author | wenzelm |
Wed, 09 Nov 2011 22:43:14 +0100 | |
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parent 45260 | 48295059cef3 |
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permissions | -rw-r--r-- |
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\begin{isabellebody}% |
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\def\isabellecontext{Syntax}% |
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\isadelimtheory |
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\endisadelimtheory |
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\isatagtheory |
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\isacommand{theory}\isamarkupfalse% |
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\ Syntax\isanewline |
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\isakeyword{imports}\ Base\isanewline |
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\isakeyword{begin}% |
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\endisatagtheory |
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{\isafoldtheory}% |
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\isadelimtheory |
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\endisadelimtheory |
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\isamarkupchapter{Concrete syntax and type-checking% |
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\isamarkuptrue% |
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\begin{isamarkuptext}% |
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Pure \isa{{\isaliteral{5C3C6C616D6264613E}{\isasymlambda}}}-calculus as introduced in \chref{ch:logic} is |
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an adequate foundation for logical languages --- in the tradition of |
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\emph{higher-order abstract syntax} --- but end-users require |
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additional means for reading and printing of terms and types. This |
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important add-on outside the logical core is called \emph{inner |
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syntax} in Isabelle jargon, as opposed to the \emph{outer syntax} of |
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the theory and proof language (cf.\ \chref{FIXME}). |
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For example, according to \cite{church40} quantifiers are |
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represented as higher-order constants \isa{All\ {\isaliteral{3A}{\isacharcolon}}{\isaliteral{3A}{\isacharcolon}}\ {\isaliteral{28}{\isacharparenleft}}{\isaliteral{27}{\isacharprime}}a\ {\isaliteral{5C3C52696768746172726F773E}{\isasymRightarrow}}\ bool{\isaliteral{29}{\isacharparenright}}\ {\isaliteral{5C3C52696768746172726F773E}{\isasymRightarrow}}\ bool} such that \isa{All\ {\isaliteral{28}{\isacharparenleft}}{\isaliteral{5C3C6C616D6264613E}{\isasymlambda}}x{\isaliteral{3A}{\isacharcolon}}{\isaliteral{3A}{\isacharcolon}}{\isaliteral{27}{\isacharprime}}a{\isaliteral{2E}{\isachardot}}\ B\ x{\isaliteral{29}{\isacharparenright}}} faithfully represents |
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the idea that is displayed as \isa{{\isaliteral{5C3C666F72616C6C3E}{\isasymforall}}x{\isaliteral{3A}{\isacharcolon}}{\isaliteral{3A}{\isacharcolon}}{\isaliteral{27}{\isacharprime}}a{\isaliteral{2E}{\isachardot}}\ B\ x} via \hyperlink{keyword.binder}{\mbox{\isa{\isakeyword{binder}}}} notation. Moreover, type-inference in the style of |
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Hindley-Milner \cite{hindleymilner} (and extensions) enables users |
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to write \isa{{\isaliteral{5C3C666F72616C6C3E}{\isasymforall}}x{\isaliteral{2E}{\isachardot}}\ B\ x} concisely, when the type \isa{{\isaliteral{27}{\isacharprime}}a} is |
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already clear from the context.\footnote{Type-inference taken to the |
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extreme can easily confuse users, though. Beginners often stumble |
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over unexpectedly general types inferred by the system.} |
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\medskip The main inner syntax operations are \emph{read} for |
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parsing together with type-checking, and \emph{pretty} for formatted |
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output. See also \secref{sec:read-print}. |
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Furthermore, the input and output syntax layers are sub-divided into |
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separate phases for \emph{concrete syntax} versus \emph{abstract |
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syntax}, see also \secref{sec:parse-unparse} and |
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\secref{sec:term-check}, respectively. This results in the |
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following decomposition of the main operations: |
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\begin{itemize} |
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\item \isa{read\ {\isaliteral{3D}{\isacharequal}}\ parse{\isaliteral{3B}{\isacharsemicolon}}\ check} |
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\item \isa{pretty\ {\isaliteral{3D}{\isacharequal}}\ uncheck{\isaliteral{3B}{\isacharsemicolon}}\ unparse} |
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\end{itemize} |
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Some specification package might thus intercept syntax processing at |
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a well-defined stage after \isa{parse}, to a augment the |
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resulting pre-term before full type-reconstruction is performed by |
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\isa{check}, for example. Note that the formal status of bound |
