%------------------------------------------------------------------------------ % File : Crossbow---0.1 % Problem : KLE050+3 : TPTP v8.1.0. Released v4.0.0. % Transfm : none % Format : tptp:raw % Command : do_Crossbow---0.1 %s % Computer : n012.cluster.edu % Model : x86_64 x86_64 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz % Memory : 8042.1875MB % OS : Linux 3.10.0-693.el7.x86_64 % CPULimit : 300s % WCLimit : 600s % DateTime : Sun Jul 17 01:38:01 EDT 2022 % Result : CounterSatisfiable 6.04s 6.29s % Output : FiniteModel 6.04s % Verified : % SZS Type : - % Comments : %------------------------------------------------------------------------------ %----WARNING: Could not form TPTP format derivation %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % 0.03/0.12 % Problem : KLE050+3 : TPTP v8.1.0. Released v4.0.0. % 0.03/0.13 % Command : do_Crossbow---0.1 %s % 0.13/0.34 % Computer : n012.cluster.edu % 0.13/0.34 % Model : x86_64 x86_64 % 0.13/0.34 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz % 0.13/0.34 % Memory : 8042.1875MB % 0.13/0.34 % OS : Linux 3.10.0-693.el7.x86_64 % 0.13/0.34 % CPULimit : 300 % 0.13/0.34 % WCLimit : 600 % 0.13/0.34 % DateTime : Thu Jun 16 14:46:09 EDT 2022 % 0.13/0.34 % CPUTime : % 0.13/0.35 /export/starexec/sandbox/solver/bin % 0.13/0.35 crossbow.opt % 0.13/0.35 do_Crossbow---0.1 % 0.13/0.35 eprover % 0.13/0.35 runsolver % 0.13/0.35 starexec_run_Crossbow---0.1 % 6.04/6.29 % SZS status CounterSatisfiable for theBenchmark.p % 6.04/6.29 % SZS output start FiniteModel for theBenchmark.p % 6.04/6.29 % domain size: 8 % 6.04/6.29 fof(interp, fi_domain, ![X] : (X = 0 | X = 1 | X = 2 | X = 3 | X = 4 | X = 5 | % 6.04/6.29 X = 6 | % 6.04/6.29 X = 7)). % 6.04/6.29 fof(interp, fi_functors, addition(0, 0) = 0 & addition(0, 1) = 0 & % 6.04/6.29 addition(0, 2) = 2 & % 6.04/6.29 addition(0, 3) = 3 & % 6.04/6.29 addition(0, 4) = 6 & % 6.04/6.29 addition(0, 5) = 2 & % 6.04/6.29 addition(0, 6) = 6 & % 6.04/6.29 addition(0, 7) = 3 & % 6.04/6.29 addition(1, 0) = 0 & % 6.04/6.29 addition(1, 1) = 1 & % 6.04/6.29 addition(1, 2) = 2 & % 6.04/6.29 addition(1, 3) = 3 & % 6.04/6.29 addition(1, 4) = 4 & % 6.04/6.29 addition(1, 5) = 5 & % 6.04/6.29 addition(1, 6) = 6 & % 6.04/6.29 addition(1, 7) = 7 & % 6.04/6.29 addition(2, 0) = 2 & % 6.04/6.29 addition(2, 1) = 2 & % 6.04/6.29 addition(2, 2) = 2 & % 6.04/6.29 addition(2, 3) = 6 & % 6.04/6.29 addition(2, 4) = 6 & % 6.04/6.29 addition(2, 5) = 2 & % 6.04/6.29 addition(2, 6) = 6 & % 6.04/6.29 addition(2, 7) = 6 & % 6.04/6.29 addition(3, 0) = 3 & % 6.04/6.29 addition(3, 1) = 3 & % 6.04/6.29 addition(3, 2) = 6 & % 6.04/6.29 addition(3, 