src/Pure/Proof/extraction.ML
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formal position for PThm nodes;
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(*  Title:      Pure/Proof/extraction.ML
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    Author:     Stefan Berghofer, TU Muenchen
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Extraction of programs from proofs.
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*)
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signature EXTRACTION =
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sig
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  val set_preprocessor : (theory -> Proofterm.proof -> Proofterm.proof) -> theory -> theory
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  val add_realizes_eqns_i : ((term * term) list * (term * term)) list -> theory -> theory
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  val add_realizes_eqns : string list -> theory -> theory
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  val add_typeof_eqns_i : ((term * term) list * (term * term)) list -> theory -> theory
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  val add_typeof_eqns : string list -> theory -> theory
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  val add_realizers_i : (string * (string list * term * Proofterm.proof)) list
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    -> theory -> theory
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  val add_realizers : (thm * (string list * string * string)) list
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    -> theory -> theory
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  val add_expand_thm : bool -> thm -> theory -> theory
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  val add_types : (xstring * ((term -> term option) list *
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    (term -> typ -> term -> typ -> term) option)) list -> theory -> theory
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  val extract : (thm * string list) list -> theory -> theory
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  val nullT : typ
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  val nullt : term
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  val mk_typ : typ -> term
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  val etype_of : theory -> string list -> typ list -> term -> typ
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  val realizes_of: theory -> string list -> term -> term -> term
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  val abs_corr_shyps: theory -> thm -> string list -> term list -> Proofterm.proof -> Proofterm.proof
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end;
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structure Extraction : EXTRACTION =
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struct
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(**** tools ****)
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val typ = Simple_Syntax.read_typ;
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val add_syntax =
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  Sign.root_path
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  #> Sign.add_types_global
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    [(Binding.make ("Type", \<^here>), 0, NoSyn),
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     (Binding.make ("Null", \<^here>), 0, NoSyn)]
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  #> Sign.add_consts
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    [(Binding.make ("typeof", \<^here>), typ "'b \<Rightarrow> Type", NoSyn),
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     (Binding.make ("Type", \<^here>), typ "'a itself \<Rightarrow> Type", NoSyn),
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     (Binding.make ("Null", \<^here>), typ "Null", NoSyn),
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     (Binding.make ("realizes", \<^here>), typ "'a \<Rightarrow> 'b \<Rightarrow> 'b", NoSyn)];
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val nullT = Type ("Null", []);
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val nullt = Const ("Null", nullT);
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fun mk_typ T =
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  Const ("Type", Term.itselfT T --> Type ("Type", [])) $ Logic.mk_type T;
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fun typeof_proc defaultS vs (Const ("typeof", _) $ u) =
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      SOME (mk_typ (case strip_comb u of
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          (Var ((a, i), _), _) =>
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            if member (op =) vs a then TFree ("'" ^ a ^ ":" ^ string_of_int i, defaultS)
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            else nullT
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        | (Free (a, _), _) =>
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            if member (op =) vs a then TFree ("'" ^ a, defaultS) else nullT
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        | _ => nullT))
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  | typeof_proc _ _ _ = NONE;
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fun rlz_proc (Const ("realizes", Type (_, [Type ("Null", []), _])) $ _ $ t) = SOME t
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  | rlz_proc (Const ("realizes", Type (_, [T, _])) $ r $ t) =
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      (case strip_comb t of
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         (Var (ixn, U), ts) => SOME (list_comb (Var (ixn, T --> U), r :: ts))
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       | (Free (s, U), ts) => SOME (list_comb (Free (s, T --> U), r :: ts))
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       | _ => NONE)
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  | rlz_proc _ = NONE;
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val unpack_ixn = apfst implode o apsnd (fst o read_int o tl) o
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  chop_prefix (fn s => s <> ":") o raw_explode;
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type rules =
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  {next: int, rs: ((term * term) list * (term * term)) list,
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   net: (int * ((term * term) list * (term * term))) Net.net};
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val empty_rules : rules = {next = 0, rs = [], net = Net.empty};
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fun add_rule (r as (_, (lhs, _))) ({next, rs, net} : rules) =
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  {next = next - 1, rs = r :: rs, net = Net.insert_term (K false)
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     (Envir.eta_contract lhs, (next, r)) net};
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fun merge_rules ({next, rs = rs1, net} : rules) ({rs = rs2, ...} : rules) =
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  fold_rev add_rule (subtract (op =) rs1 rs2) {next = next, rs = rs1, net = net};
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fun condrew thy rules procs =
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  let
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    fun rew tm =
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      Pattern.rewrite_term thy [] (condrew' :: procs) tm
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    and condrew' tm =
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      let
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        val cache = Unsynchronized.ref ([] : (term * term) list);
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        fun lookup f x = (case AList.lookup (op =) (!cache) x of
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            NONE =>
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              let val y = f x
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              in (cache := (x, y) :: !cache; y) end
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          | SOME y => y);
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      in
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        get_first (fn (_, (prems, (tm1, tm2))) =>
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        let
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          fun ren t = the_default t (Term.rename_abs tm1 tm t);
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          val inc = Logic.incr_indexes ([], [], maxidx_of_term tm + 1);
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          val env as (Tenv, tenv) = Pattern.match thy (inc tm1, tm) (Vartab.empty, Vartab.empty);
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          val prems' = map (apply2 (Envir.subst_term env o inc o ren)) prems;
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          val env' = Envir.Envir
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            {maxidx = fold (fn (t, u) => Term.maxidx_term t #> Term.maxidx_term u) prems' ~1,
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             tenv = tenv, tyenv = Tenv};
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          val env'' = fold (Pattern.unify (Context.Theory thy) o apply2 (lookup rew)) prems' env';
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        in SOME (Envir.norm_term env'' (inc (ren tm2)))
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        end handle Pattern.MATCH => NONE | Pattern.Unif => NONE)
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          (sort (int_ord o apply2 fst)
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            (Net.match_term rules (Envir.eta_contract tm)))
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      end;
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  in rew end;
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val chtypes = Proofterm.change_types o SOME;
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fun extr_name s vs = Long_Name.append "extr" (space_implode "_" (s :: vs));
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fun corr_name s vs = extr_name s vs ^ "_correctness";
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fun msg d s = writeln (Symbol.spaces d ^ s);
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fun vars_of t = map Var (rev (Term.add_vars t []));
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fun frees_of t = map Free (rev (Term.add_frees t []));
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fun vfs_of t = vars_of t @ frees_of t;
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val mkabs = fold_rev (fn v => fn t => Abs ("x", fastype_of v, abstract_over (v, t)));
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val mkabsp = fold_rev (fn t => fn prf => AbsP ("H", SOME t, prf));
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fun strip_abs 0 t = t
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  | strip_abs n (Abs (_, _, t)) = strip_abs (n-1) t
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  | strip_abs _ _ = error "strip_abs: not an abstraction";
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val prf_subst_TVars = Proofterm.map_proof_types o typ_subst_TVars;
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fun relevant_vars types prop =
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  List.foldr
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    (fn (Var ((a, _), T), vs) =>
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        (case body_type T of
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          Type (s, _) => if member (op =) types s then a :: vs else vs
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        | _ => vs)
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      | (_, vs) => vs) [] (vars_of prop);
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fun tname_of (Type (s, _)) = s
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  | tname_of _ = "";
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fun get_var_type t =
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  let
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    val vs = Term.add_vars t [];
