forked from JavaTX/JavaCompilerCore
708 lines
28 KiB
Plaintext
708 lines
28 KiB
Plaintext
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\usepackage{float}
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\usepackage{color}
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\usepackage{xspace_spezial}
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\usepackage{amsmath}
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\usepackage{amssymb}
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\usepackage{alltt}
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\usepackage{fancybox}
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\usepackage{stmaryrd}
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\usepackage{verbatim}
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\usepackage{epsfig}
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\usepackage{multicol}
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\newlength{\textwid}
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\setlength{\textwid}{\textwidth}
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\addtolength{\textwid}{-4ex}
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\newlength{\textfighei}
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\setlength{\textfighei}{\textheight}
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\addtolength{\textfighei}{-10ex}
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\DeclareSymbolFont{blackboard}{OT1}{bbm}{m}{sl}
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\DeclareMathSymbol{\IR}{0}{blackboard}{"52}
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\DeclareMathSymbol{\IN}{0}{blackboard}{"4E}
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\DeclareMathSymbol{\IF}{0}{blackboard}{"46}
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\DeclareMathSymbol{\IP}{0}{blackboard}{"50}
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\DeclareMathSymbol{\IK}{0}{blackboard}{"4D}
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\DeclareMathSymbol{\IZ}{0}{blackboard}{"5A}
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\DeclareMathSymbol{\IQ}{0}{blackboard}{"51}
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\DeclareMathSymbol{\IC}{0}{blackboard}{"43}
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\parindent 0mm
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\renewcommand{\unlhd}{<}
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%\renewcommand{\lhd}{<\!\!|}
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%\renewcommand{\rhd}{|\!\!>}
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\definecolor{blue}{rgb}{0,0,1}
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\definecolor{red}{rgb}{1,0,0}
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\definecolor{green}{rgb}{0,1,0.3}
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\definecolor{bluered}{rgb}{1,0,1}
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\definecolor{bluegreen}{rgb}{1,0.3,0}
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\newcommand{\red}[1]{\textcolor{red}{#1}}
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\newcommand{\blue}[1]{\textcolor{blue}{#1}}
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\newcommand{\green}[1]{\textcolor{green}{#1}}
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\newcommand{\bluered}[1]{\textcolor{bluered}{#1}}
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\newcommand{\bluegreen}[1]{\textcolor{bluegreen}{#1}}
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\reversemarginpar
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\newcommand{\commentary}[1]{\marginpar[\tiny #1]{\tiny #1}}
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%\newcommand{\commentaryforKlaeren}[1]{\marginpar[\tiny #1]{\tiny #1}}
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%\newcommand{\commentary}[1]{}
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\newcommand{\commentaryforKlaeren}[1]{}
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%
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% figure - Einstellungen
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%
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\def\textfraction{0}
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\def\topfraction{1.5}
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\def\bottomfraction{1}
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\def\floatpagefraction{1.0}
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%\def\dbltopfraction{1}
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%\def\dblfloatpagefraction{1.0}
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\newcommand{\indexentry}[2]{\item[] #1 \dotfill #2\qquad\qquad\vspace{-0.8em}}
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\newcommand{\sub}{\textrm{\,$\sqsubseteq$\,}\xspace}
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\newcommand{\nsub}{\text{\,$\not\sqsubseteq$\,}\xspace}
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\newcommand{\ecap}{\mbox{$\,\sqcap\,$}}
