src/HOL/Tools/Transfer/transfer.ML
author wenzelm
Wed, 16 Dec 2015 16:31:36 +0100
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child 62334 15176172701e
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rule_attribute and declaration_attribute implicitly support abstract closure, but mixed_attribute implementations need to be aware of Thm.is_free_dummy;
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(*  Title:      HOL/Tools/Transfer/transfer.ML
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    Author:     Brian Huffman, TU Muenchen
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    Author:     Ondrej Kuncar, TU Muenchen
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Generic theorem transfer method.
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*)
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signature TRANSFER =
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sig
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  type pred_data
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  val mk_pred_data: thm -> thm -> thm list -> pred_data
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  val rel_eq_onp: pred_data -> thm
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  val rel_eq_onp_with_tops: pred_data -> thm
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  val pred_def: pred_data -> thm
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  val pred_simps: pred_data -> thm list
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  val update_pred_simps: thm list -> pred_data -> pred_data
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  val bottom_rewr_conv: thm list -> conv
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  val top_rewr_conv: thm list -> conv
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  val top_sweep_rewr_conv: thm list -> conv
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  val prep_conv: conv
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  val get_transfer_raw: Proof.context -> thm list
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  val get_relator_eq_item_net: Proof.context -> thm Item_Net.T
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  val get_relator_eq: Proof.context -> thm list
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  val get_sym_relator_eq: Proof.context -> thm list
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  val get_relator_eq_raw: Proof.context -> thm list
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  val get_relator_domain: Proof.context -> thm list
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  val morph_pred_data: morphism -> pred_data -> pred_data
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  val lookup_pred_data: Proof.context -> string -> pred_data option
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  val update_pred_data: string -> pred_data -> Context.generic -> Context.generic
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  val get_compound_lhs: Proof.context -> (term * thm) Item_Net.T
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  val get_compound_rhs: Proof.context -> (term * thm) Item_Net.T
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  val transfer_add: attribute
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  val transfer_del: attribute
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  val transfer_raw_add: thm -> Context.generic -> Context.generic
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  val transfer_raw_del: thm -> Context.generic -> Context.generic
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  val transferred_attribute: thm list -> attribute
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  val untransferred_attribute: thm list -> attribute
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  val prep_transfer_domain_thm: Proof.context -> thm -> thm
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  val transfer_domain_add: attribute
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  val transfer_domain_del: attribute
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  val transfer_rule_of_term: Proof.context -> bool -> term -> thm
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  val transfer_rule_of_lhs: Proof.context -> term -> thm
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  val eq_tac: Proof.context -> int -> tactic
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  val transfer_start_tac: bool -> Proof.context -> int -> tactic
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  val transfer_prover_start_tac: Proof.context -> int -> tactic
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  val transfer_step_tac: Proof.context -> int -> tactic
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  val transfer_end_tac: Proof.context -> int -> tactic
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  val transfer_prover_end_tac: Proof.context -> int -> tactic
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  val transfer_tac: bool -> Proof.context -> int -> tactic
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  val transfer_prover_tac: Proof.context -> int -> tactic
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  val gen_frees_tac: (string * typ) list -> Proof.context -> int -> tactic
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end
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structure Transfer : TRANSFER =
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struct
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fun bottom_rewr_conv rewrs = Conv.bottom_conv (K (Conv.try_conv (Conv.rewrs_conv rewrs))) @{context}
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fun top_rewr_conv rewrs = Conv.top_conv (K (Conv.try_conv (Conv.rewrs_conv rewrs))) @{context}
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fun top_sweep_rewr_conv rewrs = Conv.top_sweep_conv (K (Conv.rewrs_conv rewrs)) @{context}
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(** Theory Data **)
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val compound_xhs_empty_net = Item_Net.init (Thm.eq_thm_prop o apply2 snd) (single o fst);
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val rewr_rules = Item_Net.init Thm.eq_thm_prop (single o fst o HOLogic.dest_eq
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  o HOLogic.dest_Trueprop o Thm.concl_of);
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datatype pred_data = PRED_DATA of {pred_def:thm, rel_eq_onp: thm, pred_simps: thm list}
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fun mk_pred_data pred_def rel_eq_onp pred_simps = PRED_DATA {pred_def = pred_def, 
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  rel_eq_onp = rel_eq_onp, pred_simps = pred_simps}
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fun map_pred_data' f1 f2 f3 (PRED_DATA {pred_def, rel_eq_onp, pred_simps}) =
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  PRED_DATA {pred_def = f1 pred_def, rel_eq_onp = f2 rel_eq_onp, pred_simps = f3 pred_simps}
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fun rep_pred_data (PRED_DATA p) = p
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val rel_eq_onp = #rel_eq_onp o rep_pred_data
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val rel_eq_onp_with_tops = (Conv.fconv_rule (HOLogic.Trueprop_conv (Conv.arg1_conv
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  (top_sweep_rewr_conv @{thms eq_onp_top_eq_eq[symmetric, THEN eq_reflection]}))))
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  o #rel_eq_onp o rep_pred_data
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val pred_def = #pred_def o rep_pred_data
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val pred_simps = #pred_simps o rep_pred_data
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fun update_pred_simps new_pred_data = map_pred_data' I I (K new_pred_data)
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structure Data = Generic_Data
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(
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  type T =
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    { transfer_raw : thm Item_Net.T,
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      known_frees : (string * typ) list,
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      compound_lhs : (term * thm) Item_Net.T,
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      compound_rhs : (term * thm) Item_Net.T,
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      relator_eq : thm Item_Net.T,
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      relator_eq_raw : thm Item_Net.T,
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      relator_domain : thm Item_Net.T,
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      pred_data : pred_data Symtab.table }
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  val empty =
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    { transfer_raw = Thm.intro_rules,
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      known_frees = [],
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      compound_lhs = compound_xhs_empty_net,
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      compound_rhs = compound_xhs_empty_net,
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      relator_eq = rewr_rules,
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      relator_eq_raw = Thm.full_rules,
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      relator_domain = Thm.full_rules,
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      pred_data = Symtab.empty }
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  val extend = I
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  fun merge
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    ( { transfer_raw = t1, known_frees = k1,
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        compound_lhs = l1,
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        compound_rhs = c1, relator_eq = r1,
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        relator_eq_raw = rw1, relator_domain = rd1,
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        pred_data = pd1 },
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      { transfer_raw = t2, known_frees = k2,
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        compound_lhs = l2,
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        compound_rhs = c2, relator_eq = r2,
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        relator_eq_raw = rw2, relator_domain = rd2,
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        pred_data = pd2 } ) =
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    { transfer_raw = Item_Net.merge (t1, t2),
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      known_frees = Library.merge (op =) (k1, k2),
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      compound_lhs = Item_Net.merge (l1, l2),
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      compound_rhs = Item_Net.merge (c1, c2),
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      relator_eq = Item_Net.merge (r1, r2),
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      relator_eq_raw = Item_Net.merge (rw1, rw2),
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      relator_domain = Item_Net.merge (rd1, rd2),
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      pred_data = Symtab.merge (K true) (pd1, pd2) }
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)
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fun get_transfer_raw ctxt = ctxt
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  |> (Item_Net.content o #transfer_raw o Data.get o Context.Proof)
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fun get_known_frees ctxt = ctxt
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  |> (#known_frees o Data.get o Context.Proof)
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fun get_compound_lhs ctxt = ctxt
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  |> (#compound_lhs o Data.get o Context.Proof)
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fun get_compound_rhs ctxt = ctxt
