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remove dead code, some printing info
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6aae70f15a
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3 changed files with 18 additions and 33 deletions
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@ -465,7 +465,8 @@ module type SOLVER_INTERNAL = sig
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Must be complete (i.e. must raise a conflict if the set of literals is
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not satisfiable) and can be expensive. The function
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is given the whole trail. *)
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is given the whole trail.
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*)
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(** {3 Preprocessors}
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These preprocessors turn mixed, raw literals (possibly simplified) into
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@ -702,6 +703,7 @@ module Monoid_of_repr(M : MONOID_ARG) : sig
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val mem : t -> M.SI.CC.N.t -> bool
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val get : t -> M.SI.CC.N.t -> M.t option
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val iter_all : t -> (M.SI.CC.repr * M.t) Iter.t
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val pp : t Fmt.printer
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end = struct
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module SI = M.SI
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module T = SI.T.Term
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@ -799,6 +801,10 @@ end = struct
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| None, None -> ()
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end
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let pp out (self:t) : unit =
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let pp_e out (t,v) = Fmt.fprintf out "(@[%a@ :has %a@])" N.pp t M.pp v in
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Fmt.fprintf out "(@[%a@])" (Fmt.seq pp_e) (iter_all self)
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let create_and_setup ?size (solver:SI.t) : t =
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let field_has_value =
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SI.CC.allocate_bitfield ~descr:("monoid."^M.name^".has-value")
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@ -312,8 +312,10 @@ module Make(A : ARG)
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(* transmit to theories. *)
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CC.check cc acts;
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if final then (
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for _i = 0 to 1 do
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List.iter (fun f -> f self acts lits) self.on_final_check;
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CC.check cc acts;
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done; (* FIXME *)
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(* TODO: theory combination until fixpoint *)
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) else (
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List.iter (fun f -> f self acts lits) self.on_partial_check;
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@ -598,7 +600,7 @@ module Make(A : ARG)
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Stat.incr self.count_solve;
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match r with
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| Sat_solver.Sat st ->
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Log.debugf 1 (fun k->k "SAT");
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Log.debug 1 "sidekick.msat-solver: SAT";
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let _lits f = st.iter_trail f (fun _ -> ()) in
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(* TODO: theory combination *)
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let m = mk_model self _lits in
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@ -274,33 +274,6 @@ module Make(A : ARG) : S with module A = A = struct
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N_tbl.pop_levels self.to_decide n;
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()
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(* TODO: select/is-a *)
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(* TODO: remove
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(* attach data to constructor terms *)
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let on_new_term_look_at_shape self n (t:T.t) =
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match A.view_as_data t with
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| T_cstor (cstor,args) ->
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Log.debugf 20
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(fun k->k "(@[%s.on-new-term@ %a@ :cstor %a@ @[:args@ (@[%a@])@]@]@])"
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name T.pp t A.Cstor.pp cstor (Util.pp_iarray T.pp) args);
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N_tbl.add self.cstors n {n; t; cstor; args};
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| T_select (cstor,i,u) ->
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Log.debugf 20
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(fun k->k "(@[%s.on-new-term.select[%d]@ %a@ :cstor %a@ :in %a@])"
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name i T.pp t A.Cstor.pp cstor T.pp u);
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(* TODO: remember that [u] must be decided *)
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()
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(* N_tbl.add self.cstors n {n; t; cstor; args}; *)
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| T_is_a (cstor,u) ->
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Log.debugf 20
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(fun k->k "(@[%s.on-new-term.is-a@ %a@ :cstor %a@ :in %a@])"
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name T.pp t A.Cstor.pp cstor T.pp u);
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()
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(* N_tbl.add self.cstors n {n; t; cstor; args}; *)
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| T_other _ -> ()
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*)
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(* remember terms of a datatype *)
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let on_new_term_look_at_ty (self:t) n (t:T.t) : unit =
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let ty = T.ty t in
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@ -497,7 +470,11 @@ module Make(A : ARG) : S with module A = A = struct
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|> Iter.to_rev_list
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in
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begin match remaining_to_decide with
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| [] -> ()
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| [] ->
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Log.debugf 10
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(fun k->k "(@[%s.final-check.all-decided@ :cstors %a@ :parents %a@])"
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name ST_cstors.pp self.cstors ST_parents.pp self.parents);
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()
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| l ->
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Log.debugf 10
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(fun k->k "(@[%s.final-check.must-decide@ %a@])" name (Util.pp_list N.pp) l);
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