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root/radiance/ray/src/rt/rtrace.c
Revision: 2.15
Committed: Fri Jun 18 10:14:42 1993 UTC (30 years, 10 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.14: +31 -0 lines
Log Message:
added -ti, -te, -tI and -tE options to rtrace for exclude/include traces

File Contents

# Content
1 /* Copyright (c) 1992 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * rtrace.c - program and variables for individual ray tracing.
9 *
10 * 6/11/86
11 */
12
13 /*
14 * Input is in the form:
15 *
16 * xorg yorg zorg xdir ydir zdir
17 *
18 * The direction need not be normalized. Output is flexible.
19 * If the direction vector is (0,0,0), then the output is flushed.
20 * All values default to ascii representation of real
21 * numbers. Binary representations can be selected
22 * with '-ff' for float or '-fd' for double. By default,
23 * radiance is computed. The '-i' or '-I' options indicate that
24 * irradiance values are desired.
25 */
26
27 #include "ray.h"
28
29 #include "octree.h"
30
31 #include "otypes.h"
32
33 #include "resolu.h"
34
35 int dimlist[MAXDIM]; /* sampling dimensions */
36 int ndims = 0; /* number of sampling dimensions */
37 int samplendx = 0; /* index for this sample */
38
39 int imm_irrad = 0; /* compute immediate irradiance? */
40
41 int inform = 'a'; /* input format */
42 int outform = 'a'; /* output format */
43 char *outvals = "v"; /* output specification */
44
45 char *tralist[128]; /* list of modifers to trace (or no) */
46 int traincl = -1; /* include == 1, exclude == 0 */
47 #define MAXTSET 511 /* maximum number in trace set */
48 OBJECT traset[MAXTSET+1]={0}; /* trace include/exclude set */
49
50 int hresolu = 0; /* horizontal (scan) size */
51 int vresolu = 0; /* vertical resolution */
52
53 double dstrsrc = 0.0; /* square source distribution */
54 double shadthresh = .05; /* shadow threshold */
55 double shadcert = .5; /* shadow certainty */
56 int directrelay = 1; /* number of source relays */
57 int vspretest = 512; /* virtual source pretest density */
58 int directvis = 1; /* sources visible? */
59 double srcsizerat = .25; /* maximum ratio source size/dist. */
60
61 double specthresh = .15; /* specular sampling threshold */
62 double specjitter = 1.; /* specular sampling jitter */
63
64 int maxdepth = 6; /* maximum recursion depth */
65 double minweight = 4e-3; /* minimum ray weight */
66
67 COLOR ambval = BLKCOLOR; /* ambient value */
68 double ambacc = 0.2; /* ambient accuracy */
69 int ambres = 32; /* ambient resolution */
70 int ambdiv = 128; /* ambient divisions */
71 int ambssamp = 0; /* ambient super-samples */
72 int ambounce = 0; /* ambient bounces */
73 char *amblist[128]; /* ambient include/exclude list */
74 int ambincl = -1; /* include == 1, exclude == 0 */
75
76 extern OBJREC Lamb; /* a Lambertian surface */
77
78 static RAY thisray; /* for our convenience */
79
80 static int oputo(), oputd(), oputv(), oputl(), oputL(),
81 oputp(), oputn(), oputN(), oputs(), oputw(), oputm();
82
83 static int ourtrace(), tabin();
