ViewVC Help
View File | Revision Log | Show Annotations | Download File | Root Listing
root/radiance/ray/src/rt/rview.c
Revision: 2.19
Committed: Tue Feb 25 02:47:23 2003 UTC (21 years, 2 months ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad3R5
Changes since 2.18: +1 -56 lines
Log Message:
Replaced inline copyright notice with #include "copyright.h"

File Contents

# User Rev Content
1 greg 1.1 #ifndef lint
2 greg 2.18 static const char RCSid[] = "$Id$";
3 greg 1.1 #endif
4     /*
5     * rview.c - routines and variables for interactive view generation.
6     *
7 greg 2.18 * External symbols declared in rpaint.h
8     */
9    
10 greg 2.19 #include "copyright.h"
11 greg 1.1
12 greg 1.15 #include "ray.h"
13 greg 1.1
14     #include "rpaint.h"
15    
16     #include <signal.h>
17    
18     #include <ctype.h>
19    
20 greg 2.18 CUBE thescene; /* our scene */
21     OBJECT nsceneobjs; /* number of objects in our scene */
22 greg 1.15
23     int dimlist[MAXDIM]; /* sampling dimensions */
24     int ndims = 0; /* number of sampling dimensions */
25     int samplendx = 0; /* index for this sample */
26 greg 1.1
27 greg 2.18 extern void ambnotify();
28     void (*addobjnotify[])() = {ambnotify, NULL};
29    
30     VIEW ourview = STDVIEW; /* viewing parameters */
31     int hresolu, vresolu; /* image resolution */
32    
33     void (*trace)() = NULL; /* trace call */
34    
35     int do_irrad = 0; /* compute irradiance? */
36    
37 greg 1.1 int psample = 8; /* pixel sample size */
38 greg 2.8 double maxdiff = .15; /* max. sample difference */
39 greg 1.1
40 greg 2.8 double exposure = 1.0; /* exposure for scene */
41 greg 1.1
42 greg 2.8 double dstrsrc = 0.0; /* square source distribution */
43     double shadthresh = .1; /* shadow threshold */
44     double shadcert = .25; /* shadow certainty */
45 greg 1.16 int directrelay = 0; /* number of source relays */
46 greg 1.18 int vspretest = 128; /* virtual source pretest density */
47 greg 2.9 int directvis = 1; /* sources visible? */
48 greg 2.8 double srcsizerat = 0.; /* maximum ratio source size/dist. */
49 greg 2.15
50     COLOR cextinction = BLKCOLOR; /* global extinction coefficient */
51 greg 2.17 COLOR salbedo = BLKCOLOR; /* global scattering albedo */
52 greg 2.15 double seccg = 0.; /* global scattering eccentricity */
53     double ssampdist = 0.; /* scatter sampling distance */
54 greg 1.1
55 greg 2.8 double specthresh = .3; /* specular sampling threshold */
56     double specjitter = 1.; /* specular sampling jitter */
57 greg 2.5
58 greg 2.14 int backvis = 1; /* back face visibility */
59    
60 greg 1.1 int maxdepth = 4; /* maximum recursion depth */
61 greg 2.8 double minweight = 1e-2; /* minimum ray weight */
62 greg 1.1
63 greg 2.18 char *ambfile = NULL; /* ambient file name */
64 greg 1.1 COLOR ambval = BLKCOLOR; /* ambient value */
65 greg 2.16 int ambvwt = 0; /* initial weight for ambient value */
66 greg 2.8 double ambacc = 0.2; /* ambient accuracy */
67 greg 1.5 int ambres = 8; /* ambient resolution */
68 greg 1.1 int ambdiv = 32; /* ambient divisions */
69     int ambssamp = 0; /* ambient super-samples */
70     int ambounce = 0; /* ambient bounces */
