26 |
|
|
27 |
|
char ourTempDir[TEMPLEN] = ""; /* our temporary directory */ |
28 |
|
|
29 |
– |
const FVECT Xaxis = {1., 0., 0.}; |
30 |
– |
const FVECT Yaxis = {0., 1., 0.}; |
31 |
– |
const FVECT Zaxis = {0., 0., 1.}; |
32 |
– |
|
29 |
|
const char frpref[] = "frefl"; |
30 |
|
const char ftpref[] = "ftrans"; |
31 |
|
const char brpref[] = "brefl"; |
32 |
|
const char btpref[] = "btrans"; |
33 |
|
const char dsuffix[] = ".txt"; |
34 |
|
|
35 |
< |
const char sph_mat[] = "BSDFmat"; |
35 |
> |
const char sph_fmat[] = "fBSDFmat"; |
36 |
> |
const char sph_bmat[] = "bBSDFmat"; |
37 |
|
const double sph_rad = 10.; |
38 |
|
const double sph_xoffset = 15.; |
39 |
|
|
47 |
|
char *progname; |
48 |
|
|
49 |
|
/* Get Fibonacci sphere vector (0 to NINCIDENT-1) */ |
50 |
< |
static void |
50 |
> |
static RREAL * |
51 |
|
get_ivector(FVECT iv, int i) |
52 |
|
{ |
53 |
|
const double phistep = PI*(3. - 2.236067978); |
57 |
|
r = sqrt(1. - iv[2]*iv[2]); |
58 |
|
iv[0] = r * cos((i+1.)*phistep); |
59 |
|
iv[1] = r * sin((i+1.)*phistep); |
60 |
+ |
|
61 |
+ |
return(iv); |
62 |
|
} |
63 |
|
|
64 |
+ |
/* Convert incident vector into sphere position */ |
65 |
+ |
static RREAL * |
66 |
+ |
cvt_sposition(FVECT sp, const FVECT iv, int inc_side) |
67 |
+ |
{ |
68 |
+ |
sp[0] = -iv[0]*sph_rad + inc_side*sph_xoffset; |
69 |
+ |
sp[1] = -iv[1]*sph_rad; |
70 |
+ |
sp[2] = iv[2]*sph_rad; |
71 |
+ |
|
72 |
+ |
return(sp); |
73 |
+ |
} |
74 |
+ |
|
75 |
|
/* Get temporary file name */ |
76 |
|
static char * |
77 |
|
tfile_name(const char *prefix, const char *suffix, int i) |
258 |
|
RBFNODE *rbf; |
259 |
|
get_ivector(ivec, i); |
260 |
|
if (input_orient < 0) { |
261 |
< |
ivec[0] = -ivec[0]; ivec[1] = -ivec[1]; ivec[2] = -ivec[2]; |
261 |
> |
ivec[0] = -ivec[0]; ivec[2] = -ivec[2]; |
262 |
|
} |
263 |
|
rbf = advect_rbf(ivec, 15000); |
264 |
|
if (!plotRBF(tfile_name(pref, dsuffix, i), rbf)) |
270 |
|
|
271 |
|
/* Put out mirror arrow for the given incident vector */ |
272 |
|
static void |
273 |
< |
put_mirror_arrow(const FVECT ivec, int inc_side) |
273 |
> |
put_mirror_arrow(const FVECT origin, const FVECT nrm) |
274 |
|
{ |
275 |
|
const double arrow_len = 1.2*bsdf_rad; |
276 |
|
const double tip_len = 0.2*bsdf_rad; |
277 |
< |
FVECT origin, refl; |
277 |
> |
FVECT refl; |
278 |
|
int i; |
279 |
|
|
280 |
< |
for (i = 3; i--; ) origin[i] = ivec[i]*sph_rad; |
281 |
< |
origin[0] -= inc_side*sph_xoffset; |
280 |
> |
refl[0] = 2.*nrm[2]*nrm[0]; |
281 |
> |
refl[1] = 2.*nrm[2]*nrm[1]; |
282 |
> |
refl[2] = 2.*nrm[2]*nrm[2] - 1.; |
283 |
|
|
273 |
– |
refl[0] = 2.*ivec[2]*ivec[0]; |
274 |
– |
refl[1] = 2.*ivec[2]*ivec[1]; |
275 |
– |
refl[2] = 2.*ivec[2]*ivec[2] - 1.; |
276 |
– |
|
284 |
|
printf("\n# Mirror arrow\n"); |
285 |
|
printf("\narrow_mat cylinder inc_dir\n0\n0\n7"); |
286 |
|
printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n", |
307 |
|
|
308 |
|
/* Put out transmitted direction arrow for the given incident vector */ |
309 |
|
static void |
310 |
< |
