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root/radiance/ray/src/px/macbethcal.c
Revision: 2.9
Committed: Mon Oct 23 12:20:03 1995 UTC (28 years, 6 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.8: +44 -33 lines
Log Message:
changed debug output to show original and corrected colors both

File Contents

# Content
1 /* Copyright (c) 1995 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * Calibrate a scanned MacBeth Color Checker Chart
9 *
10 * Produce a .cal file suitable for use with pcomb.
11 */
12
13 #include <stdio.h>
14 #ifdef MSDOS
15 #include <fcntl.h>
16 #endif
17 #include "color.h"
18 #include "resolu.h"
19 #include "pmap.h"
20
21 /* MacBeth colors */
22 #define DarkSkin 0
23 #define LightSkin 1
24 #define BlueSky 2
25 #define Foliage 3
26 #define BlueFlower 4
27 #define BluishGreen 5
28 #define Orange 6
29 #define PurplishBlue 7
30 #define ModerateRed 8
31 #define Purple 9
32 #define YellowGreen 10
33 #define OrangeYellow 11
34 #define Blue 12
35 #define Green 13
36 #define Red 14
37 #define Yellow 15
38 #define Magenta 16
39 #define Cyan 17
40 #define White 18
41 #define Neutral8 19
42 #define Neutral65 20
43 #define Neutral5 21
44 #define Neutral35 22
45 #define Black 23
46 /* computed from 5nm spectral measurements */
47 /* CIE 1931 2 degree obs, equal-energy white */
48 float mbxyY[24][3] = {
49 {0.462, 0.3769, 0.0932961}, /* DarkSkin */
50 {0.4108, 0.3542, 0.410348}, /* LightSkin */
51 {0.2626, 0.267, 0.181554}, /* BlueSky */
52 {0.36, 0.4689, 0.108447}, /* Foliage */
53 {0.2977, 0.2602, 0.248407}, /* BlueFlower */
54 {0.2719, 0.3485, 0.401156}, /* BluishGreen */
55 {0.52, 0.4197, 0.357899}, /* Orange */
56 {0.229, 0.1866, 0.103911}, /* PurplishBlue */
57 {0.4909, 0.3262, 0.242615}, /* ModerateRed */
58 {0.3361, 0.2249, 0.0600102}, /* Purple */
59 {0.3855, 0.4874, 0.42963}, /* YellowGreen */
60 {0.4853, 0.4457, 0.476343}, /* OrangeYellow */
61 {0.2026, 0.1369, 0.0529249}, /* Blue */
62 {0.3007, 0.4822, 0.221226}, /* Green */
63 {0.5805, 0.3238, 0.162167}, /* Red */
64 {0.4617, 0.472, 0.64909}, /* Yellow */
65 {0.4178, 0.2625, 0.233662}, /* Magenta */
66 {0.2038, 0.2508, 0.167275}, /* Cyan */
67 {0.3358, 0.337, 0.916877}, /* White */
68 {0.3338, 0.3348, 0.604678}, /* Neutral.8 */
69 {0.3333, 0.3349, 0.364566}, /* Neutral.65 */
70 {0.3353, 0.3359, 0.200238}, /* Neutral.5 */
71 {0.3363, 0.336, 0.0878721}, /* Neutral.35 */
72 {0.3346, 0.3349, 0.0308383} /* Black */
73 };
74
75 COLOR mbRGB[24]; /* MacBeth RGB values */
76
77 #define NMBNEU 6 /* Number of MacBeth neutral colors */
