TSTP Solution File: LAT387+1 by Vampire-SAT---4.8

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Vampire-SAT---4.8
% Problem  : LAT387+1 : TPTP v8.1.2. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : vampire --mode casc_sat -m 16384 --cores 7 -t %d %s

% Computer : n011.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  : 300s
% DateTime : Tue Apr 30 13:27:21 EDT 2024

% Result   : CounterSatisfiable 0.15s 0.39s
% Output   : FiniteModel 0.15s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.13  % Problem    : LAT387+1 : TPTP v8.1.2. Released v4.0.0.
% 0.07/0.15  % Command    : vampire --mode casc_sat -m 16384 --cores 7 -t %d %s
% 0.15/0.36  % Computer : n011.cluster.edu
% 0.15/0.36  % Model    : x86_64 x86_64
% 0.15/0.36  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.15/0.36  % Memory   : 8042.1875MB
% 0.15/0.36  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.15/0.36  % CPULimit   : 300
% 0.15/0.36  % WCLimit    : 300
% 0.15/0.36  % DateTime   : Mon Apr 29 21:41:31 EDT 2024
% 0.15/0.36  % CPUTime    : 
% 0.15/0.37  % (27984)Running in auto input_syntax mode. Trying TPTP
% 0.15/0.38  % (27988)WARNING: value z3 for option sas not known
% 0.15/0.38  % (27989)fmb+10_1_bce=on:fmbsr=1.5:nm=32_533 on theBenchmark for (533ds/0Mi)
% 0.15/0.38  % (27986)fmb+10_1_bce=on:fmbas=function:fmbsr=1.2:fde=unused:nm=0_846 on theBenchmark for (846ds/0Mi)
% 0.15/0.38  % (27988)dis+2_11_add=large:afr=on:amm=off:bd=off:bce=on:fsd=off:fde=none:gs=on:gsaa=full_model:gsem=off:irw=on:msp=off:nm=4:nwc=1.3:sas=z3:sims=off:sac=on:sp=reverse_arity_569 on theBenchmark for (569ds/0Mi)
% 0.15/0.38  % (27990)ott+10_10:1_add=off:afr=on:amm=off:anc=all:bd=off:bs=on:fsr=off:irw=on:lma=on:msp=off:nm=4:nwc=4.0:sac=on:sp=reverse_frequency_531 on theBenchmark for (531ds/0Mi)
% 0.15/0.38  % (27991)ott-10_8_av=off:bd=preordered:bs=on:fsd=off:fsr=off:fde=unused:irw=on:lcm=predicate:lma=on:nm=4:nwc=1.7:sp=frequency_522 on theBenchmark for (522ds/0Mi)
% 0.15/0.38  % (27992)ott+1_64_av=off:bd=off:bce=on:fsd=off:fde=unused:gsp=on:irw=on:lcm=predicate:lma=on:nm=2:nwc=1.1:sims=off:urr=on_497 on theBenchmark for (497ds/0Mi)
% 0.15/0.38  % (27987)fmb+10_1_bce=on:fmbdsb=on:fmbes=contour:fmbswr=3:fde=none:nm=0_793 on theBenchmark for (793ds/0Mi)
% 0.15/0.39  TRYING [1]
% 0.15/0.39  TRYING [1]
% 0.15/0.39  TRYING [2]
% 0.15/0.39  TRYING [2]
% 0.15/0.39  Finite Model Found!
% 0.15/0.39  % SZS status CounterSatisfiable for theBenchmark
% 0.15/0.39  % (27989)First to succeed.
% 0.15/0.39  % SZS output start FiniteModel for theBenchmark
% 0.15/0.39  tff(declare_$i,type,$i:$tType).
% 0.15/0.39  tff(declare_$i1,type,xU:$i).
% 0.15/0.39  tff(declare_$i2,type,xS:$i).
% 0.15/0.39  tff(finite_domain,axiom,
% 0.15/0.39        ! [X:$i] : (
% 0.15/0.39           X = xU | X = xS
% 0.15/0.39        ) ).
% 0.15/0.39  
% 0.15/0.39  tff(distinct_domain,axiom,
% 0.15/0.39           xU != xS
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_bool,type,$o:$tType).
% 0.15/0.39  tff(declare_bool1,type,fmb_bool_1:$o).
% 0.15/0.39  tff(finite_domain,axiom,
% 0.15/0.39        ! [X:$o] : (
% 0.15/0.39           X = fmb_bool_1
% 0.15/0.39        ) ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_xf,type,xf:$i).
% 0.15/0.39  tff(xf_definition,axiom,xf = xU).
% 0.15/0.39  tff(declare_xT,type,xT:$i).
% 0.15/0.39  tff(xT_definition,axiom,xT = xS).
% 0.15/0.39  tff(declare_xP,type,xP:$i).
% 0.15/0.39  tff(xP_definition,axiom,xP = xS).
% 0.15/0.39  tff(declare_xp,type,xp:$i).
