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/* Copyright (c) 1996 Regents of the University of California */ |
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#ifndef lint |
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static char SCCSid[] = "$SunId$ LBL"; |
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static const char RCSid[] = "$Id$"; |
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#endif |
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|
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/* |
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* Convert MGF (Materials and Geometry Format) to Radiance |
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*/ |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <math.h> |
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#include <string.h> |
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#include "mgflib/parser.h" |
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|
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#include "platform.h" |
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#include "mgf_parser.h" |
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#include "color.h" |
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#include "tmesh.h" |
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#include "lookup.h" |
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|
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#define putv(v) printf("%18.12g %18.12g %18.12g\n",(v)[0],(v)[1],(v)[2]) |
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double emult = 1.; /* emitter multiplier */ |
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FILE *matfp = stdout; /* material output file */ |
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FILE *matfp; /* material output file */ |
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|
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int r_comment(), r_cone(), r_cyl(), r_face(), r_ies(), r_ring(), r_sph(); |
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char *material(), *object(), *addarg(); |
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extern int r_comment(int ac, char **av); |
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extern int r_color(int ac, char **av); |
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extern int r_cone(int ac, char **av); |
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extern int r_cyl(int ac, char **av); |
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extern int r_sph(int ac, char **av); |
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extern int r_ring(int ac, char **av); |
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extern int r_face(int ac, char **av); |
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extern int r_ies(int ac, char **av); |
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extern void putsided(char *mname); |
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extern char * material(void); |
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extern char * object(void); |
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extern char * addarg(char *op, char *arg); |
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extern void do_tri(char *mat, C_VERTEX *cv1, C_VERTEX *cv2, C_VERTEX *cv3, int iv); |
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extern void cvtcolor(COLOR radrgb, C_COLOR *ciec, double intensity); |
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extern char * specolor(COLOR radrgb, C_COLOR *ciec, double intensity); |
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main(argc, argv) /* convert files to stdout */ |
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int argc; |
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char *argv[]; |
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|
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int |
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main( |
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int argc, |
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char *argv[] |
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) |
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{ |
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int i; |
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|
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matfp = stdout; |
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/* print out parser version */ |
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printf("## Translated from MGF Version %d.%d\n", MG_VMAJOR, MG_VMINOR); |
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/* initialize dispatch table */ |
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mg_ehand[MG_E_COLOR] = c_hcolor; /* they get color */ |
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mg_ehand[MG_E_CONE] = r_cone; /* we do cones */ |
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mg_ehand[MG_E_CMIX] = c_hcolor; /* they mix colors */ |
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mg_ehand[MG_E_CSPEC] = c_hcolor; /* they get spectra */ |
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mg_ehand[MG_E_CXY] = c_hcolor; /* they get chromaticities */ |
