22 |
|
.5, 1., 1. |
23 |
|
}; |
24 |
|
|
25 |
< |
#ifdef _WIN32 |
25 |
> |
#if defined(_WIN32) || defined(_WIN64) |
26 |
|
char validf[] = "-e \"valid(s,t)=X`SYS(s,t)^2+Y`SYS(s,t)^2+Z`SYS(s,t)^2-1e-7\""; |
27 |
|
#else |
28 |
|
char validf[] = "-e 'valid(s,t)=X`SYS(s,t)^2+Y`SYS(s,t)^2+Z`SYS(s,t)^2-1e-7'"; |
124 |
|
#ifdef DEBUG |
125 |
|
if (inpXML) |
126 |
|
fprintf(stderr, "Hemispherical %s: %.3f\n", |
127 |
< |
(output_orient > 0 ? "reflection" : "transmission"), |
127 |
> |
(output_orient > 0 ^ input_orient > 0 ? |
128 |
> |
"transmission" : "reflection"), |
129 |
|
SDdirectHemi(idir, SDsampSp|SDsampDf | |
130 |
< |
(output_orient > 0 ? |
131 |
< |
SDsampR : SDsampT), &myBSDF)); |
130 |
> |
(output_orient > 0 ^ input_orient > 0 ? |
131 |
> |
SDsampT : SDsampR), &myBSDF)); |
132 |
|
else if (rbf == NULL) |
133 |
|
fputs("Empty RBF\n", stderr); |
134 |
|
else |
135 |
|
fprintf(stderr, "Hemispherical %s: %.3f\n", |
136 |
< |
(output_orient > 0 ? "reflection" : "transmission"), |
136 |
> |
(output_orient > 0 ^ input_orient > 0 ? |
137 |
> |
"transmission" : "reflection"), |
138 |
|
rbf->vtotal); |
139 |
|
#endif |
140 |
+ |
printf("# Incident direction (theta,phi) = (%.2f,%.2f) deg.\n\n", |
141 |
+ |
(180./M_PI)*theta, (180./M_PI)*phi); |
142 |
|
printf("void trans tmat\n0\n0\n7 %f %f %f .04 .04 .9 1\n", |
143 |
|
colarr[n][0], colarr[n][1], colarr[n][2]); |
144 |
|
if (showPeaks && rbf != NULL) { |