% 0.15/0.39  tff(xp_definition,axiom,xp = xU).
% 0.15/0.39  tff(declare_szDzozmdt0,type,szDzozmdt0: $i > $i).
% 0.15/0.39  tff(function_szDzozmdt0,axiom,
% 0.15/0.39             szDzozmdt0(xU) = xU
% 0.15/0.39  %         szDzozmdt0(xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_szRzazndt0,type,szRzazndt0: $i > $i).
% 0.15/0.39  tff(function_szRzazndt0,axiom,
% 0.15/0.39             szRzazndt0(xU) = xU
% 0.15/0.39  %         szRzazndt0(xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_sdtlpdtrp0,type,sdtlpdtrp0: $i * $i > $i).
% 0.15/0.39  tff(function_sdtlpdtrp0,axiom,
% 0.15/0.39             sdtlpdtrp0(xU,xU) = xU
% 0.15/0.39           & sdtlpdtrp0(xU,xS) = xS
% 0.15/0.39  %         sdtlpdtrp0(xS,xU) undefined in model
% 0.15/0.39  %         sdtlpdtrp0(xS,xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_cS1142,type,cS1142: $i > $i).
% 0.15/0.39  tff(function_cS1142,axiom,
% 0.15/0.39             cS1142(xU) = xS
% 0.15/0.39  %         cS1142(xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_cS1241,type,cS1241: $i * $i * $i > $i).
% 0.15/0.39  tff(function_cS1241,axiom,
% 0.15/0.39             cS1241(xU,xU,xU) = xU
% 0.15/0.39           & cS1241(xU,xU,xS) = xS
% 0.15/0.39  %         cS1241(xU,xS,xU) undefined in model
% 0.15/0.39  %         cS1241(xU,xS,xS) undefined in model
% 0.15/0.39           & cS1241(xS,xU,xU) = xU
% 0.15/0.39           & cS1241(xS,xU,xS) = xU
% 0.15/0.39  %         cS1241(xS,xS,xU) undefined in model
% 0.15/0.39  %         cS1241(xS,xS,xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aSet0,type,aSet0: $i > $o ).
% 0.15/0.39  tff(predicate_aSet0,axiom,
% 0.15/0.39             aSet0(xU)
% 0.15/0.39           & ~aSet0(xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aElement0,type,aElement0: $i > $o ).
% 0.15/0.39  tff(predicate_aElement0,axiom,
% 0.15/0.39             aElement0(xU)
% 0.15/0.39           & aElement0(xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aElementOf0,type,aElementOf0: $i * $i > $o ).
% 0.15/0.39  tff(predicate_aElementOf0,axiom,
% 0.15/0.39             aElementOf0(xU,xU)
% 0.15/0.39           & ~aElementOf0(xU,xS)
% 0.15/0.39           & aElementOf0(xS,xU)
% 0.15/0.39           & ~aElementOf0(xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_isEmpty0,type,isEmpty0: $i > $o ).
% 0.15/0.39  tff(predicate_isEmpty0,axiom,
% 0.15/0.39             ~isEmpty0(xU)
% 0.15/0.39           & ~isEmpty0(xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aSubsetOf0,type,aSubsetOf0: $i * $i > $o ).
% 0.15/0.39  tff(predicate_aSubsetOf0,axiom,
% 0.15/0.39             aSubsetOf0(xU,xU)
% 0.15/0.39           & aSubsetOf0(xU,xS)
% 0.15/0.39           & ~aSubsetOf0(xS,xU)
% 0.15/0.39           & aSubsetOf0(xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_sdtlseqdt0,type,sdtlseqdt0: $i * $i > $o ).
% 0.15/0.39  tff(predicate_sdtlseqdt0,axiom,
% 0.15/0.39             sdtlseqdt0(xU,xU)
% 0.15/0.39           & sdtlseqdt0(xU,xS)
% 0.15/0.39           & ~sdtlseqdt0(xS,xU)
% 0.15/0.39           & sdtlseqdt0(xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aLowerBoundOfIn0,type,aLowerBoundOfIn0: $i * $i * $i > $o ).
% 0.15/0.39  tff(predicate_aLowerBoundOfIn0,axiom,
% 0.15/0.39             aLowerBoundOfIn0(xU,xU,xU)
% 0.15/0.39           & ~aLowerBoundOfIn0(xU,xU,xS)
% 0.15/0.39           & aLowerBoundOfIn0(xU,xS,xU)
% 0.15/0.39           & ~aLowerBoundOfIn0(xU,xS,xS)
% 0.15/0.39           & ~aLowerBoundOfIn0(xS,xU,xU)
% 0.15/0.39           & ~aLowerBoundOfIn0(xS,xU,xS)
% 0.15/0.39           & aLowerBoundOfIn0(xS,xS,xU)
% 0.15/0.39           & ~aLowerBoundOfIn0(xS,xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aUpperBoundOfIn0,type,aUpperBoundOfIn0: $i * $i * $i > $o ).