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    val fs = Term.add_frees t [];
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  in
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    fn Var (ixn, _) =>
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        (case AList.lookup (op =) vs ixn of
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          NONE => error "get_var_type: no such variable in term"
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        | SOME T => Var (ixn, T))
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     | Free (s, _) =>
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        (case AList.lookup (op =) fs s of
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          NONE => error "get_var_type: no such variable in term"
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        | SOME T => Free (s, T))
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    | _ => error "get_var_type: not a variable"
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  end;
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fun read_term ctxt T s =
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  let
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    val ctxt' = ctxt
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      |> Proof_Context.set_defsort []
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      |> Config.put Type_Infer.object_logic false
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      |> Config.put Type_Infer_Context.const_sorts false;
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    val parse = if T = propT then Syntax.parse_prop else Syntax.parse_term;
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  in parse ctxt' s |> Type.constraint T |> Syntax.check_term ctxt' end;
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(**** theory data ****)
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(* theory data *)
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structure ExtractionData = Theory_Data
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(
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  type T =
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    {realizes_eqns : rules,
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     typeof_eqns : rules,
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     types : (string * ((term -> term option) list *
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       (term -> typ -> term -> typ -> term) option)) list,
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     realizers : (string list * (term * proof)) list Symtab.table,
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     defs : thm list,
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     expand : string list,
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     prep : (theory -> proof -> proof) option}
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  val empty =
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    {realizes_eqns = empty_rules,
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     typeof_eqns = empty_rules,
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     types = [],
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     realizers = Symtab.empty,
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     defs = [],
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     expand = [],
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     prep = NONE};
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  val extend = I;
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  fun merge
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    ({realizes_eqns = realizes_eqns1, typeof_eqns = typeof_eqns1, types = types1,
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       realizers = realizers1, defs = defs1, expand = expand1, prep = prep1},
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      {realizes_eqns = realizes_eqns2, typeof_eqns = typeof_eqns2, types = types2,
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       realizers = realizers2, defs = defs2, expand = expand2, prep = prep2}) : T =
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    {realizes_eqns = merge_rules realizes_eqns1 realizes_eqns2,
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     typeof_eqns = merge_rules typeof_eqns1 typeof_eqns2,
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     types = AList.merge (op =) (K true) (types1, types2),
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     realizers = Symtab.merge_list (eq_set (op =) o apply2 #1) (realizers1, realizers2),
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     defs = Library.merge Thm.eq_thm (defs1, defs2),
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     expand = Library.merge (op =) (expand1, expand2),
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     prep = if is_some prep1 then prep1 else prep2};
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);
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fun read_condeq thy =
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  let val ctxt' = Proof_Context.init_global (add_syntax thy)
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  in fn s =>
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    let val t = Logic.varify_global (read_term ctxt' propT s)
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    in
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      (map Logic.dest_equals (Logic.strip_imp_prems t),
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        Logic.dest_equals (Logic.strip_imp_concl t))
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      handle TERM _ => error ("Not a (conditional) meta equality:\n" ^ s)
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    end
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  end;
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(** preprocessor **)
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fun set_preprocessor prep thy =
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  let val {realizes_eqns, typeof_eqns, types, realizers,
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    defs, expand, ...} = ExtractionData.get thy
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  in
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    ExtractionData.put
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      {realizes_eqns = realizes_eqns, typeof_eqns = typeof_eqns, types = types,
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       realizers = realizers, defs = defs, expand = expand, prep = SOME prep} thy
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  end;
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(** equations characterizing realizability **)
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fun gen_add_realizes_eqns prep_eq eqns thy =
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  let val {realizes_eqns, typeof_eqns, types, realizers,
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    defs, expand, prep} = ExtractionData.get thy;
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  in
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    ExtractionData.put
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      {realizes_eqns = fold_rev add_rule (map (prep_eq thy) eqns) realizes_eqns,
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       typeof_eqns = typeof_eqns, types = types, realizers = realizers,
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       defs = defs, expand = expand, prep = prep} thy
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  end
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val add_realizes_eqns_i = gen_add_realizes_eqns (K I);
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val add_realizes_eqns = gen_add_realizes_eqns read_condeq;
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(** equations characterizing type of extracted program **)
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fun gen_add_typeof_eqns prep_eq eqns thy =
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  let
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    val {realizes_eqns, typeof_eqns, types, realizers,
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      defs, expand, prep} = ExtractionData.get thy;
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    val eqns' = map (prep_eq thy) eqns
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  in
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    ExtractionData.put
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      {realizes_eqns = realizes_eqns, realizers = realizers,
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       typeof_eqns = fold_rev add_rule eqns' typeof_eqns,
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       types = types, defs = defs, expand = expand, prep = prep} thy
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  end
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val add_typeof_eqns_i = gen_add_typeof_eqns (K I);
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val add_typeof_eqns = gen_add_typeof_eqns read_condeq;
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fun thaw (T as TFree (a, S)) =
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      if exists_string (fn s => s = ":") a then TVar (unpack_ixn a, S) else T
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  | thaw (Type (a, Ts)) = Type (a, map thaw Ts)
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  | thaw T = T;
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fun freeze (TVar ((a, i), S)) = TFree (a ^ ":" ^ string_of_int i, S)
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  | freeze (Type (a, Ts)) = Type (a, map freeze Ts)
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  | freeze T = T;
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fun freeze_thaw f x =
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  map_types thaw (f (map_types freeze x));
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fun etype_of thy vs Ts t =
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  let
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    val {typeof_eqns, ...} = ExtractionData.get thy;
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    fun err () = error ("Unable to determine type of extracted program for\n" ^
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      Syntax.string_of_term_global thy t)
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  in
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    (case
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      strip_abs_body
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        (freeze_thaw (condrew thy (#net typeof_eqns) [typeof_proc [] vs])
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          (fold (Term.abs o pair "x") Ts
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            (Const ("typeof", fastype_of1 (Ts, t) --> Type ("Type", [])) $ t))) of
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      Const ("Type", _) $ u => (Logic.dest_type u handle TERM _ => err ())
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    | _ => err ())
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  end;
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(** realizers for axioms / theorems, together with correctness proofs **)
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fun gen_add_realizers prep_rlz rs thy =
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  let val {realizes_eqns, typeof_eqns, types, realizers,
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    defs, expand, prep} = ExtractionData.get thy
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  in
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    ExtractionData.put
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      {realizes_eqns = realizes_eqns, typeof_eqns = typeof_eqns, types = types,
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       realizers = fold (Symtab.cons_list o prep_rlz thy) rs realizers,
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       defs = defs, expand = expand, prep = prep} thy
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   308
  end
e6e826bb8c3c Added program extraction module.
