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root/radiance/ray/src/util/genBSDF.pl
Revision: 2.78
Committed: Mon Jun 19 03:45:57 2017 UTC (6 years, 10 months ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad5R1
Changes since 2.77: +2 -2 lines
Log Message:
Fixed second typo in same line(!)

File Contents

# Content
1 #!/usr/bin/perl -w
2 # RCSid $Id: genBSDF.pl,v 2.77 2017/06/08 15:37:15 greg Exp $
3 #
4 # Compute BSDF based on geometry and material description
5 #
6 # G. Ward
7 #
8 use strict;
9 my $windoz = ($^O eq "MSWin32" or $^O eq "MSWin64");
10 use File::Temp qw/ :mktemp /;
11 sub userror {
12 print STDERR "Usage: genBSDF [-n Nproc][-c Nsamp][-W][-t{3|4} Nlog2][-r \"ropts\"][-s \"x=string;y=string\"][-dim xmin xmax ymin ymax zmin zmax][{+|-}C][{+|-}a][{+|-}f][{+|-}b][{+|-}mgf][{+|-}geom units] [input ..]\n";
13 exit 1;
14 }
15 my ($td,$radscn,$mgfscn,$octree,$fsender,$bsender,$receivers,$facedat,$behinddat,$rmtmp);
16 my ($tf,$rf,$tb,$rb,$tfx,$rfx,$tbx,$rbx,$tfz,$rfz,$tbz,$rbz,$cph);
17 my ($curphase, $recovery);
18 if ($#ARGV == 1 && "$ARGV[0]" =~ /^-rec/) {
19 $td = $ARGV[1];
20 open(MYAVH, "< $td/savedARGV.txt") or die "$td: invalid path\n";
21 @ARGV = <MYAVH>;
22 close MYAVH;
23 chomp @ARGV;
24 $recovery = 0;
25 if (open(MYPH, "< $td/phase.txt")) {
26 while (<MYPH>) {
27 chomp($recovery = $_);
28 }
29 close MYPH;
30 }
31 } elsif ($windoz) {
32 my $tmploc = `echo \%TMP\%`;
33 chomp $tmploc;
34 $td = mkdtemp("$tmploc\\genBSDF.XXXXXX");
35 } else {
36 $td = mkdtemp("/tmp/genBSDF.XXXXXX");
37 chomp $td;
38 }
39 if ($windoz) {
40 $radscn = "$td\\device.rad";
41 $mgfscn = "$td\\device.mgf";
42 $octree = "$td\\device.oct";
43 $fsender = "$td\\fsender.rad";
44 $bsender = "$td\\bsender.rad";
45 $receivers = "$td\\receivers.rad";
46 $facedat = "$td\\face.dat";
47 $behinddat = "$td\\behind.dat";
48 $tf = "$td\\tf.dat";
49 $rf = "$td\\rf.dat";
50 $tb = "$td\\tb.dat";
51 $rb = "$td\\rb.dat";
52 $tfx = "$td\\tfx.dat";
53 $rfx = "$td\\rfx.dat";
54 $tbx = "$td\\tbx.dat";
55 $rbx = "$td\\rbx.dat";
56 $tfz = "$td\\tfz.dat";
57 $rfz = "$td\\rfz.dat";
58 $tbz = "$td\\tbz.dat";
59 $rbz = "$td\\rbz.dat";
60 $cph = "$td\\phase.txt";
61 $rmtmp = "rd /S /Q $td";
62 } else {
63 $radscn = "$td/device.rad";
64 $mgfscn = "$td/device.mgf";
65 $octree = "$td/device.oct";
66 $fsender = "$td/fsender.rad";
67 $bsender = "$td/bsender.rad";
68 $receivers = "$td/receivers.rad";
69 $facedat = "$td/face.dat";
70 $behinddat = "$td/behind.dat";
71 $tf = "$td/tf.dat";
72 $rf = "$td/rf.dat";
73 $tb = "$td/tb.dat";
74 $rb = "$td/rb.dat";
75 $tfx = "$td/tfx.dat";
76 $rfx = "$td/rfx.dat";
77 $tbx = "$td/tbx.dat";
78 $rbx = "$td/rbx.dat";
79 $tfz = "$td/tfz.dat";
80 $rfz = "$td/rfz.dat";
81 $tbz = "$td/tbz.dat";
