ViewVC Help
View File | Revision Log | Show Annotations | Download File | Root Listing
root/radiance/ray/src/cv/bsdf2rad.c
Revision: 2.32
Committed: Thu Aug 3 19:50:12 2017 UTC (6 years, 9 months ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad5R1
Changes since 2.31: +13 -9 lines
Log Message:
Added numbering to arrows

File Contents

# User Rev Content
1 greg 2.1 #ifndef lint
2 greg 2.32 static const char RCSid[] = "$Id: bsdf2rad.c,v 2.31 2017/05/31 02:41:52 greg Exp $";
3 greg 2.1 #endif
4     /*
5 greg 2.4 * Plot 3-D BSDF output based on scattering interpolant or XML representation
6 greg 2.1 */
7    
8     #include <stdio.h>
9 greg 2.4 #include <string.h>
10 greg 2.1 #include <stdlib.h>
11 greg 2.16 #include "paths.h"
12     #include "rtmath.h"
13     #include "resolu.h"
14 greg 2.1 #include "bsdfrep.h"
15    
16 greg 2.18 #define NINCIDENT 37 /* number of samples/hemisphere */
17 greg 2.1
18 greg 2.16 #define GRIDSTEP 2 /* our grid step size */
19     #define SAMPRES (GRIDRES/GRIDSTEP)
20    
21     int front_comp = 0; /* front component flags (SDsamp*) */
22     int back_comp = 0; /* back component flags */
23     double overall_min = 1./PI; /* overall minimum BSDF value */
24     double min_log10; /* smallest log10 value for plotting */
25     double overall_max = .0; /* overall maximum BSDF value */
26    
27     char ourTempDir[TEMPLEN] = ""; /* our temporary directory */
28    
29 greg 2.26 const char frpref[] = "rf";
30     const char ftpref[] = "tf";
31     const char brpref[] = "rb";
32     const char btpref[] = "tb";
33 greg 2.16 const char dsuffix[] = ".txt";
34    
35 greg 2.24 const char sph_fmat[] = "fBSDFmat";
36     const char sph_bmat[] = "bBSDFmat";
37 greg 2.16 const double sph_rad = 10.;
38     const double sph_xoffset = 15.;
39    
40     #define bsdf_rad (sph_rad*.25)
41     #define arrow_rad (bsdf_rad*.015)
42    
43     #define FEQ(a,b) ((a)-(b) <= 1e-7 && (b)-(a) <= 1e-7)
44    
45 greg 2.30 #define set_minlog() overall_min = (overall_min < 1e-5) ? 1e-5 : overall_min; \
46     min_log10 = log10(overall_min) - .1
47 greg 2.16
48     char *progname;
49    
50     /* Get Fibonacci sphere vector (0 to NINCIDENT-1) */
51 greg 2.19 static RREAL *
52 greg 2.16 get_ivector(FVECT iv, int i)
53     {
54     const double phistep = PI*(3. - 2.236067978);
55     double r;
56    
57 greg 2.18 iv[2] = 1. - (i+.5)*(1./NINCIDENT);
58 greg 2.16 r = sqrt(1. - iv[2]*iv[2]);
59     iv[0] = r * cos((i+1.)*phistep);
60     iv[1] = r * sin((i+1.)*phistep);
61 greg 2.19
62     return(iv);
63     }
64    
65     /* Convert incident vector into sphere position */
66     static RREAL *
67     cvt_sposition(FVECT sp, const FVECT iv, int inc_side)
68     {
69 greg 2.20 sp[0] = -iv[0]*sph_rad + inc_side*sph_xoffset;
70 greg 2.19 sp[1] = -iv[1]*sph_rad;
71     sp[2] = iv[2]*sph_rad;
72    
73     return(sp);
74 greg 2.16 }
75    
76     /* Get temporary file name */
77     static char *
78     tfile_name(const char *prefix, const char *suffix, int i)
79     {
80     static char buf[128];
81    
82     if (!ourTempDir[0]) { /* create temporary directory */
83     mktemp(strcpy(ourTempDir,TEMPLATE));
84     if (mkdir(ourTempDir, 0777) < 0) {
85     perror("mkdir");
86     exit(1);
87     }
88     }
89     if (!prefix) prefix = "T";
90     if (!suffix) suffix = "";
91     sprintf(buf, "%s/%s%03d%s", ourTempDir, prefix, i, suffix);
92     return(buf);
93     }
94    
95     /* Remove temporary directory & contents */
96     static void
97     cleanup_tmp(void)
98     {
99     char buf[128];
100    
101     if (!ourTempDir[0])
102     return;
103 schorsch 2.15 #if defined(_WIN32) || defined(_WIN64)
