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root/radiance/ray/src/rt/virtuals.c
Revision: 1.17
Committed: Tue Jul 16 15:56:51 1991 UTC (32 years, 9 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 1.16: +6 -2 lines
Log Message:
added redirecting materials

File Contents

# Content
1 /* Copyright (c) 1991 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * Routines for simulating virtual light sources
9 * Thus far, we only support planar mirrors.
10 */
11
12 #include "ray.h"
13
14 #include "octree.h"
15
16 #include "otypes.h"
17
18 #include "source.h"
19
20 #include "random.h"
21
22 #define MINSAMPLES 5 /* minimum number of pretest samples */
23 #define STESTMAX 30 /* maximum seeks per sample */
24
25
26 double getdisk();
27
28 static OBJECT *vobject; /* virtual source objects */
29 static int nvobjects = 0; /* number of virtual source objects */
30
31
32 markvirtuals() /* find and mark virtual sources */
33 {
34 register OBJREC *o;
35 register int i;
36 /* check number of direct relays */
37 if (directrelay <= 0)
38 return;
39 /* find virtual source objects */
40 for (i = 0; i < nobjects; i++) {
41 o = objptr(i);
42 if (!issurface(o->otype) || o->omod == OVOID)
43 continue;
44 if (!isvlight(objptr(o->omod)->otype))
45 continue;
46 if (sfun[o->otype].of == NULL ||
47 sfun[o->otype].of->getpleq == NULL)
48 objerror(o, USER, "illegal material");
49 if (nvobjects == 0)
50 vobject = (OBJECT *)malloc(sizeof(OBJECT));
51 else
52 vobject = (OBJECT *)realloc((char *)vobject,
53 (unsigned)(nvobjects+1)*sizeof(OBJECT));
54 if (vobject == NULL)
55 error(SYSTEM, "out of memory in addvirtuals");
56 vobject[nvobjects++] = i;
57 }
58 if (nvobjects == 0)
59 return;
60 #ifdef DEBUG
61 fprintf(stderr, "found %d virtual source objects\n", nvobjects);
62 #endif
63 /* append virtual sources */
64 for (i = nsources; i-- > 0; )
65 addvirtuals(i, directrelay);
66 /* done with our object list */
67 free((char *)vobject);
68 nvobjects = 0;
69 }
70
71
72 addvirtuals(sn, nr) /* add virtuals associated with source */
73 int sn;
74 int nr;
75 {
76 register int i;
77 /* check relay limit first */
78 if (nr <= 0)
79 return;
80 if (source[sn].sflags & SSKIP)
81 return;
82 /* check each virtual object for projection */
83 for (i = 0; i < nvobjects; i++)
84 /* vproject() calls us recursively */
85 vproject(objptr(vobject[i]), sn, nr-1);
86 }
87
88
89 vproject(o, sn, n) /* create projected source(s) if they exist */
90 OBJREC *o;
91 int sn;
92 int n;
93 {
94 register int i;
95 register VSMATERIAL *vsmat;
96 MAT4 proj;
97 int ns;
98
99 if (o == source[sn].so) /* objects cannot project themselves */
100 return;
101 /* get virtual source material */
102 vsmat = sfun[objptr(o->omod)->otype].mf;
103 /* project virtual sources */
104 for (i = 0; i < vsmat->nproj; i++)
105 if ((*vsmat->vproj)(proj, o, &source[sn], i))
106 if ((ns = makevsrc(o, sn, proj)) >= 0) {
107 source[ns].sa.sv.pn = i;
108 #ifdef DEBUG
109 virtverb(ns, stderr);
110 #endif
111 addvirtuals(ns, n);
112 }
113 }
114
115
116 int
117 makevsrc(op, sn, pm) /* make virtual source if reasonable */
118 OBJREC *op;
119 register int sn;
120 MAT4 pm;
121 {
122 FVECT nsloc, nsnorm, ocent, v;
123 double maxrad2, d;
124 int nsflags;
125 SPOT theirspot, ourspot;
126 register int i;
127
128 nsflags = source[sn].sflags | (SVIRTUAL|SSPOT|SFOLLOW);
129 /* get object center and max. radius */
130 maxrad2 = getdisk(ocent, op, sn);
131 if (maxrad2 <= FTINY) /* too small? */
132 return(-1);
133 /* get location and spot */
134 if (source[sn].sflags & SDISTANT) { /* distant source */
135 if (source[sn].sflags & SPROX)
136 return(-1); /* should never get here! */
137 multv3(nsloc, source[sn].sloc, pm);
138 normalize(nsloc);
139 VCOPY(ourspot.aim, ocent);
140 ourspot.siz = PI*maxrad2;
141 ourspot.flen = 0.;
142 if (source[sn].sflags & SSPOT) {
143 copystruct(&theirspot, source[sn].sl.s);
144 multp3(theirspot.aim, source[sn].sl.s->aim, pm);
145 d = ourspot.siz;
146 if (!commonbeam(&ourspot, &theirspot, nsloc))
147 return(-1); /* no overlap */
148 if (ourspot.siz < d-FTINY) { /* it shrunk */
149 d = beamdisk(v, op, &ourspot, nsloc);
150 if (d <= FTINY)
151 return(-1);
152 if (d < maxrad2) {
153 maxrad2 = d;
154 VCOPY(ocent, v);
155 }
156 }
157 }
158 } else { /* local source */
159 multp3(nsloc, source[sn].sloc, pm);
160 for (i = 0; i < 3; i++)
161 ourspot.aim[i] = ocent[i] - nsloc[i];
162 if ((d = normalize(ourspot.aim)) == 0.)
