(declare-sort Loc 0) (declare-const f1_0_main_Load Loc) (declare-const f84_0_main_LE Loc) (declare-const f84_0_main_LE' Loc) (declare-const __init Loc) (assert (distinct f1_0_main_Load f84_0_main_LE f84_0_main_LE' __init )) (define-fun cfg_init ( (pc Loc) (src Loc) (rel Bool) ) Bool (and (= pc src) rel)) (define-fun cfg_trans2 ( (pc Loc) (src Loc) (pc1 Loc) (dst Loc) (rel Bool) ) Bool (and (= pc src) (= pc1 dst) rel)) (define-fun cfg_trans3 ( (pc Loc) (exit Loc) (pc1 Loc) (call Loc) (pc2 Loc) (return Loc) (rel Bool) ) Bool (and (= pc exit) (= pc1 call) (= pc2 return) rel)) (define-fun init_main ( (pc Loc) (arg1 Int) (arg2 Int) ) Bool (cfg_init pc __init true)) (define-fun next_main ( (pc Loc) (arg1 Int) (arg2 Int) (pc1 Loc) (arg1P Int) (arg2P Int) ) Bool (or (cfg_trans2 pc f1_0_main_Load pc1 f84_0_main_LE (and (and (> arg2 (- 1)) (> arg1P (- 1))) (> arg1 0))) (cfg_trans2 pc f84_0_main_LE pc1 f84_0_main_LE' (exists ((x6 Int) (x7 Int)) (and (and (and (= (- arg1 (* 2 x6)) 0) (> arg1 x7)) (> arg1 1)) (= arg1 arg1P)))) (cfg_trans2 pc f84_0_main_LE' pc1 f84_0_main_LE (exists ((x10 Int)) (and (and (and (and (and (and (= (- arg1 (* 2 x10)) 0) (> arg1 1)) (> arg1 arg1P)) (>= (- arg1 (* 2 x10)) 0)) (< (- arg1 (* 2 x10)) 2)) (< (- arg1 (* 2 arg1P)) 2)) (>= (- arg1 (* 2 arg1P)) 0)))) (cfg_trans2 pc f84_0_main_LE pc1 f84_0_main_LE' (exists ((x12 Int)) (and (and (and (= (- arg1 (* 2 x12)) 1) (> (* 3 arg1) 0)) (> arg1 1)) (= arg1 arg1P)))) (cfg_trans2 pc f84_0_main_LE' pc1 f84_0_main_LE (exists ((x14 Int)) (and (and (and (and (and (= (- arg1 (* 2 x14)) 1) (> arg1 1)) (> (* 3 arg1) 0)) (< (- arg1 (* 2 x14)) 2)) (>= (- arg1 (* 2 x14)) 0)) (= (+ (* 3 arg1) 1) arg1P)))) (cfg_trans2 pc __init pc1 f1_0_main_Load true) ) )