src/Tools/isac/CalcElements/termC.sml
author Walther Neuper <walther.neuper@jku.at>
Wed, 02 Oct 2019 15:14:51 +0200
changeset 59636 0d90021ccff4
parent 59631 5df707104097
child 59661 ec73e247601d
permissions -rw-r--r--
lucin: generalise bound variable in Prog_Tac.Rewrite*Inst
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(* Title: extends Isabelle/src/Pure/term.ML
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   Author: Walther Neuper 1999, Mathias Lehnfeld
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   (c) due to copyright terms
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*)
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infix contains_one_of
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(* TERM_C extends Isabelle's naming conventions: "C" indicates Isac add-ons to an Isabelle module *)
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signature TERM_C =
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  sig
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    val contains_Var: term -> bool
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    val dest_binop_typ: typ -> typ * typ * typ
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    val dest_equals: term -> term * term
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    val free2str: term -> string
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    val ids2str: term -> string list
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    val ins_concl: term -> term -> term
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    val inst_abs: term -> term
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    val inst_bdv: (term * term) list -> term -> term
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    val term_of_num: typ -> int -> term
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    val num_of_term: term -> int
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    val int_of_str_opt: string -> int option
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    val int_of_str: string -> int
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    val isastr_of_int: int -> string
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    val isalist2list: term -> term list
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    val list2isalist: typ -> term list -> term
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    val isapair2pair: term -> term * term (* rename to dest_pair, compare HOLogic.dest_string *)
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    val is_atom: term -> bool
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    val is_bdv: string -> bool
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    val is_bdv_subst: term -> bool
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    val guess_bdv_typ: term -> typ
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    val is_equality: term -> bool
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    val is_expliceq: term -> bool
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    val is_f_x: term -> bool
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    val is_list: term -> bool
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    val is_num: term -> bool
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    val is_num': string -> bool
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    val mk_add: term -> term -> term
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    val mk_free: typ -> string -> term
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    val mk_equality: term * term -> term
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    val mk_factroot: string -> typ -> int -> int -> term
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    val mk_Free: string * typ -> term
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    val mk_thmid: string -> string -> string -> string
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    val mk_num_op_num: typ -> typ -> string * typ -> int -> int -> term
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    val mk_num_op_var: term -> string -> typ -> typ -> int -> term
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    val mk_var_op_num: term -> string -> typ -> typ -> int -> term
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    val matches: theory -> term -> term -> bool
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    val parse: theory -> string -> cterm option
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    val parseN: theory -> string -> cterm option
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    val parseNEW: Proof.context -> string -> term option
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    val parseNEW': Proof.context -> string -> term
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    val parseold: theory -> string -> cterm option
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    val parse_patt: theory -> string -> term
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    val perm: term -> term -> bool
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    val str_of_free_opt: term -> string option
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    val str_of_int: int -> string
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    val str2term: string -> term
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    val strip_imp_prems': term -> term option
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    val subst_atomic_all: (term * term) list -> term -> bool * term
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    val term_detail2str: term -> string
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    val pairt: term -> term -> term
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    val pairT: typ -> typ -> typ
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    val raise_type_conflicts: term list -> unit
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    val strip_trueprop: term -> term
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    val num_str: thm -> thm
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    val numbers_to_string: term -> term
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    val uminus_to_string: term -> term
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    val var2free: term -> term
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    val vars: term -> term list  (* recognises numverals, should replace "fun vars_of" *)
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    val vars_of: term -> term list
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    val dest_list': term -> term list
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(* ---- for tests only: shifted from below to remove the Warning "unused" at fun.def. --------- *)
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    val scala_of_term: term -> string
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    val atomtyp(*<-- atom_typ TODO*): typ -> unit
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    val atomty: term -> unit
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    val atomw: term -> unit
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    val atomwy: term -> unit
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    val atomty_thy: Rule.thyID -> term -> unit
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    val free2var: term -> term
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    val contains_one_of: thm * (string * typ) list -> bool
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(*/-------------------------------------------------------- ! aktivate for Test_Isac BEGIN ---\* )
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    val atomt: term -> unit
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    val typ_a2real: term -> term
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( *\--- ! aktivate for Test_Isac END ----------------------------------------------------------/*)
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  end
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(**)
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structure TermC(**): TERM_C(**) =
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struct
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(**)
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fun isastr_of_int i = if i >= 0 then string_of_int i else "-" ^ string_of_int (abs i)
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fun matches thy tm pa = 
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    (Pattern.match thy (pa, tm) (Vartab.empty, Vartab.empty); true)
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    handle Pattern.MATCH => false
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(** transform  typ / term to a String to be parsed by Scala after transport via libisabelle **)
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fun scala_of_typ (Type (s, typs)) =
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    enclose "Type(" ")" (quote s ^ ", " ^
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      (typs |> map scala_of_typ |> commas |> enclose "List(" ")"))
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  | scala_of_typ (TFree (s, sort)) =
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    enclose "TFree(" ")" (quote s ^ ", " ^ (sort |> map quote |> commas |> enclose "List(" ")"))
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  | scala_of_typ (TVar ((s, i), sort)) =
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    enclose "TVar(" ")" (
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      enclose "(" ")," (quote s ^ "," ^ quote (string_of_int i)) ^ 
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      (sort |> map quote |> commas |> enclose "List(" ")"))
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fun scala_of_term (Const (s, T)) =
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    enclose "Const(" ")" (quote s ^ ", " ^ scala_of_typ T)
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  | scala_of_term (Free (s, T)) =
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    enclose "Free(" ")" (quote s ^ ", " ^ scala_of_typ T)
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  | scala_of_term (Var ((s, i), T)) =
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    enclose "TVar(" ")" (
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      enclose "(" ")," (quote s ^ "," ^ quote (string_of_int i)) ^ 
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      scala_of_typ T)
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  | scala_of_term (Bound i) = enclose "Bound(" ")" (string_of_int i)
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  | scala_of_term (Abs (s, T, t)) =
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    enclose "Abs(" ")" (
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      quote s ^ ", " ^
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      scala_of_typ T ^ ", " ^
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      scala_of_term t)
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  | scala_of_term (t1 $ t2) =
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    enclose "App(" ")" (scala_of_term t1 ^ ", " ^ scala_of_term t2)
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(* see structure's bare bones.
