src/HOL/Tools/hologic.ML
author haftmann
Sat, 12 Mar 2016 22:04:52 +0100
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parent 62513 702085ca8564
child 67149 e61557884799
permissions -rw-r--r--
model characters directly as range 0..255 * * * operate on syntax terms rather than asts
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(*  Title:      HOL/Tools/hologic.ML
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    Author:     Lawrence C Paulson and Markus Wenzel
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Abstract syntax operations for HOL.
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*)
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signature HOLOGIC =
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sig
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  val id_const: typ -> term
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  val mk_comp: term * term -> term
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  val boolN: string
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  val boolT: typ
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  val Trueprop: term
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  val mk_Trueprop: term -> term
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  val dest_Trueprop: term -> term
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  val Trueprop_conv: conv -> conv
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  val mk_induct_forall: typ -> term
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  val mk_setT: typ -> typ
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  val dest_setT: typ -> typ
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  val Collect_const: typ -> term
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  val mk_Collect: string * typ * term -> term
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  val mk_mem: term * term -> term
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  val dest_mem: term -> term * term
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  val mk_set: typ -> term list -> term
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  val dest_set: term -> term list
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  val mk_UNIV: typ -> term
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  val conj_intr: Proof.context -> thm -> thm -> thm
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  val conj_elim: Proof.context -> thm -> thm * thm
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  val conj_elims: Proof.context -> thm -> thm list
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  val conj: term
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  val disj: term
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  val imp: term
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  val Not: term
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  val mk_conj: term * term -> term
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  val mk_disj: term * term -> term
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  val mk_imp: term * term -> term
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  val mk_not: term -> term
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  val dest_conj: term -> term list
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  val conjuncts: term -> term list
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  val dest_disj: term -> term list
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  val disjuncts: term -> term list
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  val dest_imp: term -> term * term
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  val dest_not: term -> term
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  val conj_conv: conv -> conv -> conv
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  val eq_const: typ -> term
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  val mk_eq: term * term -> term
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  val dest_eq: term -> term * term
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  val eq_conv: conv -> conv -> conv
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  val all_const: typ -> term
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  val mk_all: string * typ * term -> term
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  val list_all: (string * typ) list * term -> term
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  val exists_const: typ -> term
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  val mk_exists: string * typ * term -> term
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  val choice_const: typ -> term
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  val class_equal: string
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  val mk_binop: string -> term * term -> term
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  val mk_binrel: string -> term * term -> term
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  val dest_bin: string -> typ -> term -> term * term
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  val unitT: typ
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  val is_unitT: typ -> bool
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  val unit: term
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  val is_unit: term -> bool
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  val mk_prodT: typ * typ -> typ
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  val dest_prodT: typ -> typ * typ
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  val pair_const: typ -> typ -> term
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  val mk_prod: term * term -> term
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  val dest_prod: term -> term * term
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  val mk_fst: term -> term
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  val mk_snd: term -> term
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  val case_prod_const: typ * typ * typ -> term
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  val mk_case_prod: term -> term
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  val flatten_tupleT: typ -> typ list
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  val tupled_lambda: term -> term -> term
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  val mk_tupleT: typ list -> typ
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  val strip_tupleT: typ -> typ list
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  val mk_tuple: term list -> term
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  val strip_tuple: term -> term list
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  val mk_ptupleT: int list list -> typ list -> typ
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  val strip_ptupleT: int list list -> typ -> typ list
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  val flat_tupleT_paths: typ -> int list list
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  val mk_ptuple: int list list -> typ -> term list -> term
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  val strip_ptuple: int list list -> term -> term list
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  val flat_tuple_paths: term -> int list list
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  val mk_ptupleabs: int list list -> typ -> typ -> term -> term
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  val strip_ptupleabs: term -> term * typ list * int list list
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  val natT: typ
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  val zero: term
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  val is_zero: term -> bool
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  val mk_Suc: term -> term
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  val dest_Suc: term -> term
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  val Suc_zero: term
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  val mk_nat: int -> term
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  val dest_nat: term -> int
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  val class_size: string
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  val size_const: typ -> term
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  val intT: typ
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  val one_const: term
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  val bit0_const: term
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  val bit1_const: term
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  val mk_bit: int -> term
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  val dest_bit: term -> int
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  val mk_numeral: int -> term
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  val dest_numeral: term -> int
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  val numeral_const: typ -> term
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  val add_numerals: term -> (term * typ) list -> (term * typ) list
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  val mk_number: typ -> int -> term
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  val dest_number: term -> typ * int
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  val code_integerT: typ
