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root/radiance/ray/src/px/normtiff.c
Revision: 3.9
Committed: Tue Jun 14 22:23:31 2005 UTC (18 years, 10 months ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad3R7P2, rad3R7P1
Changes since 3.8: +13 -9 lines
Log Message:
Added -z option to normtiff to output LZW-compressed TIFFs

File Contents

# Content
1 #ifndef lint
2 static const char RCSid[] = "$Id: normtiff.c,v 3.8 2004/03/28 20:33:14 schorsch Exp $";
3 #endif
4 /*
5 * Tone map SGILOG TIFF or Radiance picture and output 24-bit RGB TIFF
6 */
7
8 #include <stdio.h>
9 #include <math.h>
10 #include <time.h>
11 #include <string.h>
12
13 #include "tiffio.h"
14 #include "color.h"
15 #include "tonemap.h"
16 #include "tmaptiff.h"
17 #include "resolu.h"
18
19
20 TIFF *tifout; /* TIFF output */
21 int flags = TM_F_CAMERA; /* tone-mapping flags */
22 RGBPRIMP rgbp = stdprims; /* display primaries */
23 RGBPRIMS myprims; /* overriding display primaries */
24 double ldmax = 100.; /* maximum display luminance */
25 double lddyn = 32.; /* display dynamic range */
26 double gamv = 2.2; /* display gamma value */
27
28 short ortab[8] = { /* orientation conversion table */
29 YMAJOR|YDECR,
30 YMAJOR|YDECR|XDECR,
31 YMAJOR|XDECR,
32 YMAJOR,
33 YDECR,
34 XDECR|YDECR,
35 XDECR,
36 0
37 };
38
39 typedef struct {
40 FILE *fp; /* file pointer */
41 char fmt[32]; /* picture format */
42 double pa; /* pixel aspect ratio */
43 RESOLU rs; /* picture resolution */
44 } PICTURE;
45
46 uint16 comp = COMPRESSION_NONE; /* TIFF compression mode */
47
48 #define closepicture(p) (fclose((p)->fp),free((void *)(p)))
49
50 static gethfunc headline;
51
52 static int headline(char *s, void *pp);
53 static PICTURE *openpicture(char *fname);
54 static int tmap_picture(char *fname, PICTURE *pp);
55 static int tmap_tiff(char *fname, TIFF *tp);
56 static int putimage(uint16 or, uint32 xs, uint32 ys, float xr, float yr,
57 uint16 ru, BYTE *pd);
58
59
60 int
61 main(
62 int argc,
63 char *argv[]
64 )
65 {
66 PICTURE *pin = NULL;
67 TIFF *tin = NULL;
68 int i, rval;
69
70 for (i = 1; i < argc && argv[i][0] == '-'; i++)
71 switch (argv[i][1]) {
72 case 'h': /* human observer settings */
73 flags = TM_F_HUMAN;
74 break;
75 case 's': /* toggle human contrast */
76 flags ^= TM_F_HCONTR;
77 break;
78 case 'c': /* toggle mesopic sens. */
79 flags ^= TM_F_MESOPIC;
80 break;
81 case 'l': /* toggle linear mapping */
82 flags ^= TM_F_LINEAR;
83 break;
84 case 'b': /* toggle greyscale output */
85 flags ^= TM_F_BW;
86 break;
87 case 'g': /* set display gamma */
88 if (argc-i < 2) goto userr;
89 gamv = atof(argv[++i]);
90 break;
91 case 'u': /* set display maximum */
92 if (argc-i < 2) goto userr;
93 ldmax = atof(argv[++i]);
94 break;
95 case 'd': /* set display dynamic range */
96 if (argc-i < 2) goto userr;
97 lddyn = atof(argv[++i]);
98 break;
99 case 'z': /* LZW compression */
100 comp = COMPRESSION_LZW;
101 break;
