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cvc5---1.3.4.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : cvc5---1.3.4
% Problem  : SWX106_1 : TPTP v9.2.1. Released v9.1.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : /export/starexec/sandbox/solver/bin/do_cvc5 /export/starexec/sandbox/benchmark/theBenchmark.p 300 THM

% Computer : n022.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 09:07:08 AM UTC 2026

% Result   : Theorem 86.49s 86.78s
% Output   : Proof 45.78s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.12  % Problem  : SWX106_1 : TPTP v9.2.1. Released v9.1.0.
% 0.11/0.13  % Command  : /export/starexec/sandbox/solver/bin/do_cvc5 /export/starexec/sandbox/benchmark/theBenchmark.p 300 THM
% 0.17/0.34  % Computer : n022.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 22:56:38 EDT 2026
% 0.17/0.34  % CPUTime  : 
% 0.28/0.50  %----Proving TF0_ARI
% 86.49/86.78  --- Run --finite-model-find --decision=internal at 45...
% 86.49/86.78  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 60...
% 86.49/86.78  % SZS status Theorem
% 86.49/86.78  % SZS output start Proof
% 86.49/86.78  (
% 86.49/86.78  (declare-sort tptp.symbol 0)
% 86.49/86.78  (declare-sort tptp.general 0)
% 86.49/86.78  (declare-const tptp.prime (-> tptp.general Bool))
% 86.49/86.78  (declare-const tptp.f__integer__ (-> Int tptp.general))
% 86.49/86.78  (declare-const tptp.f__symbolic__ (-> tptp.symbol tptp.general))
% 86.49/86.78  (declare-const tptp.c__supremum__ tptp.general)
% 86.49/86.78  (declare-const tptp.p__is_symbolic__ (-> tptp.general Bool))
% 86.49/86.78  (declare-const tptp.composite_p (-> tptp.general Bool))
% 86.49/86.78  (declare-const tptp.c__infimum__ tptp.general)
% 86.49/86.78  (declare-const tptp.p__is_integer__ (-> tptp.general Bool))
% 86.49/86.78  (declare-const tptp.composite (-> tptp.general Bool))
% 86.49/86.78  (declare-const tptp.n_i Int)
% 86.49/86.78  (declare-const tptp.p__less_equal__ (-> tptp.general tptp.general Bool))
% 86.49/86.78  (declare-const tptp.p__less__ (-> tptp.general tptp.general Bool))
% 86.49/86.78  (declare-const tptp.p__greater_equal__ (-> tptp.general tptp.general Bool))
% 86.49/86.78  (declare-const tptp.p__greater__ (-> tptp.general tptp.general Bool))
% 86.49/86.78  (define @t1 () (@var "N" Int))
% 86.49/86.78  (define @t2 () (tptp.f__integer__ @t1))
% 86.49/86.78  (define @t3 () (@var "X" tptp.general))
% 86.49/86.78  (define @t4 () (@list @t1))
% 86.49/86.78  (define @t5 () (tptp.p__is_integer__ @t3))
% 86.49/86.78  (define @t6 () (@list @t3))
% 86.49/86.78  (define @t7 () (@var "X2" tptp.symbol))
% 86.49/86.78  (define @t8 () (@var "X1" tptp.general))
% 86.49/86.78  (define @t9 () (@var "N2" Int))
% 86.49/86.78  (define @t10 () (@var "N1" Int))
% 86.49/86.78  (define @t11 () (tptp.f__integer__ @t9))
% 86.49/86.78  (define @t12 () (tptp.f__integer__ @t10))
% 86.49/86.78  (define @t13 () (@list @t10 @t9))
% 86.49/86.78  (define @t14 () (forall @t13 (= (= @t12 @t11) (= @t10 @t9))))
% 86.49/86.78  (define @t15 () (@var "S2" tptp.symbol))
% 86.49/86.78  (define @t16 () (@var "S1" tptp.symbol))
% 86.49/86.78  (define @t17 () (tptp.p__less_equal__ @t12 @t11))
% 86.49/86.78  (define @t18 () (= @t17 (<= @t10 @t9)))
% 86.49/86.78  (define @t19 () (forall @t13 @t18))
% 86.49/86.78  (define @t20 () (@var "X2" tptp.general))
% 86.49/86.78  (define @t21 () (= @t8 @t20))
% 86.49/86.78  (define @t22 () (tptp.p__less_equal__ @t20 @t8))
% 86.49/86.78  (define @t23 () (tptp.p__less_equal__ @t8 @t20))
% 86.49/86.78  (define @t24 () (and @t23 @t22))
% 86.49/86.78  (define @t25 () (@list @t8 @t20))
% 86.49/86.78  (define @t26 () (forall @t25 (=> @t24 @t21)))
% 86.49/86.78  (define @t27 () (@var "X3" tptp.general))
% 86.49/86.78  (define @t28 () (not @t21))
% 86.49/86.78  (define @t29 () (forall @t25 (= (tptp.p__greater__ @t8 @t20) (and @t22 @t28))))
% 86.49/86.78  (define @t30 () (@var "S" tptp.symbol))
% 86.49/86.78  (define @t31 () (tptp.f__symbolic__ @t30))
% 86.49/86.78  (define @t32 () (@var "Z1_g" tptp.general))
% 86.49/86.78  (define @t33 () (@var "Z_g" tptp.general))
% 86.49/86.78  (define @t34 () (tptp.p__greater__ @t33 @t32))
% 86.49/86.78  (define @t35 () (tptp.f__integer__ 1))
% 86.49/86.78  (define @t36 () (= @t32 @t35))
% 86.49/86.78  (define @t37 () (@var "J_g" tptp.general))
% 86.49/86.78  (define @t38 () (= @t33 @t37))
% 86.49/86.78  (define @t39 () (and @t38 @t36 @t34))
% 86.49/86.78  (define @t40 () (@list @t33 @t32))
% 86.49/86.78  (define @t41 () (exists @t40 @t39))
% 86.49/86.78  (define @t42 () (@var "I_g" tptp.general))
% 86.49/86.78  (define @t43 () (= @t33 @t42))
% 86.49/86.78  (define @t44 () (and @t43 @t36 @t34))
% 86.49/86.78  (define @t45 () (exists @t40 @t44))
% 86.49/86.78  (define @t46 () (@var "J1_i" Int))
% 86.49/86.78  (define @t47 () (tptp.f__integer__ @t46))
% 86.49/86.78  (define @t48 () (@var "I1_i" Int))
% 86.49/86.78  (define @t49 () (tptp.f__integer__ @t48))
% 86.49/86.78  (define @t50 () (* @t48 @t46))
% 86.49/86.78  (define @t51 () (tptp.f__integer__ @t50))
% 86.49/86.78  (define @t52 () (@var "V1_g" tptp.general))
% 86.49/86.78  (define @t53 () (= @t52 @t51))
% 86.49/86.78  (define @t54 () (and @t53 (= @t49 @t42) (= @t47 @t37)))
% 86.49/86.78  (define @t55 () (@list @t48 @t46))
% 86.49/86.78  (define @t56 () (exists @t55 @t54))
% 86.49/86.78  (define @t57 () (and @t56 @t45 @t41))
% 86.49/86.78  (define @t58 () (@list @t42 @t37))
% 86.49/86.78  (define @t59 () (exists @t58 @t57))
% 86.49/86.78  (define @t60 () (tptp.composite @t52))
% 86.49/86.78  (define @t61 () (= @t60 @t59))
% 86.49/86.78  (define @t62 () (@list @t52))
% 86.49/86.78  (define @t63 () (forall @t62 @t61))
% 86.49/86.78  (define @t64 () (= @t33 @t32))
% 86.49/86.78  (define @t65 () (@var "J_i" Int))
% 86.49/86.78  (define @t66 () (@var "K_i" Int))
% 86.49/86.78  (define @t67 () (@var "I_i" Int))
% 86.49/86.78  (define @t68 () (= @t32 (tptp.f__integer__ @t66)))
% 86.49/86.78  (define @t69 () (= @t65 tptp.n_i))
% 86.49/86.78  (define @t70 () (= @t67 2))
% 86.49/86.78  (define @t71 () (and @t70 @t69 @t68 (<= @t67 @t66) (<= @t66 @t65)))
% 86.49/86.78  (define @t72 () (@list @t67 @t65 @t66))
% 86.49/86.78  (define @t73 () (exists @t72 @t71))
% 86.49/86.78  (define @t74 () (and @t38 @t73 @t64))
% 86.49/86.78  (define @t75 () (exists @t40 @t74))
% 86.49/86.78  (define @t76 () (and @t43 @t73 @t64))
% 86.49/86.78  (define @t77 () (exists @t40 @t76))
% 86.49/86.78  (define @t78 () (and @t56 @t77 @t75))
% 86.49/86.78  (define @t79 () (exists @t58 @t78))
% 86.49/86.78  (define @t80 () (tptp.composite_p @t52))
% 86.49/86.78  (define @t81 () (= @t80 @t79))
% 86.49/86.78  (define @t82 () (forall @t62 @t81))
% 86.49/86.78  (define @t83 () (tptp.composite @t33))
% 86.49/86.78  (define @t84 () (not @t83))
% 86.49/86.78  (define @t85 () (and @t43 @t84))
% 86.49/86.78  (define @t86 () (@list @t33))
% 86.49/86.78  (define @t87 () (exists @t86 @t85))
% 86.49/86.78  (define @t88 () (= @t52 @t42))
% 86.49/86.78  (define @t89 () (and @t88 @t77 @t87))
% 86.49/86.78  (define @t90 () (@list @t42))
% 86.49/86.78  (define @t91 () (exists @t90 @t89))
% 86.49/86.78  (define @t92 () (tptp.prime @t52))
% 86.49/86.78  (define @t93 () (= @t92 @t91))
% 86.49/86.78  (define @t94 () (forall @t62 @t93))
% 86.49/86.78  (define @t95 () (@var "M_i" Int))
% 86.49/86.78  (define @t96 () (@var "N_i" Int))
% 86.49/86.78  (define @t97 () (tptp.composite_p @t33))
% 86.49/86.78  (define @t98 () (not @t97))
% 86.49/86.78  (define @t99 () (and @t43 @t98))
% 86.49/86.78  (define @t100 () (exists @t86 @t99))
% 86.49/86.78  (define @t101 () (and @t88 @t77 @t100))
% 86.49/86.78  (define @t102 () (exists @t90 @t101))
% 86.49/86.78  (define @t103 () (= @t92 @t102))
% 86.49/86.78  (define @t104 () (forall @t62 @t103))
% 86.49/86.78  (define @t105 () (not @t104))
% 86.49/86.78  (define @t106 () (+ @t10 (* -1 @t9)))
% 86.49/86.78  (define @t107 () (+ @t9 1))
% 86.49/86.78  (define @t108 () (>= @t106 1))
% 86.49/86.78  (define @t109 () (>= @t10 @t107))
% 86.49/86.78  (define @t110 () (@var "BOUND_VARIABLE_7918" Int))
% 86.49/86.78  (define @t111 () (not (>= (+ tptp.n_i (* -1 @t110)) 0)))
% 86.49/86.78  (define @t112 () (not (>= @t110 2)))
% 86.49/86.78  (define @t113 () (tptp.f__integer__ @t110))
% 86.49/86.78  (define @t114 () (@var "BOUND_VARIABLE_7893" Int))
% 86.49/86.78  (define @t115 () (tptp.f__integer__ @t114))
% 86.49/86.78  (define @t116 () (not (= @t115 @t113)))
% 86.49/86.78  (define @t117 () (@var "BOUND_VARIABLE_7906" Int))
% 86.49/86.78  (define @t118 () (not (>= (+ tptp.n_i (* -1 @t117)) 0)))
% 86.49/86.78  (define @t119 () (not (>= @t117 2)))
% 86.49/86.78  (define @t120 () (tptp.f__integer__ @t117))
% 86.49/86.78  (define @t121 () (@var "BOUND_VARIABLE_7891" Int))
% 86.49/86.78  (define @t122 () (tptp.f__integer__ @t121))
% 86.49/86.78  (define @t123 () (not (= @t122 @t120)))
% 86.49/86.78  (define @t124 () (@var "BOUND_VARIABLE_8053" Int))
% 86.49/86.78  (define @t125 () (not (>= (+ tptp.n_i (* -1 @t124)) 0)))
% 86.49/86.78  (define @t126 () (not (>= @t124 2)))
% 86.49/86.78  (define @t127 () (tptp.f__integer__ @t124))
% 86.49/86.78  (define @t128 () (not (= @t52 @t127)))
% 86.49/86.78  (define @t129 () (or @t128 @t126 @t125))
% 86.49/86.78  (define @t130 () (@list @t124))
% 86.49/86.78  (define @t131 () (forall @t130 @t129))
% 86.49/86.78  (define @t132 () (forall @t62 (= @t92 (and (not @t80) (not @t131)))))
% 86.49/86.78  (define @t133 () (@quantifiers_skolemize @t132 0))
% 86.49/86.78  (define @t134 () (tptp.f__integer__ (* @t121 @t114)))
% 86.49/86.78  (define @t135 () (@list @t121 @t114 @t117 @t110))
% 86.49/86.78  (define @t136 () (forall @t135 (or (not (= @t134 @t133)) @t123 @t119 @t118 @t116 @t112 @t111)))
% 86.49/86.78  (define @t137 () (@quantifiers_skolemize @t136 1))
% 86.49/86.78  (define @t138 () (tptp.f__integer__ @t137))
% 86.49/86.78  (define @t139 () (tptp.p__less_equal__ @t138 @t138))
% 86.49/86.78  (define @t140 () (+ @t137 (* -1 @t137)))
% 86.49/86.78  (define @t141 () (>= @t140 1))
% 86.49/86.78  (define @t142 () (not @t141))
% 86.49/86.78  (define @t143 () (= @t139 @t142))
% 86.49/86.78  (define @t144 () (forall @t13 (= @t17 (not @t108))))
% 86.49/86.78  (define @t145 () (@list false))
% 86.49/86.78  (define @t146 () (@list @t144))
% 86.49/86.78  (define @t147 () (not (= @t52 @t134)))
% 86.49/86.78  (define @t148 () (or @t147 @t123 @t119 @t118 @t116 @t112 @t111))
% 86.49/86.78  (define @t149 () (not (= @t115 @t115)))
% 86.49/86.78  (define @t150 () (or @t147 @t149 @t123 @t119 @t118 @t116 @t112 @t111))
% 86.49/86.78  (define @t151 () (not (= @t37 @t113)))
% 86.49/86.78  (define @t152 () (not (= @t37 @t115)))
% 86.49/86.78  (define @t153 () (or @t152 @t147 @t152 @t123 @t119 @t118 @t151 @t112 @t111))
% 86.49/86.78  (define @t154 () (@list @t37))
% 86.49/86.78  (define @t155 () (or @t147 @t152 @t123 @t119 @t118 @t151 @t112 @t111))
% 86.49/86.78  (define @t156 () (forall @t154 @t155))
% 86.49/86.78  (define @t157 () (forall @t135 @t156))
% 86.49/86.78  (define @t158 () (forall (@list @t121 @t114 @t117 @t110 @t37) @t155))
% 86.49/86.78  (define @t159 () (@list @t37 @t121 @t114 @t117 @t110))
% 86.49/86.78  (define @t160 () (not (= @t122 @t122)))
% 86.49/86.78  (define @t161 () (or @t147 @t160 @t152 @t123 @t119 @t118 @t151 @t112 @t111))
% 86.49/86.78  (define @t162 () (not (= @t42 @t120)))
% 86.49/86.78  (define @t163 () (not (= @t42 @t122)))
% 86.49/86.78  (define @t164 () (or @t163 @t147 @t163 @t152 @t162 @t119 @t118 @t151 @t112 @t111))
% 86.49/86.78  (define @t165 () (or @t147 @t163 @t152 @t162 @t119 @t118 @t151 @t112 @t111))
% 86.49/86.78  (define @t166 () (forall @t90 @t165))
% 86.49/86.78  (define @t167 () (forall @t159 @t166))
% 86.49/86.78  (define @t168 () (forall (@list @t37 @t121 @t114 @t117 @t110 @t42) @t165))
% 86.49/86.78  (define @t169 () (@list @t42 @t37 @t121 @t114 @t117 @t110))
% 86.49/86.78  (define @t170 () (or @t151 @t112 @t111))
% 86.49/86.78  (define @t171 () (or @t162 @t119 @t118))
% 86.49/86.78  (define @t172 () (or @t147 @t163 @t152))
% 86.49/86.78  (define @t173 () (or @t172 @t171 @t170))
% 86.49/86.78  (define @t174 () (forall @t169 @t173))
% 86.49/86.78  (define @t175 () (forall @t135 @t173))
% 86.49/86.78  (define @t176 () (forall (@list @t110) @t170))
% 86.49/86.78  (define @t177 () (@var "BOUND_VARIABLE_7850" Int))
% 86.49/86.78  (define @t178 () (@list @t177))
% 86.49/86.78  (define @t179 () (forall (@list @t117) @t171))
% 86.49/86.78  (define @t180 () (@var "BOUND_VARIABLE_7809" Int))
% 86.49/86.78  (define @t181 () (@list @t180))
% 86.49/86.78  (define @t182 () (forall (@list @t121 @t114) @t172))
% 86.49/86.78  (define @t183 () (@list @t48 @t46))
% 86.49/86.78  (define @t184 () (or @t182 @t179 @t176))
% 86.49/86.78  (define @t185 () (not (>= (+ tptp.n_i (* -1 @t177)) 0)))
% 86.49/86.78  (define @t186 () (not (>= @t177 2)))
% 86.49/86.78  (define @t187 () (tptp.f__integer__ @t177))
% 86.49/86.78  (define @t188 () (not (= @t37 @t187)))
% 86.49/86.78  (define @t189 () (or @t188 @t186 @t185))
% 86.49/86.78  (define @t190 () (@list @t177))
% 86.49/86.78  (define @t191 () (forall @t190 @t189))
% 86.49/86.78  (define @t192 () (not (>= (+ tptp.n_i (* -1 @t180)) 0)))
% 86.49/86.78  (define @t193 () (not (>= @t180 2)))
% 86.49/86.78  (define @t194 () (tptp.f__integer__ @t180))
% 86.49/86.78  (define @t195 () (not (= @t42 @t194)))
% 86.49/86.78  (define @t196 () (or @t195 @t193 @t192))
% 86.49/86.78  (define @t197 () (@list @t180))
% 86.49/86.78  (define @t198 () (forall @t197 @t196))
% 86.49/86.78  (define @t199 () (= @t37 @t47))
% 86.49/86.78  (define @t200 () (not @t199))
% 86.49/86.78  (define @t201 () (= @t42 @t49))
% 86.49/86.78  (define @t202 () (not @t201))
% 86.49/86.78  (define @t203 () (* @t48 @t46))
% 86.49/86.78  (define @t204 () (= @t52 (tptp.f__integer__ @t203)))
% 86.49/86.78  (define @t205 () (not @t204))
% 86.49/86.78  (define @t206 () (or @t205 @t202 @t200))
% 86.49/86.78  (define @t207 () (forall @t55 @t206))
% 86.49/86.78  (define @t208 () (not @t191))
% 86.49/86.78  (define @t209 () (not @t208))
% 86.49/86.78  (define @t210 () (not @t198))
% 86.49/86.78  (define @t211 () (not @t210))
% 86.49/86.78  (define @t212 () (not @t207))
% 86.49/86.78  (define @t213 () (not @t212))
% 86.49/86.78  (define @t214 () (or @t213 @t211 @t209))
% 86.49/86.78  (define @t215 () (and @t212 @t210 @t208))
% 86.49/86.78  (define @t216 () (forall @t58 (not @t215)))
% 86.49/86.78  (define @t217 () (not @t216))
% 86.49/86.78  (define @t218 () (not (= @t37 @t37)))
% 86.49/86.78  (define @t219 () (or @t218 @t188 @t186 @t185))
% 86.49/86.78  (define @t220 () (not (= @t32 @t187)))
% 86.49/86.78  (define @t221 () (not (= @t37 @t32)))
% 86.49/86.78  (define @t222 () (@list @t32))
% 86.49/86.78  (define @t223 () (or @t221 @t221 @t220 @t186 @t185))
% 86.49/86.78  (define @t224 () (or @t221 @t220 @t186 @t185))
% 86.49/86.78  (define @t225 () (forall @t222 @t224))
% 86.49/86.78  (define @t226 () (forall @t190 @t225))
% 86.49/86.78  (define @t227 () (forall (@list @t177 @t32) @t224))
% 86.49/86.78  (define @t228 () (@list @t32 @t177))
% 86.49/86.78  (define @t229 () (or @t218 @t221 @t220 @t186 @t185))
% 86.49/86.78  (define @t230 () (not @t64))
% 86.49/86.78  (define @t231 () (= @t37 @t33))
% 86.49/86.78  (define @t232 () (not @t231))
% 86.49/86.78  (define @t233 () (not @t38))
% 86.49/86.78  (define @t234 () (or @t232 @t232 @t230 @t220 @t186 @t185))
% 86.49/86.78  (define @t235 () (or @t232 @t230 @t220 @t186 @t185))
% 86.49/86.78  (define @t236 () (forall @t86 @t235))
% 86.49/86.78  (define @t237 () (forall @t228 @t236))
% 86.49/86.78  (define @t238 () (forall (@list @t32 @t177 @t33) @t235))
% 86.49/86.78  (define @t239 () (@list @t33 @t32 @t177))
% 86.49/86.78  (define @t240 () (or @t220 @t186 @t185))
% 86.49/86.78  (define @t241 () (or @t232 @t240 @t230))
% 86.49/86.78  (define @t242 () (forall @t239 @t241))
% 86.49/86.78  (define @t243 () (forall @t190 @t241))
% 86.49/86.78  (define @t244 () (forall @t190 @t240))
% 86.49/86.78  (define @t245 () (@list @t66))
% 86.49/86.78  (define @t246 () (or @t232 @t244 @t230))
% 86.49/86.78  (define @t247 () (* -1 @t66))
% 86.49/86.78  (define @t248 () (not (>= (+ tptp.n_i @t247) 0)))
% 86.49/86.78  (define @t249 () (not (>= @t66 2)))
% 86.49/86.78  (define @t250 () (not @t68))
% 86.49/86.78  (define @t251 () (or @t250 @t249 @t248))
% 86.49/86.78  (define @t252 () (@list @t66))
% 86.49/86.78  (define @t253 () (forall @t252 @t251))
% 86.49/86.78  (define @t254 () (not @t253))
% 86.49/86.78  (define @t255 () (not @t254))
% 86.49/86.78  (define @t256 () (or @t232 @t255 @t230))
% 86.49/86.78  (define @t257 () (or @t255 @t230))
% 86.49/86.78  (define @t258 () (not (and @t254 @t64)))
% 86.49/86.78  (define @t259 () (and @t231 @t254 @t64))
% 86.49/86.78  (define @t260 () (forall @t40 (not @t259)))
% 86.49/86.78  (define @t261 () (not @t260))
% 86.49/86.78  (define @t262 () (not (= tptp.n_i tptp.n_i)))
% 86.49/86.78  (define @t263 () (or @t262 @t250 @t249 @t248))
% 86.49/86.78  (define @t264 () (+ @t65 @t247))
% 86.49/86.78  (define @t265 () (>= @t264 0))
% 86.49/86.78  (define @t266 () (not @t265))
% 86.49/86.78  (define @t267 () (= tptp.n_i @t65))
% 86.49/86.78  (define @t268 () (not @t267))
% 86.49/86.78  (define @t269 () (@list @t65))
% 86.49/86.78  (define @t270 () (* 1 (- @t65 tptp.n_i)))
% 86.49/86.78  (define @t271 () (* -1 (- tptp.n_i @t65)))
% 86.49/86.78  (define @t272 () (or @t268 @t268 @t250 @t249 @t266))
% 86.49/86.78  (define @t273 () (or @t268 @t250 @t249 @t266))
% 86.49/86.78  (define @t274 () (forall @t269 @t273))
% 86.49/86.78  (define @t275 () (forall @t252 @t274))
% 86.49/86.78  (define @t276 () (forall (@list @t66 @t65) @t273))
% 86.49/86.78  (define @t277 () (@list @t65 @t66))
% 86.49/86.78  (define @t278 () (+ 2 @t247))
% 86.49/86.78  (define @t279 () (+ @t66 1))
% 86.49/86.78  (define @t280 () (>= @t278 1))
% 86.49/86.78  (define @t281 () (= 2 2))
% 86.49/86.78  (define @t282 () (not @t281))
% 86.49/86.78  (define @t283 () (or @t282 @t268 @t250 @t280 @t266))
% 86.49/86.78  (define @t284 () (+ @t67 @t247))
% 86.49/86.78  (define @t285 () (>= @t284 1))
% 86.49/86.78  (define @t286 () (not @t70))
% 86.49/86.78  (define @t287 () (or @t286 @t286 @t268 @t250 @t285 @t266))
% 86.49/86.78  (define @t288 () (@list @t67))
% 86.49/86.78  (define @t289 () (or @t286 @t268 @t250 @t285 @t266))
% 86.49/86.78  (define @t290 () (forall @t288 @t289))
% 86.49/86.78  (define @t291 () (forall @t277 @t290))
% 86.49/86.78  (define @t292 () (forall (@list @t65 @t66 @t67) @t289))
% 86.49/86.78  (define @t293 () (not @t285))
% 86.49/86.78  (define @t294 () (not @t293))
% 86.49/86.78  (define @t295 () (or @t286 @t268 @t250 @t294 @t266))
% 86.49/86.78  (define @t296 () (and @t70 @t267 @t68 @t293 @t265))
% 86.49/86.78  (define @t297 () (forall @t72 (not @t296)))
% 86.49/86.78  (define @t298 () (not @t297))
% 86.49/86.78  (define @t299 () (>= @t67 @t279))
% 86.49/86.78  (define @t300 () (not (= @t42 @t42)))
% 86.49/86.78  (define @t301 () (or @t300 @t195 @t193 @t192))
% 86.49/86.78  (define @t302 () (not (= @t32 @t194)))
% 86.49/86.78  (define @t303 () (not (= @t42 @t32)))
% 86.49/86.78  (define @t304 () (or @t303 @t303 @t302 @t193 @t192))
% 86.49/86.78  (define @t305 () (or @t303 @t302 @t193 @t192))
% 86.49/86.78  (define @t306 () (forall @t222 @t305))
% 86.49/86.78  (define @t307 () (forall @t197 @t306))
% 86.49/86.78  (define @t308 () (forall (@list @t180 @t32) @t305))
% 86.49/86.78  (define @t309 () (@list @t32 @t180))
% 86.49/86.78  (define @t310 () (or @t300 @t303 @t302 @t193 @t192))
% 86.49/86.78  (define @t311 () (= @t42 @t33))
% 86.49/86.78  (define @t312 () (not @t311))
% 86.49/86.78  (define @t313 () (not @t43))
% 86.49/86.78  (define @t314 () (or @t312 @t312 @t230 @t302 @t193 @t192))
% 86.49/86.78  (define @t315 () (or @t312 @t230 @t302 @t193 @t192))
% 86.49/86.78  (define @t316 () (forall @t86 @t315))
% 86.49/86.78  (define @t317 () (forall @t309 @t316))
% 86.49/86.78  (define @t318 () (forall (@list @t32 @t180 @t33) @t315))
% 86.49/86.78  (define @t319 () (@list @t33 @t32 @t180))
% 86.49/86.78  (define @t320 () (or @t302 @t193 @t192))
% 86.49/86.78  (define @t321 () (or @t312 @t320 @t230))
% 86.49/86.78  (define @t322 () (forall @t319 @t321))
% 86.49/86.78  (define @t323 () (forall @t197 @t321))
% 86.49/86.78  (define @t324 () (forall @t197 @t320))
% 86.49/86.78  (define @t325 () (or @t312 @t324 @t230))
% 86.49/86.78  (define @t326 () (or @t312 @t255 @t230))
% 86.49/86.78  (define @t327 () (and @t311 @t254 @t64))
% 86.49/86.78  (define @t328 () (forall @t40 (not @t327)))
% 86.49/86.78  (define @t329 () (not @t328))
% 86.49/86.78  (define @t330 () (and @t204 @t201 @t199))
% 86.49/86.78  (define @t331 () (forall @t55 (not @t330)))
% 86.49/86.78  (define @t332 () (not @t331))
% 86.49/86.78  (define @t333 () (not (= @t133 @t134)))
% 86.49/86.78  (define @t334 () (or @t333 @t123 @t119 @t118 @t116 @t112 @t111))
% 86.49/86.78  (define @t335 () (forall @t135 @t334))
% 86.49/86.78  (define @t336 () (not @t335))
% 86.49/86.78  (define @t337 () (tptp.composite_p @t133))
% 86.49/86.78  (define @t338 () (= @t337 @t336))
% 86.49/86.78  (define @t339 () (forall @t62 (= @t80 (not (forall @t135 @t148)))))
% 86.49/86.78  (define @t340 () (@list @t133))
% 86.49/86.78  (define @t341 () (not @t136))
% 86.49/86.78  (define @t342 () (= @t337 @t341))
% 86.49/86.78  (define @t343 () (not @t342))
% 86.49/86.78  (define @t344 () (not @t337))
% 86.49/86.78  (define @t345 () (@var "BOUND_VARIABLE_7716" Int))
% 86.49/86.78  (define @t346 () (@var "BOUND_VARIABLE_7714" Int))
% 86.49/86.78  (define @t347 () (tptp.f__integer__ (* @t346 @t345)))
% 86.49/86.78  (define @t348 () (tptp.f__integer__ @t345))
% 86.49/86.78  (define @t349 () (not (tptp.p__greater__ @t348 @t35)))
% 86.49/86.78  (define @t350 () (tptp.f__integer__ @t346))
% 86.49/86.78  (define @t351 () (not (tptp.p__greater__ @t350 @t35)))
% 86.49/86.78  (define @t352 () (@list @t346 @t345))
% 86.49/86.78  (define @t353 () (forall @t352 (or @t351 @t349 (not (= @t347 @t133)))))
% 86.49/86.78  (define @t354 () (@quantifiers_skolemize @t353 0))
% 86.49/86.78  (define @t355 () (* -1 @t354))
% 86.49/86.78  (define @t356 () (+ tptp.n_i @t355))
% 86.49/86.78  (define @t357 () (>= @t356 0))
% 86.49/86.78  (define @t358 () (not @t357))
% 86.49/86.78  (define @t359 () (>= @t354 2))
% 86.49/86.78  (define @t360 () (not @t359))
% 86.49/86.78  (define @t361 () (@quantifiers_skolemize @t353 1))
% 86.49/86.78  (define @t362 () (* -1 @t361))
% 86.49/86.78  (define @t363 () (+ tptp.n_i @t362))
% 86.49/86.78  (define @t364 () (>= @t363 0))
% 86.49/86.78  (define @t365 () (not @t364))
% 86.49/86.78  (define @t366 () (>= @t361 2))
% 86.49/86.78  (define @t367 () (not @t366))
% 86.49/86.78  (define @t368 () (* @t354 @t361))
% 86.49/86.78  (define @t369 () (tptp.f__integer__ @t368))
% 86.49/86.78  (define @t370 () (= @t133 @t369))
% 86.49/86.78  (define @t371 () (not @t370))
% 86.49/86.78  (define @t372 () (or @t371 @t367 @t365 @t360 @t358))
% 86.49/86.78  (define @t373 () (tptp.f__integer__ @t354))
% 86.49/86.78  (define @t374 () (not (= @t373 @t373)))
% 86.49/86.78  (define @t375 () (tptp.f__integer__ @t361))
% 86.49/86.78  (define @t376 () (not (= @t375 @t375)))
% 86.49/86.78  (define @t377 () (* @t361 @t354))
% 86.49/86.78  (define @t378 () (tptp.f__integer__ @t377))
% 86.49/86.78  (define @t379 () (= @t378 @t133))
% 86.49/86.78  (define @t380 () (not @t379))
% 86.49/86.78  (define @t381 () (or @t380 @t376 @t367 @t365 @t374 @t360 @t358))
% 86.49/86.78  (define @t382 () (forall @t130 (or (not (= @t127 @t133)) @t126 @t125)))
% 86.49/86.78  (define @t383 () (not @t382))
% 86.49/86.78  (define @t384 () (and @t344 @t383))
% 86.49/86.78  (define @t385 () (not @t384))
% 86.49/86.78  (define @t386 () (@list @t124))
% 86.49/86.78  (define @t387 () (@var "BOUND_VARIABLE_7978" Int))
% 86.49/86.78  (define @t388 () (@list @t387))
% 86.49/86.78  (define @t389 () (or @t80 @t131))
% 86.49/86.78  (define @t390 () (= @t92 (not @t389)))
% 86.49/86.78  (define @t391 () (or @t80 @t129))
% 86.49/86.78  (define @t392 () (or @t80 @t128 @t126 @t125))
% 86.49/86.78  (define @t393 () (not (= @t52 @t52)))
% 86.49/86.78  (define @t394 () (or @t393 @t80 @t128 @t126 @t125))
% 86.49/86.78  (define @t395 () (not (= @t42 @t127)))
% 86.49/86.78  (define @t396 () (tptp.composite_p @t42))
% 86.49/86.78  (define @t397 () (not @t88))
% 86.49/86.78  (define @t398 () (not (= @t42 @t52)))
% 86.49/86.78  (define @t399 () (or @t397 @t397 @t396 @t395 @t126 @t125))
% 86.49/86.78  (define @t400 () (or @t397 @t396 @t395 @t126 @t125))
% 86.49/86.78  (define @t401 () (forall @t90 @t400))
% 86.49/86.78  (define @t402 () (forall @t130 @t401))
% 86.49/86.78  (define @t403 () (forall (@list @t124 @t42) @t400))
% 86.49/86.78  (define @t404 () (@list @t42 @t124))
% 86.49/86.78  (define @t405 () (or @t395 @t126 @t125))
% 86.49/86.78  (define @t406 () (or @t397 @t405 @t396))
% 86.49/86.78  (define @t407 () (forall @t404 @t406))
% 86.49/86.78  (define @t408 () (forall @t130 @t406))
% 86.49/86.78  (define @t409 () (forall @t130 @t405))
% 86.49/86.78  (define @t410 () (or @t397 @t409 @t396))
% 86.49/86.78  (define @t411 () (not @t396))
% 86.49/86.78  (define @t412 () (not @t411))
% 86.49/86.78  (define @t413 () (or @t397 @t211 @t412))
% 86.49/86.78  (define @t414 () (and @t88 @t210 @t411))
% 86.49/86.78  (define @t415 () (forall @t90 (not @t414)))
% 86.49/86.78  (define @t416 () (not @t415))
% 86.49/86.78  (define @t417 () (or @t300 @t396))
% 86.49/86.78  (define @t418 () (or @t312 @t312 @t97))
% 86.49/86.78  (define @t419 () (or @t312 @t97))
% 86.49/86.78  (define @t420 () (and @t311 @t98))
% 86.49/86.78  (define @t421 () (forall @t86 (not @t420)))
% 86.49/86.78  (define @t422 () (not @t421))
% 86.49/86.78  (define @t423 () (tptp.prime @t133))
% 86.49/86.78  (define @t424 () (= @t423 @t384))
% 86.49/86.78  (define @t425 () (not @t424))
% 86.49/86.78  (define @t426 () (not @t132))
% 86.49/86.78  (define @t427 () (not (= @t133 @t127)))
% 86.49/86.78  (define @t428 () (or @t427 @t126 @t125))
% 86.49/86.78  (define @t429 () (forall @t130 @t428))
% 86.49/86.78  (define @t430 () (not @t429))
% 86.49/86.78  (define @t431 () (and @t344 @t430))
% 86.49/86.78  (define @t432 () (= @t423 @t431))
% 86.49/86.78  (define @t433 () (not @t432))
% 86.49/86.78  (define @t434 () (@list true))
% 86.49/86.78  (define @t435 () (not (>= (+ tptp.n_i (* -1 @t387)) 0)))
% 86.49/86.78  (define @t436 () (not (>= @t387 2)))
% 86.49/86.78  (define @t437 () (tptp.f__integer__ @t387))
% 86.49/86.78  (define @t438 () (@list @t387))
% 86.49/86.78  (define @t439 () (forall @t438 (or (not (= @t437 @t133)) @t436 @t435)))
% 86.49/86.78  (define @t440 () (not @t439))
% 86.49/86.78  (define @t441 () (tptp.composite @t133))
% 86.49/86.78  (define @t442 () (not @t441))
% 86.49/86.78  (define @t443 () (and @t442 @t440))
% 86.49/86.78  (define @t444 () (not @t443))
% 86.49/86.78  (define @t445 () (not (= @t52 @t437)))
% 86.49/86.78  (define @t446 () (or @t445 @t436 @t435))
% 86.49/86.78  (define @t447 () (forall @t438 @t446))
% 86.49/86.78  (define @t448 () (or @t60 @t447))
% 86.49/86.78  (define @t449 () (= @t92 (not @t448)))
% 86.49/86.78  (define @t450 () (or @t60 @t446))
% 86.49/86.78  (define @t451 () (or @t60 @t445 @t436 @t435))
% 86.49/86.78  (define @t452 () (or @t393 @t60 @t445 @t436 @t435))
% 86.49/86.78  (define @t453 () (not (= @t42 @t437)))
% 86.49/86.78  (define @t454 () (tptp.composite @t42))
% 86.49/86.78  (define @t455 () (or @t397 @t397 @t454 @t453 @t436 @t435))
% 86.49/86.78  (define @t456 () (or @t397 @t454 @t453 @t436 @t435))
% 86.49/86.78  (define @t457 () (forall @t90 @t456))
% 86.49/86.78  (define @t458 () (forall @t438 @t457))
% 86.49/86.78  (define @t459 () (forall (@list @t387 @t42) @t456))
% 86.49/86.78  (define @t460 () (@list @t42 @t387))
% 86.49/86.78  (define @t461 () (or @t453 @t436 @t435))
% 86.49/86.78  (define @t462 () (or @t397 @t461 @t454))
% 86.49/86.78  (define @t463 () (forall @t460 @t462))
% 86.49/86.78  (define @t464 () (forall @t438 @t462))
% 86.49/86.78  (define @t465 () (forall @t438 @t461))
% 86.49/86.78  (define @t466 () (or @t397 @t465 @t454))
% 86.49/86.78  (define @t467 () (not @t454))
% 86.49/86.78  (define @t468 () (not @t467))
% 86.49/86.78  (define @t469 () (or @t397 @t211 @t468))
% 86.49/86.78  (define @t470 () (and @t88 @t210 @t467))
% 86.49/86.78  (define @t471 () (forall @t90 (not @t470)))
% 86.49/86.78  (define @t472 () (not @t471))
% 86.49/86.78  (define @t473 () (or @t300 @t454))
% 86.49/86.78  (define @t474 () (or @t312 @t312 @t83))
% 86.49/86.78  (define @t475 () (or @t312 @t83))
% 86.49/86.78  (define @t476 () (and @t311 @t84))
% 86.49/86.78  (define @t477 () (forall @t86 (not @t476)))
% 86.49/86.78  (define @t478 () (not @t477))
% 86.49/86.78  (define @t479 () (not (= @t133 @t437)))
% 86.49/86.78  (define @t480 () (or @t479 @t436 @t435))
% 86.49/86.78  (define @t481 () (forall @t438 @t480))
% 86.49/86.78  (define @t482 () (not @t481))
% 86.49/86.78  (define @t483 () (and @t442 @t482))
% 86.49/86.78  (define @t484 () (= @t423 @t483))
% 86.49/86.78  (define @t485 () (forall @t62 (= @t92 (and (not @t60) (not @t447)))))
% 86.49/86.78  (define @t486 () (= @t423 @t443))
% 86.49/86.78  (define @t487 () (not @t486))
% 86.49/86.78  (define @t488 () (not @t383))
% 86.49/86.78  (define @t489 () (@list @t382))
% 86.49/86.78  (define @t490 () (not (= @t52 @t347)))
% 86.49/86.78  (define @t491 () (or @t351 @t349 @t490))
% 86.49/86.78  (define @t492 () (not (= @t348 @t348)))
% 86.49/86.78  (define @t493 () (or @t351 @t349 @t490 @t492))
% 86.49/86.78  (define @t494 () (not (= @t37 @t348)))
% 86.49/86.78  (define @t495 () (tptp.p__greater__ @t37 @t35))
% 86.49/86.78  (define @t496 () (not @t495))
% 86.49/86.78  (define @t497 () (or @t494 @t351 @t496 @t490 @t494))
% 86.49/86.78  (define @t498 () (or @t351 @t496 @t490 @t494))
% 86.49/86.78  (define @t499 () (forall @t154 @t498))
% 86.49/86.78  (define @t500 () (forall @t352 @t499))
% 86.49/86.78  (define @t501 () (forall (@list @t346 @t345 @t37) @t498))
% 86.49/86.78  (define @t502 () (@list @t37 @t346 @t345))
% 86.49/86.78  (define @t503 () (not (= @t350 @t350)))
% 86.49/86.78  (define @t504 () (or @t351 @t496 @t490 @t503 @t494))
% 86.49/86.78  (define @t505 () (not (= @t42 @t350)))
% 86.49/86.78  (define @t506 () (tptp.p__greater__ @t42 @t35))
% 86.49/86.78  (define @t507 () (not @t506))
% 86.49/86.78  (define @t508 () (or @t505 @t507 @t496 @t490 @t505 @t494))
% 86.49/86.78  (define @t509 () (or @t507 @t496 @t490 @t505 @t494))
% 86.49/86.78  (define @t510 () (forall @t90 @t509))
% 86.49/86.78  (define @t511 () (forall @t502 @t510))
% 86.49/86.78  (define @t512 () (forall (@list @t37 @t346 @t345 @t42) @t509))
% 86.49/86.78  (define @t513 () (@list @t42 @t37 @t346 @t345))
% 86.49/86.78  (define @t514 () (or @t490 @t505 @t494))
% 86.49/86.78  (define @t515 () (or @t514 @t507 @t496))
% 86.49/86.78  (define @t516 () (forall @t513 @t515))
% 86.49/86.78  (define @t517 () (forall @t352 @t515))
% 86.49/86.78  (define @t518 () (forall @t352 @t514))
% 86.49/86.78  (define @t519 () (or @t518 @t507 @t496))
% 86.49/86.78  (define @t520 () (or @t213 @t507 @t496))
% 86.49/86.78  (define @t521 () (and @t212 @t506 @t495))
% 86.49/86.78  (define @t522 () (forall @t58 (not @t521)))
% 86.49/86.78  (define @t523 () (not @t522))
% 86.49/86.78  (define @t524 () (not (= @t35 @t35)))
% 86.49/86.78  (define @t525 () (or @t524 @t496))
% 86.49/86.78  (define @t526 () (not (tptp.p__greater__ @t37 @t32)))
% 86.49/86.78  (define @t527 () (not @t36))
% 86.49/86.78  (define @t528 () (or @t527 @t527 @t526))
% 86.49/86.78  (define @t529 () (or @t527 @t526))
% 86.49/86.78  (define @t530 () (or @t218 @t527 @t526))
% 86.49/86.78  (define @t531 () (not @t34))
% 86.49/86.78  (define @t532 () (or @t232 @t232 @t527 @t531))
