1 |
#ifndef lint |
2 |
static const char RCSid[] = "$Id: normtiff.c,v 3.16 2021/04/07 21:13:52 greg Exp $"; |
3 |
#endif |
4 |
/* |
5 |
* Tone map SGILOG TIFF or Radiance picture and output 24-bit RGB TIFF |
6 |
*/ |
7 |
|
8 |
#include <math.h> |
9 |
|
10 |
#include "rtio.h" |
11 |
#include "platform.h" |
12 |
#include "tiffio.h" |
13 |
#include "color.h" |
14 |
#include "tonemap.h" |
15 |
#include "tmaptiff.h" |
16 |
#include "resolu.h" |
17 |
|
18 |
|
19 |
TIFF *tifout; /* TIFF output */ |
20 |
int flags = TM_F_CAMERA; /* tone-mapping flags */ |
21 |
RGBPRIMP rgbp = stdprims; /* display primaries */ |
22 |
RGBPRIMS myprims; /* overriding display primaries */ |
23 |
double ldmax = 100.; /* maximum display luminance */ |
24 |
double lddyn = 100.; /* display dynamic range */ |
25 |
double gamv = 2.2; /* display gamma value */ |
26 |
|
27 |
short ortab[8] = { /* orientation conversion table */ |
28 |
YMAJOR|YDECR, |
29 |
YMAJOR|YDECR|XDECR, |
30 |
YMAJOR|XDECR, |
31 |
YMAJOR, |
32 |
YDECR, |
33 |
XDECR|YDECR, |
34 |
XDECR, |
35 |
0 |
36 |
}; |
37 |
|
38 |
typedef struct { |
39 |
FILE *fp; /* file pointer */ |
40 |
char fmt[MAXFMTLEN]; /* picture format */ |
41 |
double pa; /* pixel aspect ratio */ |
42 |
RESOLU rs; /* picture resolution */ |
43 |
} PICTURE; |
44 |
|
45 |
uint16 comp = COMPRESSION_NONE; /* TIFF compression mode */ |
46 |
|
47 |
#define closepicture(p) (fclose((p)->fp),free(p)) |
48 |
|
49 |
static gethfunc headline; |
50 |
|
51 |
static int headline(char *s, void *pp); |
52 |
static PICTURE *openpicture(char *fname); |
53 |
static int tmap_picture(char *fname, PICTURE *pp); |
54 |
static int tmap_tiff(char *fname, TIFF *tp); |
55 |
static int putimage(uint16 or, uint32 xs, uint32 ys, float xr, float yr, |
56 |
uint16 ru, uby8 *pd); |
57 |
|
58 |
|
59 |
int |
60 |
main( |
61 |
int argc, |
62 |
char *argv[] |
63 |
) |
64 |
{ |
65 |
PICTURE *pin = NULL; |
66 |
TIFF *tin = NULL; |
67 |
int i, rval; |
68 |
|
69 |
for (i = 1; i < argc && argv[i][0] == '-'; i++) |
70 |
switch (argv[i][1]) { |
71 |
case 'h': /* human observer settings */ |
72 |
flags = TM_F_HUMAN; |
73 |
break; |
74 |
case 's': /* toggle human contrast */ |
75 |
flags ^= TM_F_HCONTR; |
76 |
break; |
77 |
case 'c': /* toggle mesopic sens. */ |
78 |
flags ^= TM_F_MESOPIC; |
79 |
break; |
80 |
case 'l': /* toggle linear mapping */ |
81 |
flags ^= TM_F_LINEAR; |
82 |
break; |
83 |
case 'b': /* toggle greyscale output */ |
84 |
flags ^= TM_F_BW; |
85 |
break; |
86 |
case 'g': /* set display gamma */ |
87 |
if (argc-i < 2) goto userr; |
88 |
