TSTP Solution File: SWW952+1 by iProver---3.8

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : iProver---3.8
% Problem  : SWW952+1 : TPTP v8.1.2. Released v7.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_iprover %s %d THM

% Computer : n023.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 : Fri Sep  1 00:41:32 EDT 2023

% Result   : Theorem 3.95s 1.12s
% Output   : CNFRefutation 3.95s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   23
%            Number of leaves      :   18
% Syntax   : Number of formulae    :  129 (  49 unt;   0 def)
%            Number of atoms       :  237 (  19 equ)
%            Maximal formula atoms :    4 (   1 avg)
%            Number of connectives :  206 (  98   ~;  86   |;   4   &)
%                                         (   0 <=>;  18  =>;   0  <=;   0 <~>)
%            Maximal formula depth :    6 (   3 avg)
%            Maximal term depth    :    9 (   2 avg)
%            Number of predicates  :    3 (   1 usr;   1 prp; 0-2 aty)
%            Number of functors    :   19 (  19 usr;   8 con; 0-2 aty)
%            Number of variables   :  182 (   3 sgn;  80   !;   0   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(f92,axiom,
    ! [X0] : constr_ZERO = constr_xor(X0,X0),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax91) ).

fof(f93,axiom,
    ! [X1] : constr_xor(X1,constr_ZERO) = X1,
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax92) ).

fof(f94,axiom,
    ! [X2,X3] : constr_xor(X2,X3) = constr_xor(X3,X2),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax93) ).

fof(f95,axiom,
    ! [X4,X5,X6] : constr_xor(X4,constr_xor(X5,X6)) = constr_xor(constr_xor(X4,X5),X6),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax94) ).

fof(f96,axiom,
    ! [X7,X8] :
      ( ( pred_attacker(X8)
        & pred_attacker(X7) )
     => pred_attacker(constr_xor(X7,X8)) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax95) ).

fof(f103,axiom,
    ! [X15,X16] :
      ( pred_attacker(tuple_sess_1_out_2(X15,X16))
     => pred_attacker(X15) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax102) ).

fof(f104,axiom,
    ! [X17,X18] :
      ( pred_attacker(tuple_sess_1_out_2(X17,X18))
     => pred_attacker(X18) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax103) ).

fof(f106,axiom,
    ! [X20] :
      ( pred_attacker(tuple_sess_1_out_1(X20))
     => pred_attacker(X20) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax105) ).

fof(f110,axiom,
    pred_attacker(constr_ZERO),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax109) ).

fof(f112,axiom,
    ! [X25] :
      ( pred_attacker(tuple_R_out_4(X25))
     => pred_attacker(X25) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax111) ).

fof(f117,axiom,
    ! [X32,X33] :
      ( pred_attacker(tuple_R_out_1(X32,X33))
     => pred_attacker(X33) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax116) ).

fof(f118,axiom,
    ! [X34,X35] :
      ( ( pred_attacker(X35)
        & pred_attacker(X34) )
     => pred_attacker(tuple_R_in_2(X34,X35)) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax117) ).

fof(f132,axiom,
    pred_attacker(tuple_sess_1_out_1(name_r1_s1)),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax131) ).

fof(f133,axiom,
    pred_attacker(tuple_sess_1_out_2(name_r2_s1,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k))),constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k)))))),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax132) ).

fof(f135,axiom,
    pred_attacker(tuple_R_out_1(constr_QUERY,name_r1)),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax134) ).

fof(f136,axiom,
    ! [X46] :
      ( pred_attacker(tuple_R_in_2(X46,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X46),name_k))),constr_h(constr_xor(constr_xor(name_r1,X46),name_k))))))
     => pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X46),name_k))),constr_h(constr_xor(constr_xor(name_r1,X46),name_k)))))) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax135) ).

fof(f137,axiom,
    ! [X47] :
      ( pred_attacker(tuple_R_in_2(X47,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X47),name_k))),constr_h(constr_xor(constr_xor(name_r1,X47),name_k))))))
     => pred_attacker(tuple_R_out_4(name_objective)) ),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',ax136) ).

fof(f138,conjecture,
    pred_attacker(name_objective),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',co0) ).

fof(f139,negated_conjecture,
    ~ pred_attacker(name_objective),
    inference(negated_conjecture,[],[f138]) ).

