ViewVC Help
View File | Revision Log | Show Annotations | Download File | Root Listing
root/radiance/ray/src/common/tonemap.c
Revision: 3.33
Committed: Mon Feb 9 20:23:51 2009 UTC (15 years, 3 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 3.32: +22 -24 lines
Log Message:
Made tmNewMap() available to private callers

File Contents

# User Rev Content
1 greg 3.1 #ifndef lint
2 greg 3.33 static const char RCSid[] = "$Id: tonemap.c,v 3.32 2008/07/03 03:35:10 greg Exp $";
3 greg 3.1 #endif
4     /*
5     * Tone mapping functions.
6     * See tonemap.h for detailed function descriptions.
7 greg 3.9 * Added von Kries white-balance calculations 10/01 (GW).
8     *
9     * Externals declared in tonemap.h
10     */
11    
12 greg 3.10 #include "copyright.h"
13 greg 3.1
14     #include <stdio.h>
15     #include <math.h>
16     #include "tmprivat.h"
17     #include "tmerrmsg.h"
18    
19     #define exp10(x) exp(M_LN10*(x))
20    
21 greg 3.4 /* our list of conversion packages */
22     struct tmPackage *tmPkg[TM_MAXPKG];
23     int tmNumPkgs = 0; /* number of registered packages */
24 greg 3.1
25 greg 3.23 /* luminance->brightness lookup */
26 greg 3.24 static TMbright *tmFloat2BrtLUT = NULL;
27 greg 3.23
28     #define tmCvLumLUfp(pf) tmFloat2BrtLUT[*(int32 *)(pf) >> 15]
29    
30 gregl 3.5
31 greg 3.16 TMstruct *
32     tmInit( /* initialize new tone mapping */
33     int flags,
34     RGBPRIMP monpri,
35     double gamval
36     )
37 greg 3.1 {
38     COLORMAT cmat;
39 greg 3.16 TMstruct *tmnew;
40     int i;
41 greg 3.1 /* allocate structure */
42 greg 3.16 tmnew = (TMstruct *)malloc(sizeof(TMstruct));
43 greg 3.1 if (tmnew == NULL)
44     return(NULL);
45    
46     tmnew->flags = flags & ~TM_F_UNIMPL;
47 greg 3.15 if (tmnew->flags & TM_F_BW)
48     tmnew->flags &= ~TM_F_MESOPIC;
49 greg 3.1 /* set monitor transform */
50     if (monpri == NULL || monpri == stdprims || tmnew->flags & TM_F_BW) {
51     tmnew->monpri = stdprims;
52     tmnew->clf[RED] = rgb2xyzmat[1][0];
53     tmnew->clf[GRN] = rgb2xyzmat[1][1];
54     tmnew->clf[BLU] = rgb2xyzmat[1][2];
55     } else {
56 greg 3.26 comprgb2xyzmat(cmat, tmnew->monpri=monpri);
57 greg 3.1 tmnew->clf[RED] = cmat[1][0];
58     tmnew->clf[GRN] = cmat[1][1];
59     tmnew->clf[BLU] = cmat[1][2];
60     }
61     /* set gamma value */
62     if (gamval < MINGAM)
63     tmnew->mongam = DEFGAM;
64     else
65     tmnew->mongam = gamval;
66 greg 3.4 /* set color divisors */
67     for (i = 0; i < 3; i++)
68     tmnew->cdiv[i] = 256.*pow(tmnew->clf[i], 1./tmnew->mongam);
69    
70 greg 3.1 /* set input transform */
71     tmnew->inppri = tmnew->monpri;
72     tmnew->cmat[0][0] = tmnew->cmat[1][1] = tmnew->cmat[2][2] =
73     tmnew->inpsf = WHTEFFICACY;
74     tmnew->cmat[0][1] = tmnew->cmat[0][2] = tmnew->cmat[1][0] =
75     tmnew->cmat[1][2] = tmnew->cmat[2][0] = tmnew->cmat[2][1] = 0.;
76 greg 3.18 tmnew->inpdat = NULL;
77 greg 3.9 tmnew->hbrmin = 10; tmnew->hbrmax = -10;
78 greg 3.1 tmnew->histo = NULL;
79 greg 3.9 tmnew->mbrmin = 10; tmnew->mbrmax = -10;
80 greg 3.1 tmnew->lumap = NULL;
81 greg 3.4 /* zero private data */
82     for (i = TM_MAXPKG; i--; )