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  val code_naturalT: typ
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  val realT: typ
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  val charT: typ
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  val mk_char: int -> term
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  val dest_char: term -> int
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  val listT: typ -> typ
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  val nil_const: typ -> term
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  val cons_const: typ -> term
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  val mk_list: typ -> term list -> term
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  val dest_list: term -> term list
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  val stringT: typ
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  val mk_string: string -> term
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  val dest_string: term -> string
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  val literalT: typ
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  val mk_literal: string -> term
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  val dest_literal: term -> string
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  val mk_typerep: typ -> term
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  val termT: typ
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  val term_of_const: typ -> term
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  val mk_term_of: typ -> term -> term
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  val reflect_term: term -> term
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  val mk_valtermify_app: string -> (string * typ) list -> typ -> term
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  val mk_return: typ -> typ -> term -> term
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  val mk_ST: ((term * typ) * (string * typ) option)  list -> term -> typ -> typ option * typ -> term
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  val mk_random: typ -> term -> term
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end;
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structure HOLogic: HOLOGIC =
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struct
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(* functions *)
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fun id_const T = Const ("Fun.id", T --> T);
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fun mk_comp (f, g) =
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  let
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    val fT = fastype_of f;
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    val gT = fastype_of g;
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    val compT = fT --> gT --> domain_type gT --> range_type fT;
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  in Const ("Fun.comp", compT) $ f $ g end;
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(* bool and set *)
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val boolN = "HOL.bool";
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val boolT = Type (boolN, []);
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fun mk_induct_forall T = Const ("HOL.induct_forall", (T --> boolT) --> boolT);
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fun mk_setT T = Type ("Set.set", [T]);
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fun dest_setT (Type ("Set.set", [T])) = T
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  | dest_setT T = raise TYPE ("dest_setT: set type expected", [T], []);
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fun mk_set T ts =
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  let
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    val sT = mk_setT T;
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    val empty = Const ("Orderings.bot_class.bot", sT);
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    fun insert t u = Const ("Set.insert", T --> sT --> sT) $ t $ u;
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  in fold_rev insert ts empty end;
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fun mk_UNIV T = Const ("Orderings.top_class.top", mk_setT T);
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fun dest_set (Const ("Orderings.bot_class.bot", _)) = []
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  | dest_set (Const ("Set.insert", _) $ t $ u) = t :: dest_set u
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  | dest_set t = raise TERM ("dest_set", [t]);
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fun Collect_const T = Const ("Set.Collect", (T --> boolT) --> mk_setT T);
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fun mk_Collect (a, T, t) = Collect_const T $ absfree (a, T) t;
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fun mk_mem (x, A) =
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  let val setT = fastype_of A in
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    Const ("Set.member", dest_setT setT --> setT --> boolT) $ x $ A
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  end;
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fun dest_mem (Const ("Set.member", _) $ x $ A) = (x, A)
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  | dest_mem t = raise TERM ("dest_mem", [t]);
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(* logic *)
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val Trueprop = Const (@{const_name Trueprop}, boolT --> propT);
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fun mk_Trueprop P = Trueprop $ P;
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fun dest_Trueprop (Const (@{const_name Trueprop}, _) $ P) = P
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  | dest_Trueprop t = raise TERM ("dest_Trueprop", [t]);
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fun Trueprop_conv cv ct =
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  (case Thm.term_of ct of
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    Const (@{const_name Trueprop}, _) $ _ => Conv.arg_conv cv ct
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  | _ => raise CTERM ("Trueprop_conv", [ct]))
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fun conj_intr ctxt thP thQ =
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  let
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    val (P, Q) = apply2 (Object_Logic.dest_judgment ctxt o Thm.cprop_of) (thP, thQ)
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      handle CTERM (msg, _) => raise THM (msg, 0, [thP, thQ]);
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    val inst = Thm.instantiate ([], [((("P", 0), boolT), P), ((("Q", 0), boolT), Q)]);
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  in Drule.implies_elim_list (inst @{thm conjI}) [thP, thQ] end;
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fun conj_elim ctxt thPQ =
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  let
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    val (P, Q) = Thm.dest_binop (Object_Logic.dest_judgment ctxt (Thm.cprop_of thPQ))
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      handle CTERM (msg, _) => raise THM (msg, 0, [thPQ]);
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    val inst = Thm.instantiate ([], [((("P", 0), boolT), P), ((("Q", 0), boolT), Q)]);
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    val thP = Thm.implies_elim (inst @{thm conjunct1}) thPQ;
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    val thQ = Thm.implies_elim (inst @{thm conjunct2}) thPQ;
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  in (thP, thQ) end;
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fun conj_elims ctxt th =
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  let val (th1, th2) = conj_elim ctxt th
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  in conj_elims ctxt th1 @ conj_elims ctxt th2 end handle THM _ => [th];
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val conj = @{term HOL.conj}
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and disj = @{term HOL.disj}
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and imp = @{term implies}
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and Not = @{term Not};
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fun mk_conj (t1, t2) = conj $ t1 $ t2
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and mk_disj (t1, t2) = disj $ t1 $ t2
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and mk_imp (t1, t2) = imp $ t1 $ t2
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and mk_not t = Not $ t;
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fun dest_conj (Const ("HOL.conj", _) $ t $ t') = t :: dest_conj t'
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  | dest_conj t = [t];
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(*Like dest_conj, but flattens conjunctions however nested*)
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fun conjuncts_aux (Const ("HOL.conj", _) $ t $ t') conjs = conjuncts_aux t (conjuncts_aux t' conjs)
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  | conjuncts_aux t conjs = t::conjs;