gamv = atof(argv[++i]); |
89 |
break; |
90 |
case 'u': /* set display maximum */ |
91 |
if (argc-i < 2) goto userr; |
92 |
ldmax = atof(argv[++i]); |
93 |
break; |
94 |
case 'd': /* set display dynamic range */ |
95 |
if (argc-i < 2) goto userr; |
96 |
lddyn = atof(argv[++i]); |
97 |
break; |
98 |
case 'z': /* LZW compression */ |
99 |
comp = COMPRESSION_LZW; |
100 |
break; |
101 |
case 'p': /* set display primaries */ |
102 |
if (argc-i < 9) goto userr; |
103 |
myprims[RED][CIEX] = atof(argv[++i]); |
104 |
myprims[RED][CIEY] = atof(argv[++i]); |
105 |
myprims[GRN][CIEX] = atof(argv[++i]); |
106 |
myprims[GRN][CIEY] = atof(argv[++i]); |
107 |
myprims[BLU][CIEX] = atof(argv[++i]); |
108 |
myprims[BLU][CIEY] = atof(argv[++i]); |
109 |
myprims[WHT][CIEX] = atof(argv[++i]); |
110 |
myprims[WHT][CIEY] = atof(argv[++i]); |
111 |
rgbp = myprims; |
112 |
break; |
113 |
default: |
114 |
goto userr; |
115 |
} |
116 |
if (argc-i < 2) goto userr; |
117 |
if ((pin = openpicture(argv[i])) == NULL && |
118 |
(tin = TIFFOpen(argv[i], "r")) == NULL) { |
119 |
fprintf(stderr, "%s: cannot open or interpret file \"%s\"\n", |
120 |
argv[0], argv[i]); |
121 |
exit(1); |
122 |
} |
123 |
if ((tifout = TIFFOpen(argv[i+1], "w")) == NULL) { |
124 |
fprintf(stderr, "%s: cannot open output TIFF \"%s\"\n", |
125 |
argv[0], argv[i+1]); |
126 |
exit(1); |
127 |
} |
128 |
if (pin != NULL) { |
129 |
rval = tmap_picture(argv[i], pin); |
130 |
closepicture(pin); |
131 |
} else { |
132 |
rval = tmap_tiff(argv[i], tin); |
133 |
TIFFClose(tin); |
134 |
} |
135 |
TIFFClose(tifout); |
136 |
exit(rval==0 ? 0 : 1); |
137 |
userr: |
138 |
fprintf(stderr, |
139 |
"Usage: %s [-h][-s][-c][-l][-b][-g gv][-d ld][-u lm][-z][-p xr yr xg yg xb yb xw yw] input.{tif|hdr} output.tif\n", |
140 |
argv[0]); |
141 |
exit(1); |
142 |
} |
143 |
|
144 |
|
145 |
static int |
146 |
headline( /* process line from header */ |
147 |
char *s, |
148 |
void *pp |
149 |
) |
150 |
{ |
151 |
char *cp; |
152 |
|
153 |
for (cp = s; *cp; cp++) |
154 |
if (*cp & 0x80) |
155 |
return(-1); /* non-ascii in header */ |
156 |
if (isaspect(s)) |
157 |
((PICTURE *)pp)->pa *= aspectval(s); |
158 |
else |
159 |
formatval(((PICTURE *)pp)->fmt, s); |
160 |
return(0); |
161 |
} |
162 |
|
163 |
|
164 |
static PICTURE * |
165 |
openpicture( /* open/check Radiance picture file */ |
166 |
char *fname |
167 |
) |
168 |
{ |
169 |
FILE *fp; |
170 |
PICTURE *pp; |
171 |
char *cp; |
172 |
/* check filename suffix */ |
173 |
if (fname == NULL) return(NULL); |
174 |
for (cp = fname; *cp; cp++) |
175 |
