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root/radiance/ray/src/rt/rtrace.c
Revision: 2.101
Committed: Tue Feb 16 22:06:00 2021 UTC (3 years, 2 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.100: +6 -5 lines
Log Message:
fix: minor issue with rayorigin() called before direction set

File Contents

# User Rev Content
1 greg 1.1 #ifndef lint
2 greg 2.101 static const char RCSid[] = "$Id: rtrace.c,v 2.100 2021/01/27 00:00:05 greg Exp $";
3 greg 1.1 #endif
4     /*
5     * rtrace.c - program and variables for individual ray tracing.
6 greg 2.27 */
7    
8 greg 2.28 #include "copyright.h"
9 greg 1.1
10     /*
11     * Input is in the form:
12     *
13     * xorg yorg zorg xdir ydir zdir
14     *
15     * The direction need not be normalized. Output is flexible.
16 greg 1.7 * If the direction vector is (0,0,0), then the output is flushed.
17 greg 1.1 * All values default to ascii representation of real
18     * numbers. Binary representations can be selected
19     * with '-ff' for float or '-fd' for double. By default,
20 greg 1.13 * radiance is computed. The '-i' or '-I' options indicate that
21 greg 1.1 * irradiance values are desired.
22     */
23 greg 2.32
24     #include <time.h>
25 greg 1.1
26 schorsch 2.30 #include "platform.h"
27 greg 1.1 #include "ray.h"
28 schorsch 2.37 #include "ambient.h"
29     #include "source.h"
30 greg 1.1 #include "otypes.h"
31 greg 2.72 #include "otspecial.h"
32 greg 2.6 #include "resolu.h"
33 schorsch 2.49 #include "random.h"
34 greg 2.6
35 greg 2.57 extern int inform; /* input format */
36     extern int outform; /* output format */
37     extern char *outvals; /* output values */
38 greg 2.27
39 greg 2.57 extern int imm_irrad; /* compute immediate irradiance? */
40     extern int lim_dist; /* limit distance? */
41 greg 1.14
42 greg 2.57 extern char *tralist[]; /* list of modifers to trace (or no) */
43     extern int traincl; /* include == 1, exclude == 0 */
44 greg 1.13
45 greg 2.57 extern int hresolu; /* horizontal resolution */
46     extern int vresolu; /* vertical resolution */
47 greg 1.1
48 greg 2.94 int castonly = 0; /* only doing ray-casting? */
49 greg 2.55
50 greg 2.46 #ifndef MAXTSET
51 greg 2.55 #define MAXTSET 8191 /* maximum number in trace set */
52 greg 2.46 #endif
53 greg 2.15 OBJECT traset[MAXTSET+1]={0}; /* trace include/exclude set */
54    
55 greg 1.1 static RAY thisray; /* for our convenience */
56    
57 greg 2.89 static FILE *inpfp = NULL; /* input stream pointer */
58    
59     static FVECT *inp_queue = NULL; /* ray input queue if flushing */
60     static int inp_qpos = 0; /* next ray to return */
61     static int inp_qend = 0; /* number of rays in this work group */
62    
63 greg 2.65 typedef void putf_t(RREAL *v, int n);
64 greg 2.80 static putf_t puta, putd, putf, putrgbe;
65 greg 1.1
66 schorsch 2.37 typedef void oputf_t(RAY *r);
67 greg 2.51 static oputf_t oputo, oputd, oputv, oputV, oputl, oputL, oputc, oputp,
68 greg 2.73 oputr, oputR, oputx, oputX, oputn, oputN, oputs,
69     oputw, oputW, oputm, oputM, oputtilde;
70 schorsch 2.37
71 greg 2.92 extern void tranotify(OBJECT obj);
72     static int is_fifo(FILE *fp);
73 schorsch 2.37 static void bogusray(void);
74 greg 2.59 static void raycast(RAY *r);
75     static void rayirrad(RAY *r);
76     static void rtcompute(FVECT org, FVECT dir, double dmax);
77 greg 2.57 static int printvals(RAY *r);
78     static int getvec(FVECT vec, int fmt, FILE *fp);