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parents:
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   309
e6e826bb8c3c Added program extraction module.
berghofe
parents:
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   310
fun prep_realizer thy =
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berghofe
parents:
diff changeset
   311
  let
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   312
    val {realizes_eqns, typeof_eqns, defs, types, ...} =
13402
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berghofe
parents:
diff changeset
   313
      ExtractionData.get thy;
19482
9f11af8f7ef9 tuned basic list operators (flat, maps, map_filter);
wenzelm
parents: 19466
diff changeset
   314
    val procs = maps (fst o snd) types;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   315
    val rtypes = map fst types;
16800
90eff1b52428 improved Net interface;
wenzelm
parents: 16790
diff changeset
   316
    val eqns = Net.merge (K false) (#net realizes_eqns, #net typeof_eqns);
13402
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berghofe
parents:
diff changeset
   317
    val thy' = add_syntax thy;
62922
96691631c1eb clarified context;
wenzelm
parents: 61865
diff changeset
   318
    val ctxt' = Proof_Context.init_global thy';
37233
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berghofe
parents: 36953
diff changeset
   319
    val rd = Proof_Syntax.read_proof thy' true false;
13402
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berghofe
parents:
diff changeset
   320
  in fn (thm, (vs, s1, s2)) =>
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   321
    let
36744
6e1f3d609a68 renamed Thm.get_name -> Thm.derivation_name and Thm.put_name -> Thm.name_derivation, to emphasize the true nature of these operations;
wenzelm
parents: 36620
diff changeset
   322
      val name = Thm.derivation_name thm;
21858
05f57309170c avoid conflict with Alice keywords: renamed pack -> implode, unpack -> explode, any -> many, avoided assert;
wenzelm
parents: 21646
diff changeset
   323
      val _ = name <> "" orelse error "add_realizers: unnamed theorem";
59582
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59058
diff changeset
   324
      val prop = Thm.unconstrainT thm |> Thm.prop_of |>
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59058
diff changeset
   325
        Pattern.rewrite_term thy' (map (Logic.dest_equals o Thm.prop_of) defs) [];
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   326
      val vars = vars_of prop;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   327
      val vars' = filter_out (fn v =>
20664
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   328
        member (op =) rtypes (tname_of (body_type (fastype_of v)))) vars;
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   329
      val shyps = maps (fn Var ((x, i), _) =>
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   330
        if member (op =) vs x then Logic.mk_of_sort
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   331
          (TVar (("'" ^ x, i), []), Sign.defaultS thy')
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   332
        else []) vars;
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   333
      val T = etype_of thy' vs [] prop;
33832
cff42395c246 explicitly mark some legacy freeze operations;
wenzelm
parents: 33704
diff changeset
   334
      val (T', thw) = Type.legacy_freeze_thaw_type
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   335
        (if T = nullT then nullT else map fastype_of vars' ---> T);
62922
96691631c1eb clarified context;
wenzelm
parents: 61865
diff changeset
   336
      val t = map_types thw (read_term ctxt' T' s1);
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   337
      val r' = freeze_thaw (condrew thy' eqns
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   338
        (procs @ [typeof_proc [] vs, rlz_proc]))
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   339
          (Const ("realizes", T --> propT --> propT) $
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   340
            (if T = nullT then t else list_comb (t, vars')) $ prop);
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   341
      val r = Logic.list_implies (shyps,
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   342
        fold_rev Logic.all (map (get_var_type r') vars) r');
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   343
      val prf = Proofterm.reconstruct_proof thy' r (rd s2);
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   344
    in (name, (vs, (t, prf))) end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   345
  end;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   346
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   347
val add_realizers_i = gen_add_realizers
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   348
  (fn _ => fn (name, (vs, t, prf)) => (name, (vs, (t, prf))));
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   349
val add_realizers = gen_add_realizers prep_realizer;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   350
13714
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   351
fun realizes_of thy vs t prop =
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   352
  let
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   353
    val thy' = add_syntax thy;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   354
    val {realizes_eqns, typeof_eqns, defs, types, ...} =
13714
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   355
      ExtractionData.get thy';
22717
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   356
    val procs = maps (rev o fst o snd) types;
16800
90eff1b52428 improved Net interface;
wenzelm
parents: 16790
diff changeset
   357
    val eqns = Net.merge (K false) (#net realizes_eqns, #net typeof_eqns);
17203
29b2563f5c11 refer to theory instead of low-level tsig;
wenzelm
parents: 17057
diff changeset
   358
    val prop' = Pattern.rewrite_term thy'
59582
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59058
diff changeset
   359
      (map (Logic.dest_equals o Thm.prop_of) defs) [] prop;
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   360
  in freeze_thaw (condrew thy' eqns
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   361
    (procs @ [typeof_proc [] vs, rlz_proc]))
13714
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   362
      (Const ("realizes", fastype_of t --> propT --> propT) $ t $ prop')
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   363
  end;
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   364
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   365
fun abs_corr_shyps thy thm vs xs prf =
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   366
  let
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   367
    val S = Sign.defaultS thy;
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
   368
    val (ucontext, prop') =
61039
80f40d89dab6 tuned signature;
wenzelm
parents: 60826
diff changeset
   369
      Logic.unconstrainT (Thm.shyps_of thm) (Thm.prop_of thm);
59582
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59058
diff changeset
   370
    val atyps = fold_types (fold_atyps (insert (op =))) (Thm.prop_of thm) [];
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   371
    val Ts = map_filter (fn ((v, i), _) => if member (op =) vs v then
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   372
        SOME (TVar (("'" ^ v, i), [])) else NONE)
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   373
      (rev (Term.add_vars prop' []));
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   374
    val cs = maps (fn T => map (pair T) S) Ts;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   375
    val constraints' = map Logic.mk_of_class cs;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   376
    fun typ_map T = Type.strip_sorts
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
   377
      (map_atyps (fn U => if member (op =) atyps U then (#atyp_map ucontext) U else U) T);
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   378
    fun mk_hyp (T, c) = Hyp (Logic.mk_of_class (typ_map T, c));
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   379
    val xs' = map (map_types typ_map) xs
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   380
  in
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   381
    prf |>
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   382
    Same.commit (Proofterm.map_proof_same (map_types typ_map) typ_map mk_hyp) |>
70436
251f1fb44ccd clarified signature;
wenzelm
parents: 70435
diff changeset
   383
    fold_rev Proofterm.implies_intr_proof' (map snd (#constraints ucontext)) |>
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   384
    fold_rev Proofterm.forall_intr_proof' xs' |>
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   385
    fold_rev Proofterm.implies_intr_proof' constraints'
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   386
  end;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   387
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   388
(** expanding theorems / definitions **)
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   389
33704
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   390
fun add_expand_thm is_def thm thy =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   391
  let
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   392
    val {realizes_eqns, typeof_eqns, types, realizers,
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   393
      defs, expand, prep} = ExtractionData.get thy;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   394
36744
6e1f3d609a68 renamed Thm.get_name -> Thm.derivation_name and Thm.put_name -> Thm.name_derivation, to emphasize the true nature of these operations;
wenzelm
parents: 36620
diff changeset
   395
    val name = Thm.derivation_name thm;
33704
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   396
    val _ = name <> "" orelse error "add_expand_thm: unnamed theorem";
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   397
  in
33704
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   398
    thy |> ExtractionData.put
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   399
      (if is_def then
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   400
        {realizes_eqns = realizes_eqns,
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   401
         typeof_eqns = add_rule ([], Logic.dest_equals (map_types
59582