82 $rbz = "$td/rbz.dat";
83 $cph = "$td/phase.txt";
84 $rmtmp = "rm -rf $td";
85 }
86 my @savedARGV = @ARGV;
87 my $rfluxmtx = "rfluxmtx -ab 5 -ad 700 -lw 3e-6 -w-";
88 my $wrapper = "wrapBSDF";
89 my $tensortree = 0;
90 my $ttlog2 = 4;
91 my $dorecip = 1;
92 my $nsamp = 2000;
93 my $mgfin = 0;
94 my $geout = 1;
95 my $nproc = 1;
96 my $docolor = 0;
97 my $doforw = 0;
98 my $doback = 1;
99 my $pctcull = 90;
100 my $gunit = "meter";
101 my $curspec = "Visible";
102 my @dim;
103 # Get options
104 while ($#ARGV >= 0) {
105 if ("$ARGV[0]" =~ /^[-+]m/) {
106 $mgfin = ("$ARGV[0]" =~ /^\+/);
107 } elsif ("$ARGV[0]" eq "-r") {
108 $rfluxmtx .= " $ARGV[1]";
109 shift @ARGV;
110 } elsif ("$ARGV[0]" =~ /^[-+]g/) {
111 $geout = ("$ARGV[0]" =~ /^\+/);
112 $gunit = $ARGV[1];
113 if ($gunit !~ /^(?i)(meter|foot|inch|centimeter|millimeter)$/) {
114 die "Illegal geometry unit '$gunit': must be meter, foot, inch, centimeter, or millimeter\n";
115 }
116 shift @ARGV;
117 } elsif ("$ARGV[0]" =~ /^[-+]C/) {
118 $docolor = ("$ARGV[0]" =~ /^\+/);
119 } elsif ("$ARGV[0]" =~ /^[-+]a/) {
120 $dorecip = ("$ARGV[0]" =~ /^\+/);
121 } elsif ("$ARGV[0]" =~ /^[-+]f/) {
122 $doforw = ("$ARGV[0]" =~ /^\+/);
123 } elsif ("$ARGV[0]" =~ /^[-+]b/) {
124 $doback = ("$ARGV[0]" =~ /^\+/);
125 } elsif ("$ARGV[0]" eq "-t") {
126 # Use value < 0 for rttree_reduce bypass
127 $pctcull = $ARGV[1];
128 if ($pctcull >= 100) {
129 die "Illegal -t culling percentage, must be < 100\n";
130 }
131 shift @ARGV;
132 } elsif ("$ARGV[0]" =~ /^-t[34]$/) {
133 $tensortree = substr($ARGV[0], 2, 1);
134 $ttlog2 = $ARGV[1];
135 shift @ARGV;
136 } elsif ("$ARGV[0]" eq "-s") {
137 $wrapper .= " -f \"$ARGV[1]\"";
138 shift @ARGV;
139 } elsif ("$ARGV[0]" eq "-W") {
140 $wrapper .= " -W";
141 } elsif ("$ARGV[0]" eq "-c") {
142 $nsamp = $ARGV[1];
143 shift @ARGV;
144 } elsif ("$ARGV[0]" eq "-n") {
145 $nproc = $ARGV[1];
146 shift @ARGV;
147 } elsif ("$ARGV[0]" =~ /^-d/) {
148 userror() if ($#ARGV < 6);
149 @dim = @ARGV[1..6];
150 shift @ARGV for (1..6);
151 } elsif ("$ARGV[0]" =~ /^[-+]./) {
152 userror();
153 } else {
154 last;
155 }
156 shift @ARGV;
157 }
158 # Check that we're actually being asked to do something
159 die "Must have at least one of +forward or +backward\n" if (!$doforw && !$doback);
160 $wrapper .= $tensortree ? " -a t$tensortree" : " -a kf -c";
161 $wrapper .= " -u $gunit";
162 if ( !defined $recovery ) {
163 # Issue warning for unhandled reciprocity case
164 print STDERR "Warning: recommend both +forward and +backward with -t3\n" if
165 ($tensortree==3 && !($doforw && $doback));
166 # Get scene description
167 if ( $mgfin ) {
168 system "mgf2rad @ARGV > $radscn";
169 die "Could not load MGF input\n" if ( $? );
170 } else {
171 system "xform -e @ARGV > $radscn";