83     tmnew->pd[i] = NULL;
84 greg 3.17 tmnew->lastError = TM_E_OK;
85     tmnew->lastFunc = "NoErr";
86 greg 3.16 /* return new TMstruct */
87     return(tmnew);
88 greg 3.1 }
89    
90    
91     int
92 greg 3.16 tmSetSpace( /* set input color space for conversions */
93     TMstruct *tms,
94     RGBPRIMP pri,
95 greg 3.18 double sf,
96     MEM_PTR dat
97 greg 3.16 )
98 greg 3.1 {
99 greg 3.17 static const char funcName[] = "tmSetSpace";
100 greg 3.16 int i, j;
101 greg 3.1 /* error check */
102 greg 3.16 if (tms == NULL)
103 greg 3.1 returnErr(TM_E_TMINVAL);
104     if (sf <= 1e-12)
105     returnErr(TM_E_ILLEGAL);
106     /* check if no change */
107 greg 3.18 if (pri == tms->inppri && FEQ(sf, tms->inpsf) && dat == tms->inpdat)
108 greg 3.1 returnOK;
109 greg 3.16 tms->inppri = pri; /* let's set it */
110     tms->inpsf = sf;
111 greg 3.18 tms->inpdat = dat;
112 greg 3.1
113 greg 3.16 if (tms->flags & TM_F_BW) { /* color doesn't matter */
114     tms->monpri = tms->inppri; /* eliminate xform */
115     if (tms->inppri == TM_XYZPRIM) {
116     tms->clf[CIEX] = tms->clf[CIEZ] = 0.;
117     tms->clf[CIEY] = 1.;
118 greg 3.1 } else {
119 greg 3.26 comprgb2xyzmat(tms->cmat, tms->monpri);
120 greg 3.16 tms->clf[RED] = tms->cmat[1][0];
121     tms->clf[GRN] = tms->cmat[1][1];
122     tms->clf[BLU] = tms->cmat[1][2];
123     }
124     tms->cmat[0][0] = tms->cmat[1][1] = tms->cmat[2][2] =
125     tms->inpsf;
126     tms->cmat[0][1] = tms->cmat[0][2] = tms->cmat[1][0] =
127     tms->cmat[1][2] = tms->cmat[2][0] = tms->cmat[2][1] = 0.;
128 greg 3.1
129 greg 3.16 } else if (tms->inppri == TM_XYZPRIM) /* input is XYZ */
130     compxyz2rgbWBmat(tms->cmat, tms->monpri);
131 greg 3.1
132     else { /* input is RGB */
133 greg 3.16 if (tms->inppri != tms->monpri &&
134     PRIMEQ(tms->inppri, tms->monpri))
135     tms->inppri = tms->monpri; /* no xform */
136     comprgb2rgbWBmat(tms->cmat, tms->inppri, tms->monpri);
137 greg 3.1 }
138     for (i = 0; i < 3; i++)
139     for (j = 0; j < 3; j++)
140 greg 3.16 tms->cmat[i][j] *= tms->inpsf;
141 greg 3.4 /* set color divisors */
142     for (i = 0; i < 3; i++)
143 greg 3.16 if (tms->clf[i] > .001)
144     tms->cdiv[i] =
145     256.*pow(tms->clf[i], 1./tms->mongam);
146 greg 3.4 else
147 greg 3.16 tms->cdiv[i] = 1;
148 greg 3.4 /* notify packages */
149     for (i = tmNumPkgs; i--; )
150 greg 3.16 if (tms->pd[i] != NULL && tmPkg[i]->NewSpace != NULL)
151     (*tmPkg[i]->NewSpace)(tms);
152 greg 3.1 returnOK;
153     }
154    
155    
156     void
157 greg 3.23 tmClearHisto( /* clear current histogram */
158 greg 3.16 TMstruct *tms
159     )
160 greg 3.1 {
161 greg 3.16 if (tms == NULL || tms->histo == NULL)
162 greg 3.1 return;
163 greg 3.16 free((MEM_PTR)tms->histo);
164     tms->histo = NULL;
165 greg 3.1 }
166    
167    
168 greg 3.23 TMbright
169     tmCvLuminance( /* convert a single luminance */
170     double lum
171     )
172     {
173     double d;
174    
175     #ifdef isfinite
176     if (!isfinite(lum) || lum <= TM_NOLUM)
177     #else
178     if (lum <= TM_NOLUM)
179     #endif
180     return(TM_NOBRT);
181     d = TM_BRTSCALE*log(lum);
182     if (d > 0.)