fof(f140,plain,
    ! [X0] : constr_xor(X0,constr_ZERO) = X0,
    inference(rectify,[],[f93]) ).

fof(f141,plain,
    ! [X0,X1] : constr_xor(X0,X1) = constr_xor(X1,X0),
    inference(rectify,[],[f94]) ).

fof(f142,plain,
    ! [X0,X1,X2] : constr_xor(X0,constr_xor(X1,X2)) = constr_xor(constr_xor(X0,X1),X2),
    inference(rectify,[],[f95]) ).

fof(f143,plain,
    ! [X0,X1] :
      ( ( pred_attacker(X1)
        & pred_attacker(X0) )
     => pred_attacker(constr_xor(X0,X1)) ),
    inference(rectify,[],[f96]) ).

fof(f149,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_sess_1_out_2(X0,X1))
     => pred_attacker(X0) ),
    inference(rectify,[],[f103]) ).

fof(f150,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_sess_1_out_2(X0,X1))
     => pred_attacker(X1) ),
    inference(rectify,[],[f104]) ).

fof(f152,plain,
    ! [X0] :
      ( pred_attacker(tuple_sess_1_out_1(X0))
     => pred_attacker(X0) ),
    inference(rectify,[],[f106]) ).

fof(f156,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_out_4(X0))
     => pred_attacker(X0) ),
    inference(rectify,[],[f112]) ).

fof(f161,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_R_out_1(X0,X1))
     => pred_attacker(X1) ),
    inference(rectify,[],[f117]) ).

fof(f162,plain,
    ! [X0,X1] :
      ( ( pred_attacker(X1)
        & pred_attacker(X0) )
     => pred_attacker(tuple_R_in_2(X0,X1)) ),
    inference(rectify,[],[f118]) ).

fof(f169,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
     => pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(rectify,[],[f136]) ).

fof(f170,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
     => pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(rectify,[],[f137]) ).

fof(f171,plain,
    ~ pred_attacker(name_objective),
    inference(flattening,[],[f139]) ).

fof(f173,plain,
    ! [X0,X1] :
      ( pred_attacker(constr_xor(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(ennf_transformation,[],[f143]) ).

fof(f174,plain,
    ! [X0,X1] :
      ( pred_attacker(constr_xor(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(flattening,[],[f173]) ).

fof(f181,plain,
    ! [X0,X1] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_sess_1_out_2(X0,X1)) ),
    inference(ennf_transformation,[],[f149]) ).

fof(f182,plain,
    ! [X0,X1] :
      ( pred_attacker(X1)
      | ~ pred_attacker(tuple_sess_1_out_2(X0,X1)) ),
    inference(ennf_transformation,[],[f150]) ).

fof(f184,plain,
    ! [X0] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_sess_1_out_1(X0)) ),
    inference(ennf_transformation,[],[f152]) ).

fof(f189,plain,
    ! [X0] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_R_out_4(X0)) ),
    inference(ennf_transformation,[],[f156]) ).

fof(f195,plain,
    ! [X0,X1] :
      ( pred_attacker(X1)
      | ~ pred_attacker(tuple_R_out_1(X0,X1)) ),
    inference(ennf_transformation,[],[f161]) ).

fof(f196,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_R_in_2(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(ennf_transformation,[],[f162]) ).

fof(f197,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_R_in_2(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(flattening,[],[f196]) ).

fof(f204,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
      | ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(ennf_transformation,[],[f169]) ).

fof(f205,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_out_4(name_objective))
      | ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(ennf_transformation,[],[f170]) ).

fof(f297,plain,
    ! [X0] : constr_ZERO = constr_xor(X0,X0),
    inference(cnf_transformation,[],[f92]) ).

fof(f298,plain,
    ! [X0] : constr_xor(X0,constr_ZERO) = X0,
    inference(cnf_transformation,[],[f140]) ).

fof(f299,plain,
    ! [X0,X1] : constr_xor(X0,X1) = constr_xor(X1,X0),
    inference(cnf_transformation,[],[f141]) ).

fof(f300,plain,
    ! [X2,X0,X1] : constr_xor(X0,constr_xor(X1,X2)) = constr_xor(constr_xor(X0,X1),X2),
    inference(cnf_transformation,[],[f142]) ).

fof(f301,plain,
    ! [X0,X1] :
      ( pred_attacker(constr_xor(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(cnf_transformation,[],[f174]) ).

