Nominal/Parser.thy
author Christian Urban <urbanc@in.tum.de>
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theory Parser
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imports "Nominal2_Atoms" "Nominal2_Eqvt" "Nominal2_Supp"
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begin
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atom_decl name
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section{* Interface for nominal_datatype *}
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text {*
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Nominal-Datatype-part:
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1st Arg: string list  
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         ^^^^^^^^^^^
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         strings of the types to be defined
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2nd Arg: (string list * binding * mixfix * (binding * typ list * mixfix) list) list
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         ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^   ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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               type(s) to be defined             constructors list
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               (ty args, name, syn)              (name, typs, syn)
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Binder-Function-part:
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3rd Arg: (binding * typ option * mixfix) list 
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         ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^    
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            binding function(s)           
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              to be defined               
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            (name, type, syn)             
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4th Arg:  term list 
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          ^^^^^^^^^
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          the equations of the binding functions
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          (Trueprop equations)
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*}
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text {*****************************************************}
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ML {* 
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(* nominal datatype parser *)
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local
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  structure P = OuterParse
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in
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val _ = OuterKeyword.keyword "bind"
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val anno_typ = Scan.option (P.name --| P.$$$ "::") -- P.typ
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(* binding specification *)
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(* should use and_list *)
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val bind_parser = 
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  P.enum "," ((P.$$$ "bind" |-- P.term) -- (P.$$$ "in" |-- P.name))
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val constr_parser =
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  P.binding -- Scan.repeat anno_typ
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(* datatype parser *)
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val dt_parser =
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  ((P.type_args -- P.binding -- P.opt_infix) >> P.triple1) -- 
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    (P.$$$ "=" |-- P.enum1 "|" ((constr_parser -- bind_parser -- P.opt_mixfix) >> P.triple_swap))
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(* function equation parser *)
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val fun_parser = 
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  Scan.optional (P.$$$ "binder" |-- P.fixes -- SpecParse.where_alt_specs) ([],[])
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(* main parser *)
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val main_parser =
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  (P.and_list1 dt_parser) -- fun_parser
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end
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*}
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(* adds "_raw" to the end of constants and types *)
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ML {*
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fun add_raw s = s ^ "_raw"
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fun add_raws ss = map add_raw ss
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fun raw_bind bn = Binding.suffix_name "_raw" bn
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fun replace_str ss s = 
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  case (AList.lookup (op=) ss s) of 
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     SOME s' => s'
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   | NONE => s
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fun replace_typ ty_ss (Type (a, Ts)) = Type (replace_str ty_ss a, map (replace_typ ty_ss) Ts)
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  | replace_typ ty_ss T = T  
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fun raw_dts ty_ss dts =
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let
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  val ty_ss' = ty_ss ~~ (add_raws ty_ss)
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  fun raw_dts_aux1 (bind, tys, mx) =
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    (raw_bind bind, map (replace_typ ty_ss') tys, mx)
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  fun raw_dts_aux2 (ty_args, bind, mx, constrs) =
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    (ty_args, raw_bind bind, mx, map raw_dts_aux1 constrs)
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in
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  map raw_dts_aux2 dts
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end
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fun replace_aterm trm_ss (Const (a, T)) = Const (replace_str trm_ss a, T)
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  | replace_aterm trm_ss (Free (a, T)) = Free (replace_str trm_ss a, T)
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  | replace_aterm trm_ss trm = trm
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fun replace_term trm_ss ty_ss trm =
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  trm |> Term.map_aterms (replace_aterm trm_ss) |> map_types (replace_typ ty_ss) 
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*}
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ML {*
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fun get_constrs dts =
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  flat (map (fn (_, _, _, constrs) => constrs) dts)
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fun get_typed_constrs dts =
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  flat (map (fn (_, bn, _, constrs) => 
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   (map (fn (bn', _, _) => (Binding.name_of bn, Binding.name_of bn')) constrs)) dts)
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fun get_constr_strs dts =
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  map (fn (bn, _, _) => Binding.name_of bn) (get_constrs dts)
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fun get_bn_fun_strs bn_funs =
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  map (fn (bn_fun, _, _) => Binding.name_of bn_fun) bn_funs
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*}
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ML {*
