| 26 |  |  | 
| 27 |  | char    ourTempDir[TEMPLEN] = "";       /* our temporary directory */ | 
| 28 |  |  | 
| 29 | < | const FVECT     Yaxis = {0., 1., 0.}; | 
| 30 | < |  | 
| 31 | < | const char      frpref[] = "frefl"; | 
| 32 | < | const char      ftpref[] = "ftrans"; | 
| 33 | < | const char      brpref[] = "brefl"; | 
| 34 | < | const char      btpref[] = "btrans"; | 
| 29 | > | const char      frpref[] = "rf"; | 
| 30 | > | const char      ftpref[] = "tf"; | 
| 31 | > | const char      brpref[] = "rb"; | 
| 32 | > | const char      btpref[] = "tb"; | 
| 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 |  |  | 
| 42 |  |  | 
| 43 |  | #define FEQ(a,b)        ((a)-(b) <= 1e-7 && (b)-(a) <= 1e-7) | 
| 44 |  |  | 
| 45 | < | #define set_minlog()    (min_log10 = log10(overall_min + 1e-5) - .1) | 
| 45 | > | #define set_minlog()    overall_min = (overall_min < 1e-5) ? 1e-5 : overall_min; \ | 
| 46 | > | min_log10 = log10(overall_min) - .1 | 
| 47 |  |  | 
| 48 |  | char    *progname; | 
| 49 |  |  | 
| 271 |  |  | 
| 272 |  | /* Put out mirror arrow for the given incident vector */ | 
| 273 |  | static void | 
| 274 | < | put_mirror_arrow(const FVECT ivec, int inc_side) | 
| 274 | > | put_mirror_arrow(const FVECT origin, const FVECT nrm) | 
| 275 |  | { | 
| 276 |  | const double    arrow_len = 1.2*bsdf_rad; | 
| 277 |  | const double    tip_len = 0.2*bsdf_rad; | 
| 278 | < | FVECT           origin, refl; | 
| 278 | > | FVECT           refl; | 
| 279 |  | int             i; | 
| 280 |  |  | 
| 281 | < | cvt_sposition(origin, ivec, inc_side); | 
| 281 | > | refl[0] = 2.*nrm[2]*nrm[0]; | 
| 282 | > | refl[1] = 2.*nrm[2]*nrm[1]; | 
| 283 | > | refl[2] = 2.*nrm[2]*nrm[2] - 1.; | 
| 284 |  |  | 
| 283 | – | refl[0] = -2.*ivec[2]*ivec[0]; | 
| 284 | – | refl[1] = -2.*ivec[2]*ivec[1]; | 
| 285 | – | refl[2] = 2.*ivec[2]*ivec[2] - 1.; | 
| 286 | – |  | 
| 285 |  | printf("\n# Mirror arrow\n"); | 
| 286 | < | printf("\narrow_mat cylinder inc_dir\n0\n0\n7"); | 
| 286 | > | printf("\nshaft_mat cylinder inc_dir\n0\n0\n7"); | 
| 287 |  | printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n", | 
| 288 |  | origin[0], origin[1], origin[2]+arrow_len, | 
| 289 |  | origin[0], origin[1], origin[2], | 
| 290 |  | arrow_rad); | 
| 291 | < | printf("\narrow_mat cylinder mir_dir\n0\n0\n7"); | 
| 291 | > | printf("\nshaft_mat cylinder mir_dir\n0\n0\n7"); | 
| 292 |  | printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n", | 
| 293 |  | origin[0], origin[1], origin[2], | 
| 294 |  | origin[0] + arrow_len*refl[0], | 
| 295 |  | origin[1] + arrow_len*refl[1], | 
| 296 |  | origin[2] + arrow_len*refl[2], | 
| 297 |  | arrow_rad); | 
| 298 | < | printf("\narrow_mat cone mir_tip\n0\n0\n8"); | 
| 298 | > | printf("\ntip_mat cone mir_tip\n0\n0\n8"); | 
| 299 |  | printf("\n\t%f %f %f\n\t%f %f %f\n\t%f 0\n", | 
| 300 |  | origin[0] + (arrow_len-.5*tip_len)*refl[0], | 
