TSTP Solution File: SYO844+1 by Crossbow---0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Crossbow---0.1
% Problem  : SYO844+1 : TPTP v8.1.0. Released v7.5.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : do_Crossbow---0.1 %s

% Computer : n018.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 : Thu Jul 21 14:35:59 EDT 2022

% Result   : CounterSatisfiable 5.41s 5.65s
% Output   : FiniteModel 5.41s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.03/0.11  % Problem    : SYO844+1 : TPTP v8.1.0. Released v7.5.0.
% 0.03/0.12  % Command    : do_Crossbow---0.1 %s
% 0.11/0.33  % Computer : n018.cluster.edu
% 0.11/0.33  % Model    : x86_64 x86_64
% 0.11/0.33  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.11/0.33  % Memory   : 8042.1875MB
% 0.11/0.33  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.11/0.33  % CPULimit   : 300
% 0.11/0.33  % WCLimit    : 600
% 0.11/0.33  % DateTime   : Fri Jul  8 17:35:55 EDT 2022
% 0.11/0.33  % CPUTime    : 
% 0.11/0.33  /export/starexec/sandbox/solver/bin
% 0.11/0.33  crossbow.opt
% 0.11/0.33  do_Crossbow---0.1
% 0.11/0.33  eprover
% 0.11/0.33  runsolver
% 0.11/0.33  starexec_run_Crossbow---0.1
% 5.41/5.65  % SZS status CounterSatisfiable for theBenchmark.p
% 5.41/5.65  % SZS output start FiniteModel for theBenchmark.p
% 5.41/5.65  % domain size: 6
% 5.41/5.65  fof(interp, fi_domain, ![X] : (X = 0 | X = 1 | X = 2 | X = 3 | X = 4 | X = 5)).
% 5.41/5.65  fof(interp, fi_functors, a0 = 0).
% 5.41/5.65  fof(interp, fi_functors, a1 = 2).
% 5.41/5.65  fof(interp, fi_functors, a2 = 1).
% 5.41/5.65  fof(interp, fi_functors, a3 = 3).
% 5.41/5.65  fof(interp, fi_functors, a4 = 3).
% 5.41/5.65  fof(interp, fi_predicates, ~aal2(0) & aal2(1) & aal2(2) & ~aal2(3) & ~aal2(4) &
% 5.41/5.65    aal2(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aal3(0) & ~aal3(1) & aal3(2) & ~aal3(3) & ~aal3(4) &
% 5.41/5.65    aal3(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aal4(0) & ~aal4(1) & aal4(2) & ~aal4(3) & ~aal4(4) &
% 5.41/5.65    ~aal4(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aal5(0) & ~aal5(1) & ~aal5(2) & ~aal5(3) & ~aal5(4) &
% 5.41/5.65    ~aal5(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aal6(0) & ~aal6(1) & ~aal6(2) & ~aal6(3) & ~aal6(4) &
% 5.41/5.65    ~aal6(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~adisjoint(0, 0) & ~adisjoint(0, 1) &
% 5.41/5.65    ~adisjoint(0, 2) &
% 5.41/5.65    ~adisjoint(0, 3) &
% 5.41/5.65    ~adisjoint(0, 4) &
% 5.41/5.65    ~adisjoint(0, 5) &
% 5.41/5.65    ~adisjoint(1, 0) &
% 5.41/5.65    ~adisjoint(1, 1) &
% 5.41/5.65    ~adisjoint(1, 2) &
% 5.41/5.65    ~adisjoint(1, 3) &
% 5.41/5.65    ~adisjoint(1, 4) &
% 5.41/5.65    ~adisjoint(1, 5) &
% 5.41/5.65    ~adisjoint(2, 0) &
% 5.41/5.65    ~adisjoint(2, 1) &
% 5.41/5.65    ~adisjoint(2, 2) &
% 5.41/5.65    ~adisjoint(2, 3) &
% 5.41/5.65    ~adisjoint(2, 4) &
% 5.41/5.65    ~adisjoint(2, 5) &
% 5.41/5.65    ~adisjoint(3, 0) &
% 5.41/5.65    ~adisjoint(3, 1) &
% 5.41/5.65    ~adisjoint(3, 2) &
% 5.41/5.65    ~adisjoint(3, 3) &
% 5.41/5.65    ~adisjoint(3, 4) &
% 5.41/5.65    ~adisjoint(3, 5) &
% 5.41/5.65    ~adisjoint(4, 0) &
% 5.41/5.65    ~adisjoint(4, 1) &
% 5.41/5.65    ~adisjoint(4, 2) &
% 5.41/5.65    ~adisjoint(4, 3) &
% 5.41/5.65    ~adisjoint(4, 4) &
% 5.41/5.65    ~adisjoint(4, 5) &
% 5.41/5.65    ~adisjoint(5, 0) &
% 5.41/5.65    ~adisjoint(5, 1) &
% 5.41/5.65    ~adisjoint(5, 2) &
% 5.41/5.65    ~adisjoint(5, 3) &
% 5.41/5.65    ~adisjoint(5, 4) &
% 5.41/5.65    ~adisjoint(5, 5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aex3(0) & aex3(1) & ~aex3(2) & aex3(3) & aex3(4) &
% 5.41/5.65    ~aex3(5)).