183     return((TMbright)(d+.5));
184     return((TMbright)(d-.5));
185     }
186    
187    
188     int
189     tmCvLums( /* convert luminances using lookup */
190     TMbright *ls,
191     float *scan,
192     int len
193     )
194     {
195     if (tmFloat2BrtLUT == NULL) { /* initialize lookup table */
196     int32 i;
197     tmFloat2BrtLUT = (TMbright *)malloc(sizeof(TMbright)*0x10000);
198     if (tmFloat2BrtLUT == NULL)
199     return(TM_E_NOMEM);
200     for (i = 0; i < 0x10000; i++) {
201     int32 l = (i<<1 | 1) << 14;
202     #ifndef isfinite
203     if ((l & 0x7f800000) == 0x7f800000)
204     tmFloat2BrtLUT[i] = TM_NOBRT;
205     else
206     #endif
207     tmFloat2BrtLUT[i] = tmCvLuminance(*(float *)&l);
208     }
209     }
210     if (len <= 0)
211     return(TM_E_OK);
212     if ((ls == NULL) | (scan == NULL))
213     return(TM_E_ILLEGAL);
214     while (len--) {
215     if (*scan <= TM_NOLUM) {
216     *ls++ = TM_NOBRT;
217     ++scan;
218     continue;
219     }
220     *ls++ = tmCvLumLUfp(scan++);
221     }
222     return(TM_E_OK);
223     }
224    
225    
226     int
227     tmCvGrays( /* convert float gray values */
228     TMstruct *tms,
229     TMbright *ls,
230     float *scan,
231     int len
232     )
233     {
234     static const char funcName[] = "tmCvGrays";
235     int i;
236    
237     if (tms == NULL)
238     returnErr(TM_E_TMINVAL);
239     if ((ls == NULL) | (scan == NULL) | (len < 0))
240     returnErr(TM_E_ILLEGAL);
241 greg 3.24 if (tmFloat2BrtLUT == NULL) /* initialize */
242     tmCvLums(NULL, NULL, 0);
243 greg 3.23 for (i = len; i--; ) {
244     float lum = tms->inpsf * scan[i];
245     if (lum <= TM_NOLUM)
246     ls[i] = TM_NOBRT;
247     else
248     ls[i] = tmCvLumLUfp(&lum);
249     }
250     returnOK;
251     }
252    
253    
254 greg 3.1 int
255 greg 3.16 tmCvColors( /* convert float colors */
256     TMstruct *tms,
257     TMbright *ls,
258     BYTE *cs,
259     COLOR *scan,
260     int len
261     )
262 greg 3.1 {
263 greg 3.17 static const char funcName[] = "tmCvColors";
264 greg 3.20 static BYTE gamtab[1024];
265     static double curgam = .0;
266 greg 3.1 COLOR cmon;
267 greg 3.23 float lum, slum, d;
268 greg 3.16 int i;
269 greg 3.1
270 greg 3.16 if (tms == NULL)
271 greg 3.1 returnErr(TM_E_TMINVAL);
272 schorsch 3.13 if ((ls == NULL) | (scan == NULL) | (len < 0))
273 greg 3.1 returnErr(TM_E_ILLEGAL);
274 greg 3.24 if (tmFloat2BrtLUT == NULL) /* initialize */
275     tmCvLums(NULL, NULL, 0);
276 greg 3.21 if (cs != TM_NOCHROM && fabs(tms->mongam - curgam) > .02) {
277 greg 3.20 curgam = tms->mongam; /* (re)build table */
278     for (i = 1024; i--; )
279     gamtab[i] = (int)(256.*pow((i+.5)/1024., 1./curgam));
280     }
281 greg 3.1 for (i = len; i--; ) {
282 greg 3.16 if (tmNeedMatrix(tms)) { /* get monitor RGB */