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\newcommand{\ecup}{\mbox{$\,\sqcup\,$}}
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\newcommand{\pre}{\mbox{$\,\preceq\,$}}
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\newcommand{\botam}{{\{\, \bot,\ \amalg \,\}}\xspace}
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%
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% Substitutions
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%
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\newcommand{\subst}{\textrm{$\expbf{subst}{\normaltset}$}}
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%
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% Signaturen
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%
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\def\einf#1#2{\mbox{$(#1,~#2)$}\xspace}
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\newcommand{\sig}{\einf{\normalbtermset}{\Theta}}
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\newcommand{\typesig}{\einf{BTV}{TC}\xspace}
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\newcommand{\einsig}{\einf{\normaltermset}{F}\xspace}
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\newcommand{\msig}{\einsig}
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\newcommand{\mssig}{\einf{\equivtermset}{F_{ms}}\xspace}
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\newcommand{\ossig}{\einf{\normaltset, \sub}{F_{os}}\xspace}
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\def\einfm#1#2{\langle #1,\ #2 \rangle}
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%\def\pos#1#2{\einf{#1,\ \sqsubseteq}{#2}}
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\def\pos#1#2#3{\einf{#1,\ #2}{#3}}
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\def\posm#1#2{\pos{#1}{#2}}
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\def\posSO#1{\pos{#1}{F}}
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\def\posSIG#1{\pos{S}{#1}}
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\newcommand{\posig}{\pos{\normaltset}{\olsub}{\Sigma}}
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\newcommand{\posigM}{\pos{\normaltset}{\olsub}{M}}
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%\newcommand{\posig}{\pos{S}{\Sigma}}
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\newcommand{\overposig}{\pos{\overline{S}}{\overline{\Sigma}}}
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\def\fsf#1#2#3{\mbox{$#1^{(#2,#3)}$}\xspace}
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\def\Sigmaa#1#2{\fsf{F}{#1}{#2}\xspace}
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\newcommand{\Sigmaws}{\Sigmaa{w}{s}}
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\newcommand{\Sigmawt}{\Sigmaa{w}{\theta}}
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\def\set#1{\{\,#1 \,\}}
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\newcommand{\termset}[3]{\textrm{$\exp{#1_{#2}}{#3}$}\xspace}
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\newcommand{\normaltset}{\termset{T}{\Theta}{TV}}
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\newcommand{\normaltermset}{\termset{T}{\Theta}{TV}}
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\newcommand{\normalbtermset}{\termset{T}{TC}{BTV}}
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\newcommand{\equivtermset}{\textrm{$\exp{T_{\Theta_{\sim}}}{TV}$}\xspace}
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\newcommand{\equiva}[1]{[#1]_{\sim}}
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\newcommand{\popoSIG}[1]{\einf{\normaltset,~\sqsubseteq}{#1}}
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\newcommand{\poposig}{\popoSIG{F}}
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%\newcommand{\poss}{polymorphically order-sorted signature\xspace}
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%\newcommand{\posa}{polymorphically order-sorted algebra\xspace}
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\newcommand{\polyosalg}{\textrm{\rm \textbf{PolyOSAlg}$_{\SigO}$}}
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\newcommand{\polyalg}{\textrm{\rm \textbf{PolyAlg}$_{\SigM}$}}
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\newcommand{\SigO}{\textrm{$\Sigma_{\textit{os}}$}\xspace}
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\newcommand{\FuO}{\textrm{$F$}\xspace}
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\newcommand{\SigM}{\textrm{$\Sigma_{\textit{ms}}$}\xspace}
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\newcommand{\FuM}{\textrm{$F$}\xspace}
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\newcommand{\Sig}{\textrm{$\Sigma$}\xspace}
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\newcommand{\SigE}{\textrm{$\Sigma_{\textit{ext}}$}\xspace}
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\newcommand{\objprogram}{\textrm{$<\Sig, \, E>$}\xspace}
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%
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% Algebren
