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root/radiance/ray/src/common/image.c
Revision: 2.38
Committed: Fri Nov 16 00:14:19 2012 UTC (11 years, 5 months ago) by greg
Content type: text/plain
Branch: MAIN
Changes since 2.37: +5 -7 lines
Log Message:
Bug fix in viewloc() for stereographic view type

File Contents

# User Rev Content
1 greg 1.1 #ifndef lint
2 greg 2.38 static const char RCSid[] = "$Id: image.c,v 2.37 2012/10/27 03:01:21 greg Exp $";
3 greg 1.1 #endif
4     /*
5     * image.c - routines for image generation.
6 greg 2.16 *
7     * External symbols declared in view.h
8     */
9    
10 greg 2.17 #include "copyright.h"
11 greg 1.1
12 greg 2.32 #include <ctype.h>
13 schorsch 2.22 #include "rtio.h"
14 greg 2.28 #include "rtmath.h"
15 greg 2.27 #include "paths.h"
16 greg 1.1 #include "view.h"
17    
18 greg 2.4
19 greg 2.11 #define FEQ(x,y) (fabs((x)-(y)) <= FTINY)
20     #define VEQ(v,w) (FEQ((v)[0],(w)[0]) && FEQ((v)[1],(w)[1]) \
21     && FEQ((v)[2],(w)[2]))
22    
23 greg 1.5 VIEW stdview = STDVIEW; /* default view parameters */
24 greg 1.1
25 schorsch 2.26 static gethfunc gethview;
26    
27 greg 1.1
28     char *
29 greg 2.35 setview( /* set hvec and vvec, return message on error */
30     VIEW *v
31     )
32 greg 1.3 {
33 greg 1.12 static char ill_horiz[] = "illegal horizontal view size";
34     static char ill_vert[] = "illegal vertical view size";
35    
36 gwlarson 2.15 if (v->vaft < -FTINY || (v->vaft > FTINY && v->vaft <= v->vfore))
37 greg 2.7 return("illegal fore/aft clipping plane");
38    
39 greg 2.31 if (v->vdist <= FTINY)
40     return("illegal view distance");
41 greg 2.29 v->vdist *= normalize(v->vdir); /* normalize direction */
42     if (v->vdist == 0.0)
43 greg 1.1 return("zero view direction");
44    
45 greg 1.14 if (normalize(v->vup) == 0.0) /* normalize view up */
46     return("zero view up vector");
47    
48 greg 1.5 fcross(v->hvec, v->vdir, v->vup); /* compute horiz dir */
49    
50     if (normalize(v->hvec) == 0.0)
51 greg 1.14 return("view up parallel to view direction");
52 greg 1.1
53 greg 1.5 fcross(v->vvec, v->hvec, v->vdir); /* compute vert dir */
54    
55 greg 1.12 if (v->horiz <= FTINY)
56     return(ill_horiz);
57     if (v->vert <= FTINY)
58     return(ill_vert);
59    
60     switch (v->type) {
61     case VT_PAR: /* parallel view */
62 greg 1.5 v->hn2 = v->horiz;
63 greg 1.12 v->vn2 = v->vert;
64     break;
65     case VT_PER: /* perspective view */
66     if (v->horiz >= 180.0-FTINY)
67     return(ill_horiz);
68     if (v->vert >= 180.0-FTINY)
69     return(ill_vert);
70 greg 1.5 v->hn2 = 2.0 * tan(v->horiz*(PI/180.0/2.0));
71 greg 1.12 v->vn2 = 2.0 * tan(v->vert*(PI/180.0/2.0));
72     break;
73 greg 2.9 case VT_CYL: /* cylindrical panorama */
74     if (v->horiz > 360.0+FTINY)
75     return(ill_horiz);
