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root/radiance/ray/src/cv/pabopto2bsdf.c
Revision: 2.42
Committed: Mon Nov 21 18:28:24 2022 UTC (17 months, 3 weeks ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad5R4, HEAD
Changes since 2.41: +2 -1 lines
Log Message:
fix(pabopto2bsdf): Added declaration of popen() needed for Windows

File Contents

# User Rev Content
1 greg 2.1 #ifndef lint
2 greg 2.42 static const char RCSid[] = "$Id: pabopto2bsdf.c,v 2.41 2021/04/05 21:06:32 greg Exp $";
3 greg 2.1 #endif
4     /*
5     * Load measured BSDF data in PAB-Opto format.
6 greg 2.29 * Assumes that surface-normal (Z-axis) faces into room unless -t option given.
7 greg 2.1 *
8     * G. Ward
9     */
10    
11 greg 2.20 #define _USE_MATH_DEFINES
12 greg 2.2 #include <stdlib.h>
13 greg 2.1 #include <ctype.h>
14 greg 2.6 #include <math.h>
15 greg 2.36 #include "rtio.h"
16 greg 2.1 #include "platform.h"
17 greg 2.42 #include "paths.h"
18 greg 2.1 #include "bsdfrep.h"
19     /* global argv[0] */
20     char *progname;
21    
22 greg 2.2 typedef struct {
23     const char *fname; /* input file path */
24 greg 2.27 double theta, phi; /* input angles (degrees) */
25     double up_phi; /* azimuth for "up" direction */
26 greg 2.20 int igp[2]; /* input grid position */
27 greg 2.2 int isDSF; /* data is DSF (rather than BSDF)? */
28 greg 2.28 int nspec; /* number of spectral samples */
29 greg 2.2 long dstart; /* data start offset in file */
30     } PGINPUT;
31    
32     PGINPUT *inpfile; /* input files sorted by incidence */
33    
34 greg 2.29 int rev_orient = 0; /* shall we reverse surface orientation? */
35    
36 greg 2.40 double lim_graze = 0; /* limit scattering near grazing (deg above) */
37    
38 greg 2.2 /* Compare incident angles */
39     static int
40 greg 2.20 cmp_indir(const void *p1, const void *p2)
41 greg 2.2 {
42     const PGINPUT *inp1 = (const PGINPUT *)p1;
43     const PGINPUT *inp2 = (const PGINPUT *)p2;
44 greg 2.20 int ydif = inp1->igp[1] - inp2->igp[1];
45 greg 2.2
46 greg 2.20 if (ydif)
47     return(ydif);
48    
49     return(inp1->igp[0] - inp2->igp[0]);
50 greg 2.2 }
51    
52 greg 2.37 /* Assign grid position from theta and phi */
53     static void
54     set_grid_pos(PGINPUT *pip)
55     {
56     FVECT dv;
57    
58     if (pip->theta <= FTINY) {
59     pip->igp[0] = pip->igp[1] = grid_res/2 - 1;
60     return;
61     }
62     dv[2] = sin(M_PI/180.*pip->theta);
63     dv[0] = cos(M_PI/180.*pip->phi)*dv[2];
64     dv[1] = sin(M_PI/180.*pip->phi)*dv[2];
65     dv[2] = sqrt(1. - dv[2]*dv[2]);
66     pos_from_vec(pip->igp, dv);
67     }
68    
69 greg 2.2 /* Prepare a PAB-Opto input file by reading its header */
70 greg 2.1 static int
71 greg 2.2 init_pabopto_inp(const int i, const char *fname)
72 greg 2.1 {
73     FILE *fp = fopen(fname, "r");
74     char buf[2048];
75 greg 2.2 int c;
76 greg 2.1
77     if (fp == NULL) {
78     fputs(fname, stderr);
79     fputs(": cannot open\n", stderr);
80     return(0);
81     }
82 greg 2.2 inpfile[i].fname = fname;
83     inpfile[i].isDSF = -1;
84 greg 2.28 inpfile[i].nspec = 0;
85 greg 2.27 inpfile[i].up_phi = 0;
