ViewVC Help
View File | Revision Log | Show Annotations | Download File | Root Listing
root/radiance/ray/src/px/pvalue.c
Revision: 2.15
Committed: Tue Feb 25 16:22:05 2003 UTC (21 years, 2 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.14: +116 -2 lines
Log Message:
Added -dw option for 16-bit i/o

File Contents

# Content
1 #ifndef lint
2 static const char RCSid[] = "$Id$";
3 #endif
4 /*
5 * pvalue.c - program to print pixel values.
6 *
7 * 4/23/86
8 */
9
10 #include "standard.h"
11
12 #include "color.h"
13
14 #include <time.h>
15
16 #include "resolu.h"
17
18 typedef unsigned short uint16; /* sizeof (uint16) must == 2 */
19
20 #define min(a,b) ((a)<(b)?(a):(b))
21
22 /* what to put out (also RED, GRN, BLU) */
23 #define ALL 3
24 #define BRIGHT 4
25
26 #define brightonly (putprim==BRIGHT)
27
28 RESOLU picres; /* resolution of picture */
29
30 int uniq = 0; /* print only unique values? */
31
32 int doexposure = 0; /* exposure change? (>100 to print) */
33
34 int dataonly = 0; /* data only format? */
35
36 int putprim = ALL; /* what to put out */
37
38 int reverse = 0; /* reverse conversion? */
39
40 int format = 'a'; /* input/output format */
41 char *fmtid = "ascii"; /* format identifier for header */
42
43 int header = 1; /* do header? */
44
45 long skipbytes = 0; /* skip bytes in input? */
46
47 int interleave = 1; /* file is interleaved? */
48
49 int resolution = 1; /* put/get resolution string? */
50
51 int original = 0; /* convert to original values? */
52
53 int wrongformat = 0; /* wrong input format? */
54
55 double gamcor = 1.0; /* gamma correction */
56
57 int ord[3] = {RED, GRN, BLU}; /* RGB ordering */
58 int rord[4]; /* reverse ordering */
59
60 COLOR exposure = WHTCOLOR;
61
62 char *progname;
63
64 FILE *fin;
65 FILE *fin2 = NULL, *fin3 = NULL; /* for other color channels */
66
67 int (*getval)(), (*putval)();
68
69 double
70 rgb_bright(clr)
71 COLOR clr;
72 {
73 return(bright(clr));
74 }
75
76 double
77 xyz_bright(clr)
78 COLOR clr;
79 {
80 return(clr[CIEY]);
81 }
82
83 double (*mybright)() = &rgb_bright;
84
85
86 main(argc, argv)
87 int argc;
88 char **argv;
89 {
90 extern int checkhead();
91 extern long atol();
92 double d, expval = 1.0;
93 int i;
94
95 progname = argv[0];
96
97 for (i = 1; i < argc; i++)
98 if (argv[i][0] == '-' || argv[i][0] == '+')
99 switch (argv[i][1]) {
100 case 'h': /* header */
101 header = argv[i][0] == '+';
102 break;
103 case 'H': /* resolution string */
104 resolution = argv[i][0] == '+';
105 break;
106 case 's': /* skip bytes in header */
107 skipbytes = atol(argv[++i]);
108 break;
109 case 'u': /* unique values */
110 uniq = argv[i][0] == '-';
111 break;
112 case 'o': /* original values */
113 original = argv[i][0] == '-';
114 break;
115 case 'g': /* gamma correction */
116 gamcor = atof(argv[i+1]);
117 if (argv[i][0] == '+')
118 gamcor = 1.0/gamcor;
119 i++;
120 break;
121 case 'e': /* exposure correction */
122 d = atof(argv[i+1]);
123 if (argv[i+1][0] == '-' || argv[i+1][0] == '+')
124 d = pow(2.0, d);
125 if (argv[i][0] == '-')
126 expval *= d;
127 scalecolor(exposure, d);
128 doexposure++;
129 i++;