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mg_ehand[MG_E_CCT] = c_hcolor; /* they get color temp's */ |
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mg_ehand[MG_E_CSPEC] = r_color; /* we get spectra */ |
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mg_ehand[MG_E_CCT] = r_color; /* we get color temp's */ |
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mg_ehand[MG_E_CYL] = r_cyl; /* we do cylinders */ |
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mg_ehand[MG_E_ED] = c_hmaterial; /* they get emission */ |
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mg_ehand[MG_E_FACE] = r_face; /* we do faces */ |
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int |
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r_comment(ac, av) /* repeat a comment verbatim */ |
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register int ac; |
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register char **av; |
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r_comment( /* repeat a comment verbatim */ |
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int ac, |
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char **av |
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) |
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{ |
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putchar('#'); /* use Radiance comment character */ |
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while (--ac) { /* pass through verbatim */ |
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int |
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r_cone(ac, av) /* put out a cone */ |
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int ac; |
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char **av; |
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r_color( /* call color handler & remember name */ |
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int ac, |
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char **av |
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) |
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{ |
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int rval = c_hcolor(ac, av); |
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|
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if (rval == MG_OK) |
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c_ccolor->client_data = c_ccname; |
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|
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return(rval); |
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} |
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|
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|
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int |
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r_cone( /* put out a cone */ |
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int ac, |
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char **av |
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) |
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{ |
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static int ncones; |
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char *mat; |
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double r1, r2; |
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if (r2 == 0.) |
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return(MG_EILL); |
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inv = r2 < 0.; |
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} else if (r2 != 0. && inv ^ r2 < 0.) |
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} else if (r2 != 0. && inv ^ (r2 < 0.)) |
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return(MG_EILL); |
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if (inv) { |
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r1 = -r1; |
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int |
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r_cyl(ac, av) /* put out a cylinder */ |
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int ac; |
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char **av; |
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r_cyl( /* put out a cylinder */ |
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int ac, |
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char **av |
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) |
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{ |
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static int ncyls; |
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char *mat; |
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int |
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r_sph(ac, av) /* put out a sphere */ |
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int ac; |
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char **av; |
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r_sph( /* put out a sphere */ |
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int ac, |
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char **av |
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) |
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{ |
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static int nsphs; |
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char *mat; |