104 greg 2.16 sprintf(buf, "RMDIR %s /S /Q", ourTempDir);
105 greg 2.11 #else
106 greg 2.16 sprintf(buf, "rm -rf %s", ourTempDir);
107 greg 2.11 #endif
108 greg 2.16 system(buf);
109     }
110    
111     /* Run the specified command, returning 1 if OK */
112     static int
113     run_cmd(const char *cmd)
114     {
115     fflush(stdout);
116     if (system(cmd)) {
117     fprintf(stderr, "%s: error running: %s\n", progname, cmd);
118     return(0);
119     }
120     return(1);
121     }
122    
123     /* Plot surface points for the given BSDF incident angle */
124     static int
125     plotBSDF(const char *fname, const FVECT ivec, int dfl, const SDData *sd)
126     {
127     FILE *fp = fopen(fname, "w");
128     int i, j;
129    
130     if (fp == NULL) {
131     fprintf(stderr, "%s: cannot open '%s' for writing\n",
132     progname, fname);
133     return(0);
134     }
135     if (ivec[2] > 0) {
136     input_orient = 1;
137     output_orient = dfl&SDsampR ? 1 : -1;
138     } else {
139     input_orient = -1;
140     output_orient = dfl&SDsampR ? -1 : 1;
141     }
142     for (i = SAMPRES; i--; )
143     for (j = 0; j < SAMPRES; j++) {
144     FVECT ovec;
145     SDValue sval;
146     double bsdf;
147     ovec_from_pos(ovec, i*GRIDSTEP, j*GRIDSTEP);
148     if (SDreportError(SDevalBSDF(&sval, ovec,
149     ivec, sd), stderr))
150     return(0);
151     if (sval.cieY > overall_max)
152     overall_max = sval.cieY;
153     bsdf = (sval.cieY < overall_min) ? overall_min : sval.cieY;
154     bsdf = log10(bsdf) - min_log10;
155     fprintf(fp, "%.5f %.5f %.5f\n",
156     ovec[0]*bsdf, ovec[1]*bsdf, ovec[2]*bsdf);
157     }
158     if (fclose(fp) == EOF) {
159     fprintf(stderr, "%s: error writing data to '%s'\n",
160     progname, fname);
161     return(0);
162     }
163     return(1);
164     }
165    
166     /* Build BSDF values from loaded XML file */
167     static int
168     build_wBSDF(const SDData *sd)
169     {
170     FVECT ivec;
171     int i;
172    
173     if (front_comp & SDsampR)
174     for (i = 0; i < NINCIDENT; i++) {
175     get_ivector(ivec, i);
176     if (!plotBSDF(tfile_name(frpref, dsuffix, i),
177     ivec, SDsampR, sd))
178     return(0);
179     }
180     if (front_comp & SDsampT)
181     for (i = 0; i < NINCIDENT; i++) {
182     get_ivector(ivec, i);
183     if (!plotBSDF(tfile_name(ftpref, dsuffix, i),
184     ivec, SDsampT, sd))
185     return(0);
186     }
187     if (back_comp & SDsampR)
188     for (i = 0; i < NINCIDENT; i++) {
189     get_ivector(ivec, i);
190     ivec[0] = -ivec[0]; ivec[2] = -ivec[2];
191     if (!plotBSDF(tfile_name(brpref, dsuffix, i),
192     ivec, SDsampR, sd))
193     return(0);
194     }
195     if (back_comp & SDsampT)
196     for (i = 0; i < NINCIDENT; i++) {
197     get_ivector(ivec, i);
198     ivec[0] = -ivec[0]; ivec[2] = -ivec[2];
199     if (!plotBSDF(tfile_name(btpref, dsuffix, i),
200     ivec, SDsampT, sd))
201     return(0);
202     }
203     return(1);
204     }
205    
206     /* Plot surface points using radial basis function */
207     static int
208     plotRBF(const char *fname, const RBFNODE *rbf)
209     {
210     FILE *fp = fopen(fname, "w");
211     int i, j;
212    
213     if (fp == NULL) {
214     fprintf(stderr, "%s: cannot open '%s' for writing\n",
215     progname, fname);
216     return(0);
217     }
218     for (i = SAMPRES; i--; )
219     for (j = 0; j < SAMPRES; j++) {
220     FVECT ovec;
221     double bsdf;
222     ovec_from_pos(ovec, i*GRIDSTEP, j*GRIDSTEP);
223     bsdf = eval_rbfrep(rbf, ovec);
224     if (bsdf > overall_max)
225     overall_max = bsdf;