put_trans_arrow(const FVECT ivec, int inc_side) |
310 |
> |
put_trans_arrow(const FVECT origin) |
311 |
|
{ |
312 |
|
const double arrow_len = 1.2*bsdf_rad; |
313 |
|
const double tip_len = 0.2*bsdf_rad; |
307 |
– |
FVECT origin; |
314 |
|
int i; |
315 |
|
|
310 |
– |
for (i = 3; i--; ) origin[i] = ivec[i]*sph_rad; |
311 |
– |
origin[0] -= inc_side*sph_xoffset; |
312 |
– |
|
316 |
|
printf("\n# Transmission arrow\n"); |
317 |
|
printf("\narrow_mat cylinder trans_dir\n0\n0\n7"); |
318 |
|
printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n", |
367 |
|
put_BSDFs(void) |
368 |
|
{ |
369 |
|
const double scalef = bsdf_rad/(log10(overall_max) - min_log10); |
370 |
< |
FVECT ivec; |
370 |
> |
FVECT ivec, sorg, nrm, upv; |
371 |
|
RREAL vMtx[3][3]; |
372 |
|
char *fname; |
373 |
|
char cmdbuf[256]; |
374 |
< |
char xfargs[128]; |
375 |
< |
int nxfa; |
374 |
> |
char rotargs[64]; |
375 |
> |
int nrota; |
376 |
|
int i; |
377 |
|
|
378 |
|
printf("\n# Gensurf output corresponding to %d incident directions\n", |
379 |
|
NINCIDENT); |
380 |
|
|
381 |
|
printf("\nvoid glow arrow_glow\n0\n0\n4 1 0 1 0\n"); |
382 |
< |
printf("\nvoid mixfunc arrow_mat\n4 arrow_glow void .5 .\n0\n0\n"); |
382 |
> |
printf("\nvoid mixfunc arrow_mat\n4 arrow_glow void 0.25 .\n0\n0\n"); |
383 |
|
|
384 |
< |
if (front_comp & SDsampR) |
385 |
< |
for (i = 0; i < NINCIDENT; i++) { |
386 |
< |
get_ivector(ivec, i); |
387 |
< |
put_mirror_arrow(ivec, 1); |
388 |
< |
sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, |
389 |
< |
ivec[0]*sph_rad - sph_xoffset, |
390 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
391 |
< |
nxfa = 6; |
384 |
> |
if (front_comp & SDsampR) /* front reflection */ |
385 |
> |
for (i = 0; i < NINCIDENT; i++) { |
386 |
> |
get_ivector(ivec, i); |
387 |
> |
nrm[0] = -ivec[0]; nrm[1] = -ivec[1]; nrm[2] = ivec[2]; |
388 |
> |
upv[0] = nrm[0]*nrm[1]*(nrm[2] - 1.); |
389 |
> |
upv[1] = nrm[0]*nrm[0] + nrm[1]*nrm[1]*nrm[2]; |
390 |
> |
upv[2] = -nrm[1]*(nrm[0]*nrm[0] + nrm[1]*nrm[1]); |
391 |
> |
if (SDcompXform(vMtx, nrm, upv) != SDEnone) |
392 |
> |
continue; |
393 |
> |
nrota = addrot(rotargs, vMtx[0], vMtx[1], vMtx[2]); |
394 |
> |
if (front_comp) { |
395 |
> |
cvt_sposition(sorg, ivec, 1); |
396 |
|
printf("\nvoid colorfunc scale_pat\n"); |
397 |
< |
printf("%d bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n\t%s\n0\n0\n", |
398 |
< |
4+nxfa, xfargs); |
397 |
> |
printf("10 bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n"); |
398 |
> |
printf("\t-s %f -t %f %f %f\n0\n0\n", |
399 |
> |
bsdf_rad, sorg[0], sorg[1], sorg[2]); |
400 |
|
printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); |
401 |
< |
SDcompXform(vMtx, ivec, Yaxis); |
402 |
< |
nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); |
403 |
< |
sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", |
396 |
< |
scalef, ivec[0]*sph_rad - sph_xoffset, |
397 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
398 |
< |
nxfa += 6; |
401 |
> |
} |
402 |
> |
if (front_comp & SDsampR) { |
