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Vampire---5.0.1.THM-Ref.s

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%------------------------------------------------------------------------------
% File     : Vampire---5.0.1
% Problem  : SWV491+4 : TPTP v9.3.1. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM

% Computer : n010.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8046.5625MB
% OS       : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Tue Sep 29 01:16:02 PM UTC 2026

% Result   : Theorem 2.14s 1.14s
% Output   : Refutation 2.96s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   35
%            Number of leaves      :   11
% Syntax   : Number of formulae    :  105 (  19 unt;   0 def)
%            Number of atoms       :  456 ( 116 equ)
%            Maximal formula atoms :   17 (   4 avg)
%            Number of connectives :  632 ( 281   ~; 263   |;  64   &)
%                                         (   3 <=>;  21  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   16 (   6 avg)
%            Maximal term depth    :    3 (   1 avg)
%            Number of predicates  :    4 (   2 usr;   1 prp; 0-2 aty)
%            Number of functors    :   10 (  10 usr;   7 con; 0-2 aty)
%            Number of variables   :  175 ( 168   !;   7   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(f1,axiom,
    ! [X0,X1] :
      ( int_leq(X0,X1)
    <=> ( int_less(X0,X1)
        | X0 = X1 ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',int_leq) ).

fof(f2,axiom,
    ! [X0,X1,X2] :
      ( ( int_less(X0,X1)
        & int_less(X1,X2) )
     => int_less(X0,X2) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',int_less_transitive) ).

fof(f3,axiom,
    ! [X0,X1] :
      ( int_less(X0,X1)
     => X0 != X1 ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',int_less_irreflexive) ).

fof(f4,axiom,
    ! [X0,X1] :
      ( int_less(X0,X1)
      | int_leq(X1,X0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',int_less_total) ).

fof(f6,axiom,
    ! [X0,X1] : plus(X0,X1) = plus(X1,X0),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',plus_commutative) ).

fof(f7,axiom,
    ! [X0] : plus(X0,int_zero) = X0,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',plus_zero) ).

fof(f8,axiom,
    ! [X0,X1,X2,X3] :
      ( ( int_less(X0,X1)
        & int_leq(X2,X3) )
     => int_leq(plus(X0,X2),plus(X1,X3)) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',plus_and_order1) ).

fof(f9,axiom,
    ! [X0,X1] :
      ( int_less(X0,X1)
    <=> ? [X2] :
          ( plus(X0,X2) = X1
          & int_less(int_zero,X2) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',plus_and_inverse) ).

fof(f10,axiom,
    ! [X0] :
      ( int_less(int_zero,X0)
    <=> int_leq(int_one,X0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',one_successor_of_zero) ).

fof(f12,axiom,
    ! [X0,X1] :
      ( ( int_leq(int_one,X0)
        & int_leq(X0,n)
        & int_leq(int_one,X1)
        & int_leq(X1,n) )
     => ( ! [X2] :
            ( ( int_less(int_zero,X2)
              & X0 = plus(X1,X2) )
           => ! [X3] :
                ( ( int_leq(int_one,X3)
                  & int_leq(X3,X1) )
               => a(plus(X3,X2),X3) = real_zero ) )
        & ! [X3] :
            ( ( int_leq(int_one,X3)
              & int_leq(X3,X1) )
           => a(X3,X3) = real_one )
        & ! [X2] :
            ( ( int_less(int_zero,X2)
              & X1 = plus(X0,X2) )
           => ! [X3] :
                ( ( int_leq(int_one,X3)
                  & int_leq(X3,X0) )
               => a(X3,plus(X3,X2)) = real_zero ) ) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',qii) ).

fof(f13,conjecture,
    ! [X0,X1] :
      ( ( int_leq(int_one,X0)
        & int_leq(X0,n)
        & int_leq(int_one,X1)
        & int_leq(X1,n) )
     => ( ( X0 != X1
         => a(X0,X1) = real_zero )
        & ( X0 = X1
         => a(X0,X1) = real_one ) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',id) ).

fof(f14,negated_conjecture,
    ~ ! [X0,X1] :
        ( ( int_leq(int_one,X0)
          & int_leq(X0,n)
          & int_leq(int_one,X1)
          & int_leq(X1,n) )
       => ( ( X0 != X1
           => a(X0,X1) = real_zero )
          & ( X0 = X1
           => a(X0,X1) = real_one ) ) ),
    inference(negated_conjecture,[status(cth)],[f13]) ).

