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Overview
Comment:Update commands to 1.36
Timelines: family | ancestors | trunk
Files: files | file ages | folders
SHA1:0be7f662b433563311a25cf3a5474d3c6cc6fb41
User & Date: jim 2016-11-16 10:41:10
Context
2016-11-16
10:41
Update commands to 1.36 Leaf check-in: 0be7f662b4 user: jim tags: trunk
2014-12-28
10:38
Changes for ChiselApp commands check-in: 2726976453 user: jim tags: trunk
Changes
Hide Diffs Unified Diffs Ignore Whitespace Patch

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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 449.000000 724.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 449 724
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
%%BeginSetup
%%EndSetup
%%Page: 1 1
%%PageBoundingBox: 0 0 449 724
%%BeginPageSetup
cg_md begin
bp
sdmtx
%RBIBeginFontSubset: Monaco
%!FontType1-1.0: Monaco 1.0000.2.0000
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 /PaintType 0 def
 /Encoding 256 array 0 1 255{1 index exch/.notdef put}for
 dup 33 /five put
 dup 34 /space put
 dup 35 /asciitilde put
 dup 36 /greater put
 dup 37 /f put
 dup 38 /o put
 dup 39 /s put
 dup 40 /i put
 dup 41 /l put
 dup 42 /h put
 dup 43 /e put
 dup 44 /p put
 dup 45 /c put
 dup 46 /n put
 dup 47 /g put
 dup 48 /u put
 dup 49 /r put
 dup 50 /a put
 dup 51 /t put
 dup 52 /U put
 dup 53 /colon put
 dup 54 /M put
 dup 55 /E put
 dup 56 /T put
 dup 57 /H put
 dup 58 /O put
 dup 59 /D put
 dup 60 /period put
 dup 61 /question put
 dup 62 /P put
 dup 63 /I put
 dup 64 /N put
 dup 65 /S put
 dup 66 /W put
 dup 67 /x put
 dup 68 /m put
 dup 69 /A put
 dup 70 /d put
 dup 71 /hyphen put
 dup 72 /R put
 dup 73 /y put
 dup 74 /F put
 dup 75 /L put
 dup 76 /b put
 dup 77 /j put
 dup 78 /k put
 dup 79 /comma put
 dup 80 /v put
 dup 81 /w put
 dup 82 /parenleft put
 dup 83 /two put
 dup 84 /zero put
 dup 85 /one put
 dup 86 /four put
 dup 87 /seven put
 dup 88 /parenright put
 dup 89 /q put
 dup 90 /z put
 dup 91 /bar put
 readonly def
 42/FontType resourcestatus{pop pop false}{true}ifelse
 %APLsfntBegin
 {currentfile 0(%APLsfntEnd\n)/SubFileDecode filter flushfile}if
 /FontType 42 def
 /FontMatrix matrix def
 /FontBBox[2048 -1249 1 index div -862 2 index div 1647 3 index div 2504 5 -1 roll div]cvx def
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/space 1 def
/parenleft 2 def
/parenright 3 def
/comma 4 def
/hyphen 5 def
/period 6 def
/zero 7 def
/one 8 def
/two 9 def
/four 10 def
/five 11 def
/seven 12 def
/colon 13 def
/greater 14 def
/question 15 def
/A 16 def
/D 17 def
/E 18 def
/F 19 def
/H 20 def
/I 21 def
/L 22 def
/M 23 def
/N 24 def
/O 25 def
/P 26 def
/R 27 def
/S 28 def
/T 29 def
/U 30 def
/W 31 def
/a 32 def
/b 33 def
/c 34 def
/d 35 def
/e 36 def
/f 37 def
/g 38 def
/h 39 def
/i 40 def
/j 41 def
/k 42 def
/l 43 def
/m 44 def
/n 45 def
/o 46 def
/p 47 def
/q 48 def
/r 49 def
/s 50 def
/t 51 def
/u 52 def
/v 53 def
/w 54 def
/x 55 def
/y 56 def
/z 57 def
/bar 58 def
/asciitilde 59 def
/VariantTag1 60 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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(""""""""B1\(3+"3&"J?K7@E67"+C,&13+F"-&.%\(/0123\(&."\(.%&1D23\(&."%&1"EH7E<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""EH7E"-2."L+"&.+"&%5""2\)\)"+D2\(\)",1&M+-3"'*0."'N\(."3\(-N+3"0'+1)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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("""%&''\(\)"-&.%\(/0123\(&."\(D,&13"J?K7@E67)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""H+2F"2"-&.%\(/0123\(&."%1&D"J?K7@E67O"&P+1Q1\(3\(./"3*+"-011+.3)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""-&.%\(/0123\(&.<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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("""%&''\(\)"-&.%\(/0123\(&."D+1/+"J?K7@E67)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""H+2F"2"-&.%\(/0123\(&."%1&D"J?K7@E67"2.F"D+1/+"\(3'"P2\)0+'"\(.3&)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""3*+"-011+.3"-&.%\(/0123\(&.<""7C\('3\(./"P2\)0+'"32N+",1\(&1\(3I"&P+1)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""P2\)0+'"1+2F"%1&D"J?K7@E67<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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("""%&''\(\)"-&.%\(/0123\(&.",0\)\)"EH7E"=4HK=)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""\(F+.3\(%\(+F"LI"4HK<""?%".&"4HK"\('"',+-\(%\(+FO"3*+."3*+"F+%20\)3)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""'+1P+1"\('"0'+F<"4'+"3*+"GG\)+/2-I"&,3\(&."%&1"3*+"&\)F+1",1&3&-&\))[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""RQ*+."32\)N\(./"3&"'+1P+1'"-&D,\(\)+F",1\(&1"3&"STUUGTVGSW<X""4'+)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""3*+"GG&P+1Q1\(3+"%\)2/"3&"-&D,\)+3+\)I"1+,\)2-+"\)&-2\)"'+33\(./'"Q\(3*)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""-&.3+.3"1+-+\(P+F"%1&D"4HK<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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("""%&''\(\)"-&.%\(/0123\(&.",0'*"EH7E"=4HK=)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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("""""""">0'*"3*+"\)&-2\)"-&.%\(/0123\(&."\(.3&"3*+"1+D&3+"'+1P+1"\(F+.3\(%\(+F)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""LI"4HK<""EFD\(.",1\(P\(\)+/+"\('"1+Y0\(1+F"&."3*+"1+D&3+"'+1P+1"%&1)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""3*\('"3&"Q&1N<""B*+."3*+"'2D+"1+-&1F"+C\('3'"L&3*"\)&-2\)\)I"2.F"&.)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""3*+"1+D&3+"+.FO"3*+"&.+"3*23"Q2'"D&'3"1+-+.3\)I"-*2./+F"Q\(.'<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""4'+"3*+"GG\)+/2-I"%\)2/"Q*+."32\)N\(./"3&"&\)F+1"'+1P+1'<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-219.5 190.43213 m
("""%&''\(\)"-&.%\(/0123\(&."1+'+3"EH7E)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""H+'3&1+"3*+"-&.%\(/0123\(&."3&"3*+"F+%20\)3<""EH7E"2'"2L&P+<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-219.5 246.10205 m
("""%&''\(\)"-&.%\(/0123\(&."'I.-"EH7E"=4HK=)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""AI.-*1&.\(Z+"-&.%\(/0123\(&."-*2./+'"\(."3*+"\)&-2\)"1+,&'\(3&1I"Q\(3*)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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(""""""""3*+"1+D&3+"1+,&'\(3&1I"23"4HK<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-219.5 315.60693 m
(:,3\(&.'5)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-219.5 329.44189 m
("""GH[GG1+,&'\(3&1I"J?K7"""""""7C312-3"\(.%&"%1&D"1+,&'\(3&1I"J?K7)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-219.5 357.27686 m
(A++"2\)'&5"'+33\(./'O"0.'+3)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
ep
end
%%Trailer
%%EOF