; |
176 |
while (cp > fname && cp[-1] != '.') |
177 |
if (*--cp == '/') { |
178 |
cp = fname; |
179 |
break; |
180 |
} |
181 |
if (cp > fname && !strncasecmp(cp, "tif", 3)) |
182 |
return(NULL); /* assume it's a TIFF */ |
183 |
/* else try opening it */ |
184 |
if ((fp = fopen(fname, "r")) == NULL) |
185 |
return(NULL); |
186 |
SET_FILE_BINARY(fp); |
187 |
/* allocate struct */ |
188 |
if ((pp = (PICTURE *)malloc(sizeof(PICTURE))) == NULL) |
189 |
return(NULL); /* serious error -- should exit? */ |
190 |
pp->fp = fp; pp->fmt[0] = '\0'; pp->pa = 1.; |
191 |
/* load header */ |
192 |
if (getheader(fp, headline, pp) < 0) { |
193 |
closepicture(pp); |
194 |
return(NULL); |
195 |
} |
196 |
if (!pp->fmt[0]) /* assume RGBE if unspecified */ |
197 |
strcpy(pp->fmt, COLRFMT); |
198 |
if ((!globmatch(PICFMT, pp->fmt) && strcmp(SPECFMT, pp->fmt)) |
199 |
|| !fgetsresolu(&pp->rs, fp)) { |
200 |
closepicture(pp); /* failed test -- close file */ |
201 |
return(NULL); |
202 |
} |
203 |
rewind(fp); /* passed test -- rewind file */ |
204 |
return(pp); |
205 |
} |
206 |
|
207 |
|
208 |
static int |
209 |
tmap_picture( /* tone map Radiance picture */ |
210 |
char *fname, |
211 |
PICTURE *pp |
212 |
) |
213 |
{ |
214 |
uint16 orient; |
215 |
double paspect = (pp->rs.rt & YMAJOR) ? pp->pa : 1./pp->pa; |
216 |
int xsiz, ysiz; |
217 |
uby8 *pix; |
218 |
/* read and tone map picture */ |
219 |
if (tmMapPicture(&pix, &xsiz, &ysiz, flags, |
220 |
rgbp, gamv, lddyn, ldmax, fname, pp->fp) != TM_E_OK) |
221 |
return(-1); |
222 |
/* figure out TIFF orientation */ |
223 |
for (orient = 8; --orient; ) |
224 |
if (ortab[orient] == pp->rs.rt) |
225 |
break; |
226 |
orient++; |
227 |
/* put out our image */ |
228 |
if (putimage(orient, (uint32)xsiz, (uint32)ysiz, |
229 |
72., 72./paspect, 2, pix) != 0) |
230 |
return(-1); |
231 |
/* free data and we're done */ |
232 |
free(pix); |
233 |
return(0); |
234 |
} |
235 |
|
236 |
|
237 |
static int |
238 |
tmap_tiff( /* tone map SGILOG TIFF */ |
239 |
char *fname, |
240 |
TIFF *tp |
241 |
) |
242 |
{ |
243 |
float xres, yres; |
244 |
uint16 orient, resunit, phot; |
245 |
int xsiz, ysiz; |
246 |
uby8 *pix; |
247 |
/* check to make sure it's SGILOG */ |
248 |
TIFFGetFieldDefaulted(tp, TIFFTAG_PHOTOMETRIC, &phot); |
249 |
if ((phot == PHOTOMETRIC_LOGL) | (phot == PHOTOMETRIC_MINISBLACK)) |
250 |
flags |= TM_F_BW; |
251 |
/* read and tone map TIFF */ |
252 |
if (tmMapTIFF(&pix, &xsiz, &ysiz, flags, |
253 |
rgbp, gamv, lddyn, ldmax, fname, tp) != TM_E_OK) |
254 |
return(-1); |
255 |
/* get relevant tags */ |
