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root/radiance/ray/src/common/tmapcolrs.c
Revision: 3.3
Committed: Fri Apr 18 13:59:46 1997 UTC (27 years ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 3.2: +71 -12 lines
Log Message:
added notion of conversion packages with private data

File Contents

# Content
1 /* Copyright (c) 1997 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * Routines for tone mapping on Radiance RGBE and XYZE pictures.
9 * See tonemap.h for detailed function descriptions.
10 */
11
12 #include <stdio.h>
13 #include <math.h>
14 #include "tmprivat.h"
15 #include "resolu.h"
16
17
18 extern char *tempbuffer();
19
20 #define GAMTSZ 1024
21
22 typedef struct {
23 BYTE gamb[GAMTSZ]; /* gamma lookup table */
24 COLR clfb; /* encoded tm->clf */
25 TMbright inpsfb; /* encoded tm->inpsf */
26 } COLRDATA;
27
28 static MEM_PTR colrInit();
29 static void colrNewSpace();
30 extern void free();
31 static struct tmPackage colrPkg = { /* our package functions */
32 colrInit, colrNewSpace, free
33 };
34 static int colrReg = -1; /* our package registration number */
35
36 #define LOGISZ 260
37 static TMbright logi[LOGISZ];
38 static BYTE photofact[BMESUPPER-BMESLOWER];
39
40
41 int
42 tmCvColrs(ls, cs, scan, len) /* tone map RGBE/XYZE colors */
43 TMbright *ls;
44 BYTE *cs;
45 COLR *scan;
46 int len;
47 {
48 static char funcName[] = "tmCvColrs";
49 COLR cmon;
50 register COLRDATA *cd;
51 register int i, bi, li;
52
53 if (tmTop == NULL)
54 returnErr(TM_E_TMINVAL);
55 if (ls == NULL | scan == NULL | len <= 0)
56 returnErr(TM_E_ILLEGAL);
57 if (tmNeedMatrix(tmTop)) { /* need floating point */
58 register COLOR *newscan;
59 newscan = (COLOR *)tempbuffer(len*sizeof(COLOR));
60 if (newscan == NULL)
61 returnErr(TM_E_NOMEM);
62 for (i = len; i--; )
63 colr_color(newscan[i], scan[i]);
64 return(tmCvColors(ls, cs, newscan, len));
65 }
66 if (colrReg == -1) { /* build tables if necessary */
67 colrReg = tmRegPkg(&colrPkg);
68 if (colrReg < 0)
69 returnErr(TM_E_CODERR1);
70 for (i = 256; i--; )
71 logi[i] = TM_BRTSCALE*log((i+.5)/256.) - .5;
72 for (i = 256; i < LOGISZ; i++)
73 logi[i] = logi[255];
74 for (i = BMESLOWER; i < BMESUPPER; i++)
75 photofact[i-BMESLOWER] = 256. *
76 (tmLuminance(i) - LMESLOWER) /
77 (LMESUPPER - LMESLOWER);
78 }
79 if ((cd = (COLRDATA *)tmPkgData(tmTop,colrReg)) == NULL)
80 returnErr(TM_E_NOMEM);
81 for (i = len; i--; ) {
82 copycolr(cmon, scan[i]);
83 /* world luminance */
84 li = ( cd->clfb[RED]*cmon[RED] +
85 cd->clfb[GRN]*cmon[GRN] +
86 cd->clfb[BLU]*cmon[BLU] ) >> 8;
87 bi = BRT2SCALE*(cmon[EXP]-COLXS) +
88 logi[li] + cd->inpsfb;
89 if (bi < MINBRT) {
90 bi = MINBRT-1; /* bogus value */
91 li++; /* avoid li==0 */
92 }
93 ls[i] = bi;
94 if (cs == TM_NOCHROM) /* no color? */
95 continue;
96 /* mesopic adj. */
97 if (tmTop->flags & TM_F_MESOPIC && bi < BMESUPPER) {
98 register int pf, sli = normscot(cmon);
99 if (bi < BMESLOWER)
100 cmon[RED] = cmon[GRN] = cmon[BLU] = sli;
101 else {