3) = 3 & % 6.04/6.29 addition(3, 4) = 6 & % 6.04/6.29 addition(3, 5) = 6 & % 6.04/6.29 addition(3, 6) = 6 & % 6.04/6.29 addition(3, 7) = 3 & % 6.04/6.29 addition(4, 0) = 6 & % 6.04/6.29 addition(4, 1) = 4 & % 6.04/6.29 addition(4, 2) = 6 & % 6.04/6.29 addition(4, 3) = 6 & % 6.04/6.29 addition(4, 4) = 4 & % 6.04/6.29 addition(4, 5) = 4 & % 6.04/6.29 addition(4, 6) = 6 & % 6.04/6.29 addition(4, 7) = 4 & % 6.04/6.29 addition(5, 0) = 2 & % 6.04/6.29 addition(5, 1) = 5 & % 6.04/6.29 addition(5, 2) = 2 & % 6.04/6.29 addition(5, 3) = 6 & % 6.04/6.29 addition(5, 4) = 4 & % 6.04/6.29 addition(5, 5) = 5 & % 6.04/6.29 addition(5, 6) = 6 & % 6.04/6.29 addition(5, 7) = 4 & % 6.04/6.29 addition(6, 0) = 6 & % 6.04/6.29 addition(6, 1) = 6 & % 6.04/6.29 addition(6, 2) = 6 & % 6.04/6.29 addition(6, 3) = 6 & % 6.04/6.29 addition(6, 4) = 6 & % 6.04/6.29 addition(6, 5) = 6 & % 6.04/6.29 addition(6, 6) = 6 & % 6.04/6.29 addition(6, 7) = 6 & % 6.04/6.29 addition(7, 0) = 3 & % 6.04/6.29 addition(7, 1) = 7 & % 6.04/6.29 addition(7, 2) = 6 & % 6.04/6.29 addition(7, 3) = 3 & % 6.04/6.29 addition(7, 4) = 4 & % 6.04/6.29 addition(7, 5) = 4 & % 6.04/6.29 addition(7, 6) = 6 & % 6.04/6.29 addition(7, 7) = 7). % 6.04/6.29 fof(interp, fi_functors, c(0) = 5 & c(1) = 2 & c(2) = 1 & c(3) = 1 & c(4) = 1 & % 6.04/6.29 c(5) = 0 & % 6.04/6.29 c(6) = 1 & % 6.04/6.29 c(7) = 1). % 6.04/6.29 fof(interp, fi_predicates, ~complement(0, 0) & ~complement(0, 1) & % 6.04/6.29 ~complement(0, 2) & % 6.04/6.29 ~complement(0, 3) & % 6.04/6.29 ~complement(0, 4) & % 6.04/6.29 complement(0, 5) & % 6.04/6.29 ~complement(0, 6) & % 6.04/6.29 ~complement(0, 7) & % 6.04/6.29 ~complement(1, 0) & % 6.04/6.29 ~complement(1, 1) & % 6.04/6.29 complement(1, 2) & % 6.04/6.29 ~complement(1, 3) & % 6.04/6.29 ~complement(1, 4) & % 6.04/6.29 ~complement(1, 5) & % 6.04/6.29 ~complement(1, 6) & % 6.04/6.29 ~complement(1, 7) & % 6.04/6.29 ~complement(2, 0) & % 6.04/6.29 complement(2, 1) & % 6.04/6.29 ~complement(2, 2) & % 6.04/6.29 ~complement(2, 3) & % 6.04/6.29 ~complement(2, 4) & % 6.04/6.29 ~complement(2, 5) & % 6.04/6.29 ~complement(2, 6) & % 6.04/6.29 ~complement(2, 7) & % 6.04/6.29 ~complement(3, 0) & % 6.04/6.29 ~complement(3, 1) & % 6.04/6.29 ~complement(3, 2) & % 6.04/6.29 ~complement(3, 3) & % 6.04/6.29 ~complement(3, 4) & % 6.04/6.29 ~complement(3, 5) & % 6.04/6.29 ~complement(3, 6) & % 6.04/6.29 ~complement(3, 7) & % 6.04/6.29 ~complement(4, 0) & % 6.04/6.29 ~complement(4, 1) & % 6.04/6.29 ~complement(4, 2) & % 6.04/6.29 ~complement(4, 3) & % 6.04/6.29 ~complement(4, 4) & % 6.04/6.29 ~complement(4, 5) & % 6.04/6.29 ~complement(4, 6) & % 6.04/6.29 ~complement(4, 