130 break;
131 case 'R': /* reverse byte sequence */
132 if (argv[i][0] == '-') {
133 ord[0]=BLU; ord[1]=GRN; ord[2]=RED;
134 } else {
135 ord[0]=RED; ord[1]=GRN; ord[2]=BLU;
136 }
137 break;
138 case 'r': /* reverse conversion */
139 reverse = argv[i][0] == '-';
140 break;
141 case 'n': /* non-interleaved RGB */
142 interleave = argv[i][0] == '+';
143 break;
144 case 'b': /* brightness values */
145 putprim = argv[i][0] == '-' ? BRIGHT : ALL;
146 break;
147 case 'p': /* put primary */
148 switch (argv[i][2]) {
149 case 'r': case 'R': putprim = RED; break;
150 case 'g': case 'G': putprim = GRN; break;
151 case 'b': case 'B': putprim = BLU; break;
152 default: goto unkopt;
153 }
154 break;
155 case 'd': /* data only (no indices) */
156 dataonly = argv[i][0] == '-';
157 switch (argv[i][2]) {
158 case '\0':
159 case 'a': /* ascii */
160 format = 'a';
161 fmtid = "ascii";
162 break;
163 case 'i': /* integer */
164 format = 'i';
165 fmtid = "ascii";
166 break;
167 case 'b': /* byte */
168 dataonly = 1;
169 format = 'b';
170 fmtid = "byte";
171 break;
172 case 'w': /* 16-bit */
173 dataonly = 1;
174 format = 'w';
175 fmtid = "16-bit";
176 break;
177 case 'f': /* float */
178 dataonly = 1;
179 format = 'f';
180 fmtid = "float";
181 break;
182 case 'd': /* double */
183 dataonly = 1;
184 format = 'd';
185 fmtid = "double";
186 break;
187 default:
188 goto unkopt;
189 }
190 break;
191 case 'x': /* x resolution */
192 case 'X': /* x resolution */
193 resolution = 0;
194 if (argv[i][0] == '-')
195 picres.rt |= XDECR;
196 picres.xr = atoi(argv[++i]);
197 break;
198 case 'y': /* y resolution */
199 case 'Y': /* y resolution */
200 resolution = 0;
201 if (argv[i][0] == '-')
202 picres.rt |= YDECR;
203 if (picres.xr == 0)
204 picres.rt |= YMAJOR;
205 picres.yr = atoi(argv[++i]);
206 break;
207 default:
208 unkopt:
209 fprintf(stderr, "%s: unknown option: %s\n",
210 progname, argv[i]);
211 quit(1);
212 break;
213 }
214 else
215 break;
216 /* recognize special formats */
217 if (dataonly && format == 'b')
218 if (brightonly)
219 fmtid = "8-bit_grey";
220 else
221 fmtid = "24-bit_rgb";
222 if (dataonly && format == 'w')
223 if (brightonly)
224 fmtid = "16-bit_grey";
225 else
226 fmtid = "48-bit_rgb";
227 /* assign reverse ordering */
228 rord[ord[0]] = 0;
229 rord[ord[1]] = 1;
230 rord[ord[2]] = 2;
231 /* get input */
232 if (i == argc) {
233 fin = stdin;
234 } else if (i < argc) {
235 if ((fin = fopen(argv[i], "r")) == NULL) {
236 fprintf(stderr, "%s: can't open file \"%s\"\n",
237 progname, argv[i]);
238 quit(1);
239 }
240 if (reverse && !brightonly && i == argc-3) {
241 if ((fin2 = fopen(argv[i+1], "r")) == NULL) {
242 fprintf(stderr, "%s: can't open file \"%s\"\n",
243 progname, argv[i+1]);
244 quit(1);
245 }
246 if ((fin3 = fopen(argv[i+2], "r")) == NULL) {
247 fprintf(stderr, "%s: can't open file \"%s\"\n",
248 progname, argv[i+2]);
249 quit(1);
250 }
251 interleave = -1;
252 } else if (i != argc-1)
253 fin = NULL;
254 if (reverse && !brightonly && !interleave) {
255 fin2 = fopen(argv[i], "r");
256 fin3 = fopen(argv[i], "r");
257 }
258 if (skipbytes && (fseek(fin, skipbytes, 0) || (fin2 != NULL &&
