TSTP Solution File: KRS171+1 by SRASS---0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : SRASS---0.1
% Problem  : KRS171+1 : TPTP v5.0.0. Released v3.1.0.
% Transfm  : none
% Format   : tptp
% Command  : SRASS -q2 -a 0 10 10 10 -i3 -n60 %s

% Computer : art11.cs.miami.edu
% Model    : i686 i686
% CPU      : Intel(R) Pentium(R) 4 CPU 3.00GHz @ 3000MHz
% Memory   : 2006MB
% OS       : Linux 2.6.31.5-127.fc12.i686.PAE
% CPULimit : 300s
% DateTime : Wed Dec 29 08:44:47 EST 2010

% Result   : Theorem 1.11s
% Output   : Solution 1.11s
% Verified : 
% SZS Type : None (Parsing solution fails)
% Syntax   : Number of formulae    : 0

% Comments : 
%------------------------------------------------------------------------------
%----ERROR: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% Reading problem from /tmp/SystemOnTPTP25300/KRS171+1.tptp
% Adding relevance values
% Extracting the conjecture
% Sorting axioms by relevance
% Looking for THM       ... 
% found
% SZS status THM for /tmp/SystemOnTPTP25300/KRS171+1.tptp
% SZS output start Solution for /tmp/SystemOnTPTP25300/KRS171+1.tptp
% TreeLimitedRun: ----------------------------------------------------------
% TreeLimitedRun: /home/graph/tptp/Systems/EP---1.2/eproof --print-statistics -xAuto -tAuto --cpu-limit=60 --proof-time-unlimited --memory-limit=Auto --tstp-in --tstp-out /tmp/SRASS.s.p 
% TreeLimitedRun: CPU time limit is 60s
% TreeLimitedRun: WC  time limit is 120s
% TreeLimitedRun: PID is 25432
% TreeLimitedRun: ----------------------------------------------------------
% PrfWatch: 0.00 CPU 0.01 WC
% # Preprocessing time     : 0.010 s
% # Problem is unsatisfiable (or provable), constructing proof object
% # SZS status Theorem
% # SZS output start CNFRefutation.
% fof(1, axiom,![X1]:(cowlThing(X1)&~(cowlNothing(X1))),file('/tmp/SRASS.s.p', axiom_0)).
% fof(2, axiom,![X1]:(xsd_string(X1)<=>~(xsd_integer(X1))),file('/tmp/SRASS.s.p', axiom_1)).
% fof(3, axiom,![X1]:![X2]:(rhasHead(X1,X2)=>rhasLeader(X1,X2)),file('/tmp/SRASS.s.p', axiom_2)).
% fof(4, axiom,![X1]:![X2]:(rhasLeader(X1,X2)=>rhasHead(X1,X2)),file('/tmp/SRASS.s.p', axiom_3)).
% fof(5, conjecture,((![X1]:(cowlThing(X1)&~(cowlNothing(X1)))&![X1]:(xsd_string(X1)<=>~(xsd_integer(X1))))&![X1]:![X2]:(rhasLeader(X1,X2)<=>rhasHead(X1,X2))),file('/tmp/SRASS.s.p', the_axiom)).
% fof(6, negated_conjecture,~(((![X1]:(cowlThing(X1)&~(cowlNothing(X1)))&![X1]:(xsd_string(X1)<=>~(xsd_integer(X1))))&![X1]:![X2]:(rhasLeader(X1,X2)<=>rhasHead(X1,X2)))),inference(assume_negation,[status(cth)],[5])).
% fof(7, plain,![X1]:(cowlThing(X1)&~(cowlNothing(X1))),inference(fof_simplification,[status(thm)],[1,theory(equality)])).
% fof(8, plain,![X1]:(xsd_string(X1)<=>~(xsd_integer(X1))),inference(fof_simplification,[status(thm)],[2,theory(equality)])).