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%
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\let\oldsqsubseteq=\sqsubseteq
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\renewcommand{\sqsubseteq}{\leq}
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\def\alg#1#2{\textrm{{\rm (}$#1;#2${\rm )}}\xspace}
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\def\algm#1#2{(#1;#2)}
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\def\algME#1{\alg{#1}{\alpha}}
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\def\algABB#1{\alg{A}{#1}}
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\def\algebra{\alg{A}{\alpha}}
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\def\termalg{\mbox{$\algm{T_{\text{\rm posig}}}{\iota}$}}
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\def\termalgm#1{\algm{T_{\text{#1}}}{\iota_{\text{#1}}}}
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\def\OStermsetvar#1{\textrm{$T_{\SigO}#1$}\xspace}
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\def\OStermset{\OStermsetvar{(V)}}
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\def\OStset{\OStermsetvar{}\xspace}
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\def\OStermsettypevar#1#2{\textrm{$T^{#1}_{\SigO}#2$}\xspace}
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\def\OStermsettype#1{\OStermsettypevar{#1}{(V)}}
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\def\ops{\exp{Ops}{A}}
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\def\exp#1#2{#1(\,#2\,)\xspace}
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%\def\exptt#1#2{\exp{\text{\tt #1}}{\text{\tt #2}}}
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\def\exptt#1#2{\exp{\mbox{$\mathtt{#1}$}}{\mbox{$\mathtt{#2}$}}}
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\def\expsyn#1#2{\exp{\syn{#1}}{\syn{#2}}}
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\def\expbf#1#2{\exp{\text{\bf #1}}{#2}}
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\def\expsf#1#2{\exp{\text{\sf #1}}{#2}}
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\def\exptype#1#2{#1\textrm{{\tt <}}#2\textrm{{\tt >}}\xspace}
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\def\exptypett#1#2{\mathtt{#1}\textrm{{\tt <}}\mathtt{#2}\textrm{{\tt >}}\xspace}
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\def\smalltt#1{\texttt{\small #1}}
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\def\term{\textrm{$\exp{f}{t_1, \ \ldots \ ,t_n}$}\xspace}
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\def\hverbandm#1#2{\textrm{$(#1,~#2)$}}
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\def\partord#1#2{\hverbandm{#1}{#2}\xspace}
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\def\eval#1{eval_{\left<#1\right>}\xspace}
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\def\evalA{$\eval{\algm{A}{\alpha}}$\xspace}
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\def\la#1#2{\mbox{$\lambda#1.#2$}\xspace}
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\def\set#1{\{\, #1 \,\}}
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\newcommand{\inletters}[1]{
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\ifx\the
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first
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\fi}
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%\newcommand{\olsub}{\textrm{$\, \ol{\sqsubseteq} \,$}\xspace}
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\newcommand{\olsub}{\textrm{$\, \leq^\ast \,$}\xspace}
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\newcommand{\olsubprime}{\textrm{$\, \ol{\sqsubseteq}' \,$}\xspace}
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\newcommand{\nolsub}{\textrm{$\, \not\sqsubseteq^* \,$}\xspace}
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\newcommand{\hverband}{\partord{S}{\sqsubseteq}\xspace}
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\newcommand{\qverband}{\partord{\exp{\ol{T}_{\Theta}}{V}}{\olsub}}
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\newcommand{\cloqverband}{\partord{\exp{T_{\Theta}}{V}}{\olsub}}
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\newcommand{\hord}{\mbox{$(S,~\sqsubseteq)$}\xspace}
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\def\einschr#1{|_{#1}}
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%\newcommand{\lsem}{[\hspace*{-0.3ex}[}
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%\newcommand{\rsem}{]\hspace*{-0.3ex}]}
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\newcommand{\lsem}{\llbracket\hspace{.5ex}}
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\newcommand{\rsem}{\hspace{.5ex}\rrbracket}
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\newcommand{\lsemm}{\lsem}
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\newcommand{\rsemm}{\rsem}
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\newcommand{\semantic}[1]{\lsem #1 \rsem\xspace}
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\newcommand{\ol}[1]{\overline{#1}}
