Nominal/Parser.thy
author Christian Urban <urbanc@in.tum.de>
Tue, 02 Mar 2010 16:04:48 +0100
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theory Parser
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imports "Nominal2_Atoms" "Nominal2_Eqvt" "Nominal2_Supp" "Perm" "Fv" "Rsp"
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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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1nd 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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2rd 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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3th 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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ML {*
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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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  fun tuple ((x, y, z), u) = (x, y, z, u)
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  fun tswap (((x, y), z), u) = (x, y, u, z)
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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.$$$ "::") -- P.typ
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(* binding specification *)
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(* maybe use and_list *)
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val bind_parser = 
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  P.enum "," ((P.$$$ "bind" |-- P.term) -- (P.$$$ "in" |-- P.name) >> swap)
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val constr_parser =
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  P.binding -- Scan.repeat anno_typ
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(* datatype parser *)
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val dt_parser =
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  (P.type_args -- P.binding -- P.opt_mixfix >> P.triple1) -- 
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    (P.$$$ "=" |-- P.enum1 "|" (constr_parser -- bind_parser -- P.opt_mixfix >> tswap)) >> tuple
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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 >> P.triple2
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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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  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_cnstrs dts =
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  map (fn (_, _, _, constrs) => constrs) dts
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fun get_typed_cnstrs 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_cnstr_strs dts =
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  map (fn (bn, _, _) => Binding.name_of bn) (flat (get_cnstrs 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 rawify_dts dt_names dts dts_env =
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let
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  val raw_dts = raw_dts dts_env dts
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  val raw_dt_names = add_raws dt_names
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in
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  (raw_dt_names, raw_dts)
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end 
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*}
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ML {*
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fun rawify_bn_funs dts_env cnstrs_env bn_fun_env bn_funs bn_eqs =
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let
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  val bn_funs' = map (fn (bn, ty, mx) => 
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    (raw_bind bn, replace_typ dts_env ty, mx)) bn_funs
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  val bn_eqs' = map (fn (attr, trm) => 
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    (attr, replace_term (cnstrs_env @ bn_fun_env) dts_env trm)) bn_eqs
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in
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  (bn_funs', bn_eqs') 
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end 
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*}
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ML {* 
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fun rawify_binds dts_env cnstrs_env bn_fun_env binds =
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  map (map (map (map (fn (opt_trm, i, j) => 
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    (Option.map (replace_term (cnstrs_env @ bn_fun_env) dts_env) opt_trm, i, j))))) binds
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*}
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ML {* 
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fun add_primrec_wrapper funs eqs lthy = 
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  if null funs then (([], []), lthy)
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  else 
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   let 
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     val eqs' = map (fn (_, eq) => (Attrib.empty_binding, eq)) eqs
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     val funs' = map (fn (bn, ty, mx) => (bn, SOME ty, mx)) funs
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   in 
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     Primrec.add_primrec funs' eqs' lthy
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   end
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*}
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ML {*
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fun add_datatype_wrapper dt_names dts =
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let
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  val conf = Datatype.default_config
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in
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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_nominal_decls dts bn_funs bn_eqs binds lthy =
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let
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  val thy = ProofContext.theory_of lthy
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  val thy_name = Context.theory_name thy
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  val dt_names = map (fn (_, s, _, _) => Binding.name_of s) dts
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  val dt_full_names = map (Long_Name.qualify thy_name) dt_names 
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  val dt_full_names' = add_raws dt_full_names
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  val dts_env = dt_full_names ~~ dt_full_names'
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  val cnstrs = get_cnstr_strs dts
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  val cnstrs_ty = get_typed_cnstrs dts
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  val cnstrs_full_names = map (Long_Name.qualify thy_name) cnstrs
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  val cnstrs_full_names' = map (fn (x, y) => Long_Name.qualify thy_name 
