- : unit = () h : heuristic = - : unit = () APPLY CRITERIA (Marked dependency pairs) TRS termination of: [1] a__from(X) -> cons(mark(X),from(s(X))) [2] a__sel(0,cons(X,XS)) -> mark(X) [3] a__sel(s(N),cons(X,XS)) -> a__sel(mark(N),mark(XS)) [4] a__minus(X,0) -> 0 [5] a__minus(s(X),s(Y)) -> a__minus(mark(X),mark(Y)) [6] a__quot(0,s(Y)) -> 0 [7] a__quot(s(X),s(Y)) -> s(a__quot(a__minus(mark(X),mark(Y)),s(mark(Y)))) [8] a__zWquot(XS,nil) -> nil [9] a__zWquot(nil,XS) -> nil [10] a__zWquot(cons(X,XS),cons(Y,YS)) -> cons(a__quot(mark(X),mark(Y)),zWquot(XS,YS)) [11] mark(from(X)) -> a__from(mark(X)) [12] mark(sel(X1,X2)) -> a__sel(mark(X1),mark(X2)) [13] mark(minus(X1,X2)) -> a__minus(mark(X1),mark(X2)) [14] mark(quot(X1,X2)) -> a__quot(mark(X1),mark(X2)) [15] mark(zWquot(X1,X2)) -> a__zWquot(mark(X1),mark(X2)) [16] mark(cons(X1,X2)) -> cons(mark(X1),X2) [17] mark(s(X)) -> s(mark(X)) [18] mark(0) -> 0 [19] mark(nil) -> nil [20] a__from(X) -> from(X) [21] a__sel(X1,X2) -> sel(X1,X2) [22] a__minus(X1,X2) -> minus(X1,X2) [23] a__quot(X1,X2) -> quot(X1,X2) [24] a__zWquot(X1,X2) -> zWquot(X1,X2) Sub problem: guided: DP termination of: END GUIDED APPLY CRITERIA (Graph splitting) Found 1 components: { --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(cons(X1,X2)) >= cons(mark(X1),X2) ; mark(from(X)) >= a__from(mark(X)) ; mark(s(X)) >= s(mark(X)) ; mark(0) >= 0 ; mark(nil) >= nil ; mark(zWquot(X1,X2)) >= a__zWquot(mark(X1),mark(X2)) ; mark(sel(X1,X2)) >= a__sel(mark(X1),mark(X2)) ; mark(minus(X1,X2)) >= a__minus(mark(X1),mark(X2)) ; mark(quot(X1,X2)) >= a__quot(mark(X1),mark(X2)) ; a__from(X) >= cons(mark(X),from(s(X))) ; a__from(X) >= from(X) ; a__sel(s(N),cons(X,XS)) >= a__sel(mark(N),mark(XS)) ; a__sel(0,cons(X,XS)) >= mark(X) ; a__sel(X1,X2) >= sel(X1,X2) ; a__minus(s(X),s(Y)) >= a__minus(mark(X),mark(Y)) ; a__minus(X,0) >= 0 ; a__minus(X1,X2) >= minus(X1,X2) ; a__quot(s(X),s(Y)) >= s(a__quot(a__minus(mark(X),mark(Y)),s(mark(Y)))) ; a__quot(0,s(Y)) >= 0 ; a__quot(X1,X2) >= quot(X1,X2) ; a__zWquot(cons(X,XS),cons(Y,YS)) >= cons(a__quot(mark(X),mark(Y)), zWquot(XS,YS)) ; a__zWquot(nil,XS) >= nil ; a__zWquot(XS,nil) >= nil ; a__zWquot(X1,X2) >= zWquot(X1,X2) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_a__quot(mark(X),mark(Y)) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(X) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(Y) ; Marked_a__quot(s(X),s(Y)) >= Marked_a__quot(a__minus(mark(X),mark(Y)), s(mark(Y))) ; Marked_a__quot(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) ; Marked_a__quot(s(X),s(Y)) >= Marked_mark(X) ; Marked_a__quot(s(X),s(Y)) >= Marked_mark(Y) ; Marked_a__minus(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) ; Marked_a__minus(s(X),s(Y)) >= Marked_mark(X) ; Marked_a__minus(s(X),s(Y)) >= Marked_mark(Y) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_a__sel(mark(N),mark(XS)) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(XS) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(N) ; Marked_a__sel(0,cons(X,XS)) >