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fix(lra): fixed case splitting on a != b
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37089adb17
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1 changed files with 34 additions and 15 deletions
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@ -82,7 +82,7 @@ module Make(A : ARG) : S with module A = A = struct
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neq_encoded: unit T.Tbl.t;
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(* if [a != b] asserted and not in this table, add clause [a = b \/ a<b \/ a>b] *)
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mutable t_defs: (T.t * LE.t) list; (* term definitions *)
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pred_defs: (pred * LE.t * LE.t) T.Tbl.t; (* predicate definitions *)
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pred_defs: (pred * LE.t * LE.t * T.t * T.t) T.Tbl.t; (* predicate definitions *)
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}
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let create tst : state =
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@ -178,7 +178,7 @@ module Make(A : ARG) : S with module A = A = struct
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let l1 = as_linexp ~f:recurse t1 in
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let l2 = as_linexp ~f:recurse t2 in
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let proxy = fresh_term self ~pre:"_pred_lra_" Ty.bool in
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T.Tbl.add self.pred_defs proxy (pred, l1, l2);
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T.Tbl.add self.pred_defs proxy (pred, l1, l2, t1, t2);
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Log.debugf 5 (fun k->k"@[<hv2>lra.preprocess.step %a@ :into %a@ :def %a@]"
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T.pp t T.pp proxy pp_pred_def (pred,l1,l2));
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Some proxy
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@ -191,41 +191,59 @@ module Make(A : ARG) : S with module A = A = struct
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Some proxy
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| LRA_const _ | LRA_other _ -> None
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(* partial check: just ensure [a != b] triggers the clause
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(* ensure that [a != b] triggers the clause
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[a=b \/ a<b \/ a>b] *)
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let partial_check_ (self:state) si (acts:SI.actions) (trail:_ Iter.t) : unit =
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let encode_neq self si acts trail : unit =
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let tst = self.tst in
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begin
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trail
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|> Iter.filter (fun lit -> not (Lit.sign lit))
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|> Iter.filter_map
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(fun lit ->
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let t = Lit.term lit in
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match A.view_as_lra t with
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| LRA_pred (Eq, a, b) when not (T.Tbl.mem self.neq_encoded t) ->
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Some (lit, a,b)
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| _ -> None)
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Log.debugf 50 (fun k->k "@[lra: check lit %a@ :t %a@ :sign %B@]"
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Lit.pp lit T.pp t (Lit.sign lit));
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begin match T.Tbl.find self.pred_defs t with
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| (pred, _, _, ta, tb) ->
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let pred = if Lit.sign lit then pred else FM.Pred.neg pred in
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Log.debugf 50 (fun k->k "pred = `%s`" (FM.Pred.to_string pred));
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if pred = Neq && not (T.Tbl.mem self.neq_encoded t) then (
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Some (lit, ta, tb)
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) else None
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| exception Not_found ->
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begin match A.view_as_lra t with
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| LRA_pred (Neq, a, b) when not (T.Tbl.mem self.neq_encoded t) ->
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Some (lit, a, b)
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| _ -> None
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end
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end)
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|> Iter.iter
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(fun (lit,a,b) ->
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Log.debugf 50 (fun k->k "encode neq in %a" Lit.pp lit);
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let c = [
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Lit.abs lit;
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Lit.neg lit;
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SI.mk_lit si acts (A.mk_lra tst (LRA_pred (Lt, a, b)));
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SI.mk_lit si acts (A.mk_lra tst (LRA_pred (Lt, b, a)));
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] in
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SI.add_clause_permanent si acts c;
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T.Tbl.add self.neq_encoded (Lit.term lit) ();
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T.Tbl.add self.neq_encoded (Lit.term (Lit.abs lit)) ();
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)
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end
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let dedup_lits lits : _ list =
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let module LTbl = CCHashtbl.Make(Lit) in
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let tbl = LTbl.create 16 in
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List.iter (fun l -> LTbl.replace tbl l ()) lits;
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LTbl.keys_list tbl
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let final_check_ (self:state) si (acts:SI.actions) (trail:_ Iter.t) : unit =
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Log.debug 5 "(th-lra.final-check)";
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encode_neq self si acts trail;
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let fm = FM_A.create() in
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(* first, add definitions *)
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begin
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List.iter
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(fun (t,le) ->
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let open LE.Infix in
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let le = le - LE.var t in
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let c = FM_A.Constr.mk ?tag:None Eq (LE.var t) le in
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FM_A.assert_c fm c)
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self.t_defs
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@ -239,7 +257,7 @@ module Make(A : ARG) : S with module A = A = struct
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let t = Lit.term lit in
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begin match T.Tbl.find self.pred_defs t with
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| exception Not_found -> ()
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| (pred, a, b) ->
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| (pred, a, b, _, _) ->
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let pred = if sign then pred else FM.Pred.neg pred in
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if pred = Neq then (
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Log.debugf 50 (fun k->k "skip neq in %a" T.pp t);
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@ -259,7 +277,9 @@ module Make(A : ARG) : S with module A = A = struct
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unsat core translates directly into a conflict clause *)
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Log.debugf 5 (fun k->k"lra: solver returns UNSAT@ with cert %a"
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(Fmt.Dump.list Lit.pp) lits);
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let confl = List.rev_map Lit.neg lits in
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let confl =
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List.rev_map Lit.neg lits |> dedup_lits
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in
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(* TODO: produce and store a proper LRA resolution proof *)
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SI.raise_conflict si acts confl SI.P.default
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end;
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@ -270,7 +290,6 @@ module Make(A : ARG) : S with module A = A = struct
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let st = create (SI.tst si) in
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(* TODO SI.add_simplifier si (simplify st); *)
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SI.add_preprocess si (preproc_lra st);
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SI.on_partial_check si (partial_check_ st);
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SI.on_final_check si (final_check_ st);
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(* SI.add_preprocess si (cnf st); *)
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(* TODO: theory combination *)
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