226     else if (bsdf < overall_min)
227     bsdf = overall_min;
228     bsdf = log10(bsdf) - min_log10;
229     fprintf(fp, "%.5f %.5f %.5f\n",
230     ovec[0]*bsdf, ovec[1]*bsdf, ovec[2]*bsdf);
231     }
232     if (fclose(fp) == EOF) {
233     fprintf(stderr, "%s: error writing data to '%s'\n",
234     progname, fname);
235     return(0);
236     }
237     return(1);
238     }
239    
240     /* Build BSDF values from scattering interpolant representation */
241     static int
242     build_wRBF(void)
243     {
244     const char *pref;
245     int i;
246    
247     if (input_orient > 0) {
248     if (output_orient > 0)
249     pref = frpref;
250     else
251     pref = ftpref;
252     } else if (output_orient < 0)
253     pref = brpref;
254     else
255     pref = btpref;
256    
257     for (i = 0; i < NINCIDENT; i++) {
258     FVECT ivec;
259     RBFNODE *rbf;
260     get_ivector(ivec, i);
261     if (input_orient < 0) {
262 greg 2.19 ivec[0] = -ivec[0]; ivec[2] = -ivec[2];
263 greg 2.16 }
264     rbf = advect_rbf(ivec, 15000);
265     if (!plotRBF(tfile_name(pref, dsuffix, i), rbf))
266     return(0);
267     if (rbf) free(rbf);
268     }
269     return(1); /* next call frees */
270     }
271    
272     /* Put out mirror arrow for the given incident vector */
273     static void
274 greg 2.25 put_mirror_arrow(const FVECT origin, const FVECT nrm)
275 greg 2.16 {
276     const double arrow_len = 1.2*bsdf_rad;
277     const double tip_len = 0.2*bsdf_rad;
278 greg 2.32 static int cnt = 1;
279 greg 2.25 FVECT refl;
280 greg 2.16 int i;
281    
282 greg 2.25 refl[0] = 2.*nrm[2]*nrm[0];
283     refl[1] = 2.*nrm[2]*nrm[1];
284     refl[2] = 2.*nrm[2]*nrm[2] - 1.;
285 greg 2.16
286 greg 2.32 printf("\n# Mirror arrow #%d\n", cnt);
287     printf("\nshaft_mat cylinder inc_dir%d\n0\n0\n7", cnt);
288 greg 2.16 printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n",
289     origin[0], origin[1], origin[2]+arrow_len,
290     origin[0], origin[1], origin[2],
291     arrow_rad);
292 greg 2.32 printf("\nshaft_mat cylinder mir_dir%d\n0\n0\n7", cnt);
293 greg 2.16 printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n",
294     origin[0], origin[1], origin[2],
295     origin[0] + arrow_len*refl[0],
296     origin[1] + arrow_len*refl[1],
297     origin[2] + arrow_len*refl[2],
298     arrow_rad);
299 greg 2.32 printf("\ntip_mat cone mir_tip%d\n0\n0\n8", cnt);
300 greg 2.16 printf("\n\t%f %f %f\n\t%f %f %f\n\t%f 0\n",
301     origin[0] + (arrow_len-.5*tip_len)*refl[0],
302     origin[1] + (arrow_len-.5*tip_len)*refl[1],
303     origin[2] + (arrow_len-.5*tip_len)*refl[2],
304     origin[0] + (arrow_len+.5*tip_len)*refl[0],
305     origin[1] + (arrow_len+.5*tip_len)*refl[1],
306     origin[2] + (arrow_len+.5*tip_len)*refl[2],
307     2.*arrow_rad);
308 greg 2.32 ++cnt;
309 greg 2.16 }
310    
311     /* Put out transmitted direction arrow for the given incident vector */
312     static void
313 greg 2.25 put_trans_arrow(const FVECT origin)
314 greg 2.16 {
315     const double arrow_len = 1.2*bsdf_rad;
316     const double tip_len = 0.2*bsdf_rad;
317 greg 2.32 static int cnt = 1;
318 greg 2.16 int i;
319    
320 greg 2.32 printf("\n# Transmission arrow #%d\n", cnt);
321     printf("\nshaft_mat cylinder trans_dir%d\n0\n0\n7", cnt);
322 greg 2.16 printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n",
323     origin[0], origin[1], origin[2],
324     origin[0], origin[1], origin[2]-arrow_len,
325     arrow_rad);
326 greg 2.32 printf("\ntip_mat cone trans_tip%d\n0\n0\n8", cnt);
327 greg 2.16 printf("\n\t%f %f %f\n\t%f %f %f\n\t%f 0\n",
328     origin[0], origin[1], origin[2]-arrow_len+.5*tip_len,