76     if (v->vert >= 180.0-FTINY)
77     return(ill_vert);
78     v->hn2 = v->horiz * (PI/180.0);
79     v->vn2 = 2.0 * tan(v->vert*(PI/180.0/2.0));
80     break;
81 greg 1.12 case VT_ANG: /* angular fisheye */
82     if (v->horiz > 360.0+FTINY)
83     return(ill_horiz);
84     if (v->vert > 360.0+FTINY)
85     return(ill_vert);
86 greg 2.9 v->hn2 = v->horiz * (PI/180.0);
87     v->vn2 = v->vert * (PI/180.0);
88 greg 1.12 break;
89     case VT_HEM: /* hemispherical fisheye */
90     if (v->horiz > 180.0+FTINY)
91     return(ill_horiz);
92     if (v->vert > 180.0+FTINY)
93     return(ill_vert);
94     v->hn2 = 2.0 * sin(v->horiz*(PI/180.0/2.0));
95     v->vn2 = 2.0 * sin(v->vert*(PI/180.0/2.0));
96     break;
97 greg 2.34 case VT_PLS: /* planispheric fisheye */
98     if (v->horiz >= 360.0-FTINY)
99     return(ill_horiz);
100     if (v->vert >= 360.0-FTINY)
101     return(ill_vert);
102     v->hn2 = 2.*sin(v->horiz*(PI/180.0/2.0)) /
103     (1.0 + cos(v->horiz*(PI/180.0/2.0)));
104     v->vn2 = 2.*sin(v->vert*(PI/180.0/2.0)) /
105     (1.0 + cos(v->vert*(PI/180.0/2.0)));
106     break;
107 greg 1.12 default:
108 greg 1.1 return("unknown view type");
109 greg 1.12 }
110 greg 2.34 if (v->type != VT_ANG && v->type != VT_PLS) {
111 greg 2.9 if (v->type != VT_CYL) {
112     v->hvec[0] *= v->hn2;
113     v->hvec[1] *= v->hn2;
114     v->hvec[2] *= v->hn2;
115     }
116 greg 1.12 v->vvec[0] *= v->vn2;
117     v->vvec[1] *= v->vn2;
118     v->vvec[2] *= v->vn2;
119     }
120 greg 1.5 v->hn2 *= v->hn2;
121     v->vn2 *= v->vn2;
122 greg 1.1
123     return(NULL);
124     }
125    
126    
127 greg 2.16 void
128 greg 2.35 normaspect( /* fix pixel aspect or resolution */
129     double va, /* view aspect ratio */
130     double *ap, /* pixel aspect in (or out if 0) */
131     int *xp,
132     int *yp /* x and y resolution in (or out if *ap!=0) */
133     )
134 greg 1.6 {
135     if (*ap <= FTINY)
136 greg 1.7 *ap = va * *xp / *yp; /* compute pixel aspect */
137 greg 1.6 else if (va * *xp > *ap * *yp)
138 greg 1.10 *xp = *yp / va * *ap + .5; /* reduce x resolution */
139 greg 1.6 else
140 greg 1.10 *yp = *xp * va / *ap + .5; /* reduce y resolution */
141 greg 1.6 }
142    
143    
144 greg 2.7 double
145 greg 2.35 viewray( /* compute ray origin and direction */
146     FVECT orig,
147     FVECT direc,
148     VIEW *v,
149     double x,
150     double y
151     )
152 greg 1.1 {
153 greg 1.12 double d, z;
154    
155 greg 1.5 x += v->hoff - 0.5;
156     y += v->voff - 0.5;
157 greg 1.1
158 greg 1.12 switch(v->type) {
159     case VT_PAR: /* parallel view */
160 greg 2.7 orig[0] = v->vp[0] + v->vfore*v->vdir[0]
161     + x*v->hvec[0] + y*v->vvec[0];
162     orig[1] = v->vp[1] + v->vfore*v->vdir[1]
163     + x*v->hvec[1] + y*v->vvec[1];
164     orig[2] = v->vp[2] + v->vfore*v->vdir[2]
165     + x*v->hvec[2] + y*v->vvec[2];