78 short mbneu[NMBNEU] = {Black,Neutral35,Neutral5,Neutral65,Neutral8,White};
79
80 #define NEUFLGS (1L<<White|1L<<Neutral8|1L<<Neutral65| \
81 1L<<Neutral5|1L<<Neutral35|1L<<Black)
82
83 #define SATFLGS (1L<<Red|1L<<Green|1L<<Blue|1L<<Magenta|1L<<Yellow| \
84 1L<<Cyan|1L<<Orange|1L<<Purple|1L<<PurplishBlue| \
85 1L<<YellowGreen|1<<OrangeYellow|1L<<BlueFlower)
86
87 #define UNSFLGS (1L<<DarkSkin|1L<<LightSkin|1L<<BlueSky|1L<<Foliage| \
88 1L<<BluishGreen|1L<<ModerateRed)
89
90 #define REQFLGS NEUFLGS /* need these colors */
91 #define MODFLGS (NEUFLGS|UNSFLGS) /* should be in gamut */
92
93 #define RG_BORD 0 /* patch border */
94 #define RG_CENT 01 /* central region of patch */
95 #define RG_ORIG 02 /* original color region */
96 #define RG_CORR 04 /* corrected color region */
97
98 int xmax, ymax; /* input image dimensions */
99 int bounds[4][2]; /* image coordinates of chart corners */
100 double imgxfm[3][3]; /* coordinate transformation matrix */
101
102 COLOR inpRGB[24]; /* measured or scanned input colors */
103 long inpflags = 0; /* flags of which colors were input */
104 long gmtflags = 0; /* flags of out-of-gamut colors */
105
106 COLOR bramp[NMBNEU][2]; /* brightness ramp (per primary) */
107 double solmat[3][3]; /* color mapping matrix */
108
109 FILE *debugfp = NULL; /* debug output picture */
110 char *progname;
111
112 extern char *malloc();
113
114
115 main(argc, argv)
116 int argc;
117 char **argv;
118 {
119 int inpispic = 1;
120 int i;
121
122 progname = argv[0];
123 for (i = 1; i < argc && argv[i][0] == '-'; i++)
124 switch (argv[i][1]) {
125 case 'd': /* debug output */
126 i++;
127 if (badarg(argc-i, argv+i, "s"))
128 goto userr;
129 if ((debugfp = fopen(argv[i], "w")) == NULL) {
130 perror(argv[i]);
131 exit(1);
132 }
133 #ifdef MSDOS
134 setmode(fileno(debugfp), O_BINARY);
135 #endif
136 newheader("RADIANCE", debugfp); /* start */
137 printargs(argc, argv, debugfp); /* header */
138 break;
139 case 'p': /* picture position */
140 if (badarg(argc-i-1, argv+i+1, "iiiiiiii"))
141 goto userr;
142 bounds[0][0] = atoi(argv[++i]);
143 bounds[0][1] = atoi(argv[++i]);
144 bounds[1][0] = atoi(argv[++i]);
145 bounds[1][1] = atoi(argv[++i]);
146 bounds[2][0] = atoi(argv[++i]);
147 bounds[2][1] = atoi(argv[++i]);
148 bounds[3][0] = atoi(argv[++i]);
149 bounds[3][1] = atoi(argv[++i]);
150 inpispic = 2;
151 break;
152 case 'c': /* color input */
153 inpispic = 0;
154 break;
155 default:
156 goto userr;
157 }
158 /* open files */
159 if (i < argc && freopen(argv[i], "r", stdin) == NULL) {