329     origin[0], origin[1], origin[2]-arrow_len-.5*tip_len,
330 greg 2.32 2.*arrow_rad);
331     ++cnt;
332 greg 2.16 }
333    
334     /* Compute rotation (x,y,z) => (xp,yp,zp) */
335     static int
336     addrot(char *xf, const FVECT xp, const FVECT yp, const FVECT zp)
337     {
338     int n = 0;
339     double theta;
340 greg 2.10
341 greg 2.16 if (yp[2]*yp[2] + zp[2]*zp[2] < 2.*FTINY*FTINY) {
342     /* Special case for X' along Z-axis */
343     theta = -atan2(yp[0], yp[1]);
344     sprintf(xf, " -ry %f -rz %f",
345     xp[2] < 0.0 ? 90.0 : -90.0,
346     theta*(180./PI));
347     return(4);
348     }
349     theta = atan2(yp[2], zp[2]);
350     if (!FEQ(theta,0.0)) {
351     sprintf(xf, " -rx %f", theta*(180./PI));
352     while (*xf) ++xf;
353     n += 2;
354     }
355     theta = Asin(-xp[2]);
356     if (!FEQ(theta,0.0)) {
357     sprintf(xf, " -ry %f", theta*(180./PI));
358     while (*xf) ++xf;
359     n += 2;
360     }
361     theta = atan2(xp[1], xp[0]);
362     if (!FEQ(theta,0.0)) {
363     sprintf(xf, " -rz %f", theta*(180./PI));
364     /* while (*xf) ++xf; */
365     n += 2;
366     }
367     return(n);
368     }
369    
370     /* Put out BSDF surfaces */
371     static int
372     put_BSDFs(void)
373     {
374     const double scalef = bsdf_rad/(log10(overall_max) - min_log10);
375 greg 2.25 FVECT ivec, sorg, nrm, upv;
376 greg 2.16 RREAL vMtx[3][3];
377     char *fname;
378     char cmdbuf[256];
379 greg 2.25 char rotargs[64];
380     int nrota;
381 greg 2.16 int i;
382    
383     printf("\n# Gensurf output corresponding to %d incident directions\n",
384     NINCIDENT);
385    
386 greg 2.29 printf("\nvoid glow tip_mat\n0\n0\n4 1 0 1 0\n");
387     printf("\nvoid mixfunc shaft_mat\n4 tip_mat void 0.25 .\n0\n0\n");
388 greg 2.16
389 greg 2.25 for (i = 0; i < NINCIDENT; i++) {
390     get_ivector(ivec, i);
391     nrm[0] = -ivec[0]; nrm[1] = -ivec[1]; nrm[2] = ivec[2];
392     upv[0] = nrm[0]*nrm[1]*(nrm[2] - 1.);
393     upv[1] = nrm[0]*nrm[0] + nrm[1]*nrm[1]*nrm[2];
394     upv[2] = -nrm[1]*(nrm[0]*nrm[0] + nrm[1]*nrm[1]);
395     if (SDcompXform(vMtx, nrm, upv) != SDEnone)
396     continue;
397     nrota = addrot(rotargs, vMtx[0], vMtx[1], vMtx[2]);
398     if (front_comp) {
399 greg 2.19 cvt_sposition(sorg, ivec, 1);
400 greg 2.16 printf("\nvoid colorfunc scale_pat\n");
401 greg 2.25 printf("10 bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n");
402     printf("\t-s %f -t %f %f %f\n0\n0\n",
403     bsdf_rad, sorg[0], sorg[1], sorg[2]);
404 greg 2.16 printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n");
405 greg 2.25 }
406     if (front_comp & SDsampR) {
407     put_mirror_arrow(sorg, nrm);
408 greg 2.16 fname = tfile_name(frpref, dsuffix, i);
409 greg 2.25 sprintf(cmdbuf,
410     "gensurf scale_mat %s%d %s %s %s %d %d | xform %s -s %f -t %f %f %f",
411 greg 2.20 frpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1,
412 greg 2.25 rotargs, scalef, sorg[0], sorg[1], sorg[2]);
413 greg 2.16 if (!run_cmd(cmdbuf))
414     return(0);
415     }
416 greg 2.25 if (front_comp & SDsampT) {
417     put_trans_arrow(sorg);
418 greg 2.16 fname = tfile_name(ftpref, dsuffix, i);
419 greg 2.25 sprintf(cmdbuf,
420     "gensurf scale_mat %s%d %s %s %s %d %d | xform -I %s -s %f -t %f %f %f",
421 greg 2.20 ftpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1,
422 greg 2.25 rotargs, scalef, sorg[0], sorg[1], sorg[2]);
423 greg 2.16 if (!run_cmd(cmdbuf))
424     return(0);
425     }
426 greg 2.25 if (back_comp) {
427 greg 2.19 cvt_sposition(sorg, ivec, -1);
428 greg 2.16 printf("\nvoid colorfunc scale_pat\n");