fof(f15,plain,
    ! [X0,X1] :
      ( ( int_leq(int_one,X0)
        & int_leq(X0,n)
        & int_leq(int_one,X1)
        & int_leq(X1,n) )
     => ( ! [X2] :
            ( ( int_less(int_zero,X2)
              & X0 = plus(X1,X2) )
           => ! [X3] :
                ( ( int_leq(int_one,X3)
                  & int_leq(X3,X1) )
               => a(plus(X3,X2),X3) = real_zero ) )
        & ! [X4] :
            ( ( int_leq(int_one,X4)
              & int_leq(X4,X1) )
           => real_one = a(X4,X4) )
        & ! [X5] :
            ( ( int_less(int_zero,X5)
              & plus(X0,X5) = X1 )
           => ! [X6] :
                ( ( int_leq(int_one,X6)
                  & int_leq(X6,X0) )
               => real_zero = a(X6,plus(X6,X5)) ) ) ) ),
    inference(rectify,[],[f12]) ).

fof(f16,plain,
    ! [X0,X1] :
      ( ( ! [X2] :
            ( ! [X3] :
                ( a(plus(X3,X2),X3) = real_zero
                | ~ int_leq(int_one,X3)
                | ~ int_leq(X3,X1) )
            | ~ int_less(int_zero,X2)
            | plus(X1,X2) != X0 )
        & ! [X4] :
            ( real_one = a(X4,X4)
            | ~ int_leq(int_one,X4)
            | ~ int_leq(X4,X1) )
        & ! [X5] :
            ( ! [X6] :
                ( real_zero = a(X6,plus(X6,X5))
                | ~ int_leq(int_one,X6)
                | ~ int_leq(X6,X0) )
            | ~ int_less(int_zero,X5)
            | plus(X0,X5) != X1 ) )
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(ennf_transformation,[],[f15]) ).

fof(f17,plain,
    ! [X0,X1] :
      ( ( ! [X2] :
            ( ! [X3] :
                ( a(plus(X3,X2),X3) = real_zero
                | ~ int_leq(int_one,X3)
                | ~ int_leq(X3,X1) )
            | ~ int_less(int_zero,X2)
            | plus(X1,X2) != X0 )
        & ! [X4] :
            ( real_one = a(X4,X4)
            | ~ int_leq(int_one,X4)
            | ~ int_leq(X4,X1) )
        & ! [X5] :
            ( ! [X6] :
                ( real_zero = a(X6,plus(X6,X5))
                | ~ int_leq(int_one,X6)
                | ~ int_leq(X6,X0) )
            | ~ int_less(int_zero,X5)
            | plus(X0,X5) != X1 ) )
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(flattening,[],[f16]) ).

fof(f18,plain,
    ? [X0,X1] :
      ( ( ( real_zero != a(X0,X1)
          & X0 != X1 )
        | ( real_one != a(X0,X1)
          & X0 = X1 ) )
      & int_leq(int_one,X0)
      & int_leq(X0,n)
      & int_leq(int_one,X1)
      & int_leq(X1,n) ),
    inference(ennf_transformation,[],[f14]) ).

fof(f19,plain,
    ? [X0,X1] :
      ( ( ( real_zero != a(X0,X1)
          & X0 != X1 )
        | ( real_one != a(X0,X1)
          & X0 = X1 ) )
      & int_leq(int_one,X0)
      & int_leq(X0,n)
      & int_leq(int_one,X1)
      & int_leq(X1,n) ),
    inference(flattening,[],[f18]) ).

fof(f20,plain,
    ! [X0,X1] :
      ( X0 != X1
      | ~ int_less(X0,X1) ),
    inference(ennf_transformation,[],[f3]) ).

fof(f21,plain,
    ! [X0,X1,X2] :
      ( int_less(X0,X2)
      | ~ int_less(X0,X1)
      | ~ int_less(X1,X2) ),
    inference(ennf_transformation,[],[f2]) ).

fof(f22,plain,
    ! [X0,X1,X2] :
      ( int_less(X0,X2)
      | ~ int_less(X0,X1)
      | ~ int_less(X1,X2) ),
    inference(flattening,[],[f21]) ).