172 die "Could not load Radiance input\n" if ( $? );
173 }
174 }
175 if ( $#dim != 5 ) {
176 @dim = split ' ', `getbbox -h -w $radscn`;
177 }
178 die "Device entirely inside room!\n" if ( $dim[4] >= 0 );
179 if ( $dim[5] > 1e-5 ) {
180 print STDERR "Warning: Device extends into room\n";
181 } elsif ( $dim[5]*$dim[5] > .01*($dim[1]-$dim[0])*($dim[3]-$dim[2]) ) {
182 print STDERR "Warning: Device far behind Z==0 plane\n";
183 }
184 # Assume Zmax==0 to derive thickness so pkgBSDF will work
185 $wrapper .= ' -f "t=' . (-$dim[4]) . ';w=' . ($dim[1] - $dim[0]) .
186 ';h=' . ($dim[3] - $dim[2]) . '"';
187 $wrapper .= " -g $mgfscn" if ( $geout );
188 # Calculate CIE (u',v') from Radiance RGB:
189 my $CIEuv = 'Xi=.5141*Ri+.3239*Gi+.1620*Bi;' .
190 'Yi=.2651*Ri+.6701*Gi+.0648*Bi;' .
191 'Zi=.0241*Ri+.1229*Gi+.8530*Bi;' .
192 'den=Xi+15*Yi+3*Zi;' .
193 'uprime=4*Xi/den;vprime=9*Yi/den;' ;
194 my $FEPS = 1e-5;
195 my $ns = 2**$ttlog2;
196 my $nx = int(sqrt($nsamp*($dim[1]-$dim[0])/($dim[3]-$dim[2])) + 1);
197 my $ny = int($nsamp/$nx + 1);
198 $nsamp = $nx * $ny;
199 $rfluxmtx .= " -n $nproc -c $nsamp";
200 if ( !defined $recovery ) {
201 open(MYAVH, "> $td/savedARGV.txt");
202 foreach (@savedARGV) {
203 print MYAVH "$_\n";
204 }
205 close MYAVH;
206 # Generate octree
207 system "oconv -w -f $radscn > $octree";
208 die "Could not compile scene\n" if ( $? );
209 # Add MGF description if requested
210 if ( $geout ) {
211 open(MGFSCN, "> $mgfscn");
212 printf MGFSCN "xf -t %.6f %.6f 0\n", -($dim[0]+$dim[1])/2, -($dim[2]+$dim[3])/2;
213 close MGFSCN;
214 if ( $mgfin ) {
215 system qq{mgfilt "#,o,xf,c,cxy,cspec,cmix,m,sides,rd,td,rs,ts,ir,v,p,n,f,fh,sph,cyl,cone,prism,ring,torus" @ARGV >> $mgfscn};
216 } else {
217 system "rad2mgf $radscn >> $mgfscn";
218 }
219 open(MGFSCN, ">> $mgfscn");
220 print MGFSCN "xf\n";
221 close MGFSCN;
222 }
223 # Create receiver & sender surfaces (rectangular)
224 open(RADSCN, "> $receivers");
225 print RADSCN '#@rfluxmtx ' . ($tensortree ? "h=-sc$ns\n" : "h=-kf\n");
226 print RADSCN '#@rfluxmtx ' . "u=-Y o=$facedat\n\n";
227 print RADSCN "void glow receiver_face\n0\n0\n4 1 1 1 0\n\n";
228 print RADSCN "receiver_face source f_receiver\n0\n0\n4 0 0 1 180\n\n";
229 print RADSCN '#@rfluxmtx ' . ($tensortree ? "h=+sc$ns\n" : "h=+kf\n");
230 print RADSCN '#@rfluxmtx ' . "u=-Y o=$behinddat\n\n";
231 print RADSCN "void glow receiver_behind\n0\n0\n4 1 1 1 0\n\n";
232 print RADSCN "receiver_behind source b_receiver\n0\n0\n4 0 0 -1 180\n";
233 close RADSCN;
234 # Prepare sender surfaces
235 if ( $tensortree != 3 ) { # Isotropic tensor tree is exception
236 open (RADSCN, "> $fsender");
237 print RADSCN '#@rfluxmtx u=-Y ' . ($tensortree ? "h=-sc$ns\n\n" : "h=-kf\n\n");
