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cvc5---1.3.4.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : cvc5---1.3.4
% Problem  : NUM504+3 : TPTP v9.2.1. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : /export/starexec/sandbox/solver/bin/do_cvc5 /export/starexec/sandbox/benchmark/theBenchmark.p 300 THM

% Computer : n009.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 : Wed Jun  3 08:39:38 AM UTC 2026

% Result   : Theorem 0.46s 0.68s
% Output   : Proof 0.46s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : NUM504+3 : TPTP v9.2.1. Released v4.0.0.
% 0.00/0.13  % Command  : /export/starexec/sandbox/solver/bin/do_cvc5 /export/starexec/sandbox/benchmark/theBenchmark.p 300 THM
% 0.17/0.34  % Computer : n009.cluster.edu
% 0.17/0.34  % Model    : x86_64 x86_64
% 0.17/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.17/0.34  % Memory   : 8042.1875MB
% 0.17/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.17/0.34  % CPULimit : 300
% 0.17/0.34  % WCLimit  : 300
% 0.17/0.34  % DateTime : Tue Jun  2 11:24:44 EDT 2026
% 0.17/0.34  % CPUTime  : 
% 0.31/0.50  %----Proving TF0_NAR, FOF, or CNF
% 0.46/0.68  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 15...
% 0.46/0.68  % SZS status Theorem
% 0.46/0.68  % SZS output start Proof
% 0.46/0.68  (
% 0.46/0.68  (declare-sort $$unsorted 0)
% 0.46/0.68  (declare-const tptp.xr $$unsorted)
% 0.46/0.68  (declare-const tptp.xk $$unsorted)
% 0.46/0.68  (declare-const tptp.doDivides0 (-> $$unsorted $$unsorted Bool))
% 0.46/0.68  (declare-const tptp.xm $$unsorted)
% 0.46/0.68  (declare-const tptp.sdtpldt0 (-> $$unsorted $$unsorted $$unsorted))
% 0.46/0.68  (declare-const tptp.sdtlseqdt0 (-> $$unsorted $$unsorted Bool))
% 0.46/0.68  (declare-const tptp.xn $$unsorted)
% 0.46/0.68  (declare-const tptp.aNaturalNumber0 (-> $$unsorted Bool))
% 0.46/0.68  (declare-const tptp.sz00 $$unsorted)
% 0.46/0.68  (declare-const tptp.sdtsldt0 (-> $$unsorted $$unsorted $$unsorted))
% 0.46/0.68  (declare-const tptp.sdtasdt0 (-> $$unsorted $$unsorted $$unsorted))
% 0.46/0.68  (declare-const tptp.sdtmndt0 (-> $$unsorted $$unsorted $$unsorted))
% 0.46/0.68  (declare-const tptp.iLess0 (-> $$unsorted $$unsorted Bool))
% 0.46/0.68  (declare-const tptp.isPrime0 (-> $$unsorted Bool))
% 0.46/0.68  (declare-const tptp.sz10 $$unsorted)
% 0.46/0.68  (declare-const tptp.xp $$unsorted)
% 0.46/0.68  (define @t1 () (@var "W0" $$unsorted))
% 0.46/0.68  (define @t2 () (tptp.aNaturalNumber0 @t1))
% 0.46/0.68  (define @t3 () (@list @t1))
% 0.46/0.68  (define @t4 () (@var "W1" $$unsorted))
% 0.46/0.68  (define @t5 () (tptp.sdtpldt0 @t1 @t4))
% 0.46/0.68  (define @t6 () (tptp.aNaturalNumber0 @t4))
% 0.46/0.68  (define @t7 () (and @t2 @t6))
% 0.46/0.68  (define @t8 () (@list @t1 @t4))
% 0.46/0.68  (define @t9 () (tptp.sdtasdt0 @t1 @t4))