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  |> (#compound_rhs o Data.get o Context.Proof)
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fun get_relator_eq_item_net ctxt = (#relator_eq o Data.get o Context.Proof) ctxt
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fun get_relator_eq ctxt = ctxt
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  |> (Item_Net.content o #relator_eq o Data.get o Context.Proof)
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  |> map safe_mk_meta_eq
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fun get_sym_relator_eq ctxt = ctxt
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  |> (Item_Net.content o #relator_eq o Data.get o Context.Proof)
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  |> map (Thm.symmetric o safe_mk_meta_eq)
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fun get_relator_eq_raw ctxt = ctxt
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  |> (Item_Net.content o #relator_eq_raw o Data.get o Context.Proof)
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fun get_relator_domain ctxt = ctxt
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  |> (Item_Net.content o #relator_domain o Data.get o Context.Proof)
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fun get_pred_data ctxt = ctxt
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  |> (#pred_data o Data.get o Context.Proof)
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fun map_data f1 f2 f3 f4 f5 f6 f7 f8
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  { transfer_raw, known_frees, compound_lhs, compound_rhs,
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    relator_eq, relator_eq_raw, relator_domain, pred_data } =
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  { transfer_raw = f1 transfer_raw,
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    known_frees = f2 known_frees,
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    compound_lhs = f3 compound_lhs,
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    compound_rhs = f4 compound_rhs,
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    relator_eq = f5 relator_eq,
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    relator_eq_raw = f6 relator_eq_raw,
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    relator_domain = f7 relator_domain,
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    pred_data = f8 pred_data }
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fun map_transfer_raw   f = map_data f I I I I I I I
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fun map_known_frees    f = map_data I f I I I I I I
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fun map_compound_lhs   f = map_data I I f I I I I I
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fun map_compound_rhs   f = map_data I I I f I I I I
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fun map_relator_eq     f = map_data I I I I f I I I
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fun map_relator_eq_raw f = map_data I I I I I f I I
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fun map_relator_domain f = map_data I I I I I I f I
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fun map_pred_data      f = map_data I I I I I I I f
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fun add_transfer_thm thm = Data.map
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  (map_transfer_raw (Item_Net.update thm) o
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   map_compound_lhs
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     (case HOLogic.dest_Trueprop (Thm.concl_of thm) of
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        Const (@{const_name Rel}, _) $ _ $ (lhs as (_ $ _)) $ _ =>
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          Item_Net.update (lhs, thm)
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      | _ => I) o
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   map_compound_rhs
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     (case HOLogic.dest_Trueprop (Thm.concl_of thm) of
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        Const (@{const_name Rel}, _) $ _ $ _ $ (rhs as (_ $ _)) =>
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          Item_Net.update (rhs, thm)
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      | _ => I) o
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   map_known_frees (Term.add_frees (Thm.concl_of thm)))
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fun del_transfer_thm thm = Data.map
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  (map_transfer_raw (Item_Net.remove thm) o
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   map_compound_lhs
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     (case HOLogic.dest_Trueprop (Thm.concl_of thm) of
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        Const (@{const_name Rel}, _) $ _ $ (lhs as (_ $ _)) $ _ =>
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          Item_Net.remove (lhs, thm)
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      | _ => I) o
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   map_compound_rhs
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     (case HOLogic.dest_Trueprop (Thm.concl_of thm) of
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        Const (@{const_name Rel}, _) $ _ $ _ $ (rhs as (_ $ _)) =>
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          Item_Net.remove (rhs, thm)
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      | _ => I))
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fun transfer_raw_add thm ctxt = add_transfer_thm thm ctxt
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fun transfer_raw_del thm ctxt = del_transfer_thm thm ctxt
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(** Conversions **)
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fun transfer_rel_conv conv =
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  Conv.concl_conv ~1 (HOLogic.Trueprop_conv (Conv.fun2_conv (Conv.arg_conv conv)))
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val Rel_rule = Thm.symmetric @{thm Rel_def}
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fun dest_funcT cT =
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  (case Thm.dest_ctyp cT of [T, U] => (T, U)
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    | _ => raise TYPE ("dest_funcT", [Thm.typ_of cT], []))
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fun Rel_conv ct =
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  let val (cT, cT') = dest_funcT (Thm.ctyp_of_cterm ct)
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      val (cU, _) = dest_funcT cT'
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  in Thm.instantiate' [SOME cT, SOME cU] [SOME ct] Rel_rule end
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(* Conversion to preprocess a transfer rule *)
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fun safe_Rel_conv ct =
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  Conv.try_conv (HOLogic.Trueprop_conv (Conv.fun_conv (Conv.fun_conv Rel_conv))) ct
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fun prep_conv ct = (
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      Conv.implies_conv safe_Rel_conv prep_conv
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      else_conv
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      safe_Rel_conv
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      else_conv
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      Conv.all_conv) ct
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(** Replacing explicit equalities with is_equality premises **)
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fun mk_is_equality t =
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  Const (@{const_name is_equality}, Term.fastype_of t --> HOLogic.boolT) $ t
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val is_equality_lemma =
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  @{lemma "(!!R. is_equality R ==> PROP (P R)) == PROP (P (op =))"
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    by (unfold is_equality_def, rule, drule meta_spec,
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      erule meta_mp, rule refl, simp)}
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fun gen_abstract_equalities ctxt (dest : term -> term * (term -> term)) thm =
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  let
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    val prop = Thm.prop_of thm
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    val (t, mk_prop') = dest prop
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    (* Only consider "op =" at non-base types *)
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    fun is_eq (Const (@{const_name HOL.eq}, Type ("fun", [T, _]))) =
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        (case T of Type (_, []) => false | _ => true)
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      | is_eq _ = false
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    val add_eqs = Term.fold_aterms (fn t => if is_eq t then insert (op =) t else I)
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    val eq_consts = rev (add_eqs t [])
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    val eqTs = map (snd o dest_Const) eq_consts
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    val used = Term.add_free_names prop []
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    val names = map (K "") eqTs |> Name.variant_list used
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    val frees = map Free (names ~~ eqTs)
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    val prems = map (HOLogic.mk_Trueprop o mk_is_equality) frees
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    val prop1 = mk_prop' (Term.subst_atomic (eq_consts ~~ frees) t)
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    val prop2 = fold Logic.all frees (Logic.list_implies (prems, prop1))
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    val cprop = Thm.cterm_of ctxt prop2
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    val equal_thm = Raw_Simplifier.rewrite ctxt false [is_equality_lemma] cprop
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    fun forall_elim thm = Thm.forall_elim_vars (Thm.maxidx_of thm + 1) thm
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  in
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    forall_elim (thm COMP (equal_thm COMP @{thm equal_elim_rule2}))
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  end
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    handle TERM _ => thm
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fun abstract_equalities_transfer ctxt thm =
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  let
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    fun dest prop =
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      let
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        val prems = Logic.strip_imp_prems prop
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        val concl = HOLogic.dest_Trueprop (Logic.strip_imp_concl prop)
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        val ((rel, x), y) = apfst Term.dest_comb (Term.dest_comb concl)
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      in
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        (rel, fn rel' =>
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          Logic.list_implies (prems, HOLogic.mk_Trueprop (rel' $ x $ y)))
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      end
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    val contracted_eq_thm =
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      Conv.fconv_rule (transfer_rel_conv (bottom_rewr_conv (get_relator_eq ctxt))) thm
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      handle CTERM _ => thm
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  in
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    gen_abstract_equalities ctxt dest contracted_eq_thm
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  end