% 86.49/86.78  (define @t533 () (or @t232 @t527 @t531))
% 86.49/86.78  (define @t534 () (forall @t86 @t533))
% 86.49/86.78  (define @t535 () (forall @t222 @t534))
% 86.49/86.78  (define @t536 () (@list @t32 @t33))
% 86.49/86.78  (define @t537 () (forall @t536 @t533))
% 86.49/86.78  (define @t538 () (or @t527 @t531))
% 86.49/86.78  (define @t539 () (not (and @t36 @t34)))
% 86.49/86.78  (define @t540 () (and @t231 @t36 @t34))
% 86.49/86.78  (define @t541 () (forall @t40 (not @t540)))
% 86.49/86.78  (define @t542 () (not @t541))
% 86.49/86.78  (define @t543 () (or @t524 @t507))
% 86.49/86.78  (define @t544 () (not (tptp.p__greater__ @t42 @t32)))
% 86.49/86.78  (define @t545 () (or @t527 @t527 @t544))
% 86.49/86.78  (define @t546 () (or @t527 @t544))
% 86.49/86.78  (define @t547 () (or @t300 @t527 @t544))
% 86.49/86.78  (define @t548 () (or @t312 @t312 @t527 @t531))
% 86.49/86.78  (define @t549 () (or @t312 @t527 @t531))
% 86.49/86.78  (define @t550 () (forall @t86 @t549))
% 86.49/86.78  (define @t551 () (forall @t222 @t550))
% 86.49/86.78  (define @t552 () (forall @t536 @t549))
% 86.49/86.78  (define @t553 () (and @t311 @t36 @t34))
% 86.49/86.78  (define @t554 () (forall @t40 (not @t553)))
% 86.49/86.78  (define @t555 () (not @t554))
% 86.49/86.78  (define @t556 () (not (= @t133 @t347)))
% 86.49/86.78  (define @t557 () (or @t351 @t349 @t556))
% 86.49/86.78  (define @t558 () (forall @t352 @t557))
% 86.49/86.78  (define @t559 () (not @t558))
% 86.49/86.78  (define @t560 () (= @t441 @t559))
% 86.49/86.78  (define @t561 () (forall @t62 (= @t60 (not (forall @t352 @t491)))))
% 86.49/86.78  (define @t562 () (not @t353))
% 86.49/86.78  (define @t563 () (= @t441 @t562))
% 86.49/86.78  (define @t564 () (not @t563))
% 86.49/86.78  (define @t565 () (tptp.p__greater__ @t375 @t35))
% 86.49/86.78  (define @t566 () (not @t565))
% 86.49/86.78  (define @t567 () (tptp.p__greater__ @t373 @t35))
% 86.49/86.78  (define @t568 () (not @t567))
% 86.49/86.78  (define @t569 () (or @t568 @t566 @t371))
% 86.49/86.78  (define @t570 () (not @t569))
% 86.49/86.78  (define @t571 () (not @t562))
% 86.49/86.78  (define @t572 () (not (= @t369 @t133)))
% 86.49/86.78  (define @t573 () (or @t568 @t566 @t572))
% 86.49/86.78  (define @t574 () (not @t573))
% 86.49/86.78  (define @t575 () (not (= @t373 @t35)))
% 86.49/86.78  (define @t576 () (tptp.p__less_equal__ @t35 @t373))
% 86.49/86.78  (define @t577 () (and @t576 @t575))
% 86.49/86.78  (define @t578 () (= @t567 @t577))
% 86.49/86.78  (define @t579 () (= @t35 @t373))
% 86.49/86.78  (define @t580 () (not @t579))
% 86.49/86.78  (define @t581 () (and @t576 @t580))
% 86.49/86.78  (define @t582 () (= @t567 @t581))
% 86.49/86.78  (define @t583 () (@list @t29))
% 86.49/86.78  (define @t584 () (not (= @t375 @t35)))
% 86.49/86.78  (define @t585 () (tptp.p__less_equal__ @t35 @t375))
% 86.49/86.78  (define @t586 () (and @t585 @t584))
% 86.49/86.78  (define @t587 () (= @t565 @t586))
% 86.49/86.78  (define @t588 () (= @t35 @t375))
% 86.49/86.78  (define @t589 () (not @t588))
% 86.49/86.78  (define @t590 () (and @t585 @t589))
% 86.49/86.78  (define @t591 () (= @t565 @t590))
% 86.49/86.78  (define @t592 () (tptp.p__less_equal__ @t369 @t369))
% 86.49/86.78  (define @t593 () (* -1 @t368))
% 86.49/86.78  (define @t594 () (+ @t368 @t593))
% 86.49/86.78  (define @t595 () (>= @t594 1))
% 86.49/86.78  (define @t596 () (not @t595))
% 86.49/86.78  (define @t597 () (= @t592 @t596))
% 86.49/86.78  (define @t598 () (@quantifiers_skolemize @t382 0))
% 86.49/86.78  (define @t599 () (* -1 @t598))
% 86.49/86.78  (define @t600 () (+ tptp.n_i @t599))
% 86.49/86.78  (define @t601 () (>= @t600 0))
% 86.49/86.78  (define @t602 () (not @t601))
% 86.49/86.78  (define @t603 () (>= @t598 2))
% 86.49/86.78  (define @t604 () (not @t603))
% 86.49/86.78  (define @t605 () (tptp.f__integer__ @t598))
% 86.49/86.78  (define @t606 () (= @t133 @t605))
% 86.49/86.78  (define @t607 () (not @t606))
% 86.49/86.78  (define @t608 () (or @t607 @t604 @t602))
% 86.49/86.78  (define @t609 () (not @t608))
% 86.49/86.78  (define @t610 () (not (= @t605 @t133)))
% 86.49/86.78  (define @t611 () (or @t610 @t604 @t602))
% 86.49/86.78  (define @t612 () (not @t611))
% 86.49/86.78  (define @t613 () (@list @t608))
% 86.49/86.78  (define @t614 () (tptp.p__less_equal__ @t369 @t605))
% 86.49/86.78  (define @t615 () (and @t606 @t370 @t592))
% 86.49/86.78  (define @t616 () (tptp.p__less_equal__ @t605 @t605))
% 86.49/86.78  (define @t617 () (+ @t598 @t599))
% 86.49/86.78  (define @t618 () (>= @t617 1))
% 86.49/86.78  (define @t619 () (not @t618))
% 86.49/86.78  (define @t620 () (= @t616 @t619))
% 86.49/86.78  (define @t621 () (tptp.p__less_equal__ @t605 @t369))
% 86.49/86.78  (define @t622 () (and @t606 @t370 @t616))
% 86.49/86.78  (define @t623 () (not @t581))
% 86.49/86.78  (define @t624 () (not @t590))
% 86.49/86.78  (define @t625 () (+ @t598 @t593))
% 86.49/86.78  (define @t626 () (>= @t625 0))
% 86.49/86.78  (define @t627 () (+ @t599 @t368))
% 86.49/86.78  (define @t628 () (+ @t625 1))
% 86.49/86.78  (define @t629 () (+ @t368 @t599))
% 86.49/86.78  (define @t630 () (>= @t629 1))
% 86.49/86.78  (define @t631 () (not @t630))
% 86.49/86.78  (define @t632 () (= @t614 @t631))
% 86.49/86.78  (define @t633 () (= @t614 @t626))
% 86.49/86.78  (define @t634 () (>= @t625 1))
% 86.49/86.78  (define @t635 () (not @t634))
% 86.49/86.78  (define @t636 () (= @t621 @t635))
% 86.49/86.78  (define @t637 () (>= @t354 1))
% 86.49/86.78  (define @t638 () (+ 1 @t355))
% 86.49/86.78  (define @t639 () (+ @t354 1))
% 86.49/86.78  (define @t640 () (>= @t638 1))
% 86.49/86.78  (define @t641 () (not @t640))
% 86.49/86.78  (define @t642 () (= @t576 @t641))
% 86.49/86.78  (define @t643 () (= @t576 @t637))
% 86.49/86.78  (define @t644 () (not @t576))
% 86.49/86.78  (define @t645 () (not @t22))
% 86.49/86.78  (define @t646 () (not @t23))
% 86.49/86.78  (define @t647 () (tptp.p__less_equal__ @t373 @t35))
% 86.49/86.78  (define @t648 () (not @t647))
% 86.49/86.78  (define @t649 () (or @t644 @t648 @t579))
% 86.49/86.78  (define @t650 () (>= @t361 1))
% 86.49/86.78  (define @t651 () (+ 1 @t362))
% 86.49/86.78  (define @t652 () (+ @t361 1))
% 86.49/86.78  (define @t653 () (>= @t651 1))
% 86.49/86.78  (define @t654 () (not @t653))
% 86.49/86.78  (define @t655 () (= @t585 @t654))
% 86.49/86.78  (define @t656 () (= @t585 @t650))
% 86.49/86.78  (define @t657 () (not @t585))
% 86.49/86.78  (define @t658 () (tptp.p__less_equal__ @t375 @t35))
% 86.49/86.78  (define @t659 () (not @t658))
% 86.49/86.78  (define @t660 () (or @t657 @t659 @t588))
% 86.49/86.78  (define @t661 () (>= @t368 2))
% 86.49/86.78  (define @t662 () (not @t661))
% 86.49/86.78  (define @t663 () (>= 0 0))
% 86.49/86.78  (define @t664 () (+ 2 -2 0))
% 86.49/86.78  (define @t665 () (* -1 2))
% 86.49/86.78  (define @t666 () (+ 2 @t665 0))
% 86.49/86.78  (define @t667 () (+ @t593 @t368 @t599 @t598))
% 86.49/86.78  (define @t668 () (+ @t368 @t599 @t625))
% 86.49/86.78  (define @t669 () (>= @t668 @t666))
% 86.49/86.78  (define @t670 () (< -1 0))
% 86.49/86.78  (define @t671 () (= @t354 0))
% 86.49/86.78  (define @t672 () (+ 0 -1))
% 86.49/86.78  (define @t673 () (* -1 1))
% 86.49/86.78  (define @t674 () (+ 0 @t673))
% 86.49/86.78  (define @t675 () (+ @t354 @t355))
% 86.49/86.78  (define @t676 () (= @t675 0))
% 86.49/86.78  (define @t677 () (not @t671))
% 86.49/86.78  (define @t678 () (not @t637))
% 86.49/86.78  (define @t679 () (>= @t354 0))
% 86.49/86.78  (define @t680 () (< @t354 0))
% 86.49/86.78  (define @t681 () (>= 0 -1))
% 86.49/86.78  (define @t682 () (>= @t675 @t674))
% 86.49/86.78  (define @t683 () (+ -1 @t354))
% 86.49/86.78  (define @t684 () (+ @t354 @t673))
% 86.49/86.78  (define @t685 () (>= @t684 1))
% 86.49/86.78  (define @t686 () (not @t685))
% 86.49/86.78  (define @t687 () (= @t647 @t686))
% 86.49/86.78  (define @t688 () (= @t360 @t647))
% 86.49/86.78  (define @t689 () (not @t688))
% 86.49/86.78  (define @t690 () (>= @t361 0))
% 86.49/86.78  (define @t691 () (< @t361 0))
% 86.49/86.78  (define @t692 () (+ @t361 @t362))
% 86.49/86.78  (define @t693 () (= @t692 0))
% 86.49/86.78  (define @t694 () (>= @t692 @t674))
% 86.49/86.78  (define @t695 () (+ -1 @t361))
% 86.49/86.78  (define @t696 () (+ @t361 @t673))
% 86.49/86.78  (define @t697 () (>= @t696 1))
% 86.49/86.78  (define @t698 () (not @t697))
% 86.49/86.78  (define @t699 () (= @t658 @t698))
% 86.49/86.78  (define @t700 () (= @t367 @t658))
% 86.49/86.78  (define @t701 () (not @t700))
% 86.49/86.78  (define @t702 () (>= @t354 -1))
% 86.49/86.78  (define @t703 () (not @t702))
% 86.49/86.78  (define @t704 () (ite @t679 @t359 @t703))
% 86.49/86.78  (define @t705 () (not @t679))
% 86.49/86.78  (define @t706 () (>= @t361 -1))
% 86.49/86.78  (define @t707 () (not @t706))
% 86.49/86.78  (define @t708 () (ite @t690 @t366 @t707))
% 86.49/86.78  (define @t709 () (not @t690))
% 86.49/86.78  (define @t710 () (= @t361 0))
% 86.49/86.78  (define @t711 () (+ 0 -2))
% 86.49/86.78  (define @t712 () (+ 0 @t665))
% 86.49/86.78  (define @t713 () (not @t710))
% 86.49/86.78  (define @t714 () (not @t708))
% 86.49/86.78  (define @t715 () (and @t708 @t713 @t677))
% 86.49/86.78  (define @t716 () (not @t677))
% 86.49/86.78  (define @t717 () (not @t713))
% 86.49/86.78  (define @t718 () (not @t704))
% 86.49/86.78  (define @t719 () (and @t704 @t713 @t677))
% 86.49/86.78  (define @t720 () (+ @t354 @t593))
% 86.49/86.78  (define @t721 () (>= @t720 1))
% 86.49/86.78  (define @t722 () (* -1 (- @t720 1)))
% 86.49/86.78  (define @t723 () (+ @t355 1))
% 86.49/86.78  (define @t724 () (>= @t593 @t723))
% 86.49/86.78  (define @t725 () (- @t354))
% 86.49/86.78  (define @t726 () (- @t368))
% 86.49/86.78  (define @t727 () (<= @t726 @t725))
% 86.49/86.78  (define @t728 () (+ @t354 @t368))
% 86.49/86.78  (define @t729 () (>= @t728 0))
% 86.49/86.78  (define @t730 () (<= @t726 @t354))
% 86.49/86.78  (define @t731 () (ite @t679 (> @t726 @t354) (> @t726 @t725)))
% 86.49/86.78  (define @t732 () (>= @t728 1))
% 86.49/86.78  (define @t733 () (>= @t368 @t723))
% 86.49/86.78  (define @t734 () (<= @t368 @t725))
% 86.49/86.78  (define @t735 () (>= @t720 0))
% 86.49/86.78  (define @t736 () (>= @t354 @t368))
% 86.49/86.78  (define @t737 () (not @t736))
% 86.49/86.78  (define @t738 () (ite @t679 (> @t368 @t354) (> @t368 @t725)))
% 86.49/86.78  (define @t739 () (>= @t368 0))
% 86.49/86.78  (define @t740 () (ite @t739 @t738 @t731))
% 86.49/86.78  (define @t741 () (- 1))
% 86.49/86.78  (define @t742 () (- @t361))
% 86.49/86.78  (define @t743 () (<= @t742 @t741))
% 86.49/86.78  (define @t744 () (<= @t742 1))
% 86.49/86.78  (define @t745 () (>= 1 0))
% 86.49/86.78  (define @t746 () (ite @t745 (> @t742 1) (> @t742 @t741)))
% 86.49/86.78  (define @t747 () (+ -1 1))
% 86.49/86.78  (define @t748 () (>= @t361 @t747))
% 86.49/86.78  (define @t749 () (<= @t361 @t741))
% 86.49/86.78  (define @t750 () (+ 1 1))
% 86.49/86.78  (define @t751 () (>= @t361 @t750))
% 86.49/86.78  (define @t752 () (ite @t745 (> @t361 1) (> @t361 @t741)))
% 86.49/86.78  (define @t753 () (ite @t690 @t752 @t746))
% 86.49/86.78  (define @t754 () (and @t753 @t713 @t677))
% 86.49/86.78  (define @t755 () (abs @t368))
% 86.49/86.78  (define @t756 () (* -1 @t755))
% 86.49/86.78  (define @t757 () (abs @t354))
% 86.49/86.78  (define @t758 () (+ @t757 @t756))
% 86.49/86.78  (define @t759 () (>= @t757 @t755))
% 86.49/86.78  (define @t760 () (* 1 @t354))
% 86.49/86.78  (define @t761 () (abs @t760))
% 86.49/86.78  (define @t762 () (abs @t377))
% 86.49/86.78  (define @t763 () (<= @t762 @t761))
% 86.49/86.78  (define @t764 () (not @t735))
% 86.49/86.78  (define @t765 () (ite @t679 @t764 @t732))
% 86.49/86.78  (define @t766 () (ite @t739 @t765 (ite @t679 (not @t729) @t721)))
% 86.49/86.78  (define @t767 () (+ @t361 @t593))
% 86.49/86.78  (define @t768 () (>= @t767 1))
% 86.49/86.78  (define @t769 () (+ @t362 1))
% 86.49/86.78  (define @t770 () (>= @t593 @t769))
% 86.49/86.78  (define @t771 () (<= @t726 @t742))
% 86.49/86.78  (define @t772 () (+ @t361 @t368))
% 86.49/86.78  (define @t773 () (>= @t772 0))
% 86.49/86.78  (define @t774 () (<= @t726 @t361))
% 86.49/86.78  (define @t775 () (ite @t690 (> @t726 @t361) (> @t726 @t742)))
% 86.49/86.78  (define @t776 () (>= @t772 1))
% 86.49/86.78  (define @t777 () (>= @t368 @t769))
% 86.49/86.78  (define @t778 () (<= @t368 @t742))
% 86.49/86.78  (define @t779 () (>= @t767 0))
% 86.49/86.78  (define @t780 () (>= @t361 @t368))
% 86.49/86.78  (define @t781 () (ite @t690 (> @t368 @t361) (> @t368 @t742)))
% 86.49/86.78  (define @t782 () (ite @t739 @t781 @t775))
% 86.49/86.78  (define @t783 () (<= @t725 @t741))
% 86.49/86.78  (define @t784 () (<= @t725 1))
% 86.49/86.78  (define @t785 () (ite @t745 (> @t725 1) (> @t725 @t741)))
% 86.49/86.78  (define @t786 () (>= @t354 @t747))
% 86.49/86.78  (define @t787 () (<= @t354 @t741))
% 86.49/86.78  (define @t788 () (>= @t354 @t750))
% 86.49/86.78  (define @t789 () (ite @t745 (> @t354 1) (> @t354 @t741)))
% 86.49/86.78  (define @t790 () (ite @t679 @t789 @t785))
% 86.49/86.78  (define @t791 () (and @t790 @t713 @t677))
% 86.49/86.78  (define @t792 () (abs @t361))
% 86.49/86.78  (define @t793 () (+ @t792 @t756))
% 86.49/86.78  (define @t794 () (>= @t792 @t755))
% 86.49/86.78  (define @t795 () (* 1 @t361))
% 86.49/86.78  (define @t796 () (abs @t795))
% 86.49/86.78  (define @t797 () (<= @t755 @t796))
% 86.49/86.78  (define @t798 () (not @t779))
% 86.49/86.78  (define @t799 () (ite @t690 @t798 @t776))
% 86.49/86.78  (define @t800 () (ite @t739 @t799 (ite @t690 (not @t773) @t768)))
% 86.49/86.78  (define @t801 () (< @t368 0))
% 86.49/86.78  (define @t802 () (>= @t594 @t712))
% 86.49/86.78  (define @t803 () (not @t739))
% 86.49/86.78  (define @t804 () (+ @t368 1))
% 86.49/86.78  (define @t805 () (>= @t354 @t804))
% 86.49/86.78  (define @t806 () (<= @t354 @t368))
% 86.49/86.78  (define @t807 () (not @t806))
% 86.49/86.78  (define @t808 () (+ @t593 @t368))
% 86.49/86.78  (define @t809 () (+ @t355 @t354))
% 86.49/86.78  (define @t810 () (>= @t809 @t808))
% 86.49/86.78  (define @t811 () (tptp.p__less_equal__ @t369 @t375))
% 86.49/86.78  (define @t812 () (+ @t362 @t368))
% 86.49/86.78  (define @t813 () (+ @t767 1))
% 86.49/86.78  (define @t814 () (+ @t368 @t362))
% 86.49/86.78  (define @t815 () (>= @t814 1))
% 86.49/86.78  (define @t816 () (not @t815))
% 86.49/86.78  (define @t817 () (= @t811 @t816))
% 86.49/86.78  (define @t818 () (= @t779 @t811))
% 86.49/86.78  (define @t819 () (not @t811))
% 86.49/86.78  (define @t820 () (not @t626))
% 86.49/86.78  (define @t821 () (not @t721))
% 86.49/86.78  (define @t822 () (* -1 0))
% 86.49/86.78  (define @t823 () (+ 1 -1 @t822 @t822))
% 86.49/86.78  (define @t824 () (* 0 tptp.n_i))
% 86.49/86.78  (define @t825 () (= @t824 0))
% 86.49/86.78  (define @t826 () (* 0 @t368))
% 86.49/86.78  (define @t827 () (+ @t826 @t355 @t354 @t598 @t599 @t824))
% 86.49/86.78  (define @t828 () (* -1 @t600))
% 86.49/86.78  (define @t829 () (+ @t720 @t356 @t828 (* -1 @t625)))
% 86.49/86.78  (define @t830 () (>= @t829 @t823))
% 86.49/86.78  (define @t831 () (+ @t598 @t362))
% 86.49/86.78  (define @t832 () (>= @t831 1))
% 86.49/86.78  (define @t833 () (not @t832))
% 86.49/86.78  (define @t834 () (+ 0 @t673 @t822))
% 86.49/86.78  (define @t835 () (* 0 @t361))
% 86.49/86.78  (define @t836 () (+ @t835 @t598 @t599 @t824))
% 86.49/86.78  (define @t837 () (+ @t363 (* -1 @t831) @t828))
% 86.49/86.78  (define @t838 () (>= @t837 @t834))
% 86.49/86.78  (define @t839 () (tptp.p__less_equal__ @t605 @t375))
% 86.49/86.78  (define @t840 () (= @t839 @t833))
% 86.49/86.78  (define @t841 () (not @t840))
% 86.49/86.78  (define @t842 () (not @t839))
% 86.49/86.78  (define @t843 () (and @t606 @t370 @t819))
% 86.49/86.78  (define @t844 () (@quantifiers_skolemize @t136 3))
% 86.49/86.78  (define @t845 () (* -1 @t844))
% 86.49/86.78  (define @t846 () (not (>= (+ tptp.n_i @t845) 0)))
% 86.49/86.78  (define @t847 () (>= @t844 2))
% 86.49/86.78  (define @t848 () (not @t847))
% 86.49/86.78  (define @t849 () (tptp.f__integer__ @t844))
% 86.49/86.78  (define @t850 () (= @t138 @t849))
% 86.49/86.78  (define @t851 () (not @t850))
% 86.49/86.78  (define @t852 () (@quantifiers_skolemize @t136 2))
% 86.49/86.78  (define @t853 () (* -1 @t852))
% 86.49/86.78  (define @t854 () (not (>= (+ tptp.n_i @t853) 0)))
% 86.49/86.78  (define @t855 () (>= @t852 2))
% 86.49/86.78  (define @t856 () (not @t855))
% 86.49/86.78  (define @t857 () (tptp.f__integer__ @t852))
% 86.49/86.78  (define @t858 () (@quantifiers_skolemize @t136 0))
% 86.49/86.78  (define @t859 () (tptp.f__integer__ @t858))
% 86.49/86.78  (define @t860 () (= @t859 @t857))
% 86.49/86.78  (define @t861 () (not @t860))
% 86.49/86.78  (define @t862 () (* @t858 @t137))
% 86.49/86.78  (define @t863 () (tptp.f__integer__ @t862))
% 86.49/86.78  (define @t864 () (= @t133 @t863))
% 86.49/86.78  (define @t865 () (not @t864))
% 86.49/86.78  (define @t866 () (or @t865 @t861 @t856 @t854 @t851 @t848 @t846))
% 86.49/86.78  (define @t867 () (not @t866))
% 86.49/86.78  (define @t868 () (not @t341))
% 86.49/86.78  (define @t869 () (not (= @t863 @t133)))
% 86.49/86.78  (define @t870 () (or @t869 @t861 @t856 @t854 @t851 @t848 @t846))
% 86.49/86.78  (define @t871 () (not @t870))
% 86.49/86.78  (define @t872 () (@list @t866))
% 86.49/86.78  (define @t873 () (tptp.p__less_equal__ @t849 @t35))
% 86.49/86.78  (define @t874 () (+ -1 @t844))
% 86.49/86.78  (define @t875 () (+ @t844 @t673))
% 86.49/86.78  (define @t876 () (>= @t875 1))
% 86.49/86.78  (define @t877 () (not @t876))
% 86.49/86.78  (define @t878 () (= @t873 @t877))
% 86.49/86.78  (define @t879 () (= @t848 @t873))
% 86.49/86.78  (define @t880 () (not @t873))
% 86.49/86.78  (define @t881 () (@list false false))
% 86.49/86.78  (define @t882 () (>= @t844 1))
% 86.49/86.78  (define @t883 () (+ 1 @t845))
% 86.49/86.78  (define @t884 () (+ @t844 1))
% 86.49/86.78  (define @t885 () (>= @t883 1))
% 86.49/86.78  (define @t886 () (not @t885))
% 86.49/86.78  (define @t887 () (tptp.p__less_equal__ @t35 @t849))
% 86.49/86.78  (define @t888 () (= @t887 @t886))
% 86.49/86.78  (define @t889 () (= @t887 @t882))
% 86.49/86.78  (define @t890 () (< @t844 1))
% 86.49/86.78  (define @t891 () (+ 1 @t665))
% 86.49/86.78  (define @t892 () (+ @t844 @t845))
% 86.49/86.78  (define @t893 () (>= @t892 @t891))
% 86.49/86.78  (define @t894 () (tptp.p__less_equal__ @t35 @t138))
% 86.49/86.78  (define @t895 () (and @t850 @t887))
% 86.49/86.78  (define @t896 () (not (= @t138 @t35)))
% 86.49/86.78  (define @t897 () (and @t894 @t896))
% 86.49/86.78  (define @t898 () (tptp.p__greater__ @t138 @t35))
% 86.49/86.78  (define @t899 () (= @t898 @t897))
% 86.49/86.78  (define @t900 () (= @t35 @t138))
% 86.49/86.78  (define @t901 () (not @t900))
% 86.49/86.78  (define @t902 () (and @t894 @t901))
% 86.49/86.78  (define @t903 () (= @t898 @t902))
% 86.49/86.78  (define @t904 () (@list true false))
% 86.49/86.78  (define @t905 () (* @t852 @t844))
% 86.49/86.78  (define @t906 () (tptp.f__integer__ @t905))
% 86.49/86.78  (define @t907 () (* @t844 @t852))
% 86.49/86.78  (define @t908 () (tptp.f__integer__ @t907))
% 86.49/86.78  (define @t909 () (= @t908 @t133))
% 86.49/86.78  (define @t910 () (not @t909))
% 86.49/86.78  (define @t911 () (tptp.p__greater__ @t857 @t35))
% 86.49/86.78  (define @t912 () (not @t911))
% 86.49/86.78  (define @t913 () (tptp.p__greater__ @t849 @t35))
% 86.49/86.78  (define @t914 () (not @t913))
% 86.49/86.78  (define @t915 () (or @t914 @t912 @t910))
% 86.49/86.78  (define @t916 () (= @t133 @t906))
% 86.49/86.78  (define @t917 () (not @t916))
% 86.49/86.78  (define @t918 () (or @t914 @t912 @t917))
% 86.49/86.78  (define @t919 () (= @t137 @t844))
% 86.49/86.78  (define @t920 () (= @t844 @t137))
% 86.49/86.78  (define @t921 () (= (= @t849 @t138) @t920))
% 86.49/86.78  (define @t922 () (= @t850 @t919))
% 86.49/86.78  (define @t923 () (@list @t14))
% 86.49/86.78  (define @t924 () (* -1 @t862))
% 86.49/86.78  (define @t925 () (+ @t598 @t924))
% 86.49/86.78  (define @t926 () (>= @t925 0))
% 86.49/86.78  (define @t927 () (+ @t599 @t862))
% 86.49/86.78  (define @t928 () (+ @t925 1))
% 86.49/86.78  (define @t929 () (+ @t862 @t599))
% 86.49/86.78  (define @t930 () (>= @t929 1))
% 86.49/86.78  (define @t931 () (not @t930))
% 86.49/86.78  (define @t932 () (tptp.p__less_equal__ @t863 @t605))
% 86.49/86.78  (define @t933 () (= @t932 @t931))
% 86.49/86.78  (define @t934 () (= @t932 @t926))
% 86.49/86.78  (define @t935 () (tptp.p__less_equal__ @t863 @t863))
% 86.49/86.78  (define @t936 () (+ @t862 @t924))
% 86.49/86.78  (define @t937 () (>= @t936 1))
% 86.49/86.78  (define @t938 () (not @t937))
% 86.49/86.78  (define @t939 () (= @t935 @t938))
% 86.49/86.78  (define @t940 () (and @t606 @t864 @t935))
% 86.49/86.78  (define @t941 () (@list false false false))
% 86.49/86.78  (define @t942 () (tptp.p__less_equal__ @t605 @t863))
% 86.49/86.78  (define @t943 () (and @t606 @t864 @t616))
% 86.49/86.78  (define @t944 () (>= @t925 1))
% 86.49/86.78  (define @t945 () (not @t944))
% 86.49/86.78  (define @t946 () (= @t942 @t945))
% 86.49/86.78  (define @t947 () (- @t858 @t852))
% 86.49/86.78  (define @t948 () (= @t858 @t852))
% 86.49/86.78  (define @t949 () (= @t852 @t858))
% 86.49/86.78  (define @t950 () (= (= @t857 @t859) @t949))
% 86.49/86.78  (define @t951 () (= @t860 @t948))
% 86.49/86.78  (define @t952 () (not @t919))
% 86.49/86.78  (define @t953 () (not @t926))
% 86.49/86.78  (define @t954 () (not @t948))
% 86.49/86.78  (define @t955 () (= @t598 @t905))
% 86.49/86.78  (define @t956 () (and @t606 @t948 @t945 @t926 @t919))
% 86.49/86.78  (define @t957 () (not (= @t857 @t35)))
% 86.49/86.78  (define @t958 () (tptp.p__less_equal__ @t35 @t857))
% 86.49/86.78  (define @t959 () (and @t958 @t957))
% 86.49/86.78  (define @t960 () (= @t911 @t959))
% 86.49/86.78  (define @t961 () (= @t35 @t857))
% 86.49/86.78  (define @t962 () (not @t961))
% 86.49/86.78  (define @t963 () (and @t958 @t962))
% 86.49/86.78  (define @t964 () (= @t911 @t963))
% 86.49/86.78  (define @t965 () (>= @t858 1))
% 86.49/86.78  (define @t966 () (* -1 @t858))
% 86.49/86.78  (define @t967 () (+ 1 @t966))
% 86.49/86.78  (define @t968 () (+ @t858 1))
% 86.49/86.78  (define @t969 () (>= @t967 1))
% 86.49/86.78  (define @t970 () (not @t969))
% 86.49/86.78  (define @t971 () (tptp.p__less_equal__ @t35 @t859))
% 86.49/86.78  (define @t972 () (= @t971 @t970))
% 86.49/86.78  (define @t973 () (= @t971 @t965))
% 86.49/86.78  (define @t974 () (>= @t858 2))
% 86.49/86.78  (define @t975 () (not @t974))
% 86.49/86.78  (define @t976 () (+ 2 @t665 @t822))
% 86.49/86.78  (define @t977 () (+ @t966 @t852))
% 86.49/86.78  (define @t978 () (+ @t858 @t853))
% 86.49/86.78  (define @t979 () (* -1 @t978))
% 86.49/86.78  (define @t980 () (+ @t858 @t853 @t979))
% 86.49/86.78  (define @t981 () (>= @t980 @t976))
% 86.49/86.78  (define @t982 () (= @t978 0))
% 86.49/86.78  (define @t983 () (>= @t858 @t750))
% 86.49/86.78  (define @t984 () (<= @t858 1))
% 86.49/86.78  (define @t985 () (not @t965))
% 86.49/86.78  (define @t986 () (not @t984))
% 86.49/86.78  (define @t987 () (+ @t673 1))
% 86.49/86.78  (define @t988 () (+ @t966 @t858))
% 86.49/86.78  (define @t989 () (>= @t988 @t987))
% 86.49/86.78  (define @t990 () (and @t860 @t971))
% 86.49/86.78  (define @t991 () (tptp.p__less_equal__ @t859 @t859))
% 86.49/86.78  (define @t992 () (+ @t858 @t966))
% 86.49/86.78  (define @t993 () (>= @t992 1))
% 86.49/86.78  (define @t994 () (not @t993))
% 86.49/86.78  (define @t995 () (= @t991 @t994))
% 86.49/86.78  (define @t996 () (+ -1 @t858))
% 86.49/86.78  (define @t997 () (+ @t858 @t673))
% 86.49/86.78  (define @t998 () (>= @t997 1))
% 86.49/86.78  (define @t999 () (not @t998))
% 86.49/86.78  (define @t1000 () (tptp.p__less_equal__ @t859 @t35))
% 86.49/86.78  (define @t1001 () (= @t1000 @t999))
% 86.49/86.78  (define @t1002 () (= @t1000 @t975))
% 86.49/86.78  (define @t1003 () (not @t1000))
% 86.49/86.78  (define @t1004 () (not @t991))
% 86.49/86.78  (define @t1005 () (= false true))
% 86.49/86.78  (define @t1006 () (and @t991 @t860 @t961 @t1003))
% 86.49/86.78  (define @t1007 () (not @t958))
% 86.49/86.78  (define @t1008 () (not @t898))
% 86.49/86.78  (define @t1009 () (and @t850 @t914))
% 86.49/86.78  (define @t1010 () (not @t902))
% 86.49/86.78  (define @t1011 () (not @t894))
% 86.49/86.78  (define @t1012 () (not @t139))
% 86.49/86.78  (define @t1013 () (and @t139 @t850 @t900 @t880))
% 86.49/86.78  (assume @p1 (forall @t6 (= @t5 (exists @t4 (= @t3 @t2)))))
% 86.49/86.78  (assume @p2 (forall (@list @t8) (= (tptp.p__is_symbolic__ @t8) (exists (@list @t7) (= @t8 (tptp.f__symbolic__ @t7))))))
% 86.49/86.78  (assume @p3 (forall @t6 (or (= @t3 tptp.c__infimum__) @t5 (tptp.p__is_symbolic__ @t3) (= @t3 tptp.c__supremum__))))
% 86.49/86.78  (assume @p4 @t14)
% 86.49/86.78  (assume @p5 (forall (@list @t16 @t15) (= (= (tptp.f__symbolic__ @t16) (tptp.f__symbolic__ @t15)) (= @t16 @t15))))
% 86.49/86.78  (assume @p6 @t19)
% 86.49/86.78  (assume @p7 @t26)
% 86.49/86.78  (assume @p8 (forall (@list @t8 @t20 @t27) (=> (and @t23 (tptp.p__less_equal__ @t20 @t27)) (tptp.p__less_equal__ @t8 @t27))))
% 86.49/86.78  (assume @p9 (forall @t25 (or @t23 @t22)))
% 86.49/86.78  (assume @p10 (forall @t25 (= (tptp.p__less__ @t8 @t20) (and @t23 @t28))))
% 86.49/86.78  (assume @p11 (forall @t25 (= (tptp.p__greater_equal__ @t8 @t20) @t22)))
% 86.49/86.78  (assume @p12 @t29)
% 86.49/86.78  (assume @p13 (forall @t4 (tptp.p__less__ tptp.c__infimum__ @t2)))
% 86.49/86.78  (assume @p14 (forall (@list @t1 @t30) (tptp.p__less__ @t2 @t31)))
% 86.49/86.78  (assume @p15 (forall (@list @t30) (tptp.p__less__ @t31 tptp.c__supremum__)))
% 86.49/86.78  (assume @p16 @t63)
% 86.49/86.78  (assume @p17 @t82)
% 86.49/86.78  (assume @p18 @t94)
% 86.49/86.78  (assume @p19 (forall (@list @t95 @t96) (=> (and (>= @t95 1) (>= @t96 1)) (>= (* @t95 @t96) @t95))))
% 86.49/86.78  (assume @p20 @t105)
% 86.49/86.78  (assume @p21 true)
% 86.49/86.78  (step @p22 :rule arith_poly_norm :args ((= (* -1 (- @t10 @t107)) (* -1 (- @t106 1)))))
% 86.49/86.78  (step @p23 :rule arith_poly_norm_rel :premises (@p22) :args ((= @t109 @t108)))
% 86.49/86.78  (step @p24 :rule cong :premises (@p23) :args ((not @t109)))
% 86.49/86.78  (step @p25 :rule arith-leq-norm :args (@t10 @t9))
% 86.49/86.78  (step @p26 :rule trans :premises (@p25 @p24))
% 86.49/86.78  (step @p27 :rule refl :args (@t17))
% 86.49/86.78  (step @p28 :rule cong :premises (@p27 @p26) :args (@t18))
% 86.49/86.78  (step @p29 :rule cong :premises (@p28) :args (@t19))
% 86.49/86.78  (step @p30 :rule eq_resolve :premises (@p6 @p29))
% 86.49/86.78  (step @p31 :rule bool-eq-true :args (@t139))
% 86.49/86.78  (step @p32 :rule evaluate :args ((not false)))
% 86.49/86.78  (step @p33 :rule evaluate :args ((>= 0 1)))
% 86.49/86.78  (step @p34 :rule refl :args (1))
% 86.49/86.78  (step @p35 :rule arith_poly_norm :args ((= @t140 0)))
% 86.49/86.78  (step @p36 :rule cong :premises (@p35 @p34) :args (@t141))
% 86.49/86.78  (step @p37 :rule trans :premises (@p36 @p33))
% 86.49/86.78  (step @p38 :rule cong :premises (@p37) :args (@t142))
% 86.49/86.78  (step @p39 :rule trans :premises (@p38 @p32))
% 86.49/86.78  (step @p40 :rule refl :args (@t139))
% 86.49/86.78  (step @p41 :rule cong :premises (@p40 @p39) :args (@t143))
% 86.49/86.78  (step @p42 :rule trans :premises (@p41 @p31))
% 86.49/86.78  (step @p43 :rule refl :args (@t144))
% 86.49/86.78  (step @p44 :rule cong :premises (@p43 @p42) :args ((=> @t144 @t143)))
% 86.49/86.78  (assume-push @p2663 @t144)
% 86.49/86.78  (step @p46 :rule instantiate :premises (@p30) :args ((@list @t137 @t137)))
% 86.49/86.78  (step-pop @p2664 :rule scope :premises (@p46))
% 86.49/86.78  (step @p47 :rule process_scope :premises (@p2664) :args (@t143))
% 86.49/86.78  (step @p49 :rule eq_resolve :premises (@p47 @p44))
% 86.49/86.78  (step @p50 :rule implies_elim :premises (@p49))
% 86.49/86.78  (step @p51 :rule chain_m_resolution :premises (@p50 @p30) :args (@t139 @t145 @t146))
% 86.49/86.78  (step @p52 :rule aci_norm :args ((= (or @t147 false @t123 @t119 @t118 @t116 @t112 @t111) @t148)))
% 86.49/86.78  (step @p53 :rule refl :args (@t111))
% 86.49/86.78  (step @p54 :rule refl :args (@t112))
% 86.49/86.78  (step @p55 :rule refl :args (@t116))
% 86.49/86.78  (step @p56 :rule refl :args (@t118))
% 86.49/86.78  (step @p57 :rule refl :args (@t119))
% 86.49/86.78  (step @p58 :rule refl :args (@t123))
% 86.49/86.78  (step @p59 :rule evaluate :args ((not true)))
% 86.49/86.78  (step @p60 :rule eq-refl :args (@t115))
% 86.49/86.78  (step @p61 :rule cong :premises (@p60) :args (@t149))
% 86.49/86.78  (step @p62 :rule trans :premises (@p61 @p59))
% 86.49/86.78  (step @p63 :rule refl :args (@t147))
% 86.49/86.78  (step @p64 :rule nary_cong :premises (@p63 @p62 @p58 @p57 @p56 @p55 @p54 @p53) :args (@t150))
% 86.49/86.78  (step @p65 :rule trans :premises (@p64 @p52))
% 86.49/86.78  (step @p66 :rule cong :premises (@p65) :args ((forall @t135 @t150)))
% 86.49/86.78  (step @p67 :rule quant-var-elim-eq :args ((= (forall @t154 @t153) @t150)))
% 86.49/86.78  (step @p68 :rule aci_norm :args ((= @t155 @t153)))
% 86.49/86.78  (step @p69 :rule cong :premises (@p68) :args (@t156))
% 86.49/86.78  (step @p70 :rule trans :premises (@p69 @p67))
% 86.49/86.78  (step @p71 :rule cong :premises (@p70) :args (@t157))
% 86.49/86.78  (step @p72 :rule quant-merge-prenex :args ((= @t157 @t158)))
% 86.49/86.78  (step @p73 :rule symm :premises (@p72))
% 86.49/86.78  (step @p74 :rule quant_var_reordering :args ((= (forall @t159 @t155) @t158)))
% 86.49/86.78  (step @p75 :rule trans :premises (@p74 @p73 @p71))
% 86.49/86.78  (step @p76 :rule trans :premises (@p75 @p66))
% 86.49/86.78  (step @p77 :rule aci_norm :args ((= (or @t147 false @t152 @t123 @t119 @t118 @t151 @t112 @t111) @t155)))
% 86.49/86.78  (step @p78 :rule refl :args (@t151))
% 86.49/86.78  (step @p79 :rule refl :args (@t152))
% 86.49/86.78  (step @p80 :rule eq-refl :args (@t122))
% 86.49/86.78  (step @p81 :rule cong :premises (@p80) :args (@t160))
% 86.49/86.78  (step @p82 :rule trans :premises (@p81 @p59))
% 86.49/86.78  (step @p83 :rule nary_cong :premises (@p63 @p82 @p79 @p58 @p57 @p56 @p78 @p54 @p53) :args (@t161))
% 86.49/86.78  (step @p84 :rule trans :premises (@p83 @p77))
% 86.49/86.78  (step @p85 :rule cong :premises (@p84) :args ((forall @t159 @t161)))
% 86.49/86.78  (step @p86 :rule trans :premises (@p85 @p76))
% 86.49/86.78  (step @p87 :rule quant-var-elim-eq :args ((= (forall @t90 @t164) @t161)))
% 86.49/86.78  (step @p88 :rule aci_norm :args ((= @t165 @t164)))
% 86.49/86.78  (step @p89 :rule cong :premises (@p88) :args (@t166))
% 86.49/86.78  (step @p90 :rule trans :premises (@p89 @p87))
% 86.49/86.78  (step @p91 :rule cong :premises (@p90) :args (@t167))
% 86.49/86.78  (step @p92 :rule quant-merge-prenex :args ((= @t167 @t168)))
% 86.49/86.78  (step @p93 :rule symm :premises (@p92))
% 86.49/86.78  (step @p94 :rule quant_var_reordering :args ((= (forall @t169 @t165) @t168)))
% 86.49/86.78  (step @p95 :rule trans :premises (@p94 @p93 @p91))
% 86.49/86.78  (step @p96 :rule trans :premises (@p95 @p86))
% 86.49/86.78  (step @p97 :rule aci_norm :args ((= @t173 @t165)))
% 86.49/86.78  (step @p98 :rule cong :premises (@p97) :args (@t174))
% 86.49/86.78  (step @p99 :rule trans :premises (@p98 @p96))
% 86.49/86.78  (step @p100 :rule quant-merge-prenex :args ((= (forall @t58 @t175) @t174)))
% 86.49/86.78  (step @p101 :rule alpha_equiv :args (@t176 (@list @t110) @t178))
% 86.49/86.78  (step @p102 :rule alpha_equiv :args (@t179 (@list @t117) @t181))
% 86.49/86.78  (step @p103 :rule alpha_equiv :args (@t182 (@list @t121 @t114) @t183))
% 86.49/86.78  (step @p104 :rule nary_cong :premises (@p103 @p102 @p101) :args (@t184))
% 86.49/86.78  (step @p105 :rule quant-miniscope-or :args ((= @t175 @t184)))
% 86.49/86.78  (step @p106 :rule trans :premises (@p105 @p104))