% 5.41/5.65  fof(interp, fi_predicates, ~aex4(0) & aex4(1) & aex4(2) & aex4(3) & ~aex4(4) &
% 5.41/5.65    ~aex4(5)).
% 5.41/5.65  fof(interp, fi_predicates, aex5(0) & ~aex5(1) & aex5(2) & aex5(3) & aex5(4) &
% 5.41/5.65    ~aex5(5)).
% 5.41/5.65  fof(interp, fi_predicates, ain(0, 0) & ~ain(0, 1) & ain(0, 2) & ain(0, 3) &
% 5.41/5.65    ~ain(0, 4) &
% 5.41/5.65    ~ain(0, 5) &
% 5.41/5.65    ain(1, 0) &
% 5.41/5.65    ~ain(1, 1) &
% 5.41/5.65    ain(1, 2) &
% 5.41/5.65    ain(1, 3) &
% 5.41/5.65    ~ain(1, 4) &
% 5.41/5.65    ~ain(1, 5) &
% 5.41/5.65    ~ain(2, 0) &
% 5.41/5.65    ain(2, 1) &
% 5.41/5.65    ain(2, 2) &
% 5.41/5.65    ~ain(2, 3) &
% 5.41/5.65    ~ain(2, 4) &
% 5.41/5.65    ~ain(2, 5) &
% 5.41/5.65    ~ain(3, 0) &
% 5.41/5.65    ain(3, 1) &
% 5.41/5.65    ain(3, 2) &
% 5.41/5.65    ~ain(3, 3) &
% 5.41/5.65    ~ain(3, 4) &
% 5.41/5.65    ~ain(3, 5) &
% 5.41/5.65    ~ain(4, 0) &
% 5.41/5.65    ~ain(4, 1) &
% 5.41/5.65    ~ain(4, 2) &
% 5.41/5.65    ~ain(4, 3) &
% 5.41/5.65    ~ain(4, 4) &
% 5.41/5.65    ain(4, 5) &
% 5.41/5.65    ~ain(5, 0) &
% 5.41/5.65    ~ain(5, 1) &
% 5.41/5.65    ~ain(5, 2) &
% 5.41/5.65    ~ain(5, 3) &
% 5.41/5.65    ~ain(5, 4) &
% 5.41/5.65    ain(5, 5)).
% 5.41/5.65  fof(interp, fi_functors, aint(0, 0) = 0 & aint(0, 1) = 4 & aint(0, 2) = 0 &
% 5.41/5.65    aint(0, 3) = 5 &
% 5.41/5.65    aint(0, 4) = 0 &
% 5.41/5.65    aint(0, 5) = 5 &
% 5.41/5.65    aint(1, 0) = 0 &
% 5.41/5.65    aint(1, 1) = 1 &
% 5.41/5.65    aint(1, 2) = 4 &
% 5.41/5.65    aint(1, 3) = 3 &
% 5.41/5.65    aint(1, 4) = 3 &
% 5.41/5.65    aint(1, 5) = 2 &
% 5.41/5.65    aint(2, 0) = 3 &
% 5.41/5.65    aint(2, 1) = 2 &
% 5.41/5.65    aint(2, 2) = 0 &
% 5.41/5.65    aint(2, 3) = 3 &
% 5.41/5.65    aint(2, 4) = 3 &
% 5.41/5.65    aint(2, 5) = 3 &
% 5.41/5.65    aint(3, 0) = 1 &
% 5.41/5.65    aint(3, 1) = 1 &
% 5.41/5.65    aint(3, 2) = 2 &
% 5.41/5.65    aint(3, 3) = 4 &
% 5.41/5.65    aint(3, 4) = 3 &
% 5.41/5.65    aint(3, 5) = 5 &
% 5.41/5.65    aint(4, 0) = 3 &
% 5.41/5.65    aint(4, 1) = 1 &
% 5.41/5.65    aint(4, 2) = 3 &
% 5.41/5.65    aint(4, 3) = 4 &
% 5.41/5.65    aint(4, 4) = 2 &
% 5.41/5.65    aint(4, 5) = 5 &
% 5.41/5.65    aint(5, 0) = 3 &
% 5.41/5.65    aint(5, 1) = 5 &
% 5.41/5.65    aint(5, 2) = 1 &
% 5.41/5.65    aint(5, 3) = 0 &
% 5.41/5.65    aint(5, 4) = 1 &
% 5.41/5.65    aint(5, 5) = 5).