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fun abstract_equalities_relator_eq ctxt rel_eq_thm =
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  gen_abstract_equalities ctxt (fn x => (x, I))
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    (rel_eq_thm RS @{thm is_equality_def [THEN iffD2]})
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fun abstract_equalities_domain ctxt thm =
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  let
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    fun dest prop =
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      let
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        val prems = Logic.strip_imp_prems prop
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        val concl = HOLogic.dest_Trueprop (Logic.strip_imp_concl prop)
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        val ((eq, dom), y) = apfst Term.dest_comb (Term.dest_comb concl)
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      in
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        (dom, fn dom' => Logic.list_implies (prems, HOLogic.mk_Trueprop (eq $ dom' $ y)))
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      end
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    fun transfer_rel_conv conv =
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      Conv.concl_conv ~1 (HOLogic.Trueprop_conv (Conv.arg1_conv (Conv.arg_conv conv)))
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    val contracted_eq_thm =
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      Conv.fconv_rule (transfer_rel_conv (bottom_rewr_conv (get_relator_eq ctxt))) thm
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  in
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    gen_abstract_equalities ctxt dest contracted_eq_thm
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  end
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(** Replacing explicit Domainp predicates with Domainp assumptions **)
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fun mk_Domainp_assm (T, R) =
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  HOLogic.mk_eq ((Const (@{const_name Domainp}, Term.fastype_of T --> Term.fastype_of R) $ T), R)
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val Domainp_lemma =
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  @{lemma "(!!R. Domainp T = R ==> PROP (P R)) == PROP (P (Domainp T))"
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    by (rule, drule meta_spec,
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      erule meta_mp, rule refl, simp)}
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fun fold_Domainp f (t as Const (@{const_name Domainp},_) $ (Var (_,_))) = f t
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  | fold_Domainp f (t $ u) = fold_Domainp f t #> fold_Domainp f u
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  | fold_Domainp f (Abs (_, _, t)) = fold_Domainp f t
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  | fold_Domainp _ _ = I
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fun subst_terms tab t =
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  let
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    val t' = Termtab.lookup tab t
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  in
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    case t' of
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      SOME t' => t'
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      | NONE =>
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        (case t of
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          u $ v => (subst_terms tab u) $ (subst_terms tab v)
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          | Abs (a, T, t) => Abs (a, T, subst_terms tab t)
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          | t => t)
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  end
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fun gen_abstract_domains ctxt (dest : term -> term * (term -> term)) thm =
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  let
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    val prop = Thm.prop_of thm
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    val (t, mk_prop') = dest prop
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    val Domainp_tms = rev (fold_Domainp (fn t => insert op= t) t [])
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    val Domainp_Ts = map (snd o dest_funT o snd o dest_Const o fst o dest_comb) Domainp_tms
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    val used = Term.add_free_names t []
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    val rels = map (snd o dest_comb) Domainp_tms
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    val rel_names = map (fst o fst o dest_Var) rels
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    val names = map (fn name => ("D" ^ name)) rel_names |> Name.variant_list used
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    val frees = map Free (names ~~ Domainp_Ts)
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    val prems = map (HOLogic.mk_Trueprop o mk_Domainp_assm) (rels ~~ frees);
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    val t' = subst_terms (fold Termtab.update (Domainp_tms ~~ frees) Termtab.empty) t
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    val prop1 = fold Logic.all frees (Logic.list_implies (prems, mk_prop' t'))
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    val prop2 = Logic.list_rename_params (rev names) prop1
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    val cprop = Thm.cterm_of ctxt prop2
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    val equal_thm = Raw_Simplifier.rewrite ctxt false [Domainp_lemma] cprop
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    fun forall_elim thm = Thm.forall_elim_vars (Thm.maxidx_of thm + 1) thm;
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  in
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    forall_elim (thm COMP (equal_thm COMP @{thm equal_elim_rule2}))
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  end
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    handle TERM _ => thm
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fun abstract_domains_transfer ctxt thm =
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  let
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    fun dest prop =
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      let
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        val prems = Logic.strip_imp_prems prop
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        val concl = HOLogic.dest_Trueprop (Logic.strip_imp_concl prop)
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        val ((rel, x), y) = apfst Term.dest_comb (Term.dest_comb concl)
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      in
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        (x, fn x' =>
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          Logic.list_implies (prems, HOLogic.mk_Trueprop (rel $ x' $ y)))
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      end
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  in
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    gen_abstract_domains ctxt dest thm
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   378
  end
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fun abstract_domains_relator_domain ctxt thm =
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  let
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    fun dest prop =
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      let
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   384
        val prems = Logic.strip_imp_prems prop
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   385
        val concl = HOLogic.dest_Trueprop (Logic.strip_imp_concl prop)
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parents: 56254
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   386
        val ((rel, x), y) = apfst Term.dest_comb (Term.dest_comb concl)
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parents: 56254
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      in
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kuncar
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   388
        (y, fn y' =>
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   389
          Logic.list_implies (prems, HOLogic.mk_Trueprop (rel $ x $ y')))
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      end
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parents: 56254
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   391
  in
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   392
    gen_abstract_domains ctxt dest thm
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   393
  end
3373f5d1e074 abstract Domainp in relator_domain rules => more natural statement of the rule
kuncar
parents: 56254
diff changeset
   394
51956
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   395
fun detect_transfer_rules thm =
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   396
  let
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   397
    fun is_transfer_rule tm = case (HOLogic.dest_Trueprop tm) of
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   398
      (Const (@{const_name HOL.eq}, _)) $ ((Const (@{const_name Domainp}, _)) $ _) $ _ => false
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   399
      | _ $ _ $ _ => true
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   400
      | _ => false
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   401
    fun safe_transfer_rule_conv ctm =
59582
0fbed69ff081 tuned signature -- prefer qualified names;
wenzelm
parents: 59531
diff changeset
   402
      if is_transfer_rule (Thm.term_of ctm) then safe_Rel_conv ctm else Conv.all_conv ctm
51956
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   403
  in
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   404
    Conv.fconv_rule (Conv.prems_conv ~1 safe_transfer_rule_conv) thm
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   405
  end
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   406
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   407
(** Adding transfer domain rules **)
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   408
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   409
fun prep_transfer_domain_thm ctxt thm =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   410
  (abstract_equalities_domain ctxt o detect_transfer_rules) thm
51956
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   411
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   412
fun add_transfer_domain_thm thm ctxt = (add_transfer_thm o
55731
66df76dd2640 rewrite composition of quotients to a more readable form in a respectfulness goal that is presented to a user
kuncar
parents: 55563
diff changeset
   413
  prep_transfer_domain_thm (Context.proof_of ctxt)) thm ctxt
66df76dd2640 rewrite composition of quotients to a more readable form in a respectfulness goal that is presented to a user
kuncar
parents: 55563
diff changeset
   414
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   415
fun del_transfer_domain_thm thm ctxt = (del_transfer_thm o
55731
66df76dd2640 rewrite composition of quotients to a more readable form in a respectfulness goal that is presented to a user
kuncar
parents: 55563
diff changeset
   416
  prep_transfer_domain_thm (Context.proof_of ctxt)) thm ctxt
49975
faf4afed009f transfer package: more flexible handling of equality relations using is_equality predicate
huffman
parents: 49625
diff changeset
   417
faf4afed009f transfer package: more flexible handling of equality relations using is_equality predicate
huffman
parents: 49625
diff changeset
   418
(** Transfer proof method **)
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   419
47355
3d9d98e0f1a4 add bounded quantifier constant transfer_bforall, whose definition is unfolded after transfer
huffman
parents: 47327
diff changeset
   420
val post_simps =
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   421