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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 455.000000 182.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 455 182
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
%%BeginSetup
%%EndSetup
%%Page: 1 1
%%PageBoundingBox: 0 0 455 182
%%BeginPageSetup
cg_md begin
bp
sdmtx
%RBIBeginFontSubset: Monaco
%!FontType1-1.0: Monaco 1.0000.2.0000
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 /PaintType 0 def
 /Encoding 256 array 0 1 255{1 index exch/.notdef put}for
 dup 33 /five put
 dup 34 /six put
 dup 35 /space put
 dup 36 /asciitilde put
 dup 37 /greater put
 dup 38 /f put
 dup 39 /o put
 dup 40 /s put
 dup 41 /i put
 dup 42 /l put
 dup 43 /h put
 dup 44 /e put
 dup 45 /p put
 dup 46 /d put
 dup 47 /c put
 dup 48 /n put
 dup 49 /a put
 dup 50 /t put
 dup 51 /U put
 dup 52 /g put
 dup 53 /colon put
 dup 54 /question put
 dup 55 /C put
 dup 56 /H put
 dup 57 /E put
 dup 58 /K put
 dup 59 /I put
 dup 60 /N put
 dup 61 /O put
 dup 62 /P put
 dup 63 /T put
 dup 64 /S put
 dup 65 /F put
 dup 66 /k put
 dup 67 /hyphen put
 dup 68 /r put
 dup 69 /u put
 dup 70 /m put
 dup 71 /comma put
 dup 72 /y put
 dup 73 /period put
 dup 74 /R put
 dup 75 /bar put
 dup 76 /L put
 dup 77 /x put
 dup 78 /W put
 dup 79 /w put
 dup 80 /less put
 dup 81 /parenleft put
 dup 82 /parenright put
 dup 83 /M put
 dup 84 /b put
 dup 85 /two put
 dup 86 /zero put
 dup 87 /equal put
 dup 88 /v put
 readonly def
 42/FontType resourcestatus{pop pop false}{true}ifelse
 %APLsfntBegin
 {currentfile 0(%APLsfntEnd\n)/SubFileDecode filter flushfile}if
 /FontType 42 def
 /FontMatrix matrix def
 /FontBBox[2048 -1249 1 index div -862 2 index div 1647 3 index div 2504 5 -1 roll div]cvx def
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/parenleft 2 def
/parenright 3 def
/comma 4 def
/hyphen 5 def
/period 6 def
/zero 7 def
/two 8 def
/five 9 def
/six 10 def
/colon 11 def
/less 12 def
/equal 13 def
/greater 14 def
/question 15 def
/C 16 def
/E 17 def
/F 18 def
/H 19 def
/I 20 def
/K 21 def
/L 22 def
/M 23 def
/N 24 def
/O 25 def
/P 26 def
/R 27 def
/S 28 def
/T 29 def
/U 30 def
/W 31 def
/a 32 def
/b 33 def
/c 34 def
/d 35 def
/e 36 def
/f 37 def
/g 38 def
/h 39 def
/i 40 def
/k 41 def
/l 42 def
/m 43 def
/n 44 def
/o 45 def
/p 46 def
/r 47 def
/s 48 def
/t 49 def
/u 50 def
/v 51 def
/w 52 def
/x 53 def
/y 54 def
/bar 55 def
/asciitilde 56 def
/VariantTag1 57 def
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 currentdict dup/FontName get exch definefont pop end
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 42/FontType resourcestatus{pop pop true}{false}ifelse
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 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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-222.5 44.669922 m
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-222.5 58.504883 m
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-222.5 86.339844 m
(@,,#1*\('5#&\)0&'G#\)0&'G#*,1X,\()[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
ep
end
%%Trailer
%%EOF

