| 27 |
|
|
| 28 |
|
initstypes() /* initialize source dispatch table */ |
| 29 |
|
{ |
| 30 |
< |
extern VSMATERIAL mirror_vs; |
| 30 |
> |
extern VSMATERIAL mirror_vs, direct1_vs, direct2_vs; |
| 31 |
|
extern int fsetsrc(), ssetsrc(), sphsetsrc(), rsetsrc(); |
| 32 |
|
extern double fgetplaneq(), rgetplaneq(); |
| 33 |
|
extern double fgetmaxdisk(), rgetmaxdisk(); |
| 37 |
|
static SOBJECT rsobj = {rsetsrc, rgetplaneq, rgetmaxdisk}; |
| 38 |
|
|
| 39 |
|
sfun[MAT_MIRROR].mf = &mirror_vs; |
| 40 |
+ |
sfun[MAT_DIRECT1].mf = &direct1_vs; |
| 41 |
+ |
sfun[MAT_DIRECT2].mf = &direct2_vs; |
| 42 |
|
sfun[OBJ_FACE].of = &fsobj; |
| 43 |
|
sfun[OBJ_SOURCE].of = &ssobj; |
| 44 |
|
sfun[OBJ_SPHERE].of = &sphsobj; |
| 107 |
|
theta = PI/180.0/2.0 * so->oargs.farg[3]; |
| 108 |
|
if (theta <= FTINY) |
| 109 |
|
objerror(so, USER, "zero size"); |
| 110 |
< |
src->ss = theta >= PI/4 ? 1.0 : tan(theta); |
| 110 |
> |
src->ss = theta >= PI/4.0 ? 1.0 : tan(theta); |
| 111 |
|
src->ss2 = 2.0*PI * (1.0 - cos(theta)); |
| 112 |
|
} |
| 113 |
|
|
| 170 |
|
OBJREC *op; |
| 171 |
|
{ |
| 172 |
|
double maxrad2; |
| 173 |
< |
double d2; |
| 173 |
> |
double d; |
| 174 |
|
register int i, j; |
| 175 |
|
register FACE *f; |
| 176 |
|
|
| 177 |
|
f = getface(op); |
| 178 |
+ |
if (f->area == 0.) |
| 179 |
+ |
return(0.); |
| 180 |
|
for (i = 0; i < 3; i++) { |
| 181 |
|
ocent[i] = 0.; |
| 182 |
|
for (j = 0; j < f->nv; j++) |
| 183 |
|
ocent[i] += VERTEX(f,j)[i]; |
| 184 |
|
ocent[i] /= (double)f->nv; |
| 185 |
|
} |
| 186 |
< |
if (f->area == 0.) |
| 187 |
< |
return(0.); |
| 186 |
> |
d = DOT(ocent,f->norm); |
| 187 |
> |
for (i = 0; i < 3; i++) |
| 188 |
> |
ocent[i] += (f->offset - d)*f->norm[i]; |
| 189 |
|
maxrad2 = 0.; |
| 190 |
|
for (j = 0; j < f->nv; j++) { |
| 191 |
< |
d2 = dist2(VERTEX(f,j), ocent); |
| 192 |
< |
if (d2 > maxrad2) |
| 193 |
< |
maxrad2 = d2; |
| 191 |
> |
d = dist2(VERTEX(f,j), ocent); |
| 192 |
> |
if (d > maxrad2) |
| 193 |
> |
maxrad2 = d; |
| 194 |
|
} |
| 195 |
|
return(maxrad2); |
| 196 |
|
} |
| 290 |
|
|
| 291 |
|
d = DOT(sp->aim, nrm); |
| 292 |
|
if (d > FTINY) /* center in front? */ |
| 293 |
< |
return(0); |
| 293 |
> |
return(1); |
| 294 |
|
/* else check horizon */ |
| 295 |
|
d1 = 1. - sp->siz/(2.*PI); |
| 296 |
< |
return(1.-FTINY-d*d > d1*d1); |
| 296 |
> |
return(1.-FTINY-d*d < d1*d1); |
| 297 |
|
} |
| 298 |
|
|
| 299 |
|
|
| 300 |
|
double |
| 301 |
+ |
spotdisk(oc, op, sp, pos) /* intersect spot with object op */ |
| 302 |
+ |
FVECT oc; |
| 303 |
+ |
OBJREC *op; |
| 304 |
+ |
register SPOT *sp; |
| 305 |
+ |
FVECT pos; |
| 306 |
+ |
{ |
| 307 |
+ |
FVECT onorm; |
| 308 |
+ |
double offs, d, dist; |
| 309 |
+ |
register int i; |
| 310 |
+ |
|
| 311 |
+ |
offs = getplaneq(onorm, op); |
| 312 |
+ |
d = -DOT(onorm, sp->aim); |
| 313 |
+ |
if (d >= -FTINY && d <= FTINY) |
| 314 |
+ |
return(0.); |
| 315 |
+ |
dist = (DOT(pos, onorm) - offs)/d; |
| 316 |
+ |
if (dist < 0.) |
| 317 |
+ |
return(0.); |
| 318 |
+ |
for (i = 0; i < 3; i++) |
