TSTP Solution File: GEO096+1 by Refute---2015

View Problem - Process Solution

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% File     : Refute---2015
% Problem  : GEO096+1 : TPTP v6.4.0. Released v2.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : isabelle tptp_refute %d %s

% Computer : n049.star.cs.uiowa.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2609 0 2.40GHz
% Memory   : 32218.75MB
% OS       : Linux 3.10.0-327.10.1.el7.x86_64
% CPULimit : 300s
% DateTime : Tue Apr 12 14:34:58 EDT 2016

% Result   : Timeout 300.08s
% Output   : None 
% Verified : 
% SZS Type : None (Parsing solution fails)
% Syntax   : Number of formulae    : 0

% Comments : 
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%----No solution output by system
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%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : GEO096+1 : TPTP v6.4.0. Released v2.4.0.
% 0.00/0.04  % Command  : isabelle tptp_refute %d %s
% 0.02/0.23  % Computer : n049.star.cs.uiowa.edu
% 0.02/0.23  % Model    : x86_64 x86_64
% 0.02/0.23  % CPU      : Intel(R) Xeon(R) CPU E5-2609 0 @ 2.40GHz
% 0.02/0.23  % Memory   : 32218.75MB
% 0.02/0.23  % OS       : Linux 3.10.0-327.10.1.el7.x86_64
% 0.02/0.23  % CPULimit : 300
% 0.02/0.23  % DateTime : Sat Apr  9 12:50:09 CDT 2016
% 0.02/0.23  % CPUTime  : 
% 6.31/5.83  > val it = (): unit
% 6.50/6.03  Trying to find a model that refutes: (EX P. bnd_meet P C1 C2) -->
% 6.50/6.03  (ALL Q.
% 6.50/6.03      bnd_end_point Q (bnd_sum C1 C2) =
% 6.50/6.03      (~ bnd_meet Q C1 C2 & (bnd_end_point Q C1 | bnd_end_point Q C2)))
% 6.91/6.44  Unfolded term: [| ALL C C1. (ALL P. bnd_incident_c P C = bnd_incident_c P C1) --> C = C1;
% 6.91/6.44     ALL C1 C2. (EX P. bnd_meet P C1 C2) --> (EX C. C = bnd_sum C1 C2);
% 6.91/6.44     ALL C C1 C2 P.
% 6.91/6.44        (bnd_closed C & bnd_meet P C1 C2) & C = bnd_sum C1 C2 -->
% 6.91/6.44        (ALL Q. bnd_end_point Q C1 --> bnd_meet Q C1 C2);
% 6.91/6.44     ALL C P. bnd_end_point P C --> (EX Q. bnd_end_point Q C & ~ P = Q);
% 6.91/6.44     ALL C P Q R.
% 6.91/6.44        (bnd_end_point P C & bnd_end_point Q C) & bnd_end_point R C -->
% 6.91/6.44        (P = Q | P = R) | Q = R;
% 6.91/6.44     ALL C P.
% 6.91/6.44        bnd_inner_point P C -->
% 6.91/6.44        (EX C1 C2. bnd_meet P C1 C2 & C = bnd_sum C1 C2);
% 6.91/6.44     ALL C. EX P. bnd_inner_point P C;
% 6.91/6.44     ALL C C1 C2 C3.
% 6.91/6.44        ((bnd_part_of C1 C & bnd_part_of C2 C) & bnd_part_of C3 C) &
% 6.91/6.44        (EX P. (bnd_end_point P C1 & bnd_end_point P C2) &
% 6.91/6.44               bnd_end_point P C3) -->
% 6.91/6.44        ((((bnd_part_of C2 C3 | bnd_part_of C3 C2) | bnd_part_of C1 C2) |
% 6.91/6.44          bnd_part_of C2 C1) |
% 6.91/6.44         bnd_part_of C1 C3) |
% 6.91/6.44        bnd_part_of C3 C1;
% 6.91/6.44     ALL C C1. bnd_part_of C1 C & ~ C1 = C --> bnd_open C1;
% 6.91/6.44     ALL C. bnd_open C = (EX P. bnd_end_point P C);
% 6.91/6.44     ALL C. bnd_closed C = (~ (EX P. bnd_end_point P C));
% 6.91/6.44     ALL P C C1.
% 6.91/6.44        bnd_meet P C C1 =
% 6.91/6.44        ((bnd_incident_c P C & bnd_incident_c P C1) &
