src/HOL/Statespace/state_space.ML
author wenzelm
Sat Mar 07 23:30:58 2009 +0100 (2009-03-07)
changeset 30346 90efbb8a8cb2
parent 30289 b28caca9157f
child 30364 577edc39b501
permissions -rw-r--r--
minimal adaptions for abstract binding type;
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(*  Title:      HOL/Statespace/state_space.ML
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    Author:     Norbert Schirmer, TU Muenchen
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*)
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signature STATE_SPACE =
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  sig
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    val KN : string
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    val distinct_compsN : string
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    val getN : string
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    val putN : string
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    val injectN : string
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    val namespaceN : string
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    val projectN : string
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    val valuetypesN : string
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    val namespace_definition :
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       bstring ->
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       typ ->
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       Expression.expression ->
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       string list -> string list -> theory -> theory
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    val define_statespace :
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       string list ->
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       string ->
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       (string list * bstring * (string * string) list) list ->
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       (string * string) list -> theory -> theory
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    val define_statespace_i :
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       string option ->
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       string list ->
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       string ->
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       (typ list * bstring * (string * string) list) list ->
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       (string * typ) list -> theory -> theory
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    val statespace_decl :
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       OuterParse.token list ->
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       ((string list * bstring) *
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         ((string list * xstring * (bstring * bstring) list) list *
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          (bstring * string) list)) * OuterParse.token list
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    val neq_x_y : Proof.context -> term -> term -> thm option
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    val distinctNameSolver : Simplifier.solver
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    val distinctTree_tac :
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       Proof.context -> term * int -> Tactical.tactic
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    val distinct_simproc : Simplifier.simproc
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    val get_comp : Context.generic -> string -> (typ * string) Option.option
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    val get_silent : Context.generic -> bool
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    val set_silent : bool -> Context.generic -> Context.generic
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    val gen_lookup_tr : Proof.context -> term -> string -> term
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    val lookup_swap_tr : Proof.context -> term list -> term
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    val lookup_tr : Proof.context -> term list -> term
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    val lookup_tr' : Proof.context -> term list -> term
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    val gen_update_tr :
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       bool -> Proof.context -> string -> term -> term -> term
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    val update_tr : Proof.context -> term list -> term
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    val update_tr' : Proof.context -> term list -> term
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  end;
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structure StateSpace : STATE_SPACE =
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struct
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(* Theorems *)
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(* Names *)
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val distinct_compsN = "distinct_names"
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val namespaceN = "_namespace"
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val valuetypesN = "_valuetypes"
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val projectN = "project"
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val injectN = "inject"
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val getN = "get"
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val putN = "put"
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val project_injectL = "StateSpaceLocale.project_inject";
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val KN = "StateFun.K_statefun"