429 greg 2.25 printf("10 bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n");
430     printf("\t-s %f -t %f %f %f\n0\n0\n",
431     bsdf_rad, sorg[0], sorg[1], sorg[2]);
432 greg 2.16 printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n");
433 greg 2.25 }
434     if (back_comp & SDsampR) {
435     put_mirror_arrow(sorg, nrm);
436 greg 2.16 fname = tfile_name(brpref, dsuffix, i);
437 greg 2.25 sprintf(cmdbuf,
438     "gensurf scale_mat %s%d %s %s %s %d %d | xform -I -ry 180 %s -s %f -t %f %f %f",
439 greg 2.20 brpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1,
440 greg 2.25 rotargs, scalef, sorg[0], sorg[1], sorg[2]);
441 greg 2.16 if (!run_cmd(cmdbuf))
442     return(0);
443     }
444 greg 2.25 if (back_comp & SDsampT) {
445     put_trans_arrow(sorg);
446 greg 2.16 fname = tfile_name(btpref, dsuffix, i);
447 greg 2.25 sprintf(cmdbuf,
448     "gensurf scale_mat %s%d %s %s %s %d %d | xform -ry 180 %s -s %f -t %f %f %f",
449 greg 2.20 btpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1,
450 greg 2.25 rotargs, scalef, sorg[0], sorg[1], sorg[2]);
451 greg 2.16 if (!run_cmd(cmdbuf))
452     return(0);
453     }
454 greg 2.25 }
455 greg 2.16 return(1);
456     }
457    
458     /* Put our hemisphere material */
459     static void
460     put_matBSDF(const char *XMLfile)
461     {
462     const char *curdir = "./";
463    
464     if (!XMLfile) { /* simple material */
465     printf("\n# Simplified material because we have no XML input\n");
466     printf("\nvoid brightfunc latlong\n2 latlong bsdf2rad.cal\n0\n0\n");
467     if ((front_comp|back_comp) & SDsampT)
468 greg 2.20 printf("\nlatlong trans %s\n0\n0\n7 .75 .75 .75 0 .04 .5 .8\n",
469 greg 2.24 sph_fmat);
470 greg 2.16 else
471     printf("\nlatlong plastic %s\n0\n0\n5 .5 .5 .5 0 0\n",
472 greg 2.24 sph_fmat);
473     printf("\ninherit alias %s %s\n", sph_bmat, sph_fmat);
474 greg 2.16 return;
475     }
476     switch (XMLfile[0]) { /* avoid RAYPATH search */
477     case '.':
478 greg 2.28 case '~':
479 greg 2.16 CASEDIRSEP:
480     curdir = "";
481     break;
482     case '\0':
483     fprintf(stderr, "%s: empty file name in put_matBSDF\n", progname);
484     exit(1);
485     break;
486     }
487 greg 2.24 printf("\n# Actual BSDF materials for rendering the hemispheres\n");
488     printf("\nvoid BSDF BSDF_f\n6 0 \"%s%s\" upx upy upz bsdf2rad.cal\n0\n0\n",
489 greg 2.16 curdir, XMLfile);
490     printf("\nvoid plastic black\n0\n0\n5 0 0 0 0 0\n");
491 greg 2.24 printf("\nvoid mixfunc %s\n4 BSDF_f black latlong bsdf2rad.cal\n0\n0\n",
492     sph_fmat);
493     printf("\nvoid BSDF BSDF_b\n8 0 \"%s%s\" upx upy upz bsdf2rad.cal -ry 180\n0\n0\n",
494     curdir, XMLfile);
495     printf("\nvoid mixfunc %s\n4 BSDF_b black latlong bsdf2rad.cal\n0\n0\n",
496     sph_bmat);
497 greg 2.16 }
498    
499     /* Put out overhead parallel light source */
500     static void
501     put_source(void)
502     {
503     printf("\n# Overhead parallel light source\n");
504 greg 2.20 printf("\nvoid light bright\n0\n0\n3 2500 2500 2500\n");
505 greg 2.16 printf("\nbright source light\n0\n0\n4 0 0 1 2\n");
506     printf("\n# Material used for labels\n");
507     printf("\nvoid trans vellum\n0\n0\n7 1 1 1 0 0 .5 0\n");
508     }
509    
510     /* Put out hemisphere(s) */
511     static void
512     put_hemispheres(void)
513     {
514 greg 2.21 const int nsegs = 131;
515    
516 greg 2.16 printf("\n# Hemisphere(s) for showing BSDF appearance (if XML file)\n");
517     if (front_comp) {
518 greg 2.21 printf(
519     "\n!genrev %s Front \"R*sin(A*t)\" \"R*cos(A*t)\" %d -e \"R:%g;A:%f\" -s | xform -t %g 0 0\n",