| 301 |  | origin[1] + (arrow_len-.5*tip_len)*refl[1], | 
| 308 |  |  | 
| 309 |  | /* Put out transmitted direction arrow for the given incident vector */ | 
| 310 |  | static void | 
| 311 | < | put_trans_arrow(const FVECT ivec, int inc_side) | 
| 311 | > | put_trans_arrow(const FVECT origin) | 
| 312 |  | { | 
| 313 |  | const double    arrow_len = 1.2*bsdf_rad; | 
| 314 |  | const double    tip_len = 0.2*bsdf_rad; | 
| 317 | – | FVECT           origin; | 
| 315 |  | int             i; | 
| 316 |  |  | 
| 320 | – | cvt_sposition(origin, ivec, inc_side); | 
| 321 | – |  | 
| 317 |  | printf("\n# Transmission arrow\n"); | 
| 318 | < | printf("\narrow_mat cylinder trans_dir\n0\n0\n7"); | 
| 318 | > | printf("\nshaft_mat cylinder trans_dir\n0\n0\n7"); | 
| 319 |  | printf("\n\t%f %f %f\n\t%f %f %f\n\t%f\n", | 
| 320 |  | origin[0], origin[1], origin[2], | 
| 321 |  | origin[0], origin[1], origin[2]-arrow_len, | 
| 322 |  | arrow_rad); | 
| 323 | < | printf("\narrow_mat cone trans_tip\n0\n0\n8"); | 
| 323 | > | printf("\ntip_mat cone trans_tip\n0\n0\n8"); | 
| 324 |  | printf("\n\t%f %f %f\n\t%f %f %f\n\t%f 0\n", | 
| 325 |  | origin[0], origin[1], origin[2]-arrow_len+.5*tip_len, | 
| 326 |  | origin[0], origin[1], origin[2]-arrow_len-.5*tip_len, | 
| 368 |  | put_BSDFs(void) | 
| 369 |  | { | 
| 370 |  | const double    scalef = bsdf_rad/(log10(overall_max) - min_log10); | 
| 371 | < | FVECT           ivec, sorg; | 
| 371 | > | FVECT           ivec, sorg, nrm, upv; | 
| 372 |  | RREAL           vMtx[3][3]; | 
| 373 |  | char            *fname; | 
| 374 |  | char            cmdbuf[256]; | 
| 375 | < | char            xfargs[128]; | 
| 376 | < | int             nxfa; | 
| 375 | > | char            rotargs[64]; | 
| 376 | > | int             nrota; | 
| 377 |  | int             i; | 
| 378 |  |  | 
| 379 |  | printf("\n# Gensurf output corresponding to %d incident directions\n", | 
| 380 |  | NINCIDENT); | 
| 381 |  |  | 
| 382 | < | printf("\nvoid glow arrow_glow\n0\n0\n4 1 0 1 0\n"); | 
| 383 | < | printf("\nvoid mixfunc arrow_mat\n4 arrow_glow void 0.5 .\n0\n0\n"); | 
| 382 | > | printf("\nvoid glow tip_mat\n0\n0\n4 1 0 1 0\n"); | 
| 383 | > | printf("\nvoid mixfunc shaft_mat\n4 tip_mat void 0.25 .\n0\n0\n"); | 
| 384 |  |  | 
| 385 | < | if (front_comp & SDsampR)                       /* front reflection */ | 
| 386 | < | for (i = 0; i < NINCIDENT; i++) { | 
| 387 | < | get_ivector(ivec, i); | 
| 388 | < | put_mirror_arrow(ivec, 1); | 
| 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); | 
| 395 | – | ivec[0] = -ivec[0]; ivec[1] = -ivec[1]; /* normal */ | 
| 396 | – | sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, | 
| 397 | – | sorg[0], sorg[1], sorg[2]); | 
| 398 | – | nxfa = 6; | 
| 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", | 
| 406 | < | scalef, sorg[0], sorg[1], sorg[2]); | 
| 407 | < | 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 %s", | 