259 (fseek(fin2, skipbytes, 0) ||
260 fseek(fin3, skipbytes, 0))))) {
261 fprintf(stderr, "%s: cannot skip %ld bytes on input\n",
262 progname, skipbytes);
263 quit(1);
264 }
265 }
266 if (fin == NULL) {
267 fprintf(stderr, "%s: bad # file arguments\n", progname);
268 quit(1);
269 }
270
271 if (reverse) {
272 #ifdef MSDOS
273 setmode(fileno(stdout), O_BINARY);
274 if (format != 'a' && format != 'i')
275 setmode(fileno(fin), O_BINARY);
276 #endif
277 /* get header */
278 if (header) {
279 if (checkheader(fin, fmtid, stdout) < 0) {
280 fprintf(stderr, "%s: wrong input format\n",
281 progname);
282 quit(1);
283 }
284 if (fin2 != NULL) {
285 getheader(fin2, NULL, NULL);
286 getheader(fin3, NULL, NULL);
287 }
288 } else
289 newheader("RADIANCE", stdout);
290 /* get resolution */
291 if ((resolution && !fgetsresolu(&picres, fin)) ||
292 picres.xr <= 0 || picres.yr <= 0) {
293 fprintf(stderr, "%s: missing resolution\n", progname);
294 quit(1);
295 }
296 if (resolution && fin2 != NULL) {
297 RESOLU pres2;
298 if (!fgetsresolu(&pres2, fin2) ||
299 pres2.rt != picres.rt ||
300 pres2.xr != picres.xr ||
301 pres2.yr != picres.yr ||
302 !fgetsresolu(&pres2, fin3) ||
303 pres2.rt != picres.rt ||
304 pres2.xr != picres.xr ||
305 pres2.yr != picres.yr) {
306 fprintf(stderr, "%s: resolution mismatch\n",
307 progname);
308 quit(1);
309 }
310 }
311 /* add to header */
312 printargs(i, argv, stdout);
313 if (expval < .99 || expval > 1.01)
314 fputexpos(expval, stdout);
315 fputformat(COLRFMT, stdout);
316 putchar('\n');
317 fputsresolu(&picres, stdout); /* always put resolution */
318 valtopix();
319 } else {
320 #ifdef MSDOS
321 setmode(fileno(fin), O_BINARY);
322 if (format != 'a' && format != 'i')
323 setmode(fileno(stdout), O_BINARY);
324 #endif
325 /* get header */
326 getheader(fin, checkhead, NULL);
327 if (wrongformat) {
328 fprintf(stderr,
329 "%s: input not a Radiance RGBE picture\n",
330 progname);
331 quit(1);
332 }
333 if (!fgetsresolu(&picres, fin)) {
334 fprintf(stderr, "%s: missing resolution\n", progname);
335 quit(1);
336 }
337 if (header) {
338 printargs(i, argv, stdout);
339 if (expval < .99 || expval > 1.01)
340 fputexpos(expval, stdout);
341 fputformat(fmtid, stdout);
342 putchar('\n');
343 }
344 if (resolution) /* put resolution */
345 fputsresolu(&picres, stdout);
346 pixtoval();
347 }
348
349 quit(0);
350 }
351
352
353 int
354 checkhead(line) /* deal with line from header */
355 char *line;
356 {
357 char fmt[32];
358 double d;
359 COLOR ctmp;
360
361 if (formatval(fmt, line)) {
362 if (!strcmp(fmt, CIEFMT)) {
363 mybright = &xyz_bright;
364 if (original) {
365 scalecolor(exposure, 1./WHTEFFICACY);
366 doexposure++;
367 }
368 } else if (!strcmp(fmt, COLRFMT))
369 mybright = &rgb_bright;
370 else
371 wrongformat++;
372 } else if (original && isexpos(line)) {
373 d = 1.0/exposval(line);
374 scalecolor(exposure, d);
375 doexposure++;
376 } else if (original && iscolcor(line)) {
377 colcorval(ctmp, line);
378 setcolor(exposure, colval(exposure,RED)/colval(ctmp,RED),
379 colval(exposure,GRN)/colval(ctmp,GRN),
380 colval(exposure,BLU)/colval(ctmp,BLU));
