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axodraw.sty
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%
% Style file for the drawing of Feynman diagrams with LaTeX.
% It assumes that the dvips that is used is by Radical Eye Software
% (by Rokicki), because the graphics primitives are given in
% postscript. If you do not work with a dvi to postscript converter
% you are out of luck.
%
% Made by J.A.M. Vermaseren 14-feb-1994
%
% Use:
% Enter the picture environment with for instance
% \begin{picture}(width,height)(0,0)
% statements
% \end{picture}
% All statements should be entered inside the picture environment.
% All coordinates should be in terms of pt (but the pt must be omitted).
% One may also use the figure environment.
%
% This version has been enhanced to help in drawing sudoku puzzles.
%
\input{epsf.sty}
\openin5=colordvi.sty
\ifeof5
\closein5
\def\axocolor{ }
\def\SetColor#1{ }
\def\Color#1#2{#2}
\def\IfColor#1#2{#2 }
\else
\closein5
\input{colordvi.sty}
\background{White}
\textBlack
\def\axocolor{Black }
\def\SetColor#1{\def\axocolor{#1 }}
\def\IfColor#1#2{#1}
\fi
% #[ inventory :
%
% The variables in are:
% mtrx,num,ampi,x1,y1,x2,y2,x3,y3,dx,dy,dr,speed
% step,phi,arcend,arcstart,radius
% theindex,thechar,darc,const,amp1 amp2 amp3
% gcolor,xx,name,name1,name2,xx1,xx2
%
% NOTE: blank lines are not allowed inside the postscript code!!!!!
% (LaTeX sneaks \par commands in and the postscript goes boink)
%
\special{! /ed{exch def}def /gs{gsave dup scale}def
/gsw{gs /width ed width setlinewidth}def
/p1{/y1 ed /x1 ed}def
/p2{/y2 ed /x2 ed}def
/p3{/y3 ed /x3 ed}def
/abox{newpath x1 y1 moveto x1 y2 lineto x2 y2 lineto x2 y1 lineto closepath}def
/atriangle{newpath x1 y1 moveto x2 y2 lineto x3 y3 lineto closepath}def
%
% Color definitions that are not in the standard setup
%
/LightYellow{0 0 0.7 0 setcmykcolor}def
/LightRed{0 0.75 0.7 0 setcmykcolor}def
/LightBlue{0.7 0.5 0 0 setcmykcolor}def
}
%
% #] inventory :
% #[ arrowdown :
%
\special{! /arrowdown{
/nwidth { width 1 add } def
newpath
0 nwidth 1.5 mul neg moveto % Arrow is a triangle
nwidth 1.2 mul nwidth 3 mul rlineto
nwidth 2.4 mul neg 0 rlineto
nwidth 1.2 mul nwidth 3 mul neg rlineto
closepath fill % and it is filled
} def }
%
% #] arrowdown :
% #[ arrowup :
%
\special{! /arrowup{
/nwidth { width 1 add } def
newpath
0 nwidth 1.5 mul moveto % Arrow is a triangle
nwidth 1.2 mul nwidth 3 mul neg rlineto
nwidth 2.4 mul neg 0 rlineto
nwidth 1.2 mul nwidth 3 mul rlineto
closepath fill % and it is filled
} def }
%
% #] arrowup :
% #[ arrowright :
%
\special{! /arrowright{
/nwidth { width 1 add } def
newpath
nwidth 1.5 mul 0 moveto % Arrow is a triangle
nwidth 3 mul neg nwidth 1.2 mul rlineto
0 nwidth 2.4 mul neg rlineto
nwidth 3 mul nwidth 1.2 mul rlineto
closepath fill % and it is filled
} def }
%
% #] arrowright :
% #[ gluon :
%
\special{! /gluon{
gsw /num ed /ampi ed /dy ed /dx ed p1
/dy dy y1 sub def /dx dx x1 sub def
%
% We have a 'head' and a 'tail' and inbetween the 'body'
% The head + tail is 2 windings. The body is num-1 windings.