% 0.46/0.68  (define @t10 () (tptp.aNaturalNumber0 @t9))
% 0.46/0.68  (define @t11 () (forall @t8 (=> @t7 @t10)))
% 0.46/0.68  (define @t12 () (tptp.sdtpldt0 @t4 @t1))
% 0.46/0.68  (define @t13 () (@var "W2" $$unsorted))
% 0.46/0.68  (define @t14 () (tptp.sdtpldt0 @t4 @t13))
% 0.46/0.68  (define @t15 () (tptp.sdtpldt0 @t5 @t13))
% 0.46/0.68  (define @t16 () (tptp.aNaturalNumber0 @t13))
% 0.46/0.68  (define @t17 () (and @t2 @t6 @t16))
% 0.46/0.68  (define @t18 () (@list @t1 @t4 @t13))
% 0.46/0.68  (define @t19 () (tptp.sdtasdt0 @t4 @t1))
% 0.46/0.68  (define @t20 () (tptp.sdtasdt0 @t13 @t1))
% 0.46/0.68  (define @t21 () (tptp.sdtasdt0 @t1 @t13))
% 0.46/0.68  (define @t22 () (= @t4 @t13))
% 0.46/0.68  (define @t23 () (tptp.sdtpldt0 @t13 @t1))
% 0.46/0.68  (define @t24 () (tptp.sdtpldt0 @t1 @t13))
% 0.46/0.68  (define @t25 () (= @t19 @t20))
% 0.46/0.68  (define @t26 () (= @t9 @t21))
% 0.46/0.68  (define @t27 () (= @t1 tptp.sz00))
% 0.46/0.68  (define @t28 () (not @t27))
% 0.46/0.68  (define @t29 () (= @t4 tptp.sz00))
% 0.46/0.68  (define @t30 () (and @t16 (= @t24 @t4)))
% 0.46/0.68  (define @t31 () (@list @t13))
% 0.46/0.68  (define @t32 () (tptp.sdtlseqdt0 @t1 @t4))
% 0.46/0.68  (define @t33 () (= @t1 @t4))
% 0.46/0.68  (define @t34 () (tptp.sdtlseqdt0 @t4 @t1))
% 0.46/0.68  (define @t35 () (and @t32 @t34))
% 0.46/0.68  (define @t36 () (=> @t35 @t33))
% 0.46/0.68  (define @t37 () (forall @t8 (=> @t7 @t36)))
% 0.46/0.68  (define @t38 () (tptp.sdtlseqdt0 @t4 @t13))
% 0.46/0.68  (define @t39 () (= @t4 @t1))
% 0.46/0.68  (define @t40 () (tptp.sdtpldt0 @t13 @t4))
% 0.46/0.68  (define @t41 () (and (not @t33) @t32))
% 0.46/0.68  (define @t42 () (= @t1 tptp.sz10))
% 0.46/0.68  (define @t43 () (tptp.iLess0 @t1 @t4))
% 0.46/0.68  (define @t44 () (and @t16 (= @t4 @t21)))
% 0.46/0.68  (define @t45 () (tptp.doDivides0 @t1 @t4))
% 0.46/0.68  (define @t46 () (tptp.sdtsldt0 @t4 @t1))
% 0.46/0.68  (define @t47 () (and @t28 @t45))
% 0.46/0.68  (define @t48 () (tptp.doDivides0 @t1 @t13))
% 0.46/0.68  (define @t49 () (tptp.doDivides0 @t1 @t14))
% 0.46/0.68  (define @t50 () (tptp.doDivides0 @t4 @t1))
% 0.46/0.68  (define @t51 () (@list @t4))
% 0.46/0.68  (define @t52 () (not @t42))
% 0.46/0.68  (define @t53 () (tptp.aNaturalNumber0 tptp.xp))
% 0.46/0.68  (define @t54 () (tptp.aNaturalNumber0 tptp.xm))
% 0.46/0.68  (define @t55 () (tptp.aNaturalNumber0 tptp.xn))
% 0.46/0.68  (define @t56 () (@var "W3" $$unsorted))
% 0.46/0.68  (define @t57 () (tptp.sdtasdt0 @t13 @t56))
% 0.46/0.68  (define @t58 () (tptp.aNaturalNumber0 @t56))
% 0.46/0.68  (define @t59 () (@list @t56))
% 0.46/0.68  (define @t60 () (@var "W4" $$unsorted))
% 0.46/0.68  (define @t61 () (tptp.sdtasdt0 tptp.xn tptp.xm))
% 0.46/0.68  (define @t62 () (tptp.sdtpldt0 tptp.xp @t1))
% 0.46/0.68  (define @t63 () (tptp.sdtasdt0 tptp.xp tptp.xk))