381 doexposure++;
382 } else if (header)
383 fputs(line, stdout);
384 return(0);
385 }
386
387
388 pixtoval() /* convert picture to values */
389 {
390 register COLOR *scanln;
391 int dogamma;
392 COLOR lastc;
393 FLOAT hv[2];
394 int startprim, endprim;
395 long startpos;
396 int y;
397 register int x;
398
399 scanln = (COLOR *)malloc(scanlen(&picres)*sizeof(COLOR));
400 if (scanln == NULL) {
401 fprintf(stderr, "%s: out of memory\n", progname);
402 quit(1);
403 }
404 dogamma = gamcor < .95 || gamcor > 1.05;
405 if (putprim == ALL && !interleave) {
406 startprim = RED; endprim = BLU;
407 startpos = ftell(fin);
408 } else {
409 startprim = putprim; endprim = putprim;
410 }
411 for (putprim = startprim; putprim <= endprim; putprim++) {
412 if (putprim != startprim && fseek(fin, startpos, 0)) {
413 fprintf(stderr, "%s: seek error on input file\n",
414 progname);
415 quit(1);
416 }
417 set_io();
418 setcolor(lastc, 0.0, 0.0, 0.0);
419 for (y = 0; y < numscans(&picres); y++) {
420 if (freadscan(scanln, scanlen(&picres), fin) < 0) {
421 fprintf(stderr, "%s: read error\n", progname);
422 quit(1);
423 }
424 for (x = 0; x < scanlen(&picres); x++) {
425 if (uniq)
426 if ( colval(scanln[x],RED) ==
427 colval(lastc,RED) &&
428 colval(scanln[x],GRN) ==
429 colval(lastc,GRN) &&
430 colval(scanln[x],BLU) ==
431 colval(lastc,BLU) )
432 continue;
433 else
434 copycolor(lastc, scanln[x]);
435 if (doexposure)
436 multcolor(scanln[x], exposure);
437 if (dogamma)
438 setcolor(scanln[x],
439 pow(colval(scanln[x],RED), 1.0/gamcor),
440 pow(colval(scanln[x],GRN), 1.0/gamcor),
441 pow(colval(scanln[x],BLU), 1.0/gamcor));
442 if (!dataonly) {
443 pix2loc(hv, &picres, x, y);
444 printf("%7d %7d ",
445 (int)(hv[0]*picres.xr),
446 (int)(hv[1]*picres.yr));
447 }
448 if ((*putval)(scanln[x]) < 0) {
449 fprintf(stderr, "%s: write error\n",
450 progname);
451 quit(1);
452 }
453 }
454 }
455 }
456 free((void *)scanln);
457 }
458
459
460 valtopix() /* convert values to a pixel file */
461 {
462 int dogamma;
463 register COLOR *scanln;
464 int y;
465 register int x;
466
467 scanln = (COLOR *)malloc(scanlen(&picres)*sizeof(COLOR));
468 if (scanln == NULL) {
469 fprintf(stderr, "%s: out of memory\n", progname);
470 quit(1);
471 }
472 dogamma = gamcor < .95 || gamcor > 1.05;
473 set_io();
474 for (y = 0; y < numscans(&picres); y++) {
475 for (x = 0; x < scanlen(&picres); x++) {
476 if (!dataonly) {
477 fscanf(fin, "%*d %*d");
478 if (fin2 != NULL) {
479 fscanf(fin2, "%*d %*d");
480 fscanf(fin3, "%*d %*d");
481 }
482 }
483 if ((*getval)(scanln[x]) < 0) {
484 fprintf(stderr, "%s: read error\n", progname);
485 quit(1);
486 }
487 if (dogamma)
488 setcolor(scanln[x],
489 pow(colval(scanln[x],RED), gamcor),
490 pow(colval(scanln[x],GRN), gamcor),
491 pow(colval(scanln[x],BLU), gamcor));
492 if (doexposure)
493 multcolor(scanln[x], exposure);
494 }
495 if (fwritescan(scanln, scanlen(&picres), stdout) < 0) {
496 fprintf(stderr, "%s: write error\n", progname);
497 quit(1);
498 }
499 }
500 free((void *)scanln);
501 }
502
503
504 void
505 quit(code)
506 int code;
507 {
508 exit(code);
509 }
510
511