403 |
> |
put_mirror_arrow(sorg, nrm); |
404 |
|
fname = tfile_name(frpref, dsuffix, i); |
405 |
< |
sprintf(cmdbuf, "gensurf scale_mat %s%d %s %s %s %d %d | xform -mx -my %s", |
406 |
< |
frpref, i+1, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
407 |
< |
xfargs); |
405 |
> |
sprintf(cmdbuf, |
406 |
> |
"gensurf scale_mat %s%d %s %s %s %d %d | xform %s -s %f -t %f %f %f", |
407 |
> |
frpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
408 |
> |
rotargs, scalef, sorg[0], sorg[1], sorg[2]); |
409 |
|
if (!run_cmd(cmdbuf)) |
410 |
|
return(0); |
411 |
|
} |
412 |
< |
if (front_comp & SDsampT) |
413 |
< |
for (i = 0; i < NINCIDENT; i++) { |
408 |
< |
get_ivector(ivec, i); |
409 |
< |
put_trans_arrow(ivec, 1); |
410 |
< |
sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, |
411 |
< |
ivec[0]*sph_rad - sph_xoffset, |
412 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
413 |
< |
nxfa = 6; |
414 |
< |
printf("\nvoid colorfunc scale_pat\n"); |
415 |
< |
printf("%d bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n\t%s\n0\n0\n", |
416 |
< |
4+nxfa, xfargs); |
417 |
< |
printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); |
418 |
< |
SDcompXform(vMtx, ivec, Yaxis); |
419 |
< |
nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); |
420 |
< |
sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", |
421 |
< |
scalef, ivec[0]*sph_rad - sph_xoffset, |
422 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
423 |
< |
nxfa += 6; |
412 |
> |
if (front_comp & SDsampT) { |
413 |
> |
put_trans_arrow(sorg); |
414 |
|
fname = tfile_name(ftpref, dsuffix, i); |
415 |
< |
sprintf(cmdbuf, "gensurf scale_mat %s%d %s %s %s %d %d | xform -I -mx -my %s", |
416 |
< |
ftpref, i+1, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
417 |
< |
xfargs); |
415 |
> |
sprintf(cmdbuf, |
416 |
> |
"gensurf scale_mat %s%d %s %s %s %d %d | xform -I %s -s %f -t %f %f %f", |
417 |
> |
ftpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
418 |
> |
rotargs, scalef, sorg[0], sorg[1], sorg[2]); |
419 |
|
if (!run_cmd(cmdbuf)) |
420 |
|
return(0); |
421 |
|
} |
422 |
< |
if (back_comp & SDsampR) |
423 |
< |
for (i = 0; i < NINCIDENT; i++) { |
433 |
< |
get_ivector(ivec, i); |
434 |
< |
put_mirror_arrow(ivec, -1); |
435 |
< |
fname = tfile_name(brpref, dsuffix, i); |
436 |
< |
sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, |
437 |
< |
ivec[0]*sph_rad + sph_xoffset, |
438 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
439 |
< |
nxfa = 6; |
422 |
> |
if (back_comp) { |
423 |
> |
cvt_sposition(sorg, ivec, -1); |
424 |
|
printf("\nvoid colorfunc scale_pat\n"); |
425 |
< |
printf("%d bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n\t%s\n0\n0\n", |
426 |
< |
4+nxfa, xfargs); |
425 |
> |
printf("10 bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n"); |
426 |
> |
printf("\t-s %f -t %f %f %f\n0\n0\n", |
427 |
> |
bsdf_rad, sorg[0], sorg[1], sorg[2]); |
428 |
|
printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); |
429 |
< |
