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root/radiance/ray/src/px/normpat.csh
Revision: 2.6
Committed: Wed Feb 16 05:40:11 2005 UTC (19 years, 2 months ago) by greg
Content type: application/x-csh
Branch: MAIN
CVS Tags: rad3R7P2, rad3R7P1, rad3R8, rad3R9
Changes since 2.5: +2 -2 lines
Log Message:
Replaced instances of "/usr/tmp" with "/tmp" in scripts & documentation

File Contents

# Content
1 #!/bin/csh -f
2 # RCSid: $Id: normpat.csh,v 2.5 2004/01/29 22:18:26 greg Exp $
3 #
4 # Normalize a pattern for tiling (-b option blends edges) by removing
5 # lowest frequencies from image (-f option) and reducing to
6 # standard size (-r option)
7 #
8 set ha=$0
9 set ha=$ha:t
10 set pf="pfilt -e 2"
11 while ($#argv > 0)
12 switch ($argv[1])
13 case -r:
14 shift argv
15 set pf="$pf -x $argv[1] -y $argv[1] -p 1 -r .67"
16 breaksw
17 case -f:
18 set ha="$ha -f"
19 set dofsub
20 breaksw
21 case -b:
22 set ha="$ha -b"
23 set blend
24 breaksw
25 case -v:
26 set verb
27 breaksw
28 case -*:
29 echo bad option $argv[1]
30 exit 1
31 default:
32 goto dofiles
33 endsw
34 shift argv
35 end
36 dofiles:
37 onintr quit
38 set td=/tmp/np$$
39 mkdir $td
40 goto skipthis
41 cat > $td/coef.fmt << '_EOF_'
42 rm:${ $25 }; gm:${ $26 }; bm:${ $27 };
43 rcx:${ $1 }; gcx:${ $9 }; bcx:${ $17 };
44 rcy:${ $2 }; gcy:${ $10 }; bcy:${ $18 };
45 rsx:${ $3 }; gsx:${ $11 }; bsx:${ $19 };
46 rsy:${ $4 }; gsy:${ $12 }; bsy:${ $20 };
47 rcxcy:${ $5 }; gcxcy:${ $13 }; bcxcy:${ $21 };
48 rcxsy:${ $6 }; gcxsy:${ $14 }; bcxsy:${ $22 };
49 rsxcy:${ $7 }; gsxcy:${ $15 }; bsxcy:${ $23 };
50 rsxsy:${ $8 }; gsxsy:${ $16 }; bsxsy:${ $24 };
51 '_EOF_'
52 cat > $td/coef.cal << '_EOF_'
53 $1=$3*2*cx; $2=$3*2*cy; $3=$3*2*sx; $4=$3*2*sy;
54 $5=$3*4*cx*cy; $6=$3*4*cx*sy; $7=$3*4*sx*cy; $8=$3*4*sx*sy;
55 $9=$4*2*cx; $10=$4*2*cy; $11=$4*2*sx; $12=$4*2*sy;
56 $13=$4*4*cx*cy; $14=$4*4*cx*sy; $15=$4*4*sx*cy; $16=$4*4*sx*sy;
57 $17=$5*2*cx; $18=$5*2*cy; $19=$5*2*sx; $20=$5*2*sy;
58 $21=$5*4*cx*cy; $22=$5*4*cx*sy; $23=$5*4*sx*cy; $24=$5*4*sx*sy;
59 $25=$3; $26=$4; $27=$5;
60 cx=cos(wx); cy=cos(wy);
61 sx=sin(wx); sy=sin(wy);
62 wx=2*PI/xres*($1+.5); wy=2*PI/yres*($2+.5);
63 '_EOF_'
64 cat > $td/fsub.cal << '_EOF_'
65 PI:3.14159265358979323846;
66 ro=ri(1)*rm/(rm+rcx*cx+rcy*cy+rsx*sx+rsy*sy
67 +rcxcy*cx*cy+rcxsy*cx*sy+rsxcy*sx*cy+rsxsy*sx*sy);
68 go=gi(1)*gm/(gm+gcx*cx+gcy*cy+gsx*sx+gsy*sy
69 +gcxcy*cx*cy+gcxsy*cx*sy+gsxcy*sx*cy+gsxsy*sx*sy);
70 bo=bi(1)*bm/(bm+bcx*cx+bcy*cy+bsx*sx+bsy*sy
71 +bcxcy*cx*cy+bcxsy*cx*sy+bsxcy*sx*cy+bsxsy*sx*sy);
72 cx=cos(wx); cy=cos(wy);
73 sx=sin(wx); sy=sin(wy);
74 wx=2*PI/xres*(x+.5); wy=2*PI/yres*(y+.5);
75 '_EOF_'
76 skipthis:
77 foreach f ($*)
78 if ( $?verb ) then
79 echo $f\:
80 echo adjusting exposure/size...
