author | wenzelm |
Mon, 27 Feb 2012 15:48:02 +0100 | |
changeset 46708 | b138dee7bed3 |
parent 45620 | f2a587696afb |
child 47108 | 2a1953f0d20d |
permissions | -rw-r--r-- |
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(* Title: HOL/Tools/arith_data.ML |
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Author: Markus Wenzel, Stefan Berghofer, and Tobias Nipkow |
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Common arithmetic proof auxiliary and legacy. |
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*) |
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signature ARITH_DATA = |
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sig |
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val arith_tac: Proof.context -> int -> tactic |
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val verbose_arith_tac: Proof.context -> int -> tactic |
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val add_tactic: string -> (bool -> Proof.context -> int -> tactic) -> theory -> theory |
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val get_arith_facts: Proof.context -> thm list |
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val mk_number: typ -> int -> term |
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val mk_sum: typ -> term list -> term |
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val long_mk_sum: typ -> term list -> term |
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val dest_sum: term -> term list |
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||
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val prove_conv_nohyps: tactic list -> Proof.context -> term * term -> thm option |
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val prove_conv: tactic list -> Proof.context -> thm list -> term * term -> thm option |
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val prove_conv2: tactic -> (simpset -> tactic) -> simpset -> term * term -> thm |
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val simp_all_tac: thm list -> simpset -> tactic |
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val simplify_meta_eq: thm list -> simpset -> thm -> thm |
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val setup: theory -> theory |
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end; |
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structure Arith_Data: ARITH_DATA = |
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struct |
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(* slots for plugging in arithmetic facts and tactics *) |
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structure Arith_Facts = Named_Thms |
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( |
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val name = @{binding arith} |
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val description = "arith facts -- only ground formulas" |
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); |
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moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
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val get_arith_facts = Arith_Facts.get; |
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structure Arith_Tactics = Theory_Data |
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( |
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type T = (serial * (string * (bool -> Proof.context -> int -> tactic))) list; |
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val empty = []; |
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val extend = I; |
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fun merge data : T = AList.merge (op =) (K true) data; |
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); |
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moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
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moved generic arith_tac (formerly silent_arith_tac), verbose_arith_tac (formerly arith_tac) to Arith_Data; simple_arith-tac now named linear_arith_tac
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fun add_tactic name tac = Arith_Tactics.map (cons (serial (), (name, tac))); |
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fun gen_arith_tac verbose ctxt = |
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let |
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val tactics = Arith_Tactics.get (Proof_Context.theory_of ctxt); |
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fun invoke (_, (name, tac)) k st = tac verbose ctxt k st; |
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in FIRST' (map invoke (rev tactics)) end; |
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val arith_tac = gen_arith_tac false; |
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val verbose_arith_tac = gen_arith_tac true; |
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val setup = |
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Arith_Facts.setup #> |
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Method.setup @{binding arith} |
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(Scan.succeed (fn ctxt => |
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METHOD (fn facts => HEADGOAL (Method.insert_tac (get_arith_facts ctxt @ facts) |
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THEN' verbose_arith_tac ctxt)))) |
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"various arithmetic decision procedures"; |
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(* some specialized syntactic operations *) |
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fun mk_number T n = HOLogic.number_of_const T $ HOLogic.mk_numeral n; |
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val mk_plus = HOLogic.mk_binop @{const_name Groups.plus}; |
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fun mk_minus t = |
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let val T = Term.fastype_of t |
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in Const (@{const_name Groups.uminus}, T --> T) $ t end; |
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(*Thus mk_sum[t] yields t+0; longer sums don't have a trailing zero*) |
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fun mk_sum T [] = mk_number T 0 |
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| mk_sum T [t, u] = mk_plus (t, u) |
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| mk_sum T (t :: ts) = mk_plus (t, mk_sum T ts); |
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(*this version ALWAYS includes a trailing zero*) |
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fun long_mk_sum T [] = mk_number T 0 |
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| long_mk_sum T (t :: ts) = mk_plus (t, mk_sum T ts); |
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(*decompose additions AND subtractions as a sum*) |
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fun dest_summing (pos, Const (@{const_name Groups.plus}, _) $ t $ u, ts) = |
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dest_summing (pos, t, dest_summing (pos, u, ts)) |
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| dest_summing (pos, Const (@{const_name Groups.minus}, _) $ t $ u, ts) = |
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dest_summing (pos, t, dest_summing (not pos, u, ts)) |
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| dest_summing (pos, t, ts) = (if pos then t else mk_minus t) :: ts; |
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fun dest_sum t = dest_summing (true, t, []); |
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(* various auxiliary and legacy *) |
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fun prove_conv_nohyps tacs ctxt (t, u) = |
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if t aconv u then NONE |
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else let val eq = HOLogic.mk_Trueprop (HOLogic.mk_eq (t, u)) |
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in SOME (Goal.prove ctxt [] [] eq (K (EVERY tacs))) end; |
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fun prove_conv tacs ctxt (_: thm list) = prove_conv_nohyps tacs ctxt; |
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fun prove_conv2 expand_tac norm_tac ss tu = (* FIXME avoid Drule.export_without_context *) |
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mk_meta_eq (Drule.export_without_context (Goal.prove (Simplifier.the_context ss) [] [] |
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(HOLogic.mk_Trueprop (HOLogic.mk_eq tu)) |
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(K (EVERY [expand_tac, norm_tac ss])))); |
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fun simp_all_tac rules = |
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let val ss0 = HOL_ss addsimps rules |
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in fn ss => ALLGOALS (simp_tac (Simplifier.inherit_context ss ss0)) end; |
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fun simplify_meta_eq rules = |
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let val ss0 = HOL_basic_ss addsimps rules |> Simplifier.add_eqcong @{thm eq_cong2} |
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in fn ss => simplify (Simplifier.inherit_context ss ss0) o mk_meta_eq end |
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end; |