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root/radiance/ray/src/common/image.c
Revision: 1.13
Committed: Mon Oct 15 14:17:05 1990 UTC (33 years, 6 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 1.12: +7 -13 lines
Log Message:
fixed bug in hemispherical view calculation

File Contents

# Content
1 /* Copyright (c) 1986 Regents of the University of California */
2
3 #ifndef lint
4 static char SCCSid[] = "$SunId$ LBL";
5 #endif
6
7 /*
8 * image.c - routines for image generation.
9 *
10 * 10/17/85
11 */
12
13 #include "standard.h"
14
15 #include "view.h"
16
17 VIEW stdview = STDVIEW; /* default view parameters */
18
19
20 char *
21 setview(v) /* set hvec and vvec, return message on error */
22 register VIEW *v;
23 {
24 static char ill_horiz[] = "illegal horizontal view size";
25 static char ill_vert[] = "illegal vertical view size";
26
27 if (normalize(v->vdir) == 0.0) /* normalize direction */
28 return("zero view direction");
29
30 fcross(v->hvec, v->vdir, v->vup); /* compute horiz dir */
31
32 if (normalize(v->hvec) == 0.0)
33 return("illegal view up vector");
34
35 fcross(v->vvec, v->hvec, v->vdir); /* compute vert dir */
36
37 if (v->horiz <= FTINY)
38 return(ill_horiz);
39 if (v->vert <= FTINY)
40 return(ill_vert);
41
42 switch (v->type) {
43 case VT_PAR: /* parallel view */
44 v->hn2 = v->horiz;
45 v->vn2 = v->vert;
46 break;
47 case VT_PER: /* perspective view */
48 if (v->horiz >= 180.0-FTINY)
49 return(ill_horiz);
50 if (v->vert >= 180.0-FTINY)
51 return(ill_vert);
52 v->hn2 = 2.0 * tan(v->horiz*(PI/180.0/2.0));
53 v->vn2 = 2.0 * tan(v->vert*(PI/180.0/2.0));
54 break;
55 case VT_ANG: /* angular fisheye */
56 if (v->horiz > 360.0+FTINY)
57 return(ill_horiz);
58 if (v->vert > 360.0+FTINY)
59 return(ill_vert);
60 v->hn2 = v->horiz / 90.0;
61 v->vn2 = v->vert / 90.0;
62 break;
63 case VT_HEM: /* hemispherical fisheye */
64 if (v->horiz > 180.0+FTINY)
65 return(ill_horiz);
66 if (v->vert > 180.0+FTINY)
67 return(ill_vert);
68 v->hn2 = 2.0 * sin(v->horiz*(PI/180.0/2.0));
69 v->vn2 = 2.0 * sin(v->vert*(PI/180.0/2.0));
70 break;
71 default:
72 return("unknown view type");
73 }
74 if (v->type != VT_ANG) {
75 v->hvec[0] *= v->hn2;
76 v->hvec[1] *= v->hn2;
77 v->hvec[2] *= v->hn2;
78 v->vvec[0] *= v->vn2;
79 v->vvec[1] *= v->vn2;
80 v->vvec[2] *= v->vn2;
81 }
82 v->hn2 *= v->hn2;
83 v->vn2 *= v->vn2;
84
85 return(NULL);
86 }
87
88
89 normaspect(va, ap, xp, yp) /* fix pixel aspect or resolution */
90 double va; /* view aspect ratio */
91 double *ap; /* pixel aspect in (or out if 0) */
92 int *xp, *yp; /* x and y resolution in (or out if *ap!=0) */
93 {
94 if (*ap <= FTINY)
95 *ap = va * *xp / *yp; /* compute pixel aspect */
96 else if (va * *xp > *ap * *yp)
97 *xp = *yp / va * *ap + .5; /* reduce x resolution */
98 else
99 *yp = *xp * va / *ap + .5; /* reduce y resolution */
100 }
101
102
103 viewray(orig, direc, v, x, y) /* compute ray origin and direction */
104 FVECT orig, direc;
105 register VIEW *v;
106 double x, y;
107 {
108 double d, z;
109
110 x += v->hoff - 0.5;
111 y += v->voff - 0.5;
112
113 switch(v->type) {