84 static int (*ray_out[16])(), (*every_out[16])();
85 static int castonly = 0;
86
87 static int puta(), putf(), putd();
88
89 static int (*putreal)();
90
91
92 quit(code) /* quit program */
93 int code;
94 {
95 #ifndef NIX
96 headclean(); /* delete header file */
97 pfclean(); /* clean up persist files */
98 #endif
99 exit(code);
100 }
101
102
103 char *
104 formstr(f) /* return format identifier */
105 int f;
106 {
107 switch (f) {
108 case 'a': return("ascii");
109 case 'f': return("float");
110 case 'd': return("double");
111 case 'c': return(COLRFMT);
112 }
113 return("unknown");
114 }
115
116
117 rtrace(fname) /* trace rays from file */
118 char *fname;
119 {
120 long vcount = hresolu>1 ? hresolu*vresolu : vresolu;
121 long nextflush = hresolu;
122 FILE *fp;
123 FVECT orig, direc;
124 /* set up input */
125 if (fname == NULL)
126 fp = stdin;
127 else if ((fp = fopen(fname, "r")) == NULL) {
128 sprintf(errmsg, "cannot open input file \"%s\"", fname);
129 error(SYSTEM, errmsg);
130 }
131 #ifdef MSDOS
132 if (inform != 'a')
133 setmode(fileno(fp), O_BINARY);
134 #endif
135 /* set up output */
136 if (imm_irrad)
137 outvals = "v";
138 else
139 setoutput(outvals);
140 switch (outform) {
141 case 'a': putreal = puta; break;
142 case 'f': putreal = putf; break;
143 case 'd': putreal = putd; break;
144 case 'c':
145 if (strcmp(outvals, "v"))
146 error(USER, "color format with value output only");
147 break;
148 default:
149 error(CONSISTENCY, "botched output format");
150 }
151 if (hresolu > 0) {
152 if (vresolu > 0)
153 fprtresolu(hresolu, vresolu, stdout);
154 fflush(stdout);
155 }
156 /* process file */
157 while (getvec(orig, inform, fp) == 0 &&
158 getvec(direc, inform, fp) == 0) {
159
160 if (normalize(direc) == 0.0) { /* zero ==> flush */
161 fflush(stdout);
162 continue;
163 }
164 samplendx++;
165 /* compute and print */
166 if (imm_irrad)
167 irrad(orig, direc);
168 else
169 traceray(orig, direc);
170 /* flush if time */
171 if (--nextflush == 0) {
172 fflush(stdout);
173 nextflush = hresolu;
174 }
175 if (ferror(stdout))
176 error(SYSTEM, "write error");
177 if (--vcount == 0) /* check for end */
178 break;
179 }
180 fflush(stdout);
181 if (vcount > 0)
182 error(USER, "read error");
183 if (fname != NULL)
184 fclose(fp);
185 }
186
187
188 setoutput(vs) /* set up output tables */
189 register char *vs;
190 {
191 extern int (*trace)();
192 register int (**table)() = ray_out;
193
194 castonly = 1;
195 while (*vs)
196 switch (*vs++) {
197 case 't': /* trace */
198 *table = NULL;
199 table = every_out;
200 trace = ourtrace;
201 castonly = 0;
202 break;
203 case 'o': /* origin */
204 *table++ = oputo;
205 break;
206 case 'd': /* direction */
207 *table++ = oputd;
208 break;
209 case 'v': /* value */
210 *table++ = oputv;
211 castonly = 0;
212 break;
213 case 'l': /* effective distance */
214 *table++ = oputl;
215 castonly = 0;
216 break;
217 case 'L': /* single ray length */
218 *table++ = oputL;
219 break;
220 case 'p': /* point */
221 *table++ = oputp;
222 break;
223 case 'n': /* perturbed normal */