%
/dr dx dx mul dy dy mul add sqrt def
%
x1 y1 translate dy dx atan rotate
%
/num num 0.5 sub round def
/inc dr num 2 mul 2 add div def % increment per half winding
/amp8 ampi 0.9 mul def
amp8 0 lt {/amp8 amp8 neg def} if
%
/x1 inc 2 mul def
%
newpath
0 0 moveto
inc 0.1 mul ampi 0.5 mul inc 0.5 mul ampi inc 1.4 mul ampi curveto
x1 amp8 add dup ampi exch ampi neg dup x1 exch curveto
%
2 1 num {
pop
x1 amp8 sub dup ampi neg exch ampi dup x1 inc add exch curveto
/x1 x1 inc dup add add def
x1 amp8 add dup ampi exch ampi neg dup x1 exch curveto
} for
%
x1 amp8 sub dup ampi neg exch ampi dup x1 inc 0.6 mul add exch curveto
x1 inc 1.5 mul add ampi dr inc 0.1 mul sub ampi 0.5 mul dr 0 curveto
stroke
%
grestore
} def }
%
% #] gluon :
% #[ photon :
%
\special{! /photon{
%
% Draws a photon from x1,y1 to x2,y2 with amplitude A and n wiggles
%
gsw /num ed /ampi ed p2 p1
/dy y2 y1 sub def /dx x2 x1 sub def
/dr dx dx mul dy dy mul add sqrt def
%
x1 y1 translate
dy dx atan rotate
/num num 2 mul 0.5 sub round def
/x2 dr num div def
/pi 3.141592 def
/sign 1 def
1 1 num {
pop
newpath
0 0 moveto
4 3 div x2 mul pi div dup neg x2 add
4 3 div ampi sign mul mul dup 3 1 roll
x2 0 curveto
stroke
/sign sign neg def
x2 0 translate
} for
%
grestore
} def }
%
% #] photon :
% #[ zigzag :
%
\special{! /zigzag{
%
% Draws a zigzag line from x1,y1 to x2,y2 with amplitude A and n zigzags
%
gsw /num ed /ampi ed p2 p1
/dy y2 y1 sub def /dx x2 x1 sub def
/dr dx dx mul dy dy mul add sqrt def
%
x1 y1 translate
dy dx atan rotate
/num num 2 mul 0.5 sub round def
/x2 dr num div def
/pi 3.141592 def
/sign 1 def
1 1 num {
pop
newpath
0 0 moveto
x2 2 div ampi sign mul lineto
x2 0 lineto
stroke
/sign sign neg def
x2 0 translate
} for
%
grestore
} def }
%
% #] zigzag :
% #[ photonarc :
%
\special{! /photonarc{
%
% Draws a photonarc center at x1,y1, radius arcstart,arcend, amplitude
% number of wiggles, width, scale
%
gsw /num ed /ampli ed /arcend ed /arcstart ed /radius ed
%
translate % The center of the circle is now the origin
%
/num num 2 mul round def % number of half wiggles
arcend arcstart lt { /arcend arcend 360 add def } if
/arcend arcend arcstart sub num div def % phi
arcstart rotate
/arcstart arcend 2 div def % phi/2
/cp arcend cos def
/sp arcend sin def
/cp2 arcstart cos def
/sp2 arcstart sin def
%
newpath
1 1 num {
pop
radius 0 moveto
/beta radius arcend mul 180 ampli mul div def
/tt sp cp beta mul sub cp sp beta mul add div def
/amp1 radius ampli add 8 mul beta cp2 mul sp2 sub mul beta 4 cp add mul
tt cp mul 3 mul sp 4 mul sub add radius mul sub
beta tt sub 3 mul div def % this is x2
radius ampli add 8 mul cp2 mul 1 cp add radius mul sub 3 div amp1 sub
dup radius sub beta mul % x1,y1
amp1 dup radius cp mul sub tt mul radius sp mul add % x2,y2
radius cp mul radius sp mul % x3 y3
curveto
/ampli ampli neg def
arcend rotate
} for
stroke
%
grestore
} def }
%
% #] photonarc :
% #[ gluearc :
%
\special{! /gluearc{
%
% Draws a gluon on an arcsegment
% x_center,y_center,radius,stat_angle,end_angle,gluon_radius,num
% in which num is the number of windings of the gluon.
