0.00/0.03	% Problem  : theBenchmark.p : TPTP v0.0.0. Released v0.0.0.
0.00/0.09	% Command  : python3 /export/starexec/sandbox2/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox2/tmp/tmp.4syy2IGuBp true
0.14/0.40	% Computer : n029.cluster.edu
0.14/0.40	% Model    : x86_64 x86_64
0.14/0.40	% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
0.14/0.40	% Memory   : 8046.5625MB
0.14/0.40	% OS       : Linux 6.8.0-71-generic
0.14/0.40	% CPULimit : 1440
0.14/0.40	% WCLimit  : 180
0.14/0.40	% DateTime : Mon Jul 27 11:29:46 UTC 2026
0.14/0.41	% CPUTime  : 
0.14/0.41	% Running portfolio for 1440 s
0.14/0.41	% File         : /export/starexec/sandbox2/benchmark/theBenchmark.p
0.14/0.41	% Number of cores: 8
0.14/0.41	% Python version: Python 3.12.3
0.14/0.41	% Running in HO mode
0.33/0.71	% Total configuration time : 828
0.33/0.71	% Estimated wc time : 1656
0.33/0.71	% Estimated cpu time (8 cpus) : 207.0
0.33/0.77	% /export/starexec/sandbox2/solver/bin/lams/40_c.s.sh running for 80s
0.33/0.83	% /export/starexec/sandbox2/solver/bin/lams/35_full_unif4.sh running for 80s
0.33/0.83	% /export/starexec/sandbox2/solver/bin/lams/40_c_ic.sh running for 80s
0.33/0.84	% /export/starexec/sandbox2/solver/bin/lams/40_noforms.sh running for 90s
0.33/0.84	% /export/starexec/sandbox2/solver/bin/lams/15_e_short1.sh running for 30s
0.33/0.84	% /export/starexec/sandbox2/solver/bin/lams/40_b.comb.sh running for 70s
0.33/0.90	% /export/starexec/sandbox2/solver/bin/lams/20_acsne_simpl.sh running for 40s
0.33/0.91	% /export/starexec/sandbox2/solver/bin/lams/30_sp5.sh running for 60s
0.33/1.02	% /export/starexec/sandbox2/solver/bin/lams/30_b.l.sh running for 90s
30.15/4.80	% Solved by lams/15_e_short1.sh.
30.15/4.80	% done 315 iterations in 3.930s
30.15/4.80	% SZS status Theorem for '/export/starexec/sandbox2/benchmark/theBenchmark.p'
30.15/4.80	% SZS output start Refutation
30.15/4.80	thf(int_type, type, int: $tType).
30.15/4.80	thf(nat_type, type, nat: $tType).
30.15/4.80	thf(times_times_int_type, type, times_times_int: int > int > int).
30.15/4.80	thf(t_type, type, t: int).
30.15/4.80	thf(pls_type, type, pls: int).
30.15/4.80	thf(bit0_type, type, bit0: int > int).
30.15/4.80	thf(one_one_int_type, type, one_one_int: int).
30.15/4.80	thf(ord_less_int_type, type, ord_less_int: int > int > $o).
30.15/4.80	thf(m_type, type, m: int).
30.15/4.80	thf(bit1_type, type, bit1: int > int).
30.15/4.80	thf(plus_plus_int_type, type, plus_plus_int: int > int > int).
30.15/4.80	thf(number_number_of_nat_type, type, number_number_of_nat: int > nat).
30.15/4.80	thf(power_power_int_type, type, power_power_int: int > nat > int).
30.15/4.80	thf(number_number_of_int_type, type, number_number_of_int: int > int).
30.15/4.80	thf(ord_less_eq_int_type, type, ord_less_eq_int: int > int > $o).