7) & % 6.04/6.29 complement(5, 0) & % 6.04/6.29 ~complement(5, 1) & % 6.04/6.29 ~complement(5, 2) & % 6.04/6.29 ~complement(5, 3) & % 6.04/6.29 ~complement(5, 4) & % 6.04/6.29 ~complement(5, 5) & % 6.04/6.29 ~complement(5, 6) & % 6.04/6.29 ~complement(5, 7) & % 6.04/6.29 ~complement(6, 0) & % 6.04/6.29 ~complement(6, 1) & % 6.04/6.29 ~complement(6, 2) & % 6.04/6.29 ~complement(6, 3) & % 6.04/6.29 ~complement(6, 4) & % 6.04/6.29 ~complement(6, 5) & % 6.04/6.29 ~complement(6, 6) & % 6.04/6.29 ~complement(6, 7) & % 6.04/6.29 ~complement(7, 0) & % 6.04/6.29 ~complement(7, 1) & % 6.04/6.29 ~complement(7, 2) & % 6.04/6.29 ~complement(7, 3) & % 6.04/6.29 ~complement(7, 4) & % 6.04/6.29 ~complement(7, 5) & % 6.04/6.29 ~complement(7, 6) & % 6.04/6.29 ~complement(7, 7)). % 6.04/6.29 fof(interp, fi_functors, esk1_1(0) = 5 & esk1_1(1) = 2 & esk1_1(2) = 1 & % 6.04/6.29 esk1_1(3) = 5 & % 6.04/6.29 esk1_1(4) = 0 & % 6.04/6.29 esk1_1(5) = 0 & % 6.04/6.29 esk1_1(6) = 7 & % 6.04/6.29 esk1_1(7) = 0). % 6.04/6.29 fof(interp, fi_functors, esk2_0 = 3). % 6.04/6.29 fof(interp, fi_functors, esk3_0 = 0). % 6.04/6.29 fof(interp, fi_functors, esk4_0 = 0). % 6.04/6.29 fof(interp, fi_functors, esk5_0 = 0). % 6.04/6.29 fof(interp, fi_predicates, leq(0, 0) & ~leq(0, 1) & leq(0, 2) & leq(0, 3) & % 6.04/6.29 ~leq(0, 4) & % 6.04/6.29 ~leq(0, 5) & % 6.04/6.29 leq(0, 6) & % 6.04/6.29 ~leq(0, 7) & % 6.04/6.29 leq(1, 0) & % 6.04/6.29 leq(1, 1) & % 6.04/6.29 leq(1, 2) & % 6.04/6.29 leq(1, 3) & % 6.04/6.29 leq(1, 4) & % 6.04/6.29 leq(1, 5) & % 6.04/6.29 leq(1, 6) & % 6.04/6.29 leq(1, 7) & % 6.04/6.29 ~leq(2, 0) & % 6.04/6.29 ~leq(2, 1) & % 6.04/6.29 leq(2, 2) & % 6.04/6.29 ~leq(2, 3) & % 6.04/6.29 ~leq(2, 4) & % 6.04/6.29 ~leq(2, 5) & % 6.04/6.29 leq(2, 6) & % 6.04/6.29 ~leq(2, 7) & % 6.04/6.29 ~leq(3, 0) & % 6.04/6.29 ~leq(3, 1) & % 6.04/6.29 ~leq(3, 2) & % 6.04/6.29 leq(3, 3) & % 6.04/6.29 ~leq(3, 4) & % 6.04/6.29 ~leq(3, 5) & % 6.04/6.29 leq(3, 6) & % 6.04/6.29 ~leq(3, 7) & % 6.04/6.29 ~leq(4, 0) & % 6.04/6.29 ~leq(4, 1) & % 6.04/6.29 ~leq(4, 2) & % 6.04/6.29 ~leq(4, 3) & % 6.04/6.29 leq(4, 4) & % 6.04/6.29 ~leq(4, 5) & % 6.04/6.29 leq(4, 6) & % 6.04/6.29 ~leq(4, 7) & % 6.04/6.29 ~leq(5, 0) & % 6.04/6.29 ~leq(5, 1) & % 6.04/6.29 leq(5, 2) & % 6.04/6.29 ~leq(5, 3) & % 6.04/6.29 leq(5, 4) & % 6.04/6.29 leq(5, 5) & % 6.04/6.29 leq(5, 6) & % 6.04/6.29 ~leq(5, 7) & % 6.04/6.29 ~leq(6, 0) & % 6.04/6.29 ~leq(6, 1) & % 6.04/6.29 ~leq(6, 2) & % 6.04/6.29 ~leq(6, 3) & % 6.04/6.29 ~leq(6, 4) & % 6.04/6.29 ~leq(6, 5) & % 6.04/6.29 leq(6, 6) & % 6.04/6.29 ~leq(6, 7) & % 6.04/6.29 ~leq(7, 0) & % 6.04/6.29 ~leq(7, 1) & % 6.04/6.29 ~leq(7, 