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variables, versus free variables, versus constants must not be |
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changed here!% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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\isamarkupsection{Reading and pretty printing \label{sec:read-print}% |
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} |
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\isamarkuptrue% |
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\begin{isamarkuptext}% |
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Read and print operations are roughly dual to each other, such |
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that for the user \isa{s{\isaliteral{27}{\isacharprime}}\ {\isaliteral{3D}{\isacharequal}}\ pretty\ {\isaliteral{28}{\isacharparenleft}}read\ s{\isaliteral{29}{\isacharparenright}}} looks similar to |
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the original source text \isa{s}, but the details depend on many |
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side-conditions. There are also explicit options to control |
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suppressing of type information in the output. The default |
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configuration routinely looses information, so \isa{t{\isaliteral{27}{\isacharprime}}\ {\isaliteral{3D}{\isacharequal}}\ read\ {\isaliteral{28}{\isacharparenleft}}pretty\ t{\isaliteral{29}{\isacharparenright}}} might fail, produce a differently typed term, or a |
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completely different term in the face of syntactic overloading!% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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\isadelimmlref |
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\endisadelimmlref |
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\isatagmlref |
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\begin{isamarkuptext}% |
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\begin{mldecls} |
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\indexdef{}{ML}{Syntax.read\_typ}\verb|Syntax.read_typ: Proof.context -> string -> typ| \\ |
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\indexdef{}{ML}{Syntax.read\_term}\verb|Syntax.read_term: Proof.context -> string -> term| \\ |
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\indexdef{}{ML}{Syntax.read\_prop}\verb|Syntax.read_prop: Proof.context -> string -> term| \\ |
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\indexdef{}{ML}{Syntax.pretty\_typ}\verb|Syntax.pretty_typ: Proof.context -> typ -> Pretty.T| \\ |
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\indexdef{}{ML}{Syntax.pretty\_term}\verb|Syntax.pretty_term: Proof.context -> term -> Pretty.T| \\ |
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\end{mldecls} |
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\begin{description} |
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\item FIXME |
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\end{description}% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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\endisatagmlref |
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{\isafoldmlref}% |
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\isadelimmlref |
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\endisadelimmlref |
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\isamarkupsection{Parsing and unparsing \label{sec:parse-unparse}% |
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\isamarkuptrue% |
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\begin{isamarkuptext}% |
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Parsing and unparsing converts between actual source text and |
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a certain \emph{pre-term} format, where all bindings and scopes are |
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resolved faithfully. Thus the names of free variables or constants |
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are already determined in the sense of the logical context, but type |
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information might is still missing. Pre-terms support an explicit |
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language of \emph{type constraints} that may be augmented by user |
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code to guide the later \emph{check} phase, for example. |
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Actual parsing is based on traditional lexical analysis and Earley |
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parsing for arbitrary context-free grammars. The user can specify |
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this via mixfix annotations. Moreover, there are \emph{syntax |
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translations} that can be augmented by the user, either |
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declaratively via \hyperlink{command.translations}{\mbox{\isa{\isacommand{translations}}}} or programmatically via |
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\hyperlink{command.parse-translation}{\mbox{\isa{\isacommand{parse{\isaliteral{5F}{\isacharunderscore}}translation}}}}, \hyperlink{command.print-translation}{\mbox{\isa{\isacommand{print{\isaliteral{5F}{\isacharunderscore}}translation}}}} etc. The |
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final scope resolution is performed by the system, according to name |
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spaces for types, constants etc.\ determined by the context.% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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\isadelimmlref |
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\endisadelimmlref |
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\isatagmlref |
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\begin{isamarkuptext}% |