86 greg 2.2 inpfile[i].theta = inpfile[i].phi = -10001.;
87 greg 2.1 /* read header information */
88     while ((c = getc(fp)) == '#' || c == EOF) {
89 greg 2.28 char typ[64];
90 greg 2.1 if (fgets(buf, sizeof(buf), fp) == NULL) {
91     fputs(fname, stderr);
92     fputs(": unexpected EOF\n", stderr);
93     fclose(fp);
94     return(0);
95     }
96 greg 2.10 if (sscanf(buf, "sample_name \"%[^\"]\"", bsdf_name) == 1)
97     continue;
98 greg 2.28 if (sscanf(buf, "colorimetry: %s", typ) == 1) {
99     if (!strcasecmp(typ, "CIE-XYZ"))
100     inpfile[i].nspec = 3;
101     else if (!strcasecmp(typ, "CIE-Y"))
102     inpfile[i].nspec = 1;
103     continue;
104     }
105 greg 2.5 if (sscanf(buf, "format: theta phi %s", typ) == 1) {
106 greg 2.28 if (!strcasecmp(typ, "DSF"))
107 greg 2.5 inpfile[i].isDSF = 1;
108 greg 2.28 else if (!strcasecmp(typ, "BSDF") ||
109 greg 2.23 !strcasecmp(typ, "BRDF") ||
110 greg 2.28 !strcasecmp(typ, "BTDF"))
111 greg 2.5 inpfile[i].isDSF = 0;
112 greg 2.28 continue;
113 greg 2.1 }
114 greg 2.27 if (sscanf(buf, "upphi %lf", &inpfile[i].up_phi) == 1)
115     continue;
116 greg 2.2 if (sscanf(buf, "intheta %lf", &inpfile[i].theta) == 1)
117 greg 2.1 continue;
118 greg 2.2 if (sscanf(buf, "inphi %lf", &inpfile[i].phi) == 1)
119 greg 2.1 continue;
120     if (sscanf(buf, "incident_angle %lf %lf",
121 greg 2.2 &inpfile[i].theta, &inpfile[i].phi) == 2)
122 greg 2.1 continue;
123     }
124 greg 2.2 inpfile[i].dstart = ftell(fp) - 1;
125     fclose(fp);
126     if (inpfile[i].isDSF < 0) {
127 greg 2.1 fputs(fname, stderr);
128     fputs(": unknown format\n", stderr);
129     return(0);
130     }
131 greg 2.2 if ((inpfile[i].theta < -10000.) | (inpfile[i].phi < -10000.)) {
132     fputs(fname, stderr);
133     fputs(": unknown incident angle\n", stderr);
134     return(0);
135     }
136 greg 2.29 if (rev_orient) { /* reverse Z-axis to face outside */
137     inpfile[i].theta = 180. - inpfile[i].theta;
138     inpfile[i].phi = 360. - inpfile[i].phi;
139     }
140 greg 2.27 /* convert to Y-up orientation */
141     inpfile[i].phi += 90.-inpfile[i].up_phi;
142 greg 2.20 /* convert angle to grid position */
143 greg 2.37 set_grid_pos(&inpfile[i]);
144 greg 2.2 return(1);
145     }
146    
147     /* Load a set of measurements corresponding to a particular incident angle */
148     static int
149     add_pabopto_inp(const int i)
150     {
151 greg 2.19 FILE *fp = fopen(inpfile[i].fname, "r");
152 greg 2.28 double theta_out, phi_out, val[3];
153 greg 2.19 int n, c;
154 greg 2.2
155     if (fp == NULL || fseek(fp, inpfile[i].dstart, 0) == EOF) {
156     fputs(inpfile[i].fname, stderr);
157     fputs(": cannot open\n", stderr);
158     return(0);
159     }
160 greg 2.1 /* prepare input grid */
161 greg 2.20 if (!i || cmp_indir(&inpfile[i-1], &inpfile[i])) {
162     if (i) /* process previous incidence */
163 greg 2.2 make_rbfrep();
164     #ifdef DEBUG
165 greg 2.22 fprintf(stderr, "New incident (theta,phi)=(%.1f,%.1f)\n",
166 greg 2.2 inpfile[i].theta, inpfile[i].phi);
167     #endif
168 greg 2.28 if (inpfile[i].nspec)
169     set_spectral_samples(inpfile[i].nspec);