SDcompXform(vMtx, ivec, Yaxis); |
430 |
< |
nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); |
431 |
< |
sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", |
447 |
< |
scalef, ivec[0]*sph_rad + sph_xoffset, |
448 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
449 |
< |
nxfa += 6; |
429 |
> |
} |
430 |
> |
if (back_comp & SDsampR) { |
431 |
> |
put_mirror_arrow(sorg, nrm); |
432 |
|
fname = tfile_name(brpref, dsuffix, i); |
433 |
< |
sprintf(cmdbuf, "gensurf scale_mat %s%d %s %s %s %d %d | xform -I -ry 180 -mx -my %s", |
434 |
< |
brpref, i+1, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
435 |
< |
xfargs); |
433 |
> |
sprintf(cmdbuf, |
434 |
> |
"gensurf scale_mat %s%d %s %s %s %d %d | xform -I -ry 180 %s -s %f -t %f %f %f", |
435 |
> |
brpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
436 |
> |
rotargs, scalef, sorg[0], sorg[1], sorg[2]); |
437 |
|
if (!run_cmd(cmdbuf)) |
438 |
|
return(0); |
439 |
|
} |
440 |
< |
if (back_comp & SDsampT) |
441 |
< |
for (i = 0; i < NINCIDENT; i++) { |
459 |
< |
get_ivector(ivec, i); |
460 |
< |
put_trans_arrow(ivec, -1); |
440 |
> |
if (back_comp & SDsampT) { |
441 |
> |
put_trans_arrow(sorg); |
442 |
|
fname = tfile_name(btpref, dsuffix, i); |
443 |
< |
sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, |
444 |
< |
ivec[0]*sph_rad + sph_xoffset, |
445 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
446 |
< |
nxfa = 6; |
466 |
< |
printf("\nvoid colorfunc scale_pat\n"); |
467 |
< |
printf("%d bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n\t%s\n0\n0\n", |
468 |
< |
4+nxfa, xfargs); |
469 |
< |
printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); |
470 |
< |
SDcompXform(vMtx, ivec, Yaxis); |
471 |
< |
nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); |
472 |
< |
sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", |
473 |
< |
scalef, ivec[0]*sph_rad + sph_xoffset, |
474 |
< |
ivec[1]*sph_rad, ivec[2]*sph_rad); |
475 |
< |
nxfa += 6; |
476 |
< |
fname = tfile_name(btpref, dsuffix, i); |
477 |
< |
sprintf(cmdbuf, "gensurf scale_mat %s%d %s %s %s %d %d | xform -ry 180 -mx -my %s", |
478 |
< |
btpref, i+1, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
479 |
< |
xfargs); |
443 |
> |
sprintf(cmdbuf, |
444 |
> |
"gensurf scale_mat %s%d %s %s %s %d %d | xform -ry 180 %s -s %f -t %f %f %f", |
445 |
> |
btpref, i, fname, fname, fname, SAMPRES-1, SAMPRES-1, |
446 |
> |
rotargs, scalef, sorg[0], sorg[1], sorg[2]); |
447 |
|
if (!run_cmd(cmdbuf)) |
448 |
|
return(0); |
449 |
|
} |
450 |
+ |
} |
451 |
|
return(1); |
452 |
|
} |
453 |
|
|
461 |
|
printf("\n# Simplified material because we have no XML input\n"); |
462 |
|
printf("\nvoid brightfunc latlong\n2 latlong bsdf2rad.cal\n0\n0\n"); |
463 |
|
if ((front_comp|back_comp) & SDsampT) |
464 |
< |
printf("\nlatlong trans %s\n0\n0\n7 .75 .75 .75 0 0 .5 .8\n", |
465 |
< |
sph_mat); |
464 |
> |
printf("\nlatlong trans %s\n0\n0\n7 .75 .75 .75 0 .04 .5 .8\n", |
465 |
> |
sph_fmat); |
466 |
|
else |
467 |
|