fof(f23,plain,
    ! [X0,X1,X2,X3] :
      ( int_leq(plus(X0,X2),plus(X1,X3))
      | ~ int_less(X0,X1)
      | ~ int_leq(X2,X3) ),
    inference(ennf_transformation,[],[f8]) ).

fof(f24,plain,
    ! [X0,X1,X2,X3] :
      ( int_leq(plus(X0,X2),plus(X1,X3))
      | ~ int_less(X0,X1)
      | ~ int_leq(X2,X3) ),
    inference(flattening,[],[f23]) ).

fof(f25,plain,
    ( ( ( real_zero != a(sK0,sK1)
        & sK0 != sK1 )
      | ( real_one != a(sK0,sK1)
        & sK0 = sK1 ) )
    & int_leq(int_one,sK0)
    & int_leq(sK0,n)
    & int_leq(int_one,sK1)
    & int_leq(sK1,n) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK0,sK1]),skolemize(X0,sK0),skolemize(X1,sK1)],[f19]) ).

fof(f26,plain,
    ! [X0,X1] :
      ( ( int_less(X0,X1)
        | ! [X2] :
            ( plus(X0,X2) != X1
            | ~ int_less(int_zero,X2) ) )
      & ( ? [X2] :
            ( plus(X0,X2) = X1
            & int_less(int_zero,X2) )
        | ~ int_less(X0,X1) ) ),
    inference(nnf_transformation,[],[f9]) ).

fof(f27,plain,
    ! [X0,X1] :
      ( ( int_less(X0,X1)
        | ! [X2] :
            ( plus(X0,X2) != X1
            | ~ int_less(int_zero,X2) ) )
      & ( ? [X3] :
            ( plus(X0,X3) = X1
            & int_less(int_zero,X3) )
        | ~ int_less(X0,X1) ) ),
    inference(rectify,[],[f26]) ).

fof(f28,plain,
    ! [X0,X1] :
      ( ( int_less(X0,X1)
        | ! [X2] :
            ( plus(X0,X2) != X1
            | ~ int_less(int_zero,X2) ) )
      & ( ( plus(X0,sK2(X0,X1)) = X1
          & int_less(int_zero,sK2(X0,X1)) )
        | ~ int_less(X0,X1) ) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK2]),skolemize(X3,sK2(X0,X1))],[f27]) ).

fof(f29,plain,
    ! [X0,X1] :
      ( ( int_leq(X0,X1)
        | ( ~ int_less(X0,X1)
          & X0 != X1 ) )
      & ( int_less(X0,X1)
        | X0 = X1
        | ~ int_leq(X0,X1) ) ),
    inference(nnf_transformation,[],[f1]) ).

fof(f30,plain,
    ! [X0,X1] :
      ( ( int_leq(X0,X1)
        | ( ~ int_less(X0,X1)
          & X0 != X1 ) )
      & ( int_less(X0,X1)
        | X0 = X1
        | ~ int_leq(X0,X1) ) ),
    inference(flattening,[],[f29]) ).

fof(f31,plain,
    ! [X0] :
      ( ( int_less(int_zero,X0)
        | ~ int_leq(int_one,X0) )
      & ( int_leq(int_one,X0)
        | ~ int_less(int_zero,X0) ) ),
    inference(nnf_transformation,[],[f10]) ).

fof(f32,plain,
    ! [X0,X1,X6,X5] :
      ( real_zero = a(X6,plus(X6,X5))
      | ~ int_leq(int_one,X6)
      | ~ int_leq(X6,X0)
      | ~ int_less(int_zero,X5)
      | plus(X0,X5) != X1
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(cnf_transformation,[],[f17]) ).

fof(f33,plain,
    ! [X0,X1,X4] :
      ( real_one = a(X4,X4)
      | ~ int_leq(int_one,X4)
      | ~ int_leq(X4,X1)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(cnf_transformation,[],[f17]) ).

fof(f34,plain,
    ! [X2,X3,X0,X1] :
      ( real_zero = a(plus(X3,X2),X3)
      | ~ int_leq(int_one,X3)
      | ~ int_leq(X3,X1)
      | ~ int_less(int_zero,X2)
      | plus(X1,X2) != X0
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(cnf_transformation,[],[f17]) ).

fof(f35,plain,
    int_leq(sK1,n),
    inference(cnf_transformation,[],[f25]) ).

fof(f36,plain,
    int_leq(int_one,sK1),
    inference(cnf_transformation,[],[f25]) ).