% fof(9, negated_conjecture,~(((![X1]:(cowlThing(X1)&~(cowlNothing(X1)))&![X1]:(xsd_string(X1)<=>~(xsd_integer(X1))))&![X1]:![X2]:(rhasLeader(X1,X2)<=>rhasHead(X1,X2)))),inference(fof_simplification,[status(thm)],[6,theory(equality)])).
% fof(10, plain,![X2]:(cowlThing(X2)&~(cowlNothing(X2))),inference(variable_rename,[status(thm)],[7])).
% cnf(11,plain,(~cowlNothing(X1)),inference(split_conjunct,[status(thm)],[10])).
% cnf(12,plain,(cowlThing(X1)),inference(split_conjunct,[status(thm)],[10])).
% fof(13, plain,![X1]:((~(xsd_string(X1))|~(xsd_integer(X1)))&(xsd_integer(X1)|xsd_string(X1))),inference(fof_nnf,[status(thm)],[8])).
% fof(14, plain,![X2]:((~(xsd_string(X2))|~(xsd_integer(X2)))&(xsd_integer(X2)|xsd_string(X2))),inference(variable_rename,[status(thm)],[13])).
% cnf(15,plain,(xsd_string(X1)|xsd_integer(X1)),inference(split_conjunct,[status(thm)],[14])).
% cnf(16,plain,(~xsd_integer(X1)|~xsd_string(X1)),inference(split_conjunct,[status(thm)],[14])).
% fof(17, plain,![X1]:![X2]:(~(rhasHead(X1,X2))|rhasLeader(X1,X2)),inference(fof_nnf,[status(thm)],[3])).
% fof(18, plain,![X3]:![X4]:(~(rhasHead(X3,X4))|rhasLeader(X3,X4)),inference(variable_rename,[status(thm)],[17])).
% cnf(19,plain,(rhasLeader(X1,X2)|~rhasHead(X1,X2)),inference(split_conjunct,[status(thm)],[18])).
% fof(20, plain,![X1]:![X2]:(~(rhasLeader(X1,X2))|rhasHead(X1,X2)),inference(fof_nnf,[status(thm)],[4])).
% fof(21, plain,![X3]:![X4]:(~(rhasLeader(X3,X4))|rhasHead(X3,X4)),inference(variable_rename,[status(thm)],[20])).
% cnf(22,plain,(rhasHead(X1,X2)|~rhasLeader(X1,X2)),inference(split_conjunct,[status(thm)],[21])).
% fof(23, negated_conjecture,((?[X1]:(~(cowlThing(X1))|cowlNothing(X1))|?[X1]:((~(xsd_string(X1))|xsd_integer(X1))&(xsd_string(X1)|~(xsd_integer(X1)))))|?[X1]:?[X2]:((~(rhasLeader(X1,X2))|~(rhasHead(X1,X2)))&(rhasLeader(X1,X2)|rhasHead(X1,X2)))),inference(fof_nnf,[status(thm)],[9])).
% fof(24, negated_conjecture,((?[X3]:(~(cowlThing(X3))|cowlNothing(X3))|?[X4]:((~(xsd_string(X4))|xsd_integer(X4))&(xsd_string(X4)|~(xsd_integer(X4)))))|?[X5]:?[X6]:((~(rhasLeader(X5,X6))|~(rhasHead(X5,X6)))&(rhasLeader(X5,X6)|rhasHead(X5,X6)))),inference(variable_rename,[status(thm)],[23])).
% fof(25, negated_conjecture,(((~(cowlThing(esk1_0))|cowlNothing(esk1_0))|((~(xsd_string(esk2_0))|xsd_integer(esk2_0))&(xsd_string(esk2_0)|~(xsd_integer(esk2_0)))))|((~(rhasLeader(esk3_0,esk4_0))|~(rhasHead(esk3_0,esk4_0)))&(rhasLeader(esk3_0,esk4_0)|rhasHead(esk3_0,esk4_0)))),inference(skolemize,[status(esa)],[24])).
