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root/radiance/ray/src/rt/rpict.c
Revision: 2.22
Committed: Thu Jan 21 10:08:59 1993 UTC (31 years, 3 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.21: +9 -5 lines
Log Message:
changed signals so ALRM always causes exit, CONT now used by rpict

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 * rpict.c - routines and variables for picture generation.
9 *
10 * 8/14/85
11 */
12
13 #include "ray.h"
14
15 #ifdef BSD
16 #include <sys/time.h>
17 #include <sys/resource.h>
18 #endif
19
20 #include <signal.h>
21
22 #include "view.h"
23
24 #include "resolu.h"
25
26 #include "random.h"
27
28 #include "paths.h"
29
30 #define RFTEMPLATE "rfXXXXXX"
31
32 #ifndef SIGCONT
33 #define SIGCONT SIGIO
34 #endif
35
36 int dimlist[MAXDIM]; /* sampling dimensions */
37 int ndims = 0; /* number of sampling dimensions */
38 int samplendx; /* sample index number */
39
40 VIEW ourview = STDVIEW; /* view parameters */
41 int hresolu = 512; /* horizontal resolution */
42 int vresolu = 512; /* vertical resolution */
43 double pixaspect = 1.0; /* pixel aspect ratio */
44
45 int psample = 4; /* pixel sample size */
46 double maxdiff = .05; /* max. difference for interpolation */
47 double dstrpix = 0.67; /* square pixel distribution */
48
49 double dstrsrc = 0.0; /* square source distribution */
50 double shadthresh = .05; /* shadow threshold */
51 double shadcert = .5; /* shadow certainty */
52 int directrelay = 1; /* number of source relays */
53 int vspretest = 512; /* virtual source pretest density */
54 int directvis = 1; /* sources visible? */
55 double srcsizerat = .25; /* maximum ratio source size/dist. */
56
57 double specthresh = .15; /* specular sampling threshold */
58 double specjitter = 1.; /* specular sampling jitter */
59
60 int maxdepth = 6; /* maximum recursion depth */
61 double minweight = 5e-3; /* minimum ray weight */
62
63 COLOR ambval = BLKCOLOR; /* ambient value */
64 double ambacc = 0.2; /* ambient accuracy */
65 int ambres = 32; /* ambient resolution */
66 int ambdiv = 128; /* ambient divisions */
67 int ambssamp = 0; /* ambient super-samples */
68 int ambounce = 0; /* ambient bounces */
69 char *amblist[128]; /* ambient include/exclude list */
70 int ambincl = -1; /* include == 1, exclude == 0 */
71
72 #ifdef MSDOS
73 int ralrm = 60; /* seconds between reports */
74 #else
75 int ralrm = 0; /* seconds between reports */
76 #endif
77
78 double pctdone = 0.0; /* percentage done */
79
80 long tlastrept = 0L; /* time at last report */
81
82 extern long time();
83 extern long tstart; /* starting time */
84
85 extern long nrays; /* number of rays traced */
86
87 #define MAXDIV 16 /* maximum sample size */
88
89 #define pixjitter() (.5+dstrpix*(.5-frandom()))
90
91 static int hres, vres; /* resolution for this frame */
92
93 extern char *mktemp();
94
95 double pixvalue();
96
97
98 quit(code) /* quit program */
99 int code;
100 {
101 if (code) /* report status */
102 report();
103 headclean(); /* delete header file */
104 pfclean(); /* clean up persist files */
105 exit(code);
106 }
107
108
109 #ifdef BSD
110 report() /* report progress */
111 {
112 struct rusage rubuf;
113 double t;
114
115 getrusage(RUSAGE_SELF, &rubuf);
116 t = (rubuf.ru_utime.tv_usec + rubuf.ru_stime.tv_usec) / 1e6;
117 t += rubuf.ru_utime.tv_sec + rubuf.ru_stime.tv_sec;
118 getrusage(RUSAGE_CHILDREN, &rubuf);
119 t += (rubuf.ru_utime.tv_usec + rubuf.ru_stime.tv_usec) / 1e6;
120 t += rubuf.ru_utime.tv_sec + rubuf.ru_stime.tv_sec;
121
122 sprintf(errmsg, "%ld rays, %4.2f%% done after %5.4f CPU hours\n",
123 nrays, pctdone, t/3600.0);
124 eputs(errmsg);
125 tlastrept = time((long *)0);
126 }
127 #else
128 report() /* report progress */
129 {
130 tlastrept = time((long *)0);
131 sprintf(errmsg, "%ld rays, %4.2f%% done after %5.4f hours\n",
132 nrays, pctdone, (tlastrept-tstart)/3600.0);
133 eputs(errmsg);
134 signal(SIGCONT, report);
135 }
136 #endif
137
138
139 rpict(seq, pout, zout, prvr) /* generate image(s) */
140 int seq;
141 char *pout, *zout, *prvr;
142 /*
143 * If seq is greater than zero, then we will render a sequence of
144 * images based on view parameter strings read from the standard input.
