diff presen/fig/perl6nqp.eps @ 77:2327c951dfb9

update
author anatofuz <anatofuz@cr.ie.u-ryukyu.ac.jp>
date Mon, 18 Feb 2019 19:46:14 +0900 (2019-02-18)
parents
children
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--- /dev/null	Thu Jan 01 00:00:00 1970 +0000
+++ b/presen/fig/perl6nqp.eps	Mon Feb 18 19:46:14 2019 +0900
@@ -0,0 +1,893 @@
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+    { 
+	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
+	    >>
+	>>
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+}if
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+    exch t_array t_i get add exch moveto
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+}bd
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+    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
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+    /t_array xs
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+    { % 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
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+
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+/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 42 /six put
+
dup 43 /N put
+
dup 44 /Q put
+
dup 45 /J 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[1000 -951 1 index div -481 2 index div 1987 3 index div 1077 5 -1 roll div]cvx def
+
/sfnts [<
+
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+
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
+
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
+
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
+
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
+
00>] def
+
/CharStrings 15 dict dup begin
+
/.notdef 0 def
+/space 1 def
+/six 2 def
+/J 3 def
+/M 4 def
+/N 5 def
+/P 6 def
+/Q 7 def
+/V 8 def
+/a 9 def
+/e 10 def
+/l 11 def
+/o 12 def
+/r 13 def
+/uni2B91 14 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 [ 0.001 0 0 0.001 0 0 ] def
+
/FontBBox{-951 -481 1987 1077}def
+
/UniqueID 4151493 def
+
currentdict currentfile eexec
+
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+
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+
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cleartomark end
+
%APLT1End
+
%RBIEndFontSubset
+/HelveticaNeue cguidfix
+/F1.1/HelveticaNeue 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 { { 1.8008  exp } bind  exec} bind 
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