% fof(26, negated_conjecture,((((~(rhasLeader(esk3_0,esk4_0))|~(rhasHead(esk3_0,esk4_0)))|((~(xsd_string(esk2_0))|xsd_integer(esk2_0))|(~(cowlThing(esk1_0))|cowlNothing(esk1_0))))&((rhasLeader(esk3_0,esk4_0)|rhasHead(esk3_0,esk4_0))|((~(xsd_string(esk2_0))|xsd_integer(esk2_0))|(~(cowlThing(esk1_0))|cowlNothing(esk1_0)))))&(((~(rhasLeader(esk3_0,esk4_0))|~(rhasHead(esk3_0,esk4_0)))|((xsd_string(esk2_0)|~(xsd_integer(esk2_0)))|(~(cowlThing(esk1_0))|cowlNothing(esk1_0))))&((rhasLeader(esk3_0,esk4_0)|rhasHead(esk3_0,esk4_0))|((xsd_string(esk2_0)|~(xsd_integer(esk2_0)))|(~(cowlThing(esk1_0))|cowlNothing(esk1_0)))))),inference(distribute,[status(thm)],[25])).
% cnf(27,negated_conjecture,(cowlNothing(esk1_0)|xsd_string(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|~cowlThing(esk1_0)|~xsd_integer(esk2_0)),inference(split_conjunct,[status(thm)],[26])).
% cnf(28,negated_conjecture,(cowlNothing(esk1_0)|xsd_string(esk2_0)|~cowlThing(esk1_0)|~xsd_integer(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(split_conjunct,[status(thm)],[26])).
% cnf(29,negated_conjecture,(cowlNothing(esk1_0)|xsd_integer(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|~cowlThing(esk1_0)|~xsd_string(esk2_0)),inference(split_conjunct,[status(thm)],[26])).
% cnf(30,negated_conjecture,(cowlNothing(esk1_0)|xsd_integer(esk2_0)|~cowlThing(esk1_0)|~xsd_string(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(split_conjunct,[status(thm)],[26])).
% cnf(31,negated_conjecture,(cowlNothing(esk1_0)|xsd_string(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|$false|~xsd_integer(esk2_0)),inference(rw,[status(thm)],[27,12,theory(equality)]),['unfolding']).
% cnf(32,negated_conjecture,(cowlNothing(esk1_0)|xsd_integer(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|$false|~xsd_string(esk2_0)),inference(rw,[status(thm)],[29,12,theory(equality)]),['unfolding']).
% cnf(33,negated_conjecture,(cowlNothing(esk1_0)|xsd_string(esk2_0)|$false|~xsd_integer(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(rw,[status(thm)],[28,12,theory(equality)]),['unfolding']).
% cnf(34,negated_conjecture,(cowlNothing(esk1_0)|xsd_integer(esk2_0)|$false|~xsd_string(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(rw,[status(thm)],[30,12,theory(equality)]),['unfolding']).
% cnf(35,negated_conjecture,(xsd_string(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|~xsd_integer(esk2_0)),inference(sr,[status(thm)],[31,11,theory(equality)])).
% cnf(36,negated_conjecture,(rhasLeader(esk3_0,esk4_0)|rhasHead(esk3_0,esk4_0)|xsd_string(esk2_0)),inference(csr,[status(thm)],[35,15])).
% cnf(37,negated_conjecture,(rhasHead(esk3_0,esk4_0)|xsd_string(esk2_0)),inference(csr,[status(thm)],[36,22])).
% cnf(38,negated_conjecture,(xsd_integer(esk2_0)|rhasHead(esk3_0,esk4_0)|rhasLeader(esk3_0,esk4_0)|~xsd_string(esk2_0)),inference(sr,[status(thm)],[32,11,theory(equality)])).
% cnf(39,negated_conjecture,(rhasLeader(esk3_0,esk4_0)|rhasHead(esk3_0,esk4_0)|xsd_integer(esk2_0)),inference(csr,[status(thm)],[38,15])).
% cnf(40,negated_conjecture,(rhasHead(esk3_0,esk4_0)|xsd_integer(esk2_0)),inference(csr,[status(thm)],[39,22])).