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%%BeginProlog
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%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
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mark
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/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
%%BeginSetup
%%EndSetup
%%Page: 1 1
%%PageBoundingBox: 0 0 443 307
%%BeginPageSetup
cg_md begin
bp
sdmtx
%RBIBeginFontSubset: Monaco
%!FontType1-1.0: Monaco 1.0000.2.0000
 14 dict begin/FontName /Monaco def
 /PaintType 0 def
 /Encoding 256 array 0 1 255{1 index exch/.notdef put}for
 dup 33 /five put
 dup 34 /one put
 dup 35 /space put
 dup 36 /asciitilde put
 dup 37 /greater put
 dup 38 /f put
 dup 39 /o put
 dup 40 /s put
 dup 41 /i put
 dup 42 /l put
 dup 43 /h put
 dup 44 /e put
 dup 45 /p put
 dup 46 /c put
 dup 47 /r put
 dup 48 /u put
 dup 49 /b put
 dup 50 /U put
 dup 51 /a put
 dup 52 /g put
 dup 53 /colon put
 dup 54 /question put
 dup 55 /O put
 dup 56 /P put
 dup 57 /T put
 dup 58 /I put
 dup 59 /N put
 dup 60 /S put
 dup 61 /R put
 dup 62 /E put
 dup 63 /Y put
 dup 64 /m put
 dup 65 /n put
 dup 66 /d put
 dup 67 /v put
 dup 68 /t put
 dup 69 /parenleft put
 dup 70 /w put
 dup 71 /parenright put
 dup 72 /y put
 dup 73 /period put
 dup 74 /B put
 dup 75 /comma put
 dup 76 /H put
 dup 77 /hyphen put
 dup 78 /F put
 dup 79 /C put
 dup 80 /M put
 dup 81 /A put
 dup 82 /D put
 dup 83 /V put
 dup 84 /L put
 dup 85 /W put
 dup 86 /exclam put
 readonly def
 42/FontType resourcestatus{pop pop false}{true}ifelse
 %APLsfntBegin
 {currentfile 0(%APLsfntEnd\n)/SubFileDecode filter flushfile}if
 /FontType 42 def
 /FontMatrix matrix def
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/space 1 def
/exclam 2 def
/parenleft 3 def
/parenright 4 def
/comma 5 def
/hyphen 6 def
/period 7 def
/one 8 def
/five 9 def
/colon 10 def
/greater 11 def
/question 12 def
/A 13 def
/B 14 def
/C 15 def
/D 16 def
/E 17 def
/F 18 def
/H 19 def
/I 20 def
/L 21 def
/M 22 def
/N 23 def
/O 24 def
/P 25 def
/R 26 def
/S 27 def
/T 28 def
/U 29 def
/V 30 def
/W 31 def
/Y 32 def
/a 33 def
/b 34 def
/c 35 def
/d 36 def
/e 37 def
/f 38 def
/g 39 def
/h 40 def
/i 41 def
/l 42 def
/m 43 def
/n 44 def
/o 45 def
/p 46 def
/r 47 def
/s 48 def
/t 49 def
/u 50 def
/v 51 def
/w 52 def
/y 53 def
/asciitilde 54 def
/VariantTag1 55 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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(3BB/,\(\(,\(#'&#.'//,\(-'AB,AD\(K#3AB#\(\)@\)*3/#-/\)C3.HM\(,A\(\)D\)C,#&\),*B\()[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 -17.752441 m
(3/,#3*\('#-0/4,BI##:&#D+,#MM-/\)C3D,#'-D\)'A#\)\(#0\(,BK#D+,A#'A*H#-/\)C3D,)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 -3.9174805 m
(1/3A.+,\(#3/,#/,@'C,B#3AB#3**#'D+,/#\)A&'/@3D\)'A#\)\(#*,&D#\)AD3.DI)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 23.91748 m
(9+\)\(#.'@@3AB#-,/@3A,AD*H#B,*,D,\(#D+,#\(./011,B#\)A&'/@3D\)'AI#9L>#>NN>O9<)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 37.752441 m
(7N#9L:<#O7PPQ;R#Q=>#:==>S>=<:JT>I#2<>#U:9L#OQ29:7;V)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 65.587402 m
(9+,#0\(,/#\)\(#-/'@-D,B#D'#.'A&\)/@#D+,#\(./01#0A*,\(\(#D+,#MM&'/.,#'-D\)'A)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 79.422363 m
(\)\(#0\(,BI)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 107.25732 m
(7-D\)'A\(5)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 121.09229 m
(##MM&'/.,#####B'#A'D#-/'@-D#&'/#.'A&\)/@3D\)'A)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 134.92725 m
(##MM-/\)C3D,###'A*H#-/\)C3D,#1/3A.+,\(#3/,#/,@'C,B#&/'@#D+,#/,-'\(\)D'/H)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-216.5 148.76221 m
(##MMC,/\)*H####\(./01#/,3*#D+'/'04+*H#E\(,,#31'C,G)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 425.000000 265.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 425 265
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
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cg_md begin
bp
sdmtx
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 14 dict begin/FontName /Monaco def
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 /Encoding 256 array 0 1 255{1 index exch/.notdef put}for
 dup 33 /five put
 dup 34 /two put
 dup 35 /space put
 dup 36 /asciitilde put
 dup 37 /greater put
 dup 38 /f put
 dup 39 /o put
 dup 40 /s put
 dup 41 /i put
 dup 42 /l put
 dup 43 /h put
 dup 44 /e put
 dup 45 /p put
 dup 46 /a put
 dup 47 /r put
 dup 48 /c put
 dup 49 /U put
 dup 50 /g put
 dup 51 /colon put
 dup 52 /bracketleft put
 dup 53 /hyphen put
 dup 54 /bar put
 dup 55 /bracketright put
 dup 56 /m put
 dup 57 /t put
 dup 58 /n put
 dup 59 /numbersign put
 dup 60 /w put
 dup 61 /d put
 dup 62 /W put
 dup 63 /period put
 dup 64 /S put
 dup 65 /v put
 dup 66 /y put
 dup 67 /O put
 dup 68 /u put
 dup 69 /comma put
 dup 70 /b put
 dup 71 /N put
 dup 72 /T put
 dup 73 /j put
 dup 74 /L put
 dup 75 /I put
 dup 76 /D put
 dup 77 /H put
 dup 78 /zero put
 dup 79 /quotesingle put
 readonly def
 42/FontType resourcestatus{pop pop false}{true}ifelse
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 /CharStrings 49 dict dup begin
 /.notdef 0 def
/space 1 def
/numbersign 2 def
/quotesingle 3 def
/comma 4 def
/hyphen 5 def
/period 6 def
/zero 7 def
/two 8 def
/five 9 def
/colon 10 def
/greater 11 def
/D 12 def
/H 13 def
/I 14 def
/L 15 def
/N 16 def
/O 17 def
/S 18 def
/T 19 def
/U 20 def
/W 21 def
/bracketleft 22 def
/bracketright 23 def
/a 24 def
/b 25 def
/c 26 def
/d 27 def
/e 28 def
/f 29 def
/g 30 def
/h 31 def
/i 32 def
/j 33 def
/l 34 def
/m 35 def
/n 36 def
/o 37 def
/p 38 def
/r 39 def
/s 40 def
/t 41 def
/u 42 def
/v 43 def
/w 44 def
/y 45 def
/bar 46 def
/asciitilde 47 def
/VariantTag1 48 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 401.000000 71.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 401 71
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
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 dup 34 /three put
 dup 35 /space put
 dup 36 /asciitilde put
 dup 37 /greater put
 dup 38 /f put
 dup 39 /o put
 dup 40 /s put
 dup 41 /i put
 dup 42 /l put
 dup 43 /h put
 dup 44 /e put
 dup 45 /p put
 dup 46 /a put
 dup 47 /one put
 dup 48 /u put
 dup 49 /m put
 dup 50 /U put
 dup 51 /g put
 dup 52 /colon put
 dup 53 /F put
 dup 54 /I put
 dup 55 /L put
 dup 56 /E put
 dup 57 /period put
 dup 58 /C put
 dup 59 /t put
 dup 60 /n put
 dup 61 /S put
 dup 62 /H put
 dup 63 /A put
 dup 64 /c put
 dup 65 /k put
 dup 66 /d put
 dup 67 /hyphen put
 dup 68 /quotedbl put
 dup 69 /r put
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/space 1 def
/quotedbl 2 def
/hyphen 3 def
/period 4 def
/one 5 def
/three 6 def
/five 7 def
/colon 8 def
/greater 9 def
/A 10 def
/C 11 def
/E 12 def
/F 13 def
/H 14 def
/I 15 def
/L 16 def
/S 17 def
/U 18 def
/a 19 def
/c 20 def
/d 21 def
/e 22 def
/f 23 def
/g 24 def
/h 25 def
/i 26 def
/k 27 def
/l 28 def
/m 29 def
/n 30 def
/o 31 def
/p 32 def
/r 33 def
/s 34 def
/t 35 def
/u 36 def
/asciitilde 37 def
/VariantTag1 38 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
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 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
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 currentdict currentfile eexec
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%%Trailer
%%EOF