% 86.49/86.78  (step @p107 :rule symm :premises (@p106))
% 86.49/86.78  (step @p108 :rule cong :premises (@p107) :args ((forall @t58 (or @t207 @t198 @t191))))
% 86.49/86.78  (step @p109 :rule trans :premises (@p108 @p100))
% 86.49/86.78  (step @p110 :rule trans :premises (@p109 @p99))
% 86.49/86.78  (step @p111 :rule bool-double-not-elim :args (@t191))
% 86.49/86.78  (step @p112 :rule bool-double-not-elim :args (@t198))
% 86.49/86.78  (step @p113 :rule bool-double-not-elim :args (@t207))
% 86.49/86.78  (step @p114 :rule nary_cong :premises (@p113 @p112 @p111) :args (@t214))
% 86.49/86.78  (step @p115 :rule aci_norm :args ((= (or @t213 (or @t211 @t209)) @t214)))
% 86.49/86.78  (step @p116 :rule trans :premises (@p115 @p114))
% 86.49/86.78  (step @p117 :rule bool-and-de-morgan :args (@t210 @t208 true))
% 86.49/86.78  (step @p118 :rule refl :args (@t213))
% 86.49/86.78  (step @p119 :rule nary_cong :premises (@p118 @p117) :args ((or @t213 (not (and @t210 @t208)))))
% 86.49/86.78  (step @p120 :rule bool-and-de-morgan :args (@t212 @t210 (and @t208)))
% 86.49/86.78  (step @p121 :rule trans :premises (@p120 @p119))
% 86.49/86.78  (step @p122 :rule trans :premises (@p121 @p116))
% 86.49/86.78  (step @p123 :rule cong :premises (@p122) :args (@t216))
% 86.49/86.78  (step @p124 :rule trans :premises (@p123 @p110))
% 86.49/86.78  (step @p125 :rule cong :premises (@p124) :args (@t217))
% 86.49/86.78  (step @p126 :rule exists-elim :args ((= (exists @t58 @t215) @t217)))
% 86.49/86.78  (step @p127 :rule trans :premises (@p126 @p125))
% 86.49/86.78  (step @p128 :rule aci_norm :args ((= (or false @t188 @t186 @t185) @t189)))
% 86.49/86.78  (step @p129 :rule refl :args (@t185))
% 86.49/86.78  (step @p130 :rule refl :args (@t186))
% 86.49/86.78  (step @p131 :rule refl :args (@t188))
% 86.49/86.78  (step @p132 :rule eq-refl :args (@t37))
% 86.49/86.78  (step @p133 :rule cong :premises (@p132) :args (@t218))
% 86.49/86.78  (step @p134 :rule trans :premises (@p133 @p59))
% 86.49/86.78  (step @p135 :rule nary_cong :premises (@p134 @p131 @p130 @p129) :args (@t219))
% 86.49/86.78  (step @p136 :rule trans :premises (@p135 @p128))
% 86.49/86.78  (step @p137 :rule cong :premises (@p136) :args ((forall @t190 @t219)))
% 86.49/86.78  (step @p138 :rule quant-var-elim-eq :args ((= (forall @t222 (or (not (= @t32 @t37)) @t221 @t220 @t186 @t185)) @t219)))
% 86.49/86.78  (step @p139 :rule refl :args (@t185))
% 86.49/86.78  (step @p140 :rule refl :args (@t186))
% 86.49/86.78  (step @p141 :rule refl :args (@t220))
% 86.49/86.78  (step @p142 :rule refl :args (@t221))
% 86.49/86.78  (step @p143 :rule eq-symm :args (@t37 @t32))
% 86.49/86.78  (step @p144 :rule cong :premises (@p143) :args (@t221))
% 86.49/86.78  (step @p145 :rule nary_cong :premises (@p144 @p142 @p141 @p140 @p139) :args (@t223))
% 86.49/86.78  (step @p146 :rule aci_norm :args ((= @t224 @t223)))
% 86.49/86.78  (step @p147 :rule trans :premises (@p146 @p145))
% 86.49/86.78  (step @p148 :rule cong :premises (@p147) :args (@t225))
% 86.49/86.78  (step @p149 :rule trans :premises (@p148 @p138))
% 86.49/86.78  (step @p150 :rule cong :premises (@p149) :args (@t226))
% 86.49/86.78  (step @p151 :rule quant-merge-prenex :args ((= @t226 @t227)))
% 86.49/86.78  (step @p152 :rule symm :premises (@p151))
% 86.49/86.78  (step @p153 :rule quant_var_reordering :args ((= (forall @t228 @t224) @t227)))
% 86.49/86.78  (step @p154 :rule trans :premises (@p153 @p152 @p150))
% 86.49/86.78  (step @p155 :rule trans :premises (@p154 @p137))
% 86.49/86.78  (step @p156 :rule aci_norm :args ((= (or false @t221 @t220 @t186 @t185) @t224)))
% 86.49/86.78  (step @p157 :rule refl :args (@t220))
% 86.49/86.78  (step @p158 :rule refl :args (@t221))
% 86.49/86.78  (step @p159 :rule nary_cong :premises (@p134 @p158 @p157 @p130 @p129) :args (@t229))
% 86.49/86.78  (step @p160 :rule trans :premises (@p159 @p156))
% 86.49/86.78  (step @p161 :rule cong :premises (@p160) :args ((forall @t228 @t229)))
% 86.49/86.78  (step @p162 :rule trans :premises (@p161 @p155))
% 86.49/86.78  (step @p163 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t233 @t232 @t230 @t220 @t186 @t185)) @t229)))
% 86.49/86.78  (step @p164 :rule refl :args (@t230))
% 86.49/86.78  (step @p165 :rule refl :args (@t232))
% 86.49/86.78  (step @p166 :rule eq-symm :args (@t37 @t33))
% 86.49/86.78  (step @p167 :rule cong :premises (@p166) :args (@t232))
% 86.49/86.78  (step @p168 :rule nary_cong :premises (@p167 @p165 @p164 @p141 @p140 @p139) :args (@t234))
% 86.49/86.78  (step @p169 :rule aci_norm :args ((= @t235 @t234)))
% 86.49/86.78  (step @p170 :rule trans :premises (@p169 @p168))
% 86.49/86.78  (step @p171 :rule cong :premises (@p170) :args (@t236))
% 86.49/86.78  (step @p172 :rule trans :premises (@p171 @p163))
% 86.49/86.78  (step @p173 :rule cong :premises (@p172) :args (@t237))
% 86.49/86.78  (step @p174 :rule quant-merge-prenex :args ((= @t237 @t238)))
% 86.49/86.78  (step @p175 :rule symm :premises (@p174))
% 86.49/86.78  (step @p176 :rule quant_var_reordering :args ((= (forall @t239 @t235) @t238)))
% 86.49/86.78  (step @p177 :rule trans :premises (@p176 @p175 @p173))
% 86.49/86.78  (step @p178 :rule trans :premises (@p177 @p162))
% 86.49/86.78  (step @p179 :rule aci_norm :args ((= @t241 @t235)))
% 86.49/86.78  (step @p180 :rule cong :premises (@p179) :args (@t242))
% 86.49/86.78  (step @p181 :rule trans :premises (@p180 @p178))
% 86.49/86.78  (step @p182 :rule quant-merge-prenex :args ((= (forall @t40 @t243) @t242)))
% 86.49/86.78  (step @p183 :rule alpha_equiv :args (@t244 @t178 @t245))
% 86.49/86.78  (step @p184 :rule nary_cong :premises (@p165 @p183 @p164) :args (@t246))
% 86.49/86.78  (step @p185 :rule quant-miniscope-or :args ((= @t243 @t246)))
% 86.49/86.78  (step @p186 :rule trans :premises (@p185 @p184))
% 86.49/86.78  (step @p187 :rule symm :premises (@p186))
% 86.49/86.78  (step @p188 :rule cong :premises (@p187) :args ((forall @t40 (or @t232 @t253 @t230))))
% 86.49/86.78  (step @p189 :rule trans :premises (@p188 @p182))
% 86.49/86.78  (step @p190 :rule trans :premises (@p189 @p181))
% 86.49/86.78  (step @p191 :rule bool-double-not-elim :args (@t253))
% 86.49/86.78  (step @p192 :rule nary_cong :premises (@p165 @p191 @p164) :args (@t256))
% 86.49/86.78  (step @p193 :rule aci_norm :args ((= (or @t232 @t257) @t256)))
% 86.49/86.78  (step @p194 :rule trans :premises (@p193 @p192))
% 86.49/86.78  (step @p195 :rule bool-and-de-morgan :args (@t254 @t64 true))
% 86.49/86.78  (step @p196 :rule nary_cong :premises (@p165 @p195) :args ((or @t232 @t258)))
% 86.49/86.78  (step @p197 :rule bool-and-de-morgan :args (@t231 @t254 (and @t64)))
% 86.49/86.78  (step @p198 :rule trans :premises (@p197 @p196))
% 86.49/86.78  (step @p199 :rule trans :premises (@p198 @p194))
% 86.49/86.78  (step @p200 :rule cong :premises (@p199) :args (@t260))
% 86.49/86.78  (step @p201 :rule trans :premises (@p200 @p190))
% 86.49/86.78  (step @p202 :rule cong :premises (@p201) :args (@t261))
% 86.49/86.78  (step @p203 :rule exists-elim :args ((= (exists @t40 @t259) @t261)))
% 86.49/86.78  (step @p204 :rule trans :premises (@p203 @p202))
% 86.49/86.78  (step @p205 :rule refl :args (@t64))
% 86.49/86.78  (step @p206 :rule aci_norm :args ((= (or false @t250 @t249 @t248) @t251)))
% 86.49/86.78  (step @p207 :rule refl :args (@t248))
% 86.49/86.78  (step @p208 :rule refl :args (@t249))
% 86.49/86.78  (step @p209 :rule refl :args (@t250))
% 86.49/86.78  (step @p210 :rule eq-refl :args (tptp.n_i))
% 86.49/86.78  (step @p211 :rule cong :premises (@p210) :args (@t262))
% 86.49/86.78  (step @p212 :rule trans :premises (@p211 @p59))
% 86.49/86.78  (step @p213 :rule nary_cong :premises (@p212 @p209 @p208 @p207) :args (@t263))
% 86.49/86.78  (step @p214 :rule trans :premises (@p213 @p206))
% 86.49/86.78  (step @p215 :rule cong :premises (@p214) :args ((forall @t252 @t263)))
% 86.49/86.78  (step @p216 :rule quant-var-elim-eq :args ((= (forall @t269 (or (not @t69) @t268 @t250 @t249 @t266)) @t263)))
% 86.49/86.78  (step @p217 :rule refl :args (@t266))
% 86.49/86.78  (step @p218 :rule refl :args (@t249))
% 86.49/86.78  (step @p219 :rule refl :args (@t250))
% 86.49/86.78  (step @p220 :rule refl :args (@t268))
% 86.49/86.78  (step @p221 :rule arith_poly_norm :args ((= @t271 @t270)))
% 86.49/86.78  (step @p222 :rule arith_poly_norm_rel :premises (@p221) :args ((= @t267 @t69)))
% 86.49/86.78  (step @p223 :rule cong :premises (@p222) :args (@t268))
% 86.49/86.78  (step @p224 :rule nary_cong :premises (@p223 @p220 @p219 @p218 @p217) :args (@t272))
% 86.49/86.78  (step @p225 :rule aci_norm :args ((= @t273 @t272)))
% 86.49/86.78  (step @p226 :rule trans :premises (@p225 @p224))
% 86.49/86.78  (step @p227 :rule cong :premises (@p226) :args (@t274))
% 86.49/86.78  (step @p228 :rule trans :premises (@p227 @p216))
% 86.49/86.78  (step @p229 :rule cong :premises (@p228) :args (@t275))
% 86.49/86.78  (step @p230 :rule quant-merge-prenex :args ((= @t275 @t276)))
% 86.49/86.78  (step @p231 :rule symm :premises (@p230))
% 86.49/86.78  (step @p232 :rule quant_var_reordering :args ((= (forall @t277 @t273) @t276)))
% 86.49/86.78  (step @p233 :rule trans :premises (@p232 @p231 @p229))
% 86.49/86.78  (step @p234 :rule trans :premises (@p233 @p215))
% 86.49/86.78  (step @p235 :rule aci_norm :args ((= (or false @t268 @t250 @t249 @t266) @t273)))
% 86.49/86.78  (step @p236 :rule refl :args (@t266))
% 86.49/86.78  (step @p237 :rule arith_poly_norm :args ((= (* 1 (- 2 @t279)) (* 1 (- @t278 1)))))
% 86.49/86.78  (step @p238 :rule arith_poly_norm_rel :premises (@p237) :args ((= (>= 2 @t279) @t280)))
% 86.49/86.78  (step @p239 :rule arith-geq-tighten :args (@t66 2))
% 86.49/86.78  (step @p240 :rule trans :premises (@p239 @p238))
% 86.49/86.78  (step @p241 :rule symm :premises (@p240))
% 86.49/86.78  (step @p242 :rule refl :args (@t268))
% 86.49/86.78  (step @p243 :rule evaluate :args (@t281))
% 86.49/86.78  (step @p244 :rule cong :premises (@p243) :args (@t282))
% 86.49/86.78  (step @p245 :rule trans :premises (@p244 @p59))
% 86.49/86.78  (step @p246 :rule nary_cong :premises (@p245 @p242 @p209 @p241 @p236) :args (@t283))
% 86.49/86.78  (step @p247 :rule trans :premises (@p246 @p235))
% 86.49/86.78  (step @p248 :rule cong :premises (@p247) :args ((forall @t277 @t283)))
% 86.49/86.78  (step @p249 :rule trans :premises (@p248 @p234))
% 86.49/86.78  (step @p250 :rule quant-var-elim-eq :args ((= (forall @t288 @t287) @t283)))
% 86.49/86.78  (step @p251 :rule aci_norm :args ((= @t289 @t287)))
% 86.49/86.78  (step @p252 :rule cong :premises (@p251) :args (@t290))
% 86.49/86.78  (step @p253 :rule trans :premises (@p252 @p250))
% 86.49/86.78  (step @p254 :rule cong :premises (@p253) :args (@t291))
% 86.49/86.78  (step @p255 :rule quant-merge-prenex :args ((= @t291 @t292)))
% 86.49/86.78  (step @p256 :rule symm :premises (@p255))
% 86.49/86.78  (step @p257 :rule quant_var_reordering :args ((= (forall @t72 @t289) @t292)))
% 86.49/86.78  (step @p258 :rule trans :premises (@p257 @p256 @p254))
% 86.49/86.78  (step @p259 :rule trans :premises (@p258 @p249))
% 86.49/86.78  (step @p260 :rule bool-double-not-elim :args (@t285))
% 86.49/86.78  (step @p261 :rule refl :args (@t286))
% 86.49/86.78  (step @p262 :rule nary_cong :premises (@p261 @p220 @p219 @p260 @p217) :args (@t295))
% 86.49/86.78  (step @p263 :rule aci_norm :args ((= (or @t286 (or @t268 (or @t250 (or @t294 @t266)))) @t295)))
% 86.49/86.78  (step @p264 :rule trans :premises (@p263 @p262))
% 86.49/86.78  (step @p265 :rule bool-and-de-morgan :args (@t293 @t265 true))
% 86.49/86.78  (step @p266 :rule nary_cong :premises (@p219 @p265) :args ((or @t250 (not (and @t293 @t265)))))
% 86.49/86.78  (step @p267 :rule bool-and-de-morgan :args (@t68 @t293 (and @t265)))
% 86.49/86.78  (step @p268 :rule trans :premises (@p267 @p266))
% 86.49/86.78  (step @p269 :rule nary_cong :premises (@p220 @p268) :args ((or @t268 (not (and @t68 @t293 @t265)))))
% 86.49/86.78  (step @p270 :rule bool-and-de-morgan :args (@t267 @t68 (and @t293 @t265)))
% 86.49/86.78  (step @p271 :rule trans :premises (@p270 @p269))
% 86.49/86.78  (step @p272 :rule nary_cong :premises (@p261 @p271) :args ((or @t286 (not (and @t267 @t68 @t293 @t265)))))
% 86.49/86.78  (step @p273 :rule bool-and-de-morgan :args (@t70 @t267 (and @t68 @t293 @t265)))
% 86.49/86.78  (step @p274 :rule trans :premises (@p273 @p272))
% 86.49/86.78  (step @p275 :rule trans :premises (@p274 @p264))
% 86.49/86.78  (step @p276 :rule cong :premises (@p275) :args (@t297))
% 86.49/86.78  (step @p277 :rule trans :premises (@p276 @p259))
% 86.49/86.78  (step @p278 :rule cong :premises (@p277) :args (@t298))
% 86.49/86.78  (step @p279 :rule exists-elim :args ((= (exists @t72 @t296) @t298)))
% 86.49/86.78  (step @p280 :rule trans :premises (@p279 @p278))
% 86.49/86.78  (step @p281 :rule arith_poly_norm :args ((= (* 1 (- @t65 @t66)) (* 1 (- @t264 0)))))
% 86.49/86.78  (step @p282 :rule arith_poly_norm_rel :premises (@p281) :args ((= (>= @t65 @t66) @t265)))
% 86.49/86.78  (step @p283 :rule arith-elim-leq :args (@t66 @t65))
% 86.49/86.78  (step @p284 :rule trans :premises (@p283 @p282))
% 86.49/86.78  (step @p285 :rule arith_poly_norm :args ((= (* -1 (- @t67 @t279)) (* -1 (- @t284 1)))))
% 86.49/86.78  (step @p286 :rule arith_poly_norm_rel :premises (@p285) :args ((= @t299 @t285)))
% 86.49/86.78  (step @p287 :rule cong :premises (@p286) :args ((not @t299)))
% 86.49/86.78  (step @p288 :rule arith-leq-norm :args (@t67 @t66))
% 86.49/86.78  (step @p289 :rule trans :premises (@p288 @p287))
% 86.49/86.78  (step @p290 :rule refl :args (@t68))
% 86.49/86.78  (step @p291 :rule arith_poly_norm :args ((= @t270 @t271)))
% 86.49/86.78  (step @p292 :rule arith_poly_norm_rel :premises (@p291) :args ((= @t69 @t267)))
% 86.49/86.78  (step @p293 :rule refl :args (@t70))
% 86.49/86.78  (step @p294 :rule nary_cong :premises (@p293 @p292 @p290 @p289 @p284) :args (@t71))
% 86.49/86.78  (step @p295 :rule cong :premises (@p294) :args (@t73))
% 86.49/86.78  (step @p296 :rule trans :premises (@p295 @p280))
% 86.49/86.78  (step @p297 :rule eq-symm :args (@t33 @t37))
% 86.49/86.78  (step @p298 :rule nary_cong :premises (@p297 @p296 @p205) :args (@t74))
% 86.49/86.78  (step @p299 :rule cong :premises (@p298) :args (@t75))
% 86.49/86.78  (step @p300 :rule trans :premises (@p299 @p204))
% 86.49/86.78  (step @p301 :rule aci_norm :args ((= (or false @t195 @t193 @t192) @t196)))
% 86.49/86.78  (step @p302 :rule refl :args (@t192))
% 86.49/86.78  (step @p303 :rule refl :args (@t193))
% 86.49/86.78  (step @p304 :rule refl :args (@t195))
% 86.49/86.78  (step @p305 :rule eq-refl :args (@t42))
% 86.49/86.78  (step @p306 :rule cong :premises (@p305) :args (@t300))
% 86.49/86.78  (step @p307 :rule trans :premises (@p306 @p59))
% 86.49/86.78  (step @p308 :rule nary_cong :premises (@p307 @p304 @p303 @p302) :args (@t301))
% 86.49/86.78  (step @p309 :rule trans :premises (@p308 @p301))
% 86.49/86.78  (step @p310 :rule cong :premises (@p309) :args ((forall @t197 @t301)))
% 86.49/86.78  (step @p311 :rule quant-var-elim-eq :args ((= (forall @t222 (or (not (= @t32 @t42)) @t303 @t302 @t193 @t192)) @t301)))
% 86.49/86.78  (step @p312 :rule refl :args (@t192))
% 86.49/86.78  (step @p313 :rule refl :args (@t193))
% 86.49/86.78  (step @p314 :rule refl :args (@t302))
% 86.49/86.78  (step @p315 :rule refl :args (@t303))
% 86.49/86.78  (step @p316 :rule eq-symm :args (@t42 @t32))
% 86.49/86.78  (step @p317 :rule cong :premises (@p316) :args (@t303))
% 86.49/86.78  (step @p318 :rule nary_cong :premises (@p317 @p315 @p314 @p313 @p312) :args (@t304))
% 86.49/86.78  (step @p319 :rule aci_norm :args ((= @t305 @t304)))
% 86.49/86.78  (step @p320 :rule trans :premises (@p319 @p318))
% 86.49/86.78  (step @p321 :rule cong :premises (@p320) :args (@t306))
% 86.49/86.78  (step @p322 :rule trans :premises (@p321 @p311))
% 86.49/86.78  (step @p323 :rule cong :premises (@p322) :args (@t307))
% 86.49/86.78  (step @p324 :rule quant-merge-prenex :args ((= @t307 @t308)))
% 86.49/86.78  (step @p325 :rule symm :premises (@p324))
% 86.49/86.78  (step @p326 :rule quant_var_reordering :args ((= (forall @t309 @t305) @t308)))
% 86.49/86.78  (step @p327 :rule trans :premises (@p326 @p325 @p323))
% 86.49/86.78  (step @p328 :rule trans :premises (@p327 @p310))
% 86.49/86.78  (step @p329 :rule aci_norm :args ((= (or false @t303 @t302 @t193 @t192) @t305)))
% 86.49/86.78  (step @p330 :rule refl :args (@t302))
% 86.49/86.78  (step @p331 :rule refl :args (@t303))
% 86.49/86.78  (step @p332 :rule nary_cong :premises (@p307 @p331 @p330 @p303 @p302) :args (@t310))
% 86.49/86.78  (step @p333 :rule trans :premises (@p332 @p329))
% 86.49/86.78  (step @p334 :rule cong :premises (@p333) :args ((forall @t309 @t310)))
% 86.49/86.78  (step @p335 :rule trans :premises (@p334 @p328))
% 86.49/86.78  (step @p336 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t313 @t312 @t230 @t302 @t193 @t192)) @t310)))
% 86.49/86.78  (step @p337 :rule refl :args (@t312))
% 86.49/86.78  (step @p338 :rule eq-symm :args (@t42 @t33))
% 86.49/86.78  (step @p339 :rule cong :premises (@p338) :args (@t312))
% 86.49/86.78  (step @p340 :rule nary_cong :premises (@p339 @p337 @p164 @p314 @p313 @p312) :args (@t314))
% 86.49/86.78  (step @p341 :rule aci_norm :args ((= @t315 @t314)))
% 86.49/86.78  (step @p342 :rule trans :premises (@p341 @p340))
% 86.49/86.78  (step @p343 :rule cong :premises (@p342) :args (@t316))
% 86.49/86.78  (step @p344 :rule trans :premises (@p343 @p336))
% 86.49/86.78  (step @p345 :rule cong :premises (@p344) :args (@t317))
% 86.49/86.78  (step @p346 :rule quant-merge-prenex :args ((= @t317 @t318)))
% 86.49/86.78  (step @p347 :rule symm :premises (@p346))
% 86.49/86.78  (step @p348 :rule quant_var_reordering :args ((= (forall @t319 @t315) @t318)))
% 86.49/86.78  (step @p349 :rule trans :premises (@p348 @p347 @p345))
% 86.49/86.78  (step @p350 :rule trans :premises (@p349 @p335))
% 86.49/86.78  (step @p351 :rule aci_norm :args ((= @t321 @t315)))
% 86.49/86.78  (step @p352 :rule cong :premises (@p351) :args (@t322))
% 86.49/86.78  (step @p353 :rule trans :premises (@p352 @p350))
% 86.49/86.78  (step @p354 :rule quant-merge-prenex :args ((= (forall @t40 @t323) @t322)))
% 86.49/86.78  (step @p355 :rule alpha_equiv :args (@t324 @t181 @t245))
% 86.49/86.78  (step @p356 :rule nary_cong :premises (@p337 @p355 @p164) :args (@t325))
% 86.49/86.78  (step @p357 :rule quant-miniscope-or :args ((= @t323 @t325)))
% 86.49/86.78  (step @p358 :rule trans :premises (@p357 @p356))
% 86.49/86.78  (step @p359 :rule symm :premises (@p358))
% 86.49/86.78  (step @p360 :rule cong :premises (@p359) :args ((forall @t40 (or @t312 @t253 @t230))))
% 86.49/86.78  (step @p361 :rule trans :premises (@p360 @p354))
% 86.49/86.78  (step @p362 :rule trans :premises (@p361 @p353))
% 86.49/86.78  (step @p363 :rule nary_cong :premises (@p337 @p191 @p164) :args (@t326))
% 86.49/86.78  (step @p364 :rule aci_norm :args ((= (or @t312 @t257) @t326)))
% 86.49/86.78  (step @p365 :rule trans :premises (@p364 @p363))
% 86.49/86.78  (step @p366 :rule nary_cong :premises (@p337 @p195) :args ((or @t312 @t258)))
% 86.49/86.78  (step @p367 :rule bool-and-de-morgan :args (@t311 @t254 (and @t64)))
% 86.49/86.78  (step @p368 :rule trans :premises (@p367 @p366))
% 86.49/86.78  (step @p369 :rule trans :premises (@p368 @p365))
% 86.49/86.78  (step @p370 :rule cong :premises (@p369) :args (@t328))
% 86.49/86.78  (step @p371 :rule trans :premises (@p370 @p362))
% 86.49/86.78  (step @p372 :rule cong :premises (@p371) :args (@t329))
% 86.49/86.78  (step @p373 :rule exists-elim :args ((= (exists @t40 @t327) @t329)))
% 86.49/86.78  (step @p374 :rule trans :premises (@p373 @p372))
% 86.49/86.78  (step @p375 :rule eq-symm :args (@t33 @t42))
% 86.49/86.78  (step @p376 :rule nary_cong :premises (@p375 @p296 @p205) :args (@t76))
% 86.49/86.78  (step @p377 :rule cong :premises (@p376) :args (@t77))
% 86.49/86.78  (step @p378 :rule trans :premises (@p377 @p374))
% 86.49/86.78  (step @p379 :rule aci_norm :args ((= (or @t205 (or @t202 @t200)) @t206)))
% 86.49/86.78  (step @p380 :rule bool-and-de-morgan :args (@t201 @t199 true))
% 86.49/86.78  (step @p381 :rule refl :args (@t205))
% 86.49/86.78  (step @p382 :rule nary_cong :premises (@p381 @p380) :args ((or @t205 (not (and @t201 @t199)))))
% 86.49/86.78  (step @p383 :rule bool-and-de-morgan :args (@t204 @t201 (and @t199)))
% 86.49/86.78  (step @p384 :rule trans :premises (@p383 @p382))
% 86.49/86.78  (step @p385 :rule trans :premises (@p384 @p379))
% 86.49/86.78  (step @p386 :rule cong :premises (@p385) :args (@t331))
% 86.49/86.78  (step @p387 :rule cong :premises (@p386) :args (@t332))
% 86.49/86.78  (step @p388 :rule exists-elim :args ((= (exists @t55 @t330) @t332)))
% 86.49/86.78  (step @p389 :rule trans :premises (@p388 @p387))
% 86.49/86.78  (step @p390 :rule eq-symm :args (@t47 @t37))
% 86.49/86.78  (step @p391 :rule eq-symm :args (@t49 @t42))
% 86.49/86.78  (step @p392 :rule arith_poly_norm :args ((= @t50 @t203)))
% 86.49/86.78  (step @p393 :rule cong :premises (@p392) :args (@t51))
% 86.49/86.78  (step @p394 :rule refl :args (@t52))
% 86.49/86.78  (step @p395 :rule cong :premises (@p394 @p393) :args (@t53))
% 86.49/86.78  (step @p396 :rule nary_cong :premises (@p395 @p391 @p390) :args (@t54))
% 86.49/86.78  (step @p397 :rule cong :premises (@p396) :args (@t56))
% 86.49/86.78  (step @p398 :rule trans :premises (@p397 @p389))
% 86.49/86.78  (step @p399 :rule nary_cong :premises (@p398 @p378 @p300) :args (@t78))
% 86.49/86.78  (step @p400 :rule cong :premises (@p399) :args (@t79))
% 86.49/86.78  (step @p401 :rule trans :premises (@p400 @p127))
% 86.49/86.78  (step @p402 :rule refl :args (@t80))
% 86.49/86.78  (step @p403 :rule cong :premises (@p402 @p401) :args (@t81))
% 86.49/86.78  (step @p404 :rule cong :premises (@p403) :args (@t82))
% 86.49/86.78  (step @p405 :rule eq_resolve :premises (@p17 @p404))
% 86.49/86.78  (step @p406 :rule eq-symm :args (@t133 @t134))
% 86.49/86.78  (step @p407 :rule cong :premises (@p406) :args (@t333))
% 86.49/86.78  (step @p408 :rule nary_cong :premises (@p407 @p58 @p57 @p56 @p55 @p54 @p53) :args (@t334))
% 86.49/86.78  (step @p409 :rule cong :premises (@p408) :args (@t335))
% 86.49/86.78  (step @p410 :rule cong :premises (@p409) :args (@t336))
% 86.49/86.78  (step @p411 :rule refl :args (@t337))
% 86.49/86.78  (step @p412 :rule cong :premises (@p411 @p410) :args (@t338))
% 86.49/86.78  (step @p413 :rule refl :args (@t339))
% 86.49/86.78  (step @p414 :rule cong :premises (@p413 @p412) :args ((=> @t339 @t338)))
% 86.49/86.78  (assume-push @p2665 @t339)
% 86.49/86.78  (step @p416 :rule instantiate :premises (@p405) :args (@t340))
% 86.49/86.78  (step-pop @p2666 :rule scope :premises (@p416))
% 86.49/86.78  (step @p417 :rule process_scope :premises (@p2666) :args (@t338))
% 86.49/86.78  (step @p419 :rule eq_resolve :premises (@p417 @p414))
% 86.49/86.78  (step @p420 :rule implies_elim :premises (@p419))
% 86.49/86.78  (step @p421 :rule chain_m_resolution :premises (@p420 @p405) :args (@t342 @t145 (@list @t339)))
% 86.49/86.78  (step @p422 :rule cnf_equiv_pos1 :args (@t342))
% 86.49/86.78  (step @p423 :rule reordering :premises (@p422) :args ((or @t344 @t341 @t343)))
% 86.49/86.78  (step @p424 :rule aci_norm :args ((= (or @t371 false @t367 @t365 false @t360 @t358) @t372)))
% 86.49/86.78  (step @p425 :rule refl :args (@t358))
% 86.49/86.78  (step @p426 :rule refl :args (@t360))
% 86.49/86.78  (step @p427 :rule eq-refl :args (@t373))
% 86.49/86.78  (step @p428 :rule cong :premises (@p427) :args (@t374))
% 86.49/86.78  (step @p429 :rule trans :premises (@p428 @p59))
% 86.49/86.78  (step @p430 :rule refl :args (@t365))
% 86.49/86.78  (step @p431 :rule refl :args (@t367))
% 86.49/86.78  (step @p432 :rule eq-refl :args (@t375))
% 86.49/86.78  (step @p433 :rule cong :premises (@p432) :args (@t376))
% 86.49/86.78  (step @p434 :rule trans :premises (@p433 @p59))
% 86.49/86.78  (step @p435 :rule eq-symm :args (@t369 @t133))
% 86.49/86.78  (step @p436 :rule refl :args (@t133))
% 86.49/86.78  (step @p437 :rule arith_poly_norm :args ((= @t377 @t368)))
% 86.49/86.78  (step @p438 :rule cong :premises (@p437) :args (@t378))
% 86.49/86.78  (step @p439 :rule cong :premises (@p438 @p436) :args (@t379))
% 86.49/86.78  (step @p440 :rule trans :premises (@p439 @p435))
% 86.49/86.78  (step @p441 :rule cong :premises (@p440) :args (@t380))
% 86.49/86.78  (step @p442 :rule nary_cong :premises (@p441 @p434 @p431 @p430 @p429 @p426 @p425) :args (@t381))
% 86.49/86.78  (step @p443 :rule trans :premises (@p442 @p424))
% 86.49/86.78  (step @p444 :rule refl :args (@t136))
% 86.49/86.78  (step @p445 :rule cong :premises (@p444 @p443) :args ((=> @t136 @t381)))
% 86.49/86.78  (assume-push @p2667 @t136)
% 86.49/86.78  (step @p447 :rule instantiate :premises (@p2667) :args ((@list @t361 @t354 @t361 @t354)))
% 86.49/86.78  (step-pop @p2668 :rule scope :premises (@p447))
% 86.49/86.78  (step @p448 :rule process_scope :premises (@p2668) :args (@t381))
% 86.49/86.78  (step @p450 :rule eq_resolve :premises (@p448 @p445))
% 86.49/86.78  (step @p451 :rule implies_elim :premises (@p450))
% 86.49/86.78  (step @p452 :rule cnf_and_pos :args (@t384 1))
% 86.49/86.78  (step @p453 :rule reordering :premises (@p452) :args ((or @t383 @t385)))
% 86.49/86.78  (step @p454 :rule alpha_equiv :args (@t382 @t386 @t388))
% 86.49/86.78  (step @p455 :rule equiv_elim1 :premises (@p454))
% 86.49/86.78  (step @p456 :rule bool-or-de-morgan :args (@t80 @t131 false))
% 86.49/86.78  (step @p457 :rule refl :args (@t92))
% 86.49/86.78  (step @p458 :rule cong :premises (@p457 @p456) :args (@t390))
% 86.49/86.78  (step @p459 :rule cong :premises (@p458) :args ((forall @t62 @t390)))
% 86.49/86.78  (step @p460 :rule quant-miniscope-or :args ((= (forall @t130 @t391) @t389)))
% 86.49/86.78  (step @p461 :rule aci_norm :args ((= @t392 @t391)))
% 86.49/86.78  (step @p462 :rule cong :premises (@p461) :args ((forall @t130 @t392)))
% 86.49/86.78  (step @p463 :rule trans :premises (@p462 @p460))
% 86.49/86.78  (step @p464 :rule aci_norm :args ((= (or false @t80 @t128 @t126 @t125) @t392)))
% 86.49/86.78  (step @p465 :rule refl :args (@t125))
% 86.49/86.78  (step @p466 :rule refl :args (@t126))
% 86.49/86.78  (step @p467 :rule refl :args (@t128))
% 86.49/86.78  (step @p468 :rule eq-refl :args (@t52))
% 86.49/86.78  (step @p469 :rule cong :premises (@p468) :args (@t393))
% 86.49/86.78  (step @p470 :rule trans :premises (@p469 @p59))
% 86.49/86.78  (step @p471 :rule nary_cong :premises (@p470 @p402 @p467 @p466 @p465) :args (@t394))
% 86.49/86.78  (step @p472 :rule trans :premises (@p471 @p464))
% 86.49/86.78  (step @p473 :rule cong :premises (@p472) :args ((forall @t130 @t394)))
% 86.49/86.78  (step @p474 :rule trans :premises (@p473 @p463))
% 86.49/86.78  (step @p475 :rule quant-var-elim-eq :args ((= (forall @t90 (or @t398 @t397 @t396 @t395 @t126 @t125)) @t394)))
% 86.49/86.78  (step @p476 :rule refl :args (@t125))
% 86.49/86.78  (step @p477 :rule refl :args (@t126))
% 86.49/86.78  (step @p478 :rule refl :args (@t395))
% 86.49/86.78  (step @p479 :rule refl :args (@t396))
% 86.49/86.78  (step @p480 :rule refl :args (@t397))
% 86.49/86.78  (step @p481 :rule eq-symm :args (@t52 @t42))
% 86.49/86.78  (step @p482 :rule cong :premises (@p481) :args (@t397))
% 86.49/86.78  (step @p483 :rule nary_cong :premises (@p482 @p480 @p479 @p478 @p477 @p476) :args (@t399))
% 86.49/86.78  (step @p484 :rule aci_norm :args ((= @t400 @t399)))
% 86.49/86.78  (step @p485 :rule trans :premises (@p484 @p483))
% 86.49/86.78  (step @p486 :rule cong :premises (@p485) :args (@t401))
% 86.49/86.78  (step @p487 :rule trans :premises (@p486 @p475))
% 86.49/86.78  (step @p488 :rule cong :premises (@p487) :args (@t402))
% 86.49/86.78  (step @p489 :rule quant-merge-prenex :args ((= @t402 @t403)))
% 86.49/86.78  (step @p490 :rule symm :premises (@p489))
% 86.49/86.78  (step @p491 :rule quant_var_reordering :args ((= (forall @t404 @t400) @t403)))
% 86.49/86.78  (step @p492 :rule trans :premises (@p491 @p490 @p488))
% 86.49/86.78  (step @p493 :rule trans :premises (@p492 @p474))
% 86.49/86.78  (step @p494 :rule aci_norm :args ((= @t406 @t400)))
% 86.49/86.78  (step @p495 :rule cong :premises (@p494) :args (@t407))
% 86.49/86.78  (step @p496 :rule trans :premises (@p495 @p493))
% 86.49/86.78  (step @p497 :rule quant-merge-prenex :args ((= (forall @t90 @t408) @t407)))
% 86.49/86.78  (step @p498 :rule alpha_equiv :args (@t409 @t386 @t181))
% 86.49/86.78  (step @p499 :rule nary_cong :premises (@p480 @p498 @p479) :args (@t410))
% 86.49/86.78  (step @p500 :rule quant-miniscope-or :args ((= @t408 @t410)))
% 86.49/86.78  (step @p501 :rule trans :premises (@p500 @p499))
% 86.49/86.78  (step @p502 :rule symm :premises (@p501))
% 86.49/86.78  (step @p503 :rule cong :premises (@p502) :args ((forall @t90 (or @t397 @t198 @t396))))
% 86.49/86.78  (step @p504 :rule trans :premises (@p503 @p497))
% 86.49/86.78  (step @p505 :rule trans :premises (@p504 @p496))
% 86.49/86.78  (step @p506 :rule bool-double-not-elim :args (@t396))
% 86.49/86.78  (step @p507 :rule nary_cong :premises (@p480 @p112 @p506) :args (@t413))
% 86.49/86.78  (step @p508 :rule aci_norm :args ((= (or @t397 (or @t211 @t412)) @t413)))
% 86.49/86.78  (step @p509 :rule trans :premises (@p508 @p507))
% 86.49/86.78  (step @p510 :rule bool-and-de-morgan :args (@t210 @t411 true))
% 86.49/86.78  (step @p511 :rule nary_cong :premises (@p480 @p510) :args ((or @t397 (not (and @t210 @t411)))))
% 86.49/86.78  (step @p512 :rule bool-and-de-morgan :args (@t88 @t210 (and @t411)))
% 86.49/86.78  (step @p513 :rule trans :premises (@p512 @p511))
% 86.49/86.78  (step @p514 :rule trans :premises (@p513 @p509))
% 86.49/86.78  (step @p515 :rule cong :premises (@p514) :args (@t415))
% 86.49/86.78  (step @p516 :rule trans :premises (@p515 @p505))
% 86.49/86.78  (step @p517 :rule cong :premises (@p516) :args (@t416))
% 86.49/86.78  (step @p518 :rule exists-elim :args ((= (exists @t90 @t414) @t416)))
% 86.49/86.78  (step @p519 :rule trans :premises (@p518 @p517))
% 86.49/86.78  (step @p520 :rule aci_norm :args ((= (or false @t396) @t396)))
% 86.49/86.78  (step @p521 :rule refl :args (@t396))
% 86.49/86.78  (step @p522 :rule nary_cong :premises (@p307 @p521) :args (@t417))
% 86.49/86.78  (step @p523 :rule trans :premises (@p522 @p520))
% 86.49/86.78  (step @p524 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t313 @t312 @t97)) @t417)))
% 86.49/86.78  (step @p525 :rule refl :args (@t97))
% 86.49/86.78  (step @p526 :rule nary_cong :premises (@p339 @p337 @p525) :args (@t418))
% 86.49/86.78  (step @p527 :rule aci_norm :args ((= @t419 @t418)))
% 86.49/86.78  (step @p528 :rule trans :premises (@p527 @p526))
% 86.49/86.78  (step @p529 :rule cong :premises (@p528) :args ((forall @t86 @t419)))
% 86.49/86.78  (step @p530 :rule trans :premises (@p529 @p524))
% 86.49/86.78  (step @p531 :rule trans :premises (@p530 @p523))
% 86.49/86.78  (step @p532 :rule bool-double-not-elim :args (@t97))
% 86.49/86.78  (step @p533 :rule nary_cong :premises (@p337 @p532) :args ((or @t312 (not @t98))))
% 86.49/86.78  (step @p534 :rule bool-and-de-morgan :args (@t311 @t98 true))
% 86.49/86.78  (step @p535 :rule trans :premises (@p534 @p533))
% 86.49/86.78  (step @p536 :rule cong :premises (@p535) :args (@t421))
% 86.49/86.78  (step @p537 :rule trans :premises (@p536 @p531))
% 86.49/86.78  (step @p538 :rule cong :premises (@p537) :args (@t422))
% 86.49/86.78  (step @p539 :rule exists-elim :args ((= (exists @t86 @t420) @t422)))
% 86.49/86.78  (step @p540 :rule trans :premises (@p539 @p538))
% 86.49/86.78  (step @p541 :rule refl :args (@t98))
% 86.49/86.78  (step @p542 :rule nary_cong :premises (@p375 @p541) :args (@t99))
% 86.49/86.78  (step @p543 :rule cong :premises (@p542) :args (@t100))
% 86.49/86.78  (step @p544 :rule trans :premises (@p543 @p540))
% 86.49/86.78  (step @p545 :rule refl :args (@t88))