283     colortrans(cmon, tms->cmat, scan[i]);
284 greg 3.15 } else {
285 greg 3.16 cmon[RED] = tms->inpsf*scan[i][RED];
286     cmon[GRN] = tms->inpsf*scan[i][GRN];
287     cmon[BLU] = tms->inpsf*scan[i][BLU];
288 greg 3.1 }
289 greg 3.23 #ifdef isfinite
290     if (!isfinite(cmon[RED]) || cmon[RED] < .0f) cmon[RED] = .0f;
291     if (!isfinite(cmon[GRN]) || cmon[GRN] < .0f) cmon[GRN] = .0f;
292     if (!isfinite(cmon[BLU]) || cmon[BLU] < .0f) cmon[BLU] = .0f;
293     #else
294     if (cmon[RED] < .0f) cmon[RED] = .0f;
295     if (cmon[GRN] < .0f) cmon[GRN] = .0f;
296     if (cmon[BLU] < .0f) cmon[BLU] = .0f;
297 greg 3.22 #endif
298 greg 3.1 /* world luminance */
299 greg 3.16 lum = tms->clf[RED]*cmon[RED] +
300     tms->clf[GRN]*cmon[GRN] +
301     tms->clf[BLU]*cmon[BLU] ;
302 greg 3.25 if (lum <= TM_NOLUM) { /* convert brightness */
303     lum = cmon[RED] = cmon[GRN] = cmon[BLU] = TM_NOLUM;
304 greg 3.23 ls[i] = TM_NOBRT;
305 greg 3.25 } else
306 greg 3.23 ls[i] = tmCvLumLUfp(&lum);
307 greg 3.1 if (cs == TM_NOCHROM) /* no color? */
308     continue;
309 greg 3.16 if (tms->flags & TM_F_MESOPIC && lum < LMESUPPER) {
310 greg 3.1 slum = scotlum(cmon); /* mesopic adj. */
311 greg 3.25 if (lum < LMESLOWER) {
312 greg 3.1 cmon[RED] = cmon[GRN] = cmon[BLU] = slum;
313 greg 3.25 } else {
314 greg 3.1 d = (lum - LMESLOWER)/(LMESUPPER - LMESLOWER);
315 greg 3.16 if (tms->flags & TM_F_BW)
316 greg 3.1 cmon[RED] = cmon[GRN] =
317     cmon[BLU] = d*lum;
318     else
319     scalecolor(cmon, d);
320 greg 3.23 d = (1.f-d)*slum;
321 greg 3.1 cmon[RED] += d;
322     cmon[GRN] += d;
323     cmon[BLU] += d;
324     }
325 greg 3.16 } else if (tms->flags & TM_F_BW) {
326 greg 3.1 cmon[RED] = cmon[GRN] = cmon[BLU] = lum;
327     }
328 greg 3.16 d = tms->clf[RED]*cmon[RED]/lum;
329 greg 3.23 cs[3*i ] = d>=.999f ? 255 : gamtab[(int)(1024.f*d)];
330 greg 3.16 d = tms->clf[GRN]*cmon[GRN]/lum;
331 greg 3.23 cs[3*i+1] = d>=.999f ? 255 : gamtab[(int)(1024.f*d)];
332 greg 3.16 d = tms->clf[BLU]*cmon[BLU]/lum;
333 greg 3.23 cs[3*i+2] = d>=.999f ? 255 : gamtab[(int)(1024.f*d)];
334 greg 3.1 }
335     returnOK;
336     }
337    
338    
339 greg 3.9 int
340 greg 3.16 tmAddHisto( /* add values to histogram */
341     TMstruct *tms,
342     TMbright *ls,
343     int len,
344     int wt
345     )
346 greg 3.1 {
347 greg 3.17 static const char funcName[] = "tmAddHisto";
348 greg 3.9 int oldorig=0, oldlen, horig, hlen;
349 greg 3.16 int i, j;
350 greg 3.1
351 greg 3.16 if (tms == NULL)
352 greg 3.1 returnErr(TM_E_TMINVAL);
353 gwlarson 3.8 if (len < 0)
354     returnErr(TM_E_ILLEGAL);
355     if (len == 0)
356     returnOK;
357 greg 3.1 /* first, grow limits */
358 greg 3.16 if (tms->histo == NULL) {
359 greg 3.1 for (i = len; i-- && ls[i] < MINBRT; )
360     ;
361     if (i < 0)
362     returnOK;
363 greg 3.16 tms->hbrmin = tms->hbrmax = ls[i];