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(* Library *)
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fun fold1 f xs = fold f (tl xs) (hd xs)
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fun fold1' f [] x = x
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  | fold1' f xs _ = fold1 f xs
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fun sublist_idx eq xs ys =
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  let
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    fun sublist n xs ys =
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         if is_prefix eq xs ys then SOME n
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         else (case ys of [] => NONE
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               | (y::ys') => sublist (n+1) xs ys')
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  in sublist 0 xs ys end;
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fun is_sublist eq xs ys = is_some (sublist_idx eq xs ys);
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fun sorted_subset eq [] ys = true
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  | sorted_subset eq (x::xs) [] = false
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  | sorted_subset eq (x::xs) (y::ys) = if eq (x,y) then sorted_subset eq xs ys
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                                       else sorted_subset eq (x::xs) ys;
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type namespace_info =
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 {declinfo: (typ*string) Termtab.table, (* type, name of statespace *)
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  distinctthm: thm Symtab.table,
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  silent: bool
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 };
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structure NameSpaceArgs =
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struct
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  type T = namespace_info;
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  val empty = {declinfo = Termtab.empty, distinctthm = Symtab.empty, silent = false};
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  val extend = I;
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  fun merge pp ({declinfo=declinfo1, distinctthm=distinctthm1, silent=silent1},
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                {declinfo=declinfo2, distinctthm=distinctthm2, silent=silent2}) =
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                {declinfo = Termtab.merge (K true) (declinfo1, declinfo2),
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                 distinctthm = Symtab.merge (K true) (distinctthm1, distinctthm2),
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                 silent = silent1 andalso silent2}
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end;
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structure NameSpaceData = GenericDataFun(NameSpaceArgs);
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fun make_namespace_data declinfo distinctthm silent =
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     {declinfo=declinfo,distinctthm=distinctthm,silent=silent};
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fun delete_declinfo n ctxt =
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  let val {declinfo,distinctthm,silent} = NameSpaceData.get ctxt;
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  in NameSpaceData.put
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       (make_namespace_data (Termtab.delete_safe n declinfo) distinctthm silent) ctxt
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  end;
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fun update_declinfo (n,v) ctxt =
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  let val {declinfo,distinctthm,silent} = NameSpaceData.get ctxt;
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  in NameSpaceData.put
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      (make_namespace_data (Termtab.update (n,v) declinfo) distinctthm silent) ctxt
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  end;
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fun set_silent silent ctxt =
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  let val {declinfo,distinctthm,...} = NameSpaceData.get ctxt;
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  in NameSpaceData.put
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      (make_namespace_data declinfo distinctthm silent) ctxt
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  end;
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val get_silent = #silent o NameSpaceData.get;
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fun prove_interpretation_in ctxt_tac (name, expr) thy =
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   thy
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   |> Expression.sublocale_cmd name expr
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   |> Proof.global_terminal_proof
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         (Method.Basic (fn ctxt => Method.SIMPLE_METHOD (ctxt_tac ctxt),Position.none), NONE)
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   |> ProofContext.theory_of
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fun add_locale name expr elems thy =
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  thy 
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  |> Expression.add_locale (Binding.name name) (Binding.name name) expr elems
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  |> snd
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  |> LocalTheory.exit;
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fun add_locale_cmd name expr elems thy =