166 greg 1.1 VCOPY(direc, v->vdir);
167 greg 2.8 return(v->vaft > FTINY ? v->vaft - v->vfore : 0.0);
168 greg 1.12 case VT_PER: /* perspective view */
169 greg 1.5 direc[0] = v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
170     direc[1] = v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
171     direc[2] = v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
172 greg 2.7 orig[0] = v->vp[0] + v->vfore*direc[0];
173     orig[1] = v->vp[1] + v->vfore*direc[1];
174     orig[2] = v->vp[2] + v->vfore*direc[2];
175     d = normalize(direc);
176 greg 2.8 return(v->vaft > FTINY ? (v->vaft - v->vfore)*d : 0.0);
177 greg 1.12 case VT_HEM: /* hemispherical fisheye */
178 greg 1.13 z = 1.0 - x*x*v->hn2 - y*y*v->vn2;
179 greg 1.12 if (z < 0.0)
180 greg 2.7 return(-1.0);
181 greg 1.12 z = sqrt(z);
182     direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
183     direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
184     direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
185 greg 2.7 orig[0] = v->vp[0] + v->vfore*direc[0];
186     orig[1] = v->vp[1] + v->vfore*direc[1];
187     orig[2] = v->vp[2] + v->vfore*direc[2];
188 greg 2.8 return(v->vaft > FTINY ? v->vaft - v->vfore : 0.0);
189 greg 2.9 case VT_CYL: /* cylindrical panorama */
190     d = x * v->horiz * (PI/180.0);
191     z = cos(d);
192     x = sin(d);
193     direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
194     direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
195     direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
196     orig[0] = v->vp[0] + v->vfore*direc[0];
197     orig[1] = v->vp[1] + v->vfore*direc[1];
198     orig[2] = v->vp[2] + v->vfore*direc[2];
199     d = normalize(direc);
200     return(v->vaft > FTINY ? (v->vaft - v->vfore)*d : 0.0);
201 greg 1.12 case VT_ANG: /* angular fisheye */
202 greg 2.34 x *= (1.0/180.0)*v->horiz;
203     y *= (1.0/180.0)*v->vert;
204 greg 1.12 d = x*x + y*y;
205     if (d > 1.0)
206 greg 2.7 return(-1.0);
207 greg 1.12 d = sqrt(d);
208     z = cos(PI*d);
209 greg 2.34 d = d <= FTINY ? PI : sqrt(1.0 - z*z)/d;
210     x *= d;
211     y *= d;
212     direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
213     direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
214     direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
215     orig[0] = v->vp[0] + v->vfore*direc[0];
216     orig[1] = v->vp[1] + v->vfore*direc[1];
217     orig[2] = v->vp[2] + v->vfore*direc[2];
218     return(v->vaft > FTINY ? v->vaft - v->vfore : 0.0);
219     case VT_PLS: /* planispheric fisheye */
220     x *= sqrt(v->hn2);
221     y *= sqrt(v->vn2);
222     d = x*x + y*y;
223     z = (1. - d)/(1. + d);
224 greg 2.38 x *= (1. + z);
225     y *= (1. + z);
226 greg 1.12 direc[0] = z*v->vdir[0] + x*v->hvec[0] + y*v->vvec[0];
