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root/radiance/ray/src/rt/rv3.c
Revision: 2.30
Committed: Tue Sep 16 21:14:11 2008 UTC (15 years, 7 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.29: +7 -8 lines
Log Message:
Cosmetic changes

File Contents

# Content
1 #ifndef lint
2 static const char RCSid[] = "$Id: rv3.c,v 2.29 2008/09/16 18:35:56 greg Exp $";
3 #endif
4 /*
5 * rv3.c - miscellaneous routines for rview.
6 *
7 * External symbols declared in rpaint.h
8 */
9
10 #include "copyright.h"
11
12 #include <string.h>
13
14 #include "ray.h"
15 #include "rpaint.h"
16 #include "random.h"
17
18 #ifndef WFLUSH
19 #define WFLUSH 64 /* flush after this many primary rays */
20 #endif
21 #ifndef WFLUSH1
22 #define WFLUSH1 512 /* or this many total rays */
23 #endif
24
25
26 #ifdef SMLFLT
27 #define sscanvec(s,v) (sscanf(s,"%f %f %f",v,v+1,v+2)==3)
28 #else
29 #define sscanvec(s,v) (sscanf(s,"%lf %lf %lf",v,v+1,v+2)==3)
30 #endif
31
32 static unsigned long niflush; /* flushes since newimage() */
33
34 int
35 getrect( /* get a box */
36 char *s,
37 RECT *r
38 )
39 {
40 int x0, y0, x1, y1;
41
42 if (*s && !strncmp(s, "all", strlen(s))) {
43 r->l = r->d = 0;
44 r->r = hresolu;
45 r->u = vresolu;
46 return(0);
47 }
48 if (sscanf(s, "%d %d %d %d", &x0, &y0, &x1, &y1) != 4) {
49 if (dev->getcur == NULL)
50 return(-1);
51 (*dev->comout)("Pick first corner\n");
52 if ((*dev->getcur)(&x0, &y0) == ABORT)
53 return(-1);
54 (*dev->comout)("Pick second corner\n");
55 if ((*dev->getcur)(&x1, &y1) == ABORT)
56 return(-1);
57 }
58 if (x0 < x1) {
59 r->l = x0;
60 r->r = x1;
61 } else {
62 r->l = x1;
63 r->r = x0;
64 }
65 if (y0 < y1) {
66 r->d = y0;
67 r->u = y1;
68 } else {
69 r->d = y1;
70 r->u = y0;
71 }
72 if (r->l < 0) r->l = 0;
73 if (r->d < 0) r->d = 0;
74 if (r->r > hresolu) r->r = hresolu;
75 if (r->u > vresolu) r->u = vresolu;
76 if (r->l > r->r) r->l = r->r;
77 if (r->d > r->u) r->d = r->u;
78 return(0);
79 }
80
81
82 int
83 getinterest( /* get area of interest */
84 char *s,
85 int direc,
86 FVECT vec,
87 double *mp
88 )
89 {
90 int x, y;
91 RAY thisray;
92 int i;
93
94 if (sscanf(s, "%lf", mp) != 1)
95 *mp = 1.0;
96 else if (*mp < -FTINY) /* negative zoom is reduction */
97 *mp = -1.0 / *mp;
98 else if (*mp <= FTINY) { /* too small */
99 error(COMMAND, "illegal magnification");
100 return(-1);
101 }
102 if (!sscanvec(sskip(s), vec)) {
103 if (dev->getcur == NULL)
104 return(-1);
105 (*dev->comout)("Pick view center\n");
106 if ((*dev->getcur)(&x, &y) == ABORT)
107 return(-1);
108 if ((thisray.rmax = viewray(thisray.rorg, thisray.rdir,
109 &ourview, (x+.5)/hresolu, (y+.5)/vresolu)) < -FTINY) {
110 error(COMMAND, "not on image");
111 return(-1);
112 }
113 if (!direc || ourview.type == VT_PAR) {
