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root/radiance/ray/src/px/normpat.csh
Revision: 1.5
Committed: Fri Jan 4 23:36:35 1991 UTC (33 years, 4 months ago) by greg
Content type: application/x-csh
Branch: MAIN
Changes since 1.4: +16 -11 lines
Log Message:
made Fourier transform optional

File Contents

# User Rev Content
1 greg 1.1 #!/bin/csh -f
2     # SCCSid "$SunId$ LBL"
3     #
4 greg 1.2 # Normalize a pattern for tiling (-b option blends edges) by removing
5 greg 1.5 # lowest frequencies from image (-f option) and reducing to
6     # standard size (-r option)
7 greg 1.1 #
8 greg 1.5 set ha=$0
9     set ha=$ha:t
10 greg 1.2 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 $argv[1] -p 1"
16     breaksw
17 greg 1.5 case -f:
18     set ha="$ha -f"
19     set dofsub
20     breaksw
21 greg 1.2 case -b:
22 greg 1.5 set ha="$ha -b"
23 greg 1.2 set blend
24     breaksw
25 greg 1.3 case -v:
26     set verb
27     breaksw
28 greg 1.2 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=/usr/tmp/np$$
39     mkdir $td
40 greg 1.4 cat > $td/coef.fmt << '_EOF_'
41     rcx=${ $1 }; rcy=${ $2 }; rsx=${ $3 }; rsy=${ $4 };
42     rcxcy=${ $5 }; rcxsy=${ $6 }; rsxcy=${ $7 }; rsxsy=${ $8 };
43     gcx=${ $9 }; gcy=${ $10 }; gsx=${ $11 }; gsy=${ $12 };
44     gcxcy=${ $13 }; gcxsy=${ $14 }; gsxcy=${ $15 }; gsxsy=${ $16 };
45     bcx=${ $17 }; bcy=${ $18 }; bsx=${ $19 }; bsy=${ $20 };
46     bcxcy=${ $21 }; bcxsy=${ $22 }; bsxcy=${ $23 }; bsxsy=${ $24 };
47     '_EOF_'
48     cat > $td/coef.cal << '_EOF_'
49     $1=$3*2*cx; $2=$3*2*cy; $3=$3*2*sx; $4=$3*2*sy;
50     $5=$3*4*cx*cy; $6=$3*4*cx*sy; $7=$3*4*sx*cy; $8=$3*4*sx*sy;
51     $9=$4*2*cx; $10=$4*2*cy; $11=$4*2*sx; $12=$4*2*sy;
52     $13=$4*4*cx*cy; $14=$4*4*cx*sy; $15=$4*4*sx*cy; $16=$4*4*sx*sy;
53     $17=$5*2*cx; $18=$5*2*cy; $19=$5*2*sx; $20=$5*2*sy;
54     $21=$5*4*cx*cy; $22=$5*4*cx*sy; $23=$5*4*sx*cy; $24=$5*4*sx*sy;
55     cx=cos(wx); cy=cos(wy);
56     sx=sin(wx); sy=sin(wy);
57     wx=2*PI*($1+.5)/xres; wy=2*PI*($2+.5)/yres;
58     '_EOF_'
59     cat > $td/fsub.cal << '_EOF_'
60     ro=ri(1)-rcx*cx-rcy*cy-rsx*sx-rsy*sy
61     -rcxcy*cx*cy-rcxsy*cx*sy-rsxcy*sx*cy-rsxsy*sx*sy;
62     go=gi(1)-gcx*cx-gcy*cy-gsx*sx-gsy*sy
63     -gcxcy*cx*cy-gcxsy*cx*sy-gsxcy*sx*cy-gsxsy*sx*sy;
64     bo=bi(1)-bcx*cx-bcy*cy-bsx*sx-bsy*sy
65     -bcxcy*cx*cy-bcxsy*cx*sy-bsxcy*sx*cy-bsxsy*sx*sy;
66     cx=cos(wx); cy=cos(wy);
67     sx=sin(wx); sy=sin(wy);
68     wx=2*PI*(x+.5)/xres; wy=2*PI*(y+.5)/yres;
69     PI=3.14159265358979323846;
70     '_EOF_'
71 greg 1.1 foreach f ($*)
72 greg 1.3 if ( $?verb ) then
73     echo $f\:
74     echo adjusting exposure/size...
75     endif
76 greg 1.2 $pf $f > $td/pf
77     getinfo < $td/pf > $f
78     ed - $f << _EOF_
79     i
80     $ha
81     .
82     w
83     q
84     _EOF_
85 greg 1.3 set resolu=`getinfo -d < $td/pf | sed 's/-Y \([0-9]*\) +X \([0-9]*\)/\2 \1/'`
86 greg 1.5 if ( ! $?dofsub ) then
87     mv $td/pf $td/hf
88     goto donefsub
89     endif
90 greg 1.3 if ( $?verb ) then
91     echo computing Fourier coefficients...
92     endif
93 greg 1.4 pfilt -1 -x 32 -y 32 $td/pf | pvalue -h \
94     | rcalc -f $td/coef.cal -e 'xres=32;yres=32' \
95     | total -m | rcalc -o $td/coef.fmt \
96     > $td/coef
97 greg 1.3 if ( $?verb ) then
98 greg 1.4 cat $td/coef
99 greg 1.3 echo removing low frequencies...
100     endif
101 greg 1.4 pcomb -f $td/fsub.cal -f $td/coef \
102     -e "xres=$resolu[1];yres=$resolu[2]" \
103 greg 1.2 $td/pf > $td/hf
104 greg 1.5 donefsub:
105 greg 1.2 if ( $?blend ) then
106 greg 1.3 if ( $?verb ) then
107     echo blending edges...
108     endif
109 greg 1.2 @ mar= $resolu[1] - 3
110     pcompos -x 3 $td/hf 0 0 > $td/left
111     pcompos $td/hf -$mar 0 > $td/right
112     pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
113     -e 'f(p)=(3-x)/7*p(1)+(4+x)/7*p(2)' \
114     $td/right $td/left > $td/left.patch
115     pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
116     -e 'f(p)=(1+x)/7*p(1)+(6-x)/7*p(2)' \
117     $td/left $td/right > $td/right.patch
118     pcompos $td/hf 0 0 $td/left.patch 0 0 $td/right.patch $mar 0 \
119     > $td/hflr
120     @ mar= $resolu[2] - 3
121     pcompos -y 3 $td/hflr 0 0 > $td/bottom
122     pcompos $td/hflr 0 -$mar > $td/top
123     pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
124     -e 'f(p)=(3-y)/7*p(1)+(4+y)/7*p(2)' \
125     $td/top $td/bottom > $td/bottom.patch
126     pcomb -e 'ro=f(ri);go=f(gi);bo=f(bi)' \
127     -e 'f(p)=(1+y)/7*p(1)+(6-y)/7*p(2)' \
128     $td/bottom $td/top > $td/top.patch
129     pcompos $td/hflr 0 0 $td/bottom.patch 0 0 $td/top.patch 0 $mar \
130     | getinfo - >> $f
131 greg 1.5 else
132     getinfo - < $td/hf >> $f
133 greg 1.2 endif
134 greg 1.3 if ( $?verb ) then
135     echo $f done.
136     endif
137 greg 1.1 end
138 greg 1.2 quit:
139     rm -rf $td