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root/radiance/ray/src/rt/ambient.c
Revision: 2.24
Committed: Thu Mar 24 13:41:04 1994 UTC (30 years, 1 month ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.23: +1 -0 lines
Log Message:
Added new ID to first line of header and changed use of formatval

File Contents

# Content
1 /* Copyright (c) 1993 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * ambient.c - routines dealing with ambient (inter-reflected) component.
9 */
10
11 #include "ray.h"
12
13 #include "octree.h"
14
15 #include "otypes.h"
16
17 #include "ambient.h"
18
19 #include "random.h"
20
21 #define OCTSCALE 0.5 /* ceil((valid rad.)/(cube size)) */
22
23 typedef struct ambtree {
24 AMBVAL *alist; /* ambient value list */
25 struct ambtree *kid; /* 8 child nodes */
26 } AMBTREE; /* ambient octree */
27
28 extern CUBE thescene; /* contains space boundaries */
29
30 #define MAXASET 511 /* maximum number of elements in ambient set */
31 OBJECT ambset[MAXASET+1]={0}; /* ambient include/exclude set */
32
33 double maxarad; /* maximum ambient radius */
34 double minarad; /* minimum ambient radius */
35
36 static AMBTREE atrunk; /* our ambient trunk node */
37
38 static FILE *ambfp = NULL; /* ambient file pointer */
39 static int nunflshed = 0; /* number of unflushed ambient values */
40
41 #define AMBFLUSH (BUFSIZ/AMBVALSIZ)
42
43 #define newambval() (AMBVAL *)bmalloc(sizeof(AMBVAL))
44
45 #define newambtree() (AMBTREE *)calloc(8, sizeof(AMBTREE))
46 #define freeambtree(t) free((char *)(t))
47
48 extern long ftell(), lseek();
49 static int initambfile(), avsave(), avinsert(), loadatree();
50 static AMBVAL *avstore();
51 #ifdef F_SETLKW
52 static aflock();
53 #endif
54
55
56 setambres(ar) /* set ambient resolution */
57 int ar;
58 {
59 ambres = ar < 0 ? 0 : ar; /* may be done already */
60 /* set min & max radii */
61 if (ar <= 0) {
62 minarad = 0.0;
63 maxarad = thescene.cusize / 2.0;
64 } else {
65 minarad = thescene.cusize / ar;
66 maxarad = 16.0 * minarad; /* heuristic */
67 if (maxarad > thescene.cusize / 2.0)
68 maxarad = thescene.cusize / 2.0;
69 }
70 if (maxarad <= FTINY)
71 maxarad = .001;
72 }
73
74
75 setambacc(newa) /* set ambient accuracy */
76 double newa;
77 {
78 static double oldambacc = -1.0;
79 AMBTREE oldatrunk;
80
81 ambacc = newa < 0.0 ? 0.0 : newa; /* may be done already */
82 if (oldambacc < -FTINY)
83 oldambacc = ambacc; /* do nothing first call */
84 if (fabs(newa - oldambacc) < 0.01)
85 return; /* insignificant -- don't bother */
86 if (ambacc <= FTINY)
87 return; /* cannot build new tree */
88 /* else need to rebuild tree */
89 copystruct(&oldatrunk, &atrunk);
90 atrunk.alist = NULL;
91 atrunk.kid = NULL;
92 loadatree(&oldatrunk);
93 oldambacc = ambacc; /* remeber setting for next call */
94 }
95
96
97 setambient(afile) /* initialize calculation */
98 char *afile;
99 {
100 long headlen;
101 AMBVAL amb;
102 /* init ambient limits */
103 setambres(ambres);
104 setambacc(ambacc);
105 if (afile == NULL)
106 return;
107 if (ambacc <= FTINY) {
108 sprintf(errmsg, "zero ambient accuracy so \"%s\" not opened",
109 afile);
110 error(WARNING, errmsg);
111 return;
112 }
113 /* open ambient file */