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59058
diff changeset
   402
           Type.strip_sorts (Thm.prop_of (Drule.abs_def thm)))) typeof_eqns,
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   403
         types = types,
61094
3d88cd531abe trim context for persistent storage;
wenzelm
parents: 61039
diff changeset
   404
         realizers = realizers, defs = insert Thm.eq_thm_prop (Thm.trim_context thm) defs,
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   405
         expand = expand, prep = prep}
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   406
      else
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   407
        {realizes_eqns = realizes_eqns, typeof_eqns = typeof_eqns, types = types,
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   408
         realizers = realizers, defs = defs,
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   409
         expand = insert (op =) name expand, prep = prep})
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   410
  end;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   411
33704
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   412
fun extraction_expand is_def =
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   413
  Thm.declaration_attribute (fn th => Context.mapping (add_expand_thm is_def th) I);
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   414
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   415
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   416
(** types with computational content **)
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   417
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   418
fun add_types tys thy =
22717
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   419
  ExtractionData.map
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   420
    (fn {realizes_eqns, typeof_eqns, types, realizers, defs, expand, prep} =>
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   421
      {realizes_eqns = realizes_eqns, typeof_eqns = typeof_eqns,
22717
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   422
       types = fold (AList.update (op =) o apfst (Sign.intern_type thy)) tys types,
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   423
       realizers = realizers, defs = defs, expand = expand, prep = prep})
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   424
    thy;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   425
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   426
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   427
(** Pure setup **)
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   428
53171
a5e54d4d9081 added Theory.setup convenience;
wenzelm
parents: 52788
diff changeset
   429
val _ = Theory.setup
18708
4b3dadb4fe33 setup: theory -> theory;
wenzelm
parents: 18358
diff changeset
   430
  (add_types [("prop", ([], NONE))] #>
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   431
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   432
   add_typeof_eqns
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   433
     ["(typeof (PROP P)) \<equiv> (Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   434
    \  (typeof (PROP Q)) \<equiv> (Type (TYPE('Q))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   435
    \    (typeof (PROP P \<Longrightarrow> PROP Q)) \<equiv> (Type (TYPE('Q)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   436
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   437
      "(typeof (PROP Q)) \<equiv> (Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   438
    \    (typeof (PROP P \<Longrightarrow> PROP Q)) \<equiv> (Type (TYPE(Null)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   439
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   440
      "(typeof (PROP P)) \<equiv> (Type (TYPE('P))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   441
    \  (typeof (PROP Q)) \<equiv> (Type (TYPE('Q))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   442
    \    (typeof (PROP P \<Longrightarrow> PROP Q)) \<equiv> (Type (TYPE('P \<Rightarrow> 'Q)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   443
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   444
      "(\<lambda>x. typeof (PROP P (x))) \<equiv> (\<lambda>x. Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   445
    \    (typeof (\<And>x. PROP P (x))) \<equiv> (Type (TYPE(Null)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   446
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   447
      "(\<lambda>x. typeof (PROP P (x))) \<equiv> (\<lambda>x. Type (TYPE('P))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   448
    \    (typeof (\<And>x::'a. PROP P (x))) \<equiv> (Type (TYPE('a \<Rightarrow> 'P)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   449
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   450
      "(\<lambda>x. typeof (f (x))) \<equiv> (\<lambda>x. Type (TYPE('f))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   451
    \    (typeof (f)) \<equiv> (Type (TYPE('f)))"] #>
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   452
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   453
   add_realizes_eqns
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   454
     ["(typeof (PROP P)) \<equiv> (Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   455
    \    (realizes (r) (PROP P \<Longrightarrow> PROP Q)) \<equiv>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   456
    \    (PROP realizes (Null) (PROP P) \<Longrightarrow> PROP realizes (r) (PROP Q))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   457
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   458
      "(typeof (PROP P)) \<equiv> (Type (TYPE('P))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   459
    \  (typeof (PROP Q)) \<equiv> (Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   460
    \    (realizes (r) (PROP P \<Longrightarrow> PROP Q)) \<equiv>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   461
    \    (\<And>x::'P. PROP realizes (x) (PROP P) \<Longrightarrow> PROP realizes (Null) (PROP Q))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   462
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   463
      "(realizes (r) (PROP P \<Longrightarrow> PROP Q)) \<equiv>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   464
    \  (\<And>x. PROP realizes (x) (PROP P) \<Longrightarrow> PROP realizes (r (x)) (PROP Q))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   465
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   466
      "(\<lambda>x. typeof (PROP P (x))) \<equiv> (\<lambda>x. Type (TYPE(Null))) \<Longrightarrow>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   467
    \    (realizes (r) (\<And>x. PROP P (x))) \<equiv>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   468
    \    (\<And>x. PROP realizes (Null) (PROP P (x)))",
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   469
67721
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   470
      "(realizes (r) (\<And>x. PROP P (x))) \<equiv>  \
5348bea4accd eliminated ASCII syntax from Pure bootstrap;
wenzelm
parents: 67522
diff changeset
   471
    \  (\<And>x. PROP realizes (r (x)) (PROP P (x)))"] #>
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   472
67147
dea94b1aabc3 prefer control symbol antiquotations;
wenzelm
parents: 66251
diff changeset
   473
   Attrib.setup \<^binding>\<open>extraction_expand\<close> (Scan.succeed (extraction_expand false))
33704
6aeb8454efc1 add_expand_thm: explicit indication of is_def instead of fragile heuristic, tuned signature;
wenzelm
parents: 33522
diff changeset
   474
     "specify theorems to be expanded during extraction" #>
67147
dea94b1aabc3 prefer control symbol antiquotations;
wenzelm
parents: 66251
diff changeset
   475
   Attrib.setup \<^binding>\<open>extraction_expand_def\<close> (Scan.succeed (extraction_expand true))
53171
a5e54d4d9081 added Theory.setup convenience;
wenzelm
parents: 52788
diff changeset
   476
     "specify definitions to be expanded during extraction");
15801
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   477
d2f5ca3c048d superceded by Pure.thy and CPure.thy;
wenzelm
parents: 15798
diff changeset
   478
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   479
(**** extract program ****)
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   480
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   481
val dummyt = Const ("dummy", dummyT);
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   482
58436
haftmann
parents: 56436
diff changeset
   483
fun extract thm_vss thy =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   484
  let
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   485
    val thy' = add_syntax thy;
62922
96691631c1eb clarified context;
wenzelm
parents: 61865
diff changeset
   486
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   487
    val {realizes_eqns, typeof_eqns, types, realizers, defs, expand, prep} =
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   488
      ExtractionData.get thy;
22717
74dbc7696083 canonical merge operations
haftmann
parents: 22675
diff changeset
   489
    val procs = maps (rev o fst o snd) types;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   490
    val rtypes = map fst types;
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   491
    val typroc = typeof_proc [];
61094
3d88cd531abe trim context for persistent storage;
wenzelm
parents: 61039
diff changeset
   492
    val prep = the_default (K I) prep thy' o
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   493
      ProofRewriteRules.elim_defs thy' false (map (Thm.transfer thy) defs) o
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   494
      Proofterm.expand_proof thy' (map (rpair NONE) ("" :: expand));
16800
90eff1b52428 improved Net interface;
wenzelm
parents: 16790
diff changeset
   495
    val rrews = Net.merge (K false) (#net realizes_eqns, #net typeof_eqns);
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   496
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   497
    fun find_inst prop Ts ts vs =
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   498
      let
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   499
        val rvs = relevant_vars rtypes prop;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   500
        val vars = vars_of prop;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   501
        val n = Int.min (length vars, length ts);
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   502