227     direc[1] = z*v->vdir[1] + x*v->hvec[1] + y*v->vvec[1];
228     direc[2] = z*v->vdir[2] + x*v->hvec[2] + y*v->vvec[2];
229 greg 2.7 orig[0] = v->vp[0] + v->vfore*direc[0];
230     orig[1] = v->vp[1] + v->vfore*direc[1];
231     orig[2] = v->vp[2] + v->vfore*direc[2];
232 greg 2.8 return(v->vaft > FTINY ? v->vaft - v->vfore : 0.0);
233 greg 1.1 }
234 greg 2.7 return(-1.0);
235 greg 1.1 }
236    
237    
238 greg 2.16 void
239 greg 2.35 viewloc( /* find image location for point */
240     FVECT ip,
241     VIEW *v,
242     FVECT p
243     )
244 greg 1.3 {
245 gregl 2.13 double d, d2;
246 greg 1.3 FVECT disp;
247 greg 1.5
248 greg 2.34 VSUB(disp, p, v->vp);
249 greg 1.3
250 greg 1.12 switch (v->type) {
251     case VT_PAR: /* parallel view */
252 greg 2.7 ip[2] = DOT(disp,v->vdir) - v->vfore;
253 greg 1.13 break;
254 greg 1.12 case VT_PER: /* perspective view */
255 greg 1.11 d = DOT(disp,v->vdir);
256 gregl 2.13 ip[2] = VLEN(disp);
257 greg 1.17 if (d < 0.0) { /* fold pyramid */
258     ip[2] = -ip[2];
259 greg 1.11 d = -d;
260 greg 2.7 }
261     if (d > FTINY) {
262 greg 1.11 d = 1.0/d;
263     disp[0] *= d;
264     disp[1] *= d;
265     disp[2] *= d;
266     }
267 greg 2.7 ip[2] *= (1.0 - v->vfore*d);
268 greg 1.13 break;
269 greg 1.12 case VT_HEM: /* hemispherical fisheye */
270     d = normalize(disp);
271 greg 1.17 if (DOT(disp,v->vdir) < 0.0)
272     ip[2] = -d;
273     else
274     ip[2] = d;
275 greg 2.7 ip[2] -= v->vfore;
276 greg 1.13 break;
277 greg 2.9 case VT_CYL: /* cylindrical panorama */
278     d = DOT(disp,v->hvec);
279 gregl 2.13 d2 = DOT(disp,v->vdir);
280     ip[0] = 180.0/PI * atan2(d,d2) / v->horiz + 0.5 - v->hoff;
281     d = 1.0/sqrt(d*d + d2*d2);
282     ip[1] = DOT(disp,v->vvec)*d/v->vn2 + 0.5 - v->voff;
283     ip[2] = VLEN(disp);
284 gwlarson 2.15 ip[2] *= (1.0 - v->vfore*d);
285 greg 2.9 return;
286 greg 1.12 case VT_ANG: /* angular fisheye */
287 greg 1.17 ip[0] = 0.5 - v->hoff;
288     ip[1] = 0.5 - v->voff;
289 greg 2.7 ip[2] = normalize(disp) - v->vfore;
290 greg 1.12 d = DOT(disp,v->vdir);
291     if (d >= 1.0-FTINY)
292     return;
293     if (d <= -(1.0-FTINY)) {
294 greg 2.7 ip[0] += 180.0/v->horiz;
295 greg 1.12 return;
296     }
297 greg 2.34 d = (180.0/PI)*acos(d) / sqrt(1.0 - d*d);
298     ip[0] += DOT(disp,v->hvec)*d/v->horiz;
299     ip[1] += DOT(disp,v->vvec)*d/v->vert;
300     return;
301     case VT_PLS: /* planispheric fisheye */
302     ip[0] = 0.5 - v->hoff;
303     ip[1] = 0.5 - v->voff;
304     ip[2] = normalize(disp) - v->vfore;
305     d = DOT(disp,v->vdir);
306     if (d >= 1.0-FTINY)
307     return;
308     if (d <= -(1.0-FTINY))
309     return; /* really an error */
310 greg 2.38 ip[0] += DOT(disp,v->hvec)/((1. + d)*sqrt(v->hn2));
311     ip[1] += DOT(disp,v->vvec)/((1. + d)*sqrt(v->vn2));
312 greg 1.12 return;
313 greg 1.3 }