printf("\nlatlong plastic %s\n0\n0\n5 .5 .5 .5 0 0\n", |
468 |
< |
sph_mat); |
468 |
> |
sph_fmat); |
469 |
> |
printf("\ninherit alias %s %s\n", sph_bmat, sph_fmat); |
470 |
|
return; |
471 |
|
} |
472 |
|
switch (XMLfile[0]) { /* avoid RAYPATH search */ |
479 |
|
exit(1); |
480 |
|
break; |
481 |
|
} |
482 |
< |
printf("\n# Actual BSDF material for rendering the hemispheres\n"); |
483 |
< |
printf("\nvoid BSDF BSDFmat\n6 0 \"%s%s\" 0 1 0 .\n0\n0\n", |
482 |
> |
printf("\n# Actual BSDF materials for rendering the hemispheres\n"); |
483 |
> |
printf("\nvoid BSDF BSDF_f\n6 0 \"%s%s\" upx upy upz bsdf2rad.cal\n0\n0\n", |
484 |
|
curdir, XMLfile); |
485 |
|
printf("\nvoid plastic black\n0\n0\n5 0 0 0 0 0\n"); |
486 |
< |
printf("\nvoid mixfunc %s\n4 BSDFmat black latlong bsdf2rad.cal\n0\n0\n", |
487 |
< |
sph_mat); |
486 |
> |
printf("\nvoid mixfunc %s\n4 BSDF_f black latlong bsdf2rad.cal\n0\n0\n", |
487 |
> |
sph_fmat); |
488 |
> |
printf("\nvoid BSDF BSDF_b\n8 0 \"%s%s\" upx upy upz bsdf2rad.cal -ry 180\n0\n0\n", |
489 |
> |
curdir, XMLfile); |
490 |
> |
printf("\nvoid mixfunc %s\n4 BSDF_b black latlong bsdf2rad.cal\n0\n0\n", |
491 |
> |
sph_bmat); |
492 |
|
} |
493 |
|
|
494 |
|
/* Put out overhead parallel light source */ |
496 |
|
put_source(void) |
497 |
|
{ |
498 |
|
printf("\n# Overhead parallel light source\n"); |
499 |
< |
printf("\nvoid light bright\n0\n0\n3 2000 2000 2000\n"); |
499 |
> |
printf("\nvoid light bright\n0\n0\n3 2500 2500 2500\n"); |
500 |
|
printf("\nbright source light\n0\n0\n4 0 0 1 2\n"); |
501 |
|
printf("\n# Material used for labels\n"); |
502 |
|
printf("\nvoid trans vellum\n0\n0\n7 1 1 1 0 0 .5 0\n"); |
506 |
|
static void |
507 |
|
put_hemispheres(void) |
508 |
|
{ |
509 |
+ |
const int nsegs = 131; |
510 |
+ |
|
511 |
|
printf("\n# Hemisphere(s) for showing BSDF appearance (if XML file)\n"); |
537 |
– |
printf("\nvoid antimatter anti_sph\n2 void %s\n0\n0\n", sph_mat); |
512 |
|
if (front_comp) { |
513 |
< |
printf("\n%s sphere Front\n0\n0\n4 %f 0 0 %f\n", |
514 |
< |
sph_mat, -sph_xoffset, sph_rad); |
515 |
< |
printf("\n!genbox anti_sph sph_eraser %f %f %f | xform -t %f %f %f\n", |
542 |
< |
2.02*sph_rad, 2.02*sph_rad, 1.02*sph_rad, |
543 |
< |
-1.01*sph_rad - sph_xoffset, -1.01*sph_rad, -1.01*sph_rad); |
513 |
> |
printf( |
514 |
> |
"\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", |
515 |
> |
sph_fmat, nsegs, sph_rad, 0.495*PI, sph_xoffset); |
516 |
|
printf("\nvoid brighttext front_text\n3 helvet.fnt . FRONT\n0\n"); |
517 |
|
printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n", |
518 |
< |
-.22*sph_rad - sph_xoffset, -1.4*sph_rad, |
518 |
> |
-.22*sph_rad + sph_xoffset, -1.4*sph_rad, |
519 |
|
.35/5.*sph_rad, -1.6*.35/5.*sph_rad); |
520 |
|
printf("\nfront_text alias front_label_mat vellum\n"); |
521 |
|
printf("\nfront_label_mat polygon front_label\n0\n0\n12"); |
522 |
|
printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n", |
523 |
< |
-.25*sph_rad - sph_xoffset, -1.3*sph_rad, |
524 |
< |