114 if ((ambfp = fopen(afile, "r+")) != NULL) {
115 initambfile(0);
116 headlen = ftell(ambfp);
117 while (readambval(&amb, ambfp))
118 avinsert(avstore(&amb));
119 /* align */
120 fseek(ambfp, -((ftell(ambfp)-headlen)%AMBVALSIZ), 1);
121 } else if ((ambfp = fopen(afile, "w+")) != NULL)
122 initambfile(1);
123 else {
124 sprintf(errmsg, "cannot open ambient file \"%s\"", afile);
125 error(SYSTEM, errmsg);
126 }
127 nunflshed++; /* lie */
128 ambsync();
129 }
130
131
132 ambnotify(obj) /* record new modifier */
133 OBJECT obj;
134 {
135 static int hitlimit = 0;
136 register OBJREC *o = objptr(obj);
137 register char **amblp;
138
139 if (hitlimit || !ismodifier(o->otype))
140 return;
141 for (amblp = amblist; *amblp != NULL; amblp++)
142 if (!strcmp(o->oname, *amblp)) {
143 if (ambset[0] >= MAXASET) {
144 error(WARNING, "too many modifiers in ambient list");
145 hitlimit++;
146 return; /* should this be fatal? */
147 }
148 insertelem(ambset, obj);
149 return;
150 }
151 }
152
153
154 ambient(acol, r) /* compute ambient component for ray */
155 COLOR acol;
156 register RAY *r;
157 {
158 static int rdepth = 0; /* ambient recursion */
159 double d;
160
161 if (ambdiv <= 0) /* no ambient calculation */
162 goto dumbamb;
163 /* check number of bounces */
164 if (rdepth >= ambounce)
165 goto dumbamb;
166 /* check ambient list */
167 if (ambincl != -1 && r->ro != NULL &&
168 ambincl != inset(ambset, r->ro->omod))
169 goto dumbamb;
170
171 if (ambacc <= FTINY) { /* no ambient storage */
172 rdepth++;
173 d = doambient(acol, r, r->rweight, NULL, NULL);
174 rdepth--;
175 if (d == 0.0)
176 goto dumbamb;
177 return;
178 }
179 /* get ambient value */
180 setcolor(acol, 0.0, 0.0, 0.0);
181 d = sumambient(acol, r, rdepth,
182 &atrunk, thescene.cuorg, thescene.cusize);
183 if (d > FTINY)
184 scalecolor(acol, 1.0/d);
185 else {
186 d = makeambient(acol, r, rdepth++);
187 rdepth--;
188 }
189 if (d > FTINY)
190 return;
191 dumbamb: /* return global value */
192 copycolor(acol, ambval);
193 }
194
195
196 double
197 sumambient(acol, r, al, at, c0, s) /* get interpolated ambient value */
198 COLOR acol;
199 register RAY *r;
200 int al;
201 AMBTREE *at;
202 FVECT c0;
203 double s;
204 {
205 double d, e1, e2, wt, wsum;
206 COLOR ct;
207 FVECT ck0;
208 int i;
209 register int j;
210 register AMBVAL *av;
211 /* do this node */
212 wsum = 0.0;
213 for (av = at->alist; av != NULL; av = av->next) {
214 /*
215 * Ambient level test.
216 */
217 if (av->lvl > al) /* list sorted, so this works */
218 break;
219 if (av->weight < r->rweight-FTINY)
220 continue;
221 /*
222 * Ambient radius test.
223 */
224 e1 = 0.0;
225 for (j = 0; j < 3; j++) {
226 d = av->pos[j] - r->rop[j];
227 e1 += d * d;
228 }
229 e1 /= av->rad * av->rad;
230 if (e1 > ambacc*ambacc*1.21)
231 continue;
232 /*
233 * Normal direction test.
234 */
235 e2 = (1.0 - DOT(av->dir, r->ron)) * r->rweight;
236 if (e2 < 0.0) e2 = 0.0;
237 if (e1 + e2 > ambacc*ambacc*1.21)
238 continue;
239 /*
240 * Ray behind test.
241 */
242 d = 0.0;
243 for (j = 0; j < 3; j++)
244 d += (r->rop[j] - av->pos[j]) *
245 (av->dir[j] + r->ron[j]);
246 if (d*0.5 < -minarad*ambacc-.001)
247 continue;
248 /*
249 * Jittering final test reduces image artifacts.