30.15/4.80	thf(fact_2__0961_A_060_At_A_061_061_062_AEX_Ax_Ay_O_Ax_A_094_A2_A_L_Ay_A_094_A2_A_06, axiom,
30.15/4.80	  (( ord_less_int @ one_one_int @ t ) =>
30.15/4.80	   ( ?[X:int,Y:int]:
30.15/4.80	     ( ( plus_plus_int @
30.15/4.80	         ( power_power_int @
30.15/4.80	           X @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	         ( power_power_int @
30.15/4.80	           Y @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) ) =
30.15/4.80	       ( plus_plus_int @
30.15/4.80	         ( times_times_int @
30.15/4.80	           ( number_number_of_int @ ( bit0 @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	           m ) @ 
30.15/4.80	         one_one_int ) ) ))).
30.15/4.80	thf(zip_derived_cl684, plain,
30.15/4.80	    ( (((ord_less_int @ one_one_int @ t) =>
30.15/4.80	        (((??) @ (^[Y0 : int]:
30.15/4.80	                    (((??) @ (^[Y1 : int]:
30.15/4.80	                                (((plus_plus_int @ 
30.15/4.80	                                  (power_power_int @ Y0 @ 
30.15/4.80	                                   (number_number_of_nat @ 
30.15/4.80	                                    (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                  (power_power_int @ Y1 @ 
30.15/4.80	                                   (number_number_of_nat @ 
30.15/4.80	                                    (bit0 @ (bit1 @ pls))))) =
30.15/4.80	                                  (plus_plus_int @ 
30.15/4.80	                                  (times_times_int @ 
30.15/4.80	                                   (number_number_of_int @ 
30.15/4.80	                                    (bit0 @ (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                   m) @ 
30.15/4.80	                                  one_one_int)))))))))))),
30.15/4.80	    inference('cnf', [status(esa)],
30.15/4.80	              [fact_2__0961_A_060_At_A_061_061_062_AEX_Ax_Ay_O_Ax_A_094_A2_A_L_Ay_A_094_A2_A_06])).
30.15/4.80	thf(fact_0_tpos, axiom, (ord_less_eq_int @ one_one_int @ t)).
30.15/4.80	thf(zip_derived_cl628, plain, ( (ord_less_eq_int @ one_one_int @ t)),
30.15/4.80	    inference('cnf', [status(esa)], [fact_0_tpos])).
30.15/4.80	thf(fact_264_semiring__norm_I110_J, axiom,
30.15/4.80	  (( one_one_int ) = ( number_number_of_int @ ( bit1 @ pls ) ))).
30.15/4.80	thf(zip_derived_cl154, plain,
30.15/4.80	    (((one_one_int) = (number_number_of_int @ (bit1 @ pls)))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_264_semiring__norm_I110_J])).
30.15/4.80	thf(fact_142_number__of__is__id, axiom,
30.15/4.80	  (![K:int]: ( ( number_number_of_int @ K ) = ( K ) ))).
30.15/4.80	thf(zip_derived_cl455, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]: (((number_number_of_int @ Y0) = (Y0))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_142_number__of__is__id])).
30.15/4.80	thf(zip_derived_cl945, plain,
30.15/4.80	    (![X2 : int]:  (((number_number_of_int @ X2) = (X2)))),
30.15/4.80	    inference('lazy_cnf_forall', [status(thm)], [zip_derived_cl455])).
30.15/4.80	thf(zip_derived_cl946, plain,
30.15/4.80	    (![X2 : int]: ((number_number_of_int @ X2) = (X2))),
30.15/4.80	    inference('simplify nested equalities', [status(thm)],
30.15/4.80	              [zip_derived_cl945])).
30.15/4.80	thf(zip_derived_cl949, plain, (((one_one_int) = (bit1 @ pls))),
30.15/4.80	    inference('demod', [status(thm)], [zip_derived_cl154, zip_derived_cl946])).
30.15/4.80	thf(zip_derived_cl964, plain, ( (ord_less_eq_int @ (bit1 @ pls) @ t)),
30.15/4.80	    inference('demod', [status(thm)], [zip_derived_cl628, zip_derived_cl949])).
30.15/4.80	thf(fact_37_zless__le, axiom,
30.15/4.80	  (![Z:int,W:int]:
30.15/4.80	   ( ( ord_less_int @ Z @ W ) <=>
30.15/4.80	     ( ( ord_less_eq_int @ Z @ W ) & ( ( Z ) != ( W ) ) ) ))).