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\begin{mldecls} |
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\indexdef{}{ML}{Syntax.parse\_typ}\verb|Syntax.parse_typ: Proof.context -> string -> typ| \\ |
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\indexdef{}{ML}{Syntax.parse\_term}\verb|Syntax.parse_term: Proof.context -> string -> term| \\ |
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\indexdef{}{ML}{Syntax.parse\_prop}\verb|Syntax.parse_prop: Proof.context -> string -> term| \\ |
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\indexdef{}{ML}{Syntax.unparse\_typ}\verb|Syntax.unparse_typ: Proof.context -> typ -> Pretty.T| \\ |
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\indexdef{}{ML}{Syntax.unparse\_term}\verb|Syntax.unparse_term: Proof.context -> term -> Pretty.T| \\ |
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\end{mldecls} |
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\begin{description} |
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\item FIXME |
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\end{description}% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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\endisatagmlref |
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{\isafoldmlref}% |
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\isadelimmlref |
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\endisadelimmlref |
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\isamarkupsection{Checking and unchecking \label{sec:term-check}% |
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} |
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\isamarkuptrue% |
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\begin{isamarkuptext}% |
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These operations define the transition from pre-terms and |
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fully-annotated terms in the sense of the logical core |
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(\chref{ch:logic}). |
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The \emph{check} phase is meant to subsume a variety of mechanisms |
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in the manner of ``type-inference'' or ``type-reconstruction'' or |
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``type-improvement'', not just type-checking in the narrow sense. |
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The \emph{uncheck} phase is roughly dual, it prunes type-information |
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before pretty printing. |
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A typical add-on for the check/uncheck syntax layer is the \hyperlink{command.abbreviation}{\mbox{\isa{\isacommand{abbreviation}}}} mechanism. Here the user specifies syntactic |
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definitions that are managed by the system as polymorphic \isa{let} bindings. These are expanded during the \isa{check} |
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phase, and contracted during the \isa{uncheck} phase, without |
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affecting the type-assignment of the given terms. |
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\medskip The precise meaning of type checking depends on the context |
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--- additional check/uncheck plugins might be defined in user space! |
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For example, the \hyperlink{command.class}{\mbox{\isa{\isacommand{class}}}} command defines a context where |
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\isa{check} treats certain type instances of overloaded |
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constants according to the ``dictionary construction'' of its |
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logical foundation. This involves ``type improvement'' |
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(specialization of slightly too general types) and replacement by |
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certain locale parameters. See also \cite{Haftmann-Wenzel:2009}.% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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% |
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\isadelimmlref |
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% |
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\endisadelimmlref |
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% |
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\isatagmlref |
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% |
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\begin{isamarkuptext}% |
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\begin{mldecls} |
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\indexdef{}{ML}{Syntax.check\_typs}\verb|Syntax.check_typs: Proof.context -> typ list -> typ list| \\ |
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\indexdef{}{ML}{Syntax.check\_terms}\verb|Syntax.check_terms: Proof.context -> term list -> term list| \\ |
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\indexdef{}{ML}{Syntax.check\_props}\verb|Syntax.check_props: Proof.context -> term list -> term list| \\ |
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\indexdef{}{ML}{Syntax.uncheck\_typs}\verb|Syntax.uncheck_typs: Proof.context -> typ list -> typ list| \\ |
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\indexdef{}{ML}{Syntax.uncheck\_terms}\verb|Syntax.uncheck_terms: Proof.context -> term list -> term list| \\ |
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\end{mldecls} |
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\begin{description} |
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\item FIXME |
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\end{description}% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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% |