2) & % 6.04/6.29 leq(7, 3) & % 6.04/6.29 leq(7, 4) & % 6.04/6.29 ~leq(7, 5) & % 6.04/6.29 leq(7, 6) & % 6.04/6.29 leq(7, 7)). % 6.04/6.29 fof(interp, fi_functors, multiplication(0, 0) = 0 & multiplication(0, 1) = 1 & % 6.04/6.29 multiplication(0, 2) = 0 & % 6.04/6.29 multiplication(0, 3) = 3 & % 6.04/6.29 multiplication(0, 4) = 7 & % 6.04/6.29 multiplication(0, 5) = 1 & % 6.04/6.29 multiplication(0, 6) = 3 & % 6.04/6.29 multiplication(0, 7) = 7 & % 6.04/6.29 multiplication(1, 0) = 1 & % 6.04/6.29 multiplication(1, 1) = 1 & % 6.04/6.29 multiplication(1, 2) = 1 & % 6.04/6.29 multiplication(1, 3) = 1 & % 6.04/6.29 multiplication(1, 4) = 1 & % 6.04/6.29 multiplication(1, 5) = 1 & % 6.04/6.29 multiplication(1, 6) = 1 & % 6.04/6.29 multiplication(1, 7) = 1 & % 6.04/6.29 multiplication(2, 0) = 0 & % 6.04/6.29 multiplication(2, 1) = 1 & % 6.04/6.29 multiplication(2, 2) = 2 & % 6.04/6.29 multiplication(2, 3) = 3 & % 6.04/6.29 multiplication(2, 4) = 4 & % 6.04/6.29 multiplication(2, 5) = 5 & % 6.04/6.29 multiplication(2, 6) = 6 & % 6.04/6.29 multiplication(2, 7) = 7 & % 6.04/6.29 multiplication(3, 0) = 0 & % 6.04/6.29 multiplication(3, 1) = 1 & % 6.04/6.29 multiplication(3, 2) = 3 & % 6.04/6.29 multiplication(3, 3) = 3 & % 6.04/6.29 multiplication(3, 4) = 7 & % 6.04/6.29 multiplication(3, 5) = 7 & % 6.04/6.29 multiplication(3, 6) = 3 & % 6.04/6.29 multiplication(3, 7) = 7 & % 6.04/6.29 multiplication(4, 0) = 1 & % 6.04/6.29 multiplication(4, 1) = 1 & % 6.04/6.29 multiplication(4, 2) = 4 & % 6.04/6.29 multiplication(4, 3) = 1 & % 6.04/6.29 multiplication(4, 4) = 4 & % 6.04/6.29 multiplication(4, 5) = 4 & % 6.04/6.29 multiplication(4, 6) = 4 & % 6.04/6.29 multiplication(4, 7) = 1 & % 6.04/6.29 multiplication(5, 0) = 1 & % 6.04/6.29 multiplication(5, 1) = 1 & % 6.04/6.29 multiplication(5, 2) = 5 & % 6.04/6.29 multiplication(5, 3) = 1 & % 6.04/6.29 multiplication(5, 4) = 5 & % 6.04/6.29 multiplication(5, 5) = 5 & % 6.04/6.29 multiplication(5, 6) = 5 & % 6.04/6.29 multiplication(5, 7) = 1 & % 6.04/6.29 multiplication(6, 0) = 0 & % 6.04/6.29 multiplication(6, 1) = 1 & % 6.04/6.29 multiplication(6, 2) = 6 & % 6.04/6.29 multiplication(6, 3) = 3 & % 6.04/6.29 multiplication(6, 4) = 4 & % 6.04/6.29 multiplication(6, 5) = 4 & % 6.04/6.29 multiplication(6, 6) = 6 & % 6.04/6.29 multiplication(6, 7) = 7 & % 6.04/6.29 multiplication(7, 0) = 1 & % 6.04/6.29 multiplication(7, 1) = 1 & % 6.04/6.29 multiplication(7, 2) = 7 & % 6.04/6.29 multiplication(7, 3) = 1 & % 6.04/6.29 multiplication(7, 4) = 7 & % 6.04/6.29 multiplication(7, 5) = 7 & % 6.04/6.29 multiplication(7, 6) = 7 & % 6.04/6.29 multiplication(7, 7) = 1). % 