41 |
|
RAY *r, |
42 |
|
int rt, |
43 |
|
const RAY *ro, |
44 |
< |
const COLOR rc |
44 |
> |
const SCOLOR rc |
45 |
|
) |
46 |
|
{ |
47 |
|
double rw, re; |
48 |
|
/* assign coefficient/weight */ |
49 |
|
if (rc == NULL) { |
50 |
|
rw = 1.0; |
51 |
< |
setcolor(r->rcoef, 1., 1., 1.); |
51 |
> |
setscolor(r->rcoef, 1., 1., 1.); |
52 |
|
} else { |
53 |
< |
rw = intens(rc); |
53 |
> |
rw = sintens((COLORV *)rc); |
54 |
|
if (rw > 1.0) |
55 |
|
rw = 1.0; /* avoid calculation growth */ |
56 |
|
if (rc != r->rcoef) |
57 |
< |
copycolor(r->rcoef, rc); |
57 |
> |
copyscolor(r->rcoef, rc); |
58 |
|
} |
59 |
|
if ((r->parent = ro) == NULL) { /* primary ray */ |
60 |
|
r->rlvl = 0; |
61 |
|
r->rweight = rw; |
62 |
|
r->crtype = r->rtype = rt; |
63 |
|
r->rsrc = -1; |
64 |
+ |
#ifdef SSKIPOPT |
65 |
+ |
r->scorr = 1.f; |
66 |
+ |
#endif |
67 |
|
r->clipset = NULL; |
68 |
|
r->revf = raytrace; |
69 |
|
copycolor(r->cext, cextinction); |
71 |
|
r->gecc = seccg; |
72 |
|
r->slights = NULL; |
73 |
|
} else { /* spawned ray */ |
74 |
< |
if (ro->rot >= FHUGE) { |
74 |
> |
if (ro->rot >= FHUGE*.99) { |
75 |
|
memset(r, 0, sizeof(RAY)); |
76 |
|
return(-1); /* illegal continuation */ |
77 |
|
} |
78 |
|
r->rlvl = ro->rlvl; |
79 |
+ |
r->rsrc = ro->rsrc; |
80 |
+ |
#ifdef SSKIPOPT |
81 |
+ |
r->scorr = ro->scorr; |
82 |
+ |
#endif |
83 |
|
if (rt & RAYREFL) { |
84 |
|
r->rlvl++; |
85 |
< |
r->rsrc = -1; |
85 |
> |
if (r->rsrc >= 0) /* malfunctioning material? */ |
86 |
> |
r->rsrc = -1; |
87 |
|
r->clipset = ro->clipset; |
88 |
|
r->rmax = 0.0; |
89 |
|
} else { |
82 |
– |
r->rsrc = ro->rsrc; |
90 |
|
r->clipset = ro->newcset; |
91 |
< |
r->rmax = ro->rmax <= FTINY ? 0.0 : ro->rmax - ro->rot; |
91 |
> |
r->rmax = (ro->rmax > FTINY)*(ro->rmax - ro->rot); |
92 |
|
} |
93 |
|
r->revf = ro->revf; |
94 |
|
copycolor(r->cext, ro->cext); |
123 |
|
if (photonMapping && rt != TRANS) |
124 |
|
return(-1); |
125 |
|
} |
126 |
< |
if (maxdepth <= 0 && rc != NULL) { /* Russian roulette */ |
126 |
> |
if ((maxdepth <= 0) & (rc != NULL)) { /* Russian roulette */ |
127 |
|
if (minweight <= 0.0) |
128 |
|
error(USER, "zero ray weight in Russian roulette"); |
129 |
< |
if (maxdepth < 0 && r->rlvl > -maxdepth) |
129 |
> |
if ((maxdepth < 0) & (r->rlvl > -maxdepth)) |
130 |
|
return(-1); /* upper reflection limit */ |
131 |
|
if (r->rweight >= minweight) |
132 |
|
return(0); |
133 |
|
if (frandom() > r->rweight/minweight) |
134 |
|
return(-1); |
135 |
|
rw = minweight/r->rweight; /* promote survivor */ |
136 |
< |
scalecolor(r->rcoef, rw); |
136 |
> |
scalescolor(r->rcoef, rw); |
137 |
|
r->rweight = minweight; |
138 |
|
return(0); |
139 |
|
} |
140 |
< |
return(r->rweight >= minweight && r->rlvl <= abs(maxdepth) ? 0 : -1); |
140 |
> |
return((r->rweight >= minweight) & (r->rlvl <= abs(maxdepth)) ? 0 : -1); |
141 |
|
} |
142 |
|
|
143 |
|
|
153 |
|
r->ro = NULL; |
154 |
|
r->rox = NULL; |
155 |
|
r->rxt = r->rmt = r->rot = FHUGE; |
156 |
+ |
VCOPY(r->rop, r->rorg); |
157 |
+ |
r->ron[0] = -r->rdir[0]; r->ron[1] = -r->rdir[1]; r->ron[2] = -r->rdir[2]; |