102 if (tmTop->flags & TM_F_BW)
103 cmon[RED] = cmon[GRN] = cmon[BLU] = li;
104 pf = photofact[bi-BMESLOWER];
105 sli *= 256 - pf;
106 cmon[RED] = ( sli + pf*cmon[RED] ) >> 8;
107 cmon[GRN] = ( sli + pf*cmon[GRN] ) >> 8;
108 cmon[BLU] = ( sli + pf*cmon[BLU] ) >> 8;
109 }
110 } else if (tmTop->flags & TM_F_BW) {
111 cmon[RED] = cmon[GRN] = cmon[BLU] = li;
112 }
113 bi = ( (int4)GAMTSZ*cd->clfb[RED]*cmon[RED]/li ) >> 8;
114 cs[3*i ] = bi>=GAMTSZ ? 255 : cd->gamb[bi];
115 bi = ( (int4)GAMTSZ*cd->clfb[GRN]*cmon[GRN]/li ) >> 8;
116 cs[3*i+1] = bi>=GAMTSZ ? 255 : cd->gamb[bi];
117 bi = ( (int4)GAMTSZ*cd->clfb[BLU]*cmon[BLU]/li ) >> 8;
118 cs[3*i+2] = bi>=GAMTSZ ? 255 : cd->gamb[bi];
119 }
120 returnOK;
121 }
122
123
124 #define FMTRGB 1 /* Input is RGBE */
125 #define FMTCIE 2 /* Input is CIE XYZE */
126 #define FMTUNK 3 /* Input format is unspecified */
127 #define FMTBAD 4 /* Input is not a recognized format */
128
129 static struct radhead {
130 int format; /* FMTRGB, FMTCIE, FMTUNK, FMTBAD */
131 double expos; /* input exposure value */
132 RGBPRIMP primp; /* input primaries */
133 RGBPRIMS mypri; /* custom primaries */
134 } rhdefault = {FMTUNK, 1., stdprims, STDPRIMS};
135
136
137 static int
138 headline(s, rh) /* grok a header line */
139 register char *s;
140 register struct radhead *rh;
141 {
142 char fmt[32];
143
144 if (formatval(fmt, s)) {
145 if (!strcmp(fmt, COLRFMT))
146 rh->format = FMTRGB;
147 else if (!strcmp(fmt, CIEFMT))
148 rh->format = FMTCIE;
149 else
150 rh->format = FMTBAD;
151 return;
152 }
153 if (isexpos(s)) {
154 rh->expos *= exposval(s);
155 return;
156 }
157 if (isprims(s)) {
158 primsval(rh->mypri, s);
159 rh->primp = rh->mypri;
160 return;
161 }
162 }
163
164
165 int
166 tmLoadPicture(lpp, cpp, xp, yp, fname, fp) /* convert Radiance picture */
167 TMbright **lpp;
168 BYTE **cpp;
169 int *xp, *yp;
170 char *fname;
171 FILE *fp;
172 {
173 char *funcName = fname==NULL ? "tmLoadPicture" : fname;
174 FILE *inpf;
175 struct radhead info;
176 int err;
177 COLR *scanin = NULL;
178 int i;
179 /* check arguments */
180 if (tmTop == NULL)
181 returnErr(TM_E_TMINVAL);
182 if (lpp == NULL | xp == NULL | yp == NULL |
183 (fname == NULL & fp == TM_GETFILE))
184 returnErr(TM_E_ILLEGAL);
185 *xp = *yp = 0; /* error precaution */
186 if ((inpf = fp) == TM_GETFILE && (inpf = fopen(fname, "r")) == NULL)
187 returnErr(TM_E_BADFILE);
188 info = rhdefault; /* get our header */
189 getheader(inpf, headline, (char *)&info);
190 if (info.format == FMTBAD | info.expos <= 0. ||
191 fgetresolu(xp, yp, inpf) < 0) {
192 err = TM_E_BADFILE; goto done;
193 }
194 if (info.format == FMTUNK) /* assume RGBE format */
195 info.format = FMTRGB;
196 if (info.format == FMTRGB)
197 info.expos /= WHTEFFICACY;
198 else if (info.format == FMTCIE)
199 info.primp = TM_XYZPRIM;
200 /* prepare library */
201 if ((err = tmSetSpace(info.primp, 1./info.expos)) != TM_E_OK)
202 goto done;
203 err = TM_E_NOMEM; /* allocate arrays */
204 *lpp = (TMbright *)malloc(sizeof(TMbright) * *xp * *yp);