512 getcascii(col) /* get an ascii color value from stream(s) */
513 COLOR col;
514 {
515 double vd[3];
516
517 if (fin2 == NULL) {
518 if (fscanf(fin, "%lf %lf %lf", &vd[0], &vd[1], &vd[2]) != 3)
519 return(-1);
520 } else {
521 if (fscanf(fin, "%lf", &vd[0]) != 1 ||
522 fscanf(fin2, "%lf", &vd[1]) != 1 ||
523 fscanf(fin3, "%lf", &vd[2]) != 1)
524 return(-1);
525 }
526 setcolor(col, vd[rord[RED]], vd[rord[GRN]], vd[rord[BLU]]);
527 return(0);
528 }
529
530
531 getcdouble(col) /* get a double color value from stream(s) */
532 COLOR col;
533 {
534 double vd[3];
535
536 if (fin2 == NULL) {
537 if (fread((char *)vd, sizeof(double), 3, fin) != 3)
538 return(-1);
539 } else {
540 if (fread((char *)vd, sizeof(double), 1, fin) != 1 ||
541 fread((char *)(vd+1), sizeof(double), 1, fin2) != 1 ||
542 fread((char *)(vd+2), sizeof(double), 1, fin3) != 1)
543 return(-1);
544 }
545 setcolor(col, vd[rord[RED]], vd[rord[GRN]], vd[rord[BLU]]);
546 return(0);
547 }
548
549
550 getcfloat(col) /* get a float color value from stream(s) */
551 COLOR col;
552 {
553 float vf[3];
554
555 if (fin2 == NULL) {
556 if (fread((char *)vf, sizeof(float), 3, fin) != 3)
557 return(-1);
558 } else {
559 if (fread((char *)vf, sizeof(float), 1, fin) != 1 ||
560 fread((char *)(vf+1), sizeof(float), 1, fin2) != 1 ||
561 fread((char *)(vf+2), sizeof(float), 1, fin3) != 1)
562 return(-1);
563 }
564 setcolor(col, vf[rord[RED]], vf[rord[GRN]], vf[rord[BLU]]);
565 return(0);
566 }
567
568
569 getcint(col) /* get an int color value from stream(s) */
570 COLOR col;
571 {
572 int vi[3];
573
574 if (fin2 == NULL) {
575 if (fscanf(fin, "%d %d %d", &vi[0], &vi[1], &vi[2]) != 3)
576 return(-1);
577 } else {
578 if (fscanf(fin, "%d", &vi[0]) != 1 ||
579 fscanf(fin2, "%d", &vi[1]) != 1 ||
580 fscanf(fin3, "%d", &vi[2]) != 1)
581 return(-1);
582 }
583 setcolor(col, (vi[rord[RED]]+.5)/256.,
584 (vi[rord[GRN]]+.5)/256., (vi[rord[BLU]]+.5)/256.);
585 return(0);
586 }
587
588
589 getcbyte(col) /* get a byte color value from stream(s) */
590 COLOR col;
591 {
592 BYTE vb[3];
593
594 if (fin2 == NULL) {
595 if (fread((char *)vb, sizeof(BYTE), 3, fin) != 3)
596 return(-1);
597 } else {
598 if (fread((char *)vb, sizeof(BYTE), 1, fin) != 1 ||
599 fread((char *)(vb+1), sizeof(BYTE), 1, fin2) != 1 ||
600 fread((char *)(vb+2), sizeof(BYTE), 1, fin3) != 1)
601 return(-1);
602 }
603 setcolor(col, (vb[rord[RED]]+.5)/256.,
604 (vb[rord[GRN]]+.5)/256., (vb[rord[BLU]]+.5)/256.);
605 return(0);
606 }
607
608
609 getcword(col) /* get a 16-bit color value from stream(s) */
610 COLOR col;
611 {
612 uint16 vw[3];
613
614 if (fin2 == NULL) {
615 if (fread((char *)vw, sizeof(uint16), 3, fin) != 3)
616 return(-1);
617 } else {
618 if (fread((char *)vw, sizeof(uint16), 1, fin) != 1 ||
619 fread((char *)(vw+1), sizeof(uint16), 1, fin2) != 1 ||
620 fread((char *)(vw+2), sizeof(uint16), 1, fin3) != 1)
621 return(-1);
622 }
623 setcolor(col, (vw[rord[RED]]+.5)/65536.,
624 (vw[rord[GRN]]+.5)/65536., (vw[rord[BLU]]+.5)/65536.);
625 return(0);
626 }
627
628
629 getbascii(col) /* get an ascii brightness value from fin */
630 COLOR col;
631 {
632 double vd;