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|
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int |
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r_ring(ac, av) /* put out a ring */ |
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int ac; |
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char **av; |
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r_ring( /* put out a ring */ |
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int ac, |
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char **av |
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) |
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{ |
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static int nrings; |
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char *mat; |
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xf_rotvect(norm, cv->n); /* rotate normal */ |
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r1 = xf_scale(atof(av[2])); /* scale radii */ |
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r2 = xf_scale(atof(av[3])); |
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if (r1 < 0. | r2 <= r1) |
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if ((r1 < 0.) | (r2 <= r1)) |
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return(MG_EILL); |
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if ((mat = material()) == NULL) /* get material */ |
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return(MG_EBADMAT); |
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|
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int |
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r_face(ac, av) /* convert a face */ |
334 |
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int ac; |
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char **av; |
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r_face( /* convert a face */ |
334 |
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int ac, |
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char **av |
336 |
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) |
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{ |
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static int nfaces; |
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int myi = invert; |
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char *mat; |
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register int i; |
342 |
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register C_VERTEX *cv; |
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int i; |
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C_VERTEX *cv; |
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FVECT v; |
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int rv; |
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|
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/* check argument count and type */ |
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if (ac < 4) |
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return(MG_EARGC); |
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if (is0vect(cva[i-1]->n)) |
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break; |
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} |
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if (i == ac) { |
358 |
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if (i < ac) |
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i = ISFLAT; |
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else |
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i = flat_tri(cva[0]->p, cva[1]->p, cva[2]->p, |
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cva[0]->n, cva[1]->n, cva[2]->n); |
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if (i < 0) |
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return(MG_OK); /* degenerate (error?) */ |
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if (i == DEGEN) |
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return(MG_OK); /* degenerate (error?) */ |
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if (i == RVBENT) { |
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myi = !myi; |
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i = ISBENT; |
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} else if (i == RVFLAT) { |
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myi = !myi; |
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i = ISFLAT; |
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} |
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if (!i) { /* smoothed triangles */ |
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do_tri(mat, cva[0], cva[1], cva[2]); |
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if (i == ISBENT) { /* smoothed triangles */ |
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do_tri(mat, cva[0], cva[1], cva[2], myi); |
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if (ac == 5) |
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do_tri(mat, cva[2], cva[3], cva[0]); |
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do_tri(mat, cva[2], cva[3], cva[0], myi); |
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return(MG_OK); |
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} |
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} |