158 |
+ |
r->rod = 1.0; |
159 |
|
r->pert[0] = r->pert[1] = r->pert[2] = 0.0; |
160 |
+ |
r->rflips = 0; |
161 |
|
r->uv[0] = r->uv[1] = 0.0; |
162 |
< |
setcolor(r->pcol, 1.0, 1.0, 1.0); |
163 |
< |
setcolor(r->mcol, 0.0, 0.0, 0.0); |
164 |
< |
setcolor(r->rcol, 0.0, 0.0, 0.0); |
162 |
> |
setscolor(r->pcol, 1.0, 1.0, 1.0); |
163 |
> |
scolorblack(r->mcol); |
164 |
> |
scolorblack(r->rcol); |
165 |
|
} |
166 |
|
|
167 |
|
|
206 |
|
rayorigin(&tr, TRANS, r, NULL); /* always continue */ |
207 |
|
VCOPY(tr.rdir, r->rdir); |
208 |
|
rayvalue(&tr); |
209 |
< |
copycolor(r->rcol, tr.rcol); |
209 |
> |
copyscolor(r->mcol, tr.mcol); |
210 |
> |
copyscolor(r->rcol, tr.rcol); |
211 |
|
r->rmt = r->rot + tr.rmt; |
212 |
|
r->rxt = r->rot + tr.rxt; |
213 |
|
} |
214 |
|
|
215 |
|
|
216 |
|
int |
217 |
+ |
raytirrad( /* irradiance hack */ |
218 |
+ |
OBJREC *m, |
219 |
+ |
RAY *r |
220 |
+ |
) |
221 |
+ |
{ |
222 |
+ |
if (m->otype != MAT_CLIP && ismaterial(m->otype)) { |
223 |
+ |
if (istransp(m) || isBSDFproxy(m)) { |
224 |
+ |
raytrans(r); |
225 |
+ |
return(1); |
226 |
+ |
} |
227 |
+ |
if (!islight(m->otype)) { |
228 |
+ |
setscolor(r->pcol, 1.0, 1.0, 1.0); |
229 |
+ |
return((*ofun[Lamb.otype].funp)(&Lamb, r)); |
230 |
+ |
} |
231 |
+ |
} |
232 |
+ |
return(0); /* not a qualifying surface */ |
233 |
+ |
} |
234 |
+ |
|
235 |
+ |
|
236 |
+ |
int |
237 |
|
rayshade( /* shade ray r with material mod */ |
238 |
|
RAY *r, |
239 |
|
int mod |
240 |
|
) |
241 |
|
{ |
242 |
+ |
int tst_irrad = do_irrad && !(r->crtype & ~(PRIMARY|TRANS)); |
243 |
|
OBJREC *m; |
244 |
|
|
245 |
< |
r->rxt = r->rmt = r->rot; /* preset effective ray length */ |
245 |
> |
r->rxt = r->rot; /* preset effective ray length */ |
246 |
|
for ( ; mod != OVOID; mod = m->omod) { |
247 |
|
m = objptr(mod); |
248 |
|
/****** unnecessary test since modifier() is always called |
252 |
|
} |
253 |
|
******/ |
254 |
|
/* hack for irradiance calculation */ |
255 |
< |
if (do_irrad && !(r->crtype & ~(PRIMARY|TRANS)) && |
256 |
< |
(ofun[m->otype].flags & (T_M|T_X)) && |
257 |
< |
m->otype != MAT_CLIP) { |
225 |
< |
if (istransp(m->otype) || isBSDFproxy(m)) { |
226 |
< |
raytrans(r); |
227 |
< |
return(1); |
228 |
< |
} |
229 |
< |
if (!islight(m->otype)) |
230 |
< |
m = &Lamb; |
231 |
< |
} |
255 |
> |
if (tst_irrad && raytirrad(m, r)) |
256 |
> |
return(1); |
257 |
> |
|
258 |
|
if ((*ofun[m->otype].funp)(m, r)) |
259 |
|
return(1); /* materials call raytexture() */ |
260 |
|
} |
267 |
|
RAY *r |
268 |
|
) |
269 |
|
{ |
270 |
< |
COLOR ce, ca; |
270 |
> |
SCOLOR ce, ca; |
271 |
|
double re, ge, be; |
272 |
|
|
273 |
|
if (intens(r->cext) <= 1./FHUGE) |
280 |
|
ge *= 1. - colval(r->albedo,GRN); |
281 |
|
be *= 1. - colval(r->albedo,BLU); |
282 |
|
} |
283 |
< |
setcolor(ce, re<=FTINY ? 1. : re>92. ? 0. : exp(-re), |
283 |
> |
setscolor(ce, re<=FTINY ? 1. : re>92. ? 0. : exp(-re), |
284 |
|
ge<=FTINY ? 1. : ge>92. ? 0. : exp(-ge), |
285 |
|
be<=FTINY ? 1. : be>92. ? 0. : exp(-be)); |
286 |
< |