224 *table++ = oputn;
225 castonly = 0;
226 break;
227 case 'N': /* unperturbed normal */
228 *table++ = oputN;
229 break;
230 case 's': /* surface */
231 *table++ = oputs;
232 break;
233 case 'w': /* weight */
234 *table++ = oputw;
235 break;
236 case 'm': /* modifier */
237 *table++ = oputm;
238 break;
239 }
240 *table = NULL;
241 }
242
243
244 traceray(org, dir) /* compute and print ray value(s) */
245 FVECT org, dir;
246 {
247 register int (**tp)();
248
249 VCOPY(thisray.rorg, org);
250 VCOPY(thisray.rdir, dir);
251 rayorigin(&thisray, NULL, PRIMARY, 1.0);
252 if (castonly)
253 localhit(&thisray, &thescene) || sourcehit(&thisray);
254 else
255 rayvalue(&thisray);
256
257 if (ray_out[0] == NULL)
258 return;
259 for (tp = ray_out; *tp != NULL; tp++)
260 (**tp)(&thisray);
261 if (outform == 'a')
262 putchar('\n');
263 }
264
265
266 irrad(org, dir) /* compute immediate irradiance value */
267 FVECT org, dir;
268 {
269 register int i;
270
271 for (i = 0; i < 3; i++) {
272 thisray.rorg[i] = org[i] + dir[i];
273 thisray.rdir[i] = -dir[i];
274 }
275 rayorigin(&thisray, NULL, PRIMARY, 1.0);
276 /* pretend we hit surface */
277 thisray.rot = 1.0;
278 thisray.rod = 1.0;
279 VCOPY(thisray.ron, dir);
280 for (i = 0; i < 3; i++) /* fudge factor */
281 thisray.rop[i] = org[i] + 1e-4*dir[i];
282 /* compute and print */
283 (*ofun[Lamb.otype].funp)(&Lamb, &thisray);
284 oputv(&thisray);
285 if (outform == 'a')
286 putchar('\n');
287 }
288
289
290 getvec(vec, fmt, fp) /* get a vector from fp */
291 register FVECT vec;
292 int fmt;
293 FILE *fp;
294 {
295 extern char *fgetword();
296 static float vf[3];
297 static double vd[3];
298 char buf[32];
299 register int i;
300
301 switch (fmt) {
302 case 'a': /* ascii */
303 for (i = 0; i < 3; i++) {
304 if (fgetword(buf, sizeof(buf), fp) == NULL ||
305 !isflt(buf))
306 return(-1);
307 vec[i] = atof(buf);
308 }
309 break;
310 case 'f': /* binary float */
311 if (fread((char *)vf, sizeof(float), 3, fp) != 3)
312 return(-1);
313 vec[0] = vf[0]; vec[1] = vf[1]; vec[2] = vf[2];
314 break;
315 case 'd': /* binary double */
316 if (fread((char *)vd, sizeof(double), 3, fp) != 3)
317 return(-1);
318 vec[0] = vd[0]; vec[1] = vd[1]; vec[2] = vd[2];
319 break;
320 default:
321 error(CONSISTENCY, "botched input format");
322 }
323 return(0);
324 }
325
326
327 tranotify(obj) /* record new modifier */
328 OBJECT obj;
329 {
330 static int hitlimit = 0;
331 register OBJREC *o = objptr(obj);
332 register char **tralp;
333
334 if (hitlimit || !ismodifier(o->otype))
335 return;
336 for (tralp = tralist; *tralp != NULL; tralp++)
337 if (!strcmp(o->oname, *tralp)) {
338 if (traset[0] >= MAXTSET) {
339 error(WARNING, "too many modifiers in trace list");
340 hitlimit++;
341 return; /* should this be fatal? */
342 }
343 insertelem(traset, obj);
344 return;
345 }
346 }
347
348
349 static
350 ourtrace(r) /* print ray values */
351 RAY *r;
352 {
353 register int (**tp)();
354
355 if (every_out[0] == NULL)
356 return;
357 if (traincl == 1 && r->ro == NULL)
358 return;
359 if (traincl != -1 && traincl != inset(traset, r->ro->omod))