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printf("\n%s polygon %sf%d\n", mat, object(), ++nfaces); |
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printf("0\n0\n%d\n", 3*(ac-1)); |
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for (i = 1; i < ac; i++) { /* get, transform, print each vertex */ |
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if ((cv = c_getvert(av[invert ? ac-i : i])) == NULL) |
383 |
> |
if ((cv = c_getvert(av[myi ? ac-i : i])) == NULL) |
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return(MG_EUNDEF); |
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xf_xfmpoint(v, cv->p); |
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putv(v); |
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int |
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r_ies(ac, av) /* convert an IES luminaire file */ |
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int ac; |
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char **av; |
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> |
r_ies( /* convert an IES luminaire file */ |
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int ac, |
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char **av |
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> |
) |
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{ |
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int xa0 = 2; |
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char combuf[128]; |
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char fname[48]; |
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char *oname; |
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register char *op; |
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< |
register int i; |
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> |
char *op; |
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> |
int i; |
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/* check argument count */ |
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if (ac < 2) |
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return(MG_EARGC); |
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} |
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|
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do_tri(mat, cv1, cv2, cv3) /* put out smoothed triangle */ |
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char *mat; |
460 |
< |
C_VERTEX *cv1, *cv2, *cv3; |
458 |
> |
void |
459 |
> |
do_tri( /* put out smoothed triangle */ |
460 |
> |
char *mat, |
461 |
> |
C_VERTEX *cv1, |
462 |
> |
C_VERTEX *cv2, |
463 |
> |
C_VERTEX *cv3, |
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> |
int iv |
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> |
) |
466 |
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{ |
467 |
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static int ntris; |
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BARYCCM bvecs; |
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< |
FLOAT bcoor[3][3]; |
469 |
> |
RREAL bcoor[3][3]; |
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C_VERTEX *cvt; |
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FVECT v1, v2, v3; |
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FVECT n1, n2, n3; |
473 |
< |
register int i; |
473 |
> |
int i; |
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|
475 |
< |
if (invert) { /* swap vertex order if inverted */ |
475 |
> |
if (iv) { /* swap vertex order if inverted */ |
476 |
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cvt = cv1; |
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cv1 = cv3; |
478 |
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cv3 = cvt; |
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bcoor[i][1] = n2[i]; |
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bcoor[i][2] = n3[i]; |
495 |
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} |
496 |
< |
put_baryc(&bvecs, bcoor, 3); |
496 |
> |
fput_baryc(&bvecs, bcoor, 3, stdout); |
497 |
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/* put out triangle */ |
498 |
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printf("\nT-nor polygon %st%d\n", object(), ++ntris); |
499 |
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printf("0\n0\n9\n"); |
503 |
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} |
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|
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|
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void |
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putsided(char *mname) /* print out mixfunc for sided material */ |
508 |
+ |
{ |
509 |
+ |
fprintf(matfp, "\nvoid mixfunc %s\n", mname); |
510 |
+ |
fprintf(matfp, "4 %s void if(Rdot,1,0) .\n0\n0\n", mname); |
511 |
+ |
} |
512 |
+ |
|
513 |
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|
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char * |
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< |
material() /* get (and print) current material */ |
515 |
> |
material(void) /* get (and print) current material */ |
516 |
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{ |
517 |
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char *mname = "mat"; |
518 |
+ |
char *pname; |
519 |
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COLOR radrgb, c2; |