% Method:
% 1: compute length of arc.
% 2: generate gluon in x and y as if the arc is a straight line
% 3: x' = (radius+y)*cos(x*const)
% y' = (radius+y)*sin(x*const)
%
gsw /num ed /ampi ed /arcend ed /arcstart ed /radius ed
%
% When arcend comes before arcstart we have a problem. The solution is
% to flip the order and change the sign on ampi
%
arcend arcstart lt {
/ampi ampi -1 mul def
/arcstart arcend /arcend arcstart def def
} if
%
translate % move to center of circle
arcstart rotate % segment starts at zero
/darc arcend arcstart sub def % argsegment
%
/dr darc 180 div 3.141592 mul radius mul def % length of segment.
%
/const darc dr div def % conversion constant
%
/num num 0.5 sub round def
/inc dr num 2 mul 2 add div def % increment per half winding
%
/amp8 ampi 0.9 mul def
/amp1 radius ampi add def
/amp2 radius ampi sub def
/amp3 radius ampi 2 div add def
/amp4 amp1 inc amp8 add const mul cos div def
/amp5 amp2 amp8 const mul cos div def
/amp6 amp1 inc 0.6 mul amp8 add const mul cos div def
/amp7 amp1 inc 0.9 mul const mul cos div def
amp8 0 lt {/amp8 amp8 neg def} if
%
/x1 inc 2 mul def
%
newpath
radius 0 moveto
%
inc 0.1 mul const mul dup cos amp3 mul exch sin amp3 mul
inc 0.5 mul const mul dup cos amp7 mul exch sin amp7 mul
inc 1.4 mul const mul dup cos amp1 mul exch sin amp1 mul
curveto
x1 amp8 add const mul dup cos amp6 mul exch sin amp6 mul
x1 amp8 add const mul dup cos amp5 mul exch sin amp5 mul
x1 const mul dup cos amp2 mul exch sin amp2 mul
curveto
%
2 1 num {
pop
x1 amp8 sub const mul dup cos amp5 mul exch sin amp5 mul
x1 amp8 sub const mul dup cos amp4 mul exch sin amp4 mul
x1 inc add const mul dup cos amp1 mul exch sin amp1 mul
curveto
/x1 x1 inc dup add add def
x1 amp8 add const mul dup cos amp4 mul exch sin amp4 mul
x1 amp8 add const mul dup cos amp5 mul exch sin amp5 mul
x1 const mul dup cos amp2 mul exch sin amp2 mul
curveto
} for
%
x1 amp8 sub const mul dup cos amp5 mul exch sin amp5 mul
x1 amp8 sub const mul dup cos amp6 mul exch sin amp6 mul
x1 inc 0.6 mul add const mul dup cos amp1 mul exch sin amp1 mul
curveto
x1 inc 1.5 mul add const mul dup cos amp7 mul exch sin amp7 mul
dr inc 0.1 mul sub const mul dup cos amp3 mul exch sin amp3 mul
dr const mul dup cos radius mul exch sin radius mul
curveto
stroke
%
grestore
} def }
%
% #] gluearc :
% #[ arrowarc :
%
\special{! /arrowarc{
%
% Draws an anticlockwise arc with an arrow in the middle
% The arc is x_center, y_center, radius, start_angle, end_angle
%
gsw /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
newpath 0 0 radius arcstart arcend arc stroke
arcstart arcend gt {
/arcend arcend 360 add def } if
arcstart arcend add 2 div rotate % middle of arc
radius 0 translate % move to it
arrowup
grestore
} def }
%
% #] arrowarc :
% #[ longarrowarc :
%
\special{! /longarrowarc{
%
% Draws an anticlockwise arc with an arrow at the end
% The arc is x_center, y_center, radius, start_angle, end_angle
%
gsw /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