% 86.49/86.78  (step @p546 :rule nary_cong :premises (@p545 @p378 @p544) :args (@t101))
% 86.49/86.78  (step @p547 :rule cong :premises (@p546) :args (@t102))
% 86.49/86.78  (step @p548 :rule trans :premises (@p547 @p519))
% 86.49/86.78  (step @p549 :rule refl :args (@t92))
% 86.49/86.78  (step @p550 :rule cong :premises (@p549 @p548) :args (@t103))
% 86.49/86.78  (step @p551 :rule cong :premises (@p550) :args (@t104))
% 86.49/86.78  (step @p552 :rule trans :premises (@p551 @p459))
% 86.49/86.78  (step @p553 :rule cong :premises (@p552) :args (@t105))
% 86.49/86.78  (step @p554 :rule eq_resolve :premises (@p20 @p553))
% 86.49/86.78  (step @p555 :rule refl :args (@t425))
% 86.49/86.78  (step @p556 :rule bool-double-not-elim :args (@t132))
% 86.49/86.78  (step @p557 :rule nary_cong :premises (@p556 @p555) :args ((or (not @t426) @t425)))
% 86.49/86.78  (step @p558 :rule eq-symm :args (@t133 @t127))
% 86.49/86.78  (step @p559 :rule cong :premises (@p558) :args (@t427))
% 86.49/86.78  (step @p560 :rule nary_cong :premises (@p559 @p466 @p465) :args (@t428))
% 86.49/86.78  (step @p561 :rule cong :premises (@p560) :args (@t429))
% 86.49/86.78  (step @p562 :rule cong :premises (@p561) :args (@t430))
% 86.49/86.78  (step @p563 :rule refl :args (@t344))
% 86.49/86.78  (step @p564 :rule nary_cong :premises (@p563 @p562) :args (@t431))
% 86.49/86.78  (step @p565 :rule refl :args (@t423))
% 86.49/86.78  (step @p566 :rule cong :premises (@p565 @p564) :args (@t432))
% 86.49/86.78  (step @p567 :rule cong :premises (@p566) :args (@t433))
% 86.49/86.78  (step @p568 :rule refl :args (@t426))
% 86.49/86.78  (step @p569 :rule cong :premises (@p568 @p567) :args ((=> @t426 @t433)))
% 86.49/86.78  (assume-push @p2669 @t426)
% 86.49/86.78  (step @p571 :rule skolemize :premises (@p554))
% 86.49/86.78  (step-pop @p2670 :rule scope :premises (@p571))
% 86.49/86.78  (step @p572 :rule process_scope :premises (@p2670) :args (@t433))
% 86.49/86.78  (step @p574 :rule eq_resolve :premises (@p572 @p569))
% 86.49/86.78  (step @p575 :rule implies_elim :premises (@p574))
% 86.49/86.78  (step @p576 :rule eq_resolve :premises (@p575 @p557))
% 86.49/86.78  (step @p577 :rule chain_m_resolution :premises (@p576 @p554) :args (@t425 @t434 (@list @t132)))
% 86.49/86.78  (step @p578 :rule cnf_equiv_neg1 :args (@t424))
% 86.49/86.78  (step @p579 :rule reordering :premises (@p578) :args ((or @t423 @t384 @t424)))
% 86.49/86.78  (step @p580 :rule cnf_and_pos :args (@t443 1))
% 86.49/86.78  (step @p581 :rule reordering :premises (@p580) :args ((or @t440 @t444)))
% 86.49/86.78  (step @p582 :rule bool-or-de-morgan :args (@t60 @t447 false))
% 86.49/86.78  (step @p583 :rule cong :premises (@p457 @p582) :args (@t449))
% 86.49/86.78  (step @p584 :rule cong :premises (@p583) :args ((forall @t62 @t449)))
% 86.49/86.78  (step @p585 :rule quant-miniscope-or :args ((= (forall @t438 @t450) @t448)))
% 86.49/86.78  (step @p586 :rule aci_norm :args ((= @t451 @t450)))
% 86.49/86.78  (step @p587 :rule cong :premises (@p586) :args ((forall @t438 @t451)))
% 86.49/86.78  (step @p588 :rule trans :premises (@p587 @p585))
% 86.49/86.78  (step @p589 :rule aci_norm :args ((= (or false @t60 @t445 @t436 @t435) @t451)))
% 86.49/86.78  (step @p590 :rule refl :args (@t435))
% 86.49/86.78  (step @p591 :rule refl :args (@t436))
% 86.49/86.78  (step @p592 :rule refl :args (@t445))
% 86.49/86.78  (step @p593 :rule refl :args (@t60))
% 86.49/86.78  (step @p594 :rule nary_cong :premises (@p470 @p593 @p592 @p591 @p590) :args (@t452))
% 86.49/86.78  (step @p595 :rule trans :premises (@p594 @p589))
% 86.49/86.78  (step @p596 :rule cong :premises (@p595) :args ((forall @t438 @t452)))
% 86.49/86.78  (step @p597 :rule trans :premises (@p596 @p588))
% 86.49/86.78  (step @p598 :rule quant-var-elim-eq :args ((= (forall @t90 (or @t398 @t397 @t454 @t453 @t436 @t435)) @t452)))
% 86.49/86.78  (step @p599 :rule refl :args (@t435))
% 86.49/86.78  (step @p600 :rule refl :args (@t436))
% 86.49/86.78  (step @p601 :rule refl :args (@t453))
% 86.49/86.78  (step @p602 :rule refl :args (@t454))
% 86.49/86.78  (step @p603 :rule nary_cong :premises (@p482 @p480 @p602 @p601 @p600 @p599) :args (@t455))
% 86.49/86.78  (step @p604 :rule aci_norm :args ((= @t456 @t455)))
% 86.49/86.78  (step @p605 :rule trans :premises (@p604 @p603))
% 86.49/86.78  (step @p606 :rule cong :premises (@p605) :args (@t457))
% 86.49/86.78  (step @p607 :rule trans :premises (@p606 @p598))
% 86.49/86.78  (step @p608 :rule cong :premises (@p607) :args (@t458))
% 86.49/86.78  (step @p609 :rule quant-merge-prenex :args ((= @t458 @t459)))
% 86.49/86.78  (step @p610 :rule symm :premises (@p609))
% 86.49/86.78  (step @p611 :rule quant_var_reordering :args ((= (forall @t460 @t456) @t459)))
% 86.49/86.78  (step @p612 :rule trans :premises (@p611 @p610 @p608))
% 86.49/86.78  (step @p613 :rule trans :premises (@p612 @p597))
% 86.49/86.78  (step @p614 :rule aci_norm :args ((= @t462 @t456)))
% 86.49/86.78  (step @p615 :rule cong :premises (@p614) :args (@t463))
% 86.49/86.78  (step @p616 :rule trans :premises (@p615 @p613))
% 86.49/86.78  (step @p617 :rule quant-merge-prenex :args ((= (forall @t90 @t464) @t463)))
% 86.49/86.78  (step @p618 :rule alpha_equiv :args (@t465 @t388 @t181))
% 86.49/86.78  (step @p619 :rule nary_cong :premises (@p480 @p618 @p602) :args (@t466))
% 86.49/86.78  (step @p620 :rule quant-miniscope-or :args ((= @t464 @t466)))
% 86.49/86.78  (step @p621 :rule trans :premises (@p620 @p619))
% 86.49/86.78  (step @p622 :rule symm :premises (@p621))
% 86.49/86.78  (step @p623 :rule cong :premises (@p622) :args ((forall @t90 (or @t397 @t198 @t454))))
% 86.49/86.78  (step @p624 :rule trans :premises (@p623 @p617))
% 86.49/86.78  (step @p625 :rule trans :premises (@p624 @p616))
% 86.49/86.78  (step @p626 :rule bool-double-not-elim :args (@t454))
% 86.49/86.78  (step @p627 :rule nary_cong :premises (@p480 @p112 @p626) :args (@t469))
% 86.49/86.78  (step @p628 :rule aci_norm :args ((= (or @t397 (or @t211 @t468)) @t469)))
% 86.49/86.78  (step @p629 :rule trans :premises (@p628 @p627))
% 86.49/86.78  (step @p630 :rule bool-and-de-morgan :args (@t210 @t467 true))
% 86.49/86.78  (step @p631 :rule nary_cong :premises (@p480 @p630) :args ((or @t397 (not (and @t210 @t467)))))
% 86.49/86.78  (step @p632 :rule bool-and-de-morgan :args (@t88 @t210 (and @t467)))
% 86.49/86.78  (step @p633 :rule trans :premises (@p632 @p631))
% 86.49/86.78  (step @p634 :rule trans :premises (@p633 @p629))
% 86.49/86.78  (step @p635 :rule cong :premises (@p634) :args (@t471))
% 86.49/86.78  (step @p636 :rule trans :premises (@p635 @p625))
% 86.49/86.78  (step @p637 :rule cong :premises (@p636) :args (@t472))
% 86.49/86.78  (step @p638 :rule exists-elim :args ((= (exists @t90 @t470) @t472)))
% 86.49/86.78  (step @p639 :rule trans :premises (@p638 @p637))
% 86.49/86.78  (step @p640 :rule aci_norm :args ((= (or false @t454) @t454)))
% 86.49/86.78  (step @p641 :rule refl :args (@t454))
% 86.49/86.78  (step @p642 :rule nary_cong :premises (@p307 @p641) :args (@t473))
% 86.49/86.78  (step @p643 :rule trans :premises (@p642 @p640))
% 86.49/86.78  (step @p644 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t313 @t312 @t83)) @t473)))
% 86.49/86.78  (step @p645 :rule refl :args (@t83))
% 86.49/86.78  (step @p646 :rule nary_cong :premises (@p339 @p337 @p645) :args (@t474))
% 86.49/86.78  (step @p647 :rule aci_norm :args ((= @t475 @t474)))
% 86.49/86.78  (step @p648 :rule trans :premises (@p647 @p646))
% 86.49/86.78  (step @p649 :rule cong :premises (@p648) :args ((forall @t86 @t475)))
% 86.49/86.78  (step @p650 :rule trans :premises (@p649 @p644))
% 86.49/86.78  (step @p651 :rule trans :premises (@p650 @p643))
% 86.49/86.78  (step @p652 :rule bool-double-not-elim :args (@t83))
% 86.49/86.78  (step @p653 :rule nary_cong :premises (@p337 @p652) :args ((or @t312 (not @t84))))
% 86.49/86.78  (step @p654 :rule bool-and-de-morgan :args (@t311 @t84 true))
% 86.49/86.78  (step @p655 :rule trans :premises (@p654 @p653))
% 86.49/86.78  (step @p656 :rule cong :premises (@p655) :args (@t477))
% 86.49/86.78  (step @p657 :rule trans :premises (@p656 @p651))
% 86.49/86.78  (step @p658 :rule cong :premises (@p657) :args (@t478))
% 86.49/86.78  (step @p659 :rule exists-elim :args ((= (exists @t86 @t476) @t478)))
% 86.49/86.78  (step @p660 :rule trans :premises (@p659 @p658))
% 86.49/86.78  (step @p661 :rule refl :args (@t84))
% 86.49/86.78  (step @p662 :rule nary_cong :premises (@p375 @p661) :args (@t85))
% 86.49/86.78  (step @p663 :rule cong :premises (@p662) :args (@t87))
% 86.49/86.78  (step @p664 :rule trans :premises (@p663 @p660))
% 86.49/86.78  (step @p665 :rule nary_cong :premises (@p545 @p378 @p664) :args (@t89))
% 86.49/86.78  (step @p666 :rule cong :premises (@p665) :args (@t91))
% 86.49/86.78  (step @p667 :rule trans :premises (@p666 @p639))
% 86.49/86.78  (step @p668 :rule cong :premises (@p549 @p667) :args (@t93))
% 86.49/86.78  (step @p669 :rule cong :premises (@p668) :args (@t94))
% 86.49/86.78  (step @p670 :rule trans :premises (@p669 @p584))
% 86.49/86.78  (step @p671 :rule eq_resolve :premises (@p18 @p670))
% 86.49/86.78  (step @p672 :rule eq-symm :args (@t133 @t437))
% 86.49/86.78  (step @p673 :rule cong :premises (@p672) :args (@t479))
% 86.49/86.78  (step @p674 :rule nary_cong :premises (@p673 @p591 @p590) :args (@t480))
% 86.49/86.78  (step @p675 :rule cong :premises (@p674) :args (@t481))
% 86.49/86.78  (step @p676 :rule cong :premises (@p675) :args (@t482))
% 86.49/86.78  (step @p677 :rule refl :args (@t442))
% 86.49/86.78  (step @p678 :rule nary_cong :premises (@p677 @p676) :args (@t483))
% 86.49/86.78  (step @p679 :rule cong :premises (@p565 @p678) :args (@t484))
% 86.49/86.78  (step @p680 :rule refl :args (@t485))
% 86.49/86.78  (step @p681 :rule cong :premises (@p680 @p679) :args ((=> @t485 @t484)))
% 86.49/86.78  (assume-push @p2671 @t485)
% 86.49/86.78  (step @p683 :rule instantiate :premises (@p671) :args (@t340))
% 86.49/86.78  (step-pop @p2672 :rule scope :premises (@p683))
% 86.49/86.78  (step @p684 :rule process_scope :premises (@p2672) :args (@t484))
% 86.49/86.78  (step @p686 :rule eq_resolve :premises (@p684 @p681))
% 86.49/86.78  (step @p687 :rule implies_elim :premises (@p686))
% 86.49/86.78  (step @p688 :rule chain_m_resolution :premises (@p687 @p671) :args (@t486 @t145 (@list @t485)))
% 86.49/86.78  (step @p689 :rule cnf_equiv_pos1 :args (@t486))
% 86.49/86.78  (step @p690 :rule reordering :premises (@p689) :args ((or (not @t423) @t443 @t487)))
% 86.49/86.78  (step @p691 :rule chain_m_resolution :premises (@p690 @p688 @p581 @p579 @p577 @p455 @p453) :args (@t383 (@list false true false true false true) (@list @t486 @t443 @t423 @t424 @t439 @t384)))
% 86.49/86.78  (step @p692 :rule bool-double-not-elim :args (@t382))
% 86.49/86.78  (step @p693 :rule bool-double-not-elim :args (@t337))
% 86.49/86.78  (step @p694 :rule refl :args (@t384))
% 86.49/86.78  (step @p695 :rule nary_cong :premises (@p694 @p693 @p692) :args ((or @t384 (not @t344) @t488)))
% 86.49/86.78  (step @p696 :rule cnf_and_neg :args (@t384))
% 86.49/86.78  (step @p697 :rule eq_resolve :premises (@p696 @p695))
% 86.49/86.78  (step @p698 :rule reordering :premises (@p697) :args ((or @t337 @t382 @t384)))
% 86.49/86.78  (step @p699 :rule cnf_equiv_neg2 :args (@t424))
% 86.49/86.78  (step @p700 :rule cnf_equiv_pos2 :args (@t486))
% 86.49/86.78  (step @p701 :rule reordering :premises (@p700) :args ((or @t423 @t444 @t487)))
% 86.49/86.78  (step @p702 :rule equiv_elim2 :premises (@p454))
% 86.49/86.78  (step @p703 :rule chain_m_resolution :premises (@p702 @p691) :args (@t440 @t434 @t489))
% 86.49/86.78  (step @p704 :rule bool-double-not-elim :args (@t439))
% 86.49/86.78  (step @p705 :rule bool-double-not-elim :args (@t441))
% 86.49/86.78  (step @p706 :rule refl :args (@t443))
% 86.49/86.78  (step @p707 :rule nary_cong :premises (@p706 @p705 @p704) :args ((or @t443 (not @t442) (not @t440))))
% 86.49/86.78  (step @p708 :rule cnf_and_neg :args (@t443))
% 86.49/86.78  (step @p709 :rule eq_resolve :premises (@p708 @p707))
% 86.49/86.78  (step @p710 :rule reordering :premises (@p709) :args ((or @t441 @t439 @t443)))
% 86.49/86.78  (step @p711 :rule aci_norm :args ((= (or @t351 @t349 @t490 false) @t491)))
% 86.49/86.78  (step @p712 :rule eq-refl :args (@t348))
% 86.49/86.78  (step @p713 :rule cong :premises (@p712) :args (@t492))
% 86.49/86.78  (step @p714 :rule trans :premises (@p713 @p59))
% 86.49/86.78  (step @p715 :rule refl :args (@t490))
% 86.49/86.78  (step @p716 :rule refl :args (@t349))
% 86.49/86.78  (step @p717 :rule refl :args (@t351))
% 86.49/86.78  (step @p718 :rule nary_cong :premises (@p717 @p716 @p715 @p714) :args (@t493))
% 86.49/86.78  (step @p719 :rule trans :premises (@p718 @p711))
% 86.49/86.78  (step @p720 :rule cong :premises (@p719) :args ((forall @t352 @t493)))
% 86.49/86.78  (step @p721 :rule quant-var-elim-eq :args ((= (forall @t154 @t497) @t493)))
% 86.49/86.78  (step @p722 :rule aci_norm :args ((= @t498 @t497)))
% 86.49/86.78  (step @p723 :rule cong :premises (@p722) :args (@t499))
% 86.49/86.78  (step @p724 :rule trans :premises (@p723 @p721))
% 86.49/86.78  (step @p725 :rule cong :premises (@p724) :args (@t500))
% 86.49/86.78  (step @p726 :rule quant-merge-prenex :args ((= @t500 @t501)))
% 86.49/86.78  (step @p727 :rule symm :premises (@p726))
% 86.49/86.78  (step @p728 :rule quant_var_reordering :args ((= (forall @t502 @t498) @t501)))
% 86.49/86.78  (step @p729 :rule trans :premises (@p728 @p727 @p725))
% 86.49/86.78  (step @p730 :rule trans :premises (@p729 @p720))
% 86.49/86.78  (step @p731 :rule aci_norm :args ((= (or @t351 @t496 @t490 false @t494) @t498)))
% 86.49/86.78  (step @p732 :rule refl :args (@t494))
% 86.49/86.78  (step @p733 :rule eq-refl :args (@t350))
% 86.49/86.78  (step @p734 :rule cong :premises (@p733) :args (@t503))
% 86.49/86.78  (step @p735 :rule trans :premises (@p734 @p59))
% 86.49/86.78  (step @p736 :rule refl :args (@t496))
% 86.49/86.78  (step @p737 :rule nary_cong :premises (@p717 @p736 @p715 @p735 @p732) :args (@t504))
% 86.49/86.78  (step @p738 :rule trans :premises (@p737 @p731))
% 86.49/86.78  (step @p739 :rule cong :premises (@p738) :args ((forall @t502 @t504)))
% 86.49/86.78  (step @p740 :rule trans :premises (@p739 @p730))
% 86.49/86.78  (step @p741 :rule quant-var-elim-eq :args ((= (forall @t90 @t508) @t504)))
% 86.49/86.78  (step @p742 :rule aci_norm :args ((= @t509 @t508)))
% 86.49/86.78  (step @p743 :rule cong :premises (@p742) :args (@t510))
% 86.49/86.78  (step @p744 :rule trans :premises (@p743 @p741))
% 86.49/86.78  (step @p745 :rule cong :premises (@p744) :args (@t511))
% 86.49/86.78  (step @p746 :rule quant-merge-prenex :args ((= @t511 @t512)))
% 86.49/86.78  (step @p747 :rule symm :premises (@p746))
% 86.49/86.78  (step @p748 :rule quant_var_reordering :args ((= (forall @t513 @t509) @t512)))
% 86.49/86.78  (step @p749 :rule trans :premises (@p748 @p747 @p745))
% 86.49/86.78  (step @p750 :rule trans :premises (@p749 @p740))
% 86.49/86.78  (step @p751 :rule aci_norm :args ((= @t515 @t509)))
% 86.49/86.78  (step @p752 :rule cong :premises (@p751) :args (@t516))
% 86.49/86.78  (step @p753 :rule trans :premises (@p752 @p750))
% 86.49/86.78  (step @p754 :rule quant-merge-prenex :args ((= (forall @t58 @t517) @t516)))
% 86.49/86.78  (step @p755 :rule refl :args (@t496))
% 86.49/86.78  (step @p756 :rule refl :args (@t507))
% 86.49/86.78  (step @p757 :rule alpha_equiv :args (@t518 (@list @t346 @t345) @t183))
% 86.49/86.78  (step @p758 :rule nary_cong :premises (@p757 @p756 @p755) :args (@t519))
% 86.49/86.78  (step @p759 :rule quant-miniscope-or :args ((= @t517 @t519)))
% 86.49/86.78  (step @p760 :rule trans :premises (@p759 @p758))
% 86.49/86.78  (step @p761 :rule symm :premises (@p760))
% 86.49/86.78  (step @p762 :rule cong :premises (@p761) :args ((forall @t58 (or @t207 @t507 @t496))))
% 86.49/86.78  (step @p763 :rule trans :premises (@p762 @p754))
% 86.49/86.78  (step @p764 :rule trans :premises (@p763 @p753))
% 86.49/86.78  (step @p765 :rule nary_cong :premises (@p113 @p756 @p755) :args (@t520))
% 86.49/86.78  (step @p766 :rule aci_norm :args ((= (or @t213 (or @t507 @t496)) @t520)))
% 86.49/86.78  (step @p767 :rule trans :premises (@p766 @p765))
% 86.49/86.78  (step @p768 :rule bool-and-de-morgan :args (@t506 @t495 true))
% 86.49/86.78  (step @p769 :rule nary_cong :premises (@p118 @p768) :args ((or @t213 (not (and @t506 @t495)))))
% 86.49/86.78  (step @p770 :rule bool-and-de-morgan :args (@t212 @t506 (and @t495)))
% 86.49/86.78  (step @p771 :rule trans :premises (@p770 @p769))
% 86.49/86.78  (step @p772 :rule trans :premises (@p771 @p767))
% 86.49/86.78  (step @p773 :rule cong :premises (@p772) :args (@t522))
% 86.49/86.78  (step @p774 :rule trans :premises (@p773 @p764))
% 86.49/86.78  (step @p775 :rule cong :premises (@p774) :args (@t523))
% 86.49/86.78  (step @p776 :rule exists-elim :args ((= (exists @t58 @t521) @t523)))
% 86.49/86.78  (step @p777 :rule trans :premises (@p776 @p775))
% 86.49/86.78  (step @p778 :rule bool-double-not-elim :args (@t495))
% 86.49/86.78  (step @p779 :rule aci_norm :args ((= (or false @t496) @t496)))
% 86.49/86.78  (step @p780 :rule eq-refl :args (@t35))
% 86.49/86.78  (step @p781 :rule cong :premises (@p780) :args (@t524))
% 86.49/86.78  (step @p782 :rule trans :premises (@p781 @p59))
% 86.49/86.78  (step @p783 :rule nary_cong :premises (@p782 @p736) :args (@t525))
% 86.49/86.78  (step @p784 :rule trans :premises (@p783 @p779))
% 86.49/86.78  (step @p785 :rule quant-var-elim-eq :args ((= (forall @t222 @t528) @t525)))
% 86.49/86.78  (step @p786 :rule aci_norm :args ((= @t529 @t528)))
% 86.49/86.78  (step @p787 :rule cong :premises (@p786) :args ((forall @t222 @t529)))
% 86.49/86.78  (step @p788 :rule trans :premises (@p787 @p785))
% 86.49/86.78  (step @p789 :rule trans :premises (@p788 @p784))
% 86.49/86.78  (step @p790 :rule aci_norm :args ((= (or false @t527 @t526) @t529)))
% 86.49/86.78  (step @p791 :rule refl :args (@t526))
% 86.49/86.78  (step @p792 :rule refl :args (@t527))
% 86.49/86.78  (step @p793 :rule nary_cong :premises (@p134 @p792 @p791) :args (@t530))
% 86.49/86.78  (step @p794 :rule trans :premises (@p793 @p790))
% 86.49/86.78  (step @p795 :rule cong :premises (@p794) :args ((forall @t222 @t530)))
% 86.49/86.78  (step @p796 :rule trans :premises (@p795 @p789))
% 86.49/86.78  (step @p797 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t233 @t232 @t527 @t531)) @t530)))
% 86.49/86.78  (step @p798 :rule refl :args (@t531))
% 86.49/86.78  (step @p799 :rule refl :args (@t527))
% 86.49/86.78  (step @p800 :rule nary_cong :premises (@p167 @p165 @p799 @p798) :args (@t532))
% 86.49/86.78  (step @p801 :rule aci_norm :args ((= @t533 @t532)))
% 86.49/86.78  (step @p802 :rule trans :premises (@p801 @p800))
% 86.49/86.78  (step @p803 :rule cong :premises (@p802) :args (@t534))
% 86.49/86.78  (step @p804 :rule trans :premises (@p803 @p797))
% 86.49/86.78  (step @p805 :rule cong :premises (@p804) :args (@t535))
% 86.49/86.78  (step @p806 :rule quant-merge-prenex :args ((= @t535 @t537)))
% 86.49/86.78  (step @p807 :rule symm :premises (@p806))
% 86.49/86.78  (step @p808 :rule quant_var_reordering :args ((= (forall @t40 @t533) @t537)))
% 86.49/86.78  (step @p809 :rule trans :premises (@p808 @p807 @p805))
% 86.49/86.78  (step @p810 :rule trans :premises (@p809 @p796))
% 86.49/86.78  (step @p811 :rule aci_norm :args ((= (or @t232 @t538) @t533)))
% 86.49/86.78  (step @p812 :rule bool-and-de-morgan :args (@t36 @t34 true))
% 86.49/86.78  (step @p813 :rule nary_cong :premises (@p165 @p812) :args ((or @t232 @t539)))
% 86.49/86.78  (step @p814 :rule bool-and-de-morgan :args (@t231 @t36 (and @t34)))
% 86.49/86.78  (step @p815 :rule trans :premises (@p814 @p813))
% 86.49/86.78  (step @p816 :rule trans :premises (@p815 @p811))
% 86.49/86.78  (step @p817 :rule cong :premises (@p816) :args (@t541))
% 86.49/86.78  (step @p818 :rule trans :premises (@p817 @p810))
% 86.49/86.78  (step @p819 :rule cong :premises (@p818) :args (@t542))
% 86.49/86.78  (step @p820 :rule trans :premises (@p819 @p778))
% 86.49/86.78  (step @p821 :rule exists-elim :args ((= (exists @t40 @t540) @t542)))
% 86.49/86.78  (step @p822 :rule trans :premises (@p821 @p820))
% 86.49/86.78  (step @p823 :rule refl :args (@t34))
% 86.49/86.78  (step @p824 :rule refl :args (@t36))
% 86.49/86.78  (step @p825 :rule nary_cong :premises (@p297 @p824 @p823) :args (@t39))
% 86.49/86.78  (step @p826 :rule cong :premises (@p825) :args (@t41))
% 86.49/86.78  (step @p827 :rule trans :premises (@p826 @p822))
% 86.49/86.78  (step @p828 :rule bool-double-not-elim :args (@t506))
% 86.49/86.78  (step @p829 :rule aci_norm :args ((= (or false @t507) @t507)))
% 86.49/86.78  (step @p830 :rule refl :args (@t507))
% 86.49/86.78  (step @p831 :rule nary_cong :premises (@p782 @p830) :args (@t543))
% 86.49/86.78  (step @p832 :rule trans :premises (@p831 @p829))
% 86.49/86.78  (step @p833 :rule quant-var-elim-eq :args ((= (forall @t222 @t545) @t543)))
% 86.49/86.78  (step @p834 :rule aci_norm :args ((= @t546 @t545)))
% 86.49/86.78  (step @p835 :rule cong :premises (@p834) :args ((forall @t222 @t546)))
% 86.49/86.78  (step @p836 :rule trans :premises (@p835 @p833))
% 86.49/86.78  (step @p837 :rule trans :premises (@p836 @p832))
% 86.49/86.78  (step @p838 :rule aci_norm :args ((= (or false @t527 @t544) @t546)))
% 86.49/86.78  (step @p839 :rule refl :args (@t544))
% 86.49/86.78  (step @p840 :rule nary_cong :premises (@p307 @p792 @p839) :args (@t547))
% 86.49/86.78  (step @p841 :rule trans :premises (@p840 @p838))
% 86.49/86.78  (step @p842 :rule cong :premises (@p841) :args ((forall @t222 @t547)))
% 86.49/86.78  (step @p843 :rule trans :premises (@p842 @p837))
% 86.49/86.78  (step @p844 :rule quant-var-elim-eq :args ((= (forall @t86 (or @t313 @t312 @t527 @t531)) @t547)))
% 86.49/86.78  (step @p845 :rule nary_cong :premises (@p339 @p337 @p799 @p798) :args (@t548))
% 86.49/86.78  (step @p846 :rule aci_norm :args ((= @t549 @t548)))
% 86.49/86.78  (step @p847 :rule trans :premises (@p846 @p845))
% 86.49/86.78  (step @p848 :rule cong :premises (@p847) :args (@t550))
% 86.49/86.78  (step @p849 :rule trans :premises (@p848 @p844))
% 86.49/86.78  (step @p850 :rule cong :premises (@p849) :args (@t551))
% 86.49/86.78  (step @p851 :rule quant-merge-prenex :args ((= @t551 @t552)))
% 86.49/86.78  (step @p852 :rule symm :premises (@p851))
% 86.49/86.78  (step @p853 :rule quant_var_reordering :args ((= (forall @t40 @t549) @t552)))
% 86.49/86.78  (step @p854 :rule trans :premises (@p853 @p852 @p850))
% 86.49/86.78  (step @p855 :rule trans :premises (@p854 @p843))
% 86.49/86.78  (step @p856 :rule aci_norm :args ((= (or @t312 @t538) @t549)))
% 86.49/86.78  (step @p857 :rule nary_cong :premises (@p337 @p812) :args ((or @t312 @t539)))
% 86.49/86.78  (step @p858 :rule bool-and-de-morgan :args (@t311 @t36 (and @t34)))
% 86.49/86.78  (step @p859 :rule trans :premises (@p858 @p857))
% 86.49/86.78  (step @p860 :rule trans :premises (@p859 @p856))
% 86.49/86.78  (step @p861 :rule cong :premises (@p860) :args (@t554))
% 86.49/86.78  (step @p862 :rule trans :premises (@p861 @p855))
% 86.49/86.78  (step @p863 :rule cong :premises (@p862) :args (@t555))
% 86.49/86.78  (step @p864 :rule trans :premises (@p863 @p828))
% 86.49/86.78  (step @p865 :rule exists-elim :args ((= (exists @t40 @t553) @t555)))
% 86.49/86.78  (step @p866 :rule trans :premises (@p865 @p864))
% 86.49/86.78  (step @p867 :rule nary_cong :premises (@p375 @p824 @p823) :args (@t44))
% 86.49/86.78  (step @p868 :rule cong :premises (@p867) :args (@t45))
% 86.49/86.78  (step @p869 :rule trans :premises (@p868 @p866))
% 86.49/86.78  (step @p870 :rule nary_cong :premises (@p398 @p869 @p827) :args (@t57))
% 86.49/86.78  (step @p871 :rule cong :premises (@p870) :args (@t59))
% 86.49/86.78  (step @p872 :rule trans :premises (@p871 @p777))
% 86.49/86.78  (step @p873 :rule cong :premises (@p593 @p872) :args (@t61))
% 86.49/86.78  (step @p874 :rule cong :premises (@p873) :args (@t63))
% 86.49/86.78  (step @p875 :rule eq_resolve :premises (@p16 @p874))
% 86.49/86.78  (step @p876 :rule eq-symm :args (@t133 @t347))
% 86.49/86.78  (step @p877 :rule cong :premises (@p876) :args (@t556))
% 86.49/86.78  (step @p878 :rule nary_cong :premises (@p717 @p716 @p877) :args (@t557))
% 86.49/86.78  (step @p879 :rule cong :premises (@p878) :args (@t558))
% 86.49/86.78  (step @p880 :rule cong :premises (@p879) :args (@t559))
% 86.49/86.78  (step @p881 :rule refl :args (@t441))
% 86.49/86.78  (step @p882 :rule cong :premises (@p881 @p880) :args (@t560))
% 86.49/86.78  (step @p883 :rule refl :args (@t561))
% 86.49/86.78  (step @p884 :rule cong :premises (@p883 @p882) :args ((=> @t561 @t560)))
% 86.49/86.78  (assume-push @p2673 @t561)
% 86.49/86.78  (step @p886 :rule instantiate :premises (@p875) :args (@t340))
% 86.49/86.78  (step-pop @p2674 :rule scope :premises (@p886))
% 86.49/86.78  (step @p887 :rule process_scope :premises (@p2674) :args (@t560))
% 86.49/86.78  (step @p889 :rule eq_resolve :premises (@p887 @p884))
% 86.49/86.78  (step @p890 :rule implies_elim :premises (@p889))
% 86.49/86.78  (step @p891 :rule chain_m_resolution :premises (@p890 @p875) :args (@t563 @t145 (@list @t561)))
% 86.49/86.78  (step @p892 :rule cnf_equiv_pos1 :args (@t563))
% 86.49/86.78  (step @p893 :rule reordering :premises (@p892) :args ((or @t442 @t562 @t564)))
% 86.49/86.78  (step @p894 :rule refl :args (@t570))
% 86.49/86.78  (step @p895 :rule bool-double-not-elim :args (@t353))
% 86.49/86.78  (step @p896 :rule nary_cong :premises (@p895 @p894) :args ((or @t571 @t570)))
% 86.49/86.78  (step @p897 :rule cong :premises (@p435) :args (@t572))
% 86.49/86.78  (step @p898 :rule refl :args (@t566))
% 86.49/86.78  (step @p899 :rule refl :args (@t568))
% 86.49/86.78  (step @p900 :rule nary_cong :premises (@p899 @p898 @p897) :args (@t573))
% 86.49/86.78  (step @p901 :rule cong :premises (@p900) :args (@t574))
% 86.49/86.78  (step @p902 :rule refl :args (@t562))
% 86.49/86.78  (step @p903 :rule cong :premises (@p902 @p901) :args ((=> @t562 @t574)))
% 86.49/86.78  (assume-push @p2675 @t562)
% 86.49/86.78  (step @p905 :rule skolemize :premises (@p2675))
% 86.49/86.78  (step-pop @p2676 :rule scope :premises (@p905))
% 86.49/86.78  (step @p906 :rule process_scope :premises (@p2676) :args (@t574))
% 86.49/86.78  (step @p908 :rule eq_resolve :premises (@p906 @p903))
% 86.49/86.78  (step @p909 :rule implies_elim :premises (@p908))
% 86.49/86.78  (step @p910 :rule eq_resolve :premises (@p909 @p896))
% 86.49/86.78  (step @p911 :rule bool-double-not-elim :args (@t567))
% 86.49/86.78  (step @p912 :rule refl :args (@t569))
% 86.49/86.78  (step @p913 :rule nary_cong :premises (@p912 @p911) :args ((or @t569 (not @t568))))
% 86.49/86.78  (step @p914 :rule cnf_or_neg :args (@t569 0))
% 86.49/86.78  (step @p915 :rule eq_resolve :premises (@p914 @p913))
% 86.49/86.78  (step @p916 :rule reordering :premises (@p915) :args ((or @t567 @t569)))
% 86.49/86.78  (step @p917 :rule bool-double-not-elim :args (@t565))
% 86.49/86.78  (step @p918 :rule nary_cong :premises (@p912 @p917) :args ((or @t569 (not @t566))))
% 86.49/86.78  (step @p919 :rule cnf_or_neg :args (@t569 1))
% 86.49/86.78  (step @p920 :rule eq_resolve :premises (@p919 @p918))
% 86.49/86.78  (step @p921 :rule reordering :premises (@p920) :args ((or @t565 @t569)))
% 86.49/86.78  (step @p922 :rule bool-double-not-elim :args (@t370))
% 86.49/86.78  (step @p923 :rule nary_cong :premises (@p912 @p922) :args ((or @t569 (not @t371))))
% 86.49/86.78  (step @p924 :rule cnf_or_neg :args (@t569 2))
% 86.49/86.78  (step @p925 :rule eq_resolve :premises (@p924 @p923))
% 86.49/86.78  (step @p926 :rule reordering :premises (@p925) :args ((or @t370 @t569)))
% 86.49/86.78  (step @p927 :rule eq-symm :args (@t373 @t35))
% 86.49/86.78  (step @p928 :rule cong :premises (@p927) :args (@t575))
% 86.49/86.78  (step @p929 :rule refl :args (@t576))
% 86.49/86.78  (step @p930 :rule nary_cong :premises (@p929 @p928) :args (@t577))
% 86.49/86.78  (step @p931 :rule refl :args (@t567))
% 86.49/86.78  (step @p932 :rule cong :premises (@p931 @p930) :args (@t578))
% 86.49/86.78  (step @p933 :rule refl :args (@t29))
% 86.49/86.78  (step @p934 :rule cong :premises (@p933 @p932) :args ((=> @t29 @t578)))
% 86.49/86.78  (assume-push @p2677 @t29)
% 86.49/86.78  (step @p936 :rule instantiate :premises (@p12) :args ((@list @t373 @t35)))
% 86.49/86.78  (step-pop @p2678 :rule scope :premises (@p936))
% 86.49/86.78  (step @p937 :rule process_scope :premises (@p2678) :args (@t578))
% 86.49/86.78  (step @p939 :rule eq_resolve :premises (@p937 @p934))
% 86.49/86.78  (step @p940 :rule implies_elim :premises (@p939))
% 86.49/86.78  (step @p941 :rule chain_m_resolution :premises (@p940 @p12) :args (@t582 @t145 @t583))
% 86.49/86.78  (step @p942 :rule cnf_equiv_pos1 :args (@t582))
% 86.49/86.78  (step @p943 :rule reordering :premises (@p942) :args ((or @t568 @t581 (not @t582))))
% 86.49/86.78  (step @p944 :rule eq-symm :args (@t375 @t35))
% 86.49/86.78  (step @p945 :rule cong :premises (@p944) :args (@t584))
% 86.49/86.78  (step @p946 :rule refl :args (@t585))
% 86.49/86.78  (step @p947 :rule nary_cong :premises (@p946 @p945) :args (@t586))
% 86.49/86.78  (step @p948 :rule refl :args (@t565))
% 86.49/86.78  (step @p949 :rule cong :premises (@p948 @p947) :args (@t587))
% 86.49/86.78  (step @p950 :rule cong :premises (@p933 @p949) :args ((=> @t29 @t587)))
% 86.49/86.78  (assume-push @p2679 @t29)
% 86.49/86.78  (step @p952 :rule instantiate :premises (@p12) :args ((@list @t375 @t35)))
% 86.49/86.78  (step-pop @p2680 :rule scope :premises (@p952))
% 86.49/86.78  (step @p953 :rule process_scope :premises (@p2680) :args (@t587))
% 86.49/86.78  (step @p955 :rule eq_resolve :premises (@p953 @p950))
% 86.49/86.78  (step @p956 :rule implies_elim :premises (@p955))
% 86.49/86.78  (step @p957 :rule chain_m_resolution :premises (@p956 @p12) :args (@t591 @t145 @t583))
% 86.49/86.78  (step @p958 :rule cnf_equiv_pos1 :args (@t591))
% 86.49/86.78  (step @p959 :rule reordering :premises (@p958) :args ((or @t566 @t590 (not @t591))))
% 86.49/86.78  (step @p960 :rule bool-eq-true :args (@t592))
% 86.49/86.78  (step @p961 :rule arith_poly_norm :args ((= @t594 0)))
% 86.49/86.78  (step @p962 :rule cong :premises (@p961 @p34) :args (@t595))
% 86.49/86.78  (step @p963 :rule trans :premises (@p962 @p33))
% 86.49/86.78  (step @p964 :rule cong :premises (@p963) :args (@t596))
% 86.49/86.78  (step @p965 :rule trans :premises (@p964 @p32))
% 86.49/86.78  (step @p966 :rule refl :args (@t592))
% 86.49/86.78  (step @p967 :rule cong :premises (@p966 @p965) :args (@t597))
% 86.49/86.78  (step @p968 :rule trans :premises (@p967 @p960))
% 86.49/86.78  (step @p969 :rule cong :premises (@p43 @p968) :args ((=> @t144 @t597)))
% 86.49/86.78  (assume-push @p2681 @t144)
% 86.49/86.78  (step @p971 :rule instantiate :premises (@p30) :args ((@list @t368 @t368)))
% 86.49/86.78  (step-pop @p2682 :rule scope :premises (@p971))
% 86.49/86.78  (step @p972 :rule process_scope :premises (@p2682) :args (@t597))
% 86.49/86.78  (step @p974 :rule eq_resolve :premises (@p972 @p969))
% 86.49/86.78  (step @p975 :rule implies_elim :premises (@p974))
% 86.49/86.78  (step @p976 :rule chain_m_resolution :premises (@p975 @p30) :args (@t592 @t145 @t146))
% 86.49/86.78  (step @p977 :rule refl :args (@t609))
% 86.49/86.78  (step @p978 :rule nary_cong :premises (@p692 @p977) :args ((or @t488 @t609)))
% 86.49/86.78  (step @p979 :rule refl :args (@t602))
% 86.49/86.78  (step @p980 :rule refl :args (@t604))
% 86.49/86.78  (step @p981 :rule eq-symm :args (@t605 @t133))
% 86.49/86.78  (step @p982 :rule cong :premises (@p981) :args (@t610))
% 86.49/86.78  (step @p983 :rule nary_cong :premises (@p982 @p980 @p979) :args (@t611))