364 greg 3.1 oldlen = 0;
365     } else {
366 greg 3.31 oldorig = HISTI(tms->hbrmin);
367     oldlen = HISTI(tms->hbrmax) + 1 - oldorig;
368 greg 3.1 }
369     for (i = len; i--; ) {
370     if ((j = ls[i]) < MINBRT)
371     continue;
372 greg 3.16 if (j < tms->hbrmin)
373     tms->hbrmin = j;
374     else if (j > tms->hbrmax)
375     tms->hbrmax = j;
376 greg 3.1 }
377 greg 3.31 horig = HISTI(tms->hbrmin);
378     hlen = HISTI(tms->hbrmax) + 1 - horig;
379 greg 3.1 if (hlen > oldlen) { /* (re)allocate histogram */
380 greg 3.16 int *newhist = (int *)calloc(hlen, sizeof(int));
381 greg 3.1 if (newhist == NULL)
382     returnErr(TM_E_NOMEM);
383     if (oldlen) { /* copy and free old */
384 greg 3.2 for (i = oldlen, j = i+oldorig-horig; i; )
385 greg 3.16 newhist[--j] = tms->histo[--i];
386     free((MEM_PTR)tms->histo);
387 greg 3.1 }
388 greg 3.16 tms->histo = newhist;
389 greg 3.1 }
390     if (wt == 0)
391     returnOK;
392     for (i = len; i--; ) /* add in new counts */
393     if (ls[i] >= MINBRT)
394 greg 3.31 tms->histo[ HISTI(ls[i]) - horig ] += wt;
395 greg 3.1 returnOK;
396     }
397    
398    
399     static double
400 greg 3.16 htcontrs( /* human threshold contrast sensitivity, dL(La) */
401     double La
402     )
403 greg 3.1 {
404     double l10La, l10dL;
405     /* formula taken from Ferwerda et al. [SG96] */
406     if (La < 1.148e-4)
407     return(1.38e-3);
408     l10La = log10(La);
409     if (l10La < -1.44) /* rod response regime */
410     l10dL = pow(.405*l10La + 1.6, 2.18) - 2.86;
411     else if (l10La < -.0184)
412     l10dL = l10La - .395;
413     else if (l10La < 1.9) /* cone response regime */
414     l10dL = pow(.249*l10La + .65, 2.7) - .72;
415     else
416     l10dL = l10La - 1.255;
417    
418     return(exp10(l10dL));
419     }
420    
421    
422 greg 3.9 int
423 greg 3.16 tmFixedMapping( /* compute fixed, linear tone-mapping */
424     TMstruct *tms,
425     double expmult,
426     double gamval
427     )
428 greg 3.9 {
429 greg 3.17 static const char funcName[] = "tmFixedMapping";
430 greg 3.9 double d;
431 greg 3.16 int i;
432 greg 3.9
433 greg 3.16 if (!tmNewMap(tms))
434 greg 3.9 returnErr(TM_E_NOMEM);
435     if (expmult <= .0)
436     expmult = 1.;
437     if (gamval < MINGAM)
438 greg 3.16 gamval = tms->mongam;
439     d = log(expmult/tms->inpsf);
440 greg 3.28 for (i = tms->mbrmax-tms->mbrmin+1; i--; ) {
441     double val = 256. * exp(
442 greg 3.16 ( d + (tms->mbrmin+i)*(1./TM_BRTSCALE) )
443 greg 3.28 / gamval);
444     tms->lumap[i] = val >= (double)0xffff ? 0xffff : (int)val;
445     }
446 greg 3.9 returnOK;
447     }
448    
449    
450 greg 3.1 int
451 greg 3.16 tmComputeMapping( /* compute histogram tone-mapping */
452     TMstruct *tms,
453     double gamval,
454     double Lddyn,
455     double Ldmax
456     )
457 greg 3.1 {