520 greg 2.31 sph_fmat, nsegs, sph_rad, 0.5*PI, sph_xoffset);
521 greg 2.16 printf("\nvoid brighttext front_text\n3 helvet.fnt . FRONT\n0\n");
522     printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n",
523 greg 2.20 -.22*sph_rad + sph_xoffset, -1.4*sph_rad,
524 greg 2.16 .35/5.*sph_rad, -1.6*.35/5.*sph_rad);
525     printf("\nfront_text alias front_label_mat vellum\n");
526     printf("\nfront_label_mat polygon front_label\n0\n0\n12");
527     printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n",
528 greg 2.20 -.25*sph_rad + sph_xoffset, -1.3*sph_rad,
529     -.25*sph_rad + sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad,
530     .25*sph_rad + sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad,
531     .25*sph_rad + sph_xoffset, -1.3*sph_rad );
532 greg 2.16 }
533     if (back_comp) {
534 greg 2.21 printf(
535     "\n!genrev %s Back \"R*cos(A*t)\" \"R*sin(A*t)\" %d -e \"R:%g;A:%f\" -s | xform -t %g 0 0\n",
536 greg 2.31 sph_bmat, nsegs, sph_rad, 0.5*PI, -sph_xoffset);
537 greg 2.16 printf("\nvoid brighttext back_text\n3 helvet.fnt . BACK\n0\n");
538     printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n",
539 greg 2.20 -.22*sph_rad - sph_xoffset, -1.4*sph_rad,
540 greg 2.16 .35/4.*sph_rad, -1.6*.35/4.*sph_rad);
541     printf("\nback_text alias back_label_mat vellum\n");
542     printf("\nback_label_mat polygon back_label\n0\n0\n12");
543     printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n",
544 greg 2.20 -.25*sph_rad - sph_xoffset, -1.3*sph_rad,
545     -.25*sph_rad - sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad,
546     .25*sph_rad - sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad,
547     .25*sph_rad - sph_xoffset, -1.3*sph_rad );
548 greg 2.16 }
549     }
550    
551     /* Put out falsecolor scale and name label */
552     static void
553     put_scale(void)
554     {
555     const double max_log10 = log10(overall_max);
556 greg 2.20 const double leg_width = 2.*.75*(fabs(sph_xoffset) - sph_rad);
557 greg 2.16 const double leg_height = 2.*sph_rad;
558     const int text_lines = 6;
559 greg 2.17 const int text_digits = 8;
560 greg 2.16 char fmt[16];
561     int i;
562    
563     printf("\n# BSDF legend with falsecolor scale\n");
564     printf("\nvoid colorfunc lscale\n10 sca_red(Py) sca_grn(Py) sca_blu(Py)");
565     printf("\n\tbsdf2rad.cal -s %f -t 0 %f 0\n0\n0\n", leg_height, -.5*leg_height);
566 greg 2.17 sprintf(fmt, "%%.%df", text_digits-3);
567 greg 2.16 for (i = 0; i < text_lines; i++) {
568     char vbuf[16];
569     sprintf(vbuf, fmt, pow(10., (i+.5)/text_lines*(max_log10-min_log10)+min_log10));
570     printf("\nlscale brighttext lscale\n");
571     printf("3 helvet.fnt . %s\n0\n12\n", vbuf);
572     printf("\t%f %f 0\n", -.45*leg_width, ((i+.9)/text_lines-.5)*leg_height);
573 greg 2.17 printf("\t%f 0 0\n", .8*leg_width/strlen(vbuf));
574 greg 2.16 printf("\t0 %f 0\n", -.9/text_lines*leg_height);
575     printf("\t.01 1 -.1\n");
576     }
577     printf("\nlscale alias legend_mat vellum\n");
578     printf("\nlegend_mat polygon legend\n0\n0\n12");
579     printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n",
580     -.5*leg_width, .5*leg_height,
581     -.5*leg_width, -.5*leg_height,
582     .5*leg_width, -.5*leg_height,
583     .5*leg_width, .5*leg_height);
584     printf("\nvoid brighttext BSDFtitle\n3 helvet.fnt . BSDF\n0\n12\n");
585     printf("\t%f %f 0\n", -.25*leg_width, .7*leg_height);
586     printf("\t%f 0 0\n", .4/4.*leg_width);
587     printf("\t0 %f 0\n", -.1*leg_height);
588     printf("\t.01 1 -.1\n");
589     printf("\nBSDFtitle alias title_mat vellum\n");
590     printf("\ntitle_mat polygon title\n0\n0\n12");