% 86.49/86.78  (step @p984 :rule cong :premises (@p983) :args (@t612))
% 86.49/86.78  (step @p985 :rule refl :args (@t383))
% 86.49/86.78  (step @p986 :rule cong :premises (@p985 @p984) :args ((=> @t383 @t612)))
% 86.49/86.78  (assume-push @p2683 @t383)
% 86.49/86.78  (step @p988 :rule skolemize :premises (@p691))
% 86.49/86.78  (step-pop @p2684 :rule scope :premises (@p988))
% 86.49/86.78  (step @p989 :rule process_scope :premises (@p2684) :args (@t612))
% 86.49/86.78  (step @p991 :rule eq_resolve :premises (@p989 @p986))
% 86.49/86.78  (step @p992 :rule implies_elim :premises (@p991))
% 86.49/86.78  (step @p993 :rule eq_resolve :premises (@p992 @p978))
% 86.49/86.78  (step @p994 :rule chain_m_resolution :premises (@p993 @p691) :args (@t609 @t434 @t489))
% 86.49/86.78  (step @p995 :rule bool-double-not-elim :args (@t606))
% 86.49/86.78  (step @p996 :rule refl :args (@t608))
% 86.49/86.78  (step @p997 :rule nary_cong :premises (@p996 @p995) :args ((or @t608 (not @t607))))
% 86.49/86.78  (step @p998 :rule cnf_or_neg :args (@t608 0))
% 86.49/86.78  (step @p999 :rule eq_resolve :premises (@p998 @p997))
% 86.49/86.78  (step @p1000 :rule reordering :premises (@p999) :args ((or @t606 @t608)))
% 86.49/86.78  (step @p1001 :rule chain_m_resolution :premises (@p1000 @p994) :args (@t606 @t434 @t613))
% 86.49/86.78  (assume-push @p2685 @t606)
% 86.49/86.78  (assume-push @p2686 @t370)
% 86.49/86.78  (assume-push @p2687 @t592)
% 86.49/86.78  (assume-push @p2688 @t592)
% 86.49/86.78  (assume-push @p2689 @t370)
% 86.49/86.78  (assume-push @p2690 @t606)
% 86.49/86.78  (step @p1008 :rule true_intro :premises (@p976))
% 86.49/86.78  (step @p1009 :rule symm :premises (@p1001))
% 86.49/86.78  (step @p1010 :rule trans :premises (@p1009 @p2686))
% 86.49/86.78  (step @p1011 :rule refl :args (@t369))
% 86.49/86.78  (step @p1012 :rule cong :premises (@p1011 @p1010) :args (@t614))
% 86.49/86.78  (step @p1013 :rule trans :premises (@p1012 @p1008))
% 86.49/86.78  (step @p1014 :rule true_elim :premises (@p1013))
% 86.49/86.78  (step-pop @p2691 :rule scope :premises (@p1014))
% 86.49/86.78  (step-pop @p2692 :rule scope :premises (@p2691))
% 86.49/86.78  (step-pop @p2693 :rule scope :premises (@p2692))
% 86.49/86.78  (step @p1015 :rule process_scope :premises (@p2693) :args (@t614))
% 86.49/86.78  (step @p1019 :rule and_intro :premises (@p976 @p2686 @p1001))
% 86.49/86.78  (step @p1020 :rule modus_ponens :premises (@p1019 @p1015))
% 86.49/86.78  (step-pop @p2694 :rule scope :premises (@p1020))
% 86.49/86.78  (step-pop @p2695 :rule scope :premises (@p2694))
% 86.49/86.78  (step-pop @p2696 :rule scope :premises (@p2695))
% 86.49/86.78  (step @p1021 :rule process_scope :premises (@p2696) :args (@t614))
% 86.49/86.78  (step @p1025 :rule implies_elim :premises (@p1021))
% 86.49/86.78  (step @p1026 :rule cnf_and_neg :args (@t615))
% 86.49/86.78  (step @p1027 :rule resolution :premises (@p1026 @p1025) :args (true @t615))
% 86.49/86.78  (step @p1028 :rule bool-eq-true :args (@t616))
% 86.49/86.78  (step @p1029 :rule arith_poly_norm :args ((= @t617 0)))
% 86.49/86.78  (step @p1030 :rule cong :premises (@p1029 @p34) :args (@t618))
% 86.49/86.78  (step @p1031 :rule trans :premises (@p1030 @p33))
% 86.49/86.78  (step @p1032 :rule cong :premises (@p1031) :args (@t619))
% 86.49/86.78  (step @p1033 :rule trans :premises (@p1032 @p32))
% 86.49/86.78  (step @p1034 :rule refl :args (@t616))
% 86.49/86.78  (step @p1035 :rule cong :premises (@p1034 @p1033) :args (@t620))
% 86.49/86.78  (step @p1036 :rule trans :premises (@p1035 @p1028))
% 86.49/86.78  (step @p1037 :rule cong :premises (@p43 @p1036) :args ((=> @t144 @t620)))
% 86.49/86.78  (assume-push @p2697 @t144)
% 86.49/86.78  (step @p1039 :rule instantiate :premises (@p30) :args ((@list @t598 @t598)))
% 86.49/86.78  (step-pop @p2698 :rule scope :premises (@p1039))
% 86.49/86.78  (step @p1040 :rule process_scope :premises (@p2698) :args (@t620))
% 86.49/86.78  (step @p1042 :rule eq_resolve :premises (@p1040 @p1037))
% 86.49/86.78  (step @p1043 :rule implies_elim :premises (@p1042))
% 86.49/86.78  (step @p1044 :rule chain_m_resolution :premises (@p1043 @p30) :args (@t616 @t145 @t146))
% 86.49/86.78  (assume-push @p2699 @t606)
% 86.49/86.78  (assume-push @p2700 @t370)
% 86.49/86.78  (assume-push @p2701 @t616)
% 86.49/86.78  (assume-push @p2702 @t616)
% 86.49/86.78  (assume-push @p2703 @t606)
% 86.49/86.78  (assume-push @p2704 @t370)
% 86.49/86.78  (step @p1051 :rule true_intro :premises (@p1044))
% 86.49/86.78  (step @p1052 :rule symm :premises (@p2700))
% 86.49/86.78  (step @p1053 :rule trans :premises (@p1052 @p1001))
% 86.49/86.78  (step @p1054 :rule refl :args (@t605))
% 86.49/86.78  (step @p1055 :rule cong :premises (@p1054 @p1053) :args (@t621))
% 86.49/86.78  (step @p1056 :rule trans :premises (@p1055 @p1051))
% 86.49/86.78  (step @p1057 :rule true_elim :premises (@p1056))
% 86.49/86.78  (step-pop @p2705 :rule scope :premises (@p1057))
% 86.49/86.78  (step-pop @p2706 :rule scope :premises (@p2705))
% 86.49/86.78  (step-pop @p2707 :rule scope :premises (@p2706))
% 86.49/86.78  (step @p1058 :rule process_scope :premises (@p2707) :args (@t621))
% 86.49/86.78  (step @p1062 :rule and_intro :premises (@p1044 @p1001 @p2700))
% 86.49/86.78  (step @p1063 :rule modus_ponens :premises (@p1062 @p1058))
% 86.49/86.78  (step-pop @p2708 :rule scope :premises (@p1063))
% 86.49/86.78  (step-pop @p2709 :rule scope :premises (@p2708))
% 86.49/86.78  (step-pop @p2710 :rule scope :premises (@p2709))
% 86.49/86.78  (step @p1064 :rule process_scope :premises (@p2710) :args (@t621))
% 86.49/86.78  (step @p1068 :rule implies_elim :premises (@p1064))
% 86.49/86.78  (step @p1069 :rule cnf_and_neg :args (@t622))
% 86.49/86.78  (step @p1070 :rule resolution :premises (@p1069 @p1068) :args (true @t622))
% 86.49/86.78  (step @p1071 :rule cnf_and_pos :args (@t581 0))
% 86.49/86.78  (step @p1072 :rule reordering :premises (@p1071) :args ((or @t576 @t623)))
% 86.49/86.78  (step @p1073 :rule cnf_and_pos :args (@t581 1))
% 86.49/86.78  (step @p1074 :rule reordering :premises (@p1073) :args ((or @t580 @t623)))
% 86.49/86.78  (step @p1075 :rule cnf_and_pos :args (@t590 0))
% 86.49/86.78  (step @p1076 :rule reordering :premises (@p1075) :args ((or @t585 @t624)))
% 86.49/86.78  (step @p1077 :rule cnf_and_pos :args (@t590 1))
% 86.49/86.78  (step @p1078 :rule reordering :premises (@p1077) :args ((or @t589 @t624)))
% 86.49/86.78  (step @p1079 :rule bool-double-not-elim :args (@t626))
% 86.49/86.78  (step @p1080 :rule arith_poly_norm :args ((= (* -1 (- 0 @t628)) (* -1 (- @t627 1)))))
% 86.49/86.78  (step @p1081 :rule arith_poly_norm_rel :premises (@p1080) :args ((= (>= 0 @t628) (>= @t627 1))))
% 86.49/86.78  (step @p1082 :rule arith-geq-tighten :args (@t625 0))
% 86.49/86.78  (step @p1083 :rule trans :premises (@p1082 @p1081))
% 86.49/86.78  (step @p1084 :rule symm :premises (@p1083))
% 86.49/86.78  (step @p1085 :rule arith_poly_norm :args ((= @t629 @t627)))
% 86.49/86.78  (step @p1086 :rule cong :premises (@p1085 @p34) :args (@t630))
% 86.49/86.78  (step @p1087 :rule trans :premises (@p1086 @p1084))
% 86.49/86.78  (step @p1088 :rule cong :premises (@p1087) :args (@t631))
% 86.49/86.78  (step @p1089 :rule trans :premises (@p1088 @p1079))
% 86.49/86.78  (step @p1090 :rule refl :args (@t614))
% 86.49/86.78  (step @p1091 :rule cong :premises (@p1090 @p1089) :args (@t632))
% 86.49/86.78  (step @p1092 :rule cong :premises (@p43 @p1091) :args ((=> @t144 @t632)))
% 86.49/86.78  (assume-push @p2711 @t144)
% 86.49/86.78  (step @p1094 :rule instantiate :premises (@p30) :args ((@list @t368 @t598)))
% 86.49/86.78  (step-pop @p2712 :rule scope :premises (@p1094))
% 86.49/86.78  (step @p1095 :rule process_scope :premises (@p2712) :args (@t632))
% 86.49/86.78  (step @p1097 :rule eq_resolve :premises (@p1095 @p1092))
% 86.49/86.78  (step @p1098 :rule implies_elim :premises (@p1097))
% 86.49/86.78  (step @p1099 :rule chain_m_resolution :premises (@p1098 @p30) :args (@t633 @t145 @t146))
% 86.49/86.78  (step @p1100 :rule cnf_equiv_pos1 :args (@t633))
% 86.49/86.78  (step @p1101 :rule reordering :premises (@p1100) :args ((or @t626 (not @t614) (not @t633))))
% 86.49/86.78  (step @p1102 :rule instantiate :premises (@p30) :args ((@list @t598 @t368)))
% 86.49/86.78  (step @p1103 :rule cnf_equiv_pos1 :args (@t636))
% 86.49/86.78  (step @p1104 :rule reordering :premises (@p1103) :args ((or @t635 (not @t621) (not @t636))))
% 86.49/86.78  (step @p1105 :rule bool-double-not-elim :args (@t637))
% 86.49/86.78  (step @p1106 :rule arith_poly_norm :args ((= (* -1 (- 1 @t639)) (* -1 (- @t638 1)))))
% 86.49/86.78  (step @p1107 :rule arith_poly_norm_rel :premises (@p1106) :args ((= (>= 1 @t639) @t640)))
% 86.49/86.78  (step @p1108 :rule arith-geq-tighten :args (@t354 1))
% 86.49/86.78  (step @p1109 :rule trans :premises (@p1108 @p1107))
% 86.49/86.78  (step @p1110 :rule symm :premises (@p1109))
% 86.49/86.78  (step @p1111 :rule cong :premises (@p1110) :args (@t641))
% 86.49/86.78  (step @p1112 :rule trans :premises (@p1111 @p1105))
% 86.49/86.78  (step @p1113 :rule cong :premises (@p929 @p1112) :args (@t642))
% 86.49/86.78  (step @p1114 :rule cong :premises (@p43 @p1113) :args ((=> @t144 @t642)))
% 86.49/86.78  (assume-push @p2713 @t144)
% 86.49/86.78  (step @p1116 :rule instantiate :premises (@p30) :args ((@list 1 @t354)))
% 86.49/86.78  (step-pop @p2714 :rule scope :premises (@p1116))
% 86.49/86.78  (step @p1117 :rule process_scope :premises (@p2714) :args (@t642))
% 86.49/86.78  (step @p1119 :rule eq_resolve :premises (@p1117 @p1114))
% 86.49/86.78  (step @p1120 :rule implies_elim :premises (@p1119))
% 86.49/86.78  (step @p1121 :rule chain_m_resolution :premises (@p1120 @p30) :args (@t643 @t145 @t146))
% 86.49/86.78  (step @p1122 :rule cnf_equiv_pos1 :args (@t643))
% 86.49/86.78  (step @p1123 :rule reordering :premises (@p1122) :args ((or @t644 @t637 (not @t643))))
% 86.49/86.78  (step @p1124 :rule aci_norm :args ((= (or (or @t646 @t645) @t21) (or @t646 @t645 @t21))))
% 86.49/86.78  (step @p1125 :rule refl :args (@t21))
% 86.49/86.78  (step @p1126 :rule bool-and-de-morgan :args (@t23 @t22 true))
% 86.49/86.78  (step @p1127 :rule nary_cong :premises (@p1126 @p1125) :args ((or (not @t24) @t21)))
% 86.49/86.78  (step @p1128 :rule trans :premises (@p1127 @p1124))
% 86.49/86.78  (step @p1129 :rule bool-impl-elim :args (@t24 @t21))
% 86.49/86.78  (step @p1130 :rule trans :premises (@p1129 @p1128))
% 86.49/86.78  (step @p1131 :rule cong :premises (@p1130) :args (@t26))
% 86.49/86.78  (step @p1132 :rule eq_resolve :premises (@p7 @p1131))
% 86.49/86.78  (step @p1133 :rule instantiate :premises (@p1132) :args ((@list @t35 @t373)))
% 86.49/86.78  (step @p1134 :rule cnf_or_pos :args (@t649))
% 86.49/86.78  (step @p1135 :rule reordering :premises (@p1134) :args ((or @t579 @t644 @t648 (not @t649))))
% 86.49/86.78  (step @p1136 :rule bool-double-not-elim :args (@t650))
% 86.49/86.78  (step @p1137 :rule arith_poly_norm :args ((= (* -1 (- 1 @t652)) (* -1 (- @t651 1)))))
% 86.49/86.78  (step @p1138 :rule arith_poly_norm_rel :premises (@p1137) :args ((= (>= 1 @t652) @t653)))
% 86.49/86.78  (step @p1139 :rule arith-geq-tighten :args (@t361 1))
% 86.49/86.78  (step @p1140 :rule trans :premises (@p1139 @p1138))
% 86.49/86.78  (step @p1141 :rule symm :premises (@p1140))
% 86.49/86.78  (step @p1142 :rule cong :premises (@p1141) :args (@t654))
% 86.49/86.78  (step @p1143 :rule trans :premises (@p1142 @p1136))
% 86.49/86.78  (step @p1144 :rule cong :premises (@p946 @p1143) :args (@t655))
% 86.49/86.78  (step @p1145 :rule cong :premises (@p43 @p1144) :args ((=> @t144 @t655)))
% 86.49/86.78  (assume-push @p2715 @t144)
% 86.49/86.78  (step @p1147 :rule instantiate :premises (@p30) :args ((@list 1 @t361)))
% 86.49/86.78  (step-pop @p2716 :rule scope :premises (@p1147))
% 86.49/86.78  (step @p1148 :rule process_scope :premises (@p2716) :args (@t655))
% 86.49/86.78  (step @p1150 :rule eq_resolve :premises (@p1148 @p1145))
% 86.49/86.78  (step @p1151 :rule implies_elim :premises (@p1150))
% 86.49/86.78  (step @p1152 :rule chain_m_resolution :premises (@p1151 @p30) :args (@t656 @t145 @t146))
% 86.49/86.78  (step @p1153 :rule cnf_equiv_pos1 :args (@t656))
% 86.49/86.78  (step @p1154 :rule reordering :premises (@p1153) :args ((or @t657 @t650 (not @t656))))
% 86.49/86.78  (step @p1155 :rule instantiate :premises (@p1132) :args ((@list @t35 @t375)))
% 86.49/86.78  (step @p1156 :rule cnf_or_pos :args (@t660))
% 86.49/86.78  (step @p1157 :rule reordering :premises (@p1156) :args ((or @t588 @t657 @t659 (not @t660))))
% 86.49/86.78  (step @p1158 :rule bool-double-not-elim :args (@t603))
% 86.49/86.78  (step @p1159 :rule nary_cong :premises (@p996 @p1158) :args ((or @t608 (not @t604))))
% 86.49/86.78  (step @p1160 :rule cnf_or_neg :args (@t608 1))
% 86.49/86.78  (step @p1161 :rule eq_resolve :premises (@p1160 @p1159))
% 86.49/86.78  (step @p1162 :rule reordering :premises (@p1161) :args ((or @t603 @t608)))
% 86.49/86.78  (step @p1163 :rule chain_m_resolution :premises (@p1162 @p994) :args (@t603 @t434 @t613))
% 86.49/86.78  (step @p1164 :rule bool-double-not-elim :args (@t661))
% 86.49/86.78  (step @p1165 :rule bool-double-not-elim :args (@t634))
% 86.49/86.78  (step @p1166 :rule nary_cong :premises (@p980 @p1165 @p1164) :args ((or @t604 (not @t635) (not @t662))))
% 86.49/86.78  (assume-push @p2717 @t603)
% 86.49/86.78  (assume-push @p2718 @t635)
% 86.49/86.78  (assume-push @p2719 @t662)
% 86.49/86.78  (step @p1170 :rule evaluate :args (@t663))
% 86.49/86.78  (step @p1171 :rule evaluate :args (@t664))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1173 :rule evaluate :args (@t665))
% 86.49/86.78  (step @p1174 :rule refl :args (2))
% 86.49/86.78  (step @p1175 :rule nary_cong :premises (@p1174 @p1173 @p1172) :args (@t666))
% 86.49/86.78  (step @p1176 :rule trans :premises (@p1175 @p1171))
% 86.49/86.78  (step @p1177 :rule arith_poly_norm :args ((= @t667 0)))
% 86.49/86.78  (step @p1178 :rule arith_poly_norm :args ((= @t668 @t667)))
% 86.49/86.78  (step @p1179 :rule trans :premises (@p1178 @p1177))
% 86.49/86.78  (step @p1180 :rule cong :premises (@p1179 @p1176) :args (@t669))
% 86.49/86.78  (step @p1181 :rule trans :premises (@p1180 @p1170))
% 86.49/86.78  (step @p1182 :rule cong :premises (@p1181) :args ((not @t669)))
% 86.49/86.78  (step @p1183 :rule trans :premises (@p1182 @p59))
% 86.49/86.78  (step @p1184 :rule arith-elim-lt :args (@t668 @t666))
% 86.49/86.78  (step @p1185 :rule trans :premises (@p1184 @p1183))
% 86.49/86.78  (step @p1186 :rule arith-elim-lt :args (@t625 1))
% 86.49/86.78  (step @p1187 :rule symm :premises (@p1186))
% 86.49/86.78  (step @p1188 :rule eq_resolve :premises (@p2718 @p1187))
% 86.49/86.78  (step @p1189 :rule int_tight_ub :premises (@p1188))
% 86.49/86.78  (step @p1190 :rule arith_mult_neg :args (-1 @t603))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1193 :rule and_intro :premises (@p1192 @p1163))
% 86.49/86.78  (step @p1194 :rule modus_ponens :premises (@p1193 @p1190))
% 86.49/86.78  (step @p1195 :rule arith-elim-lt :args (@t368 2))
% 86.49/86.78  (step @p1196 :rule symm :premises (@p1195))
% 86.49/86.78  (step @p1197 :rule eq_resolve :premises (@p2719 @p1196))
% 86.49/86.78  (step @p1198 :rule arith_sum_ub :premises (@p1197 @p1194 @p1189))
% 86.49/86.78  (step @p1199 false :rule eq_resolve :premises (@p1198 @p1185))
% 86.49/86.78  (step-pop @p2720 :rule scope :premises (@p1199))
% 86.49/86.78  (step-pop @p2721 :rule scope :premises (@p2720))
% 86.49/86.78  (step-pop @p2722 :rule scope :premises (@p2721))
% 86.49/86.78  (step @p1200 :rule process_scope :premises (@p2722) :args (false))
% 86.49/86.78  (step @p1204 :rule not_and :premises (@p1200))
% 86.49/86.78  (step @p1205 :rule eq_resolve :premises (@p1204 @p1166))
% 86.49/86.78  (step @p1206 :rule reordering :premises (@p1205) :args ((or @t604 @t661 @t634)))
% 86.49/86.78  (assume-push @p2723 @t637)
% 86.49/86.78  (assume-push @p2724 @t637)
% 86.49/86.78  (assume-push @p2725 @t671)
% 86.49/86.78  (step @p1210 :rule evaluate :args ((<= 0 -1)))
% 86.49/86.78  (step @p1211 :rule evaluate :args (@t672))
% 86.49/86.78  (step @p1212 :rule evaluate :args (@t673))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1213 :rule nary_cong :premises (@p1172 @p1212) :args (@t674))
% 86.49/86.78  (step @p1214 :rule trans :premises (@p1213 @p1211))
% 86.49/86.78  (step @p1215 :rule arith_poly_norm :args (@t676))
% 86.49/86.78  (step @p1216 :rule cong :premises (@p1215 @p1214) :args ((<= @t675 @t674)))
% 86.49/86.78  (step @p1217 :rule trans :premises (@p1216 @p1210))
% 86.49/86.78  (step @p1218 :rule arith_mult_neg :args (-1 @t637))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1219 :rule and_intro :premises (@p1192 @p2723))
% 86.49/86.78  (step @p1220 :rule modus_ponens :premises (@p1219 @p1218))
% 86.49/86.78  (step @p1221 :rule arith_sum_ub :premises (@p2725 @p1220))
% 86.49/86.78  (step @p1222 false :rule eq_resolve :premises (@p1221 @p1217))
% 86.49/86.78  (step-pop @p2726 :rule scope :premises (@p1222))
% 86.49/86.78  (step @p1223 :rule process_scope :premises (@p2726) :args (false))
% 86.49/86.78  (step-pop @p2727 :rule scope :premises (@p1223))
% 86.49/86.78  (step @p1225 :rule process_scope :premises (@p2727) :args (@t677))
% 86.49/86.78  (step @p1227 :rule modus_ponens :premises (@p2723 @p1225))
% 86.49/86.78  (step-pop @p2728 :rule scope :premises (@p1227))
% 86.49/86.78  (step @p1228 :rule process_scope :premises (@p2728) :args (@t677))
% 86.49/86.78  (step @p1230 :rule implies_elim :premises (@p1228))
% 86.49/86.78  (step @p1231 :rule reordering :premises (@p1230) :args ((or @t677 @t678)))
% 86.49/86.78  (assume-push @p2729 @t637)
% 86.49/86.78  (assume-push @p2730 @t637)
% 86.49/86.78  (step @p1234 :rule bool-double-not-elim :args (@t679))
% 86.49/86.78  (step @p1235 :rule arith-elim-lt :args (@t354 0))
% 86.49/86.78  (step @p1236 :rule cong :premises (@p1235) :args ((not @t680)))
% 86.49/86.78  (step @p1237 :rule trans :premises (@p1236 @p1234))
% 86.49/86.78  (assume-push @p2731 @t680)
% 86.49/86.78  (step @p1239 :rule evaluate :args (@t681))
% 86.49/86.78  (step @p1211 :rule evaluate :args (@t672))
% 86.49/86.78  (step @p1212 :rule evaluate :args (@t673))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1213 :rule nary_cong :premises (@p1172 @p1212) :args (@t674))
% 86.49/86.78  (step @p1214 :rule trans :premises (@p1213 @p1211))
% 86.49/86.78  (step @p1215 :rule arith_poly_norm :args (@t676))
% 86.49/86.78  (step @p1240 :rule cong :premises (@p1215 @p1214) :args (@t682))
% 86.49/86.78  (step @p1241 :rule trans :premises (@p1240 @p1239))
% 86.49/86.78  (step @p1242 :rule cong :premises (@p1241) :args ((not @t682)))
% 86.49/86.78  (step @p1243 :rule trans :premises (@p1242 @p59))
% 86.49/86.78  (step @p1244 :rule arith-elim-lt :args (@t675 @t674))
% 86.49/86.78  (step @p1245 :rule trans :premises (@p1244 @p1243))
% 86.49/86.78  (step @p1218 :rule arith_mult_neg :args (-1 @t637))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1246 :rule and_intro :premises (@p1192 @p2729))
% 86.49/86.78  (step @p1247 :rule modus_ponens :premises (@p1246 @p1218))
% 86.49/86.78  (step @p1248 :rule arith_sum_ub :premises (@p2731 @p1247))
% 86.49/86.78  (step @p1249 false :rule eq_resolve :premises (@p1248 @p1245))
% 86.49/86.78  (step-pop @p2732 :rule scope :premises (@p1249))
% 86.49/86.78  (step @p1250 :rule process_scope :premises (@p2732) :args (false))
% 86.49/86.78  (step @p1252 :rule eq_resolve :premises (@p1250 @p1237))
% 86.49/86.78  (step-pop @p2733 :rule scope :premises (@p1252))
% 86.49/86.78  (step @p1253 :rule process_scope :premises (@p2733) :args (@t679))
% 86.49/86.78  (step @p1255 :rule modus_ponens :premises (@p2729 @p1253))
% 86.49/86.78  (step-pop @p2734 :rule scope :premises (@p1255))
% 86.49/86.78  (step @p1256 :rule process_scope :premises (@p2734) :args (@t679))
% 86.49/86.78  (step @p1258 :rule implies_elim :premises (@p1256))
% 86.49/86.78  (step @p1259 :rule reordering :premises (@p1258) :args ((or @t679 @t678)))
% 86.49/86.78  (step @p1260 :rule eq-symm :args (@t647 @t360))
% 86.49/86.78  (step @p1261 :rule arith_poly_norm :args ((= (* -2 (- @t683 1)) (* -2 (- @t354 2)))))
% 86.49/86.78  (step @p1262 :rule arith_poly_norm_rel :premises (@p1261) :args ((= (>= @t683 1) @t359)))
% 86.49/86.78  (step @p1263 :rule arith_poly_norm :args ((= (+ @t354 -1) @t683)))
% 86.49/86.78  (step @p1212 :rule evaluate :args (@t673))
% 86.49/86.78  (step @p1264 :rule refl :args (@t354))
% 86.49/86.78  (step @p1265 :rule nary_cong :premises (@p1264 @p1212) :args (@t684))
% 86.49/86.78  (step @p1266 :rule trans :premises (@p1265 @p1263))
% 86.49/86.78  (step @p1267 :rule cong :premises (@p1266 @p34) :args (@t685))
% 86.49/86.78  (step @p1268 :rule trans :premises (@p1267 @p1262))
% 86.49/86.78  (step @p1269 :rule cong :premises (@p1268) :args (@t686))
% 86.49/86.78  (step @p1270 :rule refl :args (@t647))
% 86.49/86.78  (step @p1271 :rule cong :premises (@p1270 @p1269) :args (@t687))
% 86.49/86.78  (step @p1272 :rule trans :premises (@p1271 @p1260))
% 86.49/86.78  (step @p1273 :rule cong :premises (@p43 @p1272) :args ((=> @t144 @t687)))
% 86.49/86.78  (assume-push @p2735 @t144)
% 86.49/86.78  (step @p1275 :rule instantiate :premises (@p30) :args ((@list @t354 1)))
% 86.49/86.78  (step-pop @p2736 :rule scope :premises (@p1275))
% 86.49/86.78  (step @p1276 :rule process_scope :premises (@p2736) :args (@t687))
% 86.49/86.78  (step @p1278 :rule eq_resolve :premises (@p1276 @p1273))
% 86.49/86.78  (step @p1279 :rule implies_elim :premises (@p1278))
% 86.49/86.78  (step @p1280 :rule chain_m_resolution :premises (@p1279 @p30) :args (@t688 @t145 @t146))
% 86.49/86.78  (step @p1281 :rule bool-double-not-elim :args (@t359))
% 86.49/86.78  (step @p1282 :rule refl :args (@t689))
% 86.49/86.78  (step @p1283 :rule nary_cong :premises (@p1282 @p1281 @p1270) :args ((or @t689 (not @t360) @t647)))
% 86.49/86.78  (step @p1284 :rule cnf_equiv_pos1 :args (@t688))
% 86.49/86.78  (step @p1285 :rule eq_resolve :premises (@p1284 @p1283))
% 86.49/86.78  (step @p1286 :rule reordering :premises (@p1285) :args ((or @t359 @t647 @t689)))
% 86.49/86.78  (assume-push @p2737 @t650)
% 86.49/86.78  (assume-push @p2738 @t650)
% 86.49/86.78  (step @p1289 :rule bool-double-not-elim :args (@t690))
% 86.49/86.78  (step @p1290 :rule arith-elim-lt :args (@t361 0))
% 86.49/86.78  (step @p1291 :rule cong :premises (@p1290) :args ((not @t691)))
% 86.49/86.78  (step @p1292 :rule trans :premises (@p1291 @p1289))
% 86.49/86.78  (assume-push @p2739 @t691)
% 86.49/86.78  (step @p1239 :rule evaluate :args (@t681))
% 86.49/86.78  (step @p1211 :rule evaluate :args (@t672))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1213 :rule nary_cong :premises (@p1172 @p1212) :args (@t674))
% 86.49/86.78  (step @p1214 :rule trans :premises (@p1213 @p1211))
% 86.49/86.78  (step @p1294 :rule arith_poly_norm :args (@t693))
% 86.49/86.78  (step @p1295 :rule cong :premises (@p1294 @p1214) :args (@t694))
% 86.49/86.78  (step @p1296 :rule trans :premises (@p1295 @p1239))
% 86.49/86.78  (step @p1297 :rule cong :premises (@p1296) :args ((not @t694)))
% 86.49/86.78  (step @p1298 :rule trans :premises (@p1297 @p59))
% 86.49/86.78  (step @p1299 :rule arith-elim-lt :args (@t692 @t674))
% 86.49/86.78  (step @p1300 :rule trans :premises (@p1299 @p1298))
% 86.49/86.78  (step @p1301 :rule arith_mult_neg :args (-1 @t650))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1302 :rule and_intro :premises (@p1192 @p2737))
% 86.49/86.78  (step @p1303 :rule modus_ponens :premises (@p1302 @p1301))
% 86.49/86.78  (step @p1304 :rule arith_sum_ub :premises (@p2739 @p1303))
% 86.49/86.78  (step @p1305 false :rule eq_resolve :premises (@p1304 @p1300))
% 86.49/86.78  (step-pop @p2740 :rule scope :premises (@p1305))
% 86.49/86.78  (step @p1306 :rule process_scope :premises (@p2740) :args (false))
% 86.49/86.78  (step @p1308 :rule eq_resolve :premises (@p1306 @p1292))
% 86.49/86.78  (step-pop @p2741 :rule scope :premises (@p1308))
% 86.49/86.78  (step @p1309 :rule process_scope :premises (@p2741) :args (@t690))
% 86.49/86.78  (step @p1311 :rule modus_ponens :premises (@p2737 @p1309))
% 86.49/86.78  (step-pop @p2742 :rule scope :premises (@p1311))
% 86.49/86.78  (step @p1312 :rule process_scope :premises (@p2742) :args (@t690))
% 86.49/86.78  (step @p1314 :rule implies_elim :premises (@p1312))
% 86.49/86.78  (step @p1315 :rule eq-symm :args (@t658 @t367))
% 86.49/86.78  (step @p1316 :rule arith_poly_norm :args ((= (* -2 (- @t695 1)) (* -2 (- @t361 2)))))
% 86.49/86.78  (step @p1317 :rule arith_poly_norm_rel :premises (@p1316) :args ((= (>= @t695 1) @t366)))
% 86.49/86.78  (step @p1318 :rule arith_poly_norm :args ((= (+ @t361 -1) @t695)))
% 86.49/86.78  (step @p1319 :rule refl :args (@t361))
% 86.49/86.78  (step @p1320 :rule nary_cong :premises (@p1319 @p1212) :args (@t696))
% 86.49/86.78  (step @p1321 :rule trans :premises (@p1320 @p1318))
% 86.49/86.78  (step @p1322 :rule cong :premises (@p1321 @p34) :args (@t697))
% 86.49/86.78  (step @p1323 :rule trans :premises (@p1322 @p1317))
% 86.49/86.78  (step @p1324 :rule cong :premises (@p1323) :args (@t698))
% 86.49/86.78  (step @p1325 :rule refl :args (@t658))
% 86.49/86.78  (step @p1326 :rule cong :premises (@p1325 @p1324) :args (@t699))
% 86.49/86.78  (step @p1327 :rule trans :premises (@p1326 @p1315))
% 86.49/86.78  (step @p1328 :rule cong :premises (@p43 @p1327) :args ((=> @t144 @t699)))
% 86.49/86.78  (assume-push @p2743 @t144)
% 86.49/86.78  (step @p1330 :rule instantiate :premises (@p30) :args ((@list @t361 1)))
% 86.49/86.78  (step-pop @p2744 :rule scope :premises (@p1330))
% 86.49/86.78  (step @p1331 :rule process_scope :premises (@p2744) :args (@t699))
% 86.49/86.78  (step @p1333 :rule eq_resolve :premises (@p1331 @p1328))
% 86.49/86.78  (step @p1334 :rule implies_elim :premises (@p1333))
% 86.49/86.78  (step @p1335 :rule chain_m_resolution :premises (@p1334 @p30) :args (@t700 @t145 @t146))
% 86.49/86.78  (step @p1336 :rule bool-double-not-elim :args (@t366))
% 86.49/86.78  (step @p1337 :rule refl :args (@t701))
% 86.49/86.78  (step @p1338 :rule nary_cong :premises (@p1337 @p1336 @p1325) :args ((or @t701 (not @t367) @t658)))
% 86.49/86.78  (step @p1339 :rule cnf_equiv_pos1 :args (@t700))
% 86.49/86.78  (step @p1340 :rule eq_resolve :premises (@p1339 @p1338))
% 86.49/86.78  (step @p1341 :rule reordering :premises (@p1340) :args ((or @t366 @t658 @t701)))
% 86.49/86.78  (step @p1342 :rule cnf_ite_neg1 :args (@t704))
% 86.49/86.78  (step @p1343 :rule reordering :premises (@p1342) :args ((or @t360 @t705 @t704)))
% 86.49/86.78  (step @p1344 :rule cnf_ite_neg1 :args (@t708))
% 86.49/86.78  (step @p1345 :rule reordering :premises (@p1344) :args ((or @t367 @t709 @t708)))
% 86.49/86.78  (assume-push @p2745 @t366)
% 86.49/86.78  (assume-push @p2746 @t366)
% 86.49/86.78  (assume-push @p2747 @t710)
% 86.49/86.78  (step @p1349 :rule evaluate :args ((<= 0 -2)))
% 86.49/86.78  (step @p1350 :rule evaluate :args (@t711))
% 86.49/86.78  (step @p1173 :rule evaluate :args (@t665))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1351 :rule nary_cong :premises (@p1172 @p1173) :args (@t712))
% 86.49/86.78  (step @p1352 :rule trans :premises (@p1351 @p1350))
% 86.49/86.78  (step @p1294 :rule arith_poly_norm :args (@t693))
% 86.49/86.78  (step @p1353 :rule cong :premises (@p1294 @p1352) :args ((<= @t692 @t712)))
% 86.49/86.78  (step @p1354 :rule trans :premises (@p1353 @p1349))
% 86.49/86.78  (step @p1355 :rule arith_mult_neg :args (-1 @t366))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1356 :rule and_intro :premises (@p1192 @p2745))
% 86.49/86.78  (step @p1357 :rule modus_ponens :premises (@p1356 @p1355))
% 86.49/86.78  (step @p1358 :rule arith_sum_ub :premises (@p2747 @p1357))
% 86.49/86.78  (step @p1359 false :rule eq_resolve :premises (@p1358 @p1354))
% 86.49/86.78  (step-pop @p2748 :rule scope :premises (@p1359))
% 86.49/86.78  (step @p1360 :rule process_scope :premises (@p2748) :args (false))
% 86.49/86.78  (step-pop @p2749 :rule scope :premises (@p1360))
% 86.49/86.78  (step @p1362 :rule process_scope :premises (@p2749) :args (@t713))
% 86.49/86.78  (step @p1364 :rule modus_ponens :premises (@p2745 @p1362))
% 86.49/86.78  (step-pop @p2750 :rule scope :premises (@p1364))
% 86.49/86.78  (step @p1365 :rule process_scope :premises (@p2750) :args (@t713))
% 86.49/86.78  (step @p1367 :rule implies_elim :premises (@p1365))
% 86.49/86.78  (step @p1368 :rule bool-double-not-elim :args (@t671))
% 86.49/86.78  (step @p1369 :rule bool-double-not-elim :args (@t710))
% 86.49/86.78  (step @p1370 :rule refl :args (@t714))
% 86.49/86.78  (step @p1371 :rule refl :args (@t715))
% 86.49/86.78  (step @p1372 :rule nary_cong :premises (@p1371 @p1370 @p1369 @p1368) :args ((or @t715 @t714 @t717 @t716)))
% 86.49/86.78  (step @p1373 :rule cnf_and_neg :args (@t715))
% 86.49/86.78  (step @p1374 :rule eq_resolve :premises (@p1373 @p1372))
% 86.49/86.78  (step @p1375 :rule reordering :premises (@p1374) :args ((or @t710 @t671 @t714 @t715)))
% 86.49/86.78  (step @p1376 :rule refl :args (@t718))
% 86.49/86.78  (step @p1377 :rule refl :args (@t719))
% 86.49/86.78  (step @p1378 :rule nary_cong :premises (@p1377 @p1376 @p1369 @p1368) :args ((or @t719 @t718 @t717 @t716)))
% 86.49/86.78  (step @p1379 :rule cnf_and_neg :args (@t719))
% 86.49/86.78  (step @p1380 :rule eq_resolve :premises (@p1379 @p1378))
% 86.49/86.78  (step @p1381 :rule reordering :premises (@p1380) :args ((or @t710 @t671 @t718 @t719)))
% 86.49/86.78  (step @p1382 :rule bool-double-not-elim :args (@t721))
% 86.49/86.78  (step @p1383 :rule arith_poly_norm :args ((= (* -1 (- @t593 @t723)) @t722)))
% 86.49/86.78  (step @p1384 :rule arith_poly_norm_rel :premises (@p1383) :args ((= @t724 @t721)))
% 86.49/86.78  (step @p1385 :rule cong :premises (@p1384) :args ((not @t724)))
% 86.49/86.78  (step @p1386 :rule arith-leq-norm :args (@t593 @t355))
% 86.49/86.78  (step @p1387 :rule trans :premises (@p1386 @p1385))
% 86.49/86.78  (step @p1388 :rule arith_poly_norm :args ((= @t725 @t355)))
% 86.49/86.78  (step @p1389 :rule arith_poly_norm :args ((= @t726 @t593)))
% 86.49/86.78  (step @p1390 :rule cong :premises (@p1389 @p1388) :args (@t727))
% 86.49/86.78  (step @p1391 :rule trans :premises (@p1390 @p1387))
% 86.49/86.78  (step @p1392 :rule cong :premises (@p1391) :args ((not @t727)))
% 86.49/86.78  (step @p1393 :rule trans :premises (@p1392 @p1382))
% 86.49/86.78  (step @p1394 :rule arith-elim-leq :args (@t726 @t725))
% 86.49/86.78  (step @p1395 :rule symm :premises (@p1394))
% 86.49/86.78  (step @p1396 :rule cong :premises (@p1395) :args ((not (>= @t725 @t726))))
% 86.49/86.78  (step @p1397 :rule arith-elim-gt :args (@t726 @t725))
% 86.49/86.78  (step @p1398 :rule trans :premises (@p1397 @p1396))
% 86.49/86.78  (step @p1399 :rule trans :premises (@p1398 @p1393))
% 86.49/86.78  (step @p1400 :rule arith_poly_norm :args ((= (* 1 (- @t354 @t593)) (* 1 (- @t728 0)))))
% 86.49/86.78  (step @p1401 :rule arith_poly_norm_rel :premises (@p1400) :args ((= (>= @t354 @t593) @t729)))
% 86.49/86.78  (step @p1402 :rule arith-elim-leq :args (@t593 @t354))
% 86.49/86.78  (step @p1403 :rule trans :premises (@p1402 @p1401))
% 86.49/86.78  (step @p1404 :rule cong :premises (@p1389 @p1264) :args (@t730))
% 86.49/86.78  (step @p1405 :rule trans :premises (@p1404 @p1403))
% 86.49/86.78  (step @p1406 :rule cong :premises (@p1405) :args ((not @t730)))
% 86.49/86.78  (step @p1407 :rule arith-elim-leq :args (@t726 @t354))
% 86.49/86.78  (step @p1408 :rule symm :premises (@p1407))
% 86.49/86.78  (step @p1409 :rule cong :premises (@p1408) :args ((not (>= @t354 @t726))))
% 86.49/86.78  (step @p1410 :rule arith-elim-gt :args (@t726 @t354))
% 86.49/86.78  (step @p1411 :rule trans :premises (@p1410 @p1409))
% 86.49/86.78  (step @p1412 :rule trans :premises (@p1411 @p1406))