458 greg 3.17 static const char funcName[] = "tmComputeMapping";
459 greg 3.1 int *histo;
460     float *cumf;
461 greg 3.9 int brt0, histlen, threshold, ceiling, trimmings;
462 greg 3.1 double logLddyn, Ldmin, Ldavg, Lwavg, Tr, Lw, Ld;
463 greg 3.11 int32 histot;
464 greg 3.9 double sum;
465 greg 3.16 double d;
466     int i, j;
467 greg 3.1
468 greg 3.16 if (tms == NULL || tms->histo == NULL)
469 greg 3.1 returnErr(TM_E_TMINVAL);
470     /* check arguments */
471     if (Lddyn < MINLDDYN) Lddyn = DEFLDDYN;
472     if (Ldmax < MINLDMAX) Ldmax = DEFLDMAX;
473 greg 3.16 if (gamval < MINGAM) gamval = tms->mongam;
474 greg 3.1 /* compute handy values */
475     Ldmin = Ldmax/Lddyn;
476     logLddyn = log(Lddyn);
477     Ldavg = sqrt(Ldmax*Ldmin);
478 greg 3.31 i = HISTI(tms->hbrmin);
479 greg 3.32 brt0 = HISTV(i);
480 greg 3.31 histlen = HISTI(tms->hbrmax) + 1 - i;
481 greg 3.1 /* histogram total and mean */
482     histot = 0; sum = 0;
483     j = brt0 + histlen*HISTEP;
484     for (i = histlen; i--; ) {
485 greg 3.16 histot += tms->histo[i];
486 greg 3.30 sum += (double)(j -= HISTEP) * tms->histo[i];
487 greg 3.1 }
488 greg 3.14 threshold = histot*0.005 + .5;
489 greg 3.29 if (!histot)
490 greg 3.1 returnErr(TM_E_TMFAIL);
491     Lwavg = tmLuminance( (double)sum / histot );
492 greg 3.29 /* use linear tone mapping? */
493 greg 3.30 if (tms->flags & TM_F_LINEAR || threshold < 4 ||
494     tms->hbrmax - tms->hbrmin < TM_BRTSCALE*logLddyn)
495 greg 3.29 goto linearmap;
496 greg 3.9 /* clamp histogram */
497     histo = (int *)malloc(histlen*sizeof(int));
498     cumf = (float *)malloc((histlen+2)*sizeof(float));
499 schorsch 3.13 if ((histo == NULL) | (cumf == NULL))
500 greg 3.9 returnErr(TM_E_NOMEM);
501     cumf[histlen+1] = 1.; /* guard for assignment code */
502     for (i = histlen; i--; ) /* make malleable copy */
503 greg 3.16 histo[i] = tms->histo[i];
504 greg 3.9 do { /* iterate to solution */
505     sum = 0; /* cumulative probability */
506     for (i = 0; i < histlen; i++) {
507     cumf[i] = (double)sum/histot;
508     sum += histo[i];
509     }
510     cumf[histlen] = 1.;
511 greg 3.16 Tr = histot * (double)(tms->hbrmax - tms->hbrmin) /
512 greg 3.9 ((double)histlen*TM_BRTSCALE) / logLddyn;
513     ceiling = Tr + 1.;
514     trimmings = 0; /* clip to envelope */
515     for (i = histlen; i--; ) {
516 greg 3.16 if (tms->flags & TM_F_HCONTR) {
517 greg 3.9 Lw = tmLuminance(brt0 + i*HISTEP);
518     Ld = Ldmin * exp( logLddyn *
519     .5*(cumf[i]+cumf[i+1]) );
520     ceiling = Tr * (htcontrs(Ld) * Lw) /
521     (htcontrs(Lw) * Ld) + 1.;
522 greg 3.2 }
523 greg 3.9 if (histo[i] > ceiling) {
524     trimmings += histo[i] - ceiling;
525     histo[i] = ceiling;
526 greg 3.1 }
527     }
528 greg 3.9 /* check if we're out of data */
529     if ((histot -= trimmings) <= threshold) {
530     free((MEM_PTR)histo);