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fun conjuncts t = conjuncts_aux t [];
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fun dest_disj (Const ("HOL.disj", _) $ t $ t') = t :: dest_disj t'
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  | dest_disj t = [t];
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(*Like dest_disj, but flattens disjunctions however nested*)
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fun disjuncts_aux (Const ("HOL.disj", _) $ t $ t') disjs = disjuncts_aux t (disjuncts_aux t' disjs)
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  | disjuncts_aux t disjs = t::disjs;
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fun disjuncts t = disjuncts_aux t [];
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fun dest_imp (Const ("HOL.implies", _) $ A $ B) = (A, B)
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  | dest_imp  t = raise TERM ("dest_imp", [t]);
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fun dest_not (Const ("HOL.Not", _) $ t) = t
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  | dest_not t = raise TERM ("dest_not", [t]);
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fun conj_conv cv1 cv2 ct =
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  (case Thm.term_of ct of
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    Const (@{const_name HOL.conj}, _) $ _ $ _ =>
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      Conv.combination_conv (Conv.arg_conv cv1) cv2 ct
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  | _ => raise CTERM ("conj_conv", [ct]));
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fun eq_const T = Const (@{const_name HOL.eq}, T --> T --> boolT);
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fun mk_eq (t, u) = eq_const (fastype_of t) $ t $ u;
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fun dest_eq (Const (@{const_name HOL.eq}, _) $ lhs $ rhs) = (lhs, rhs)
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  | dest_eq t = raise TERM ("dest_eq", [t])
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fun eq_conv cv1 cv2 ct =
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  (case Thm.term_of ct of
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    Const (@{const_name HOL.eq}, _) $ _ $ _ => Conv.combination_conv (Conv.arg_conv cv1) cv2 ct
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  | _ => raise CTERM ("eq_conv", [ct]));
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fun all_const T = Const ("HOL.All", (T --> boolT) --> boolT);
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fun mk_all (x, T, P) = all_const T $ absfree (x, T) P;
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fun list_all (xs, t) = fold_rev (fn (x, T) => fn P => all_const T $ Abs (x, T, P)) xs t;
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fun exists_const T = Const ("HOL.Ex", (T --> boolT) --> boolT);
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fun mk_exists (x, T, P) = exists_const T $ absfree (x, T) P;
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fun choice_const T = Const("Hilbert_Choice.Eps", (T --> boolT) --> T);
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val class_equal = "HOL.equal";
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(* binary operations and relations *)
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fun mk_binop c (t, u) =
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  let val T = fastype_of t
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  in Const (c, T --> T --> T) $ t $ u end;
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fun mk_binrel c (t, u) =
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  let val T = fastype_of t
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  in Const (c, T --> T --> boolT) $ t $ u end;
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(*destruct the application of a binary operator. The dummyT case is a crude
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  way of handling polymorphic operators.*)
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fun dest_bin c T (tm as Const (c', Type ("fun", [T', _])) $ t $ u) =
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      if c = c' andalso (T=T' orelse T=dummyT) then (t, u)
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      else raise TERM ("dest_bin " ^ c, [tm])
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  | dest_bin c _ tm = raise TERM ("dest_bin " ^ c, [tm]);
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e3d0ac75c723 binary oprations and relations;
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   307
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(* unit *)
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val unitT = Type ("Product_Type.unit", []);
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fun is_unitT (Type ("Product_Type.unit", [])) = true
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  | is_unitT _ = false;
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   315
val unit = Const ("Product_Type.Unity", unitT);
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fun is_unit (Const ("Product_Type.Unity", _)) = true
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  | is_unit _ = false;
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(* prod *)
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fun mk_prodT (T1, T2) = Type ("Product_Type.prod", [T1, T2]);
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fun dest_prodT (Type ("Product_Type.prod", [T1, T2])) = (T1, T2)
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  | dest_prodT T = raise TYPE ("dest_prodT", [T], []);
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fun pair_const T1 T2 = Const ("Product_Type.Pair", T1 --> T2 --> mk_prodT (T1, T2));
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berghofe
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   329
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   330
fun mk_prod (t1, t2) =
6b02fc8a97f6 added unit and prod stuff;
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   331
  let val T1 = fastype_of t1 and T2 = fastype_of t2 in
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berghofe
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   332
    pair_const T1 T2 $ t1 $ t2
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wenzelm
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   333
  end;
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   334
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haftmann
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   335
fun dest_prod (Const ("Product_Type.Pair", _) $ t1 $ t2) = (t1, t2)
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   336
  | dest_prod t = raise TERM ("dest_prod", [t]);
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   337
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wenzelm
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   338
fun mk_fst p =
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   339
  let val pT = fastype_of p in
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blanchet
parents: 54489
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   340
    Const ("Product_Type.prod.fst", pT --> fst (dest_prodT pT)) $ p
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   341
  end;
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   342
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   343
fun mk_snd p =
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   344
  let val pT = fastype_of p in
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blanchet
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   345
    Const ("Product_Type.prod.snd", pT --> snd (dest_prodT pT)) $ p
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   346
  end;
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   347
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haftmann
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   348
fun case_prod_const (A, B, C) =
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haftmann
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   349
  Const ("Product_Type.prod.case_prod", (A --> B --> C) --> mk_prodT (A, B) --> C);
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wenzelm
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   350
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   351
fun mk_case_prod t =
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83e92f9b32c4 added mk_split;
wenzelm
parents: 17083
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   352
  (case Term.fastype_of t of
83e92f9b32c4 added mk_split;
wenzelm
parents: 17083
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   353
    T as (Type ("fun", [A, Type ("fun", [B, C])])) =>
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   354
      Const ("Product_Type.prod.case_prod", T --> mk_prodT (A, B) --> C) $ t
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haftmann
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   355
  | _ => raise TERM ("mk_case_prod: bad body type", [t]));
18285
83e92f9b32c4 added mk_split;
wenzelm
parents: 17083
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   356
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84b00be693b4 Moved most of the Prod_Syntax - stuff to HOLogic.