160 perror(argv[1]);
161 exit(1);
162 }
163 if (i+1 < argc && freopen(argv[i+1], "w", stdout) == NULL) {
164 perror(argv[2]);
165 exit(1);
166 }
167 if (inpispic) { /* load input picture header */
168 #ifdef MSDOS
169 setmode(fileno(stdin), O_BINARY);
170 #endif
171 if (checkheader(stdin, COLRFMT, NULL) < 0 ||
172 fgetresolu(&xmax, &ymax, stdin) < 0) {
173 fprintf(stderr, "%s: bad input picture\n", progname);
174 exit(1);
175 }
176 } else { /* else set default xmax and ymax */
177 xmax = 512;
178 ymax = 2*512/3;
179 }
180 if (inpispic != 2) { /* use default boundaries */
181 bounds[0][0] = bounds[2][0] = .029*xmax + .5;
182 bounds[0][1] = bounds[1][1] = .956*ymax + .5;
183 bounds[1][0] = bounds[3][0] = .971*xmax + .5;
184 bounds[2][1] = bounds[3][1] = .056*ymax + .5;
185 }
186 init(); /* initialize */
187 if (inpispic) /* get picture colors */
188 getpicture();
189 else
190 getcolors();
191 compute(); /* compute color mapping */
192 /* print comment */
193 printf("{ Color correction file computed by:\n\t");
194 printargs(argc, argv, stdout);
195 printf("}\n");
196 putmapping(); /* put out color mapping */
197 if (debugfp != NULL) /* put out debug picture */
198 if (inpispic)
199 picdebug();
200 else
201 clrdebug();
202 exit(0);
203 userr:
204 fprintf(stderr,
205 "Usage: %s [-d dbg.pic][-p xul yul xur yur xll yll xlr ylr] input.pic [output.cal]\n",
206 progname);
207 fprintf(stderr, " or: %s [-d dbg.pic] -c [xyY.dat [output.cal]]\n",
208 progname);
209 exit(1);
210 }
211
212
213 init() /* initialize */
214 {
215 double quad[4][2];
216 register int i;
217 /* make coordinate transformation */
218 quad[0][0] = bounds[0][0];
219 quad[0][1] = bounds[0][1];
220 quad[1][0] = bounds[1][0];
221 quad[1][1] = bounds[1][1];
222 quad[2][0] = bounds[3][0];
223 quad[2][1] = bounds[3][1];
224 quad[3][0] = bounds[2][0];
225 quad[3][1] = bounds[2][1];
226
227 if (pmap_quad_rect(0., 0., 6., 4., quad, imgxfm) == PMAP_BAD) {
228 fprintf(stderr, "%s: bad chart boundaries\n", progname);
229 exit(1);
230 }
231 /* map MacBeth colors to RGB space */
232 for (i = 0; i < 24; i++)
233 xyY2RGB(mbRGB[i], mbxyY[i]);
234 }
235
236
237 int
238 chartndx(x, y, np) /* find color number for position */
239 int x, y;
240 int *np;
241 {
242 double ipos[3], cpos[3];
243 int ix, iy;
244 double fx, fy;
245
246 ipos[0] = x;
247 ipos[1] = y;
248 ipos[2] = 1;
249 mx3d_transform(ipos, imgxfm, cpos);
250 cpos[0] /= cpos[2];
251 cpos[1] /= cpos[2];
252 if (cpos[0] < 0. || cpos[0] >= 6. || cpos[1] < 0. || cpos[1] >= 4.)