314 greg 1.17 ip[0] = DOT(disp,v->hvec)/v->hn2 + 0.5 - v->hoff;
315     ip[1] = DOT(disp,v->vvec)/v->vn2 + 0.5 - v->voff;
316 greg 1.3 }
317    
318    
319 greg 2.16 void
320 greg 2.35 pix2loc( /* compute image location from pixel pos. */
321     RREAL loc[2],
322     RESOLU *rp,
323     int px,
324     int py
325     )
326 greg 1.17 {
327 greg 2.36 int x, y;
328 greg 1.17
329 greg 2.16 if (rp->rt & YMAJOR) {
330 greg 1.17 x = px;
331     y = py;
332     } else {
333     x = py;
334     y = px;
335     }
336 greg 2.16 if (rp->rt & XDECR)
337 greg 1.17 x = rp->xr-1 - x;
338 greg 2.16 if (rp->rt & YDECR)
339 greg 1.17 y = rp->yr-1 - y;
340     loc[0] = (x+.5)/rp->xr;
341     loc[1] = (y+.5)/rp->yr;
342     }
343    
344    
345 greg 2.16 void
346 greg 2.35 loc2pix( /* compute pixel pos. from image location */
347     int pp[2],
348     RESOLU *rp,
349     double lx,
350     double ly
351     )
352 greg 1.17 {
353 greg 2.36 int x, y;
354 greg 1.17
355 greg 2.37 x = (int)(lx*rp->xr + .5 - (lx < 0.0));
356     y = (int)(ly*rp->yr + .5 - (ly < 0.0));
357    
358 greg 2.16 if (rp->rt & XDECR)
359 greg 1.17 x = rp->xr-1 - x;
360 greg 2.16 if (rp->rt & YDECR)
361 greg 1.17 y = rp->yr-1 - y;
362 greg 2.16 if (rp->rt & YMAJOR) {
363 greg 1.17 pp[0] = x;
364     pp[1] = y;
365     } else {
366     pp[0] = y;
367     pp[1] = x;
368     }
369     }
370    
371    
372 greg 1.5 int
373 greg 2.35 getviewopt( /* process view argument */
374     VIEW *v,
375     int ac,
376     char *av[]
377     )
378 greg 1.5 {
379 greg 1.16 #define check(c,l) if ((av[0][c]&&av[0][c]!=' ') || \
380     badarg(ac-1,av+1,l)) return(-1)
381 greg 1.5
382 greg 1.9 if (ac <= 0 || av[0][0] != '-' || av[0][1] != 'v')
383 greg 1.5 return(-1);
384     switch (av[0][2]) {
385     case 't': /* type */
386     if (!av[0][3] || av[0][3]==' ')
387     return(-1);
388 greg 1.16 check(4,"");
389 greg 1.5 v->type = av[0][3];
390     return(0);
391     case 'p': /* point */
392 greg 1.16 check(3,"fff");
393 greg 1.5 v->vp[0] = atof(av[1]);
394     v->vp[1] = atof(av[2]);
395     v->vp[2] = atof(av[3]);
396     return(3);
397     case 'd': /* direction */
398 greg 1.16 check(3,"fff");
399 greg 1.5 v->vdir[0] = atof(av[1]);
400     v->vdir[1] = atof(av[2]);
401     v->vdir[2] = atof(av[3]);
402 greg 2.30 v->vdist = 1.;
403 greg 1.5 return(3);
404     case 'u': /* up */
405 greg 1.16 check(3,"fff");
406 greg 1.5 v->vup[0] = atof(av[1]);
407     v->vup[1] = atof(av[2]);
408     v->vup[2] = atof(av[3]);
409     return(3);
410     case 'h': /* horizontal size */
411 greg 1.16 check(3,"f");
412 greg 1.5 v->horiz = atof(av[1]);
413     return(1);
414     case 'v': /* vertical size */
415 greg 1.16 check(3,"f");
416 greg 1.5 v->vert = atof(av[1]);
417     return(1);
418 greg 2.7 case 'o': /* fore clipping plane */
419     check(3,"f");