multcolor(r->rcol, ce); /* path extinction */ |
286 |
> |
smultscolor(r->rcol, ce); /* path extinction */ |
287 |
|
if (r->crtype & SHADOW || intens(r->albedo) <= FTINY) |
288 |
|
return; /* no scattering */ |
289 |
|
|
290 |
|
/* PMAP: indirect inscattering accounted for by volume photons? */ |
291 |
|
if (!volumePhotonMapping) { |
292 |
< |
setcolor(ca, |
292 |
> |
setscolor(ca, |
293 |
|
colval(r->albedo,RED)*colval(ambval,RED)*(1.-colval(ce,RED)), |
294 |
|
colval(r->albedo,GRN)*colval(ambval,GRN)*(1.-colval(ce,GRN)), |
295 |
|
colval(r->albedo,BLU)*colval(ambval,BLU)*(1.-colval(ce,BLU))); |
296 |
< |
addcolor(r->rcol, ca); /* ambient in scattering */ |
296 |
> |
saddscolor(r->rcol, ca); /* ambient in scattering */ |
297 |
|
} |
298 |
|
|
299 |
|
srcscatter(r); /* source in scattering */ |
348 |
|
fr = *r; |
349 |
|
if (coef > FTINY) { |
350 |
|
fr.rweight *= coef; |
351 |
< |
scalecolor(fr.rcoef, coef); |
351 |
> |
scalescolor(fr.rcoef, coef); |
352 |
|
foremat = rayshade(&fr, fore); |
353 |
|
} |
354 |
|
/* background */ |
355 |
|
br = *r; |
356 |
|
if (coef < 1.0-FTINY) { |
357 |
|
br.rweight *= 1.0-coef; |
358 |
< |
scalecolor(br.rcoef, 1.0-coef); |
358 |
> |
scalescolor(br.rcoef, 1.0-coef); |
359 |
|
backmat = rayshade(&br, back); |
360 |
|
} |
361 |
|
/* check for transparency */ |
369 |
|
for (i = 0; i < 3; i++) |
370 |
|
r->pert[i] = coef*fr.pert[i] + (1.0-coef)*br.pert[i]; |
371 |
|
/* mix pattern colors */ |
372 |
< |
scalecolor(fr.pcol, coef); |
373 |
< |
scalecolor(br.pcol, 1.0-coef); |
374 |
< |
copycolor(r->pcol, fr.pcol); |
375 |
< |
addcolor(r->pcol, br.pcol); |
372 |
> |
scalescolor(fr.pcol, coef); |
373 |
> |
scalescolor(br.pcol, 1.0-coef); |
374 |
> |
copyscolor(r->pcol, fr.pcol); |
375 |
> |
saddscolor(r->pcol, br.pcol); |
376 |
|
/* return value tells if material */ |
377 |
|
if (!foremat & !backmat) |
378 |
|
return(0); |
379 |
|
/* mix returned ray values */ |
380 |
< |
scalecolor(fr.rcol, coef); |
381 |
< |
scalecolor(br.rcol, 1.0-coef); |
382 |
< |
copycolor(r->rcol, fr.rcol); |
383 |
< |
addcolor(r->rcol, br.rcol); |
384 |
< |
mfore = bright(fr.mcol); mback = bright(br.mcol); |
380 |
> |
scalescolor(fr.rcol, coef); |
381 |
> |
scalescolor(br.rcol, 1.0-coef); |
382 |
> |
copyscolor(r->rcol, fr.rcol); |
383 |
> |
saddscolor(r->rcol, br.rcol); |
384 |
> |
scalescolor(fr.mcol, coef); |
385 |
> |
scalescolor(br.mcol, 1.0-coef); |
386 |
> |
copyscolor(r->mcol, fr.mcol); |
387 |
> |
saddscolor(r->mcol, br.mcol); |
388 |
> |
mfore = pbright(fr.mcol); mback = pbright(br.mcol); |
389 |
|
r->rmt = mfore > mback ? fr.rmt : br.rmt; |
390 |
< |
r->rxt = bright(fr.rcol)-mfore > bright(br.rcol)-mback ? |
390 |
> |
r->rxt = pbright(fr.rcol)-mfore > pbright(br.rcol)-mback ? |
391 |
|
fr.rxt : br.rxt; |
392 |
|
return(1); |
393 |
|
} |
411 |
|
|
412 |
|
void |
413 |
|
raycontrib( /* compute (cumulative) ray contribution */ |
414 |
< |
RREAL rc[3], |
414 |
> |
SCOLOR rc, |
415 |
|
const RAY *r, |
416 |
|
int flags |
417 |
|
) |
418 |
|
{ |
419 |
< |
double eext[3]; |
