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root/radiance/ray/src/rt/m_mirror.c
Revision: 2.14
Committed: Thu Aug 29 15:37:16 2013 UTC (10 years, 8 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.13: +3 -2 lines
Log Message:
Fixed double-counting bug in mirror type with secondary material

File Contents

# User Rev Content
1 greg 1.1 #ifndef lint
2 greg 2.14 static const char RCSid[] = "$Id: m_mirror.c,v 2.13 2010/09/26 15:51:15 greg Exp $";
3 greg 1.1 #endif
4     /*
5     * Routines for mirror material supporting virtual light sources
6     */
7    
8 greg 2.9 #include "copyright.h"
9 greg 2.8
10 greg 1.1 #include "ray.h"
11     #include "otypes.h"
12 schorsch 2.10 #include "rtotypes.h"
13 greg 1.1 #include "source.h"
14    
15     /*
16     * The real arguments for MAT_MIRROR are simply:
17     *
18     * 3 rrefl grefl brefl
19     *
20     * Additionally, the user may specify a single string argument
21     * which is interpreted as the name of the material to use
22     * instead of the mirror if the ray being considered is not
23     * part of the direct calculation.
24     */
25    
26 schorsch 2.10 static int mir_proj(MAT4 pm, OBJREC *o, SRCREC *s, int n);
27     static void mirrorproj(MAT4 m, FVECT nv, double offs);
28 greg 2.8
29 greg 1.1 VSMATERIAL mirror_vs = {mir_proj, 1};
30    
31    
32 schorsch 2.10 extern int
33     m_mirror( /* shade mirrored ray */
34     register OBJREC *m,
35     register RAY *r
36     )
37 greg 1.1 {
38     COLOR mcolor;
39     RAY nr;
40 greg 2.6 int rpure = 1;
41 greg 1.1 register int i;
42     /* check arguments */
43     if (m->oargs.nfargs != 3 || m->oargs.nsargs > 1)
44     objerror(m, USER, "bad number of arguments");
45 greg 1.3 /* check for substitute material */
46 greg 2.14 /* but avoid double-counting */
47     if (m->oargs.nsargs > 0 && !(r->crtype & (AMBIENT|SPECULAR)) &&
48 greg 1.3 (r->rsrc < 0 || source[r->rsrc].so != r->ro)) {
49 greg 2.4 if (!strcmp(m->oargs.sarg[0], VOIDID)) {
50     raytrans(r);
51     return(1);
52     }
53 gwlarson 2.7 return(rayshade(r, lastmod(objndx(m), m->oargs.sarg[0])));
54 greg 1.1 }
55 greg 1.3 /* check for bad source ray */
56     if (r->rsrc >= 0 && source[r->rsrc].so != r->ro)
57 greg 2.3 return(1);
58 greg 1.3
59 greg 1.1 if (r->rod < 0.) /* back is black */
60 greg 2.3 return(1);
61 greg 1.1 /* get modifiers */
62     raytexture(r, m->omod);
63     /* assign material color */
64     setcolor(mcolor, m->oargs.farg[0],
65     m->oargs.farg[1],
66     m->oargs.farg[2]);
67     multcolor(mcolor, r->pcol);
68     /* compute reflected ray */
69     if (r->rsrc >= 0) { /* relayed light source */
70 greg 2.11 rayorigin(&nr, REFLECTED, r, mcolor);
71 greg 1.1 /* ignore textures */
72     for (i = 0; i < 3; i++)
73     nr.rdir[i] = r->rdir[i] + 2.*r->rod*r->ron[i];
74     /* source we're aiming for next */
75 greg 1.2 nr.rsrc = source[r->rsrc].sa.sv.sn;
76 greg 1.1 } else { /* ordinary reflection */
77     FVECT pnorm;
78     double pdot;
79    
80 greg 2.11 if (rayorigin(&nr, REFLECTED, r, mcolor) < 0)
81 greg 2.3 return(1);
82 greg 2.6 if (DOT(r->pert,r->pert) > FTINY*FTINY) {
83     pdot = raynormal(pnorm, r); /* use textures */
84     for (i = 0; i < 3; i++)
85     nr.rdir[i] = r->rdir[i] + 2.*pdot*pnorm[i];
86     rpure = 0;
87     }
88 greg 2.2 /* check for penetration */
89 greg 2.6 if (rpure || DOT(nr.rdir, r->ron) <= FTINY)
90 greg 2.2 for (i = 0; i < 3; i++)
91     nr.rdir[i] = r->rdir[i] + 2.*r->rod*r->ron[i];
92 greg 1.1 }
93 greg 2.13 checknorm(nr.rdir);
94 greg 1.1 rayvalue(&nr);
95 greg 2.11 multcolor(nr.rcol, nr.rcoef);
96 greg 1.1 addcolor(r->rcol, nr.rcol);
97 greg 2.6 if (rpure && r->ro != NULL && isflat(r->ro->otype))
98     r->rt = r->rot + nr.rt;
99 greg 2.3 return(1);
100 greg 1.1 }
101    
102    
103 greg 2.8 static int
104 schorsch 2.10 mir_proj( /* compute a mirror's projection */
105     MAT4 pm,
106     register OBJREC *o,
107     SRCREC *s,
108     int n
109     )
110 greg 1.1 {
111 greg 2.12 double corr = 1.;
112 greg 2.5 FVECT nv, sc;
113 greg 2.12 double od, offs;
114     int i;
115 greg 1.1 /* get surface normal and offset */
116 greg 2.12 offs = od = getplaneq(nv, o);
117     if (s->sflags & SDISTANT)
118     offs = 0.;
119     /* check for extreme point behind */
120     if (s->sflags & SCIR) {
121     if (s->sflags & (SFLAT|SDISTANT))
122     corr = 1.12837917; /* correct setflatss() */
123     else
124     corr = 1.0/0.7236; /* correct sphsetsrc() */
125     }
126 greg 2.5 VCOPY(sc, s->sloc);
127     for (i = s->sflags & SFLAT ? SV : SW; i >= 0; i--)
128 greg 2.12 if (DOT(nv, s->ss[i]) > offs)
129     VSUM(sc, sc, s->ss[i], corr);
130 greg 2.5 else
131 greg 2.12 VSUM(sc, sc, s->ss[i], -corr);
132     if (DOT(sc, nv) <= offs+FTINY)
133 greg 1.1 return(0);
134     /* everything OK -- compute projection */
135     mirrorproj(pm, nv, od);
136     return(1);
137     }
138    
139    
140 schorsch 2.10 static void
141     mirrorproj( /* get mirror projection for surface */
142     register MAT4 m,
143     FVECT nv,
144     double offs
145     )
146 greg 1.1 {
147     register int i, j;
148     /* assign matrix */
149     setident4(m);
150 greg 1.2 for (j = 0; j < 3; j++) {
151     for (i = 0; i < 3; i++)
152 greg 1.1 m[i][j] -= 2.*nv[i]*nv[j];
153     m[3][j] = 2.*offs*nv[j];
154 greg 1.2 }
155 greg 1.1 }