berghofe
parents: 4571
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   357
(*Maps the type T1 * ... * Tn to [T1, ..., Tn], however nested*)
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haftmann
parents: 37591
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   358
fun flatten_tupleT (Type ("Product_Type.prod", [T1, T2])) = flatten_tupleT T1 @ flatten_tupleT T2
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haftmann
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   359
  | flatten_tupleT T = [T];
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berghofe
parents: 23576
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   360
39756
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krauss
parents: 39250
diff changeset
   361
(*abstraction over nested tuples*)
6c8e83d94536 consolidated tupled_lambda; moved to structure HOLogic
krauss
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   362
fun tupled_lambda (x as Free _) b = lambda x b
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krauss
parents: 39250
diff changeset
   363
  | tupled_lambda (x as Var _) b = lambda x b
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krauss
parents: 39250
diff changeset
   364
  | tupled_lambda (Const ("Product_Type.Pair", _) $ u $ v) b =
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   365
      mk_case_prod (tupled_lambda u (tupled_lambda v b))
39756
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krauss
parents: 39250
diff changeset
   366
  | tupled_lambda (Const ("Product_Type.Unity", _)) b =
6c8e83d94536 consolidated tupled_lambda; moved to structure HOLogic
krauss
parents: 39250
diff changeset
   367
      Abs ("x", unitT, b)
6c8e83d94536 consolidated tupled_lambda; moved to structure HOLogic
krauss
parents: 39250
diff changeset
   368
  | tupled_lambda t _ = raise TERM ("tupled_lambda: bad tuple", [t]);
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krauss
parents: 39250
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   369
32342
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haftmann
parents: 32339
diff changeset
   370
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   371
(* tuples with right-fold structure *)
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parents: 32339
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   372
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   373
fun mk_tupleT [] = unitT
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   374
  | mk_tupleT Ts = foldr1 mk_prodT Ts;
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   375
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   376
fun strip_tupleT (Type ("Product_Type.unit", [])) = []
37676
f433cb9caea4 "prod" and "sum" replace "*" and "+" respectively; qualified constants Set.member and Set.Collect
haftmann
parents: 37591
diff changeset
   377
  | strip_tupleT (Type ("Product_Type.prod", [T1, T2])) = T1 :: strip_tupleT T2
32342
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haftmann
parents: 32339
diff changeset
   378
  | strip_tupleT T = [T];
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   379
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   380
fun mk_tuple [] = unit
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   381
  | mk_tuple ts = foldr1 mk_prod ts;
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   382
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   383
fun strip_tuple (Const ("Product_Type.Unity", _)) = []
37389
09467cdfa198 qualified type "*"; qualified constants Pair, fst, snd, split
haftmann
parents: 37387
diff changeset
   384
  | strip_tuple (Const ("Product_Type.Pair", _) $ t1 $ t2) = t1 :: strip_tuple t2
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   385
  | strip_tuple t = [t];
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   386
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   387
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   388
(* tuples with specific arities
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   389
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   390
   an "arity" of a tuple is a list of lists of integers,
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   391
   denoting paths to subterms that are pairs
25172
ad25033f9ca4 tuned comments;
wenzelm
parents: 24958
diff changeset
   392
*)
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   393
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   394
fun ptuple_err s = raise TERM (s ^ ": inconsistent use of nested products", []);
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   395
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   396
fun mk_ptupleT ps =
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   397
  let
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   398
    fun mk p Ts =
36692
54b64d4ad524 farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
haftmann
parents: 35625
diff changeset
   399
      if member (op =) ps p then
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   400
        let
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   401
          val (T, Ts') = mk (1::p) Ts;
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   402
          val (U, Ts'') = mk (2::p) Ts'
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   403
        in (mk_prodT (T, U), Ts'') end
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   404
      else (hd Ts, tl Ts)
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   405
  in fst o mk [] end;
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   406
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   407
fun strip_ptupleT ps =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   408
  let
36692
54b64d4ad524 farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
haftmann
parents: 35625
diff changeset
   409
    fun factors p T = if member (op =) ps p then (case T of
37676
f433cb9caea4 "prod" and "sum" replace "*" and "+" respectively; qualified constants Set.member and Set.Collect
haftmann
parents: 37591
diff changeset
   410
        Type ("Product_Type.prod", [T1, T2]) =>
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   411
          factors (1::p) T1 @ factors (2::p) T2
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   412
      | _ => ptuple_err "strip_ptupleT") else [T]
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   413
  in factors [] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   414
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   415
val flat_tupleT_paths =
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   416
  let
37676
f433cb9caea4 "prod" and "sum" replace "*" and "+" respectively; qualified constants Set.member and Set.Collect
haftmann
parents: 37591
diff changeset
   417
    fun factors p (Type ("Product_Type.prod", [T1, T2])) =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   418
          p :: factors (1::p) T1 @ factors (2::p) T2
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   419
      | factors p _ = []
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   420