  @{thms transfer_forall_eq [symmetric]
47355
3d9d98e0f1a4 add bounded quantifier constant transfer_bforall, whose definition is unfolded after transfer
huffman
parents: 47327
diff changeset
   422
    transfer_implies_eq [symmetric] transfer_bforall_unfold}
3d9d98e0f1a4 add bounded quantifier constant transfer_bforall, whose definition is unfolded after transfer
huffman
parents: 47327
diff changeset
   423
47356
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   424
fun gen_frees_tac keepers ctxt = SUBGOAL (fn (t, i) =>
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   425
  let
48065
8aa05d38299a transfer method now avoids generalizing over free variables that are known to appear in registered transfer rules
huffman
parents: 48064
diff changeset
   426
    val keepers = keepers @ get_known_frees ctxt
47356
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   427
    val vs = rev (Term.add_frees t [])
47568
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   428
    val vs' = filter_out (member (op =) keepers) vs
47356
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   429
  in
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   430
    Induct.arbitrary_tac ctxt 0 vs' i
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   431
  end)
19fb95255ec9 transfer method generalizes over free variables in goal
huffman
parents: 47355
diff changeset
   432
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   433
fun mk_relT (T, U) = T --> U --> HOLogic.boolT
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   434
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   435
fun mk_Rel t =
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   436
  let val T = fastype_of t
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   437
  in Const (@{const_name Transfer.Rel}, T --> T) $ t end
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   438
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   439
fun transfer_rule_of_terms (prj : typ * typ -> typ) ctxt tab t u =
47580
d99c883cdf2c use simpler method for preserving bound variable names in transfer tactic
huffman
parents: 47568
diff changeset
   440
  let
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   441
    (* precondition: prj(T,U) must consist of only TFrees and type "fun" *)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   442
    fun rel (T as Type ("fun", [T1, T2])) (U as Type ("fun", [U1, U2])) =
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   443
          let
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   444
            val r1 = rel T1 U1
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   445
            val r2 = rel T2 U2
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   446
            val rT = fastype_of r1 --> fastype_of r2 --> mk_relT (T, U)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   447
          in
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   448
            Const (@{const_name rel_fun}, rT) $ r1 $ r2
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   449
          end
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   450
      | rel T U =
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   451
          let
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   452
            val (a, _) = dest_TFree (prj (T, U))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   453
          in
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   454
            Free (the (AList.lookup (op =) tab a), mk_relT (T, U))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   455
          end
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   456
    fun zip _ thms (Bound i) (Bound _) = (nth thms i, [])
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   457
      | zip ctxt thms (Abs (x, T, t)) (Abs (y, U, u)) =
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   458
          let
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   459
            val ([x', y'], ctxt') = Variable.variant_fixes [x, y] ctxt
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   460
            val prop = mk_Rel (rel T U) $ Free (x', T) $ Free (y', U)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   461
            val cprop = Thm.cterm_of ctxt' (HOLogic.mk_Trueprop prop)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   462
            val thm0 = Thm.assume cprop
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   463
            val (thm1, hyps) = zip ctxt' (thm0 :: thms) t u
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   464
            val ((r1, x), y) = apfst Thm.dest_comb (Thm.dest_comb (Thm.dest_arg cprop))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   465
            val r2 = Thm.dest_fun2 (Thm.dest_arg (Thm.cprop_of thm1))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   466
            val (a1, (b1, _)) = apsnd dest_funcT (dest_funcT (Thm.ctyp_of_cterm r1))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   467
            val (a2, (b2, _)) = apsnd dest_funcT (dest_funcT (Thm.ctyp_of_cterm r2))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   468
            val tinsts = [SOME a1, SOME b1, SOME a2, SOME b2]
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   469
            val insts = [SOME (Thm.dest_arg r1), SOME (Thm.dest_arg r2)]
60801
7664e0916eec tuned signature;
wenzelm
parents: 60752
diff changeset
   470
            val rule = Thm.instantiate' tinsts insts @{thm Rel_abs}
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   471
            val thm2 = Thm.forall_intr x (Thm.forall_intr y (Thm.implies_intr cprop thm1))
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   472
          in
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   473
            (thm2 COMP rule, hyps)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   474
          end
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   475
      | zip ctxt thms (f $ t) (g $ u) =
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   476
          let
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   477
            val (thm1, hyps1) = zip ctxt thms f g
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   478
            val (thm2, hyps2) = zip ctxt thms t u
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   479
          in
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   480
            (thm2 RS (thm1 RS @{thm Rel_app}), hyps1 @ hyps2)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   481
          end
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   482
      | zip _ _ t u =
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   483
          let
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   484
            val T = fastype_of t
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   485
            val U = fastype_of u
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   486
            val prop = mk_Rel (rel T U) $ t $ u
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   487
            val cprop = Thm.cterm_of ctxt (HOLogic.mk_Trueprop prop)
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   488
          in
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   489
            (Thm.assume cprop, [cprop])
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   490
          end
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   491
    val r = mk_Rel (rel (fastype_of t) (fastype_of u))
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   492
    val goal = HOLogic.mk_Trueprop (r $ t $ u)
59642
929984c529d3 clarified context;
wenzelm
parents: 59621
diff changeset
   493
    val rename = Thm.trivial (Thm.cterm_of ctxt goal)
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   494
    val (thm, hyps) = zip ctxt [] t u
47580
d99c883cdf2c use simpler method for preserving bound variable names in transfer tactic
huffman
parents: 47568
diff changeset
   495
  in
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   496
    Drule.implies_intr_list hyps (thm RS rename)
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   497
  end
47580
d99c883cdf2c use simpler method for preserving bound variable names in transfer tactic
huffman
parents: 47568
diff changeset
   498
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   499
(* create a lambda term of the same shape as the given term *)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   500
fun skeleton (is_atom : term -> bool) ctxt t =
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   501
  let
48066
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   502
    fun dummy ctxt =
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   503
      let
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   504
        val (c, ctxt) = yield_singleton Variable.variant_fixes "a" ctxt
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   505
      in
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   506
        (Free (c, dummyT), ctxt)
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   507
      end
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   508
    fun go (Bound i) ctxt = (Bound i, ctxt)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   509
      | go (Abs (x, _, t)) ctxt =
48066
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   510
        let
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   511
          val (t', ctxt) = go t ctxt
48066
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   512
        in
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   513
          (Abs (x, dummyT, t'), ctxt)
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   514
        end
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   515
      | go (tu as (t $ u)) ctxt =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   516
        if is_atom tu andalso not (Term.is_open tu) then dummy ctxt else
48066
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   517
        let
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   518
          val (t', ctxt) = go t ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   519
          val (u', ctxt) = go u ctxt
48066
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   520
        in
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   521
          (t' $ u', ctxt)
c6783c9b87bf transfer method now handles transfer rules for compound terms, e.g. locale-defined constants with hidden parameters
huffman
parents: 48065
diff changeset
   522
        end
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   523
      | go _ ctxt = dummy ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   524
  in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   525
    go t ctxt |> fst |> Syntax.check_term ctxt |>
56254
a2dd9200854d more antiquotations;
wenzelm
parents: 55945
diff changeset
   526
      map_types (map_type_tfree (fn (a, _) => TFree (a, @{sort type})))
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   527
  end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   528
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   529
(** Monotonicity analysis **)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   530
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   531
(* TODO: Put extensible table in theory data *)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   532
val monotab =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   533
  Symtab.make
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   534
    [(@{const_name transfer_implies}, [~1, 1]),
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   535
     (@{const_name transfer_forall}, [1])(*,
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   536
     (@{const_name implies}, [~1, 1]),
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   537
     (@{const_name All}, [1])*)]
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   538
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   539
(*
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   540
Function bool_insts determines the set of boolean-relation variables
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   541
that can be instantiated to implies, rev_implies, or iff.