114 rayorigin(&thisray, PRIMARY, NULL, NULL);
115 if (!localhit(&thisray, &thescene)) {
116 error(COMMAND, "not a local object");
117 return(-1);
118 }
119 }
120 if (direc)
121 if (ourview.type == VT_PAR)
122 for (i = 0; i < 3; i++)
123 vec[i] = thisray.rop[i] - ourview.vp[i];
124 else
125 VCOPY(vec, thisray.rdir);
126 else
127 VCOPY(vec, thisray.rop);
128 } else if (direc) {
129 for (i = 0; i < 3; i++)
130 vec[i] -= ourview.vp[i];
131 if (normalize(vec) == 0.0) {
132 error(COMMAND, "point at view origin");
133 return(-1);
134 }
135 }
136 return(0);
137 }
138
139
140 float * /* keep consistent with COLOR typedef */
141 greyof( /* convert color to greyscale */
142 COLOR col
143 )
144 {
145 static COLOR gcol;
146 double b;
147
148 b = bright(col);
149 setcolor(gcol, b, b, b);
150 return(gcol);
151 }
152
153 static void
154 recolor( /* recolor the given node */
155 PNODE *p
156 )
157 {
158 while (p->kid != NULL) { /* need to propogate down */
159 int mx = (p->xmin + p->xmax) >> 1;
160 int my = (p->ymin + p->ymax) >> 1;
161 int ki;
162 if (p->x >= mx)
163 ki = (p->y >= my) ? UR : DR;
164 else
165 ki = (p->y >= my) ? UL : DL;
166 pcopy(p, p->kid+ki);
167 p = p->kid + ki;
168 }
169
170 (*dev->paintr)(greyscale?greyof(p->v):p->v,
171 p->xmin, p->ymin, p->xmax, p->ymax);
172 }
173
174 int
175 paint( /* compute and paint a rectangle */
176 PNODE *p
177 )
178 {
179 static RAY thisray;
180 double h, v;
181
182 if ((p->xmax <= p->xmin) | (p->ymax <= p->ymin)) { /* empty */
183 p->x = p->xmin;
184 p->y = p->ymin;
185 setcolor(p->v, 0.0, 0.0, 0.0);
186 return(0);
187 }
188 /* jitter ray direction */
189 p->x = h = p->xmin + (p->xmax-p->xmin)*frandom();
190 p->y = v = p->ymin + (p->ymax-p->ymin)*frandom();
191
192 if ((thisray.rmax = viewray(thisray.rorg, thisray.rdir, &ourview,
193 h/hresolu, v/vresolu)) < -FTINY) {
194 setcolor(thisray.rcol, 0.0, 0.0, 0.0);
195 } else if (nproc == 1) { /* immediate mode */
196 ray_trace(&thisray);
197 } else { /* queuing mode */
198 int rval;
199 rayorigin(&thisray, PRIMARY, NULL, NULL);
200 thisray.rno = (unsigned long)p;
201 rval = ray_pqueue(&thisray);
202 if (!rval)
203 return(0);
204 if (rval < 0)
205 return(-1);
206 p = (PNODE *)thisray.rno;
207 }
208
209 copycolor(p->v, thisray.rcol);
210 scalecolor(p->v, exposure);
211
212 recolor(p); /* paint it */
213
214 if (dev->flush != NULL) { /* shall we check for input? */
215 static unsigned long lastflush = 0;
216 unsigned long counter = raynum;
217 int flushintvl;
218 if (nproc == 1) {
219 counter = nrays;
220 flushintvl = WFLUSH1;
221 } else if (ambounce == 0)
222 flushintvl = nproc*WFLUSH;
223 else if (niflush < WFLUSH)
224 flushintvl = nproc*niflush/(ambounce+1);
225 else