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   for Isabelle standard output compare 2017 "structure ML_PP" *)
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fun atomtyp t =
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  let
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    fun ato n (Type (s, [])) = "\n*** " ^ indent n ^ "Type (" ^ s ^",[])"
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      | ato n (Type (s, Ts)) = "\n*** " ^ indent n ^ "Type (" ^ s ^ ",[" ^ atol (n + 1) Ts
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      | ato n (TFree (s, sort)) = "\n*** " ^ indent n ^ "TFree (" ^ s ^ "," ^ strs2str' sort
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      | ato n (TVar ((s, i), sort)) =
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        "\n*** " ^ indent n ^ "TVar ((" ^ s ^ "," ^ string_of_int i ^ strs2str' sort
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    and atol n [] = "\n*** " ^ indent n ^ "]"
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      | atol n (T :: Ts) = (ato n T ^ atol n Ts)
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in tracing (ato 0 t ^ "\n") end;
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local 
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  fun ato (Const (a, _)) n = "\n*** " ^ indent n ^ "Const (" ^ a ^ ", _)"
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	  | ato (Free (a, _)) n = "\n*** " ^ indent n ^ "Free (" ^ a ^ ", _)"
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	  | ato (Var ((a, i), _)) n =
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	    "\n*** " ^ indent n ^ "Var (" ^ a ^ ", " ^ string_of_int i ^ "), _)"
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	  | ato (Bound i) n = "\n*** " ^ indent n ^ "Bound " ^ string_of_int i
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	  | ato (Abs (a, _, body)) n = "\n*** " ^ indent n ^ "Abs(" ^ a ^ ", _" ^ ato body (n+1)
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	  | ato (f $ t) n = (ato f n ^ ato t (n + 1))
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in
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  fun atomw t = writeln ("\n*** -------------" ^ ato t 0 ^ "\n***");
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  fun atomt t = tracing ("\n*** -------------" ^ ato t 0 ^ "\n***");
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end;
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fun term_detail2str t =
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  let 
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    fun ato (Const (a, T)) n = "\n*** " ^ indent n ^ "Const (" ^ a ^ ", " ^ Rule.string_of_typ T ^ ")"
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      | ato (Free (a, T)) n = "\n*** " ^ indent n ^ "Free (" ^ a ^ ", " ^ Rule.string_of_typ T ^ ")"
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      | ato (Var ((a, i), T)) n =
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        "\n*** " ^ indent n ^ "Var ((" ^ a ^ ", " ^ string_of_int i ^ "), " ^ Rule.string_of_typ T ^ ")"
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      | ato (Bound i) n = "\n*** " ^ indent n ^ "Bound " ^ string_of_int i
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      | ato (Abs(a, T, body))  n = 
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        "\n*** " ^ indent n ^ "Abs (" ^ a ^ ", " ^ Rule.string_of_typ T ^ ",.." ^ ato body (n + 1)
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      | ato (f $ t) n = ato f n ^ ato t (n + 1)
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  in "\n*** " ^ ato t 0 ^ "\n***" end;
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fun term_detail2str_thy thy t =
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  let
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    fun ato (Const (a, T)) n =
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        "\n*** " ^ indent n ^ "Const (" ^ a ^ ", " ^ Rule.string_of_typ_thy thy T ^ ")"
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  	  | ato (Free (a, T)) n =
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  	     "\n*** " ^ indent n ^ "Free (" ^ a ^ ", " ^ Rule.string_of_typ_thy thy T ^ ")"
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  	  | ato (Var ((a, i), T)) n =
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  	    "\n*** " ^ indent n ^ "Var ((" ^ a ^ ", " ^ string_of_int i ^ "), " ^
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  	    Rule.string_of_typ_thy thy T ^ ")"
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  	  | ato (Bound i) n = 
