0.04/0.08	% Problem    : Vampire---4.8_7344 : TPTP v0.0.0. Released v0.0.0.
0.04/0.08	% Command    : run_E %s %d THM
0.08/0.27	% Computer : n007.cluster.edu
0.08/0.27	% Model    : x86_64 x86_64
0.08/0.27	% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
0.08/0.27	% Memory   : 8042.1875MB
0.08/0.27	% OS       : Linux 3.10.0-693.el7.x86_64
0.08/0.27	% CPULimit   : 1440
0.08/0.27	% WCLimit    : 180
0.08/0.27	% DateTime   : Mon Jul  3 12:37:13 EDT 2023
0.08/0.27	% CPUTime    : 
0.12/0.35	Running higher-order theorem provingRunning: /export/starexec/sandbox2/solver/bin/eprover-ho --delete-bad-limit=2000000000 --definitional-cnf=24 -s --print-statistics -R --print-version --proof-object --auto-schedule=8 --cpu-limit=180 /export/starexec/sandbox2/tmp/tmp.MZMSrrhdfU/Vampire---4.8_7344
0.12/0.35	# Version: 3.1pre001-ho
27.12/3.82	# Preprocessing class: HSMSSMSSSSSNHHA.
27.12/3.82	# Scheduled 6 strats onto 8 cores with 180 seconds (1440 total)
27.12/3.82	# Starting full_lambda_6 with 540s (3) cores
27.12/3.82	# Starting post_as_ho1 with 180s (1) cores
27.12/3.82	# Starting lpo6_lambda_fix with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_1 with 180s (1) cores
27.12/3.82	# Starting new_ho_10_unif with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_2 with 180s (1) cores
27.12/3.82	# ho_unfolding_2 with pid 7704 completed with status 0
27.12/3.82	# Result found by ho_unfolding_2
27.12/3.82	# Preprocessing class: HSMSSMSSSSSNHHA.
27.12/3.82	# Scheduled 6 strats onto 8 cores with 180 seconds (1440 total)
27.12/3.82	# Starting full_lambda_6 with 540s (3) cores
27.12/3.82	# Starting post_as_ho1 with 180s (1) cores
27.12/3.82	# Starting lpo6_lambda_fix with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_1 with 180s (1) cores
27.12/3.82	# Starting new_ho_10_unif with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_2 with 180s (1) cores
27.12/3.82	# No SInE strategy applied
27.12/3.82	# Search class: HGHNF-FFSF22-SHHFFSBN
27.12/3.82	# Scheduled 6 strats onto 1 cores with 180 seconds (180 total)
27.12/3.82	# Starting new_ho_10_unif with 54s (1) cores
27.12/3.82	# new_ho_10_unif with pid 7712 completed with status 0
27.12/3.82	# Result found by new_ho_10_unif
27.12/3.82	# Preprocessing class: HSMSSMSSSSSNHHA.
27.12/3.82	# Scheduled 6 strats onto 8 cores with 180 seconds (1440 total)
27.12/3.82	# Starting full_lambda_6 with 540s (3) cores
27.12/3.82	# Starting post_as_ho1 with 180s (1) cores
27.12/3.82	# Starting lpo6_lambda_fix with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_1 with 180s (1) cores
27.12/3.82	# Starting new_ho_10_unif with 180s (1) cores
27.12/3.82	# Starting ho_unfolding_2 with 180s (1) cores
27.12/3.82	# No SInE strategy applied
27.12/3.82	# Search class: HGHNF-FFSF22-SHHFFSBN
27.12/3.82	# Scheduled 6 strats onto 1 cores with 180 seconds (180 total)
27.12/3.82	# Starting new_ho_10_unif with 54s (1) cores
27.12/3.82	# Preprocessing time       : 0.001 s
27.12/3.82	# Presaturation interreduction done
27.12/3.82	
27.12/3.82	# Proof found!
27.12/3.82	# SZS status Theorem
27.12/3.82	# SZS output start CNFRefutation
27.12/3.82	thf(decl_22, type, epred1_0: a > a > $o).
27.12/3.82	thf(decl_23, type, esk1_0: (a > $o) > a).