205 if (*lpp == NULL)
206 goto done;
207 if (cpp != TM_NOCHROMP) {
208 *cpp = (BYTE *)malloc(3*sizeof(BYTE) * *xp * *yp);
209 if (*cpp == NULL)
210 goto done;
211 }
212 scanin = (COLR *)malloc(sizeof(COLR) * *xp);
213 if (scanin == NULL)
214 goto done;
215 err = TM_E_BADFILE; /* read & convert scanlines */
216 for (i = 0; i < *yp; i++) {
217 if (freadcolrs(scanin, *xp, inpf) < 0) {
218 err = TM_E_BADFILE; break;
219 }
220 err = tmCvColrs(*lpp + (i * *xp),
221 cpp==TM_NOCHROMP ? TM_NOCHROM : *cpp + (i * 3 * *xp),
222 scanin, *xp);
223 if (err != TM_E_OK)
224 break;
225 }
226 done: /* clean up */
227 if (fp == NULL)
228 fclose(inpf);
229 if (scanin != NULL)
230 free((char *)scanin);
231 if (err != TM_E_OK)
232 returnErr(err);
233 returnOK;
234 }
235
236
237 int /* run pcond to map picture */
238 dopcond(psp, xp, yp, flags, monpri, gamval, Lddyn, Ldmax, fname)
239 BYTE **psp;
240 int *xp, *yp;
241 int flags;
242 RGBPRIMP monpri;
243 double gamval, Lddyn, Ldmax;
244 char *fname;
245 {
246 char *funcName = fname;
247 char cmdbuf[512];
248 FILE *infp;
249 register COLR *scan;
250 register BYTE *rp;
251 int y;
252 register int x;
253 /* set up gamma correction */
254 if (setcolrcor(pow, 1./gamval) < 0)
255 returnErr(TM_E_NOMEM);
256 /* create command */
257 strcpy(cmdbuf, "pcond ");
258 if (flags & TM_F_HCONTR)
259 strcat(cmdbuf, "-s ");
260 if (flags & TM_F_MESOPIC)
261 strcat(cmdbuf, "-c ");
262 if (flags & TM_F_LINEAR)
263 strcat(cmdbuf, "-l ");
264 if (flags & TM_F_ACUITY)
265 strcat(cmdbuf, "-a ");
266 if (flags & TM_F_VEIL)
267 strcat(cmdbuf, "-v ");
268 if (flags & TM_F_CWEIGHT)
269 strcat(cmdbuf, "-w ");
270 sprintf(cmdbuf+strlen(cmdbuf),
271 "-p %f %f %f %f %f %f %f %f -d %f -u %f %s",
272 monpri[RED][CIEX], monpri[RED][CIEY],
273 monpri[GRN][CIEX], monpri[GRN][CIEY],
274 monpri[BLU][CIEX], monpri[BLU][CIEY],
275 monpri[WHT][CIEX], monpri[WHT][CIEY],
276 Lddyn, Ldmax, fname);
277 /* start pcond */
278 if ((infp = popen(cmdbuf, "r")) == NULL)
279 returnErr(TM_E_BADFILE);
280 /* check picture format and size */
281 if (checkheader(infp, COLRFMT, NULL) < 0 ||
282 fgetresolu(xp, yp, infp) < 0) {
283 pclose(infp);
284 returnErr(TM_E_BADFILE);
285 }
286 /* allocate arrays */
287 scan = (COLR *)malloc(sizeof(COLR) * *xp);
288 if (flags & TM_F_BW)
289 rp = (BYTE *)malloc(sizeof(BYTE) * *xp * *yp);
290 else
291 rp = (BYTE *)malloc(3*sizeof(BYTE) * *xp * *yp);
292 if ((*psp = rp) == NULL | scan == NULL) {
293 pclose(infp);
294 returnErr(TM_E_NOMEM);
295 }
296 /* read and gamma map file */
297 for (y = 0; y < *yp; y++) {
298 if (freadcolrs(scan, *xp, infp) < 0) {
299 pclose(infp);
300 free((char *)scan);
301 free((char *)*psp);
302 *psp = NULL;
303 returnErr(TM_E_BADFILE);
304 }
305 colrs_gambs(scan, *xp);
306 if (flags & TM_F_BW)
307 for (x = 0; x < *xp; x++)
308 *rp++ = normbright(scan[x]);
309 else
310 for (x = 0; x < *xp; x++) {
311 *rp++ = scan[x][RED];
312 *rp++ = scan[x][GRN];
313 *rp++ = scan[x][BLU];
314 }
315 }