71     char *amblist[128]; /* ambient include/exclude list */
72     int ambincl = -1; /* include == 1, exclude == 0 */
73    
74     int greyscale = 0; /* map colors to brightness? */
75 greg 2.18 char *dvcname = dev_default; /* output device name */
76 greg 1.1
77     struct driver *dev = NULL; /* driver functions */
78    
79 greg 2.11 char rifname[128]; /* rad input file name */
80    
81 greg 1.1 VIEW oldview; /* previous view parameters */
82    
83     PNODE ptrunk; /* the base of our image */
84     RECT pframe; /* current frame boundaries */
85     int pdepth; /* image depth in current frame */
86    
87 greg 1.12 static char *reserve_mem = NULL; /* pre-allocated reserve memory */
88    
89 greg 1.20 #define RESERVE_AMT 32768 /* amount of memory to reserve */
90 greg 1.12
91 greg 2.8 #define CTRL(c) ((c)-'@')
92 greg 1.1
93    
94 greg 2.18 void
95 greg 1.1 quit(code) /* quit program */
96     int code;
97     {
98 greg 2.10 #ifdef MSTATS
99     if (code == 2 && errno == ENOMEM)
100     printmemstats(stderr);
101     #endif
102 greg 1.1 devclose();
103     exit(code);
104     }
105    
106    
107 greg 2.18 void
108 greg 1.1 devopen(dname) /* open device driver */
109     char *dname;
110     {
111 greg 1.6 extern char *progname, *octname;
112 greg 1.7 char *id;
113 greg 1.1 register int i;
114 greg 1.6
115 greg 1.7 id = octname!=NULL ? octname : progname;
116 greg 1.1 /* check device table */
117     for (i = 0; devtable[i].name; i++)
118     if (!strcmp(dname, devtable[i].name))
119 greg 1.7 if ((dev = (*devtable[i].init)(dname, id)) == NULL) {
120 greg 1.1 sprintf(errmsg, "cannot initialize %s", dname);
121     error(USER, errmsg);
122     } else
123     return;
124 greg 2.8 #ifndef NIX
125 greg 1.1 /* not there, try exec */
126 greg 1.7 if ((dev = comm_init(dname, id)) == NULL) {
127 greg 1.1 sprintf(errmsg, "cannot start device \"%s\"", dname);
128     error(USER, errmsg);
129     }
130 greg 2.8 #endif
131 greg 1.1 }
132    
133    
134 greg 2.18 void
135 greg 1.1 devclose() /* close our device */
136     {
137     if (dev != NULL)
138     (*dev->close)();
139     dev = NULL;
140     }
141    
142    
143 greg 2.18 void
144 greg 1.1 printdevices() /* print list of output devices */
145     {
146     register int i;
147    
148     for (i = 0; devtable[i].name; i++)
149     printf("%-16s # %s\n", devtable[i].name, devtable[i].descrip);
150     }
151    
152    
153 greg 2.18 void
154 greg 1.1 rview() /* do a view */
155     {
156     char buf[32];
157    
158 greg 2.18 devopen(dvcname); /* open device */
159 greg 1.14 newimage(); /* start image (calls fillreserves) */
160    
161 greg 1.1 for ( ; ; ) { /* quit in command() */
162 greg 1.14 while (hresolu <= 1<<pdepth && vresolu <= 1<<pdepth)
163 greg 1.1 command("done: ");
164 greg 1.14 while (reserve_mem == NULL)
165     command("out of memory: ");
166     errno = 0;
167     if (hresolu <= psample<<pdepth && vresolu <= psample<<pdepth) {
168 greg 1.1 sprintf(buf, "%d sampling...\n", 1<<pdepth);
169     (*dev->comout)(buf);
170     rsample();
171     } else {
172     sprintf(buf, "%d refining...\n", 1<<pdepth);
173     (*dev->comout)(buf);