27.12/3.82	thf(decl_24, type, esk2_2: (a > $o) > a > a).
27.12/3.82	thf(decl_25, type, esk3_0: a > a).
27.12/3.82	thf(cTHM145_A_pme, conjecture, ![X1:a > a > $o, X2:(a > $o) > a]:(((![X3:a > $o]:(((![X4:a]:(((X1 @ X4 @ (X2 @ X3))<=(X3 @ X4)))&![X5:a]:((((X1 @ (X2 @ X3) @ X5)&(X1 @ (X2 @ X3) @ X5))<=![X6:a]:(((X1 @ X6 @ X5)<=((X3 @ X6)&(X3 @ X6)))))))&![X4:a]:(((X3 @ X4)=>(X1 @ X4 @ (X2 @ X3))))))&![X7:a, X8:a, X4:a]:((((X1 @ X8 @ X4)&(X1 @ X7 @ X8))=>(X1 @ X7 @ X4))))=>![X9:a > a]:((?[X10:a]:(((X1 @ (X9 @ X10) @ X10)&(X1 @ X10 @ (X9 @ X10))))<=(![X7:a, X8:a]:(((X1 @ (X9 @ X7) @ (X9 @ X8))<=(X1 @ X7 @ X8)))&![X7:a, X8:a]:(((X1 @ X7 @ X8)=>(X1 @ (X9 @ X7) @ (X9 @ X8))))))))), file('/export/starexec/sandbox2/tmp/tmp.MZMSrrhdfU/Vampire---4.8_7344', cTHM145_A_pme)).
27.12/3.82	thf(c_0_1, negated_conjecture, ~(![X1:a > a > $o, X2:(a > $o) > a]:(((![X3:a > $o]:(((![X4:a]:(((X3 @ X4)=>(X1 @ X4 @ (X2 @ X3))))&![X5:a]:((![X6:a]:(((X3 @ X6)=>(X1 @ X6 @ X5)))=>(X1 @ (X2 @ X3) @ X5))))&![X4:a]:(((X3 @ X4)=>(X1 @ X4 @ (X2 @ X3))))))&![X7:a, X8:a, X4:a]:((((X1 @ X8 @ X4)&(X1 @ X7 @ X8))=>(X1 @ X7 @ X4))))=>![X9:a > a]:((![X7:a, X8:a]:(((X1 @ X7 @ X8)=>(X1 @ (X9 @ X7) @ (X9 @ X8))))=>?[X10:a]:(((X1 @ (X9 @ X10) @ X10)&(X1 @ X10 @ (X9 @ X10))))))))), inference(fof_simplification,[status(thm)],[inference(assume_negation,[status(cth)],[cTHM145_A_pme])])).
27.12/3.82	thf(c_0_2, negated_conjecture, ![X29:a > $o, X30:a, X31:a, X33:a, X34:a, X35:a, X36:a, X38:a, X39:a, X40:a]:((((((~(X29 @ X30)|(epred1_0 @ X30 @ (esk1_0 @ X29)))&(((X29 @ (esk2_2 @ X29 @ X31))|(epred1_0 @ (esk1_0 @ X29) @ X31))&(~(epred1_0 @ (esk2_2 @ X29 @ X31) @ X31)|(epred1_0 @ (esk1_0 @ X29) @ X31))))&(~(X29 @ X33)|(epred1_0 @ X33 @ (esk1_0 @ X29))))&(~(epred1_0 @ X35 @ X36)|~(epred1_0 @ X34 @ X35)|(epred1_0 @ X34 @ X36)))&((~(epred1_0 @ X38 @ X39)|(epred1_0 @ (esk3_0 @ X38) @ (esk3_0 @ X39)))&(~(epred1_0 @ (esk3_0 @ X40) @ X40)|~(epred1_0 @ X40 @ (esk3_0 @ X40)))))), inference(distribute,[status(thm)],[inference(shift_quantors,[status(thm)],[inference(skolemize,[status(esa)],[inference(variable_rename,[status(thm)],[inference(fof_nnf,[status(thm)],[c_0_1])])])])])).