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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 461.000000 487.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 461 487
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
%%BeginSetup
%%EndSetup
%%Page: 1 1
%%PageBoundingBox: 0 0 461 487
%%BeginPageSetup
cg_md begin
bp
sdmtx
%RBIBeginFontSubset: Monaco
%!FontType1-1.0: Monaco 1.0000.2.0000
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 dup 33 /five put
 dup 34 /zero put
 dup 35 /four put
 dup 36 /space put
 dup 37 /asciitilde put
 dup 38 /greater put
 dup 39 /f put
 dup 40 /o put
 dup 41 /s put
 dup 42 /i put
 dup 43 /l put
 dup 44 /h put
 dup 45 /e put
 dup 46 /p put
 dup 47 /a put
 dup 48 /d put
 dup 49 /U put
 dup 50 /g put
 dup 51 /colon put
 dup 52 /question put
 dup 53 /O put
 dup 54 /P put
 dup 55 /T put
 dup 56 /I put
 dup 57 /N put
 dup 58 /S put
 dup 59 /F put
 dup 60 /L put
 dup 61 /E put
 dup 62 /one put
 dup 63 /two put
 dup 64 /period put
 dup 65 /M put
 dup 66 /k put
 dup 67 /r put
 dup 68 /n put
 dup 69 /m put
 dup 70 /t put
 dup 71 /c put
 dup 72 /u put
 dup 73 /x put
 dup 74 /W put
 dup 75 /v put
 dup 76 /y put
 dup 77 /comma put
 dup 78 /b put
 dup 79 /w put
 dup 80 /quotedbl put
 dup 81 /hyphen put
 dup 82 /quotesingle put
 dup 83 /asterisk put
 dup 84 /j put
 dup 85 /bar put
 dup 86 /less put
 dup 87 /B put
 dup 88 /parenleft put
 dup 89 /parenright put
 dup 90 /A put
 dup 91 /C put
 dup 92 /G put
 readonly def
 42/FontType resourcestatus{pop pop false}{true}ifelse
 %APLsfntBegin
 {currentfile 0(%APLsfntEnd\n)/SubFileDecode filter flushfile}if
 /FontType 42 def
 /FontMatrix matrix def
 /FontBBox[2048 -1249 1 index div -862 2 index div 1647 3 index div 2504 5 -1 roll div]cvx def
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/space 1 def
/quotedbl 2 def
/quotesingle 3 def
/parenleft 4 def
/parenright 5 def
/asterisk 6 def
/comma 7 def
/hyphen 8 def
/period 9 def
/zero 10 def
/one 11 def
/two 12 def
/four 13 def
/five 14 def
/colon 15 def
/less 16 def
/greater 17 def
/question 18 def
/A 19 def
/B 20 def
/C 21 def
/E 22 def
/F 23 def
/G 24 def
/I 25 def
/L 26 def
/M 27 def
/N 28 def
/O 29 def
/P 30 def
/S 31 def
/T 32 def
/U 33 def
/W 34 def
/a 35 def
/b 36 def
/c 37 def
/d 38 def
/e 39 def
/f 40 def
/g 41 def
/h 42 def
/i 43 def
/j 44 def
/k 45 def
/l 46 def
/m 47 def
/n 48 def
/o 49 def
/p 50 def
/r 51 def
/s 52 def
/t 53 def
/u 54 def
/v 55 def
/w 56 def
/x 57 def
/y 58 def
/bar 59 def
/asciitilde 60 def
/VariantTag1 61 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
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 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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-225.5 -149.43213 m
(J,-D$/00*D2$'*+-\)$\(C$0*C-GF\(C*-\)$C-GHC\)*K-+LM$'*+-D/E-\)$F,/F$N-2*D)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -135.59717 m
(O*F,$P@P$/C-$-IG+H0-0$NL$0-'/H+F@$$7\($*DG+H0-$\)HG,$'*+-\)M$/00)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -121.76221 m
(F,-$PQQ0\(F'*+-\)P$\(.F*\(D$F\($F,-$G\(EE/D0Q+*D-@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -93.927246 m
(7,-$QQ*2D\(C-$/D0$QQG+-/D$\(.F*\(D\)$/C-$G\(EE/Q\)-./C/F-$+*\)F\)$\('$2+\(N$./FF-CD\))[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -80.092285 m
('\(C$'*+-\)$F\($N-$-IG+H0-0@$$=I/E.+-3$$RS@\(MS@\(NTMS@-I-R$$8'$F,-$QQ*2D\(C-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -66.257324 m
(\(.F*\(D$0\(-\)$D\(F$/..-/C$\(D$F,-$G\(EE/D0$+*D-$F,-D$F,-$P*2D\(C-Q2+\(NP$\)-FF*D2)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -52.422363 m
(*\)$H\)-0@$$8'$F,-$QQG+-/D$\(.F*\(D$0\(-\)$D\(F$/..-/C$\(D$F,-$G\(EE/D0$+*D-$F,-D)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -38.587402 m
(F,-$PG+-/DQ2+\(NP$\)-FF*D2$*\)$H\)-0@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 -10.752441 m
(8'$'*+-\)$/C-$/FF-E.F-0$F\($N-$/00-0$-I.+*G*F+L$\(D$F,-$G\(EE/D0$+*D-$O,*G,)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 3.0825195 m
(E/FG,$P*2D\(C-Q2+\(NPM$/$G\(D'*CE/F*\(D$*\)$/\)B-0$'*C\)F@$7,*\)$G/D$N-$.C-K-DF-0)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 16.91748 m
(H\)*D2$F,-$Q'UQQ'\(CG-$\(.F*\(D@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 44.752441 m
(7,-$QQG/\)-Q\)-D\)*F*K-$\(.F*\(D$0-F-CE*D-\)$O,-F,-C$\(C$D\(F$'*+-D/E-\)$\),\(H+0)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 58.587402 m
(N-$FC-/F-0$G/\)-$\)-D\)*F*K-$\(C$D\(F@$8'$F,-$\(.F*\(D$*\)$D\(F$2*K-DM$F,-$0-'/H+F)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 72.422363 m
(0-.-D0\)$\(D$F,-$2+\(N/+$\)-FF*D2M$\(C$F,-$\(.-C/F*D2$\)L\)F-E$0-'/H+FM$*'$D\(F$\)-F@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 100.25732 m
(5.F*\(D\)3)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 128.09229 m
($$$QQG/\)-Q\)-D\)*F*K-$VW55<&$5K-CC*0-$F,-$G/\)-Q\)-D\)*F*K-$\)-FF*D2@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 141.92725 m
($$$QQ0\(F'*+-\)$$$$$$$$$$$$$$*DG+H0-$'*+-\)$N-2*DD*D2$O*F,$/$0\(F$XP@PY)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 155.76221 m
($$$Q'UQQ'\(CG-$$$$$$$$$$$$$$Z00$'*+-\)$O*F,\(HF$.C\(E.F*D2)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 169.59717 m
($$$QQ*2D\(C-$V[:\\&$$$$$$$$$$82D\(C-$'*+-\)$E/FG,*D2$./FF-CD\)$'C\(E$F,-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 183.43213 m
($$$$$$$$$$$$$$$$$$$$$$$$$$$G\(EE/$\)-./C/F-0$+*\)F$\('$2+\(N$./FF-CD\)@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 197.26709 m
($$$QQG+-/D$V[:\\&$$$$$$$$$$$Z+\)\($*2D\(C-$'*+-\)$E/FG,*D2$./FF-CD\)$'C\(E)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 211.10205 m
($$$$$$$$$$$$$$$$$$$$$$$$$$$F,-$G\(EE/$\)-./C/F-0$+*\)F$\('$2+\(N$./FF-CD\)@)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-225.5 238.93701 m
(:--$/+\)\(3$/00C-E\(K-M$CE)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
ep
end
%%Trailer
%%EOF