fof(f308,plain,
    ! [X0,X1] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_sess_1_out_2(X0,X1)) ),
    inference(cnf_transformation,[],[f181]) ).

fof(f309,plain,
    ! [X0,X1] :
      ( pred_attacker(X1)
      | ~ pred_attacker(tuple_sess_1_out_2(X0,X1)) ),
    inference(cnf_transformation,[],[f182]) ).

fof(f311,plain,
    ! [X0] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_sess_1_out_1(X0)) ),
    inference(cnf_transformation,[],[f184]) ).

fof(f315,plain,
    pred_attacker(constr_ZERO),
    inference(cnf_transformation,[],[f110]) ).

fof(f317,plain,
    ! [X0] :
      ( pred_attacker(X0)
      | ~ pred_attacker(tuple_R_out_4(X0)) ),
    inference(cnf_transformation,[],[f189]) ).

fof(f322,plain,
    ! [X0,X1] :
      ( pred_attacker(X1)
      | ~ pred_attacker(tuple_R_out_1(X0,X1)) ),
    inference(cnf_transformation,[],[f195]) ).

fof(f323,plain,
    ! [X0,X1] :
      ( pred_attacker(tuple_R_in_2(X0,X1))
      | ~ pred_attacker(X1)
      | ~ pred_attacker(X0) ),
    inference(cnf_transformation,[],[f197]) ).

fof(f336,plain,
    pred_attacker(tuple_sess_1_out_1(name_r1_s1)),
    inference(cnf_transformation,[],[f132]) ).

fof(f337,plain,
    pred_attacker(tuple_sess_1_out_2(name_r2_s1,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k))),constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k)))))),
    inference(cnf_transformation,[],[f133]) ).

fof(f339,plain,
    pred_attacker(tuple_R_out_1(constr_QUERY,name_r1)),
    inference(cnf_transformation,[],[f135]) ).

fof(f340,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
      | ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(cnf_transformation,[],[f204]) ).

fof(f341,plain,
    ! [X0] :
      ( pred_attacker(tuple_R_out_4(name_objective))
      | ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(cnf_transformation,[],[f205]) ).

fof(f342,plain,
    ~ pred_attacker(name_objective),
    inference(cnf_transformation,[],[f171]) ).

cnf(c_140,plain,
    constr_xor(X0,X0) = constr_ZERO,
    inference(cnf_transformation,[],[f297]) ).

cnf(c_141,plain,
    constr_xor(X0,constr_ZERO) = X0,
    inference(cnf_transformation,[],[f298]) ).

cnf(c_142,plain,
    constr_xor(X0,X1) = constr_xor(X1,X0),
    inference(cnf_transformation,[],[f299]) ).

cnf(c_143,plain,
    constr_xor(constr_xor(X0,X1),X2) = constr_xor(X0,constr_xor(X1,X2)),
    inference(cnf_transformation,[],[f300]) ).

cnf(c_144,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X0,X1)) ),
    inference(cnf_transformation,[],[f301]) ).

cnf(c_151,plain,
    ( ~ pred_attacker(tuple_sess_1_out_2(X0,X1))
    | pred_attacker(X0) ),
    inference(cnf_transformation,[],[f308]) ).

cnf(c_152,plain,
    ( ~ pred_attacker(tuple_sess_1_out_2(X0,X1))
    | pred_attacker(X1) ),
    inference(cnf_transformation,[],[f309]) ).

cnf(c_154,plain,
    ( ~ pred_attacker(tuple_sess_1_out_1(X0))
    | pred_attacker(X0) ),
    inference(cnf_transformation,[],[f311]) ).

cnf(c_158,plain,
    pred_attacker(constr_ZERO),
    inference(cnf_transformation,[],[f315]) ).

cnf(c_160,plain,
    ( ~ pred_attacker(tuple_R_out_4(X0))
    | pred_attacker(X0) ),
    inference(cnf_transformation,[],[f317]) ).

cnf(c_165,plain,
    ( ~ pred_attacker(tuple_R_out_1(X0,X1))
    | pred_attacker(X1) ),
    inference(cnf_transformation,[],[f322]) ).

cnf(c_166,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | pred_attacker(tuple_R_in_2(X0,X1)) ),
    inference(cnf_transformation,[],[f323]) ).

cnf(c_179,plain,
    pred_attacker(tuple_sess_1_out_1(name_r1_s1)),
    inference(cnf_transformation,[],[f336]) ).