145 * If pout is NULL, then all images will be sent to the standard ouput.
146 * If seq is greater than zero and prvr is an integer, then it is the
147 * frame number at which rendering should begin. Preceeding view parameter
148 * strings will be skipped in the input.
149 * If pout and prvr are the same, prvr is renamed to avoid overwriting.
150 * Note that pout and zout should contain %d format specifications for
151 * sequenced file naming.
152 */
153 {
154 extern char *rindex(), *strncpy(), *strcat(), *strcpy();
155 char fbuf[128], fbuf2[128];
156 register char *cp;
157 RESOLU rs;
158 double pa;
159 /* check sampling */
160 if (psample < 1)
161 psample = 1;
162 else if (psample > MAXDIV) {
163 sprintf(errmsg, "pixel sampling reduced from %d to %d",
164 psample, MAXDIV);
165 error(WARNING, errmsg);
166 psample = MAXDIV;
167 }
168 /* get starting frame */
169 if (seq <= 0)
170 seq = 0;
171 else if (prvr != NULL && isint(prvr)) {
172 register int rn; /* skip to specified view */
173 if ((rn = atoi(prvr)) < seq)
174 error(USER, "recover frame less than start frame");
175 if (pout == NULL)
176 error(USER, "missing output file specification");
177 for ( ; seq < rn; seq++)
178 if (nextview(stdin) == EOF)
179 error(USER, "unexpected EOF on view input");
180 prvr = fbuf; /* mark for renaming */
181 }
182 if (pout != NULL & prvr != NULL) {
183 sprintf(fbuf, pout, seq);
184 if (!strcmp(prvr, fbuf)) { /* rename */
185 strcpy(fbuf2, fbuf);
186 for (cp = fbuf2; *cp; cp++)
187 ;
188 while (cp > fbuf2 && !ISDIRSEP(cp[-1]))
189 cp--;
190 strcpy(cp, RFTEMPLATE);
191 prvr = mktemp(fbuf2);
192 if (rename(fbuf, prvr) < 0 && errno != ENOENT) {
193 sprintf(errmsg,
194 "cannot rename \"%s\" to \"%s\"",
195 fbuf, prvr);
196 error(SYSTEM, errmsg);
197 }
198 }
199 }
200 /* render sequence */
201 do {
202 if (seq && nextview(stdin) == EOF)
203 break;
204 if (pout != NULL) {
205 sprintf(fbuf, pout, seq);
206 if (freopen(fbuf, "w", stdout) == NULL) {
207 sprintf(errmsg,
208 "cannot open output file \"%s\"", fbuf);
209 error(SYSTEM, errmsg);
210 }
211 #ifdef MSDOS
212 setmode(fileno(stdout), O_BINARY);
213 #endif
214 dupheader();
215 }
216 hres = hresolu; vres = vresolu; pa = pixaspect;
217 if (prvr != NULL)
218 if (viewfile(prvr, &ourview, &rs) <= 0
219 || rs.or != PIXSTANDARD) {
220 sprintf(errmsg,
221 "cannot recover view parameters from \"%s\"", prvr);
222 error(WARNING, errmsg);
223 } else {
224 pa = 0.0;
225 hres = scanlen(&rs);
226 vres = numscans(&rs);
227 }
228 if ((cp = setview(&ourview)) != NULL)
229 error(USER, cp);
230 normaspect(viewaspect(&ourview), &pa, &hres, &vres);
231 if (seq) {
232 if (ralrm > 0) {
233 fprintf(stderr, "FRAME %d:", seq);
234 fprintview(&ourview, stderr);
235 putc('\n', stderr);
236 fflush(stderr);
237 }
238 printf("FRAME=%d\n", seq);
239 }
240 fputs(VIEWSTR, stdout);
241 fprintview(&ourview, stdout);
242 putchar('\n');
243 if (pa < .99 || pa > 1.01)
244 fputaspect(pa, stdout);
245 fputformat(COLRFMT, stdout);
246 putchar('\n');
247 if (zout != NULL)
248 sprintf(cp=fbuf, zout, seq);
249 else
250 cp = NULL;