238 print RADSCN "void polygon fwd_sender\n0\n0\n12\n";
239 printf RADSCN "\t%e\t%e\t%e\n", $dim[0], $dim[2], $dim[4]-$FEPS;
240 printf RADSCN "\t%e\t%e\t%e\n", $dim[0], $dim[3], $dim[4]-$FEPS;
241 printf RADSCN "\t%e\t%e\t%e\n", $dim[1], $dim[3], $dim[4]-$FEPS;
242 printf RADSCN "\t%e\t%e\t%e\n", $dim[1], $dim[2], $dim[4]-$FEPS;
243 close RADSCN;
244 open (RADSCN, "> $bsender");
245 print RADSCN '#@rfluxmtx u=-Y ' . ($tensortree ? "h=+sc$ns\n\n" : "h=+kf\n\n");
246 print RADSCN "void polygon bwd_sender\n0\n0\n12\n";
247 printf RADSCN "\t%e\t%e\t%e\n", $dim[0], $dim[2], $dim[5]+$FEPS;
248 printf RADSCN "\t%e\t%e\t%e\n", $dim[1], $dim[2], $dim[5]+$FEPS;
249 printf RADSCN "\t%e\t%e\t%e\n", $dim[1], $dim[3], $dim[5]+$FEPS;
250 printf RADSCN "\t%e\t%e\t%e\n", $dim[0], $dim[3], $dim[5]+$FEPS;
251 close RADSCN;
252 }
253 print STDERR "Recover using: $0 -recover $td\n";
254 }
255 $curphase = 0;
256 # Create data segments (all the work happens here)
257 if ( $tensortree ) {
258 do_tree_bsdf();
259 } else {
260 do_matrix_bsdf();
261 }
262 # Output XML
263 # print STDERR "Running: $wrapper\n";
264 system "$wrapper -C \"Created by: genBSDF @savedARGV\"";
265 die "Could not wrap BSDF data\n" if ( $? );
266 # Clean up temporary files and exit
267 exec $rmtmp;
268
269 #============== End of main program segment ==============#
270
271 # Function to determine if next phase should be skipped or recovered
272 sub do_phase {
273 $curphase++;
274 if ( defined $recovery ) {
275 if ( $recovery > $curphase ) { return 0; }
276 if ( $recovery == $curphase ) { return -1; }
277 }
278 open(MYPH, ">> $td/phase.txt");
279 print MYPH "$curphase\n";
280 close MYPH;
281 return 1;
282 }
283
284 # Check if we are in active phase (not skipping parts)
285 sub active_phase {
286 if ( defined $recovery ) {
287 if ( $recovery > $curphase ) { return 0; }
288 if ( $recovery == $curphase ) { return -1; }
289 }
290 return 1;
291 }
292
293 # Function to run program and check output if in active phase
294 sub run_check {
295 if ( !active_phase() ) { return; }
296 my $cmd = shift;
297 # print STDERR "Running: $cmd\n";
298 system $cmd;
299 die "Failure running: $cmd\n" if ( $? );
300 }
301
302 #++++++++++++++ Tensor tree BSDF generation ++++++++++++++#
303 sub do_tree_bsdf {
304
305 # Run rfluxmtx processes to compute each side
306 do_ttree_dir(0) if ( $doback );
307 do_ttree_dir(1) if ( $doforw );
308
309 } # end of sub do_tree_bsdf()
310
311 # Call rfluxmtx and process tensor tree BSDF for the given direction
312 sub do_ttree_dir {
313 my $forw = shift;
314 my $dop = do_phase();
315 my $r = ($dop < 0) ? " -r" : "";
316 my $cmd;
317 if ( $tensortree == 3 ) {
318 # Isotropic BSDF
319 my $ns2 = $ns / 2;
320 if ($windoz) {
321 $cmd = "cnt $ns2 $ny $nx " .