| 319 |
+ |
oc[i] = pos[i] + dist*sp->aim[i]; |
| 320 |
+ |
return(sp->siz*dist*dist/PI/(d*d)); |
| 321 |
+ |
} |
| 322 |
+ |
|
| 323 |
+ |
|
| 324 |
+ |
double |
| 325 |
+ |
beamdisk(oc, op, sp, dir) /* intersect beam with object op */ |
| 326 |
+ |
FVECT oc; |
| 327 |
+ |
OBJREC *op; |
| 328 |
+ |
register SPOT *sp; |
| 329 |
+ |
FVECT dir; |
| 330 |
+ |
{ |
| 331 |
+ |
FVECT onorm; |
| 332 |
+ |
double offs, d, dist; |
| 333 |
+ |
register int i; |
| 334 |
+ |
|
| 335 |
+ |
offs = getplaneq(onorm, op); |
| 336 |
+ |
d = -DOT(onorm, dir); |
| 337 |
+ |
if (d >= -FTINY && d <= FTINY) |
| 338 |
+ |
return(0.); |
| 339 |
+ |
dist = (DOT(sp->aim, onorm) - offs)/d; |
| 340 |
+ |
for (i = 0; i < 3; i++) |
| 341 |
+ |
oc[i] = sp->aim[i] + dist*dir[i]; |
| 342 |
+ |
return(sp->siz/PI/(d*d)); |
| 343 |
+ |
} |
| 344 |
+ |
|
| 345 |
+ |
|
| 346 |
+ |
double |
| 347 |
|
intercircle(cc, c1, c2, r1s, r2s) /* intersect two circles */ |
| 348 |
|
FVECT cc; /* midpoint (return value) */ |
| 349 |
|
FVECT c1, c2; /* circle centers */ |
| 419 |
|
r->rsrc>=0 && \ |
| 420 |
|
source[r->rsrc].so!=r->ro) |
| 421 |
|
|
| 422 |
+ |
#define distglow(m, r) (m->otype==MAT_GLOW && \ |
| 423 |
+ |
r->rot > m->oargs.farg[3]) |
| 424 |
+ |
|
| 425 |
|
#define badambient(m, r) ((r->crtype&(AMBIENT|SHADOW))==AMBIENT && \ |
| 426 |
< |
!(m->otype==MAT_GLOW&&r->rot>m->oargs.farg[3])) |
| 426 |
> |
!distglow(m, r)) |
| 427 |
|
|
| 428 |
|
#define passillum(m, r) (m->otype==MAT_ILLUM && \ |
| 429 |
|
!(r->rsrc>=0&&source[r->rsrc].so==r->ro)) |
| 430 |
|
|
| 431 |
+ |
#define srcignore(m, r) (directinvis && !(r->crtype&SHADOW) && \ |
| 432 |
+ |
!distglow(m, r)) |
| 433 |
|
|
| 434 |
+ |
|
| 435 |
|
m_light(m, r) /* ray hit a light source */ |
| 436 |
|
register OBJREC *m; |
| 437 |
|
register RAY *r; |
| 441 |
|
return; |
| 442 |
|
/* check for passed illum */ |
| 443 |
|
if (passillum(m, r)) { |
| 387 |
– |
|
| 444 |
|
if (m->oargs.nsargs < 1 || !strcmp(m->oargs.sarg[0], VOIDID)) |
| 445 |
|
raytrans(r); |
| 446 |
|
else |
| 447 |
|
rayshade(r, modifier(m->oargs.sarg[0])); |
| 448 |
< |
|
| 449 |
< |
/* otherwise treat as source */ |
| 450 |
< |
} else { |
| 448 |
> |
return; |
| 449 |
> |
} |
| 450 |
> |
/* otherwise treat as source */ |
| 451 |
|
/* check for behind */ |
| 452 |
< |
if (r->rod < 0.0) |
| 453 |
< |
return; |
| 452 |
> |
if (r->rod < 0.0) |
| 453 |
> |
return; |
| 454 |
> |
/* check for invisibility */ |
| 455 |
> |
if (srcignore(m, r)) |
| 456 |
> |
return; |
| 457 |
|
/* get distribution pattern */ |
| 458 |
< |
raytexture(r, m->omod); |
| 458 |
> |
raytexture(r, m->omod); |
| 459 |
|
/* get source color */ |
| 460 |
< |
setcolor(r->rcol, m->oargs.farg[0], |
| 461 |
< |
m->oargs.farg[1], |
| 462 |
< |
m->oargs.farg[2]); |
| 460 |
> |
setcolor(r->rcol, m->oargs.farg[0], |
| 461 |
> |
m->oargs.farg[1], |
| 462 |
> |
m->oargs.farg[2]); |
| 463 |
|
/* modify value */ |
| 464 |
< |
multcolor(r->rcol, r->pcol); |
| 406 |
< |
} |
| 464 |
> |
multcolor(r->rcol, r->pcol); |
| 465 |
|
} |