520 |
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double d; |
457 |
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register int i; |
521 |
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|
522 |
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if (c_cmname != NULL) |
523 |
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mname = c_cmname; |
526 |
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/* else update output */ |
527 |
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c_cmaterial->clock = 0; |
528 |
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if (c_cmaterial->ed > .1) { /* emitter */ |
529 |
< |
cvtcolor(radrgb, &c_cmaterial->ed_c, |
529 |
> |
pname = specolor(radrgb, &c_cmaterial->ed_c, |
530 |
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emult*c_cmaterial->ed/(PI*WHTEFFICACY)); |
531 |
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if (glowdist < FHUGE) { /* do a glow */ |
532 |
< |
fprintf(matfp, "\nvoid glow %s\n0\n0\n", mname); |
532 |
> |
fprintf(matfp, "\n%s glow %s\n0\n0\n", pname, mname); |
533 |
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fprintf(matfp, "4 %f %f %f %f\n", colval(radrgb,RED), |
534 |
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colval(radrgb,GRN), |
535 |
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colval(radrgb,BLU), glowdist); |
536 |
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} else { |
537 |
< |
fprintf(matfp, "\nvoid light %s\n0\n0\n", mname); |
537 |
> |
fprintf(matfp, "\n%s light %s\n0\n0\n", pname, mname); |
538 |
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fprintf(matfp, "3 %f %f %f\n", colval(radrgb,RED), |
539 |
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colval(radrgb,GRN), |
540 |
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colval(radrgb,BLU)); |
543 |
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} |
544 |
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d = c_cmaterial->rd + c_cmaterial->td + |
545 |
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c_cmaterial->rs + c_cmaterial->ts; |
546 |
< |
if (d < 0. | d > 1.) |
546 |
> |
if ((d < 0.) | (d > 1.)) |
547 |
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return(NULL); |
548 |
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/* check for glass/dielectric */ |
549 |
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if (c_cmaterial->nr > 1.1 && |
571 |
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colval(radrgb,GRN), colval(radrgb,BLU), |
572 |
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c_cmaterial->nr); |
573 |
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return(mname); |
574 |
< |
} |
574 |
> |
} |
575 |
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/* check for trans */ |
576 |
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if (c_cmaterial->td > .01 || c_cmaterial->ts > .01) { |
577 |
< |
double ts, a5, a6; |
515 |
< |
|
516 |
< |
if (c_cmaterial->sided) { |
517 |
< |
ts = sqrt(c_cmaterial->ts); /* approximate */ |
518 |
< |
a5 = .5; |
519 |
< |
} else { |
520 |
< |
ts = c_cmaterial->ts; |
521 |
< |
a5 = 1.; |
522 |
< |
} |
577 |
> |
double a5, a6; |
578 |
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/* average colors */ |
579 |
< |
d = c_cmaterial->rd + c_cmaterial->td + ts; |
579 |
> |
d = c_cmaterial->rd + c_cmaterial->td + c_cmaterial->ts; |
580 |
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cvtcolor(radrgb, &c_cmaterial->rd_c, c_cmaterial->rd/d); |
581 |
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cvtcolor(c2, &c_cmaterial->td_c, c_cmaterial->td/d); |
582 |
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addcolor(radrgb, c2); |
583 |
< |
cvtcolor(c2, &c_cmaterial->ts_c, ts/d); |
583 |
> |
cvtcolor(c2, &c_cmaterial->ts_c, c_cmaterial->ts/d); |
584 |
|
addcolor(radrgb, c2); |
585 |
< |
if (c_cmaterial->rs + ts > .0001) |
585 |
> |
if (c_cmaterial->rs + c_cmaterial->ts > .0001) |
586 |
|
a5 = (c_cmaterial->rs*c_cmaterial->rs_a + |
587 |
< |
ts*a5*c_cmaterial->ts_a) / |
588 |
< |
(c_cmaterial->rs + ts); |
589 |
< |
a6 = (c_cmaterial->td + ts) / |
590 |
< |
(c_cmaterial->rd + c_cmaterial->td + ts); |
587 |
> |
c_cmaterial->ts*c_cmaterial->ts_a) / |
588 |
> |
(c_cmaterial->rs + c_cmaterial->ts); |
589 |
> |
a6 = (c_cmaterial->td + c_cmaterial->ts) / |
590 |
> |
(c_cmaterial->rd + c_cmaterial->td + c_cmaterial->ts); |
591 |
|
if (a6 < .999) |
592 |
|
d = c_cmaterial->rd/(1. - c_cmaterial->rs)/(1. - a6); |
593 |
|
else |
594 |
< |
d = c_cmaterial->td + ts; |
594 |
> |
d = c_cmaterial->td + c_cmaterial->ts; |
595 |
|
scalecolor(radrgb, d); |
596 |
|
fprintf(matfp, "\nvoid trans %s\n0\n0\n", mname); |
597 |
|
fprintf(matfp, "7 %f %f %f\n", colval(radrgb,RED), |
598 |
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colval(radrgb,GRN), colval(radrgb,BLU)); |
599 |
|
fprintf(matfp, "\t%f %f %f %f\n", c_cmaterial->rs, a5, a6, |
600 |
< |
ts/(ts + c_cmaterial->td)); |
600 |
> |
c_cmaterial->ts/(c_cmaterial->ts + c_cmaterial->td)); |
601 |
> |
if (c_cmaterial->sided) |
602 |
> |
putsided(mname); |
603 |
|
return(mname); |
604 |
|
} |
605 |
|
/* check for plastic */ |
606 |
< |
if (c_cmaterial->rs < .1) { |
607 |
< |
cvtcolor(radrgb, &c_cmaterial->rd_c, |
606 |
> |
if (c_cmaterial->rs < .1 && (c_cmaterial->rs < .1*c_cmaterial->rd || |
607 |
