- : unit = () h : heuristic = - : unit = () APPLY CRITERIA (Marked dependency pairs) TRS termination of: [1] active(f(f(X))) -> mark(c(f(g(f(X))))) [2] active(c(X)) -> mark(d(X)) [3] active(h(X)) -> mark(c(d(X))) [4] mark(f(X)) -> active(f(mark(X))) [5] mark(c(X)) -> active(c(X)) [6] mark(g(X)) -> active(g(X)) [7] mark(d(X)) -> active(d(X)) [8] mark(h(X)) -> active(h(mark(X))) [9] f(mark(X)) -> f(X) [10] f(active(X)) -> f(X) [11] c(mark(X)) -> c(X) [12] c(active(X)) -> c(X) [13] g(mark(X)) -> g(X) [14] g(active(X)) -> g(X) [15] d(mark(X)) -> d(X) [16] d(active(X)) -> d(X) [17] h(mark(X)) -> h(X) [18] h(active(X)) -> h(X) Sub problem: guided: DP termination of: END GUIDED APPLY CRITERIA (Graph splitting) Found 6 components: { --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> } { --> --> --> --> } { --> --> --> --> } { --> --> --> --> } { --> --> --> --> } { --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_mark(c(X)) >= Marked_active(c(X)) ; Marked_mark(f(X)) >= Marked_mark(X) ; Marked_mark(f(X)) >= Marked_active(f(mark(X))) ; Marked_mark(g(X)) >= Marked_active(g(X)) ; Marked_mark(d(X)) >= Marked_active(d(X)) ; Marked_mark(h(X)) >= Marked_mark(X) ; Marked_mark(h(X)) >= Marked_active(h(mark(X))) ; Marked_active(c(X)) >= Marked_mark(d(X)) ; Marked_active(f(f(X))) >= Marked_mark(c(f(g(f(X))))) ; Marked_active(h(X)) >= Marked_mark(c(d(X))) ; } + Disjunctions:{ { Marked_mark(c(X)) > Marked_active(c(X)) ; } { Marked_mark(f(X)) > Marked_mark(X) ; } { Marked_mark(f(X)) > Marked_active(f(mark(X))) ; } { Marked_mark(g(X)) > Marked_active(g(X)) ; } { Marked_mark(d(X)) > Marked_active(d(X)) ; } { Marked_mark(h(X)) > Marked_mark(X) ; } { Marked_mark(h(X)) > Marked_active(h(mark(X))) ; } { Marked_active(c(X)) > Marked_mark(d(X)) ; } { Marked_active(f(f(X))) > Marked_mark(c(f(g(f(X))))) ; } { Marked_active(h(X)) > Marked_mark(c(d(X))) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_mark(c(X)) >= Marked_active(c(X)) constraint: Marked_mark(f(X)) >= Marked_mark(X) constraint: Marked_mark(f(X)) >= Marked_active(f(mark(X))) constraint: Marked_mark(g(X)) >= Marked_active(g(X)) constraint: Marked_mark(d(X)) >= Marked_active(d(X)) constraint: Marked_mark(h(X)) >= Marked_mark(X) constraint: Marked_mark(h(X)) >= Marked_active(h(mark(X))) constraint: Marked_active(c(X)) >= Marked_mark(d(X)) constraint: Marked_active(f(f(X))) >= Marked_mark(c(f(g(f(X))))) constraint: Marked_active(h(X)) >= Marked_mark(c(d(X))) APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_f(mark(X)) >= Marked_f(X) ; Marked_f(active(X)) >= Marked_f(X) ; } + Disjunctions:{ { Marked_f(mark(X)) > Marked_f(X) ; } { Marked_f(active(X)) > Marked_f(X) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_f(mark(X)) >= Marked_f(X) constraint: Marked_f(active(X)) >= Marked_f(X) APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_c(mark(X)) >= Marked_c(X) ; Marked_c(active(X)) >= Marked_c(X) ; } + Disjunctions:{ { Marked_c(mark(X)) > Marked_c(X) ; } { Marked_c(active(X)) > Marked_c(X) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_c(mark(X)) >= Marked_c(X) constraint: Marked_c(active(X)) >= Marked_c(X) APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_g(mark(X)) >= Marked_g(X) ; Marked_g(active(X)) >= Marked_g(X) ; } + Disjunctions:{ { Marked_g(mark(X)) > Marked_g(X) ; } { Marked_g(active(X)) > Marked_g(X) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_g(mark(X)) >= Marked_g(X) constraint: Marked_g(active(X)) >= Marked_g(X) APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_d(mark(X)) >= Marked_d(X) ; Marked_d(active(X)) >= Marked_d(X) ; } + Disjunctions:{ { Marked_d(mark(X)) > Marked_d(X) ; } { Marked_d(active(X)) > Marked_d(X) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_d(mark(X)) >= Marked_d(X) constraint: Marked_d(active(X)) >= Marked_d(X) APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_h(mark(X)) >= Marked_h(X) ; Marked_h(active(X)) >= Marked_h(X) ; } + Disjunctions:{ { Marked_h(mark(X)) > Marked_h(X) ; } { Marked_h(active(X)) > Marked_h(X) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_h(mark(X)) >= Marked_h(X) constraint: Marked_h(active(X)) >= Marked_h(X) APPLY CRITERIA (Graph splitting) Found 1 components: { --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_mark(c(X)) >= Marked_active(c(X)) ; Marked_mark(f(X)) >= Marked_active(f(mark(X))) ; Marked_mark(g(X)) >= Marked_active(g(X)) ; Marked_mark(d(X)) >= Marked_active(d(X)) ; Marked_mark(h(X)) >= Marked_active(h(mark(X))) ; Marked_active(f(f(X))) >= Marked_mark(c(f(g(f(X))))) ; Marked_active(h(X)) >= Marked_mark(c(d(X))) ; } + Disjunctions:{ { Marked_mark(c(X)) > Marked_active(c(X)) ; } { Marked_mark(f(X)) > Marked_active(f(mark(X))) ; } { Marked_mark(g(X)) > Marked_active(g(X)) ; } { Marked_mark(d(X)) > Marked_active(d(X)) ; } { Marked_mark(h(X)) > Marked_active(h(mark(X))) ; } { Marked_active(f(f(X))) > Marked_mark(c(f(g(f(X))))) ; } { Marked_active(h(X)) > Marked_mark(c(d(X))) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_mark(c(X)) >= Marked_active(c(X)) constraint: Marked_mark(f(X)) >= Marked_active(f(mark(X))) constraint: Marked_mark(g(X)) >= Marked_active(g(X)) constraint: Marked_mark(d(X)) >= Marked_active(d(X)) constraint: Marked_mark(h(X)) >= Marked_active(h(mark(X))) constraint: Marked_active(f(f(X))) >= Marked_mark(c(f(g(f(X))))) constraint: Marked_active(h(X)) >= Marked_mark(c(d(X))) APPLY CRITERIA (Graph splitting) Found 1 components: { --> --> --> --> --> --> --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_mark(c(X)) >= Marked_active(c(X)) ; Marked_mark(f(X)) >= Marked_active(f(mark(X))) ; Marked_mark(g(X)) >= Marked_active(g(X)) ; Marked_mark(d(X)) >= Marked_active(d(X)) ; Marked_mark(h(X)) >= Marked_active(h(mark(X))) ; Marked_active(h(X)) >= Marked_mark(c(d(X))) ; } + Disjunctions:{ { Marked_mark(c(X)) > Marked_active(c(X)) ; } { Marked_mark(f(X)) > Marked_active(f(mark(X))) ; } { Marked_mark(g(X)) > Marked_active(g(X)) ; } { Marked_mark(d(X)) > Marked_active(d(X)) ; } { Marked_mark(h(X)) > Marked_active(h(mark(X))) ; } { Marked_active(h(X)) > Marked_mark(c(d(X))) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_mark(c(X)) >= Marked_active(c(X)) constraint: Marked_mark(f(X)) >= Marked_active(f(mark(X))) constraint: Marked_mark(g(X)) >= Marked_active(g(X)) constraint: Marked_mark(d(X)) >= Marked_active(d(X)) constraint: Marked_mark(h(X)) >= Marked_active(h(mark(X))) constraint: Marked_active(h(X)) >= Marked_mark(c(d(X))) APPLY CRITERIA (Graph splitting) Found 1 components: { --> --> --> --> --> --> } APPLY CRITERIA (Choosing graph) Trying to solve the following constraints: { mark(c(X)) >= active(c(X)) ; mark(f(X)) >= active(f(mark(X))) ; mark(g(X)) >= active(g(X)) ; mark(d(X)) >= active(d(X)) ; mark(h(X)) >= active(h(mark(X))) ; c(mark(X)) >= c(X) ; c(active(X)) >= c(X) ; f(mark(X)) >= f(X) ; f(active(X)) >= f(X) ; g(mark(X)) >= g(X) ; g(active(X)) >= g(X) ; active(c(X)) >= mark(d(X)) ; active(f(f(X))) >= mark(c(f(g(f(X))))) ; active(h(X)) >= mark(c(d(X))) ; d(mark(X)) >= d(X) ; d(active(X)) >= d(X) ; h(mark(X)) >= h(X) ; h(active(X)) >= h(X) ; Marked_mark(c(X)) >= Marked_active(c(X)) ; Marked_mark(f(X)) >= Marked_active(f(mark(X))) ; Marked_mark(h(X)) >= Marked_active(h(mark(X))) ; Marked_active(h(X)) >= Marked_mark(c(d(X))) ; } + Disjunctions:{ { Marked_mark(c(X)) > Marked_active(c(X)) ; } { Marked_mark(f(X)) > Marked_active(f(mark(X))) ; } { Marked_mark(h(X)) > Marked_active(h(mark(X))) ; } { Marked_active(h(X)) > Marked_mark(c(d(X))) ; } } === 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(c(X)) >= active(c(X)) constraint: mark(f(X)) >= active(f(mark(X))) constraint: mark(g(X)) >= active(g(X)) constraint: mark(d(X)) >= active(d(X)) constraint: mark(h(X)) >= active(h(mark(X))) constraint: c(mark(X)) >= c(X) constraint: c(active(X)) >= c(X) constraint: f(mark(X)) >= f(X) constraint: f(active(X)) >= f(X) constraint: g(mark(X)) >= g(X) constraint: g(active(X)) >= g(X) constraint: active(c(X)) >= mark(d(X)) constraint: active(f(f(X))) >= mark(c(f(g(f(X))))) constraint: active(h(X)) >= mark(c(d(X))) constraint: d(mark(X)) >= d(X) constraint: d(active(X)) >= d(X) constraint: h(mark(X)) >= h(X) constraint: h(active(X)) >= h(X) constraint: Marked_mark(c(X)) >= Marked_active(c(X)) constraint: Marked_mark(f(X)) >= Marked_active(f(mark(X))) constraint: Marked_mark(h(X)) >= Marked_active(h(mark(X))) constraint: Marked_active(h(X)) >= Marked_mark(c(d(X))) APPLY CRITERIA (Graph splitting) Found 0 components: APPLY CRITERIA (Graph splitting) Found 0 components: APPLY CRITERIA (Graph splitting) Found 0 components: APPLY CRITERIA (Graph splitting) Found 0 components: APPLY CRITERIA (Graph splitting) Found 0 components: APPLY CRITERIA (Graph splitting) Found 0 components: SOLVED { TRS termination of: [1] active(f(f(X))) -> mark(c(f(g(f(X))))) [2] active(c(X)) -> mark(d(X)) [3] active(h(X)) -> mark(c(d(X))) [4] mark(f(X)) -> active(f(mark(X))) [5] mark(c(X)) -> active(c(X)) [6] mark(g(X)) -> active(g(X)) [7] mark(d(X)) -> active(d(X)) [8] mark(h(X)) -> active(h(mark(X))) [9] f(mark(X)) -> f(X) [10] f(active(X)) -> f(X) [11] c(mark(X)) -> c(X) [12] c(active(X)) -> c(X) [13] g(mark(X)) -> g(X) [14] g(active(X)) -> g(X) [15] d(mark(X)) -> d(X) [16] d(active(X)) -> d(X) [17] h(mark(X)) -> h(X) [18] h(active(X)) -> h(X) , CRITERION: MDP [ { DP termination of: , CRITERION: SG [ { DP termination of: , CRITERION: CG using polynomial interpretation = [ mark ] (X0) = 1*X0; [ active ] (X0) = 1*X0; [ Marked_mark ] (X0) = 2*X0 + 2; [ f ] (X0) = 1*X0 + 1; [ h ] (X0) = 1*X0 + 1; [ c ] (X0) = 1*X0 + 1; [ d ] (X0) = 1*X0; [ Marked_active ] (X0) = 2*X0 + 2; [ g ] (X0) = 0; removing < Marked_mark(h(X)),Marked_mark(X)> [ { DP termination of: , CRITERION: SG [ { DP termination of: , CRITERION: CG using polynomial interpretation = [ mark ] (X0) = 1*X0; [ active ] (X0) = 1*X0; [ Marked_mark ] (X0) = 2*X0; [ f ] (X0) = 3*X0 + 3; [ h ] (X0) = 2; [ c ] (X0) = 2; [ d ] (X0) = 0; [ Marked_active ] (X0) = 2*X0; [ g ] (X0) = 0; removing [ { DP termination of: , CRITERION: SG [ { DP termination of: , CRITERION: CG using polynomial interpretation = [ mark ] (X0) = 0; [ active ] (X0) = 0; [ Marked_mark ] (X0) = 3*X0 + 2; [ f ] (X0) = 0; [ h ] (X0) = 0; [ c ] (X0) = 0; [ d ] (X0) = 2; [ Marked_active ] (X0) = 2*X0 + 2; [ g ] (X0) = 2; removing [ { DP termination of: , CRITERION: SG [ { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 0; [ active ] (X0) = 0; [ Marked_mark ] (X0) = 1 + 3*X0 + 0; [ f ] (X0) = 0; [ h ] (X0) = 3 + 0; [ c ] (X0) = 0; [ d ] (X0) = 0; [ Marked_active ] (X0) = 3*X0 + 0; [ g ] (X0) = 0; ]} ]} ]} ]} ]} ]} ]} { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 1 + 2*X0 + 0; [ active ] (X0) = 1 + 2*X0 + 0; [ f ] (X0) = 0; [ h ] (X0) = 0; [ c ] (X0) = 0; [ d ] (X0) = 0; [ g ] (X0) = 0; [ Marked_f ] (X0) = 3*X0 + 0; ]} { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 1 + 2*X0 + 0; [ active ] (X0) = 1 + 2*X0 + 0; [ f ] (X0) = 0; [ Marked_c ] (X0) = 3*X0 + 0; [ h ] (X0) = 0; [ c ] (X0) = 0; [ d ] (X0) = 0; [ g ] (X0) = 0; ]} { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 1 + 2*X0 + 0; [ active ] (X0) = 1 + 2*X0 + 0; [ f ] (X0) = 0; [ h ] (X0) = 0; [ c ] (X0) = 0; [ Marked_g ] (X0) = 3*X0 + 0; [ d ] (X0) = 0; [ g ] (X0) = 0; ]} { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 1 + 3*X0 + 0; [ Marked_d ] (X0) = 3*X0 + 0; [ active ] (X0) = 1 + 2*X0 + 0; [ f ] (X0) = 0; [ h ] (X0) = 0; [ c ] (X0) = 2*X0 + 0; [ d ] (X0) = 0; [ g ] (X0) = 0; ]} { DP termination of: , CRITERION: ORD [ Solution found: polynomial interpretation = [ mark ] (X0) = 1 + 2*X0 + 0; [ active ] (X0) = 1 + 2*X0 + 0; [ f ] (X0) = 0; [ h ] (X0) = 3 + 0; [ c ] (X0) = 2*X0 + 0; [ d ] (X0) = 0; [ g ] (X0) = 0; [ Marked_h ] (X0) = 3*X0 + 0; ]} ]} ]} Cime worked for 0.732525 seconds (real time) Cime Exit Status: 0