEXPORT _cmsVEC3length(const cmsVEC3* a)
65*3ac0a46fSAndroid Build Coastguard Worker {
66*3ac0a46fSAndroid Build Coastguard Worker     return sqrt(a ->n[VX] * a ->n[VX] +
67*3ac0a46fSAndroid Build Coastguard Worker                 a ->n[VY] * a ->n[VY] +
68*3ac0a46fSAndroid Build Coastguard Worker                 a ->n[VZ] * a ->n[VZ]);
69*3ac0a46fSAndroid Build Coastguard Worker }
70*3ac0a46fSAndroid Build Coastguard Worker 
71*3ac0a46fSAndroid Build Coastguard Worker // Euclidean distance
_cmsVEC3distance(const cmsVEC3 * a,const cmsVEC3 * b)72*3ac0a46fSAndroid Build Coastguard Worker cmsFloat64Number CMSEXPORT _cmsVEC3distance(const cmsVEC3* a, const cmsVEC3* b)
73*3ac0a46fSAndroid Build Coastguard Worker {
74*3ac0a46fSAndroid Build Coastguard Worker     cmsFloat64Number d1 = a ->n[VX] - b ->n[VX];
75*3ac0a46fSAndroid Build Coastguard Worker     cmsFloat64Number d2 = a ->n[VY] - b ->n[VY];
76*3ac0a46fSAndroid Build Coastguard Worker     cmsFloat64Number d3 = a ->n[VZ] - b ->n[VZ];
77*3ac0a46fSAndroid Build Coastguard Worker 
78*3ac0a46fSAndroid Build Coastguard Worker     return sqrt(d1*d1 + d2*d2 + d3*d3);
79*3ac0a46fSAndroid Build Coastguard Worker }
80*3ac0a46fSAndroid Build Coastguard Worker 
81*3ac0a46fSAndroid Build Coastguard Worker 
82*3ac0a46fSAndroid Build Coastguard Worker 
83*3ac0a46fSAndroid Build Coastguard Worker // 3x3 Identity
_cmsMAT3identity(cmsMAT3 * a)84*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsMAT3identity(cmsMAT3* a)
85*3ac0a46fSAndroid Build Coastguard Worker {
86*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&a-> v[0], 1.0, 0.0, 0.0);
87*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&a-> v[1], 0.0, 1.0, 0.0);
88*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&a-> v[2], 0.0, 0.0, 1.0);
89*3ac0a46fSAndroid Build Coastguard Worker }
90*3ac0a46fSAndroid Build Coastguard Worker 
91*3ac0a46fSAndroid Build Coastguard Worker static
CloseEnough(cmsFloat64Number a,cmsFloat64Number b)92*3ac0a46fSAndroid Build Coastguard Worker cmsBool CloseEnough(cmsFloat64Number a, cmsFloat64Number b)
93*3ac0a46fSAndroid Build Coastguard Worker {
94*3ac0a46fSAndroid Build Coastguard Worker     return fabs(b - a) < (1.0 / 65535.0);
95*3ac0a46fSAndroid Build Coastguard Worker }
96*3ac0a46fSAndroid Build Coastguard Worker 
97*3ac0a46fSAndroid Build Coastguard Worker 
_cmsMAT3isIdentity(const cmsMAT3 * a)98*3ac0a46fSAndroid Build Coastguard Worker cmsBool CMSEXPORT _cmsMAT3isIdentity(const cmsMAT3* a)
99*3ac0a46fSAndroid Build Coastguard Worker {
100*3ac0a46fSAndroid Build Coastguard Worker     cmsMAT3 Identity;
101*3ac0a46fSAndroid Build Coastguard Worker     int i, j;
102*3ac0a46fSAndroid Build Coastguard Worker 
103*3ac0a46fSAndroid Build Coastguard Worker     _cmsMAT3identity(&Identity);
104*3ac0a46fSAndroid Build Coastguard Worker 
105*3ac0a46fSAndroid Build Coastguard Worker     for (i=0; i < 3; i++)