251 render(cp, prvr);
252 prvr = NULL;
253 } while (seq++);
254 }
255
256
257 nextview(fp) /* get next view from fp */
258 FILE *fp;
259 {
260 char linebuf[256];
261
262 while (fgets(linebuf, sizeof(linebuf), fp) != NULL)
263 if (isview(linebuf) && sscanview(&ourview, linebuf) > 0)
264 return(0);
265 return(EOF);
266 }
267
268
269 render(zfile, oldfile) /* render the scene */
270 char *zfile, *oldfile;
271 {
272 extern long lseek();
273 COLOR *scanbar[MAXDIV+1]; /* scanline arrays of pixel values */
274 float *zbar[MAXDIV+1]; /* z values */
275 char *sampdens; /* previous sample density */
276 int ypos; /* current scanline */
277 int ystep; /* current y step size */
278 int hstep; /* h step size */
279 int zfd;
280 COLOR *colptr;
281 float *zptr;
282 register int i;
283 /* allocate scanlines */
284 for (i = 0; i <= psample; i++) {
285 scanbar[i] = (COLOR *)malloc(hres*sizeof(COLOR));
286 if (scanbar[i] == NULL)
287 goto memerr;
288 }
289 hstep = (psample*140+49)/99; /* quincunx sampling */
290 ystep = (psample*99+70)/140;
291 if (hstep > 2) {
292 i = hres/hstep + 2;
293 if ((sampdens = malloc(i)) == NULL)
294 goto memerr;
295 while (i--)
296 sampdens[i] = hstep;
297 } else
298 sampdens = NULL;
299 /* open z file */
300 if (zfile != NULL) {
301 if ((zfd = open(zfile, O_WRONLY|O_CREAT, 0666)) == -1) {
302 sprintf(errmsg, "cannot open z file \"%s\"", zfile);
303 error(SYSTEM, errmsg);
304 }
305 #ifdef MSDOS
306 setmode(zfd, O_BINARY);
307 #endif
308 for (i = 0; i <= psample; i++) {
309 zbar[i] = (float *)malloc(hres*sizeof(float));
310 if (zbar[i] == NULL)
311 goto memerr;
312 }
313 } else {
314 zfd = -1;
315 for (i = 0; i <= psample; i++)
316 zbar[i] = NULL;
317 }
318 /* write out boundaries */
319 fprtresolu(hres, vres, stdout);
320 /* recover file and compute first */
321 i = salvage(oldfile);
322 if (zfd != -1 && i > 0 &&
323 lseek(zfd, (long)i*hres*sizeof(float), 0) == -1)
324 error(SYSTEM, "z file seek error in render");
325 pctdone = 100.0*i/vres;
326 if (ralrm > 0) /* report init stats */
327 report();
328 #ifndef BSD
329 else
330 #endif
331 signal(SIGCONT, report);
332 ypos = vres-1 - i;
333 fillscanline(scanbar[0], zbar[0], sampdens, hres, ypos, hstep);
334 /* compute scanlines */
335 for (ypos -= ystep; ypos > -ystep; ypos -= ystep) {
336 /* bottom adjust? */
337 if (ypos < 0) {
338 ystep += ypos;
339 ypos = 0;
340 }
341 colptr = scanbar[ystep]; /* move base to top */
342 scanbar[ystep] = scanbar[0];
343 scanbar[0] = colptr;
344 zptr = zbar[ystep];
345 zbar[ystep] = zbar[0];
346 zbar[0] = zptr;
347 /* fill base line */
348 fillscanline(scanbar[0], zbar[0], sampdens,
349 hres, ypos, hstep);
350 /* fill bar */
351 fillscanbar(scanbar, zbar, hres, ypos, ystep);
352 /* write it out */
353 #ifndef BSD
354 signal(SIGCONT, SIG_IGN); /* don't interrupt writes */
355 #endif
356 for (i = ystep; i > 0; i--) {
357 if (zfd != -1 && write(zfd, (char *)zbar[i],
358 hres*sizeof(float))
359 < hres*sizeof(float))
360 goto writerr;
361 if (fwritescan(scanbar[i], hres, stdout) < 0)
362 goto writerr;
363 }
364 if (fflush(stdout) == EOF)