531     free((MEM_PTR)cumf);
532     goto linearmap;
533     }
534     } while (trimmings > threshold);
535 greg 3.30 /* allocate space for mapping */
536     if (!tmNewMap(tms))
537     returnErr(TM_E_NOMEM);
538 greg 3.9 /* assign tone-mapping */
539 greg 3.16 for (i = tms->mbrmax-tms->mbrmin+1; i--; ) {
540     j = d = (double)i/(tms->mbrmax-tms->mbrmin)*histlen;
541 greg 3.9 d -= (double)j;
542     Ld = Ldmin*exp(logLddyn*((1.-d)*cumf[j]+d*cumf[j+1]));
543     d = (Ld - Ldmin)/(Ldmax - Ldmin);
544 greg 3.16 tms->lumap[i] = 256.*pow(d, 1./gamval);
545 greg 3.1 }
546 greg 3.9 free((MEM_PTR)histo); /* clean up and return */
547     free((MEM_PTR)cumf);
548 greg 3.1 returnOK;
549 greg 3.9 linearmap: /* linear tone-mapping */
550 greg 3.16 if (tms->flags & TM_F_HCONTR)
551 greg 3.9 d = htcontrs(Ldavg) / htcontrs(Lwavg);
552     else
553     d = Ldavg / Lwavg;
554 greg 3.16 return(tmFixedMapping(tms, tms->inpsf*d/Ldmax, gamval));
555 greg 3.1 }
556    
557    
558     int
559 greg 3.16 tmMapPixels( /* apply tone-mapping to pixel(s) */
560     TMstruct *tms,
561     BYTE *ps,
562     TMbright *ls,
563     BYTE *cs,
564     int len
565     )
566 greg 3.1 {
567 greg 3.17 static const char funcName[] = "tmMapPixels";
568 greg 3.16 int32 li, pv;
569 greg 3.1
570 greg 3.16 if (tms == NULL || tms->lumap == NULL)
571 greg 3.1 returnErr(TM_E_TMINVAL);
572 schorsch 3.13 if ((ps == NULL) | (ls == NULL) | (len < 0))
573 greg 3.1 returnErr(TM_E_ILLEGAL);
574     while (len--) {
575 greg 3.16 if ((li = *ls++) < tms->mbrmin) {
576 greg 3.9 li = 0;
577     } else {
578 greg 3.16 if (li > tms->mbrmax)
579     li = tms->mbrmax;
580     li = tms->lumap[li - tms->mbrmin];
581 greg 3.9 }
582 greg 3.1 if (cs == TM_NOCHROM)
583     *ps++ = li>255 ? 255 : li;
584     else {
585 greg 3.16 pv = *cs++ * li / tms->cdiv[RED];
586 greg 3.1 *ps++ = pv>255 ? 255 : pv;
587 greg 3.16 pv = *cs++ * li / tms->cdiv[GRN];
588 greg 3.1 *ps++ = pv>255 ? 255 : pv;
589 greg 3.16 pv = *cs++ * li / tms->cdiv[BLU];
590 greg 3.1 *ps++ = pv>255 ? 255 : pv;
591     }
592     }
593     returnOK;
594     }
595    
596    
597 greg 3.16 TMstruct *
598     tmDup( /* duplicate top tone mapping */
599     TMstruct *tms
600     )
601 greg 3.3 {
602     int len;
603 greg 3.16 int i;
604     TMstruct *tmnew;
605 greg 3.3
606 greg 3.16 if (tms == NULL) /* anything to duplicate? */
607 greg 3.3 return(NULL);
608 greg 3.16 tmnew = (TMstruct *)malloc(sizeof(TMstruct));
609 greg 3.3 if (tmnew == NULL)
610     return(NULL);
611 greg 3.16 *tmnew = *tms; /* copy everything */
612 greg 3.3 if (tmnew->histo != NULL) { /* duplicate histogram */
613 greg 3.31 len = HISTI(tmnew->hbrmax) + 1 - HISTI(tmnew->hbrmin);
614 greg 3.3 tmnew->histo = (int *)malloc(len*sizeof(int));
615     if (tmnew->histo != NULL)
616     for (i = len; i--; )
617 greg 3.16 tmnew->histo[i] = tms->histo[i];