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   542
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   543
Invariants: bool_insts p (t, u) requires that
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   544
  u :: _ => _ => ... => bool, and
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   545
  t is a skeleton of u
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   546
*)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   547
fun bool_insts p (t, u) =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   548
  let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   549
    fun strip2 (t1 $ t2, u1 $ u2, tus) =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   550
        strip2 (t1, u1, (t2, u2) :: tus)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   551
      | strip2 x = x
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   552
    fun or3 ((a, b, c), (x, y, z)) = (a orelse x, b orelse y, c orelse z)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   553
    fun go Ts p (Abs (_, T, t), Abs (_, _, u)) tab = go (T :: Ts) p (t, u) tab
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   554
      | go Ts p (t, u) tab =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   555
        let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   556
          val (a, _) = dest_TFree (Term.body_type (Term.fastype_of1 (Ts, t)))
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   557
          val (_, tf, tus) = strip2 (t, u, [])
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   558
          val ps_opt = case tf of Const (c, _) => Symtab.lookup monotab c | _ => NONE
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   559
          val tab1 =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   560
            case ps_opt of
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   561
              SOME ps =>
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   562
              let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   563
                val ps' = map (fn x => p * x) (take (length tus) ps)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   564
              in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   565
                fold I (map2 (go Ts) ps' tus) tab
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   566
              end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   567
            | NONE => tab
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   568
          val tab2 = Symtab.make [(a, (p >= 0, p <= 0, is_none ps_opt))]
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   569
        in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   570
          Symtab.join (K or3) (tab1, tab2)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   571
        end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   572
    val tab = go [] p (t, u) Symtab.empty
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   573
    fun f (a, (true, false, false)) = SOME (a, @{const implies})
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   574
      | f (a, (false, true, false)) = SOME (a, @{const rev_implies})
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   575
      | f (a, (true, true, _))      = SOME (a, HOLogic.eq_const HOLogic.boolT)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   576
      | f _                         = NONE
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   577
  in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   578
    map_filter f (Symtab.dest tab)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   579
  end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   580
53145
2fb458aceb78 delete corresponding compound lhs and rhs when a transfer rule is deleted; tuned
kuncar
parents: 53144
diff changeset
   581
fun retrieve_terms t net = map fst (Item_Net.retrieve net t)
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   582
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   583
fun matches_list ctxt term =
53145
2fb458aceb78 delete corresponding compound lhs and rhs when a transfer rule is deleted; tuned
kuncar
parents: 53144
diff changeset
   584
  is_some o find_first (fn pat => Pattern.matches (Proof_Context.theory_of ctxt) (pat, term))
53131
701360318565 double check that lhs or rhs really matches a subterm in a goal when creating a hole in a skeleton (Net.net does only rough matching)
kuncar
parents: 53042
diff changeset
   585
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   586
fun transfer_rule_of_term ctxt equiv t : thm =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   587
  let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   588
    val compound_rhs = get_compound_rhs ctxt
53145
2fb458aceb78 delete corresponding compound lhs and rhs when a transfer rule is deleted; tuned
kuncar
parents: 53144
diff changeset
   589
    fun is_rhs t = compound_rhs |> retrieve_terms t |> matches_list ctxt t
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   590
    val s = skeleton is_rhs ctxt t
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   591
    val frees = map fst (Term.add_frees s [])
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   592
    val tfrees = map fst (Term.add_tfrees s [])
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   593
    fun prep a = "R" ^ Library.unprefix "'" a
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   594
    val (rnames, ctxt') = Variable.variant_fixes (map prep tfrees) ctxt
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   595
    val tab = tfrees ~~ rnames
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   596
    fun prep a = the (AList.lookup (op =) tab a)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   597
    val thm = transfer_rule_of_terms fst ctxt' tab s t
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   598
    val binsts = bool_insts (if equiv then 0 else 1) (s, t)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   599
    val idx = Thm.maxidx_of thm + 1
60642
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   600
    fun tinst (a, _) = (((a, idx), @{sort type}), @{ctyp bool})
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   601
    fun inst (a, t) =
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   602
      ((Name.clean_index (prep a, idx), @{typ "bool \<Rightarrow> bool \<Rightarrow> bool"}), Thm.cterm_of ctxt' t)
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   603
  in
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   604
    thm
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   605
      |> Thm.generalize (tfrees, rnames @ frees) idx
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   606
      |> Thm.instantiate (map tinst binsts, map inst binsts)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   607
  end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   608
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   609
fun transfer_rule_of_lhs ctxt t : thm =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   610
  let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   611
    val compound_lhs = get_compound_lhs ctxt
53145
2fb458aceb78 delete corresponding compound lhs and rhs when a transfer rule is deleted; tuned
kuncar
parents: 53144
diff changeset
   612
    fun is_lhs t = compound_lhs |> retrieve_terms t |> matches_list ctxt t
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   613
    val s = skeleton is_lhs ctxt t
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   614
    val frees = map fst (Term.add_frees s [])
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   615
    val tfrees = map fst (Term.add_tfrees s [])
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   616
    fun prep a = "R" ^ Library.unprefix "'" a
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   617
    val (rnames, ctxt') = Variable.variant_fixes (map prep tfrees) ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   618
    val tab = tfrees ~~ rnames
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   619
    fun prep a = the (AList.lookup (op =) tab a)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   620
    val thm = transfer_rule_of_terms snd ctxt' tab t s
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   621
    val binsts = bool_insts 1 (s, t)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   622
    val idx = Thm.maxidx_of thm + 1
60642
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   623
    fun tinst (a, _) = (((a, idx), @{sort type}), @{ctyp bool})
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   624
    fun inst (a, t) =
48dd1cefb4ae simplified Thm.instantiate and derivatives: the LHS refers to non-certified variables -- this merely serves as index into already certified structures (or is ignored);
wenzelm
parents: 60367
diff changeset
   625
      ((Name.clean_index (prep a, idx), @{typ "bool \<Rightarrow> bool \<Rightarrow> bool"}), Thm.cterm_of ctxt' t)
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   626
  in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   627
    thm
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   628
      |> Thm.generalize (tfrees, rnames @ frees) idx
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   629
      |> Thm.instantiate (map tinst binsts, map inst binsts)
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   630
  end
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   631
59531
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   632
fun eq_rules_tac ctxt eq_rules =
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   633
  TRY o REPEAT_ALL_NEW (resolve_tac ctxt eq_rules)
60752
b48830b670a1 prefer tactics with explicit context;
wenzelm
parents: 60642
diff changeset
   634
  THEN_ALL_NEW resolve_tac ctxt @{thms is_equality_eq}
55731
66df76dd2640 rewrite composition of quotients to a more readable form in a respectfulness goal that is presented to a user
kuncar
parents: 55563
diff changeset
   635
59531
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   636
fun eq_tac ctxt = eq_rules_tac ctxt (get_relator_eq_raw ctxt)
55731
66df76dd2640 rewrite composition of quotients to a more readable form in a respectfulness goal that is presented to a user
kuncar
parents: 55563
diff changeset
   637
59531
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   638
fun transfer_step_tac ctxt =
61366
3933c0d7edc9 right parenthesization
kuncar
parents: 61075
diff changeset
   639
  REPEAT_ALL_NEW (resolve_tac ctxt (get_transfer_raw ctxt))
3933c0d7edc9 right parenthesization
kuncar
parents: 61075
diff changeset
   640
  THEN_ALL_NEW (DETERM o eq_rules_tac ctxt (get_relator_eq_raw ctxt))
51437
8739f8abbecb fixing transfer tactic - unfold fully identity relation by using relator_eq
kuncar
parents: 51374
diff changeset
   641
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   642
fun transfer_start_tac equiv ctxt i =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   643
    let
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   644
      val pre_simps = @{thms transfer_forall_eq transfer_implies_eq}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   645
      val start_rule =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   646