365 goto writerr;
366 /* record progress */
367 pctdone = 100.0*(vres-1-ypos)/vres;
368 if (ralrm > 0 && time((long *)0) >= tlastrept+ralrm)
369 report();
370 #ifndef BSD
371 else
372 signal(SIGCONT, report);
373 #endif
374 }
375 /* clean up */
376 signal(SIGCONT, SIG_IGN);
377 if (zfd != -1) {
378 if (write(zfd, (char *)zbar[0], hres*sizeof(float))
379 < hres*sizeof(float))
380 goto writerr;
381 if (close(zfd) == -1)
382 goto writerr;
383 for (i = 0; i <= psample; i++)
384 free((char *)zbar[i]);
385 }
386 fwritescan(scanbar[0], hres, stdout);
387 if (fflush(stdout) == EOF)
388 goto writerr;
389 for (i = 0; i <= psample; i++)
390 free((char *)scanbar[i]);
391 if (sampdens != NULL)
392 free(sampdens);
393 pctdone = 100.0;
394 if (ralrm > 0)
395 report();
396 return;
397 writerr:
398 error(SYSTEM, "write error in render");
399 memerr:
400 error(SYSTEM, "out of memory in render");
401 }
402
403
404 fillscanline(scanline, zline, sd, xres, y, xstep) /* fill scan at y */
405 register COLOR *scanline;
406 register float *zline;
407 register char *sd;
408 int xres, y, xstep;
409 {
410 static int nc = 0; /* number of calls */
411 int bl = xstep, b = xstep;
412 double z;
413 register int i;
414
415 z = pixvalue(scanline[0], 0, y);
416 if (zline) zline[0] = z;
417 /* zig-zag start for quincunx pattern */
418 for (i = ++nc & 1 ? xstep : xstep/2; i < xres-1+xstep; i += xstep) {
419 if (i >= xres) {
420 xstep += xres-1-i;
421 i = xres-1;
422 }
423 z = pixvalue(scanline[i], i, y);
424 if (zline) zline[i] = z;
425 if (sd) b = sd[0] > sd[1] ? sd[0] : sd[1];
426 if (i <= xstep)
427 b = fillsample(scanline, zline, 0, y, i, 0, b/2);
428 else
429 b = fillsample(scanline+i-xstep,
430 zline ? zline+i-xstep : NULL,
431 i-xstep, y, xstep, 0, b/2);
432 if (sd) *sd++ = nc & 1 ? bl : b;
433 bl = b;
434 }
435 if (sd && nc & 1) *sd = bl;
436 }
437
438
439 fillscanbar(scanbar, zbar, xres, y, ysize) /* fill interior */
440 register COLOR *scanbar[];
441 register float *zbar[];
442 int xres, y, ysize;
443 {
444 COLOR vline[MAXDIV+1];
445 float zline[MAXDIV+1];
446 int b = ysize;
447 register int i, j;
448
449 for (i = 0; i < xres; i++) {
450
451 copycolor(vline[0], scanbar[0][i]);
452 copycolor(vline[ysize], scanbar[ysize][i]);
453 if (zbar[0]) {
454 zline[0] = zbar[0][i];
455 zline[ysize] = zbar[ysize][i];
456 }
457
458 b = fillsample(vline, zbar[0] ? zline : NULL,
459 i, y, 0, ysize, b/2);
460
461 for (j = 1; j < ysize; j++)
462 copycolor(scanbar[j][i], vline[j]);
463 if (zbar[0])
464 for (j = 1; j < ysize; j++)
465 zbar[j][i] = zline[j];
466 }
467 }
468
469
470 int
471 fillsample(colline, zline, x, y, xlen, ylen, b) /* fill interior points */
472 register COLOR *colline;
473 register float *zline;
474 int x, y;
475 int xlen, ylen;
476 int b;
477 {
478 double ratio;
479 double z;
480 COLOR ctmp;
481 int ncut;
482 register int len;
483
484 if (xlen > 0) /* x or y length is zero */
485 len = xlen;
486 else
487 len = ylen;
488
489 if (len <= 1) /* limit recursion */
490 return(0);
491
492 if (b > 0
493 || (zline && 2.*fabs(zline[0]-zline[len]) > maxdiff*(zline[0]+zline[len]))