% 0.46/0.68  (define @t64 () (= tptp.xk tptp.sz10))
% 0.46/0.68  (define @t65 () (= tptp.xk tptp.sz00))
% 0.46/0.68  (define @t66 () (tptp.sdtasdt0 tptp.xr @t1))
% 0.46/0.68  (define @t67 () (tptp.sdtasdt0 tptp.xp tptp.xm))
% 0.46/0.68  (define @t68 () (tptp.sdtlseqdt0 @t61 @t67))
% 0.46/0.68  (define @t69 () (= @t61 @t67))
% 0.46/0.68  (define @t70 () (tptp.sdtlseqdt0 @t67 @t61))
% 0.46/0.68  (define @t71 () (not @t34))
% 0.46/0.68  (define @t72 () (not @t32))
% 0.46/0.68  (define @t73 () (not @t6))
% 0.46/0.68  (define @t74 () (not @t2))
% 0.46/0.68  (define @t75 () (or @t72 @t71 @t33))
% 0.46/0.68  (define @t76 () (or @t74 @t73))
% 0.46/0.68  (define @t77 () (not @t7))
% 0.46/0.68  (define @t78 () (tptp.aNaturalNumber0 @t61))
% 0.46/0.68  (define @t79 () (not @t54))
% 0.46/0.68  (define @t80 () (not @t55))
% 0.46/0.68  (define @t81 () (or @t80 @t79 @t78))
% 0.46/0.68  (define @t82 () (@list false false false))
% 0.46/0.68  (define @t83 () (tptp.aNaturalNumber0 @t67))
% 0.46/0.68  (define @t84 () (not @t53))
% 0.46/0.68  (define @t85 () (or @t84 @t79 @t83))
% 0.46/0.68  (define @t86 () (not @t70))
% 0.46/0.68  (define @t87 () (not @t68))
% 0.46/0.68  (define @t88 () (not @t83))
% 0.46/0.68  (define @t89 () (not @t78))
% 0.46/0.68  (define @t90 () (or @t89 @t88 @t87 @t86 @t69))
% 0.46/0.68  (assume @p1 (forall @t3 (=> @t2 true)))
% 0.46/0.68  (assume @p2 (tptp.aNaturalNumber0 tptp.sz00))
% 0.46/0.68  (assume @p3 (and (tptp.aNaturalNumber0 tptp.sz10) (not (= tptp.sz10 tptp.sz00))))
% 0.46/0.68  (assume @p4 (forall @t8 (=> @t7 (tptp.aNaturalNumber0 @t5))))
% 0.46/0.68  (assume @p5 @t11)
% 0.46/0.68  (assume @p6 (forall @t8 (=> @t7 (= @t5 @t12))))
% 0.46/0.68  (assume @p7 (forall @t18 (=> @t17 (= @t15 (tptp.sdtpldt0 @t1 @t14)))))
% 0.46/0.68  (assume @p8 (forall @t3 (=> @t2 (and (= (tptp.sdtpldt0 @t1 tptp.sz00) @t1) (= @t1 (tptp.sdtpldt0 tptp.sz00 @t1))))))
% 0.46/0.68  (assume @p9 (forall @t8 (=> @t7 (= @t9 @t19))))
% 0.46/0.68  (assume @p10 (forall @t18 (=> @t17 (= (tptp.sdtasdt0 @t9 @t13) (tptp.sdtasdt0 @t1 (tptp.sdtasdt0 @t4 @t13))))))
% 0.46/0.68  (assume @p11 (forall @t3 (=> @t2 (and (= (tptp.sdtasdt0 @t1 tptp.sz10) @t1) (= @t1 (tptp.sdtasdt0 tptp.sz10 @t1))))))
% 0.46/0.68  (assume @p12 (forall @t3 (=> @t2 (and (= (tptp.sdtasdt0 @t1 tptp.sz00) tptp.sz00) (= tptp.sz00 (tptp.sdtasdt0 tptp.sz00 @t1))))))
% 0.46/0.68  (assume @p13 (forall @t18 (=> @t17 (and (= (tptp.sdtasdt0 @t1 @t14) (tptp.sdtpldt0 @t9 @t21)) (= (tptp.sdtasdt0 @t14 @t1) (tptp.sdtpldt0 @t19 @t20))))))
% 0.46/0.68  (assume @p14 (forall @t18 (=> @t17 (=> (or (= @t5 @t24) (= @t12 @t23)) @t22))))
% 0.46/0.68  (assume @p15 (forall @t3 (=> @t2 (=> @t28 (forall (@list @t4 @t13) (=> (and @t6 @t16) (=> (or @t26 @t25) @t22)))))))
% 0.46/0.68  (assume @p16 (forall @t8 (=> @t7 (=> (= @t5 tptp.sz00) (and @t27 @t29)))))
