TSTP Solution File: KRS191+1 by SRASS---0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : SRASS---0.1
% Problem  : KRS191+1 : TPTP v5.3.0. Bugfixed v5.4.0.
% Transfm  : none
% Format   : tptp
% Command  : SRASS -q2 -a 0 10 10 10 -i3 -n60 %s

% Computer : franklin.cs.miami.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Core(TM)2 CPU          6600  @ 2.40GHz @ 2400MHz
% Memory   : 1003MB
% OS       : Linux 2.6.32.26-175.fc12.x86_64
% CPULimit : 300s
% DateTime : Fri Jun 15 10:47:07 EDT 2012

% Result   : Theorem 7.27s
% Output   : Solution 7.27s
% 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/SystemOnTPTP14010/KRS191+1.tptp
% Adding relevance values
% Extracting the conjecture
% Sorting axioms by relevance
% Looking for THM       ... 
% found
% SZS status THM for /tmp/SystemOnTPTP14010/KRS191+1.tptp
% SZS output start Solution for /tmp/SystemOnTPTP14010/KRS191+1.tptp
% TreeLimitedRun: ----------------------------------------------------------
% TreeLimitedRun: /home/graph/tptp/Systems/EP---1.5/eproof_ram --print-statistics -xAuto -tAuto --cpu-limit=60 --memory-limit=Auto --tstp-format /tmp/SRASS.s.p 
% TreeLimitedRun: CPU time limit is 60s
% TreeLimitedRun: WC  time limit is 120s
% TreeLimitedRun: PID is 14108
% TreeLimitedRun: ----------------------------------------------------------
% PrfWatch: 0.00 CPU 0.01 WC
% PrfWatch: 3.32 CPU 2.01 WC
% PrfWatch: 6.93 CPU 4.02 WC
% # Auto-Ordering is analysing problem.
% # Problem is type GHNFNFFMM21LS
% # Auto-mode selected ordering type KBO6
% # Auto-mode selected ordering precedence scheme <invfreq>
% # Auto-mode selected weight ordering scheme <invfreqrank>
% #
% # Auto-Heuristic is analysing problem.
% # Problem is type GHNFNFFMM21LS
% # Auto-Mode selected heuristic G_E___006_C18_F1_PI_AE_Q4_CS_SP_S2S
% # and selection function SelectNewComplexAHP.
% #
% # No equality, disabling AC handling.
% #
% # Initializing proof state
% # Proof found!
% # SZS status Theorem
% # Parsed axioms                      : 33
% # Removed by relevancy pruning       : 0
% # Initial clauses                    : 109
% # Removed in clause preprocessing    : 0
% # Initial clauses in saturation      : 109
% # Processed clauses                  : 13730
% # ...of these trivial                : 2795
% # ...subsumed                        : 6051
% # ...remaining for further processing: 4884
% # Other redundant clauses eliminated : 0
% # Clauses deleted for lack of memory : 0
% # Backward-subsumed                  : 11
% # Backward-rewritten                 : 144
% # Generated clauses                  : 339331
% # ...of the previous two non-trivial : 227387
% # Contextual simplify-reflections    : 722
% # Paramodulations                    : 339071
% # Factorizations                     : 260
% # Equation resolutions               : 0
% # Current number of processed clauses: 4729
% #    Positive orientable unit clauses: 974
% #    Positive unorientable unit clauses: 0
% #    Negative unit clauses           : 527
% #    Non-unit-clauses                : 3228
% # Current number of unprocessed clauses: 179497
% # ...number of literals in the above : 606089
% # Clause-clause subsumption calls (NU) : 1619278
% # Rec. Clause-clause subsumption calls : 1245840
% # Non-unit clause-clause subsumptions: 6387
% # Unit Clause-clause subsumption calls : 203159
% # Rewrite failures with RHS unbound  : 0
% # BW rewrite match attempts          : 1095
% # BW rewrite match successes         : 141
% # Backwards rewriting index : 10936 nodes,  2347 leaves,   1.68+/-3.663 terms/leaf
% # Paramod-from index      :  5137 nodes,  1186 leaves,   1.25+/-1.492 terms/leaf
% # Paramod-into index      :  9011 nodes,  1891 leaves,   1.18+/-1.201 terms/leaf
% # Paramod-neg-atom index  :  1856 nodes,   431 leaves,   2.61+/-4.099 terms/leaf
% # SZS output start CNFRefutation.
% fof(1, axiom,![X1]:![X2]:(![X3]:![X4]:(status(X3,X4,X1)=>status(X3,X4,X2))<=>isa(X1,X2)),file('/tmp/SRASS.s.p', isa)).
% fof(2, axiom,![X3]:![X4]:(![X5]:(model(X5,X3)=>model(X5,X4))<=>status(X3,X4,thm)),file('/tmp/SRASS.s.p', thm)).