226 flushintvl = nproc*WFLUSH/(ambounce+1);
227
228 if (counter - lastflush >= flushintvl) {
229 lastflush = counter;
230 (*dev->flush)();
231 niflush++;
232 }
233 }
234 return(1);
235 }
236
237
238 int
239 waitrays(void) /* finish up pending rays */
240 {
241 int nwaited = 0;
242 int rval;
243 RAY raydone;
244
245 if (nproc <= 1) /* immediate mode? */
246 return(0);
247 while ((rval = ray_presult(&raydone, 0)) > 0) {
248 PNODE *p = (PNODE *)raydone.rno;
249 copycolor(p->v, raydone.rcol);
250 scalecolor(p->v, exposure);
251 recolor(p);
252 nwaited++;
253 }
254 if (rval < 0)
255 return(-1);
256 return(nwaited);
257 }
258
259
260 void
261 newimage( /* start a new image */
262 char *s
263 )
264 {
265 extern int ray_pnprocs;
266 int newnp;
267 /* change in nproc? */
268 if (s != NULL && sscanf(s, "%d", &newnp) == 1 &&
269 (newnp > 0) & (newnp != nproc)) {
270 if (!newparam) {
271 if (newnp == 1)
272 ray_pclose(0);
273 else if (newnp < ray_pnprocs)
274 ray_pclose(ray_pnprocs - newnp);
275 else
276 ray_popen(newnp - ray_pnprocs);
277 }
278 nproc = newnp;
279 }
280 /* free old image */
281 freepkids(&ptrunk);
282 /* compute resolution */
283 hresolu = dev->xsiz;
284 vresolu = dev->ysiz;
285 normaspect(viewaspect(&ourview), &dev->pixaspect, &hresolu, &vresolu);
286 ptrunk.xmin = ptrunk.ymin = pframe.l = pframe.d = 0;
287 ptrunk.xmax = pframe.r = hresolu;
288 ptrunk.ymax = pframe.u = vresolu;
289 pdepth = 0;
290 /* clear device */
291 (*dev->clear)(hresolu, vresolu);
292
293 if (newparam) { /* (re)start rendering procs */
294 if (ray_pnprocs > 0)
295 ray_pclose(0);
296 if (nproc > 1)
297 ray_popen(nproc);
298 newparam = 0;
299 }
300 niflush = 0; /* get first value */
301 paint(&ptrunk);
302 }
303
304
305 void
306 redraw(void) /* redraw the image */
307 {
308 (*dev->clear)(hresolu, vresolu);
309 (*dev->comout)("redrawing...\n");
310 repaint(0, 0, hresolu, vresolu);
311 (*dev->comout)("\n");
312 }
313
314
315 void
316 repaint( /* repaint a region */
317 int xmin,
318 int ymin,
319 int xmax,
320 int ymax
321 )
322 {
323 RECT reg;
324
325 reg.l = xmin; reg.r = xmax;
326 reg.d = ymin; reg.u = ymax;
327
328 paintrect(&ptrunk, &reg);
329 }
330
331
332 void
333 paintrect( /* paint picture rectangle */
334 PNODE *p,
335 RECT *r
336 )
337 {
338 int mx, my;
339
340 if (p->xmax - p->xmin <= 0 || p->ymax - p->ymin <= 0)
341 return;
342
343 if (p->kid == NULL) {
344 (*dev->paintr)(greyscale?greyof(p->v):p->v,
345 p->xmin, p->ymin, p->xmax, p->ymax); /* do this */
346 return;
347 }
348 mx = (p->xmin + p->xmax) >> 1; /* do kids */
349 my = (p->ymin + p->ymax) >> 1;
350 if (mx > r->l) {
351 if (my > r->d)
352 paintrect(p->kid+DL, r);
353 if (my < r->u)
354 paintrect(p->kid+UL, r);
355 }
356 if (mx < r->r) {