arcstart arcend gt {
/arcend arcend 360 add def } if
/arcmid 540 width 1 add mul 3.14159 div radius div def
% discount for arrow
newpath 0 0 radius arcstart arcend arcmid sub arc stroke
arcend arcmid 2 div sub rotate % middle of arrow
radius 0 translate % move to it
arrowup
grestore
} def }
%
% #] longarrowarc :
% #[ dasharrowarc :
%
\special{! /dasharrowarc{
%
% Draws a dashed anticlockwise arc with an arrow in the middle
% The arc is x_center, y_center, radius, start_angle, end_angle dsize
%
gsw /dsize ed /arcend1 ed /arcstart1 ed /radius ed
%
translate % x and y are still on stack
%
arcend1 arcstart1 lt { /arcend1 arcend1 360 add def } if
/arcmid1 arcend1 arcstart1 add 2 div def
%
0 0 radius arcstart1 arcmid1 dsize width 1 dashcarc
0 0 radius arcmid1 arcend1 dsize width 1 dashcarc
arcmid1 rotate
radius 0 translate
arrowup
grestore
} def }
%
% #] dasharrowarc :
% #[ arrowarcn :
%
\special{! /arrowarcn{
%
% Draws a clockwise arc with an arrow in the middle
% The arc is x_center, y_center, radius, start_angle, end_angle
%
gsw /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
newpath 0 0 radius arcstart arcend arcn stroke
arcstart arcend lt {
/arcstart arcstart 360 add def } if
arcstart arcend add 2 div rotate % middle of arc
radius 0 translate % move to it
arrowdown
grestore
} def }
%
% #] arrowarcn :
% #[ longarrowarcn :
%
\special{! /longarrowarcn{
%
% Draws a clockwise arc with an arrow in the end
% The arc is x_center, y_center, radius, start_angle, end_angle
%
gsw /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
arcstart arcend lt {
/arcstart arcstart 360 add def } if
/arcmid 540 width 1 add mul 3.14159 div radius div def
% correction for arrow
newpath 0 0 radius arcstart arcend arcmid add arcn stroke
arcend arcmid 2 div add rotate % middle of arrow
radius 0 translate % move to it
arrowdown
grestore
} def }
%
% #] longarrowarcn :
% #[ dasharrowarcn :
%
\special{! /dasharrowarcn{
%
% Draws a dashed clockwise arc with an arrow in the middle
% The arc is x_center, y_center, radius, start_angle, end_angle
%
gsw /dsize ed /arcend1 ed /arcstart1 ed /radius ed
%
translate % x and y are still on stack
arcstart1 arcend1 lt {
/arcstart1 arcstart1 360 add def } if
/arcmid1 arcstart1 arcend1 add 2 div def
0 0 radius arcmid1 arcstart1 dsize width 1 dashcarc
0 0 radius arcend1 arcmid1 dsize width 1 dashcarc
arcmid1 rotate
radius 0 translate
arrowdown
grestore
} def }
%
% #] dasharrowarcn :
% #[ arrowline :
%
\special{! /arrowline{
%
% Draws a straight line with an arrow in the middle
% x1,y1,x2,y2
%
gsw p2 p1
/dx x2 x1 sub def /dy y2 y1 sub def
/dr dx dx mul dy dy mul add sqrt def
%
x1 y1 translate
newpath
0 0 moveto
dx dy rlineto
stroke
dy dx atan rotate
dr 2.0 div 0 translate
arrowright
grestore
} def }
%
% #] arrowline :
% #[ longarrow :
%
\special{! /longarrow{
%
% Draws a straight line with an arrow at the end
% x1,y1,x2,y2
%
gsw p2 p1
/dx x2 x1 sub def /dy y2 y1 sub def
/dr dx dx mul dy dy mul add sqrt def
%
x1 y1 translate
dy dx atan rotate