81 endif
82 $pf $f > $td/pf
83 getinfo < $td/pf > $f
84 ed - $f << _EOF_
85 i
86 $ha
87 .
88 w
89 q
90 _EOF_
91 set resolu=`getinfo -d < $td/pf | sed 's/-Y \([1-9][0-9]*\) +X \([1-9][0-9]*\)/\2 \1/'`
92 if ( ! $?dofsub ) then
93 mv $td/pf $td/hf
94 goto donefsub
95 endif
96 # if ( $?verb ) then
97 # echo computing Fourier coefficients...
98 # endif
99 # pfilt -1 -x 32 -y 32 $td/pf | pvalue -h \
100 # | rcalc -e 'xres:32;yres:32' -f $td/coef.cal \
101 # | total -m | rcalc -o $td/coef.fmt \
102 # > $td/coef
103 if ( $?verb ) then
104 # cat $td/coef
105 echo removing low frequencies...
106 endif
107 pgblur -r `ev "sqrt($resolu[1]*$resolu[2])/8"` $td/pf > $td/lf
108 pcomb -e 's=1/li(2);ro=s*ri(1);go=s*gi(1);bo=s*bi(1)' \
109 $td/pf $td/lf > $td/hf
110 # pcomb -f $td/coef -f $td/fsub.cal $td/pf > $td/hf
111 donefsub:
112 if ( $?blend ) then
113 if ( $?verb ) then
114 echo blending edges...
115 endif
116 @ mar= $resolu[1] - 3
117 @ les= $resolu[1] - 1
118 pcompos -x 1 $td/hf 0 0 | pfilt -1 -x 3 > $td/left
119 pcompos $td/hf -$les 0 | pfilt -1 -x 3 > $td/right
120 pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
121 -e 'f(p)=(3-x)/7*p(1)+(4+x)/7*p(2)' \
122 $td/right $td/left > $td/left.patch
123 pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
124 -e 'f(p)=(1+x)/7*p(1)+(6-x)/7*p(2)' \
125 $td/left $td/right > $td/right.patch
126 pcompos $td/hf 0 0 $td/left.patch 0 0 $td/right.patch $mar 0 \
127 > $td/hflr
128 @ mar= $resolu[2] - 3
129 @ les= $resolu[2] - 1
130 pcompos -y 1 $td/hflr 0 0 | pfilt -1 -y 3 > $td/bottom
131 pcompos $td/hflr 0 -$les | pfilt -1 -y 3 > $td/top
132 pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
133 -e 'f(p)=(3-y)/7*p(1)+(4+y)/7*p(2)' \
134 $td/top $td/bottom > $td/bottom.patch
135 pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
136 -e 'f(p)=(1+y)/7*p(1)+(6-y)/7*p(2)' \
137 $td/bottom $td/top > $td/top.patch
138 pcompos $td/hflr 0 0 $td/bottom.patch 0 0 $td/top.patch 0 $mar \
139 | getinfo - >> $f
140 else
141 getinfo - < $td/hf >> $f
142 endif
143 if ( $?verb ) then
144 echo $f done.
145 endif
146 end
147 quit:
148 rm -rf $td