174 greg 1.9 refine(&ptrunk, 0, 0, hresolu, vresolu, pdepth+1);
175 greg 1.1 }
176 greg 1.14 if (errno == ENOMEM) /* ran out of memory */
177     freereserves();
178     else if (dev->inpready) /* noticed some input */
179 greg 1.1 command(": ");
180 greg 1.14 else /* finished this depth */
181 greg 1.1 pdepth++;
182     }
183     }
184    
185    
186 greg 2.18 void
187 greg 1.14 fillreserves() /* fill memory reserves */
188 greg 1.12 {
189     if (reserve_mem != NULL)
190 greg 1.14 return;
191 greg 2.18 reserve_mem = (char *)malloc(RESERVE_AMT);
192 greg 1.12 }
193    
194    
195 greg 2.18 void
196 greg 1.14 freereserves() /* free memory reserves */
197 greg 1.12 {
198 greg 1.14 if (reserve_mem == NULL)
199     return;
200 greg 1.12 free(reserve_mem);
201     reserve_mem = NULL;
202     }
203    
204    
205 greg 2.18 void
206 greg 1.1 command(prompt) /* get/execute command */
207     char *prompt;
208     {
209 greg 2.8 #define badcom(s) strncmp(s, inpbuf, args-inpbuf-1)
210 greg 1.1 char inpbuf[256];
211     char *args;
212     again:
213 greg 1.10 (*dev->comin)(inpbuf, prompt); /* get command + arguments */
214 greg 1.1 for (args = inpbuf; *args && *args != ' '; args++)
215     ;
216     if (*args) *args++ = '\0';
217     else *++args = '\0';
218    
219     switch (inpbuf[0]) {
220 greg 2.10 case 'f': /* new frame (or free mem.) */
221     if (badcom("frame")) {
222     if (badcom("free"))
223     goto commerr;
224     free_objmem();
225     break;
226     }
227 greg 1.1 getframe(args);
228     break;
229     case 'v': /* view */
230     if (badcom("view"))
231     goto commerr;
232     getview(args);
233     break;
234     case 'l': /* last view */
235     if (badcom("last"))
236     goto commerr;
237     lastview(args);
238 greg 2.11 break;
239     case 'V': /* save view */
240     if (badcom("V"))
241     goto commerr;
242     saveview(args);
243     break;
244     case 'L': /* load view */
245     if (badcom("L"))
246     goto commerr;
247     loadview(args);
248 greg 1.1 break;
249     case 'e': /* exposure */
250     if (badcom("exposure"))
251     goto commerr;
252     getexposure(args);
253     break;
254     case 's': /* set a parameter */
255 greg 2.13 if (badcom("set")) {
256     #ifdef SIGTSTP
257     if (!badcom("stop"))
258     goto dostop;
259     #endif
260 greg 1.1 goto commerr;
261 greg 2.13 }
262 greg 1.1 setparam(args);
263     break;
264     case 'n': /* new picture */
265     if (badcom("new"))
266     goto commerr;
267     newimage();
268     break;
269     case 't': /* trace a ray */
270     if (badcom("trace"))
271     goto commerr;
272     traceray(args);
273     break;
274     case 'a': /* aim camera */
275     if (badcom("aim"))
276     goto commerr;
277     getaim(args);
278     break;
279 greg 2.10 case 'm': /* move camera (or memstats) */
280 greg 1.1 if (badcom("move"))
281 greg 2.8 #ifdef MSTATS
282 greg 2.2 {
283     if (badcom("memory"))
284     goto commerr;
285     printmemstats(stderr);
286     break;
287     }
288     #else
289 greg 1.1 goto commerr;
290 greg 2.2 #endif
291 greg 1.1 getmove(args);
292     break;
293 greg 1.8 case 'r': /* rotate/repaint */