27.12/3.82	thf(c_0_3, negated_conjecture, ![X6:a, X5:a, X4:a]:(((epred1_0 @ X6 @ X5)|~((epred1_0 @ X4 @ X5))|~((epred1_0 @ X6 @ X4)))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_4, negated_conjecture, ![X3:a > $o, X4:a]:(((X3 @ (esk2_2 @ X3 @ X4))|(epred1_0 @ (esk1_0 @ X3) @ X4))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_5, negated_conjecture, ![X4:a, X21:a > a, X9:a > a, X5:a]:(((epred1_0 @ (X9 @ (esk2_2 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (X21 @ Z0)))) @ X4)) @ X5)|(epred1_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (X21 @ Z0))))) @ X4)|~((epred1_0 @ (X21 @ (esk2_2 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (X21 @ Z0)))) @ X4)) @ X5)))), inference(spm,[status(thm)],[c_0_3, c_0_4])).
27.12/3.82	thf(c_0_6, negated_conjecture, ![X4:a, X5:a]:(((epred1_0 @ (esk3_0 @ X4) @ (esk3_0 @ X5))|~((epred1_0 @ X4 @ X5)))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_7, negated_conjecture, ![X3:a > $o, X4:a]:(((epred1_0 @ X4 @ (esk1_0 @ X3))|~((X3 @ X4)))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_8, negated_conjecture, ![X4:a, X21:a > a, X9:a > a, X5:a]:(((epred1_0 @ (X9 @ (esk2_2 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (esk3_0 @ (X21 @ Z0))))) @ X4)) @ (esk3_0 @ X5))|(epred1_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (esk3_0 @ (X21 @ Z0)))))) @ X4)|~((epred1_0 @ (X21 @ (esk2_2 @ (^[Z0/* 3 */:a]:((epred1_0 @ (X9 @ Z0) @ (esk3_0 @ (X21 @ Z0))))) @ X4)) @ X5)))), inference(spm,[status(thm)],[c_0_5, c_0_6])).
27.12/3.82	thf(c_0_9, negated_conjecture, ![X1:a > a > $o, X4:a]:(((epred1_0 @ (esk2_2 @ (^[Z0/* 3 */:a]:((X1 @ Z0 @ Z0))) @ X4) @ (esk1_0 @ (^[Z0/* 3 */:a]:((X1 @ Z0 @ Z0)))))|(epred1_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((X1 @ Z0 @ Z0)))) @ X4))), inference(spm,[status(thm)],[c_0_7, c_0_4])).
27.12/3.82	thf(c_0_10, negated_conjecture, ![X3:a > $o, X4:a]:(((epred1_0 @ (esk1_0 @ X3) @ X4)|~((epred1_0 @ (esk2_2 @ X3 @ X4) @ X4)))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_11, negated_conjecture, ![X4:a]:(((epred1_0 @ (esk2_2 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0)))) @ X4) @ (esk3_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0)))))))|(epred1_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0))))) @ X4))), inference(spm,[status(thm)],[c_0_8, c_0_9])).
27.12/3.82	thf(c_0_12, negated_conjecture, ![X9:a > a, X4:a]:(((epred1_0 @ (esk3_0 @ X4) @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ (X9 @ Z0)))))))|~((epred1_0 @ X4 @ (X9 @ (esk3_0 @ X4)))))), inference(spm,[status(thm)],[c_0_7, c_0_6])).
27.12/3.82	thf(c_0_13, negated_conjecture, (epred1_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0))))) @ (esk3_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0))))))), inference(spm,[status(thm)],[c_0_10, c_0_11])).
27.12/3.82	thf(c_0_14, negated_conjecture, ![X4:a]:((~((epred1_0 @ (esk3_0 @ X4) @ X4))|~((epred1_0 @ X4 @ (esk3_0 @ X4))))), inference(split_conjunct,[status(thm)],[c_0_2])).
27.12/3.82	thf(c_0_15, negated_conjecture, (epred1_0 @ (esk3_0 @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0)))))) @ (esk1_0 @ (^[Z0/* 3 */:a]:((epred1_0 @ Z0 @ (esk3_0 @ Z0)))))), inference(spm,[status(thm)],[c_0_12, c_0_13])).