102 case 'p': /* set display primaries */
103 if (argc-i < 9) goto userr;
104 myprims[RED][CIEX] = atof(argv[++i]);
105 myprims[RED][CIEY] = atof(argv[++i]);
106 myprims[GRN][CIEX] = atof(argv[++i]);
107 myprims[GRN][CIEY] = atof(argv[++i]);
108 myprims[BLU][CIEX] = atof(argv[++i]);
109 myprims[BLU][CIEY] = atof(argv[++i]);
110 myprims[WHT][CIEX] = atof(argv[++i]);
111 myprims[WHT][CIEY] = atof(argv[++i]);
112 rgbp = myprims;
113 break;
114 default:
115 goto userr;
116 }
117 if (argc-i < 2) goto userr;
118 if ((pin = openpicture(argv[i])) == NULL &&
119 (tin = TIFFOpen(argv[i], "r")) == NULL) {
120 fprintf(stderr, "%s: cannot open or interpret file \"%s\"\n",
121 argv[0], argv[i]);
122 exit(1);
123 }
124 if ((tifout = TIFFOpen(argv[i+1], "w")) == NULL) {
125 fprintf(stderr, "%s: cannot open output TIFF \"%s\"\n",
126 argv[0], argv[i+1]);
127 exit(1);
128 }
129 if (pin != NULL) {
130 rval = tmap_picture(argv[i], pin);
131 closepicture(pin);
132 } else {
133 rval = tmap_tiff(argv[i], tin);
134 TIFFClose(tin);
135 }
136 TIFFClose(tifout);
137 exit(rval==0 ? 0 : 1);
138 userr:
139 fprintf(stderr,
140 "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|pic} output.tif\n",
141 argv[0]);
142 exit(1);
143 }
144
145
146 static int
147 headline( /* process line from header */
148 char *s,
149 void *pp
150 )
151 {
152 register char *cp;
153
154 for (cp = s; *cp; cp++)
155 if (*cp & 0x80)
156 return(-1); /* non-ascii in header */
157 if (isaspect(s))
158 ((PICTURE *)pp)->pa *= aspectval(s);
159 else
160 formatval(((PICTURE *)pp)->fmt, s);
161 return(0);
162 }
163
164
165 static PICTURE *
166 openpicture( /* open/check Radiance picture file */
167 char *fname
168 )
169 {
170 FILE *fp;
171 register PICTURE *pp;
172 register char *cp;
173 /* check filename suffix */
174 if (fname == NULL) return(NULL);
175 for (cp = fname; *cp; cp++)
176 ;
177 while (cp > fname && cp[-1] != '.')
178 if (*--cp == '/') {
179 cp = fname;
180 break;
181 }
182 if (cp > fname && !strncmp(cp, "tif", 3))
183 return(NULL); /* assume it's a TIFF */
184 /* else try opening it */
185 if ((fp = fopen(fname, "r")) == NULL)
186 return(NULL);
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) || !fgetsresolu(&pp->rs, fp)) {
199 closepicture(pp); /* failed test -- close file */
200 return(NULL);
201 }
202 rewind(fp); /* passed test -- rewind file */
203 return(pp);
204 }
205
206
207 static int
208 tmap_picture( /* tone map Radiance picture */
209 char *fname,
210 register PICTURE *pp
211 )
212 {
213 uint16 orient;
214 int xsiz, ysiz;
215 BYTE *pix;
216 /* read and tone map picture */
217 if (tmMapPicture(&pix, &xsiz, &ysiz, flags,
218 rgbp, gamv, lddyn, ldmax, fname, pp->fp) != TM_E_OK)
219 return(-1);
220 /* figure out TIFF orientation */
221 for (orient = 8; --orient; )
222 if (ortab[orient] == pp->rs.rt)
223 break;
224 orient++;
225 /* put out our image */
226 if (putimage(orient, (uint32)xsiz, (uint32)ysiz,
227 72., 72./pp->pa, 2, pix) != 0)