294     if (badcom("rotate")) {
295 greg 2.13 if (badcom("repaint")) {
296     if (badcom("redraw"))
297     goto commerr;
298     redraw();
299     break;
300     }
301 greg 1.8 getrepaint(args);
302     break;
303     }
304 greg 1.1 getrotate(args);
305     break;
306     case 'p': /* pivot view */
307 greg 2.13 if (badcom("pivot")) {
308     if (badcom("pause"))
309     goto commerr;
310     goto again;
311     }
312 greg 1.1 getpivot(args);
313     break;
314 greg 2.4 case CTRL('R'): /* redraw */
315 greg 1.1 redraw();
316     break;
317     case 'w': /* write */
318     if (badcom("write"))
319     goto commerr;
320     writepict(args);
321     break;
322     case 'q': /* quit */
323     if (badcom("quit"))
324     goto commerr;
325     quit(0);
326 greg 2.4 case CTRL('C'): /* interrupt */
327 greg 1.1 goto again;
328 greg 2.8 #ifdef SIGTSTP
329 greg 2.13 case CTRL('Z'):; /* stop */
330     dostop:
331 greg 1.1 devclose();
332     kill(0, SIGTSTP);
333     /* pc stops here */
334 greg 2.18 devopen(dvcname);
335 greg 1.1 redraw();
336     break;
337     #endif
338     case '\0': /* continue */
339     break;
340     default:;
341     commerr:
342     if (iscntrl(inpbuf[0]))
343     sprintf(errmsg, "^%c: unknown control",
344     inpbuf[0]|0100);
345     else
346     sprintf(errmsg, "%s: unknown command", inpbuf);
347     error(COMMAND, errmsg);
348     break;
349     }
350 greg 2.8 #undef badcom
351 greg 1.1 }
352    
353    
354 greg 2.18 void
355 greg 1.1 rsample() /* sample the image */
356     {
357     int xsiz, ysiz, y;
358     RECT r;
359     PNODE *p;
360     register RECT *rl;
361 greg 2.8 register PNODE **pl;
362 greg 1.1 register int x;
363     /*
364     * We initialize the bottom row in the image at our current
365 greg 2.8 * resolution. During sampling, we check super-pixels to the
366 greg 1.1 * right and above by calling bigdiff(). If there is a significant
367     * difference, we subsample the super-pixels. The testing process
368     * includes initialization of the next row.
369     */
370 greg 2.12 xsiz = (((long)(pframe.r-pframe.l)<<pdepth)+hresolu-1) / hresolu;
371     ysiz = (((long)(pframe.u-pframe.d)<<pdepth)+vresolu-1) / vresolu;
372 greg 1.1 rl = (RECT *)malloc(xsiz*sizeof(RECT));
373 greg 1.12 if (rl == NULL)
374 greg 1.14 return;
375 greg 1.1 pl = (PNODE **)malloc(xsiz*sizeof(PNODE *));
376 greg 2.7 if (pl == NULL) {
377 greg 2.18 free((void *)rl);
378 greg 1.14 return;
379 greg 2.7 }
380 greg 1.1 /*
381     * Initialize the bottom row.
382     */
383     rl[0].l = rl[0].d = 0;
384 greg 1.9 rl[0].r = hresolu; rl[0].u = vresolu;
385 greg 1.1 pl[0] = findrect(pframe.l, pframe.d, &ptrunk, rl, pdepth);
386     for (x = 1; x < xsiz; x++) {
387     rl[x].l = rl[x].d = 0;
388 greg 1.9 rl[x].r = hresolu; rl[x].u = vresolu;
389     pl[x] = findrect(pframe.l+((x*hresolu)>>pdepth),
390 greg 1.1 pframe.d, &ptrunk, rl+x, pdepth);
391     }
392     /* sample the image */
393     for (y = 0; /* y < ysiz */ ; y++) {
394     for (x = 0; x < xsiz-1; x++) {
395 greg 1.20 if (dev->inpready || errno == ENOMEM)
396 greg 1.1 goto escape;
397     /*
398     * Test super-pixel to the right.