618 greg 3.3 }
619     if (tmnew->lumap != NULL) { /* duplicate luminance mapping */
620 gregl 3.6 len = tmnew->mbrmax-tmnew->mbrmin+1;
621 greg 3.3 tmnew->lumap = (unsigned short *)malloc(
622     len*sizeof(unsigned short) );
623     if (tmnew->lumap != NULL)
624     for (i = len; i--; )
625 greg 3.16 tmnew->lumap[i] = tms->lumap[i];
626 greg 3.3 }
627 greg 3.4 /* clear package data */
628     for (i = tmNumPkgs; i--; )
629     tmnew->pd[i] = NULL;
630 greg 3.16 /* return copy */
631     return(tmnew);
632 greg 3.1 }
633    
634    
635     void
636     tmDone(tms) /* done with tone mapping -- destroy it */
637 greg 3.16 TMstruct *tms;
638 greg 3.1 {
639 greg 3.16 int i;
640     /* NULL arg. is equiv. to tms */
641     if (tms == NULL)
642 greg 3.1 return;
643     /* free tables */
644     if (tms->histo != NULL)
645 greg 3.4 free((MEM_PTR)tms->histo);
646 greg 3.1 if (tms->lumap != NULL)
647 greg 3.4 free((MEM_PTR)tms->lumap);
648     /* free private data */
649     for (i = tmNumPkgs; i--; )
650     if (tms->pd[i] != NULL)
651     (*tmPkg[i]->Free)(tms->pd[i]);
652     free((MEM_PTR)tms); /* free basic structure */
653 greg 3.9 }
654    
655     /******************** Shared but Private library routines *********************/
656    
657     BYTE tmMesofact[BMESUPPER-BMESLOWER];
658    
659     void
660     tmMkMesofact() /* build mesopic lookup factor table */
661     {
662 greg 3.16 int i;
663 greg 3.9
664     if (tmMesofact[BMESUPPER-BMESLOWER-1])
665     return;
666    
667     for (i = BMESLOWER; i < BMESUPPER; i++)
668     tmMesofact[i-BMESLOWER] = 256. *
669     (tmLuminance(i) - LMESLOWER) /
670     (LMESUPPER - LMESLOWER);
671     }
672    
673    
674     int
675 greg 3.33 tmNewMap( /* allocate new tone-mapping array */
676     TMstruct *tms
677     )
678     {
679     if (tms->lumap != NULL && (tms->mbrmax - tms->mbrmin) !=
680     (tms->hbrmax - tms->hbrmin)) {
681     free((MEM_PTR)tms->lumap);
682     tms->lumap = NULL;
683     }
684     tms->mbrmin = tms->hbrmin;
685     tms->mbrmax = tms->hbrmax;
686     if (tms->mbrmin > tms->mbrmax)
687     return 0;
688     if (tms->lumap == NULL)
689     tms->lumap = (unsigned short *)malloc(sizeof(unsigned short)*
690     (tms->mbrmax-tms->mbrmin+1));
691     return(tms->lumap != NULL);
692     }
693    
694    
695     int
696 greg 3.16 tmErrorReturn( /* error return (with message) */
697 greg 3.17 const char *func,
698 greg 3.16 TMstruct *tms,
699     int err
700     )
701 greg 3.9 {
702 greg 3.17 if (tms != NULL) {
703     tms->lastFunc = func;
704     tms->lastError = err;
705     if (tms->flags & TM_F_NOSTDERR)
706     return(err);
707     }
708 greg 3.9 fputs(func, stderr);
709     fputs(": ", stderr);
710     fputs(tmErrorMessage[err], stderr);
711     fputs("!\n", stderr);
712     return(err);
713 greg 3.1 }