170 greg 2.2 new_bsdf_data(inpfile[i].theta, inpfile[i].phi);
171     }
172 greg 2.3 #ifdef DEBUG
173     fprintf(stderr, "Loading measurements from '%s'...\n", inpfile[i].fname);
174     #endif
175 greg 2.2 /* read scattering data */
176 greg 2.28 while (fscanf(fp, "%lf %lf %lf", &theta_out, &phi_out, val) == 3) {
177     for (n = 1; n < inpfile[i].nspec; n++)
178     if (fscanf(fp, "%lf", val+n) != 1) {
179     fprintf(stderr, "%s: warning: unexpected EOF\n",
180     inpfile[i].fname);
181     fclose(fp);
182     return(1);
183     }
184 greg 2.40 /* check if scatter angle is too low */
185     if (fabs(theta_out - 90.) < lim_graze-FTINY)
186     continue;
187     if (rev_orient) { /* reverse Z-axis to face outside? */
188 greg 2.29 theta_out = 180. - theta_out;
189     phi_out = 360. - phi_out;
190     }
191 greg 2.37 phi_out += 90.-inpfile[i].up_phi;
192     add_bsdf_data(theta_out, phi_out, val, inpfile[i].isDSF);
193 greg 2.28 }
194 greg 2.1 n = 0;
195     while ((c = getc(fp)) != EOF)
196     n += !isspace(c);
197     if (n)
198     fprintf(stderr,
199     "%s: warning: %d unexpected characters past EOD\n",
200 greg 2.2 inpfile[i].fname, n);
201 greg 2.1 fclose(fp);
202     return(1);
203     }
204    
205 greg 2.8 #ifndef TEST_MAIN
206 greg 2.35
207     #define SYM_ILL '?' /* illegal symmetry value */
208     #define SYM_ISO 'I' /* isotropic */
209     #define SYM_QUAD 'Q' /* quadrilateral symmetry */
210     #define SYM_BILAT 'B' /* bilateral symmetry */
211     #define SYM_ANISO 'A' /* anisotropic */
212 greg 2.37 #define SYM_UP 'U' /* "up-down" (180°) symmetry */
213 greg 2.35
214     static const char quadrant_rep[16][16] = {
215     "in-plane","0-90","90-180","0-180",
216     "180-270","0-90+180-270","90-270",
217     "0-270","270-360","270-90",
218     "90-180+270-360","270-180","180-360",
219     "180-90","90-360","0-360"
220     };
221     static const char quadrant_sym[16] = {
222     SYM_ISO, SYM_QUAD, SYM_QUAD, SYM_BILAT,
223     SYM_QUAD, SYM_ILL, SYM_BILAT, SYM_ILL,
224     SYM_QUAD, SYM_BILAT, SYM_ILL, SYM_ILL,
225     SYM_BILAT, SYM_ILL, SYM_ILL, SYM_ANISO
226     };
227    
228 greg 2.1 /* Read in PAB-Opto BSDF files and output RBF interpolant */
229     int
230     main(int argc, char *argv[])
231     {
232 greg 2.35 extern int nprocs;
233 greg 2.41 static char gval_buf[16];
234     char * auto_grazing = NULL;
235 greg 2.37 const char *symmetry = "0";
236     int ninpfiles, totinc;
237     int a, i;
238 greg 2.39
239 greg 2.1 progname = argv[0]; /* get options */
240 greg 2.37 for (a = 1; a < argc && argv[a][0] == '-'; a++)
241     switch (argv[a][1]) {
242 greg 2.29 case 't':
243     rev_orient = !rev_orient;
244     break;
245 greg 2.1 case 'n':
246 greg 2.37 nprocs = atoi(argv[++a]);
247 greg 2.1 break;
248 greg 2.33 case 's':
249 greg 2.37 symmetry = argv[++a];
250 greg 2.33 break;
251 greg 2.40 case 'g':
252     if (toupper(argv[a+1][0]) == 'A')
253 greg 2.41 auto_grazing = argv[a+1] = gval_buf;
254 greg 2.40 else
255     lim_graze = atof(argv[a+1]);
256     ++a;
257     break;
258 greg 2.1 default:
259     goto userr;
260     }