33337
9c3b9bf81e8b eliminated some old folds;
wenzelm
parents: 33317
diff changeset
   503
        fun add_args (Var ((a, i), _), t) (vs', tye) =
20664
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   504
          if member (op =) rvs a then
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   505
            let val T = etype_of thy' vs Ts t
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   506
            in if T = nullT then (vs', tye)
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   507
               else (a :: vs', (("'" ^ a, i), T) :: tye)
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   508
            end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   509
          else (vs', tye)
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   510
33957
e9afca2118d4 normalized uncurry take/drop
haftmann
parents: 33955
diff changeset
   511
      in fold_rev add_args (take n vars ~~ take n ts) ([], []) end;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   512
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   513
    fun mk_shyps tye = maps (fn (ixn, _) =>
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   514
      Logic.mk_of_sort (TVar (ixn, []), Sign.defaultS thy)) tye;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   515
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   516
    fun mk_sprfs cs tye = maps (fn (_, T) =>
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   517
      ProofRewriteRules.mk_of_sort_proof thy' (map SOME cs)
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   518
        (T, Sign.defaultS thy)) tye;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   519
33038
8f9594c31de4 dropped redundant gen_ prefix
haftmann
parents: 32784
diff changeset
   520
    fun find (vs: string list) = Option.map snd o find_first (curry (eq_set (op =)) vs o fst);
28375
c879d88d038a eliminated polymorphic equality;
wenzelm
parents: 28370
diff changeset
   521
    fun find' (s: string) = map_filter (fn (s', x) => if s = s' then SOME x else NONE);
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   522
46219
426ed18eba43 discontinued old-style Term.list_abs in favour of plain Term.abs;
wenzelm
parents: 44057
diff changeset
   523
    fun app_rlz_rews Ts vs t =
426ed18eba43 discontinued old-style Term.list_abs in favour of plain Term.abs;
wenzelm
parents: 44057
diff changeset
   524
      strip_abs (length Ts)
426ed18eba43 discontinued old-style Term.list_abs in favour of plain Term.abs;
wenzelm
parents: 44057
diff changeset
   525
        (freeze_thaw (condrew thy' rrews (procs @ [typroc vs, rlz_proc]))
426ed18eba43 discontinued old-style Term.list_abs in favour of plain Term.abs;
wenzelm
parents: 44057
diff changeset
   526
          (fold (Term.abs o pair "x") Ts t));
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   527
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   528
    fun realizes_null vs prop = app_rlz_rews [] vs
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   529
      (Const ("realizes", nullT --> propT --> propT) $ nullt $ prop);
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   530
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   531
    fun corr d vs ts Ts hs cs _ (PBound i) _ defs = (PBound i, defs)
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   532
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   533
      | corr d vs ts Ts hs cs t (Abst (s, SOME T, prf)) (Abst (_, _, prf')) defs =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   534
          let val (corr_prf, defs') = corr d vs [] (T :: Ts)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   535
            (dummyt :: hs) cs (case t of SOME (Abs (_, _, u)) => SOME u | _ => NONE)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   536
            prf (Proofterm.incr_pboundvars 1 0 prf') defs
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   537
          in (Abst (s, SOME T, corr_prf), defs') end
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   538
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   539
      | corr d vs ts Ts hs cs t (AbsP (s, SOME prop, prf)) (AbsP (_, _, prf')) defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   540
          let
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   541
            val T = etype_of thy' vs Ts prop;
42407
5b9dd52f5dca prefer internal types, via Simple_Syntax.read_typ;
wenzelm
parents: 42406
diff changeset
   542
            val u = if T = nullT then
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   543
                (case t of SOME u => SOME (incr_boundvars 1 u) | NONE => NONE)
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   544
              else (case t of SOME (Abs (_, _, u)) => SOME u | _ => NONE);
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   545
            val (corr_prf, defs') =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   546
              corr d vs [] (T :: Ts) (prop :: hs)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   547
                (prop :: cs) u (Proofterm.incr_pboundvars 0 1 prf)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   548
                (Proofterm.incr_pboundvars 0 1 prf') defs;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   549
            val rlz = Const ("realizes", T --> propT --> propT)
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   550
          in (
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   551
            if T = nullT then AbsP ("R",
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   552
              SOME (app_rlz_rews Ts vs (rlz $ nullt $ prop)),
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   553
                Proofterm.prf_subst_bounds [nullt] corr_prf)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   554
            else Abst (s, SOME T, AbsP ("R",
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   555
              SOME (app_rlz_rews (T :: Ts) vs
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   556
                (rlz $ Bound 0 $ incr_boundvars 1 prop)), corr_prf)), defs')
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   557
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   558
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   559
      | corr d vs ts Ts hs cs t' (prf % SOME t) (prf' % _) defs =
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   560
          let
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   561
            val (Us, T) = strip_type (fastype_of1 (Ts, t));
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   562
            val (corr_prf, defs') = corr d vs (t :: ts) Ts hs cs
20664
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   563
              (if member (op =) rtypes (tname_of T) then t'
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   564
               else (case t' of SOME (u $ _) => SOME u | _ => NONE))
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   565
               prf prf' defs;
20664
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   566
            val u = if not (member (op =) rtypes (tname_of T)) then t else
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   567
              let
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   568
                val eT = etype_of thy' vs Ts t;
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   569
                val (r, Us') = if eT = nullT then (nullt, Us) else
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   570
                  (Bound (length Us), eT :: Us);
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   571
                val u = list_comb (incr_boundvars (length Us') t,
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   572
                  map Bound (length Us - 1 downto 0));
17271
2756a73f63a5 introduced some new-style AList operations
haftmann
parents: 17232
diff changeset
   573
                val u' = (case AList.lookup (op =) types (tname_of T) of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   574
                    SOME ((_, SOME f)) => f r eT u T
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   575
                  | _ => Const ("realizes", eT --> T --> T) $ r $ u)
46219
426ed18eba43 discontinued old-style Term.list_abs in favour of plain Term.abs;
wenzelm
parents: 44057
diff changeset
   576
              in app_rlz_rews Ts vs (fold_rev (Term.abs o pair "x") Us' u') end
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   577
          in (corr_prf % SOME u, defs') end
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   578
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   579
      | corr d vs ts Ts hs cs t (prf1 %% prf2) (prf1' %% prf2') defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   580
          let
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   581
            val prop = Proofterm.prop_of' hs prf2';
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   582
            val T = etype_of thy' vs Ts prop;
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   583
            val (f, u, defs1) = if T = nullT then (t, NONE, defs) else
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   584
              (case t of
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   585
                 SOME (f $ u) => (SOME f, SOME u, defs)
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   586
               | _ =>
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   587
                 let val (u, defs1) = extr d vs [] Ts hs prf2' defs
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   588
                 in (NONE, SOME u, defs1) end)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   589
            val ((corr_prf1, corr_prf2), defs2) =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   590
              defs1
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   591
              |> corr d vs [] Ts hs cs f prf1 prf1'
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   592
              ||>> corr d vs [] Ts hs cs u prf2 prf2';
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   593
          in
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   594
            if T = nullT then (corr_prf1 %% corr_prf2, defs2) else
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   595
              (corr_prf1 % u %% corr_prf2, defs2)
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   596
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   597