106*3ac0a46fSAndroid Build Coastguard Worker         for (j=0; j < 3; j++)
107*3ac0a46fSAndroid Build Coastguard Worker             if (!CloseEnough(a ->v[i].n[j], Identity.v[i].n[j])) return FALSE;
108*3ac0a46fSAndroid Build Coastguard Worker 
109*3ac0a46fSAndroid Build Coastguard Worker     return TRUE;
110*3ac0a46fSAndroid Build Coastguard Worker }
111*3ac0a46fSAndroid Build Coastguard Worker 
112*3ac0a46fSAndroid Build Coastguard Worker 
113*3ac0a46fSAndroid Build Coastguard Worker // Multiply two matrices
_cmsMAT3per(cmsMAT3 * r,const cmsMAT3 * a,const cmsMAT3 * b)114*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsMAT3per(cmsMAT3* r, const cmsMAT3* a, const cmsMAT3* b)
115*3ac0a46fSAndroid Build Coastguard Worker {
116*3ac0a46fSAndroid Build Coastguard Worker #define ROWCOL(i, j) \
117*3ac0a46fSAndroid Build Coastguard Worker     a->v[i].n[0]*b->v[0].n[j] + a->v[i].n[1]*b->v[1].n[j] + a->v[i].n[2]*b->v[2].n[j]
118*3ac0a46fSAndroid Build Coastguard Worker 
119*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&r-> v[0], ROWCOL(0,0), ROWCOL(0,1), ROWCOL(0,2));
120*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&r-> v[1], ROWCOL(1,0), ROWCOL(1,1), ROWCOL(1,2));
121*3ac0a46fSAndroid Build Coastguard Worker     _cmsVEC3init(&r-> v[2], ROWCOL(2,0), ROWCOL(2,1), ROWCOL(2,2));
122*3ac0a46fSAndroid Build Coastguard Worker 
123*3ac0a46fSAndroid Build Coastguard Worker #undef ROWCOL //(i, j)
124*3ac0a46fSAndroid Build Coastguard Worker }
125*3ac0a46fSAndroid Build Coastguard Worker 
126*3ac0a46fSAndroid Build Coastguard Worker 
127*3ac0a46fSAndroid Build Coastguard Worker 
128*3ac0a46fSAndroid Build Coastguard Worker // Inverse of a matrix b = a^(-1)
_cmsMAT3inverse(const cmsMAT3 * a,cmsMAT3 * b)129*3ac0a46fSAndroid Build Coastguard Worker cmsBool  CMSEXPORT _cmsMAT3inverse(const cmsMAT3* a, cmsMAT3* b)
130*3ac0a46fSAndroid Build Coastguard Worker {
131*3ac0a46fSAndroid Build Coastguard Worker    cmsFloat64Number det, c0, c1, c2;
132*3ac0a46fSAndroid Build Coastguard Worker 
133*3ac0a46fSAndroid Build Coastguard Worker    c0 =  a -> v[1].n[1]*a -> v[2].n[2] - a -> v[1].n[2]*a -> v[2].n[1];
134*3ac0a46fSAndroid Build Coastguard Worker    c1 = -a -> v[1].n[0]*a -> v[2].n[2] + a -> v[1].n[2]*a -> v[2].n[0];
135*3ac0a46fSAndroid Build Coastguard Worker    c2 =  a -> v[1].n[0]*a -> v[2].n[1] - a -> v[1].n[1]*a -> v[2].n[0];
136*3ac0a46fSAndroid Build Coastguard Worker 
137*3ac0a46fSAndroid Build Coastguard Worker    det = a -> v[0].n[0]*c0 + a -> v[0].n[1]*c1 + a -> v[0].n[2]*c2;
138*3ac0a46fSAndroid Build Coastguard Worker 
139*3ac0a46fSAndroid Build Coastguard Worker    if (fabs(det) < MATRIX_DET_TOLERANCE) return FALSE;  // singular matrix; can't invert
140*3ac0a46fSAndroid Build Coastguard Worker 
141*3ac0a46fSAndroid Build Coastguard Worker    b -> v[0].n[0] = c0/det;
142*3ac0a46fSAndroid Build Coastguard Worker    b -> v[0].n[1] = (a -> v[0].n[2]*a -> v[2].n[1] - a -> v[0].n[1]*a -> v[2].n[2])/det;