399     */
400     if (pl[x] != pl[x+1] && bigdiff(pl[x]->v,
401     pl[x+1]->v, maxdiff)) {
402     refine(pl[x], rl[x].l, rl[x].d,
403     rl[x].r, rl[x].u, 1);
404     refine(pl[x+1], rl[x+1].l, rl[x+1].d,
405     rl[x+1].r, rl[x+1].u, 1);
406     }
407     }
408     if (y >= ysiz-1)
409     break;
410     for (x = 0; x < xsiz; x++) {
411 greg 1.20 if (dev->inpready || errno == ENOMEM)
412 greg 1.1 goto escape;
413     /*
414     * Find super-pixel at this position in next row.
415     */
416     r.l = r.d = 0;
417 greg 1.9 r.r = hresolu; r.u = vresolu;
418     p = findrect(pframe.l+((x*hresolu)>>pdepth),
419     pframe.d+(((y+1)*vresolu)>>pdepth),
420 greg 1.1 &ptrunk, &r, pdepth);
421     /*
422     * Test super-pixel in next row.
423     */
424     if (pl[x] != p && bigdiff(pl[x]->v, p->v, maxdiff)) {
425     refine(pl[x], rl[x].l, rl[x].d,
426     rl[x].r, rl[x].u, 1);
427     refine(p, r.l, r.d, r.r, r.u, 1);
428     }
429     /*
430     * Copy into super-pixel array.
431     */
432     rl[x].l = r.l; rl[x].d = r.d;
433     rl[x].r = r.r; rl[x].u = r.u;
434     pl[x] = p;
435     }
436     }
437     escape:
438 greg 2.18 free((void *)rl);
439     free((void *)pl);
440 greg 1.1 }
441    
442    
443     int
444     refine(p, xmin, ymin, xmax, ymax, pd) /* refine a node */
445 greg 2.8 register PNODE *p;
446 greg 1.1 int xmin, ymin, xmax, ymax;
447     int pd;
448     {
449     int growth;
450     int mx, my;
451     int i;
452    
453     if (dev->inpready) /* quit for input */
454     return(0);
455    
456     if (pd <= 0) /* depth limit */
457     return(0);
458    
459     mx = (xmin + xmax) >> 1;
460     my = (ymin + ymax) >> 1;
461     growth = 0;
462    
463     if (p->kid == NULL) { /* subdivide */
464    
465     if ((p->kid = newptree()) == NULL)
466 greg 1.20 return(0);
467 greg 1.1 /*
468     * The following paint order can leave a black pixel
469 greg 2.7 * if redraw() is called in (*dev->paintr)().
470 greg 1.1 */
471     if (p->x >= mx && p->y >= my)
472     pcopy(p, p->kid+UR);
473     else
474     paint(p->kid+UR, mx, my, xmax, ymax);
475     if (p->x < mx && p->y >= my)
476     pcopy(p, p->kid+UL);
477     else
478     paint(p->kid+UL, xmin, my, mx, ymax);
479     if (p->x >= mx && p->y < my)
480     pcopy(p, p->kid+DR);
481     else
482     paint(p->kid+DR, mx, ymin, xmax, my);
483     if (p->x < mx && p->y < my)
484     pcopy(p, p->kid+DL);
485     else
486     paint(p->kid+DL, xmin, ymin, mx, my);
487    
488     growth++;
489     }
490     /* do children */
491     if (mx > pframe.l) {
492     if (my > pframe.d)
493     growth += refine(p->kid+DL, xmin, ymin, mx, my, pd-1);
494     if (my < pframe.u)
495     growth += refine(p->kid+UL, xmin, my, mx, ymax, pd-1);
496     }
497     if (mx < pframe.r) {
498     if (my > pframe.d)
499     growth += refine(p->kid+DR, mx, ymin, xmax, my, pd-1);
500     if (my < pframe.u)
501     growth += refine(p->kid+UR, mx, my, xmax, ymax, pd-1);
502     }
503     /* recompute sum */
504     if (growth) {
505     setcolor(p->v, 0.0, 0.0, 0.0);
506     for (i = 0; i < 4; i++)
507     addcolor(p->v, p->kid[i].v);
508     scalecolor(p->v, 0.25);
509     }
510     return(growth);
511     }