src/Provers/clasimp.ML
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(*  Title: 	Provers/clasimp.ML
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    ID:         $Id$
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    Author:     David von Oheimb, TU Muenchen
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Combination of classical reasoner and simplifier (depends on
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simplifier.ML, classical.ML, blast.ML).
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*)
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infix 4 addSIs2 addSEs2 addSDs2 addIs2 addEs2 addDs2 addsimps2 delsimps2;
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infix 4 addSss addss;
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signature CLASIMP_DATA =
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sig
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  structure Simplifier: SIMPLIFIER
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  structure Classical: CLASSICAL
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  structure Blast: BLAST
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  sharing type Classical.claset = Blast.claset
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end
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signature CLASIMP =
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sig
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  include CLASIMP_DATA
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  type claset
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  type simpset
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  type clasimpset
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  val addSIs2	: clasimpset * thm list -> clasimpset
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  val addSEs2	: clasimpset * thm list -> clasimpset
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  val addSDs2	: clasimpset * thm list -> clasimpset
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  val addIs2	: clasimpset * thm list -> clasimpset
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  val addEs2	: clasimpset * thm list -> clasimpset
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  val addDs2	: clasimpset * thm list -> clasimpset
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  val addsimps2	: clasimpset * thm list -> clasimpset
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  val delsimps2	: clasimpset * thm list -> clasimpset
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  val addSss	: claset * simpset -> claset
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  val addss	: claset * simpset -> claset
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  val CLASIMPSET  :(clasimpset -> tactic) -> tactic
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  val CLASIMPSET' :(clasimpset -> 'a -> tactic) -> 'a -> tactic
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  val clarsimp_tac: clasimpset -> int -> tactic
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  val Clarsimp_tac:               int -> tactic
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  val mk_auto_tac : clasimpset -> int -> int -> tactic
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  val auto_tac	  : clasimpset -> tactic
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  val Auto_tac	  : tactic
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  val auto	  : unit -> unit
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  val force_tac	  : clasimpset  -> int -> tactic
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  val Force_tac	  : int -> tactic
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  val force	  : int -> unit
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  val setup	  : (theory -> theory) list
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end;
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functor ClasimpFun(Data: CLASIMP_DATA): CLASIMP =
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struct
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open Data;
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type claset = Classical.claset;
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type simpset = Simplifier.simpset;
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type clasimpset = claset * simpset;
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(* clasimpset operations *)
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(*this interface for updating a clasimpset is rudimentary and just for
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  convenience for the most common cases*)
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fun pair_upd1 f ((a,b),x) = (f(a,x), b);
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fun pair_upd2 f ((a,b),x) = (a, f(b,x));
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fun op addSIs2   arg = pair_upd1 Classical.addSIs arg;
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fun op addSEs2   arg = pair_upd1 Classical.addSEs arg;
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fun op addSDs2   arg = pair_upd1 Classical.addSDs arg;
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fun op addIs2    arg = pair_upd1 Classical.addIs arg;
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fun op addEs2    arg = pair_upd1 Classical.addEs arg;
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fun op addDs2    arg = pair_upd1 Classical.addDs arg;
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fun op addsimps2 arg = pair_upd2 Simplifier.addsimps arg;
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fun op delsimps2 arg = pair_upd2 Simplifier.delsimps arg;
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(*Add a simpset to a classical set!*)
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(*Caution: only one simpset added can be added by each of addSss and addss*)
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fun cs addSss ss = Classical.addSaltern (cs, ("safe_asm_full_simp_tac",
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			    CHANGED o Simplifier.safe_asm_full_simp_tac ss));
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fun cs addss  ss = Classical.addbefore  (cs, ("asm_full_simp_tac", 
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			    CHANGED o Simplifier.asm_full_simp_tac ss));
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(* tacticals *)