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  thy 
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  |> Expression.add_locale_cmd (Binding.name name) Binding.empty expr elems
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  |> snd
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  |> LocalTheory.exit;
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type statespace_info =
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 {args: (string * sort) list, (* type arguments *)
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  parents: (typ list * string * string option list) list,
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             (* type instantiation, state-space name, component renamings *)
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  components: (string * typ) list,
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  types: typ list (* range types of state space *)
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 };
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structure StateSpaceArgs =
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struct
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  val name = "HOL/StateSpace";
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  type T = statespace_info Symtab.table;
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  val empty = Symtab.empty;
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  val extend = I;
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  fun merge pp (nt1,nt2) = Symtab.merge (K true) (nt1, nt2);
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end;
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structure StateSpaceData = GenericDataFun(StateSpaceArgs);
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fun add_statespace name args parents components types ctxt =
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     StateSpaceData.put
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      (Symtab.update_new (name, {args=args,parents=parents,
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                                components=components,types=types}) (StateSpaceData.get ctxt))
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      ctxt;
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fun get_statespace ctxt name =
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      Symtab.lookup (StateSpaceData.get ctxt) name;
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fun lookupI eq xs n =
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  (case AList.lookup eq xs n of
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     SOME v => v
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   | NONE => n);
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fun mk_free ctxt name =
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  if Variable.is_fixed ctxt name orelse Variable.is_declared ctxt name
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  then
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    let val n' = lookupI (op =) (Variable.fixes_of ctxt) name
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    in SOME (Free (n',ProofContext.infer_type ctxt n')) end
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  else NONE
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fun get_dist_thm ctxt name = Symtab.lookup (#distinctthm (NameSpaceData.get ctxt)) name;
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fun get_comp ctxt name =
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     Option.mapPartial
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       (Termtab.lookup (#declinfo (NameSpaceData.get ctxt)))
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       (mk_free (Context.proof_of ctxt) name);
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(*** Tactics ***)
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fun neq_x_y ctxt x y =
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  (let
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    val dist_thm = the (get_dist_thm (Context.Proof ctxt) (#1 (dest_Free x)));
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    val ctree = cprop_of dist_thm |> Thm.dest_comb |> #2 |> Thm.dest_comb |> #2;
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    val tree = term_of ctree;
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    val x_path = the (DistinctTreeProver.find_tree x tree);
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    val y_path = the (DistinctTreeProver.find_tree y tree);
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    val thm = DistinctTreeProver.distinctTreeProver dist_thm x_path y_path;
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  in SOME thm
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  end handle Option => NONE)
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fun distinctTree_tac ctxt
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      (Const ("Trueprop",_) $
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        (Const ("Not", _) $ (Const ("op =", _) $ (x as Free _)$ (y as Free _))), i) =
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  (case (neq_x_y ctxt x y) of
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     SOME neq => rtac neq i
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   | NONE => no_tac)
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  | distinctTree_tac _ _ = no_tac;
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val distinctNameSolver = mk_solver' "distinctNameSolver"
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     (fn ss => case try Simplifier.the_context ss of
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                 SOME ctxt => SUBGOAL (distinctTree_tac ctxt)