% 6.91/6.44         (ALL Q.
% 6.91/6.44             bnd_incident_c Q C & bnd_incident_c Q C1 -->
% 6.91/6.44             bnd_end_point Q C & bnd_end_point Q C1));
% 6.91/6.44     ALL P C.
% 6.91/6.44        bnd_inner_point P C = (bnd_incident_c P C & ~ bnd_end_point P C);
% 6.91/6.44     ALL P C.
% 6.91/6.44        bnd_end_point P C =
% 6.91/6.44        (bnd_incident_c P C &
% 6.91/6.44         (ALL C1 C2.
% 6.91/6.44             ((bnd_part_of C1 C & bnd_part_of C2 C) & bnd_incident_c P C1) &
% 6.91/6.44             bnd_incident_c P C2 -->
% 6.91/6.44             bnd_part_of C1 C2 | bnd_part_of C2 C1));
% 6.91/6.44     ALL C C1 C2.
% 6.91/6.44        (C = bnd_sum C1 C2) =
% 6.91/6.44        (ALL Q.
% 6.91/6.44            bnd_incident_c Q C = (bnd_incident_c Q C1 | bnd_incident_c Q C2));
% 6.91/6.44     ALL C C1.
% 6.91/6.44        bnd_part_of C1 C =
% 6.91/6.44        (ALL P. bnd_incident_c P C1 --> bnd_incident_c P C) |]
% 6.91/6.44  ==> (EX P. bnd_meet P C1 C2) -->
% 6.91/6.44      (ALL Q.
% 6.91/6.44          bnd_end_point Q (bnd_sum C1 C2) =
% 6.91/6.44          (~ bnd_meet Q C1 C2 & (bnd_end_point Q C1 | bnd_end_point Q C2)))
% 6.91/6.44  Adding axioms...
% 6.91/6.45  Typedef.type_definition_def
% 9.61/9.10   ...done.
% 9.61/9.10  Ground types: ?'b, TPTP_Interpret.ind
% 9.61/9.10  Translating term (sizes: 1, 1) ...
% 11.31/10.86  Invoking SAT solver...
% 11.31/10.86  No model exists.
% 11.31/10.86  Translating term (sizes: 2, 1) ...
% 13.92/13.49  Invoking SAT solver...
% 13.92/13.49  No model exists.
% 13.92/13.49  Translating term (sizes: 1, 2) ...
% 29.05/28.57  Invoking SAT solver...
% 29.05/28.57  No model exists.
% 29.05/28.57  Translating term (sizes: 3, 1) ...
% 33.95/33.48  Invoking SAT solver...
% 33.95/33.48  No model exists.
% 33.95/33.48  Translating term (sizes: 2, 2) ...
% 56.62/56.01  Invoking SAT solver...
% 56.62/56.02  No model exists.
% 56.62/56.02  Translating term (sizes: 1, 3) ...
% 127.42/126.62  Invoking SAT solver...
% 127.53/126.72  No model exists.
% 127.53/126.72  Translating term (sizes: 4, 1) ...
% 139.67/138.81  Invoking SAT solver...
% 139.67/138.81  No model exists.
% 139.67/138.81  Translating term (sizes: 3, 2) ...
% 242.72/241.36  Invoking SAT solver...
% 242.72/241.37  No model exists.
% 242.72/241.37  Translating term (sizes: 2, 3) ...
% 300.08/298.23  /export/starexec/sandbox/solver/lib/scripts/run-polyml-5.5.2: line 82: 36364 CPU time limit exceeded (core dumped) "$ISABELLE_HOME/lib/scripts/feeder" -p -h "$MLTEXT" -t "$MLEXIT" $FEEDER_OPTS
% 300.08/298.23       36365                       (core dumped) | { read FPID; "$POLY" -q -i $ML_OPTIONS; RC="$?"; kill -TERM "$FPID"; exit "$RC"; }
% 300.08/298.24  /export/starexec/sandbox/solver/src/HOL/TPTP/lib/Tools/tptp_refute: line 26: 36310 Exit 152                "$ISABELLE_PROCESS" -q -e "use_thy \"/tmp/$SCRATCH\"; exit 1;" HOL-TPTP
% 300.08/298.24       36311 CPU time limit exceeded (core dumped) | grep --line-buffered -v "^###\|^PROOF FAILED for depth\|^Failure node\|inferences so far.  Searching to depth\|^val \|^Loading theory\|^Warning-The type of\|^   monotype.$"
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