1 |
– |
/* Copyright (c) 1995 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 |
|
* Routines for mirror material supporting virtual light sources |
6 |
|
*/ |
7 |
|
|
8 |
< |
#include "ray.h" |
8 |
> |
#include "copyright.h" |
9 |
|
|
10 |
+ |
#include "ray.h" |
11 |
|
#include "otypes.h" |
12 |
< |
|
12 |
> |
#include "rtotypes.h" |
13 |
|
#include "source.h" |
14 |
|
|
15 |
|
/* |
23 |
|
* part of the direct calculation. |
24 |
|
*/ |
25 |
|
|
26 |
+ |
static int mir_proj(MAT4 pm, OBJREC *o, SRCREC *s, int n); |
27 |
+ |
static void mirrorproj(MAT4 m, FVECT nv, double offs); |
28 |
|
|
29 |
– |
int mir_proj(); |
29 |
|
VSMATERIAL mirror_vs = {mir_proj, 1}; |
30 |
|
|
31 |
|
|
32 |
< |
m_mirror(m, r) /* shade mirrored ray */ |
33 |
< |
register OBJREC *m; |
34 |
< |
register RAY *r; |
32 |
> |
extern int |
33 |
> |
m_mirror( /* shade mirrored ray */ |
34 |
> |
register OBJREC *m, |
35 |
> |
register RAY *r |
36 |
> |
) |
37 |
|
{ |
38 |
|
COLOR mcolor; |
39 |
|
RAY nr; |
43 |
|
if (m->oargs.nfargs != 3 || m->oargs.nsargs > 1) |
44 |
|
objerror(m, USER, "bad number of arguments"); |
45 |
|
/* check for substitute material */ |
46 |
< |
if (m->oargs.nsargs > 0 && |
46 |
> |
/* but avoid double-counting */ |
47 |
> |
if (m->oargs.nsargs > 0 && !(r->crtype & (AMBIENT|SPECULAR)) && |
48 |
|
(r->rsrc < 0 || source[r->rsrc].so != r->ro)) { |
49 |
|
if (!strcmp(m->oargs.sarg[0], VOIDID)) { |
50 |
|
raytrans(r); |
51 |
|
return(1); |
52 |
|
} |
53 |
< |
return(rayshade(r, modifier(m->oargs.sarg[0]))); |
53 |
> |
return(rayshade(r, lastmod(objndx(m), m->oargs.sarg[0]))); |
54 |
|
} |
55 |
|
/* check for bad source ray */ |
56 |
|
if (r->rsrc >= 0 && source[r->rsrc].so != r->ro) |
67 |
|
multcolor(mcolor, r->pcol); |
68 |
|
/* compute reflected ray */ |
69 |
|
if (r->rsrc >= 0) { /* relayed light source */ |
70 |
< |
rayorigin(&nr, r, REFLECTED, 1.); |
70 |
> |
rayorigin(&nr, REFLECTED, r, mcolor); |
71 |
|
/* ignore textures */ |
72 |
|
for (i = 0; i < 3; i++) |
73 |
|
nr.rdir[i] = r->rdir[i] + 2.*r->rod*r->ron[i]; |
77 |
|
FVECT pnorm; |
78 |
|
double pdot; |
79 |
|
|
80 |
< |
if (rayorigin(&nr, r, REFLECTED, bright(mcolor)) < 0) |
80 |
> |
if (rayorigin(&nr, REFLECTED, r, mcolor) < 0) |
81 |
|
return(1); |
82 |
|
if (DOT(r->pert,r->pert) > FTINY*FTINY) { |
83 |
|
pdot = raynormal(pnorm, r); /* use textures */ |
90 |
|
for (i = 0; i < 3; i++) |
91 |
|
nr.rdir[i] = r->rdir[i] + 2.*r->rod*r->ron[i]; |
92 |
|
} |
93 |
+ |
checknorm(nr.rdir); |
94 |
|
rayvalue(&nr); |
95 |
< |
multcolor(nr.rcol, mcolor); |
95 |
> |
multcolor(nr.rcol, nr.rcoef); |
96 |
|
addcolor(r->rcol, nr.rcol); |
97 |
|
if (rpure && r->ro != NULL && isflat(r->ro->otype)) |
98 |
|
r->rt = r->rot + nr.rt; |
100 |
|
} |
101 |
|
|
102 |
|
|
103 |
< |
mir_proj(pm, o, s, n) /* compute a mirror's projection */ |
104 |
< |
MAT4 pm; |
105 |
< |
register OBJREC *o; |
106 |
< |
SRCREC *s; |
107 |
< |
int n; |
103 |
> |
static int |
104 |
> |
mir_proj( /* compute a mirror's projection */ |
105 |
> |
MAT4 pm, |
106 |
> |
register OBJREC *o, |
107 |
> |
SRCREC *s, |
108 |
> |
int n |
109 |
> |
) |
110 |
|
{ |
111 |
+ |
double corr = 1.; |
112 |
|
FVECT nv, sc; |
113 |
< |
double od; |
114 |
< |
register int i, j; |
113 |
> |
double od, offs; |
114 |
> |
int i; |
115 |
|
/* get surface normal and offset */ |
116 |
< |
od = getplaneq(nv, o); |
117 |
< |
/* check for extreme point for behind */ |
116 |
> |
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 |
|
VCOPY(sc, s->sloc); |
127 |
|
for (i = s->sflags & SFLAT ? SV : SW; i >= 0; i--) |
128 |
< |
if (DOT(nv, s->ss[i]) > 0.) |
129 |
< |
for (j = 0; j < 3; j++) |
116 |
< |
sc[j] += s->ss[i][j]; |
128 |
> |
if (DOT(nv, s->ss[i]) > offs) |
129 |
> |
VSUM(sc, sc, s->ss[i], corr); |
130 |
|
else |
131 |
< |
for (j = 0; j < 3; j++) |
132 |
< |
sc[j] -= s->ss[i][j]; |
120 |
< |
if (DOT(sc, nv) <= (s->sflags & SDISTANT ? FTINY : od+FTINY)) |
131 |
> |
VSUM(sc, sc, s->ss[i], -corr); |
132 |
> |
if (DOT(sc, nv) <= offs+FTINY) |
133 |
|
return(0); |
134 |
|
/* everything OK -- compute projection */ |
135 |
|
mirrorproj(pm, nv, od); |
137 |
|
} |
138 |
|
|
139 |
|
|
140 |
< |
mirrorproj(m, nv, offs) /* get mirror projection for surface */ |
141 |
< |
register MAT4 m; |
142 |
< |
FVECT nv; |
143 |
< |
double offs; |
140 |
> |
static void |
141 |
> |
mirrorproj( /* get mirror projection for surface */ |
142 |
> |
register MAT4 m, |
143 |
> |
FVECT nv, |
144 |
> |
double offs |
145 |
> |
) |
146 |
|
{ |
147 |
|
register int i, j; |
148 |
|
/* assign matrix */ |