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root/radiance/ray/src/common/tmesh.c
Revision: 2.1
Committed: Mon Mar 10 19:38:19 2003 UTC (21 years, 1 month ago) by greg
Content type: text/plain
Branch: MAIN
Log Message:
Moved tmesh.* files to library and fixed another compile error

File Contents

# User Rev Content
1 greg 2.1 #ifndef lint
2     static const char RCSid[] = "$Id$";
3     #endif
4     /*
5     * Compute and print barycentric coordinates for triangle meshes
6     */
7    
8     #include <stdio.h>
9    
10     #include "fvect.h"
11    
12     #include "tmesh.h"
13    
14     #define ABS(x) ((x) >= 0 ? (x) : -(x))
15    
16    
17     int
18     flat_tri(v1, v2, v3, n1, n2, n3) /* determine if triangle is flat */
19     FVECT v1, v2, v3, n1, n2, n3;
20     {
21     double d1, d2, d3;
22     FVECT vt1, vt2, vn;
23     /* compute default normal */
24     vt1[0] = v2[0] - v1[0]; vt1[1] = v2[1] - v1[1]; vt1[2] = v2[2] - v1[2];
25     vt2[0] = v3[0] - v2[0]; vt2[1] = v3[1] - v2[1]; vt2[2] = v3[2] - v2[2];
26     fcross(vn, vt1, vt2);
27     if (normalize(vn) == 0.0)
28     return(DEGEN);
29     /* compare to supplied normals */
30     d1 = DOT(vn, n1); d2 = DOT(vn, n2); d3 = DOT(vn, n3);
31     if (d1 < 0 && d2 < 0 && d3 < 0) {
32     if (d1 > -COSTOL || d2 > -COSTOL || d3 > -COSTOL)
33     return(RVBENT);
34     return(RVFLAT);
35     }
36     if (d1 < COSTOL || d2 < COSTOL || d3 < COSTOL)
37     return(ISBENT);
38     return(ISFLAT);
39     }
40    
41    
42     int
43     comp_baryc(bcm, v1, v2, v3) /* compute barycentric vectors */
44     register BARYCCM *bcm;
45     FLOAT *v1, *v2, *v3;
46     {
47     FLOAT *vt;
48     FVECT va, vab, vcb;
49     double d;
50     int ax0, ax1;
51     register int i;
52     /* compute major axis */
53     for (i = 0; i < 3; i++) {
54     vab[i] = v1[i] - v2[i];
55     vcb[i] = v3[i] - v2[i];
56     }
57     fcross(va, vab, vcb);
58     bcm->ax = ABS(va[0]) > ABS(va[1]) ? 0 : 1;
59     bcm->ax = ABS(va[bcm->ax]) > ABS(va[2]) ? bcm->ax : 2;
60     ax0 = (bcm->ax + 1) % 3;
61     ax1 = (bcm->ax + 2) % 3;
62     for (i = 0; i < 2; i++) {
63     vab[0] = v1[ax0] - v2[ax0];
64     vcb[0] = v3[ax0] - v2[ax0];
65     vab[1] = v1[ax1] - v2[ax1];
66     vcb[1] = v3[ax1] - v2[ax1];
67     d = vcb[0]*vcb[0] + vcb[1]*vcb[1];
68     if (d <= FTINY*FTINY)
69     return(-1);
70     d = (vcb[0]*vab[0]+vcb[1]*vab[1])/d;
71     va[0] = vab[0] - vcb[0]*d;
72     va[1] = vab[1] - vcb[1]*d;
73     d = va[0]*va[0] + va[1]*va[1];
74     if (d <= FTINY*FTINY)
75     return(-1);
76     d = 1.0/d;
77     bcm->tm[i][0] = va[0] *= d;
78     bcm->tm[i][1] = va[1] *= d;
79     bcm->tm[i][2] = -(v2[ax0]*va[0]+v2[ax1]*va[1]);
80     /* rotate vertices */
81     vt = v1;
82     v1 = v2;
83     v2 = v3;
84     v3 = vt;
85     }
86     return(0);
87     }
88    
89    
90     put_baryc(bcm, com, n) /* put barycentric coord. vectors */
91     register BARYCCM *bcm;
92     register FLOAT com[][3];
93     int n;
94     {
95     double a, b;
96     register int i, j;
97    
98     printf("%d\t%d\n", 1+3*n, bcm->ax);
99     for (i = 0; i < n; i++) {
100     a = com[i][0] - com[i][2];
101     b = com[i][1] - com[i][2];
102     printf("%14.8f %14.8f %14.8f\n",
103     bcm->tm[0][0]*a + bcm->tm[1][0]*b,
104     bcm->tm[0][1]*a + bcm->tm[1][1]*b,
105     bcm->tm[0][2]*a + bcm->tm[1][2]*b + com[i][2]);
106     }
107     }