261 greg 2.37 totinc = ninpfiles = argc - a; /* initialize & sort inputs */
262 greg 2.2 if (ninpfiles < 2)
263 greg 2.1 goto userr;
264 greg 2.37 if (toupper(symmetry[0]) == SYM_UP) /* special case for "up" symmetry */
265     totinc += ninpfiles;
266     inpfile = (PGINPUT *)malloc(sizeof(PGINPUT)*totinc);
267 greg 2.2 if (inpfile == NULL)
268     return(1);
269 greg 2.40 if (auto_grazing)
270     lim_graze = 90.;
271     for (i = 0; i < ninpfiles; i++) {
272 greg 2.37 if (!init_pabopto_inp(i, argv[a+i]))
273 greg 2.1 return(1);
274 greg 2.40 if (auto_grazing && fabs(inpfile[i].theta - 90.) < lim_graze)
275     lim_graze = fabs(inpfile[i].theta - 90.);
276     }
277 greg 2.41 if (auto_grazing)
278     sprintf(auto_grazing, "%.2f", lim_graze);
279 greg 2.37 for (i = ninpfiles; i < totinc; i++) { /* copy for "up" symmetry */
280     inpfile[i] = inpfile[i-ninpfiles];
281     inpfile[i].phi += 180.; /* invert duplicate data */
282     inpfile[i].up_phi -= 180.;
283     set_grid_pos(&inpfile[i]); /* grid location for sorting */
284     }
285 greg 2.38 qsort(inpfile, totinc, sizeof(PGINPUT), cmp_indir);
286 greg 2.2 /* compile measurements */
287 greg 2.37 for (i = 0; i < totinc; i++)
288 greg 2.2 if (!add_pabopto_inp(i))
289     return(1);
290     make_rbfrep(); /* process last data set */
291 greg 2.33 /* check input symmetry */
292     switch (toupper(symmetry[0])) {
293 greg 2.37 case '0': /* unspecified symmetry */
294 greg 2.35 if (quadrant_sym[inp_coverage] != SYM_ILL)
295     break; /* anything legal goes */
296     fprintf(stderr, "%s: unsupported phi coverage (%s)\n",
297     progname, quadrant_rep[inp_coverage]);
298     return(1);
299 greg 2.37 case SYM_UP: /* faux "up" symmetry */
300     if (quadrant_sym[inp_coverage] == SYM_ANISO)
301     break;
302     /* fall through */
303     case SYM_ISO: /* usual symmetry types */
304 greg 2.35 case SYM_QUAD:
305     case SYM_BILAT:
306     case SYM_ANISO:
307     if (quadrant_sym[inp_coverage] == toupper(symmetry[0]))
308     break; /* matches spec */
309     fprintf(stderr,
310     "%s: phi coverage (%s) does not match requested '%s' symmetry\n",
311     progname, quadrant_rep[inp_coverage], symmetry);
312     return(1);
313 greg 2.33 default:
314     fprintf(stderr,
315 greg 2.37 "%s: -s option must be Isotropic, Quadrilateral, Bilateral, Up, or Anisotropic\n",
316 greg 2.33 progname);
317     return(1);
318     }
319     #ifdef DEBUG
320 greg 2.35 fprintf(stderr, "Input phi coverage (%s) has '%c' symmetry\n",
321     quadrant_rep[inp_coverage],
322     quadrant_sym[inp_coverage]);
323 greg 2.33 #endif
324 greg 2.1 build_mesh(); /* create interpolation */
325 greg 2.39 SET_FILE_BINARY(stdout); /* start header */
326     newheader("RADIANCE", stdout);
327     printargs(argc, argv, stdout);
328     fputnow(stdout);
329     save_bsdf_rep(stdout); /* complete header + data */
330 greg 2.1 return(0);
331     userr:
332 greg 2.40 fprintf(stderr, "Usage: %s [-t][-n nproc][-s symmetry][-g angle|'A'] meas1.dat meas2.dat .. > bsdf.sir\n",
333 greg 2.1 progname);
334     return(1);
335     }
336 greg 2.35
337     #else /* TEST_MAIN */