633
634 if (fscanf(fin, "%lf", &vd) != 1)
635 return(-1);
636 setcolor(col, vd, vd, vd);
637 return(0);
638 }
639
640
641 getbdouble(col) /* get a double brightness value from fin */
642 COLOR col;
643 {
644 double vd;
645
646 if (fread((char *)&vd, sizeof(double), 1, fin) != 1)
647 return(-1);
648 setcolor(col, vd, vd, vd);
649 return(0);
650 }
651
652
653 getbfloat(col) /* get a float brightness value from fin */
654 COLOR col;
655 {
656 float vf;
657
658 if (fread((char *)&vf, sizeof(float), 1, fin) != 1)
659 return(-1);
660 setcolor(col, vf, vf, vf);
661 return(0);
662 }
663
664
665 getbint(col) /* get an int brightness value from fin */
666 COLOR col;
667 {
668 int vi;
669 double d;
670
671 if (fscanf(fin, "%d", &vi) != 1)
672 return(-1);
673 d = (vi+.5)/256.;
674 setcolor(col, d, d, d);
675 return(0);
676 }
677
678
679 getbbyte(col) /* get a byte brightness value from fin */
680 COLOR col;
681 {
682 BYTE vb;
683 double d;
684
685 if (fread((char *)&vb, sizeof(BYTE), 1, fin) != 1)
686 return(-1);
687 d = (vb+.5)/256.;
688 setcolor(col, d, d, d);
689 return(0);
690 }
691
692
693 getbword(col) /* get a 16-bit brightness value from fin */
694 COLOR col;
695 {
696 uint16 vw;
697 double d;
698
699 if (fread((char *)&vw, sizeof(uint16), 1, fin) != 1)
700 return(-1);
701 d = (vw+.5)/65536.;
702 setcolor(col, d, d, d);
703 return(0);
704 }
705
706
707 putcascii(col) /* put an ascii color to stdout */
708 COLOR col;
709 {
710 fprintf(stdout, "%15.3e %15.3e %15.3e\n",
711 colval(col,ord[0]),
712 colval(col,ord[1]),
713 colval(col,ord[2]));
714
715 return(ferror(stdout) ? -1 : 0);
716 }
717
718
719 putcfloat(col) /* put a float color to stdout */
720 COLOR col;
721 {
722 float vf[3];
723
724 vf[0] = colval(col,ord[0]);
725 vf[1] = colval(col,ord[1]);
726 vf[2] = colval(col,ord[2]);
727 fwrite((char *)vf, sizeof(float), 3, stdout);
728
729 return(ferror(stdout) ? -1 : 0);
730 }
731
732
733 putcdouble(col) /* put a double color to stdout */
734 COLOR col;
735 {
736 double vd[3];
737
738 vd[0] = colval(col,ord[0]);
739 vd[1] = colval(col,ord[1]);
740 vd[2] = colval(col,ord[2]);
741 fwrite((char *)vd, sizeof(double), 3, stdout);
742
743 return(ferror(stdout) ? -1 : 0);
744 }
745
746
747 putcint(col) /* put an int color to stdout */
748 COLOR col;
749 {
750 fprintf(stdout, "%d %d %d\n",
751 (int)(colval(col,ord[0])*256.),
752 (int)(colval(col,ord[1])*256.),
753 (int)(colval(col,ord[2])*256.));
754
755 return(ferror(stdout) ? -1 : 0);
756 }
757
758
759 putcbyte(col) /* put a byte color to stdout */
760 COLOR col;
761 {
762 long i;
763 BYTE vb[3];
764
765 i = colval(col,ord[0])*256.;
766 vb[0] = min(i,255);
767 i = colval(col,ord[1])*256.;
768 vb[1] = min(i,255);
769 i = colval(col,ord[2])*256.;
770 vb[2] = min(i,255);
771 fwrite((char *)vb, sizeof(BYTE), 3, stdout);
772
773 return(ferror(stdout) ? -1 : 0);
774 }
775
776
777 putcword(col) /* put a 16-bit color to stdout */
778 COLOR col;
779 {
780 long i;
781 uint16 vw[3];
782
783 i = colval(col,ord[0])*65536.;
784 vw[0] = min(i,65535);
785 i = colval(col,ord[1])*65536.;
786 vw[1] = min(i,65535);
787 i = colval(col,ord[2])*65536.;