250 */
251 wt = sqrt(e1) + sqrt(e2);
252 wt *= .9 + .2*urand(9015+samplendx);
253 if (wt > ambacc)
254 continue;
255 if (wt <= 1e-3)
256 wt = 1e3;
257 else
258 wt = 1.0 / wt;
259 wsum += wt;
260 extambient(ct, av, r->rop, r->ron);
261 scalecolor(ct, wt);
262 addcolor(acol, ct);
263 }
264 if (at->kid == NULL)
265 return(wsum);
266 /* do children */
267 s *= 0.5;
268 for (i = 0; i < 8; i++) {
269 for (j = 0; j < 3; j++) {
270 ck0[j] = c0[j];
271 if (1<<j & i)
272 ck0[j] += s;
273 if (r->rop[j] < ck0[j] - OCTSCALE*s)
274 break;
275 if (r->rop[j] > ck0[j] + (1.0+OCTSCALE)*s)
276 break;
277 }
278 if (j == 3)
279 wsum += sumambient(acol, r, al, at->kid+i, ck0, s);
280 }
281 return(wsum);
282 }
283
284
285 double
286 makeambient(acol, r, al) /* make a new ambient value */
287 COLOR acol;
288 register RAY *r;
289 int al;
290 {
291 AMBVAL amb;
292 FVECT gp, gd;
293 /* compute weight */
294 amb.weight = pow(AVGREFL, (double)al);
295 if (r->rweight < 0.2*amb.weight) /* heuristic */
296 amb.weight = r->rweight;
297 /* compute ambient */
298 amb.rad = doambient(acol, r, amb.weight, gp, gd);
299 if (amb.rad == 0.0)
300 return(0.0);
301 /* store it */
302 VCOPY(amb.pos, r->rop);
303 VCOPY(amb.dir, r->ron);
304 amb.lvl = al;
305 copycolor(amb.val, acol);
306 VCOPY(amb.gpos, gp);
307 VCOPY(amb.gdir, gd);
308 /* insert into tree */
309 avsave(&amb); /* and save to file */
310 return(amb.rad);
311 }
312
313
314 extambient(cr, ap, pv, nv) /* extrapolate value at pv, nv */
315 COLOR cr;
316 register AMBVAL *ap;
317 FVECT pv, nv;
318 {
319 FVECT v1, v2;
320 register int i;
321 double d;
322
323 d = 1.0; /* zeroeth order */
324 /* gradient due to translation */
325 for (i = 0; i < 3; i++)
326 d += ap->gpos[i]*(pv[i]-ap->pos[i]);
327 /* gradient due to rotation */
328 VCOPY(v1, ap->dir);
329 fcross(v2, v1, nv);
330 d += DOT(ap->gdir, v2);
331 if (d <= 0.0) {
332 setcolor(cr, 0.0, 0.0, 0.0);
333 return;
334 }
335 copycolor(cr, ap->val);
336 scalecolor(cr, d);
337 }
338
339
340 static
341 initambfile(creat) /* initialize ambient file */
342 int creat;
343 {
344 extern char *progname, *octname, VersionID[];
345
346 #ifdef F_SETLKW
347 aflock(creat ? F_WRLCK : F_RDLCK);
348 #endif
349 #ifdef MSDOS
350 setmode(fileno(ambfp), O_BINARY);
351 #endif
352 setbuf(ambfp, bmalloc(BUFSIZ+8));
353 if (creat) { /* new file */
354 newheader("RADIANCE", ambfp);
355 fprintf(ambfp, "%s -av %g %g %g -ab %d -aa %g ",
356 progname, colval(ambval,RED),
357 colval(ambval,GRN), colval(ambval,BLU),
358 ambounce, ambacc);
359 fprintf(ambfp, "-ad %d -as %d -ar %d %s\n",
360 ambdiv, ambssamp, ambres,
361 octname==NULL ? "" : octname);
362 fprintf(ambfp, "SOFTWARE= %s\n", VersionID);
363 fputformat(AMBFMT, ambfp);
364 putc('\n', ambfp);
365 putambmagic(ambfp);
366 } else if (checkheader(ambfp, AMBFMT, NULL) < 0 || !hasambmagic(ambfp))
367 error(USER, "bad ambient file");
368 }
369
370
371 static
372 avsave(av) /* insert and save an ambient value */
373 AMBVAL *av;
374 {
375 avinsert(avstore(av));
376 if (ambfp == NULL)
377 return;
378 if (writambval(av, ambfp) < 0)
379 goto writerr;
380 if (++nunflshed >= AMBFLUSH)
381 if (ambsync() == EOF)
382 goto writerr;
383 return;
384 writerr:
385 error(SYSTEM, "error writing ambient file");
386 }
387
388
389 static AMBVAL *
390 avstore(aval) /* allocate memory and store aval */
391 register AMBVAL *aval;
392 {
393 register AMBVAL *av;
394
395 if ((av = newambval()) == NULL)
396 error(SYSTEM, "out of memory in avstore");