79 greg 2.89 static int iszerovec(const FVECT vec);
80     static double nextray(FVECT org, FVECT dir);
81 greg 2.57 static void tabin(RAY *r);
82     static void ourtrace(RAY *r);
83 greg 1.1
84 greg 2.73 static oputf_t *ray_out[32], *every_out[32];
85 schorsch 2.37 static putf_t *putreal;
86 greg 2.27
87 greg 1.1
88 greg 2.27 void
89 schorsch 2.37 quit( /* quit program */
90     int code
91     )
92 greg 1.1 {
93 greg 2.57 if (ray_pnprocs > 0) /* close children if any */
94     ray_pclose(0);
95 greg 2.99 else if (ray_pnprocs < 0)
96     _exit(code); /* avoid flush() in child */
97 greg 2.57 #ifndef NON_POSIX
98 greg 2.99 else {
99 greg 2.58 headclean(); /* delete header file */
100     pfclean(); /* clean up persist files */
101     }
102 greg 2.11 #endif
103 greg 1.1 exit(code);
104     }
105    
106    
107 greg 2.57 char *
108 schorsch 2.37 formstr( /* return format identifier */
109     int f
110     )
111 greg 2.6 {
112     switch (f) {
113     case 'a': return("ascii");
114     case 'f': return("float");
115     case 'd': return("double");
116     case 'c': return(COLRFMT);
117     }
118     return("unknown");
119     }
120    
121    
122 greg 2.92 void
123 schorsch 2.37 rtrace( /* trace rays from file */
124 greg 2.59 char *fname,
125     int nproc
126 schorsch 2.37 )
127 greg 1.1 {
128 greg 2.45 unsigned long vcount = (hresolu > 1) ? (unsigned long)hresolu*vresolu
129 greg 2.66 : (unsigned long)vresolu;
130 greg 2.85 long nextflush = (!vresolu | (hresolu <= 1)) * hresolu;
131 greg 2.79 int something2flush = 0;
132 greg 1.1 FILE *fp;
133 gregl 2.25 double d;
134 greg 1.2 FVECT orig, direc;
135 greg 1.1 /* set up input */
136     if (fname == NULL)
137 greg 2.89 inpfp = stdin;
138     else if ((inpfp = fopen(fname, "r")) == NULL) {
139 greg 1.1 sprintf(errmsg, "cannot open input file \"%s\"", fname);
140     error(SYSTEM, errmsg);
141     }
142 greg 2.89 #ifdef getc_unlocked
143     flockfile(inpfp); /* avoid lock/unlock overhead */
144     flockfile(stdout);
145     #endif
146 greg 2.8 if (inform != 'a')
147 greg 2.89 SET_FILE_BINARY(inpfp);
148 greg 1.1 /* set up output */
149 greg 2.94 if (castonly || every_out[0] != NULL)
150 greg 2.59 nproc = 1; /* don't bother multiprocessing */
151 greg 2.79 if ((nextflush > 0) & (nproc > nextflush)) {
152     error(WARNING, "reducing number of processes to match flush interval");
153     nproc = nextflush;
154     }
155 greg 1.1 switch (outform) {
156     case 'a': putreal = puta; break;
157     case 'f': putreal = putf; break;
158     case 'd': putreal = putd; break;
159 greg 2.6 case 'c':
160 greg 2.91 if (outvals[1] || !strchr("vrx", outvals[0]))
161 greg 2.81 error(USER, "color format only with -ov, -or, -ox");
162 greg 2.80 putreal = putrgbe; break;
163 greg 2.6 default:
164     error(CONSISTENCY, "botched output format");
165 greg 1.1 }
166 greg 2.59 if (nproc > 1) { /* start multiprocessing */
167     ray_popen(nproc);
168 greg 2.58 ray_fifo_out = printvals;
169 greg 2.59 }
170 greg 2.12 if (hresolu > 0) {
171     if (vresolu > 0)
172     fprtresolu(hresolu, vresolu, stdout);
173 greg 2.78 else
174     fflush(stdout);
175 greg 2.12 }
176 greg 2.89 /* process input rays */
177     while ((d = nextray(orig, direc)) >= 0.0) {
178 greg 2.87 if (d == 0.0) { /* flush request? */
179 greg 2.85 if (something2flush) {
180 greg 2.74 if (ray_pnprocs > 1 && ray_fifo_flush() < 0)
181 greg 2.71 error(USER, "child(ren) died");