253 return(RG_BORD);
254 ix = cpos[0];
255 iy = cpos[1];
256 fx = cpos[0] - ix;
257 fy = cpos[1] - iy;
258 *np = iy*6 + ix;
259 if (fx >= 0.35 && fx < 0.65 && fy >= 0.35 && fy < 0.65)
260 return(RG_CENT);
261 if (fx < 0.05 || fx >= 0.95 || fy < 0.05 || fy >= 0.95)
262 return(RG_BORD);
263 if (fx >= 0.5) /* right side is corrected */
264 return(RG_CORR);
265 return(RG_ORIG); /* left side is original */
266 }
267
268
269 getpicture() /* load in picture colors */
270 {
271 COLR *scanln;
272 COLOR pval;
273 int ccount[24];
274 double d;
275 int y, i;
276 register int x;
277
278 scanln = (COLR *)malloc(xmax*sizeof(COLR));
279 if (scanln == NULL) {
280 perror(progname);
281 exit(1);
282 }
283 for (i = 0; i < 24; i++) {
284 setcolor(inpRGB[i], 0., 0., 0.);
285 ccount[i] = 0;
286 }
287 for (y = ymax-1; y >= 0; y--) {
288 if (freadcolrs(scanln, xmax, stdin) < 0) {
289 fprintf(stderr, "%s: error reading input picture\n",
290 progname);
291 exit(1);
292 }
293 for (x = 0; x < xmax; x++)
294 if (chartndx(x, y, &i) == RG_CENT) {
295 colr_color(pval, scanln[x]);
296 addcolor(inpRGB[i], pval);
297 ccount[i]++;
298 }
299 }
300 for (i = 0; i < 24; i++) { /* compute averages */
301 if (ccount[i] == 0)
302 continue;
303 d = 1./ccount[i];
304 scalecolor(inpRGB[i], d);
305 inpflags |= 1L<<i;
306 }
307 free((char *)scanln);
308 }
309
310
311 getcolors() /* get xyY colors from standard input */
312 {
313 int gotwhite = 0;
314 COLOR whiteclr;
315 int n;
316 float xyYin[3];
317
318 while (fgetval(stdin, 'i', &n) == 1) { /* read colors */
319 if (n < 0 | n > 24 ||
320 fgetval(stdin, 'f', &xyYin[0]) != 1 ||
321 fgetval(stdin, 'f', &xyYin[1]) != 1 ||
322 fgetval(stdin, 'f', &xyYin[2]) != 1 ||
323 xyYin[0] < 0. | xyYin[0] > 1. |
324 xyYin[1] < 0. | xyYin[1] > 1.) {
325 fprintf(stderr, "%s: bad color input data\n",
326 progname);
327 exit(1);
328 }
329 if (n == 0) { /* calibration white */
330 xyY2RGB(whiteclr, xyYin);
331 gotwhite++;
332 } else { /* standard color */
333 n--;
334 xyY2RGB(inpRGB[n], xyYin);
335 inpflags |= 1L<<n;
336 }
337 }
338 /* normalize colors */
339 if (!gotwhite) {
340 if (!(inpflags & 1L<<White)) {
341 fprintf(stderr, "%s: missing input for White\n",
342 progname);
343 exit(1);
344 }
345 setcolor(whiteclr,
346 colval(inpRGB[White],RED)/colval(mbRGB[White],RED),
347 colval(inpRGB[White],GRN)/colval(mbRGB[White],GRN),
348 colval(inpRGB[White],BLU)/colval(mbRGB[White],BLU));
349 }
350 for (n = 0; n < 24; n++)
351 if (inpflags & 1L<<n)
352 setcolor(inpRGB[n],
353 colval(inpRGB[n],RED)/colval(whiteclr,RED),
354 colval(inpRGB[n],GRN)/colval(whiteclr,GRN),
355 colval(inpRGB[n],BLU)/colval(whiteclr,BLU));
356 }
357
358
359 bresp(y, x) /* piecewise linear interpolation of primaries */
360 COLOR y, x;
361 {
362 register int i, n;
363
364 for (i = 0; i < 3; i++) {
365 for (n = 0; n < NMBNEU-2; n++)