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    (Long_Name.qualify (add_raw x) (add_raw y))) cnstrs_ty
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  val cnstrs_env = cnstrs_full_names ~~ cnstrs_full_names'
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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_fun_env = bn_fun_strs ~~ bn_fun_strs'
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  val bn_fun_full_env = map (pairself (Long_Name.qualify thy_name)) 
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    (bn_fun_strs ~~ bn_fun_strs')
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  val (raw_dt_names, raw_dts) = rawify_dts dt_names dts dts_env
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  val (raw_bn_funs, raw_bn_eqs) = rawify_bn_funs dts_env cnstrs_env bn_fun_env bn_funs bn_eqs 
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  val raw_binds = rawify_binds dts_env cnstrs_env bn_fun_full_env binds 
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in
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  lthy 
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  |> add_datatype_wrapper raw_dt_names raw_dts 
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  ||>> add_primrec_wrapper raw_bn_funs raw_bn_eqs
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  ||>> pair raw_binds
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end
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*}
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ML {* add_primrec_wrapper *}
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ML {* 
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fun nominal_datatype2 dts bn_funs bn_eqs binds lthy =
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let
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  val (((raw_dt_names, (raw_bn_funs, raw_bn_eqs)), raw_binds), lthy2) =
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    raw_nominal_decls dts bn_funs bn_eqs binds lthy
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  val dtinfo = Datatype.the_info (ProofContext.theory_of lthy2) (hd raw_dt_names);
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  val descr = #descr dtinfo;
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  val all_full_tnames = map (fn (_, (n, _, _)) => n) descr;
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  val dtinfos = map (Datatype.the_info (ProofContext.theory_of lthy2)) all_full_tnames;
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  val inject = flat (map #inject dtinfos);
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  val distinct = flat (map #distinct dtinfos);
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  val inducts = #inducts dtinfo;
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  val ((raw_perm_def, raw_perm_simps, perms), lthy3) =
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    Local_Theory.theory_result (define_raw_perms dtinfo (length dts)) lthy2;
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  val raw_binds_flat = map (map flat) raw_binds;
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  val (((fv_ts_loc, fv_def_loc), alpha), lthy4) = define_fv_alpha dtinfo raw_binds_flat lthy3;
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  val dts_names = map (fn (i, (s, _, _)) => (s, i)) (#descr dtinfo);
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  val _ = tracing (PolyML.makestring dts_names);
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  val bn_tys = map (domain_type o fastype_of) raw_bn_funs;
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  val _ = tracing (PolyML.makestring bn_tys);
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  val bn_nos = map (dtyp_no_of_typ dts_names) bn_tys;
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  val _ = tracing (PolyML.makestring bn_nos);
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  val bns = raw_bn_funs ~~ bn_nos;
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  val alpha_intros = #intrs alpha;
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  val alpha_cases = #elims alpha
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  val alpha_inj_loc = build_alpha_inj alpha_intros (inject @ distinct) alpha_cases lthy4
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  val (bv_eqvts, lthy5) = fold_map (build_bv_eqvt perms (raw_bn_eqs @ raw_perm_def) inducts) bns lthy4;
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in
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  ((raw_dt_names, raw_bn_funs, raw_bn_eqs, raw_binds), lthy5)
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end
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*}
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ML {* 
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(* parsing the datatypes and declaring *)
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(* constructors in the local theory    *)
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fun prepare_dts dt_strs lthy = 
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let
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  val thy = ProofContext.theory_of lthy
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  fun mk_type full_tname tvrs =
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    Type (full_tname, map (fn a => TVar ((a, 0), [])) tvrs)
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  fun prep_cnstr lthy full_tname tvs (cname, anno_tys, mx, _) =
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  let
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    val tys = map (Syntax.read_typ lthy o snd) anno_tys
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    val ty = mk_type full_tname tvs
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  in
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    ((cname, tys ---> ty, mx), (cname, tys, mx))
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  end
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  fun prep_dt lthy (tvs, tname, mx, cnstrs) = 
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  let
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    val full_tname = Sign.full_name thy tname
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    val (cnstrs', cnstrs'') = 
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      split_list (map (prep_cnstr lthy full_tname tvs) cnstrs)
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  in
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    (cnstrs', (tvs, tname, mx, cnstrs''))
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  end 
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  val (cnstrs, dts) = 
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    split_list (map (prep_dt lthy) dt_strs)
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in
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  lthy
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  |> Local_Theory.theory (Sign.add_consts_i (flat cnstrs))
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  |> pair dts
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end
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*}