182 greg 2.87 bogusray();
183 gregl 2.24 fflush(stdout);
184 greg 2.86 nextflush = (!vresolu | (hresolu <= 1)) * hresolu;
185 greg 2.79 something2flush = 0;
186 greg 2.87 } else
187     bogusray();
188 greg 2.57 } else { /* compute and print */
189 greg 2.59 rtcompute(orig, direc, lim_dist ? d : 0.0);
190 greg 2.89 if (!--nextflush) { /* flush if time */
191 greg 2.74 if (ray_pnprocs > 1 && ray_fifo_flush() < 0)
192 greg 2.71 error(USER, "child(ren) died");
193 gregl 2.24 fflush(stdout);
194     nextflush = hresolu;
195 greg 2.78 } else
196 greg 2.79 something2flush = 1;
197 greg 1.1 }
198     if (ferror(stdout))
199     error(SYSTEM, "write error");
200 greg 2.45 if (vcount && !--vcount) /* check for end */
201 greg 1.1 break;
202     }
203 greg 2.74 if (ray_pnprocs > 1) { /* clean up children */
204 greg 2.59 if (ray_fifo_flush() < 0)
205     error(USER, "unable to complete processing");
206     ray_pclose(0);
207     }
208 greg 2.89 if (vcount)
209     error(WARNING, "unexpected EOF on input");
210 greg 2.50 if (fflush(stdout) < 0)
211     error(SYSTEM, "write error");
212 greg 2.89 if (fname != NULL) {
213     fclose(inpfp);
214     inpfp = NULL;
215     }
216     nextray(NULL, NULL);
217 greg 1.1 }
218    
219    
220 schorsch 2.37 static void
221 greg 2.40 trace_sources(void) /* trace rays to light sources, also */
222     {
223     int sn;
224    
225     for (sn = 0; sn < nsources; sn++)
226     source[sn].sflags |= SFOLLOW;
227     }
228    
229    
230 greg 2.91 int
231     setrtoutput(void) /* set up output tables, return #comp */
232 greg 1.1 {
233 greg 2.91 char *vs = outvals;
234 greg 2.56 oputf_t **table = ray_out;
235 greg 2.91 int ncomp = 0;
236    
237     if (!*vs)
238     error(USER, "empty output specification");
239 greg 1.1
240 greg 2.94 castonly = 1; /* sets castonly as side-effect */
241 greg 2.91 do
242     switch (*vs) {
243 greg 2.40 case 'T': /* trace sources */
244 greg 2.91 if (!vs[1]) break;
245 greg 2.40 trace_sources();
246     /* fall through */
247 greg 1.1 case 't': /* trace */
248 greg 2.91 if (!vs[1]) break;
249 greg 1.1 *table = NULL;
250     table = every_out;
251     trace = ourtrace;
252 greg 1.11 castonly = 0;
253 greg 1.1 break;
254     case 'o': /* origin */
255     *table++ = oputo;
256 greg 2.91 ncomp += 3;
257 greg 1.1 break;
258     case 'd': /* direction */
259     *table++ = oputd;
260 greg 2.91 ncomp += 3;
261 greg 1.1 break;
262 greg 2.73 case 'r': /* reflected contrib. */
263     *table++ = oputr;
264 greg 2.91 ncomp += 3;
265 greg 2.73 castonly = 0;
266     break;
267     case 'R': /* reflected distance */
268     *table++ = oputR;
269 greg 2.91 ncomp++;
270 greg 2.73 castonly = 0;
271     break;
272     case 'x': /* xmit contrib. */
273     *table++ = oputx;
274 greg 2.91 ncomp += 3;
275 greg 2.73 castonly = 0;
276     break;
277     case 'X': /* xmit distance */
278     *table++ = oputX;
279 greg 2.91 ncomp++;
280 greg 2.73 castonly = 0;
281     break;
282 greg 1.1 case 'v': /* value */
283     *table++ = oputv;
284 greg 2.91 ncomp += 3;
285 greg 1.11 castonly = 0;
286 greg 1.1 break;
287 greg 2.51 case 'V': /* contribution */
288     *table++ = oputV;
289 greg 2.91 ncomp += 3;
290 greg 2.94 castonly = 0;
291 greg 2.51 if (ambounce > 0 && (ambacc > FTINY || ambssamp > 0))
292     error(WARNING,
293     "-otV accuracy depends on -aa 0 -as 0");
294     break;
295 greg 2.5 case 'l': /* effective distance */
296 greg 1.1 *table++ = oputl;