366 if (colval(x,i) < colval(bramp[n+1][0],i))
367 break;
368 colval(y,i) = ((colval(bramp[n+1][0],i) - colval(x,i)) *
369 colval(bramp[n][1],i) +
370 (colval(x,i) - colval(bramp[n][0],i)) *
371 colval(bramp[n+1][1],i)) /
372 (colval(bramp[n+1][0],i) - colval(bramp[n][0],i));
373 }
374 }
375
376
377 compute() /* compute color mapping */
378 {
379 COLOR clrin[24], clrout[24];
380 long cflags;
381 COLOR ctmp;
382 register int i, j, n;
383 /* did we get what we need? */
384 if ((inpflags & REQFLGS) != REQFLGS) {
385 fprintf(stderr, "%s: missing required input colors\n",
386 progname);
387 exit(1);
388 }
389 /* compute piecewise luminance curve */
390 for (i = 0; i < NMBNEU; i++) {
391 copycolor(bramp[i][0], inpRGB[mbneu[i]]);
392 copycolor(bramp[i][1], mbRGB[mbneu[i]]);
393 }
394 /* compute color mapping */
395 do {
396 cflags = inpflags & ~gmtflags;
397 n = 0; /* compute transform matrix */
398 for (i = 0; i < 24; i++)
399 if (cflags & 1L<<i) {
400 bresp(clrin[n], inpRGB[i]);
401 copycolor(clrout[n], mbRGB[i]);
402 n++;
403 }
404 compsoln(clrin, clrout, n);
405 /* check out-of-gamut colors */
406 for (i = 0; i < 24; i++)
407 if (cflags & 1L<<i) {
408 cresp(ctmp, mbRGB[i]);
409 for (j = 0; j < 3; j++)
410 if (colval(ctmp,j) <= 0. ||
411 colval(ctmp,j) >= 1.) {
412 gmtflags |= 1L<<i;
413 break;
414 }
415 }
416 } while (cflags & gmtflags);
417 if (gmtflags & MODFLGS)
418 fprintf(stderr,
419 "%s: warning - some moderate colors are out of gamut\n",
420 progname);
421 }
422
423
424 putmapping() /* put out color mapping for pcomb -f */
425 {
426 static char cchar[3] = {'r', 'g', 'b'};
427 register int i, j;
428 /* print brightness mapping */
429 for (j = 0; j < 3; j++) {
430 printf("%cxa(i) : select(i", cchar[j]);
431 for (i = 0; i < NMBNEU; i++)
432 printf(",%g", colval(bramp[i][0],j));
433 printf(");\n");
434 printf("%cya(i) : select(i", cchar[j]);
435 for (i = 0; i < NMBNEU; i++)
436 printf(",%g", colval(bramp[i][1],j));
437 printf(");\n");
438 printf("%c = %ci(1);\n", cchar[j], cchar[j]);
439 printf("%cfi(n) = if(n-%g, %d, if(%cxa(n+1)-%c, n, %cfi(n+1)));\n",
440 cchar[j], NMBNEU-1.5, NMBNEU-1, cchar[j],
441 cchar[j], cchar[j]);
442 printf("%cndx = %cfi(1);\n", cchar[j], cchar[j]);
443 printf("%cn = ((%cxa(%cndx+1)-%c)*%cya(%cndx) + ",
444 cchar[j], cchar[j], cchar[j],
445 cchar[j], cchar[j], cchar[j]);
446 printf("(%c-%cxa(%cndx))*%cya(%cndx+1)) /\n",
447 cchar[j], cchar[j], cchar[j],
448 cchar[j], cchar[j]);
449 printf("\t\t(%cxa(%cndx+1) - %cxa(%cndx)) ;\n",
450 cchar[j], cchar[j], cchar[j], cchar[j]);
451 }
452 /* print color mapping */
453 printf("ro = %g*rn + %g*gn + %g*bn ;\n",
454 solmat[0][0], solmat[0][1], solmat[0][2]);
455 printf("go = %g*rn + %g*gn + %g*bn ;\n",
456 solmat[1][0], solmat[1][1], solmat[1][2]);
457 printf("bo = %g*rn + %g*gn + %g*bn ;\n",