newpath
0 0 moveto
dr width 3 mul sub 0 rlineto
stroke
dr width 1.5 mul sub 0 translate
arrowright
grestore
} def }
%
% #] longarrow :
% #[ dasharrowline :
%
\special{! /dasharrowline{
%
% Draws a straight dashed line with an arrow in the middle
% x1,y1,x2,y2
%
% The pattern is ideally [dsize dsize] 0 setdash
% but we want to have (2*n+1)/2 patterns, so dsize must be rounded
% Actually we want the center to be black too so that the arrow
% fits in nice. This means that n must be odd. So
% r = dsize*(4*m+3)
%
gsw /dsize ed p2 p1
/dx x2 x1 sub def /dy y2 y1 sub def
/dr dx dx mul dy dy mul add sqrt 2 div def
%
x1 y1 translate
dy dx atan rotate
%
0 0 dr 0 dsize width 1 dashline
dr 0 translate
0 0 dr 0 dsize width 1 dashline
arrowright
grestore
} def }
%
% #] dasharrowline :
% #[ line :
%
\special{! /line{
%
% Draws a straight line: x1,y1,x2,y2
%
gsw p2 p1
%
newpath
x1 y1 moveto
x2 y2 lineto
stroke
grestore
} def }
%
% #] line :
% #[ dashline :
%
\special{! /dashline{
%
% Draws a straight dashed line: x1,y1,x2,y2,dsize
%
% The pattern is ideally [dsize dsize] 0 setdash
% but we want to have (2*n+1)/2 patterns, so dsize must be rounded
%
gsw /dsize ed p2 p1
/r y2 y1 sub dup mul x2 x1 sub dup mul add sqrt def
/dsize r dsize 2 mul div 0.5 sub round dup 0 le { pop 0 } if 2 mul 1 add
r exch div def
[dsize dsize] 0 setdash
%
newpath
x1 y1 moveto
x2 y2 lineto
stroke
grestore
} def }
%
% #] dashline :
% #[ carc :
%
\special{! /carc{
%
% Draws an anti-clockwise arc segment:
% x_center, y_center, radius, start_angle, end_angle
%
gsw /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
newpath 0 0 radius arcstart arcend arc stroke
grestore
} def }
%
% #] carc :
% #[ dashcarc :
%
\special{! /dashcarc{
%
% Draws an anti-clockwise arc segment:
% x_center, y_center, radius, start_angle, end_angle, dsize
%
gsw /dsize ed /arcend ed /arcstart ed /radius ed
%
translate % x and y are still on stack
%
% Compute the length of the line
%
/dr arcend arcstart sub dup 0 lt { 360 add } if
3.14159 mul 180 div radius mul def
/dsize dr dsize 2 mul div 0.5 sub round dup 0 le { pop 0 } if 2 mul 1 add
dr exch div def
[dsize dsize] 0 setdash
%
newpath 0 0 radius arcstart arcend arc stroke
grestore
} def }
%
% #] dashcarc :
% #[ vertex :
%
\special{! /vertex{
%
% Puts a fat dot at x,y size is the radius of the dot
%
gs
/dotsize ed
translate
newpath
0 0 dotsize 0 360 arc
fill stroke
grestore
} def }
%
% #] vertex :
% #[ cross :
%
\special{! /cross{
%
% Draws a cross under 45 degrees: x,y,size,width,scale
%
gsw /csize ed p1
%
newpath
x1 csize add y1 csize add moveto
x1 csize sub y1 csize sub lineto
stroke
newpath
x1 csize add y1 csize sub moveto
x1 csize sub y1 csize add lineto
stroke
grestore
} def }
%
% #] cross :
% #[ bcirc :
%
\special{! /bcirc{
%
% Draws an anti-clockwise blanked circle:
% x_center, y_center, radius
%
gsw /radius ed
%
translate % x and y are still on stack
%
gsave
1 setgray
newpath 0 0 radius 0 360 arc fill
grestore
newpath 0 0 radius 0 360 arc stroke