% 0.46/0.68  (assume @p17 (forall @t8 (=> @t7 (=> (= @t9 tptp.sz00) (or @t27 @t29)))))
% 0.46/0.68  (assume @p18 (forall @t8 (=> @t7 (= @t32 (exists @t31 @t30)))))
% 0.46/0.68  (assume @p19 (forall @t8 (=> @t7 (=> @t32 (forall @t31 (= (= @t13 (tptp.sdtmndt0 @t4 @t1)) @t30))))))
% 0.46/0.68  (assume @p20 (forall @t3 (=> @t2 (tptp.sdtlseqdt0 @t1 @t1))))
% 0.46/0.68  (assume @p21 @t37)
% 0.46/0.68  (assume @p22 (forall @t18 (=> @t17 (=> (and @t32 @t38) (tptp.sdtlseqdt0 @t1 @t13)))))
% 0.46/0.68  (assume @p23 (forall @t8 (=> @t7 (or @t32 (and (not @t39) @t34)))))
% 0.46/0.68  (assume @p24 (forall @t8 (=> @t7 (=> @t41 (forall @t31 (=> @t16 (and (not (= @t23 @t40)) (tptp.sdtlseqdt0 @t23 @t40) (not (= @t24 @t14)) (tptp.sdtlseqdt0 @t24 @t14))))))))
% 0.46/0.68  (assume @p25 (forall @t18 (=> @t17 (=> (and @t28 (not @t22) @t38) (and (not @t26) (tptp.sdtlseqdt0 @t9 @t21) (not @t25) (tptp.sdtlseqdt0 @t19 @t20))))))
% 0.46/0.68  (assume @p26 (forall @t3 (=> @t2 (or @t27 @t42 (and (not (= tptp.sz10 @t1)) (tptp.sdtlseqdt0 tptp.sz10 @t1))))))
% 0.46/0.68  (assume @p27 (forall @t8 (=> @t7 (=> @t28 (tptp.sdtlseqdt0 @t4 @t19)))))
% 0.46/0.68  (assume @p28 (forall @t8 (=> @t7 (=> @t43 true))))
% 0.46/0.68  (assume @p29 (forall @t8 (=> @t7 (=> @t41 @t43))))
% 0.46/0.68  (assume @p30 (forall @t8 (=> @t7 (= @t45 (exists @t31 @t44)))))
% 0.46/0.68  (assume @p31 (forall @t8 (=> @t7 (=> @t47 (forall @t31 (= (= @t13 @t46) @t44))))))
% 0.46/0.68  (assume @p32 (forall @t18 (=> @t17 (=> (and @t45 (tptp.doDivides0 @t4 @t13)) @t48))))
% 0.46/0.68  (assume @p33 (forall @t18 (=> @t17 (=> (and @t45 @t48) @t49))))
% 0.46/0.68  (assume @p34 (forall @t18 (=> @t17 (=> (and @t45 @t49) @t48))))
% 0.46/0.68  (assume @p35 (forall @t8 (=> @t7 (=> (and @t45 (not @t29)) @t32))))
% 0.46/0.68  (assume @p36 (forall @t8 (=> @t7 (=> @t47 (forall @t31 (=> @t16 (= (tptp.sdtasdt0 @t13 @t46) (tptp.sdtsldt0 (tptp.sdtasdt0 @t13 @t4) @t1))))))))
% 0.46/0.68  (assume @p37 (forall @t3 (=> @t2 (= (tptp.isPrime0 @t1) (and @t28 @t52 (forall @t51 (=> (and @t6 @t50) (or (= @t4 tptp.sz10) @t39))))))))
% 0.46/0.68  (assume @p38 (forall @t3 (=> (and @t2 @t28 @t52) (exists @t51 (and @t6 @t50 (tptp.isPrime0 @t4))))))
% 0.46/0.68  (assume @p39 (and @t55 @t54 @t53))
% 0.46/0.68  (assume @p40 (forall @t18 (=> @t17 (=> (and (or (and (not (= @t13 tptp.sz00)) (not (= @t13 tptp.sz10)) (forall @t59 (=> (and @t58 (exists (@list @t60) (and (tptp.aNaturalNumber0 @t60) (= @t13 (tptp.sdtasdt0 @t56 @t60)))) (tptp.doDivides0 @t56 @t13)) (or (= @t56 tptp.sz10) (= @t56 @t13))))) (tptp.isPrime0 @t13)) (or (exists @t59 (and @t58 (= @t9 @t57))) (tptp.doDivides0 @t13 @t9))) (=> (tptp.iLess0 @t15 (tptp.sdtpldt0 (tptp.sdtpldt0 tptp.xn tptp.xm) tptp.xp)) (or (and (exists @t59 (and @t58 (= @t1 @t57))) (tptp.doDivides0 @t13 @t1)) (and (exists @t59 (and @t58 (= @t4 @t57))) (tptp.doDivides0 @t13 @t4))))))))