% 86.49/86.78  (step @p1413 :rule refl :args (@t679))
% 86.49/86.78  (step @p1414 :rule cong :premises (@p1413 @p1412 @p1399) :args (@t731))
% 86.49/86.78  (step @p1415 :rule bool-double-not-elim :args (@t732))
% 86.49/86.78  (step @p1416 :rule arith_poly_norm :args ((= (* -1 (- @t368 @t723)) (* -1 (- @t728 1)))))
% 86.49/86.78  (step @p1417 :rule arith_poly_norm_rel :premises (@p1416) :args ((= @t733 @t732)))
% 86.49/86.78  (step @p1418 :rule cong :premises (@p1417) :args ((not @t733)))
% 86.49/86.78  (step @p1419 :rule arith-leq-norm :args (@t368 @t355))
% 86.49/86.78  (step @p1420 :rule trans :premises (@p1419 @p1418))
% 86.49/86.78  (step @p1421 :rule refl :args (@t368))
% 86.49/86.78  (step @p1422 :rule cong :premises (@p1421 @p1388) :args (@t734))
% 86.49/86.78  (step @p1423 :rule trans :premises (@p1422 @p1420))
% 86.49/86.78  (step @p1424 :rule cong :premises (@p1423) :args ((not @t734)))
% 86.49/86.78  (step @p1425 :rule trans :premises (@p1424 @p1415))
% 86.49/86.78  (step @p1426 :rule arith-elim-leq :args (@t368 @t725))
% 86.49/86.78  (step @p1427 :rule symm :premises (@p1426))
% 86.49/86.78  (step @p1428 :rule cong :premises (@p1427) :args ((not (>= @t725 @t368))))
% 86.49/86.78  (step @p1429 :rule arith-elim-gt :args (@t368 @t725))
% 86.49/86.78  (step @p1430 :rule trans :premises (@p1429 @p1428))
% 86.49/86.78  (step @p1431 :rule trans :premises (@p1430 @p1425))
% 86.49/86.78  (step @p1432 :rule arith_poly_norm :args ((= (* 1 (- @t354 @t368)) (* 1 (- @t720 0)))))
% 86.49/86.78  (step @p1433 :rule arith_poly_norm_rel :premises (@p1432) :args ((= @t736 @t735)))
% 86.49/86.78  (step @p1434 :rule arith-elim-leq :args (@t368 @t354))
% 86.49/86.78  (step @p1435 :rule trans :premises (@p1434 @p1433))
% 86.49/86.78  (step @p1436 :rule cong :premises (@p1435) :args ((not (<= @t368 @t354))))
% 86.49/86.78  (step @p1437 :rule symm :premises (@p1434))
% 86.49/86.78  (step @p1438 :rule cong :premises (@p1437) :args (@t737))
% 86.49/86.78  (step @p1439 :rule arith-elim-gt :args (@t368 @t354))
% 86.49/86.78  (step @p1440 :rule trans :premises (@p1439 @p1438))
% 86.49/86.78  (step @p1441 :rule trans :premises (@p1440 @p1436))
% 86.49/86.78  (step @p1442 :rule cong :premises (@p1413 @p1441 @p1431) :args (@t738))
% 86.49/86.78  (step @p1443 :rule refl :args (@t739))
% 86.49/86.78  (step @p1444 :rule cong :premises (@p1443 @p1442 @p1414) :args (@t740))
% 86.49/86.78  (step @p1445 :rule refl :args (@t677))
% 86.49/86.78  (step @p1446 :rule refl :args (@t713))
% 86.49/86.78  (step @p1447 :rule ite-true-cond :args (@t707 (not @t650)))
% 86.49/86.78  (step @p1448 :rule arith_poly_norm :args ((= (* -1 (- -1 @t362)) (* -1 (- @t361 1)))))
% 86.49/86.78  (step @p1449 :rule arith_poly_norm_rel :premises (@p1448) :args ((= (>= -1 @t362) @t650)))
% 86.49/86.78  (step @p1450 :rule arith-elim-leq :args (@t362 -1))
% 86.49/86.78  (step @p1451 :rule trans :premises (@p1450 @p1449))
% 86.49/86.78  (step @p1452 :rule evaluate :args (@t741))
% 86.49/86.78  (step @p1453 :rule arith_poly_norm :args ((= @t742 @t362)))
% 86.49/86.78  (step @p1454 :rule cong :premises (@p1453 @p1452) :args (@t743))
% 86.49/86.78  (step @p1455 :rule trans :premises (@p1454 @p1451))
% 86.49/86.78  (step @p1456 :rule cong :premises (@p1455) :args ((not @t743)))
% 86.49/86.78  (step @p1457 :rule arith-elim-leq :args (@t742 @t741))
% 86.49/86.78  (step @p1458 :rule symm :premises (@p1457))
% 86.49/86.78  (step @p1459 :rule cong :premises (@p1458) :args ((not (>= @t741 @t742))))
% 86.49/86.78  (step @p1460 :rule arith-elim-gt :args (@t742 @t741))
% 86.49/86.78  (step @p1461 :rule trans :premises (@p1460 @p1459))
% 86.49/86.78  (step @p1462 :rule trans :premises (@p1461 @p1456))
% 86.49/86.78  (step @p1463 :rule arith_poly_norm :args ((= (* 1 (- 1 @t362)) (* 1 (- @t361 -1)))))
% 86.49/86.78  (step @p1464 :rule arith_poly_norm_rel :premises (@p1463) :args ((= (>= 1 @t362) @t706)))
% 86.49/86.78  (step @p1465 :rule arith-elim-leq :args (@t362 1))
% 86.49/86.78  (step @p1466 :rule trans :premises (@p1465 @p1464))
% 86.49/86.78  (step @p1467 :rule cong :premises (@p1453 @p34) :args (@t744))
% 86.49/86.78  (step @p1468 :rule trans :premises (@p1467 @p1466))
% 86.49/86.78  (step @p1469 :rule cong :premises (@p1468) :args ((not @t744)))
% 86.49/86.78  (step @p1470 :rule arith-elim-leq :args (@t742 1))
% 86.49/86.78  (step @p1471 :rule symm :premises (@p1470))
% 86.49/86.78  (step @p1472 :rule cong :premises (@p1471) :args ((not (>= 1 @t742))))
% 86.49/86.78  (step @p1473 :rule arith-elim-gt :args (@t742 1))
% 86.49/86.78  (step @p1474 :rule trans :premises (@p1473 @p1472))
% 86.49/86.78  (step @p1475 :rule trans :premises (@p1474 @p1469))
% 86.49/86.78  (step @p1476 :rule evaluate :args (@t745))
% 86.49/86.78  (step @p1477 :rule cong :premises (@p1476 @p1475 @p1462) :args (@t746))
% 86.49/86.78  (step @p1478 :rule trans :premises (@p1477 @p1447))
% 86.49/86.78  (step @p1479 :rule ite-true-cond :args (@t366 @t690))
% 86.49/86.78  (step @p1289 :rule bool-double-not-elim :args (@t690))
% 86.49/86.78  (step @p1480 :rule evaluate :args (@t747))
% 86.49/86.78  (step @p1481 :rule refl :args (@t361))
% 86.49/86.78  (step @p1482 :rule cong :premises (@p1481 @p1480) :args (@t748))
% 86.49/86.78  (step @p1483 :rule cong :premises (@p1482) :args ((not @t748)))
% 86.49/86.78  (step @p1484 :rule arith-leq-norm :args (@t361 -1))
% 86.49/86.78  (step @p1485 :rule trans :premises (@p1484 @p1483))
% 86.49/86.78  (step @p1486 :rule cong :premises (@p1319 @p1452) :args (@t749))
% 86.49/86.78  (step @p1487 :rule trans :premises (@p1486 @p1485))
% 86.49/86.78  (step @p1488 :rule cong :premises (@p1487) :args ((not @t749)))
% 86.49/86.78  (step @p1489 :rule trans :premises (@p1488 @p1289))
% 86.49/86.78  (step @p1490 :rule arith-elim-leq :args (@t361 @t741))
% 86.49/86.78  (step @p1491 :rule symm :premises (@p1490))
% 86.49/86.78  (step @p1492 :rule cong :premises (@p1491) :args ((not (>= @t741 @t361))))
% 86.49/86.78  (step @p1493 :rule arith-elim-gt :args (@t361 @t741))
% 86.49/86.78  (step @p1494 :rule trans :premises (@p1493 @p1492))
% 86.49/86.78  (step @p1495 :rule trans :premises (@p1494 @p1489))
% 86.49/86.78  (step @p1496 :rule evaluate :args (@t750))
% 86.49/86.78  (step @p1497 :rule cong :premises (@p1481 @p1496) :args (@t751))
% 86.49/86.78  (step @p1498 :rule cong :premises (@p1497) :args ((not @t751)))
% 86.49/86.78  (step @p1499 :rule arith-leq-norm :args (@t361 1))
% 86.49/86.78  (step @p1500 :rule trans :premises (@p1499 @p1498))
% 86.49/86.78  (step @p1501 :rule cong :premises (@p1500) :args ((not (<= @t361 1))))
% 86.49/86.78  (step @p1502 :rule trans :premises (@p1501 @p1336))
% 86.49/86.78  (step @p1503 :rule arith-elim-leq :args (@t361 1))
% 86.49/86.78  (step @p1504 :rule symm :premises (@p1503))
% 86.49/86.78  (step @p1505 :rule cong :premises (@p1504) :args ((not (>= 1 @t361))))
% 86.49/86.78  (step @p1506 :rule arith-elim-gt :args (@t361 1))
% 86.49/86.78  (step @p1507 :rule trans :premises (@p1506 @p1505))
% 86.49/86.78  (step @p1508 :rule trans :premises (@p1507 @p1502))
% 86.49/86.78  (step @p1509 :rule cong :premises (@p1476 @p1508 @p1495) :args (@t752))
% 86.49/86.78  (step @p1510 :rule trans :premises (@p1509 @p1479))
% 86.49/86.78  (step @p1511 :rule refl :args (@t690))
% 86.49/86.78  (step @p1512 :rule cong :premises (@p1511 @p1510 @p1478) :args (@t753))
% 86.49/86.78  (step @p1513 :rule nary_cong :premises (@p1512 @p1446 @p1445) :args (@t754))
% 86.49/86.78  (step @p1514 :rule cong :premises (@p1513 @p1444) :args ((=> @t754 @t740)))
% 86.49/86.78  (assume-push @p2751 @t753)
% 86.49/86.78  (assume-push @p2752 @t713)
% 86.49/86.78  (assume-push @p2753 @t677)
% 86.49/86.78  (step @p1518 :rule arith-abs-int-gt :args (@t368 @t354))
% 86.49/86.78  (step @p1519 :rule arith_poly_norm :args ((= (* 1 (- @t757 @t755)) (* 1 (- @t758 0)))))
% 86.49/86.78  (step @p1520 :rule arith_poly_norm_rel :premises (@p1519) :args ((= @t759 (>= @t758 0))))
% 86.49/86.78  (step @p1521 :rule arith-elim-leq :args (@t755 @t757))
% 86.49/86.78  (step @p1522 :rule trans :premises (@p1521 @p1520))
% 86.49/86.78  (step @p1523 :rule cong :premises (@p1522) :args ((not (<= @t755 @t757))))
% 86.49/86.78  (step @p1524 :rule symm :premises (@p1521))
% 86.49/86.78  (step @p1525 :rule cong :premises (@p1524) :args ((not @t759)))
% 86.49/86.78  (step @p1526 :rule arith-elim-gt :args (@t755 @t757))
% 86.49/86.78  (step @p1527 :rule trans :premises (@p1526 @p1525))
% 86.49/86.78  (step @p1528 :rule trans :premises (@p1527 @p1523))
% 86.49/86.78  (step @p1529 :rule symm :premises (@p1528))
% 86.49/86.78  (step @p1530 :rule arith_poly_norm :args ((= @t760 @t354)))
% 86.49/86.78  (step @p1531 :rule cong :premises (@p1530) :args (@t761))
% 86.49/86.78  (step @p1532 :rule cong :premises (@p437) :args (@t762))
% 86.49/86.78  (step @p1533 :rule cong :premises (@p1532 @p1531) :args (@t763))
% 86.49/86.78  (step @p1534 :rule trans :premises (@p1533 @p1522))
% 86.49/86.78  (step @p1535 :rule cong :premises (@p1534) :args ((not @t763)))
% 86.49/86.78  (step @p1536 :rule arith-elim-leq :args (@t762 @t761))
% 86.49/86.78  (step @p1537 :rule symm :premises (@p1536))
% 86.49/86.78  (step @p1538 :rule cong :premises (@p1537) :args ((not (>= @t761 @t762))))
% 86.49/86.78  (step @p1539 :rule arith-elim-gt :args (@t762 @t761))
% 86.49/86.78  (step @p1540 :rule trans :premises (@p1539 @p1538))
% 86.49/86.78  (step @p1541 :rule trans :premises (@p1540 @p1535))
% 86.49/86.78  (step @p1542 :rule trans :premises (@p1541 @p1529))
% 86.49/86.78  (step @p1543 :rule refl :args (@t757))
% 86.49/86.78  (step @p1544 :rule and_intro :premises (@p1543 @p2753))
% 86.49/86.78  (step @p1545 :rule arith-abs-int-gt :args (@t361 1))
% 86.49/86.78  (step @p1546 :rule symm :premises (@p1545))
% 86.49/86.78  (step @p1547 :rule eq_resolve :premises (@p2751 @p1546))
% 86.49/86.78  (step @p1548 :rule arith_mult_abs_comparison :premises (@p1547 @p1544))
% 86.49/86.78  (step @p1549 :rule eq_resolve :premises (@p1548 @p1542))
% 86.49/86.78  (step @p1550 :rule eq_resolve :premises (@p1549 @p1518))
% 86.49/86.78  (step-pop @p2754 :rule scope :premises (@p1550))
% 86.49/86.78  (step-pop @p2755 :rule scope :premises (@p2754))
% 86.49/86.78  (step-pop @p2756 :rule scope :premises (@p2755))
% 86.49/86.78  (step @p1551 :rule process_scope :premises (@p2756) :args (@t740))
% 86.49/86.78  (step @p1555 :rule eq_resolve :premises (@p1551 @p1514))
% 86.49/86.78  (step @p1556 :rule implies_elim :premises (@p1555))
% 86.49/86.78  (step @p1557 :rule reordering :premises (@p1556) :args ((or @t766 (not @t715))))
% 86.49/86.78  (step @p1558 :rule bool-double-not-elim :args (@t768))
% 86.49/86.78  (step @p1559 :rule arith_poly_norm :args ((= (* -1 (- @t593 @t769)) (* -1 (- @t767 1)))))
% 86.49/86.78  (step @p1560 :rule arith_poly_norm_rel :premises (@p1559) :args ((= @t770 @t768)))
% 86.49/86.78  (step @p1561 :rule cong :premises (@p1560) :args ((not @t770)))
% 86.49/86.78  (step @p1562 :rule arith-leq-norm :args (@t593 @t362))
% 86.49/86.78  (step @p1563 :rule trans :premises (@p1562 @p1561))
% 86.49/86.78  (step @p1564 :rule cong :premises (@p1389 @p1453) :args (@t771))
% 86.49/86.78  (step @p1565 :rule trans :premises (@p1564 @p1563))
% 86.49/86.78  (step @p1566 :rule cong :premises (@p1565) :args ((not @t771)))
% 86.49/86.78  (step @p1567 :rule trans :premises (@p1566 @p1558))
% 86.49/86.78  (step @p1568 :rule arith-elim-leq :args (@t726 @t742))
% 86.49/86.78  (step @p1569 :rule symm :premises (@p1568))
% 86.49/86.78  (step @p1570 :rule cong :premises (@p1569) :args ((not (>= @t742 @t726))))
% 86.49/86.78  (step @p1571 :rule arith-elim-gt :args (@t726 @t742))
% 86.49/86.78  (step @p1572 :rule trans :premises (@p1571 @p1570))
% 86.49/86.78  (step @p1573 :rule trans :premises (@p1572 @p1567))
% 86.49/86.78  (step @p1574 :rule arith_poly_norm :args ((= (* 1 (- @t361 @t593)) (* 1 (- @t772 0)))))
% 86.49/86.78  (step @p1575 :rule arith_poly_norm_rel :premises (@p1574) :args ((= (>= @t361 @t593) @t773)))
% 86.49/86.78  (step @p1576 :rule arith-elim-leq :args (@t593 @t361))
% 86.49/86.78  (step @p1577 :rule trans :premises (@p1576 @p1575))
% 86.49/86.78  (step @p1578 :rule cong :premises (@p1389 @p1319) :args (@t774))
% 86.49/86.78  (step @p1579 :rule trans :premises (@p1578 @p1577))
% 86.49/86.78  (step @p1580 :rule cong :premises (@p1579) :args ((not @t774)))
% 86.49/86.78  (step @p1581 :rule arith-elim-leq :args (@t726 @t361))
% 86.49/86.78  (step @p1582 :rule symm :premises (@p1581))
% 86.49/86.78  (step @p1583 :rule cong :premises (@p1582) :args ((not (>= @t361 @t726))))
% 86.49/86.78  (step @p1584 :rule arith-elim-gt :args (@t726 @t361))
% 86.49/86.78  (step @p1585 :rule trans :premises (@p1584 @p1583))
% 86.49/86.78  (step @p1586 :rule trans :premises (@p1585 @p1580))
% 86.49/86.78  (step @p1587 :rule cong :premises (@p1511 @p1586 @p1573) :args (@t775))
% 86.49/86.78  (step @p1588 :rule bool-double-not-elim :args (@t776))
% 86.49/86.78  (step @p1589 :rule arith_poly_norm :args ((= (* -1 (- @t368 @t769)) (* -1 (- @t772 1)))))
% 86.49/86.78  (step @p1590 :rule arith_poly_norm_rel :premises (@p1589) :args ((= @t777 @t776)))
% 86.49/86.78  (step @p1591 :rule cong :premises (@p1590) :args ((not @t777)))
% 86.49/86.78  (step @p1592 :rule arith-leq-norm :args (@t368 @t362))
% 86.49/86.78  (step @p1593 :rule trans :premises (@p1592 @p1591))
% 86.49/86.78  (step @p1594 :rule cong :premises (@p1421 @p1453) :args (@t778))
% 86.49/86.78  (step @p1595 :rule trans :premises (@p1594 @p1593))
% 86.49/86.78  (step @p1596 :rule cong :premises (@p1595) :args ((not @t778)))
% 86.49/86.78  (step @p1597 :rule trans :premises (@p1596 @p1588))
% 86.49/86.78  (step @p1598 :rule arith-elim-leq :args (@t368 @t742))
% 86.49/86.78  (step @p1599 :rule symm :premises (@p1598))
% 86.49/86.78  (step @p1600 :rule cong :premises (@p1599) :args ((not (>= @t742 @t368))))
% 86.49/86.78  (step @p1601 :rule arith-elim-gt :args (@t368 @t742))
% 86.49/86.78  (step @p1602 :rule trans :premises (@p1601 @p1600))
% 86.49/86.78  (step @p1603 :rule trans :premises (@p1602 @p1597))
% 86.49/86.78  (step @p1604 :rule arith_poly_norm :args ((= (* 1 (- @t361 @t368)) (* 1 (- @t767 0)))))
% 86.49/86.78  (step @p1605 :rule arith_poly_norm_rel :premises (@p1604) :args ((= @t780 @t779)))
% 86.49/86.78  (step @p1606 :rule arith-elim-leq :args (@t368 @t361))
% 86.49/86.78  (step @p1607 :rule trans :premises (@p1606 @p1605))
% 86.49/86.78  (step @p1608 :rule cong :premises (@p1607) :args ((not (<= @t368 @t361))))
% 86.49/86.78  (step @p1609 :rule symm :premises (@p1606))
% 86.49/86.78  (step @p1610 :rule cong :premises (@p1609) :args ((not @t780)))
% 86.49/86.78  (step @p1611 :rule arith-elim-gt :args (@t368 @t361))
% 86.49/86.78  (step @p1612 :rule trans :premises (@p1611 @p1610))
% 86.49/86.78  (step @p1613 :rule trans :premises (@p1612 @p1608))
% 86.49/86.78  (step @p1614 :rule cong :premises (@p1511 @p1613 @p1603) :args (@t781))
% 86.49/86.78  (step @p1615 :rule cong :premises (@p1443 @p1614 @p1587) :args (@t782))
% 86.49/86.78  (step @p1616 :rule ite-true-cond :args (@t703 @t678))
% 86.49/86.78  (step @p1617 :rule arith_poly_norm :args ((= (* -1 (- -1 @t355)) (* -1 (- @t354 1)))))
% 86.49/86.78  (step @p1618 :rule arith_poly_norm_rel :premises (@p1617) :args ((= (>= -1 @t355) @t637)))
% 86.49/86.78  (step @p1619 :rule arith-elim-leq :args (@t355 -1))
% 86.49/86.78  (step @p1620 :rule trans :premises (@p1619 @p1618))
% 86.49/86.78  (step @p1621 :rule cong :premises (@p1388 @p1452) :args (@t783))
% 86.49/86.78  (step @p1622 :rule trans :premises (@p1621 @p1620))
% 86.49/86.78  (step @p1623 :rule cong :premises (@p1622) :args ((not @t783)))
% 86.49/86.78  (step @p1624 :rule arith-elim-leq :args (@t725 @t741))
% 86.49/86.78  (step @p1625 :rule symm :premises (@p1624))
% 86.49/86.78  (step @p1626 :rule cong :premises (@p1625) :args ((not (>= @t741 @t725))))
% 86.49/86.78  (step @p1627 :rule arith-elim-gt :args (@t725 @t741))
% 86.49/86.78  (step @p1628 :rule trans :premises (@p1627 @p1626))
% 86.49/86.78  (step @p1629 :rule trans :premises (@p1628 @p1623))
% 86.49/86.78  (step @p1630 :rule arith_poly_norm :args ((= (* 1 (- 1 @t355)) (* 1 (- @t354 -1)))))
% 86.49/86.78  (step @p1631 :rule arith_poly_norm_rel :premises (@p1630) :args ((= (>= 1 @t355) @t702)))
% 86.49/86.78  (step @p1632 :rule arith-elim-leq :args (@t355 1))
% 86.49/86.78  (step @p1633 :rule trans :premises (@p1632 @p1631))
% 86.49/86.78  (step @p1634 :rule cong :premises (@p1388 @p34) :args (@t784))
% 86.49/86.78  (step @p1635 :rule trans :premises (@p1634 @p1633))
% 86.49/86.78  (step @p1636 :rule cong :premises (@p1635) :args ((not @t784)))
% 86.49/86.78  (step @p1637 :rule arith-elim-leq :args (@t725 1))
% 86.49/86.78  (step @p1638 :rule symm :premises (@p1637))
% 86.49/86.78  (step @p1639 :rule cong :premises (@p1638) :args ((not (>= 1 @t725))))
% 86.49/86.78  (step @p1640 :rule arith-elim-gt :args (@t725 1))
% 86.49/86.78  (step @p1641 :rule trans :premises (@p1640 @p1639))
% 86.49/86.78  (step @p1642 :rule trans :premises (@p1641 @p1636))
% 86.49/86.78  (step @p1643 :rule cong :premises (@p1476 @p1642 @p1629) :args (@t785))
% 86.49/86.78  (step @p1644 :rule trans :premises (@p1643 @p1616))
% 86.49/86.78  (step @p1645 :rule ite-true-cond :args (@t359 @t679))
% 86.49/86.78  (step @p1234 :rule bool-double-not-elim :args (@t679))
% 86.49/86.78  (step @p1646 :rule refl :args (@t354))
% 86.49/86.78  (step @p1647 :rule cong :premises (@p1646 @p1480) :args (@t786))
% 86.49/86.78  (step @p1648 :rule cong :premises (@p1647) :args ((not @t786)))
% 86.49/86.78  (step @p1649 :rule arith-leq-norm :args (@t354 -1))
% 86.49/86.78  (step @p1650 :rule trans :premises (@p1649 @p1648))
% 86.49/86.78  (step @p1651 :rule cong :premises (@p1264 @p1452) :args (@t787))
% 86.49/86.78  (step @p1652 :rule trans :premises (@p1651 @p1650))
% 86.49/86.78  (step @p1653 :rule cong :premises (@p1652) :args ((not @t787)))
% 86.49/86.78  (step @p1654 :rule trans :premises (@p1653 @p1234))
% 86.49/86.78  (step @p1655 :rule arith-elim-leq :args (@t354 @t741))
% 86.49/86.78  (step @p1656 :rule symm :premises (@p1655))
% 86.49/86.78  (step @p1657 :rule cong :premises (@p1656) :args ((not (>= @t741 @t354))))
% 86.49/86.78  (step @p1658 :rule arith-elim-gt :args (@t354 @t741))
% 86.49/86.78  (step @p1659 :rule trans :premises (@p1658 @p1657))
% 86.49/86.78  (step @p1660 :rule trans :premises (@p1659 @p1654))
% 86.49/86.78  (step @p1661 :rule cong :premises (@p1646 @p1496) :args (@t788))
% 86.49/86.78  (step @p1662 :rule cong :premises (@p1661) :args ((not @t788)))
% 86.49/86.78  (step @p1663 :rule arith-leq-norm :args (@t354 1))
% 86.49/86.78  (step @p1664 :rule trans :premises (@p1663 @p1662))
% 86.49/86.78  (step @p1665 :rule cong :premises (@p1664) :args ((not (<= @t354 1))))
% 86.49/86.78  (step @p1666 :rule trans :premises (@p1665 @p1281))
% 86.49/86.78  (step @p1667 :rule arith-elim-leq :args (@t354 1))
% 86.49/86.78  (step @p1668 :rule symm :premises (@p1667))
% 86.49/86.78  (step @p1669 :rule cong :premises (@p1668) :args ((not (>= 1 @t354))))
% 86.49/86.78  (step @p1670 :rule arith-elim-gt :args (@t354 1))
% 86.49/86.78  (step @p1671 :rule trans :premises (@p1670 @p1669))
% 86.49/86.78  (step @p1672 :rule trans :premises (@p1671 @p1666))
% 86.49/86.78  (step @p1673 :rule cong :premises (@p1476 @p1672 @p1660) :args (@t789))
% 86.49/86.78  (step @p1674 :rule trans :premises (@p1673 @p1645))
% 86.49/86.78  (step @p1675 :rule cong :premises (@p1413 @p1674 @p1644) :args (@t790))
% 86.49/86.78  (step @p1676 :rule nary_cong :premises (@p1675 @p1446 @p1445) :args (@t791))
% 86.49/86.78  (step @p1677 :rule cong :premises (@p1676 @p1615) :args ((=> @t791 @t782)))
% 86.49/86.78  (assume-push @p2757 @t790)
% 86.49/86.78  (assume-push @p2758 @t713)
% 86.49/86.78  (assume-push @p2759 @t677)
% 86.49/86.78  (step @p1681 :rule arith-abs-int-gt :args (@t368 @t361))
% 86.49/86.78  (step @p1682 :rule arith_poly_norm :args ((= (* 1 (- @t792 @t755)) (* 1 (- @t793 0)))))
% 86.49/86.78  (step @p1683 :rule arith_poly_norm_rel :premises (@p1682) :args ((= @t794 (>= @t793 0))))
% 86.49/86.78  (step @p1684 :rule arith-elim-leq :args (@t755 @t792))
% 86.49/86.78  (step @p1685 :rule trans :premises (@p1684 @p1683))
% 86.49/86.78  (step @p1686 :rule cong :premises (@p1685) :args ((not (<= @t755 @t792))))
% 86.49/86.78  (step @p1687 :rule symm :premises (@p1684))
% 86.49/86.78  (step @p1688 :rule cong :premises (@p1687) :args ((not @t794)))
% 86.49/86.78  (step @p1689 :rule arith-elim-gt :args (@t755 @t792))
% 86.49/86.78  (step @p1690 :rule trans :premises (@p1689 @p1688))
% 86.49/86.78  (step @p1691 :rule trans :premises (@p1690 @p1686))
% 86.49/86.78  (step @p1692 :rule symm :premises (@p1691))
% 86.49/86.78  (step @p1693 :rule arith_poly_norm :args ((= @t795 @t361)))
% 86.49/86.78  (step @p1694 :rule cong :premises (@p1693) :args (@t796))
% 86.49/86.78  (step @p1695 :rule refl :args (@t755))
% 86.49/86.78  (step @p1696 :rule cong :premises (@p1695 @p1694) :args (@t797))
% 86.49/86.78  (step @p1697 :rule trans :premises (@p1696 @p1685))
% 86.49/86.78  (step @p1698 :rule cong :premises (@p1697) :args ((not @t797)))
% 86.49/86.78  (step @p1699 :rule arith-elim-leq :args (@t755 @t796))
% 86.49/86.78  (step @p1700 :rule symm :premises (@p1699))
% 86.49/86.78  (step @p1701 :rule cong :premises (@p1700) :args ((not (>= @t796 @t755))))
% 86.49/86.78  (step @p1702 :rule arith-elim-gt :args (@t755 @t796))
% 86.49/86.78  (step @p1703 :rule trans :premises (@p1702 @p1701))
% 86.49/86.78  (step @p1704 :rule trans :premises (@p1703 @p1698))
% 86.49/86.78  (step @p1705 :rule trans :premises (@p1704 @p1692))
% 86.49/86.78  (step @p1706 :rule refl :args (@t792))
% 86.49/86.78  (step @p1707 :rule and_intro :premises (@p1706 @p2758))
% 86.49/86.78  (step @p1708 :rule arith-abs-int-gt :args (@t354 1))
% 86.49/86.78  (step @p1709 :rule symm :premises (@p1708))
% 86.49/86.78  (step @p1710 :rule eq_resolve :premises (@p2757 @p1709))
% 86.49/86.78  (step @p1711 :rule arith_mult_abs_comparison :premises (@p1710 @p1707))
% 86.49/86.78  (step @p1712 :rule eq_resolve :premises (@p1711 @p1705))
% 86.49/86.78  (step @p1713 :rule eq_resolve :premises (@p1712 @p1681))
% 86.49/86.78  (step-pop @p2760 :rule scope :premises (@p1713))
% 86.49/86.78  (step-pop @p2761 :rule scope :premises (@p2760))
% 86.49/86.78  (step-pop @p2762 :rule scope :premises (@p2761))
% 86.49/86.78  (step @p1714 :rule process_scope :premises (@p2762) :args (@t782))
% 86.49/86.78  (step @p1718 :rule eq_resolve :premises (@p1714 @p1677))
% 86.49/86.78  (step @p1719 :rule implies_elim :premises (@p1718))
% 86.49/86.78  (step @p1720 :rule reordering :premises (@p1719) :args ((or @t800 (not @t719))))
% 86.49/86.78  (assume-push @p2763 @t661)
% 86.49/86.78  (assume-push @p2764 @t661)
% 86.49/86.78  (step @p1723 :rule bool-double-not-elim :args (@t739))
% 86.49/86.78  (step @p1724 :rule arith-elim-lt :args (@t368 0))
% 86.49/86.78  (step @p1725 :rule cong :premises (@p1724) :args ((not @t801)))
% 86.49/86.78  (step @p1726 :rule trans :premises (@p1725 @p1723))
% 86.49/86.78  (assume-push @p2765 @t801)
% 86.49/86.78  (step @p1728 :rule evaluate :args ((>= 0 -2)))
% 86.49/86.78  (step @p1350 :rule evaluate :args (@t711))
% 86.49/86.78  (step @p1173 :rule evaluate :args (@t665))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1351 :rule nary_cong :premises (@p1172 @p1173) :args (@t712))
% 86.49/86.78  (step @p1352 :rule trans :premises (@p1351 @p1350))
% 86.49/86.78  (step @p1729 :rule cong :premises (@p961 @p1352) :args (@t802))
% 86.49/86.78  (step @p1730 :rule trans :premises (@p1729 @p1728))
% 86.49/86.78  (step @p1731 :rule cong :premises (@p1730) :args ((not @t802)))
% 86.49/86.78  (step @p1732 :rule trans :premises (@p1731 @p59))
% 86.49/86.78  (step @p1733 :rule arith-elim-lt :args (@t594 @t712))
% 86.49/86.78  (step @p1734 :rule trans :premises (@p1733 @p1732))
% 86.49/86.78  (step @p1735 :rule arith_mult_neg :args (-1 @t661))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1736 :rule and_intro :premises (@p1192 @p2763))
% 86.49/86.78  (step @p1737 :rule modus_ponens :premises (@p1736 @p1735))
% 86.49/86.78  (step @p1738 :rule arith_sum_ub :premises (@p2765 @p1737))
% 86.49/86.78  (step @p1739 false :rule eq_resolve :premises (@p1738 @p1734))
% 86.49/86.78  (step-pop @p2766 :rule scope :premises (@p1739))
% 86.49/86.78  (step @p1740 :rule process_scope :premises (@p2766) :args (false))
% 86.49/86.78  (step @p1742 :rule eq_resolve :premises (@p1740 @p1726))
% 86.49/86.78  (step-pop @p2767 :rule scope :premises (@p1742))
% 86.49/86.78  (step @p1743 :rule process_scope :premises (@p2767) :args (@t739))
% 86.49/86.78  (step @p1745 :rule modus_ponens :premises (@p2763 @p1743))
% 86.49/86.78  (step-pop @p2768 :rule scope :premises (@p1745))
% 86.49/86.78  (step @p1746 :rule process_scope :premises (@p2768) :args (@t739))
% 86.49/86.78  (step @p1748 :rule implies_elim :premises (@p1746))
% 86.49/86.78  (step @p1749 :rule cnf_ite_pos1 :args (@t766))
% 86.49/86.78  (step @p1750 :rule reordering :premises (@p1749) :args ((or @t765 @t803 (not @t766))))
% 86.49/86.78  (step @p1751 :rule cnf_ite_pos1 :args (@t800))
% 86.49/86.78  (step @p1752 :rule reordering :premises (@p1751) :args ((or @t799 @t803 (not @t800))))
% 86.49/86.78  (step @p1753 :rule cnf_ite_pos1 :args (@t765))
% 86.49/86.78  (step @p1754 :rule reordering :premises (@p1753) :args ((or @t705 @t764 (not @t765))))
% 86.49/86.78  (step @p1755 :rule cnf_ite_pos1 :args (@t799))
% 86.49/86.78  (step @p1756 :rule reordering :premises (@p1755) :args ((or @t798 @t709 (not @t799))))
% 86.49/86.78  (step @p1757 :rule arith_poly_norm :args ((= (* -1 (- @t354 @t804)) @t722)))
% 86.49/86.78  (step @p1758 :rule arith_poly_norm_rel :premises (@p1757) :args ((= @t805 @t721)))
% 86.49/86.78  (step @p1759 :rule cong :premises (@p1758) :args ((not @t805)))
% 86.49/86.78  (step @p1760 :rule arith-leq-norm :args (@t354 @t368))
% 86.49/86.78  (step @p1761 :rule trans :premises (@p1760 @p1759))
% 86.49/86.78  (step @p1762 :rule nary_cong :premises (@p1761 @p1433) :args ((or @t806 @t736)))
% 86.49/86.78  (step @p1763 :rule symm :premises (@p1762))
% 86.49/86.78  (step @p1764 :rule bool-double-not-elim :args (@t736))
% 86.49/86.78  (step @p1765 :rule trans :premises (@p1764 @p1433))
% 86.49/86.78  (step @p1766 :rule bool-double-not-elim :args (@t806))
% 86.49/86.78  (step @p1767 :rule trans :premises (@p1766 @p1761))
% 86.49/86.78  (step @p1768 :rule nary_cong :premises (@p1767 @p1765) :args ((or (not @t807) (not @t737))))
% 86.49/86.78  (step @p1769 :rule trans :premises (@p1768 @p1763))
% 86.49/86.78  (assume-push @p2769 @t807)
% 86.49/86.78  (assume-push @p2770 @t737)
% 86.49/86.78  (step @p1170 :rule evaluate :args (@t663))
% 86.49/86.78  (step @p1772 :rule arith_poly_norm :args ((= @t808 0)))
% 86.49/86.78  (step @p1773 :rule arith_poly_norm :args ((= @t809 0)))
% 86.49/86.78  (step @p1774 :rule cong :premises (@p1773 @p1772) :args (@t810))
% 86.49/86.78  (step @p1775 :rule trans :premises (@p1774 @p1170))
% 86.49/86.78  (step @p1776 :rule cong :premises (@p1775) :args ((not @t810)))
% 86.49/86.78  (step @p1777 :rule trans :premises (@p1776 @p59))
% 86.49/86.78  (step @p1778 :rule arith-elim-lt :args (@t809 @t808))
% 86.49/86.78  (step @p1779 :rule trans :premises (@p1778 @p1777))
% 86.49/86.78  (step @p1780 :rule cong :premises (@p1433) :args (@t737))
% 86.49/86.78  (step @p1781 :rule arith-elim-lt :args (@t354 @t368))
% 86.49/86.78  (step @p1782 :rule trans :premises (@p1781 @p1780))
% 86.49/86.78  (step @p1783 :rule symm :premises (@p1782))
% 86.49/86.78  (step @p1784 :rule trans :premises (@p1780 @p1783))
% 86.49/86.78  (step @p1785 :rule eq_resolve :premises (@p2770 @p1784))
% 86.49/86.78  (step @p1786 :rule arith_mult_neg :args (-1 (> @t354 @t368)))
% 86.49/86.78  (step @p1787 :rule cong :premises (@p1761) :args (@t807))
% 86.49/86.78  (step @p1788 :rule trans :premises (@p1787 @p1382))
% 86.49/86.78  (step @p1789 :rule arith-elim-leq :args (@t354 @t368))
% 86.49/86.78  (step @p1790 :rule symm :premises (@p1789))
% 86.49/86.78  (step @p1791 :rule cong :premises (@p1790) :args ((not (>= @t368 @t354))))
% 86.49/86.78  (step @p1792 :rule arith-elim-gt :args (@t354 @t368))
% 86.49/86.78  (step @p1793 :rule trans :premises (@p1792 @p1791))
% 86.49/86.78  (step @p1794 :rule trans :premises (@p1793 @p1788))
% 86.49/86.78  (step @p1795 :rule symm :premises (@p1794))
% 86.49/86.78  (step @p1796 :rule trans :premises (@p1788 @p1795))
% 86.49/86.78  (step @p1797 :rule eq_resolve :premises (@p2769 @p1796))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1798 :rule and_intro :premises (@p1192 @p1797))
% 86.49/86.78  (step @p1799 :rule modus_ponens :premises (@p1798 @p1786))
% 86.49/86.78  (step @p1800 :rule arith_sum_ub :premises (@p1799 @p1785))
% 86.49/86.78  (step @p1801 false :rule eq_resolve :premises (@p1800 @p1779))
% 86.49/86.78  (step-pop @p2771 :rule scope :premises (@p1801))
% 86.49/86.78  (step-pop @p2772 :rule scope :premises (@p2771))
% 86.49/86.78  (step @p1802 :rule process_scope :premises (@p2772) :args (false))
% 86.49/86.78  (step @p1805 :rule not_and :premises (@p1802))
% 86.49/86.78  (step @p1806 :rule eq_resolve :premises (@p1805 @p1769))
% 86.49/86.78  (step @p1807 :rule eq_resolve :premises (@p1806 @p1762))
% 86.49/86.78  (step @p1808 :rule eq-symm :args (@t811 @t779))
% 86.49/86.78  (step @p1809 :rule bool-double-not-elim :args (@t779))
% 86.49/86.78  (step @p1810 :rule arith_poly_norm :args ((= (* -1 (- 0 @t813)) (* -1 (- @t812 1)))))
% 86.49/86.78  (step @p1811 :rule arith_poly_norm_rel :premises (@p1810) :args ((= (>= 0 @t813) (>= @t812 1))))
% 86.49/86.78  (step @p1812 :rule arith-geq-tighten :args (@t767 0))
% 86.49/86.78  (step @p1813 :rule trans :premises (@p1812 @p1811))
% 86.49/86.78  (step @p1814 :rule symm :premises (@p1813))
% 86.49/86.78  (step @p1815 :rule arith_poly_norm :args ((= @t814 @t812)))
% 86.49/86.78  (step @p1816 :rule cong :premises (@p1815 @p34) :args (@t815))
% 86.49/86.78  (step @p1817 :rule trans :premises (@p1816 @p1814))
% 86.49/86.78  (step @p1818 :rule cong :premises (@p1817) :args (@t816))
% 86.49/86.78  (step @p1819 :rule trans :premises (@p1818 @p1809))
% 86.49/86.78  (step @p1820 :rule refl :args (@t811))
% 86.49/86.78  (step @p1821 :rule cong :premises (@p1820 @p1819) :args (@t817))
% 86.49/86.78  (step @p1822 :rule trans :premises (@p1821 @p1808))
% 86.49/86.78  (step @p1823 :rule cong :premises (@p43 @p1822) :args ((=> @t144 @t817)))
% 86.49/86.78  (assume-push @p2773 @t144)
% 86.49/86.78  (step @p1825 :rule instantiate :premises (@p30) :args ((@list @t368 @t361)))
% 86.49/86.78  (step-pop @p2774 :rule scope :premises (@p1825))
% 86.49/86.78  (step @p1826 :rule process_scope :premises (@p2774) :args (@t817))
% 86.49/86.78  (step @p1828 :rule eq_resolve :premises (@p1826 @p1823))
% 86.49/86.78  (step @p1829 :rule implies_elim :premises (@p1828))
% 86.49/86.78  (step @p1830 :rule chain_m_resolution :premises (@p1829 @p30) :args (@t818 @t145 @t146))
% 86.49/86.78  (step @p1831 :rule cnf_equiv_pos2 :args (@t818))
% 86.49/86.78  (step @p1832 :rule reordering :premises (@p1831) :args ((or @t779 @t819 (not @t818))))
% 86.49/86.78  (step @p1833 :rule bool-double-not-elim :args (@t601))
% 86.49/86.78  (step @p1834 :rule nary_cong :premises (@p996 @p1833) :args ((or @t608 (not @t602))))
% 86.49/86.78  (step @p1835 :rule cnf_or_neg :args (@t608 2))
% 86.49/86.78  (step @p1836 :rule eq_resolve :premises (@p1835 @p1834))
% 86.49/86.78  (step @p1837 :rule reordering :premises (@p1836) :args ((or @t601 @t608)))
% 86.49/86.78  (step @p1838 :rule chain_m_resolution :premises (@p1837 @p994) :args (@t601 @t434 @t613))
% 86.49/86.78  (step @p1839 :rule refl :args (@t820))
% 86.49/86.78  (step @p1840 :rule bool-double-not-elim :args (@t357))