cnf(c_180,plain,
    pred_attacker(tuple_sess_1_out_2(name_r2_s1,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k))),constr_h(constr_xor(constr_xor(name_r1_s1,name_r2_s1),name_k)))))),
    inference(cnf_transformation,[],[f337]) ).

cnf(c_182,plain,
    pred_attacker(tuple_R_out_1(constr_QUERY,name_r1)),
    inference(cnf_transformation,[],[f339]) ).

cnf(c_183,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k)))))) ),
    inference(cnf_transformation,[],[f340]) ).

cnf(c_184,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_rotate(name_ID,constr_h(constr_xor(constr_xor(name_r1,X0),name_k))),constr_h(constr_xor(constr_xor(name_r1,X0),name_k))))))
    | pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(cnf_transformation,[],[f341]) ).

cnf(c_185,negated_conjecture,
    ~ pred_attacker(name_objective),
    inference(cnf_transformation,[],[f342]) ).

cnf(c_213,plain,
    pred_attacker(tuple_sess_1_out_2(name_r2_s1,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(name_r1_s1,name_r2_s1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(name_r1_s1,name_r2_s1)))))))),
    inference(theory_normalisation,[status(thm)],[c_180,c_143,c_142]) ).

cnf(c_215,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1))))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1)))))))) ),
    inference(theory_normalisation,[status(thm)],[c_183,c_143,c_142]) ).

cnf(c_216,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1))))))))
    | pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(theory_normalisation,[status(thm)],[c_184,c_143,c_142]) ).

cnf(c_952,plain,
    ( pred_attacker(tuple_R_out_4(name_objective))
    | ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1)))))))) ),
    inference(prop_impl_just,[status(thm)],[c_216]) ).

cnf(c_953,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1))))))))
    | pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(renaming,[status(thm)],[c_952]) ).

cnf(c_956,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1))))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1)))))))) ),
    inference(prop_impl_just,[status(thm)],[c_215]) ).

cnf(c_2889,plain,
    constr_xor(X0,constr_xor(X1,X2)) = constr_xor(X1,constr_xor(X0,X2)),
    inference(superposition,[status(thm)],[c_143,c_142]) ).

cnf(c_2936,plain,
    pred_attacker(name_r1_s1),
    inference(superposition,[status(thm)],[c_179,c_154]) ).

cnf(c_2963,plain,
    pred_attacker(name_r2_s1),
    inference(superposition,[status(thm)],[c_213,c_151]) ).

cnf(c_2968,plain,
    pred_attacker(constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(name_r1_s1,name_r2_s1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(name_r1_s1,name_r2_s1))))))),
    inference(superposition,[status(thm)],[c_213,c_152]) ).

cnf(c_2983,plain,
    pred_attacker(name_r1),
    inference(superposition,[status(thm)],[c_182,c_165]) ).

cnf(c_2997,plain,
    constr_xor(constr_ZERO,X0) = X0,
    inference(superposition,[status(thm)],[c_142,c_141]) ).

cnf(c_2998,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(name_r1,X0))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(name_r1,X0))))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_h(constr_xor(name_k,constr_xor(X0,name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(X0,name_r1)))))))) ),
    inference(superposition,[status(thm)],[c_142,c_956]) ).

cnf(c_2999,plain,
    ( ~ pred_attacker(tuple_R_in_2(X0,constr_split_L(constr_xor(constr_h(constr_xor(name_k,constr_xor(name_r1,X0))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(name_r1,X0))))))))
    | pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(superposition,[status(thm)],[c_142,c_953]) ).

cnf(c_3026,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X1,X0)) ),
    inference(superposition,[status(thm)],[c_142,c_144]) ).

cnf(c_3096,plain,
    constr_xor(X0,constr_xor(X0,X1)) = constr_xor(constr_ZERO,X1),
    inference(superposition,[status(thm)],[c_140,c_143]) ).

cnf(c_3101,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | ~ pred_attacker(X2)
    | pred_attacker(constr_xor(X0,constr_xor(X1,X2))) ),
    inference(superposition,[status(thm)],[c_143,c_3026]) ).

cnf(c_3119,plain,
    constr_xor(X0,constr_xor(X0,X1)) = X1,
    inference(demodulation,[status(thm)],[c_3096,c_2997]) ).

cnf(c_3128,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | ~ pred_attacker(X0)
    | pred_attacker(X1) ),
    inference(superposition,[status(thm)],[c_3119,c_3026]) ).