grestore
} def }
%
% #] bcirc :
% #[ gcirc :
%
\special{! /gcirc{
%
% Draws an anti-clockwise blanked gray circle:
% x_center, y_center, radius, grayscale
%
gsw /gcolor ed /radius ed
%
translate % x and y are still on stack
%
1 setgray
newpath 0 0 radius 0 360 arc fill
gcolor setgray
newpath 0 0 radius 0 360 arc fill
0 setgray
newpath 0 0 radius 0 360 arc stroke
grestore
} def }
%
% #] gcirc :
% #[ ccirc1 :
%
\special{! /ccirc1{
%
% Draws an anti-clockwise circle :
% x_center, y_center, radius
% Part 1: the contents in background color
%
gsw /radius ed
%
translate % x and y are still on stack
%
newpath 0 0 radius 0 360 arc fill
grestore
} def }
%
% #] ccirc1 :
% #[ ccirc2 :
%
\special{! /ccirc2{
%
% Draws an anti-clockwise circle :
% x_center, y_center, radius
% Part 1: the contents in background color
%
gsw /radius ed
%
translate % x and y are still on stack
%
newpath 0 0 radius 0 360 arc stroke
grestore
} def }
%
% #] ccirc2 :
% #[ box :
%
\special{! /box{
%
% Draws a box x1,y1,x2,y2
%
gsw p2 p1
abox stroke
grestore
} def }
%
% #] box :
% #[ bbox :
%
\special{! /bbox{
%
% Draws a blanked out box x1,y1,x2,y2
%
gsw p2 p1
gsave
1 setgray abox fill
grestore
abox stroke
grestore
} def }
%
% #] bbox :
% #[ gbox :
%
\special{! /gbox{
%
% Draws a blanked out gray box x1,y1,x2,y2,color
%
gsw /gcolor ed p2 p1
1 setgray abox fill
gcolor setgray abox fill
0 setgray abox stroke
grestore
} def }
%
% #] gbox :
% #[ cbox1 :
%
\special{! /cbox1{
%
% Draws a blanked out colored box x1,y1,x2,y2
% Part 1: the background
%
gsw p2 p1
abox fill
grestore
} def }
%
% #] cbox1 :
% #[ cbox2 :
%
\special{! /cbox2{
%
% Draws a blanked out colored box x1,y1,x2,y2
% Part 1: the box
%
gsw p2 p1
abox stroke
grestore
} def }
%
% #] cbox2 :
% #[ cbox3 :
%
% Draws a square colored box of which the center and half the size are given
%
\special{! /cbox3{
%
% Draws an anti-clockwise circle :
% x_center, y_center, radius
% Part 1: the contents in background color
%
gsw /radius ed
%
translate % x and y are still on stack
%
newpath radius neg radius neg moveto radius radius neg lineto
radius radius lineto radius neg radius lineto closepath fill
grestore
} def }
%
% #] cbox3 :
% #[ triangle :
%
\special{! /triangle{
%
% Draws a triangle x1,y1,x2,y2,x3,y3
%
gsw p3 p2 p1
atriangle stroke
grestore
} def }
%
% #] triangle :
% #[ btriangle :
%
\special{! /btriangle{
%
% Draws a blanked out triangle x1,y1,x2,y2,x3,y3
%
gsw p3 p2 p1
gsave
1 setgray atriangle fill
grestore
atriangle stroke
grestore
} def }
%
% #] btriangle :
% #[ gtriangle :
%
\special{! /gtriangle{
%
% Draws a blanked out gray triangle x1,y1,x2,y2,x3,y3,color
%
gsw /gcolor ed p3 p2 p1
1 setgray atriangle fill
gcolor setgray atriangle fill
0 setgray atriangle stroke
grestore
} def }
%
% #] gtriangle :
% #[ ctriangle1 :
%
\special{! /ctriangle1{
%
% Draws a blanked out colored triangle x1,y1,x2,y2,x3,y3
% Part 1: the background
%
gsw p3 p2 p1
atriangle fill
grestore
} def }
%
% #] ctriangle1 :
% #[ ctriangle2 :
%