% fof(3, axiom,![X3]:![X4]:(((?[X5]:model(X5,X3)&?[X6]:~(model(X6,X3)))&![X7]:model(X7,X4))<=>status(X3,X4,wtc)),file('/tmp/SRASS.s.p', wtc)).
% fof(33, conjecture,isa(wtc,thm),file('/tmp/SRASS.s.p', isa_wtc_thm)).
% fof(34, negated_conjecture,~(isa(wtc,thm)),inference(assume_negation,[status(cth)],[33])).
% fof(35, plain,![X3]:![X4]:(((?[X5]:model(X5,X3)&?[X6]:~(model(X6,X3)))&![X7]:model(X7,X4))<=>status(X3,X4,wtc)),inference(fof_simplification,[status(thm)],[3,theory(equality)])).
% fof(50, negated_conjecture,~(isa(wtc,thm)),inference(fof_simplification,[status(thm)],[34,theory(equality)])).
% fof(51, plain,![X1]:![X2]:((?[X3]:?[X4]:(status(X3,X4,X1)&~(status(X3,X4,X2)))|isa(X1,X2))&(~(isa(X1,X2))|![X3]:![X4]:(~(status(X3,X4,X1))|status(X3,X4,X2)))),inference(fof_nnf,[status(thm)],[1])).
% fof(52, plain,(![X1]:![X2]:(?[X3]:?[X4]:(status(X3,X4,X1)&~(status(X3,X4,X2)))|isa(X1,X2))&![X1]:![X2]:(~(isa(X1,X2))|![X3]:![X4]:(~(status(X3,X4,X1))|status(X3,X4,X2)))),inference(shift_quantors,[status(thm)],[51])).
% fof(53, plain,(![X5]:![X6]:(?[X7]:?[X8]:(status(X7,X8,X5)&~(status(X7,X8,X6)))|isa(X5,X6))&![X9]:![X10]:(~(isa(X9,X10))|![X11]:![X12]:(~(status(X11,X12,X9))|status(X11,X12,X10)))),inference(variable_rename,[status(thm)],[52])).
% fof(54, plain,(![X5]:![X6]:((status(esk1_2(X5,X6),esk2_2(X5,X6),X5)&~(status(esk1_2(X5,X6),esk2_2(X5,X6),X6)))|isa(X5,X6))&![X9]:![X10]:(~(isa(X9,X10))|![X11]:![X12]:(~(status(X11,X12,X9))|status(X11,X12,X10)))),inference(skolemize,[status(esa)],[53])).
% fof(55, plain,![X5]:![X6]:![X9]:![X10]:![X11]:![X12]:(((status(esk1_2(X5,X6),esk2_2(X5,X6),X5)&~(status(esk1_2(X5,X6),esk2_2(X5,X6),X6)))|isa(X5,X6))&(~(isa(X9,X10))|(~(status(X11,X12,X9))|status(X11,X12,X10)))),inference(shift_quantors,[status(thm)],[54])).
% fof(56, plain,![X5]:![X6]:![X9]:![X10]:![X11]:![X12]:(((status(esk1_2(X5,X6),esk2_2(X5,X6),X5)|isa(X5,X6))&(~(status(esk1_2(X5,X6),esk2_2(X5,X6),X6))|isa(X5,X6)))&(~(isa(X9,X10))|(~(status(X11,X12,X9))|status(X11,X12,X10)))),inference(distribute,[status(thm)],[55])).
% cnf(58,plain,(isa(X1,X2)|~status(esk1_2(X1,X2),esk2_2(X1,X2),X2)),inference(split_conjunct,[status(thm)],[56])).
% cnf(59,plain,(isa(X1,X2)|status(esk1_2(X1,X2),esk2_2(X1,X2),X1)),inference(split_conjunct,[status(thm)],[56])).
% fof(60, plain,![X3]:![X4]:((?[X5]:(model(X5,X3)&~(model(X5,X4)))|status(X3,X4,thm))&(~(status(X3,X4,thm))|![X5]:(~(model(X5,X3))|model(X5,X4)))),inference(fof_nnf,[status(thm)],[2])).
% fof(61, plain,(![X3]:![X4]:(?[X5]:(model(X5,X3)&~(model(X5,X4)))|status(X3,X4,thm))&![X3]:![X4]:(~(status(X3,X4,thm))|![X5]:(~(model(X5,X3))|model(X5,X4)))),inference(shift_quantors,[status(thm)],[60])).
% fof(62, plain,(![X6]:![X7]:(?[X8]:(model(X8,X6)&~(model(X8,X7)))|status(X6,X7,thm))&![X9]:![X10]:(~(status(X9,X10,thm))|![X11]:(~(model(X11,X9))|model(X11,X10)))),inference(variable_rename,[status(thm)],[61])).
% fof(63, plain,(![X6]:![X7]:((model(esk3_2(X6,X7),X6)&~(model(esk3_2(X6,X7),X7)))|status(X6,X7,thm))&![X9]:![X10]:(~(status(X9,X10,thm))|![X11]:(~(model(X11,X9))|model(X11,X10)))),inference(skolemize,[status(esa)],[62])).