cnf(c_3193,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | ~ pred_attacker(X1)
    | pred_attacker(X0) ),
    inference(superposition,[status(thm)],[c_142,c_3128]) ).

cnf(c_3223,plain,
    ( ~ pred_attacker(constr_xor(X0,constr_xor(X1,X2)))
    | ~ pred_attacker(X2)
    | pred_attacker(constr_xor(X0,X1)) ),
    inference(superposition,[status(thm)],[c_143,c_3193]) ).

cnf(c_3294,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | ~ pred_attacker(X2)
    | pred_attacker(constr_xor(X1,constr_xor(X0,X2))) ),
    inference(superposition,[status(thm)],[c_2889,c_3101]) ).

cnf(c_3398,plain,
    ( ~ pred_attacker(constr_xor(constr_xor(X0,X1),X2))
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X2,X0)) ),
    inference(superposition,[status(thm)],[c_142,c_3223]) ).

cnf(c_3429,plain,
    ( ~ pred_attacker(constr_xor(X0,constr_xor(X1,X2)))
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X2,X0)) ),
    inference(theory_normalisation,[status(thm)],[c_3398,c_143,c_142]) ).

cnf(c_3626,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | ~ pred_attacker(constr_ZERO)
    | pred_attacker(constr_xor(X1,X0)) ),
    inference(superposition,[status(thm)],[c_141,c_3294]) ).

cnf(c_3644,plain,
    ( ~ pred_attacker(constr_xor(X0,X1))
    | pred_attacker(constr_xor(X1,X0)) ),
    inference(forward_subsumption_resolution,[status(thm)],[c_3626,c_158]) ).

cnf(c_3679,plain,
    ( ~ pred_attacker(constr_xor(X0,constr_xor(X1,X2)))
    | pred_attacker(constr_xor(X2,constr_xor(X0,X1))) ),
    inference(superposition,[status(thm)],[c_143,c_3644]) ).

cnf(c_3718,plain,
    ( ~ pred_attacker(constr_xor(X0,constr_xor(X1,constr_xor(X2,X3))))
    | pred_attacker(constr_xor(X3,constr_xor(X0,constr_xor(X1,X2)))) ),
    inference(superposition,[status(thm)],[c_143,c_3679]) ).

cnf(c_3765,plain,
    ( ~ pred_attacker(tuple_R_in_2(constr_xor(name_r1,X0),constr_split_L(constr_xor(constr_h(constr_xor(name_k,X0)),constr_rotate(name_ID,constr_h(constr_xor(name_k,X0)))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_h(constr_xor(name_k,constr_xor(constr_xor(name_r1,X0),name_r1))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(constr_xor(name_r1,X0),name_r1)))))))) ),
    inference(superposition,[status(thm)],[c_3119,c_2998]) ).

cnf(c_3771,plain,
    ( ~ pred_attacker(tuple_R_in_2(constr_xor(name_r1,X0),constr_split_L(constr_xor(constr_h(constr_xor(name_k,X0)),constr_rotate(name_ID,constr_h(constr_xor(name_k,X0)))))))
    | pred_attacker(tuple_R_out_3(constr_split_R(constr_xor(constr_h(constr_xor(name_k,constr_xor(name_r1,constr_xor(X0,name_r1)))),constr_rotate(name_ID,constr_h(constr_xor(name_k,constr_xor(name_r1,constr_xor(X0,name_r1))))))))) ),
    inference(theory_normalisation,[status(thm)],[c_3765,c_143,c_142]) ).

cnf(c_4138,plain,
    ( ~ pred_attacker(tuple_R_in_2(constr_xor(name_r1,X0),constr_split_L(constr_xor(constr_h(constr_xor(name_k,X0)),constr_rotate(name_ID,constr_h(constr_xor(name_k,X0)))))))
    | pred_attacker(tuple_R_out_4(name_objective)) ),
    inference(superposition,[status(thm)],[c_3119,c_2999]) ).

cnf(c_4818,plain,
    ( ~ pred_attacker(constr_ZERO)
    | pred_attacker(constr_xor(X0,constr_xor(constr_xor(X1,constr_xor(X2,X0)),constr_xor(X1,X2)))) ),
    inference(superposition,[status(thm)],[c_140,c_3718]) ).