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                | NONE => fn i => no_tac)
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val distinct_simproc =
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  Simplifier.simproc @{theory HOL} "StateSpace.distinct_simproc" ["x = y"]
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    (fn thy => fn ss => (fn (Const ("op =",_)$(x as Free _)$(y as Free _)) =>
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        (case try Simplifier.the_context ss of
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          SOME ctxt => Option.map (fn neq => DistinctTreeProver.neq_to_eq_False OF [neq])
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                       (neq_x_y ctxt x y)
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        | NONE => NONE)
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      | _ => NONE))
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local
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  val ss = HOL_basic_ss
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in
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fun interprete_parent name dist_thm_name parent_expr thy =
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  let
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    fun solve_tac ctxt (_,i) st =
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      let
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        val distinct_thm = ProofContext.get_thm ctxt dist_thm_name;
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        val goal = List.nth (cprems_of st,i-1);
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        val rule = DistinctTreeProver.distinct_implProver distinct_thm goal;
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      in EVERY [rtac rule i] st
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      end
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    fun tac ctxt = EVERY [Locale.intro_locales_tac true ctxt [],
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                          ALLGOALS (SUBGOAL (solve_tac ctxt))]
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  in thy
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     |> prove_interpretation_in tac (name,parent_expr)
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  end;
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end;
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fun namespace_definition name nameT parent_expr parent_comps new_comps thy =
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  let
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    val all_comps = parent_comps @ new_comps;
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    val vars = (map (fn n => (Binding.name n, NONE, NoSyn)) all_comps);
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    val full_name = Sign.full_bname thy name;
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    val dist_thm_name = distinct_compsN;
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    val dist_thm_full_name = dist_thm_name;
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    fun comps_of_thm thm = prop_of thm
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             |> (fn (_$(_$t)) => DistinctTreeProver.dest_tree t) |> map (fst o dest_Free);
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    fun type_attr phi (ctxt,thm) =
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      (case ctxt of Context.Theory _ => (ctxt,thm)
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       | _ =>
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        let
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          val {declinfo,distinctthm=tt,silent} = (NameSpaceData.get ctxt);
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	  val all_names = comps_of_thm thm;
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          fun upd name tt =
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               (case (Symtab.lookup tt name) of
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                 SOME dthm => if sorted_subset (op =) (comps_of_thm dthm) all_names
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                              then Symtab.update (name,thm) tt else tt
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                | NONE => Symtab.update (name,thm) tt)
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          val tt' = tt |> fold upd all_names;
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          val activate_simproc =
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              Output.no_warnings
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               (Simplifier.map_ss (fn ss => ss addsimprocs [distinct_simproc]));
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          val ctxt' =
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              ctxt
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              |> NameSpaceData.put {declinfo=declinfo,distinctthm=tt',silent=silent}
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              |> activate_simproc
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        in (ctxt',thm)
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        end)
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    val attr = Attrib.internal type_attr;
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    val assumes = Element.Assumes [((Binding.name dist_thm_name,[attr]),
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                    [(HOLogic.Trueprop $
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                      (Const ("DistinctTreeProver.all_distinct",
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                                 Type ("DistinctTreeProver.tree",[nameT]) --> HOLogic.boolT) $