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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 437.000000 557.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 437 557
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
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 00>] def
 /CharStrings 59 dict dup begin
 /.notdef 0 def
/space 1 def
/quotedbl 2 def
/parenleft 3 def
/parenright 4 def
/asterisk 5 def
/comma 6 def
/hyphen 7 def
/period 8 def
/zero 9 def
/one 10 def
/five 11 def
/colon 12 def
/less 13 def
/greater 14 def
/question 15 def
/A 16 def
/B 17 def
/C 18 def
/D 19 def
/F 20 def
/G 21 def
/I 22 def
/L 23 def
/M 24 def
/N 25 def
/O 26 def
/P 27 def
/S 28 def
/T 29 def
/U 30 def
/Y 31 def
/a 32 def
/b 33 def
/c 34 def
/d 35 def
/e 36 def
/f 37 def
/g 38 def
/h 39 def
/i 40 def
/k 41 def
/l 42 def
/m 43 def
/n 44 def
/o 45 def
/p 46 def
/r 47 def
/s 48 def
/t 49 def
/u 50 def
/v 51 def
/w 52 def
/x 53 def
/y 54 def
/z 55 def
/bar 56 def
/asciitilde 57 def
/VariantTag1 58 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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($$$$/++$'*+-\)$0*\).+/A-0$G\)*?5$C,-$B-MC1/\)B$@\(22/?0N$/1-$/00-0$/\))[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -156.51465 m
($$$$*'$JA$C,-$B/00B$@\(22/?0O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -128.67969 m
($H$$I++$'*+-\)$*?$C,-$1-.\(\)*C\(1A$JGC$2*\)\)*?5$'1\(2$C,-$@,-@F\(GC$KC,/C$*\)L)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -114.84473 m
($$$$/++$'*+-\)$C,/C$\),\(E$/\)$P;==;<Q$E*C,$C,-$B\)C/CG\)B$@\(22/?0N$/1-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -101.00977 m
($$$$1-2\(3-0$/\)$*'$JA$C,-$B12B$@\(22/?0O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -73.174805 m
(:,-$@\(22/?0$0\(-\)$?\(C$B@\(22*CBO$$R\(G$2G\)C$1G?$C,-$B@\(22*CB$\)-./1/C-+A)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -59.339844 m
(/\)$/$\)-./1/C-$\)C-.O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -31.504883 m
(S*+-\)$/?0$0*1-@C\(1*-\)$E,\(\)-$?/2-\)$J-5*?$E*C,$BOB$/1-$*5?\(1-0$G?+-\)\))[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 -17.669922 m
(C,-$TT0\(C'*+-\)$\(.C*\(?$*\)$G\)-0O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 10.165039 m
(:,-$TT*5?\(1-$\(.C*\(?$\(3-11*0-\)$C,-$B*5?\(1-T5+\(JB$\)-CC*?5L$/\)$0\($C,-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 24 m
(TT@/\)-T\)-?\)*C*3-$\(.C*\(?$E*C,$C,-$B@/\)-T\)-?\)*C*3-B$\)-CC*?5$/?0$C,-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 37.834961 m
(TT@+-/?$\(.C*\(?$E*C,$C,-$B@+-/?T5+\(JB$\)-CC*?5O$=--$C,-$0\(@G2-?C/C*\(?)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 51.669922 m
(\(?$C,-$B\)-CC*?5\)B$@\(22/?0$'\(1$'G1C,-1$*?'\(12/C*\(?O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 79.504883 m
(:,-$T?UTT01AT1G?$\(.C*\(?$\),\(E\)$E,/C$E\(G+0$,/..-?$E*C,\(GC$/@CG/++A$0\(*?5)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 93.339844 m
(/?AC,*?5O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 121.1748 m
(:,*\)$@\(22/?0$@/?$J-$G\)-0$C\($C1/@F$C,*10$./1CA$\)\('CE/1-O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 149.00977 m
(8.C*\(?\)6)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 162.84473 m
($$TT@/\)-T\)-?\)*C*3-$VW88X&$83-11*0-$C,-$@/\)-T\)-?\)*C*3-$\)-CC*?5O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 176.67969 m
($$TT0\(C'*+-\)$$$$$$$$$$$$$$;?@+G0-$'*+-\)$J-5*??*?5$E*C,$/$0\(C$KBOBN)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 190.51465 m
($$TT*5?\(1-$VY=Q&$$$$$$$$$$;5?\(1-$'*+-\)$2/C@,*?5$./CC-1?\)$'1\(2$C,-)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 204.34961 m
($$$$$$$$$$$$$$$$$$$$$$$$$$@\(22/$\)-./1/C-0$+*\)C$\('$5+\(J$./CC-1?\)O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 218.18457 m
($$TT@+-/?$VY=Q&$$$$$$$$$$$I+\)\($*5?\(1-$'*+-\)$2/C@,*?5$./CC-1?\)$'1\(2)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 232.01953 m
($$$$$$$$$$$$$$$$$$$$$$$$$$C,-$@\(22/$\)-./1/C-0$+*\)C$\('$5+\(J$./CC-1?\)O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 245.85449 m
($$T?UTT01AT1G?$$$$$$$$$$$$;'$5*3-?L$0*\).+/A$*?\)C-/0$\('$1G?$/@C*\(?\)O)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
-213.5 273.68945 m
(=--$/+\)\(6$/00L$12)[ 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 6.000977 0.000000 ] xS
ep
end
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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 431.000000 265.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 431 265
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
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/space 1 def
/quotedbl 2 def
/parenleft 3 def
/parenright 4 def
/comma 5 def
/hyphen 6 def
/period 7 def
/one 8 def
/five 9 def
/six 10 def
/colon 11 def
/greater 12 def
/question 13 def
/A 14 def
/D 15 def
/H 16 def
/I 17 def
/N 18 def
/O 19 def
/P 20 def
/R 21 def
/S 22 def
/T 23 def
/U 24 def
/V 25 def
/a 26 def
/b 27 def
/c 28 def
/d 29 def
/e 30 def
/f 31 def
/g 32 def
/h 33 def
/i 34 def
/k 35 def
/l 36 def
/m 37 def
/n 38 def
/o 39 def
/p 40 def
/r 41 def
/s 42 def
/t 43 def
/u 44 def
/v 45 def
/w 46 def
/x 47 def
/y 48 def
/bar 49 def
/asciitilde 50 def
/VariantTag1 51 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
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 /FontType 1 def
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 currentdict currentfile eexec
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/F1.1/Monaco renmfont
[ /CIEBasedABC 4 dict dup begin 
/WhitePoint [ 0.9505 1.0000 1.0891 ] def 
/DecodeABC [ { 1.8008  exp } bind { 1.8008  exp } bind { 1.8008  exp } bind ] def 
/MatrixABC [ 0.4295 0.2318 0.0204 0.3278 0.6722 0.1111 0.1933 0.0960 0.9578 ] def 
/RangeLMN [ 0.0 0.9505 0.0 1.0000 0.0 1.0891 ] def 
end ] /Cs1 exch/ColorSpace dr pop
[ /CIEBasedA 5 dict dup begin /WhitePoint [ 0.9505 1.0000 1.0891 ] def 
/DecodeA { 
{ 1.0 0.0 3 -1 roll 1 index 1 index le { exch pop} { pop } ifelse 
 1 index 1 index ge { exch pop } { pop } ifelse < 
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%!PS-Adobe-3.0 EPSF-3.0
%%HiResBoundingBox: 0.000000 0.000000 425.000000 279.000000
%APL_DSC_Encoding: UTF8
%APLProducer: (Version 10.12.1 (Build 16B2555) Quartz PS Context)
%%Title: (Unknown)
%%Creator: (Unknown)
%%CreationDate: (Unknown)
%%For: (Unknown)
%%DocumentData: Clean7Bit
%%LanguageLevel: 2
%%Pages: 1
%%BoundingBox: 0 0 425 279
%%EndComments
%%BeginProlog
%%BeginFile: cg-pdf.ps
%%Copyright: Copyright 2000-2004 Apple Computer Incorporated.
%%Copyright: All Rights Reserved.
currentpacking true setpacking
/cg_md 141 dict def
cg_md begin
/L3? languagelevel 3 ge def
/bd{bind def}bind def
/ld{load def}bd
/xs{exch store}bd
/xd{exch def}bd
/cmmtx matrix def
mark
/sc/setcolor
/scs/setcolorspace
/dr/defineresource
/fr/findresource
/T/true
/F/false
/d/setdash
/w/setlinewidth
/J/setlinecap
/j/setlinejoin
/M/setmiterlimit
/i/setflat
/rc/rectclip
/rf/rectfill
/rs/rectstroke
/f/fill
/f*/eofill
/sf/selectfont
/s/show
%/as/ashow
/xS/xshow
/yS/yshow
/xyS/xyshow
/S/stroke
/m/moveto
/l/lineto
/c/curveto
/h/closepath
/n/newpath
/q/gsave
/Q/grestore
counttomark 2 idiv
%dup (number of ld's = )print == flush	% *** how many 
{ld}repeat pop
/SC{	% CSname
    /ColorSpace fr scs
}bd
/sopr /setoverprint where{pop/setoverprint}{/pop}ifelse ld
/soprm /setoverprintmode where{pop/setoverprintmode}{/pop}ifelse ld
/cgmtx matrix def
/sdmtx{cgmtx currentmatrix pop}bd
/CM {cgmtx setmatrix}bd		% pop the ctm: our gstate ctm on host is now identity
/cm {cmmtx astore CM concat}bd	% reset the matrix and then concat
/W{clip newpath}bd
/W*{eoclip newpath}bd

