doc-src/IsarRef/Thy/HOL_Specific.thy
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theory HOL_Specific
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imports Main
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begin
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chapter {* Isabelle/HOL \label{ch:hol} *}
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section {* Typedef axiomatization \label{sec:hol-typedef} *}
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text {*
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  \begin{matharray}{rcl}
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    @{command_def (HOL) "typedef"} & : & @{text "local_theory \<rightarrow> proof(prove)"} \\
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  \end{matharray}
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  \begin{rail}
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    'typedef' altname? abstype '=' repset
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    ;
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    altname: '(' (name | 'open' | 'open' name) ')'
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    ;
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    abstype: typespecsorts mixfix?
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    ;
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    repset: term ('morphisms' name name)?
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    ;
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  \end{rail}
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  \begin{description}
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  \item @{command (HOL) "typedef"}~@{text "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>n) t = A"}
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  axiomatizes a Gordon/HOL-style type definition in the background
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  theory of the current context, depending on a non-emptiness result
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  of the set @{text A} (which needs to be proven interactively).
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  The raw type may not depend on parameters or assumptions of the
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  context --- this is logically impossible in Isabelle/HOL --- but the
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  non-emptiness property can be local, potentially resulting in
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  multiple interpretations in target contexts.  Thus the established
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  bijection between the representing set @{text A} and the new type
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  @{text t} may semantically depend on local assumptions.
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  By default, @{command (HOL) "typedef"} defines both a type @{text t}
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  and a set (term constant) of the same name, unless an alternative
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  base name is given in parentheses, or the ``@{text "(open)"}''
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  declaration is used to suppress a separate constant definition
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  altogether.  The injection from type to set is called @{text Rep_t},
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  its inverse @{text Abs_t} --- this may be changed via an explicit
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  @{keyword (HOL) "morphisms"} declaration.
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  Theorems @{text Rep_t}, @{text Rep_t_inverse}, and @{text
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  Abs_t_inverse} provide the most basic characterization as a
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  corresponding injection/surjection pair (in both directions).  Rules
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  @{text Rep_t_inject} and @{text Abs_t_inject} provide a slightly
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  more convenient view on the injectivity part, suitable for automated
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  proof tools (e.g.\ in @{attribute simp} or @{attribute iff}
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  declarations).  Rules @{text Rep_t_cases}/@{text Rep_t_induct}, and
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  @{text Abs_t_cases}/@{text Abs_t_induct} provide alternative views
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  on surjectivity; these are already declared as set or type rules for
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  the generic @{method cases} and @{method induct} methods.
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  An alternative name for the set definition (and other derived
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  entities) may be specified in parentheses; the default is to use
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  @{text t} as indicated before.
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  \end{description}
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*}
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section {* Adhoc tuples *}
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text {*
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  \begin{matharray}{rcl}
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    @{attribute (HOL) split_format}@{text "\<^sup>*"} & : & @{text attribute} \\
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  \end{matharray}
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  \begin{rail}
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    'split\_format' ((( name * ) + 'and') | ('(' 'complete' ')'))
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    ;
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  \end{rail}
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  \begin{description}
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  \item @{attribute (HOL) split_format}~@{text "p\<^sub>1 \<dots> p\<^sub>m \<AND> \<dots>
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  \<AND> q\<^sub>1 \<dots> q\<^sub>n"} puts expressions of low-level tuple types into
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  canonical form as specified by the arguments given; the @{text i}-th
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  collection of arguments refers to occurrences in premise @{text i}
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  of the rule.  The ``@{text "(complete)"}'' option causes \emph{all}
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  arguments in function applications to be represented canonically
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  according to their tuple type structure.
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  Note that these operations tend to invent funny names for new local
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  parameters to be introduced.
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  \end{description}
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*}
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section {* Records \label{sec:hol-record} *}
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text {*
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  In principle, records merely generalize the concept of tuples, where
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  components may be addressed by labels instead of just position.  The
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  logical infrastructure of records in Isabelle/HOL is slightly more
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  advanced, though, supporting truly extensible record schemes.  This
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  admits operations that are polymorphic with respect to record
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  extension, yielding ``object-oriented'' effects like (single)
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  inheritance.  See also \cite{NaraschewskiW-TPHOLs98} for more
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  details on object-oriented verification and record subtyping in HOL.
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*}
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subsection {* Basic concepts *}
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text {*
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  Isabelle/HOL supports both \emph{fixed} and \emph{schematic} records
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  at the level of terms and types.  The notation is as follows:
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  \begin{center}
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  \begin{tabular}{l|l|l}
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    & record terms & record types \\ \hline
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    fixed & @{text "\<lparr>x = a, y = b\<rparr>"} & @{text "\<lparr>x :: A, y :: B\<rparr>"} \\
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    schematic & @{text "\<lparr>x = a, y = b, \<dots> = m\<rparr>"} &
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      @{text "\<lparr>x :: A, y :: B, \<dots> :: M\<rparr>"} \\
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  \end{tabular}
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  \end{center}
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  \noindent The ASCII representation of @{text "\<lparr>x = a\<rparr>"} is @{text
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  "(| x = a |)"}.
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  A fixed record @{text "\<lparr>x = a, y = b\<rparr>"} has field @{text x} of value
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  @{text a} and field @{text y} of value @{text b}.  The corresponding
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  type is @{text "\<lparr>x :: A, y :: B\<rparr>"}, assuming that @{text "a :: A"}
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  and @{text "b :: B"}.
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  A record scheme like @{text "\<lparr>x = a, y = b, \<dots> = m\<rparr>"} contains fields
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  @{text x} and @{text y} as before, but also possibly further fields
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  as indicated by the ``@{text "\<dots>"}'' notation (which is actually part
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  of the syntax).  The improper field ``@{text "\<dots>"}'' of a record
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  scheme is called the \emph{more part}.  Logically it is just a free
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  variable, which is occasionally referred to as ``row variable'' in
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  the literature.  The more part of a record scheme may be
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  instantiated by zero or more further components.  For example, the
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  previous scheme may get instantiated to @{text "\<lparr>x = a, y = b, z =
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  c, \<dots> = m'\<rparr>"}, where @{text m'} refers to a different more part.
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  Fixed records are special instances of record schemes, where
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  ``@{text "\<dots>"}'' is properly terminated by the @{text "() :: unit"}
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  element.  In fact, @{text "\<lparr>x = a, y = b\<rparr>"} is just an abbreviation
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  for @{text "\<lparr>x = a, y = b, \<dots> = ()\<rparr>"}.
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  \medskip Two key observations make extensible records in a simply
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  typed language like HOL work out:
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  \begin{enumerate}
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  \item the more part is internalized, as a free term or type
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  variable,
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  \item field names are externalized, they cannot be accessed within
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  the logic as first-class values.
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  \end{enumerate}
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  \medskip In Isabelle/HOL record types have to be defined explicitly,
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  fixing their field names and types, and their (optional) parent
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  record.  Afterwards, records may be formed using above syntax, while
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  obeying the canonical order of fields as given by their declaration.
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  The record package provides several standard operations like
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  selectors and updates.  The common setup for various generic proof
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  tools enable succinct reasoning patterns.  See also the Isabelle/HOL
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  tutorial \cite{isabelle-hol-book} for further instructions on using
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  records in practice.
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*}
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subsection {* Record specifications *}
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text {*
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  \begin{matharray}{rcl}
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    @{command_def (HOL) "record"} & : & @{text "theory \<rightarrow> theory"} \\
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  \end{matharray}
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  \begin{rail}
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    'record' typespecsorts '=' (type '+')? (constdecl +)
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    ;
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  \end{rail}
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  \begin{description}
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  \item @{command (HOL) "record"}~@{text "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>m) t = \<tau> + c\<^sub>1 :: \<sigma>\<^sub>1
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  \<dots> c\<^sub>n :: \<sigma>\<^sub>n"} defines extensible record type @{text "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>m) t"},
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  derived from the optional parent record @{text "\<tau>"} by adding new
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  field components @{text "c\<^sub>i :: \<sigma>\<^sub>i"} etc.