        if equiv then @{thm transfer_start} else @{thm transfer_start'}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   647
      val err_msg = "Transfer failed to convert goal to an object-logic formula"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   648
      fun main_tac (t, i) =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   649
        resolve_tac ctxt [start_rule] i THEN
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   650
        (resolve_tac ctxt [transfer_rule_of_term ctxt equiv (HOLogic.dest_Trueprop t)]) (i + 1)
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   651
          handle TERM (_, ts) => raise TERM (err_msg, ts)
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   652
    in
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   653
      EVERY
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   654
        [rewrite_goal_tac ctxt pre_simps i THEN
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   655
         SUBGOAL main_tac i]
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   656
    end;
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   657
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   658
fun transfer_prover_start_tac ctxt = SUBGOAL (fn (t, i) =>
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   659
  let
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   660
    val rhs = (snd o Term.dest_comb o HOLogic.dest_Trueprop) t
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   661
    val rule1 = transfer_rule_of_term ctxt false rhs
55945
e96383acecf9 renamed 'fun_rel' to 'rel_fun'
blanchet
parents: 55731
diff changeset
   662
    val expand_eq_in_rel = transfer_rel_conv (top_rewr_conv [@{thm rel_fun_eq[symmetric,THEN eq_reflection]}])
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   663
  in
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   664
    EVERY
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   665
      [CONVERSION prep_conv i,
60752
b48830b670a1 prefer tactics with explicit context;
wenzelm
parents: 60642
diff changeset
   666
       resolve_tac ctxt @{thms transfer_prover_start} i,
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   667
       (resolve_tac ctxt [rule1] ORELSE'
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   668
         (CONVERSION expand_eq_in_rel THEN' resolve_tac ctxt [rule1])) (i + 1)]
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   669
  end);
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   670
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   671
fun transfer_end_tac ctxt i =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   672
  let
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   673
    val post_simps = @{thms transfer_forall_eq [symmetric]
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   674
      transfer_implies_eq [symmetric] transfer_bforall_unfold}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   675
  in
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   676
    EVERY [rewrite_goal_tac ctxt post_simps i,
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   677
           Goal.norm_hhf_tac ctxt i]
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   678
  end;
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   679
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   680
fun transfer_prover_end_tac ctxt i = resolve_tac ctxt @{thms refl} i
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   681
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   682
local 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   683
  infix 1 THEN_ALL_BUT_FIRST_NEW
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   684
  fun (tac1 THEN_ALL_BUT_FIRST_NEW tac2) i st =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   685
    st |> (tac1 i THEN (fn st' =>
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   686
      Seq.INTERVAL tac2 (i + 1) (i + Thm.nprems_of st' - Thm.nprems_of st) st'));
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   687
in
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   688
  fun transfer_tac equiv ctxt i =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   689
    let
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   690
      val rules = get_transfer_raw ctxt
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   691
      val eq_rules = get_relator_eq_raw ctxt
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   692
      (* allow unsolved subgoals only for standard transfer method, not for transfer' *)
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   693
      val end_tac = if equiv then K all_tac else K no_tac
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   694
  
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   695
      fun transfer_search_tac i =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   696
        (SOLVED'
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   697
          (REPEAT_ALL_NEW (resolve_tac ctxt rules) THEN_ALL_NEW
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   698
            (DETERM o eq_rules_tac ctxt eq_rules))
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   699
          ORELSE' end_tac) i
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   700
     in
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   701
       (transfer_start_tac equiv ctxt 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   702
        THEN_ALL_BUT_FIRST_NEW transfer_search_tac
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   703
        THEN' transfer_end_tac ctxt) i
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   704
     end
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   705
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   706
  fun transfer_prover_tac ctxt i = 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   707
    let
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   708
      val rules = get_transfer_raw ctxt
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   709
      val eq_rules = get_relator_eq_raw ctxt
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   710
  
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   711
      fun transfer_prover_search_tac i = 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   712
        (REPEAT_ALL_NEW (resolve_tac ctxt rules) THEN_ALL_NEW
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   713
          (DETERM o eq_rules_tac ctxt eq_rules)) i
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   714
    in
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   715
      (transfer_prover_start_tac ctxt 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   716
       THEN_ALL_BUT_FIRST_NEW transfer_prover_search_tac
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   717
       THEN' transfer_prover_end_tac ctxt) i
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   718
    end
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   719
end;
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   720
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   721
(** Transfer attribute **)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   722
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   723
fun transferred ctxt extra_rules thm =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   724
  let
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   725
    val start_rule = @{thm transfer_start}
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   726
    val start_rule' = @{thm transfer_start'}
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   727
    val rules = extra_rules @ get_transfer_raw ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   728
    val eq_rules = get_relator_eq_raw ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   729
    val err_msg = "Transfer failed to convert goal to an object-logic formula"
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   730
    val pre_simps = @{thms transfer_forall_eq transfer_implies_eq}
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   731
    val thm1 = Drule.forall_intr_vars thm
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   732
    val instT =
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   733
      rev (Term.add_tvars (Thm.full_prop_of thm1) [])
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   734
      |> map (fn v as ((a, _), S) => (v, Thm.ctyp_of ctxt (TFree (a, S))))
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   735
    val thm2 = thm1
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   736
      |> Thm.instantiate (instT, [])
54742
7a86358a3c0b proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
wenzelm
parents: 53649
diff changeset
   737
      |> Raw_Simplifier.rewrite_rule ctxt pre_simps
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   738
    val ctxt' = Variable.declare_names (Thm.full_prop_of thm2) ctxt
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   739
    val t = HOLogic.dest_Trueprop (Thm.concl_of thm2)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   740
    val rule = transfer_rule_of_lhs ctxt' t
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   741
    val tac =
59498
50b60f501b05 proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
wenzelm
parents: 59058
diff changeset
   742
      resolve_tac ctxt' [thm2 RS start_rule', thm2 RS start_rule] 1 THEN
60752
b48830b670a1 prefer tactics with explicit context;
wenzelm
parents: 60642
diff changeset
   743
      (resolve_tac ctxt' [rule]
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   744
        THEN_ALL_NEW
59498
50b60f501b05 proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
wenzelm
parents: 59058
diff changeset
   745
          (SOLVED' (REPEAT_ALL_NEW (resolve_tac ctxt' rules)
59531
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   746
            THEN_ALL_NEW (DETERM o eq_rules_tac ctxt' eq_rules)))) 1
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   747
        handle TERM (_, ts) => raise TERM (err_msg, ts)
61075
f6b0d827240e tuned -- avoid slightly odd @{cpat};
wenzelm
parents: 60805
diff changeset
   748
    val goal = Thm.cterm_of ctxt' (HOLogic.mk_Trueprop (Var (("P", 0), @{typ bool})))
f6b0d827240e tuned -- avoid slightly odd @{cpat};
wenzelm
parents: 60805
diff changeset
   749
    val thm3 = Goal.prove_internal ctxt' [] goal (K tac)
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   750
    val tnames = map (fst o dest_TFree o Thm.typ_of o snd) instT
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   751
  in
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   752
    thm3
54742
7a86358a3c0b proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
wenzelm
parents: 53649
diff changeset
   753
      |> Raw_Simplifier.rewrite_rule ctxt' post_simps
54883
dd04a8b654fc proper context for norm_hhf and derived operations;
wenzelm
parents: 54742
diff changeset
   754
      |> Simplifier.norm_hhf ctxt'
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   755
      |> Drule.generalize (tnames, [])
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   756
      |> Drule.zero_var_indexes
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   757
  end
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   758