420     v->vfore = atof(av[1]);
421     return(1);
422     case 'a': /* aft clipping plane */
423     check(3,"f");
424     v->vaft = atof(av[1]);
425     return(1);
426 greg 1.5 case 's': /* shift */
427 greg 1.16 check(3,"f");
428 greg 1.5 v->hoff = atof(av[1]);
429     return(1);
430     case 'l': /* lift */
431 greg 1.16 check(3,"f");
432 greg 1.5 v->voff = atof(av[1]);
433     return(1);
434     default:
435     return(-1);
436     }
437     #undef check
438     }
439    
440    
441     int
442 greg 2.35 sscanview( /* get view parameters from string */
443     VIEW *vp,
444     char *s
445     )
446 greg 1.1 {
447 greg 1.5 int ac;
448     char *av[4];
449     int na;
450     int nvopts = 0;
451    
452 greg 2.32 while (isspace(*s))
453     if (!*s++)
454     return(0);
455 greg 1.9 while (*s) {
456 greg 1.5 ac = 0;
457     do {
458 greg 2.21 if (ac || *s == '-')
459     av[ac++] = s;
460 greg 2.32 while (*s && !isspace(*s))
461 greg 1.5 s++;
462 greg 2.32 while (isspace(*s))
463 greg 1.5 s++;
464     } while (*s && ac < 4);
465     if ((na = getviewopt(vp, ac, av)) >= 0) {
466     if (na+1 < ac)
467     s = av[na+1];
468     nvopts++;
469 greg 1.9 } else if (ac > 1)
470     s = av[1];
471     }
472 greg 1.5 return(nvopts);
473 greg 1.1 }
474    
475    
476 greg 2.16 void
477 greg 2.35 fprintview( /* write out view parameters */
478     VIEW *vp,
479     FILE *fp
480     )
481 greg 1.1 {
482     fprintf(fp, " -vt%c", vp->type);
483     fprintf(fp, " -vp %.6g %.6g %.6g", vp->vp[0], vp->vp[1], vp->vp[2]);
484 greg 2.29 fprintf(fp, " -vd %.6g %.6g %.6g", vp->vdir[0]*vp->vdist,
485     vp->vdir[1]*vp->vdist,
486     vp->vdir[2]*vp->vdist);
487 greg 1.1 fprintf(fp, " -vu %.6g %.6g %.6g", vp->vup[0], vp->vup[1], vp->vup[2]);
488     fprintf(fp, " -vh %.6g -vv %.6g", vp->horiz, vp->vert);
489 greg 2.7 fprintf(fp, " -vo %.6g -va %.6g", vp->vfore, vp->vaft);
490 greg 1.9 fprintf(fp, " -vs %.6g -vl %.6g", vp->hoff, vp->voff);
491 greg 2.11 }
492    
493    
494     char *
495 greg 2.35 viewopt( /* translate to minimal view string */
496     VIEW *vp
497     )
498 greg 2.11 {
499     static char vwstr[128];
500 greg 2.36 char *cp = vwstr;
501 greg 2.11
502 greg 2.33 *cp = '\0';
503 greg 2.11 if (vp->type != stdview.type) {
504     sprintf(cp, " -vt%c", vp->type);
505     cp += strlen(cp);
506     }
507     if (!VEQ(vp->vp,stdview.vp)) {
508     sprintf(cp, " -vp %.6g %.6g %.6g",
509     vp->vp[0], vp->vp[1], vp->vp[2]);
510     cp += strlen(cp);
511     }
512 greg 2.29 if (!FEQ(vp->vdist,stdview.vdist) || !VEQ(vp->vdir,stdview.vdir)) {
513 greg 2.11 sprintf(cp, " -vd %.6g %.6g %.6g",
514 greg 2.29 vp->vdir[0]*vp->vdist,
515     vp->vdir[1]*vp->vdist,
516     vp->vdir[2]*vp->vdist);
517 greg 2.11 cp += strlen(cp);
518     }
519     if (!VEQ(vp->vup,stdview.vup)) {
