%------------------------------------------------------------------------------ % File : lazyCoP---0.1 % Problem : SWV253-2 : TPTP v8.1.0. Released v3.2.0. % Transfm : none % Format : tptp:raw % Command : vampire -t 0 --mode clausify %d -updr off -nm 2 -erd input_only -icip on | lazycop % Computer : n008.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 : Wed Jul 20 19:46:02 EDT 2022 % Result : Unsatisfiable 0.14s 0.35s % Output : Assurance 0s % Verified : % SZS Type : - % Comments : %------------------------------------------------------------------------------ %----No solution output by system %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % 0.04/0.12 % Problem : SWV253-2 : TPTP v8.1.0. Released v3.2.0. % 0.04/0.13 % Command : vampire -t 0 --mode clausify %d -updr off -nm 2 -erd input_only -icip on | lazycop % 0.14/0.34 % Computer : n008.cluster.edu % 0.14/0.34 % Model : x86_64 x86_64 % 0.14/0.34 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz % 0.14/0.34 % Memory : 8042.1875MB % 0.14/0.34 % OS : Linux 3.10.0-693.el7.x86_64 % 0.14/0.34 % CPULimit : 300 % 0.14/0.34 % WCLimit : 600 % 0.14/0.34 % DateTime : Wed Jun 15 18:57:22 EDT 2022 % 0.14/0.34 % CPUTime : % 0.14/0.35 % SZS status Unsatisfiable % 0.14/0.35 % SZS output begin IncompleteProof % 0.14/0.35 cnf(c0, axiom, % 0.14/0.35 v_K = v_K_H | c_Message_OinvKey(v_K) = c_Message_OinvKey(v_K_H)). % 0.14/0.35 cnf(c1, plain, % 0.14/0.35 v_K = v_K_H | c_Message_OinvKey(v_K) = c_Message_OinvKey(v_K_H), % 0.14/0.35 inference(start, [], [c0])). % 0.14/0.35 % 0.14/0.35 cnf(c2, axiom, % 0.14/0.35 c_Message_OinvKey(v_K) != c_Message_OinvKey(v_K_H) | v_K != v_K_H). % 0.14/0.35 cnf(a0, assumption, % 0.14/0.35 v_K_H = v_K_H). % 0.14/0.35 cnf(a1, assumption, % 0.14/0.35 v_K = X0). % 0.14/0.35 cnf(c3, plain, % 0.14/0.35 c_Message_OinvKey(v_K) = c_Message_OinvKey(v_K_H), % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a0, a1])], [c1, c2])). % 0.14/0.35 cnf(c4, plain, % 0.14/0.35 c_Message_OinvKey(v_K) != c_Message_OinvKey(v_K_H), % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a0, a1])], [c1, c2])). % 0.14/0.35 cnf(c5, plain, % 0.14/0.35 v_K != X0, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a0, a1])], [c1, c2])). % 0.14/0.35 % 0.14/0.35 cnf(a2, assumption, % 0.14/0.35 v_K = X0). % 0.14/0.35 cnf(c6, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(reflexivity, [assumptions([a2])], [c5])). % 0.14/0.35 % 0.14/0.35 cnf(c7, plain, % 0.14/0.35 v_K = v_K_H). % 0.14/0.35 cnf(a3, assumption, % 0.14/0.35 v_K_H = v_K_H). % 0.14/0.35 cnf(a4, assumption, % 0.14/0.35 v_K = X1). % 0.14/0.35 cnf(c8, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(equality_reduction, [assumptions([a3, a4])], [c4, c7])). % 0.14/0.35 cnf(c9, plain, % 0.14/0.35 c_Message_OinvKey(v_K) != c_Message_OinvKey(X1), % 0.14/0.35 inference(equality_reduction, [assumptions([a3, a4])], [c4, c7])). % 0.14/0.35 % 0.14/0.35 cnf(a5, assumption, % 0.14/0.35 c_Message_OinvKey(v_K) = c_Message_OinvKey(X1)). % 0.14/0.35 cnf(c10, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(reflexivity, [assumptions([a5])], [c9])). % 0.14/0.35 % 0.14/0.35 cnf(c11, axiom, % 0.14/0.35 c_Message_OinvKey(c_Message_OinvKey(X2)) = X2). % 0.14/0.35 cnf(a6, assumption, % 0.14/0.35 c_Message_OinvKey(X2) = c_Message_OinvKey(v_K_H)). % 0.14/0.35 cnf(a7, assumption, % 0.14/0.35 c_Message_OinvKey(v_K) = X3). % 0.14/0.35 cnf(c12, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a6, a7])], [c3, c11])). % 0.14/0.35 cnf(c13, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a6, a7])], [c3, c11])). % 0.14/0.35 cnf(c14, plain, % 0.14/0.35 c_Message_OinvKey(X3) = X2, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a6, a7])], [c3, c11])). % 0.14/0.35 % 0.14/0.35 cnf(c15, axiom, % 0.14/0.35 c_Message_OinvKey(c_Message_OinvKey(X4)) = X4). % 0.14/0.35 cnf(a8, assumption, % 0.14/0.35 c_Message_OinvKey(c_Message_OinvKey(X4)) = c_Message_OinvKey(X3)). % 0.14/0.35 cnf(c16, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a8])], [c14, c15])). % 0.14/0.35 cnf(c17, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a8])], [c14, c15])). % 0.14/0.35 cnf(c18, plain, % 0.14/0.35 X2 = X4, % 0.14/0.35 inference(strict_subterm_extension, [assumptions([a8])], [c14, c15])). % 0.14/0.35 % 0.14/0.35 cnf(c19, plain, % 0.14/0.35 v_K != v_K_H). % 0.14/0.35 cnf(a9, assumption, % 0.14/0.35 v_K_H = X2). % 0.14/0.35 cnf(c20, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(subterm_reduction, [assumptions([a9])], [c18, c19])). % 0.14/0.35 cnf(c21, plain, % 0.14/0.35 v_K != X4, % 0.14/0.35 inference(subterm_reduction, [assumptions([a9])], [c18, c19])). % 0.14/0.35 % 0.14/0.35 cnf(a10, assumption, % 0.14/0.35 v_K = X4). % 0.14/0.35 cnf(c22, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(reflexivity, [assumptions([a10])], [c21])). % 0.14/0.35 % 0.14/0.35 cnf(c23, plain, % 0.14/0.35 $false, % 0.14/0.35 inference(constraint_solving, [ % 0.14/0.35 bind(X0, v_K), % 0.14/0.35 bind(X1, v_K), % 0.14/0.35 bind(X2, v_K_H), % 0.14/0.35 bind(X3, c_Message_OinvKey(v_K)), % 0.14/0.35 bind(X4, v_K) % 0.14/0.35 ], % 0.14/0.35 [a0, a1, a2, a3, a4, a5, a6, a7, a8, a9, a10])). % 0.14/0.35 % 0.14/0.35 % SZS output end IncompleteProof %------------------------------------------------------------------------------