163 return(-1); /* at source!! */
164 if (source[sn].sflags & SPROX && d > source[sn].sl.prox)
165 return(-1); /* too far away */
166 ourspot.flen = 0.;
167 if (d*d > maxrad2)
168 ourspot.siz = 2.*PI*(1. - sqrt(1.-maxrad2/(d*d)));
169 else
170 nsflags &= ~SSPOT;
171 if (source[sn].sflags & SSPOT) {
172 copystruct(&theirspot, source[sn].sl.s);
173 multv3(theirspot.aim, source[sn].sl.s->aim, pm);
174 normalize(theirspot.aim);
175 if (nsflags & SSPOT) {
176 ourspot.flen = theirspot.flen;
177 d = ourspot.siz;
178 if (!commonspot(&ourspot, &theirspot, nsloc))
179 return(-1); /* no overlap */
180 } else {
181 nsflags |= SSPOT;
182 copystruct(&ourspot, &theirspot);
183 d = 2.*ourspot.siz;
184 }
185 if (ourspot.siz < d-FTINY) { /* it shrunk */
186 d = spotdisk(v, op, &ourspot, nsloc);
187 if (d <= FTINY)
188 return(-1);
189 if (d < maxrad2) {
190 maxrad2 = d;
191 VCOPY(ocent, v);
192 }
193 }
194 }
195 if (source[sn].sflags & SFLAT) { /* behind source? */
196 multv3(nsnorm, source[sn].snorm, pm);
197 normalize(nsnorm);
198 if (!checkspot(&ourspot, nsnorm))
199 return(-1);
200 }
201 }
202 /* pretest visibility */
203 nsflags = vstestvis(nsflags, op, ocent, maxrad2, sn);
204 if (nsflags & SSKIP)
205 return(-1); /* obstructed */
206 /* it all checks out, so make it */
207 if ((i = newsource()) < 0)
208 goto memerr;
209 source[i].sflags = nsflags;
210 VCOPY(source[i].sloc, nsloc);
211 if (nsflags & SFLAT)
212 VCOPY(source[i].snorm, nsnorm);
213 source[i].ss = source[sn].ss; source[i].ss2 = source[sn].ss2;
214 if (nsflags & SSPOT) {
215 if ((source[i].sl.s = (SPOT *)malloc(sizeof(SPOT))) == NULL)
216 goto memerr;
217 copystruct(source[i].sl.s, &ourspot);
218 }
219 if (nsflags & SPROX)
220 source[i].sl.prox = source[sn].sl.prox;
221 source[i].sa.sv.sn = sn;
222 source[i].so = op;
223 return(i);
224 memerr:
225 error(SYSTEM, "out of memory in makevsrc");
226 }
227
228
229 double
230 getdisk(oc, op, sn) /* get visible object disk */
231 FVECT oc;
232 OBJREC *op;
233 register int sn;
234 {
235 double rad2, roffs, offs, d, rd, rdoto;
236 FVECT rnrm, nrm;
237 /* first, use object getdisk function */
238 rad2 = getmaxdisk(oc, op);
239 if (!(source[sn].sflags & SVIRTUAL))
240 return(rad2); /* all done for normal source */
241 /* check for correct side of relay surface */
242 roffs = getplaneq(rnrm, source[sn].so);
243 rd = DOT(rnrm, source[sn].sloc); /* source projection */
244 if (!(source[sn].sflags & SDISTANT))
245 rd -= roffs;
246 d = DOT(rnrm, oc) - roffs; /* disk distance to relay plane */
247 if ((d > 0.) ^ (rd > 0.))
