** Calling: z3 -nw -in -smt2 [GOOD] ; Automatically generated by SBV. Do not edit. [GOOD] (set-option :print-success true) [GOOD] (set-option :global-declarations true) [GOOD] (set-option :smtlib2_compliant true) [GOOD] (set-option :diagnostic-output-channel "stdout") [GOOD] (set-option :produce-models true) [GOOD] (set-option :pp.max_depth 4294967295) [GOOD] (set-option :pp.min_alias_size 4294967295) [GOOD] (set-option :model.inline_def true ) [GOOD] (set-logic ALL) ; has unbounded values, using catch-all. [GOOD] ; --- uninterpreted sorts --- [GOOD] ; --- tuples --- [GOOD] (declare-datatypes ((SBVTuple2 2)) ((par (T1 T2) ((mkSBVTuple2 (proj_1_SBVTuple2 T1) (proj_2_SBVTuple2 T2)))))) [GOOD] ; --- sums --- [GOOD] ; --- literal constants --- [GOOD] (define-fun s1 () (SBVTuple2 Int Int) (mkSBVTuple2 1 2)) [GOOD] ; --- top level inputs --- [GOOD] (declare-fun s0 () (Array (SBVTuple2 Int Int) (SBVTuple2 Int Int))) [GOOD] ; --- constant tables --- [GOOD] ; --- non-constant tables --- [GOOD] ; --- uninterpreted constants --- [GOOD] ; --- user defined functions --- [GOOD] ; --- assignments --- [GOOD] (define-fun s2 () (SBVTuple2 Int Int) (select s0 s1)) [GOOD] (define-fun s3 () Bool (= s1 s2)) [GOOD] ; --- delayedEqualities --- [GOOD] ; --- formula --- [GOOD] (assert s3) [SEND] (check-sat) [RECV] sat [SEND] (get-value (s0)) [RECV] ((s0 ((as const (Array (SBVTuple2 Int Int) (SBVTuple2 Int Int))) (mkSBVTuple2 1 2)))) *** Solver : Z3 *** Exit code: ExitSuccess FINAL OUTPUT: Satisfiable. Model: s0 = ([], (1,2)) :: Array (Integer, Integer) (Integer, Integer)