(*
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   759
    handle THM _ => thm
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   760
*)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   761
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   762
fun untransferred ctxt extra_rules thm =
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   763
  let
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   764
    val start_rule = @{thm untransfer_start}
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   765
    val rules = extra_rules @ get_transfer_raw ctxt
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   766
    val eq_rules = get_relator_eq_raw ctxt
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   767
    val err_msg = "Transfer failed to convert goal to an object-logic formula"
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   768
    val pre_simps = @{thms transfer_forall_eq transfer_implies_eq}
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   769
    val thm1 = Drule.forall_intr_vars thm
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   770
    val instT =
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   771
      rev (Term.add_tvars (Thm.full_prop_of thm1) [])
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   772
      |> map (fn v as ((a, _), S) => (v, Thm.ctyp_of ctxt (TFree (a, S))))
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   773
    val thm2 = thm1
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   774
      |> Thm.instantiate (instT, [])
54742
7a86358a3c0b proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
wenzelm
parents: 53649
diff changeset
   775
      |> Raw_Simplifier.rewrite_rule ctxt pre_simps
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   776
    val ctxt' = Variable.declare_names (Thm.full_prop_of thm2) ctxt
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   777
    val t = HOLogic.dest_Trueprop (Thm.concl_of thm2)
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   778
    val rule = transfer_rule_of_term ctxt' true t
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   779
    val tac =
60752
b48830b670a1 prefer tactics with explicit context;
wenzelm
parents: 60642
diff changeset
   780
      resolve_tac ctxt' [thm2 RS start_rule] 1 THEN
b48830b670a1 prefer tactics with explicit context;
wenzelm
parents: 60642
diff changeset
   781
      (resolve_tac ctxt' [rule]
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   782
        THEN_ALL_NEW
59498
50b60f501b05 proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
wenzelm
parents: 59058
diff changeset
   783
          (SOLVED' (REPEAT_ALL_NEW (resolve_tac ctxt' rules)
59531
7c433cca8fe0 proper context;
wenzelm
parents: 59498
diff changeset
   784
            THEN_ALL_NEW (DETERM o eq_rules_tac ctxt' eq_rules)))) 1
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   785
        handle TERM (_, ts) => raise TERM (err_msg, ts)
61075
f6b0d827240e tuned -- avoid slightly odd @{cpat};
wenzelm
parents: 60805
diff changeset
   786
    val goal = Thm.cterm_of ctxt' (HOLogic.mk_Trueprop (Var (("P", 0), @{typ bool})))
f6b0d827240e tuned -- avoid slightly odd @{cpat};
wenzelm
parents: 60805
diff changeset
   787
    val thm3 = Goal.prove_internal ctxt' [] goal (K tac)
60805
4cc49ead6e75 tuned signature;
wenzelm
parents: 60801
diff changeset
   788
    val tnames = map (fst o dest_TFree o Thm.typ_of o snd) instT
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   789
  in
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   790
    thm3
54742
7a86358a3c0b proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
wenzelm
parents: 53649
diff changeset
   791
      |> Raw_Simplifier.rewrite_rule ctxt' post_simps
54883
dd04a8b654fc proper context for norm_hhf and derived operations;
wenzelm
parents: 54742
diff changeset
   792
      |> Simplifier.norm_hhf ctxt'
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   793
      |> Drule.generalize (tnames, [])
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   794
      |> Drule.zero_var_indexes
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   795
  end
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   796
47789
71a526ee569a implement transfer tactic with more scalable forward proof methods
huffman
parents: 47658
diff changeset
   797
(** Methods and attributes **)
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   798
47568
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   799
val free = Args.context -- Args.term >> (fn (_, Free v) => v | (ctxt, t) =>
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   800
  error ("Bad free variable: " ^ Syntax.string_of_term ctxt t))
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   801
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   802
val fixing = Scan.optional (Scan.lift (Args.$$$ "fixing" -- Args.colon)
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   803
  |-- Scan.repeat free) []
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   804
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   805
val reverse_prems = fn _ => PRIMITIVE (fn thm => fold_rev (fn i => Thm.permute_prems i 1) 
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   806
    (0 upto Thm.nprems_of thm - 1) thm);
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   807
  
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   808
fun transfer_start_method equiv : (Proof.context -> Proof.method) context_parser =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   809
  fixing >> (fn vs => fn ctxt =>
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   810
    SIMPLE_METHOD' (gen_frees_tac vs ctxt THEN' transfer_start_tac equiv ctxt
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   811
    THEN' reverse_prems));
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   812
53042
aa0322a65bea standardized aliases;
wenzelm
parents: 52884
diff changeset
   813
fun transfer_method equiv : (Proof.context -> Proof.method) context_parser =
47568
98c8b7542b72 add option to transfer method for specifying variables not to generalize over
huffman
parents: 47523
diff changeset
   814
  fixing >> (fn vs => fn ctxt =>
47658
7631f6f7873d enable variant of transfer method that proves an implication instead of an equivalence
huffman
parents: 47635
diff changeset
   815
    SIMPLE_METHOD' (gen_frees_tac vs ctxt THEN' transfer_tac equiv ctxt))
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   816
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   817
val transfer_prover_start_method : (Proof.context -> Proof.method) context_parser =
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   818
  Scan.succeed (fn ctxt => SIMPLE_METHOD' (transfer_prover_start_tac ctxt THEN' reverse_prems))
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   819
53042
aa0322a65bea standardized aliases;
wenzelm
parents: 52884
diff changeset
   820
val transfer_prover_method : (Proof.context -> Proof.method) context_parser =
47635
ebb79474262c rename 'correspondence' method to 'transfer_prover'
huffman
parents: 47618
diff changeset
   821
  Scan.succeed (fn ctxt => SIMPLE_METHOD' (transfer_prover_tac ctxt))
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   822
47635
ebb79474262c rename 'correspondence' method to 'transfer_prover'
huffman
parents: 47618
diff changeset
   823
(* Attribute for transfer rules *)
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   824
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   825
fun prep_rule ctxt =
54742
7a86358a3c0b proper context for basic Simplifier operations: rewrite_rule, rewrite_goals_rule, rewrite_goals_tac etc.;
wenzelm
parents: 53649
diff changeset
   826
  abstract_domains_transfer ctxt o abstract_equalities_transfer ctxt o Conv.fconv_rule prep_conv
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   827
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   828
val transfer_add =
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   829
  Thm.declaration_attribute (fn thm => fn ctxt =>
52884
34c47bc771f2 contract equalities in transfer and transfer domain rules when they are registered
kuncar
parents: 52883
diff changeset
   830
    (add_transfer_thm o prep_rule (Context.proof_of ctxt)) thm ctxt)
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   831
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   832
val transfer_del =
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   833
  Thm.declaration_attribute (fn thm => fn ctxt =>
52884
34c47bc771f2 contract equalities in transfer and transfer domain rules when they are registered
kuncar
parents: 52883
diff changeset
   834
    (del_transfer_thm o prep_rule (Context.proof_of ctxt)) thm ctxt)
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   835
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   836
val transfer_attribute =
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   837
  Attrib.add_del transfer_add transfer_del
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   838
51956
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   839
(* Attributes for transfer domain rules *)
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   840
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   841
val transfer_domain_add = Thm.declaration_attribute add_transfer_domain_thm
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   842
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   843
val transfer_domain_del = Thm.declaration_attribute del_transfer_domain_thm
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   844
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   845
val transfer_domain_attribute =
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   846
  Attrib.add_del transfer_domain_add transfer_domain_del
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   847
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   848
(* Attributes for transferred rules *)
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   849
61853
fb7756087101 rule_attribute and declaration_attribute implicitly support abstract closure, but mixed_attribute implementations need to be aware of Thm.is_free_dummy;
wenzelm
parents: 61367
diff changeset
   850
fun transferred_attribute thms =
fb7756087101 rule_attribute and declaration_attribute implicitly support abstract closure, but mixed_attribute implementations need to be aware of Thm.is_free_dummy;
wenzelm
parents: 61367
diff changeset
   851
  Thm.rule_attribute thms (fn context => transferred (Context.proof_of context) thms)
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   852
61853
fb7756087101 rule_attribute and declaration_attribute implicitly support abstract closure, but mixed_attribute implementations need to be aware of Thm.is_free_dummy;
wenzelm
parents: 61367
diff changeset
   853
fun untransferred_attribute thms =
fb7756087101 rule_attribute and declaration_attribute implicitly support abstract closure, but mixed_attribute implementations need to be aware of Thm.is_free_dummy;
wenzelm
parents: 61367
diff changeset
   854
  Thm.rule_attribute thms (fn context => untransferred (Context.proof_of context) thms)
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   855
52354
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   856