% fof(64, plain,![X6]:![X7]:![X9]:![X10]:![X11]:(((model(esk3_2(X6,X7),X6)&~(model(esk3_2(X6,X7),X7)))|status(X6,X7,thm))&(~(status(X9,X10,thm))|(~(model(X11,X9))|model(X11,X10)))),inference(shift_quantors,[status(thm)],[63])).
% fof(65, plain,![X6]:![X7]:![X9]:![X10]:![X11]:(((model(esk3_2(X6,X7),X6)|status(X6,X7,thm))&(~(model(esk3_2(X6,X7),X7))|status(X6,X7,thm)))&(~(status(X9,X10,thm))|(~(model(X11,X9))|model(X11,X10)))),inference(distribute,[status(thm)],[64])).
% cnf(67,plain,(status(X1,X2,thm)|~model(esk3_2(X1,X2),X2)),inference(split_conjunct,[status(thm)],[65])).
% fof(69, plain,![X3]:![X4]:((((![X5]:~(model(X5,X3))|![X6]:model(X6,X3))|?[X7]:~(model(X7,X4)))|status(X3,X4,wtc))&(~(status(X3,X4,wtc))|((?[X5]:model(X5,X3)&?[X6]:~(model(X6,X3)))&![X7]:model(X7,X4)))),inference(fof_nnf,[status(thm)],[35])).
% fof(70, plain,(![X3]:![X4]:(((![X5]:~(model(X5,X3))|![X6]:model(X6,X3))|?[X7]:~(model(X7,X4)))|status(X3,X4,wtc))&![X3]:![X4]:(~(status(X3,X4,wtc))|((?[X5]:model(X5,X3)&?[X6]:~(model(X6,X3)))&![X7]:model(X7,X4)))),inference(shift_quantors,[status(thm)],[69])).
% fof(71, plain,(![X8]:![X9]:(((![X10]:~(model(X10,X8))|![X11]:model(X11,X8))|?[X12]:~(model(X12,X9)))|status(X8,X9,wtc))&![X13]:![X14]:(~(status(X13,X14,wtc))|((?[X15]:model(X15,X13)&?[X16]:~(model(X16,X13)))&![X17]:model(X17,X14)))),inference(variable_rename,[status(thm)],[70])).
% fof(72, plain,(![X8]:![X9]:(((![X10]:~(model(X10,X8))|![X11]:model(X11,X8))|~(model(esk4_2(X8,X9),X9)))|status(X8,X9,wtc))&![X13]:![X14]:(~(status(X13,X14,wtc))|((model(esk5_2(X13,X14),X13)&~(model(esk6_2(X13,X14),X13)))&![X17]:model(X17,X14)))),inference(skolemize,[status(esa)],[71])).
% fof(73, plain,![X8]:![X9]:![X10]:![X11]:![X13]:![X14]:![X17]:((((~(model(X10,X8))|model(X11,X8))|~(model(esk4_2(X8,X9),X9)))|status(X8,X9,wtc))&(~(status(X13,X14,wtc))|((model(esk5_2(X13,X14),X13)&~(model(esk6_2(X13,X14),X13)))&model(X17,X14)))),inference(shift_quantors,[status(thm)],[72])).
% fof(74, plain,![X8]:![X9]:![X10]:![X11]:![X13]:![X14]:![X17]:((((~(model(X10,X8))|model(X11,X8))|~(model(esk4_2(X8,X9),X9)))|status(X8,X9,wtc))&(((model(esk5_2(X13,X14),X13)|~(status(X13,X14,wtc)))&(~(model(esk6_2(X13,X14),X13))|~(status(X13,X14,wtc))))&(model(X17,X14)|~(status(X13,X14,wtc))))),inference(distribute,[status(thm)],[73])).
% cnf(75,plain,(model(X3,X2)|~status(X1,X2,wtc)),inference(split_conjunct,[status(thm)],[74])).
% cnf(325,negated_conjecture,(~isa(wtc,thm)),inference(split_conjunct,[status(thm)],[50])).
% cnf(439,plain,(model(X1,esk2_2(wtc,X2))|isa(wtc,X2)),inference(spm,[status(thm)],[75,59,theory(equality)])).
% cnf(9574,plain,(status(X1,esk2_2(wtc,X2),thm)|isa(wtc,X2)),inference(spm,[status(thm)],[67,439,theory(equality)])).
% cnf(486303,plain,(isa(wtc,thm)),inference(spm,[status(thm)],[58,9574,theory(equality)])).
% cnf(486386,plain,($false),inference(sr,[status(thm)],[486303,325,theory(equality)])).
% cnf(486387,plain,($false),486386,['proof']).
% # SZS output end CNFRefutation
% PrfWatch: 6.97 CPU 4.06 WC
% FINAL PrfWatch: 6.97 CPU 4.06 WC
% SZS output end Solution for /tmp/SystemOnTPTP14010/KRS191+1.tptp
% 
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