  in factors [] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   421
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   422
fun mk_ptuple ps =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   423
  let
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   424
    fun mk p T ts =
36692
54b64d4ad524 farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
haftmann
parents: 35625
diff changeset
   425
      if member (op =) ps p then (case T of
37676
f433cb9caea4 "prod" and "sum" replace "*" and "+" respectively; qualified constants Set.member and Set.Collect
haftmann
parents: 37591
diff changeset
   426
          Type ("Product_Type.prod", [T1, T2]) =>
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   427
            let
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   428
              val (t, ts') = mk (1::p) T1 ts;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   429
              val (u, ts'') = mk (2::p) T2 ts'
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   430
            in (pair_const T1 T2 $ t $ u, ts'') end
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   431
        | _ => ptuple_err "mk_ptuple")
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   432
      else (hd ts, tl ts)
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   433
  in fst oo mk [] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   434
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   435
fun strip_ptuple ps =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   436
  let
36692
54b64d4ad524 farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
haftmann
parents: 35625
diff changeset
   437
    fun dest p t = if member (op =) ps p then (case t of
37389
09467cdfa198 qualified type "*"; qualified constants Pair, fst, snd, split
haftmann
parents: 37387
diff changeset
   438
        Const ("Product_Type.Pair", _) $ t $ u =>
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   439
          dest (1::p) t @ dest (2::p) u
32342
3fabf5b5fc83 path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
haftmann
parents: 32339
diff changeset
   440
      | _ => ptuple_err "strip_ptuple") else [t]
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   441
  in dest [] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   442
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   443
val flat_tuple_paths =
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   444
  let
37389
09467cdfa198 qualified type "*"; qualified constants Pair, fst, snd, split
haftmann
parents: 37387
diff changeset
   445
    fun factors p (Const ("Product_Type.Pair", _) $ t $ u) =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   446
          p :: factors (1::p) t @ factors (2::p) u
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   447
      | factors p _ = []
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   448
  in factors [] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   449
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   450
(*In mk_ptupleabs ps S T u, term u expects separate arguments for the factors of S,
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   451
  with result type T.  The call creates a new term expecting one argument
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   452
  of type S.*)
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   453
fun mk_ptupleabs ps T T3 u =
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   454
  let
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   455
    fun ap ((p, T) :: pTs) =
36692
54b64d4ad524 farewell to old-style mem infixes -- type inference in situations with mem_int and mem_string should provide enough information to resolve the type of (op =)
haftmann
parents: 35625
diff changeset
   456
          if member (op =) ps p then (case T of
37676
f433cb9caea4 "prod" and "sum" replace "*" and "+" respectively; qualified constants Set.member and Set.Collect
haftmann
parents: 37591
diff changeset
   457
              Type ("Product_Type.prod", [T1, T2]) =>
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   458
                case_prod_const (T1, T2, map snd pTs ---> T3) $
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   459
                  ap ((1::p, T1) :: (2::p, T2) :: pTs)
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   460
            | _ => ptuple_err "mk_ptupleabs")
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   461
          else Abs ("x", T, ap pTs)
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   462
      | ap [] =
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   463
          let val k = length ps
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   464
          in list_comb (incr_boundvars (k + 1) u, map Bound (k downto 0)) end
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   465
  in ap [([], T)] end;
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   466
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   467
val strip_ptupleabs =
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   468
  let
34962
807f6ce0273d HOLogic.strip_psplits: types are ordered after syntactic appearance, not after corresponding de-Bruin index (closer correspondence to similar strip operations)
haftmann
parents: 33245
diff changeset
   469
    fun strip [] qs Ts t = (t, rev Ts, qs)
61424
c3658c18b7bc prod_case as canonical name for product type eliminator
haftmann
parents: 61125
diff changeset
   470
      | strip (p :: ps) qs Ts (Const ("Product_Type.prod.case_prod", _) $ t) =
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   471
          strip ((1 :: p) :: (2 :: p) :: ps) (p :: qs) Ts t
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   472
      | strip (p :: ps) qs Ts (Abs (s, T, t)) = strip ps qs (T :: Ts) t
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   473
      | strip (p :: ps) qs Ts t = strip ps qs
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   474
          (hd (binder_types (fastype_of1 (Ts, t))) :: Ts)
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   475
          (incr_boundvars 1 t $ Bound 0)
32287
65d5c5b30747 cleaned up abstract tuple operations and named them consistently
haftmann
parents: 32264
diff changeset
   476
  in strip [[]] [] [] end;
23745
28df61d931e2 New operations on tuples with specific arities.
berghofe
parents: 23576
diff changeset
   477
5207
wenzelm
parents: 5096
diff changeset
   478
wenzelm
parents: 5096
diff changeset
   479
(* nat *)
wenzelm
parents: 5096
diff changeset
   480
37387
3581483cca6c qualified types "+" and nat; qualified constants Ball, Bex, Suc, curry; modernized some specifications
haftmann
parents: 37145
diff changeset
   481
val natT = Type ("Nat.nat", []);
5207
wenzelm
parents: 5096
diff changeset
   482
35267
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   483
val zero = Const ("Groups.zero_class.zero", natT);
5207
wenzelm
parents: 5096
diff changeset
   484
35267
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   485
fun is_zero (Const ("Groups.zero_class.zero", _)) = true
5207