val transferred_attribute_parser =
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   857
  Attrib.thms >> transferred_attribute
acb4f932dd24 implement 'transferred' attribute for transfer package, with support for monotonicity of !!/==>
huffman
parents: 51996
diff changeset
   858
52358
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   859
val untransferred_attribute_parser =
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   860
  Attrib.thms >> untransferred_attribute
f4c4bcb0d564 implement 'untransferred' attribute, which is like 'transferred' but works in the opposite direction
huffman
parents: 52354
diff changeset
   861
60220
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   862
fun morph_pred_data phi = 
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   863
  let
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   864
    val morph_thm = Morphism.thm phi
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   865
  in
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   866
    map_pred_data' morph_thm morph_thm (map morph_thm)
530112e8c6ba tuned; store pred_simps
kuncar
parents: 60216
diff changeset
   867
  end
56524
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   868
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   869
fun lookup_pred_data ctxt type_name = Symtab.lookup (get_pred_data ctxt) type_name
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   870
  |> Option.map (morph_pred_data (Morphism.transfer_morphism (Proof_Context.theory_of ctxt)))
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   871
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   872
fun update_pred_data type_name qinfo ctxt =
56524
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   873
  Data.map (map_pred_data (Symtab.update (type_name, qinfo))) ctxt
f4ba736040fa setup for Transfer and Lifting from BNF; tuned thm names
kuncar
parents: 56520
diff changeset
   874
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   875
(* Theory setup *)
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   876
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   877
val _ =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   878
  Theory.setup
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   879
    let
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   880
      val name = @{binding relator_eq}
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   881
      fun add_thm thm context = context
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   882
        |> Data.map (map_relator_eq (Item_Net.update thm))
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   883
        |> Data.map (map_relator_eq_raw
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   884
            (Item_Net.update (abstract_equalities_relator_eq (Context.proof_of context) thm)))
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   885
      fun del_thm thm context = context
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   886
        |> Data.map (map_relator_eq (Item_Net.remove thm))
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   887
        |> Data.map (map_relator_eq_raw
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   888
            (Item_Net.remove (abstract_equalities_relator_eq (Context.proof_of context) thm)))
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   889
      val add = Thm.declaration_attribute add_thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   890
      val del = Thm.declaration_attribute del_thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   891
      val text = "declaration of relator equality rule (used by transfer method)"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   892
      val content = Item_Net.content o #relator_eq o Data.get
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   893
    in
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   894
      Attrib.setup name (Attrib.add_del add del) text
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   895
      #> Global_Theory.add_thms_dynamic (name, content)
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   896
    end
49975
faf4afed009f transfer package: more flexible handling of equality relations using is_equality predicate
huffman
parents: 49625
diff changeset
   897
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   898
val _ =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   899
  Theory.setup
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   900
    let
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   901
      val name = @{binding relator_domain}
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   902
      fun add_thm thm context =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   903
        let
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   904
          val thm = abstract_domains_relator_domain (Context.proof_of context) thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   905
        in
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   906
          context |> Data.map (map_relator_domain (Item_Net.update thm)) |> add_transfer_domain_thm thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   907
        end
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   908
      fun del_thm thm context =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   909
        let
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   910
          val thm = abstract_domains_relator_domain (Context.proof_of context) thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   911
        in
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   912
          context |> Data.map (map_relator_domain (Item_Net.remove thm)) |> del_transfer_domain_thm thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   913
        end
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   914
      val add = Thm.declaration_attribute add_thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   915
      val del = Thm.declaration_attribute del_thm
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   916
      val text = "declaration of relator domain rule (used by transfer method)"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   917
      val content = Item_Net.content o #relator_domain o Data.get
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   918
    in
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   919
      Attrib.setup name (Attrib.add_del add del) text
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   920
      #> Global_Theory.add_thms_dynamic (name, content)
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   921
    end
51956
a4d81cdebf8b better support for domains in Lifting/Transfer = replace Domainp T by the actual invariant in a transferred goal
kuncar
parents: 51955
diff changeset
   922
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   923
val _ =
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   924
  Theory.setup
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   925
    (Attrib.setup @{binding transfer_rule} transfer_attribute
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   926
       "transfer rule for transfer method"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   927
    #> Global_Theory.add_thms_dynamic
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   928
       (@{binding transfer_raw}, Item_Net.content o #transfer_raw o Data.get)
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   929
    #> Attrib.setup @{binding transfer_domain_rule} transfer_domain_attribute
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   930
       "transfer domain rule for transfer method"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   931
    #> Attrib.setup @{binding transferred} transferred_attribute_parser
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   932
       "raw theorem transferred to abstract theorem using transfer rules"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   933
    #> Attrib.setup @{binding untransferred} untransferred_attribute_parser
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   934
       "abstract theorem transferred to raw theorem using transfer rules"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   935
    #> Global_Theory.add_thms_dynamic
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   936
       (@{binding relator_eq_raw}, Item_Net.content o #relator_eq_raw o Data.get)
61367
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   937
    #> Method.setup @{binding transfer_start} (transfer_start_method true)
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   938
       "firtst step in the transfer algorithm (for debugging transfer)"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   939
    #> Method.setup @{binding transfer_start'} (transfer_start_method false)
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   940
       "firtst step in the transfer algorithm (for debugging transfer)"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   941
    #> Method.setup @{binding transfer_prover_start} transfer_prover_start_method
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   942
       "firtst step in the transfer_prover algorithm (for debugging transfer_prover)"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   943
    #> Method.setup @{binding transfer_step}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   944
       (Scan.succeed (fn ctxt => SIMPLE_METHOD' (transfer_step_tac ctxt)))
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   945
       "step in the search for transfer rules (for debugging transfer and transfer_prover)"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   946
    #> Method.setup @{binding transfer_end}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   947
       (Scan.succeed (fn ctxt => SIMPLE_METHOD' (transfer_end_tac ctxt)))
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   948
       "last step in the transfer algorithm (for debugging transfer)"
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   949
    #> Method.setup @{binding transfer_prover_end}
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   950
       (Scan.succeed (fn ctxt => SIMPLE_METHOD' (transfer_prover_end_tac ctxt)))
46af4f577c7e new methods for debugging transfer and transfer_prover
kuncar
parents: 61366
diff changeset
   951
       "last step in the transfer_prover algorithm (for debugging transfer_prover)"
58821
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   952
    #> Method.setup @{binding transfer} (transfer_method true)
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   953
       "generic theorem transfer method"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   954
    #> Method.setup @{binding transfer'} (transfer_method false)
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   955
       "generic theorem transfer method"
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   956
    #> Method.setup @{binding transfer_prover} transfer_prover_method
11e226e8a095 modernized setup;
wenzelm
parents: 56722
diff changeset
   957
       "for proving transfer rules")
47325
ec6187036495 new transfer proof method
huffman
parents:
diff changeset
   958
end