src/HOL/Tools/Lifting/lifting_bnf.ML
author kuncar
Wed, 23 Apr 2014 17:57:56 +0200
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child 57890 1e13f63fb452
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(*  Title:      HOL/Tools/Transfer/transfer_bnf.ML
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    Author:     Ondrej Kuncar, TU Muenchen
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Setup for Lifting for types that are BNF.
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*)
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signature LIFTING_BNF =
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sig
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end
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structure Lifting_BNF : LIFTING_BNF =
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struct
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open BNF_Util
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open BNF_Def
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open Transfer_BNF
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(* Quotient map theorem *)
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fun Quotient_tac bnf ctxt i =
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  let
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    val rel_Grp = rel_Grp_of_bnf bnf
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    fun get_lhs thm = thm |> concl_of |> HOLogic.dest_Trueprop |> HOLogic.dest_eq |> fst
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    val vars = get_lhs rel_Grp |> strip_comb |> snd |> map_filter (try (strip_comb #> snd #> hd))
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    val UNIVs = map (fn var => HOLogic.mk_UNIV (var |> dest_Var |> snd |> dest_Type |> snd |> hd)) vars
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    val inst = map2 (curry(pairself (certify ctxt))) vars UNIVs
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    val rel_Grp_UNIV_sym = rel_Grp |> Drule.instantiate_normalize ([], inst) 
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      |> Local_Defs.unfold ctxt @{thms subset_UNIV[THEN eqTrueI] UNIV_def[symmetric] simp_thms(21)}
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      |> (fn thm => thm RS sym)
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    val rel_mono = rel_mono_of_bnf bnf
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    val rel_conversep_sym = rel_conversep_of_bnf bnf RS sym
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  in
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    EVERY' [SELECT_GOAL (Local_Defs.unfold_tac ctxt [@{thm Quotient_alt_def5}]), 
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      REPEAT_DETERM o (etac conjE), rtac conjI, SELECT_GOAL (Local_Defs.unfold_tac ctxt [rel_Grp_UNIV_sym]),
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      rtac rel_mono THEN_ALL_NEW atac, rtac conjI, SELECT_GOAL (Local_Defs.unfold_tac ctxt
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        [rel_conversep_sym, rel_Grp_UNIV_sym]), rtac rel_mono THEN_ALL_NEW atac,
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      SELECT_GOAL (Local_Defs.unfold_tac ctxt [rel_conversep_sym, rel_OO_of_bnf bnf RS sym]),
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      hyp_subst_tac ctxt, rtac refl] i
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  end
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fun mk_Quotient args =
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  let
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    val argTs = map fastype_of args
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  in
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    list_comb (Const (@{const_name Quotient}, argTs ---> HOLogic.boolT), args)
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  end
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fun prove_Quotient_map bnf ctxt =
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  let
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    val live = live_of_bnf bnf
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    val old_ctxt = ctxt
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    val (((As, Bs), Ds), ctxt) = ctxt
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      |> mk_TFrees live
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      ||>> mk_TFrees live
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      ||>> mk_TFrees (dead_of_bnf bnf)
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    val argTss = map2 (fn a => fn b => [mk_pred2T a a, a --> b, b --> a,mk_pred2T a b]) As Bs
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    val ((argss, argss'), ctxt) = fold_map2 mk_Frees ["R", "Abs", "Rep", "T"] (transpose argTss) ctxt
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      |>> `transpose
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    val assms = map (mk_Quotient #> HOLogic.mk_Trueprop) argss
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    val R_rel = list_comb (mk_rel_of_bnf Ds As As bnf, nth argss' 0)
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    val Abs_map = list_comb (mk_map_of_bnf Ds As Bs bnf, nth argss' 1)
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    val Rep_map = list_comb (mk_map_of_bnf Ds Bs As bnf, nth argss' 2)
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    val T_rel = list_comb (mk_rel_of_bnf Ds As Bs bnf, nth argss' 3)
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    val concl = mk_Quotient [R_rel, Abs_map, Rep_map, T_rel] |> HOLogic.mk_Trueprop
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    val goal = Logic.list_implies (assms, concl)
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    val thm = Goal.prove ctxt [] [] goal 
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      (fn {context = ctxt, prems = _} => Quotient_tac bnf ctxt 1)
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  in
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    Drule.zero_var_indexes (singleton (Variable.export ctxt old_ctxt) thm)
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  end
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fun Quotient_map bnf ctxt =
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  let
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    val Quotient = prove_Quotient_map bnf ctxt
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    fun qualify defname suffix = Binding.qualified true suffix defname
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    val Quotient_thm_name = qualify (base_name_of_bnf bnf) "Quotient"
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    val notes = [((Quotient_thm_name, []), [([Quotient], @{attributes [quot_map]})])]
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  in
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    notes
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  end
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(* relator_eq_onp  *)
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fun relator_eq_onp bnf ctxt =
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  let
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    val relator_eq_onp_thm = lookup_defined_pred_data ctxt (type_name_of_bnf bnf)
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      |> Transfer.rel_eq_onp |> Conv.fconv_rule (HOLogic.Trueprop_conv (Conv.arg1_conv 
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          (Raw_Simplifier.rewrite ctxt false @{thms eq_onp_top_eq_eq[THEN eq_reflection]})))
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  in
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    [((Binding.empty, []), [([relator_eq_onp_thm], @{attributes [relator_eq_onp]})])]    
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  end
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(* relator_mono  *)
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fun relator_mono bnf =
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  [((Binding.empty, []), [([rel_mono_of_bnf bnf], @{attributes [relator_mono]})])]    
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(* relator_distr  *)
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fun relator_distr bnf =
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  [((Binding.empty, []), [([rel_OO_of_bnf bnf RS sym], @{attributes [relator_distr]})])]
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(* interpretation *)
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fun lifting_bnf_interpretation bnf lthy =
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  if dead_of_bnf bnf > 0 then lthy
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  else
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    let
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      val notes = relator_eq_onp bnf lthy @ Quotient_map bnf lthy @ relator_mono bnf
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        @ relator_distr bnf
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    in
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      snd (Local_Theory.notes notes lthy)
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    end
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val _ = Context.>> (Context.map_theory (bnf_interpretation
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  (bnf_only_type_ctr (fn bnf => map_local_theory (lifting_bnf_interpretation bnf)))))
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end