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  The type variables of @{text "\<tau>"} and @{text "\<sigma>\<^sub>i"} need to be
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  covered by the (distinct) parameters @{text "\<alpha>\<^sub>1, \<dots>,
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  \<alpha>\<^sub>m"}.  Type constructor @{text t} has to be new, while @{text
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  \<tau>} needs to specify an instance of an existing record type.  At
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  least one new field @{text "c\<^sub>i"} has to be specified.
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  Basically, field names need to belong to a unique record.  This is
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  not a real restriction in practice, since fields are qualified by
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  the record name internally.
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  The parent record specification @{text \<tau>} is optional; if omitted
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  @{text t} becomes a root record.  The hierarchy of all records
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  declared within a theory context forms a forest structure, i.e.\ a
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  set of trees starting with a root record each.  There is no way to
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  merge multiple parent records!
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  For convenience, @{text "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>m) t"} is made a
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  type abbreviation for the fixed record type @{text "\<lparr>c\<^sub>1 ::
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  \<sigma>\<^sub>1, \<dots>, c\<^sub>n :: \<sigma>\<^sub>n\<rparr>"}, likewise is @{text
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  "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>m, \<zeta>) t_scheme"} made an abbreviation for
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  @{text "\<lparr>c\<^sub>1 :: \<sigma>\<^sub>1, \<dots>, c\<^sub>n :: \<sigma>\<^sub>n, \<dots> ::
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  \<zeta>\<rparr>"}.
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  \end{description}
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*}
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subsection {* Record operations *}
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text {*
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  Any record definition of the form presented above produces certain
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  standard operations.  Selectors and updates are provided for any
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  field, including the improper one ``@{text more}''.  There are also
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  cumulative record constructor functions.  To simplify the
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  presentation below, we assume for now that @{text "(\<alpha>\<^sub>1, \<dots>,
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  \<alpha>\<^sub>m) t"} is a root record with fields @{text "c\<^sub>1 ::
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  \<sigma>\<^sub>1, \<dots>, c\<^sub>n :: \<sigma>\<^sub>n"}.
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  \medskip \textbf{Selectors} and \textbf{updates} are available for
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  any field (including ``@{text more}''):
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  \begin{matharray}{lll}
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    @{text "c\<^sub>i"} & @{text "::"} & @{text "\<lparr>\<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr> \<Rightarrow> \<sigma>\<^sub>i"} \\
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    @{text "c\<^sub>i_update"} & @{text "::"} & @{text "\<sigma>\<^sub>i \<Rightarrow> \<lparr>\<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr> \<Rightarrow> \<lparr>\<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr>"} \\
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  \end{matharray}
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  There is special syntax for application of updates: @{text "r\<lparr>x :=
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  a\<rparr>"} abbreviates term @{text "x_update a r"}.  Further notation for
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  repeated updates is also available: @{text "r\<lparr>x := a\<rparr>\<lparr>y := b\<rparr>\<lparr>z :=
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  c\<rparr>"} may be written @{text "r\<lparr>x := a, y := b, z := c\<rparr>"}.  Note that
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  because of postfix notation the order of fields shown here is
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  reverse than in the actual term.  Since repeated updates are just
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  function applications, fields may be freely permuted in @{text "\<lparr>x
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  := a, y := b, z := c\<rparr>"}, as far as logical equality is concerned.
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  Thus commutativity of independent updates can be proven within the
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  logic for any two fields, but not as a general theorem.
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  \medskip The \textbf{make} operation provides a cumulative record
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  constructor function:
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  \begin{matharray}{lll}
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    @{text "t.make"} & @{text "::"} & @{text "\<sigma>\<^sub>1 \<Rightarrow> \<dots> \<sigma>\<^sub>n \<Rightarrow> \<lparr>\<^vec>c :: \<^vec>\<sigma>\<rparr>"} \\
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  \end{matharray}
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  \medskip We now reconsider the case of non-root records, which are
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  derived of some parent.  In general, the latter may depend on
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  another parent as well, resulting in a list of \emph{ancestor
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  records}.  Appending the lists of fields of all ancestors results in
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  a certain field prefix.  The record package automatically takes care
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  of this by lifting operations over this context of ancestor fields.
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  Assuming that @{text "(\<alpha>\<^sub>1, \<dots>, \<alpha>\<^sub>m) t"} has ancestor
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  fields @{text "b\<^sub>1 :: \<rho>\<^sub>1, \<dots>, b\<^sub>k :: \<rho>\<^sub>k"},
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  the above record operations will get the following types:
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  \medskip
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  \begin{tabular}{lll}
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    @{text "c\<^sub>i"} & @{text "::"} & @{text "\<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr> \<Rightarrow> \<sigma>\<^sub>i"} \\
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    @{text "c\<^sub>i_update"} & @{text "::"} & @{text "\<sigma>\<^sub>i \<Rightarrow> 
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      \<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr> \<Rightarrow>
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      \<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr>"} \\
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    @{text "t.make"} & @{text "::"} & @{text "\<rho>\<^sub>1 \<Rightarrow> \<dots> \<rho>\<^sub>k \<Rightarrow> \<sigma>\<^sub>1 \<Rightarrow> \<dots> \<sigma>\<^sub>n \<Rightarrow>
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      \<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>\<rparr>"} \\
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  \end{tabular}
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  \medskip
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  \noindent Some further operations address the extension aspect of a
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  derived record scheme specifically: @{text "t.fields"} produces a
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  record fragment consisting of exactly the new fields introduced here
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  (the result may serve as a more part elsewhere); @{text "t.extend"}
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  takes a fixed record and adds a given more part; @{text
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  "t.truncate"} restricts a record scheme to a fixed record.
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  \medskip
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  \begin{tabular}{lll}
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    @{text "t.fields"} & @{text "::"} & @{text "\<sigma>\<^sub>1 \<Rightarrow> \<dots> \<sigma>\<^sub>n \<Rightarrow> \<lparr>\<^vec>c :: \<^vec>\<sigma>\<rparr>"} \\
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    @{text "t.extend"} & @{text "::"} & @{text "\<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>\<rparr> \<Rightarrow>
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      \<zeta> \<Rightarrow> \<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr>"} \\
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    @{text "t.truncate"} & @{text "::"} & @{text "\<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>, \<dots> :: \<zeta>\<rparr> \<Rightarrow> \<lparr>\<^vec>b :: \<^vec>\<rho>, \<^vec>c :: \<^vec>\<sigma>\<rparr>"} \\
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  \end{tabular}
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  \medskip
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  \noindent Note that @{text "t.make"} and @{text "t.fields"} coincide
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  for root records.
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*}
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subsection {* Derived rules and proof tools *}
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text {*
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  The record package proves several results internally, declaring
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  these facts to appropriate proof tools.  This enables users to
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  reason about record structures quite conveniently.  Assume that
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  @{text t} is a record type as specified above.
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  \begin{enumerate}
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  \item Standard conversions for selectors or updates applied to
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  record constructor terms are made part of the default Simplifier
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  context; thus proofs by reduction of basic operations merely require
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  the @{method simp} method without further arguments.  These rules
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  are available as @{text "t.simps"}, too.
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  \item Selectors applied to updated records are automatically reduced
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  by an internal simplification procedure, which is also part of the
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  standard Simplifier setup.
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  \item Inject equations of a form analogous to @{prop "(x, y) = (x',
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   318
  y') \<equiv> x = x' \<and> y = y'"} are declared to the Simplifier and Classical
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   319
  Reasoner as @{attribute iff} rules.  These rules are available as
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  @{text "t.iffs"}.