% 5.41/5.65  fof(interp, fi_functors, apow(0) = 2 & apow(1) = 0 & apow(2) = 1 & apow(3) = 1 &
% 5.41/5.65    apow(4) = 5 &
% 5.41/5.65    apow(5) = 5).
% 5.41/5.65  fof(interp, fi_functors, asing(0) = 1 & asing(1) = 3 & asing(2) = 4 &
% 5.41/5.65    asing(3) = 1 &
% 5.41/5.65    asing(4) = 5 &
% 5.41/5.65    asing(5) = 4).
% 5.41/5.65  fof(interp, fi_functors, asm(0, 0) = 4 & asm(0, 1) = 3 & asm(0, 2) = 4 &
% 5.41/5.65    asm(0, 3) = 4 &
% 5.41/5.65    asm(0, 4) = 0 &
% 5.41/5.65    asm(0, 5) = 3 &
% 5.41/5.65    asm(1, 0) = 1 &
% 5.41/5.65    asm(1, 1) = 4 &
% 5.41/5.65    asm(1, 2) = 4 &
% 5.41/5.65    asm(1, 3) = 1 &
% 5.41/5.65    asm(1, 4) = 1 &
% 5.41/5.65    asm(1, 5) = 1 &
% 5.41/5.65    asm(2, 0) = 1 &
% 5.41/5.65    asm(2, 1) = 3 &
% 5.41/5.65    asm(2, 2) = 4 &
% 5.41/5.65    asm(2, 3) = 1 &
% 5.41/5.65    asm(2, 4) = 2 &
% 5.41/5.65    asm(2, 5) = 2 &
% 5.41/5.65    asm(3, 0) = 4 &
% 5.41/5.65    asm(3, 1) = 3 &
% 5.41/5.65    asm(3, 2) = 4 &
% 5.41/5.65    asm(3, 3) = 4 &
% 5.41/5.65    asm(3, 4) = 3 &
% 5.41/5.65    asm(3, 5) = 3 &
% 5.41/5.65    asm(4, 0) = 4 &
% 5.41/5.65    asm(4, 1) = 4 &
% 5.41/5.65    asm(4, 2) = 4 &
% 5.41/5.65    asm(4, 3) = 4 &
% 5.41/5.65    asm(4, 4) = 4 &
% 5.41/5.65    asm(4, 5) = 4 &
% 5.41/5.65    asm(5, 0) = 5 &
% 5.41/5.65    asm(5, 1) = 5 &
% 5.41/5.65    asm(5, 2) = 5 &
% 5.41/5.65    asm(5, 3) = 5 &
% 5.41/5.65    asm(5, 4) = 5 &
% 5.41/5.65    asm(5, 5) = 4).
% 5.41/5.65  fof(interp, fi_predicates, asubq(0, 0) & asubq(0, 1) & ~asubq(0, 2) &
% 5.41/5.65    ~asubq(0, 3) &
% 5.41/5.65    ~asubq(0, 4) &
% 5.41/5.65    ~asubq(0, 5) &
% 5.41/5.65    asubq(1, 0) &
% 5.41/5.65    asubq(1, 1) &
% 5.41/5.65    ~asubq(1, 2) &
% 5.41/5.65    ~asubq(1, 3) &
% 5.41/5.65    ~asubq(1, 4) &
% 5.41/5.65    ~asubq(1, 5) &
% 5.41/5.65    asubq(2, 0) &
% 5.41/5.65    ~asubq(2, 1) &
% 5.41/5.65    asubq(2, 2) &
% 5.41/5.65    asubq(2, 3) &
% 5.41/5.65    ~asubq(2, 4) &
% 5.41/5.65    ~asubq(2, 5) &
% 5.41/5.65    asubq(3, 0) &
% 5.41/5.65    ~asubq(3, 1) &
% 5.41/5.65    asubq(3, 2) &
% 5.41/5.65    asubq(3, 3) &
% 5.41/5.65    ~asubq(3, 4) &
% 5.41/5.65    ~asubq(3, 5) &
% 5.41/5.65    ~asubq(4, 0) &
% 5.41/5.65    ~asubq(4, 1) &
% 5.41/5.65    ~asubq(4, 2) &
% 5.41/5.65    ~asubq(4, 3) &
% 5.41/5.65    asubq(4, 4) &
% 5.41/5.65    asubq(4, 5) &
% 5.41/5.65    ~asubq(5, 0) &
% 5.41/5.65    ~asubq(5, 1) &
% 5.41/5.65    ~asubq(5, 2) &
% 5.41/5.65    ~asubq(5, 3) &
% 5.41/5.65    asubq(5, 4) &
% 5.41/5.65    asubq(5, 5)).