114 case VT_PAR: /* parallel view */
115 orig[0] = v->vp[0] + x*v->hvec[0] + y*v->vvec[0];
116 orig[1] = v->vp[1] + x*v->hvec[1] + y*v->vvec[1];
117 orig[2] = v->vp[2] + x*v->hvec[2] + y*v->vvec[2];
118 VCOPY(direc, v->vdir);
119 return(0);
120 case VT_PER: /* perspective view */
121 VCOPY(orig, v->vp);
122 direc[0] = v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
123 direc[1] = v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
124 direc[2] = v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
125 normalize(direc);
126 return(0);
127 case VT_HEM: /* hemispherical fisheye */
128 z = 1.0 - x*x*v->hn2 - y*y*v->vn2;
129 if (z < 0.0)
130 return(-1);
131 z = sqrt(z);
132 VCOPY(orig, v->vp);
133 direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
134 direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
135 direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
136 return(0);
137 case VT_ANG: /* angular fisheye */
138 x *= v->horiz/180.0;
139 y *= v->vert/180.0;
140 d = x*x + y*y;
141 if (d > 1.0)
142 return(-1);
143 VCOPY(orig, v->vp);
144 if (d <= FTINY) {
145 VCOPY(direc, v->vdir);
146 return(0);
147 }
148 d = sqrt(d);
149 z = cos(PI*d);
150 d = sqrt(1 - z*z)/d;
151 x *= d;
152 y *= d;
153 direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
154 direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
155 direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
156 return(0);
157 }
158 return(-1);
159 }
160
161
162 viewpixel(xp, yp, zp, v, p) /* find image location for point */
163 double *xp, *yp, *zp;
164 register VIEW *v;
165 FVECT p;
166 {
167 double d;
168 FVECT disp;
169
170 disp[0] = p[0] - v->vp[0];
171 disp[1] = p[1] - v->vp[1];
172 disp[2] = p[2] - v->vp[2];
173
174 switch (v->type) {
175 case VT_PAR: /* parallel view */
176 if (zp != NULL)
177 *zp = DOT(disp,v->vdir);
178 break;
179 case VT_PER: /* perspective view */
180 d = DOT(disp,v->vdir);
181 if (zp != NULL) {
182 *zp = sqrt(DOT(disp,disp));
183 if (d < 0.0)
184 *zp = -*zp;
185 }
186 if (d < 0.0) /* fold pyramid */
187 d = -d;
188 if (d > FTINY) {
189 d = 1.0/d;
190 disp[0] *= d;
191 disp[1] *= d;
192 disp[2] *= d;
193 }
194 break;
195 case VT_HEM: /* hemispherical fisheye */
196 d = normalize(disp);
197 if (zp != NULL) {
198 if (DOT(disp,v->vdir) < 0.0)
199 *zp = -d;
200 else
201 *zp = d;
202 }
203 break;
204 case VT_ANG: /* angular fisheye */
205 d = normalize(disp);
206 if (zp != NULL)
207 *zp = d;
208 *xp = 0.5 - v->hoff;
209 *yp = 0.5 - v->voff;
210 d = DOT(disp,v->vdir);
211 if (d >= 1.0-FTINY)
212 return;
213 if (d <= -(1.0-FTINY)) {
214 *xp += 180.0/v->horiz;
215 *yp += 180.0/v->vert;
216 return;
217 }
218 d = acos(d)/PI / sqrt(1.0 - d*d);
219 *xp += DOT(disp,v->hvec)*d*180.0/v->horiz;
220 *yp += DOT(disp,v->vvec)*d*180.0/v->vert;
221 return;
222 }
223 *xp = DOT(disp,v->hvec)/v->hn2 + 0.5 - v->hoff;
224 *yp = DOT(disp,v->vvec)/v->vn2 + 0.5 - v->voff;
225 }
226
227
228 int
229 getviewopt(v, ac, av) /* process view argument */
230 register VIEW *v;
231 int ac;
232 register char *av[];
233 {
234 #define check(c,n) if ((av[0][c]&&av[0][c]!=' ') || n>=ac) return(-1)