fof(f37,plain,
    int_leq(sK0,n),
    inference(cnf_transformation,[],[f25]) ).

fof(f38,plain,
    int_leq(int_one,sK0),
    inference(cnf_transformation,[],[f25]) ).

fof(f40,plain,
    ( real_one != a(sK0,sK1)
    | sK0 != sK1 ),
    inference(cnf_transformation,[],[f25]) ).

fof(f41,plain,
    ( real_zero != a(sK0,sK1)
    | sK0 = sK1 ),
    inference(cnf_transformation,[],[f25]) ).

fof(f43,plain,
    ! [X0,X1] :
      ( X0 != X1
      | ~ int_less(X0,X1) ),
    inference(cnf_transformation,[],[f20]) ).

fof(f44,plain,
    ! [X0,X1] :
      ( int_less(int_zero,sK2(X0,X1))
      | ~ int_less(X0,X1) ),
    inference(cnf_transformation,[],[f28]) ).

fof(f45,plain,
    ! [X0,X1] :
      ( plus(X0,sK2(X0,X1)) = X1
      | ~ int_less(X0,X1) ),
    inference(cnf_transformation,[],[f28]) ).

fof(f47,plain,
    ! [X0] : plus(X0,int_zero) = X0,
    inference(cnf_transformation,[],[f7]) ).

fof(f48,plain,
    ! [X0,X1] :
      ( int_less(X0,X1)
      | int_leq(X1,X0) ),
    inference(cnf_transformation,[],[f4]) ).

fof(f49,plain,
    ! [X0,X1] :
      ( int_less(X0,X1)
      | X0 = X1
      | ~ int_leq(X0,X1) ),
    inference(cnf_transformation,[],[f30]) ).

fof(f50,plain,
    ! [X0,X1] :
      ( int_leq(X0,X1)
      | X0 != X1 ),
    inference(cnf_transformation,[],[f30]) ).

fof(f52,plain,
    ! [X0] :
      ( int_leq(int_one,X0)
      | ~ int_less(int_zero,X0) ),
    inference(cnf_transformation,[],[f31]) ).

fof(f53,plain,
    ! [X0] :
      ( int_less(int_zero,X0)
      | ~ int_leq(int_one,X0) ),
    inference(cnf_transformation,[],[f31]) ).

fof(f55,plain,
    ! [X2,X0,X1] :
      ( int_less(X0,X2)
      | ~ int_less(X0,X1)
      | ~ int_less(X1,X2) ),
    inference(cnf_transformation,[],[f22]) ).

fof(f56,plain,
    ! [X2,X3,X0,X1] :
      ( int_leq(plus(X0,X2),plus(X1,X3))
      | ~ int_less(X0,X1)
      | ~ int_leq(X2,X3) ),
    inference(cnf_transformation,[],[f24]) ).

fof(f57,plain,
    ! [X0,X1] : plus(X0,X1) = plus(X1,X0),
    inference(cnf_transformation,[],[f6]) ).

fof(f59,plain,
    ! [X2,X3,X1] :
      ( real_zero = a(plus(X3,X2),X3)
      | ~ int_leq(int_one,X3)
      | ~ int_leq(X3,X1)
      | ~ int_less(int_zero,X2)
      | ~ int_leq(int_one,plus(X1,X2))
      | ~ int_leq(plus(X1,X2),n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n) ),
    inference(equality_resolution,[],[f34]) ).

fof(f60,plain,
    ! [X0,X6,X5] :
      ( real_zero = a(X6,plus(X6,X5))
      | ~ int_leq(int_one,X6)
      | ~ int_leq(X6,X0)
      | ~ int_less(int_zero,X5)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(int_one,plus(X0,X5))
      | ~ int_leq(plus(X0,X5),n) ),
    inference(equality_resolution,[],[f32]) ).

fof(f61,plain,
    ! [X1] : ~ int_less(X1,X1),
    inference(equality_resolution,[],[f43]) ).

fof(f63,plain,
    ! [X1] : int_leq(X1,X1),
    inference(equality_resolution,[],[f50]) ).

fof(f66,plain,
    ! [X0] : plus(int_zero,X0) = X0,
    inference(superposition,[],[f57,f47]) ).

fof(f83,plain,
    ! [X0,X1] :
      ( ~ int_less(X1,X0)
      | ~ int_less(X0,X1) ),
    inference(resolution,[],[f55,f61]) ).

