| 6 |  | #       G. Ward | 
| 7 |  | # | 
| 8 |  | use strict; | 
| 9 | + | use File::Temp qw/ :mktemp  /; | 
| 10 |  | sub userror { | 
| 11 | < | print STDERR "Usage: genBSDF [-n Nproc][-c Nsamp][-dim xmin xmax ymin ymax zmin zmax][{+|-}f][{+|-}b][{+|-}mgf][{+|-}geom] [input ..]\n"; | 
| 11 | > | print STDERR "Usage: genBSDF [-n Nproc][-c Nsamp][-r \"ropts\"][-dim xmin xmax ymin ymax zmin zmax][{+|-}f][{+|-}b][{+|-}mgf][{+|-}geom] [input ..]\n"; | 
| 12 |  | exit 1; | 
| 13 |  | } | 
| 14 | < | my $td = `mktemp -d /tmp/genBSDF.XXXXXX`; | 
| 14 | > | my $td = mkdtemp("/tmp/genBSDF.XXXXXX"); | 
| 15 |  | chomp $td; | 
| 16 |  | my $nsamp = 1000; | 
| 17 | + | my $rtargs = "-w -ab 5 -ad 700 -lw 3e-6"; | 
| 18 |  | my $mgfin = 0; | 
| 19 |  | my $geout = 1; | 
| 20 |  | my $nproc = 1; | 
| 25 |  | while ($#ARGV >= 0) { | 
| 26 |  | if ("$ARGV[0]" =~ /^[-+]m/) { | 
| 27 |  | $mgfin = ("$ARGV[0]" =~ /^\+/); | 
| 28 | + | } elsif ("$ARGV[0]" eq "-r") { | 
| 29 | + | $rtargs = "$rtargs $ARGV[1]"; | 
| 30 | + | shift @ARGV; | 
| 31 |  | } elsif ("$ARGV[0]" =~ /^[-+]g/) { | 
| 32 |  | $geout = ("$ARGV[0]" =~ /^\+/); | 
| 33 |  | } elsif ("$ARGV[0]" =~ /^[-+]f/) { | 
| 62 |  | die "Could not load MGF input\n" if ( $? ); | 
| 63 |  | system "mgf2rad $mgfscn > $radscn"; | 
| 64 |  | } else { | 
| 65 | < | system "cat @ARGV | xform -e > $radscn"; | 
| 65 | > | system "xform -e @ARGV > $radscn"; | 
| 66 |  | die "Could not load Radiance input\n" if ( $? ); | 
| 67 |  | system "rad2mgf $radscn > $mgfscn" if ( $geout ); | 
| 68 |  | } | 
| 71 |  | } | 
| 72 |  | print STDERR "Warning: Device extends into room\n" if ($dim[5] > 1e-5); | 
| 73 |  | # Add receiver surfaces (rectangular) | 
| 69 | – | my $bmodnm="receiver_behind"; | 
| 74 |  | my $fmodnm="receiver_face"; | 
| 75 | + | my $bmodnm="receiver_behind"; | 
| 76 |  | open(RADSCN, ">> $radscn"); | 
| 77 | < | print RADSCN "void glow $fmodnm\n0\n0\n4 0 0 0 0\n\n"; | 
| 78 | < | print RADSCN "$fmodnm polygon f_receiver\n0\n0\n12\n"; | 
| 79 | < | print RADSCN "\t",$dim[0],"\t",$dim[2],"\t",$dim[5]+2e-5,"\n"; | 
| 80 | < | print RADSCN "\t",$dim[0],"\t",$dim[3],"\t",$dim[5]+2e-5,"\n"; | 
| 76 | < | print RADSCN "\t",$dim[1],"\t",$dim[3],"\t",$dim[5]+2e-5,"\n"; | 
| 77 | < | print RADSCN "\t",$dim[1],"\t",$dim[2],"\t",$dim[5]+2e-5,"\n"; | 
| 78 | < | print RADSCN "void glow $bmodnm\n0\n0\n4 0 0 0 0\n\n"; | 
| 79 | < | print RADSCN "$bmodnm polygon b_receiver\n0\n0\n12\n"; | 
| 80 | < | print RADSCN "\t",$dim[1],"\t",$dim[2],"\t",$dim[4]-2e-5,"\n"; | 
| 81 | < | print RADSCN "\t",$dim[1],"\t",$dim[3],"\t",$dim[4]-2e-5,"\n"; | 
| 82 | < | print RADSCN "\t",$dim[0],"\t",$dim[3],"\t",$dim[4]-2e-5,"\n"; | 
| 83 | < | print RADSCN "\t",$dim[0],"\t",$dim[2],"\t",$dim[4]-2e-5,"\n"; | 
| 77 | > | print RADSCN "void glow $fmodnm\n0\n0\n4 1 1 1 0\n\n"; | 
| 78 | > | print RADSCN "$fmodnm source f_receiver\n0\n0\n4 0 0 1 180\n"; | 
| 79 | > | print RADSCN "void glow $bmodnm\n0\n0\n4 1 1 1 0\n\n"; | 
| 80 | > | print RADSCN "$bmodnm source b_receiver\n0\n0\n4 0 0 -1 180\n"; | 
| 81 |  | close RADSCN; | 
| 82 |  | # Generate octree | 
| 83 |  | system "oconv -w $radscn > $octree"; | 