228 return(-1);
229 /* free data and we're done */
230 free((void *)pix);
231 return(0);
232 }
233
234
235 static int
236 tmap_tiff( /* tone map SGILOG TIFF */
237 char *fname,
238 TIFF *tp
239 )
240 {
241 float xres, yres;
242 uint16 orient, resunit, phot;
243 int xsiz, ysiz;
244 BYTE *pix;
245 /* check to make sure it's SGILOG */
246 TIFFGetFieldDefaulted(tp, TIFFTAG_PHOTOMETRIC, &phot);
247 if ((phot == PHOTOMETRIC_LOGL) | (phot == PHOTOMETRIC_MINISBLACK))
248 flags |= TM_F_BW;
249 /* read and tone map TIFF */
250 if (tmMapTIFF(&pix, &xsiz, &ysiz, flags,
251 rgbp, gamv, lddyn, ldmax, fname, tp) != TM_E_OK)
252 return(-1);
253 /* get relevant tags */
254 TIFFGetFieldDefaulted(tp, TIFFTAG_RESOLUTIONUNIT, &resunit);
255 TIFFGetFieldDefaulted(tp, TIFFTAG_XRESOLUTION, &xres);
256 TIFFGetFieldDefaulted(tp, TIFFTAG_YRESOLUTION, &yres);
257 TIFFGetFieldDefaulted(tp, TIFFTAG_ORIENTATION, &orient);
258 /* put out our image */
259 if (putimage(orient, (uint32)xsiz, (uint32)ysiz,
260 xres, yres, resunit, pix) != 0)
261 return(-1);
262 /* free data and we're done */
263 free((void *)pix);
264 return(0);
265 }
266
267
268 static int
269 putimage( /* write out our image */
270 uint16 or,
271 uint32 xs,
272 uint32 ys,
273 float xr,
274 float yr,
275 uint16 ru,
276 BYTE *pd
277 )
278 {
279 register int y;
280 uint32 rowsperstrip;
281
282 TIFFSetField(tifout, TIFFTAG_COMPRESSION, COMPRESSION_NONE);
283 if (flags & TM_F_BW) {
284 TIFFSetField(tifout, TIFFTAG_PHOTOMETRIC,
285 PHOTOMETRIC_MINISBLACK);
286 TIFFSetField(tifout, TIFFTAG_SAMPLESPERPIXEL, 1);
287 } else {
288 TIFFSetField(tifout, TIFFTAG_PHOTOMETRIC, PHOTOMETRIC_RGB);
289 TIFFSetField(tifout, TIFFTAG_SAMPLESPERPIXEL, 3);
290 }
291 if (rgbp != stdprims) {
292 TIFFSetField(tifout, TIFFTAG_PRIMARYCHROMATICITIES,
293 (float *)rgbp);
294 TIFFSetField(tifout, TIFFTAG_WHITEPOINT, (float *)rgbp[WHT]);
295 }
296 TIFFSetField(tifout, TIFFTAG_BITSPERSAMPLE, 8);
297 TIFFSetField(tifout, TIFFTAG_IMAGEWIDTH, xs);
298 TIFFSetField(tifout, TIFFTAG_IMAGELENGTH, ys);
299 TIFFSetField(tifout, TIFFTAG_RESOLUTIONUNIT, ru);
300 TIFFSetField(tifout, TIFFTAG_COMPRESSION, comp);
301 TIFFSetField(tifout, TIFFTAG_XRESOLUTION, xr);
302 TIFFSetField(tifout, TIFFTAG_YRESOLUTION, yr);
303 TIFFSetField(tifout, TIFFTAG_PLANARCONFIG, PLANARCONFIG_CONTIG);
304 TIFFSetField(tifout, TIFFTAG_ORIENTATION, or);
305 /* compute good strip size */
306 rowsperstrip = 8192/TIFFScanlineSize(tifout);
307 if (rowsperstrip < 1) rowsperstrip = 1;
308 TIFFSetField(tifout, TIFFTAG_ROWSPERSTRIP, rowsperstrip);
309 /* write out scanlines */
310 if (flags & TM_F_BW) {
311 for (y = 0; y < ys; y++)
312 if (TIFFWriteScanline(tifout, pd + y*xs, y, 0) < 0)
313 goto writerr;
314 } else {
315 for (y = 0; y < ys; y++)
316 if (TIFFWriteScanline(tifout, pd + y*3*xs, y, 0) < 0)
317 goto writerr;
318 }
319 return(0); /* all done! */
320 writerr:
321 fputs("Error writing TIFF output\n", stderr);
322 return(-1);
323 }