494 || bigdiff(colline[0], colline[len], maxdiff)) {
495
496 z = pixvalue(colline[len>>1], x + (xlen>>1), y + (ylen>>1));
497 if (zline) zline[len>>1] = z;
498 ncut = 1;
499
500 } else { /* interpolate */
501
502 copycolor(colline[len>>1], colline[len]);
503 ratio = (double)(len>>1) / len;
504 scalecolor(colline[len>>1], ratio);
505 if (zline) zline[len>>1] = zline[len] * ratio;
506 ratio = 1.0 - ratio;
507 copycolor(ctmp, colline[0]);
508 scalecolor(ctmp, ratio);
509 addcolor(colline[len>>1], ctmp);
510 if (zline) zline[len>>1] += zline[0] * ratio;
511 ncut = 0;
512 }
513 /* recurse */
514 ncut += fillsample(colline, zline, x, y, xlen>>1, ylen>>1, (b-1)/2);
515
516 ncut += fillsample(colline+(len>>1), zline ? zline+(len>>1) : NULL,
517 x+(xlen>>1), y+(ylen>>1),
518 xlen-(xlen>>1), ylen-(ylen>>1), b/2);
519
520 return(ncut);
521 }
522
523
524 double
525 pixvalue(col, x, y) /* compute pixel value */
526 COLOR col; /* returned color */
527 int x, y; /* pixel position */
528 {
529 static RAY thisray;
530
531 if (viewray(thisray.rorg, thisray.rdir, &ourview,
532 (x+pixjitter())/hres, (y+pixjitter())/vres) < 0) {
533 setcolor(col, 0.0, 0.0, 0.0);
534 return(0.0);
535 }
536
537 rayorigin(&thisray, NULL, PRIMARY, 1.0);
538
539 samplendx = pixnumber(x,y,hres,vres); /* set pixel index */
540
541 rayvalue(&thisray); /* trace ray */
542
543 copycolor(col, thisray.rcol); /* return color */
544
545 return(thisray.rt); /* return distance */
546 }
547
548
549 int
550 salvage(oldfile) /* salvage scanlines from killed program */
551 char *oldfile;
552 {
553 COLR *scanline;
554 FILE *fp;
555 int x, y;
556
557 if (oldfile == NULL)
558 return(0);
559
560 if ((fp = fopen(oldfile, "r")) == NULL) {
561 sprintf(errmsg, "cannot open recover file \"%s\"", oldfile);
562 error(WARNING, errmsg);
563 return(0);
564 }
565 #ifdef MSDOS
566 setmode(fileno(fp), O_BINARY);
567 #endif
568 /* discard header */
569 getheader(fp, NULL, NULL);
570 /* get picture size */
571 if (!fscnresolu(&x, &y, fp)) {
572 sprintf(errmsg, "bad recover file \"%s\"", oldfile);
573 error(WARNING, errmsg);
574 fclose(fp);
575 return(0);
576 }
577
578 if (x != hres || y != vres) {
579 sprintf(errmsg, "resolution mismatch in recover file \"%s\"",
580 oldfile);
581 error(USER, errmsg);
582 }
583
584 scanline = (COLR *)malloc(hres*sizeof(COLR));
585 if (scanline == NULL)
586 error(SYSTEM, "out of memory in salvage");
587 for (y = 0; y < vres; y++) {
588 if (freadcolrs(scanline, hres, fp) < 0)
589 break;
590 if (fwritecolrs(scanline, hres, stdout) < 0)
591 goto writerr;
592 }
593 if (fflush(stdout) == EOF)
594 goto writerr;
595 free((char *)scanline);
596 fclose(fp);
597 unlink(oldfile);
598 return(y);
599 writerr:
600 sprintf(errmsg, "write error during recovery of \"%s\"", oldfile);
601 error(SYSTEM, errmsg);
602 }
603
604
605 int
606 pixnumber(x, y, xres, yres) /* compute pixel index (brushed) */
607 register int x, y;
608 int xres, yres;
609 {
610 x -= y;
611 while (x < 0)
612 x += xres;
613 return((((x>>2)*yres + y) << 2) + (x & 3));
614 }