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   321
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  \item The introduction rule for record equality analogous to @{text
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   323
  "x r = x r' \<Longrightarrow> y r = y r' \<dots> \<Longrightarrow> r = r'"} is declared to the Simplifier,
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  and as the basic rule context as ``@{attribute intro}@{text "?"}''.
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  The rule is called @{text "t.equality"}.
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  \item Representations of arbitrary record expressions as canonical
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  constructor terms are provided both in @{method cases} and @{method
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   329
  induct} format (cf.\ the generic proof methods of the same name,
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  \secref{sec:cases-induct}).  Several variations are available, for
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  fixed records, record schemes, more parts etc.
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   332
  
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  The generic proof methods are sufficiently smart to pick the most
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   334
  sensible rule according to the type of the indicated record
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   335
  expression: users just need to apply something like ``@{text "(cases
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   336
  r)"}'' to a certain proof problem.
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  \item The derived record operations @{text "t.make"}, @{text
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   339
  "t.fields"}, @{text "t.extend"}, @{text "t.truncate"} are \emph{not}
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  treated automatically, but usually need to be expanded by hand,
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  using the collective fact @{text "t.defs"}.
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   342
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   343
  \end{enumerate}
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   344
*}
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   346
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section {* Datatypes \label{sec:hol-datatype} *}
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   348
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text {*
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   350
  \begin{matharray}{rcl}
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    @{command_def (HOL) "datatype"} & : & @{text "theory \<rightarrow> theory"} \\
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  @{command_def (HOL) "rep_datatype"} & : & @{text "theory \<rightarrow> proof(prove)"} \\
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  \end{matharray}
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   354
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   355
  \begin{rail}
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   356
    'datatype' (dtspec + 'and')
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diff changeset
   357
    ;
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   358
    'rep\_datatype' ('(' (name +) ')')? (term +)
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   359
    ;
df50bc1249d7 converted HOL specific elements;
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diff changeset
   360
35351
7425aece4ee3 allow general mixfix syntax for type constructors;
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diff changeset
   361
    dtspec: parname? typespec mixfix? '=' (cons + '|')
26849
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diff changeset
   362
    ;
31912
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   363
    cons: name ( type * ) mixfix?
26849
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diff changeset
   364
  \end{rail}
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diff changeset
   365
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   366
  \begin{description}
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diff changeset
   367
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cbc435f7b16b unified use of declaration environment with IsarImplementation;
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diff changeset
   368
  \item @{command (HOL) "datatype"} defines inductive datatypes in
26849
df50bc1249d7 converted HOL specific elements;
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diff changeset
   369
  HOL.
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diff changeset
   370
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diff changeset
   371
  \item @{command (HOL) "rep_datatype"} represents existing types as
26849
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diff changeset
   372
  inductive ones, generating the standard infrastructure of derived
df50bc1249d7 converted HOL specific elements;
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diff changeset
   373
  concepts (primitive recursion etc.).
df50bc1249d7 converted HOL specific elements;
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diff changeset
   374
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diff changeset
   375
  \end{description}
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diff changeset
   376
df50bc1249d7 converted HOL specific elements;
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diff changeset
   377
  The induction and exhaustion theorems generated provide case names
df50bc1249d7 converted HOL specific elements;
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diff changeset
   378
  according to the constructors involved, while parameters are named
df50bc1249d7 converted HOL specific elements;
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diff changeset
   379
  after the types (see also \secref{sec:cases-induct}).
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parents: 26840
diff changeset
   380
df50bc1249d7 converted HOL specific elements;
wenzelm
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diff changeset
   381
  See \cite{isabelle-HOL} for more details on datatypes, but beware of
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   382
  the old-style theory syntax being used there!  Apart from proper
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   383
  proof methods for case-analysis and induction, there are also
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   384
  emulations of ML tactics @{method (HOL) case_tac} and @{method (HOL)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   385
  induct_tac} available, see \secref{sec:hol-induct-tac}; these admit
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   386
  to refer directly to the internal structure of subgoals (including
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   387
  internally bound parameters).
df50bc1249d7 converted HOL specific elements;
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diff changeset
   388
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
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diff changeset
   389
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   390
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   391
section {* Recursive functions \label{sec:recursion} *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   392
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   393
text {*
df50bc1249d7 converted HOL specific elements;
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parents: 26840
diff changeset
   394
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
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parents: 28760
diff changeset
   395
    @{command_def (HOL) "primrec"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
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diff changeset
   396
    @{command_def (HOL) "fun"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   397
    @{command_def (HOL) "function"} & : & @{text "local_theory \<rightarrow> proof(prove)"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   398
    @{command_def (HOL) "termination"} & : & @{text "local_theory \<rightarrow> proof(prove)"} \\
26849
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wenzelm
parents: 26840
diff changeset
   399
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   400
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   401
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   402
    'primrec' target? fixes 'where' equations
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   403
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   404
    equations: (thmdecl? prop + '|')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   405
    ;
26985
51c5acd57b75 function: uniform treatment of target, not as config;
wenzelm
parents: 26894
diff changeset
   406
    ('fun' | 'function') target? functionopts? fixes 'where' clauses
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   407
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   408
    clauses: (thmdecl? prop ('(' 'otherwise' ')')? + '|')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   409
    ;
26985
51c5acd57b75 function: uniform treatment of target, not as config;
wenzelm
parents: 26894
diff changeset
   410
    functionopts: '(' (('sequential' | 'domintros' | 'tailrec' | 'default' term) + ',') ')'
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   411
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   412
    'termination' ( term )?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   413
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   414
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   415
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   416
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   417
  \item @{command (HOL) "primrec"} defines primitive recursive
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   418
  functions over datatypes, see also \cite{isabelle-HOL}.
df50bc1249d7 converted HOL specific elements;
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parents: 26840
diff changeset
   419
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
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diff changeset
   420
  \item @{command (HOL) "function"} defines functions by general
26849
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wenzelm
parents: 26840
diff changeset
   421
  wellfounded recursion. A detailed description with examples can be
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   422
  found in \cite{isabelle-function}. The function is specified by a
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   423
  set of (possibly conditional) recursive equations with arbitrary
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   424
  pattern matching. The command generates proof obligations for the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   425
  completeness and the compatibility of patterns.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   426
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   427
  The defined function is considered partial, and the resulting
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   428
  simplification rules (named @{text "f.psimps"}) and induction rule
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   429
  (named @{text "f.pinduct"}) are guarded by a generated domain
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   430
  predicate @{text "f_dom"}. The @{command (HOL) "termination"}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   431
  command can then be used to establish that the function is total.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   432
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   433
  \item @{command (HOL) "fun"} is a shorthand notation for ``@{command
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   434
  (HOL) "function"}~@{text "(sequential)"}, followed by automated
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   435
  proof attempts regarding pattern matching and termination.  See
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   436
  \cite{isabelle-function} for further details.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   437
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   438
  \item @{command (HOL) "termination"}~@{text f} commences a
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   439
  termination proof for the previously defined function @{text f}.  If
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   440
  this is omitted, the command refers to the most recent function
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   441
  definition.  After the proof is closed, the recursive equations and
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   442
  the induction principle is established.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   443
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   444
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   445
27452
5c1fb7d262bf adjusted rep_datatype
haftmann
parents: 27123
diff changeset
   446
  Recursive definitions introduced by the @{command (HOL) "function"}
5c1fb7d262bf adjusted rep_datatype
haftmann
parents: 27123
diff changeset
   447
  command accommodate
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   448
  reasoning by induction (cf.\ \secref{sec:cases-induct}): rule @{text
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   449
  "c.induct"} (where @{text c} is the name of the function definition)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   450
  refers to a specific induction rule, with parameters named according
33857
0cb5002c52db clarified; checked
krauss
parents: 31998
diff changeset
   451
  to the user-specified equations. Cases are numbered (starting from 1).
