2.08/1.59 WORST_CASE(?, O(n^1)) 2.08/1.60 proof of /export/starexec/sandbox/output/output_files/bench.koat 2.08/1.60 # AProVE Commit ID: 48fb2092695e11cc9f56e44b17a92a5f88ffb256 marcel 20180622 unpublished dirty 2.08/1.60 2.08/1.60 2.08/1.60 The runtime complexity of the given CpxIntTrs could be proven to be BOUNDS(1, n^1). 2.08/1.60 2.08/1.60 (0) CpxIntTrs 2.08/1.60 (1) Koat Proof [FINISHED, 132 ms] 2.08/1.60 (2) BOUNDS(1, n^1) 2.08/1.60 2.08/1.60 2.08/1.60 ---------------------------------------- 2.08/1.60 2.08/1.60 (0) 2.08/1.60 Obligation: 2.08/1.60 Complexity Int TRS consisting of the following rules: 2.08/1.60 eval_wise_start(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb0_in(v_.0, v_.01, v_x, v_y)) :|: TRUE 2.08/1.60 eval_wise_bb0_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb2_in(v_.0, v_.01, v_x, v_y)) :|: v_x < 0 2.08/1.60 eval_wise_bb0_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb2_in(v_.0, v_.01, v_x, v_y)) :|: v_y < 0 2.08/1.60 eval_wise_bb0_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb1_in(v_x, v_y, v_x, v_y)) :|: v_x >= 0 && v_y >= 0 2.08/1.60 eval_wise_bb1_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y)) :|: v_.0 - v_.01 > 2 2.08/1.60 eval_wise_bb1_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y)) :|: v_.01 - v_.0 > 2 2.08/1.60 eval_wise_bb1_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb2_in(v_.0, v_.01, v_x, v_y)) :|: v_.0 - v_.01 <= 2 && v_.01 - v_.0 <= 2 2.08/1.60 eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb1_in(v_.0 + 1, v_.01, v_x, v_y)) :|: v_.0 < v_.01 2.08/1.60 eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb1_in(v_.0, v_.01, v_x, v_y)) :|: v_.0 < v_.01 && v_.0 >= v_.01 2.08/1.60 eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb1_in(v_.0 + 1, v_.01 + 1, v_x, v_y)) :|: v_.0 >= v_.01 && v_.0 < v_.01 2.08/1.60 eval_wise_.critedge_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_bb1_in(v_.0, v_.01 + 1, v_x, v_y)) :|: v_.0 >= v_.01 2.08/1.60 eval_wise_bb2_in(v_.0, v_.01, v_x, v_y) -> Com_1(eval_wise_stop(v_.0, v_.01, v_x, v_y)) :|: TRUE 2.08/1.60 2.08/1.60 The start-symbols are:[eval_wise_start_4] 2.08/1.60 2.08/1.60 2.08/1.60 ---------------------------------------- 2.08/1.60 2.08/1.60 (1) Koat Proof (FINISHED) 2.08/1.60 YES(?, 8*ar_0 + 8*ar_1 + 14) 2.08/1.60 2.08/1.60 2.08/1.60 2.08/1.60 Initial complexity problem: 2.08/1.60 2.08/1.60 1: T: 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 1 /\ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3 + 1)) [ ar_2 >= ar_3 /\ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.60 2.08/1.60 start location: koat_start 2.08/1.60 2.08/1.60 leaf cost: 0 2.08/1.60 2.08/1.60 2.08/1.60 2.08/1.60 Testing for reachability in the complexity graph removes the following transitions from problem 1: 2.08/1.60 2.08/1.60 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 1 /\ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3 + 1)) [ ar_2 >= ar_3 /\ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 We thus obtain the following problem: 2.08/1.60 2.08/1.60 2: T: 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.60 2.08/1.60 start location: koat_start 2.08/1.60 2.08/1.60 leaf cost: 0 2.08/1.60 2.08/1.60 2.08/1.60 2.08/1.60 Repeatedly propagating knowledge in problem 2 produces the following problem: 2.08/1.60 2.08/1.60 3: T: 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.60 2.08/1.60 start location: koat_start 2.08/1.60 2.08/1.60 leaf cost: 0 2.08/1.60 2.08/1.60 2.08/1.60 2.08/1.60 A polynomial rank function with 2.08/1.60 2.08/1.60 Pol(evalwisecritedgein) = 2 2.08/1.60 2.08/1.60 Pol(evalwisebb1in) = 2 2.08/1.60 2.08/1.60 Pol(evalwisebb2in) = 1 2.08/1.60 2.08/1.60 Pol(evalwisestop) = 0 2.08/1.60 2.08/1.60 Pol(evalwisebb0in) = 2 2.08/1.60 2.08/1.60 Pol(evalwisestart) = 2 2.08/1.60 2.08/1.60 Pol(koat_start) = 2 2.08/1.60 2.08/1.60 orients all transitions weakly and the transitions 2.08/1.60 2.08/1.60 evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.60 2.08/1.60 evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.60 2.08/1.60 strictly and produces the following problem: 2.08/1.60 2.08/1.60 4: T: 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.60 2.08/1.60 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.60 2.08/1.60 (Comp: 2, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.61 2.08/1.61 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.61 2.08/1.61 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.61 2.08/1.61 (Comp: 2, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.61 2.08/1.61 start location: koat_start 2.08/1.61 2.08/1.61 leaf cost: 0 2.08/1.61 2.08/1.61 2.08/1.61 2.08/1.61 A polynomial rank function with 2.08/1.61 2.08/1.61 Pol(evalwisebb1in) = -2*V_3 + 2*V_4 + 1 2.08/1.61 2.08/1.61 Pol(evalwisecritedgein) = -2*V_3 + 2*V_4 2.08/1.61 2.08/1.61 and size complexities 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-2) = ? 