297 greg 2.91 ncomp++;
298 greg 1.11 castonly = 0;
299 greg 1.1 break;
300 greg 2.29 case 'c': /* local coordinates */
301     *table++ = oputc;
302 greg 2.91 ncomp += 2;
303 greg 2.29 break;
304 greg 2.5 case 'L': /* single ray length */
305     *table++ = oputL;
306 greg 2.91 ncomp++;
307 greg 2.5 break;
308 greg 1.1 case 'p': /* point */
309     *table++ = oputp;
310 greg 2.91 ncomp += 3;
311 greg 1.1 break;
312 greg 2.9 case 'n': /* perturbed normal */
313 greg 1.1 *table++ = oputn;
314 greg 2.91 ncomp += 3;
315 greg 2.9 castonly = 0;
316 greg 1.1 break;
317 greg 2.9 case 'N': /* unperturbed normal */
318     *table++ = oputN;
319 greg 2.91 ncomp += 3;
320 greg 2.9 break;
321 greg 1.1 case 's': /* surface */
322     *table++ = oputs;
323 greg 2.91 ncomp++;
324 greg 1.1 break;
325     case 'w': /* weight */
326     *table++ = oputw;
327 greg 2.91 ncomp++;
328 greg 1.1 break;
329 greg 2.40 case 'W': /* coefficient */
330     *table++ = oputW;
331 greg 2.91 ncomp += 3;
332 greg 2.73 castonly = 0;
333 greg 2.80 if (ambounce > 0 && (ambacc > FTINY) | (ambssamp > 0))
334 greg 2.40 error(WARNING,
335 greg 2.41 "-otW accuracy depends on -aa 0 -as 0");
336 greg 2.40 break;
337 greg 1.1 case 'm': /* modifier */
338     *table++ = oputm;
339 greg 2.91 ncomp++;
340 greg 1.1 break;
341 greg 2.39 case 'M': /* material */
342     *table++ = oputM;
343 greg 2.91 ncomp++;
344 greg 2.39 break;
345 greg 2.42 case '~': /* tilde */
346     *table++ = oputtilde;
347 greg 2.41 break;
348 greg 2.91 default:
349     sprintf(errmsg, "unrecognized output option '%c'", *vs);
350     error(USER, errmsg);
351 greg 1.1 }
352 greg 2.91 while (*++vs);
353    
354 greg 1.1 *table = NULL;
355 greg 2.91 if (*every_out != NULL)
356     ncomp = 0;
357 greg 2.81 /* compatibility */
358 greg 2.94 if ((do_irrad | imm_irrad) && castonly)
359     error(USER, "-I+ and -i+ options require some value output");
360 greg 2.81 for (table = ray_out; *table != NULL; table++) {
361     if ((*table == oputV) | (*table == oputW))
362     error(WARNING, "-oVW options require trace mode");
363     if ((do_irrad | imm_irrad) &&
364     (*table == oputr) | (*table == oputR) |
365     (*table == oputx) | (*table == oputX))
366     error(WARNING, "-orRxX options incompatible with -I+ and -i+");
367     }
368 greg 2.91 return(ncomp);
369 gregl 2.24 }
370    
371    
372 schorsch 2.37 static void
373     bogusray(void) /* print out empty record */
374 gregl 2.24 {
375 greg 2.40 rayorigin(&thisray, PRIMARY, NULL, NULL);
376 gregl 2.24 printvals(&thisray);
377 greg 1.1 }
378    
379    
380 schorsch 2.37 static void
381 greg 2.59 raycast( /* compute first ray intersection only */
382     RAY *r
383 schorsch 2.37 )
384 greg 1.1 {
385 greg 2.59 if (!localhit(r, &thescene)) {
386     if (r->ro == &Aftplane) { /* clipped */
387     r->ro = NULL;
388     r->rot = FHUGE;
389     } else
390     sourcehit(r);
391 greg 2.57 }
392 greg 1.1 }
393    
394    
395 schorsch 2.37 static void
396 greg 2.59 rayirrad( /* compute irradiance rather than radiance */
397     RAY *r
398     )
399     {
400 greg 2.62 void (*old_revf)(RAY *) = r->revf;
401 greg 2.75 /* pretend we hit surface */
402 greg 2.76 r->rxt = r->rot = 1e-5;
403 greg 2.59 VSUM(r->rop, r->rorg, r->rdir, r->rot);
404     r->ron[0] = -r->rdir[0];
405     r->ron[1] = -r->rdir[1];
406     r->ron[2] = -r->rdir[2];
407     r->rod = 1.0;
408 greg 2.62 /* compute result */
409 greg 2.61 r->revf = raytrace;