591     printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n",
592     -.3*leg_width, .75*leg_height,
593     -.3*leg_width, .55*leg_height,
594     .3*leg_width, .55*leg_height,
595     .3*leg_width, .75*leg_height);
596     if (!bsdf_name[0])
597     return;
598     printf("\nvoid brighttext BSDFname\n3 helvet.fnt . \"%s\"\n0\n12\n", bsdf_name);
599     printf("\t%f %f 0\n", -.95*leg_width, -.6*leg_height);
600 greg 2.18 printf("\t%f 0 0\n", 1.8/strlen(bsdf_name)*leg_width);
601 greg 2.16 printf("\t0 %f 0\n", -.1*leg_height);
602     printf("\t.01 1 -.1\n");
603     printf("\nBSDFname alias name_mat vellum\n");
604     printf("\nname_mat polygon name\n0\n0\n12");
605     printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n",
606     -leg_width, -.55*leg_height,
607     -leg_width, -.75*leg_height,
608     leg_width, -.75*leg_height,
609     leg_width, -.55*leg_height);
610     }
611    
612     /* Convert MGF to Radiance in output */
613     static void
614     convert_mgf(const char *mgfdata)
615     {
616     int len = strlen(mgfdata);
617     char mgfn[128];
618     char radfn[128];
619     char cmdbuf[256];
620     float xmin, xmax, ymin, ymax, zmin, zmax;
621     double max_dim;
622     int fd;
623     FILE *fp;
624    
625     if (!len) return;
626     strcpy(mgfn, tfile_name("geom", ".mgf", 0));
627     fd = open(mgfn, O_WRONLY|O_CREAT, 0666);
628     if (fd < 0 || write(fd, mgfdata, len) != len) {
629     fprintf(stderr, "%s: cannot write file '%s'\n",
630     progname, mgfn);
631     return;
632     }
633     close(fd);
634     strcpy(radfn, tfile_name("geom", ".rad", 0));
635     sprintf(cmdbuf, "mgf2rad %s > %s", mgfn, radfn);
636     if (!run_cmd(cmdbuf))
637     return;
638     sprintf(cmdbuf, "getbbox -w -h %s", radfn);
639     if ((fp = popen(cmdbuf, "r")) == NULL ||
640     fscanf(fp, "%f %f %f %f %f %f",
641     &xmin, &xmax, &ymin, &ymax, &zmin, &zmax) != 6
642     || pclose(fp) < 0) {
643     fprintf(stderr, "%s: error reading from command: %s\n",
644     progname, cmdbuf);
645     return;
646     }
647     max_dim = ymax - ymin;
648     if (xmax - xmin > max_dim)
649     max_dim = xmax - xmin;
650     if (front_comp) {
651     printf("\n# BSDF system geometry (front view)\n");
652     sprintf(cmdbuf, "xform -t %f %f %f -s %f -t %f %f 0 %s",
653     -.5*(xmin+xmax), -.5*(ymin+ymax), -zmax,
654     1.5*sph_rad/max_dim,
655 greg 2.20 sph_xoffset, -2.5*sph_rad,
656 greg 2.16 radfn);
657     if (!run_cmd(cmdbuf))
658     return;
659     }
660     if (back_comp) {
661     printf("\n# BSDF system geometry (back view)\n");
662     sprintf(cmdbuf, "xform -t %f %f %f -s %f -ry 180 -t %f %f 0 %s",
663     -.5*(xmin+xmax), -.5*(ymin+ymax), -zmin,
664     1.5*sph_rad/max_dim,
665 greg 2.20 -sph_xoffset, -2.5*sph_rad,
666 greg 2.16 radfn);
667     if (!run_cmd(cmdbuf))
668     return;
669     }
670     }
671    
672     /* Check RBF input header line & get minimum BSDF value */
673     static int
674     rbf_headline(char *s, void *p)
675     {
676     char fmt[64];
677    
678     if (formatval(fmt, s)) {
679     if (strcmp(fmt, BSDFREP_FMT))
680     return(-1);
681     return(0);
682     }
683     if (!strncmp(s, "IO_SIDES=", 9)) {
684     sscanf(s+9, "%d %d", &input_orient, &output_orient);
685     if (input_orient == output_orient) {
686     if (input_orient > 0)
687     front_comp |= SDsampR;
688     else
689     back_comp |= SDsampR;
690     } else if (input_orient > 0)
691     front_comp |= SDsampT;
692     else
693     back_comp |= SDsampT;
694     return(0);
695     }
696     if (!strncmp(s, "BSDFMIN=", 8)) {