% 5.41/5.65  fof(interp, fi_functors, aun(0, 0) = 0 & aun(0, 1) = 1 & aun(0, 2) = 2 &
% 5.41/5.65    aun(0, 3) = 3 &
% 5.41/5.65    aun(0, 4) = 4 &
% 5.41/5.65    aun(0, 5) = 3 &
% 5.41/5.65    aun(1, 0) = 1 &
% 5.41/5.65    aun(1, 1) = 1 &
% 5.41/5.65    aun(1, 2) = 1 &
% 5.41/5.65    aun(1, 3) = 2 &
% 5.41/5.65    aun(1, 4) = 4 &
% 5.41/5.65    aun(1, 5) = 1 &
% 5.41/5.65    aun(2, 0) = 2 &
% 5.41/5.65    aun(2, 1) = 0 &
% 5.41/5.65    aun(2, 2) = 2 &
% 5.41/5.65    aun(2, 3) = 2 &
% 5.41/5.65    aun(2, 4) = 2 &
% 5.41/5.65    aun(2, 5) = 0 &
% 5.41/5.65    aun(3, 0) = 0 &
% 5.41/5.65    aun(3, 1) = 2 &
% 5.41/5.65    aun(3, 2) = 2 &
% 5.41/5.65    aun(3, 3) = 3 &
% 5.41/5.65    aun(3, 4) = 0 &
% 5.41/5.65    aun(3, 5) = 0 &
% 5.41/5.65    aun(4, 0) = 3 &
% 5.41/5.65    aun(4, 1) = 1 &
% 5.41/5.65    aun(4, 2) = 2 &
% 5.41/5.65    aun(4, 3) = 3 &
% 5.41/5.65    aun(4, 4) = 4 &
% 5.41/5.65    aun(4, 5) = 5 &
% 5.41/5.65    aun(5, 0) = 5 &
% 5.41/5.65    aun(5, 1) = 4 &
% 5.41/5.65    aun(5, 2) = 0 &
% 5.41/5.65    aun(5, 3) = 0 &
% 5.41/5.65    aun(5, 4) = 5 &
% 5.41/5.65    aun(5, 5) = 4).
% 5.41/5.65  % SZS output end FiniteModel for theBenchmark.p
% 5.41/5.65  % 9 lemma(s) from E
% 5.41/5.65  %     cnf(cl, axiom, asubq(a0, a2)).
% 5.41/5.65  %     cnf(cl, axiom, ain(a0, a4)).
% 5.41/5.65  %     cnf(cl, axiom, ain(a2, a4)).
% 5.41/5.65  %     cnf(cl, axiom, ~asubq(a1, asing(a1))).
% 5.41/5.65  %     cnf(cl, axiom, ~asubq(a2, asing(a2))).
% 5.41/5.65  %     cnf(cl, axiom, ~ain(a0, asing(a1))).
% 5.41/5.65  %     cnf(cl, axiom, ~ain(a2, apow(asing(a2)))).
% 5.41/5.65  %     cnf(cl, axiom, ~ain(a2, asing(a0))).
% 5.41/5.65  %     cnf(cl, axiom, ~ain(asing(a1), a3)).
% 5.41/5.65  % 25 pred(s)
% 5.41/5.65  % 77 func(s)
% 5.41/5.65  % 1 sort(s)
% 5.41/5.65  % 177 clause(s)
% 5.41/5.65  % Instantiating 1 (5195 ms)
% 5.41/5.65  % Solving (5196 ms)
% 5.41/5.65  % Instantiating 2 (5196 ms)
% 5.41/5.65  % Solving (5198 ms)
% 5.41/5.65  % Instantiating 3 (5198 ms)
% 5.41/5.65  % Solving (5201 ms)
% 5.41/5.65  % Instantiating 4 (5202 ms)
% 5.41/5.65  % Solving (5206 ms)
% 5.41/5.65  % Instantiating 5 (5213 ms)
% 5.41/5.65  % Solving (5218 ms)
% 5.41/5.65  % Instantiating 6 (5279 ms)
% 5.41/5.65  % Solving (5285 ms)
% 5.41/5.65  % 
% 5.41/5.65  % 1 model found (5291 ms)
%------------------------------------------------------------------------------