= Marked_mark(X) ; Marked_a__from(X) >= Marked_mark(X) ; Marked_mark(cons(X1,X2)) >= Marked_mark(X1) ; Marked_mark(from(X)) >= Marked_a__from(mark(X)) ; Marked_mark(from(X)) >= Marked_mark(X) ; Marked_mark(s(X)) >= Marked_mark(X) ; Marked_mark(zWquot(X1,X2)) >= Marked_a__zWquot(mark(X1),mark(X2)) ; Marked_mark(zWquot(X1,X2)) >= Marked_mark(X1) ; Marked_mark(zWquot(X1,X2)) >= Marked_mark(X2) ; Marked_mark(sel(X1,X2)) >= Marked_a__sel(mark(X1),mark(X2)) ; Marked_mark(sel(X1,X2)) >= Marked_mark(X1) ; Marked_mark(sel(X1,X2)) >= Marked_mark(X2) ; Marked_mark(minus(X1,X2)) >= Marked_a__minus(mark(X1),mark(X2)) ; Marked_mark(minus(X1,X2)) >= Marked_mark(X1) ; Marked_mark(minus(X1,X2)) >= Marked_mark(X2) ; Marked_mark(quot(X1,X2)) >= Marked_a__quot(mark(X1),mark(X2)) ; Marked_mark(quot(X1,X2)) >= Marked_mark(X1) ; Marked_mark(quot(X1,X2)) >= Marked_mark(X2) ; } + Disjunctions:{ { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_a__quot(mark(X),mark(Y)) ; } { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_mark(X) ; } { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_mark(Y) ; } { Marked_a__quot(s(X),s(Y)) > Marked_a__quot(a__minus(mark(X),mark(Y)), s(mark(Y))) ; } { Marked_a__quot(s(X),s(Y)) > Marked_a__minus(mark(X),mark(Y)) ; } { Marked_a__quot(s(X),s(Y)) > Marked_mark(X) ; } { Marked_a__quot(s(X),s(Y)) > Marked_mark(Y) ; } { Marked_a__minus(s(X),s(Y)) > Marked_a__minus(mark(X),mark(Y)) ; } { Marked_a__minus(s(X),s(Y)) > Marked_mark(X) ; } { Marked_a__minus(s(X),s(Y)) > Marked_mark(Y) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_a__sel(mark(N),mark(XS)) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_mark(XS) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_mark(N) ; } { Marked_a__sel(0,cons(X,XS)) > Marked_mark(X) ; } { Marked_a__from(X) > Marked_mark(X) ; } { Marked_mark(cons(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(from(X)) > Marked_a__from(mark(X)) ; } { Marked_mark(from(X)) > Marked_mark(X) ; } { Marked_mark(s(X)) > Marked_mark(X) ; } { Marked_mark(zWquot(X1,X2)) > Marked_a__zWquot(mark(X1),mark(X2)) ; } { Marked_mark(zWquot(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(zWquot(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(sel(X1,X2)) > Marked_a__sel(mark(X1),mark(X2)) ; } { Marked_mark(sel(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(sel(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(minus(X1,X2)) > Marked_a__minus(mark(X1),mark(X2)) ; } { Marked_mark(minus(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(minus(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(quot(X1,X2)) > Marked_a__quot(mark(X1),mark(X2)) ; } { Marked_mark(quot(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(quot(X1,X2)) > Marked_mark(X2) ; } } === TIMER virtual : 10.000000 === Entering poly_solver Starting Sat solver initialization Calling Sat solver... === STOPING TIMER virtual === === TIMER real : 10.000000 === === STOPING TIMER real === Sat solver returned Sat solver result read === STOPING TIMER real === === STOPING TIMER virtual === constraint: mark(cons(X1,X2)) >= cons(mark(X1),X2) constraint: mark(from(X)) >= a__from(mark(X)) constraint: mark(s(X)) >= s(mark(X)) constraint: mark(0) >= 0 constraint: mark(nil) >= nil constraint: mark(zWquot(X1,X2)) >= a__zWquot(mark(X1),mark(X2)) constraint: mark(sel(X1,X2)) >= a__sel(mark(X1),mark(X2)) constraint: mark(minus(X1,X2)) >= a__minus(mark(X1),mark(X2)) constraint: mark(quot(X1,X2)) >= a__quot(mark(X1),mark(X2)) constraint: a__from(X) >= cons(mark(X),from(s(X))) constraint: a__from(X) >= from(X) constraint: a__sel(s(N),cons(X,XS)) >= a__sel(mark(N),mark(XS)) constraint: a__sel(0,cons(X,XS)) >= mark(X) constraint: a__sel(X1,X2) >= sel(X1,X2) constraint: a__minus(s(X),s(Y)) >= a__minus(mark(X),mark(Y)) constraint: a__minus(X,0) >= 0 constraint: a__minus(X1,X2) >= minus(X1,X2) constraint: a__quot(s(X),s(Y)) >= s(a__quot(a__minus(mark(X),mark(Y)), s(mark(Y)))) constraint: a__quot(0,s(Y)) >= 0 constraint: a__quot(X1,X2) >= quot(X1,X2) constraint: a__zWquot(cons(X,XS),cons(Y,YS)) >= cons(a__quot(mark(X),mark(Y)), zWquot(XS,YS)) constraint: a__zWquot(nil,XS) >= nil constraint: a__zWquot(XS,nil) >= nil constraint: a__zWquot(X1,X2) >= zWquot(X1,X2) constraint: Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_a__quot( mark(X),mark(Y)) constraint: Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(X) constraint: Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(Y) constraint: Marked_a__quot(s(X),s(Y)) >= Marked_a__quot(a__minus(mark(X), mark(Y)),s(mark(Y))) constraint: Marked_a__quot(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) constraint: Marked_a__quot(s(X),s(Y)) >= Marked_mark(X) constraint: Marked_a__quot(s(X),s(Y)) >= Marked_mark(Y) constraint: Marked_a__minus(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) constraint: Marked_a__minus(s(X),s(Y)) >= Marked_mark(X) constraint: Marked_a__minus(s(X),s(Y)) >= Marked_mark(Y) constraint: Marked_a__sel(s(N),cons(X,XS)) >= Marked_a__sel(mark(N),mark(XS)) constraint: Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(XS) constraint: Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(N) constraint: Marked_a__sel(0,cons(X,XS)) >= Marked_mark(X) constraint: Marked_a__from(X) >= Marked_mark(X) constraint: Marked_mark(cons(X1,X2)) >= Marked_mark(X1) constraint: Marked_mark(from(X)) >= Marked_a__from(mark(X)) constraint: Marked_mark(from(X)) >= Marked_mark(X) constraint: Marked_mark(s(X)) >= Marked_mark(X) constraint: Marked_mark(zWquot(X1,X2)) >= Marked_a__zWquot(mark(X1),mark(X2)) constraint: Marked_mark(zWquot(X1,X2)) >= Marked_mark(X1) constraint: Marked_mark(zWquot(X1,X2)) >= Marked_mark(X2) constraint: Marked_mark(sel(X1,X2)) >= Marked_a__sel(mark(X1),mark(X2)) constraint: Marked_mark(sel(X1,X2)) >= Marked_mark(X1) constraint: Marked_mark(sel(X1,X2)) >= Marked_mark(X2) constraint: Marked_mark(minus(X1,X2)) >= Marked_a__minus(mark(X1),mark(X2)) constraint: Marked_mark(minus(X1,X2)) >= Marked_mark(X1) constraint: Marked_mark(minus(X1,X2)) >= Marked_mark(X2) constraint: Marked_mark(quot(X1,X2)) >= Marked_a__quot(mark(X1),mark(X2)) constraint: Marked_mark(quot(X1,X2)) >= Marked_mark(X1) constraint: Marked_mark(quot(X1,X2)) >= Marked_mark(X2) APPLY CRITERIA (Graph splitting) Found 1 components: { --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(cons(X1,X2)) >= cons(mark(X1),X2) ; mark(from(X)) >= a__from(mark(X)) ; mark(s(X)) >= s(mark(X)) ; mark(0) >= 0 ; mark(nil) >= nil ; mark(zWquot(X1,X2)) >= a__zWquot(mark(X1),mark(X2)) ; mark(sel(X1,X2)) >= a__sel(mark(X1),mark(X2)) ; mark(minus(X1,X2)) >= a__minus(mark(X1),mark(X2)) ; mark(quot(X1,X2)) >= a__quot(mark(X1),mark(X2)) ; a__from(X) >= cons(mark(X),from(s(X))) ; a__from(X) >= from(X) ; a__sel(s(N),cons(X,XS)) >= a__sel(mark(N),mark(XS)) ; a__sel(0,cons(X,XS)) >= mark(X) ; a__sel(X1,X2) >= sel(X1,X2) ; a__minus(s(X),s(Y)) >= a__minus(mark(X),mark(Y)) ; a__minus(X,0) >= 0 ; a__minus(X1,X2) >= minus(X1,X2) ; a__quot(s(X),s(Y)) >= s(a__quot(a__minus(mark(X),mark(Y)),s(mark(Y)))) ; a__quot(0,s(Y)) >= 0 ; a__quot(X1,X2) >= quot(X1,X2) ; a__zWquot(cons(X,XS),cons(Y,YS)) >= cons(a__quot(mark(X),mark(Y)), zWquot(XS,YS)) ; a__zWquot(nil,XS) >= nil ; a__zWquot(XS,nil) >= nil ; a__zWquot(X1,X2) >= zWquot(X1,X2) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_a__quot(mark(X),mark(Y)) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(X) ; Marked_a__zWquot(cons(X,XS),cons(Y,YS)) >= Marked_mark(Y) ; Marked_a__quot(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) ; Marked_a__quot(s(X),s(Y)) >= Marked_mark(X) ; Marked_a__quot(s(X),s(Y)) >= Marked_mark(Y) ; Marked_a__minus(s(X),s(Y)) >= Marked_a__minus(mark(X),mark(Y)) ; Marked_a__minus(s(X),s(Y)) >= Marked_mark(X) ; Marked_a__minus(s(X),s(Y)) >= Marked_mark(Y) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_a__sel(mark(N),mark(XS)) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(XS) ; Marked_a__sel(s(N),cons(X,XS)) >= Marked_mark(N) ; Marked_a__sel(0,cons(X,XS)) >= Marked_mark(X) ; Marked_a__from(X) >= Marked_mark(X) ; Marked_mark(cons(X1,X2)) >= Marked_mark(X1) ; Marked_mark(from(X)) >= Marked_a__from(mark(X)) ; Marked_mark(from(X)) >= Marked_mark(X) ; Marked_mark(s(X)) >= Marked_mark(X) ; Marked_mark(zWquot(X1,X2)) >= Marked_a__zWquot(mark(X1),mark(X2)) ; Marked_mark(zWquot(X1,X2)) >= Marked_mark(X1) ; Marked_mark(zWquot(X1,X2)) >= Marked_mark(X2) ; Marked_mark(sel(X1,X2)) >= Marked_a__sel(mark(X1),mark(X2)) ; Marked_mark(sel(X1,X2)) >= Marked_mark(X1) ; Marked_mark(sel(X1,X2)) >= Marked_mark(X2) ; Marked_mark(minus(X1,X2)) >= Marked_a__minus(mark(X1),mark(X2)) ; Marked_mark(minus(X1,X2)) >= Marked_mark(X1) ; Marked_mark(minus(X1,X2)) >= Marked_mark(X2) ; Marked_mark(quot(X1,X2)) >= Marked_a__quot(mark(X1),mark(X2)) ; Marked_mark(quot(X1,X2)) >= Marked_mark(X1) ; Marked_mark(quot(X1,X2)) >= Marked_mark(X2) ; } + Disjunctions:{ { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_a__quot(mark(X),mark(Y)) ; } { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_mark(X) ; } { Marked_a__zWquot(cons(X,XS),cons(Y,YS)) > Marked_mark(Y) ; } { Marked_a__quot(s(X),s(Y)) > Marked_a__minus(mark(X),mark(Y)) ; } { Marked_a__quot(s(X),s(Y)) > Marked_mark(X) ; } { Marked_a__quot(s(X),s(Y)) > Marked_mark(Y) ; } { Marked_a__minus(s(X),s(Y)) > Marked_a__minus(mark(X),mark(Y)) ; } { Marked_a__minus(s(X),s(Y)) > Marked_mark(X) ; } { Marked_a__minus(s(X),s(Y)) > Marked_mark(Y) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_a__sel(mark(N),mark(XS)) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_mark(XS) ; } { Marked_a__sel(s(N),cons(X,XS)) > Marked_mark(N) ; } { Marked_a__sel(0,cons(X,XS)) > Marked_mark(X) ; } { Marked_a__from(X) > Marked_mark(X) ; } { Marked_mark(cons(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(from(X)) > Marked_a__from(mark(X)) ; } { Marked_mark(from(X)) > Marked_mark(X) ; } { Marked_mark(s(X)) > Marked_mark(X) ; } { Marked_mark(zWquot(X1,X2)) > Marked_a__zWquot(mark(X1),mark(X2)) ; } { Marked_mark(zWquot(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(zWquot(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(sel(X1,X2)) > Marked_a__sel(mark(X1),mark(X2)) ; } { Marked_mark(sel(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(sel(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(minus(X1,X2)) > Marked_a__minus(mark(X1),mark(X2)) ; } { Marked_mark(minus(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(minus(X1,X2)) > Marked_mark(X2) ; } { Marked_mark(quot(X1,X2)) > Marked_a__quot(mark(X1),mark(X2)) ; } { Marked_mark(quot(X1,X2)) > Marked_mark(X1) ; } { Marked_mark(quot(X1,X2)) > Marked_mark(X2) ; } } === TIMER virtual : 10.000000 === Entering poly_solver Starting Sat solver initialization Calling Sat solver... === STOPING TIMER virtual === === TIMER real : 10.000000 === === STOPING TIMER real === Sat solver returned === STOPING TIMER real === === STOPING TIMER virtual === No solution found for these parameters. Entering rpo_solver === TIMER virtual : 25.000000 === Search parameters: AFS type: 2 ; time limit: 25.. === STOPING TIMER virtual === Time out for these parameters. === TIMER virtual : 15.000000 === Entering poly_solver Starting Sat solver initialization Calling Sat solver... === STOPING TIMER virtual === === TIMER real : 15.000000 === === STOPING TIMER real === Sat solver returned === STOPING TIMER real === === STOPING TIMER virtual === No solution found for these parameters. === TIMER virtual : 50.000000 === trying sub matrices of size: 1 Matrix interpretation constraints generated. Search parameters: LINEAR MATRIX 3x3 (strict=1x1) ; time limit: 50.. Termination constraints generated. Starting Sat solver initialization Calling Sat solver... === STOPING TIMER virtual === === TIMER real : 50.000000 === === STOPING TIMER real === Sat solver returned === STOPING TIMER real === === STOPING TIMER virtual === No solution found for these parameters. No solution found for these constraints. APPLY CRITERIA (ID_CRIT) NOT SOLVED No proof found Cime worked for 36.689378 seconds (real time) Cime Exit Status: 0