fof(f92,plain,
    ! [X0,X1] :
      ( ~ int_less(X0,X1)
      | X0 = X1
      | ~ int_leq(X1,X0) ),
    inference(resolution,[],[f83,f49]) ).

fof(f106,plain,
    ! [X2,X0,X1] :
      ( int_leq(plus(X1,X2),X0)
      | ~ int_less(X1,X0)
      | ~ int_leq(X2,int_zero) ),
    inference(superposition,[],[f56,f47]) ).

fof(f118,plain,
    ! [X2,X0,X1] :
      ( real_zero = a(X0,X1)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X2)
      | ~ int_less(int_zero,sK2(X1,X0))
      | ~ int_leq(int_one,plus(X2,sK2(X1,X0)))
      | ~ int_leq(plus(X2,sK2(X1,X0)),n)
      | ~ int_leq(int_one,X2)
      | ~ int_leq(X2,n)
      | ~ int_less(X1,X0) ),
    inference(superposition,[],[f59,f45]) ).

fof(f120,plain,
    ! [X2,X0,X1] :
      ( ~ int_leq(plus(X2,sK2(X1,X0)),n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X2)
      | ~ int_leq(int_one,plus(X2,sK2(X1,X0)))
      | real_zero = a(X0,X1)
      | ~ int_leq(int_one,X2)
      | ~ int_leq(X2,n)
      | ~ int_less(X1,X0) ),
    inference(forward_subsumption_resolution,[],[f118,f44]) ).

fof(f131,plain,
    ! [X2,X0,X1] :
      ( real_zero = a(X1,X0)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X2)
      | ~ int_less(int_zero,sK2(X1,X0))
      | ~ int_leq(int_one,X2)
      | ~ int_leq(X2,n)
      | ~ int_leq(int_one,plus(X2,sK2(X1,X0)))
      | ~ int_leq(plus(X2,sK2(X1,X0)),n)
      | ~ int_less(X1,X0) ),
    inference(superposition,[],[f60,f45]) ).

fof(f133,plain,
    ! [X2,X0,X1] :
      ( ~ int_leq(plus(X2,sK2(X1,X0)),n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X2)
      | ~ int_leq(int_one,X2)
      | ~ int_leq(X2,n)
      | ~ int_leq(int_one,plus(X2,sK2(X1,X0)))
      | real_zero = a(X1,X0)
      | ~ int_less(X1,X0) ),
    inference(forward_subsumption_resolution,[],[f131,f44]) ).

fof(f147,plain,
    ! [X0,X1] :
      ( int_leq(X0,X1)
      | ~ int_less(int_zero,X1)
      | ~ int_leq(X0,int_zero) ),
    inference(superposition,[],[f106,f66]) ).

fof(f247,plain,
    ! [X0,X1] :
      ( ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X1)
      | ~ int_leq(int_one,X0)
      | real_zero = a(X0,X1)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_less(X1,X0)
      | ~ int_less(X1,X0) ),
    inference(superposition,[],[f120,f45]) ).

fof(f251,plain,
    ! [X0,X1] :
      ( ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X1)
      | ~ int_leq(int_one,X0)
      | real_zero = a(X0,X1)
      | ~ int_leq(X1,n)
      | ~ int_less(X1,X0) ),
    inference(duplicate_literal_removal,[],[f247]) ).

fof(f253,plain,
    ! [X0,X1] :
      ( real_zero = a(X0,X1)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_leq(X1,n)
      | ~ int_less(X1,X0) ),
    inference(forward_subsumption_resolution,[],[f251,f63]) ).

fof(f259,plain,
    ! [X0,X1] :
      ( ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X1)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | real_zero = a(X1,X0)
      | ~ int_less(X1,X0)
      | ~ int_less(X1,X0) ),
    inference(superposition,[],[f133,f45]) ).

fof(f263,plain,
    ! [X0,X1] :
      ( ~ int_leq(X0,n)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | real_zero = a(X1,X0)
      | ~ int_less(X1,X0) ),
    inference(duplicate_literal_removal,[],[f259]) ).

fof(f265,plain,
    ! [X0,X1] :
      ( real_zero = a(X1,X0)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n)
      | ~ int_less(X1,X0) ),
    inference(forward_subsumption_resolution,[],[f263,f63]) ).