0cb5002c52db clarified; checked
krauss
parents: 31998
diff changeset
   452
0cb5002c52db clarified; checked
krauss
parents: 31998
diff changeset
   453
  For @{command (HOL) "primrec"}, the induction principle coincides
27452
5c1fb7d262bf adjusted rep_datatype
haftmann
parents: 27123
diff changeset
   454
  with structural recursion on the datatype the recursion is carried
5c1fb7d262bf adjusted rep_datatype
haftmann
parents: 27123
diff changeset
   455
  out.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   456
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   457
  The equations provided by these packages may be referred later as
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   458
  theorem list @{text "f.simps"}, where @{text f} is the (collective)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   459
  name of the functions defined.  Individual equations may be named
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   460
  explicitly as well.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   461
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   462
  The @{command (HOL) "function"} command accepts the following
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   463
  options.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   464
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   465
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   466
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   467
  \item @{text sequential} enables a preprocessor which disambiguates
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   468
  overlapping patterns by making them mutually disjoint.  Earlier
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   469
  equations take precedence over later ones.  This allows to give the
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   470
  specification in a format very similar to functional programming.
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   471
  Note that the resulting simplification and induction rules
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   472
  correspond to the transformed specification, not the one given
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   473
  originally. This usually means that each equation given by the user
36139
0c2538afe8e8 Spelling error: theroems -> theorems
hoelzl
parents: 35841
diff changeset
   474
  may result in several theorems.  Also note that this automatic
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   475
  transformation only works for ML-style datatype patterns.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   476
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   477
  \item @{text domintros} enables the automated generation of
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   478
  introduction rules for the domain predicate. While mostly not
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   479
  needed, they can be helpful in some proofs about partial functions.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   480
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   481
  \item @{text tailrec} generates the unconstrained recursive
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   482
  equations even without a termination proof, provided that the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   483
  function is tail-recursive. This currently only works
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   484
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   485
  \item @{text "default d"} allows to specify a default value for a
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   486
  (partial) function, which will ensure that @{text "f x = d x"}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   487
  whenever @{text "x \<notin> f_dom"}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   488
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   489
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   490
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   491
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   492
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   493
subsection {* Proof methods related to recursive definitions *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   494
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   495
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   496
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   497
    @{method_def (HOL) pat_completeness} & : & @{text method} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   498
    @{method_def (HOL) relation} & : & @{text method} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   499
    @{method_def (HOL) lexicographic_order} & : & @{text method} \\
33858
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   500
    @{method_def (HOL) size_change} & : & @{text method} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   501
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   502
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   503
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   504
    'relation' term
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   505
    ;
31912
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   506
    'lexicographic\_order' ( clasimpmod * )
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   507
    ;
33858
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   508
    'size\_change' ( orders ( clasimpmod * ) )
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   509
    ;
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   510
    orders: ( 'max' | 'min' | 'ms' ) *
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   511
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   512
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   513
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   514
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   515
  \item @{method (HOL) pat_completeness} is a specialized method to
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   516
  solve goals regarding the completeness of pattern matching, as
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   517
  required by the @{command (HOL) "function"} package (cf.\
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   518
  \cite{isabelle-function}).
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   519
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   520
  \item @{method (HOL) relation}~@{text R} introduces a termination
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   521
  proof using the relation @{text R}.  The resulting proof state will
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   522
  contain goals expressing that @{text R} is wellfounded, and that the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   523
  arguments of recursive calls decrease with respect to @{text R}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   524
  Usually, this method is used as the initial proof step of manual
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   525
  termination proofs.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   526
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   527
  \item @{method (HOL) "lexicographic_order"} attempts a fully
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   528
  automated termination proof by searching for a lexicographic
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   529
  combination of size measures on the arguments of the function. The
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   530
  method accepts the same arguments as the @{method auto} method,
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   531
  which it uses internally to prove local descents.  The same context
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   532
  modifiers as for @{method auto} are accepted, see
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   533
  \secref{sec:clasimp}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   534
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   535
  In case of failure, extensive information is printed, which can help
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   536
  to analyse the situation (cf.\ \cite{isabelle-function}).
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   537
33858
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   538
  \item @{method (HOL) "size_change"} also works on termination goals,
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   539
  using a variation of the size-change principle, together with a
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   540
  graph decomposition technique (see \cite{krauss_phd} for details).
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   541
  Three kinds of orders are used internally: @{text max}, @{text min},
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   542
  and @{text ms} (multiset), which is only available when the theory
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   543
  @{text Multiset} is loaded. When no order kinds are given, they are
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   544
  tried in order. The search for a termination proof uses SAT solving
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   545
  internally.
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   546
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   547
 For local descent proofs, the same context modifiers as for @{method
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   548
  auto} are accepted, see \secref{sec:clasimp}.
0c348f7997f7 documented size_change in isar-ref manual
krauss
parents: 33857
diff changeset
   549
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   550
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   551
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   552
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   553
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   554
subsection {* Old-style recursive function definitions (TFL) *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   555
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   556
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   557
  The old TFL commands @{command (HOL) "recdef"} and @{command (HOL)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   558
  "recdef_tc"} for defining recursive are mostly obsolete; @{command
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   559
  (HOL) "function"} or @{command (HOL) "fun"} should be used instead.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   560
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   561
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   562
    @{command_def (HOL) "recdef"} & : & @{text "theory \<rightarrow> theory)"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   563
    @{command_def (HOL) "recdef_tc"}@{text "\<^sup>*"} & : & @{text "theory \<rightarrow> proof(prove)"} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   564
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   565
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   566
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   567
    'recdef' ('(' 'permissive' ')')? \\ name term (prop +) hints?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   568
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   569
    recdeftc thmdecl? tc
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   570
    ;
31912
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   571
    hints: '(' 'hints' ( recdefmod * ) ')'
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   572
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   573
    recdefmod: (('recdef\_simp' | 'recdef\_cong' | 'recdef\_wf') (() | 'add' | 'del') ':' thmrefs) | clasimpmod
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   574
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   575
    tc: nameref ('(' nat ')')?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   576
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   577
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   578
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   579
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   580
  
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   581
  \item @{command (HOL) "recdef"} defines general well-founded
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   582
  recursive functions (using the TFL package), see also
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   583
  \cite{isabelle-HOL}.  The ``@{text "(permissive)"}'' option tells
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   584
  TFL to recover from failed proof attempts, returning unfinished
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   585
  results.  The @{text recdef_simp}, @{text recdef_cong}, and @{text
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   586
  recdef_wf} hints refer to auxiliary rules to be used in the internal
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   587
  automated proof process of TFL.  Additional @{syntax clasimpmod}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   588
  declarations (cf.\ \secref{sec:clasimp}) may be given to tune the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   589
  context of the Simplifier (cf.\ \secref{sec:simplifier}) and
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   590
  Classical reasoner (cf.\ \secref{sec:classical}).