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fun raw_dts_decl dt_names dts lthy =
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let
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  val thy = ProofContext.theory_of lthy
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  val conf = Datatype.default_config
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  val dt_names' = add_raws dt_names
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  val dt_full_names = map (Sign.full_bname thy) dt_names 
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  val dts' = raw_dts dt_full_names dts
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in
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  lthy
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  |> Local_Theory.theory_result (Datatype.add_datatype conf dt_names' dts')
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end 
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*}
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ML {*
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fun raw_bn_fun_decl dt_names dts bn_funs bn_eqs lthy =
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let
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  val thy = ProofContext.theory_of lthy
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  val dt_names' = add_raws dt_names
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  val dt_full_names = map (Sign.full_bname thy) dt_names 
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  val dt_full_names' = map (Sign.full_bname thy) dt_names' 
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  val ctrs_names = map (Sign.full_bname thy) (get_constr_strs dts)
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  val ctrs_names' = map (fn (x, y) => (Sign.full_bname_path thy (add_raw x) (add_raw y))) 
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    (get_typed_constrs dts)
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  val bn_fun_strs = get_bn_fun_strs bn_funs
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  val bn_fun_strs' = add_raws bn_fun_strs
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  val bn_funs' = map (fn (bn, opt_ty, mx) => 
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    (raw_bind bn, Option.map (replace_typ (dt_full_names ~~ dt_full_names')) opt_ty, mx)) bn_funs
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  val bn_eqs' = map (fn trm => 
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    (Attrib.empty_binding, 
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      (replace_term ((ctrs_names ~~ ctrs_names') @ (bn_fun_strs ~~ bn_fun_strs')) (dt_full_names ~~ dt_full_names') trm))) bn_eqs
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in
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  if null bn_eqs 
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  then (([], []), lthy)
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  else Primrec.add_primrec bn_funs' bn_eqs' lthy 
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end 
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*}
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fun nominal_datatype2 dts bn_funs bn_eqs lthy =
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let
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  val dts_names = map (fn (_, s, _, _) => Binding.name_of s) dts
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in
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  lthy
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  |> raw_dts_decl dts_names dts
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  ||>> raw_bn_fun_decl dts_names dts bn_funs bn_eqs
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end
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*}
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ML {*
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(* makes a full named type out of a binding with tvars applied to it *)
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fun mk_type thy bind tvrs =
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  Type (Sign.full_name thy bind, map (fn s => TVar ((s, 0), [])) tvrs)
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fun get_constrs2 thy dts =
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let
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  val dts' = map (fn (tvrs, tname, _, constrs) => (mk_type thy tname tvrs, constrs)) dts
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in
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  flat (map (fn (ty, constrs) => map (fn (bn, tys, mx) =>  (bn, tys ---> ty, mx)) constrs) dts')
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end
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*}
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ML {*
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fun nominal_datatype2_cmd (dt_strs, (bn_fun_strs, bn_eq_strs)) lthy =
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let
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  val thy = ProofContext.theory_of lthy
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  fun prep_typ ((tvs, tname, mx), _) = (tname, length tvs, mx);
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  (* adding the types for parsing datatypes *)
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  val lthy_tmp = lthy
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    |> Local_Theory.theory (Sign.add_types (map prep_typ dt_strs))
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  fun prep_cnstr lthy (((cname, atys), mx), binders) =
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    (cname, map (Syntax.read_typ lthy o snd) atys, mx)
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  fun prep_dt lthy ((tvs, tname, mx), cnstrs) = 
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    (tvs, tname, mx, map (prep_cnstr lthy) cnstrs)
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  (* parsing the datatypes *)
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  val dts_prep = map (prep_dt lthy_tmp) dt_strs
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  (* adding constructors for parsing functions *)
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  val lthy_tmp2 = lthy_tmp
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    |> Local_Theory.theory (Sign.add_consts_i (get_constrs2 thy dts_prep))
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  val (bn_fun_aux, bn_eq_aux) = fst (Specification.read_spec bn_fun_strs bn_eq_strs lthy_tmp2)
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  fun prep_bn_fun ((bn, T), mx) = (bn, SOME T, mx) 
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  fun prep_bn_eq (attr, t) = t
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  val bn_fun_prep = map prep_bn_fun bn_fun_aux
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  val bn_eq_prep = map prep_bn_eq bn_eq_aux 
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in
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  nominal_datatype2 dts_prep bn_fun_prep bn_eq_prep lthy |> snd
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end
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*}
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(* Command Keyword *)
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ML {*
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let
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   val kind = OuterKeyword.thy_decl
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in
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   OuterSyntax.local_theory "nominal_datatype" "test" kind 
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     (main_parser >> nominal_datatype2_cmd)
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end
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*}
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end
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