235 extern double atof();
236
237 if (ac <= 0 || av[0][0] != '-' || av[0][1] != 'v')
238 return(-1);
239 switch (av[0][2]) {
240 case 't': /* type */
241 if (!av[0][3] || av[0][3]==' ')
242 return(-1);
243 check(4,0);
244 v->type = av[0][3];
245 return(0);
246 case 'p': /* point */
247 check(3,3);
248 v->vp[0] = atof(av[1]);
249 v->vp[1] = atof(av[2]);
250 v->vp[2] = atof(av[3]);
251 return(3);
252 case 'd': /* direction */
253 check(3,3);
254 v->vdir[0] = atof(av[1]);
255 v->vdir[1] = atof(av[2]);
256 v->vdir[2] = atof(av[3]);
257 return(3);
258 case 'u': /* up */
259 check(3,3);
260 v->vup[0] = atof(av[1]);
261 v->vup[1] = atof(av[2]);
262 v->vup[2] = atof(av[3]);
263 return(3);
264 case 'h': /* horizontal size */
265 check(3,1);
266 v->horiz = atof(av[1]);
267 return(1);
268 case 'v': /* vertical size */
269 check(3,1);
270 v->vert = atof(av[1]);
271 return(1);
272 case 's': /* shift */
273 check(3,1);
274 v->hoff = atof(av[1]);
275 return(1);
276 case 'l': /* lift */
277 check(3,1);
278 v->voff = atof(av[1]);
279 return(1);
280 default:
281 return(-1);
282 }
283 #undef check
284 }
285
286
287 int
288 sscanview(vp, s) /* get view parameters from string */
289 VIEW *vp;
290 register char *s;
291 {
292 int ac;
293 char *av[4];
294 int na;
295 int nvopts = 0;
296
297 while (*s == ' ')
298 s++;
299 while (*s) {
300 ac = 0;
301 do {
302 av[ac++] = s;
303 while (*s && *s != ' ')
304 s++;
305 while (*s == ' ')
306 s++;
307 } while (*s && ac < 4);
308 if ((na = getviewopt(vp, ac, av)) >= 0) {
309 if (na+1 < ac)
310 s = av[na+1];
311 nvopts++;
312 } else if (ac > 1)
313 s = av[1];
314 }
315 return(nvopts);
316 }
317
318
319 fprintview(vp, fp) /* write out view parameters */
320 register VIEW *vp;
321 FILE *fp;
322 {
323 fprintf(fp, " -vt%c", vp->type);
324 fprintf(fp, " -vp %.6g %.6g %.6g", vp->vp[0], vp->vp[1], vp->vp[2]);
325 fprintf(fp, " -vd %.6g %.6g %.6g", vp->vdir[0], vp->vdir[1], vp->vdir[2]);
326 fprintf(fp, " -vu %.6g %.6g %.6g", vp->vup[0], vp->vup[1], vp->vup[2]);
327 fprintf(fp, " -vh %.6g -vv %.6g", vp->horiz, vp->vert);
328 fprintf(fp, " -vs %.6g -vl %.6g", vp->hoff, vp->voff);
329 }
330
331
332 static VIEW *hview; /* view from header */
333 static int gothview; /* success indicator */
334 static char *altname[] = {NULL,"rpict","rview","pinterp",VIEWSTR,NULL};
335
336
337 static
338 gethview(s) /* get view from header */
339 char *s;
340 {
341 register char **an;
342
343 for (an = altname; *an != NULL; an++)
344 if (!strncmp(*an, s, strlen(*an))) {
345 if (sscanview(hview, s+strlen(*an)) > 0)
346 gothview++;
347 return;
348 }
349 }
350
351
352 int
353 viewfile(fname, vp, xp, yp) /* get view from file */
354 char *fname;
355 VIEW *vp;
356 int *xp, *yp;
357 {
358 extern char *progname;
359 FILE *fp;
360
361 if ((fp = fopen(fname, "r")) == NULL)
362 return(-1);
363
364 altname[0] = progname;
365 hview = vp;
366 gothview = 0;
367
368 getheader(fp, gethview);
369
370 if (xp != NULL && yp != NULL
371 && fgetresolu(xp, yp, fp) == -1)
372 gothview = 0;
373
374 fclose(fp);
375
376 return(gothview);
377 }