520     sprintf(cp, " -vu %.6g %.6g %.6g",
521     vp->vup[0], vp->vup[1], vp->vup[2]);
522     cp += strlen(cp);
523     }
524     if (!FEQ(vp->horiz,stdview.horiz)) {
525     sprintf(cp, " -vh %.6g", vp->horiz);
526     cp += strlen(cp);
527     }
528     if (!FEQ(vp->vert,stdview.vert)) {
529     sprintf(cp, " -vv %.6g", vp->vert);
530     cp += strlen(cp);
531     }
532     if (!FEQ(vp->vfore,stdview.vfore)) {
533     sprintf(cp, " -vo %.6g", vp->vfore);
534     cp += strlen(cp);
535     }
536     if (!FEQ(vp->vaft,stdview.vaft)) {
537     sprintf(cp, " -va %.6g", vp->vaft);
538     cp += strlen(cp);
539     }
540     if (!FEQ(vp->hoff,stdview.hoff)) {
541     sprintf(cp, " -vs %.6g", vp->hoff);
542     cp += strlen(cp);
543     }
544     if (!FEQ(vp->voff,stdview.voff)) {
545     sprintf(cp, " -vl %.6g", vp->voff);
546     cp += strlen(cp);
547     }
548     return(vwstr);
549 greg 1.1 }
550    
551    
552 greg 2.3 int
553 greg 2.35 isview( /* is this a view string? */
554     char *s
555     )
556 greg 2.3 {
557 greg 2.25 static char *altname[]={NULL,VIEWSTR,"rpict","rview","rvu","rpiece","pinterp",NULL};
558 greg 2.5 extern char *progname;
559 greg 2.36 char *cp;
560     char **an;
561 greg 2.3 /* add program name to list */
562 greg 2.5 if (altname[0] == NULL) {
563     for (cp = progname; *cp; cp++)
564     ;
565     while (cp > progname && !ISDIRSEP(cp[-1]))
566     cp--;
567     altname[0] = cp;
568     }
569 greg 2.3 /* skip leading path */
570     cp = s;
571     while (*cp && *cp != ' ')
572     cp++;
573 greg 2.5 while (cp > s && !ISDIRSEP(cp[-1]))
574 greg 2.3 cp--;
575     for (an = altname; *an != NULL; an++)
576     if (!strncmp(*an, cp, strlen(*an)))
577     return(1);
578     return(0);
579     }
580 greg 1.1
581 greg 2.3
582 greg 1.15 struct myview {
583     VIEW *hv;
584     int ok;
585     };
586 greg 1.1
587 greg 1.15
588 gwlarson 2.14 static int
589 schorsch 2.26 gethview( /* get view from header */
590     char *s,
591     void *v
592     )
593 greg 1.1 {
594 schorsch 2.26 if (isview(s) && sscanview(((struct myview*)v)->hv, s) > 0)
595     ((struct myview*)v)->ok++;
596 gwlarson 2.14 return(0);
597 greg 1.1 }
598    
599    
600     int
601 greg 2.35 viewfile( /* get view from file */
602     char *fname,
603     VIEW *vp,
604     RESOLU *rp
605     )
606 greg 1.1 {
607 greg 1.15 struct myview mvs;
608 greg 1.1 FILE *fp;
609    
610 greg 2.16 if (fname == NULL || !strcmp(fname, "-"))
611     fp = stdin;
612     else if ((fp = fopen(fname, "r")) == NULL)
613 greg 1.1 return(-1);
614    
615 greg 1.15 mvs.hv = vp;
616     mvs.ok = 0;
617 greg 1.1
618 schorsch 2.26 getheader(fp, gethview, &mvs);
619 greg 1.8
620 greg 1.17 if (rp != NULL && !fgetsresolu(rp, fp))
621 greg 1.15 mvs.ok = 0;
622 greg 1.1
623     fclose(fp);
624    
625 greg 1.15 return(mvs.ok);
626 greg 1.1 }