256 |
TIFFGetFieldDefaulted(tp, TIFFTAG_RESOLUTIONUNIT, &resunit); |
257 |
TIFFGetFieldDefaulted(tp, TIFFTAG_XRESOLUTION, &xres); |
258 |
TIFFGetFieldDefaulted(tp, TIFFTAG_YRESOLUTION, &yres); |
259 |
TIFFGetFieldDefaulted(tp, TIFFTAG_ORIENTATION, &orient); |
260 |
/* put out our image */ |
261 |
if (putimage(orient, (uint32)xsiz, (uint32)ysiz, |
262 |
xres, yres, resunit, pix) != 0) |
263 |
return(-1); |
264 |
/* free data and we're done */ |
265 |
free(pix); |
266 |
return(0); |
267 |
} |
268 |
|
269 |
|
270 |
static int |
271 |
putimage( /* write out our image */ |
272 |
uint16 or, |
273 |
uint32 xs, |
274 |
uint32 ys, |
275 |
float xr, |
276 |
float yr, |
277 |
uint16 ru, |
278 |
uby8 *pd |
279 |
) |
280 |
{ |
281 |
int y; |
282 |
uint32 rowsperstrip; |
283 |
|
284 |
TIFFSetField(tifout, TIFFTAG_COMPRESSION, COMPRESSION_NONE); |
285 |
if (flags & TM_F_BW) { |
286 |
TIFFSetField(tifout, TIFFTAG_PHOTOMETRIC, |
287 |
PHOTOMETRIC_MINISBLACK); |
288 |
TIFFSetField(tifout, TIFFTAG_SAMPLESPERPIXEL, 1); |
289 |
} else { |
290 |
TIFFSetField(tifout, TIFFTAG_PHOTOMETRIC, PHOTOMETRIC_RGB); |
291 |
TIFFSetField(tifout, TIFFTAG_SAMPLESPERPIXEL, 3); |
292 |
} |
293 |
if (rgbp != stdprims) { |
294 |
TIFFSetField(tifout, TIFFTAG_PRIMARYCHROMATICITIES, |
295 |
(float *)rgbp); |
296 |
TIFFSetField(tifout, TIFFTAG_WHITEPOINT, (float *)rgbp[WHT]); |
297 |
} |
298 |
TIFFSetField(tifout, TIFFTAG_BITSPERSAMPLE, 8); |
299 |
TIFFSetField(tifout, TIFFTAG_IMAGEWIDTH, xs); |
300 |
TIFFSetField(tifout, TIFFTAG_IMAGELENGTH, ys); |
301 |
TIFFSetField(tifout, TIFFTAG_RESOLUTIONUNIT, ru); |
302 |
TIFFSetField(tifout, TIFFTAG_COMPRESSION, comp); |
303 |
TIFFSetField(tifout, TIFFTAG_XRESOLUTION, xr); |
304 |
TIFFSetField(tifout, TIFFTAG_YRESOLUTION, yr); |
305 |
TIFFSetField(tifout, TIFFTAG_PLANARCONFIG, PLANARCONFIG_CONTIG); |
306 |
TIFFSetField(tifout, TIFFTAG_ORIENTATION, or); |
307 |
/* compute good strip size */ |
308 |
rowsperstrip = 8192/TIFFScanlineSize(tifout); |
309 |
if (rowsperstrip < 1) rowsperstrip = 1; |
310 |
TIFFSetField(tifout, TIFFTAG_ROWSPERSTRIP, rowsperstrip); |
311 |
/* write out scanlines */ |
312 |
if (flags & TM_F_BW) { |
313 |
for (y = 0; y < ys; y++) |
314 |
if (TIFFWriteScanline(tifout, pd + y*xs, y, 0) < 0) |
315 |
goto writerr; |
316 |
} else { |
317 |
for (y = 0; y < ys; y++) |
318 |
if (TIFFWriteScanline(tifout, pd + y*3*xs, y, 0) < 0) |
319 |
goto writerr; |
320 |
} |
321 |
return(0); /* all done! */ |
322 |
writerr: |
323 |
fputs("Error writing TIFF output\n", stderr); |
324 |
return(-1); |
325 |
} |