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   591
  
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   592
  \item @{command (HOL) "recdef_tc"}~@{text "c (i)"} recommences the
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   593
  proof for leftover termination condition number @{text i} (default
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   594
  1) as generated by a @{command (HOL) "recdef"} definition of
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   595
  constant @{text c}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   596
  
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   597
  Note that in most cases, @{command (HOL) "recdef"} is able to finish
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   598
  its internal proofs without manual intervention.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   599
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   600
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   601
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   602
  \medskip Hints for @{command (HOL) "recdef"} may be also declared
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   603
  globally, using the following attributes.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   604
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   605
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   606
    @{attribute_def (HOL) recdef_simp} & : & @{text attribute} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   607
    @{attribute_def (HOL) recdef_cong} & : & @{text attribute} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   608
    @{attribute_def (HOL) recdef_wf} & : & @{text attribute} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   609
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   610
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   611
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   612
    ('recdef\_simp' | 'recdef\_cong' | 'recdef\_wf') (() | 'add' | 'del')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   613
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   614
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   615
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   616
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   617
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   618
section {* Inductive and coinductive definitions \label{sec:hol-inductive} *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   619
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   620
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   621
  An \textbf{inductive definition} specifies the least predicate (or
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   622
  set) @{text R} closed under given rules: applying a rule to elements
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   623
  of @{text R} yields a result within @{text R}.  For example, a
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   624
  structural operational semantics is an inductive definition of an
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   625
  evaluation relation.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   626
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   627
  Dually, a \textbf{coinductive definition} specifies the greatest
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   628
  predicate~/ set @{text R} that is consistent with given rules: every
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   629
  element of @{text R} can be seen as arising by applying a rule to
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   630
  elements of @{text R}.  An important example is using bisimulation
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   631
  relations to formalise equivalence of processes and infinite data
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   632
  structures.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   633
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   634
  \medskip The HOL package is related to the ZF one, which is
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   635
  described in a separate paper,\footnote{It appeared in CADE
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   636
  \cite{paulson-CADE}; a longer version is distributed with Isabelle.}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   637
  which you should refer to in case of difficulties.  The package is
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   638
  simpler than that of ZF thanks to implicit type-checking in HOL.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   639
  The types of the (co)inductive predicates (or sets) determine the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   640
  domain of the fixedpoint definition, and the package does not have
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   641
  to use inference rules for type-checking.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   642
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   643
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   644
    @{command_def (HOL) "inductive"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   645
    @{command_def (HOL) "inductive_set"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   646
    @{command_def (HOL) "coinductive"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   647
    @{command_def (HOL) "coinductive_set"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   648
    @{attribute_def (HOL) mono} & : & @{text attribute} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   649
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   650
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   651
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   652
    ('inductive' | 'inductive\_set' | 'coinductive' | 'coinductive\_set') target? fixes ('for' fixes)? \\
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   653
    ('where' clauses)? ('monos' thmrefs)?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   654
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   655
    clauses: (thmdecl? prop + '|')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   656
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   657
    'mono' (() | 'add' | 'del')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   658
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   659
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   660
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   661
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   662
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   663
  \item @{command (HOL) "inductive"} and @{command (HOL)
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   664
  "coinductive"} define (co)inductive predicates from the
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   665
  introduction rules given in the @{keyword "where"} part.  The
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   666
  optional @{keyword "for"} part contains a list of parameters of the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   667
  (co)inductive predicates that remain fixed throughout the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   668
  definition.  The optional @{keyword "monos"} section contains
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   669
  \emph{monotonicity theorems}, which are required for each operator
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   670
  applied to a recursive set in the introduction rules.  There
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   671
  \emph{must} be a theorem of the form @{text "A \<le> B \<Longrightarrow> M A \<le> M B"},
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   672
  for each premise @{text "M R\<^sub>i t"} in an introduction rule!
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   673
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   674
  \item @{command (HOL) "inductive_set"} and @{command (HOL)
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   675
  "coinductive_set"} are wrappers for to the previous commands,
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   676
  allowing the definition of (co)inductive sets.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   677
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   678
  \item @{attribute (HOL) mono} declares monotonicity rules.  These
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   679
  rule are involved in the automated monotonicity proof of @{command
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   680
  (HOL) "inductive"}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   681
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   682
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   683
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   684
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   685
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   686
subsection {* Derived rules *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   687
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   688
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   689
  Each (co)inductive definition @{text R} adds definitions to the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   690
  theory and also proves some theorems:
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   691
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   692
  \begin{description}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   693
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   694
  \item @{text R.intros} is the list of introduction rules as proven
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   695
  theorems, for the recursive predicates (or sets).  The rules are
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   696
  also available individually, using the names given them in the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   697
  theory file;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   698
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   699
  \item @{text R.cases} is the case analysis (or elimination) rule;
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   700
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   701
  \item @{text R.induct} or @{text R.coinduct} is the (co)induction
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   702
  rule.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   703
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   704
  \end{description}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   705
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   706
  When several predicates @{text "R\<^sub>1, \<dots>, R\<^sub>n"} are
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   707
  defined simultaneously, the list of introduction rules is called
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   708
  @{text "R\<^sub>1_\<dots>_R\<^sub>n.intros"}, the case analysis rules are
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   709
  called @{text "R\<^sub>1.cases, \<dots>, R\<^sub>n.cases"}, and the list
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   710
  of mutual induction rules is called @{text
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   711
  "R\<^sub>1_\<dots>_R\<^sub>n.inducts"}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   712
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   713
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   714
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   715
subsection {* Monotonicity theorems *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   716
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   717
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   718
  Each theory contains a default set of theorems that are used in
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   719
  monotonicity proofs.  New rules can be added to this set via the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   720
  @{attribute (HOL) mono} attribute.  The HOL theory @{text Inductive}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   721
  shows how this is done.  In general, the following monotonicity
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   722
  theorems may be added:
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   723
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   724
  \begin{itemize}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   725
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   726
  \item Theorems of the form @{text "A \<le> B \<Longrightarrow> M A \<le> M B"}, for proving
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   727
  monotonicity of inductive definitions whose introduction rules have
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   728
  premises involving terms such as @{text "M R\<^sub>i t"}.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   729
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   730
  \item Monotonicity theorems for logical operators, which are of the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   731
  general form @{text "(\<dots> \<longrightarrow> \<dots>) \<Longrightarrow> \<dots> (\<dots> \<longrightarrow> \<dots>) \<Longrightarrow> \<dots> \<longrightarrow> \<dots>"}.  For example, in
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   732
  the case of the operator @{text "\<or>"}, the corresponding theorem is
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   733
  \[
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   734
  \infer{@{text "P\<^sub>1 \<or> P\<^sub>2 \<longrightarrow> Q\<^sub>1 \<or> Q\<^sub>2"}}{@{text "P\<^sub>1 \<longrightarrow> Q\<^sub>1"} & @{text "P\<^sub>2 \<longrightarrow> Q\<^sub>2"}}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   735
  \]
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   736
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   737
  \item De Morgan style equations for reasoning about the ``polarity''
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   738
  of expressions, e.g.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   739
  \[
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   740
  @{prop "\<not> \<not> P \<longleftrightarrow> P"} \qquad\qquad
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   741
  @{prop "\<not> (P \<and> Q) \<longleftrightarrow> \<not> P \<or> \<not> Q"}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   742
  \]
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   743
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   744
  \item Equations for reducing complex operators to more primitive
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   745
  ones whose monotonicity can easily be proved, e.g.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   746
  \[
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   747
  @{prop "(P \<longrightarrow> Q) \<longleftrightarrow> \<not> P \<or> Q"} \qquad\qquad
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   748
  @{prop "Ball A P \<equiv> \<forall>x. x \<in> A \<longrightarrow> P x"}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   749
  \]
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   750
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   751
  \end{itemize}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   752
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   753
  %FIXME: Example of an inductive definition
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   754
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   755
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   756
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   757
section {* Arithmetic proof support *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   758
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   759
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   760
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   761
    @{method_def (HOL) arith} & : & @{text method} \\
30863
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   762
    @{attribute_def (HOL) arith} & : & @{text attribute} \\
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   763
    @{attribute_def (HOL) arith_split} & : & @{text attribute} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   764
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   765
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   766
  The @{method (HOL) arith} method decides linear arithmetic problems
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   767
  (on types @{text nat}, @{text int}, @{text real}).  Any current
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   768
  facts are inserted into the goal before running the procedure.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   769
30863
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   770
  The @{attribute (HOL) arith} attribute declares facts that are
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   771
  always supplied to the arithmetic provers implicitly.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   772
30863
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   773
  The @{attribute (HOL) arith_split} attribute declares case split
30865
5106e13d400f fixed formal markup;
wenzelm
parents: 30863
diff changeset
   774
  rules to be expanded before @{method (HOL) arith} is invoked.