27.12/3.82	thf(c_0_16, negated_conjecture, ($false), inference(cn,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_14, c_0_15]), c_0_13])]), ['proof']).
27.12/3.82	# SZS output end CNFRefutation
27.12/3.82	# Parsed axioms                        : 2
27.12/3.82	# Removed by relevancy pruning/SinE    : 0
27.12/3.82	# Initial clauses                      : 8
27.12/3.82	# Removed in clause preprocessing      : 1
27.12/3.82	# Initial clauses in saturation        : 7
27.12/3.82	# Processed clauses                    : 949
27.12/3.82	# ...of these trivial                  : 180
27.12/3.82	# ...subsumed                          : 244
27.12/3.82	# ...remaining for further processing  : 525
27.12/3.82	# Other redundant clauses eliminated   : 0
27.12/3.82	# Clauses deleted for lack of memory   : 0
27.12/3.82	# Backward-subsumed                    : 44
27.12/3.82	# Backward-rewritten                   : 60
27.12/3.82	# Generated clauses                    : 55366
27.12/3.82	# ...of the previous two non-redundant : 50265
27.12/3.82	# ...aggressively subsumed             : 0
27.12/3.82	# Contextual simplify-reflections      : 1
27.12/3.82	# Paramodulations                      : 55199
27.12/3.82	# Factorizations                       : 166
27.12/3.82	# NegExts                              : 0
27.12/3.82	# Equation resolutions                 : 1
27.12/3.82	# Total rewrite steps                  : 5576
27.12/3.82	# Propositional unsat checks           : 0
27.12/3.82	#    Propositional check models        : 0
27.12/3.82	#    Propositional check unsatisfiable : 0
27.12/3.82	#    Propositional clauses             : 0
27.12/3.82	#    Propositional clauses after purity: 0
27.12/3.82	#    Propositional unsat core size     : 0
27.12/3.82	#    Propositional preprocessing time  : 0.000
27.12/3.82	#    Propositional encoding time       : 0.000
27.12/3.82	#    Propositional solver time         : 0.000
27.12/3.82	#    Success case prop preproc time    : 0.000
27.12/3.82	#    Success case prop encoding time   : 0.000
27.12/3.82	#    Success case prop solver time     : 0.000
27.12/3.82	# Current number of processed clauses  : 415
27.12/3.82	#    Positive orientable unit clauses  : 78
27.12/3.82	#    Positive unorientable unit clauses: 0
27.12/3.82	#    Negative unit clauses             : 15
27.12/3.82	#    Non-unit-clauses                  : 322
27.12/3.82	# Current number of unprocessed clauses: 48803
27.12/3.82	# ...number of literals in the above   : 153210
27.12/3.82	# Current number of archived formulas  : 0
27.12/3.82	# Current number of archived clauses   : 110
27.12/3.82	# Clause-clause subsumption calls (NU) : 14415
27.12/3.82	# Rec. Clause-clause subsumption calls : 12180
27.12/3.82	# Non-unit clause-clause subsumptions  : 276
27.12/3.82	# Unit Clause-clause subsumption calls : 2011
27.12/3.82	# Rewrite failures with RHS unbound    : 0
27.12/3.82	# BW rewrite match attempts            : 1985
27.12/3.82	# BW rewrite match successes           : 64
27.12/3.82	# Condensation attempts                : 949
27.12/3.82	# Condensation successes               : 4
27.12/3.82	# Termbank termtop insertions          : 12800081
27.12/3.82	
27.12/3.82	# -------------------------------------------------
27.12/3.82	# User time                : 3.320 s
27.12/3.82	# System time              : 0.148 s
27.12/3.82	# Total time               : 3.468 s
27.12/3.82	# Maximum resident set size: 1716 pages
27.77/3.92	
27.77/3.92	# -------------------------------------------------
27.77/3.92	# User time                : 3.322 s
27.77/3.92	# System time              : 0.149 s
27.77/3.92	# Total time               : 3.471 s
27.77/3.92	# Maximum resident set size: 1732 pages
27.77/3.92	% E---3.1 exiting
27.77/3.92	EOF