410 greg 2.59 (*ofun[Lamb.otype].funp)(&Lamb, r);
411 greg 2.62 r->revf = old_revf;
412 greg 2.59 }
413    
414    
415     static void
416     rtcompute( /* compute and print ray value(s) */
417 schorsch 2.37 FVECT org,
418 greg 2.59 FVECT dir,
419     double dmax
420 schorsch 2.37 )
421 greg 1.1 {
422 greg 2.60 /* set up ray */
423     if (imm_irrad) {
424 greg 2.59 VSUM(thisray.rorg, org, dir, 1.1e-4);
425     thisray.rdir[0] = -dir[0];
426     thisray.rdir[1] = -dir[1];
427     thisray.rdir[2] = -dir[2];
428     thisray.rmax = 0.0;
429     } else {
430     VCOPY(thisray.rorg, org);
431     VCOPY(thisray.rdir, dir);
432     thisray.rmax = dmax;
433     }
434 greg 2.101 rayorigin(&thisray, PRIMARY, NULL, NULL);
435     if (imm_irrad)
436     thisray.revf = rayirrad;
437     else if (castonly)
438     thisray.revf = raycast;
439 greg 2.59 if (ray_pnprocs > 1) { /* multiprocessing FIFO? */
440     if (ray_fifo_in(&thisray) < 0)
441     error(USER, "lost children");
442     return;
443     }
444     samplendx++; /* else do it ourselves */
445     rayvalue(&thisray);
446 greg 2.16 printvals(&thisray);
447     }
448    
449    
450 greg 2.57 static int
451 schorsch 2.37 printvals( /* print requested ray values */
452     RAY *r
453     )
454 greg 2.16 {
455 greg 2.56 oputf_t **tp;
456 greg 2.16
457     if (ray_out[0] == NULL)
458 greg 2.57 return(0);
459 greg 2.16 for (tp = ray_out; *tp != NULL; tp++)
460     (**tp)(r);
461 greg 1.1 if (outform == 'a')
462     putchar('\n');
463 greg 2.57 return(1);
464 greg 1.1 }
465    
466    
467 schorsch 2.37 static int
468 greg 2.92 is_fifo( /* check if file pointer connected to pipe */
469     FILE *fp
470     )
471     {
472     #ifdef S_ISFIFO
473     struct stat sbuf;
474    
475     if (fstat(fileno(fp), &sbuf) < 0)
476     error(SYSTEM, "fstat() failed on input stream");
477     return(S_ISFIFO(sbuf.st_mode));
478     #else
479     return (fp == stdin); /* just a guess, really */
480     #endif
481     }
482    
483    
484     static int
485 greg 2.89 getvec( /* get a vector from fp */
486 greg 2.56 FVECT vec,
487 schorsch 2.37 int fmt,
488     FILE *fp
489     )
490 greg 1.1 {
491     static float vf[3];
492 greg 2.5 static double vd[3];
493 greg 1.19 char buf[32];
494 greg 2.56 int i;
495 greg 1.1
496     switch (fmt) {
497     case 'a': /* ascii */
498 greg 1.19 for (i = 0; i < 3; i++) {
499     if (fgetword(buf, sizeof(buf), fp) == NULL ||
500     !isflt(buf))
501     return(-1);
502     vec[i] = atof(buf);
503     }
504 greg 1.1 break;
505     case 'f': /* binary float */
506 greg 2.70 if (getbinary(vf, sizeof(float), 3, fp) != 3)
507 greg 1.1 return(-1);
508 greg 2.58 VCOPY(vec, vf);
509 greg 1.1 break;
510     case 'd': /* binary double */
511 greg 2.70 if (getbinary(vd, sizeof(double), 3, fp) != 3)
512 greg 1.1 return(-1);
513 greg 2.58 VCOPY(vec, vd);
514 greg 1.1 break;
515 greg 2.6 default:
516     error(CONSISTENCY, "botched input format");
517 greg 1.1 }
518     return(0);
519     }
520    
521    
522 greg 2.89 static int
523     iszerovec(const FVECT vec)
524     {
525     return (vec[0] == 0.0) & (vec[1] == 0.0) & (vec[2] == 0.0);
526     }
527    
528    
529     static double
530     nextray( /* return next ray in work group (-1.0 if EOF) */
531     FVECT org,
532     FVECT dir
533     )
534     {
535     const size_t qlength = !vresolu * hresolu;
536    
537     if ((org == NULL) | (dir == NULL)) {