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                      DistinctTreeProver.mk_tree (fn n => Free (n,nameT)) nameT
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                                (sort fast_string_ord all_comps)),
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                      ([]))])];
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  in thy
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     |> add_locale name ([],vars) [assumes]
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     |> ProofContext.theory_of
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     |> interprete_parent name dist_thm_full_name parent_expr
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  end;
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fun encode_dot x = if x= #"." then #"_" else x;
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fun encode_type (TFree (s, _)) = s
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  | encode_type (TVar ((s,i),_)) = "?" ^ s ^ string_of_int i
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  | encode_type (Type (n,Ts)) =
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      let
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        val Ts' = fold1' (fn x => fn y => x ^ "_" ^ y) (map encode_type Ts) "";
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        val n' = String.map encode_dot n;
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      in if Ts'="" then n' else Ts' ^ "_" ^ n' end;
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fun project_name T = projectN ^"_"^encode_type T;
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fun inject_name T = injectN ^"_"^encode_type T;
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fun project_free T pT V = Free (project_name T, V --> pT);
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fun inject_free T pT V = Free (inject_name T, pT --> V);
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fun get_name n = getN ^ "_" ^ n;
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fun put_name n = putN ^ "_" ^ n;
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fun get_const n T nT V = Free (get_name n, (nT --> V) --> T);
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fun put_const n T nT V = Free (put_name n, T --> (nT --> V) --> (nT --> V));
schirmer@25171
   344
schirmer@25171
   345
fun lookup_const T nT V = Const ("StateFun.lookup",(V --> T) --> nT --> (nT --> V) --> T);
wenzelm@26478
   346
fun update_const T nT V =
schirmer@25171
   347
 Const ("StateFun.update",
schirmer@25171
   348
          (V --> T) --> (T --> V) --> nT --> (T --> T) --> (nT --> V) --> (nT --> V));
schirmer@25171
   349
schirmer@25171
   350
fun K_const T = Const ("StateFun.K_statefun",T --> T --> T);
schirmer@25171
   351
schirmer@25171
   352
val no_syn = #3 (Syntax.no_syn ((),()));
schirmer@25171
   353
schirmer@25171
   354
schirmer@25171
   355
fun add_declaration name decl thy =
schirmer@25171
   356
  thy
schirmer@25171
   357
  |> TheoryTarget.init name
schirmer@25171
   358
  |> (fn lthy => LocalTheory.declaration (decl lthy) lthy)
wenzelm@28394
   359
  |> LocalTheory.exit_global;
schirmer@25171
   360
schirmer@25171
   361
fun parent_components thy (Ts, pname, renaming) =
schirmer@25171
   362
  let
schirmer@25171
   363
    val ctxt = Context.Theory thy;
schirmer@25171
   364
    fun rename [] xs = xs
schirmer@25171
   365
      | rename (NONE::rs)  (x::xs) = x::rename rs xs
schirmer@25171
   366
      | rename (SOME r::rs) ((x,T)::xs) = (r,T)::rename rs xs;
wenzelm@26478
   367
    val {args,parents,components,...} =
schirmer@25171
   368
	      the (Symtab.lookup (StateSpaceData.get ctxt) pname);
schirmer@25171
   369
    val inst = map fst args ~~ Ts;
schirmer@25171
   370
    val subst = Term.map_type_tfree (the o AList.lookup (op =) inst o fst);
wenzelm@26478
   371
    val parent_comps =
schirmer@25171
   372
     List.concat (map (fn (Ts',n,rs) => parent_components thy (map subst Ts',n,rs)) parents);
schirmer@25171
   373
    val all_comps = rename renaming (parent_comps @ map (apsnd subst) components);
schirmer@25171
   374
  in all_comps end;
schirmer@25171
   375
schirmer@25171
   376
fun take_upto i xs = List.take(xs,i) handle Subscript => xs;
schirmer@25171
   377
schirmer@25171
   378
fun statespace_definition state_type args name parents parent_comps components thy =
wenzelm@26478
   379
  let
haftmann@28965
   380
    val full_name = Sign.full_bname thy name;
schirmer@25171
   381
    val all_comps = parent_comps @ components;
schirmer@25171
   382
schirmer@25171
   383
    val components' = map (fn (n,T) => (n,(T,full_name))) components;
wenzelm@26478
   384
    val all_comps' = map (fn (n,T) => (n,(T,full_name))) all_comps;
schirmer@25171
   385
norbert@29247
   386
    fun parent_expr (_,n,rs) = (suffix namespaceN n,((n,false),Expression.Positional rs));
norbert@29247
   387
        (* FIXME: a more specific renaming-prefix (including parameter names) may be nicer *)
norbert@29247
   388
    val parents_expr = map parent_expr parents;
schirmer@25171
   389
    fun distinct_types Ts =
wenzelm@27276
   390
      let val tab = fold (fn T => fn tab => Typtab.update (T,()) tab) Ts Typtab.empty;
wenzelm@27276
   391
      in map fst (Typtab.dest tab) end;
schirmer@25171
   392
schirmer@25171
   393
    val Ts = distinct_types (map snd all_comps);
schirmer@25171
   394
    val arg_names = map fst args;
schirmer@25171
   395
    val valueN = Name.variant arg_names "'value";
schirmer@25171
   396
    val nameN = Name.variant (valueN::arg_names) "'name";
schirmer@25171
   397
    val valueT = TFree (valueN, Sign.defaultS thy);
schirmer@25171
   398
    val nameT = TFree (nameN, Sign.defaultS thy);
schirmer@25171
   399
    val stateT = nameT --> valueT;