322 qq{| rcalc -e "r1=rand(.8681*recno-.673892)" } .
323 qq{-e "r2=rand(-5.37138*recno+67.1737811)" } .
324 qq{-e "r3=rand(+3.17603772*recno+83.766771)" } .
325 qq{-e "Dx=1-2*(\$1+r1)/$ns;Dy:0;Dz=sqrt(1-Dx*Dx)" } .
326 qq{-e "xp=(\$3+r2)*(($dim[1]-$dim[0])/$nx)+$dim[0]" } .
327 qq{-e "yp=(\$2+r3)*(($dim[3]-$dim[2])/$ny)+$dim[2]" } .
328 qq{-e "zp=$dim[5-$forw]" -e "myDz=Dz*($forw*2-1)" } .
329 qq{-e "\$1=xp-Dx;\$2=yp-Dy;\$3=zp-myDz" } .
330 qq{-e "\$4=Dx;\$5=Dy;\$6=myDz" } .
331 "| $rfluxmtx$r -fa -y $ns2 - $receivers -i $octree";
332 } else {
333 $cmd = "cnt $ns2 $ny $nx " .
334 qq{| rcalc -e 'r1=rand(.8681*recno-.673892)' } .
335 qq{-e 'r2=rand(-5.37138*recno+67.1737811)' } .
336 qq{-e 'r3=rand(+3.17603772*recno+83.766771)' } .
337 qq{-e 'Dx=1-2*(\$1+r1)/$ns;Dy:0;Dz=sqrt(1-Dx*Dx)' } .
338 qq{-e 'xp=(\$3+r2)*(($dim[1]-$dim[0])/$nx)+$dim[0]' } .
339 qq{-e 'yp=(\$2+r3)*(($dim[3]-$dim[2])/$ny)+$dim[2]' } .
340 qq{-e 'zp=$dim[5-$forw]' -e 'myDz=Dz*($forw*2-1)' } .
341 qq{-e '\$1=xp-Dx;\$2=yp-Dy;\$3=zp-myDz' } .
342 qq{-e '\$4=Dx;\$5=Dy;\$6=myDz' -of } .