538     if (inp_queue != NULL) /* asking to free queue */
539     free(inp_queue);
540     inp_queue = NULL;
541     inp_qpos = inp_qend = 0;
542     return(-1.);
543     }
544     if (!inp_qend) { /* initialize FIFO queue */
545     int rsiz = 6*20; /* conservative ascii ray size */
546     if (inform == 'f') rsiz = 6*sizeof(float);
547     else if (inform == 'd') rsiz = 6*sizeof(double);
548 greg 2.92 /* check against pipe limit */
549     if (qlength*rsiz > 512 && is_fifo(inpfp))
550 greg 2.89 inp_queue = (FVECT *)malloc(sizeof(FVECT)*2*qlength);
551     inp_qend = -(inp_queue == NULL); /* flag for no queue */
552     }
553     if (inp_qend < 0) { /* not queuing? */
554     if (getvec(org, inform, inpfp) < 0 ||
555     getvec(dir, inform, inpfp) < 0)
556     return(-1.);
557     return normalize(dir);
558     }
559     if (inp_qpos >= inp_qend) { /* need to refill input queue? */
560     for (inp_qend = 0; inp_qend < qlength; inp_qend++) {
561     if (getvec(inp_queue[2*inp_qend], inform, inpfp) < 0
562     || getvec(inp_queue[2*inp_qend+1],
563     inform, inpfp) < 0)
564     break; /* hit EOF */
565     if (iszerovec(inp_queue[2*inp_qend+1])) {
566     ++inp_qend; /* flush request */
567     break;
568     }
569     }
570     inp_qpos = 0;
571     }
572     if (inp_qpos >= inp_qend) /* unexpected EOF? */
573     return(-1.);
574     VCOPY(org, inp_queue[2*inp_qpos]);
575     VCOPY(dir, inp_queue[2*inp_qpos+1]);
576     ++inp_qpos;
577     return normalize(dir);
578     }
579    
580    
581 greg 2.57 void
582 schorsch 2.37 tranotify( /* record new modifier */
583     OBJECT obj
584     )
585 greg 2.15 {
586     static int hitlimit = 0;
587 greg 2.56 OBJREC *o = objptr(obj);
588     char **tralp;
589 greg 2.15
590 greg 2.27 if (obj == OVOID) { /* starting over */
591     traset[0] = 0;
592     hitlimit = 0;
593     return;
594     }
595 greg 2.15 if (hitlimit || !ismodifier(o->otype))
596     return;
597     for (tralp = tralist; *tralp != NULL; tralp++)
598     if (!strcmp(o->oname, *tralp)) {
599     if (traset[0] >= MAXTSET) {
600     error(WARNING, "too many modifiers in trace list");
601     hitlimit++;
602     return; /* should this be fatal? */
603     }
604     insertelem(traset, obj);
605     return;
606     }
607     }
608    
609    
610 greg 2.27 static void
611 schorsch 2.37 ourtrace( /* print ray values */
612     RAY *r
613     )
614 greg 1.1 {
615 greg 2.56 oputf_t **tp;
616 greg 1.1
617     if (every_out[0] == NULL)
618 greg 2.15 return;
619 greg 2.16 if (r->ro == NULL) {
620     if (traincl == 1)
621     return;
622     } else if (traincl != -1 && traincl != inset(traset, r->ro->omod))
623 greg 1.1 return;
624     tabin(r);
625     for (tp = every_out; *tp != NULL; tp++)
626     (**tp)(r);
627 greg 2.41 if (outform == 'a')
628     putchar('\n');
629 greg 1.1 }
630    
631    
632 greg 2.27 static void
633 schorsch 2.37 tabin( /* tab in appropriate amount */
634     RAY *r
635     )
636 greg 1.1 {
637 greg 2.40 const RAY *rp;
638 greg 1.1
639     for (rp = r->parent; rp != NULL; rp = rp->parent)
640     putchar('\t');
641     }
642    
643    
644 greg 2.27 static void
645 schorsch 2.37 oputo( /* print origin */
646     RAY *r
647     )
648 greg 1.1 {
649 greg 2.65 (*putreal)(r->rorg, 3);
650 greg 1.1 }
651    
652    
653 greg 2.27 static void
654 schorsch 2.37 oputd( /* print direction */
655     RAY *r
656     )
657 greg 1.1 {
658 greg 2.65 (*putreal)(r->rdir, 3);
659 greg 1.1 }
