%------------------------------------------------------------------------------ % File : ePrincess---1.0 % Problem : CSR045+1 : TPTP v8.1.0. Released v3.4.0. % Transfm : none % Format : tptp:raw % Command : ePrincess-casc -timeout=%d %s % Computer : n022.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 : Fri Jul 15 02:50:33 EDT 2022 % Result : Theorem 3.04s 1.36s % Output : Proof 4.55s % Verified : % SZS Type : - % Comments : %------------------------------------------------------------------------------ %----WARNING: Could not form TPTP format derivation %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % 0.07/0.12 % Problem : CSR045+1 : TPTP v8.1.0. Released v3.4.0. % 0.07/0.12 % Command : ePrincess-casc -timeout=%d %s % 0.12/0.33 % Computer : n022.cluster.edu % 0.12/0.33 % Model : x86_64 x86_64 % 0.12/0.33 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz % 0.12/0.33 % Memory : 8042.1875MB % 0.12/0.33 % OS : Linux 3.10.0-693.el7.x86_64 % 0.12/0.33 % CPULimit : 300 % 0.12/0.33 % WCLimit : 600 % 0.12/0.33 % DateTime : Fri Jun 10 18:47:04 EDT 2022 % 0.12/0.33 % CPUTime : % 0.43/0.58 ____ _ % 0.43/0.58 ___ / __ \_____(_)___ ________ __________ % 0.43/0.58 / _ \/ /_/ / ___/ / __ \/ ___/ _ \/ ___/ ___/ % 0.43/0.58 / __/ ____/ / / / / / / /__/ __(__ |__ ) % 0.43/0.58 \___/_/ /_/ /_/_/ /_/\___/\___/____/____/ % 0.43/0.58 % 0.43/0.58 A Theorem Prover for First-Order Logic % 0.43/0.59 (ePrincess v.1.0) % 0.43/0.59 % 0.43/0.59 (c) Philipp Rümmer, 2009-2015 % 0.43/0.59 (c) Peter Backeman, 2014-2015 % 0.43/0.59 (contributions by Angelo Brillout, Peter Baumgartner) % 0.43/0.59 Free software under GNU Lesser General Public License (LGPL). % 0.43/0.59 Bug reports to peter@backeman.se % 0.43/0.59 % 0.43/0.59 For more information, visit http://user.uu.se/~petba168/breu/ % 0.43/0.59 % 0.43/0.59 Loading /export/starexec/sandbox2/benchmark/theBenchmark.p ... % 0.70/0.64 Prover 0: Options: -triggersInConjecture -genTotalityAxioms -tightFunctionScopes -clausifier=simple -reverseFunctionalityPropagation +boolFunsAsPreds -triggerStrategy=allMaximal -resolutionMethod=nonUnifying +ignoreQuantifiers -generateTriggers=all % 1.87/1.00 Prover 0: Preprocessing ... % 2.28/1.20 Prover 0: Constructing countermodel ... % 3.04/1.36 Prover 0: proved (716ms) % 3.04/1.36 % 3.04/1.36 No countermodel exists, formula is valid % 3.04/1.36 % SZS status Theorem for theBenchmark % 3.04/1.36 % 3.04/1.36 Generating proof ... found it (size 11) % 4.45/1.67 % 4.45/1.67 % SZS output start Proof for theBenchmark % 4.45/1.67 Assumed formulas after preprocessing and simplification: % 4.45/1.67 | (0) mtvisible(c_basekb) & mtvisible(c_logicaltruthmt) & mtvisible(c_corecyclmt) & mtvisible(c_universalvocabularymt) & arg1isa(c_genls, c_collection) & disjointwith(c_collection, c_individual) & transitivebinarypredicate(c_genlmt) & genlmt(c_corecyclmt, c_logicaltruthmt) & genlmt(c_universalvocabularymt, c_corecyclmt) & genls(c_applicationcontext, c_microtheory) & genls(c_partiallyintangibleindividual, c_individual) & genls(c_intangibleindividual, c_partiallyintangibleindividual) & genls(c_aspatialinformationstore, c_intangibleindividual) & genls(c_microtheory, c_aspatialinformationstore) & genls(c_wamt_evalinitial_p14, c_tptpcol_15_80088) & applicationcontext(c_wamt_evalinitial_p14) & ! [v0] : ! [v1] : ! [v2] : ( ~ arg1isa(v0, v1) | ~ genls(v1, v2) | arg1isa(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v2, v0) | ~ genlinverse(v0, v1) | genlinverse(v2, v1)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v1, v2) | ~ genlpreds(v0, v1) | genlpreds(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v1, v2) | ~ genlinverse(v0, v1) | genlinverse(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genlinverse(v1, v2) | ~ genlinverse(v0, v1) | genlpreds(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ isa(v0, v2) | ~ isa(v0, v1) | ~ disjointwith(v1, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ isa(v0, v1) | ~ genls(v1, v2) | isa(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ disjointwith(v0, v1) | ~ genls(v2, v1) | disjointwith(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ disjointwith(v0, v1) | ~ genls(v2, v0) | disjointwith(v2, v1)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genlmt(v1, v2) | ~ genlmt(v0, v1) | genlmt(v0, v2)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genls(v2, v0) | ~ genls(v0, v1) | genls(v2, v1)) & ! [v0] : ! [v1] : ! [v2] : ( ~ genls(v1, v2) | ~ genls(v0, v1) | genls(v0, v2)) & ! [v0] : ! [v1] : ( ~ mtvisible(v0) | ~ genlmt(v0, v1) | mtvisible(v1)) & ! [v0] : ! [v1] : ( ~ arg1isa(v0, v1) | relation(v0)) & ! [v0] : ! [v1] : ( ~ arg1isa(v0, v1) | collection(v1)) & ! [v0] : ! [v1] : ( ~ genlpreds(v0, v1) | predicate(v1)) & ! [v0] : ! [v1] : ( ~ genlpreds(v0, v1) | predicate(v0)) & ! [v0] : ! [v1] : ( ~ genlinverse(v0, v1) | binarypredicate(v1)) & ! [v0] : ! [v1] : ( ~ genlinverse(v0, v1) | binarypredicate(v0)) & ! [v0] : ! [v1] : ( ~ isa(v0, v1) | thing(v0)) & ! [v0] : ! [v1] : ( ~ isa(v0, v1) | collection(v1)) & ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | disjointwith(v1, v0)) & ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | collection(v1)) & ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | collection(v0)) & ! [v0] : ! [v1] : ( ~ genlmt(v0, v1) | microtheory(v1)) & ! [v0] : ! [v1] : ( ~ genlmt(v0, v1) | microtheory(v0)) & ! [v0] : ! [v1] : ( ~ genls(v0, v1) | collection(v1)) & ! [v0] : ! [v1] : ( ~ genls(v0, v1) | collection(v0)) & ! [v0] : ( ~ predicate(v0) | genlpreds(v0, v0)) & ! [v0] : ( ~ isa(v0, c_transitivebinarypredicate) | transitivebinarypredicate(v0)) & ! [v0] : ( ~ isa(v0, c_collection) | collection(v0)) & ! [v0] : ( ~ isa(v0, c_applicationcontext) | applicationcontext(v0)) & ! [v0] : ( ~ isa(v0, c_individual) | individual(v0)) & ! [v0] : ( ~ isa(v0, c_partiallyintangibleindividual) | partiallyintangibleindividual(v0)) & ! [v0] : ( ~ isa(v0, c_intangibleindividual) | intangibleindividual(v0)) & ! [v0] : ( ~ isa(v0, c_aspatialinformationstore) | aspatialinformationstore(v0)) & ! [v0] : ( ~ isa(v0, c_microtheory) | microtheory(v0)) & ! [v0] : ( ~ collection(v0) | ~ individual(v0)) & ! [v0] : ( ~ collection(v0) | isa(v0, c_collection)) & ! [v0] : ( ~ collection(v0) | genls(v0, v0)) & ! [v0] : ( ~ transitivebinarypredicate(v0) | isa(v0, c_transitivebinarypredicate)) & ! [v0] : ( ~ individual(v0) | isa(v0, c_individual)) & ! [v0] : ( ~ partiallyintangibleindividual(v0) | isa(v0, c_partiallyintangibleindividual)) & ! [v0] : ( ~ partiallyintangibleindividual(v0) | individual(v0)) & ! [v0] : ( ~ intangibleindividual(v0) | isa(v0, c_intangibleindividual)) & ! [v0] : ( ~ intangibleindividual(v0) | partiallyintangibleindividual(v0)) & ! [v0] : ( ~ aspatialinformationstore(v0) | isa(v0, c_aspatialinformationstore)) & ! [v0] : ( ~ aspatialinformationstore(v0) | intangibleindividual(v0)) & ! [v0] : ( ~ microtheory(v0) | isa(v0, c_microtheory)) & ! [v0] : ( ~ microtheory(v0) | genlmt(v0, v0)) & ! [v0] : ( ~ microtheory(v0) | aspatialinformationstore(v0)) & ! [v0] : ( ~ applicationcontext(v0) | isa(v0, c_applicationcontext)) & ! [v0] : ( ~ applicationcontext(v0) | microtheory(v0)) % 4.55/1.70 | Applying alpha-rule on (0) yields: % 4.55/1.70 | (1) ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v1, v2) | ~ genlinverse(v0, v1) | genlinverse(v0, v2)) % 4.55/1.70 | (2) ! [v0] : ! [v1] : ( ~ genlinverse(v0, v1) | binarypredicate(v1)) % 4.55/1.70 | (3) ! [v0] : ! [v1] : ! [v2] : ( ~ isa(v0, v2) | ~ isa(v0, v1) | ~ disjointwith(v1, v2)) % 4.55/1.70 | (4) ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v1, v2) | ~ genlpreds(v0, v1) | genlpreds(v0, v2)) % 4.55/1.70 | (5) ! [v0] : ( ~ partiallyintangibleindividual(v0) | individual(v0)) % 4.55/1.70 | (6) ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | disjointwith(v1, v0)) % 4.55/1.70 | (7) ! [v0] : ( ~ aspatialinformationstore(v0) | intangibleindividual(v0)) % 4.55/1.70 | (8) ! [v0] : ( ~ microtheory(v0) | isa(v0, c_microtheory)) % 4.55/1.70 | (9) ! [v0] : ( ~ isa(v0, c_microtheory) | microtheory(v0)) % 4.55/1.70 | (10) disjointwith(c_collection, c_individual) % 4.55/1.70 | (11) ! [v0] : ( ~ applicationcontext(v0) | isa(v0, c_applicationcontext)) % 4.55/1.70 | (12) ! [v0] : ( ~ isa(v0, c_applicationcontext) | applicationcontext(v0)) % 4.55/1.70 | (13) genls(c_intangibleindividual, c_partiallyintangibleindividual) % 4.55/1.70 | (14) ! [v0] : ! [v1] : ( ~ isa(v0, v1) | collection(v1)) % 4.55/1.70 | (15) ! [v0] : ! [v1] : ( ~ genlpreds(v0, v1) | predicate(v0)) % 4.55/1.70 | (16) ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | collection(v1)) % 4.55/1.70 | (17) ! [v0] : ( ~ microtheory(v0) | aspatialinformationstore(v0)) % 4.55/1.70 | (18) ! [v0] : ( ~ aspatialinformationstore(v0) | isa(v0, c_aspatialinformationstore)) % 4.55/1.70 | (19) ! [v0] : ( ~ isa(v0, c_aspatialinformationstore) | aspatialinformationstore(v0)) % 4.55/1.70 | (20) ! [v0] : ! [v1] : ( ~ genlmt(v0, v1) | microtheory(v1)) % 4.55/1.70 | (21) ! [v0] : ! [v1] : ( ~ arg1isa(v0, v1) | relation(v0)) % 4.55/1.70 | (22) ! [v0] : ! [v1] : ( ~ arg1isa(v0, v1) | collection(v1)) % 4.55/1.70 | (23) genls(c_applicationcontext, c_microtheory) % 4.55/1.70 | (24) ! [v0] : ( ~ transitivebinarypredicate(v0) | isa(v0, c_transitivebinarypredicate)) % 4.55/1.70 | (25) ! [v0] : ( ~ isa(v0, c_transitivebinarypredicate) | transitivebinarypredicate(v0)) % 4.55/1.70 | (26) mtvisible(c_universalvocabularymt) % 4.55/1.70 | (27) ! [v0] : ( ~ individual(v0) | isa(v0, c_individual)) % 4.55/1.70 | (28) ! [v0] : ( ~ isa(v0, c_individual) | individual(v0)) % 4.55/1.70 | (29) ! [v0] : ( ~ collection(v0) | isa(v0, c_collection)) % 4.55/1.70 | (30) ! [v0] : ( ~ isa(v0, c_collection) | collection(v0)) % 4.55/1.70 | (31) ! [v0] : ! [v1] : ( ~ genls(v0, v1) | collection(v0)) % 4.55/1.70 | (32) ! [v0] : ! [v1] : ( ~ genlinverse(v0, v1) | binarypredicate(v0)) % 4.55/1.70 | (33) genls(c_partiallyintangibleindividual, c_individual) % 4.55/1.70 | (34) ! [v0] : ( ~ applicationcontext(v0) | microtheory(v0)) % 4.55/1.70 | (35) ! [v0] : ! [v1] : ! [v2] : ( ~ genlpreds(v2, v0) | ~ genlinverse(v0, v1) | genlinverse(v2, v1)) % 4.55/1.70 | (36) ! [v0] : ! [v1] : ! [v2] : ( ~ genlmt(v1, v2) | ~ genlmt(v0, v1) | genlmt(v0, v2)) % 4.55/1.70 | (37) ! [v0] : ! [v1] : ( ~ isa(v0, v1) | thing(v0)) % 4.55/1.70 | (38) ! [v0] : ( ~ intangibleindividual(v0) | partiallyintangibleindividual(v0)) % 4.55/1.71 | (39) ! [v0] : ! [v1] : ( ~ genlmt(v0, v1) | microtheory(v0)) % 4.55/1.71 | (40) ! [v0] : ! [v1] : ! [v2] : ( ~ genlinverse(v1, v2) | ~ genlinverse(v0, v1) | genlpreds(v0, v2)) % 4.55/1.71 | (41) ! [v0] : ! [v1] : ( ~ disjointwith(v0, v1) | collection(v0)) % 4.55/1.71 | (42) genls(c_microtheory, c_aspatialinformationstore) % 4.55/1.71 | (43) mtvisible(c_basekb) % 4.55/1.71 | (44) genlmt(c_corecyclmt, c_logicaltruthmt) % 4.55/1.71 | (45) mtvisible(c_logicaltruthmt) % 4.55/1.71 | (46) ! [v0] : ( ~ collection(v0) | ~ individual(v0)) % 4.55/1.71 | (47) ! [v0] : ! [v1] : ! [v2] : ( ~ isa(v0, v1) | ~ genls(v1, v2) | isa(v0, v2)) % 4.55/1.71 | (48) ! [v0] : ! [v1] : ! [v2] : ( ~ genls(v1, v2) | ~ genls(v0, v1) | genls(v0, v2)) % 4.55/1.71 | (49) ! [v0] : ( ~ collection(v0) | genls(v0, v0)) % 4.55/1.71 | (50) ! [v0] : ! [v1] : ( ~ genlpreds(v0, v1) | predicate(v1)) % 4.55/1.71 | (51) arg1isa(c_genls, c_collection) % 4.55/1.71 | (52) genls(c_aspatialinformationstore, c_intangibleindividual) % 4.55/1.71 | (53) ! [v0] : ! [v1] : ( ~ genls(v0, v1) | collection(v1)) % 4.55/1.71 | (54) ! [v0] : ! [v1] : ! [v2] : ( ~ disjointwith(v0, v1) | ~ genls(v2, v0) | disjointwith(v2, v1)) % 4.55/1.71 | (55) ! [v0] : ! [v1] : ! [v2] : ( ~ disjointwith(v0, v1) | ~ genls(v2, v1) | disjointwith(v0, v2)) % 4.55/1.71 | (56) ! [v0] : ( ~ microtheory(v0) | genlmt(v0, v0)) % 4.55/1.71 | (57) genls(c_wamt_evalinitial_p14, c_tptpcol_15_80088) % 4.55/1.71 | (58) ! [v0] : ( ~ intangibleindividual(v0) | isa(v0, c_intangibleindividual)) % 4.55/1.71 | (59) ! [v0] : ( ~ isa(v0, c_intangibleindividual) | intangibleindividual(v0)) % 4.55/1.71 | (60) ! [v0] : ! [v1] : ! [v2] : ( ~ genls(v2, v0) | ~ genls(v0, v1) | genls(v2, v1)) % 4.55/1.71 | (61) applicationcontext(c_wamt_evalinitial_p14) % 4.55/1.71 | (62) mtvisible(c_corecyclmt) % 4.55/1.71 | (63) ! [v0] : ( ~ partiallyintangibleindividual(v0) | isa(v0, c_partiallyintangibleindividual)) % 4.55/1.71 | (64) ! [v0] : ( ~ isa(v0, c_partiallyintangibleindividual) | partiallyintangibleindividual(v0)) % 4.55/1.71 | (65) ! [v0] : ( ~ predicate(v0) | genlpreds(v0, v0)) % 4.55/1.71 | (66) transitivebinarypredicate(c_genlmt) % 4.55/1.71 | (67) genlmt(c_universalvocabularymt, c_corecyclmt) % 4.55/1.71 | (68) ! [v0] : ! [v1] : ( ~ mtvisible(v0) | ~ genlmt(v0, v1) | mtvisible(v1)) % 4.55/1.71 | (69) ! [v0] : ! [v1] : ! [v2] : ( ~ arg1isa(v0, v1) | ~ genls(v1, v2) | arg1isa(v0, v2)) % 4.55/1.71 | % 4.55/1.71 | Instantiating formula (55) with c_partiallyintangibleindividual, c_individual, c_collection and discharging atoms disjointwith(c_collection, c_individual), genls(c_partiallyintangibleindividual, c_individual), yields: % 4.55/1.71 | (70) disjointwith(c_collection, c_partiallyintangibleindividual) % 4.55/1.71 | % 4.55/1.71 | Instantiating formula (60) with c_aspatialinformationstore, c_partiallyintangibleindividual, c_intangibleindividual and discharging atoms genls(c_intangibleindividual, c_partiallyintangibleindividual), genls(c_aspatialinformationstore, c_intangibleindividual), yields: % 4.55/1.71 | (71) genls(c_aspatialinformationstore, c_partiallyintangibleindividual) % 4.55/1.71 | % 4.55/1.71 | Instantiating formula (60) with c_applicationcontext, c_aspatialinformationstore, c_microtheory and discharging atoms genls(c_applicationcontext, c_microtheory), genls(c_microtheory, c_aspatialinformationstore), yields: % 4.55/1.71 | (72) genls(c_applicationcontext, c_aspatialinformationstore) % 4.55/1.71 | % 4.55/1.71 | Instantiating formula (31) with c_tptpcol_15_80088, c_wamt_evalinitial_p14 and discharging atoms genls(c_wamt_evalinitial_p14, c_tptpcol_15_80088), yields: % 4.55/1.71 | (73) collection(c_wamt_evalinitial_p14) % 4.55/1.71 | % 4.55/1.71 | Instantiating formula (11) with c_wamt_evalinitial_p14 and discharging atoms applicationcontext(c_wamt_evalinitial_p14), yields: % 4.55/1.71 | (74) isa(c_wamt_evalinitial_p14, c_applicationcontext) % 4.55/1.72 | % 4.55/1.72 | Instantiating formula (29) with c_wamt_evalinitial_p14 and discharging atoms collection(c_wamt_evalinitial_p14), yields: % 4.55/1.72 | (75) isa(c_wamt_evalinitial_p14, c_collection) % 4.55/1.72 | % 4.55/1.72 | Instantiating formula (47) with c_aspatialinformationstore, c_applicationcontext, c_wamt_evalinitial_p14 and discharging atoms isa(c_wamt_evalinitial_p14, c_applicationcontext), genls(c_applicationcontext, c_aspatialinformationstore), yields: % 4.55/1.72 | (76) isa(c_wamt_evalinitial_p14, c_aspatialinformationstore) % 4.55/1.72 | % 4.55/1.72 | Instantiating formula (55) with c_aspatialinformationstore, c_partiallyintangibleindividual, c_collection and discharging atoms disjointwith(c_collection, c_partiallyintangibleindividual), genls(c_aspatialinformationstore, c_partiallyintangibleindividual), yields: % 4.55/1.72 | (77) disjointwith(c_collection, c_aspatialinformationstore) % 4.55/1.72 | % 4.55/1.72 | Instantiating formula (3) with c_aspatialinformationstore, c_collection, c_wamt_evalinitial_p14 and discharging atoms isa(c_wamt_evalinitial_p14, c_collection), isa(c_wamt_evalinitial_p14, c_aspatialinformationstore), disjointwith(c_collection, c_aspatialinformationstore), yields: % 4.55/1.72 | (78) $false % 4.55/1.72 | % 4.55/1.72 |-The branch is then unsatisfiable % 4.55/1.72 % SZS output end Proof for theBenchmark % 4.55/1.72 % 4.55/1.72 1122ms %------------------------------------------------------------------------------