30863
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   775
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   776
  Note that a simpler (but faster) arithmetic prover is
5dc392a59bb7 Finite_Set: lemma
nipkow
parents: 30242
diff changeset
   777
  already invoked by the Simplifier.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   778
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   779
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   780
30169
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   781
section {* Intuitionistic proof search *}
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   782
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   783
text {*
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   784
  \begin{matharray}{rcl}
30171
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   785
    @{method_def (HOL) iprover} & : & @{text method} \\
30169
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   786
  \end{matharray}
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   787
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   788
  \begin{rail}
35613
9d3ff36ad4e1 eliminated Args.bang_facts (legacy feature);
wenzelm
parents: 35351
diff changeset
   789
    'iprover' ( rulemod * )
30169
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   790
    ;
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   791
  \end{rail}
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   792
30171
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   793
  The @{method (HOL) iprover} method performs intuitionistic proof
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   794
  search, depending on specifically declared rules from the context,
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   795
  or given as explicit arguments.  Chained facts are inserted into the
35613
9d3ff36ad4e1 eliminated Args.bang_facts (legacy feature);
wenzelm
parents: 35351
diff changeset
   796
  goal before commencing proof search.
9d3ff36ad4e1 eliminated Args.bang_facts (legacy feature);
wenzelm
parents: 35351
diff changeset
   797
30169
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   798
  Rules need to be classified as @{attribute (Pure) intro},
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   799
  @{attribute (Pure) elim}, or @{attribute (Pure) dest}; here the
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   800
  ``@{text "!"}'' indicator refers to ``safe'' rules, which may be
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   801
  applied aggressively (without considering back-tracking later).
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   802
  Rules declared with ``@{text "?"}'' are ignored in proof search (the
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   803
  single-step @{method rule} method still observes these).  An
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   804
  explicit weight annotation may be given as well; otherwise the
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   805
  number of rule premises will be taken into account here.
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   806
*}
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   807
9531eaafd781 moved method "iprover" to HOL specific part;
wenzelm
parents: 29560
diff changeset
   808
30171
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   809
section {* Coherent Logic *}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   810
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   811
text {*
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   812
  \begin{matharray}{rcl}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   813
    @{method_def (HOL) "coherent"} & : & @{text method} \\
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   814
  \end{matharray}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   815
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   816
  \begin{rail}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   817
    'coherent' thmrefs?
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   818
    ;
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   819
  \end{rail}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   820
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   821
  The @{method (HOL) coherent} method solves problems of
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   822
  \emph{Coherent Logic} \cite{Bezem-Coquand:2005}, which covers
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   823
  applications in confluence theory, lattice theory and projective
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   824
  geometry.  See @{"file" "~~/src/HOL/ex/Coherent.thy"} for some
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   825
  examples.
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   826
*}
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   827
5989863ffafc added method "coherent";
wenzelm
parents: 30169
diff changeset
   828
31912
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   829
section {* Checking and refuting propositions *}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   830
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   831
text {*
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   832
  Identifying incorrect propositions usually involves evaluation of
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   833
  particular assignments and systematic counter example search.  This
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   834
  is supported by the following commands.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   835
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   836
  \begin{matharray}{rcl}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   837
    @{command_def (HOL) "value"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   838
    @{command_def (HOL) "quickcheck"}@{text "\<^sup>*"} & : & @{text "proof \<rightarrow>"} \\
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   839
    @{command_def (HOL) "quickcheck_params"} & : & @{text "theory \<rightarrow> theory"}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   840
  \end{matharray}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   841
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   842
  \begin{rail}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   843
    'value' ( ( '[' name ']' ) ? ) modes? term
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   844
    ;
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   845
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   846
    'quickcheck' ( ( '[' args ']' ) ? ) nat?
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   847
    ;
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   848
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   849
    'quickcheck_params' ( ( '[' args ']' ) ? )
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   850
    ;
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   851
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   852
    modes: '(' (name + ) ')'
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   853
    ;
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   854
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   855
    args: ( name '=' value + ',' )
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   856
    ;
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   857
  \end{rail}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   858
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   859
  \begin{description}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   860
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   861
  \item @{command (HOL) "value"}~@{text t} evaluates and prints a
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   862
    term; optionally @{text modes} can be specified, which are
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   863
    appended to the current print mode (see also \cite{isabelle-ref}).
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   864
    Internally, the evaluation is performed by registered evaluators,
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   865
    which are invoked sequentially until a result is returned.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   866
    Alternatively a specific evaluator can be selected using square
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   867
    brackets; available evaluators include @{text nbe} for
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   868
    \emph{normalization by evaluation} and \emph{code} for code
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   869
    generation in SML.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   870
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   871
  \item @{command (HOL) "quickcheck"} tests the current goal for
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   872
    counter examples using a series of arbitrary assignments for its
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   873
    free variables; by default the first subgoal is tested, an other
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   874
    can be selected explicitly using an optional goal index.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   875
    A number of configuration options are supported for
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   876
    @{command (HOL) "quickcheck"}, notably:
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   877
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   878
    \begin{description}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   879
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   880
      \item[size] specifies the maximum size of the search space for
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   881
        assignment values.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   882
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   883
      \item[iterations] sets how many sets of assignments are
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   884
        generated for each particular size.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   885
35331
450ab945c451 document Quickcheck's "no_assms" option
blanchet
parents: 34172
diff changeset
   886
      \item[no\_assms] specifies whether assumptions in
450ab945c451 document Quickcheck's "no_assms" option
blanchet
parents: 34172
diff changeset
   887
        structured proofs should be ignored.
450ab945c451 document Quickcheck's "no_assms" option
blanchet
parents: 34172
diff changeset
   888
31912
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   889
    \end{description}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   890
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   891
    These option can be given within square brackets.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   892
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   893
  \item @{command (HOL) "quickcheck_params"} changes quickcheck
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   894
    configuration options persitently.
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   895
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   896
  \end{description}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   897
*}
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   898
f5bd306f5e9d more friendly wrt. PGs interpretation of compound *); added dedicated section on value and quickcheck
haftmann
parents: 31254
diff changeset
   899
28752
wenzelm
parents: 28687
diff changeset
   900
section {* Unstructured case analysis and induction \label{sec:hol-induct-tac} *}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   901
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   902
text {*
27123
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   903
  The following tools of Isabelle/HOL support cases analysis and
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   904
  induction in unstructured tactic scripts; see also
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   905
  \secref{sec:cases-induct} for proper Isar versions of similar ideas.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   906
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   907
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   908
    @{method_def (HOL) case_tac}@{text "\<^sup>*"} & : & @{text method} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   909
    @{method_def (HOL) induct_tac}@{text "\<^sup>*"} & : & @{text method} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   910
    @{method_def (HOL) ind_cases}@{text "\<^sup>*"} & : & @{text method} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
   911
    @{command_def (HOL) "inductive_cases"}@{text "\<^sup>*"} & : & @{text "local_theory \<rightarrow> local_theory"} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   912
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   913
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   914
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   915
    'case\_tac' goalspec? term rule?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   916
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   917
    'induct\_tac' goalspec? (insts * 'and') rule?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   918
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   919
    'ind\_cases' (prop +) ('for' (name +)) ?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   920
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   921
    'inductive\_cases' (thmdecl? (prop +) + 'and')
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   922
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   923
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   924
    rule: ('rule' ':' thmref)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   925
    ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   926
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   927
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   928
  \begin{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   929
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   930
  \item @{method (HOL) case_tac} and @{method (HOL) induct_tac} admit
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   931
  to reason about inductive types.  Rules are selected according to
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   932
  the declarations by the @{attribute cases} and @{attribute induct}
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   933
  attributes, cf.\ \secref{sec:cases-induct}.  The @{command (HOL)
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   934
  datatype} package already takes care of this.
