%------------------------------------------------------------------------------ % File : E-Darwin---1.5 % Problem : NLP175-1 : TPTP v6.1.0. Released v2.4.0. % Transfm : none % Format : tptp:raw % Command : e-darwin -pev TPTP -pmd true -if tptp -pl 2 -pc false -ps false %s % Computer : n008.star.cs.uiowa.edu % Model : x86_64 x86_64 % CPU : Intel(R) Xeon(R) CPU E5-2609 0 2.40GHz % Memory : 16127.75MB % OS : Linux 2.6.32-431.20.3.el6.x86_64 % CPULimit : 300s % DateTime : Fri Aug 1 22:06:36 EDT 2014 % Result : Satisfiable 0.15s % Output : Model 0.15s % Verified : % SZS Type : None (Parsing solution fails) % Syntax : Number of formulae : 0 % Comments : %------------------------------------------------------------------------------ %----ERROR: Could not form TPTP format derivation %------------------------------------------------------------------------------ %----ORIGINAL SYSTEM OUTPUT % % Problem : NLP175-1 : TPTP v6.1.0. Released v2.4.0. % % Command : e-darwin -pev TPTP -pmd true -if tptp -pl 2 -pc false -ps false %s % % Computer : n008.star.cs.uiowa.edu % % Model : x86_64 x86_64 % % CPU : Intel(R) Xeon(R) CPU E5-2609 0 @ 2.40GHz % % Memory : 16127.75MB % % OS : Linux 2.6.32-431.20.3.el6.x86_64 % % CPULimit : 300 % % DateTime : Sat Jul 26 02:23:36 CDT 2014 % % CPUTime : 0.15 % E-Darwin 1.5 2012/06/20 (based on Darwin 1.3) % % % Defaulting to tptp format. % Parsing /export/starexec/sandbox/benchmark/theBenchmark.p ... % % % % Proving ... % % % SZS status Satisfiable for /export/starexec/sandbox/benchmark/theBenchmark.p % % START OF MODEL (DIG): % (skf12(skc13, skc8) = skf7(skf12(skc13, skc8))) % (skf10(skc13, skc8) = skf7(skf10(skc13, skc8))) % abstraction(skc8, skc19) % actual_world(skc8) % agent(skc8, skc14, skc18) % animate(skc8, skf12(skc13, skc8)) % animate(skc8, skf10(skc13, skc8)) % artifact(skc8, skc15) % artifact(skc8, skc18) % barrel(skc8, skc14) % be(skc8, skf8(skf12(skc13, skc8)), skf12(skc13, skc8), skf7(skf12(skc13, skc8))) % be(skc8, skf8(skf12(skc13, skc8)), skf12(skc13, skc8), skf12(skc13, skc8)) % be(skc8, skf8(skf10(skc13, skc8)), skf10(skc13, skc8), skf7(skf10(skc13, skc8))) % be(skc8, skf8(skf10(skc13, skc8)), skf10(skc13, skc8), skf10(skc13, skc8)) % car(skc8, skc18) % chevy(skc8, skc18) % city(skc8, skc18) % dirty(skc8, skc18) % down(skc8, skc14, skc15) % entity(skc8, skc15) % entity(skc8, skf12(skc13, skc8)) % entity(skc8, skf10(skc13, skc8)) % entity(skc8, skc18) % event(skc8, skc14) % event(skc8, skf8(_0)) % eventuality(skc8, skc14) % eventuality(skc8, skf8(_0)) % existent(skc8, skc15) % existent(skc8, skf12(skc13, skc8)) % existent(skc8, skf10(skc13, skc8)) % existent(skc8, skc18) % fellow(skc8, skf12(skc13, skc8)) % fellow(skc8, skf10(skc13, skc8)) % frontseat(skc8, skc15) % furniture(skc8, skc15) % general(skc8, skc19) % group(skc8, skc10) % group(skc8, skc9) % group(skc8, skc13) % hollywood_placename(skc8, skc19) % human(skc8, skf12(skc13, skc8)) % human(skc8, skf10(skc13, skc8)) % human_person(skc8, skf12(skc13, skc8)) % human_person(skc8, skf10(skc13, skc8)) % impartial(skc8, skc15) % impartial(skc8, skf12(skc13, skc8)) % impartial(skc8, skf10(skc13, skc8)) % impartial(skc8, skc18) % in(skc8, skf7(_0), skc15) % in(skc8, skc14, skc18) % in(skc8, skf12(skc13, skc8), skc15) % in(skc8, skf10(skc13, skc8), skc15) % instrumentality(skc8, skc15) % instrumentality(skc8, skc18) % living(skc8, skf12(skc13, skc8)) % living(skc8, skf10(skc13, skc8)) % location(skc8, skc18) % lonely(skc8, skc15) % male(skc8, skf12(skc13, skc8)) % male(skc8, skf10(skc13, skc8)) % man(skc8, skf12(skc13, skc8)) % man(skc8, skf10(skc13, skc8)) % member(skc8, skf12(skc13, skc8), skc13) % member(skc8, skf10(skc13, skc8), skc13) % multiple(skc8, skc10) % multiple(skc8, skc9) % multiple(skc8, skc13) % nonexistent(skc8, skc14) % nonexistent(skc8, skf8(_0)) % nonhuman(skc8, skc19) % nonliving(skc8, skc15) % nonliving(skc8, skc18) % object(skc8, skc15) % object(skc8, skc18) % of(skc8, skc19, skc18) % old(skc8, skc18) % organism(skc8, skf12(skc13, skc8)) % organism(skc8, skf10(skc13, skc8)) % placename(skc8, skc19) % present(skc8, skc14) % relation(skc8, skc19) % relname(skc8, skc19) % seat(skc8, skc15) % set(skc8, skc10) % set(skc8, skc9) % set(skc8, skc13) % singleton(skc8, skc15) % singleton(skc8, skc14) % singleton(skc8, skf12(skc13, skc8)) % singleton(skc8, skc19) % singleton(skc8, skf10(skc13, skc8)) % singleton(skc8, skc18) % singleton(skc8, skf8(_0)) % specific(skc8, skc15) % specific(skc8, skc14) % specific(skc8, skf12(skc13, skc8)) % specific(skc8, skf10(skc13, skc8)) % specific(skc8, skc18) % specific(skc8, skf8(_0)) % state(skc8, skf8(_0)) % street(skc8, skc15) % thing(skc8, skc15) % thing(skc8, skc14) % thing(skc8, skf12(skc13, skc8)) % thing(skc8, skc19) % thing(skc8, skf10(skc13, skc8)) % thing(skc8, skc18) % thing(skc8, skf8(_0)) % transport(skc8, skc18) % two(skc8, skc13) % unisex(skc8, skc15) % unisex(skc8, skc14) % unisex(skc8, skc19) % unisex(skc8, skc18) % unisex(skc8, skf8(_0)) % vehicle(skc8, skc18) % way(skc8, skc15) % white(skc8, skc18) % young(skc8, skf12(skc13, skc8)) % young(skc8, skf10(skc13, skc8)) % END OF MODEL % EOF %------------------------------------------------------------------------------