schirmer@25171
   400
    fun projectT T = valueT --> T;
wenzelm@26478
   401
    fun injectT T = T --> valueT;
norbert@29247
   402
    val locinsts = map (fn T => (project_injectL,
norbert@29247
   403
                    (("",false),Expression.Positional 
norbert@29247
   404
                             [SOME (Free (project_name T,projectT T)), 
norbert@29247
   405
                              SOME (Free ((inject_name T,injectT T)))]))) Ts;
norbert@29247
   406
    val locs = flat (map (fn T => [(Binding.name (project_name T),NONE,NoSyn),
norbert@29247
   407
                                     (Binding.name (inject_name T),NONE,NoSyn)]) Ts);
wenzelm@26478
   408
    val constrains = List.concat
schirmer@25171
   409
         (map (fn T => [(project_name T,projectT T),(inject_name T,injectT T)]) Ts);
schirmer@25171
   410
norbert@29247
   411
    fun interprete_parent_valuetypes (Ts, pname, _) thy =
schirmer@25171
   412
      let
wenzelm@26478
   413
        val {args,types,...} =
schirmer@25171
   414
             the (Symtab.lookup (StateSpaceData.get (Context.Theory thy)) pname);
schirmer@25171
   415
        val inst = map fst args ~~ Ts;
schirmer@25171
   416
        val subst = Term.map_type_tfree (the o AList.lookup (op =) inst o fst);
schirmer@25171
   417
        val pars = List.concat (map ((fn T => [project_name T,inject_name T]) o subst) types);
norbert@29247
   418
norbert@29247
   419
        val expr = ([(suffix valuetypesN name, 
norbert@29247
   420
                     (("",false),Expression.Positional (map SOME pars)))],[]);
wenzelm@29291
   421
      in
wenzelm@29291
   422
        prove_interpretation_in (ALLGOALS o solve_tac o Assumption.prems_of)
wenzelm@29291
   423
          (suffix valuetypesN name, expr) thy
wenzelm@29291
   424
      end;
schirmer@25171
   425
schirmer@25171
   426
    fun interprete_parent (_, pname, rs) =
schirmer@25171
   427
      let
norbert@29247
   428
        val expr = ([(pname, (("",false), Expression.Positional rs))],[])
wenzelm@26478
   429
      in prove_interpretation_in
haftmann@29360
   430
           (fn ctxt => Locale.intro_locales_tac false ctxt [])
schirmer@25171
   431
           (full_name, expr) end;
schirmer@25171
   432
schirmer@25171
   433
    fun declare_declinfo updates lthy phi ctxt =
schirmer@25171
   434
      let
wenzelm@26478
   435
        fun upd_prf ctxt =
schirmer@25171
   436
          let
schirmer@25171
   437
            fun upd (n,v) =
schirmer@25171
   438
              let
schirmer@25171
   439
                val nT = ProofContext.infer_type (LocalTheory.target_of lthy) n
wenzelm@26478
   440
              in Context.proof_map
wenzelm@26478
   441
                  (update_declinfo (Morphism.term phi (Free (n,nT)),v))
schirmer@25171
   442
              end;
schirmer@25171
   443
          in ctxt |> fold upd updates end;
schirmer@25171
   444
schirmer@25171
   445
      in Context.mapping I upd_prf ctxt end;
schirmer@25171
   446
wenzelm@26478
   447
   fun string_of_typ T =
wenzelm@26478
   448
      setmp show_sorts true
wenzelm@25696
   449
       (PrintMode.setmp [] (Syntax.string_of_typ (ProofContext.init thy))) T;
schirmer@25171
   450
   val fixestate = (case state_type of
schirmer@25171
   451
         NONE => []
wenzelm@26478
   452
       | SOME s =>
wenzelm@26478
   453
          let
haftmann@28965
   454
	    val fx = Element.Fixes [(Binding.name s,SOME (string_of_typ stateT),NoSyn)];
wenzelm@26478
   455
            val cs = Element.Constrains
schirmer@25171
   456
                       (map (fn (n,T) =>  (n,string_of_typ T))
schirmer@25171
   457
                         ((map (fn (n,_) => (n,nameT)) all_comps) @
schirmer@25171
   458
                          constrains))
schirmer@25171
   459
          in [fx,cs] end
schirmer@25171
   460
       )
schirmer@25171
   461
wenzelm@26478
   462
wenzelm@26478
   463
  in thy
wenzelm@26478
   464
     |> namespace_definition
norbert@29247
   465
           (suffix namespaceN name) nameT (parents_expr,[])
schirmer@25171
   466
           (map fst parent_comps) (map fst components)
schirmer@25171
   467
     |> Context.theory_map (add_statespace full_name args parents components [])
norbert@29247
   468
     |> add_locale (suffix valuetypesN name) (locinsts,locs) []
norbert@29247
   469
     |> ProofContext.theory_of 
wenzelm@26478
   470
     |> fold interprete_parent_valuetypes parents
norbert@29247
   471
     |> add_locale_cmd name
norbert@29247
   472
              ([(suffix namespaceN full_name ,(("",false),Expression.Named [])),
norbert@29247
   473
                (suffix valuetypesN full_name,(("",false),Expression.Named  []))],[]) fixestate
norbert@29247
   474
     |> ProofContext.theory_of 
schirmer@25171
   475
     |> fold interprete_parent parents
schirmer@25171
   476
     |> add_declaration (SOME full_name) (declare_declinfo components')
schirmer@25171
   477
  end;
schirmer@25171
   478
schirmer@25171
   479
schirmer@25171
   480
(* prepare arguments *)
schirmer@25171
   481
wenzelm@27283
   482
fun read_raw_parent ctxt raw_T =
wenzelm@27283
   483
  (case ProofContext.read_typ_abbrev ctxt raw_T of
schirmer@25171
   484
    Type (name, Ts) => (Ts, name)
wenzelm@27283
   485
  | T => error ("Bad parent statespace specification: " ^ Syntax.string_of_typ ctxt T));
schirmer@25171
   486
schirmer@25171
   487
fun gen_define_statespace prep_typ state_space args name parents comps thy =
schirmer@25171
   488
  let (* - args distinct
schirmer@25171
   489
         - only args may occur in comps and parent-instantiations
wenzelm@26478
   490
         - number of insts must match parent args
schirmer@25171
   491
         - no duplicate renamings
schirmer@25171
   492
         - renaming should occur in namespace
schirmer@25171
   493
      *)
wenzelm@26478
   494
    val _ = writeln ("Defining statespace " ^ quote name ^ " ...");