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  	    "\n*** " ^ indent n ^ "Bound " ^ string_of_int i
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  	  | ato (Abs(a, T, body))  n = 
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  	    "\n*** " ^ indent n ^ "Abs (" ^ a ^ ", " ^ Rule.string_of_typ_thy thy T ^ ",.." ^
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  	    ato body (n + 1)
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  	  | ato (f $ t) n = ato f n ^ ato t (n + 1)
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  in "\n*** " ^ ato t 0 ^ "\n***" end;
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fun atomwy t = (writeln o term_detail2str) t;
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fun atomty t = (tracing o term_detail2str) t;
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fun atomty_thy thy t = (tracing o (term_detail2str_thy thy)) t;
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(* contains the term a VAR(("*",_),_) ? *)
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fun contains_Var (Abs(_,_,body)) = contains_Var body
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  | contains_Var (f $ f') = contains_Var f orelse contains_Var f'
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  | contains_Var (Var _) = true
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  | contains_Var _ = false;
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fun str_of_int n = 
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  if n < 0 then "-" ^ ((string_of_int o abs) n)
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  else string_of_int n;
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val int_of_str = Value.parse_int;
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fun int_of_str_opt str = 
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  let
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    val ss = Symbol.explode str
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    val ss' = case ss of "(" :: s => drop_last s | _ => ss
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    val (sign, istr) = case ss' of "-" :: istr => (~1, istr) | _ => (1, ss')
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  in
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    case Library.read_int istr of (i, []) => SOME (sign * i) | _ => NONE
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  end;
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fun is_num' str = case int_of_str_opt str of SOME _ => true | NONE => false;
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fun is_num (Free (s, _)) = if is_num' s then true else false | is_num _ = false;
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fun term_of_num ntyp n = Free (str_of_int n, ntyp);
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fun num_of_term (t as (Free (istr, _))) = 
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    (case int_of_str_opt istr of SOME i => i | NONE => raise TERM ("num_of_term: NOT int ", [t]))
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  | num_of_term t = raise TERM ("num_of_term: NOT Free ", [t])
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fun is_Free (Free _) = true | is_Free _ = false;
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fun is_fun_id (Const _) = true
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  | is_fun_id (Free _) = true
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  | is_fun_id _ = false;
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fun is_f_x (f $ x) = is_fun_id f andalso is_Free x
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  | is_f_x _ = false;
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fun vars t =
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  let
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    fun scan vs (Const _) = vs
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      | scan vs (t as Free (s, _)) = if is_num' s then vs else t :: vs
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      | scan vs (t as Var _) = t :: vs
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      | scan vs (Bound _) = vs 
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      | scan vs (Abs (_, _, t)) = scan vs t
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      | scan vs (t1 $ t2) = (scan vs t1) @ (scan vs t2)
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  in (distinct o (scan [])) t end;
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(* bypass Isabelle's Pretty, which requires ctxt *)
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fun ids2str t =