% 86.49/86.78  (step @p1841 :rule nary_cong :premises (@p1840 @p979 @p1839 @p1382) :args ((or (not @t358) @t602 @t820 (not @t821))))
% 86.49/86.78  (assume-push @p2775 @t358)
% 86.49/86.78  (assume-push @p2776 @t601)
% 86.49/86.78  (assume-push @p2777 @t626)
% 86.49/86.78  (assume-push @p2778 @t821)
% 86.49/86.78  (step @p1170 :rule evaluate :args (@t663))
% 86.49/86.78  (step @p1846 :rule evaluate :args ((+ 1 -1 0 0)))
% 86.49/86.78  (step @p1847 :rule evaluate :args (@t822))
% 86.49/86.78  (step @p1848 :rule refl :args (-1))
% 86.49/86.78  (step @p1849 :rule nary_cong :premises (@p34 @p1848 @p1847 @p1847) :args (@t823))
% 86.49/86.78  (step @p1850 :rule trans :premises (@p1849 @p1846))
% 86.49/86.78  (step @p1851 :rule arith_poly_norm :args ((= (+ 0 @t355 @t354 @t598 @t599 0) 0)))
% 86.49/86.78  (step @p1852 :rule arith_poly_norm :args (@t825))
% 86.49/86.78  (step @p1853 :rule refl :args (@t599))
% 86.49/86.78  (step @p1854 :rule refl :args (@t598))
% 86.49/86.78  (step @p1855 :rule refl :args (@t355))
% 86.49/86.78  (step @p1856 :rule arith_poly_norm :args ((= @t826 0)))
% 86.49/86.78  (step @p1857 :rule nary_cong :premises (@p1856 @p1855 @p1264 @p1854 @p1853 @p1852) :args (@t827))
% 86.49/86.78  (step @p1858 :rule trans :premises (@p1857 @p1851))
% 86.49/86.78  (step @p1859 :rule arith_poly_norm :args ((= @t829 @t827)))
% 86.49/86.78  (step @p1860 :rule trans :premises (@p1859 @p1858))
% 86.49/86.78  (step @p1861 :rule cong :premises (@p1860 @p1850) :args (@t830))
% 86.49/86.78  (step @p1862 :rule trans :premises (@p1861 @p1170))
% 86.49/86.78  (step @p1863 :rule cong :premises (@p1862) :args ((not @t830)))
% 86.49/86.78  (step @p1864 :rule trans :premises (@p1863 @p59))
% 86.49/86.78  (step @p1865 :rule arith-elim-lt :args (@t829 @t823))
% 86.49/86.78  (step @p1866 :rule trans :premises (@p1865 @p1864))
% 86.49/86.78  (step @p1867 :rule arith_mult_neg :args (-1 @t626))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1868 :rule and_intro :premises (@p1192 @p2777))
% 86.49/86.78  (step @p1869 :rule modus_ponens :premises (@p1868 @p1867))
% 86.49/86.78  (step @p1870 :rule arith_mult_neg :args (-1 @t601))
% 86.49/86.78  (step @p1871 :rule and_intro :premises (@p1192 @p1838))
% 86.49/86.78  (step @p1872 :rule modus_ponens :premises (@p1871 @p1870))
% 86.49/86.78  (step @p1873 :rule arith-elim-lt :args (@t356 0))
% 86.49/86.78  (step @p1874 :rule symm :premises (@p1873))
% 86.49/86.78  (step @p1875 :rule eq_resolve :premises (@p2775 @p1874))
% 86.49/86.78  (step @p1876 :rule int_tight_ub :premises (@p1875))
% 86.49/86.78  (step @p1877 :rule arith-elim-lt :args (@t720 1))
% 86.49/86.78  (step @p1878 :rule symm :premises (@p1877))
% 86.49/86.78  (step @p1879 :rule eq_resolve :premises (@p2778 @p1878))
% 86.49/86.78  (step @p1880 :rule arith_sum_ub :premises (@p1879 @p1876 @p1872 @p1869))
% 86.49/86.78  (step @p1881 false :rule eq_resolve :premises (@p1880 @p1866))
% 86.49/86.78  (step-pop @p2779 :rule scope :premises (@p1881))
% 86.49/86.78  (step-pop @p2780 :rule scope :premises (@p2779))
% 86.49/86.78  (step-pop @p2781 :rule scope :premises (@p2780))
% 86.49/86.78  (step-pop @p2782 :rule scope :premises (@p2781))
% 86.49/86.78  (step @p1882 :rule process_scope :premises (@p2782) :args (false))
% 86.49/86.78  (step @p1887 :rule not_and :premises (@p1882))
% 86.49/86.78  (step @p1888 :rule eq_resolve :premises (@p1887 @p1841))
% 86.49/86.78  (step @p1889 :rule reordering :premises (@p1888) :args ((or @t602 @t357 @t820 @t721)))
% 86.49/86.78  (step @p1890 :rule cnf_or_pos :args (@t372))
% 86.49/86.78  (step @p1891 :rule reordering :premises (@p1890) :args ((or @t371 @t360 @t358 @t367 @t365 (not @t372))))
% 86.49/86.78  (step @p1892 :rule bool-double-not-elim :args (@t364))
% 86.49/86.78  (step @p1893 :rule refl :args (@t833))
% 86.49/86.78  (step @p1894 :rule nary_cong :premises (@p1893 @p979 @p1892) :args ((or @t833 @t602 (not @t365))))
% 86.49/86.78  (assume-push @p2783 @t832)
% 86.49/86.78  (assume-push @p2784 @t601)
% 86.49/86.78  (assume-push @p2785 @t365)
% 86.49/86.78  (step @p1239 :rule evaluate :args (@t681))
% 86.49/86.78  (step @p1898 :rule evaluate :args ((+ 0 -1 0)))
% 86.49/86.78  (step @p1847 :rule evaluate :args (@t822))
% 86.49/86.78  (step @p1172 :rule refl :args (0))
% 86.49/86.78  (step @p1899 :rule nary_cong :premises (@p1172 @p1212 @p1847) :args (@t834))
% 86.49/86.78  (step @p1900 :rule trans :premises (@p1899 @p1898))
% 86.49/86.78  (step @p1901 :rule arith_poly_norm :args ((= (+ 0 @t598 @t599 0) 0)))
% 86.49/86.78  (step @p1852 :rule arith_poly_norm :args (@t825))
% 86.49/86.78  (step @p1853 :rule refl :args (@t599))
% 86.49/86.78  (step @p1854 :rule refl :args (@t598))
% 86.49/86.78  (step @p1902 :rule arith_poly_norm :args ((= @t835 0)))
% 86.49/86.78  (step @p1903 :rule nary_cong :premises (@p1902 @p1854 @p1853 @p1852) :args (@t836))
% 86.49/86.78  (step @p1904 :rule trans :premises (@p1903 @p1901))
% 86.49/86.78  (step @p1905 :rule arith_poly_norm :args ((= @t837 @t836)))
% 86.49/86.78  (step @p1906 :rule trans :premises (@p1905 @p1904))
% 86.49/86.78  (step @p1907 :rule cong :premises (@p1906 @p1900) :args (@t838))
% 86.49/86.78  (step @p1908 :rule trans :premises (@p1907 @p1239))
% 86.49/86.78  (step @p1909 :rule cong :premises (@p1908) :args ((not @t838)))
% 86.49/86.78  (step @p1910 :rule trans :premises (@p1909 @p59))
% 86.49/86.78  (step @p1911 :rule arith-elim-lt :args (@t837 @t834))
% 86.49/86.78  (step @p1912 :rule trans :premises (@p1911 @p1910))
% 86.49/86.78  (step @p1870 :rule arith_mult_neg :args (-1 @t601))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p1871 :rule and_intro :premises (@p1192 @p1838))
% 86.49/86.78  (step @p1872 :rule modus_ponens :premises (@p1871 @p1870))
% 86.49/86.78  (step @p1913 :rule arith_mult_neg :args (-1 @t832))
% 86.49/86.78  (step @p1914 :rule and_intro :premises (@p1192 @p2783))
% 86.49/86.78  (step @p1915 :rule modus_ponens :premises (@p1914 @p1913))
% 86.49/86.78  (step @p1916 :rule arith-elim-lt :args (@t363 0))
% 86.49/86.78  (step @p1917 :rule symm :premises (@p1916))
% 86.49/86.78  (step @p1918 :rule eq_resolve :premises (@p2785 @p1917))
% 86.49/86.78  (step @p1919 :rule arith_sum_ub :premises (@p1918 @p1915 @p1872))
% 86.49/86.78  (step @p1920 false :rule eq_resolve :premises (@p1919 @p1912))
% 86.49/86.78  (step-pop @p2786 :rule scope :premises (@p1920))
% 86.49/86.78  (step-pop @p2787 :rule scope :premises (@p2786))
% 86.49/86.78  (step-pop @p2788 :rule scope :premises (@p2787))
% 86.49/86.78  (step @p1921 :rule process_scope :premises (@p2788) :args (false))
% 86.49/86.78  (step @p1925 :rule not_and :premises (@p1921))
% 86.49/86.78  (step @p1926 :rule eq_resolve :premises (@p1925 @p1894))
% 86.49/86.78  (step @p1927 :rule reordering :premises (@p1926) :args ((or @t602 @t364 @t833)))
% 86.49/86.78  (step @p1928 :rule instantiate :premises (@p30) :args ((@list @t598 @t361)))
% 86.49/86.78  (step @p1929 :rule bool-double-not-elim :args (@t832))
% 86.49/86.78  (step @p1930 :rule refl :args (@t839))
% 86.49/86.78  (step @p1931 :rule refl :args (@t841))
% 86.49/86.78  (step @p1932 :rule nary_cong :premises (@p1931 @p1930 @p1929) :args ((or @t841 @t839 (not @t833))))
% 86.49/86.78  (step @p1933 :rule cnf_equiv_pos2 :args (@t840))
% 86.49/86.78  (step @p1934 :rule eq_resolve :premises (@p1933 @p1932))
% 86.49/86.78  (step @p1935 :rule reordering :premises (@p1934) :args ((or @t839 @t832 @t841)))
% 86.49/86.78  (step @p1936 :rule refl :args (@t842))
% 86.49/86.78  (step @p1937 :rule bool-double-not-elim :args (@t811))
% 86.49/86.78  (step @p1938 :rule refl :args (@t371))
% 86.49/86.78  (step @p1939 :rule refl :args (@t607))
% 86.49/86.78  (step @p1940 :rule nary_cong :premises (@p1939 @p1938 @p1937 @p1936) :args ((or @t607 @t371 (not @t819) @t842)))
% 86.49/86.78  (assume-push @p2789 @t606)
% 86.49/86.78  (assume-push @p2790 @t370)
% 86.49/86.78  (assume-push @p2791 @t819)
% 86.49/86.78  (assume-push @p2792 @t819)
% 86.49/86.78  (assume-push @p2793 @t370)
% 86.49/86.78  (assume-push @p2794 @t606)
% 86.49/86.78  (step @p1947 :rule false_intro :premises (@p2791))
% 86.49/86.78  (step @p1948 :rule refl :args (@t375))
% 86.49/86.78  (step @p1009 :rule symm :premises (@p1001))
% 86.49/86.78  (step @p1949 :rule trans :premises (@p1009 @p2790))
% 86.49/86.78  (step @p1950 :rule cong :premises (@p1949 @p1948) :args (@t839))
% 86.49/86.78  (step @p1951 :rule trans :premises (@p1950 @p1947))
% 86.49/86.78  (step @p1952 :rule false_elim :premises (@p1951))
% 86.49/86.78  (step-pop @p2795 :rule scope :premises (@p1952))
% 86.49/86.78  (step-pop @p2796 :rule scope :premises (@p2795))
% 86.49/86.78  (step-pop @p2797 :rule scope :premises (@p2796))
% 86.49/86.78  (step @p1953 :rule process_scope :premises (@p2797) :args (@t842))
% 86.49/86.78  (step @p1957 :rule and_intro :premises (@p2791 @p2790 @p1001))
% 86.49/86.78  (step @p1958 :rule modus_ponens :premises (@p1957 @p1953))
% 86.49/86.78  (step-pop @p2798 :rule scope :premises (@p1958))
% 86.49/86.78  (step-pop @p2799 :rule scope :premises (@p2798))
% 86.49/86.78  (step-pop @p2800 :rule scope :premises (@p2799))
% 86.49/86.78  (step @p1959 :rule process_scope :premises (@p2800) :args (@t842))
% 86.49/86.78  (step @p1963 :rule implies_elim :premises (@p1959))
% 86.49/86.78  (step @p1964 :rule cnf_and_neg :args (@t843))
% 86.49/86.78  (step @p1965 :rule resolution :premises (@p1964 @p1963) :args (true @t843))
% 86.49/86.78  (step @p1966 :rule eq_resolve :premises (@p1965 @p1940))
% 86.49/86.78  (step @p1967 :rule reordering :premises (@p1966) :args ((or @t607 @t371 @t842 @t811)))
% 86.49/86.78  (step @p1968 :rule chain_m_resolution :premises (@p1967 @p1001 @p1935 @p1928 @p1927 @p1838 @p1891 @p1889 @p1838 @p1832 @p1830 @p1807 @p1756 @p1754 @p1752 @p1750 @p1748 @p1720 @p1557 @p1381 @p1375 @p1367 @p1345 @p1343 @p1341 @p1335 @p1314 @p1286 @p1280 @p1259 @p1231 @p1206 @p1163 @p1157 @p1155 @p1154 @p1152 @p1135 @p1133 @p1123 @p1121 @p1104 @p1102 @p1101 @p1099 @p1078 @p1076 @p1074 @p1072 @p1070 @p1001 @p1044 @p1027 @p1001 @p976 @p959 @p957 @p943 @p941 @p926 @p921 @p916 @p910 @p893 @p891 @p710 @p703 @p701 @p688 @p699 @p577 @p698 @p691 @p451 @p423 @p421) :args (@t341 (@list false false false true false true false false true false true true true false false false false false false false true false false false false false false false false true false false true false false false true false false false true false false false true false true false false false false false false false false false false false false false false true true false false true true false true true false true false true false) (@list @t606 @t839 @t840 @t832 @t601 @t364 @t357 @t601 @t811 @t818 @t721 @t779 @t735 @t799 @t765 @t739 @t800 @t766 @t719 @t715 @t710 @t708 @t704 @t366 @t700 @t690 @t359 @t688 @t679 @t671 @t661 @t603 @t658 @t660 @t650 @t656 @t647 @t649 @t637 @t643 @t634 @t636 @t626 @t633 @t588 @t585 @t579 @t576 @t621 @t606 @t616 @t614 @t606 @t592 @t590 @t591 @t581 @t582 @t370 @t565 @t567 @t569 @t353 @t563 @t441 @t439 @t443 @t486 @t423 @t424 @t384 @t382 @t372 @t337 @t342)))
% 86.49/86.78  (step @p1969 :rule refl :args (@t867))
% 86.49/86.78  (step @p1970 :rule bool-double-not-elim :args (@t136))
% 86.49/86.78  (step @p1971 :rule nary_cong :premises (@p1970 @p1969) :args ((or @t868 @t867)))
% 86.49/86.78  (step @p1972 :rule refl :args (@t846))
% 86.49/86.78  (step @p1973 :rule refl :args (@t848))
% 86.49/86.78  (step @p1974 :rule refl :args (@t851))
% 86.49/86.78  (step @p1975 :rule refl :args (@t854))
% 86.49/86.78  (step @p1976 :rule refl :args (@t856))
% 86.49/86.78  (step @p1977 :rule refl :args (@t861))
% 86.49/86.78  (step @p1978 :rule eq-symm :args (@t863 @t133))
% 86.49/86.78  (step @p1979 :rule cong :premises (@p1978) :args (@t869))
% 86.49/86.78  (step @p1980 :rule nary_cong :premises (@p1979 @p1977 @p1976 @p1975 @p1974 @p1973 @p1972) :args (@t870))
% 86.49/86.78  (step @p1981 :rule cong :premises (@p1980) :args (@t871))
% 86.49/86.78  (step @p1982 :rule refl :args (@t341))
% 86.49/86.78  (step @p1983 :rule cong :premises (@p1982 @p1981) :args ((=> @t341 @t871)))
% 86.49/86.78  (assume-push @p2801 @t341)
% 86.49/86.78  (step @p1985 :rule skolemize :premises (@p2801))
% 86.49/86.78  (step-pop @p2802 :rule scope :premises (@p1985))
% 86.49/86.78  (step @p1986 :rule process_scope :premises (@p2802) :args (@t871))
% 86.49/86.78  (step @p1988 :rule eq_resolve :premises (@p1986 @p1983))
% 86.49/86.78  (step @p1989 :rule implies_elim :premises (@p1988))
% 86.49/86.78  (step @p1990 :rule eq_resolve :premises (@p1989 @p1971))
% 86.49/86.78  (step @p1991 :rule chain_m_resolution :premises (@p1990 @p1968) :args (@t867 @t434 (@list @t136)))
% 86.49/86.78  (step @p1992 :rule bool-double-not-elim :args (@t850))
% 86.49/86.78  (step @p1993 :rule refl :args (@t866))
% 86.49/86.78  (step @p1994 :rule nary_cong :premises (@p1993 @p1992) :args ((or @t866 (not @t851))))
% 86.49/86.78  (step @p1995 :rule cnf_or_neg :args (@t866 4))
% 86.49/86.78  (step @p1996 :rule eq_resolve :premises (@p1995 @p1994))
% 86.49/86.78  (step @p1997 :rule reordering :premises (@p1996) :args ((or @t850 @t866)))
% 86.49/86.78  (step @p1998 :rule chain_m_resolution :premises (@p1997 @p1991) :args (@t850 @t434 @t872))
% 86.49/86.78  (step @p1999 :rule eq-symm :args (@t873 @t848))
% 86.49/86.78  (step @p2000 :rule arith_poly_norm :args ((= (* -2 (- @t874 1)) (* -2 (- @t844 2)))))
% 86.49/86.78  (step @p2001 :rule arith_poly_norm_rel :premises (@p2000) :args ((= (>= @t874 1) @t847)))
% 86.49/86.78  (step @p2002 :rule arith_poly_norm :args ((= (+ @t844 -1) @t874)))
% 86.49/86.78  (step @p2003 :rule refl :args (@t844))
% 86.49/86.78  (step @p2004 :rule nary_cong :premises (@p2003 @p1212) :args (@t875))
% 86.49/86.78  (step @p2005 :rule trans :premises (@p2004 @p2002))
% 86.49/86.78  (step @p2006 :rule cong :premises (@p2005 @p34) :args (@t876))
% 86.49/86.78  (step @p2007 :rule trans :premises (@p2006 @p2001))
% 86.49/86.78  (step @p2008 :rule cong :premises (@p2007) :args (@t877))
% 86.49/86.78  (step @p2009 :rule refl :args (@t873))
% 86.49/86.78  (step @p2010 :rule cong :premises (@p2009 @p2008) :args (@t878))
% 86.49/86.78  (step @p2011 :rule trans :premises (@p2010 @p1999))
% 86.49/86.78  (step @p2012 :rule cong :premises (@p43 @p2011) :args ((=> @t144 @t878)))
% 86.49/86.78  (assume-push @p2803 @t144)
% 86.49/86.78  (step @p2014 :rule instantiate :premises (@p30) :args ((@list @t844 1)))
% 86.49/86.78  (step-pop @p2804 :rule scope :premises (@p2014))
% 86.49/86.78  (step @p2015 :rule process_scope :premises (@p2804) :args (@t878))
% 86.49/86.78  (step @p2017 :rule eq_resolve :premises (@p2015 @p2012))
% 86.49/86.78  (step @p2018 :rule implies_elim :premises (@p2017))
% 86.49/86.78  (step @p2019 :rule chain_m_resolution :premises (@p2018 @p30) :args (@t879 @t145 @t146))
% 86.49/86.78  (step @p2020 :rule bool-double-not-elim :args (@t847))
% 86.49/86.78  (step @p2021 :rule nary_cong :premises (@p1993 @p2020) :args ((or @t866 (not @t848))))
% 86.49/86.78  (step @p2022 :rule cnf_or_neg :args (@t866 5))
% 86.49/86.78  (step @p2023 :rule eq_resolve :premises (@p2022 @p2021))
% 86.49/86.78  (step @p2024 :rule reordering :premises (@p2023) :args ((or @t847 @t866)))
% 86.49/86.78  (step @p2025 :rule chain_m_resolution :premises (@p2024 @p1991) :args (@t847 @t434 @t872))
% 86.49/86.78  (step @p2026 :rule cnf_equiv_pos2 :args (@t879))
% 86.49/86.78  (step @p2027 :rule reordering :premises (@p2026) :args ((or @t848 @t880 (not @t879))))
% 86.49/86.78  (step @p2028 :rule chain_m_resolution :premises (@p2027 @p2025 @p2019) :args (@t880 @t881 (@list @t847 @t879)))
% 86.49/86.78  (step @p2029 :rule bool-double-not-elim :args (@t882))
% 86.49/86.78  (step @p2030 :rule arith_poly_norm :args ((= (* -1 (- 1 @t884)) (* -1 (- @t883 1)))))
% 86.49/86.78  (step @p2031 :rule arith_poly_norm_rel :premises (@p2030) :args ((= (>= 1 @t884) @t885)))
% 86.49/86.78  (step @p2032 :rule arith-geq-tighten :args (@t844 1))
% 86.49/86.78  (step @p2033 :rule trans :premises (@p2032 @p2031))
% 86.49/86.78  (step @p2034 :rule symm :premises (@p2033))
% 86.49/86.78  (step @p2035 :rule cong :premises (@p2034) :args (@t886))
% 86.49/86.78  (step @p2036 :rule trans :premises (@p2035 @p2029))
% 86.49/86.78  (step @p2037 :rule refl :args (@t887))
% 86.49/86.78  (step @p2038 :rule cong :premises (@p2037 @p2036) :args (@t888))
% 86.49/86.78  (step @p2039 :rule cong :premises (@p43 @p2038) :args ((=> @t144 @t888)))
% 86.49/86.78  (assume-push @p2805 @t144)
% 86.49/86.78  (step @p2041 :rule instantiate :premises (@p30) :args ((@list 1 @t844)))
% 86.49/86.78  (step-pop @p2806 :rule scope :premises (@p2041))
% 86.49/86.78  (step @p2042 :rule process_scope :premises (@p2806) :args (@t888))
% 86.49/86.78  (step @p2044 :rule eq_resolve :premises (@p2042 @p2039))
% 86.49/86.78  (step @p2045 :rule implies_elim :premises (@p2044))
% 86.49/86.78  (step @p2046 :rule chain_m_resolution :premises (@p2045 @p30) :args (@t889 @t145 @t146))
% 86.49/86.78  (assume-push @p2807 @t847)
% 86.49/86.78  (assume-push @p2808 @t847)
% 86.49/86.78  (step @p2049 :rule arith-elim-lt :args (@t844 1))
% 86.49/86.78  (step @p2050 :rule cong :premises (@p2049) :args ((not @t890)))
% 86.49/86.78  (step @p2051 :rule trans :premises (@p2050 @p2029))
% 86.49/86.78  (assume-push @p2809 @t890)
% 86.49/86.78  (step @p1239 :rule evaluate :args (@t681))
% 86.49/86.78  (step @p2053 :rule evaluate :args ((+ 1 -2)))
% 86.49/86.78  (step @p1173 :rule evaluate :args (@t665))
% 86.49/86.78  (step @p2054 :rule nary_cong :premises (@p34 @p1173) :args (@t891))
% 86.49/86.78  (step @p2055 :rule trans :premises (@p2054 @p2053))
% 86.49/86.78  (step @p2056 :rule arith_poly_norm :args ((= @t892 0)))
% 86.49/86.78  (step @p2057 :rule cong :premises (@p2056 @p2055) :args (@t893))
% 86.49/86.78  (step @p2058 :rule trans :premises (@p2057 @p1239))
% 86.49/86.78  (step @p2059 :rule cong :premises (@p2058) :args ((not @t893)))
% 86.49/86.78  (step @p2060 :rule trans :premises (@p2059 @p59))
% 86.49/86.78  (step @p2061 :rule arith-elim-lt :args (@t892 @t891))
% 86.49/86.78  (step @p2062 :rule trans :premises (@p2061 @p2060))
% 86.49/86.78  (step @p2063 :rule arith_mult_neg :args (-1 @t847))
% 86.49/86.78  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.78  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.78  (step @p2064 :rule and_intro :premises (@p1192 @p2807))
% 86.49/86.78  (step @p2065 :rule modus_ponens :premises (@p2064 @p2063))
% 86.49/86.78  (step @p2066 :rule arith_sum_ub :premises (@p2809 @p2065))
% 86.49/86.78  (step @p2067 false :rule eq_resolve :premises (@p2066 @p2062))
% 86.49/86.78  (step-pop @p2810 :rule scope :premises (@p2067))
% 86.49/86.78  (step @p2068 :rule process_scope :premises (@p2810) :args (false))
% 86.49/86.78  (step @p2070 :rule eq_resolve :premises (@p2068 @p2051))
% 86.49/86.78  (step-pop @p2811 :rule scope :premises (@p2070))
% 86.49/86.78  (step @p2071 :rule process_scope :premises (@p2811) :args (@t882))
% 86.49/86.78  (step @p2073 :rule modus_ponens :premises (@p2807 @p2071))
% 86.49/86.78  (step-pop @p2812 :rule scope :premises (@p2073))
% 86.49/86.78  (step @p2074 :rule process_scope :premises (@p2812) :args (@t882))
% 86.49/86.78  (step @p2076 :rule implies_elim :premises (@p2074))
% 86.49/86.78  (step @p2077 :rule chain_m_resolution :premises (@p2076 @p2025) :args (@t882 @t145 (@list @t847)))
% 86.49/86.78  (step @p2078 :rule cnf_equiv_pos2 :args (@t889))
% 86.49/86.78  (step @p2079 :rule reordering :premises (@p2078) :args ((or @t887 (not @t882) (not @t889))))
% 86.49/86.78  (step @p2080 :rule chain_m_resolution :premises (@p2079 @p2077 @p2046) :args (@t887 @t881 (@list @t882 @t889)))
% 86.49/86.78  (assume-push @p2813 @t850)
% 86.49/86.78  (assume-push @p2814 @t887)
% 86.49/86.78  (assume-push @p2815 @t887)
% 86.49/86.78  (assume-push @p2816 @t850)
% 86.49/86.78  (step @p2085 :rule true_intro :premises (@p2814))
% 86.49/86.78  (step @p2086 :rule refl :args (@t35))
% 86.49/86.78  (step @p2087 :rule cong :premises (@p2086 @p2813) :args (@t894))
% 86.49/86.78  (step @p2088 :rule trans :premises (@p2087 @p2085))
% 86.49/86.78  (step @p2089 :rule true_elim :premises (@p2088))
% 86.49/86.78  (step-pop @p2817 :rule scope :premises (@p2089))
% 86.49/86.78  (step-pop @p2818 :rule scope :premises (@p2817))
% 86.49/86.78  (step @p2090 :rule process_scope :premises (@p2818) :args (@t894))
% 86.49/86.78  (step @p2093 :rule and_intro :premises (@p2814 @p2813))
% 86.49/86.78  (step @p2094 :rule modus_ponens :premises (@p2093 @p2090))
% 86.49/86.78  (step-pop @p2819 :rule scope :premises (@p2094))
% 86.49/86.78  (step-pop @p2820 :rule scope :premises (@p2819))
% 86.49/86.78  (step @p2095 :rule process_scope :premises (@p2820) :args (@t894))
% 86.49/86.78  (step @p2098 :rule implies_elim :premises (@p2095))
% 86.49/86.78  (step @p2099 :rule cnf_and_neg :args (@t895))
% 86.49/86.78  (step @p2100 :rule resolution :premises (@p2099 @p2098) :args (true @t895))
% 86.49/86.78  (step @p2101 :rule chain_m_resolution :premises (@p2100 @p1998 @p2080) :args (@t894 @t881 (@list @t850 @t887)))
% 86.49/86.78  (step @p2102 :rule eq-symm :args (@t138 @t35))
% 86.49/86.78  (step @p2103 :rule cong :premises (@p2102) :args (@t896))
% 86.49/86.78  (step @p2104 :rule refl :args (@t894))
% 86.49/86.78  (step @p2105 :rule nary_cong :premises (@p2104 @p2103) :args (@t897))
% 86.49/86.78  (step @p2106 :rule refl :args (@t898))
% 86.49/86.78  (step @p2107 :rule cong :premises (@p2106 @p2105) :args (@t899))
% 86.49/86.78  (step @p2108 :rule cong :premises (@p933 @p2107) :args ((=> @t29 @t899)))
% 86.49/86.78  (assume-push @p2821 @t29)
% 86.49/86.78  (step @p2110 :rule instantiate :premises (@p12) :args ((@list @t138 @t35)))
% 86.49/86.78  (step-pop @p2822 :rule scope :premises (@p2110))
% 86.49/86.78  (step @p2111 :rule process_scope :premises (@p2822) :args (@t899))
% 86.49/86.78  (step @p2113 :rule eq_resolve :premises (@p2111 @p2108))
% 86.49/86.78  (step @p2114 :rule implies_elim :premises (@p2113))
% 86.49/86.78  (step @p2115 :rule chain_m_resolution :premises (@p2114 @p12) :args (@t903 @t145 @t583))
% 86.49/86.78  (step @p2116 :rule refl :args (@t343))
% 86.49/86.78  (step @p2117 :rule nary_cong :premises (@p2116 @p411 @p1970) :args ((or @t343 @t337 @t868)))
% 86.49/86.78  (step @p2118 :rule cnf_equiv_pos2 :args (@t342))
% 86.49/86.78  (step @p2119 :rule eq_resolve :premises (@p2118 @p2117))
% 86.49/86.78  (step @p2120 :rule reordering :premises (@p2119) :args ((or @t337 @t136 @t343)))
% 86.49/86.78  (step @p2121 :rule chain_m_resolution :premises (@p2120 @p1968 @p421) :args (@t337 @t904 (@list @t136 @t342)))
% 86.49/86.78  (step @p2122 :rule cnf_and_pos :args (@t384 0))
% 86.49/86.78  (step @p2123 :rule reordering :premises (@p2122) :args ((or @t344 @t385)))
% 86.49/86.78  (step @p2124 :rule chain_m_resolution :premises (@p2123 @p2121) :args (@t385 @t145 (@list @t337)))
% 86.49/86.78  (step @p2125 :rule chain_m_resolution :premises (@p579 @p2124 @p577) :args (@t423 (@list true true) (@list @t384 @t424)))
% 86.49/86.78  (step @p2126 :rule chain_m_resolution :premises (@p690 @p2125 @p688) :args (@t443 @t881 (@list @t423 @t486)))
% 86.49/86.78  (step @p2127 :rule cnf_and_pos :args (@t443 0))
% 86.49/86.78  (step @p2128 :rule reordering :premises (@p2127) :args ((or @t442 @t444)))
% 86.49/86.78  (step @p2129 :rule chain_m_resolution :premises (@p2128 @p2126) :args (@t442 @t145 (@list @t443)))
% 86.49/86.78  (step @p2130 :rule refl :args (@t564))
% 86.49/86.78  (step @p2131 :rule nary_cong :premises (@p2130 @p881 @p895) :args ((or @t564 @t441 @t571)))
% 86.49/86.78  (step @p2132 :rule cnf_equiv_pos2 :args (@t563))
% 86.49/86.78  (step @p2133 :rule eq_resolve :premises (@p2132 @p2131))
% 86.49/86.78  (step @p2134 :rule reordering :premises (@p2133) :args ((or @t441 @t353 @t564)))
% 86.49/86.78  (step @p2135 :rule chain_m_resolution :premises (@p2134 @p2129 @p891) :args (@t353 @t904 (@list @t441 @t563)))
% 86.49/86.78  (step @p2136 :rule eq-symm :args (@t906 @t133))
% 86.49/86.78  (step @p2137 :rule arith_poly_norm :args ((= @t907 @t905)))
% 86.49/86.78  (step @p2138 :rule cong :premises (@p2137) :args (@t908))
% 86.49/86.78  (step @p2139 :rule cong :premises (@p2138 @p436) :args (@t909))
% 86.49/86.78  (step @p2140 :rule trans :premises (@p2139 @p2136))
% 86.49/86.78  (step @p2141 :rule cong :premises (@p2140) :args (@t910))
% 86.49/86.78  (step @p2142 :rule refl :args (@t912))
% 86.49/86.78  (step @p2143 :rule refl :args (@t914))
% 86.49/86.78  (step @p2144 :rule nary_cong :premises (@p2143 @p2142 @p2141) :args (@t915))
% 86.49/86.78  (step @p2145 :rule refl :args (@t353))
% 86.49/86.78  (step @p2146 :rule cong :premises (@p2145 @p2144) :args ((=> @t353 @t915)))
% 86.49/86.78  (assume-push @p2823 @t353)
% 86.49/86.78  (step @p2148 :rule instantiate :premises (@p2823) :args ((@list @t844 @t852)))
% 86.49/86.78  (step-pop @p2824 :rule scope :premises (@p2148))
% 86.49/86.78  (step @p2149 :rule process_scope :premises (@p2824) :args (@t915))
% 86.49/86.78  (step @p2151 :rule eq_resolve :premises (@p2149 @p2146))
% 86.49/86.78  (step @p2152 :rule implies_elim :premises (@p2151))
% 86.49/86.78  (step @p2153 :rule chain_m_resolution :premises (@p2152 @p2135) :args (@t918 @t145 (@list @t353)))
% 86.49/86.78  (step @p2154 :rule arith_poly_norm :args ((= (* 1 (- @t844 @t137)) (* -1 (- @t137 @t844)))))
% 86.49/86.78  (step @p2155 :rule arith_poly_norm_rel :premises (@p2154) :args ((= @t920 @t919)))
% 86.49/86.78  (step @p2156 :rule eq-symm :args (@t849 @t138))
% 86.49/86.78  (step @p2157 :rule cong :premises (@p2156 @p2155) :args (@t921))
% 86.49/86.78  (step @p2158 :rule refl :args (@t14))
% 86.49/86.78  (step @p2159 :rule cong :premises (@p2158 @p2157) :args ((=> @t14 @t921)))
% 86.49/86.78  (assume-push @p2825 @t14)
% 86.49/86.78  (step @p2161 :rule instantiate :premises (@p4) :args ((@list @t844 @t137)))
% 86.49/86.78  (step-pop @p2826 :rule scope :premises (@p2161))
% 86.49/86.78  (step @p2162 :rule process_scope :premises (@p2826) :args (@t921))
% 86.49/86.78  (step @p2164 :rule eq_resolve :premises (@p2162 @p2159))
% 86.49/86.78  (step @p2165 :rule implies_elim :premises (@p2164))
% 86.49/86.78  (step @p2166 :rule chain_m_resolution :premises (@p2165 @p4) :args (@t922 @t145 @t923))
% 86.49/86.78  (step @p2167 :rule cnf_equiv_pos1 :args (@t922))
% 86.49/86.78  (step @p2168 :rule reordering :premises (@p2167) :args ((or @t851 @t919 (not @t922))))
% 86.49/86.78  (step @p2169 :rule chain_m_resolution :premises (@p2168 @p1998 @p2166) :args (@t919 @t881 (@list @t850 @t922)))
% 86.49/86.78  (step @p2170 :rule bool-double-not-elim :args (@t926))
% 86.49/86.78  (step @p2171 :rule arith_poly_norm :args ((= (* -1 (- 0 @t928)) (* -1 (- @t927 1)))))
% 86.49/86.78  (step @p2172 :rule arith_poly_norm_rel :premises (@p2171) :args ((= (>= 0 @t928) (>= @t927 1))))
% 86.49/86.78  (step @p2173 :rule arith-geq-tighten :args (@t925 0))
% 86.49/86.78  (step @p2174 :rule trans :premises (@p2173 @p2172))
% 86.49/86.78  (step @p2175 :rule symm :premises (@p2174))
% 86.49/86.78  (step @p2176 :rule arith_poly_norm :args ((= @t929 @t927)))
% 86.49/86.78  (step @p2177 :rule cong :premises (@p2176 @p34) :args (@t930))
% 86.49/86.78  (step @p2178 :rule trans :premises (@p2177 @p2175))
% 86.49/86.78  (step @p2179 :rule cong :premises (@p2178) :args (@t931))
% 86.49/86.78  (step @p2180 :rule trans :premises (@p2179 @p2170))
% 86.49/86.78  (step @p2181 :rule refl :args (@t932))
% 86.49/86.78  (step @p2182 :rule cong :premises (@p2181 @p2180) :args (@t933))
% 86.49/86.78  (step @p2183 :rule cong :premises (@p43 @p2182) :args ((=> @t144 @t933)))
% 86.49/86.78  (assume-push @p2827 @t144)
% 86.49/86.78  (step @p2185 :rule instantiate :premises (@p30) :args ((@list @t862 @t598)))
% 86.49/86.78  (step-pop @p2828 :rule scope :premises (@p2185))
% 86.49/86.78  (step @p2186 :rule process_scope :premises (@p2828) :args (@t933))
% 86.49/86.78  (step @p2188 :rule eq_resolve :premises (@p2186 @p2183))
% 86.49/86.78  (step @p2189 :rule implies_elim :premises (@p2188))
% 86.49/86.78  (step @p2190 :rule chain_m_resolution :premises (@p2189 @p30) :args (@t934 @t145 @t146))
% 86.49/86.78  (step @p2191 :rule bool-eq-true :args (@t935))
% 86.49/86.78  (step @p2192 :rule arith_poly_norm :args ((= @t936 0)))
% 86.49/86.78  (step @p2193 :rule cong :premises (@p2192 @p34) :args (@t937))
% 86.49/86.78  (step @p2194 :rule trans :premises (@p2193 @p33))
% 86.49/86.78  (step @p2195 :rule cong :premises (@p2194) :args (@t938))
% 86.49/86.78  (step @p2196 :rule trans :premises (@p2195 @p32))
% 86.49/86.78  (step @p2197 :rule refl :args (@t935))
% 86.49/86.78  (step @p2198 :rule cong :premises (@p2197 @p2196) :args (@t939))
% 86.49/86.78  (step @p2199 :rule trans :premises (@p2198 @p2191))
% 86.49/86.78  (step @p2200 :rule cong :premises (@p43 @p2199) :args ((=> @t144 @t939)))
% 86.49/86.78  (assume-push @p2829 @t144)
% 86.49/86.78  (step @p2202 :rule instantiate :premises (@p30) :args ((@list @t862 @t862)))
% 86.49/86.78  (step-pop @p2830 :rule scope :premises (@p2202))
% 86.49/86.78  (step @p2203 :rule process_scope :premises (@p2830) :args (@t939))
% 86.49/86.78  (step @p2205 :rule eq_resolve :premises (@p2203 @p2200))
% 86.49/86.78  (step @p2206 :rule implies_elim :premises (@p2205))
% 86.49/86.78  (step @p2207 :rule chain_m_resolution :premises (@p2206 @p30) :args (@t935 @t145 @t146))
% 86.49/86.78  (step @p2208 :rule bool-double-not-elim :args (@t864))
% 86.49/86.78  (step @p2209 :rule nary_cong :premises (@p1993 @p2208) :args ((or @t866 (not @t865))))
% 86.49/86.78  (step @p2210 :rule cnf_or_neg :args (@t866 0))
% 86.49/86.78  (step @p2211 :rule eq_resolve :premises (@p2210 @p2209))
% 86.49/86.78  (step @p2212 :rule reordering :premises (@p2211) :args ((or @t864 @t866)))
% 86.49/86.78  (step @p2213 :rule chain_m_resolution :premises (@p2212 @p1991) :args (@t864 @t434 @t872))
% 86.49/86.78  (assume-push @p2831 @t606)
% 86.49/86.78  (assume-push @p2832 @t864)
% 86.49/86.78  (assume-push @p2833 @t935)
% 86.49/86.78  (assume-push @p2834 @t935)
% 86.49/86.78  (assume-push @p2835 @t864)
% 86.49/86.78  (assume-push @p2836 @t606)
% 86.49/86.78  (step @p2220 :rule true_intro :premises (@p2207))
% 86.49/86.78  (step @p1009 :rule symm :premises (@p1001))
% 86.49/86.78  (step @p2221 :rule trans :premises (@p1009 @p2832))
% 86.49/86.78  (step @p2222 :rule refl :args (@t863))
% 86.49/86.78  (step @p2223 :rule cong :premises (@p2222 @p2221) :args (@t932))
% 86.49/86.78  (step @p2224 :rule trans :premises (@p2223 @p2220))
% 86.49/86.78  (step @p2225 :rule true_elim :premises (@p2224))
% 86.49/86.78  (step-pop @p2837 :rule scope :premises (@p2225))
% 86.49/86.78  (step-pop @p2838 :rule scope :premises (@p2837))
% 86.49/86.78  (step-pop @p2839 :rule scope :premises (@p2838))
% 86.49/86.78  (step @p2226 :rule process_scope :premises (@p2839) :args (@t932))
% 86.49/86.78  (step @p2230 :rule and_intro :premises (@p2207 @p2832 @p1001))
% 86.49/86.78  (step @p2231 :rule modus_ponens :premises (@p2230 @p2226))
% 86.49/86.78  (step-pop @p2840 :rule scope :premises (@p2231))
% 86.49/86.78  (step-pop @p2841 :rule scope :premises (@p2840))
% 86.49/86.78  (step-pop @p2842 :rule scope :premises (@p2841))
% 86.49/86.78  (step @p2232 :rule process_scope :premises (@p2842) :args (@t932))
% 86.49/86.78  (step @p2236 :rule implies_elim :premises (@p2232))
% 86.49/86.78  (step @p2237 :rule cnf_and_neg :args (@t940))
% 86.49/86.78  (step @p2238 :rule resolution :premises (@p2237 @p2236) :args (true @t940))
% 86.49/86.78  (step @p2239 :rule reordering :premises (@p2238) :args ((or @t607 @t865 @t932 (not @t935))))
% 86.49/86.78  (step @p2240 :rule chain_m_resolution :premises (@p2239 @p1001 @p2213 @p2207) :args (@t932 @t941 (@list @t606 @t864 @t935)))
% 86.49/86.78  (step @p2241 :rule cnf_equiv_pos1 :args (@t934))