fof(f283,plain,
    ! [X0,X1] :
      ( X0 = X1
      | ~ int_leq(X1,X0)
      | X0 = X1
      | ~ int_leq(X0,X1) ),
    inference(resolution,[],[f92,f49]) ).

fof(f287,plain,
    ! [X0,X1] :
      ( ~ int_leq(X1,X0)
      | X0 = X1
      | ~ int_leq(X0,X1) ),
    inference(duplicate_literal_removal,[],[f283]) ).

fof(f607,plain,
    ( real_zero != real_zero
    | sK0 = sK1
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(sK0,n)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK1,sK0) ),
    inference(superposition,[],[f41,f253]) ).

fof(f611,plain,
    ( sK0 = sK1
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(sK0,n)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK1,sK0) ),
    inference(trivial_inequality_removal,[],[f607]) ).

fof(f614,plain,
    ( sK0 = sK1
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(sK0,n)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK1,sK0) ),
    inference(forward_subsumption_resolution,[],[f611,f36]) ).

fof(f615,plain,
    ( sK0 = sK1
    | ~ int_leq(sK0,n)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK1,sK0) ),
    inference(forward_subsumption_resolution,[],[f614,f38]) ).

fof(f616,plain,
    ( sK0 = sK1
    | ~ int_leq(sK1,n)
    | ~ int_less(sK1,sK0) ),
    inference(forward_subsumption_resolution,[],[f615,f37]) ).

fof(f617,plain,
    ( ~ int_less(sK1,sK0)
    | sK0 = sK1 ),
    inference(forward_subsumption_resolution,[],[f616,f35]) ).

fof(f619,plain,
    ( sK0 = sK1
    | sK0 = sK1
    | ~ int_leq(sK1,sK0) ),
    inference(resolution,[],[f617,f49]) ).

fof(f621,plain,
    ( ~ int_leq(sK1,sK0)
    | sK0 = sK1 ),
    inference(duplicate_literal_removal,[],[f619]) ).

fof(f624,plain,
    ( real_zero != real_zero
    | sK0 = sK1
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(sK0,n)
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK0,sK1) ),
    inference(superposition,[],[f41,f265]) ).

fof(f628,plain,
    ( sK0 = sK1
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(sK0,n)
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK0,sK1) ),
    inference(trivial_inequality_removal,[],[f624]) ).

fof(f631,plain,
    ( sK0 = sK1
    | ~ int_leq(sK0,n)
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK0,sK1) ),
    inference(forward_subsumption_resolution,[],[f628,f38]) ).

fof(f632,plain,
    ( sK0 = sK1
    | ~ int_leq(int_one,sK1)
    | ~ int_leq(sK1,n)
    | ~ int_less(sK0,sK1) ),
    inference(forward_subsumption_resolution,[],[f631,f37]) ).

fof(f633,plain,
    ( sK0 = sK1
    | ~ int_leq(sK1,n)
    | ~ int_less(sK0,sK1) ),
    inference(forward_subsumption_resolution,[],[f632,f36]) ).

fof(f634,plain,
    ( ~ int_less(sK0,sK1)
    | sK0 = sK1 ),
    inference(forward_subsumption_resolution,[],[f633,f35]) ).

fof(f637,plain,
    ( sK0 = sK1
    | int_leq(sK1,sK0) ),
    inference(resolution,[],[f634,f48]) ).

fof(f703,plain,
    sK0 = sK1,
    inference(forward_subsumption_resolution,[],[f637,f621]) ).

fof(f706,plain,
    ( real_one != a(sK0,sK0)
    | sK0 != sK0 ),
    inference(superposition,[],[f40,f703]) ).

fof(f721,plain,
    real_one != a(sK0,sK0),
    inference(trivial_inequality_removal,[],[f706]) ).

fof(f734,plain,
    ! [X0,X1] :
      ( real_one != real_one
      | ~ int_leq(int_one,sK0)
      | ~ int_leq(sK0,X0)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n) ),
    inference(superposition,[],[f721,f33]) ).

fof(f739,plain,
    ! [X0,X1] :
      ( ~ int_leq(int_one,sK0)
      | ~ int_leq(sK0,X0)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n) ),
    inference(trivial_inequality_removal,[],[f734]) ).