338    
339 greg 2.6 /* Test main produces a Radiance model from the given input file */
340     int
341     main(int argc, char *argv[])
342     {
343     PGINPUT pginp;
344     char buf[128];
345     FILE *pfp;
346     double bsdf, min_log;
347     FVECT dir;
348     int i, j, n;
349    
350 greg 2.21 progname = argv[0];
351 greg 2.6 if (argc != 2) {
352 greg 2.21 fprintf(stderr, "Usage: %s input.dat > output.rad\n", progname);
353 greg 2.6 return(1);
354     }
355     inpfile = &pginp;
356     if (!init_pabopto_inp(0, argv[1]) || !add_pabopto_inp(0))
357     return(1);
358     /* reduce data set */
359 greg 2.21 if (make_rbfrep() == NULL) {
360     fprintf(stderr, "%s: nothing to plot!\n", progname);
361     exit(1);
362     }
363 greg 2.9 #ifdef DEBUG
364     fprintf(stderr, "Minimum BSDF = %.4f\n", bsdf_min);
365     #endif
366 greg 2.13 min_log = log(bsdf_min*.5 + 1e-5);
367 greg 2.11 #if 1 /* produce spheres at meas. */
368 greg 2.6 puts("void plastic yellow\n0\n0\n5 .6 .4 .01 .04 .08\n");
369     n = 0;
370 greg 2.28 for (i = 0; i < grid_res; i++)
371     for (j = 0; j < grid_res; j++)
372 greg 2.16 if (dsf_grid[i][j].sum.n > 0) {
373 greg 2.6 ovec_from_pos(dir, i, j);
374 greg 2.16 bsdf = dsf_grid[i][j].sum.v /
375 greg 2.24 ((double)dsf_grid[i][j].sum.n*output_orient*dir[2]);
376 greg 2.6 if (bsdf <= bsdf_min*.6)
377     continue;
378 greg 2.14 bsdf = log(bsdf + 1e-5) - min_log;
379 greg 2.7 ovec_from_pos(dir, i, j);
380     printf("yellow sphere s%04d\n0\n0\n", ++n);
381     printf("4 %.6g %.6g %.6g %.6g\n\n",
382 greg 2.6 dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf,
383 greg 2.7 .007*bsdf);
384 greg 2.6 }
385 greg 2.11 #endif
386     #if 1 /* spheres at RBF peaks */
387     puts("void plastic red\n0\n0\n5 .8 .01 .01 .04 .08\n");
388     for (n = 0; n < dsf_list->nrbf; n++) {
389     RBFVAL *rbf = &dsf_list->rbfa[n];
390     ovec_from_pos(dir, rbf->gx, rbf->gy);
391 greg 2.26 bsdf = eval_rbfrep(dsf_list, dir);
392 greg 2.14 bsdf = log(bsdf + 1e-5) - min_log;
393 greg 2.11 printf("red sphere p%04d\n0\n0\n", ++n);
394     printf("4 %.6g %.6g %.6g %.6g\n\n",
395     dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf,
396     .011*bsdf);
397     }
398     #endif
399     #if 1 /* output continuous surface */
400 greg 2.6 puts("void trans tgreen\n0\n0\n7 .7 1 .7 .04 .04 .9 1\n");
401     fflush(stdout);
402 greg 2.28 sprintf(buf, "gensurf tgreen bsdf - - - %d %d", grid_res-1, grid_res-1);
403 greg 2.6 pfp = popen(buf, "w");
404     if (pfp == NULL) {
405 greg 2.21 fprintf(stderr, "%s: cannot open '| %s'\n", progname, buf);
406 greg 2.6 return(1);
407     }
408 greg 2.28 for (i = 0; i < grid_res; i++)
409     for (j = 0; j < grid_res; j++) {
410 greg 2.6 ovec_from_pos(dir, i, j);
411 greg 2.26 bsdf = eval_rbfrep(dsf_list, dir);
412 greg 2.14 bsdf = log(bsdf + 1e-5) - min_log;
413 greg 2.6 fprintf(pfp, "%.8e %.8e %.8e\n",
414     dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf);
415     }
416 greg 2.11 if (pclose(pfp) != 0)
417     return(1);
418     #endif
419     return(0);
420 greg 2.6 }
421 greg 2.35
422     #endif /* TEST_MAIN */