143*3ac0a46fSAndroid Build Coastguard Worker    b -> v[0].n[2] = (a -> v[0].n[1]*a -> v[1].n[2] - a -> v[0].n[2]*a -> v[1].n[1])/det;
144*3ac0a46fSAndroid Build Coastguard Worker    b -> v[1].n[0] = c1/det;
145*3ac0a46fSAndroid Build Coastguard Worker    b -> v[1].n[1] = (a -> v[0].n[0]*a -> v[2].n[2] - a -> v[0].n[2]*a -> v[2].n[0])/det;
146*3ac0a46fSAndroid Build Coastguard Worker    b -> v[1].n[2] = (a -> v[0].n[2]*a -> v[1].n[0] - a -> v[0].n[0]*a -> v[1].n[2])/det;
147*3ac0a46fSAndroid Build Coastguard Worker    b -> v[2].n[0] = c2/det;
148*3ac0a46fSAndroid Build Coastguard Worker    b -> v[2].n[1] = (a -> v[0].n[1]*a -> v[2].n[0] - a -> v[0].n[0]*a -> v[2].n[1])/det;
149*3ac0a46fSAndroid Build Coastguard Worker    b -> v[2].n[2] = (a -> v[0].n[0]*a -> v[1].n[1] - a -> v[0].n[1]*a -> v[1].n[0])/det;
150*3ac0a46fSAndroid Build Coastguard Worker 
151*3ac0a46fSAndroid Build Coastguard Worker    return TRUE;
152*3ac0a46fSAndroid Build Coastguard Worker }
153*3ac0a46fSAndroid Build Coastguard Worker 
154*3ac0a46fSAndroid Build Coastguard Worker 
155*3ac0a46fSAndroid Build Coastguard Worker // Solve a system in the form Ax = b
_cmsMAT3solve(cmsVEC3 * x,cmsMAT3 * a,cmsVEC3 * b)156*3ac0a46fSAndroid Build Coastguard Worker cmsBool  CMSEXPORT _cmsMAT3solve(cmsVEC3* x, cmsMAT3* a, cmsVEC3* b)
157*3ac0a46fSAndroid Build Coastguard Worker {
158*3ac0a46fSAndroid Build Coastguard Worker     cmsMAT3 m, a_1;
159*3ac0a46fSAndroid Build Coastguard Worker 
160*3ac0a46fSAndroid Build Coastguard Worker     memmove(&m, a, sizeof(cmsMAT3));
161*3ac0a46fSAndroid Build Coastguard Worker 
162*3ac0a46fSAndroid Build Coastguard Worker     if (!_cmsMAT3inverse(&m, &a_1)) return FALSE;  // Singular matrix
163*3ac0a46fSAndroid Build Coastguard Worker 
164*3ac0a46fSAndroid Build Coastguard Worker     _cmsMAT3eval(x, &a_1, b);
165*3ac0a46fSAndroid Build Coastguard Worker     return TRUE;
166*3ac0a46fSAndroid Build Coastguard Worker }
167*3ac0a46fSAndroid Build Coastguard Worker 
168*3ac0a46fSAndroid Build Coastguard Worker // Evaluate a vector across a matrix
_cmsMAT3eval(cmsVEC3 * r,const cmsMAT3 * a,const cmsVEC3 * v)169*3ac0a46fSAndroid Build Coastguard Worker void CMSEXPORT _cmsMAT3eval(cmsVEC3* r, const cmsMAT3* a, const cmsVEC3* v)
170*3ac0a46fSAndroid Build Coastguard Worker {
171*3ac0a46fSAndroid Build Coastguard Worker     r->n[VX] = a->v[0].n[VX]*v->n[VX] + a->v[0].n[VY]*v->n[VY] + a->v[0].n[VZ]*v->n[VZ];
172*3ac0a46fSAndroid Build Coastguard Worker     r->n[VY] = a->v[1].n[VX]*v->n[VX] + a->v[1].n[VY]*v->n[VY] + a->v[1].n[VZ]*v->n[VZ];
173*3ac0a46fSAndroid Build Coastguard Worker     r->n[VZ] = a->v[2].n[VX]*v->n[VX] + a->v[2].n[VY]*v->n[VY] + a->v[2].n[VZ]*v->n[VZ];
174*3ac0a46fSAndroid Build Coastguard Worker }
175*3ac0a46fSAndroid Build Coastguard Worker 
176*3ac0a46fSAndroid Build Coastguard Worker 
177