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 |
|
* t_func.c - routine for procedural textures. |
9 |
– |
* |
10 |
– |
* 4/8/86 |
6 |
|
*/ |
7 |
|
|
8 |
+ |
#include "copyright.h" |
9 |
+ |
|
10 |
|
#include "ray.h" |
11 |
+ |
#include "func.h" |
12 |
+ |
#include "rtotypes.h" |
13 |
|
|
14 |
|
/* |
15 |
|
* A procedural texture perturbs the surface normal |
27 |
|
* from the original coordinates to the current coordinates. |
28 |
|
*/ |
29 |
|
|
31 |
– |
typedef struct { |
32 |
– |
struct { |
33 |
– |
double sca; /* scale factor */ |
34 |
– |
double xfm[4][4]; /* transformation matrix */ |
35 |
– |
} fore, back; |
36 |
– |
} XFORM; |
30 |
|
|
31 |
< |
|
32 |
< |
t_func(m, r) /* compute texture for ray */ |
33 |
< |
register OBJREC *m; |
34 |
< |
register RAY *r; |
31 |
> |
int |
32 |
> |
t_func( /* compute texture for ray */ |
33 |
> |
OBJREC *m, |
34 |
> |
RAY *r |
35 |
> |
) |
36 |
|
{ |
43 |
– |
extern double varvalue(); |
44 |
– |
extern int errno; |
37 |
|
FVECT disp; |
38 |
< |
register XFORM *mxf; |
39 |
< |
register int i; |
40 |
< |
register char **sa; |
38 |
> |
double d; |
39 |
> |
MFUNC *mf; |
40 |
> |
int i; |
41 |
|
|
42 |
|
if (m->oargs.nsargs < 4) |
43 |
|
objerror(m, USER, "bad # arguments"); |
44 |
< |
sa = m->oargs.sarg; |
45 |
< |
|
54 |
< |
if ((mxf = (XFORM *)m->os) == NULL) { |
55 |
< |
mxf = (XFORM *)malloc(sizeof(XFORM)); |
56 |
< |
if (mxf == NULL) |
57 |
< |
goto memerr; |
58 |
< |
mxf->fore.sca = 1.0; |
59 |
< |
setident4(mxf->fore.xfm); |
60 |
< |
if (xf(mxf->fore.xfm, &mxf->fore.sca, |
61 |
< |
m->oargs.nsargs-4, sa+4) != m->oargs.nsargs-4) |
62 |
< |
objerror(m, USER, "bad transform"); |
63 |
< |
if (mxf->fore.sca < 0.0) |
64 |
< |
mxf->fore.sca = -mxf->fore.sca; |
65 |
< |
mxf->back.sca = 1.0; |
66 |
< |
setident4(mxf->back.xfm); |
67 |
< |
invxf(mxf->back.xfm, &mxf->back.sca, |
68 |
< |
m->oargs.nsargs-4, sa+4); |
69 |
< |
if (mxf->back.sca < 0.0) |
70 |
< |
mxf->back.sca = -mxf->back.sca; |
71 |
< |
m->os = (char *)mxf; |
72 |
< |
} |
73 |
< |
|
74 |
< |
setmap(m, r, mxf->back.xfm, mxf->back.sca); |
75 |
< |
|
76 |
< |
if (!vardefined(sa[0])) |
77 |
< |
loadfunc(sa[3]); |
44 |
> |
mf = getfunc(m, 3, 0x7, 1); |
45 |
> |
setfunc(m, r); |
46 |
|
errno = 0; |
47 |
< |
for (i = 0; i < 3; i++) |
48 |
< |
disp[i] = varvalue(sa[i]); |
49 |
< |
if (errno) { |
50 |
< |
objerror(m, WARNING, "compute error"); |
51 |
< |
return; |
47 |
> |
for (i = 0; i < 3; i++) { |
48 |
> |
disp[i] = evalue(mf->ep[i]); |
49 |
> |
if ((errno == EDOM) | (errno == ERANGE)) { |
50 |
> |
objerror(m, WARNING, "compute error"); |
51 |
> |
return(0); |
52 |
> |
} |
53 |
|
} |
54 |
< |
for (i = 0; i < 3; i++) |
55 |
< |
r->pert[i] += ( disp[0]*mxf->fore.xfm[0][i] + |
56 |
< |
disp[1]*mxf->fore.xfm[1][i] + |
57 |
< |
disp[2]*mxf->fore.xfm[2][i] ) |
58 |
< |
/ mxf->fore.sca; |
59 |
< |
return; |
60 |
< |
memerr: |
61 |
< |
error(SYSTEM, "out of memory in t_func"); |
54 |
> |
if (mf->fxp != &unitxf) |
55 |
> |
multv3(disp, disp, mf->fxp->xfm); |
56 |
> |
if (r->rox != NULL) { |
57 |
> |
multv3(disp, disp, r->rox->f.xfm); |
58 |
> |
d = 1.0 / (mf->fxp->sca * r->rox->f.sca); |
59 |
> |
} else |
60 |
> |
d = 1.0 / mf->fxp->sca; |
61 |
> |
VSUM(r->pert, r->pert, disp, d); |
62 |
> |
return(0); |
63 |
|
} |