cnf(c_4856,plain,
    ( ~ pred_attacker(constr_ZERO)
    | pred_attacker(constr_xor(X0,constr_xor(X1,constr_xor(X2,constr_xor(X0,constr_xor(X1,X2)))))) ),
    inference(theory_normalisation,[status(thm)],[c_4818,c_143,c_142]) ).

cnf(c_4857,plain,
    pred_attacker(constr_xor(X0,constr_xor(X1,constr_xor(X2,constr_xor(X0,constr_xor(X1,X2)))))),
    inference(forward_subsumption_resolution,[status(thm)],[c_4856,c_158]) ).

cnf(c_4932,plain,
    ( ~ pred_attacker(X0)
    | pred_attacker(constr_xor(constr_xor(X1,constr_xor(X2,constr_xor(X0,X1))),X2)) ),
    inference(superposition,[status(thm)],[c_4857,c_3429]) ).

cnf(c_4969,plain,
    ( ~ pred_attacker(X0)
    | pred_attacker(constr_xor(X1,constr_xor(X2,constr_xor(X0,constr_xor(X1,X2))))) ),
    inference(theory_normalisation,[status(thm)],[c_4932,c_143,c_142]) ).

cnf(c_5435,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X2,constr_xor(X0,constr_xor(X1,X2)))) ),
    inference(superposition,[status(thm)],[c_4969,c_3128]) ).

cnf(c_6821,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | pred_attacker(constr_xor(X2,constr_xor(X1,constr_xor(X0,X2)))) ),
    inference(superposition,[status(thm)],[c_2889,c_5435]) ).

cnf(c_7434,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | ~ pred_attacker(X2)
    | pred_attacker(constr_xor(X1,constr_xor(X0,X2))) ),
    inference(superposition,[status(thm)],[c_6821,c_3128]) ).

cnf(c_10993,plain,
    ( ~ pred_attacker(X0)
    | ~ pred_attacker(X1)
    | ~ pred_attacker(X2)
    | pred_attacker(constr_xor(X2,constr_xor(X1,X0))) ),
    inference(superposition,[status(thm)],[c_7434,c_3679]) ).

cnf(c_15368,plain,
    ( ~ pred_attacker(tuple_R_out_4(name_objective))
    | pred_attacker(name_objective) ),
    inference(instantiation,[status(thm)],[c_160]) ).

cnf(c_20909,plain,
    ~ pred_attacker(tuple_R_in_2(constr_xor(name_r1,X0),constr_split_L(constr_xor(constr_h(constr_xor(name_k,X0)),constr_rotate(name_ID,constr_h(constr_xor(name_k,X0))))))),
    inference(global_subsumption_just,[status(thm)],[c_3771,c_185,c_4138,c_15368]) ).

cnf(c_20933,plain,
    ~ pred_attacker(tuple_R_in_2(constr_xor(name_r1,constr_xor(name_k,X0)),constr_split_L(constr_xor(constr_h(X0),constr_rotate(name_ID,constr_h(X0)))))),
    inference(superposition,[status(thm)],[c_3119,c_20909]) ).

cnf(c_20936,plain,
    ~ pred_attacker(tuple_R_in_2(constr_xor(name_k,constr_xor(X0,name_r1)),constr_split_L(constr_xor(constr_h(X0),constr_rotate(name_ID,constr_h(X0)))))),
    inference(theory_normalisation,[status(thm)],[c_20933,c_143,c_142]) ).

cnf(c_20977,plain,
    ( ~ pred_attacker(constr_split_L(constr_xor(constr_h(X0),constr_rotate(name_ID,constr_h(X0)))))
    | ~ pred_attacker(constr_xor(name_k,constr_xor(X0,name_r1))) ),
    inference(superposition,[status(thm)],[c_166,c_20936]) ).

cnf(c_21568,plain,
    ~ pred_attacker(constr_xor(name_k,constr_xor(constr_xor(name_k,constr_xor(name_r1_s1,name_r2_s1)),name_r1))),
    inference(superposition,[status(thm)],[c_2968,c_20977]) ).

cnf(c_21569,plain,
    ~ pred_attacker(constr_xor(name_k,constr_xor(name_k,constr_xor(name_r1,constr_xor(name_r1_s1,name_r2_s1))))),
    inference(theory_normalisation,[status(thm)],[c_21568,c_143,c_142]) ).

cnf(c_21580,plain,
    ~ pred_attacker(constr_xor(name_r1,constr_xor(name_r1_s1,name_r2_s1))),
    inference(demodulation,[status(thm)],[c_21569,c_3119]) ).

cnf(c_21585,plain,
    ( ~ pred_attacker(name_r1)
    | ~ pred_attacker(name_r1_s1)
    | ~ pred_attacker(name_r2_s1) ),
    inference(superposition,[status(thm)],[c_10993,c_21580]) ).

cnf(c_21594,plain,
    $false,
    inference(forward_subsumption_resolution,[status(thm)],[c_21585,c_2963,c_2936,c_2983]) ).