| 107 |  | # Compute Klems bin from exiting ray direction (forward or backward) | 
| 108 |  | my $kcal = ' | 
| 109 |  | DEGREE : PI/180; | 
| 110 | + | abs(x) : if(x, x, -x); | 
| 111 |  | Acos(x) : 1/DEGREE * if(x-1, 0, if(-1-x, 0, acos(x))); | 
| 112 |  | posangle(a) : if(-a, a + 2*PI, a); | 
| 113 |  | Atan2(y,x) : 1/DEGREE * posangle(atan2(y,x)); | 
| 128 |  | kaccum(7) + kazn(azi,360/knaz(8)), | 
| 129 |  | kaccum(8) + kazn(azi,360/knaz(9)) | 
| 130 |  | ); | 
| 131 | < | kbin = if(Dz, kbin2(Acos(Dz),Atan2(Dy,Dx)), kbin2(Acos(-Dz),Atan2(-Dy,-Dx))); | 
| 131 | > | kbin = kbin2(Acos(abs(Dz)),Atan2(Dy,Dx)); | 
| 132 |  | '; | 
| 133 |  | my $ndiv = 145; | 
| 134 |  | my $nx = int(sqrt($nsamp*($dim[1]-$dim[0])/($dim[3]-$dim[2])) + .5); | 
| 140 |  | my @tbarr; | 
| 141 |  | my @rbarr; | 
| 142 |  | my $cmd; | 
| 145 | – | my $rtargs = "-w -ab 5 -ad 700 -lw 3e-6"; | 
| 143 |  | my $rtcmd = "rtcontrib -h -ff -fo -n $nproc -c $nsamp " . | 
| 144 |  | "-e '$kcal' -b kbin -bn $ndiv " . | 
| 145 |  | "-o '$td/%s.flt' -m $fmodnm -m $bmodnm $rtargs $octree"; | 
| 148 |  | q{-if3 -e '$1=(0.265*$1+0.670*$2+0.065*$3)/KprojOmega'}; | 
| 149 |  | if ( $doforw ) { | 
| 150 |  | $cmd = "cnt $ndiv $ny $nx | rcalc -of -e '$tcal' " . | 
| 151 | < | "-e 'xp=(\$3+rand(.35*recno-15))*(($dim[1]-$dim[0])/$nx)+$dim[0]' " . | 
| 152 | < | "-e 'yp=(\$2+rand(.86*recno+11))*(($dim[3]-$dim[2])/$ny)+$dim[2]' " . | 
| 153 | < | "-e 'zp:$dim[4]-1e-5' " . | 
| 154 | < | q{-e 'Kbin=$1;x1=rand(1.21*recno+2.75);x2=rand(-3.55*recno-7.57)' } . | 
| 155 | < | q{-e '$1=xp;$2=yp;$3=zp;$4=Dx;$5=Dy;$6=Dz' } . | 
| 151 | > | "-e 'xp=(\$3+rand(.12*recno+288))*(($dim[1]-$dim[0])/$nx)+$dim[0]' " . | 
| 152 | > | "-e 'yp=(\$2+rand(.37*recno-44))*(($dim[3]-$dim[2])/$ny)+$dim[2]' " . | 
| 153 | > | "-e 'zp:$dim[4]' " . | 
| 154 | > | q{-e 'Kbin=$1;x1=rand(2.75*recno+3.1);x2=rand(-2.01*recno-3.37)' } . | 
| 155 | > | q{-e '$1=xp-Dx;$2=yp-Dy;$3=zp-Dz;$4=Dx;$5=Dy;$6=Dz' } . | 
| 156 |  | "| $rtcmd"; | 
| 157 |  | system "$cmd" || die "Failure running: $cmd\n"; | 
| 158 |  | @tfarr = `$rccmd $td/$fmodnm.flt`; | 
| 164 |  | $cmd = "cnt $ndiv $ny $nx | rcalc -of -e '$tcal' " . | 
| 165 |  | "-e 'xp=(\$3+rand(.35*recno-15))*(($dim[1]-$dim[0])/$nx)+$dim[0]' " . | 
| 166 |  | "-e 'yp=(\$2+rand(.86*recno+11))*(($dim[3]-$dim[2])/$ny)+$dim[2]' " . | 
| 167 | < | "-e 'zp:$dim[5]+1e-5' " . | 
| 167 | > | "-e 'zp:$dim[5]' " . | 
| 168 |  | q{-e 'Kbin=$1;x1=rand(1.21*recno+2.75);x2=rand(-3.55*recno-7.57)' } . | 
| 169 | < | q{-e '$1=xp;$2=yp;$3=zp;$4=-Dx;$5=-Dy;$6=-Dz' } . | 
| 169 | > | q{-e '$1=xp-Dx;$2=yp-Dy;$3=zp+Dz;$4=Dx;$5=Dy;$6=-Dz' } . | 
| 170 |  | "| $rtcmd"; | 
| 171 |  | system "$cmd" || die "Failure running: $cmd\n"; | 
| 172 |  | @tbarr = `$rccmd $td/$bmodnm.flt`; | 
| 193 |  | if ( $geout ) { | 
| 194 |  | print "\t\t\t<Geometry format=\"MGF\" unit=\"Meter\">\n"; | 
| 195 |  | printf "xf -t %.6f %.6f 0\n", -($dim[0]+$dim[1])/2, -($dim[2]+$dim[3])/2; | 
| 196 | < | system "cat $mgfscn"; | 
| 196 | > | open(MGFSCN, "< $mgfscn"); | 
| 197 | > | while (<MGFSCN>) { print $_; } | 
| 198 | > | close MGFSCN; | 
| 199 |  | print "xf\n"; | 
| 200 |  | print "\t\t\t</Geometry>\n"; | 
| 201 |  | } |