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   598
      | corr d vs ts Ts hs cs _ (prf0 as PThm (thm_header as {types = SOME Ts', ...}, thm_body)) _ defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   599
          let
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   600
            val {pos, name, prop, ...} = thm_header;
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   601
            val prf = Proofterm.thm_body_proof_open thm_body;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   602
            val (vs', tye) = find_inst prop Ts ts vs;
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   603
            val shyps = mk_shyps tye;
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   604
            val sprfs = mk_sprfs cs tye;
36042
85efdadee8ae switched PThm/PAxm etc. to use canonical order of type variables (term variables unchanged)
krauss
parents: 35985
diff changeset
   605
            val tye' = (map fst (Term.add_tvars prop [] |> rev) ~~ Ts') @ tye;
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   606
            val T = etype_of thy' vs' [] prop;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   607
            val defs' = if T = nullT then defs
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   608
              else snd (extr d vs ts Ts hs prf0 defs)
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   609
          in
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   610
            if T = nullT andalso realizes_null vs' prop aconv prop then (prf0, defs)
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   611
            else (case Symtab.lookup realizers name of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   612
              NONE => (case find vs' (find' name defs') of
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   613
                NONE =>
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   614
                  let
21858
05f57309170c avoid conflict with Alice keywords: renamed pack -> implode, unpack -> explode, any -> many, avoided assert;
wenzelm
parents: 21646
diff changeset
   615
                    val _ = T = nullT orelse error "corr: internal error";
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   616
                    val _ = msg d ("Building correctness proof for " ^ quote name ^
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   617
                      (if null vs' then ""
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   618
                       else " (relevant variables: " ^ commas_quote vs' ^ ")"));
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   619
                    val prf' = prep (Proofterm.reconstruct_proof thy' prop prf);
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   620
                    val (corr_prf0, defs'') = corr (d + 1) vs' [] [] []
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   621
                      (rev shyps) NONE prf' prf' defs';
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   622
                    val corr_prf = mkabsp shyps corr_prf0;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   623
                    val corr_prop = Proofterm.prop_of corr_prf;
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   624
                    val corr_header =
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   625
                      Proofterm.thm_header (Proofterm.proof_serial ()) pos (corr_name name vs')
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   626
                        corr_prop (SOME (map TVar (Term.add_tvars corr_prop [] |> rev)));
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   627
                    val corr_body =
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   628
                      Proofterm.thm_body I (Future.value (Proofterm.approximate_proof_body corr_prf));
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   629
                    val corr_prf' =
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   630
                      Proofterm.proof_combP
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   631
                        (Proofterm.proof_combt
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   632
                          (PThm (corr_header, corr_body), vfs_of corr_prop),
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   633
                            map PBound (length shyps - 1 downto 0)) |>
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   634
                      fold_rev Proofterm.forall_intr_proof'
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   635
                        (map (get_var_type corr_prop) (vfs_of prop)) |>
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   636
                      mkabsp shyps
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   637
                  in
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   638
                    (Proofterm.proof_combP (prf_subst_TVars tye' corr_prf', sprfs),
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   639
                      (name, (vs', ((nullt, nullt), (corr_prf, corr_prf')))) :: defs'')
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   640
                  end
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   641
              | SOME (_, (_, prf')) =>
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   642
                  (Proofterm.proof_combP (prf_subst_TVars tye' prf', sprfs), defs'))
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   643
            | SOME rs => (case find vs' rs of
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   644
                SOME (_, prf') => (Proofterm.proof_combP (prf_subst_TVars tye' prf', sprfs), defs')
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   645
              | NONE => error ("corr: no realizer for instance of theorem " ^
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   646
                  quote name ^ ":\n" ^ Syntax.string_of_term_global thy' (Envir.beta_norm
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   647
                    (Proofterm.prop_of (Proofterm.proof_combt (prf0, ts)))))))
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   648
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   649
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   650
      | corr d vs ts Ts hs cs _ (prf0 as PAxm (s, prop, SOME Ts')) _ defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   651
          let
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   652
            val (vs', tye) = find_inst prop Ts ts vs;
36042
85efdadee8ae switched PThm/PAxm etc. to use canonical order of type variables (term variables unchanged)
krauss
parents: 35985
diff changeset
   653
            val tye' = (map fst (Term.add_tvars prop [] |> rev) ~~ Ts') @ tye
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   654
          in
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   655
            if etype_of thy' vs' [] prop = nullT andalso
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   656
              realizes_null vs' prop aconv prop then (prf0, defs)
18956
c050ae1f8f52 Envir.(beta_)eta_contract;
wenzelm
parents: 18928
diff changeset
   657
            else case find vs' (Symtab.lookup_list realizers s) of
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   658
              SOME (_, prf) => (Proofterm.proof_combP (prf_subst_TVars tye' prf, mk_sprfs cs tye),
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   659
                defs)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   660
            | NONE => error ("corr: no realizer for instance of axiom " ^
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   661
                quote s ^ ":\n" ^ Syntax.string_of_term_global thy' (Envir.beta_norm
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   662
                  (Proofterm.prop_of (Proofterm.proof_combt (prf0, ts)))))
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   663
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   664
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   665
      | corr d vs ts Ts hs _ _ _ _ defs = error "corr: bad proof"
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   666
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   667
    and extr d vs ts Ts hs (PBound i) defs = (Bound i, defs)
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   668
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   669
      | extr d vs ts Ts hs (Abst (s, SOME T, prf)) defs =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   670
          let val (t, defs') = extr d vs []
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   671
            (T :: Ts) (dummyt :: hs) (Proofterm.incr_pboundvars 1 0 prf) defs
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   672
          in (Abs (s, T, t), defs') end
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   673
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   674
      | extr d vs ts Ts hs (AbsP (s, SOME t, prf)) defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   675
          let
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   676
            val T = etype_of thy' vs Ts t;
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   677
            val (t, defs') =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   678
              extr d vs [] (T :: Ts) (t :: hs) (Proofterm.incr_pboundvars 0 1 prf) defs
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   679
          in
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   680
            (if T = nullT then subst_bound (nullt, t) else Abs (s, T, t), defs')
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   681
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   682
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   683
      | extr d vs ts Ts hs (prf % SOME t) defs =
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   684
          let val (u, defs') = extr d vs (t :: ts) Ts hs prf defs
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   685
          in (if member (op =) rtypes (tname_of (body_type (fastype_of1 (Ts, t)))) then u
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   686
            else u $ t, defs')
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   687
          end
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   688
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   689
      | extr d vs ts Ts hs (prf1 %% prf2) defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   690