343 "| $rfluxmtx$r -h -ff -y $ns2 - $receivers -i $octree";
344 }
345 } else {
346 # Anisotropic BSDF
347 my $sender = ($bsender,$fsender)[$forw];
348 if ($windoz) {
349 $cmd = "$rfluxmtx$r -fa $sender $receivers -i $octree";
350 } else {
351 $cmd = "$rfluxmtx$r -h -ff $sender $receivers -i $octree";
352 }
353 }
354 if ( $dop ) {
355 # print STDERR "Running: $cmd\n";
356 system $cmd;
357 die "Failure running rfluxmtx" if ( $? );
358 }
359 ttree_out($forw);
360 } # end of do_ttree_dir()
361
362 # Simplify and store tensor tree results
363 sub ttree_out {
364 my $forw = shift;
365 my ($refldat,$transdat);
366 if ( $forw ) {
367 $transdat = $facedat;
368 $refldat = $behinddat;
369 } else {
370 $transdat = $behinddat;
371 $refldat = $facedat;
372 }
373 # Only output one transmitted anisotropic distribution, preferring backwards
374 if ( !$forw || !$doback || $tensortree==3 ) {
375 my $ttyp = ("tb","tf")[$forw];
376 ttree_comp($ttyp, "Visible", $transdat, ($tb,$tf)[$forw]);
377 if ( $docolor ) {
378 ttree_comp($ttyp, "CIE-u", $transdat, ($tbx,$tfx)[$forw]);
379 ttree_comp($ttyp, "CIE-v", $transdat, ($tbz,$tfz)[$forw]);
380 }
381 }
382 # Output reflection
383 my $rtyp = ("rb","rf")[$forw];
384 ttree_comp($rtyp, "Visible", $refldat, ($rb,$rf)[$forw]);
385 if ( $docolor ) {
386 ttree_comp($rtyp, "CIE-u", $refldat, ($rbx,$rfx)[$forw]);
387 ttree_comp($rtyp, "CIE-v", $refldat, ($rbz,$rfz)[$forw]);
388 }
389 } # end of ttree_out()
390
391 # Call rttree_reduce on the given component
392 sub ttree_comp {
393 my $typ = shift;
394 my $spec = shift;
395 my $src = shift;
396 my $dest = shift;
397 my $cmd;
398 if ($windoz) {
399 if ("$spec" eq "Visible") {
400 $cmd = qq{rcalc -e "Omega:PI/($ns*$ns)" } .
401 q{-e "Ri=$1;Gi=$2;Bi=$3" } .
402 qq{-e "$CIEuv" } .
403 q{-e "$1=Yi/Omega"};
404 } elsif ("$spec" eq "CIE-u") {
405 $cmd = q{rcalc -e "Ri=$1;Gi=$2;Bi=$3" } .
406 qq{-e "$CIEuv" } .
407 q{-e "$1=uprime"};
408 } elsif ("$spec" eq "CIE-v") {
409 $cmd = q{rcalc -e "Ri=$1;Gi=$2;Bi=$3" } .
410 qq{-e "$CIEuv" } .
411 q{-e "$1=vprime"};
412 }
413 } else {
414 if ("$spec" eq "Visible") {
415 $cmd = "rcalc -if3 -e 'Omega:PI/($ns*$ns)' " .
416 q{-e 'Ri=$1;Gi=$2;Bi=$3' } .
417 "-e '$CIEuv' " .
418 q{-e '$1=Yi/Omega'};
419 } elsif ("$spec" eq "CIE-u") {
420 $cmd = q{rcalc -if3 -e 'Ri=$1;Gi=$2;Bi=$3' } .
421 "-e '$CIEuv' " .
422 q{-e '$1=uprime'};
423 } elsif ("$spec" eq "CIE-v") {
424 $cmd = q{rcalc -if3 -e 'Ri=$1;Gi=$2;Bi=$3' } .
425 "-e '$CIEuv' " .
426 q{-e '$1=vprime'};
427 }
428 }
429 if ($pctcull >= 0) {
430 my $avg = ( $dorecip && "$typ" =~ /^r[fb]/ ) ? " -a" : "";
431 my $pcull = ("$spec" eq "Visible") ? $pctcull :
432 (100 - (100-$pctcull)*.25) ;
433 if ($windoz) {
434 $cmd = "rcollate -ho -oc 1 $src | " .
435 $cmd .
436 " | rttree_reduce$avg -h -fa -t $pcull -r $tensortree -g $ttlog2";
437 } else {
438 $cmd .= " -of $src " .