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\newcommand{\ul}[1]{\underline{#1}}
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\newcommand{\dps}{\displaystyle}
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\newcommand{\sema}[3]{{\cal #1}_{#2}\semantic{#3}}
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\newcommand{\sem}[2]{\sema{#1}{}{#2}\xspace}
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%
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% Programming languages
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%
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\newcommand{\haskell}{\textsf{Haskell}\xspace}
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\newcommand{\gofer}{\textsf{Gofer}\xspace}
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\newcommand{\objp}{\mbox{\textsf{OBJ--P}}\xspace}
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\newcommand{\java}{\mbox{\textsf{G--JAVA}}\xspace}
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\newcommand{\oldjava}{\mbox{\textsf{JAVA}}\xspace}
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\newcommand{\javafive}{\mbox{\textsf{JAVA 5.0}}\xspace}
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\newcommand{\eclipse}{\mbox{\textsf{eclipse}}\xspace}
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\newcommand{\pizza}{\mbox{\textsf{PIZZA}}\xspace}
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\newcommand{\gj}{\mbox{\textsf{GJ}}\xspace}
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\newcommand{\sml}{\mbox{\textsf{SML}}\xspace}
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\newcommand{\ocaml}{\textsf{OCAML}}
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\newcommand{\obj}{\mbox{\textsf{OBJ--3}}\xspace}
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\newcommand{\objtwo}{\mbox{\textsf{OBJ--2}}\xspace}
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\def\pot#1{{\cal P}(\, #1 \,)\xspace}
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\def\partf{\overset{\text{\tiny part}}{\longrightarrow}\xspace}
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%
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% Deduktionssystem
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%
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\newcommand{\byrule}[1]{\raisebox{1.5ex}[0ex][0ex]{{{\rm [{\bf \small #1}]}}}}
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\newcommand{\byruleok}[1]{\raisebox{1.5ex}[0ex][0ex]{{{\rm \small #1}}}}
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\newcommand{\byrulewb}[1]{\raisebox{2.5ex}[0ex][0ex]{{{\rm [{\bf \small #1}]}}}}
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\newcommand{\byruleokwb}[1]{\raisebox{2.5ex}[0ex][0ex]{{{\rm \small #1}}}}
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\newcommand{\byrulesli}[1]{\raisebox{3.0ex}[0ex][0ex]{{{\rm [{\bf \small #1}]}}}}
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\newcommand{\inter}[1]{\bigwedge \hspace{-.55em} \bigwedge_{#1}}
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%
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% ARRAY WITH ARGUMENTS
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%
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\newcommand{\sarray}[2]{\begin{array}[t]{#1} #2 \end{array}}
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\newcommand{\sarrayt}[2]{\begin{array}[t]{#1} #2 \end{array}}
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\newcommand{\sarrayb}[2]{\begin{array}[b]{#1} #2 \end{array}}
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\newcommand{\sarrayo}[2]{\begin{array}{#1} #2 \end{array}}
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%
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% INFERENCE RULES
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%
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\newcommand{\byrulenew}[1]{\raisebox{2.1ex}[0ex][0ex]{{{\rm [{\bf \small #1}]}}}}
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\newcommand{\postcond}[1]{\raisebox{2.1ex}[0ex][0ex]{#1}}
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\newcommand{\lef}[1]{\multicolumn{1}{@{}l}{#1}}
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\newcommand{\ri}[1]{\multicolumn{1}{r@{}}{#1}}
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\newcommand{\ce}[1]{\multicolumn{1}{@{}c}{#1}}
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\newcommand{\axiom}[2]{\textrm{[}\textbf{\small #1}\textrm{]} & \lef{#2}}
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\newcommand{\irule}[4]{& \sarray{c}{#2}\vspace{1ex}\\\cline{2-2}
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\vspace{-2ex}\\ \byrulenew{#1} & \sarray{c}{#3} & \postcond{$#4$}}
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\newcommand{\irulealign}[6]{& \sarray{#2}{#3}\vspace{1ex}\\\cline{2-2}
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\vspace{-2ex}\\ \byrulenew{#1} & \sarray{#4}{#5} & \postcond{$#6$}}
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\newenvironment{irules}{$\begin{array}{lcl}}{\end{array}$}