660    
661    
662 greg 2.27 static void
663 greg 2.73 oputr( /* print mirrored contribution */
664     RAY *r
665     )
666     {
667     RREAL cval[3];
668    
669     cval[0] = colval(r->mcol,RED);
670     cval[1] = colval(r->mcol,GRN);
671     cval[2] = colval(r->mcol,BLU);
672     (*putreal)(cval, 3);
673     }
674    
675    
676    
677     static void
678     oputR( /* print mirrored distance */
679     RAY *r
680     )
681     {
682     (*putreal)(&r->rmt, 1);
683     }
684    
685    
686     static void
687     oputx( /* print unmirrored contribution */
688     RAY *r
689     )
690     {
691     RREAL cval[3];
692    
693     cval[0] = colval(r->rcol,RED) - colval(r->mcol,RED);
694     cval[1] = colval(r->rcol,GRN) - colval(r->mcol,GRN);
695     cval[2] = colval(r->rcol,BLU) - colval(r->mcol,BLU);
696     (*putreal)(cval, 3);
697     }
698    
699    
700     static void
701     oputX( /* print unmirrored distance */
702     RAY *r
703     )
704     {
705     (*putreal)(&r->rxt, 1);
706     }
707    
708    
709     static void
710 schorsch 2.37 oputv( /* print value */
711     RAY *r
712     )
713 greg 1.1 {
714 greg 2.65 RREAL cval[3];
715    
716     cval[0] = colval(r->rcol,RED);
717     cval[1] = colval(r->rcol,GRN);
718     cval[2] = colval(r->rcol,BLU);
719     (*putreal)(cval, 3);
720 greg 1.1 }
721    
722    
723 greg 2.27 static void
724 greg 2.51 oputV( /* print value contribution */
725     RAY *r
726     )
727     {
728 greg 2.65 RREAL contr[3];
729 greg 2.51
730     raycontrib(contr, r, PRIMARY);
731     multcolor(contr, r->rcol);
732 greg 2.65 (*putreal)(contr, 3);
733 greg 2.51 }
734    
735    
736     static void
737 schorsch 2.37 oputl( /* print effective distance */
738     RAY *r
739     )
740 greg 1.1 {
741 greg 2.73 RREAL d = raydistance(r);
742    
743     (*putreal)(&d, 1);
744 greg 2.5 }
745    
746    
747 greg 2.27 static void
748 schorsch 2.37 oputL( /* print single ray length */
749     RAY *r
750     )
751 greg 2.5 {
752 greg 2.65 (*putreal)(&r->rot, 1);
753 greg 1.1 }
754    
755    
756 greg 2.27 static void
757 schorsch 2.37 oputc( /* print local coordinates */
758     RAY *r
759     )
760 greg 2.29 {
761 greg 2.65 (*putreal)(r->uv, 2);
762 greg 2.29 }
763    
764    
765 greg 2.65 static RREAL vdummy[3] = {0.0, 0.0, 0.0};
766    
767    
768 greg 2.29 static void
769 greg 2.100 oputp( /* print intersection point */
770 schorsch 2.37 RAY *r
771     )
772 greg 1.1 {
773 greg 2.100 (*putreal)(r->rop, 3); /* set to ray origin if distant or no hit */
774 greg 1.1 }
775    
776    
777 greg 2.27 static void
778 schorsch 2.37 oputN( /* print unperturbed normal */
779     RAY *r
780     )
781 greg 1.1 {
782 greg 2.100 if (r->ro == NULL) { /* zero vector if clipped or no hit */
783     (*putreal)(vdummy, 3);
784     return;
785     }
786     if (r->rflips & 1) { /* undo any flippin' flips */
787     FVECT unrm;
788     unrm[0] = -r->ron[0];
789     unrm[1] = -r->ron[1];
790     unrm[2] = -r->ron[2];
791     (*putreal)(unrm, 3);
792 greg 2.82 } else
793 greg 2.100 (*putreal)(r->ron, 3);
794 greg 2.9 }
795    
796    
797 greg 2.27 static void
798 schorsch 2.37 oputn( /* print perturbed normal */
799     RAY *r
800     )
801 greg 2.9 {
802     FVECT pnorm;
803    
804 greg 2.100 if (r->ro == NULL) { /* clipped or no hit */
805 greg 2.65 (*putreal)(vdummy, 3);
806 greg 2.9 return;
807     }
808     raynormal(pnorm, r);
809 greg 2.65 (*putreal)(pnorm, 3);