27123
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   935
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   936
  These unstructured tactics feature both goal addressing and dynamic
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   937
  instantiation.  Note that named rule cases are \emph{not} provided
27123
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   938
  as would be by the proper @{method cases} and @{method induct} proof
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   939
  methods (see \secref{sec:cases-induct}).  Unlike the @{method
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   940
  induct} method, @{method induct_tac} does not handle structured rule
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   941
  statements, only the compact object-logic conclusion of the subgoal
11fcdd5897dd case_tac/induct_tac: use same declarations as cases/induct;
wenzelm
parents: 27103
diff changeset
   942
  being addressed.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   943
  
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   944
  \item @{method (HOL) ind_cases} and @{command (HOL)
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   945
  "inductive_cases"} provide an interface to the internal @{ML_text
26860
7c749112261c replaced some latex macros by antiquotations;
wenzelm
parents: 26852
diff changeset
   946
  mk_cases} operation.  Rules are simplified in an unrestricted
7c749112261c replaced some latex macros by antiquotations;
wenzelm
parents: 26852
diff changeset
   947
  forward manner.
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   948
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   949
  While @{method (HOL) ind_cases} is a proof method to apply the
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   950
  result immediately as elimination rules, @{command (HOL)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   951
  "inductive_cases"} provides case split theorems at the theory level
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   952
  for later use.  The @{keyword "for"} argument of the @{method (HOL)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   953
  ind_cases} method allows to specify a list of variables that should
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   954
  be generalized before applying the resulting rule.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   955
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
   956
  \end{description}
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   957
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   958
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   959
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   960
section {* Executable code *}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   961
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   962
text {*
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   963
  Isabelle/Pure provides two generic frameworks to support code
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   964
  generation from executable specifications.  Isabelle/HOL
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   965
  instantiates these mechanisms in a way that is amenable to end-user
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   966
  applications.
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
   967
37422
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   968
  \medskip One framework generates code from functional programs
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   969
  (including overloading using type classes) to SML \cite{SML}, OCaml
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   970
  \cite{OCaml} and Haskell \cite{haskell-revised-report}.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   971
  Conceptually, code generation is split up in three steps:
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   972
  \emph{selection} of code theorems, \emph{translation} into an
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   973
  abstract executable view and \emph{serialization} to a specific
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   974
  \emph{target language}.  Inductive specifications can be executed
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   975
  using the predicate compiler which operates within HOL.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   976
  See \cite{isabelle-codegen} for an introduction.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   977
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   978
  \begin{matharray}{rcl}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   979
    @{command_def (HOL) "export_code"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   980
    @{attribute_def (HOL) code} & : & @{text attribute} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   981
    @{command_def (HOL) "code_abort"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   982
    @{command_def (HOL) "code_datatype"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   983
    @{command_def (HOL) "print_codesetup"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   984
    @{attribute_def (HOL) code_inline} & : & @{text attribute} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   985
    @{attribute_def (HOL) code_post} & : & @{text attribute} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   986
    @{command_def (HOL) "print_codeproc"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   987
    @{command_def (HOL) "code_thms"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   988
    @{command_def (HOL) "code_deps"}@{text "\<^sup>*"} & : & @{text "context \<rightarrow>"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   989
    @{command_def (HOL) "code_const"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   990
    @{command_def (HOL) "code_type"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   991
    @{command_def (HOL) "code_class"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   992
    @{command_def (HOL) "code_instance"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   993
    @{command_def (HOL) "code_reserved"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   994
    @{command_def (HOL) "code_monad"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   995
    @{command_def (HOL) "code_include"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   996
    @{command_def (HOL) "code_modulename"} & : & @{text "theory \<rightarrow> theory"} \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   997
  \end{matharray}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   998
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
   999
  \begin{rail}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1000
    'export\_code' ( constexpr + ) \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1001
      ( ( 'in' target ( 'module\_name' string ) ? \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1002
        ( 'file' ( string | '-' ) ) ? ( '(' args ')' ) ?) + ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1003
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1004
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1005
    const: term
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1006
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1007
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1008
    constexpr: ( const | 'name.*' | '*' )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1009
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1010
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1011
    typeconstructor: nameref
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1012
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1013
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1014
    class: nameref
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1015
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1016
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1017
    target: 'OCaml' | 'SML' | 'Haskell'
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1018
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1019
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1020
    'code' ( 'del' ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1021
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1022
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1023
    'code\_abort' ( const + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1024
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1025
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1026
    'code\_datatype' ( const + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1027
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1028
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1029
    'code_inline' ( 'del' ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1030
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1031
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1032
    'code_post' ( 'del' ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1033
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1034
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1035
    'code\_thms' ( constexpr + ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1036
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1037
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1038
    'code\_deps' ( constexpr + ) ?
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1039
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1040
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1041
    'code\_const' (const + 'and') \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1042
      ( ( '(' target ( syntax ? + 'and' ) ')' ) + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1043
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1044
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1045
    'code\_type' (typeconstructor + 'and') \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1046
      ( ( '(' target ( syntax ? + 'and' ) ')' ) + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1047
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1048
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1049
    'code\_class' (class + 'and') \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1050
      ( ( '(' target \\ ( string ? + 'and' ) ')' ) + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1051
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1052
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1053
    'code\_instance' (( typeconstructor '::' class ) + 'and') \\
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1054
      ( ( '(' target ( '-' ? + 'and' ) ')' ) + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1055
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1056
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1057
    'code\_reserved' target ( string + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1058
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1059
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1060
    'code\_monad' const const target
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1061
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1062
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1063
    'code\_include' target ( string ( string | '-') )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1064
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1065
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1066
    'code\_modulename' target ( ( string string ) + )
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1067
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1068
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1069
    syntax: string | ( 'infix' | 'infixl' | 'infixr' ) nat string
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1070
    ;
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1071
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1072
  \end{rail}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1073
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1074
  \begin{description}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1075
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1076
  \item @{command (HOL) "export_code"} generates code for a given list
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1077
  of constants in the specified target language(s).  If no serialization
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1078
  instruction is given, only abstract code is generated internally.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1079
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1080
  Constants may be specified by giving them literally, referring to
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1081
  all executable contants within a certain theory by giving @{text
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1082
  "name.*"}, or referring to \emph{all} executable constants currently
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1083
  available by giving @{text "*"}.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1084
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1085
  By default, for each involved theory one corresponding name space
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1086
  module is generated.  Alternativly, a module name may be specified
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1087
  after the @{keyword "module_name"} keyword; then \emph{all} code is
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1088
  placed in this module.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1089
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1090
  For \emph{SML} and \emph{OCaml}, the file specification refers to a
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1091
  single file; for \emph{Haskell}, it refers to a whole directory,
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1092
  where code is generated in multiple files reflecting the module
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1093
  hierarchy.  The file specification ``@{text "-"}'' denotes standard
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1094
  output.  For \emph{SML}, omitting the file specification compiles
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1095
  code internally in the context of the current ML session.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1096
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1097
  Serializers take an optional list of arguments in parentheses.  For
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1098
  \emph{SML} and \emph{OCaml}, ``@{text no_signatures}`` omits
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1099
  explicit module signatures.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1100
  
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1101
  For \emph{Haskell} a module name prefix may be given using the ``@{text
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1102
  "root:"}'' argument; ``@{text string_classes}'' adds a ``@{verbatim
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1103
  "deriving (Read, Show)"}'' clause to each appropriate datatype
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1104
  declaration.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1105
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1106
  \item @{attribute (HOL) code} explicitly selects (or with option
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1107