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%
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% Kategorien
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%
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\newcommand{\funs}[1]{\mbox{$F^S_{ERR}$(\, #1 \,)}\xspace}
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\newcommand{\funa}[1]{\mbox{$F^A_{ERR}$(\, #1 \,)}\xspace}
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\newcommand{\funh}[1]{\mbox{$F^H_{ERR}(\, #1 \,)$}\xspace}
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%
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% Typherleitungen
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%
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%\let\oldrhd=\rhd
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%\newcommand{\rder}{\hspace*{0.5ex} \rhd_{\textrm{\tiny $\Sig$}} \hspace{0.5ex}}
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\newcommand{\rder}{\hspace*{0.5ex} \rhd \hspace{0.5ex}}
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%\newcommand{\lder}{\hspace*{0.5ex} \lhd_{\textrm{\tiny $\Sig$}} \hspace*{0.5ex}}
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\newcommand{\lder}{\hspace*{0.5ex} \lhd \hspace*{0.5ex}}
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\newcommand{\rderStmt}{\hspace*{0.5ex} \rhd_{Stmt} \hspace*{0.5ex}}
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\newcommand{\rderExpr}{\hspace*{0.5ex} \rhd_{Expr} \hspace*{0.5ex}}
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\newcommand{\rderIdent}{\hspace*{0.5ex} \rhd_{Id} \hspace*{0.5ex}}
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\let\oldblacktriangleright=\blacktriangleright
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%\newcommand{\fder}{\hspace*{1ex} \textrm{$\blacktriangleright_{\textsl{\tiny \hspace{-1ex}\Sig}}$}}
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\newcommand{\fder}{\hspace*{1ex} \textrm{$\blacktriangleright$}}
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\newcommand{\newtheo}[3]{\newtheorem{#1}[defhalbordnung]{#2}
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\begin{#1} {\rm #3} \label{#1} \end{#1}}
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\newcommand{\der}[2]{\mbox{$#1 \rhd\ #2$}\xspace}
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\newcommand{\derl}[2]{#1 \lhd_{\textrm{\tiny $\Sig$}} #2\xspace}
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\newcommand{\derr}[2]{#1 \rhd_{\textrm{\tiny \hspace{-1ex}$\Sig$}} #2\xspace}
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\newcommand{\derf}[3]{( \, #1, \, #2 \, ) \fder #3\xspace}
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\newcommand{\deri}[1]{\der{A}{K}{#1}\xspace}
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\newcommand{\derif}[1]{\derf{A}{K}{D}{#1}\xspace}
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\newcommand{\arity}[3]{\textrm{$\alpha^{(#1,#2)}_{#3}$}\xspace}
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\newcommand{\coarity}[2]{\textrm{$\beta^{(#1,#2)}$}\xspace}
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\newcommand{\sodaprg}{\textrm{$(\,\textsl{csig},\ D\,)$\xspace}}
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%
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% Typen
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%
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\newcommand{\typ}[3]{\textrm{$ #1 \times \ldots \times #2 \rightarrow #3$}\xspace}
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\newcommand{\syn}[1]{{\rm \texttt{\small #1}}}
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\newcommand{\sigmatyp}{\typ{\sigma_1}{\sigma_n}{\sigma}\xspace}
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\newcommand{\sigmadef}{\mbox{$\sigma_1 \times \ldots \times \sigma_n$}\xspace}
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\newcommand{\tautyp}{\typ{\tau_1}{\tau_n}{\tau}\xspace}
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\newcommand{\tautypsup}[1]{\typ{\tau^{#1}_1}{\tau^{#1}_n}{\tau^{#1}}\xspace}
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\newcommand{\taudef}{\mbox{$\tau_1 \times \ldots \times \tau_n$}\xspace}
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\newcommand{\thetatyp}{\typ{\theta_1}{\theta_n}{\theta_0}\xspace}
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\newcommand{\type}{\text{$\text{TYPE}(\,S,\ V\,)$}\xspace}
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\newcommand{\typea}{\text{$\text{TYPE}_T(\,S,\ V\,)$}\xspace}
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\newcommand{\ptype}{{\rm \expsf{Type}{\normalbtermset}}\xspace}
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\newcommand{\ptypea}{\text{$\text{TYPE}_T(\,\Theta,\ V\,)$}\xspace}
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\newcommand{\types}{\text{$\text{TYPE}_s(\,S,\ \Gamma\,)$}\xspace}
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\newcommand{\epsbox}[2]{