%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.03/0.14  % Problem  : SWW952+1 : TPTP v8.1.2. Released v7.4.0.
% 0.12/0.14  % Command  : run_iprover %s %d THM
% 0.13/0.35  % Computer : n023.cluster.edu
% 0.13/0.35  % Model    : x86_64 x86_64
% 0.13/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.13/0.35  % Memory   : 8042.1875MB
% 0.13/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.13/0.35  % CPULimit : 300
% 0.13/0.35  % WCLimit  : 300
% 0.13/0.35  % DateTime : Sun Aug 27 21:42:41 EDT 2023
% 0.13/0.36  % CPUTime  : 
% 0.19/0.47  Running first-order theorem proving
% 0.19/0.47  Running: /export/starexec/sandbox/solver/bin/run_problem --schedule fof_schedule --no_cores 8 /export/starexec/sandbox/benchmark/theBenchmark.p 300
% 3.95/1.12  % SZS status Started for theBenchmark.p
% 3.95/1.12  % SZS status Theorem for theBenchmark.p
% 3.95/1.12  
% 3.95/1.12  %---------------- iProver v3.8 (pre SMT-COMP 2023/CASC 2023) ----------------%
% 3.95/1.12  
% 3.95/1.12  ------  iProver source info
% 3.95/1.12  
% 3.95/1.12  git: date: 2023-05-31 18:12:56 +0000
% 3.95/1.12  git: sha1: 8abddc1f627fd3ce0bcb8b4cbf113b3cc443d7b6
% 3.95/1.12  git: non_committed_changes: false
% 3.95/1.12  git: last_make_outside_of_git: false
% 3.95/1.12  
% 3.95/1.12  ------ Parsing...
% 3.95/1.12  ------ Clausification by vclausify_rel  & Parsing by iProver...
% 3.95/1.12  
% 3.95/1.12  ------ Preprocessing... sup_sim: 0  sf_s  rm: 1 0s  sf_e  pe_s  pe:1:0s pe_e  sup_sim: 0  sf_s  rm: 1 0s  sf_e  pe_s  pe_e 
% 3.95/1.12  
% 3.95/1.12  ------ Preprocessing... gs_s  sp: 0 0s  gs_e  snvd_s sp: 0 0s snvd_e 
% 3.95/1.12  
% 3.95/1.12  ------ Preprocessing... sf_s  rm: 1 0s  sf_e  sf_s  rm: 0 0s  sf_e 
% 3.95/1.12  ------ Proving...
% 3.95/1.12  ------ Problem Properties 
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  clauses                                 135
% 3.95/1.12  conjectures                             1
% 3.95/1.12  EPR                                     102
% 3.95/1.12  Horn                                    135
% 3.95/1.12  unary                                   111
% 3.95/1.12  binary                                  19
% 3.95/1.12  lits                                    164
% 3.95/1.12  lits eq                                 95
% 3.95/1.12  fd_pure                                 0
% 3.95/1.12  fd_pseudo                               0
% 3.95/1.12  fd_cond                                 0
% 3.95/1.12  fd_pseudo_cond                          0
% 3.95/1.12  AC symbols                              1
% 3.95/1.12  
% 3.95/1.12  ------ Schedule dynamic 5 is on 
% 3.95/1.12  
% 3.95/1.12  ------ Input Options "--resolution_flag false --inst_lit_sel_side none" Time Limit: 10.
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  ------ 
% 3.95/1.12  Current options:
% 3.95/1.12  ------ 
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  ------ Proving...
% 3.95/1.12  
% 3.95/1.12  
% 3.95/1.12  % SZS status Theorem for theBenchmark.p
% 3.95/1.12  
% 3.95/1.12  % SZS output start CNFRefutation for theBenchmark.p
% See solution above
% 3.95/1.12  
% 3.95/1.12  
%------------------------------------------------------------------------------