| 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 | < | xfargs); | 
| 408 | > | rotargs, scalef, sorg[0], sorg[1], sorg[2]); | 
| 409 |  | if (!run_cmd(cmdbuf)) | 
| 410 |  | return(0); | 
| 411 |  | } | 
| 412 | < | if (front_comp & SDsampT)                       /* front transmission */ | 
| 413 | < | for (i = 0; i < NINCIDENT; i++) { | 
| 417 | < | get_ivector(ivec, i); | 
| 418 | < | put_trans_arrow(ivec, 1); | 
| 419 | < | cvt_sposition(sorg, ivec, 1); | 
| 420 | < | ivec[0] = -ivec[0]; ivec[1] = -ivec[1]; /* normal */ | 
| 421 | < | sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, | 
| 422 | < | sorg[0], sorg[1], sorg[2]); | 
| 423 | < | nxfa = 6; | 
| 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); | 
| 427 | < | printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); | 
| 428 | < | SDcompXform(vMtx, ivec, Yaxis); | 
| 429 | < | nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); | 
| 430 | < | sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", | 
| 431 | < | scalef, sorg[0], sorg[1], sorg[2]); | 
| 432 | < | 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 %s", | 
| 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 | < | xfargs); | 
| 418 | > | rotargs, scalef, sorg[0], sorg[1], sorg[2]); | 
| 419 |  | if (!run_cmd(cmdbuf)) | 
| 420 |  | return(0); | 
| 421 |  | } | 
| 422 | < | if (back_comp & SDsampR)                        /* rear reflection */ | 
| 441 | < | for (i = 0; i < NINCIDENT; i++) { | 
| 442 | < | get_ivector(ivec, i); | 
| 443 | < | put_mirror_arrow(ivec, -1); | 
| 422 | > | if (back_comp) { | 
| 423 |  | cvt_sposition(sorg, ivec, -1); | 
| 445 | – | ivec[0] = -ivec[0]; ivec[1] = -ivec[1]; /* normal */ | 
| 446 | – | sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, | 
| 447 | – | sorg[0], sorg[1], sorg[2]); | 
| 448 | – | nxfa = 6; | 
| 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", | 
| 456 | < | scalef, sorg[0], sorg[1], sorg[2]); | 
| 457 | < | 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 %s", | 
| 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 | < | xfargs); | 
| 436 | > | rotargs, scalef, sorg[0], sorg[1], sorg[2]); | 
| 437 |  | if (!run_cmd(cmdbuf)) | 
| 438 |  | return(0); | 
| 439 |  | } | 
| 440 | < | if (back_comp & SDsampT)                        /* rear transmission */ | 
| 441 | < | for (i = 0; i < NINCIDENT; i++) { | 
| 467 | < | get_ivector(ivec, i); | 
| 468 | < | put_trans_arrow(ivec, -1); | 
| 469 | < | cvt_sposition(sorg, ivec, -1); | 
| 470 | < | ivec[0] = -ivec[0]; ivec[1] = -ivec[1]; /* normal */ | 
| 471 | < | sprintf(xfargs, "-s %f -t %f %f %f", bsdf_rad, | 
| 472 | < | sorg[0], sorg[1], sorg[2]); | 
| 473 | < | nxfa = 6; | 
| 474 | < | printf("\nvoid colorfunc scale_pat\n"); | 
| 475 | < | printf("%d bsdf_red bsdf_grn bsdf_blu bsdf2rad.cal\n\t%s\n0\n0\n", | 
| 476 | < | 4+nxfa, xfargs); | 