316 free((char *)scan);
317 pclose(infp);
318 returnOK;
319 }
320
321
322 int /* map a Radiance picture */
323 tmMapPicture(psp, xp, yp, flags, monpri, gamval, Lddyn, Ldmax, fname, fp)
324 BYTE **psp;
325 int *xp, *yp;
326 int flags;
327 RGBPRIMP monpri;
328 double gamval, Lddyn, Ldmax;
329 char *fname;
330 FILE *fp;
331 {
332 char *funcName = fname==NULL ? "tmMapPicture" : fname;
333 FILE *inpf;
334 BYTE *cp;
335 TMbright *lp;
336 int err;
337 /* check arguments */
338 if (psp == NULL | xp == NULL | yp == NULL | monpri == NULL |
339 (fname == NULL & fp == TM_GETFILE))
340 returnErr(TM_E_ILLEGAL);
341 /* set defaults */
342 if (gamval < MINGAM) gamval = DEFGAM;
343 if (Lddyn < MINLDDYN) Lddyn = DEFLDDYN;
344 if (Ldmax < MINLDMAX) Ldmax = DEFLDMAX;
345 if (flags & TM_F_BW) monpri = stdprims;
346 /* check for pcond run */
347 if (fp == TM_GETFILE && flags & TM_F_UNIMPL)
348 return( dopcond(psp, xp, yp, flags,
349 monpri, gamval, Lddyn, Ldmax, fname) );
350 /* initialize tone mapping */
351 if (tmInit(flags, monpri, gamval) == NULL)
352 returnErr(TM_E_NOMEM);
353 /* load & convert picture */
354 err = tmLoadPicture(&lp, (flags&TM_F_BW) ? TM_NOCHROMP : &cp,
355 xp, yp, fname, fp);
356 if (err != TM_E_OK) {
357 tmDone(NULL);
358 return(err);
359 }
360 /* allocate space for result */
361 if (flags & TM_F_BW) {
362 *psp = (BYTE *)malloc(sizeof(BYTE) * *xp * *yp);
363 if (*psp == NULL) {
364 free((char *)lp);
365 tmDone(NULL);
366 returnErr(TM_E_NOMEM);
367 }
368 cp = TM_NOCHROM;
369 } else
370 *psp = cp;
371 /* compute color mapping */
372 err = tmAddHisto(lp, *xp * *yp, 1);
373 if (err != TM_E_OK)
374 goto done;
375 err = tmComputeMapping(gamval, Lddyn, Ldmax);
376 if (err != TM_E_OK)
377 goto done;
378 /* map colors */
379 err = tmMapPixels(*psp, lp, cp, *xp * *yp);
380
381 done: /* clean up */
382 free((char *)lp);
383 tmDone(NULL);
384 if (err != TM_E_OK) { /* free memory on error */
385 free((char *)*psp);
386 *psp = NULL;
387 returnErr(err);
388 }
389 returnOK;
390 }
391
392
393 static void
394 colrNewSpace(tms) /* color space changed for tone mapping */
395 register struct tmStruct *tms;
396 {
397 register COLRDATA *cd;
398 double d;
399
400 cd = (COLRDATA *)tms->pd[colrReg];
401 cd->clfb[RED] = 256.*tms->clf[RED] + .5;
402 cd->clfb[GRN] = 256.*tms->clf[GRN] + .5;
403 cd->clfb[BLU] = 256.*tms->clf[BLU] + .5;
404 cd->clfb[EXP] = COLXS;
405 d = TM_BRTSCALE*log(tms->inpsf);
406 cd->inpsfb = d<0. ? d-.5 : d+.5;
407 }
408
409
410 static MEM_PTR
411 colrInit(tms) /* initialize private data for tone mapping */
412 register struct tmStruct *tms;
413 {
414 register COLRDATA *cd;
415 register int i;
416 /* allocate our data */
417 cd = (COLRDATA *)malloc(sizeof(COLRDATA));
418 if (cd == NULL)
419 return(NULL);
420 tms->pd[colrReg] = (MEM_PTR)cd;
421 /* compute gamma table */
422 for (i = GAMTSZ; i--; )
423 cd->gamb[i] = 256.*pow((i+.5)/GAMTSZ, 1./tms->mongam);
424 /* compute color and scale factors */
425 colrNewSpace(tms);
426 return((MEM_PTR)cd);
427 }