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%\begin{center}
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\setlength{\fboxsep}{4mm}
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\fbox{\epsfxsize=#1 \epsfbox{#2}}
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%\end{center}
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}
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\newcommand{\epsxybox}[3]{
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\begin{minipage}[t]{#1}
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\setlength{\fboxsep}{4mm}
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\fbox{\epsfysize=#2 \epsfbox{#3}}
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\end{minipage}}
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\newenvironment{program}{\begin{alltt}\small}
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{\normalsize\end{alltt}\vspace*{-1em}}
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\floatstyle{plain}
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\newfloat{soda}{htp}{lop}
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\floatname{soda}{SODA-Program}
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%\sodaprog
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% 1. width
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% 2. figure
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% 3. file
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\newcommand{\sodaprog}[3]{
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\begin{figure}%[#2]
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%\begin{center}
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\begin{Sbox}
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\begin{minipage}{#1}
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\small
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\begin{alltt}
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\verbatiminput{#3.soda}
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\end{alltt}
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\normalsize
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\end{minipage}
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\end{Sbox}
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\setlength{\fboxsep}{2mm}
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\fbox{\TheSbox}
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%\end{center}
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\caption{SODA module \texttt{#3}}
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\label{fig:#3}
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\end{figure}
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}
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%
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% Theorem
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%
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\newcommand{\QED}{\rule{1.1ex}{1.1ex}}
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%\newenvironment{proof}{\par \bigskip \noindent {\bf Proof:}
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% }{\mbox{ } \hfill \QED \par \smallskip}
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%
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}{\renewcommand{\\}{\newline}
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}{\end{algo}
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|
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|
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|
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#1}
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|
#1}}
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|
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|
||
|
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|
|
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|
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|
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|
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|
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|
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|
\newcommand{\sevnum}{\thesevfinum.\thesevsenum.\thesevthinum.\thesevfonum.\thesevfifnum.\thesevsixnum.\thesevsevnum}
|
||
|
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|
||
|
|
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|
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|
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|
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|
||
|
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|
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|
\newcommand{\eignumset}{\setcounter{eigfinum}{\value{ficall}}\setcounter{eigsenum}{\value{secall}}\setcounter{eigthinum}{\value{thicall}}\setcounter{eigfonum}{\value{focall}}\setcounter{eigfifnum}{\value{fifcall}}\setcounter{eigsixnum}{\value{sixcall}}\setcounter{eigsevnum}{\value{sevcall}}\setcounter{eigeignum}{\value{eigcall}}}
|
||
|