| 477 | < | printf("\nscale_pat glow scale_mat\n0\n0\n4 1 1 1 0\n"); | 
| 478 | < | SDcompXform(vMtx, ivec, Yaxis); | 
| 479 | < | nxfa = addrot(xfargs, vMtx[0], vMtx[1], vMtx[2]); | 
| 480 | < | sprintf(xfargs+strlen(xfargs), " -s %f -t %f %f %f", | 
| 481 | < | scalef, sorg[0], sorg[1], sorg[2]); | 
| 482 | < | nxfa += 6; | 
| 440 | > | if (back_comp & SDsampT) { | 
| 441 | > | put_trans_arrow(sorg); | 
| 442 |  | fname = tfile_name(btpref, dsuffix, i); | 
| 443 | < | sprintf(cmdbuf, "gensurf scale_mat %s%d %s %s %s %d %d | xform -ry 180 %s", | 
| 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 | < | xfargs); | 
| 446 | > | rotargs, scalef, sorg[0], sorg[1], sorg[2]); | 
| 447 |  | if (!run_cmd(cmdbuf)) | 
| 448 |  | return(0); | 
| 449 |  | } | 
| 450 | + | } | 
| 451 |  | return(1); | 
| 452 |  | } | 
| 453 |  |  | 
| 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 .04 .5 .8\n", | 
| 465 | < | sph_mat); | 
| 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 */ | 
| 473 |  | case '.': | 
| 474 | + | case '~': | 
| 475 |  | CASEDIRSEP: | 
| 476 |  | curdir = ""; | 
| 477 |  | break; | 
| 480 |  | exit(1); | 
| 481 |  | break; | 
| 482 |  | } | 
| 483 | < | printf("\n# Actual BSDF material for rendering the hemispheres\n"); | 
| 484 | < | printf("\nvoid BSDF BSDFmat\n6 0 \"%s%s\" 0 1 0 .\n0\n0\n", | 
| 483 | > | printf("\n# Actual BSDF materials for rendering the hemispheres\n"); | 
| 484 | > | printf("\nvoid BSDF BSDF_f\n6 0 \"%s%s\" upx upy upz bsdf2rad.cal\n0\n0\n", | 
| 485 |  | curdir, XMLfile); | 
| 486 |  | printf("\nvoid plastic black\n0\n0\n5 0 0 0 0 0\n"); | 
| 487 | < | printf("\nvoid mixfunc %s\n4 BSDFmat black latlong bsdf2rad.cal\n0\n0\n", | 
| 488 | < | sph_mat); | 
| 487 | > | printf("\nvoid mixfunc %s\n4 BSDF_f black latlong bsdf2rad.cal\n0\n0\n", | 
| 488 | > | sph_fmat); | 
| 489 | > | printf("\nvoid BSDF BSDF_b\n8 0 \"%s%s\" upx upy upz bsdf2rad.cal -ry 180\n0\n0\n", | 
| 490 | > | curdir, XMLfile); | 
| 491 | > | printf("\nvoid mixfunc %s\n4 BSDF_b black latlong bsdf2rad.cal\n0\n0\n", | 
| 492 | > | sph_bmat); | 
| 493 |  | } | 
| 494 |  |  | 
| 495 |  | /* Put out overhead parallel light source */ | 
| 507 |  | static void | 
| 508 |  | put_hemispheres(void) | 
| 509 |  | { | 
| 510 | + | const int       nsegs = 131; | 
| 511 | + |  | 
| 512 |  | printf("\n# Hemisphere(s) for showing BSDF appearance (if XML file)\n"); | 
| 544 | – | printf("\nvoid antimatter anti_sph\n2 void %s\n0\n0\n", sph_mat); | 
| 513 |  | if (front_comp) { | 
| 514 | < | printf("\n%s sphere Front\n0\n0\n4 %f 0 0 %f\n", | 
| 515 | < | sph_mat, sph_xoffset, sph_rad); | 
| 516 | < | printf("\n!genbox anti_sph sph_eraser %f %f %f | xform -t %f %f %f\n", | 
| 549 | < | 2.02*sph_rad, 2.02*sph_rad, 1.02*sph_rad, | 
| 550 | < | -1.01*sph_rad + sph_xoffset, -1.01*sph_rad, -1.01*sph_rad); | 
| 514 | > | printf( | 
| 515 | > | "\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", | 