wenzelm
parents: 5096
diff changeset
   486
  | is_zero _ = false;
wenzelm
parents: 5096
diff changeset
   487
37387
3581483cca6c qualified types "+" and nat; qualified constants Ball, Bex, Suc, curry; modernized some specifications
haftmann
parents: 37145
diff changeset
   488
fun mk_Suc t = Const ("Nat.Suc", natT --> natT) $ t;
5207
wenzelm
parents: 5096
diff changeset
   489
37387
3581483cca6c qualified types "+" and nat; qualified constants Ball, Bex, Suc, curry; modernized some specifications
haftmann
parents: 37145
diff changeset
   490
fun dest_Suc (Const ("Nat.Suc", _) $ t) = t
5207
wenzelm
parents: 5096
diff changeset
   491
  | dest_Suc t = raise TERM ("dest_Suc", [t]);
wenzelm
parents: 5096
diff changeset
   492
21621
f9fd69d96c4e slight cleanup in hologic.ML
haftmann
parents: 21550
diff changeset
   493
val Suc_zero = mk_Suc zero;
f9fd69d96c4e slight cleanup in hologic.ML
haftmann
parents: 21550
diff changeset
   494
24630
351a308ab58d simplified type int (eliminated IntInf.int, integer);
wenzelm
parents: 23745
diff changeset
   495
fun mk_nat n =
22994
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   496
  let
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   497
    fun mk 0 = zero
23297
06f108974fa1 simplified type integer;
wenzelm
parents: 23269
diff changeset
   498
      | mk n = mk_Suc (mk (n - 1));
23576
1ffe739e5ee0 removed dest_cTrueprop (cf. ObjectLogic.dest_judgment);
wenzelm
parents: 23566
diff changeset
   499
  in if n < 0 then raise TERM ("mk_nat: negative number", []) else mk n end;
5207
wenzelm
parents: 5096
diff changeset
   500
35267
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   501
fun dest_nat (Const ("Groups.zero_class.zero", _)) = 0
37387
3581483cca6c qualified types "+" and nat; qualified constants Ball, Bex, Suc, curry; modernized some specifications
haftmann
parents: 37145
diff changeset
   502
  | dest_nat (Const ("Nat.Suc", _) $ t) = dest_nat t + 1
5207
wenzelm
parents: 5096
diff changeset
   503
  | dest_nat t = raise TERM ("dest_nat", [t]);
wenzelm
parents: 5096
diff changeset
   504
22994
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   505
val class_size = "Nat.size";
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   506
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   507
fun size_const T = Const ("Nat.size_class.size", T --> natT);
02440636214f abstract size function in hologic.ML
haftmann
parents: 22391
diff changeset
   508
5207
wenzelm
parents: 5096
diff changeset
   509
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   510
(* binary numerals and int *)
21778
66440bf72cdc binary numerals: restricted to actual abstract syntax;
wenzelm
parents: 21755
diff changeset
   511
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   512
val numT = Type ("Num.num", []);
25919
8b1c0d434824 joined theories IntDef, Numeral, IntArith to theory Int
haftmann
parents: 25887
diff changeset
   513
val intT = Type ("Int.int", []);
21778
66440bf72cdc binary numerals: restricted to actual abstract syntax;
wenzelm
parents: 21755
diff changeset
   514
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   515
val one_const = Const ("Num.num.One", numT)
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   516
and bit0_const = Const ("Num.num.Bit0", numT --> numT)
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   517
and bit1_const = Const ("Num.num.Bit1", numT --> numT);
26086
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   518
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   519
fun mk_bit 0 = bit0_const
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   520
  | mk_bit 1 = bit1_const
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   521
  | mk_bit _ = raise TERM ("mk_bit", []);
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   522
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   523
fun dest_bit (Const ("Num.num.Bit0", _)) = 0
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   524
  | dest_bit (Const ("Num.num.Bit1", _)) = 1
26086
3c243098b64a New simpler representation of numerals, using Bit0 and Bit1 instead of BIT, B0, and B1
huffman
parents: 26036
diff changeset
   525
  | dest_bit t = raise TERM ("dest_bit", [t]);
8768
9f18aba48519 number_of now takes a type arg
paulson
parents: 8739
diff changeset
   526
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   527
fun mk_numeral i =
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   528
  let fun mk 1 = one_const
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   529
        | mk i = let val (q, r) = Integer.div_mod i 2 in mk_bit r $ mk q end
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   530
  in if i > 0 then mk i else raise TERM ("mk_numeral: " ^ string_of_int i, [])
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   531
  end
13755
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   532
62342
1cf129590be8 consolidated name
haftmann
parents: 61424
diff changeset
   533
fun dest_numeral (Const ("Num.num.One", _)) = 1
1cf129590be8 consolidated name
haftmann
parents: 61424
diff changeset
   534
  | dest_numeral (Const ("Num.num.Bit0", _) $ bs) = 2 * dest_numeral bs
1cf129590be8 consolidated name
haftmann
parents: 61424
diff changeset
   535
  | dest_numeral (Const ("Num.num.Bit1", _) $ bs) = 2 * dest_numeral bs + 1
1cf129590be8 consolidated name
haftmann
parents: 61424
diff changeset
   536
  | dest_numeral t = raise TERM ("dest_num", [t]);
13755
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   537
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   538
fun numeral_const T = Const ("Num.numeral_class.numeral", numT --> T);
21820
2f2b6a965ccc introduced mk/dest_numeral/number for mk/dest_binum etc.
haftmann
parents: 21788
diff changeset
   539
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   540
fun add_numerals (Const ("Num.numeral_class.numeral", Type (_, [_, T])) $ t) = cons (t, T)
23269
851b8ea067ac simplified/renamed add_numerals;
wenzelm
parents: 23247
diff changeset
   541
  | add_numerals (t $ u) = add_numerals t #> add_numerals u
851b8ea067ac simplified/renamed add_numerals;
wenzelm
parents: 23247
diff changeset
   542
  | add_numerals (Abs (_, _, t)) = add_numerals t
851b8ea067ac simplified/renamed add_numerals;
wenzelm
parents: 23247
diff changeset
   543
  | add_numerals _ = I;
22391
56861fe9c22c added add_numerals_of
haftmann
parents: 21829
diff changeset
   544
35267
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   545
fun mk_number T 0 = Const ("Groups.zero_class.zero", T)
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   546
  | mk_number T 1 = Const ("Groups.one_class.one", T)
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   547
  | mk_number T i =
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   548
    if i > 0 then numeral_const T $ mk_numeral i
54489
03ff4d1e6784 eliminiated neg_numeral in favour of - (numeral _)
haftmann
parents: 53887
diff changeset
   549
    else Const ("Groups.uminus_class.uminus", T --> T) $ mk_number T (~ i);
21820
2f2b6a965ccc introduced mk/dest_numeral/number for mk/dest_binum etc.