357 if (my > r->d)
358 paintrect(p->kid+DR, r);
359 if (my < r->u)
360 paintrect(p->kid+UR, r);
361 }
362 }
363
364
365 PNODE *
366 findrect( /* find a rectangle */
367 int x,
368 int y,
369 PNODE *p,
370 int pd
371 )
372 {
373 int mx, my;
374
375 while (p->kid != NULL && pd--) {
376
377 mx = (p->xmin + p->xmax) >> 1;
378 my = (p->ymin + p->ymax) >> 1;
379
380 if (x < mx) {
381 if (y < my) {
382 p = p->kid+DL;
383 } else {
384 p = p->kid+UL;
385 }
386 } else {
387 if (y < my) {
388 p = p->kid+DR;
389 } else {
390 p = p->kid+UR;
391 }
392 }
393 }
394 return(p);
395 }
396
397
398 void
399 compavg( /* recompute averages */
400 PNODE *p
401 )
402 {
403 int i, navg;
404
405 if (p->kid == NULL)
406 return;
407
408 setcolor(p->v, .0, .0, .0);
409 navg = 0;
410 for (i = 0; i < 4; i++) {
411 if (p->kid[i].xmin >= p->kid[i].xmax) continue;
412 if (p->kid[i].ymin >= p->kid[i].ymax) continue;
413 compavg(p->kid+i);
414 addcolor(p->v, p->kid[i].v);
415 navg++;
416 }
417 if (navg > 1)
418 scalecolor(p->v, 1./navg);
419 }
420
421
422 void
423 scalepict( /* scale picture values */
424 PNODE *p,
425 double sf
426 )
427 {
428 scalecolor(p->v, sf); /* do this node */
429
430 if (p->kid == NULL)
431 return;
432 /* do children */
433 scalepict(p->kid+DL, sf);
434 scalepict(p->kid+DR, sf);
435 scalepict(p->kid+UL, sf);
436 scalepict(p->kid+UR, sf);
437 }
438
439
440 void
441 getpictcolrs( /* get scanline from picture */
442 int yoff,
443 COLR *scan,
444 PNODE *p,
445 int xsiz,
446 int ysiz
447 )
448 {
449 int mx;
450 int my;
451
452 if (p->kid == NULL) { /* do this node */
453 setcolr(scan[0], colval(p->v,RED),
454 colval(p->v,GRN),
455 colval(p->v,BLU));
456 for (mx = 1; mx < xsiz; mx++)
457 copycolr(scan[mx], scan[0]);
458 return;
459 }
460 /* do kids */
461 mx = xsiz >> 1;
462 my = ysiz >> 1;
463 if (yoff < my) {
464 getpictcolrs(yoff, scan, p->kid+DL, mx, my);
465 getpictcolrs(yoff, scan+mx, p->kid+DR, xsiz-mx, my);
466 } else {
467 getpictcolrs(yoff-my, scan, p->kid+UL, mx, ysiz-my);
468 getpictcolrs(yoff-my, scan+mx, p->kid+UR, xsiz-mx, ysiz-my);
469 }
470 }
471
472
473 void
474 freepkids( /* free pnode's children */
475 PNODE *p
476 )
477 {
478 if (p->kid == NULL)
479 return;
480 freepkids(p->kid+DL);
481 freepkids(p->kid+DR);
482 freepkids(p->kid+UL);
483 freepkids(p->kid+UR);
484 free((void *)p->kid);
485 p->kid = NULL;
486 }
487
488
489 void
490 newview( /* change viewing parameters */
491 VIEW *vp
492 )
493 {
494 char *err;
495
496 if ((err = setview(vp)) != NULL) {
497 sprintf(errmsg, "view not set - %s", err);
498 error(COMMAND, errmsg);
499 } else if (memcmp((char *)vp, (char *)&ourview, sizeof(VIEW))) {
500 oldview = ourview;
501 ourview = *vp;
502 newimage(NULL);
503 }
504 }
505
506