30.15/4.80	thf(zip_derived_cl13, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]:
30.15/4.80	                  (((!!) @ (^[Y1 : int]:
30.15/4.80	                              (((ord_less_int @ Y0 @ Y1) <=>
30.15/4.80	                                (((ord_less_eq_int @ Y0 @ Y1) &
30.15/4.80	                                  (((Y0) != (Y1)))))))))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_37_zless__le])).
30.15/4.80	thf(zip_derived_cl1150, plain,
30.15/4.80	    (![X2 : int]:
30.15/4.80	        (((!!) @ (^[Y0 : int]:
30.15/4.80	                    (((ord_less_int @ X2 @ Y0) <=>
30.15/4.80	                      (((ord_less_eq_int @ X2 @ Y0) & (((X2) != (Y0))))))))))),
30.15/4.80	    inference('lazy_cnf_forall', [status(thm)], [zip_derived_cl13])).
30.15/4.80	thf(zip_derived_cl1151, plain,
30.15/4.80	    (![X2 : int, X4 : int]:
30.15/4.80	        (((ord_less_int @ X2 @ X4) <=>
30.15/4.80	          (((ord_less_eq_int @ X2 @ X4) & (((X2) != (X4)))))))),
30.15/4.80	    inference('lazy_cnf_forall', [status(thm)], [zip_derived_cl1150])).
30.15/4.80	thf(zip_derived_cl1152, plain,
30.15/4.80	    (![X2 : int, X4 : int]:
30.15/4.80	       ((ord_less_int @ X2 @ X4)
30.15/4.80	         = (((ord_less_eq_int @ X2 @ X4) & (((X2) != (X4))))))),
30.15/4.80	    inference('simplify nested equalities', [status(thm)],
30.15/4.80	              [zip_derived_cl1151])).
30.15/4.80	thf(zip_derived_cl1158, plain,
30.15/4.80	    (((ord_less_int @ (bit1 @ pls) @ t)
30.15/4.80	       = ((($true) & (((bit1 @ pls) != (t))))))),
30.15/4.80	    inference('sup+', [status(thm)], [zip_derived_cl964, zip_derived_cl1152])).
30.15/4.80	thf(zip_derived_cl1184, plain,
30.15/4.80	    (((ord_less_int @ (bit1 @ pls) @ t) = (((bit1 @ pls) != (t))))),
30.15/4.80	    inference('simplify boolean subterms', [status(thm)],
30.15/4.80	              [zip_derived_cl1158])).
30.15/4.80	thf(fact_1__096t_A_061_A1_A_061_061_062_AEX_Ax_Ay_O_Ax_A_094_A2_A_L_Ay_A_094_A2_A_06, axiom,
30.15/4.80	  (( ( t ) = ( one_one_int ) ) =>
30.15/4.80	   ( ?[X:int,Y:int]:
30.15/4.80	     ( ( plus_plus_int @
30.15/4.80	         ( power_power_int @
30.15/4.80	           X @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	         ( power_power_int @
30.15/4.80	           Y @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) ) =
30.15/4.80	       ( plus_plus_int @
30.15/4.80	         ( times_times_int @
30.15/4.80	           ( number_number_of_int @ ( bit0 @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	           m ) @ 
30.15/4.80	         one_one_int ) ) ))).
30.15/4.80	thf(zip_derived_cl266, plain,
30.15/4.80	    ( (((((t) = (one_one_int))) =>
30.15/4.80	        (((??) @ (^[Y0 : int]:
30.15/4.80	                    (((??) @ (^[Y1 : int]:
30.15/4.80	                                (((plus_plus_int @ 
30.15/4.80	                                  (power_power_int @ Y0 @ 
30.15/4.80	                                   (number_number_of_nat @ 
30.15/4.80	                                    (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                  (power_power_int @ Y1 @ 
30.15/4.80	                                   (number_number_of_nat @ 
30.15/4.80	                                    (bit0 @ (bit1 @ pls))))) =
30.15/4.80	                                  (plus_plus_int @ 
30.15/4.80	                                  (times_times_int @ 
30.15/4.80	                                   (number_number_of_int @ 
30.15/4.80	                                    (bit0 @ (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                   m) @ 
30.15/4.80	                                  one_one_int)))))))))))),
30.15/4.80	    inference('cnf', [status(esa)],
30.15/4.80	              [fact_1__096t_A_061_A1_A_061_061_062_AEX_Ax_Ay_O_Ax_A_094_A2_A_L_Ay_A_094_A2_A_06])).