haftmann
parents: 21788
diff changeset
   550
35267
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   551
fun dest_number (Const ("Groups.zero_class.zero", T)) = (T, 0)
8dfd816713c6 moved remaning class operations from Algebras.thy to Groups.thy
haftmann
parents: 34974
diff changeset
   552
  | dest_number (Const ("Groups.one_class.one", T)) = (T, 1)
47108
2a1953f0d20d merged fork with new numeral representation (see NEWS)
huffman
parents: 46216
diff changeset
   553
  | dest_number (Const ("Num.numeral_class.numeral", Type ("fun", [_, T])) $ t) =
62342
1cf129590be8 consolidated name
haftmann
parents: 61424
diff changeset
   554
      (T, dest_numeral t)
54489
03ff4d1e6784 eliminiated neg_numeral in favour of - (numeral _)
haftmann
parents: 53887
diff changeset
   555
  | dest_number (Const ("Groups.uminus_class.uminus", Type ("fun", [_, T])) $ t) =
03ff4d1e6784 eliminiated neg_numeral in favour of - (numeral _)
haftmann
parents: 53887
diff changeset
   556
      apsnd (op ~) (dest_number t)
21820
2f2b6a965ccc introduced mk/dest_numeral/number for mk/dest_binum etc.
haftmann
parents: 21788
diff changeset
   557
  | dest_number t = raise TERM ("dest_number", [t]);
13755
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   558
21829
016eff9c5699 simplified mk/dest_numeral (cf. mk/dest_binum of 1.65);
wenzelm
parents: 21820
diff changeset
   559
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   560
(* code target numerals *)
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   561
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   562
val code_integerT = Type ("Code_Numeral.integer", []);
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   563
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   564
val code_naturalT = Type ("Code_Numeral.natural", []);
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   565
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   566
13755
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   567
(* real *)
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   568
51523
97b5e8a1291c rename RealDef to Real
hoelzl
parents: 51315
diff changeset
   569
val realT = Type ("Real.real", []);
13755
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   570
a9bb54a3cfb7 Added mk_int and mk_list.
berghofe
parents: 13743
diff changeset
   571
21755
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   572
(* list *)
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   573
21755
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   574
fun listT T = Type ("List.list", [T]);
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   575
25887
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   576
fun nil_const T = Const ("List.list.Nil", listT T);
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   577
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   578
fun cons_const T =
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   579
  let val lT = listT T
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   580
  in Const ("List.list.Cons", T --> lT --> lT) end;
5dcc3c257922 Added nil_const and cons_const.
berghofe
parents: 25172
diff changeset
   581
21755
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   582
fun mk_list T ts =
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   583
  let
21755
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   584
    val lT = listT T;
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   585
    val Nil = Const ("List.list.Nil", lT);
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   586
    fun Cons t u = Const ("List.list.Cons", T --> lT --> lT) $ t $ u;
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   587
  in fold_rev Cons ts Nil end;
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   588
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   589
fun dest_list (Const ("List.list.Nil", _)) = []
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   590
  | dest_list (Const ("List.list.Cons", _) $ t $ u) = t :: dest_list u
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   591
  | dest_list t = raise TERM ("dest_list", [t]);
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   592
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   593
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   594
(* char *)
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   595
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   596
val charT = Type ("String.char", []);
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   597
62597
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   598
val Char_const = Const ("String.Char", numT --> charT);
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   599
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   600
fun mk_char 0 = Const ("Groups.zero_class.zero", charT)
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   601
  | mk_char i =
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   602
      if 1 <= i andalso i <= 255 then Char_const $ mk_numeral i
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   603
      else raise TERM ("mk_char", []);
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   604
62597
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   605
fun dest_char t =
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   606
  let
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   607
    val (T, n) = case t of
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   608
      Const ("Groups.zero_class.zero", T) => (T, 0)
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   609
    | (Const ("String.Char", Type ("fun", [_, T])) $ t) => (T, dest_numeral t)
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   610
    | _ => raise TERM ("dest_char", [t]);
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   611
  in
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   612
    if T = charT then n
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   613
    else raise TERM ("dest_char", [t])
b3f2b8c906a6 model characters directly as range 0..255
haftmann
parents: 62513
diff changeset
   614
  end;
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   615
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   616
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   617
(* string *)
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   618
32446
cde4f2c8bdd5 fixed HOLogic.stringT
krauss
parents: 32342
diff changeset
   619
val stringT = listT charT;
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   620
40627
becf5d5187cc renamed raw "explode" function to "raw_explode" to emphasize its meaning;
wenzelm
parents: 39756
diff changeset
   621
val mk_string = mk_list charT o map (mk_char o ord) o raw_explode;
21755
22dd32812116 misc cleanup -- removed non-HOL operations;
wenzelm
parents: 21621
diff changeset
   622
val dest_string = implode o map (chr o dest_char) o dest_list;
21455
b6be1d1b66c5 incorporated structure HOList into HOLogic
haftmann
parents: 21219
diff changeset
   623
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   624
31205
98370b26c2ce String.literal replaces message_string, code_numeral replaces (code_)index
haftmann
parents: 31183
diff changeset
   625
(* literal *)
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   626
31205
98370b26c2ce String.literal replaces message_string, code_numeral replaces (code_)index
haftmann
parents: 31183
diff changeset
   627
val literalT = Type ("String.literal", []);
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   628
62513