439 "| rttree_reduce$avg -h -ff -t $pcull -r $tensortree -g $ttlog2";
440 }
441 run_check "$cmd > $dest";
442 } else {
443 if ($windoz) {
444 $cmd = "rcollate -ho -oc 1 $src | " . $cmd ;
445 } else {
446 $cmd .= " $src";
447 }
448 if ( active_phase() ) {
449 open(DATOUT, "> $dest");
450 print DATOUT "{\n";
451 close DATOUT;
452 # print STDERR "Running: $cmd\n";
453 system "$cmd >> $dest";
454 die "Failure running rcalc" if ( $? );
455 open(DATOUT, ">> $dest");
456 for (my $i = ($tensortree==3)*$ns*$ns*$ns/2; $i-- > 0; ) {
457 print DATOUT "0\n";
458 }
459 print DATOUT "}\n";
460 close DATOUT;
461 }
462 }
463 if ( "$spec" ne "$curspec" ) {
464 $wrapper .= " -s $spec";
465 $curspec = $spec;
466 }
467 $wrapper .= " -$typ $dest";
468 } # end of ttree_comp()
469
470 #------------- End of do_tree_bsdf() & subroutines -------------#
471
472 #+++++++++++++++ Klems matrix BSDF generation +++++++++++++++#
473 sub do_matrix_bsdf {
474
475 # Run rfluxmtx processes to compute each side
476 do_matrix_dir(0) if ( $doback );
477 do_matrix_dir(1) if ( $doforw );
478
479 } # end of sub do_matrix_bsdf()
480
481 # Call rfluxmtx and process tensor tree BSDF for the given direction
482 sub do_matrix_dir {
483 my $forw = shift;
484 my $dop = do_phase();
485 my $r = ($dop < 0) ? " -r" : "";
486 my $sender = ($bsender,$fsender)[$forw];
487 my $cmd = "$rfluxmtx$r -fd $sender $receivers -i $octree";
488 if ( $dop ) {
489 # print STDERR "Running: $cmd\n";
490 system $cmd;
491 die "Failure running rfluxmtx" if ( $? );
492 }
493 matrix_out($forw);
494 } # end of do_matrix_dir()
495
496 sub matrix_out {
497 my $forw = shift;
498 my ($refldat,$transdat);
499 if ( $forw ) {
500 $transdat = $facedat;
501 $refldat = $behinddat;
502 } else {
503 $transdat = $behinddat;
504 $refldat = $facedat;
505 }
506 # Output transmission
507 my $ttyp = ("tb","tf")[$forw];
508 matrix_comp($ttyp, "Visible", $transdat, ($tb,$tf)[$forw]);
509 if ( $docolor ) {
510 matrix_comp($ttyp, "CIE-X", $transdat, ($tbx,$tfx)[$forw]);
511 matrix_comp($ttyp, "CIE-Z", $transdat, ($tbz,$tfz)[$forw]);
512 }
513 # Output reflection
514 my $rtyp = ("rb","rf")[$forw];
515 matrix_comp($rtyp, "Visible", $refldat, ($rb,$rf)[$forw]);
516 if ( $docolor ) {
517 matrix_comp($rtyp, "CIE-X", $refldat, ($rbx,$rfx)[$forw]);
518 matrix_comp($rtyp, "CIE-Z", $refldat, ($rbz,$rfz)[$forw]);
519 }
520 } # end of matrix_out()
521
522 # Transpose matrix component data and save to file
523 sub matrix_comp {
524 my $typ = shift;
525 my $spec = shift;
526 my $src = shift;
527 my $dest = shift;
528 my $cmd = "rmtxop -fa -t";
529 if ("$spec" eq "Visible") {
530 $cmd .= " -c 0.2651 0.6701 0.0648";
531 } elsif ("$spec" eq "CIE-X") {
532 $cmd .= " -c 0.5141 0.3239 0.1620";
533 } elsif ("$spec" eq "CIE-Z") {
534 $cmd .= " -c 0.0241 0.1229 0.8530";
535 }
536 $cmd .= " $src | getinfo -";
537 run_check "$cmd > $dest";
538 if ( "$spec" ne "$curspec" ) {
539 $wrapper .= " -s $spec";
540 $curspec = $spec;
541 }
542 $wrapper .= " -$typ $dest";
543 } # end of matrix_comp()
544
545 #------------- End of do_matrix_bsdf() & subroutines --------------#