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  let
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    fun scan vs (Const (s, _)) = if is_num' s then vs else s :: vs
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      | scan vs (Free (s, _)) = if is_num' s then vs else s :: vs
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      | scan vs (Var ((s, i), _)) = (s ^ "_" ^ string_of_int i) :: vs
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      | scan vs (Bound _) = vs 
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      | scan vs (Abs (s, _, t)) = scan (s :: vs) t
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      | scan vs (t1 $ t2) = (scan vs t1) @ (scan vs t2)
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  in (distinct o (scan [])) t end;
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fun is_bdv str = case Symbol.explode str of "b"::"d"::"v"::_ => true | _ => false;
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(* instantiate #prop thm with bound variables (as Free) *)
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fun inst_bdv [] t = t
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  | inst_bdv (instl: (term*term) list) t =
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    let
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      fun subst (v as Var((s, _), T)) = 
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          (case Symbol.explode s of
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            "b"::"d"::"v"::_ => if_none (assoc(instl,Free(s,T))) (Free(s,T))
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          | _ => v)
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        | subst (Abs(a, T, body)) = Abs(a, T, subst body)
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        | subst (f $ t') = subst f $ subst t'
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        | subst t = if_none (assoc (instl, t)) t
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    in  subst t  end;
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(* is a term a substitution for a bdv as found in programs and tactics *)
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fun is_bdv_subst (Const ("List.list.Cons", _) $
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      (Const ("Product_Type.Pair", _) $ str $ _) $ _) = is_bdv (HOLogic.dest_string str)
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  | is_bdv_subst _ = false;
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(* this shall be improved due to future requirements *)
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fun guess_bdv_typ t = t |> vars |> hd |> type_of
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fun free2str (Free (s, _)) = s
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  | free2str t = error ("free2str not for " ^ Rule.term2str t);
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fun str_of_free_opt (Free (s, _)) = SOME s
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  | str_of_free_opt _ = NONE
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(* compare Logic.unvarify_global, which rejects Free *)
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fun var2free (t as Const _) = t
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  | var2free (t as Free _) = t
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  | var2free (Var((s, _), T)) = Free (s,T)
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  | var2free (t as Bound _) = t 
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  | var2free (Abs(s, T, t)) = Abs(s, T, var2free t)
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  | var2free (t1 $ t2) = (var2free t1) $ (var2free t2);
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(* Logic.varify does NOT take care of 'Free ("1", _)'*)
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fun free2var (t as Const _) = t
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  | free2var (t as Free (s, T)) = if is_num' s then t else Var ((s, 0), T)
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  | free2var (t as Var _) = t
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  | free2var (t as Bound _) = t 
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  | free2var (Abs (s, T, t)) = Abs (s, T, free2var t)
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  | free2var (t1 $ t2) = (free2var t1) $ (free2var t2);
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fun mk_listT T = Type ("List.list", [T]);
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fun list_const T = Const ("List.list.Cons", [T, mk_listT T] ---> mk_listT T);