507 void
508 moveview( /* move viewpoint */
509 double angle,
510 double elev,
511 double mag,
512 FVECT vc
513 )
514 {
515 double d;
516 FVECT v1;
517 VIEW nv = ourview;
518 int i;
519
520 spinvector(nv.vdir, ourview.vdir, ourview.vup, angle*(PI/180.));
521 if (elev != 0.0) {
522 fcross(v1, ourview.vup, nv.vdir);
523 normalize(v1);
524 spinvector(nv.vdir, nv.vdir, v1, elev*(PI/180.));
525 }
526 if (nv.type == VT_PAR) {
527 nv.horiz /= mag;
528 nv.vert /= mag;
529 d = 0.0; /* don't move closer */
530 for (i = 0; i < 3; i++)
531 d += (vc[i] - ourview.vp[i])*ourview.vdir[i];
532 } else {
533 d = sqrt(dist2(ourview.vp, vc)) / mag;
534 if (nv.vfore > FTINY) {
535 nv.vfore += d - d*mag;
536 if (nv.vfore < 0.0) nv.vfore = 0.0;
537 }
538 if (nv.vaft > FTINY) {
539 nv.vaft += d - d*mag;
540 if (nv.vaft <= nv.vfore) nv.vaft = 0.0;
541 }
542 nv.vdist /= mag;
543 }
544 for (i = 0; i < 3; i++)
545 nv.vp[i] = vc[i] - d*nv.vdir[i];
546 newview(&nv);
547 }
548
549
550 void
551 pcopy( /* copy paint node p1 into p2 */
552 PNODE *p1,
553 PNODE *p2
554 )
555 {
556 copycolor(p2->v, p1->v);
557 p2->x = p1->x;
558 p2->y = p1->y;
559 }
560
561
562 void
563 zoomview( /* zoom in or out */
564 VIEW *vp,
565 double zf
566 )
567 {
568 switch (vp->type) {
569 case VT_PAR: /* parallel view */
570 vp->horiz /= zf;
571 vp->vert /= zf;
572 return;
573 case VT_ANG: /* angular fisheye */
574 vp->horiz /= zf;
575 if (vp->horiz > 360.)
576 vp->horiz = 360.;
577 vp->vert /= zf;
578 if (vp->vert > 360.)
579 vp->vert = 360.;
580 return;
581 case VT_PLS: /* planisphere fisheye */
582 vp->horiz = sin((PI/180./2.)*vp->horiz) /
583 (1.0 + cos((PI/180./2.)*vp->horiz)) / zf;
584 vp->horiz *= vp->horiz;
585 vp->horiz = (2.*180./PI)*acos((1. - vp->horiz) /
586 (1. + vp->horiz));
587 vp->vert = sin((PI/180./2.)*vp->vert) /
588 (1.0 + cos((PI/180./2.)*vp->vert)) / zf;
589 vp->vert *= vp->vert;
590 vp->vert = (2.*180./PI)*acos((1. - vp->vert) /
591 (1. + vp->vert));
592 return;
593 case VT_CYL: /* cylindrical panorama */
594 vp->horiz /= zf;
595 if (vp->horiz > 360.)
596 vp->horiz = 360.;
597 vp->vert = atan(tan(vp->vert*(PI/180./2.))/zf) / (PI/180./2.);
598 return;
599 case VT_PER: /* perspective view */
600 vp->horiz = atan(tan(vp->horiz*(PI/180./2.))/zf) /
601 (PI/180./2.);
602 vp->vert = atan(tan(vp->vert*(PI/180./2.))/zf) /
603 (PI/180./2.);
604 return;
605 case VT_HEM: /* hemispherical fisheye */
606 vp->horiz = sin(vp->horiz*(PI/180./2.))/zf;
607 if (vp->horiz >= 1.0-FTINY)
608 vp->horiz = 180.;
609 else
610 vp->horiz = asin(vp->horiz) / (PI/180./2.);
611 vp->vert = sin(vp->vert*(PI/180./2.))/zf;
612 if (vp->vert >= 1.0-FTINY)
613 vp->vert = 180.;
614 else
615 vp->vert = asin(vp->vert) / (PI/180./2.);
616 return;
617 }
618 }