> |
c_isgrey(&c_cmaterial->rs_c))) { |
608 |
> |
pname = specolor(radrgb, &c_cmaterial->rd_c, |
609 |
|
c_cmaterial->rd/(1.-c_cmaterial->rs)); |
610 |
< |
fprintf(matfp, "\nvoid plastic %s\n0\n0\n", mname); |
610 |
> |
fprintf(matfp, "\n%s plastic %s\n0\n0\n", pname, mname); |
611 |
|
fprintf(matfp, "5 %f %f %f %f %f\n", colval(radrgb,RED), |
612 |
|
colval(radrgb,GRN), colval(radrgb,BLU), |
613 |
|
c_cmaterial->rs, c_cmaterial->rs_a); |
614 |
+ |
if (c_cmaterial->sided) |
615 |
+ |
putsided(mname); |
616 |
|
return(mname); |
617 |
|
} |
618 |
|
/* else it's metal */ |
619 |
< |
/* average colors */ |
620 |
< |
cvtcolor(radrgb, &c_cmaterial->rd_c, c_cmaterial->rd); |
621 |
< |
cvtcolor(c2, &c_cmaterial->rs_c, c_cmaterial->rs); |
622 |
< |
addcolor(radrgb, c2); |
623 |
< |
fprintf(matfp, "\nvoid metal %s\n0\n0\n", mname); |
619 |
> |
/* compute color */ |
620 |
> |
if (c_equiv(&c_cmaterial->rd_c, &c_cmaterial->rs_c)) { |
621 |
> |
pname = specolor(radrgb, &c_cmaterial->rs_c, c_cmaterial->rs+c_cmaterial->rd); |
622 |
> |
} else if (c_cmaterial->rd <= .05f) { |
623 |
> |
pname = specolor(radrgb, &c_cmaterial->rs_c, c_cmaterial->rs); |
624 |
> |
cvtcolor(c2, &c_cmaterial->rd_c, c_cmaterial->rd); |
625 |
> |
addcolor(radrgb, c2); |
626 |
> |
} else { |
627 |
> |
pname = "void"; |
628 |
> |
cvtcolor(radrgb, &c_cmaterial->rd_c, c_cmaterial->rd); |
629 |
> |
cvtcolor(c2, &c_cmaterial->rs_c, c_cmaterial->rs); |
630 |
> |
addcolor(radrgb, c2); |
631 |
> |
} |
632 |
> |
fprintf(matfp, "\n%s metal %s\n0\n0\n", pname, mname); |
633 |
|
fprintf(matfp, "5 %f %f %f %f %f\n", colval(radrgb,RED), |
634 |
|
colval(radrgb,GRN), colval(radrgb,BLU), |
635 |
|
c_cmaterial->rs/(c_cmaterial->rd + c_cmaterial->rs), |
636 |
|
c_cmaterial->rs_a); |
637 |
+ |
if (c_cmaterial->sided) |
638 |
+ |
putsided(mname); |
639 |
|
return(mname); |
640 |
|
} |
641 |
|
|
642 |
|
|
643 |
< |
cvtcolor(radrgb, ciec, intensity) /* convert a CIE XYZ color to RGB */ |
644 |
< |
COLOR radrgb; |
645 |
< |
register C_COLOR *ciec; |
646 |
< |
double intensity; |
643 |
> |
void |
644 |
> |
cvtcolor( /* convert a CIE XYZ color to RGB */ |
645 |
> |
COLOR radrgb, |
646 |
> |
C_COLOR *ciec, |
647 |
> |
double intensity |
648 |
> |
) |
649 |
|
{ |
650 |
< |
static COLOR ciexyz; |
650 |
> |
COLOR ciexyz; |
651 |
|
|
652 |
|
c_ccvt(ciec, C_CSXY); /* get xy representation */ |
653 |
|
ciexyz[1] = intensity; |
657 |
|
} |
658 |
|
|
659 |
|
|
660 |
+ |
static int /* new spectrum definition? */ |
661 |
+ |
newspecdef(C_COLOR *spc) |
662 |
+ |
{ |
663 |
+ |
static LUTAB spc_tab = LU_SINIT(NULL,free); |
664 |
+ |
LUENT *lp = lu_find(&spc_tab, (const char *)spc->client_data); |
665 |
+ |
|
666 |
+ |
if (lp == NULL) /* should never happen */ |
667 |
+ |
return(1); |
668 |
+ |
if (lp->data == NULL) { /* new entry */ |
669 |
+ |
lp->key = (char *)spc->client_data; |
670 |
+ |
lp->data = (char *)malloc(sizeof(C_COLOR)); |
671 |
+ |
} else if (c_equiv(spc, (C_COLOR *)lp->data)) |
672 |
+ |
return(0); /* unchanged */ |
673 |
+ |
|
674 |
+ |
if (lp->data != NULL) /* else remember if we can */ |
675 |
+ |
*(C_COLOR *)lp->data = *spc; |
676 |
+ |
return(1); /* good as new */ |
677 |
+ |
} |
678 |
+ |
|
679 |
+ |
|
680 |
|
char * |
681 |
< |
object() /* return current object name */ |
681 |
> |
specolor( /* check if color has spectra and output accordingly */ |
682 |
> |
COLOR radrgb, |
683 |
> |
C_COLOR *clr, |
684 |
> |
double intensity |
685 |
> |
) |
686 |
|
{ |
687 |
+ |
static char spname[128]; |
688 |
+ |
double mult; |
689 |
+ |
int i; |
690 |
+ |
|
691 |
+ |
if (!(clr->flags & C_CDSPEC)) { /* not defined spectrally? */ |
692 |
+ |
cvtcolor(radrgb, clr, intensity); |
693 |
+ |
return("void"); |
694 |
+ |
} |
695 |
+ |
setcolor(radrgb, intensity, intensity, intensity); |
696 |
+ |
if (clr->client_data != NULL) { /* get name if available */ |
697 |
+ |
strcpy(spname, (char *)clr->client_data); |
698 |
+ |
strcat(spname, "*"); /* make sure it's special */ |
699 |
+ |
if (!newspecdef(clr)) /* output already? */ |
700 |
+ |
return(spname); |
701 |
+ |
} else |
702 |
+ |
strcpy(spname, "spec*"); |
703 |
+ |
c_ccvt(clr, C_CSEFF); /* else output spectrum prim */ |
704 |
+ |
fprintf(matfp, "\nvoid spectrum %s\n0\n0\n", spname); |
705 |
+ |
fprintf(matfp, "%d %d %d", C_CNSS+2, C_CMINWL, C_CMAXWL); |
706 |
+ |
mult = (C_CNSS*c_dfcolor.eff)/(clr->ssum*clr->eff); |
707 |
+ |
for (i = 0; i < C_CNSS; i++) { |
708 |
+ |
if (!((i+1)%6)) fputc('\n', matfp); |
709 |
+ |
fprintf(matfp, "\t%.5f", clr->ssamp[i]*mult); |
710 |
+ |
} |
711 |
+ |
fputc('\n', matfp); |
712 |
+ |
return(spname); |
713 |
+ |
} |
714 |
+ |
|
715 |
+ |
|
716 |
+ |
char * |
717 |
+ |
object(void) /* return current object name */ |
718 |
+ |
{ |
719 |
|
static char objbuf[64]; |
720 |
< |
register int i; |
721 |
< |
register char *cp; |
720 |
> |
int i; |
721 |
> |
char *cp; |
722 |
|
int len; |
723 |
|
/* tracked by obj_handler */ |
724 |
|
i = obj_nnames - sizeof(objbuf)/16; |
736 |
|
|
737 |
|
|
738 |
|
char * |
739 |
< |
addarg(op, arg) /* add argument and advance pointer */ |
740 |
< |
register char *op, *arg; |
739 |
> |
addarg( /* add argument and advance pointer */ |
740 |
> |
char *op, |
741 |
> |
char *arg |
742 |
> |
) |
743 |
|
{ |
744 |
|
*op = ' '; |
745 |
< |
while (*++op = *arg++) |
745 |
> |
while ( (*++op = *arg++) ) |
746 |
|
; |
747 |
|
return(op); |
748 |
|
} |