schirmer@25171
   495
wenzelm@27283
   496
    val ctxt = ProofContext.init thy;
wenzelm@27283
   497
schirmer@25171
   498
    fun add_parent (Ts,pname,rs) env =
schirmer@25171
   499
      let
haftmann@28965
   500
        val full_pname = Sign.full_bname thy pname;
wenzelm@26478
   501
        val {args,components,...} =
schirmer@25171
   502
              (case get_statespace (Context.Theory thy) full_pname of
schirmer@25171
   503
                SOME r => r
schirmer@25171
   504
               | NONE => error ("Undefined statespace " ^ quote pname));
schirmer@25171
   505
schirmer@25171
   506
wenzelm@27283
   507
        val (Ts',env') = fold_map (prep_typ ctxt) Ts env
wenzelm@26478
   508
            handle ERROR msg => cat_error msg
wenzelm@26478
   509
                    ("The error(s) above occured in parent statespace specification "
schirmer@25171
   510
                    ^ quote pname);
schirmer@25171
   511
        val err_insts = if length args <> length Ts' then
schirmer@25171
   512
            ["number of type instantiation(s) does not match arguments of parent statespace "
schirmer@25171
   513
              ^ quote pname]
schirmer@25171
   514
            else [];
wenzelm@26478
   515
schirmer@25171
   516
        val rnames = map fst rs
schirmer@25171
   517
        val err_dup_renamings = (case duplicates (op =) rnames of
schirmer@25171
   518
             [] => []
schirmer@25171
   519
            | dups => ["Duplicate renaming(s) for " ^ commas dups])
schirmer@25171
   520
schirmer@25171
   521
        val cnames = map fst components;
schirmer@25171
   522
        val err_rename_unknowns = (case (filter (fn n => not (n mem cnames))) rnames of
schirmer@25171
   523
              [] => []
schirmer@25171
   524
             | rs => ["Unknown components " ^ commas rs]);
wenzelm@26478
   525
schirmer@25171
   526
schirmer@25171
   527
        val rs' = map (AList.lookup (op =) rs o fst) components;
schirmer@25171
   528
        val errs =err_insts @ err_dup_renamings @ err_rename_unknowns
schirmer@25171
   529
      in if null errs then ((Ts',full_pname,rs'),env')
schirmer@25171
   530
         else error (cat_lines (errs @ ["in parent statespace " ^ quote pname]))
schirmer@25171
   531
      end;
wenzelm@26478
   532
schirmer@25171
   533
    val (parents',env) = fold_map add_parent parents [];
schirmer@25171
   534
schirmer@25171
   535
    val err_dup_args =
schirmer@25171
   536
         (case duplicates (op =) args of
schirmer@25171
   537
            [] => []
schirmer@25171
   538
          | dups => ["Duplicate type argument(s) " ^ commas dups]);
wenzelm@26478
   539
schirmer@25171
   540
wenzelm@26478
   541
    val err_dup_components =
schirmer@25171
   542
         (case duplicates (op =) (map fst comps) of
schirmer@25171
   543
           [] => []
schirmer@25171
   544
          | dups => ["Duplicate state-space components " ^ commas dups]);
schirmer@25171
   545
schirmer@25171
   546
    fun prep_comp (n,T) env =
wenzelm@27283
   547
      let val (T', env') = prep_typ ctxt T env handle ERROR msg =>
schirmer@25171
   548
       cat_error msg ("The error(s) above occured in component " ^ quote n)
schirmer@25171
   549
      in ((n,T'), env') end;
schirmer@25171
   550
schirmer@25171
   551
    val (comps',env') = fold_map prep_comp comps env;
schirmer@25171
   552
schirmer@25171
   553
    val err_extra_frees =
schirmer@25171
   554
      (case subtract (op =) args (map fst env') of
schirmer@25171
   555
        [] => []
schirmer@25171
   556
      | extras => ["Extra free type variable(s) " ^ commas extras]);
schirmer@25171
   557
schirmer@25171
   558
    val defaultS = Sign.defaultS thy;
schirmer@25171
   559
    val args' = map (fn x => (x, AList.lookup (op =) env x |> the_default defaultS)) args;
schirmer@25171
   560
schirmer@25171
   561
schirmer@25171
   562
    fun fst_eq ((x:string,_),(y,_)) = x = y;
wenzelm@26478
   563
    fun snd_eq ((_,t:typ),(_,u)) = t = u;
schirmer@25171
   564
schirmer@25171
   565
    val raw_parent_comps = (List.concat (map (parent_components thy) parents'));
wenzelm@26478
   566
    fun check_type (n,T) =
schirmer@25171
   567
          (case distinct (snd_eq) (filter (curry fst_eq (n,T)) raw_parent_comps) of
schirmer@25171
   568
             []  => []
schirmer@25171
   569
           | [_] => []
wenzelm@26478
   570
           | rs  => ["Different types for component " ^ n ^": " ^ commas
schirmer@25171
   571
                       (map (Pretty.string_of o Display.pretty_ctyp o ctyp_of thy o snd) rs)])
wenzelm@26478
   572
schirmer@25171
   573
    val err_dup_types = List.concat (map check_type (duplicates fst_eq raw_parent_comps))
schirmer@25171
   574
schirmer@25171
   575
    val parent_comps = distinct (fst_eq) raw_parent_comps;
schirmer@25171
   576
    val all_comps = parent_comps @ comps';
schirmer@25171
   577
    val err_comp_in_parent = (case duplicates (op =) (map fst all_comps) of
schirmer@25171
   578
               [] => []
schirmer@25171
   579
             | xs => ["Components already defined in parents: " ^ commas xs]);
schirmer@25171
   580
    val errs = err_dup_args @ err_dup_components @ err_extra_frees @
schirmer@25171
   581
               err_dup_types @ err_comp_in_parent;
wenzelm@26478
   582
  in if null errs
schirmer@25171
   583
     then thy |> statespace_definition state_space args' name parents' parent_comps comps'
wenzelm@26478
   584
     else error (cat_lines errs)
schirmer@25171
   585
  end
schirmer@25171
   586
  handle ERROR msg => cat_error msg ("Failed to define statespace " ^ quote name);
wenzelm@26478
   587
wenzelm@27283
   588
val define_statespace = gen_define_statespace RecordPackage.read_typ NONE;
wenzelm@27283
   589
val define_statespace_i = gen_define_statespace RecordPackage.cert_typ;
wenzelm@26478
   590
schirmer@25171
   591
schirmer@25171
   592