360 return;
361 tabin(r);
362 for (tp = every_out; *tp != NULL; tp++)
363 (**tp)(r);
364 putchar('\n');
365 }
366
367
368 static
369 tabin(r) /* tab in appropriate amount */
370 RAY *r;
371 {
372 register RAY *rp;
373
374 for (rp = r->parent; rp != NULL; rp = rp->parent)
375 putchar('\t');
376 }
377
378
379 static
380 oputo(r) /* print origin */
381 register RAY *r;
382 {
383 (*putreal)(r->rorg[0]);
384 (*putreal)(r->rorg[1]);
385 (*putreal)(r->rorg[2]);
386 }
387
388
389 static
390 oputd(r) /* print direction */
391 register RAY *r;
392 {
393 (*putreal)(r->rdir[0]);
394 (*putreal)(r->rdir[1]);
395 (*putreal)(r->rdir[2]);
396 }
397
398
399 static
400 oputv(r) /* print value */
401 register RAY *r;
402 {
403 COLR cout;
404
405 if (outform == 'c') {
406 setcolr(cout, colval(r->rcol,RED),
407 colval(r->rcol,GRN),
408 colval(r->rcol,BLU));
409 fwrite((char *)cout, sizeof(cout), 1, stdout);
410 return;
411 }
412 (*putreal)(colval(r->rcol,RED));
413 (*putreal)(colval(r->rcol,GRN));
414 (*putreal)(colval(r->rcol,BLU));
415 }
416
417
418 static
419 oputl(r) /* print effective distance */
420 register RAY *r;
421 {
422 (*putreal)(r->rt);
423 }
424
425
426 static
427 oputL(r) /* print single ray length */
428 register RAY *r;
429 {
430 (*putreal)(r->rot);
431 }
432
433
434 static
435 oputp(r) /* print point */
436 register RAY *r;
437 {
438 if (r->rot < FHUGE) {
439 (*putreal)(r->rop[0]);
440 (*putreal)(r->rop[1]);
441 (*putreal)(r->rop[2]);
442 } else {
443 (*putreal)(0.0);
444 (*putreal)(0.0);
445 (*putreal)(0.0);
446 }
447 }
448
449
450 static
451 oputN(r) /* print unperturbed normal */
452 register RAY *r;
453 {
454 if (r->rot < FHUGE) {
455 (*putreal)(r->ron[0]);
456 (*putreal)(r->ron[1]);
457 (*putreal)(r->ron[2]);
458 } else {
459 (*putreal)(0.0);
460 (*putreal)(0.0);
461 (*putreal)(0.0);
462 }
463 }
464
465
466 static
467 oputn(r) /* print perturbed normal */
468 RAY *r;
469 {
470 FVECT pnorm;
471
472 if (r->rot >= FHUGE) {
473 (*putreal)(0.0);
474 (*putreal)(0.0);
475 (*putreal)(0.0);
476 return;
477 }
478 raynormal(pnorm, r);
479 (*putreal)(pnorm[0]);
480 (*putreal)(pnorm[1]);
481 (*putreal)(pnorm[2]);
482 }
483
484
485 static
486 oputs(r) /* print name */
487 register RAY *r;
488 {
489 if (r->ro != NULL)
490 fputs(r->ro->oname, stdout);
491 else
492 putchar('*');
493 putchar('\t');
494 }
495
496
497 static
498 oputw(r) /* print weight */
499 register RAY *r;
500 {
501 (*putreal)(r->rweight);
502 }
503
504
505 static
506 oputm(r) /* print modifier */
507 register RAY *r;
508 {
509 if (r->ro != NULL)
510 fputs(objptr(r->ro->omod)->oname, stdout);
511 else
512 putchar('*');
513 putchar('\t');
514 }
515
516
517 static
518 puta(v) /* print ascii value */
519 double v;
520 {
521 printf("%e\t", v);
522 }
523
524
525 static
526 putd(v) /* print binary double */
527 double v;
528 {
529 fwrite((char *)&v, sizeof(v), 1, stdout);
530 }
531
532
533 static
534 putf(v) /* print binary float */
535 double v;
536 {
537 float f = v;
538
539 fwrite((char *)&f, sizeof(f), 1, stdout);
540 }