  ``@{text "del"}'' deselects) a code equation for code
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1108
  generation.  Usually packages introducing code equations provide
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1109
  a reasonable default setup for selection.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1110
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1111
  \item @{command (HOL) "code_abort"} declares constants which are not
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1112
  required to have a definition by means of code equations; if
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1113
  needed these are implemented by program abort instead.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1114
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1115
  \item @{command (HOL) "code_datatype"} specifies a constructor set
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1116
  for a logical type.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1117
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1118
  \item @{command (HOL) "print_codesetup"} gives an overview on
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1119
  selected code equations and code generator datatypes.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1120
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1121
  \item @{attribute (HOL) code_inline} declares (or with
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1122
  option ``@{text "del"}'' removes) inlining theorems which are
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1123
  applied as rewrite rules to any code equation during
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1124
  preprocessing.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1125
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1126
  \item @{attribute (HOL) code_post} declares (or with
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1127
  option ``@{text "del"}'' removes) theorems which are
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1128
  applied as rewrite rules to any result of an evaluation.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1129
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1130
  \item @{command (HOL) "print_codeproc"} prints the setup
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1131
  of the code generator preprocessor.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1132
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1133
  \item @{command (HOL) "code_thms"} prints a list of theorems
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1134
  representing the corresponding program containing all given
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1135
  constants after preprocessing.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1136
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1137
  \item @{command (HOL) "code_deps"} visualizes dependencies of
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1138
  theorems representing the corresponding program containing all given
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1139
  constants after preprocessing.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1140
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1141
  \item @{command (HOL) "code_const"} associates a list of constants
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1142
  with target-specific serializations; omitting a serialization
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1143
  deletes an existing serialization.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1144
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1145
  \item @{command (HOL) "code_type"} associates a list of type
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1146
  constructors with target-specific serializations; omitting a
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1147
  serialization deletes an existing serialization.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1148
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1149
  \item @{command (HOL) "code_class"} associates a list of classes
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1150
  with target-specific class names; omitting a serialization deletes
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1151
  an existing serialization.  This applies only to \emph{Haskell}.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1152
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1153
  \item @{command (HOL) "code_instance"} declares a list of type
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1154
  constructor / class instance relations as ``already present'' for a
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1155
  given target.  Omitting a ``@{text "-"}'' deletes an existing
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1156
  ``already present'' declaration.  This applies only to
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1157
  \emph{Haskell}.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1158
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1159
  \item @{command (HOL) "code_reserved"} declares a list of names as
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1160
  reserved for a given target, preventing it to be shadowed by any
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1161
  generated code.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1162
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1163
  \item @{command (HOL) "code_monad"} provides an auxiliary mechanism
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1164
  to generate monadic code for Haskell.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1165
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1166
  \item @{command (HOL) "code_include"} adds arbitrary named content
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1167
  (``include'') to generated code.  A ``@{text "-"}'' as last argument
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1168
  will remove an already added ``include''.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1169
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1170
  \item @{command (HOL) "code_modulename"} declares aliasings from one
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1171
  module name onto another.
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1172
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1173
  \end{description}
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1174
6d19e4e6ebf5 tuned internal order
haftmann
parents: 37420
diff changeset
  1175
  The other framework generates code from both functional and relational
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1176
  programs to SML.  See \cite{isabelle-HOL} for further information
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1177
  (this actually covers the new-style theory format as well).
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1178
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1179
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1180
    @{command_def (HOL) "code_module"} & : & @{text "theory \<rightarrow> theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1181
    @{command_def (HOL) "code_library"} & : & @{text "theory \<rightarrow> theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1182
    @{command_def (HOL) "consts_code"} & : & @{text "theory \<rightarrow> theory"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1183
    @{command_def (HOL) "types_code"} & : & @{text "theory \<rightarrow> theory"} \\  
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1184
    @{attribute_def (HOL) code} & : & @{text attribute} \\
26849
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1185
  \end{matharray}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1186
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1187
  \begin{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1188
  ( 'code\_module' | 'code\_library' ) modespec ? name ? \\
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1189
    ( 'file' name ) ? ( 'imports' ( name + ) ) ? \\
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1190
    'contains' ( ( name '=' term ) + | term + )
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1191
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1192
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1193
  modespec: '(' ( name * ) ')'
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1194
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1195
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1196
  'consts\_code' (codespec +)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1197
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1198
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1199
  codespec: const template attachment ?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1200
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1201
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1202
  'types\_code' (tycodespec +)
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1203
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1204
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1205
  tycodespec: name template attachment ?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1206
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1207
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1208
  const: term
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1209
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1210
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1211
  template: '(' string ')'
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1212
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1213
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1214
  attachment: 'attach' modespec ? verblbrace text verbrbrace
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1215
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1216
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1217
  'code' (name)?
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1218
  ;
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1219
  \end{rail}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1220
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1221
*}
df50bc1249d7 converted HOL specific elements;
wenzelm
parents: 26840
diff changeset
  1222
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1223
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1224
section {* Definition by specification \label{sec:hol-specification} *}
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1225
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1226
text {*
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1227
  \begin{matharray}{rcl}
28761
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1228
    @{command_def (HOL) "specification"} & : & @{text "theory \<rightarrow> proof(prove)"} \\
9ec4482c9201 updated/refined types of Isar language elements, removed special LaTeX macros;
wenzelm
parents: 28760
diff changeset
  1229
    @{command_def (HOL) "ax_specification"} & : & @{text "theory \<rightarrow> proof(prove)"} \\
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1230
  \end{matharray}
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1231
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1232
  \begin{rail}
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1233
  ('specification' | 'ax\_specification') '(' (decl +) ')' \\ (thmdecl? prop +)
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1234
  ;
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1235
  decl: ((name ':')? term '(' 'overloaded' ')'?)
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1236
  \end{rail}
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1237
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1238
  \begin{description}
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1239
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1240
  \item @{command (HOL) "specification"}~@{text "decls \<phi>"} sets up a
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1241
  goal stating the existence of terms with the properties specified to
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1242
  hold for the constants given in @{text decls}.  After finishing the
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1243
  proof, the theory will be augmented with definitions for the given
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1244
  constants, as well as with theorems stating the properties for these
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1245
  constants.
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1246
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1247
  \item @{command (HOL) "ax_specification"}~@{text "decls \<phi>"} sets up
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1248
  a goal stating the existence of terms with the properties specified
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1249
  to hold for the constants given in @{text decls}.  After finishing
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1250
  the proof, the theory will be augmented with axioms expressing the
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1251
  properties given in the first place.
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1252
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1253
  \item @{text decl} declares a constant to be defined by the
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1254
  specification given.  The definition for the constant @{text c} is
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1255
  bound to the name @{text c_def} unless a theorem name is given in
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1256
  the declaration.  Overloaded constants should be declared as such.
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1257
28760
cbc435f7b16b unified use of declaration environment with IsarImplementation;
wenzelm
parents: 28752
diff changeset
  1258
  \end{description}
27045
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1259
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1260
  Whether to use @{command (HOL) "specification"} or @{command (HOL)
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1261
  "ax_specification"} is to some extent a matter of style.  @{command
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1262
  (HOL) "specification"} introduces no new axioms, and so by
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1263
  construction cannot introduce inconsistencies, whereas @{command
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1264
  (HOL) "ax_specification"} does introduce axioms, but only after the
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1265
  user has explicitly proven it to be safe.  A practical issue must be
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1266
  considered, though: After introducing two constants with the same
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1267
  properties using @{command (HOL) "specification"}, one can prove
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1268
  that the two constants are, in fact, equal.  If this might be a
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1269
  problem, one should use @{command (HOL) "ax_specification"}.
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1270
*}
4e7ecec1b685 moved (ax_)specification to end;
wenzelm
parents: 27041
diff changeset
  1271
26840
ec46381f149d added logic-specific sessions;
wenzelm
parents:
diff changeset
  1272
end