          let
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   691
            val (f, defs') = extr d vs [] Ts hs prf1 defs;
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   692
            val prop = Proofterm.prop_of' hs prf2;
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   693
            val T = etype_of thy' vs Ts prop
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   694
          in
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   695
            if T = nullT then (f, defs') else
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   696
              let val (t, defs'') = extr d vs [] Ts hs prf2 defs'
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   697
              in (f $ t, defs'') end
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   698
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   699
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   700
      | extr d vs ts Ts hs (prf0 as PThm (thm_header as {types = SOME Ts', ...}, thm_body)) defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   701
          let
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   702
            val {pos, name = s, prop, ...} = thm_header;
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   703
            val prf = Proofterm.thm_body_proof_open thm_body;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   704
            val (vs', tye) = find_inst prop Ts ts vs;
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   705
            val shyps = mk_shyps tye;
36042
85efdadee8ae switched PThm/PAxm etc. to use canonical order of type variables (term variables unchanged)
krauss
parents: 35985
diff changeset
   706
            val tye' = (map fst (Term.add_tvars prop [] |> rev) ~~ Ts') @ tye
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   707
          in
17412
e26cb20ef0cc TableFun/Symtab: curried lookup and update;
wenzelm
parents: 17271
diff changeset
   708
            case Symtab.lookup realizers s of
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   709
              NONE => (case find vs' (find' s defs) of
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   710
                NONE =>
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   711
                  let
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   712
                    val _ = msg d ("Extracting " ^ quote s ^
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   713
                      (if null vs' then ""
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   714
                       else " (relevant variables: " ^ commas_quote vs' ^ ")"));
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   715
                    val prf' = prep (Proofterm.reconstruct_proof thy' prop prf);
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   716
                    val (t, defs') = extr (d + 1) vs' [] [] [] prf' defs;
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   717
                    val (corr_prf, defs'') = corr (d + 1) vs' [] [] []
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   718
                      (rev shyps) (SOME t) prf' prf' defs';
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   719
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   720
                    val nt = Envir.beta_norm t;
20664
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   721
                    val args = filter_out (fn v => member (op =) rtypes
ffbc5a57191a member (op =);
wenzelm
parents: 20548
diff changeset
   722
                      (tname_of (body_type (fastype_of v)))) (vfs_of prop);
33317
b4534348b8fd standardized filter/filter_out;
wenzelm
parents: 33245
diff changeset
   723
                    val args' = filter (fn v => Logic.occs (v, nt)) args;
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   724
                    val t' = mkabs args' nt;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   725
                    val T = fastype_of t';
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   726
                    val cname = extr_name s vs';
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   727
                    val c = Const (cname, T);
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   728
                    val u = mkabs args (list_comb (c, args'));
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   729
                    val eqn = Logic.mk_equals (c, t');
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   730
                    val rlz =
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   731
                      Const ("realizes", fastype_of nt --> propT --> propT);
13732
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   732
                    val lhs = app_rlz_rews [] vs' (rlz $ nt $ prop);
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   733
                    val rhs = app_rlz_rews [] vs' (rlz $ list_comb (c, args') $ prop);
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   734
                    val f = app_rlz_rews [] vs'
f8badfef5cf2 Correctness proofs are now modular, too.
berghofe
parents: 13719
diff changeset
   735
                      (Abs ("x", T, rlz $ list_comb (Bound 0, args') $ prop));
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   736
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   737
                    val corr_prf' = mkabsp shyps
70417
eb6ff14767cd tuned signature;
wenzelm
parents: 70414
diff changeset
   738
                      (chtypes [] Proofterm.equal_elim_axm %> lhs %> rhs %%
eb6ff14767cd tuned signature;
wenzelm
parents: 70414
diff changeset
   739
                       (chtypes [propT] Proofterm.symmetric_axm %> rhs %> lhs %%
eb6ff14767cd tuned signature;
wenzelm
parents: 70414
diff changeset
   740
                         (chtypes [T, propT] Proofterm.combination_axm %> f %> f %> c %> t' %%
eb6ff14767cd tuned signature;
wenzelm
parents: 70414
diff changeset
   741
                           (chtypes [T --> propT] Proofterm.reflexive_axm %> f) %%
46909
3c73a121a387 more explicit indication of def names;
wenzelm
parents: 46219
diff changeset
   742
                           PAxm (Thm.def_name cname, eqn,
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   743
                             SOME (map TVar (Term.add_tvars eqn [] |> rev))))) %% corr_prf);
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   744
                    val corr_prop = Proofterm.prop_of corr_prf';
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   745
                    val corr_header =
70494
41108e3e9ca5 formal position for PThm nodes;
wenzelm
parents: 70493
diff changeset
   746
                      Proofterm.thm_header (Proofterm.proof_serial ()) pos (corr_name s vs')
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   747
                        corr_prop (SOME (map TVar (Term.add_tvars corr_prop [] |> rev)));
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   748
                    val corr_body =
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   749
                      Proofterm.thm_body I
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   750
                        (Future.value (Proofterm.approximate_proof_body corr_prf'));
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   751
                    val corr_prf'' =
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   752
                      Proofterm.proof_combP (Proofterm.proof_combt
70493
a9053fa30909 clarified ML types;
wenzelm
parents: 70449
diff changeset
   753
                        (PThm (corr_header, corr_body), vfs_of corr_prop),
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   754
                             map PBound (length shyps - 1 downto 0)) |>
37310
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   755
                      fold_rev Proofterm.forall_intr_proof'
96e2b9a6f074 do not open Proofterm, which is very ould style;
wenzelm
parents: 37237
diff changeset
   756
                        (map (get_var_type corr_prop) (vfs_of prop)) |>
37233
b78f31ca4675 Adapted to new format of proof terms containing explicit proofs of class membership.
berghofe
parents: 36953
diff changeset
   757
                      mkabsp shyps
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   758
                  in
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   759
                    (subst_TVars tye' u,
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   760
                      (s, (vs', ((t', u), (corr_prf', corr_prf'')))) :: defs'')
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   761
                  end
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   762
              | SOME ((_, u), _) => (subst_TVars tye' u, defs))
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   763
            | SOME rs => (case find vs' rs of
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   764
                SOME (t, _) => (subst_TVars tye' t, defs)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   765
              | NONE => error ("extr: no realizer for instance of theorem " ^
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   766
                  quote s ^ ":\n" ^ Syntax.string_of_term_global thy' (Envir.beta_norm
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   767
                    (Proofterm.prop_of (Proofterm.proof_combt (prf0, ts))))))
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   768
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   769
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   770
      | extr d vs ts Ts hs (prf0 as PAxm (s, prop, SOME Ts')) defs =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   771
          let
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   772
            val (vs', tye) = find_inst prop Ts ts vs;
36042
85efdadee8ae switched PThm/PAxm etc. to use canonical order of type variables (term variables unchanged)
krauss
parents: 35985
diff changeset
   773
            val tye' = (map fst (Term.add_tvars prop [] |> rev) ~~ Ts') @ tye
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   774
          in
18956
c050ae1f8f52 Envir.(beta_)eta_contract;
wenzelm
parents: 18928
diff changeset
   775
            case find vs' (Symtab.lookup_list realizers s) of
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   776
              SOME (t, _) => (subst_TVars tye' t, defs)
15531
08c8dad8e399 Deleted Library.option type.