697     sscanf(s+8, "%lf", &bsdf_min);
698     if (bsdf_min < overall_min)
699     overall_min = bsdf_min;
700     return(0);
701     }
702     return(0);
703     }
704 greg 2.1
705 greg 2.16 /* Produce a Radiance model plotting the given BSDF representation */
706 greg 2.1 int
707     main(int argc, char *argv[])
708     {
709 greg 2.4 int inpXML = -1;
710     SDData myBSDF;
711 greg 2.16 int n;
712 greg 2.4 /* check arguments */
713 greg 2.1 progname = argv[0];
714 greg 2.16 if (argc > 1 && (n = strlen(argv[1])-4) > 0) {
715 greg 2.4 if (!strcasecmp(argv[1]+n, ".xml"))
716     inpXML = 1;
717     else if (!strcasecmp(argv[1]+n, ".sir"))
718     inpXML = 0;
719     }
720 greg 2.16 if (inpXML < 0 || inpXML & (argc > 2)) {
721     fprintf(stderr, "Usage: %s bsdf.xml > output.rad\n", progname);
722     fprintf(stderr, " Or: %s hemi1.sir hemi2.sir .. > output.rad\n", progname);
723 greg 2.1 return(1);
724     }
725 greg 2.16 fputs("# ", stdout); /* copy our command */
726     printargs(argc, argv, stdout);
727     /* evaluate BSDF */
728 greg 2.4 if (inpXML) {
729     SDclearBSDF(&myBSDF, argv[1]);
730     if (SDreportError(SDloadFile(&myBSDF, argv[1]), stderr))
731     return(1);
732 greg 2.16 if (myBSDF.rf != NULL) front_comp |= SDsampR;
733     if (myBSDF.tf != NULL) front_comp |= SDsampT;
734     if (myBSDF.rb != NULL) back_comp |= SDsampR;
735     if (myBSDF.tb != NULL) back_comp |= SDsampT;
736     if (!front_comp & !back_comp) {
737     fprintf(stderr, "%s: nothing to plot in '%s'\n",
738 greg 2.4 progname, argv[1]);
739     return(1);
740     }
741 greg 2.16 if (front_comp & SDsampR && myBSDF.rLambFront.cieY < overall_min*PI)
742     overall_min = myBSDF.rLambFront.cieY/PI;
743     if (back_comp & SDsampR && myBSDF.rLambBack.cieY < overall_min*PI)
744     overall_min = myBSDF.rLambBack.cieY/PI;
745     if ((front_comp|back_comp) & SDsampT &&
746     myBSDF.tLamb.cieY < overall_min*PI)
747     overall_min = myBSDF.tLamb.cieY/PI;
748     set_minlog();
749     if (!build_wBSDF(&myBSDF))
750 greg 2.9 return(1);
751 greg 2.16 if (myBSDF.matn[0])
752     strcpy(bsdf_name, myBSDF.matn);
753 greg 2.1 else
754 greg 2.16 strcpy(bsdf_name, myBSDF.name);
755     strcpy(bsdf_manuf, myBSDF.makr);
756     put_matBSDF(argv[1]);
757     } else {
758 greg 2.27 FILE *fp[4];
759     if (argc > 5) {
760 greg 2.28 fprintf(stderr, "%s: more than 4 hemispheres!\n", progname);
761 greg 2.27 return(1);
762     }
763 greg 2.16 for (n = 1; n < argc; n++) {
764 greg 2.27 fp[n-1] = fopen(argv[n], "rb");
765     if (fp[n-1] == NULL) {
766 greg 2.16 fprintf(stderr, "%s: cannot open BSDF interpolant '%s'\n",
767     progname, argv[n]);
768     return(1);
769     }
770 greg 2.27 if (getheader(fp[n-1], rbf_headline, NULL) < 0) {
771 greg 2.16 fprintf(stderr, "%s: bad BSDF interpolant '%s'\n",
772     progname, argv[n]);
773     return(1);
774 greg 2.2 }
775     }
776 greg 2.16 set_minlog();
777     for (n = 1; n < argc; n++) {
778 greg 2.27 if (fseek(fp[n-1], 0L, SEEK_SET) < 0) {
779     fprintf(stderr, "%s: cannot seek on '%s'\n",
780     progname, argv[n]);
781     return(1);
782     }
783     if (!load_bsdf_rep(fp[n-1]))
784 greg 2.16 return(1);
785 greg 2.27 fclose(fp[n-1]);
786 greg 2.16 if (!build_wRBF())
787     return(1);
788 greg 2.2 }
789 greg 2.16 put_matBSDF(NULL);
790 greg 2.1 }
791 greg 2.16 put_source(); /* before hemispheres & labels */
792     put_hemispheres();
793     put_scale();
794     if (inpXML && myBSDF.mgf)
795     convert_mgf(myBSDF.mgf);
796 greg 2.28 if (!put_BSDFs()) /* most of the output happens here */
797 greg 2.16 return(1);
798     cleanup_tmp();
799 greg 2.1 return(0);
800     }