% 0.46/0.68  (assume @p41 (and (not (= tptp.xp tptp.sz00)) (not (= tptp.xp tptp.sz10)) (forall @t3 (=> (and @t2 (or (exists @t51 (and @t6 (= tptp.xp @t9))) (tptp.doDivides0 @t1 tptp.xp))) (or @t42 (= @t1 tptp.xp)))) (tptp.isPrime0 tptp.xp) (exists @t3 (and @t2 (= @t61 (tptp.sdtasdt0 tptp.xp @t1)))) (tptp.doDivides0 tptp.xp @t61)))
% 0.46/0.68  (assume @p42 (not (or (exists @t3 (and @t2 (= @t62 tptp.xn))) (tptp.sdtlseqdt0 tptp.xp tptp.xn))))
% 0.46/0.68  (assume @p43 (not (or (exists @t3 (and @t2 (= @t62 tptp.xm))) (tptp.sdtlseqdt0 tptp.xp tptp.xm))))
% 0.46/0.68  (assume @p44 (and (not (= tptp.xn tptp.xp)) (exists @t3 (and @t2 (= (tptp.sdtpldt0 tptp.xn @t1) tptp.xp))) (tptp.sdtlseqdt0 tptp.xn tptp.xp) (not (= tptp.xm tptp.xp)) (exists @t3 (and @t2 (= (tptp.sdtpldt0 tptp.xm @t1) tptp.xp))) (tptp.sdtlseqdt0 tptp.xm tptp.xp)))
% 0.46/0.68  (assume @p45 (and (tptp.aNaturalNumber0 tptp.xk) (= @t61 @t63) (= tptp.xk (tptp.sdtsldt0 @t61 tptp.xp))))
% 0.46/0.68  (assume @p46 (not (or @t65 @t64)))
% 0.46/0.68  (assume @p47 (and (not @t65) (not @t64)))
% 0.46/0.68  (assume @p48 (and (tptp.aNaturalNumber0 tptp.xr) (exists @t3 (and @t2 (= tptp.xk @t66))) (tptp.doDivides0 tptp.xr tptp.xk) (not (= tptp.xr tptp.sz00)) (not (= tptp.xr tptp.sz10)) (forall @t3 (=> (and @t2 (or (exists @t51 (and @t6 (= tptp.xr @t9))) (tptp.doDivides0 @t1 tptp.xr))) (or @t42 (= @t1 tptp.xr)))) (tptp.isPrime0 tptp.xr)))
% 0.46/0.68  (assume @p49 (and (exists @t3 (and @t2 (= (tptp.sdtpldt0 tptp.xr @t1) tptp.xk))) (exists @t3 (and @t2 (= @t61 @t66))) (tptp.doDivides0 tptp.xr @t61)))
% 0.46/0.68  (assume @p50 (and (exists @t3 (and @t2 (= @t62 tptp.xk))) (tptp.sdtlseqdt0 tptp.xp tptp.xk)))
% 0.46/0.68  (assume @p51 (and (not @t69) (exists @t3 (and @t2 (= (tptp.sdtpldt0 @t61 @t1) @t67))) @t68 (not (= @t67 @t63)) (exists @t3 (and @t2 (= (tptp.sdtpldt0 @t67 @t1) @t63))) (tptp.sdtlseqdt0 @t67 @t63)))
% 0.46/0.68  (assume @p52 (not false))
% 0.46/0.68  (assume @p53 true)
% 0.46/0.68  (step @p54 :rule and_elim :premises (@p51) :args (0))
% 0.46/0.68  (step @p55 :rule and_elim :premises (@p51) :args (2))
% 0.46/0.68  (step @p56 :rule and_elim :premises (@p51) :args (5))
% 0.46/0.68  (step @p57 :rule true_intro :premises (@p56))
% 0.46/0.68  (step @p58 :rule and_elim :premises (@p45) :args (1))
% 0.46/0.68  (step @p59 :rule refl :args (@t67))
% 0.46/0.68  (step @p60 :rule cong :premises (@p59 @p58) :args (@t70))
% 0.46/0.68  (step @p61 :rule trans :premises (@p60 @p57))
% 0.46/0.68  (step @p62 :rule true_elim :premises (@p61))
% 0.46/0.68  (step @p63 :rule aci_norm :args ((= (or @t76 @t75) (or @t74 @t73 @t72 @t71 @t33))))
% 0.46/0.68  (step @p64 :rule aci_norm :args ((= (or (or @t72 @t71) @t33) @t75)))
% 0.46/0.68  (step @p65 :rule refl :args (@t33))
% 0.46/0.68  (step @p66 :rule bool-and-de-morgan :args (@t32 @t34 true))