% cnf(41,negated_conjecture,(xsd_string(esk2_0)|~xsd_integer(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(sr,[status(thm)],[33,11,theory(equality)])).
% cnf(42,negated_conjecture,(xsd_string(esk2_0)|~rhasLeader(esk3_0,esk4_0)|~xsd_integer(esk2_0)),inference(csr,[status(thm)],[41,22])).
% cnf(43,negated_conjecture,(xsd_string(esk2_0)|~rhasLeader(esk3_0,esk4_0)),inference(csr,[status(thm)],[42,15])).
% cnf(44,negated_conjecture,(xsd_integer(esk2_0)|~xsd_string(esk2_0)|~rhasHead(esk3_0,esk4_0)|~rhasLeader(esk3_0,esk4_0)),inference(sr,[status(thm)],[34,11,theory(equality)])).
% cnf(45,negated_conjecture,(xsd_integer(esk2_0)|~rhasHead(esk3_0,esk4_0)|~xsd_string(esk2_0)),inference(csr,[status(thm)],[44,19])).
% cnf(46,negated_conjecture,(xsd_integer(esk2_0)|~xsd_string(esk2_0)),inference(csr,[status(thm)],[45,40])).
% cnf(47,negated_conjecture,(xsd_integer(esk2_0)),inference(csr,[status(thm)],[46,15])).
% cnf(50,negated_conjecture,(xsd_string(esk2_0)|~rhasHead(esk3_0,esk4_0)),inference(spm,[status(thm)],[43,19,theory(equality)])).
% cnf(52,negated_conjecture,(xsd_string(esk2_0)),inference(csr,[status(thm)],[50,37])).
% cnf(53,negated_conjecture,(~xsd_integer(esk2_0)),inference(spm,[status(thm)],[16,52,theory(equality)])).
% cnf(56,negated_conjecture,($false),inference(rw,[status(thm)],[53,47,theory(equality)])).
% cnf(57,negated_conjecture,($false),inference(cn,[status(thm)],[56,theory(equality)])).
% cnf(58,negated_conjecture,($false),57,['proof']).
% # SZS output end CNFRefutation
% # Processed clauses                  : 18
% # ...of these trivial                : 0
% # ...subsumed                        : 0
% # ...remaining for further processing: 18
% # Other redundant clauses eliminated : 0
% # Clauses deleted for lack of memory : 0
% # Backward-subsumed                  : 0
% # Backward-rewritten                 : 3
% # Generated clauses                  : 4
% # ...of the previous two non-trivial : 1
% # Contextual simplify-reflections    : 10
% # Paramodulations                    : 4
% # Factorizations                     : 0
% # Equation resolutions               : 0
% # Current number of processed clauses: 7
% #    Positive orientable unit clauses: 2
% #    Positive unorientable unit clauses: 0
% #    Negative unit clauses           : 1
% #    Non-unit-clauses                : 4
% # Current number of unprocessed clauses: 0
% # ...number of literals in the above : 0
% # Clause-clause subsumption calls (NU) : 10
% # Rec. Clause-clause subsumption calls : 10
% # Unit Clause-clause subsumption calls : 0
% # Rewrite failures with RHS unbound  : 0
% # Indexed BW rewrite attempts        : 2
% # Indexed BW rewrite successes       : 2
% # Backwards rewriting index:     9 leaves,   1.00+/-0.000 terms/leaf
% # Paramod-from index:            4 leaves,   1.00+/-0.000 terms/leaf
% # Paramod-into index:            6 leaves,   1.00+/-0.000 terms/leaf
% # -------------------------------------------------
% # User time              : 0.009 s
% # System time            : 0.002 s
% # Total time             : 0.011 s
% # Maximum resident set size: 0 pages
% PrfWatch: 0.10 CPU 0.17 WC
% FINAL PrfWatch: 0.10 CPU 0.17 WC
% SZS output end Solution for /tmp/SystemOnTPTP25300/KRS171+1.tptp
% 
%------------------------------------------------------------------------------