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fun list2isalist T [] = Const ("List.list.Nil", mk_listT T)
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   287
  | list2isalist T (t :: ts) = (list_const T) $ t $ (list2isalist T ts);
neuper@38025
   288
wneuper@59392
   289
fun isapair2pair (Const ("Product_Type.Pair",_) $ a $ b) = (a, b)
neuper@38025
   290
  | isapair2pair t = 
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   291
    error ("isapair2pair called with " ^ Rule.term2str t);
neuper@38025
   292
fun isalist2list ls =
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   293
  let
wneuper@59392
   294
    fun get es (Const("List.list.Cons", _) $ t $ ls) = get (t :: es) ls
wneuper@59392
   295
      | get es (Const("List.list.Nil", _)) = es
wneuper@59403
   296
      | get _ t = raise TERM ("isalist2list applied to NON-list: ", [t])
neuper@38025
   297
  in (rev o (get [])) ls end;
neuper@38025
   298
wneuper@59392
   299
fun is_list ((Const ("List.list.Cons", _)) $ _ $ _) = true
wneuper@59392
   300
  | is_list _ = false;
wneuper@59392
   301
fun dest_binop_typ (Type ("fun", [range, Type ("fun", [arg2, arg1])])) = (arg1, arg2, range)
wneuper@59392
   302
  | dest_binop_typ _ = raise ERROR "dest_binop_typ: not binary";
wneuper@59392
   303
fun dest_equals (Const("HOL.eq", _) $ t $ u)  =  (t, u) (* Pure/logic.ML: Const ("==", ..*)
wneuper@59390
   304
  | dest_equals t = raise TERM ("dest_equals'", [t]);
wneuper@59390
   305
fun is_equality (Const("HOL.eq",_) $ _ $ _)  =  true  (* logic.ML: Const("=="*)
neuper@38025
   306
  | is_equality _ = false;
wneuper@59392
   307
fun mk_equality (t, u) = (Const("HOL.eq", [type_of t, type_of u] ---> HOLogic.boolT) $ t $ u); 
wneuper@59390
   308
fun is_expliceq (Const("HOL.eq",_) $ (Free _) $ _)  =  true
neuper@38025
   309
  | is_expliceq _ = false;
wneuper@59390
   310
fun strip_trueprop (Const ("HOL.Trueprop", _) $ t) = t
neuper@38025
   311
  | strip_trueprop t = t;
neuper@38025
   312
wneuper@59392
   313
(* (A1==>...An==>B) goes to (A1==>...An==>)   Pure/logic.ML: term -> term list*)
wneuper@59403
   314
fun strip_imp_prems' (Const ("Pure.imp", _) $ A $ t) = 
wneuper@59392
   315
    let
wneuper@59403
   316
      fun coll_prems As (Const("Pure.imp", _) $ A $ t) = 
wneuper@59392
   317
          coll_prems (As $ (Logic.implies $ A)) t
wneuper@59392
   318
        | coll_prems As _ = SOME As
neuper@38025
   319
    in coll_prems (Logic.implies $ A) t end
wneuper@59392
   320
  | strip_imp_prems' _ = NONE;  (* *)
neuper@38025
   321
wneuper@59392
   322
(* (A1==>...An==>) (B) goes to (A1==>...An==>B), where B is lowest branch, 2002 Pure/thm.ML *)
wneuper@59403
   323
fun ins_concl (Const ("Pure.imp", _) $ A $ t) B = Logic.implies $ A $ (ins_concl t B)
wneuper@59403
   324
  | ins_concl (Const ("Pure.imp", _) $ A    ) B = Logic.implies $ A $ B
wneuper@59390
   325
  | ins_concl t B =  raise TERM ("ins_concl", [t, B]);
neuper@38025
   326
wneuper@59392
   327
fun vperm (Var _, Var _) = true  (* 2002 Pure/thm.ML *)
neuper@38025
   328
  | vperm (Abs (_, _, s), Abs (_, _, t)) = vperm (s, t)
neuper@38025
   329
  | vperm (t1 $ t2, u1 $ u2) = vperm (t1, u1) andalso vperm (t2, u2)
neuper@38025
   330
  | vperm (t, u) = (t = u);
neuper@38025
   331
neuper@38025
   332
(*2002 cp from Pure/term.ML --- since 2009 in Pure/old_term.ML*)
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   333
fun mem_term (_, []) = false
wneuper@59392
   334
  | mem_term (t, t' :: ts) = t aconv t' orelse mem_term (t, ts);
wneuper@59390
   335
fun subset_term ([], _) = true
wneuper@59390
   336
  | subset_term (x :: xs, ys) = mem_term (x, ys) andalso subset_term (xs, ys);
neuper@38025
   337
fun eq_set_term (xs, ys) =
neuper@38025
   338
    xs = ys orelse (subset_term (xs, ys) andalso subset_term (ys, xs));
neuper@38025
   339
(*a total, irreflexive ordering on index names*)
wneuper@59392
   340
fun xless ((a, i), (b, j): indexname) = i<j  orelse  (i = j andalso a < b);
neuper@38025
   341
(*a partial ordering (not reflexive) for atomic terms*)
wneuper@59392
   342
fun atless (Const (a, _), Const (b, _)) = a < b
wneuper@59392
   343
  | atless (Free (a, _), Free (b, _)) = a < b
wneuper@59392
   344
  | atless (Var (v, _), Var (w, _)) = xless (v, w)
wneuper@59392
   345
  | atless (Bound i, Bound j) =  i < j
wneuper@59392
   346
  | atless _ = false;
neuper@38025
   347
(*insert atomic term into partially sorted list, suppressing duplicates (?)*)
neuper@38025
   348
fun insert_aterm (t,us) =
neuper@38025
   349
  let fun inserta [] = [t]
neuper@38025
   350
        | inserta (us as u::us') =