% 0.46/0.68  (step @p67 :rule nary_cong :premises (@p66 @p65) :args ((or (not @t35) @t33)))
% 0.46/0.68  (step @p68 :rule trans :premises (@p67 @p64))
% 0.46/0.68  (step @p69 :rule bool-impl-elim :args (@t35 @t33))
% 0.46/0.68  (step @p70 :rule trans :premises (@p69 @p68))
% 0.46/0.68  (step @p71 :rule bool-and-de-morgan :args (@t2 @t6 true))
% 0.46/0.68  (step @p72 :rule nary_cong :premises (@p71 @p70) :args ((or @t77 @t36)))
% 0.46/0.68  (step @p73 :rule trans :premises (@p72 @p63))
% 0.46/0.68  (step @p74 :rule bool-impl-elim :args (@t7 @t36))
% 0.46/0.68  (step @p75 :rule trans :premises (@p74 @p73))
% 0.46/0.68  (step @p76 :rule cong :premises (@p75) :args (@t37))
% 0.46/0.68  (step @p77 :rule eq_resolve :premises (@p21 @p76))
% 0.46/0.68  (step @p78 :rule instantiate :premises (@p77) :args ((@list @t61 @t67)))
% 0.46/0.68  (step @p79 :rule aci_norm :args ((= (or @t76 @t10) (or @t74 @t73 @t10))))
% 0.46/0.68  (step @p80 :rule refl :args (@t10))
% 0.46/0.68  (step @p81 :rule nary_cong :premises (@p71 @p80) :args ((or @t77 @t10)))
% 0.46/0.68  (step @p82 :rule trans :premises (@p81 @p79))
% 0.46/0.68  (step @p83 :rule bool-impl-elim :args (@t7 @t10))
% 0.46/0.68  (step @p84 :rule trans :premises (@p83 @p82))
% 0.46/0.68  (step @p85 :rule cong :premises (@p84) :args (@t11))
% 0.46/0.68  (step @p86 :rule eq_resolve :premises (@p5 @p85))
% 0.46/0.68  (step @p87 :rule instantiate :premises (@p86) :args ((@list tptp.xn tptp.xm)))
% 0.46/0.68  (step @p88 :rule and_elim :premises (@p39) :args (1))
% 0.46/0.68  (step @p89 :rule and_elim :premises (@p39) :args (0))
% 0.46/0.68  (step @p90 :rule cnf_or_pos :args (@t81))
% 0.46/0.68  (step @p91 :rule reordering :premises (@p90) :args ((or @t80 @t79 @t78 (not @t81))))
% 0.46/0.68  (step @p92 :rule chain_m_resolution :premises (@p91 @p89 @p88 @p87) :args (@t78 @t82 (@list @t55 @t54 @t81)))
% 0.46/0.68  (step @p93 :rule instantiate :premises (@p86) :args ((@list tptp.xp tptp.xm)))
% 0.46/0.68  (step @p94 :rule and_elim :premises (@p39) :args (2))
% 0.46/0.68  (step @p95 :rule cnf_or_pos :args (@t85))
% 0.46/0.68  (step @p96 :rule reordering :premises (@p95) :args ((or @t79 @t84 @t83 (not @t85))))
% 0.46/0.68  (step @p97 :rule chain_m_resolution :premises (@p96 @p88 @p94 @p93) :args (@t83 @t82 (@list @t54 @t53 @t85)))
% 0.46/0.68  (step @p98 :rule cnf_or_pos :args (@t90))
% 0.46/0.68  (step @p99 :rule reordering :premises (@p98) :args ((or @t69 @t87 @t89 @t88 @t86 (not @t90))))
% 0.46/0.68  (step @p100 false :rule chain_m_resolution :premises (@p99 @p97 @p92 @p78 @p62 @p55 @p54) :args (false (@list false false false false false true) (@list @t83 @t78 @t90 @t70 @t68 @t69)))
% 0.46/0.68  )
% 0.46/0.68  % SZS output end Proof
% 0.46/0.68  % cvc5 exiting
%------------------------------------------------------------------------------