30.15/4.80	thf(fact_202_add__Pls, axiom,
30.15/4.80	  (![K:int]: ( ( plus_plus_int @ pls @ K ) = ( K ) ))).
30.15/4.80	thf(zip_derived_cl675, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]: (((plus_plus_int @ pls @ Y0) = (Y0))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_202_add__Pls])).
30.15/4.80	thf(fact_249_add__Bit1__Bit0, axiom,
30.15/4.80	  (![K:int,L:int]:
30.15/4.80	   ( ( plus_plus_int @ ( bit1 @ K ) @ ( bit0 @ L ) ) =
30.15/4.80	     ( bit1 @ ( plus_plus_int @ K @ L ) ) ))).
30.15/4.80	thf(zip_derived_cl292, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]:
30.15/4.80	                  (((!!) @ (^[Y1 : int]:
30.15/4.80	                              (((plus_plus_int @ (bit1 @ Y0) @ (bit0 @ Y1)) =
30.15/4.80	                                (bit1 @ (plus_plus_int @ Y0 @ Y1))))))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_249_add__Bit1__Bit0])).
30.15/4.80	thf(fact_200_mult__Bit0, axiom,
30.15/4.80	  (![K:int,L:int]:
30.15/4.80	   ( ( times_times_int @ ( bit0 @ K ) @ L ) =
30.15/4.80	     ( bit0 @ ( times_times_int @ K @ L ) ) ))).
30.15/4.80	thf(zip_derived_cl90, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]:
30.15/4.80	                  (((!!) @ (^[Y1 : int]:
30.15/4.80	                              (((times_times_int @ (bit0 @ Y0) @ Y1) =
30.15/4.80	                                (bit0 @ (times_times_int @ Y0 @ Y1))))))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_200_mult__Bit0])).
30.15/4.80	thf(fact_206_zmult__1, axiom,
30.15/4.80	  (![Z:int]: ( ( times_times_int @ one_one_int @ Z ) = ( Z ) ))).
30.15/4.80	thf(zip_derived_cl177, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]: (((times_times_int @ one_one_int @ Y0) = (Y0))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_206_zmult__1])).
30.15/4.80	thf(fact_132_comm__semiring__1__class_Onormalizing__semiring__rules_I24_J, axiom,
30.15/4.80	  (![A_58:int,C_5:int]:
30.15/4.80	   ( ( plus_plus_int @ A_58 @ C_5 ) = ( plus_plus_int @ C_5 @ A_58 ) ))).
30.15/4.80	thf(zip_derived_cl375, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]:
30.15/4.80	                  (((!!) @ (^[Y1 : int]:
30.15/4.80	                              (((plus_plus_int @ Y0 @ Y1) = (plus_plus_int @ 
30.15/4.80	                                Y1 @ Y0)))))))))),
30.15/4.80	    inference('cnf', [status(esa)],
30.15/4.80	              [fact_132_comm__semiring__1__class_Onormalizing__semiring__rules_I24_J])).
30.15/4.80	thf(fact_21_comm__semiring__1__class_Onormalizing__semiring__rules_I29_J, axiom,
30.15/4.80	  (![X_37:int]:
30.15/4.80	   ( ( times_times_int @ X_37 @ X_37 ) =
30.15/4.80	     ( power_power_int @
30.15/4.80	       X_37 @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) ))).
30.15/4.80	thf(zip_derived_cl440, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]:
30.15/4.80	                  (((times_times_int @ Y0 @ Y0) = (power_power_int @ Y0 @ 
30.15/4.80	                    (number_number_of_nat @ (bit0 @ (bit1 @ pls)))))))))),
30.15/4.80	    inference('cnf', [status(esa)],
30.15/4.80	              [fact_21_comm__semiring__1__class_Onormalizing__semiring__rules_I29_J])).