neuper@38025
   351
              if atless(t,u) then t::us
neuper@38025
   352
              else if t=u then us (*duplicate*)
wneuper@59392
   353
              else u :: inserta us'
wneuper@59392
   354
  in inserta us end;
neuper@38025
   355
wneuper@59390
   356
(* Accumulates the Vars in the term, suppressing duplicates *)
neuper@38025
   357
fun add_term_vars (t, vars: term list) = case t of
wneuper@59392
   358
    Var   _ => insert_aterm (t, vars)
wneuper@59392
   359
  | Abs (_, _, body) => add_term_vars (body, vars)
wneuper@59392
   360
  | f$t =>  add_term_vars (f, add_term_vars (t, vars))
neuper@38025
   361
  | _ => vars;
wneuper@59390
   362
fun term_vars t = add_term_vars (t, []);
neuper@38025
   363
wneuper@59392
   364
(*2002 Pure/thm.ML *)
wneuper@59392
   365
fun var_perm (t, u) = vperm (t, u) andalso eq_set_term (term_vars t, term_vars u);
neuper@38025
   366
(*2002 fun decomp_simp, Pure/thm.ML *)
wneuper@59390
   367
fun perm lhs rhs = var_perm (lhs, rhs) andalso not (lhs aconv rhs) andalso not (is_Var lhs);
neuper@38025
   368
neuper@38025
   369
neuper@38025
   370
fun pairT T1 T2 = Type ("*", [T1, T2]);
neuper@38025
   371
fun PairT T1 T2 = ([T1, T2] ---> Type ("*", [T1, T2]));
wneuper@59392
   372
fun pairt t1 t2 = Const ("Product_Type.Pair", PairT (type_of t1) (type_of t2)) $ t1 $ t2;
neuper@38025
   373
neuper@38025
   374
fun mk_factroot op_(*=thy.sqrt*) T fact root = 
neuper@38034
   375
  Const ("Groups.times_class.times", [T, T] ---> T) $ (term_of_num T fact) $
wneuper@59392
   376
    (Const (op_, T --> T) $ term_of_num T root);
wneuper@59390
   377
fun mk_var_op_num v op_ optype ntyp n = Const (op_, optype) $ v $ Free (str_of_int  n, ntyp);
wneuper@59390
   378
fun mk_num_op_var v op_ optype ntyp n = Const (op_, optype) $ Free (str_of_int n, ntyp) $ v;
wneuper@59390
   379
fun mk_num_op_num T1 T2 (op_, Top) n1 n2 =
wneuper@59390
   380
  Const (op_, Top) $ Free (str_of_int n1, T1) $ Free (str_of_int n2, T2);
wneuper@59392
   381
fun mk_thmid thmid n1 n2 = 
wneuper@59392
   382
  thmid ^ (strip_thy n1) ^ "_" ^ (strip_thy n2);
wneuper@59392
   383
fun mk_add t1 t2 =
wneuper@59392
   384
  let
wneuper@59392
   385
    val (T1, T2) = (type_of t1, type_of t2)
wneuper@59392
   386
  in
wneuper@59392
   387
    if T1 <> T2 then raise TYPE ("mk_add gets ", [T1, T2], [t1,t2])
wneuper@59392
   388
    else (Const ("Groups.plus_class.plus", [T1, T2] ---> T1) $ t1 $ t2)
wneuper@59392
   389
  end;
neuper@38025
   390
neuper@38025
   391
(** transform binary numeralsstrings **)
neuper@38025
   392
(*Makarius 100308, hacked by WN*)
neuper@38025
   393
val numbers_to_string =
neuper@38025
   394
  let
neuper@38025
   395
    fun dest_num t =
neuper@38025
   396
      (case try HOLogic.dest_number t of
neuper@38025
   397
        SOME (T, i) =>
neuper@38025
   398
          (*if T = @{typ int} orelse T = @{typ real} then WN*)
neuper@38025
   399
            SOME (Free (signed_string_of_int i, T))
neuper@38025
   400
          (*else NONE  WN*)
neuper@38025
   401
      | NONE => NONE);
neuper@38025
   402
    fun to_str (Abs (x, T, b)) = Abs (x, T, to_str b)
neuper@38025
   403
      | to_str (t as (u1 $ u2)) =
neuper@38025
   404
          (case dest_num t of
neuper@38025
   405
            SOME t' => t'
neuper@38025
   406
          | NONE => to_str u1 $ to_str u2)
neuper@38025
   407
      | to_str t = perhaps dest_num t;
neuper@38025
   408
  in to_str end
neuper@38025
   409
val uminus_to_string =
wneuper@59392
   410
  let
wneuper@59392
   411
	  fun dest_num t =
wneuper@59392
   412
	    case t of
wneuper@59392
   413
	      (Const ("Groups.uminus_class.uminus", _) $ Free (s, T)) => 
wneuper@59392
   414
	        (case int_of_str_opt s of
wneuper@59392
   415
	          SOME i => SOME (Free (signed_string_of_int (~1 * i), T))
wneuper@59392
   416
	        | NONE => NONE)
wneuper@59392
   417
	    | _ => NONE;
wneuper@59392
   418
    fun to_str (Abs (x, T, b)) = Abs (x, T, to_str b)
wneuper@59392
   419
      | to_str (t as (u1 $ u2)) =
wneuper@59392
   420
          (case dest_num t of SOME t' => t' | NONE => to_str u1 $ to_str u2)
wneuper@59392
   421
      | to_str t = perhaps dest_num t;
wneuper@59392
   422
  in to_str end;
neuper@38025
   423
fun num_str thm =
wneuper@59392
   424
  let
wneuper@59392
   425
    val (deriv, 
wneuper@59333
   426
	   {cert = cert, tags = tags, maxidx = maxidx, shyps = shyps, 
wneuper@59185
   427
	    hyps = hyps, tpairs = tpairs, prop = prop}) = Thm.rep_thm_G thm
neuper@38025
   428
    val prop' = numbers_to_string prop;
wneuper@59333
   429
  in Thm.assbl_thm deriv cert tags maxidx shyps hyps tpairs prop' end;
neuper@38025