% 0.15/0.39  tff(predicate_aUpperBoundOfIn0,axiom,
% 0.15/0.39             ~aUpperBoundOfIn0(xU,xU,xU)
% 0.15/0.39           & ~aUpperBoundOfIn0(xU,xU,xS)
% 0.15/0.39           & aUpperBoundOfIn0(xU,xS,xU)
% 0.15/0.39           & ~aUpperBoundOfIn0(xU,xS,xS)
% 0.15/0.39           & aUpperBoundOfIn0(xS,xU,xU)
% 0.15/0.39           & ~aUpperBoundOfIn0(xS,xU,xS)
% 0.15/0.39           & aUpperBoundOfIn0(xS,xS,xU)
% 0.15/0.39           & ~aUpperBoundOfIn0(xS,xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aInfimumOfIn0,type,aInfimumOfIn0: $i * $i * $i > $o ).
% 0.15/0.39  tff(predicate_aInfimumOfIn0,axiom,
% 0.15/0.39             aInfimumOfIn0(xU,xU,xU)
% 0.15/0.39           & ~aInfimumOfIn0(xU,xU,xS)
% 0.15/0.39           & aInfimumOfIn0(xU,xS,xU)
% 0.15/0.39           & ~aInfimumOfIn0(xU,xS,xS)
% 0.15/0.39           & ~aInfimumOfIn0(xS,xU,xU)
% 0.15/0.39           & ~aInfimumOfIn0(xS,xU,xS)
% 0.15/0.39           & ~aInfimumOfIn0(xS,xS,xU)
% 0.15/0.39           & ~aInfimumOfIn0(xS,xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aSupremumOfIn0,type,aSupremumOfIn0: $i * $i * $i > $o ).
% 0.15/0.39  tff(predicate_aSupremumOfIn0,axiom,
% 0.15/0.39             ~aSupremumOfIn0(xU,xU,xU)
% 0.15/0.39           & ~aSupremumOfIn0(xU,xU,xS)
% 0.15/0.39           & ~aSupremumOfIn0(xU,xS,xU)
% 0.15/0.39           & ~aSupremumOfIn0(xU,xS,xS)
% 0.15/0.39           & aSupremumOfIn0(xS,xU,xU)
% 0.15/0.39           & ~aSupremumOfIn0(xS,xU,xS)
% 0.15/0.39           & ~aSupremumOfIn0(xS,xS,xU)
% 0.15/0.39           & ~aSupremumOfIn0(xS,xS,xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aCompleteLattice0,type,aCompleteLattice0: $i > $o ).
% 0.15/0.39  tff(predicate_aCompleteLattice0,axiom,
% 0.15/0.39             aCompleteLattice0(xU)
% 0.15/0.39           & ~aCompleteLattice0(xS)
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aFunction0,type,aFunction0: $i > $o ).
% 0.15/0.39  tff(predicate_aFunction0,axiom,
% 0.15/0.39             aFunction0(xU)
% 0.15/0.39  %         aFunction0(xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_isOn0,type,isOn0: $i * $i > $o ).
% 0.15/0.39  tff(predicate_isOn0,axiom,
% 0.15/0.39             isOn0(xU,xU)
% 0.15/0.39           & ~isOn0(xU,xS)
% 0.15/0.39  %         isOn0(xS,xU) undefined in model
% 0.15/0.39  %         isOn0(xS,xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_aFixedPointOf0,type,aFixedPointOf0: $i * $i > $o ).
% 0.15/0.39  tff(predicate_aFixedPointOf0,axiom,
% 0.15/0.39             aFixedPointOf0(xU,xU)
% 0.15/0.39  %         aFixedPointOf0(xU,xS) undefined in model
% 0.15/0.39           & aFixedPointOf0(xS,xU)
% 0.15/0.39  %         aFixedPointOf0(xS,xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  tff(declare_isMonotone0,type,isMonotone0: $i > $o ).
% 0.15/0.39  tff(predicate_isMonotone0,axiom,
% 0.15/0.39             isMonotone0(xU)
% 0.15/0.39  %         isMonotone0(xS) undefined in model
% 0.15/0.39  
% 0.15/0.39  ).
% 0.15/0.39  
% 0.15/0.39  % SZS output end FiniteModel for theBenchmark
% 0.15/0.39  % (27989)------------------------------
% 0.15/0.39  % (27989)Version: Vampire 4.8 (commit 8e9376e55 on 2024-01-18 13:49:33 +0100)
% 0.15/0.39  % (27989)Termination reason: Satisfiable
% 0.15/0.39  
% 0.15/0.39  % (27989)Memory used [KB]: 922
% 0.15/0.39  % (27989)Time elapsed: 0.010 s
% 0.15/0.39  % (27989)Instructions burned: 16 (million)
% 0.15/0.39  % (27989)------------------------------
% 0.15/0.39  % (27989)------------------------------
% 0.15/0.39  % (27984)Success in time 0.025 s
%------------------------------------------------------------------------------