(*** parse/print - translations ***)
schirmer@25171
   593
schirmer@25171
   594
schirmer@25171
   595
local
wenzelm@26478
   596
fun map_get_comp f ctxt (Free (name,_)) =
wenzelm@26478
   597
      (case (get_comp ctxt name) of
wenzelm@26478
   598
        SOME (T,_) => f T T dummyT
schirmer@25171
   599
      | NONE => (Syntax.free "arbitrary"(*; error "context not ready"*)))
schirmer@25171
   600
  | map_get_comp _ _ _ = Syntax.free "arbitrary";
schirmer@25171
   601
schirmer@25171
   602
val get_comp_projection = map_get_comp project_free;
schirmer@25171
   603
val get_comp_injection  = map_get_comp inject_free;
schirmer@25171
   604
schirmer@25171
   605
fun name_of (Free (n,_)) = n;
schirmer@25171
   606
in
schirmer@25171
   607
wenzelm@26478
   608
fun gen_lookup_tr ctxt s n =
schirmer@25171
   609
      (case get_comp (Context.Proof ctxt) n of
wenzelm@26478
   610
        SOME (T,_) =>
schirmer@25171
   611
           Syntax.const "StateFun.lookup"$Syntax.free (project_name T)$Syntax.free n$s
wenzelm@26478
   612
       | NONE =>
schirmer@25171
   613
           if get_silent (Context.Proof ctxt)
haftmann@30249
   614
	   then Syntax.const "StateFun.lookup" $ Syntax.const "undefined" $ Syntax.free n $ s
schirmer@25171
   615
           else raise TERM ("StateSpace.gen_lookup_tr: component " ^ n ^ " not defined",[]));
schirmer@25171
   616
schirmer@25171
   617
fun lookup_tr ctxt [s,Free (n,_)] = gen_lookup_tr ctxt s n;
schirmer@25171
   618
fun lookup_swap_tr ctxt [Free (n,_),s] = gen_lookup_tr ctxt s n;
schirmer@25171
   619
schirmer@25171
   620
fun lookup_tr' ctxt [_$Free (prj,_),n as (_$Free (name,_)),s] =
schirmer@25171
   621
     ( case get_comp (Context.Proof ctxt) name of
schirmer@25171
   622
         SOME (T,_) =>  if prj=project_name T then
wenzelm@26478
   623
                           Syntax.const "_statespace_lookup" $ s $ n
schirmer@25171
   624
                        else raise Match
schirmer@25171
   625
      | NONE => raise Match)
schirmer@25171
   626
  | lookup_tr' _ ts = raise Match;
schirmer@25171
   627
wenzelm@26478
   628
fun gen_update_tr id ctxt n v s =
schirmer@25171
   629
  let
schirmer@25171
   630
    fun pname T = if id then "Fun.id" else project_name T
schirmer@25171
   631
    fun iname T = if id then "Fun.id" else inject_name T
schirmer@25171
   632
   in
schirmer@25171
   633
     (case get_comp (Context.Proof ctxt) n of
schirmer@25171
   634
       SOME (T,_) => Syntax.const "StateFun.update"$
schirmer@25171
   635
                   Syntax.free (pname T)$Syntax.free (iname T)$
schirmer@25171
   636
                   Syntax.free n$(Syntax.const KN $ v)$s
wenzelm@26478
   637
      | NONE =>
wenzelm@26478
   638
         if get_silent (Context.Proof ctxt)
schirmer@25171
   639
         then Syntax.const "StateFun.update"$
haftmann@30249
   640
                   Syntax.const "undefined" $ Syntax.const "undefined" $
haftmann@30249
   641
                   Syntax.free n $ (Syntax.const KN $ v) $ s
schirmer@25171
   642
         else raise TERM ("StateSpace.gen_update_tr: component " ^ n ^ " not defined",[]))
schirmer@25171
   643
   end;
schirmer@25171
   644
schirmer@25171
   645
fun update_tr ctxt [s,Free (n,_),v] = gen_update_tr false ctxt n v s;
schirmer@25171
   646
schirmer@25171
   647
fun update_tr' ctxt [_$Free (prj,_),_$Free (inj,_),n as (_$Free (name,_)),(Const (k,_)$v),s] =
wenzelm@30280
   648
     if NameSpace.base_name k = NameSpace.base_name KN then
schirmer@25171
   649
        (case get_comp (Context.Proof ctxt) name of
schirmer@25171
   650
          SOME (T,_) => if inj=inject_name T andalso prj=project_name T then
wenzelm@26478
   651
                           Syntax.const "_statespace_update" $ s $ n $ v
schirmer@25171
   652
                        else raise Match
schirmer@25171
   653
         | NONE => raise Match)
schirmer@25171
   654
     else raise Match
schirmer@25171
   655
  | update_tr' _ _ = raise Match;
schirmer@25171
   656
schirmer@25171
   657
end;
schirmer@25171
   658
schirmer@25171
   659
schirmer@25171
   660
(*** outer syntax *)
schirmer@25171
   661
schirmer@25171
   662
local structure P = OuterParse and K = OuterKeyword in
schirmer@25171
   663
schirmer@25171
   664
val type_insts =
schirmer@25171
   665
  P.typ >> single ||
wenzelm@26478
   666
  P.$$$ "(" |-- P.!!! (P.list1 P.typ --| P.$$$ ")")
schirmer@25171
   667
schirmer@25171
   668
val comp = P.name -- (P.$$$ "::" |-- P.!!! P.typ);
schirmer@25171
   669
fun plus1_unless test scan =
wenzelm@25999
   670
  scan ::: Scan.repeat (P.$$$ "+" |-- Scan.unless test (P.!!! scan));
schirmer@25171
   671
schirmer@25171
   672
val mapsto = P.$$$ "=";
schirmer@25171
   673
val rename = P.name -- (mapsto |-- P.name);
schirmer@25171
   674
val renames =  Scan.optional (P.$$$ "[" |-- P.!!! (P.list1 rename --| P.$$$ "]")) [];
schirmer@25171
   675
schirmer@25171
   676
schirmer@25171
   677
val parent = ((type_insts -- P.xname) || (P.xname >> pair [])) -- renames
schirmer@25171
   678
             >> (fn ((insts,name),renames) => (insts,name,renames))
schirmer@25171
   679
schirmer@25171
   680
schirmer@25171
   681
val statespace_decl =
schirmer@25171
   682
   P.type_args -- P.name --
wenzelm@26478
   683
    (P.$$$ "=" |--
schirmer@25171
   684
     ((Scan.repeat1 comp >> pair []) ||
schirmer@25171
   685
      (plus1_unless comp parent --
schirmer@25171
   686
        Scan.optional (P.$$$ "+" |-- P.!!! (Scan.repeat1 comp)) [])))
schirmer@25171
   687
schirmer@25171
   688
val statespace_command =
schirmer@25171
   689
  OuterSyntax.command "statespace" "define state space" K.thy_decl
wenzelm@26478
   690
  (statespace_decl >> (fn ((args,name),(parents,comps)) =>
schirmer@25171
   691
                           Toplevel.theory (define_statespace args name parents comps)))
schirmer@25171
   692
schirmer@25171
   693
end;
schirmer@25171
   694
schirmer@25171
   695
end;