mirror of
https://github.com/marcin-szczepanski/jFuzzyLogic.git
synced 2024-12-18 16:35:27 +01:00
145 lines
4.0 KiB
TeX
145 lines
4.0 KiB
TeX
\csname PSTtransformLoaded\endcsname
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\let\PSTtransformLoaded\endinput
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%
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\ifx\PSTricksLoaded\endinput\else\input pstricks \fi
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\ifx\PSTthreeDLoaded\endinput\else\input pst-3d.tex\fi
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\ifx\PSTNodeLoaded\endinput\else\input pst-node.tex\fi
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\ifx\PSTXKeyLoaded\endinput\else\input pst-xkey.tex\fi
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%
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\def\fileversion{1.0}
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\def\filedate{07/09/01}
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%
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%% COPYRIGHT 2007 by Manuel Luque
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%% This program can be redistributed and/or modified under the terms
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%% of the LaTeX Project Public License Distributed from CTAN
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%% archives in directory macros/latex/base/lppl.txt.
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%
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\message{`PST-transform' v\fileversion, \filedate\space (ML)}
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\edef\PstAtCode{\the\catcode`\@} \catcode`\@=11\relax
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\def\pstranslate{\pst@object{pstranslate}}
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\def\pstranslate@i(#1)(#2){\begingroup\use@par\pst@makebox{\pstranslate@ii(#1)(#2)}}
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\def\pstranslate@ii(#1)(#2){%
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\pst@getcoor{#1}\pst@tempA
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\pst@getcoor{#2}\pst@tempB
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\leavevmode
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\pnode(!\pst@tempA /y0 ED /x0 ED
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\pst@tempB /y1 ED /x1 ED
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0 0){factice}%
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\hbox{%
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\pst@Verb{%
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{[1 0 0 1 x1 x0 sub y1 y0 sub]
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concat } \tx@TMChange }%
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\box\pst@hbox%
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\pst@Verb{\tx@TMRestore}}\endgroup}
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\def\psHomothetie{\pst@object{psHomothetie}}
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\def\psHomothetie@i(#1)#2{\begingroup\use@par\pst@makebox{\psHomothetie@ii(#1){#2}}}
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\def\psHomothetie@ii(#1)#2{%
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\pst@getcoor{#1}\pst@tempa
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\leavevmode
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\pnode(! \pst@tempa /yH ED /xH ED /K #2 def 0 0){factice}%
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\hbox{%
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\pst@Verb{%
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{[K 0 0 K K xH mul neg xH add K yH mul neg yH add]
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concat } \tx@TMChange }%
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\box\pst@hbox%
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\pst@Verb{\tx@TMRestore}}\endgroup}
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\def\psrotate{\pst@object{psrotate}}
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\def\psrotate@i(#1)#2{\begingroup\use@par\pst@makebox{\psrotate@ii(#1){#2}}}
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\def\psrotate@ii(#1)#2{%
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\pst@getcoor{#1}\pst@tempa
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\pst@getangle{#2}\pst@tempb
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\leavevmode
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\pnode(!\pst@tempa /yRot ED /xRot ED 0 0){factice}%
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\hbox{%
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\pst@Verb{%
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\pst@tempb dup cos /cosA ED sin /sinA ED
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/ax cosA def
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/by sinA def
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/cx sinA neg def
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/dy cosA def
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/ex xRot cosA mul neg xRot add yRot sinA mul add def
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/fy xRot sinA mul neg yRot add yRot cosA mul sub def
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{ [ax by cx dy ex fy] concat } \tx@TMChange }%
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\box\pst@hbox%
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\pst@Verb{ \tx@TMRestore }}\endgroup}
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\pst@addfams{pst-cis}
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\define@key[psset]{pst-cis}{cisX}{% cisaillement suivant Ox
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\edef\psk@CisX{#1}}
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\define@key[psset]{pst-cis}{cisY}{% cisaillement suivant Ox
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\edef\psk@CisY{#1}}
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\psset[pst-cis]{cisY=0,cisX=45}
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\def\pscisaillement{\@ifnextchar[{\pst@cisaillement}{\pst@cisaillement[]}}
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\def\pst@cisaillement[#1]{\pst@killglue\pst@makebox{\pscisaillement@[#1]}}
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\def\pscisaillement@[#1]{{%
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\psset{#1}%
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\leavevmode
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\hbox{%
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\pst@Verb{
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/AngleCisX \psk@CisX\space def
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/AngleCisY \psk@CisY\space def
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/tanCisX AngleCisX sin
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AngleCisX cos
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div
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def
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/tanCisY AngleCisY sin
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AngleCisY cos
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div
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def
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/ax 1 tanCisX tanCisY mul add def
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/by tanCisY def
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/cx tanCisX def
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/dy 1 def
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{ [ax by cx dy 0 0] concat
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} \tx@TMChange}%
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\box\pst@hbox
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\pst@Verb{\tx@TMRestore}}%
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}}
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%(#1) coordonn<6E>es d'une extr<74>mit<69> du miroir (X1,Y1)
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%(#2) coordonn<6E>es de l'autre extr<74>mit<69> du miroir (X2,Y2)
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% (A)(B) si A et B sont des noeuds d<>finis avec \pnode(x1,y1){A}, \pnode(x2,y2){B}
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\def\SymPlan(#1)(#2){\pst@killglue\pst@makebox{\SymPlan@(#1)(#2)}}%
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\def\SymPlan@(#1)(#2){{%
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\pst@getcoor{#1}\pst@tempa%
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\pst@getcoor{#2}\pst@tempb%
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\leavevmode
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\hbox{%
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\pnode(!
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\pst@tempa /Y1 exch def
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/X1 exch def
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\pst@tempb /Y2 exch def
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/X2 exch def
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/DX X2 X1 sub def
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/DY Y2 Y1 sub def
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/D12 DX dup mul DY dup mul add def
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/ax 2 DX dup mul mul D12 div 1 sub def
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/by 2 DX DY mul mul D12 div def
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/cx by def
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/dy 2 DY dup mul mul D12 div 1 sub def
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/tx X1 DY dup mul mul
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Y1 DX DY mul mul sub
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2 mul
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D12 div
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def
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/ty Y1 DX dup mul mul
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X1 DX DY mul mul sub
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2 mul
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D12 div
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def 0 0){factice}%
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\pst@Verb{%
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{ [ax by cx dy tx ty] concat
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} \tx@TMChange}%
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\box\pst@hbox
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\pst@Verb{\tx@TMRestore}}%
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}}
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\catcode`\@=\PstAtCode\relax
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\endinput
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