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-2) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-2) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-2) = ? 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 orients the transitions 2.08/1.61 2.08/1.61 evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.61 2.08/1.61 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.61 2.08/1.61 weakly and the transitions 2.08/1.61 2.08/1.61 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.61 2.08/1.61 evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.61 2.08/1.61 strictly and produces the following problem: 2.08/1.61 2.08/1.61 5: T: 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 1, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.61 2.08/1.61 (Comp: ?, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.61 2.08/1.61 (Comp: 2, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 1, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.61 2.08/1.61 (Comp: ?, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.61 2.08/1.61 (Comp: 2, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.61 2.08/1.61 start location: koat_start 2.08/1.61 2.08/1.61 leaf cost: 0 2.08/1.61 2.08/1.61 2.08/1.61 2.08/1.61 A polynomial rank function with 2.08/1.61 2.08/1.61 Pol(evalwisecritedgein) = 2*V_3 - 2*V_4 + 1 2.08/1.61 2.08/1.61 Pol(evalwisebb1in) = 2*V_3 - 2*V_4 + 2 2.08/1.61 2.08/1.61 and size complexities 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3))", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-2) = ar_2 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ]", 0-3) = ar_3 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\\ ar_1 >= 0 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-2) = 3*ar_0 + 3*ar_1 + 3*ar_2 + 81 2.08/1.61 2.08/1.61 S("evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3))", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-2) = 3*ar_0 + 3*ar_1 + 9 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-2) = 3*ar_0 + 3*ar_1 + 27 2.08/1.61 2.08/1.61 S("evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\\ ar_2 + 2 >= ar_3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-2) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ]", 0-3) = ? 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-0) = ar_0 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-1) = ar_1 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-2) = 3*ar_0 + 3*ar_1 + 9 2.08/1.61 2.08/1.61 S("evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ]", 0-3) = ar_1 2.08/1.61 2.08/1.61 orients the transitions 2.08/1.61 2.08/1.61 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.61 2.08/1.61 evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.61 2.08/1.61 weakly and the transitions 2.08/1.61 2.08/1.61 evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.61 2.08/1.61 evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.61 2.08/1.61 strictly and produces the following problem: 2.08/1.61 2.08/1.61 6: T: 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 1, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2 + 1, ar_3)) [ ar_3 >= ar_2 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 2, Cost: 1) evalwisecritedgein(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_2, ar_3 + 1)) [ ar_2 >= ar_3 ] 2.08/1.61 2.08/1.61 (Comp: 2, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ ar_3 + 2 >= ar_2 /\ ar_2 + 2 >= ar_3 ] 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 1, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_3 >= ar_2 + 3 ] 2.08/1.61 2.08/1.61 (Comp: 2*ar_0 + 2*ar_1 + 2, Cost: 1) evalwisebb1in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisecritedgein(ar_0, ar_1, ar_2, ar_3)) [ ar_2 >= ar_3 + 3 ] 2.08/1.61 2.08/1.61 (Comp: 2, Cost: 1) evalwisebb2in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestop(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb1in(ar_0, ar_1, ar_0, ar_1)) [ ar_0 >= 0 /\ ar_1 >= 0 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_1 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisebb0in(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb2in(ar_0, ar_1, ar_2, ar_3)) [ 0 >= ar_0 + 1 ] 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 1) evalwisestart(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisebb0in(ar_0, ar_1, ar_2, ar_3)) 2.08/1.61 2.08/1.61 (Comp: 1, Cost: 0) koat_start(ar_0, ar_1, ar_2, ar_3) -> Com_1(evalwisestart(ar_0, ar_1, ar_2, ar_3)) [ 0 <= 0 ] 2.08/1.61 2.08/1.61 start location: koat_start 2.08/1.61 2.08/1.61 leaf cost: 0 2.08/1.61 2.08/1.61 2.08/1.61 2.08/1.61 Complexity upper bound 8*ar_0 + 8*ar_1 + 14 2.08/1.61 2.08/1.61 2.08/1.61 2.08/1.61 Time: 0.132 sec (SMT: 0.111 sec) 2.08/1.61 2.08/1.61 2.08/1.61 ---------------------------------------- 2.08/1.61 2.08/1.61 (2) 2.08/1.61 BOUNDS(1, n^1) 2.28/1.63 EOF