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* G. Ward |
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*/ |
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#define _USE_MATH_DEFINES |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <ctype.h> |
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#include <math.h> |
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#include "platform.h" |
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#include "bsdfrep.h" |
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#include "resolu.h" |
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/* global argv[0] */ |
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char *progname; |
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|
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< |
/* Load a set of measurements corresponding to a particular incident angle */ |
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typedef struct { |
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> |
const char *fname; /* input file path */ |
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> |
double theta, phi; /* input angles */ |
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int igp[2]; /* input grid position */ |
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int isDSF; /* data is DSF (rather than BSDF)? */ |
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> |
long dstart; /* data start offset in file */ |
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} PGINPUT; |
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> |
|
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> |
PGINPUT *inpfile; /* input files sorted by incidence */ |
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> |
int ninpfiles; /* number of input files */ |
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> |
|
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/* Compare incident angles */ |
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static int |
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< |
load_pabopto_meas(const char *fname) |
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> |
cmp_indir(const void *p1, const void *p2) |
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{ |
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const PGINPUT *inp1 = (const PGINPUT *)p1; |
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const PGINPUT *inp2 = (const PGINPUT *)p2; |
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int ydif = inp1->igp[1] - inp2->igp[1]; |
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|
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if (ydif) |
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return(ydif); |
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|
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return(inp1->igp[0] - inp2->igp[0]); |
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} |
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|
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/* Prepare a PAB-Opto input file by reading its header */ |
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static int |
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init_pabopto_inp(const int i, const char *fname) |
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{ |
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FILE *fp = fopen(fname, "r"); |
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int inp_is_DSF = -1; |
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double new_theta, new_phi, theta_out, phi_out, val; |
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FVECT dv; |
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char buf[2048]; |
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int n, c; |
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int c; |
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|
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if (fp == NULL) { |
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fputs(fname, stderr); |
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fputs(": cannot open\n", stderr); |
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return(0); |
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} |
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#ifdef DEBUG |
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fprintf(stderr, "Loading measurement file '%s'...\n", fname); |
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< |
#endif |
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inpfile[i].fname = fname; |
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inpfile[i].isDSF = -1; |
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inpfile[i].theta = inpfile[i].phi = -10001.; |
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/* read header information */ |
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while ((c = getc(fp)) == '#' || c == EOF) { |
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char typ[32]; |
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if (fgets(buf, sizeof(buf), fp) == NULL) { |
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fputs(fname, stderr); |
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fputs(": unexpected EOF\n", stderr); |
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fclose(fp); |
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return(0); |
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} |
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if (!strcmp(buf, "format: theta phi DSF\n")) { |
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inp_is_DSF = 1; |
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if (sscanf(buf, "sample_name \"%[^\"]\"", bsdf_name) == 1) |
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continue; |
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if (sscanf(buf, "format: theta phi %s", typ) == 1) { |