skalberg
parents: 15457
diff changeset
   777
            | NONE => error ("extr: no realizer for instance of axiom " ^
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   778
                quote s ^ ":\n" ^ Syntax.string_of_term_global thy' (Envir.beta_norm
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   779
                  (Proofterm.prop_of (Proofterm.proof_combt (prf0, ts)))))
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   780
          end
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   781
49960
1167c1157a5b more conventional argument order;
haftmann
parents: 48704
diff changeset
   782
      | extr d vs ts Ts hs _ defs = error "extr: bad proof";
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   783
60826
695cf1fab6cc clarified context;
wenzelm
parents: 59787
diff changeset
   784
    fun prep_thm vs raw_thm =
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   785
      let
60826
695cf1fab6cc clarified context;
wenzelm
parents: 59787
diff changeset
   786
        val thm = Thm.transfer thy raw_thm;
26626
c6231d64d264 rep_cterm/rep_thm: no longer dereference theory_ref;
wenzelm
parents: 26481
diff changeset
   787
        val prop = Thm.prop_of thm;
28814
463c9e9111ae clarified Thm.proof_body_of vs. Thm.proof_of;
wenzelm
parents: 28812
diff changeset
   788
        val prf = Thm.proof_of thm;
36744
6e1f3d609a68 renamed Thm.get_name -> Thm.derivation_name and Thm.put_name -> Thm.name_derivation, to emphasize the true nature of these operations;
wenzelm
parents: 36620
diff changeset
   789
        val name = Thm.derivation_name thm;
21858
05f57309170c avoid conflict with Alice keywords: renamed pack -> implode, unpack -> explode, any -> many, avoided assert;
wenzelm
parents: 21646
diff changeset
   790
        val _ = name <> "" orelse error "extraction: unnamed theorem";
05f57309170c avoid conflict with Alice keywords: renamed pack -> implode, unpack -> explode, any -> many, avoided assert;
wenzelm
parents: 21646
diff changeset
   791
        val _ = etype_of thy' vs [] prop <> nullT orelse error ("theorem " ^
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   792
          quote name ^ " has no computational content")
70449
6e34025981be clarified global theory context;
wenzelm
parents: 70447
diff changeset
   793
      in Proofterm.reconstruct_proof thy' prop prf end;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   794
33245
65232054ffd0 eliminated some old folds;
wenzelm
parents: 33038
diff changeset
   795
    val defs =
58436
haftmann
parents: 56436
diff changeset
   796
      fold (fn (thm, vs) => snd o (extr 0 vs [] [] [] o prep_thm vs) thm)
haftmann
parents: 56436
diff changeset
   797
        thm_vss [];
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   798
66145
haftmann
parents: 64556
diff changeset
   799
    fun add_def (s, (vs, ((t, u)))) thy =
haftmann
parents: 64556
diff changeset
   800
      let
haftmann
parents: 64556
diff changeset
   801
        val ft = Type.legacy_freeze t;
haftmann
parents: 64556
diff changeset
   802
        val fu = Type.legacy_freeze u;
66146
fd3e128b174f register equations stemming from extracted proofs as specification rules
haftmann
parents: 66145
diff changeset
   803
        val head = head_of (strip_abs_body fu);
66145
haftmann
parents: 64556
diff changeset
   804
      in
haftmann
parents: 64556
diff changeset
   805
        thy
haftmann
parents: 64556
diff changeset
   806
        |> Sign.add_consts [(Binding.qualified_name (extr_name s vs), fastype_of ft, NoSyn)]
haftmann
parents: 64556
diff changeset
   807
        |> Global_Theory.add_defs false
haftmann
parents: 64556
diff changeset
   808
           [((Binding.qualified_name (Thm.def_name (extr_name s vs)),
66146
fd3e128b174f register equations stemming from extracted proofs as specification rules
haftmann
parents: 66145
diff changeset
   809
             Logic.mk_equals (head, ft)), [])]
fd3e128b174f register equations stemming from extracted proofs as specification rules
haftmann
parents: 66145
diff changeset
   810
        |-> (fn [def_thm] =>
69992
bd3c10813cc4 more informative Spec_Rules.Equational, notably primrec argument types;
wenzelm
parents: 67721
diff changeset
   811
           Spec_Rules.add_global Spec_Rules.equational ([head], [def_thm])
66251
cd935b7cb3fb proper concept of code declaration wrt. atomicity and Isar declarations
haftmann
parents: 66146
diff changeset
   812
           #> Code.declare_default_eqns_global [(def_thm, true)])
66145
haftmann
parents: 64556
diff changeset
   813
      end;
haftmann
parents: 64556
diff changeset
   814
haftmann
parents: 64556
diff changeset
   815
    fun add_corr (s, (vs, prf)) thy =
haftmann
parents: 64556
diff changeset
   816
      let
70447
755d58b48cec clarified modules: provide reconstruct_proof / expand_proof at the bottom of proof term construction;
wenzelm
parents: 70436
diff changeset
   817
        val corr_prop = Proofterm.prop_of prf;
66145
haftmann
parents: 64556
diff changeset
   818
      in
haftmann
parents: 64556
diff changeset
   819
        thy
haftmann
parents: 64556
diff changeset
   820
        |> Global_Theory.store_thm (Binding.qualified_name (corr_name s vs),
haftmann
parents: 64556
diff changeset
   821
            Thm.varifyT_global (funpow (length (vars_of corr_prop))
haftmann
parents: 64556
diff changeset
   822
              (Thm.forall_elim_var 0) (Thm.forall_intr_frees
haftmann
parents: 64556
diff changeset
   823
                (Proof_Checker.thm_of_proof thy
haftmann
parents: 64556
diff changeset
   824
                  (fst (Proofterm.freeze_thaw_prf prf))))))
haftmann
parents: 64556
diff changeset
   825
        |> snd
haftmann
parents: 64556
diff changeset
   826
      end;
haftmann
parents: 64556
diff changeset
   827
haftmann
parents: 64556
diff changeset
   828
    fun add_def_and_corr (s, (vs, ((t, u), (prf, _)))) thy =
haftmann
parents: 64556
diff changeset
   829
      if is_none (Sign.const_type thy (extr_name s vs))
haftmann
parents: 64556
diff changeset
   830
      then
haftmann
parents: 64556
diff changeset
   831
        thy
haftmann
parents: 64556
diff changeset
   832
        |> not (t = nullt) ? add_def (s, (vs, ((t, u))))
haftmann
parents: 64556
diff changeset
   833
        |> add_corr (s, (vs, prf))
haftmann
parents: 64556
diff changeset
   834
      else
haftmann
parents: 64556
diff changeset
   835
        thy;
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   836
16149
d8cac577493c Theory.restore_naming;
wenzelm
parents: 15801
diff changeset
   837
  in
d8cac577493c Theory.restore_naming;
wenzelm
parents: 15801
diff changeset
   838
    thy
30435
e62d6ecab6ad explicit Binding.qualified_name -- prevents implicitly qualified bstring;
wenzelm
parents: 30364
diff changeset
   839
    |> Sign.root_path
66145
haftmann
parents: 64556
diff changeset
   840
    |> fold_rev add_def_and_corr defs
22796
34c316d7b630 renamed some old names Theory.xxx to Sign.xxx;
wenzelm
parents: 22750
diff changeset
   841
    |> Sign.restore_naming thy
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   842
  end;
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   843
16458
4c6fd0c01d28 accomodate change of TheoryDataFun;
wenzelm
parents: 16363
diff changeset
   844
val etype_of = etype_of o add_syntax;
13714
bdd483321f4b - exported functions etype_of and mk_typ
berghofe
parents: 13609
diff changeset
   845
13402
e6e826bb8c3c Added program extraction module.
berghofe
parents:
diff changeset
   846
end;