397 copystruct(av, aval);
398 return(av);
399 }
400
401
402 static
403 avinsert(av) /* insert ambient value in our tree */
404 register AMBVAL *av;
405 {
406 register AMBTREE *at;
407 register AMBVAL *ap;
408 AMBVAL avh;
409 FVECT ck0;
410 double s;
411 int branch;
412 register int i;
413
414 if (av->rad <= FTINY)
415 error(CONSISTENCY, "zero ambient radius in avinsert");
416 at = &atrunk;
417 VCOPY(ck0, thescene.cuorg);
418 s = thescene.cusize;
419 while (s*(OCTSCALE/2) > av->rad*ambacc) {
420 if (at->kid == NULL)
421 if ((at->kid = newambtree()) == NULL)
422 error(SYSTEM, "out of memory in avinsert");
423 s *= 0.5;
424 branch = 0;
425 for (i = 0; i < 3; i++)
426 if (av->pos[i] > ck0[i] + s) {
427 ck0[i] += s;
428 branch |= 1 << i;
429 }
430 at = at->kid + branch;
431 }
432 avh.next = at->alist; /* order by increasing level */
433 for (ap = &avh; ap->next != NULL; ap = ap->next)
434 if (ap->next->lvl >= av->lvl)
435 break;
436 av->next = ap->next;
437 ap->next = av;
438 at->alist = avh.next;
439 }
440
441
442 static
443 loadatree(at) /* move tree to main store */
444 register AMBTREE *at;
445 {
446 register AMBVAL *av;
447 register int i;
448 /* transfer values at this node */
449 for (av = at->alist; av != NULL; av = at->alist) {
450 at->alist = av->next;
451 avinsert(av);
452 }
453 if (at->kid == NULL)
454 return;
455 for (i = 0; i < 8; i++) /* transfer and free children */
456 loadatree(at->kid+i);
457 freeambtree(at->kid);
458 }
459
460
461 #ifdef F_SETLKW
462
463 static
464 aflock(typ) /* lock/unlock ambient file */
465 int typ;
466 {
467 static struct flock fls; /* static so initialized to zeroes */
468
469 fls.l_type = typ;
470 if (fcntl(fileno(ambfp), F_SETLKW, &fls) < 0)
471 error(SYSTEM, "cannot (un)lock ambient file");
472 }
473
474
475 int
476 ambsync() /* synchronize ambient file */
477 {
478 static FILE *ambinp = NULL;
479 static long lastpos = -1;
480 long flen;
481 AMBVAL avs;
482 register int n;
483
484 if (nunflshed == 0)
485 return(0);
486 if (lastpos < 0) /* initializing (locked in initambfile) */
487 goto syncend;
488 /* gain exclusive access */
489 aflock(F_WRLCK);
490 /* see if file has grown */
491 if ((flen = lseek(fileno(ambfp), 0L, 2)) < 0)
492 goto seekerr;
493 if (n = flen - lastpos) { /* file has grown */
494 if (ambinp == NULL) { /* use duplicate filedes */
495 ambinp = fdopen(dup(fileno(ambfp)), "r");
496 if (ambinp == NULL)
497 error(SYSTEM, "fdopen failed in ambsync");
498 }
499 if (fseek(ambinp, lastpos, 0) < 0)
500 goto seekerr;
501 while (n >= AMBVALSIZ) { /* load contributed values */
502 readambval(&avs, ambinp);
503 avinsert(avstore(&avs));
504 n -= AMBVALSIZ;
505 }
506 /*** seek always as safety measure
507 if (n) ***/ /* alignment */
508 if (lseek(fileno(ambfp), flen-n, 0) < 0)
509 goto seekerr;
510 }
511 #ifdef DEBUG
512 if (ambfp->_ptr - ambfp->_base != nunflshed*AMBVALSIZ) {
513 sprintf(errmsg, "ambient file buffer at %d rather than %d",
514 ambfp->_ptr - ambfp->_base,
515 nunflshed*AMBVALSIZ);
516 error(CONSISTENCY, errmsg);
517 }
518 #endif
519 syncend:
520 n = fflush(ambfp); /* calls write() at last */
521 if ((lastpos = lseek(fileno(ambfp), 0L, 1)) < 0)
522 goto seekerr;
523 aflock(F_UNLCK); /* release file */
524 nunflshed = 0;
525 return(n);
526 seekerr:
527 error(SYSTEM, "seek failed in ambsync");
528 }
529
530 #else
531
532 int
533 ambsync() /* flush ambient file */
534 {
535 if (nunflshed == 0)
536 return(0);
537 nunflshed = 0;
538 return(fflush(ambfp));
539 }
540
541 #endif