458 solmat[2][0], solmat[2][1], solmat[2][2]);
459 }
460
461
462 compsoln(cin, cout, n) /* solve 3xN system using least-squares */
463 COLOR cin[], cout[];
464 int n;
465 {
466 extern double mx3d_adjoint(), fabs();
467 double mat[3][3], invmat[3][3];
468 double det;
469 double colv[3], rowv[3];
470 register int i, j, k;
471
472 if (n < 3) {
473 fprintf(stderr, "%s: too few colors to match!\n", progname);
474 exit(1);
475 }
476 if (n == 3)
477 for (i = 0; i < 3; i++)
478 for (j = 0; j < 3; j++)
479 mat[i][j] = colval(cin[j],i);
480 else { /* compute A^t A */
481 for (i = 0; i < 3; i++)
482 for (j = i; j < 3; j++) {
483 mat[i][j] = 0.;
484 for (k = 0; k < n; k++)
485 mat[i][j] += colval(cin[k],i) *
486 colval(cin[k],j);
487 }
488 for (i = 1; i < 3; i++) /* using symmetry */
489 for (j = 0; j < i; j++)
490 mat[i][j] = mat[j][i];
491 }
492 det = mx3d_adjoint(mat, invmat);
493 if (fabs(det) < 1e-4) {
494 fprintf(stderr, "%s: cannot compute color mapping\n",
495 progname);
496 solmat[0][0] = solmat[1][1] = solmat[2][2] = 1.;
497 solmat[0][1] = solmat[0][2] = solmat[1][0] =
498 solmat[1][2] = solmat[2][0] = solmat[2][1] = 0.;
499 return;
500 }
501 for (i = 0; i < 3; i++)
502 for (j = 0; j < 3; j++)
503 invmat[i][j] /= det;
504 for (i = 0; i < 3; i++) {
505 if (n == 3)
506 for (j = 0; j < 3; j++)
507 colv[j] = colval(cout[j],i);
508 else
509 for (j = 0; j < 3; j++) {
510 colv[j] = 0.;
511 for (k = 0; k < n; k++)
512 colv[j] += colval(cout[k],i) *
513 colval(cin[k],j);
514 }
515 mx3d_transform(colv, invmat, rowv);
516 for (j = 0; j < 3; j++)
517 solmat[i][j] = rowv[j];
518 }
519 }
520
521
522 cvtcolor(cout, cin) /* convert color according to our mapping */
523 COLOR cout, cin;
524 {
525 COLOR ctmp;
526
527 bresp(ctmp, cin);
528 cresp(cout, ctmp);
529 if (colval(cout,RED) < 0.)
530 colval(cout,RED) = 0.;
531 if (colval(cout,GRN) < 0.)
532 colval(cout,GRN) = 0.;
533 if (colval(cout,BLU) < 0.)
534 colval(cout,BLU) = 0.;
535 }
536
537
538 cresp(cout, cin) /* transform color according to matrix */
539 COLOR cout, cin;
540 {
541 double r, g, b;
542
543 r = colval(cin,0)*solmat[0][0] + colval(cin,1)*solmat[0][1]
544 + colval(cin,2)*solmat[0][2];
545 g = colval(cin,0)*solmat[1][0] + colval(cin,1)*solmat[1][1]
546 + colval(cin,2)*solmat[1][2];
547 b = colval(cin,0)*solmat[2][0] + colval(cin,1)*solmat[2][1]
548 + colval(cin,2)*solmat[2][2];
549 setcolor(cout, r, g, b);
550 }
551
552
553 xyY2RGB(rgbout, xyYin) /* convert xyY to RGB */
554 COLOR rgbout;
555 register float xyYin[3];
556 {
557 COLOR ctmp;
558 double d;
559
560 d = xyYin[2] / xyYin[1];
561 ctmp[0] = xyYin[0] * d;
562 ctmp[1] = xyYin[2];
563 ctmp[2] = (1. - xyYin[0] - xyYin[1]) * d;
564 cie_rgb(rgbout, ctmp);
565 }
566
567
568 picdebug() /* put out debugging picture */
569 {
570 static COLOR blkcol = BLKCOLOR;
571 COLOR *scan;
572 int y, i;
573 register int x, rg;