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ML {*
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(* parsing the binding function specification and *)
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(* declaring the functions in the local theory    *)
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fun prepare_bn_funs bn_fun_strs bn_eq_strs lthy =
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let
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  fun prep_bn_fun ((bn, T), mx) = (bn, T, mx) 
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  val ((bn_funs, bn_eqs), _) = 
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    Specification.read_spec bn_fun_strs bn_eq_strs lthy
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  val bn_funs' = map prep_bn_fun bn_funs
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in
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  lthy
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  |> Local_Theory.theory (Sign.add_consts_i bn_funs')
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  |> pair (bn_funs', bn_eqs) 
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end 
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*}
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ML {*
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fun find_all eq xs (k',i) = 
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  maps (fn (k, (v1, v2)) => if eq (k, k') then [(v1, v2, i)] else []) xs
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*}
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ML {*
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(* associates every SOME with the index in the list; drops NONEs *)
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fun mk_env xs =
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  let
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    fun mapp (_: int) [] = []
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      | mapp i (a :: xs) = 
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         case a of
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           NONE => mapp (i + 1) xs
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         | SOME x => (x, i) :: mapp (i + 1) xs
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  in mapp 0 xs end
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*}
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ML {*
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fun env_lookup xs x =
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  case AList.lookup (op =) xs x of
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    SOME x => x
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  | NONE => error ("cannot find " ^ x ^ " in the binding specification.");
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*}
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978
b44592adf235 Improper interface for datatype and function packages and proper interface lateron.
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ML {*
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fun prepare_binds dt_strs lthy = 
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let
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  fun extract_annos_binds dt_strs =
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    map (map (fn (_, antys, _, bns) => (map fst antys, bns))) dt_strs
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  fun prep_bn env bn_str =
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    case (Syntax.read_term lthy bn_str) of
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       Free (x, _) => (NONE, env_lookup env x)
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     | Const (a, T) $ Free (x, _) => (SOME (Const (a, T)), env_lookup env x)
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     | _ => error (bn_str ^ " not allowed as binding specification.");  
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  fun prep_typ env (i, opt_name) = 
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    case opt_name of
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      NONE => []
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    | SOME x => find_all (op=) env (x,i);
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  (* annos - list of annotation for each type (either NONE or SOME fo a type *)
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  fun prep_binds (annos, bind_strs) = 
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  let
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    val env = mk_env annos (* for every label the index *)
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    val binds = map (fn (x, y) => (x, prep_bn env y)) bind_strs  
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  in
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    map_index (prep_typ binds) annos
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  end
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in
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  map (map prep_binds) (extract_annos_binds (get_cnstrs dt_strs))
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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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  fun prep_typ (tvs, tname, mx, _) = (tname, length tvs, mx)
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  val ((dts, (bn_fun, bn_eq)), binds) = 
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    lthy 
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    |> Local_Theory.theory (Sign.add_types (map prep_typ dt_strs))
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    |> prepare_dts dt_strs
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    ||>> prepare_bn_funs bn_fun_strs bn_eq_strs
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    ||> prepare_binds dt_strs
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in
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  nominal_datatype2 dts bn_fun bn_eq binds 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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*}
c009d2535896 very rough example file for how nominal2 specification can be parsed
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c009d2535896 very rough example file for how nominal2 specification can be parsed
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961
0f88e04eb486 Variable takes a 'name'.
Cezary Kaliszyk <kaliszyk@in.tum.de>
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end
1223
160343d86a6f "raw"-ified the term-constructors and types given in the specification
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parents: 1194
diff changeset
   386
160343d86a6f "raw"-ified the term-constructors and types given in the specification
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parents: 1194
diff changeset
   387
1228
c179ad9d2446 declarartion of the raw datatype already works; raw binding functions throw an exception about mutual recursive types
Christian Urban <urbanc@in.tum.de>
parents: 1223
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   388