| 516 | > | sph_fmat, nsegs, sph_rad, 0.5*PI, sph_xoffset); | 
| 517 |  | printf("\nvoid brighttext front_text\n3 helvet.fnt . FRONT\n0\n"); | 
| 518 |  | printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n", | 
| 519 |  | -.22*sph_rad + sph_xoffset, -1.4*sph_rad, | 
| 527 |  | .25*sph_rad + sph_xoffset, -1.3*sph_rad ); | 
| 528 |  | } | 
| 529 |  | if (back_comp) { | 
| 530 | < | printf("\n%s bubble Back\n0\n0\n4 %f 0 0 %f\n", | 
| 531 | < | sph_mat, -sph_xoffset, sph_rad); | 
| 532 | < | printf("\n!genbox anti_sph sph_eraser %f %f %f | xform -t %f %f %f\n", | 
| 567 | < | 2.02*sph_rad, 2.02*sph_rad, 1.02*sph_rad, | 
| 568 | < | -1.01*sph_rad - sph_xoffset, -1.01*sph_rad, -1.01*sph_rad); | 
| 530 | > | printf( | 
| 531 | > | "\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", | 
| 532 | > | sph_bmat, nsegs, sph_rad, 0.5*PI, -sph_xoffset); | 
| 533 |  | printf("\nvoid brighttext back_text\n3 helvet.fnt . BACK\n0\n"); | 
| 534 |  | printf("12\n\t%f %f 0\n\t%f 0 0\n\t0 %f 0\n\t.01 1 -.1\n", | 
| 535 |  | -.22*sph_rad - sph_xoffset, -1.4*sph_rad, | 
| 751 |  | strcpy(bsdf_manuf, myBSDF.makr); | 
| 752 |  | put_matBSDF(argv[1]); | 
| 753 |  | } else { | 
| 754 | < | FILE    *fp; | 
| 754 | > | FILE    *fp[4]; | 
| 755 | > | if (argc > 5) { | 
| 756 | > | fprintf(stderr, "%s: more than 4 hemispheres!\n", progname); | 
| 757 | > | return(1); | 
| 758 | > | } | 
| 759 |  | for (n = 1; n < argc; n++) { | 
| 760 | < | fp = fopen(argv[n], "rb"); | 
| 761 | < | if (fp == NULL) { | 
| 760 | > | fp[n-1] = fopen(argv[n], "rb"); | 
| 761 | > | if (fp[n-1] == NULL) { | 
| 762 |  | fprintf(stderr, "%s: cannot open BSDF interpolant '%s'\n", | 
| 763 |  | progname, argv[n]); | 
| 764 |  | return(1); | 
| 765 |  | } | 
| 766 | < | if (getheader(fp, rbf_headline, NULL) < 0) { | 
| 766 | > | if (getheader(fp[n-1], rbf_headline, NULL) < 0) { | 
| 767 |  | fprintf(stderr, "%s: bad BSDF interpolant '%s'\n", | 
| 768 |  | progname, argv[n]); | 
| 769 |  | return(1); | 
| 770 |  | } | 
| 803 | – | fclose(fp); | 
| 771 |  | } | 
| 772 |  | set_minlog(); | 
| 773 |  | for (n = 1; n < argc; n++) { | 
| 774 | < | fp = fopen(argv[n], "rb"); | 
| 775 | < | if (!load_bsdf_rep(fp)) | 
| 774 | > | if (fseek(fp[n-1], 0L, SEEK_SET) < 0) { | 
| 775 | > | fprintf(stderr, "%s: cannot seek on '%s'\n", | 
| 776 | > | progname, argv[n]); | 
| 777 |  | return(1); | 
| 778 | < | fclose(fp); | 
| 778 | > | } | 
| 779 | > | if (!load_bsdf_rep(fp[n-1])) | 
| 780 | > | return(1); | 
| 781 | > | fclose(fp[n-1]); | 
| 782 |  | if (!build_wRBF()) | 
| 783 |  | return(1); | 
| 784 |  | } | 
| 789 |  | put_scale(); | 
| 790 |  | if (inpXML && myBSDF.mgf) | 
| 791 |  | convert_mgf(myBSDF.mgf); | 
| 792 | < | if (!put_BSDFs()) | 
| 792 | > | if (!put_BSDFs())               /* most of the output happens here */ | 
| 793 |  | return(1); | 
| 794 |  | cleanup_tmp(); | 
| 795 |  | return(0); |