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if (!strcasecmp(typ, "DSF")) { |
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inpfile[i].isDSF = 1; |
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continue; |
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} |
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if (!strcasecmp(typ, "BSDF")) { |
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inpfile[i].isDSF = 0; |
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continue; |
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} |
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} |
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< |
if (!strcmp(buf, "format: theta phi BSDF\n")) { |
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inp_is_DSF = 0; |
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if (sscanf(buf, "intheta %lf", &inpfile[i].theta) == 1) |
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continue; |
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} |
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if (sscanf(buf, "intheta %lf", &new_theta) == 1) |
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if (sscanf(buf, "inphi %lf", &inpfile[i].phi) == 1) |
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continue; |
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if (sscanf(buf, "inphi %lf", &new_phi) == 1) |
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continue; |
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if (sscanf(buf, "incident_angle %lf %lf", |
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< |
&new_theta, &new_phi) == 2) |
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&inpfile[i].theta, &inpfile[i].phi) == 2) |
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continue; |
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} |
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ungetc(c, fp); |
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if (inp_is_DSF < 0) { |
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> |
inpfile[i].dstart = ftell(fp) - 1; |
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fclose(fp); |
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if (inpfile[i].isDSF < 0) { |
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fputs(fname, stderr); |
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fputs(": unknown format\n", stderr); |
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fclose(fp); |
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return(0); |
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} |
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if ((inpfile[i].theta < -10000.) | (inpfile[i].phi < -10000.)) { |
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fputs(fname, stderr); |
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fputs(": unknown incident angle\n", stderr); |
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return(0); |
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} |
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/* convert angle to grid position */ |
106 |
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dv[2] = sin(M_PI/180.*inpfile[i].theta); |
107 |
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dv[0] = cos(M_PI/180.*inpfile[i].phi)*dv[2]; |
108 |
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dv[1] = sin(M_PI/180.*inpfile[i].phi)*dv[2]; |
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dv[2] = sqrt(1. - dv[2]*dv[2]); |
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pos_from_vec(inpfile[i].igp, dv); |
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return(1); |
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} |
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|
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/* Load a set of measurements corresponding to a particular incident angle */ |
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static int |
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add_pabopto_inp(const int i) |
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{ |
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FILE *fp = fopen(inpfile[i].fname, "r"); |
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double theta_out, phi_out, val; |
120 |
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int n, c; |
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|
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if (fp == NULL || fseek(fp, inpfile[i].dstart, 0) == EOF) { |
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fputs(inpfile[i].fname, stderr); |
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fputs(": cannot open\n", stderr); |
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return(0); |
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} |
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/* prepare input grid */ |
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< |
new_bsdf_data(new_theta, new_phi); |
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< |
/* read actual data */ |
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> |
if (!i || cmp_indir(&inpfile[i-1], &inpfile[i])) { |
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> |
if (i) /* process previous incidence */ |
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> |
make_rbfrep(); |
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> |
#ifdef DEBUG |
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> |
fprintf(stderr, "New incident (theta,phi)=(%f,%f)\n", |
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> |
inpfile[i].theta, inpfile[i].phi); |
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> |
#endif |
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> |
new_bsdf_data(inpfile[i].theta, inpfile[i].phi); |