702085ca8564 take qualification of type name more seriously: derived consts and facts are qualified uniformly;
wenzelm
parents: 62342
diff changeset
   629
fun mk_literal s = Const ("String.literal.STR", stringT --> literalT)
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   630
      $ mk_string s;
62513
702085ca8564 take qualification of type name more seriously: derived consts and facts are qualified uniformly;
wenzelm
parents: 62342
diff changeset
   631
fun dest_literal (Const ("String.literal.STR", _) $ t) =
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   632
      dest_string t
31205
98370b26c2ce String.literal replaces message_string, code_numeral replaces (code_)index
haftmann
parents: 31183
diff changeset
   633
  | dest_literal t = raise TERM ("dest_literal", [t]);
31048
ac146fc38b51 refined HOL string theories and corresponding ML fragments
haftmann
parents: 30453
diff changeset
   634
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   635
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   636
(* typerep and term *)
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   637
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   638
val typerepT = Type ("Typerep.typerep", []);
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   639
31736
926ebca5a145 more appropriate mk_typerep
haftmann
parents: 31463
diff changeset
   640
fun mk_typerep (Type (tyco, Ts)) = Const ("Typerep.typerep.Typerep",
926ebca5a145 more appropriate mk_typerep
haftmann
parents: 31463
diff changeset
   641
      literalT --> listT typerepT --> typerepT) $ mk_literal tyco
926ebca5a145 more appropriate mk_typerep
haftmann
parents: 31463
diff changeset
   642
        $ mk_list typerepT (map mk_typerep Ts)
926ebca5a145 more appropriate mk_typerep
haftmann
parents: 31463
diff changeset
   643
  | mk_typerep (T as TFree _) = Const ("Typerep.typerep_class.typerep",
926ebca5a145 more appropriate mk_typerep
haftmann
parents: 31463
diff changeset
   644
      Term.itselfT T --> typerepT) $ Logic.mk_type T;
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   645
32657
5f13912245ff Code_Eval(uation)
haftmann
parents: 32446
diff changeset
   646
val termT = Type ("Code_Evaluation.term", []);
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   647
32657
5f13912245ff Code_Eval(uation)
haftmann
parents: 32446
diff changeset
   648
fun term_of_const T = Const ("Code_Evaluation.term_of_class.term_of", T --> termT);
32339
40612b7ace87 termT and term_of_const
haftmann
parents: 32287
diff changeset
   649
40612b7ace87 termT and term_of_const
haftmann
parents: 32287
diff changeset
   650
fun mk_term_of T t = term_of_const T $ t;
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   651
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   652
fun reflect_term (Const (c, T)) =
32657
5f13912245ff Code_Eval(uation)
haftmann
parents: 32446
diff changeset
   653
      Const ("Code_Evaluation.Const", literalT --> typerepT --> termT)
31205
98370b26c2ce String.literal replaces message_string, code_numeral replaces (code_)index
haftmann
parents: 31183
diff changeset
   654
        $ mk_literal c $ mk_typerep T
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   655
  | reflect_term (t1 $ t2) =
32657
5f13912245ff Code_Eval(uation)
haftmann
parents: 32446
diff changeset
   656
      Const ("Code_Evaluation.App", termT --> termT --> termT)
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   657
        $ reflect_term t1 $ reflect_term t2
31183
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   658
  | reflect_term (Abs (v, _, t)) = Abs (v, termT, reflect_term t)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   659
  | reflect_term t = t;
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   660
31463
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   661
fun mk_valtermify_app c vs T =
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   662
  let
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   663
    fun termifyT T = mk_prodT (T, unitT --> termT);
32657
5f13912245ff Code_Eval(uation)
haftmann
parents: 32446
diff changeset
   664
    fun valapp T T' = Const ("Code_Evaluation.valapp",
31463
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   665
      termifyT (T --> T') --> termifyT T --> termifyT T');
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   666
    fun mk_fTs [] _ = []
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   667
      | mk_fTs (_ :: Ts) T = (Ts ---> T) :: mk_fTs Ts T;
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   668
    val Ts = map snd vs;
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   669
    val t = Const (c, Ts ---> T);
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   670
    val tt = mk_prod (t, Abs ("u", unitT, reflect_term t));
33245
65232054ffd0 eliminated some old folds;
wenzelm
parents: 32657
diff changeset
   671
    fun app (fT, (v, T)) t = valapp T fT $ t $ Free (v, termifyT T);
65232054ffd0 eliminated some old folds;
wenzelm
parents: 32657
diff changeset
   672
  in fold app (mk_fTs Ts T ~~ vs) tt end;
31463
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   673
31183
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   674
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   675
(* open state monads *)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   676
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   677
fun mk_return T U x = pair_const T U $ x;
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   678
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   679
fun mk_ST clauses t U (someT, V) =
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   680
  let
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   681
    val R = case someT of SOME T => mk_prodT (T, V) | NONE => V
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   682
    fun mk_clause ((t, U), SOME (v, T)) (t', U') =
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   683
          (Const ("Product_Type.scomp", (U --> mk_prodT (T, U')) --> (T --> U' --> R) --> U --> R)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   684
            $ t $ lambda (Free (v, T)) t', U)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   685
      | mk_clause ((t, U), NONE) (t', U') =
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   686
          (Const ("Product_Type.fcomp", (U --> U') --> (U' --> R) --> U --> R)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   687
            $ t $ t', U)
13effe47174c combinators for single-threaded operations
haftmann
parents: 31135
diff changeset
   688
  in fold_rev mk_clause clauses (t, U) |> fst end;
31135
e2d777dcf161 added abstract operations for typerep/term_of
haftmann
parents: 31048
diff changeset
   689
38550
haftmann
parents: 38548
diff changeset
   690
haftmann
parents: 38548
diff changeset
   691
(* random seeds *)
haftmann
parents: 38548
diff changeset
   692
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   693
val random_seedT = mk_prodT (code_naturalT, code_naturalT);
31463
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   694
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 51126
diff changeset
   695
fun mk_random T t = Const ("Quickcheck_Random.random_class.random", code_naturalT
31463
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   696
  --> random_seedT --> mk_prodT (mk_prodT (T, unitT --> termT), random_seedT)) $ t;
c5681ed50eab added mk_valtermify_app and mk_random
haftmann
parents: 31456
diff changeset
   697
923
ff1574a81019 new version of HOL with curried function application
clasohm
parents:
diff changeset
   698
end;