-.25*sph_rad - sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad, |
525 |
< |
.25*sph_rad - sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad, |
526 |
< |
.25*sph_rad - sph_xoffset, -1.3*sph_rad ); |
523 |
> |
-.25*sph_rad + sph_xoffset, -1.3*sph_rad, |
524 |
> |
-.25*sph_rad + sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad, |
525 |
> |
.25*sph_rad + sph_xoffset, (-1.4-1.6*.35/5.-.1)*sph_rad, |
526 |
> |
.25*sph_rad + sph_xoffset, -1.3*sph_rad ); |
527 |
|
} |
528 |
|
if (back_comp) { |
529 |
< |
printf("\n%s bubble Back\n0\n0\n4 %f 0 0 %f\n", |
530 |
< |
sph_mat, sph_xoffset, sph_rad); |
531 |
< |
printf("\n!genbox anti_sph sph_eraser %f %f %f | xform -t %f %f %f\n", |
560 |
< |
2.02*sph_rad, 2.02*sph_rad, 1.02*sph_rad, |
561 |
< |
-1.01*sph_rad + sph_xoffset, -1.01*sph_rad, -1.01*sph_rad); |
529 |
> |
printf( |
530 |
> |
"\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", |
531 |
> |
sph_bmat, nsegs, sph_rad, 0.495*PI, -sph_xoffset); |
532 |
|
printf("\nvoid brighttext back_text\n3 helvet.fnt . BACK\n0\n"); |
533 |
|
printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n", |
534 |
< |
-.22*sph_rad + sph_xoffset, -1.4*sph_rad, |
534 |
> |
-.22*sph_rad - sph_xoffset, -1.4*sph_rad, |
535 |
|
.35/4.*sph_rad, -1.6*.35/4.*sph_rad); |
536 |
|
printf("\nback_text alias back_label_mat vellum\n"); |
537 |
|
printf("\nback_label_mat polygon back_label\n0\n0\n12"); |
538 |
|
printf("\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n\t%f %f 0\n", |
539 |
< |
-.25*sph_rad + sph_xoffset, -1.3*sph_rad, |
540 |
< |
-.25*sph_rad + sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad, |
541 |
< |
.25*sph_rad + sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad, |
542 |
< |
.25*sph_rad + sph_xoffset, -1.3*sph_rad ); |
539 |
> |
-.25*sph_rad - sph_xoffset, -1.3*sph_rad, |
540 |
> |
-.25*sph_rad - sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad, |
541 |
> |
.25*sph_rad - sph_xoffset, (-1.4-1.6*.35/4.-.1)*sph_rad, |
542 |
> |
.25*sph_rad - sph_xoffset, -1.3*sph_rad ); |
543 |
|
} |
544 |
|
} |
545 |
|
|
548 |
|
put_scale(void) |
549 |
|
{ |
550 |
|
const double max_log10 = log10(overall_max); |
551 |
< |
const double leg_width = 2.*.75*(sph_xoffset - sph_rad); |
551 |
> |
const double leg_width = 2.*.75*(fabs(sph_xoffset) - sph_rad); |
552 |
|
const double leg_height = 2.*sph_rad; |
553 |
|
const int text_lines = 6; |
554 |
|
const int text_digits = 8; |
647 |
|
sprintf(cmdbuf, "xform -t %f %f %f -s %f -t %f %f 0 %s", |
648 |
|
-.5*(xmin+xmax), -.5*(ymin+ymax), -zmax, |
649 |
|
1.5*sph_rad/max_dim, |
650 |
< |
-sph_xoffset, -2.5*sph_rad, |
650 |
> |
sph_xoffset, -2.5*sph_rad, |
651 |
|
radfn); |
652 |
|
if (!run_cmd(cmdbuf)) |
653 |
|
return; |
657 |
|
sprintf(cmdbuf, "xform -t %f %f %f -s %f -ry 180 -t %f %f 0 %s", |
658 |
|
-.5*(xmin+xmax), -.5*(ymin+ymax), -zmin, |
659 |
|
1.5*sph_rad/max_dim, |
660 |
< |
sph_xoffset, -2.5*sph_rad, |
660 |
> |
-sph_xoffset, -2.5*sph_rad, |
661 |
|
radfn); |
662 |
|
if (!run_cmd(cmdbuf)) |
663 |
|
return; |