statusdict begin product end dup (HP) anchorsearch{
    pop pop pop	% pop off the search results
    true
}{
    pop	% previous search result
   (hp) anchorsearch{
	pop pop true
    }{
	pop false
    }ifelse
}ifelse

{	% HP is the product: we use this method of stroking because of a bug in their clone printers with certain T3 fonts
    { 
	{ % charCode Wx Wy
	    pop pop % charCode
	    (0)dup 0 4 -1 roll put
	    F charpath
	}cshow
    }
}{
    {F charpath}
}ifelse
/cply exch bd
/cps {cply stroke}bd
/pgsave 0 def
/bp{/pgsave save store}bd
/ep{pgsave restore showpage}def		% dont' bind
/re{4 2 roll m 1 index 0 rlineto 0 exch rlineto neg 0 rlineto h}bd

/scrdict 10 dict def
/scrmtx matrix def
/patarray 0 def
/createpat{patarray 3 1 roll put}bd
/makepat{
scrmtx astore pop
gsave
initgraphics
CM 
patarray exch get
scrmtx
makepattern
grestore
setpattern
}bd

/cg_BeginEPSF{
    userdict save/cg_b4_Inc_state exch put
    userdict/cg_endepsf/cg_EndEPSF load put
    count userdict/cg_op_count 3 -1 roll put 
    countdictstack dup array dictstack userdict/cg_dict_array 3 -1 roll put
    3 sub{end}repeat
    /showpage {} def
    0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin
    10 setmiterlimit [] 0 setdash newpath
    false setstrokeadjust false setoverprint	% don't use F
}bd
/cg_EndEPSF{
  countdictstack 3 sub { end } repeat
  cg_dict_array 3 1 index length 3 sub getinterval
  {begin}forall
  count userdict/cg_op_count get sub{pop}repeat
  userdict/cg_b4_Inc_state get restore
  F setpacking
}bd

/cg_biproc{currentfile/RunLengthDecode filter}bd
/cg_aiproc{currentfile/ASCII85Decode filter/RunLengthDecode filter}bd
/ImageDataSource 0 def
L3?{
    /cg_mibiproc{pop pop/ImageDataSource{cg_biproc}def}bd
    /cg_miaiproc{pop pop/ImageDataSource{cg_aiproc}def}bd
}{
    /ImageBandMask 0 def
    /ImageBandData 0 def
    /cg_mibiproc{
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/RunLengthDecode filter dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
    /cg_miaiproc{	
	string/ImageBandMask xs
	string/ImageBandData xs
	/ImageDataSource{[currentfile/ASCII85Decode filter/RunLengthDecode filter
	    dup ImageBandMask/readstring cvx
	    /pop cvx dup ImageBandData/readstring cvx/pop cvx]cvx bind}bd
    }bd
}ifelse
/imsave 0 def
/BI{save/imsave xd mark}bd
/EI{imsave restore}bd
/ID{
counttomark 2 idiv
dup 2 add	% leave room for imagetype and imagematrix
dict begin
{def} repeat
pop		% remove mark
/ImageType 1 def
/ImageMatrix[Width 0 0 Height neg 0 Height]def
currentdict dup/ImageMask known{ImageMask}{F}ifelse exch
% currentdict on stack
L3?{
    dup/MaskedImage known
    { 
	pop
	<<
	    /ImageType 3
	    /InterleaveType 2
	    /DataDict currentdict
	    /MaskDict
	    <<  /ImageType 1
		/Width Width
		/Height Height
		/ImageMatrix ImageMatrix
		/BitsPerComponent 1
		/Decode [0 1]
		currentdict/Interpolate known
		{/Interpolate Interpolate}if
	    >>
	>>
    }if
}if
exch
{imagemask}{image}ifelse	
end	% pop imagedict from dict stack
}bd

/cguidfix{statusdict begin mark version end
{cvr}stopped{cleartomark 0}{exch pop}ifelse
2012 lt{dup findfont dup length dict begin
{1 index/FID ne 2 index/UniqueID ne and
{def} {pop pop} ifelse}forall
currentdict end definefont pop
}{pop}ifelse
}bd
/t_array 0 def
/t_i 0 def
/t_c 1 string def
/x_proc{ % x y
    exch t_array t_i get add exch moveto
    /t_i t_i 1 add store
}bd
/y_proc{ % x y
    t_array t_i get add moveto
    /t_i t_i 1 add store
}bd
/xy_proc{
        % x y
	t_array t_i 2 copy 1 add get 3 1 roll get 
	4 -1 roll add 3 1 roll add moveto
	/t_i t_i 2 add store
}bd
/sop 0 def		% don't bind sop
/cp_proc/x_proc ld 	% default moveto proc is for xwidths only
/base_charpath		% string array
{
    /t_array xs
    /t_i 0 def
    { % char
	t_c 0 3 -1 roll put
        currentpoint
	t_c cply sop
        cp_proc
    }forall
    /t_array 0 def
}bd
/sop/stroke ld		% default sop is stroke. Done here so we don't bind in /base_charpath 

% default sop is stroke
/nop{}def
/xsp/base_charpath ld
/ysp{/cp_proc/y_proc ld base_charpath/cp_proc/x_proc ld}bd
/xysp{/cp_proc/xy_proc ld base_charpath/cp_proc/x_proc ld}bd
/xmp{/sop/nop ld /cp_proc/x_proc ld base_charpath/sop/stroke ld}bd
/ymp{/sop/nop ld /cp_proc/y_proc ld base_charpath/sop/stroke ld}bd
/xymp{/sop/nop ld /cp_proc/xy_proc ld base_charpath/sop/stroke ld}bd
/refnt{ % newname encoding fontname
findfont dup length dict copy dup
/Encoding 4 -1 roll put 
definefont pop
}bd
/renmfont{ % newname fontname
findfont dup length dict copy definefont pop
}bd

L3? dup dup{save exch}if

% languagelevel2 ONLY code goes here

/Range 0 def
/DataSource 0 def
/val 0 def
/nRange 0 def
/mulRange 0 def
/d0 0 def
/r0 0 def
/di 0 def
/ri 0 def
/a0 0 def
/a1 0 def
/r1 0 def
/r2 0 def
/dx 0 def
/Nsteps 0 def
/sh3tp 0 def
/ymax 0 def
/ymin 0 def
/xmax 0 def
/xmin 0 def