788 vw[2] = min(i,65535);
789 fwrite((char *)vw, sizeof(uint16), 3, stdout);
790
791 return(ferror(stdout) ? -1 : 0);
792 }
793
794
795 putbascii(col) /* put an ascii brightness to stdout */
796 COLOR col;
797 {
798 fprintf(stdout, "%15.3e\n", (*mybright)(col));
799
800 return(ferror(stdout) ? -1 : 0);
801 }
802
803
804 putbfloat(col) /* put a float brightness to stdout */
805 COLOR col;
806 {
807 float vf;
808
809 vf = (*mybright)(col);
810 fwrite((char *)&vf, sizeof(float), 1, stdout);
811
812 return(ferror(stdout) ? -1 : 0);
813 }
814
815
816 putbdouble(col) /* put a double brightness to stdout */
817 COLOR col;
818 {
819 double vd;
820
821 vd = (*mybright)(col);
822 fwrite((char *)&vd, sizeof(double), 1, stdout);
823
824 return(ferror(stdout) ? -1 : 0);
825 }
826
827
828 putbint(col) /* put an int brightness to stdout */
829 COLOR col;
830 {
831 fprintf(stdout, "%d\n", (int)((*mybright)(col)*256.));
832
833 return(ferror(stdout) ? -1 : 0);
834 }
835
836
837 putbbyte(col) /* put a byte brightness to stdout */
838 COLOR col;
839 {
840 register int i;
841 BYTE vb;
842
843 i = (*mybright)(col)*256.;
844 vb = min(i,255);
845 fwrite((char *)&vb, sizeof(BYTE), 1, stdout);
846
847 return(ferror(stdout) ? -1 : 0);
848 }
849
850
851 putbword(col) /* put a 16-bit brightness to stdout */
852 COLOR col;
853 {
854 long i;
855 uint16 vw;
856
857 i = (*mybright)(col)*65536.;
858 vw = min(i,65535);
859 fwrite((char *)&vw, sizeof(uint16), 1, stdout);
860
861 return(ferror(stdout) ? -1 : 0);
862 }
863
864
865 putpascii(col) /* put an ascii primary to stdout */
866 COLOR col;
867 {
868 fprintf(stdout, "%15.3e\n", colval(col,putprim));
869
870 return(ferror(stdout) ? -1 : 0);
871 }
872
873
874 putpfloat(col) /* put a float primary to stdout */
875 COLOR col;
876 {
877 float vf;
878
879 vf = colval(col,putprim);
880 fwrite((char *)&vf, sizeof(float), 1, stdout);
881
882 return(ferror(stdout) ? -1 : 0);
883 }
884
885
886 putpdouble(col) /* put a double primary to stdout */
887 COLOR col;
888 {
889 double vd;
890
891 vd = colval(col,putprim);
892 fwrite((char *)&vd, sizeof(double), 1, stdout);
893
894 return(ferror(stdout) ? -1 : 0);
895 }
896
897
898 putpint(col) /* put an int primary to stdout */
899 COLOR col;
900 {
901 fprintf(stdout, "%d\n", (int)(colval(col,putprim)*256.));
902
903 return(ferror(stdout) ? -1 : 0);
904 }
905
906
907 putpbyte(col) /* put a byte primary to stdout */
908 COLOR col;
909 {
910 long i;
911 BYTE vb;
912
913 i = colval(col,putprim)*256.;
914 vb = min(i,255);
915 fwrite((char *)&vb, sizeof(BYTE), 1, stdout);
916
917 return(ferror(stdout) ? -1 : 0);
918 }
919
920
921 putpword(col) /* put a 16-bit primary to stdout */
922 COLOR col;
923 {
924 long i;
925 uint16 vw;
926
927 i = colval(col,putprim)*65536.;
928 vw = min(i,65535);
929 fwrite((char *)&vw, sizeof(uint16), 1, stdout);
930
931 return(ferror(stdout) ? -1 : 0);
932 }
933
934
935 set_io() /* set put and get functions */
936 {
937 switch (format) {
938 case 'a': /* ascii */
939 if (putprim == BRIGHT) {
940 getval = getbascii;
941 putval = putbascii;
942 } else if (putprim != ALL) {