\special{! /ctriangle2{
%
% Draws a blanked out colored triangle x1,y1,x2,y2,x3,y3
% Part 1: the triangle
%
gsw p3 p2 p1
atriangle stroke
grestore
} def }
%
% #] ctriangle2 :
% #[ btext :
%
\special{! /btext{
%
% Makes a box that has the text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,text,fontsize,linewidth,scale
%
gsw /fsize ed /thetext ed translate
/hsize thetext stringwidth pop def
/x1 hsize fsize add 2 div neg def
/y1 fsize 2 mul 3 div neg def
/x2 x1 neg def /y2 y1 neg def
gsave 1 setgray abox fill grestore
abox stroke
hsize 2 div neg fsize 3 div neg moveto thetext show
grestore
} def }
%
% #] btext :
% #[ b2text :
%
\special{! /b2text{
%
% Makes a box that has two lines of text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,text1,text2,fontsize,linewidth,scale
%
gsw /fsize ed /text2 ed /text1 ed translate
/hsize1 text1 stringwidth pop def
/hsize2 text2 stringwidth pop def
hsize1 hsize2 lt { /hsize hsize2 def } { /hsize hsize1 def } ifelse
/x1 hsize fsize add 2 div neg def
/y1 fsize neg 7 mul 6 div def
/x2 x1 neg def /y2 y1 neg def
gsave 1 setgray abox fill grestore
abox stroke
hsize1 2 div neg fsize 6 div moveto text1 show
hsize2 2 div neg fsize 5 mul 6 div neg moveto text2 show
grestore
} def }
%
% #] b2text :
% #[ gtext :
%
\special{! /gtext{
%
% Makes a gray box that has the text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,gray,text,fontsize,linewidth,scale
%
gsw /fsize ed /thetext ed /graysc ed translate
/hsize thetext stringwidth pop def
/x1 hsize fsize add 2 div neg def
/y1 fsize 2 mul 3 div neg def
/x2 x1 neg def /y2 y1 neg def
graysc setgray abox fill 0 setgray abox stroke
hsize 2 div neg fsize 3 div neg moveto thetext show
grestore
} def }
%
% #] gtext :
% #[ ctext1 :
%
\special{! /ctext1{
%
% Makes a colored box that has the text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,text,fontsize,linewidth,scale
% Part 1: the background
%
gsw /fsize ed /thetext ed translate
/hsize thetext stringwidth pop def
/x1 hsize fsize add 2 div neg def
/y1 fsize 2 mul 3 div neg def
/x2 x1 neg def /y2 y1 neg def
abox fill
grestore
} def }
%
% #] ctext1 :
% #[ ctext2 :
%
\special{! /ctext2{
%
% Makes a colored box that has the text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,text,fontsize,linewidth,scale
% Part 2: the box and the text
%
gsw /fsize ed /thetext ed translate
/hsize thetext stringwidth pop def
/x1 hsize fsize add 2 div neg def
/y1 fsize 2 mul 3 div neg def
/x2 x1 neg def /y2 y1 neg def
abox stroke
hsize 2 div neg fsize 3 div neg moveto thetext show
grestore
} def }
%
% #] ctext2 :
% #[ g2text :
%
\special{! /g2text{
%
% Makes a gray box that has two lines of text centered in it
% The center of the box is at x,y and the box is just large enough
% for the text.
% x,y,gray,text1,text2,fontsize,linewidth,scale
%
gsw /fsize ed /text2 ed /text1 ed /graysc ed translate
/hsize1 text1 stringwidth pop def
/hsize2 text2 stringwidth pop def
hsize1 hsize2 lt { /hsize hsize2 def } { /hsize hsize1 def } ifelse