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\endisatagmlref |
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{\isafoldmlref}% |
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% |
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\isadelimmlref |
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% |
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\endisadelimmlref |
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% |
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\isamarkupsection{Syntax translations% |
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} |
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\isamarkuptrue% |
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% |
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\begin{isamarkuptext}% |
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FIXME% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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% |
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240 |
\isadelimmlantiq |
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% |
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\endisadelimmlantiq |
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% |
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\isatagmlantiq |
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% |
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\begin{isamarkuptext}% |
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\begin{matharray}{rcl} |
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\indexdef{}{ML antiquotation}{class\_syntax}\hypertarget{ML antiquotation.class-syntax}{\hyperlink{ML antiquotation.class-syntax}{\mbox{\isa{class{\isaliteral{5F}{\isacharunderscore}}syntax}}}} & : & \isa{ML{\isaliteral{5F}{\isacharunderscore}}antiquotation} \\ |
249 |
\indexdef{}{ML antiquotation}{type\_syntax}\hypertarget{ML antiquotation.type-syntax}{\hyperlink{ML antiquotation.type-syntax}{\mbox{\isa{type{\isaliteral{5F}{\isacharunderscore}}syntax}}}} & : & \isa{ML{\isaliteral{5F}{\isacharunderscore}}antiquotation} \\ |
|
250 |
\indexdef{}{ML antiquotation}{const\_syntax}\hypertarget{ML antiquotation.const-syntax}{\hyperlink{ML antiquotation.const-syntax}{\mbox{\isa{const{\isaliteral{5F}{\isacharunderscore}}syntax}}}} & : & \isa{ML{\isaliteral{5F}{\isacharunderscore}}antiquotation} \\ |
|
251 |
\indexdef{}{ML antiquotation}{syntax\_const}\hypertarget{ML antiquotation.syntax-const}{\hyperlink{ML antiquotation.syntax-const}{\mbox{\isa{syntax{\isaliteral{5F}{\isacharunderscore}}const}}}} & : & \isa{ML{\isaliteral{5F}{\isacharunderscore}}antiquotation} \\ |
|
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\end{matharray} |
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|
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\begin{railoutput} |
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\rail@begin{4}{} |
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256 |
\rail@bar |
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\rail@term{\hyperlink{ML antiquotation.class-syntax}{\mbox{\isa{class{\isaliteral{5F}{\isacharunderscore}}syntax}}}}[] |
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\rail@nextbar{1} |
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\rail@term{\hyperlink{ML antiquotation.type-syntax}{\mbox{\isa{type{\isaliteral{5F}{\isacharunderscore}}syntax}}}}[] |
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\rail@nextbar{2} |
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\rail@term{\hyperlink{ML antiquotation.const-syntax}{\mbox{\isa{const{\isaliteral{5F}{\isacharunderscore}}syntax}}}}[] |
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\rail@nextbar{3} |
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\rail@term{\hyperlink{ML antiquotation.syntax-const}{\mbox{\isa{syntax{\isaliteral{5F}{\isacharunderscore}}const}}}}[] |
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\rail@endbar |
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\rail@nont{\isa{name}}[] |
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\rail@end |
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\end{railoutput} |
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268 |
|
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\begin{description} |
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|
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\item FIXME |
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|
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\end{description}% |
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\end{isamarkuptext}% |
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\isamarkuptrue% |
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% |
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\endisatagmlantiq |
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{\isafoldmlantiq}% |
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% |
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\isadelimmlantiq |
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% |
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\endisadelimmlantiq |
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% |
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\isadelimtheory |
286 |
% |
|
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\endisadelimtheory |
|
288 |
% |
|
289 |
\isatagtheory |
|
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\isacommand{end}\isamarkupfalse% |
|
291 |
% |
|
292 |
\endisatagtheory |
|
293 |
{\isafoldtheory}% |
|
294 |
% |
|
295 |
\isadelimtheory |
|
296 |
% |
|
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\endisadelimtheory |
|
298 |
\isanewline |
|
299 |
\end{isabellebody}% |
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%%% Local Variables: |
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%%% mode: latex |
|
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%%% TeX-master: "root" |
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%%% End: |