943 getval = getbascii;
944 putval = putpascii;
945 } else {
946 getval = getcascii;
947 putval = putcascii;
948 if (reverse && !interleave) {
949 fprintf(stderr,
950 "%s: ASCII input files must be interleaved\n",
951 progname);
952 quit(1);
953 }
954 }
955 return;
956 case 'f': /* binary float */
957 if (putprim == BRIGHT) {
958 getval = getbfloat;
959 putval = putbfloat;
960 } else if (putprim != ALL) {
961 getval = getbfloat;
962 putval = putpfloat;
963 } else {
964 getval = getcfloat;
965 putval = putcfloat;
966 if (reverse && !interleave) {
967 if (fin2 == NULL)
968 goto namerr;
969 if (fseek(fin2,
970 (long)sizeof(float)*picres.xr*picres.yr, 1))
971 goto seekerr;
972 if (fseek(fin3,
973 (long)sizeof(float)*2*picres.xr*picres.yr, 1))
974 goto seekerr;
975 }
976 }
977 return;
978 case 'd': /* binary double */
979 if (putprim == BRIGHT) {
980 getval = getbdouble;
981 putval = putbdouble;
982 } else if (putprim != ALL) {
983 getval = getbdouble;
984 putval = putpdouble;
985 } else {
986 getval = getcdouble;
987 putval = putcdouble;
988 if (reverse && !interleave) {
989 if (fin2 == NULL)
990 goto namerr;
991 if (fseek(fin2,
992 (long)sizeof(double)*picres.xr*picres.yr, 1))
993 goto seekerr;
994 if (fseek(fin3,
995 (long)sizeof(double)*2*picres.xr*picres.yr, 1))
996 goto seekerr;
997 }
998 }
999 return;
1000 case 'i': /* integer */
1001 if (putprim == BRIGHT) {
1002 getval = getbint;
1003 putval = putbint;
1004 } else if (putprim != ALL) {
1005 getval = getbint;
1006 putval = putpint;
1007 } else {
1008 getval = getcint;
1009 putval = putcint;
1010 if (reverse && !interleave) {
1011 fprintf(stderr,
1012 "%s: integer input files must be interleaved\n",
1013 progname);
1014 quit(1);
1015 }
1016 }
1017 return;
1018 case 'b': /* byte */
1019 if (putprim == BRIGHT) {
1020 getval = getbbyte;
1021 putval = putbbyte;
1022 } else if (putprim != ALL) {
1023 getval = getbbyte;
1024 putval = putpbyte;
1025 } else {
1026 getval = getcbyte;
1027 putval = putcbyte;
1028 if (reverse && !interleave) {
1029 if (fin2 == NULL)
1030 goto namerr;
1031 if (fseek(fin2,
1032 (long)sizeof(BYTE)*picres.xr*picres.yr, 1))
1033 goto seekerr;
1034 if (fseek(fin3,
1035 (long)sizeof(BYTE)*2*picres.xr*picres.yr, 1))
1036 goto seekerr;
1037 }
1038 }
1039 return;
1040 case 'w': /* 16-bit */
1041 if (putprim == BRIGHT) {
1042 getval = getbword;
1043 putval = putbword;
1044 } else if (putprim != ALL) {
1045 getval = getbword;
1046 putval = putpword;
1047 } else {
1048 getval = getcword;
1049 putval = putcword;
1050 if (reverse && !interleave) {
1051 if (fin2 == NULL)
1052 goto namerr;
1053 if (fseek(fin2,
1054 (long)sizeof(uint16)*picres.xr*picres.yr, 1))
1055 goto seekerr;
1056 if (fseek(fin3,
1057 (long)sizeof(uint16)*2*picres.xr*picres.yr, 1))
1058 goto seekerr;
1059 }
1060 }
1061 return;
1062 }
1063 badopt:
1064 fprintf(stderr, "%s: botched file type\n", progname);
1065 quit(1);
1066 namerr:
1067 fprintf(stderr, "%s: non-interleaved file(s) must be named\n",
1068 progname);
1069 quit(1);
1070 seekerr:
1071 fprintf(stderr, "%s: cannot seek on interleaved input file\n",
1072 progname);
1073 quit(1);
1074 }