0.07/0.13	% Problem  : theBenchmark.p : TPTP v0.0.0. Released v0.0.0.
0.07/0.14	% Command  : python3 /export/starexec/sandbox/solver/bin/portfolio.lams.parallel.py %s %d /export/starexec/sandbox/tmp/tmp.0GDUHMsrMd true
0.15/0.35	% Computer : n015.cluster.edu
0.15/0.35	% Model    : x86_64 x86_64
0.15/0.35	% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
0.15/0.35	% Memory   : 8042.1875MB
0.15/0.35	% OS       : Linux 3.10.0-693.el7.x86_64
0.15/0.35	% CPULimit : 960
0.15/0.35	% WCLimit  : 120
0.15/0.35	% DateTime : Tue Aug  9 02:42:11 EDT 2022
0.15/0.35	% CPUTime  : 
0.15/0.35	% Running portfolio for 960 s
0.15/0.35	% File         : /export/starexec/sandbox/benchmark/theBenchmark.p
0.15/0.35	% Number of cores: 8
0.15/0.36	% Python version: Python 3.6.8
0.15/0.36	% Running in HO mode
0.57/0.69	% Total configuration time : 828
0.57/0.69	% Estimated wc time : 1656
0.57/0.69	% Estimated cpu time (8 cpus) : 207.0
0.57/0.72	% /export/starexec/sandbox/solver/bin/lams/40_c.s.sh running for 80s
0.57/0.75	% /export/starexec/sandbox/solver/bin/lams/35_full_unif4.sh running for 80s
0.57/0.76	% /export/starexec/sandbox/solver/bin/lams/40_c_ic.sh running for 80s
0.57/0.76	% /export/starexec/sandbox/solver/bin/lams/15_e_short1.sh running for 30s
0.57/0.77	% /export/starexec/sandbox/solver/bin/lams/40_noforms.sh running for 90s
0.57/0.78	% /export/starexec/sandbox/solver/bin/lams/40_b.comb.sh running for 70s
0.57/0.78	% /export/starexec/sandbox/solver/bin/lams/20_acsne_simpl.sh running for 40s
0.57/0.79	% /export/starexec/sandbox/solver/bin/lams/30_sp5.sh running for 60s
0.57/0.84	% /export/starexec/sandbox/solver/bin/lams/30_b.l.sh running for 90s
0.57/0.84	% Solved by lams/40_c.s.sh.
0.57/0.84	% done 66 iterations in 0.072s
0.57/0.84	% SZS status Theorem for '/export/starexec/sandbox/benchmark/theBenchmark.p'
0.57/0.84	% SZS output start Refutation
0.57/0.84	thf(mworld_type, type, mworld: $tType).
0.57/0.84	thf(mlocal_type, type, mlocal: (mworld > $o) > $o).
0.57/0.84	thf(mor_type, type, mor: (mworld > $o) > (mworld > $o) > mworld > $o).
0.57/0.84	thf(set_difference_type, type, set_difference: $i > $i > $i).
0.57/0.84	thf(singleton_type, type, singleton: $i > $i).
0.57/0.84	thf(eiw_di_type, type, eiw_di: $i > mworld > $o).
0.57/0.84	thf(sk__7_type, type, sk__7: $i).
0.57/0.84	thf(mnot_type, type, mnot: (mworld > $o) > mworld > $o).
0.57/0.84	thf(sk__6_type, type, sk__6: $i).
0.57/0.84	thf(mactual_type, type, mactual: mworld).
0.57/0.84	thf(qmltpeq_type, type, qmltpeq: $i > $i > mworld > $o).
0.57/0.84	thf(mequiv_type, type, mequiv: (mworld > $o) > (mworld > $o) > mworld > $o).
0.57/0.84	thf(in_type, type, in: $i > $i > mworld > $o).
0.57/0.84	thf(mforall_di_type, type, mforall_di: ($i > mworld > $o) > mworld > $o).
0.57/0.84	thf(empty_set_type, type, empty_set: $i).
0.57/0.84	thf(mforall_di_def, axiom,(( mforall_di  ) =
0.57/0.84	  (^[A:( $i > mworld > $o ),W:mworld]:
0.57/0.84	   ( ![X:$i]: ( ( eiw_di @ X @ W ) => ( A @ X @ W ) ) )))).