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fun CLASIMPSET tacf state =
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  Classical.CLASET (fn cs => Simplifier.SIMPSET (fn ss => tacf (cs, ss))) state;
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fun CLASIMPSET' tacf i state =
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  Classical.CLASET (fn cs => Simplifier.SIMPSET (fn ss => tacf (cs, ss) i)) state;
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fun clarsimp_tac (cs, ss) = Simplifier.safe_asm_full_simp_tac ss THEN_ALL_NEW
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			    Classical.clarify_tac (cs addSss ss);
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fun Clarsimp_tac i = clarsimp_tac (Classical.claset(), Simplifier.simpset()) i;
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(* auto_tac *)
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fun blast_depth_tac cs m i thm =
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    Blast.depth_tac cs m i thm 
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      handle Blast.TRANS s => (warning ("Blast_tac: " ^ s); Seq.empty);
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(* a variant of depth_tac that avoids interference of the simplifier 
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   with dup_step_tac when they are combined by auto_tac *)
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local
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fun slow_step_tac' cs = Classical.appWrappers cs 
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	(Classical.instp_step_tac cs APPEND' Classical.haz_step_tac cs);
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in fun nodup_depth_tac cs m i state = SELECT_GOAL 
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   (Classical.safe_steps_tac cs 1 THEN_ELSE 
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	(DEPTH_SOLVE (nodup_depth_tac cs m 1),
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	 Classical.inst0_step_tac cs 1 APPEND COND (K (m=0)) no_tac
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	     (slow_step_tac' cs 1 THEN DEPTH_SOLVE (nodup_depth_tac cs (m-1) 1))
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        )) i state;
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end;
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(*Designed to be idempotent, except if best_tac instantiates variables
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  in some of the subgoals*)
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fun mk_auto_tac (cs, ss) m n =
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    let val cs' = cs addss ss
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        val maintac = 
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          blast_depth_tac cs m		     (* fast but can't use wrappers *)
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          ORELSE'
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          (CHANGED o nodup_depth_tac cs' n); (* slower but more general *)
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    in  EVERY [ALLGOALS (Simplifier.asm_full_simp_tac ss),
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	       TRY (Classical.safe_tac cs),
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	       REPEAT (FIRSTGOAL maintac),
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               TRY (Classical.safe_tac (cs addSss ss)),
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	       prune_params_tac] 
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    end;
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fun auto_tac (cs,ss) = mk_auto_tac (cs,ss) 4 2;
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fun Auto_tac st = auto_tac (Classical.claset(), Simplifier.simpset()) st;
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fun auto () = by Auto_tac;
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(* force_tac *)
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(* aimed to solve the given subgoal totally, using whatever tools possible *)
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fun force_tac (cs,ss) = let val cs' = cs addss ss in SELECT_GOAL (EVERY [
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	Classical.clarify_tac cs' 1,
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	IF_UNSOLVED (Simplifier.asm_full_simp_tac ss 1),
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	ALLGOALS (Classical.best_tac cs')]) end;
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fun Force_tac i = force_tac (Classical.claset(), Simplifier.simpset()) i;
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fun force i = by (Force_tac i);
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(* methods *)
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fun get_local_clasimpset ctxt =
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  (Classical.get_local_claset ctxt, Simplifier.get_local_simpset ctxt);
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val clasimp_modifiers = Classical.cla_modifiers @ Simplifier.simp_modifiers;
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fun clasimp_meth tac prems ctxt = Method.METHOD (fn facts =>
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  ALLGOALS (Method.insert_tac (prems @ facts)) THEN tac (get_local_clasimpset ctxt));
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fun clasimp_meth' tac prems ctxt = Method.METHOD (fn facts =>
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  HEADGOAL (Method.insert_tac (prems @ facts) THEN' tac (get_local_clasimpset ctxt)));
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val clasimp_method = Method.bang_sectioned_args clasimp_modifiers o clasimp_meth;
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val clasimp_method' = Method.bang_sectioned_args clasimp_modifiers o clasimp_meth';
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val setup =
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 [Method.add_methods
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   [("clarsimp_tac", clasimp_method' clarsimp_tac, "clarsimp (improper!)"),
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    ("auto", clasimp_method (CHANGED o auto_tac), "auto"),
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    ("force", clasimp_method' force_tac, "force")]];
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end;