/setupFunEval % funDict -- 	% this calculates and sets up a function dict for evaulation.
{
    begin
	/nRange Range length 2 idiv store
	/mulRange   % precompute the range data needed to map a sample value from the table to a range value
		    % this data looks like [ range0mul range0min range1mul range1min ... rangeN-1mul rangeN-1min ]
	[ 
	    0 1 nRange 1 sub
	    { % index
		    2 mul/nDim2 xd		% 2*dimension# we are dealing with
		    Range nDim2 get		% ymin
		    Range nDim2 1 add get	% ymin ymax 
		    1 index sub			% ymin (ymax-ymin)
						% xmin = 0, xmax = 255 (2^bitspersample - 1)
		    255 div			% ymin (ymax-ymin)/(xmax - xmin)
		    exch			% (ymax-ymin)/(xmax - xmin) ymin
	    }for
	]store
    end
}bd

/FunEval % val1 fundict -> comp1 comp2 ... compN
{
    begin
	% the value passed in is the base index into the table
	nRange mul /val xd	% compute the actual index to the table
				% since there are nRange entries per base index
	0 1 nRange 1 sub
	{
	    dup 2 mul/nDim2 xd % dim
	    val	% base value to use to do our lookup
	    add DataSource exch get %  lookedupval
	    mulRange nDim2 get mul 	% lookedupval*(ymax-ymin)/(xmax-xmin)
	    mulRange nDim2 1 add get % lookedupval*(ymax-ymin)/(xmax-xmin) ymin
	    add % interpolated result
	}for	% comp1 comp2 ... compN
    end
}bd

/max % a b -> max(a, b)
{
	2 copy lt
	{exch pop}{pop}ifelse
}bd

/sh2
{	% emulation of shading type 2. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 x1 y1
	3 index 3 index translate	% origin is now at beginning point of shading
					% x0 y0 x1 y1
	3 -1 roll sub	% x0 x1 y1-y0
	3 1 roll exch 	% y1-y0 x1 x0
	sub				% y1-y0 x1-x0
	2 copy
	dup mul exch dup mul add sqrt	% length of segment between two points
	dup
	scale  
	atan	% atan (dy/dx)
	%dup (rotation angle = )print ==
	rotate		% now line between 0,0 and 1,0 is the line perpendicular to which the axial lines are drawn					
	
	/Function load setupFunEval	% may need to setup function dictionary by calling setupFunEval
	
	% this is now specific to axial shadings. Compute the maximum bounds to fill
	clippath {pathbbox}stopped {0 0 0 0}if newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs
	currentdict/Extend known
	{
		/Extend load 0 get
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			xmin ymin xmin abs ymax ymin sub rectfill
		}if
	}if
	% paint the rects. The sampling frequency is that of our table
	/Nsteps/Function load/Size get 0 get 1 sub store
	/dx 1 Nsteps div store
	gsave
		/di ymax ymin sub store
		/Function load
		% loop Nsteps + 1 times, incrementing the index by 1 each time
		0 1 Nsteps
		{
			1 index FunEval sc
			0 ymin dx di rectfill
			dx 0 translate
		}for
		pop	% pop our function
	grestore	% origin is back to start point
	currentdict/Extend known
	{
		/Extend load 1 get
		{	
			Nsteps/Function load FunEval sc	% last element
			1 ymin xmax 1 sub abs ymax ymin sub rectfill
		}if
	}if
}bd

/shp	% this paints our shape for shading type 3
{	% x1 r1 x0 r0 -
	4 copy

	% fill interior arc
	dup 0 gt{
		0 exch a1 a0 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a0 a1 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill

	% fill exterior arc
	dup 0 gt{
		0 exch a0 a1 arc
	}{
		pop 0 moveto
	}ifelse

	dup 0 gt{
		0 exch a1 a0 arcn
	}{
		pop 0 lineto
	}ifelse
	
	fill
}bd

/calcmaxs
{	% calculate maximum distance vector from origin to corner points
	% of bbox
	xmin dup mul ymin dup mul add sqrt		% (xmin2 + ymin2)
	xmax dup mul ymin dup mul add sqrt		% (xmax2 + ymin2)
	xmin dup mul ymax dup mul add sqrt		% (xmin2 + ymax2)
	xmax dup mul ymax dup mul add sqrt		% (xmax2 + ymax2)
	max max max								% maximum value
}bd

/sh3
{	% emulation of shading type 3. Assumes shading dictionary is top dictionary on the dict stack
	/Coords load aload pop 	% x0 y0 r1 x1 y1 r2
	5 index 5 index translate	% origin is now at first circle origin
	3 -1 roll 6 -1 roll sub		% y0 r1 y1 r2 dx
	3 -1 roll 5 -1 roll sub		% r1 r2 dx dy
	2 copy dup mul exch dup mul add sqrt
	/dx xs						% r1 r2 dx dy
	2 copy 0 ne exch 0 ne or
	{
		% r1 r2 dx dy
		exch atan rotate	% we are now rotated so dy is zero and positive values of dx move us as expected
	}{
		pop pop
	}ifelse
	% r1 r2		
	/r2 xs
	/r1 xs
	/Function load 
	dup/Size get 0 get 1 sub	% this is the size of our table minus 1
	/Nsteps xs		% at some point we should optimize this better so NSteps is based on needed steps for the device
	setupFunEval		% may need to setup function dictionary by calling setupFunEval
	% determine the case:
	% case 0: circle1 inside circle2
	% case 1: circle 2 inside circle 1
	% case 2: r1 = r2 
	% case 3: r1 != r2
	dx r2 add r1 lt{
		% circle 2 inside of circle 1
		0 
	}{
		dx r1 add r2 le
		{ % circle 1 inside of circle 2
			1
		}{ % circles don't contain each other
			r1 r2 eq
			{	% equal
				2
			}{ % r1 != r2
				3
			}ifelse		
		}ifelse
	}ifelse
	/sh3tp xs		% sh3tp has the number of our different cases
	clippath {pathbbox}stopped {0 0 0 0}if 
	newpath 	% x0 y0 x1 y1
	/ymax xs
	/xmax xs
	/ymin xs
	/xmin xs

	% Arc angle atan( sqrt((dx*dx + dy*dy) - dr*dr), dr)
	dx dup mul r2 r1 sub dup mul sub dup 0 gt
	{
		sqrt r2 r1 sub atan
		/a0 exch 180 exch sub store 
		/a1 a0 neg store 
	}{
		pop
		/a0 0 store
		/a1 360 store		
	}ifelse		

	currentdict/Extend known
	{
		/Extend load 0 get r1 0 gt and	% no need to extend if the radius of the first end is 0
		{	
			0/Function load FunEval sc	% evaluate the function to get a color and set it
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{	% case 0
					dx 0 r1 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				}
				{	% case 1
					r1 0 gt{0 0 r1 0 360 arc fill}if
				}
				{	% case 2
					% r1 == r2, extend 0
					% r3 = r, x3 = -(abs(minx) + r), x1 = 0
				