390 |
< |
int i; |
419 |
> |
static int warnedPM = 0; |
420 |
|
|
421 |
< |
eext[0] = eext[1] = eext[2] = 0.; |
393 |
< |
rc[0] = rc[1] = rc[2] = 1.; |
421 |
> |
setscolor(rc, 1., 1., 1.); |
422 |
|
|
423 |
|
while (r != NULL && r->crtype&flags) { |
424 |
< |
for (i = 3; i--; ) { |
425 |
< |
rc[i] *= colval(r->rcoef,i); |
426 |
< |
eext[i] += r->rot * colval(r->cext,i); |
424 |
> |
smultscolor(rc, r->rcoef); |
425 |
> |
/* check for participating medium */ |
426 |
> |
if (!warnedPM && (bright(r->cext) > FTINY) | |
427 |
> |
(bright(r->albedo) > FTINY)) { |
428 |
> |
error(WARNING, |
429 |
> |
"ray contribution calculation does not support participating media"); |
430 |
> |
warnedPM++; |
431 |
|
} |
432 |
|
r = r->parent; |
433 |
|
} |
402 |
– |
for (i = 3; i--; ) |
403 |
– |
rc[i] *= (eext[i] <= FTINY) ? 1. : |
404 |
– |
(eext[i] > 92.) ? 0. : exp(-eext[i]); |
434 |
|
} |
435 |
|
|
436 |
|
|
461 |
|
return(r->rod); |
462 |
|
} |
463 |
|
newdot = -DOT(norm, r->rdir); |
464 |
< |
if ((newdot > 0.0) != (r->rod > 0.0)) { /* fix orientation */ |
464 |
> |
if ((newdot > 0.0) ^ (r->rod > 0.0)) { /* fix orientation */ |
465 |
|
for (i = 0; i < 3; i++) |
466 |
|
norm[i] += 2.0*newdot*r->rdir[i]; |
467 |
|
newdot = -newdot; |
520 |
|
r->pert[0] = -r->pert[0]; |
521 |
|
r->pert[1] = -r->pert[1]; |
522 |
|
r->pert[2] = -r->pert[2]; |
523 |
+ |
r->rflips++; |
524 |
|
} |
525 |
|
|
526 |
+ |
|
527 |
+ |
int |
528 |
+ |
rayreject( /* check if candidate hit is worse than current */ |
529 |
+ |
OBJREC *o, |
530 |
+ |
RAY *r, |
531 |
+ |
double t, |
532 |
+ |
double rod |
533 |
+ |
) |
534 |
+ |
{ |
535 |
+ |
OBJREC *mnew, *mray; |
536 |
+ |
|
537 |
+ |
if ((t <= FTINY) | (t > r->rot + FTINY)) |
538 |
+ |
return(1); |
539 |
+ |
if (t < r->rot - FTINY) /* is new hit significantly closer? */ |
540 |
+ |
return(0); |
541 |
+ |
/* coincident point, so decide... */ |
542 |
+ |
if (o == r->ro) |
543 |
+ |
return(1); /* shouldn't happen */ |
544 |
+ |
if (r->ro == NULL) |
545 |
+ |
return(0); /* ditto */ |
546 |
+ |
mnew = findmaterial(o); |
547 |
+ |
mray = findmaterial(r->ro); /* check material transparencies */ |
548 |
+ |
if (mnew == NULL) { |
549 |
+ |
if (mray != NULL) |
550 |
+ |
return(1); /* old has material, new does not */ |
551 |
+ |
} else if (mray == NULL) { |
552 |
+ |
return(0); /* new has material, old does not */ |
553 |
+ |
} else if (istransp(mnew)) { |
554 |
+ |
if (!istransp(mray)) |
555 |
+ |
return(1); /* new is transparent, old is not */ |
556 |
+ |
} else if (istransp(mray)) { |
557 |
+ |
return(0); /* old is transparent, new is not */ |
558 |
+ |
} |
559 |
+ |
if (rod <= 0) { /* check which side we hit */ |
560 |
+ |
if (r->rod > 0) |
561 |
+ |
return(1); /* old hit front, new did not */ |
562 |
+ |
} else if (r->rod <= 0) { |
563 |
+ |
return(0); /* new hit front, old did not */ |
564 |
+ |
} |
565 |
+ |
/* earlier modifier definition wins tie */ |
566 |
+ |
return (r->ro->omod >= o->omod); |
567 |
+ |
} |
568 |
|
|
569 |
|
void |
570 |
|
rayhit( /* standard ray hit test */ |