0.57/0.84	thf('0', plain,
0.57/0.84	    (( mforall_di ) =
0.57/0.84	     ( ^[A:( $i > mworld > $o ),W:mworld]:
0.57/0.84	       ( ![X:$i]: ( ( eiw_di @ X @ W ) => ( A @ X @ W ) ) ) )),
0.57/0.84	    inference('simplify_rw_rule', [status(thm)], [mforall_di_def])).
0.57/0.84	thf('1', plain,
0.57/0.84	    (( mforall_di ) =
0.57/0.84	     ( ^[V_1:( $i > mworld > $o ),V_2:mworld]:
0.57/0.84	       ( ![X4:$i]: ( ( eiw_di @ X4 @ V_2 ) => ( V_1 @ X4 @ V_2 ) ) ) )),
0.57/0.84	    define([status(thm)])).
0.57/0.84	thf(mequiv_def, axiom,(( mequiv  ) =
0.57/0.84	  (^[A:( mworld > $o ),B:( mworld > $o ),W:mworld]:
0.57/0.84	   ( ( A @ W ) <=> ( B @ W ) )))).
0.57/0.84	thf('2', plain,
0.57/0.84	    (( mequiv ) =
0.57/0.84	     ( ^[A:( mworld > $o ),B:( mworld > $o ),W:mworld]:
0.57/0.84	       ( ( A @ W ) <=> ( B @ W ) ) )),
0.57/0.84	    inference('simplify_rw_rule', [status(thm)], [mequiv_def])).
0.57/0.84	thf('3', plain,
0.57/0.84	    (( mequiv ) =
0.57/0.84	     ( ^[V_1:( mworld > $o ),V_2:( mworld > $o ),V_3:mworld]:
0.57/0.84	       ( ( V_1 @ V_3 ) <=> ( V_2 @ V_3 ) ) )),
0.57/0.84	    define([status(thm)])).
0.57/0.84	thf(mlocal_def, axiom,(( mlocal  ) =
0.57/0.84	  (^[Phi:( mworld > $o )]: ( Phi @ mactual )))).
0.57/0.84	thf('4', plain, (( mlocal ) = ( ^[Phi:( mworld > $o )]: ( Phi @ mactual ) )),
0.57/0.84	    inference('simplify_rw_rule', [status(thm)], [mlocal_def])).
0.57/0.84	thf('5', plain, (( mlocal ) = ( ^[V_1:( mworld > $o )]: ( V_1 @ mactual ) )),
0.57/0.84	    define([status(thm)])).
0.57/0.84	thf(l36_zfmisc_1, axiom,
0.57/0.84	  (mlocal @
0.57/0.84	   ( mforall_di @
0.57/0.84	     ( ^[A:$i]:
0.57/0.84	       ( mforall_di @
0.57/0.84	         ( ^[B:$i]:
0.57/0.84	           ( mequiv @
0.57/0.84	             ( qmltpeq @
0.57/0.84	               ( set_difference @ ( singleton @ A ) @ B ) @ empty_set ) @ 
0.57/0.84	             ( in @ A @ B ) ) ) ) ) ))).
0.57/0.84	thf(zf_stmt_0, axiom,
0.57/0.84	  (![X4:$i]:
0.57/0.84	   ( ( eiw_di @ X4 @ mactual ) =>
0.57/0.84	     ( ![X6:$i]:
0.57/0.84	       ( ( eiw_di @ X6 @ mactual ) =>
0.57/0.84	         ( ( qmltpeq @
0.57/0.84	             ( set_difference @ ( singleton @ X4 ) @ X6 ) @ empty_set @ 
0.57/0.84	             mactual ) <=>
0.57/0.84	           ( in @ X4 @ X6 @ mactual ) ) ) ) ))).
0.57/0.84	thf(zip_derived_cl4, plain,
0.57/0.84	    (![X0 : $i, X1 : $i]:
0.57/0.84	       (~ (eiw_di @ X0 @ mactual)
0.57/0.84	        | ~ (in @ X1 @ X0 @ mactual)
0.57/0.84	        |  (qmltpeq @ (set_difference @ (singleton @ X1) @ X0) @ empty_set @ 
0.57/0.84	            mactual)
0.57/0.84	        | ~ (eiw_di @ X1 @ mactual))),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_0])).
0.57/0.84	thf(mor_def, axiom,(( mor  ) =
0.57/0.84	  (^[A:( mworld > $o ),B:( mworld > $o ),W:mworld]: ( ( A @ W ) | ( B @ W ) )))).