574
575 if (fseek(stdin, 0L, 0) == EOF) {
576 fprintf(stderr, "%s: cannot seek on input picture\n", progname);
577 exit(1);
578 }
579 getheader(stdin, NULL, NULL); /* skip input header */
580 fgetresolu(&xmax, &ymax, stdin);
581 /* allocate scanline */
582 scan = (COLOR *)malloc(xmax*sizeof(COLOR));
583 if (scan == NULL) {
584 perror(progname);
585 exit(1);
586 }
587 /* finish debug header */
588 fputformat(COLRFMT, debugfp);
589 putc('\n', debugfp);
590 fprtresolu(xmax, ymax, debugfp);
591 /* write debug picture */
592 for (y = ymax-1; y >= 0; y--) {
593 if (freadscan(scan, xmax, stdin) < 0) {
594 fprintf(stderr, "%s: error rereading input picture\n",
595 progname);
596 exit(1);
597 }
598 for (x = 0; x < xmax; x++) {
599 rg = chartndx(x, y, &i);
600 if (rg == RG_CENT) {
601 if (!(1L<<i & gmtflags) || (x+y)&07)
602 copycolor(scan[x], mbRGB[i]);
603 else
604 copycolor(scan[x], blkcol);
605 } else if (rg == RG_CORR)
606 cvtcolor(scan[x], scan[x]);
607 else if (rg != RG_ORIG)
608 copycolor(scan[x], blkcol);
609 }
610 if (fwritescan(scan, xmax, debugfp) < 0) {
611 fprintf(stderr, "%s: error writing debugging picture\n",
612 progname);
613 exit(1);
614 }
615 }
616 /* clean up */
617 fclose(debugfp);
618 free((char *)scan);
619 }
620
621
622 clrdebug() /* put out debug picture from color input */
623 {
624 static COLR blkclr = BLKCOLR;
625 COLR mbclr[24], cvclr[24], orclr[24];
626 COLR *scan;
627 COLOR ctmp;
628 int y, i;
629 register int x, rg;
630 /* convert colors */
631 for (i = 0; i < 24; i++) {
632 setcolr(mbclr[i], colval(mbRGB[i],RED),
633 colval(mbRGB[i],GRN), colval(mbRGB[i],BLU));
634 if (inpflags & 1L<<i) {
635 setcolr(orclr[i], colval(inpRGB[i],RED),
636 colval(inpRGB[i],GRN),
637 colval(inpRGB[i],BLU));
638 cvtcolor(ctmp, inpRGB[i]);
639 setcolr(cvclr[i], colval(ctmp,RED),
640 colval(ctmp,GRN), colval(ctmp,BLU));
641 }
642 }
643 /* allocate scanline */
644 scan = (COLR *)malloc(xmax*sizeof(COLR));
645 if (scan == NULL) {
646 perror(progname);
647 exit(1);
648 }
649 /* finish debug header */
650 fputformat(COLRFMT, debugfp);
651 putc('\n', debugfp);
652 fprtresolu(xmax, ymax, debugfp);
653 /* write debug picture */
654 for (y = ymax-1; y >= 0; y--) {
655 for (x = 0; x < xmax; x++) {
656 rg = chartndx(x, y, &i);
657 if (rg == RG_CENT) {
658 if (!(1L<<i & gmtflags) || (x+y)&07)
659 copycolr(scan[x], mbclr[i]);
660 else
661 copycolr(scan[x], blkclr);
662 } else if (rg == RG_BORD || !(1L<<i & inpflags))
663 copycolr(scan[x], blkclr);
664 else if (rg == RG_ORIG)
665 copycolr(scan[x], orclr[i]);
666 else /* rg == RG_CORR */
667 copycolr(scan[x], cvclr[i]);
668 }
669 if (fwritecolrs(scan, xmax, debugfp) < 0) {
670 fprintf(stderr, "%s: error writing debugging picture\n",
671 progname);
672 exit(1);
673 }
674 }
675 /* clean up */
676 fclose(debugfp);
677 free((char *)scan);
678 }