\newcommand{\eignum}{\theeigfinum.\theeigsenum.\theeigthinum.\theeigfonum.\theeigfifnum.\theeigsixnum.\theeigsevnum.\theeigeignum}
|
||
|
\newcommand{\eigcall}[1]{\addtocounter{eigcall}{1}\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall) \ #1}
|
||
|
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|
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|
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|
||
|
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|
||
|
}
|
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|
\newcommand{\reeigcall}[1]{\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall) \ #1}}
|
||
|
|
||
|
\newcounter{nicall}
|
||
|
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|
||
|
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|
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|
\newcommand{\ninumset}{\setcounter{nifinum}{\value{ficall}}\setcounter{nisenum}{\value{secall}}\setcounter{nithinum}{\value{thicall}}\setcounter{nifonum}{\value{focall}}\setcounter{nififnum}{\value{fifcall}}\setcounter{nisixnum}{\value{sixcall}}\setcounter{nisevnum}{\value{sevcall}}\setcounter{nieignum}{\value{eigcall}}\setcounter{nininum}{\value{nicall}}}
|
||
|
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|
||
|
\newcommand{\nicall}[1]{\addtocounter{nicall}{1}\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall.\thenicall)
|
||
|
\ #1}
|
||
|
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|
||
|
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|
||
|
}
|
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\newcommand{\renicall}[1]{\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall.\thenicall)
|
||
|
\ #1}}
|
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|
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||
|
\setcounter{nisenumold}{\value{nisenum}}
|
||
|
\setcounter{nithinumold}{\value{nithinum}}
|
||
|
\setcounter{nifonumold}{\value{nifonum}}
|
||
|
\setcounter{nififnumold}{\value{nififnum}}
|
||
|
\setcounter{nisixnumold}{\value{nisixnum}}
|
||
|
\setcounter{nisevnumold}{\value{nisevnum}}
|
||
|
\setcounter{nieignumold}{\value{nieignum}}
|
||
|
\setcounter{nininumold}{\value{nininum}}
|
||
|
}
|
||
|
\newcommand{\ninumold}{\thenifinumold.\thenisenumold.\thenithinumold.\thenifonumold.\thenififnumold.\thenisixnumold.\thenisevnumold.\thenieignumold.\thenininumold}
|
||
|
|
||
|
|
||
|
\newcounter{tencall}
|
||
|
\setcounter{tencall}{0}
|
||
|
\newcommand{\tencall}[1]{\addtocounter{tencall}{1}\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall.\thenicall.\thetencall)
|
||
|
\ #1}
|
||
|
\setcounter{elecall}{0}
|
||
|
}
|
||
|
\newcommand{\retencall}[1]{\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall.\thenicall.\thetencall)
|
||
|
\ #1}}
|
||
|
\newcounter{tenfinum}
|
||
|
\newcounter{tensenum}
|
||
|
\newcounter{tenthinum}
|
||
|
\newcounter{tenfonum}
|
||
|
\newcounter{tenfifnum}
|
||
|
\newcounter{tensixnum}
|
||
|
\newcounter{tensevnum}
|
||
|
\newcounter{teneignum}
|
||
|
\newcounter{tenninum}
|
||
|
\newcounter{tentennum}
|
||
|
\newcommand{\tennumset}{
|
||
|
\setcounter{tenfinum}{\value{ficall}}
|
||
|
\setcounter{tensenum}{\value{secall}}
|
||
|
\setcounter{tenthinum}{\value{thicall}}
|
||
|
\setcounter{tenfonum}{\value{focall}}
|
||
|
\setcounter{tenfifnum}{\value{fifcall}}
|
||
|
\setcounter{tensixnum}{\value{sixcall}}
|
||
|
\setcounter{tensevnum}{\value{sevcall}}
|
||
|
\setcounter{teneignum}{\value{eigcall}}
|
||
|
\setcounter{tenninum}{\value{nicall}}
|
||
|
\setcounter{tentennum}{\value{tencall}}}
|
||
|
\newcommand{\tennum}{\thetenfinum.\thetensenum.\thetenthinum.\thetenfonum.\thetenfifnum.\thetensixnum.\thetensevnum.\theteneignum.\thetenninum.\thetentennum}
|
||
|
|
||
|
\newcounter{elecall}
|
||
|
\setcounter{elecall}{0}
|
||
|
\newcommand{\elecall}[1]{\addtocounter{elecall}{1}\subsubsection*{(\theficall.\thesecall.\thethicall.\thefocall.\thefifcall.\thesixcall.\thesevcall.\theeigcall.\thenicall.\thetencall.\theelecall) \ #1}}
|
||
|
\newcounter{elefinum}
|
||
|
\newcounter{elesenum}
|
||
|
\newcounter{elethinum}
|
||
|
\newcounter{elefonum}
|
||
|
\newcounter{elefifnum}
|
||
|
\newcounter{elesixnum}
|
||
|
\newcounter{elesevnum}
|
||
|
\newcounter{eleeignum}
|
||
|
\newcounter{eleninum}
|
||
|
\newcounter{eletennum}
|
||
|
\newcounter{eleelenum}
|
||
|
\newcommand{\elenumset}{
|
||
|
\setcounter{elefinum}{\value{ficall}}
|
||
|
\setcounter{elesenum}{\value{secall}}
|
||
|
\setcounter{elethinum}{\value{thicall}}
|
||
|
\setcounter{elefonum}{\value{focall}}
|
||
|
\setcounter{elefifnum}{\value{fifcall}}
|
||
|
\setcounter{elesixnum}{\value{sixcall}}
|
||
|
\setcounter{elesevnum}{\value{sevcall}}
|
||
|
\setcounter{eleeignum}{\value{eigcall}}
|
||
|
\setcounter{eleninum}{\value{nicall}}
|
||
|
\setcounter{eletennum}{\value{tencall}}
|
||
|
\setcounter{eleelenum}{\value{elecall}}
|
||
|
}
|
||
|
\newcommand{\elenum}{\theelefinum.\theelesenum.\theelethinum.\theelefonum.\theelefifnum.\theelesixnum.\theelesevnum.\theeleeignum.\theeleninum.\theeletennum.\theeleelenum}
|