0.57/0.84	thf('6', plain,
0.57/0.84	    (( mor ) =
0.57/0.84	     ( ^[A:( mworld > $o ),B:( mworld > $o ),W:mworld]:
0.57/0.84	       ( ( A @ W ) | ( B @ W ) ) )),
0.57/0.84	    inference('simplify_rw_rule', [status(thm)], [mor_def])).
0.57/0.84	thf('7', plain,
0.57/0.84	    (( mor ) =
0.57/0.84	     ( ^[V_1:( mworld > $o ),V_2:( mworld > $o ),V_3:mworld]:
0.57/0.84	       ( ( V_1 @ V_3 ) | ( V_2 @ V_3 ) ) )),
0.57/0.84	    define([status(thm)])).
0.57/0.84	thf(t69_zfmisc_1, conjecture,
0.57/0.84	  (mlocal @
0.57/0.84	   ( mforall_di @
0.57/0.84	     ( ^[A:$i]:
0.57/0.84	       ( mforall_di @
0.57/0.84	         ( ^[B:$i]:
0.57/0.84	           ( mor @
0.57/0.84	             ( qmltpeq @
0.57/0.84	               ( set_difference @ ( singleton @ A ) @ B ) @ empty_set ) @ 
0.57/0.84	             ( qmltpeq @
0.57/0.84	               ( set_difference @ ( singleton @ A ) @ B ) @ ( singleton @ A ) ) ) ) ) ) ))).
0.57/0.84	thf(zf_stmt_1, conjecture,
0.57/0.84	  (![X4:$i]:
0.57/0.84	   ( ( eiw_di @ X4 @ mactual ) =>
0.57/0.84	     ( ![X6:$i]:
0.57/0.84	       ( ( eiw_di @ X6 @ mactual ) =>
0.57/0.84	         ( ( qmltpeq @
0.57/0.84	             ( set_difference @ ( singleton @ X4 ) @ X6 ) @ empty_set @ 
0.57/0.84	             mactual ) | 
0.57/0.84	           ( qmltpeq @
0.57/0.84	             ( set_difference @ ( singleton @ X4 ) @ X6 ) @ 
0.57/0.84	             ( singleton @ X4 ) @ mactual ) ) ) ) ))).
0.57/0.84	thf(zf_stmt_2, negated_conjecture,
0.57/0.84	  (~( ![X4:$i]:
0.57/0.84	      ( ( eiw_di @ X4 @ mactual ) =>
0.57/0.84	        ( ![X6:$i]:
0.57/0.84	          ( ( eiw_di @ X6 @ mactual ) =>
0.57/0.84	            ( ( qmltpeq @
0.57/0.84	                ( set_difference @ ( singleton @ X4 ) @ X6 ) @ empty_set @ 
0.57/0.84	                mactual ) | 
0.57/0.84	              ( qmltpeq @
0.57/0.84	                ( set_difference @ ( singleton @ X4 ) @ X6 ) @ 
0.57/0.84	                ( singleton @ X4 ) @ mactual ) ) ) ) ) )),
0.57/0.84	  inference('cnf.neg', [status(esa)], [zf_stmt_1])).
0.57/0.84	thf(zip_derived_cl18, plain,
0.57/0.84	    (~ (qmltpeq @ (set_difference @ (singleton @ sk__6) @ sk__7) @ 
0.57/0.84	        empty_set @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(zip_derived_cl268, plain,
0.57/0.84	    ((~ (eiw_di @ sk__6 @ mactual)
0.57/0.84	      | ~ (in @ sk__6 @ sk__7 @ mactual)
0.57/0.84	      | ~ (eiw_di @ sk__7 @ mactual))),
0.57/0.84	    inference('sup-', [status(thm)], [zip_derived_cl4, zip_derived_cl18])).
0.57/0.84	thf(zip_derived_cl16, plain, ( (eiw_di @ sk__6 @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(zip_derived_cl16, plain, ( (eiw_di @ sk__6 @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(zip_derived_cl19, plain, ( (eiw_di @ sk__7 @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(mnot_def, axiom,(( mnot  ) =
0.57/0.84	  (^[A:( mworld > $o ),W:mworld]: ( ~( A @ W ) )))).
0.57/0.84	thf('8', plain,
0.57/0.84	    (( mnot ) = ( ^[A:( mworld > $o ),W:mworld]: ( ~( A @ W ) ) )),
0.57/0.84	    inference('simplify_rw_rule', [status(thm)], [mnot_def])).