248 return(rad2); /* OK if opposite sides */
249 if (d*d >= rad2)
250 return(0.); /* no relay is possible */
251 /* we need a closer look */
252 offs = getplaneq(nrm, op);
253 rdoto = DOT(rnrm, nrm);
254 if (d*d >= rad2*(1.-rdoto*rdoto))
255 return(0.); /* disk entirely on projection side */
256 /* should shrink disk but I'm lazy */
257 return(rad2);
258 }
259
260
261 int
262 vstestvis(f, o, oc, or2, sn) /* pretest source visibility */
263 int f; /* virtual source flags */
264 OBJREC *o; /* relay object */
265 FVECT oc; /* relay object center */
266 double or2; /* relay object radius squared */
267 register int sn; /* target source number */
268 {
269 RAY sr;
270 FVECT onorm;
271 FVECT offsdir;
272 double or, d;
273 int infront;
274 int stestlim, ssn;
275 int nhit, nok;
276 register int i, n;
277 /* return if pretesting disabled */
278 if (vspretest <= 0)
279 return(f);
280 /* get surface normal */
281 getplaneq(onorm, o);
282 /* set number of rays to sample */
283 if (source[sn].sflags & SDISTANT) {
284 n = (2./3.*PI*PI)*or2/(thescene.cusize*thescene.cusize)*
285 vspretest + .5;
286 infront = DOT(onorm, source[sn].sloc) > 0.;
287 } else {
288 for (i = 0; i < 3; i++)
289 offsdir[i] = source[sn].sloc[i] - oc[i];
290 n = or2/DOT(offsdir,offsdir)*vspretest + .5;
291 infront = DOT(onorm, offsdir) > 0.;
292 }
293 if (n < MINSAMPLES) n = MINSAMPLES;
294 #ifdef DEBUG
295 fprintf(stderr, "pretesting source %d in object %s with %d rays\n",
296 sn, o->oname, n);
297 #endif
298 /* sample */
299 or = sqrt(or2);
300 stestlim = n*STESTMAX;
301 ssn = 0;
302 nhit = nok = 0;
303 while (n-- > 0) {
304 /* get sample point */
305 do {
306 if (ssn >= stestlim) {
307 #ifdef DEBUG
308 fprintf(stderr, "\ttoo hard to hit\n");
309 #endif
310 return(f); /* too small a target! */
311 }
312 for (i = 0; i < 3; i++)
313 offsdir[i] = or*(1. -
314 2.*urand(urind(931*i+5827,ssn)));
315 ssn++;
316 for (i = 0; i < 3; i++)
317 sr.rorg[i] = oc[i] + offsdir[i];
318 d = DOT(offsdir,onorm);
319 if (infront)
320 for (i = 0; i < 3; i++) {
321 sr.rorg[i] -= (d-.0001)*onorm[i];
322 sr.rdir[i] = -onorm[i];
323 }
324 else
325 for (i = 0; i < 3; i++) {
326 sr.rorg[i] -= (d+.0001)*onorm[i];
327 sr.rdir[i] = onorm[i];
328 }
329 rayorigin(&sr, NULL, PRIMARY, 1.0);
330 } while (!(*ofun[o->otype].funp)(o, &sr));
331 /* check against source */
332 samplendx++;
333 if (srcray(&sr, NULL, sn) == 0.)
334 continue;
335 sr.revf = srcvalue;
336 rayvalue(&sr);
337 if (bright(sr.rcol) <= FTINY)
338 continue;
339 nok++;
340 /* check against obstructions */
341 srcray(&sr, NULL, sn);
342 rayvalue(&sr);
343 if (bright(sr.rcol) > FTINY)
344 nhit++;
345 if (nhit > 0 && nhit < nok) {
346 #ifdef DEBUG
347 fprintf(stderr, "\tpartially occluded\n");
348 #endif
349 return(f); /* need to shadow test */
350 }
351 }
352 if (nhit == 0) {
353 #ifdef DEBUG
354 fprintf(stderr, "\t0%% hit rate\n");
355 #endif
356 return(f | SSKIP); /* 0% hit rate: totally occluded */
357 }
358 #ifdef DEBUG
359 fprintf(stderr, "\t100%% hit rate\n");
360 #endif
361 return(f & ~SFOLLOW); /* 100% hit rate: no occlusion */
362 }
363
364
365 #ifdef DEBUG
366 virtverb(sn, fp) /* print verbose description of virtual source */
367 register int sn;
368 FILE *fp;
369 {
370 register int i;
371
372 fprintf(fp, "%s virtual source %d in %s %s\n",
373 source[sn].sflags & SDISTANT ? "distant" : "local",
374 sn, ofun[source[sn].so->otype].funame,
375 source[sn].so->oname);
376 fprintf(fp, "\tat (%f,%f,%f)\n",
377 source[sn].sloc[0], source[sn].sloc[1], source[sn].sloc[2]);
378 fprintf(fp, "\tlinked to source %d (%s)\n",
379 source[sn].sa.sv.sn, source[source[sn].sa.sv.sn].so->oname);
380 if (source[sn].sflags & SFOLLOW)
381 fprintf(fp, "\talways followed\n");
382 else
383 fprintf(fp, "\tnever followed\n");
384 if (!(source[sn].sflags & SSPOT))
385 return;
386 fprintf(fp, "\twith spot aim (%f,%f,%f) and size %f\n",
387 source[sn].sl.s->aim[0], source[sn].sl.s->aim[1],
388 source[sn].sl.s->aim[2], source[sn].sl.s->siz);
389 }
390 #endif