   430
wneuper@59392
   431
fun mk_Free (s,T) = Free (s, T);
wneuper@59392
   432
fun mk_free T s =  Free (s, T);
neuper@38025
   433
neuper@38025
   434
(*Special case: one argument cp from Isabelle2002/src/Pure/term.ML*)
wneuper@59392
   435
fun subst_bound (arg, t) =
wneuper@59392
   436
  let
wneuper@59392
   437
    fun subst (t as Bound i, lev) =
wneuper@59392
   438
        if i < lev then t (*var is locally bound*)
wneuper@59392
   439
        else if i = lev then incr_boundvars lev arg
wneuper@59392
   440
        else Bound (i - 1) (*loose: change it*)
wneuper@59392
   441
      | subst (Abs(a, T, body), lev) = Abs (a, T, subst (body, lev + 1))
wneuper@59392
   442
      | subst (f$t, lev) =  subst(f, lev)  $  subst(t, lev)
wneuper@59392
   443
      | subst (t, _) = t
wneuper@59392
   444
  in subst (t, 0)  end;
neuper@38025
   445
wneuper@59392
   446
(* instantiate let; necessary for ass_up *)
wneuper@59394
   447
fun inst_abs (Const sT) = Const sT
wneuper@59393
   448
  | inst_abs (Free sT) = Free sT
wneuper@59393
   449
  | inst_abs (Bound n) = Bound n
wneuper@59393
   450
  | inst_abs (Var iT) = Var iT
wneuper@59393
   451
  | inst_abs (Const ("HOL.Let",T1) $ e $ (Abs (v, T2, b))) = 
wneuper@59394
   452
    let val b' = subst_bound (Free (v, T2), b); (*fun variant_abs: term.ML*)
wneuper@59393
   453
    in Const ("HOL.Let", T1) $ inst_abs e $ (Abs (v, T2, inst_abs b')) end
wneuper@59393
   454
  | inst_abs (t1 $ t2) = inst_abs t1 $ inst_abs t2
wneuper@59393
   455
  | inst_abs t = t;
neuper@38025
   456
neuper@38037
   457
(* for parse and parse_patt: fix all types to real *)
neuper@38025
   458
fun T_a2real (Type (s, [])) = 
wneuper@59394
   459
    if s = "'a" orelse s = "'b" orelse s = "'c" then HOLogic.realT else Type (s, [])
neuper@38025
   460
  | T_a2real (Type (s, Ts)) = Type (s, map T_a2real Ts)
neuper@38025
   461
  | T_a2real (TFree (s, srt)) = 
wneuper@59394
   462
    if s = "'a" orelse s = "'b" orelse s = "'c" then HOLogic.realT else TFree (s, srt)
wneuper@59394
   463
  | T_a2real (TVar (("DUMMY", _), _)) = HOLogic.realT
neuper@38037
   464
  | T_a2real (TVar ((s, i), srt)) = 
wneuper@59394
   465
    if s = "'a" orelse s = "'b" orelse s = "'c" then HOLogic.realT else TVar ((s, i), srt)
neuper@38025
   466
fun typ_a2real (Const( s, T)) = (Const( s, T_a2real T)) 
neuper@38025
   467
  | typ_a2real (Free( s, T)) = (Free( s, T_a2real T))
neuper@38025
   468
  | typ_a2real (Var( n, T)) = (Var( n, T_a2real T))
neuper@38025
   469
  | typ_a2real (Bound i) = (Bound i)
neuper@38025
   470
  | typ_a2real (Abs(s,T,t)) = Abs(s, T, typ_a2real t)
neuper@38025
   471
  | typ_a2real (t1 $ t2) = (typ_a2real t1) $ (typ_a2real t2);
neuper@38025
   472
wneuper@59394
   473
(* TODO clarify parse with Test_Isac *)
wneuper@59394
   474
fun parseold thy str = (* before 2002 *)
wneuper@59394
   475
  (let val t = ((*typ_a2real o*) numbers_to_string) (Syntax.read_term_global thy str)
wneuper@59184
   476
   in SOME (Thm.global_cterm_of thy t) end)
wneuper@59394
   477
  handle _(*EXN? ..Inner syntax error Failed to parse term*) => NONE;
wneuper@59394
   478
fun parseN thy str = (* introduced 2002 *)
wneuper@59394
   479
  (let val t = (*(typ_a2real o numbers_to_string)*) (Syntax.read_term_global thy str)
wneuper@59184
   480
   in SOME (Thm.global_cterm_of thy t) end)
wneuper@59394
   481
  handle _(*EXN? ..Inner syntax error Failed to parse term*) => NONE;
wneuper@59394
   482
fun parse thy str = (* introduced 2010 *)
wneuper@59394
   483
  (let val t = (typ_a2real o numbers_to_string) (Syntax.read_term_global thy str)
wneuper@59394
   484
   in SOME (Thm.global_cterm_of thy t) end)
wneuper@59394
   485
  handle _(*EXN? ..Inner syntax error Failed to parse term*) => NONE;
neuper@38025
   486
neuper@41931
   487
(*WN110317 parseNEW will replace parse after introduction of ctxt completed*)
bonzai@41949
   488
fun parseNEW ctxt str = SOME (Syntax.read_term ctxt str |> numbers_to_string)
wneuper@59394
   489
   handle _ => NONE;
wneuper@59582
   490
fun parseNEW' ctxt str = 
wneuper@59582
   491
  case parseNEW ctxt str of
wneuper@59582
   492
    SOME t => t
wneuper@59582
   493
  | NONE => raise TERM ("NO parseNEW' for " ^ str, [])
wneuper@59582
   494
neuper@48879
   495
(* parse term patterns; Var ("v",_), i.e. "?v", are required for instantiation
neuper@48879
   496
  WN130613 probably compare to 
neuper@48879
   497
  http://www.mail-archive.com/isabelle-dev@mailbroy.informatik.tu-muenchen.de/msg04249.html*)
wneuper@59394
   498
fun parse_patt thy str =
wneuper@59416
   499
  (thy, str) |>> Rule.thy2ctxt 
wneuper@59394
   500
             |-> Proof_Context.read_term_pattern