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> |
} |
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> |
#ifdef DEBUG |
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> |
fprintf(stderr, "Loading measurements from '%s'...\n", inpfile[i].fname); |
139 |
> |
#endif |
140 |
> |
/* read scattering data */ |
141 |
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while (fscanf(fp, "%lf %lf %lf\n", &theta_out, &phi_out, &val) == 3) |
142 |
< |
add_bsdf_data(theta_out, phi_out, val, inp_is_DSF); |
142 |
> |
add_bsdf_data(theta_out, phi_out, val, inpfile[i].isDSF); |
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n = 0; |
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while ((c = getc(fp)) != EOF) |
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n += !isspace(c); |
146 |
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if (n) |
147 |
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fprintf(stderr, |
148 |
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"%s: warning: %d unexpected characters past EOD\n", |
149 |
< |
fname, n); |
149 |
> |
inpfile[i].fname, n); |
150 |
|
fclose(fp); |
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return(1); |
152 |
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} |
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|
154 |
+ |
#ifndef TEST_MAIN |
155 |
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/* Read in PAB-Opto BSDF files and output RBF interpolant */ |
156 |
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int |
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main(int argc, char *argv[]) |
174 |
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} |
175 |
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argv += 2; argc -= 2; |
176 |
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} |
177 |
< |
if (argc < 3) |
177 |
> |
/* initialize & sort inputs */ |
178 |
> |
ninpfiles = argc - 1; |
179 |
> |
if (ninpfiles < 2) |
180 |
|
goto userr; |
181 |
< |
for (i = 1; i < argc; i++) { /* compile measurements */ |
182 |
< |
if (!load_pabopto_meas(argv[i])) |
181 |
> |
inpfile = (PGINPUT *)malloc(sizeof(PGINPUT)*ninpfiles); |
182 |
> |
if (inpfile == NULL) |
183 |
> |
return(1); |
184 |
> |
for (i = 0; i < ninpfiles; i++) |
185 |
> |
if (!init_pabopto_inp(i, argv[i+1])) |
186 |
|
return(1); |
187 |
< |
make_rbfrep(); |
188 |
< |
} |
187 |
> |
qsort(inpfile, ninpfiles, sizeof(PGINPUT), &cmp_indir); |
188 |
> |
/* compile measurements */ |
189 |
> |
for (i = 0; i < ninpfiles; i++) |
190 |
> |
if (!add_pabopto_inp(i)) |
191 |
> |
return(1); |
192 |
> |
make_rbfrep(); /* process last data set */ |
193 |
|
build_mesh(); /* create interpolation */ |
194 |
|
save_bsdf_rep(stdout); /* write it out */ |
195 |
|
return(0); |
198 |
|
progname); |
199 |
|
return(1); |
200 |
|
} |
201 |
+ |
#else |
202 |
+ |
/* Test main produces a Radiance model from the given input file */ |
203 |
+ |
int |
204 |
+ |
main(int argc, char *argv[]) |
205 |
+ |
{ |
206 |
+ |
PGINPUT pginp; |
207 |
+ |
char buf[128]; |
208 |
+ |
FILE *pfp; |
209 |
+ |
double bsdf, min_log; |
210 |
+ |
FVECT dir; |
211 |
+ |
int i, j, n; |
212 |
+ |
|
213 |
+ |
if (argc != 2) { |
214 |
+ |
fprintf(stderr, "Usage: %s input.dat > output.rad\n", argv[0]); |
215 |
+ |
return(1); |
216 |
+ |
} |
217 |
+ |
ninpfiles = 1; |
218 |
+ |
inpfile = &pginp; |
219 |
+ |
if (!init_pabopto_inp(0, argv[1]) || !add_pabopto_inp(0)) |
220 |
+ |
return(1); |
221 |
+ |
/* reduce data set */ |
222 |
+ |
make_rbfrep(); |
223 |
+ |
#ifdef DEBUG |
224 |
+ |
fprintf(stderr, "Minimum BSDF = %.4f\n", bsdf_min); |
225 |
+ |
#endif |
226 |
+ |
min_log = log(bsdf_min*.5 + 1e-5); |
227 |
+ |
#if 1 /* produce spheres at meas. */ |
228 |
+ |
puts("void plastic yellow\n0\n0\n5 .6 .4 .01 .04 .08\n"); |
229 |
+ |
n = 0; |
230 |
+ |
for (i = 0; i < GRIDRES; i++) |
231 |
+ |
for (j = 0; j < GRIDRES; j++) |
232 |
+ |
if (dsf_grid[i][j].sum.n > 0) { |
233 |
+ |
ovec_from_pos(dir, i, j); |
234 |
+ |
bsdf = dsf_grid[i][j].sum.v / |
235 |
+ |
(dsf_grid[i][j].sum.n*output_orient*dir[2]); |
236 |
+ |
if (bsdf <= bsdf_min*.6) |
237 |
+ |
continue; |
238 |
+ |
bsdf = log(bsdf + 1e-5) - min_log; |
239 |
+ |
ovec_from_pos(dir, i, j); |
240 |
+ |
printf("yellow sphere s%04d\n0\n0\n", ++n); |
241 |
+ |
printf("4 %.6g %.6g %.6g %.6g\n\n", |
242 |
+ |
dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf, |
243 |
+ |
.007*bsdf); |
244 |
+ |
} |
245 |
+ |
#endif |
246 |
+ |
#if 1 /* spheres at RBF peaks */ |
247 |
+ |
puts("void plastic red\n0\n0\n5 .8 .01 .01 .04 .08\n"); |
248 |
+ |
for (n = 0; n < dsf_list->nrbf; n++) { |
249 |
+ |
RBFVAL *rbf = &dsf_list->rbfa[n]; |
250 |
+ |
ovec_from_pos(dir, rbf->gx, rbf->gy); |
251 |
+ |
bsdf = eval_rbfrep(dsf_list, dir) / (output_orient*dir[2]); |
252 |
+ |
bsdf = log(bsdf + 1e-5) - min_log; |
253 |
+ |
printf("red sphere p%04d\n0\n0\n", ++n); |
254 |
+ |
printf("4 %.6g %.6g %.6g %.6g\n\n", |
255 |
+ |
dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf, |
256 |
+ |
.011*bsdf); |
257 |
+ |
} |
258 |
+ |
#endif |
259 |
+ |
#if 1 /* output continuous surface */ |
260 |
+ |
puts("void trans tgreen\n0\n0\n7 .7 1 .7 .04 .04 .9 1\n"); |
261 |
+ |
fflush(stdout); |
262 |
+ |
sprintf(buf, "gensurf tgreen bsdf - - - %d %d", GRIDRES-1, GRIDRES-1); |
263 |
+ |
pfp = popen(buf, "w"); |
264 |
+ |
if (pfp == NULL) { |
265 |
+ |
fprintf(stderr, "%s: cannot open '| %s'\n", argv[0], buf); |
266 |
+ |
return(1); |
267 |
+ |
} |
268 |
+ |
for (i = 0; i < GRIDRES; i++) |
269 |
+ |
for (j = 0; j < GRIDRES; j++) { |
270 |
+ |
ovec_from_pos(dir, i, j); |
271 |
+ |
bsdf = eval_rbfrep(dsf_list, dir) / (output_orient*dir[2]); |
272 |
+ |
bsdf = log(bsdf + 1e-5) - min_log; |
273 |
+ |
fprintf(pfp, "%.8e %.8e %.8e\n", |
274 |
+ |
dir[0]*bsdf, dir[1]*bsdf, dir[2]*bsdf); |
275 |
+ |
} |
276 |
+ |
if (pclose(pfp) != 0) |
277 |
+ |
return(1); |
278 |
+ |
#endif |
279 |
+ |
return(0); |
280 |
+ |
} |
281 |
+ |
#endif |