30.15/4.80	thf(fact_265_one__is__num__one, axiom,
30.15/4.80	  (( one_one_int ) = ( number_number_of_int @ ( bit1 @ pls ) ))).
30.15/4.80	thf(zip_derived_cl400, plain,
30.15/4.80	    (((one_one_int) = (number_number_of_int @ (bit1 @ pls)))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_265_one__is__num__one])).
30.15/4.80	thf(zip_derived_cl455, plain,
30.15/4.80	    ( (((!!) @ (^[Y0 : int]: (((number_number_of_int @ Y0) = (Y0))))))),
30.15/4.80	    inference('cnf', [status(esa)], [fact_142_number__of__is__id])).
30.15/4.80	thf(conj_0, conjecture,
30.15/4.80	  (?[X:int,Y:int]:
30.15/4.80	   ( ( plus_plus_int @
30.15/4.80	       ( power_power_int @
30.15/4.80	         X @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	       ( power_power_int @
30.15/4.80	         Y @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) ) =
30.15/4.80	     ( plus_plus_int @
30.15/4.80	       ( times_times_int @
30.15/4.80	         ( number_number_of_int @ ( bit0 @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ m ) @ 
30.15/4.80	       one_one_int ) ))).
30.15/4.80	thf(zf_stmt_0, negated_conjecture,
30.15/4.80	  (~( ?[X:int,Y:int]:
30.15/4.80	      ( ( plus_plus_int @
30.15/4.80	          ( power_power_int @
30.15/4.80	            X @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	          ( power_power_int @
30.15/4.80	            Y @ ( number_number_of_nat @ ( bit0 @ ( bit1 @ pls ) ) ) ) ) =
30.15/4.80	        ( plus_plus_int @
30.15/4.80	          ( times_times_int @
30.15/4.80	            ( number_number_of_int @ ( bit0 @ ( bit0 @ ( bit1 @ pls ) ) ) ) @ 
30.15/4.80	            m ) @ 
30.15/4.80	          one_one_int ) ) )),
30.15/4.80	  inference('cnf.neg', [status(esa)], [conj_0])).
30.15/4.80	thf(zip_derived_cl109, plain,
30.15/4.80	    (~ (((??) @ (^[Y0 : int]:
30.15/4.80	                   (((??) @ (^[Y1 : int]:
30.15/4.80	                               (((plus_plus_int @ 
30.15/4.80	                                 (power_power_int @ Y0 @ 
30.15/4.80	                                  (number_number_of_nat @ 
30.15/4.80	                                   (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                 (power_power_int @ Y1 @ 
30.15/4.80	                                  (number_number_of_nat @ 
30.15/4.80	                                   (bit0 @ (bit1 @ pls))))) =
30.15/4.80	                                 (plus_plus_int @ 
30.15/4.80	                                 (times_times_int @ 
30.15/4.80	                                  (number_number_of_int @ 
30.15/4.80	                                   (bit0 @ (bit0 @ (bit1 @ pls)))) @ 
30.15/4.80	                                  m) @ 
30.15/4.80	                                 one_one_int)))))))))),
30.15/4.80	    inference('cnf', [status(esa)], [zf_stmt_0])).
30.15/4.80	thf(zip_derived_cl1845, plain, ($false),
30.15/4.80	    inference('eprover', [status(thm)],
30.15/4.80	              [zip_derived_cl684, zip_derived_cl1184, zip_derived_cl266, 
30.15/4.80	               zip_derived_cl675, zip_derived_cl292, zip_derived_cl90, 
30.15/4.80	               zip_derived_cl177, zip_derived_cl375, zip_derived_cl440, 
30.15/4.80	               zip_derived_cl400, zip_derived_cl455, zip_derived_cl109])).
30.15/4.80	
30.15/4.80	% SZS output end Refutation
30.15/4.80	
30.15/4.80	
30.15/4.80	% Terminating...
31.12/4.87	% Runner terminated.
31.12/4.90	% Zipperpin 1.5 exiting
31.12/4.91	EOF
