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root/radiance/ray/src/common/mat4.c
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Comparing ray/src/common/mat4.c (file contents):
Revision 1.4 by greg, Thu Jan 18 23:58:56 1990 UTC vs.
Revision 2.4 by greg, Tue Feb 25 02:47:21 2003 UTC

# Line 1 | Line 1
1 /* Copyright (c) 1986 Regents of the University of California */
2
1   #ifndef lint
2 < static char SCCSid[] = "$SunId$ LBL";
2 > static const char       RCSid[] = "$Id$";
3   #endif
6
4   /*
5   *  mat4.c - routines dealing with 4 X 4 homogeneous transformation matrices.
9 *
10 *     10/19/85
6   */
7  
8 + #include "copyright.h"
9  
10 < static double  m4tmp[4][4];             /* for efficiency */
10 > #include  "mat4.h"
11  
12 < #ifdef  BSD
17 < #define  copymat4(m4a,m4b)      bcopy((char *)m4b,(char *)m4a,sizeof(m4tmp))
18 < #else
19 < #define  copymat4(m4a,m4b)      (void)memcpy((char *)m4a,(char *)m4b,sizeof(m4tmp))
20 < extern char  *memcpy();
21 < #endif
12 > MAT4  m4ident = MAT4IDENT;
13  
14 + static MAT4  m4tmp;             /* for efficiency */
15  
24 setident4(m4)
25 double  m4[4][4];
26 {
27        static double  ident[4][4] = {
28                1.,0.,0.,0.,
29                0.,1.,0.,0.,
30                0.,0.,1.,0.,
31                0.,0.,0.,1.,
32        };
33        copymat4(m4, ident);
34 }
16  
17 <
17 > void
18   multmat4(m4a, m4b, m4c)         /* multiply m4b X m4c and put into m4a */
19 < double  m4a[4][4];
20 < register double  m4b[4][4], m4c[4][4];
19 > MAT4  m4a;
20 > register MAT4  m4b, m4c;
21   {
22          register int  i, j;
23          
# Line 51 | Line 32 | register double  m4b[4][4], m4c[4][4];
32   }
33  
34  
35 + void
36   multv3(v3a, v3b, m4)    /* transform vector v3b by m4 and put into v3a */
37 < double  v3a[3];
38 < register double  v3b[3];
39 < register double  m4[4][4];
37 > FVECT  v3a;
38 > register FVECT  v3b;
39 > register MAT4  m4;
40   {
41          m4tmp[0][0] = v3b[0]*m4[0][0] + v3b[1]*m4[1][0] + v3b[2]*m4[2][0];
42          m4tmp[0][1] = v3b[0]*m4[0][1] + v3b[1]*m4[1][1] + v3b[2]*m4[2][1];
# Line 66 | Line 48 | register double  m4[4][4];
48   }
49  
50  
51 + void
52   multp3(p3a, p3b, m4)            /* transform p3b by m4 and put into p3a */
53 < register double  p3a[3];
54 < double  p3b[3];
55 < register double  m4[4][4];
53 > register FVECT  p3a;
54 > FVECT  p3b;
55 > register MAT4  m4;
56   {
57          multv3(p3a, p3b, m4);   /* transform as vector */
58          p3a[0] += m4[3][0];     /* translate */
59          p3a[1] += m4[3][1];
60          p3a[2] += m4[3][2];
61   }
79
80
81 #ifdef  INVMAT
82 /*
83 * invmat - computes the inverse of mat into inverse.  Returns 1
84 * if there exists an inverse, 0 otherwise.  It uses Gaussian Elimination
85 * method with partial pivoting.
86 */
87
88 invmat(inverse,mat)
89 double mat[4][4],inverse[4][4];
90 {
91 #define SWAP(a,b,t) (t=a,a=b,b=t)
92 #define ABS(x) (x>=0?x:-(x))
93
94        register int i,j,k;
95        register double temp;
96
97        copymat4(m4tmp, mat);
98        setident(inverse);
99
100        for(i = 0; i < 4; i++) {
101                /* Look for row with largest pivot and swap rows */
102                temp = 0; j = -1;
103                for(k = i; k < 4; k++)
104                        if(ABS(m4tmp[k][i]) > temp) {
105                                temp = ABS(m4tmp[k][i]);
106                                j = k;
107                                }
108                if(j == -1)     /* No replacing row -> no inverse */
109                        return(0);
110                if (j != i)
111                        for(k = 0; k < 4; k++) {
112                                SWAP(m4tmp[i][k],m4tmp[j][k],temp);
113                                SWAP(inverse[i][k],inverse[j][k],temp);
114                                }
115
116                temp = m4tmp[i][i];
117                for(k = 0; k < 4; k++) {
118                        m4tmp[i][k] /= temp;
119                        inverse[i][k] /= temp;
120                        }
121                for(j = 0; j < 4; j++) {
122                        if(j != i) {
123                                temp = m4tmp[j][i];
124                                for(k = 0; k < 4; k++) {
125                                        m4tmp[j][k] -= m4tmp[i][k]*temp;
126                                        inverse[j][k] -= inverse[i][k]*temp;
127                                        }
128                                }
129                        }
130                }
131        return(1);
132
133 #undef ABS
134 #undef SWAP
135 }
136 #endif

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