%------------------------------------------------------------------------------ % File : Nitpick---2016 % Problem : NLP032+1 : TPTP v6.4.0. Released v2.4.0. % Transfm : none % Format : tptp:raw % Command : isabelle tptp_nitpick %d %s % Computer : n058.star.cs.uiowa.edu % Model : x86_64 x86_64 % CPU : Intel(R) Xeon(R) CPU E5-2609 0 2.40GHz % Memory : 32218.75MB % OS : Linux 3.10.0-327.36.3.el7.x86_64 % CPULimit : 300s % DateTime : Tue Jan 17 21:06:34 EST 2017 % Result : CounterSatisfiable 26.18s % Output : FiniteModel 26.18s % Verified : % SZS Type : None (Parsing solution fails) % Syntax : Number of formulae : 0 % Comments : %------------------------------------------------------------------------------ %----WARNING: Could not form TPTP format derivation %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % 0.00/0.03 % Problem : NLP032+1 : TPTP v6.4.0. Released v2.4.0. % 0.00/0.04 % Command : isabelle tptp_nitpick %d %s % 0.03/0.23 % Computer : n058.star.cs.uiowa.edu % 0.03/0.23 % Model : x86_64 x86_64 % 0.03/0.23 % CPU : Intel(R) Xeon(R) CPU E5-2609 0 @ 2.40GHz % 0.03/0.23 % Memory : 32218.75MB % 0.03/0.23 % OS : Linux 3.10.0-327.36.3.el7.x86_64 % 0.03/0.23 % CPULimit : 300 % 0.03/0.23 % DateTime : Sat Jan 14 21:22:34 CST 2017 % 0.03/0.24 % CPUTime : % 26.18/10.20 Nitpicking formula... % 26.18/10.20 Timestamp: 21:22:43 % 26.18/10.20 Using SAT solver "Lingeling_JNI" The following solvers are configured: % 26.18/10.20 "Lingeling_JNI", "CryptoMiniSat_JNI", "MiniSat_JNI", "SAT4J", "SAT4J_Light" % 26.18/10.20 Batch 1 of 20: Trying 5 scopes: % 26.18/10.20 card TPTP_Interpret.ind = 1 % 26.18/10.20 card TPTP_Interpret.ind = 2 % 26.18/10.20 card TPTP_Interpret.ind = 3 % 26.18/10.20 card TPTP_Interpret.ind = 4 % 26.18/10.20 card TPTP_Interpret.ind = 5 % 26.18/10.20 % SZS status CounterSatisfiable % SZS output start FiniteModel % 26.18/10.20 Nitpick found a counterexample for card TPTP_Interpret.ind = 2: % 26.18/10.20 % 26.18/10.20 Skolem constants: % 26.18/10.20 U = i1 % 26.18/10.20 V = i2 % 26.18/10.20 \<lambda>U V. W = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i1)) % 26.18/10.20 \<lambda>W. X = (\<lambda>x. _)(i1 := i1, i2 := i1) % 26.18/10.20 \<lambda>W Z. X1 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i2, i2 := i2), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i2, i2 := i2)) % 26.18/10.20 \<lambda>X6 X8. X10 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i2, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i2, i2 := i1)) % 26.18/10.20 \<lambda>X4 X5 X7. X11 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i2, i2 := i2)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i1))) % 26.18/10.20 \<lambda>X4 X5. X12 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i2, i2 := i2), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i1)) % 26.18/10.20 \<lambda>U V. X3 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i2, i2 := i2), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i1)) % 26.18/10.20 X4 = i2 % 26.18/10.20 X5 = i2 % 26.18/10.20 \<lambda>X4 X5. X6 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i2), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i1)) % 26.18/10.20 \<lambda>X6. X7 = (\<lambda>x. _)(i1 := i2, i2 := i1) % 26.18/10.20 \<lambda>X4 X5 X7. X8 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i2, i2 := i2)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i1), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i2, i2 := i2))) % 26.18/10.20 \<lambda>X6 X8. X9 = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := i1, i2 := i2), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := i1, i2 := i2)) % 26.18/10.20 \<lambda>W. Y = (\<lambda>x. _)(i1 := i2, i2 := i1) % 26.18/10.20 Constants: % 26.18/10.20 bnd_actual_world = (\<lambda>x. _)(i1 := False, i2 := True) % 26.18/10.20 bnd_agent = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := False))) % 26.18/10.20 bnd_at = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := False), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := False)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := False))) % 26.18/10.20 bnd_event = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_group = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_guy = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := False), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_hamburger = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := False), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_member = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := False), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True))) % 26.18/10.20 bnd_present = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_sit = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_table = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := False), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_three = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 bnd_with = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := False, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)), % 26.18/10.20 i2 := (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True))) % 26.18/10.20 bnd_young = % 26.18/10.20 (\<lambda>x. _) % 26.18/10.20 (i1 := (\<lambda>x. _)(i1 := True, i2 := True), % 26.18/10.20 i2 := (\<lambda>x. _)(i1 := True, i2 := True)) % 26.18/10.20 % SZS output end FiniteModel % 26.18/10.20 Total time: 1.0 s %------------------------------------------------------------------------------