810 greg 1.1 }
811    
812    
813 greg 2.27 static void
814 schorsch 2.37 oputs( /* print name */
815     RAY *r
816     )
817 greg 1.1 {
818     if (r->ro != NULL)
819     fputs(r->ro->oname, stdout);
820     else
821     putchar('*');
822     putchar('\t');
823     }
824    
825    
826 greg 2.27 static void
827 schorsch 2.37 oputw( /* print weight */
828     RAY *r
829     )
830 greg 1.1 {
831 greg 2.65 RREAL rwt = r->rweight;
832    
833     (*putreal)(&rwt, 1);
834 greg 1.1 }
835    
836    
837 greg 2.27 static void
838 greg 2.51 oputW( /* print coefficient */
839 greg 2.40 RAY *r
840     )
841     {
842 greg 2.65 RREAL contr[3];
843 greg 2.67 /* shadow ray not on source? */
844     if (r->rsrc >= 0 && source[r->rsrc].so != r->ro)
845     setcolor(contr, 0.0, 0.0, 0.0);
846     else
847     raycontrib(contr, r, PRIMARY);
848 greg 2.40
849 greg 2.65 (*putreal)(contr, 3);
850 greg 2.40 }
851    
852    
853     static void
854 schorsch 2.37 oputm( /* print modifier */
855     RAY *r
856     )
857 greg 1.1 {
858     if (r->ro != NULL)
859 greg 2.23 if (r->ro->omod != OVOID)
860     fputs(objptr(r->ro->omod)->oname, stdout);
861     else
862     fputs(VOIDID, stdout);
863 greg 1.1 else
864     putchar('*');
865     putchar('\t');
866     }
867    
868    
869 greg 2.27 static void
870 greg 2.39 oputM( /* print material */
871     RAY *r
872     )
873     {
874     OBJREC *mat;
875    
876     if (r->ro != NULL) {
877     if ((mat = findmaterial(r->ro)) != NULL)
878     fputs(mat->oname, stdout);
879     else
880     fputs(VOIDID, stdout);
881     } else
882     putchar('*');
883     putchar('\t');
884     }
885    
886    
887     static void
888 greg 2.42 oputtilde( /* output tilde (spacer) */
889 greg 2.41 RAY *r
890     )
891     {
892 greg 2.42 fputs("~\t", stdout);
893 greg 2.41 }
894    
895    
896     static void
897 greg 2.65 puta( /* print ascii value(s) */
898     RREAL *v, int n
899 schorsch 2.37 )
900 greg 1.1 {
901 greg 2.65 if (n == 3) {
902     printf("%e\t%e\t%e\t", v[0], v[1], v[2]);
903     return;
904     }
905     while (n--)
906     printf("%e\t", *v++);
907 greg 1.1 }
908    
909    
910 greg 2.27 static void
911 greg 2.80 putd(RREAL *v, int n) /* output binary double(s) */
912 greg 1.1 {
913 greg 2.68 #ifdef SMLFLT
914     double da[3];
915     int i;
916    
917     if (n > 3)
918 greg 2.65 error(INTERNAL, "code error in putd()");
919 greg 2.68 for (i = n; i--; )
920     da[i] = v[i];
921 greg 2.69 putbinary(da, sizeof(double), n, stdout);
922 greg 2.68 #else
923 greg 2.69 putbinary(v, sizeof(RREAL), n, stdout);
924 greg 2.68 #endif
925 greg 1.1 }
926    
927    
928 greg 2.27 static void
929 greg 2.80 putf(RREAL *v, int n) /* output binary float(s) */
930 greg 1.1 {
931 greg 2.68 #ifndef SMLFLT
932 greg 2.65 float fa[3];
933     int i;
934 greg 1.1
935 greg 2.65 if (n > 3)
936     error(INTERNAL, "code error in putf()");
937     for (i = n; i--; )
938     fa[i] = v[i];
939 greg 2.69 putbinary(fa, sizeof(float), n, stdout);
940 greg 2.68 #else
941 greg 2.69 putbinary(v, sizeof(RREAL), n, stdout);
942 greg 2.68 #endif
943 greg 1.1 }
944 greg 2.80
945    
946     static void
947     putrgbe(RREAL *v, int n) /* output RGBE color */
948     {
949     COLR cout;
950    
951     if (n != 3)
952     error(INTERNAL, "putrgbe() not called with 3 components");
953     setcolr(cout, v[0], v[1], v[2]);
954     putbinary(cout, sizeof(cout), 1, stdout);
955     }