fof(f740,plain,
    ! [X0,X1] :
      ( ~ int_leq(sK0,X0)
      | ~ int_leq(int_one,X1)
      | ~ int_leq(X1,n)
      | ~ int_leq(int_one,X0)
      | ~ int_leq(X0,n) ),
    inference(forward_subsumption_resolution,[],[f739,f38]) ).

fof(f885,plain,
    ( ~ int_leq(sK0,n)
    | ~ int_leq(int_one,sK0)
    | ~ int_leq(int_one,n)
    | ~ int_leq(n,n) ),
    inference(factoring,[],[f740]) ).

fof(f886,plain,
    ( ~ int_leq(int_one,sK0)
    | ~ int_leq(int_one,n)
    | ~ int_leq(n,n) ),
    inference(forward_subsumption_resolution,[],[f885,f37]) ).

fof(f894,plain,
    ( ~ int_leq(int_one,n)
    | ~ int_leq(n,n) ),
    inference(forward_subsumption_resolution,[],[f886,f38]) ).

fof(f898,plain,
    ~ int_leq(int_one,n),
    inference(forward_subsumption_resolution,[],[f894,f63]) ).

fof(f953,plain,
    ( ~ int_leq(n,sK0)
    | n = sK0 ),
    inference(resolution,[],[f287,f37]) ).

fof(f978,plain,
    ~ int_less(int_zero,n),
    inference(resolution,[],[f898,f52]) ).

fof(f987,plain,
    int_leq(n,int_zero),
    inference(resolution,[],[f978,f48]) ).

fof(f1045,plain,
    ( n = sK0
    | ~ int_less(int_zero,sK0)
    | ~ int_leq(n,int_zero) ),
    inference(resolution,[],[f953,f147]) ).

fof(f1048,plain,
    ( ~ int_less(int_zero,sK0)
    | n = sK0 ),
    inference(forward_subsumption_resolution,[],[f1045,f987]) ).

fof(f1095,plain,
    ( n = sK0
    | ~ int_leq(int_one,sK0) ),
    inference(resolution,[],[f1048,f53]) ).

fof(f1100,plain,
    n = sK0,
    inference(forward_subsumption_resolution,[],[f1095,f38]) ).

fof(f1102,plain,
    int_leq(int_one,n),
    inference(superposition,[],[f38,f1100]) ).