% 86.49/86.78  (step @p2242 :rule reordering :premises (@p2241) :args ((or @t926 (not @t932) (not @t934))))
% 86.49/86.78  (step @p2243 :rule chain_m_resolution :premises (@p2242 @p2240 @p2190) :args (@t926 @t881 (@list @t932 @t934)))
% 86.49/86.78  (step @p2244 :rule instantiate :premises (@p30) :args ((@list @t598 @t862)))
% 86.49/86.78  (assume-push @p2843 @t606)
% 86.49/86.78  (assume-push @p2844 @t864)
% 86.49/86.78  (assume-push @p2845 @t616)
% 86.49/86.78  (assume-push @p2846 @t616)
% 86.49/86.78  (assume-push @p2847 @t606)
% 86.49/86.78  (assume-push @p2848 @t864)
% 86.49/86.78  (step @p1051 :rule true_intro :premises (@p1044))
% 86.49/86.78  (step @p2251 :rule symm :premises (@p2844))
% 86.49/86.78  (step @p2252 :rule trans :premises (@p2251 @p1001))
% 86.49/86.78  (step @p1054 :rule refl :args (@t605))
% 86.49/86.78  (step @p2253 :rule cong :premises (@p1054 @p2252) :args (@t942))
% 86.49/86.78  (step @p2254 :rule trans :premises (@p2253 @p1051))
% 86.49/86.78  (step @p2255 :rule true_elim :premises (@p2254))
% 86.49/86.78  (step-pop @p2849 :rule scope :premises (@p2255))
% 86.49/86.78  (step-pop @p2850 :rule scope :premises (@p2849))
% 86.49/86.78  (step-pop @p2851 :rule scope :premises (@p2850))
% 86.49/86.78  (step @p2256 :rule process_scope :premises (@p2851) :args (@t942))
% 86.49/86.78  (step @p2260 :rule and_intro :premises (@p1044 @p1001 @p2844))
% 86.49/86.78  (step @p2261 :rule modus_ponens :premises (@p2260 @p2256))
% 86.49/86.78  (step-pop @p2852 :rule scope :premises (@p2261))
% 86.49/86.78  (step-pop @p2853 :rule scope :premises (@p2852))
% 86.49/86.78  (step-pop @p2854 :rule scope :premises (@p2853))
% 86.49/86.78  (step @p2262 :rule process_scope :premises (@p2854) :args (@t942))
% 86.49/86.78  (step @p2266 :rule implies_elim :premises (@p2262))
% 86.49/86.78  (step @p2267 :rule cnf_and_neg :args (@t943))
% 86.49/86.78  (step @p2268 :rule resolution :premises (@p2267 @p2266) :args (true @t943))
% 86.49/86.78  (step @p2269 :rule chain_m_resolution :premises (@p2268 @p1001 @p2213 @p1044) :args (@t942 @t941 (@list @t606 @t864 @t616)))
% 86.49/86.78  (step @p2270 :rule cnf_equiv_pos1 :args (@t946))
% 86.49/86.78  (step @p2271 :rule reordering :premises (@p2270) :args ((or @t945 (not @t942) (not @t946))))
% 86.49/86.78  (step @p2272 :rule chain_m_resolution :premises (@p2271 @p2269 @p2244) :args (@t945 @t881 (@list @t942 @t946)))
% 86.49/86.78  (step @p2273 :rule arith_poly_norm :args ((= (* 1 (- @t852 @t858)) (* -1 @t947))))
% 86.49/86.78  (step @p2274 :rule arith_poly_norm_rel :premises (@p2273) :args ((= @t949 @t948)))
% 86.49/86.78  (step @p2275 :rule eq-symm :args (@t857 @t859))
% 86.49/86.78  (step @p2276 :rule cong :premises (@p2275 @p2274) :args (@t950))
% 86.49/86.78  (step @p2277 :rule cong :premises (@p2158 @p2276) :args ((=> @t14 @t950)))
% 86.49/86.78  (assume-push @p2855 @t14)
% 86.49/86.78  (step @p2279 :rule instantiate :premises (@p4) :args ((@list @t852 @t858)))
% 86.49/86.78  (step-pop @p2856 :rule scope :premises (@p2279))
% 86.49/86.78  (step @p2280 :rule process_scope :premises (@p2856) :args (@t950))
% 86.49/86.78  (step @p2282 :rule eq_resolve :premises (@p2280 @p2277))
% 86.49/86.78  (step @p2283 :rule implies_elim :premises (@p2282))
% 86.49/86.78  (step @p2284 :rule chain_m_resolution :premises (@p2283 @p4) :args (@t951 @t145 @t923))
% 86.49/86.78  (step @p2285 :rule bool-double-not-elim :args (@t860))
% 86.49/86.78  (step @p2286 :rule nary_cong :premises (@p1993 @p2285) :args ((or @t866 (not @t861))))
% 86.49/86.78  (step @p2287 :rule cnf_or_neg :args (@t866 1))
% 86.49/86.78  (step @p2288 :rule eq_resolve :premises (@p2287 @p2286))
% 86.49/86.78  (step @p2289 :rule reordering :premises (@p2288) :args ((or @t860 @t866)))
% 86.49/86.78  (step @p2290 :rule chain_m_resolution :premises (@p2289 @p1991) :args (@t860 @t434 @t872))
% 86.49/86.78  (step @p2291 :rule cnf_equiv_pos1 :args (@t951))
% 86.49/86.78  (step @p2292 :rule reordering :premises (@p2291) :args ((or @t861 @t948 (not @t951))))
% 86.49/86.78  (step @p2293 :rule chain_m_resolution :premises (@p2292 @p2290 @p2284) :args (@t948 @t881 (@list @t860 @t951)))
% 86.49/86.78  (step @p2294 :rule refl :args (@t916))
% 86.49/86.78  (step @p2295 :rule refl :args (@t952))
% 86.49/86.78  (step @p2296 :rule refl :args (@t953))
% 86.49/86.78  (step @p2297 :rule bool-double-not-elim :args (@t944))
% 86.49/86.78  (step @p2298 :rule refl :args (@t954))
% 86.49/86.78  (step @p2299 :rule nary_cong :premises (@p1939 @p2298 @p2297 @p2296 @p2295 @p2294) :args ((or @t607 @t954 (not @t945) @t953 @t952 @t916)))
% 86.49/86.78  (assume-push @p2857 @t606)
% 86.49/86.78  (assume-push @p2858 @t948)
% 86.49/86.78  (assume-push @p2859 @t945)
% 86.49/86.78  (assume-push @p2860 @t926)
% 86.49/86.78  (assume-push @p2861 @t919)
% 86.49/86.78  (assume-push @p2862 @t955)
% 86.49/86.78  (assume-push @p2863 @t606)
% 86.49/86.78  (step @p2307 :rule cong :premises (@p2862) :args (@t605))
% 86.49/86.78  (step @p2308 :rule trans :premises (@p1001 @p2307))
% 86.49/86.78  (step-pop @p2864 :rule scope :premises (@p2308))
% 86.49/86.78  (step-pop @p2865 :rule scope :premises (@p2864))
% 86.49/86.78  (step @p2309 :rule process_scope :premises (@p2865) :args (@t916))
% 86.49/86.78  (assume-push @p2866 @t948)
% 86.49/86.78  (assume-push @p2867 @t919)
% 86.49/86.78  (assume-push @p2868 @t926)
% 86.49/86.78  (assume-push @p2869 @t945)
% 86.49/86.78  (step @p2316 :rule nary_cong :premises (@p2858 @p2861) :args (@t862))
% 86.49/86.78  (step @p2317 :rule arith_poly_norm :args ((= (* 1 (- @t925 0)) (* 1 (- @t598 @t862)))))
% 86.49/86.78  (step @p2318 :rule arith_poly_norm_rel :premises (@p2317) :args ((= (= @t925 0) (= @t598 @t862))))
% 86.49/86.79  (step @p2319 :rule arith-elim-lt :args (@t925 1))
% 86.49/86.79  (step @p2320 :rule symm :premises (@p2319))
% 86.49/86.79  (step @p2321 :rule eq_resolve :premises (@p2859 @p2320))
% 86.49/86.79  (step @p2322 :rule int_tight_ub :premises (@p2321))
% 86.49/86.79  (step @p2323 :rule arith_trichotomy :premises (@p2860 @p2322))
% 86.49/86.79  (step @p2324 :rule eq_resolve :premises (@p2323 @p2318))
% 86.49/86.79  (step @p2325 :rule trans :premises (@p2324 @p2316))
% 86.49/86.79  (step-pop @p2870 :rule scope :premises (@p2325))
% 86.49/86.79  (step-pop @p2871 :rule scope :premises (@p2870))
% 86.49/86.79  (step-pop @p2872 :rule scope :premises (@p2871))
% 86.49/86.79  (step-pop @p2873 :rule scope :premises (@p2872))
% 86.49/86.79  (step @p2326 :rule process_scope :premises (@p2873) :args (@t955))
% 86.49/86.79  (step @p2331 :rule and_intro :premises (@p2858 @p2861 @p2860 @p2859))
% 86.49/86.79  (step @p2332 :rule modus_ponens :premises (@p2331 @p2326))
% 86.49/86.79  (step @p2333 :rule and_intro :premises (@p2332 @p1001))
% 86.49/86.79  (step @p2334 :rule modus_ponens :premises (@p2333 @p2309))
% 86.49/86.79  (step-pop @p2874 :rule scope :premises (@p2334))
% 86.49/86.79  (step-pop @p2875 :rule scope :premises (@p2874))
% 86.49/86.79  (step-pop @p2876 :rule scope :premises (@p2875))
% 86.49/86.79  (step-pop @p2877 :rule scope :premises (@p2876))
% 86.49/86.79  (step-pop @p2878 :rule scope :premises (@p2877))
% 86.49/86.79  (step @p2335 :rule process_scope :premises (@p2878) :args (@t916))
% 86.49/86.79  (step @p2341 :rule implies_elim :premises (@p2335))
% 86.49/86.79  (step @p2342 :rule cnf_and_neg :args (@t956))
% 86.49/86.79  (step @p2343 :rule resolution :premises (@p2342 @p2341) :args (true @t956))
% 86.49/86.79  (step @p2344 :rule eq_resolve :premises (@p2343 @p2299))
% 86.49/86.79  (step @p2345 :rule chain_m_resolution :premises (@p2344 @p1001 @p2293 @p2272 @p2243 @p2169) :args (@t916 (@list false false true false false) (@list @t606 @t948 @t944 @t926 @t919)))
% 86.49/86.79  (step @p2346 :rule eq-symm :args (@t857 @t35))
% 86.49/86.79  (step @p2347 :rule cong :premises (@p2346) :args (@t957))
% 86.49/86.79  (step @p2348 :rule refl :args (@t958))
% 86.49/86.79  (step @p2349 :rule nary_cong :premises (@p2348 @p2347) :args (@t959))
% 86.49/86.79  (step @p2350 :rule refl :args (@t911))
% 86.49/86.79  (step @p2351 :rule cong :premises (@p2350 @p2349) :args (@t960))
% 86.49/86.79  (step @p2352 :rule cong :premises (@p933 @p2351) :args ((=> @t29 @t960)))
% 86.49/86.79  (assume-push @p2879 @t29)
% 86.49/86.79  (step @p2354 :rule instantiate :premises (@p12) :args ((@list @t857 @t35)))
% 86.49/86.79  (step-pop @p2880 :rule scope :premises (@p2354))
% 86.49/86.79  (step @p2355 :rule process_scope :premises (@p2880) :args (@t960))
% 86.49/86.79  (step @p2357 :rule eq_resolve :premises (@p2355 @p2352))
% 86.49/86.79  (step @p2358 :rule implies_elim :premises (@p2357))
% 86.49/86.79  (step @p2359 :rule chain_m_resolution :premises (@p2358 @p12) :args (@t964 @t145 @t583))
% 86.49/86.79  (step @p2360 :rule bool-double-not-elim :args (@t965))
% 86.49/86.79  (step @p2361 :rule arith_poly_norm :args ((= (* -1 (- 1 @t968)) (* -1 (- @t967 1)))))
% 86.49/86.79  (step @p2362 :rule arith_poly_norm_rel :premises (@p2361) :args ((= (>= 1 @t968) @t969)))
% 86.49/86.79  (step @p2363 :rule arith-geq-tighten :args (@t858 1))
% 86.49/86.79  (step @p2364 :rule trans :premises (@p2363 @p2362))
% 86.49/86.79  (step @p2365 :rule symm :premises (@p2364))
% 86.49/86.79  (step @p2366 :rule cong :premises (@p2365) :args (@t970))
% 86.49/86.79  (step @p2367 :rule trans :premises (@p2366 @p2360))
% 86.49/86.79  (step @p2368 :rule refl :args (@t971))
% 86.49/86.79  (step @p2369 :rule cong :premises (@p2368 @p2367) :args (@t972))
% 86.49/86.79  (step @p2370 :rule cong :premises (@p43 @p2369) :args ((=> @t144 @t972)))
% 86.49/86.79  (assume-push @p2881 @t144)
% 86.49/86.79  (step @p2372 :rule instantiate :premises (@p30) :args ((@list 1 @t858)))
% 86.49/86.79  (step-pop @p2882 :rule scope :premises (@p2372))
% 86.49/86.79  (step @p2373 :rule process_scope :premises (@p2882) :args (@t972))
% 86.49/86.79  (step @p2375 :rule eq_resolve :premises (@p2373 @p2370))
% 86.49/86.79  (step @p2376 :rule implies_elim :premises (@p2375))
% 86.49/86.79  (step @p2377 :rule chain_m_resolution :premises (@p2376 @p30) :args (@t973 @t145 @t146))
% 86.49/86.79  (step @p2378 :rule bool-double-not-elim :args (@t855))
% 86.49/86.79  (step @p2379 :rule nary_cong :premises (@p1993 @p2378) :args ((or @t866 (not @t856))))
% 86.49/86.79  (step @p2380 :rule cnf_or_neg :args (@t866 2))
% 86.49/86.79  (step @p2381 :rule eq_resolve :premises (@p2380 @p2379))
% 86.49/86.79  (step @p2382 :rule reordering :premises (@p2381) :args ((or @t855 @t866)))
% 86.49/86.79  (step @p2383 :rule chain_m_resolution :premises (@p2382 @p1991) :args (@t855 @t434 @t872))
% 86.49/86.79  (step @p2384 :rule bool-double-not-elim :args (@t974))
% 86.49/86.79  (step @p2385 :rule nary_cong :premises (@p1976 @p2298 @p2384) :args ((or @t856 @t954 (not @t975))))
% 86.49/86.79  (assume-push @p2883 @t855)
% 86.49/86.79  (assume-push @p2884 @t948)
% 86.49/86.79  (assume-push @p2885 @t975)
% 86.49/86.79  (step @p1170 :rule evaluate :args (@t663))
% 86.49/86.79  (step @p1171 :rule evaluate :args (@t664))
% 86.49/86.79  (step @p1847 :rule evaluate :args (@t822))
% 86.49/86.79  (step @p1173 :rule evaluate :args (@t665))
% 86.49/86.79  (step @p1174 :rule refl :args (2))
% 86.49/86.79  (step @p2389 :rule nary_cong :premises (@p1174 @p1173 @p1847) :args (@t976))
% 86.49/86.79  (step @p2390 :rule trans :premises (@p2389 @p1171))
% 86.49/86.79  (step @p2391 :rule arith_poly_norm :args ((= (+ @t858 @t853 @t977) 0)))
% 86.49/86.79  (step @p2392 :rule arith_poly_norm :args ((= @t979 @t977)))
% 86.49/86.79  (step @p2393 :rule refl :args (@t853))
% 86.49/86.79  (step @p2394 :rule refl :args (@t858))
% 86.49/86.79  (step @p2395 :rule nary_cong :premises (@p2394 @p2393 @p2392) :args (@t980))
% 86.49/86.79  (step @p2396 :rule trans :premises (@p2395 @p2391))
% 86.49/86.79  (step @p2397 :rule cong :premises (@p2396 @p2390) :args (@t981))
% 86.49/86.79  (step @p2398 :rule trans :premises (@p2397 @p1170))
% 86.49/86.79  (step @p2399 :rule cong :premises (@p2398) :args ((not @t981)))
% 86.49/86.79  (step @p2400 :rule trans :premises (@p2399 @p59))
% 86.49/86.79  (step @p2401 :rule arith-elim-lt :args (@t980 @t976))
% 86.49/86.79  (step @p2402 :rule trans :premises (@p2401 @p2400))
% 86.49/86.79  (step @p2403 :rule arith_mult_neg :args (-1 @t982))
% 86.49/86.79  (step @p2404 :rule arith_poly_norm :args ((= (* 1 (- @t978 0)) (* 1 @t947))))
% 86.49/86.79  (step @p2405 :rule arith_poly_norm_rel :premises (@p2404) :args ((= @t982 @t948)))
% 86.49/86.79  (step @p2406 :rule symm :premises (@p2405))
% 86.49/86.79  (step @p2407 :rule eq_resolve :premises (@p2884 @p2406))
% 86.49/86.79  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.79  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.79  (step @p2408 :rule and_intro :premises (@p1192 @p2407))
% 86.49/86.79  (step @p2409 :rule modus_ponens :premises (@p2408 @p2403))
% 86.49/86.79  (step @p2410 :rule arith_mult_neg :args (-1 @t855))
% 86.49/86.79  (step @p2411 :rule and_intro :premises (@p1192 @p2883))
% 86.49/86.79  (step @p2412 :rule modus_ponens :premises (@p2411 @p2410))
% 86.49/86.79  (step @p2413 :rule arith-elim-lt :args (@t858 2))
% 86.49/86.79  (step @p2414 :rule symm :premises (@p2413))
% 86.49/86.79  (step @p2415 :rule eq_resolve :premises (@p2885 @p2414))
% 86.49/86.79  (step @p2416 :rule arith_sum_ub :premises (@p2415 @p2412 @p2409))
% 86.49/86.79  (step @p2417 false :rule eq_resolve :premises (@p2416 @p2402))
% 86.49/86.79  (step-pop @p2886 :rule scope :premises (@p2417))
% 86.49/86.79  (step-pop @p2887 :rule scope :premises (@p2886))
% 86.49/86.79  (step-pop @p2888 :rule scope :premises (@p2887))
% 86.49/86.79  (step @p2418 :rule process_scope :premises (@p2888) :args (false))
% 86.49/86.79  (step @p2422 :rule not_and :premises (@p2418))
% 86.49/86.79  (step @p2423 :rule eq_resolve :premises (@p2422 @p2385))
% 86.49/86.79  (step @p2424 :rule reordering :premises (@p2423) :args ((or @t856 @t974 @t954)))
% 86.49/86.79  (step @p2425 :rule chain_m_resolution :premises (@p2424 @p2383 @p2293) :args (@t974 @t881 (@list @t855 @t948)))
% 86.49/86.79  (step @p2426 :rule refl :args (@t965))
% 86.49/86.79  (step @p2427 :rule refl :args (@t858))
% 86.49/86.79  (step @p2428 :rule cong :premises (@p2427 @p1496) :args (@t983))
% 86.49/86.79  (step @p2429 :rule cong :premises (@p2428) :args ((not @t983)))
% 86.49/86.79  (step @p2430 :rule arith-leq-norm :args (@t858 1))
% 86.49/86.79  (step @p2431 :rule trans :premises (@p2430 @p2429))
% 86.49/86.79  (step @p2432 :rule nary_cong :premises (@p2431 @p2426) :args ((or @t984 @t965)))
% 86.49/86.79  (step @p2433 :rule symm :premises (@p2432))
% 86.49/86.79  (step @p2434 :rule bool-double-not-elim :args (@t984))
% 86.49/86.79  (step @p2435 :rule trans :premises (@p2434 @p2431))
% 86.49/86.79  (step @p2436 :rule nary_cong :premises (@p2435 @p2360) :args ((or (not @t986) (not @t985))))
% 86.49/86.79  (step @p2437 :rule trans :premises (@p2436 @p2433))
% 86.49/86.79  (assume-push @p2889 @t986)
% 86.49/86.79  (assume-push @p2890 @t985)
% 86.49/86.79  (step @p1170 :rule evaluate :args (@t663))
% 86.49/86.79  (step @p2440 :rule nary_cong :premises (@p1212 @p34) :args (@t987))
% 86.49/86.79  (step @p2441 :rule trans :premises (@p2440 @p1480))
% 86.49/86.79  (step @p2442 :rule arith_poly_norm :args ((= @t988 0)))
% 86.49/86.79  (step @p2443 :rule cong :premises (@p2442 @p2441) :args (@t989))
% 86.49/86.79  (step @p2444 :rule trans :premises (@p2443 @p1170))
% 86.49/86.79  (step @p2445 :rule cong :premises (@p2444) :args ((not @t989)))
% 86.49/86.79  (step @p2446 :rule trans :premises (@p2445 @p59))
% 86.49/86.79  (step @p2447 :rule arith-elim-lt :args (@t988 @t987))
% 86.49/86.79  (step @p2448 :rule trans :premises (@p2447 @p2446))
% 86.49/86.79  (step @p2449 :rule arith-elim-lt :args (@t858 1))
% 86.49/86.79  (step @p2450 :rule symm :premises (@p2449))
% 86.49/86.79  (step @p2451 :rule eq_resolve :premises (@p2890 @p2450))
% 86.49/86.79  (step @p2452 :rule arith_mult_neg :args (-1 (> @t858 1)))
% 86.49/86.79  (step @p2453 :rule cong :premises (@p2431) :args (@t986))
% 86.49/86.79  (step @p2454 :rule trans :premises (@p2453 @p2384))
% 86.49/86.79  (step @p2455 :rule arith-elim-leq :args (@t858 1))
% 86.49/86.79  (step @p2456 :rule symm :premises (@p2455))
% 86.49/86.79  (step @p2457 :rule cong :premises (@p2456) :args ((not (>= 1 @t858))))
% 86.49/86.79  (step @p2458 :rule arith-elim-gt :args (@t858 1))
% 86.49/86.79  (step @p2459 :rule trans :premises (@p2458 @p2457))
% 86.49/86.79  (step @p2460 :rule trans :premises (@p2459 @p2454))
% 86.49/86.79  (step @p2461 :rule symm :premises (@p2460))
% 86.49/86.79  (step @p2462 :rule trans :premises (@p2454 @p2461))
% 86.49/86.79  (step @p2463 :rule eq_resolve :premises (@p2889 @p2462))
% 86.49/86.79  (step @p1191 :rule evaluate :args (@t670))
% 86.49/86.79  (step @p1192 :rule true_elim :premises (@p1191))
% 86.49/86.79  (step @p2464 :rule and_intro :premises (@p1192 @p2463))
% 86.49/86.79  (step @p2465 :rule modus_ponens :premises (@p2464 @p2452))
% 86.49/86.79  (step @p2466 :rule arith_sum_ub :premises (@p2465 @p2451))
% 86.49/86.79  (step @p2467 false :rule eq_resolve :premises (@p2466 @p2448))
% 86.49/86.79  (step-pop @p2891 :rule scope :premises (@p2467))
% 86.49/86.79  (step-pop @p2892 :rule scope :premises (@p2891))
% 86.49/86.79  (step @p2468 :rule process_scope :premises (@p2892) :args (false))
% 86.49/86.79  (step @p2471 :rule not_and :premises (@p2468))
% 86.49/86.79  (step @p2472 :rule eq_resolve :premises (@p2471 @p2437))
% 86.49/86.79  (step @p2473 :rule eq_resolve :premises (@p2472 @p2432))
% 86.49/86.79  (step @p2474 :rule reordering :premises (@p2473) :args ((or @t965 @t975)))
% 86.49/86.79  (step @p2475 :rule chain_m_resolution :premises (@p2474 @p2425) :args (@t965 @t145 (@list @t974)))
% 86.49/86.79  (step @p2476 :rule cnf_equiv_pos2 :args (@t973))
% 86.49/86.79  (step @p2477 :rule reordering :premises (@p2476) :args ((or @t971 @t985 (not @t973))))
% 86.49/86.79  (step @p2478 :rule chain_m_resolution :premises (@p2477 @p2475 @p2377) :args (@t971 @t881 (@list @t965 @t973)))
% 86.49/86.79  (assume-push @p2893 @t860)
% 86.49/86.79  (assume-push @p2894 @t971)
% 86.49/86.79  (assume-push @p2895 @t971)
% 86.49/86.79  (assume-push @p2896 @t860)
% 86.49/86.79  (step @p2483 :rule true_intro :premises (@p2894))
% 86.49/86.79  (step @p2484 :rule symm :premises (@p2893))
% 86.49/86.79  (step @p2086 :rule refl :args (@t35))
% 86.49/86.79  (step @p2485 :rule cong :premises (@p2086 @p2484) :args (@t958))
% 86.49/86.79  (step @p2486 :rule trans :premises (@p2485 @p2483))
% 86.49/86.79  (step @p2487 :rule true_elim :premises (@p2486))
% 86.49/86.79  (step-pop @p2897 :rule scope :premises (@p2487))
% 86.49/86.79  (step-pop @p2898 :rule scope :premises (@p2897))
% 86.49/86.79  (step @p2488 :rule process_scope :premises (@p2898) :args (@t958))
% 86.49/86.79  (step @p2491 :rule and_intro :premises (@p2894 @p2893))
% 86.49/86.79  (step @p2492 :rule modus_ponens :premises (@p2491 @p2488))
% 86.49/86.79  (step-pop @p2899 :rule scope :premises (@p2492))
% 86.49/86.79  (step-pop @p2900 :rule scope :premises (@p2899))
% 86.49/86.79  (step @p2493 :rule process_scope :premises (@p2900) :args (@t958))
% 86.49/86.79  (step @p2496 :rule implies_elim :premises (@p2493))
% 86.49/86.79  (step @p2497 :rule cnf_and_neg :args (@t990))
% 86.49/86.79  (step @p2498 :rule resolution :premises (@p2497 @p2496) :args (true @t990))
% 86.49/86.79  (step @p2499 :rule chain_m_resolution :premises (@p2498 @p2478 @p2290) :args (@t958 @t881 (@list @t971 @t860)))
% 86.49/86.79  (step @p2500 :rule bool-eq-true :args (@t991))
% 86.49/86.79  (step @p2501 :rule arith_poly_norm :args ((= @t992 0)))
% 86.49/86.79  (step @p2502 :rule cong :premises (@p2501 @p34) :args (@t993))
% 86.49/86.79  (step @p2503 :rule trans :premises (@p2502 @p33))
% 86.49/86.79  (step @p2504 :rule cong :premises (@p2503) :args (@t994))
% 86.49/86.79  (step @p2505 :rule trans :premises (@p2504 @p32))
% 86.49/86.79  (step @p2506 :rule refl :args (@t991))
% 86.49/86.79  (step @p2507 :rule cong :premises (@p2506 @p2505) :args (@t995))
% 86.49/86.79  (step @p2508 :rule trans :premises (@p2507 @p2500))
% 86.49/86.79  (step @p2509 :rule cong :premises (@p43 @p2508) :args ((=> @t144 @t995)))
% 86.49/86.79  (assume-push @p2901 @t144)
% 86.49/86.79  (step @p2511 :rule instantiate :premises (@p30) :args ((@list @t858 @t858)))
% 86.49/86.79  (step-pop @p2902 :rule scope :premises (@p2511))
% 86.49/86.79  (step @p2512 :rule process_scope :premises (@p2902) :args (@t995))
% 86.49/86.79  (step @p2514 :rule eq_resolve :premises (@p2512 @p2509))
% 86.49/86.79  (step @p2515 :rule implies_elim :premises (@p2514))
% 86.49/86.79  (step @p2516 :rule chain_m_resolution :premises (@p2515 @p30) :args (@t991 @t145 @t146))
% 86.49/86.79  (step @p2517 :rule arith_poly_norm :args ((= (* -2 (- @t996 1)) (* -2 (- @t858 2)))))
% 86.49/86.79  (step @p2518 :rule arith_poly_norm_rel :premises (@p2517) :args ((= (>= @t996 1) @t974)))
% 86.49/86.79  (step @p2519 :rule arith_poly_norm :args ((= (+ @t858 -1) @t996)))
% 86.49/86.79  (step @p2394 :rule refl :args (@t858))
% 86.49/86.79  (step @p2520 :rule nary_cong :premises (@p2394 @p1212) :args (@t997))
% 86.49/86.79  (step @p2521 :rule trans :premises (@p2520 @p2519))
% 86.49/86.79  (step @p2522 :rule cong :premises (@p2521 @p34) :args (@t998))
% 86.49/86.79  (step @p2523 :rule trans :premises (@p2522 @p2518))
% 86.49/86.79  (step @p2524 :rule cong :premises (@p2523) :args (@t999))
% 86.49/86.79  (step @p2525 :rule refl :args (@t1000))
% 86.49/86.79  (step @p2526 :rule cong :premises (@p2525 @p2524) :args (@t1001))
% 86.49/86.79  (step @p2527 :rule cong :premises (@p43 @p2526) :args ((=> @t144 @t1001)))
% 86.49/86.79  (assume-push @p2903 @t144)
% 86.49/86.79  (step @p2529 :rule instantiate :premises (@p30) :args ((@list @t858 1)))
% 86.49/86.79  (step-pop @p2904 :rule scope :premises (@p2529))
% 86.49/86.79  (step @p2530 :rule process_scope :premises (@p2904) :args (@t1001))
% 86.49/86.79  (step @p2532 :rule eq_resolve :premises (@p2530 @p2527))
% 86.49/86.79  (step @p2533 :rule implies_elim :premises (@p2532))
% 86.49/86.79  (step @p2534 :rule chain_m_resolution :premises (@p2533 @p30) :args (@t1002 @t145 @t146))
% 86.49/86.79  (step @p2535 :rule cnf_equiv_pos1 :args (@t1002))
% 86.49/86.79  (step @p2536 :rule reordering :premises (@p2535) :args ((or @t975 @t1003 (not @t1002))))
% 86.49/86.79  (step @p2537 :rule chain_m_resolution :premises (@p2536 @p2425 @p2534) :args (@t1003 @t881 (@list @t974 @t1002)))
% 86.49/86.79  (step @p2538 :rule refl :args (@t962))
% 86.49/86.79  (step @p2539 :rule bool-double-not-elim :args (@t1000))
% 86.49/86.79  (step @p2540 :rule refl :args (@t1004))
% 86.49/86.79  (step @p2541 :rule nary_cong :premises (@p1977 @p2540 @p2539 @p2538) :args ((or @t861 @t1004 (not @t1003) @t962)))
% 86.49/86.79  (assume-push @p2905 @t991)
% 86.49/86.79  (assume-push @p2906 @t860)
% 86.49/86.79  (assume-push @p2907 @t961)
% 86.49/86.79  (assume-push @p2908 @t1003)
% 86.49/86.79  (step @p2546 :rule evaluate :args (@t1005))
% 86.49/86.79  (step @p2547 :rule true_intro :premises (@p2516))
% 86.49/86.79  (step @p2548 :rule symm :premises (@p2906))
% 86.49/86.79  (step @p2549 :rule trans :premises (@p2907 @p2548))
% 86.49/86.79  (step @p2550 :rule refl :args (@t859))
% 86.49/86.79  (step @p2551 :rule cong :premises (@p2550 @p2549) :args (@t1000))
% 86.49/86.79  (step @p2552 :rule false_intro :premises (@p2908))
% 86.49/86.79  (step @p2553 :rule symm :premises (@p2552))
% 86.49/86.79  (step @p2554 :rule trans :premises (@p2553 @p2551 @p2547))
% 86.49/86.79  (step @p2555 false :rule eq_resolve :premises (@p2554 @p2546))
% 86.49/86.79  (step-pop @p2909 :rule scope :premises (@p2555))
% 86.49/86.79  (step-pop @p2910 :rule scope :premises (@p2909))
% 86.49/86.79  (step-pop @p2911 :rule scope :premises (@p2910))
% 86.49/86.79  (step-pop @p2912 :rule scope :premises (@p2911))
% 86.49/86.79  (step @p2556 :rule process_scope :premises (@p2912) :args (false))
% 86.49/86.79  (assume-push @p2913 @t860)
% 86.49/86.79  (assume-push @p2914 @t991)
% 86.49/86.79  (assume-push @p2915 @t1003)
% 86.49/86.79  (assume-push @p2916 @t961)
% 86.49/86.79  (step @p2565 :rule and_intro :premises (@p2516 @p2913 @p2916 @p2915))
% 86.49/86.79  (step-pop @p2917 :rule scope :premises (@p2565))
% 86.49/86.79  (step-pop @p2918 :rule scope :premises (@p2917))
% 86.49/86.79  (step-pop @p2919 :rule scope :premises (@p2918))
% 86.49/86.79  (step-pop @p2920 :rule scope :premises (@p2919))
% 86.49/86.79  (step @p2566 :rule process_scope :premises (@p2920) :args (@t1006))
% 86.49/86.79  (step @p2571 :rule implies_elim :premises (@p2566))
% 86.49/86.79  (step @p2572 :rule resolution :premises (@p2571 @p2556) :args (true @t1006))
% 86.49/86.79  (step @p2573 :rule not_and :premises (@p2572))
% 86.49/86.79  (step @p2574 :rule eq_resolve :premises (@p2573 @p2541))
% 86.49/86.79  (step @p2575 :rule reordering :premises (@p2574) :args ((or @t861 @t1000 @t1004 @t962)))
% 86.49/86.79  (step @p2576 :rule chain_m_resolution :premises (@p2575 @p2290 @p2537 @p2516) :args (@t962 (@list false true false) (@list @t860 @t1000 @t991)))
% 86.49/86.79  (step @p2577 :rule bool-double-not-elim :args (@t961))
% 86.49/86.79  (step @p2578 :rule refl :args (@t1007))
% 86.49/86.79  (step @p2579 :rule refl :args (@t963))
% 86.49/86.79  (step @p2580 :rule nary_cong :premises (@p2579 @p2578 @p2577) :args ((or @t963 @t1007 (not @t962))))
% 86.49/86.79  (step @p2581 :rule cnf_and_neg :args (@t963))
% 86.49/86.79  (step @p2582 :rule eq_resolve :premises (@p2581 @p2580))
% 86.49/86.79  (step @p2583 :rule reordering :premises (@p2582) :args ((or @t961 @t963 @t1007)))
% 86.49/86.79  (step @p2584 :rule chain_m_resolution :premises (@p2583 @p2576 @p2499) :args (@t963 @t904 (@list @t961 @t958)))
% 86.49/86.79  (step @p2585 :rule cnf_equiv_pos2 :args (@t964))
% 86.49/86.79  (step @p2586 :rule reordering :premises (@p2585) :args ((or @t911 (not @t963) (not @t964))))
% 86.49/86.79  (step @p2587 :rule chain_m_resolution :premises (@p2586 @p2584 @p2359) :args (@t911 @t881 (@list @t963 @t964)))
% 86.49/86.79  (step @p2588 :rule cnf_or_pos :args (@t918))
% 86.49/86.79  (step @p2589 :rule reordering :premises (@p2588) :args ((or @t912 @t914 @t917 (not @t918))))
% 86.49/86.79  (step @p2590 :rule chain_m_resolution :premises (@p2589 @p2587 @p2345 @p2153) :args (@t914 @t941 (@list @t911 @t916 @t918)))
% 86.49/86.79  (step @p2591 :rule refl :args (@t1008))
% 86.49/86.79  (step @p2592 :rule bool-double-not-elim :args (@t913))
% 86.49/86.79  (step @p2593 :rule nary_cong :premises (@p1974 @p2592 @p2591) :args ((or @t851 (not @t914) @t1008)))
% 86.49/86.79  (assume-push @p2921 @t850)
% 86.49/86.79  (assume-push @p2922 @t914)
% 86.49/86.79  (assume-push @p2923 @t914)
% 86.49/86.79  (assume-push @p2924 @t850)
% 86.49/86.79  (step @p2598 :rule false_intro :premises (@p2922))
% 86.49/86.79  (step @p2086 :rule refl :args (@t35))
% 86.49/86.79  (step @p2599 :rule cong :premises (@p2921 @p2086) :args (@t898))
% 86.49/86.79  (step @p2600 :rule trans :premises (@p2599 @p2598))
% 86.49/86.79  (step @p2601 :rule false_elim :premises (@p2600))
% 86.49/86.79  (step-pop @p2925 :rule scope :premises (@p2601))
% 86.49/86.79  (step-pop @p2926 :rule scope :premises (@p2925))
% 86.49/86.79  (step @p2602 :rule process_scope :premises (@p2926) :args (@t1008))
% 86.49/86.79  (step @p2605 :rule and_intro :premises (@p2922 @p2921))
% 86.49/86.79  (step @p2606 :rule modus_ponens :premises (@p2605 @p2602))
% 86.49/86.79  (step-pop @p2927 :rule scope :premises (@p2606))
% 86.49/86.79  (step-pop @p2928 :rule scope :premises (@p2927))
% 86.49/86.79  (step @p2607 :rule process_scope :premises (@p2928) :args (@t1008))
% 86.49/86.79  (step @p2610 :rule implies_elim :premises (@p2607))
% 86.49/86.79  (step @p2611 :rule cnf_and_neg :args (@t1009))
% 86.49/86.79  (step @p2612 :rule resolution :premises (@p2611 @p2610) :args (true @t1009))
% 86.49/86.79  (step @p2613 :rule eq_resolve :premises (@p2612 @p2593))
% 86.49/86.79  (step @p2614 :rule reordering :premises (@p2613) :args ((or @t851 @t1008 @t913)))
% 86.49/86.79  (step @p2615 :rule chain_m_resolution :premises (@p2614 @p1998 @p2590) :args (@t1008 (@list false true) (@list @t850 @t913)))
% 86.49/86.79  (step @p2616 :rule cnf_equiv_pos2 :args (@t903))
% 86.49/86.79  (step @p2617 :rule reordering :premises (@p2616) :args ((or @t898 @t1010 (not @t903))))
% 86.49/86.79  (step @p2618 :rule chain_m_resolution :premises (@p2617 @p2615 @p2115) :args (@t1010 @t904 (@list @t898 @t903)))
% 86.49/86.79  (step @p2619 :rule bool-double-not-elim :args (@t900))
% 86.49/86.79  (step @p2620 :rule refl :args (@t1011))
% 86.49/86.79  (step @p2621 :rule refl :args (@t902))
% 86.49/86.79  (step @p2622 :rule nary_cong :premises (@p2621 @p2620 @p2619) :args ((or @t902 @t1011 (not @t901))))
% 86.49/86.79  (step @p2623 :rule cnf_and_neg :args (@t902))
% 86.49/86.79  (step @p2624 :rule eq_resolve :premises (@p2623 @p2622))
% 86.49/86.79  (step @p2625 :rule reordering :premises (@p2624) :args ((or @t900 @t902 @t1011)))
% 86.49/86.79  (step @p2626 :rule chain_m_resolution :premises (@p2625 @p2618 @p2101) :args (@t900 @t904 (@list @t902 @t894)))
% 86.49/86.79  (step @p2627 :rule bool-double-not-elim :args (@t873))
% 86.49/86.79  (step @p2628 :rule refl :args (@t901))
% 86.49/86.79  (step @p2629 :rule refl :args (@t1012))
% 86.49/86.79  (step @p2630 :rule nary_cong :premises (@p1974 @p2629 @p2628 @p2627) :args ((or @t851 @t1012 @t901 (not @t880))))
% 86.49/86.79  (assume-push @p2929 @t139)
% 86.49/86.79  (assume-push @p2930 @t850)
% 86.49/86.79  (assume-push @p2931 @t900)
% 86.49/86.79  (assume-push @p2932 @t880)
% 86.49/86.79  (step @p2546 :rule evaluate :args (@t1005))
% 86.49/86.79  (step @p2635 :rule true_intro :premises (@p51))
% 86.49/86.79  (step @p2636 :rule symm :premises (@p2930))
% 86.49/86.79  (step @p2637 :rule cong :premises (@p2636 @p2931) :args (@t873))
% 86.49/86.79  (step @p2638 :rule false_intro :premises (@p2932))
% 86.49/86.79  (step @p2639 :rule symm :premises (@p2638))
% 86.49/86.79  (step @p2640 :rule trans :premises (@p2639 @p2637 @p2635))
% 86.49/86.79  (step @p2641 false :rule eq_resolve :premises (@p2640 @p2546))
% 45.78/86.81  (step-pop @p2933 :rule scope :premises (@p2641))
% 45.78/86.81  (step-pop @p2934 :rule scope :premises (@p2933))
% 45.78/86.81  (step-pop @p2935 :rule scope :premises (@p2934))
% 45.78/86.81  (step-pop @p2936 :rule scope :premises (@p2935))
% 45.78/86.81  (step @p2642 :rule process_scope :premises (@p2936) :args (false))
% 45.78/86.81  (assume-push @p2937 @t850)
% 45.78/86.81  (assume-push @p2938 @t139)
% 45.78/86.81  (assume-push @p2939 @t900)
% 45.78/86.81  (assume-push @p2940 @t880)
% 45.78/86.81  (step @p2651 :rule and_intro :premises (@p51 @p2937 @p2939 @p2940))
% 45.78/86.81  (step-pop @p2941 :rule scope :premises (@p2651))
% 45.78/86.81  (step-pop @p2942 :rule scope :premises (@p2941))
% 45.78/86.81  (step-pop @p2943 :rule scope :premises (@p2942))
% 45.78/86.81  (step-pop @p2944 :rule scope :premises (@p2943))
% 45.78/86.81  (step @p2652 :rule process_scope :premises (@p2944) :args (@t1013))
% 45.78/86.81  (step @p2657 :rule implies_elim :premises (@p2652))
% 45.78/86.81  (step @p2658 :rule resolution :premises (@p2657 @p2642) :args (true @t1013))
% 45.78/86.81  (step @p2659 :rule not_and :premises (@p2658))
% 45.78/86.81  (step @p2660 :rule eq_resolve :premises (@p2659 @p2630))
% 45.78/86.81  (step @p2661 :rule reordering :premises (@p2660) :args ((or @t851 @t901 @t1012 @t873)))
% 45.78/86.81  (step @p2662 false :rule chain_m_resolution :premises (@p2661 @p2626 @p2028 @p1998 @p51) :args (false (@list false true false false) (@list @t900 @t873 @t850 @t139)))
% 45.78/86.81  )
% 45.78/86.81  % SZS output end Proof
% 45.78/86.81  % cvc5 exiting
%------------------------------------------------------------------------------