					% x(i+1) r(i+1) x(i) r(i) shp
					0 r1 xmin abs r1 add neg r1 shp
				}
				{	% case 3
					% no containment, r1 != r2
				
					r2 r1 gt{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1
						r1 neg r2 r1 sub div dx mul	% this is point of beginning circle
						0	% point of ending circle
						shp	% takes x(i+1) r(i+1) x(i) r(i)
					}{	% the first circle is the bigger of the two
						% we find a circle on our line which is outside the bbox in the
						% negative direction
						% x(i+1) r(i+1) x(i) r(i) shp
						0 r1 calcmaxs	% 0 r1 maxs
						dup
						% calculating xs: (-(maxs+r2)*x2)/(x2-(r1-r2))
						r2 add dx mul dx r1 r2 sub sub div
						neg				% maxs xs'
						exch 1 index	% xs' maxs xs'
						abs exch sub
						shp
					}ifelse
				} 
			}sh3tp get exec	% execute the extend at beginning proc for our shading type
		}if
	}if

	% now do the shading
	/d0 0 store
	/r0 r1 store
	/di dx Nsteps div store
	/ri r2 r1 sub Nsteps div store 
	/Function load 
	0 1 Nsteps
	{	% function t(i)
		1 index FunEval sc
		d0 di add r0 ri add d0 r0 shp
		{
		% fill interior arc
		d0 0 r0 a1 a0 arc
		d0 di add 0 r0 ri add a0 a1 arcn
		fill
		
		% fill exterior arc
		d0 0 r0 a0 a1 arc
		d0 di add 0 r0 ri add a1 a0 arcn
		fill
		}pop
		
		% advance to next
		/d0 d0 di add store
		/r0 r0 ri add store
	}for
	pop	% pop our function dict

	% handle Extend
	currentdict/Extend known
	{
		/Extend load 1 get r2 0 gt and	% no need to extend if the radius of the last end is 0
		{	
			Nsteps/Function load FunEval sc	% last element
			% case 0: circle1 inside circle2
			% case 1: circle 2 inside circle 1
			% case 2: circles don't contain each other and r1 == r2
			% case 3: circles don't contain each other and r1 != r2
			{ 
				{
					dx 0 r2 0 360 arc fill
				} 
				{
					dx 0 r2 360 0 arcn
					xmin ymin moveto
					xmax ymin lineto
					xmax ymax lineto
					xmin ymax lineto
					xmin ymin lineto
					eofill		% for the bigger radius we fill everything except our circle
				} 
				{	% r1 == r2, extend 1
					% r3 = r, x3 = (abs(xmax) + r), x1 = dx
					% x(i+1) r(i+1) x(i) r(i) shp
					xmax abs r1 add r1 dx r1 shp
				}	
				{	% no containment, r1 != r2
			
					r2 r1 gt{
						% we find a circle on our line which is outside the bbox in the
						% positive direction
						% x(i+1) r(i+1) x(i) r(i) shp
						calcmaxs dup	% maxs maxs
						% calculating xs: ((maxs+r1)*x2)/(x2-(r2-r1))
						r1 add dx mul dx r2 r1 sub sub div	% maxs xs
						exch 1 index	% xs maxs xs
						exch sub
						dx r2
						shp
					}{	% the endpoint we are drawing is that with a circle of zero radius
						% x(i+1) r(i+1) x(i) r(i) shp
						r1 neg r2 r1 sub div dx mul	% this is point of ending circle
						0		% radius of ending circle
						dx 		% point of starting circle
						r2		% radius of starting circle
						shp
					}ifelse
				}
			}			
			sh3tp get exec	% execute the extend at end proc for our shading type
		}if
	}if
}bd
/sh		% emulation of shfill operator for type 2 and type 3 shadings based on type 0 functions
{	% shadingDict --
	begin
		/ShadingType load dup dup 2 eq exch 3 eq or
		{	% shadingtype
			gsave
				newpath
				/ColorSpace load scs
				currentdict/BBox known
				{
					/BBox load aload pop	% llx lly urx ury
					2 index sub				% llx lly urx ury-lly
					3 index					% llx lly urx ury-lly llx
					3 -1 roll exch sub 
					exch rectclip
				}if
				2 eq
				{sh2}{sh3}ifelse
			grestore
		}{
			% shadingtype
			pop 
			(DEBUG: shading type unimplemented\n)print flush
		}ifelse
	end
}bd

% end of language level 2 ONLY code

{restore}if not dup{save exch}if
% languagelevel3 ONLY code goes here
	L3?{	% we do these loads conditionally or else they will fail on a level 2 printer
		/sh/shfill ld
		/csq/clipsave ld
		/csQ/cliprestore ld
	}if
{restore}if

%currentdict dup maxlength exch length sub (number of extra slots in md = )print == flush	% *** how many entries are free
end
setpacking
% count 0 ne { pstack(***extras on stack during prolog execution***\n)print flush}if	% *** BARK if anything is left on stack
%%EndFile
%%EndProlog
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cg_md begin
bp
sdmtx
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 dup 33 /five put
 dup 34 /two put
 dup 35 /zero put
 dup 36 /space put
 dup 37 /asciitilde put
 dup 38 /greater put
 dup 39 /f put
 dup 40 /o put
 dup 41 /s put
 dup 42 /i put
 dup 43 /l put
 dup 44 /h put
 dup 45 /e put
 dup 46 /p put
 dup 47 /c put
 dup 48 /k put
 dup 49 /u put
 dup 50 /t put
 dup 51 /U put
 dup 52 /a put
 dup 53 /g put
 dup 54 /colon put
 dup 55 /question put
 dup 56 /V put
 dup 57 /E put
 dup 58 /R put
 dup 59 /S put
 dup 60 /I put
 dup 61 /O put
 dup 62 /N put
 dup 63 /bar put
 dup 64 /hyphen put
 dup 65 /P put
 dup 66 /T put
 dup 67 /r put
 dup 68 /C put
 dup 69 /v put
 dup 70 /n put
 dup 71 /d put
 dup 72 /m put
 dup 73 /period put
 dup 74 /w put
 dup 75 /b put
 dup 76 /comma put
 dup 77 /x put
 dup 78 /y put
 dup 79 /F put
 readonly def
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 /CharStrings 49 dict dup begin
 /.notdef 0 def
/space 1 def
/comma 2 def
/hyphen 3 def
/period 4 def
/zero 5 def
/two 6 def
/five 7 def
/colon 8 def
/greater 9 def
/question 10 def
/C 11 def
/E 12 def
/F 13 def
/I 14 def
/N 15 def
/O 16 def
/P 17 def
/R 18 def
/S 19 def
/T 20 def
/U 21 def
/V 22 def
/a 23 def
/b 24 def
/c 25 def
/d 26 def
/e 27 def
/f 28 def
/g 29 def
/h 30 def
/i 31 def
/k 32 def
/l 33 def
/m 34 def
/n 35 def
/o 36 def
/p 37 def
/r 38 def
/s 39 def
/t 40 def
/u 41 def
/v 42 def
/w 43 def
/x 44 def
/y 45 def
/bar 46 def
/asciitilde 47 def
/VariantTag1 48 def
 end readonly def
 currentdict dup/FontName get exch definefont pop end
 %APLsfntEnd
 42/FontType resourcestatus{pop pop true}{false}ifelse
 {currentfile 0(%APLT1End\n)/SubFileDecode filter flushfile}if
 /FontType 1 def
 /FontMatrix [ 0.00048828125 0 0 0.00048828125 0 0 ] def
 /FontBBox{-1249 -862 1647 2504}def
 /UniqueID 4508934 def
 currentdict currentfile eexec
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