0.57/0.84	thf('9', plain,
0.57/0.84	    (( mnot ) = ( ^[V_1:( mworld > $o ),V_2:mworld]: ( ~( V_1 @ V_2 ) ) )),
0.57/0.84	    define([status(thm)])).
0.57/0.84	thf(l34_zfmisc_1, axiom,
0.57/0.84	  (mlocal @
0.57/0.84	   ( mforall_di @
0.57/0.84	     ( ^[A:$i]:
0.57/0.84	       ( mforall_di @
0.57/0.84	         ( ^[B:$i]:
0.57/0.84	           ( mequiv @
0.57/0.84	             ( qmltpeq @
0.57/0.84	               ( set_difference @ ( singleton @ A ) @ B ) @ ( singleton @ A ) ) @ 
0.57/0.84	             ( mnot @ ( in @ A @ B ) ) ) ) ) ) ))).
0.57/0.84	thf(zf_stmt_3, axiom,
0.57/0.84	  (![X4:$i]:
0.57/0.84	   ( ( eiw_di @ X4 @ mactual ) =>
0.57/0.84	     ( ![X6:$i]:
0.57/0.84	       ( ( eiw_di @ X6 @ mactual ) =>
0.57/0.84	         ( ( qmltpeq @
0.57/0.84	             ( set_difference @ ( singleton @ X4 ) @ X6 ) @ 
0.57/0.84	             ( singleton @ X4 ) @ mactual ) <=>
0.57/0.84	           ( ~( in @ X4 @ X6 @ mactual ) ) ) ) ) ))).
0.57/0.84	thf(zip_derived_cl24, plain,
0.57/0.84	    (![X0 : $i, X1 : $i]:
0.57/0.84	       (~ (eiw_di @ X0 @ mactual)
0.57/0.84	        |  (in @ X1 @ X0 @ mactual)
0.57/0.84	        |  (qmltpeq @ (set_difference @ (singleton @ X1) @ X0) @ 
0.57/0.84	            (singleton @ X1) @ mactual)
0.57/0.84	        | ~ (eiw_di @ X1 @ mactual))),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_3])).
0.57/0.84	thf(zip_derived_cl55, plain,
0.57/0.84	    (![X0 : $i]:
0.57/0.84	       (~ (eiw_di @ X0 @ mactual)
0.57/0.84	        |  (qmltpeq @ (set_difference @ (singleton @ X0) @ sk__7) @ 
0.57/0.84	            (singleton @ X0) @ mactual)
0.57/0.84	        |  (in @ X0 @ sk__7 @ mactual))),
0.57/0.84	    inference('sup-', [status(thm)], [zip_derived_cl19, zip_derived_cl24])).
0.57/0.84	thf(zip_derived_cl66, plain,
0.57/0.84	    (( (in @ sk__6 @ sk__7 @ mactual)
0.57/0.84	      |  (qmltpeq @ (set_difference @ (singleton @ sk__6) @ sk__7) @ 
0.57/0.84	          (singleton @ sk__6) @ mactual))),
0.57/0.84	    inference('sup-', [status(thm)], [zip_derived_cl16, zip_derived_cl55])).
0.57/0.84	thf(zip_derived_cl17, plain,
0.57/0.84	    (~ (qmltpeq @ (set_difference @ (singleton @ sk__6) @ sk__7) @ 
0.57/0.84	        (singleton @ sk__6) @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(zip_derived_cl74, plain, ( (in @ sk__6 @ sk__7 @ mactual)),
0.57/0.84	    inference('clc', [status(thm)], [zip_derived_cl66, zip_derived_cl17])).
0.57/0.84	thf(zip_derived_cl19, plain, ( (eiw_di @ sk__7 @ mactual)),
0.57/0.84	    inference('cnf', [status(esa)], [zf_stmt_2])).
0.57/0.84	thf(zip_derived_cl283, plain, ($false),
0.57/0.84	    inference('demod', [status(thm)],
0.57/0.84	              [zip_derived_cl268, zip_derived_cl16, zip_derived_cl74, 
0.57/0.84	               zip_derived_cl19])).
0.57/0.84	
0.57/0.84	% SZS output end Refutation
0.57/0.84	
0.57/0.84	
0.57/0.84	% Terminating...
1.80/0.88	% Runner terminated.
1.80/0.89	% Zipperpin 1.5 exiting
1.80/0.89	EOF