fof(f1141,plain,
    $false,
    inference(forward_subsumption_resolution,[],[f1102,f898]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : SWV491+4 : TPTP v9.3.1. Released v4.0.0.
% 0.00/0.05  % Command  : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.09/0.20  % Computer : n010.cluster.edu
% 0.09/0.20  % Model    : x86_64 x86_64
% 0.09/0.20  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.20  % Memory   : 8046.5625MB
% 0.09/0.20  % OS       : Linux 6.8.0-71-generic
% 0.09/0.20  % CPULimit : 300
% 0.09/0.20  % WCLimit  : 300
% 0.09/0.20  % DateTime : Mon Sep 28 11:15:02 UTC 2026
% 0.09/0.20  % CPUTime  : 
% 0.09/0.20  Running run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.09/0.25  Running first-order theorem proving
% 0.09/0.25  Running: /export/starexec/sandbox2/solver/bin/vampire --input_syntax tptp --output_axiom_names on --mode casc -m 16384 --cores 7 -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 2.14/1.14  % (1859270)Detected formulas, will run a generic FOF schedule.
% 2.14/1.14  % (1859299)dis-1010_2:3_sil=16000:sp=reverse_frequency:random_seed=4181917251:i=119:av=off:ss=axioms_2999 on theBenchmark for (2999ds/119Mi)
% 2.14/1.14  % (1859295)lrs+10_1_ncem=casc2026/models/loop8.pt:sil=128000:tgt=full:npcc=on:drc=off:sp=weighted_frequency:spb=goal:fd=preordered:foolp=on:random_seed=3292632212:i=141193_2999 on theBenchmark for (2999ds/141193Mi)
% 2.14/1.14  % (1859299)First to succeed.
% 2.14/1.14  % (1859299)Solution written to "/export/starexec/sandbox2/tmp/vampire-proof-1859270"
% 2.14/1.14  % (1859296)lrs+11_1_ncem=casc2026/models/loop8.pt:sil=128000:npcc=on:lma=off:spb=units:urr=ec_only:bce=on:s2agt=64:updr=off:random_seed=1939378127:i=134677:sd=20:aac=none:nm=16:ss=included:sgt=10_2999 on theBenchmark for (2999ds/134677Mi)
% 2.14/1.14  % (1859297)lrs+1010_1_anc=all:sfv=off:to=kbo:ncem=casc2026/models/loop7.pt:sil=128000:npcc=on:prc=on:sos=all:bsr=unit_only:sac=on:random_seed=2757910322:i=141695:sd=1:nm=32:gsp=on:ss=included_2999 on theBenchmark for (2999ds/141695Mi)
% 2.14/1.14  % (1859298)lrs+1010_1_to=lpo:sil=32000:sos=on:spb=goal_then_units:bce=on:random_seed=37727796:i=109:sd=1:ins=1:gsp=on:ss=axioms_2999 on theBenchmark for (2999ds/109Mi)
% 2.14/1.14  % (1859300)dis-1011_1_sil=16000:fde=unused:s2agt=70:random_seed=2077645042:s2a=on:i=139:gtg=position_2999 on theBenchmark for (2999ds/139Mi)
% 2.14/1.14  % (1859301)dis-21_1_sil=8000:lcm=predicate:random_seed=1495671418:st=5:avsq=on:i=129:avsqr=1,16:sd=3:aac=none:ep=RS:fsr=off:ss=included_2999 on theBenchmark for (2999ds/129Mi)
% 2.14/1.14  % (1859298)Instruction limit reached! 
% 2.14/1.14  % (1859298)------------------------------
% 2.14/1.14  % (1859298)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.14/1.14  % (1859298)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.14/1.14  % (1859298)CaDiCaL version: 2.1.3
% 2.14/1.14  % (1859298)Termination reason: Instruction limit
% 2.14/1.14  % (1859298)Termination phase: Saturation
% 2.14/1.14  % (1859298)Time elapsed: 0.055 s
% 2.14/1.14  % (1859298)Peak memory usage: 88 MB
% 2.14/1.14  % (1859298)Instructions burned: 110 (million)
% 2.14/1.14  % (1859300)Instruction limit reached! 
% 2.14/1.14  % (1859300)------------------------------
% 2.14/1.14  % (1859300)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.14/1.14  % (1859300)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.14/1.14  % (1859300)CaDiCaL version: 2.1.3
% 2.14/1.14  % (1859300)Termination reason: Instruction limit
% 2.14/1.14  % (1859300)Termination phase: Saturation
% 2.14/1.14  % (1859300)Time elapsed: 0.097 s
% 2.14/1.14  % (1859300)Peak memory usage: 90 MB
% 2.14/1.14  % (1859300)Instructions burned: 139 (million)
% 2.14/1.14  % (1859301)Instruction limit reached! 
% 2.14/1.14  % (1859301)------------------------------
% 2.14/1.14  % (1859301)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.14/1.14  % (1859301)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.14/1.14  % (1859301)CaDiCaL version: 2.1.3
% 2.14/1.14  % (1859301)Termination reason: Instruction limit
% 2.14/1.14  % (1859301)Termination phase: Saturation
% 2.14/1.14  % (1859301)Time elapsed: 0.077 s
% 2.14/1.14  % (1859301)Peak memory usage: 89 MB
% 2.14/1.14  % (1859301)Instructions burned: 129 (million)
% 2.14/1.14  % (1859299)Refutation found. Thanks to Tanya!
% 2.14/1.14  % SZS status Theorem for theBenchmark
% 2.14/1.14  % SZS output start Proof for theBenchmark
% See solution above
% 2.96/1.38  % (1859299)------------------------------
% 2.96/1.38  % (1859299)Version: Vampire 5.0.1 (Release build, commit ea8961452 on 2026-07-16 15:14:34 +0200)
% 2.96/1.38  % (1859299)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 2.96/1.38  % (1859299)CaDiCaL version: 2.1.3
% 2.96/1.38  % (1859299)Termination reason: Refutation
% 2.96/1.38  % (1859299)Time elapsed: 0.020 s
% 2.96/1.38  % (1859299)Peak memory usage: 89 MB
% 2.96/1.38  % (1859299)Instructions burned: 58 (million)
% 2.96/1.38  % (1859299)------------------------------
% 2.96/1.38  % (1859299)------------------------------
% 2.96/1.38  % (1859270)Success in time 0.298 s
% 2.96/1.38  % Vampire exiting
%------------------------------------------------------------------------------