6.04/6.29 fof(interp, fi_functors, one = 2). % 6.04/6.29 fof(interp, fi_functors, star(0) = 2 & star(1) = 2 & star(2) = 2 & star(3) = 6 & % 6.04/6.29 star(4) = 6 & % 6.04/6.29 star(5) = 2 & % 6.04/6.29 star(6) = 6 & % 6.04/6.29 star(7) = 6). % 6.04/6.29 fof(interp, fi_predicates, test(0) & test(1) & test(2) & ~test(3) & ~test(4) & % 6.04/6.29 test(5) & % 6.04/6.29 ~test(6) & % 6.04/6.29 ~test(7)). % 6.04/6.29 fof(interp, fi_functors, zero = 1). % 6.04/6.29 % SZS output end FiniteModel for theBenchmark.p % 6.04/6.29 % 20 lemma(s) from E % 6.04/6.29 % cnf(cl, axiom, leq(one, one)). % 6.04/6.29 % cnf(cl, axiom, zero != one). % 6.04/6.29 % cnf(cl, axiom, esk4_0 != c(esk4_0)). % 6.04/6.29 % cnf(cl, axiom, addition(A, B) = addition(A, addition(A, B))). % 6.04/6.29 % cnf(cl, axiom, addition(A, B) = addition(A, addition(A, B))). % 6.04/6.29 % cnf(cl, axiom, addition(one, star(one)) = star(one)). % 6.04/6.29 % cnf(cl, axiom, leq(star(one), star(one))). % 6.04/6.29 % cnf(cl, axiom, leq(zero, A)). % 6.04/6.29 % cnf(cl, axiom, one = star(zero)). % 6.04/6.29 % cnf(cl, axiom, ~leq(one, zero)). % 6.04/6.29 % cnf(cl, axiom, zero != star(one)). % 6.04/6.29 % cnf(cl, axiom, zero != star(A)). % 6.04/6.29 % cnf(cl, axiom, multiplication(A, addition(A, one)) = multiplication(addition(A, one), A)). % 6.04/6.29 % cnf(cl, axiom, multiplication(A, addition(A, one)) = multiplication(addition(A, one), A)). % 6.04/6.29 % cnf(cl, axiom, addition(A, star(one)) = addition(addition(A, star(one)), one)). % 6.04/6.29 % cnf(cl, axiom, addition(A, star(one)) = addition(addition(A, star(one)), one)). % 6.04/6.29 % cnf(cl, axiom, zero != addition(A, one)). % 6.04/6.29 % cnf(cl, axiom, zero != addition(A, one)). % 6.04/6.29 % cnf(cl, axiom, ~leq(star(one), zero)). % 6.04/6.29 % cnf(cl, axiom, multiplication(star(one), star(one)) != zero). % 6.04/6.29 % 28 pred(s) % 6.04/6.29 % 29 func(s) % 6.04/6.29 % 1 sort(s) % 6.04/6.29 % 93 clause(s) % 6.04/6.29 % Instantiating 1 (5044 ms) % 6.04/6.29 % Solving (5045 ms) % 6.04/6.29 % Instantiating 2 (5045 ms) % 6.04/6.29 % Solving (5046 ms) % 6.04/6.29 % Instantiating 3 (5047 ms) % 6.04/6.29 % Solving (5051 ms) % 6.04/6.29 % Instantiating 4 (5052 ms) % 6.04/6.29 % Solving (5064 ms) % 6.04/6.29 % Instantiating 5 (5070 ms) % 6.04/6.29 % Solving (5099 ms) % 6.04/6.29 % Instantiating 6 (5113 ms) % 6.04/6.29 % Solving (5161 ms) % 6.04/6.29 % Instantiating 7 (5208 ms) % 6.04/6.29 % Solving (5282 ms) % 6.04/6.29 % Instantiating 8 (5761 ms) % 6.04/6.29 % Solving (5841 ms) % 6.04/6.29 % % 6.04/6.29 % 1 model found (5914 ms) %------------------------------------------------------------------------------