wneuper@59394
   501
             |> numbers_to_string (*TODO drop*)
wneuper@59394
   502
             |> typ_a2real;       (*TODO drop*)
wneuper@59592
   503
fun str2term str = parse_patt (Rule.Thy_Info_get_theory "Isac_Knowledge") str
neuper@38025
   504
wneuper@59394
   505
(* TODO decide with Test_Isac *)
wneuper@59394
   506
fun is_atom t = length (vars t) = 1
neuper@38025
   507
fun is_atom (Const ("Float.Float",_) $ _) = true
neuper@38025
   508
  | is_atom (Const ("ComplexI.I'_'_",_)) = true
neuper@38034
   509
  | is_atom (Const ("Groups.times_class.times",_) $ t $ Const ("ComplexI.I'_'_",_)) = is_atom t
neuper@38025
   510
  | is_atom (Const ("Groups.plus_class.plus",_) $ t1 $ Const ("ComplexI.I'_'_",_)) = is_atom t1
neuper@38025
   511
  | is_atom (Const ("Groups.plus_class.plus",_) $ t1 $ 
neuper@38034
   512
		   (Const ("Groups.times_class.times",_) $ t2 $ Const ("ComplexI.I'_'_",_))) = 
neuper@38025
   513
    is_atom t1 andalso is_atom t2
neuper@38025
   514
  | is_atom (Const _) = true
neuper@38025
   515
  | is_atom (Free _) = true
neuper@38025
   516
  | is_atom (Var _) = true
neuper@38025
   517
  | is_atom _ = false;
neuper@38025
   518
wneuper@59394
   519
(* from Pure/term.ML; reports if ALL Free's have found a substitution
wneuper@59394
   520
   (required for evaluating the preconditions of _incomplete_ models) *)
wneuper@59394
   521
fun subst_atomic_all [] t = (false (*TODO may be 'true' for some terms ?*), t)
wneuper@59394
   522
  | subst_atomic_all instl t =
wneuper@59394
   523
    let
wneuper@59394
   524
      fun subst (Abs (a, T, body)) = 
wneuper@59394
   525
          let
wneuper@59394
   526
            val (all, body') = subst body
wneuper@59394
   527
          in (all, Abs(a, T, body')) end
wneuper@59394
   528
        | subst (f$tt) = 
wneuper@59394
   529
	        let
wneuper@59394
   530
	          val (all1, f') = subst f
wneuper@59394
   531
	          val (all2, tt') = subst tt
wneuper@59394
   532
	        in (all1 andalso all2, f' $ tt') end
wneuper@59394
   533
        | subst (t as Free _) = 
wneuper@59394
   534
	        if is_num t then (true, t) (*numerals cannot be subst*)
wneuper@59394
   535
	        else (case assoc (instl, t) of
wneuper@59394
   536
					  SOME t' => (true, t')
wneuper@59394
   537
				  | NONE => (false, t))
wneuper@59394
   538
        | subst t = (true, if_none (assoc(instl,t)) t)
wneuper@59394
   539
    in subst t end;
wneuper@59389
   540
wneuper@59507
   541
fun op contains_one_of (thm, ids) =
wneuper@59507
   542
  Term.exists_Const (fn id => member op= ids id) (Thm.prop_of thm)
wneuper@59507
   543
wneuper@59532
   544
fun var_for vs (t as Const (str, _)) id = if id = strip_thy str then t :: vs else vs
wneuper@59532
   545
  | var_for vs (t as Free (str, _)) id = if id = str then t :: vs else vs
wneuper@59532
   546
  | var_for vs (t as Var (idn, _)) id = if id = Term.string_of_vname idn then t :: vs else vs
wneuper@59532
   547
  | var_for vs (Bound _) _ = vs
wneuper@59532
   548
  | var_for vs (Abs (_, _, t)) id = var_for vs t id
wneuper@59532
   549
  | var_for vs (t1 $ t2) id = (var_for vs t1 id) @ (var_for vs t2 id)
wneuper@59532
   550
wneuper@59532
   551
val poly_consts = (* TODO: adopt syntax-const from Isabelle*)
wneuper@59532
   552
  ["Groups.plus_class.plus", "Groups.minus_class.minus",
wneuper@59532
   553
  "Rings.divide_class.divide", "Groups.times_class.times",
walther@59603
   554
  "Prog_Expr.pow"];
wneuper@59532
   555
(* treat Free, Const, Var as variables in polynomials *)
wneuper@59532
   556
fun vars_of t =
wneuper@59532
   557
  let
wneuper@59532
   558
    val var_ids = t |> ids2str |> subtract op = poly_consts |> map strip_thy |> sort string_ord
wneuper@59532
   559
  in (map (var_for [] t) var_ids) |> flat |> distinct end
wneuper@59532
   560
wneuper@59577
   561
(* this may decompose an object-language isa-list;
wneuper@59577
   562
   use only, if description is not available, eg. not input ?WN:14.5.03 ??!?*)
wneuper@59577
   563
fun dest_list' t = if is_list t then isalist2list t  else [t];
wneuper@59577
   564
wneuper@59580
   565
fun raise_type_conflicts ts =
wneuper@59580
   566
  let
wneuper@59580
   567
    val dups = duplicates (op =) (map (fst o dest_Free) ts)
wneuper@59580
   568
    val confl = filter (fn Free (str, _) => member op = dups str) ts
wneuper@59580
   569
  in
wneuper@59580
   570
    if confl = []
wneuper@59580
   571
    then ()
wneuper@59582
   572
    else raise TYPE ("formalisation inconsistent w.r.t. type inference: ",
wneuper@59580
   573
      map (snd o dest_Free)confl, confl)
wneuper@59580
   574
  end
wneuper@59580
   575
wneuper@59389
   576
end