TSTP Solution File: GRP731-1 by EQP---0.9e

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : EQP---0.9e
% Problem  : GRP731-1 : TPTP v8.1.0. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : tptp2X_and_run_eqp %s

% Computer : n026.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 600s
% DateTime : Sat Jul 16 08:49:06 EDT 2022

% Result   : Unknown 4.36s 4.75s
% Output   : None 
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----No solution output by system
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.06/0.12  % Problem  : GRP731-1 : TPTP v8.1.0. Released v4.0.0.
% 0.06/0.12  % Command  : tptp2X_and_run_eqp %s
% 0.13/0.34  % Computer : n026.cluster.edu
% 0.13/0.34  % Model    : x86_64 x86_64
% 0.13/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.13/0.34  % Memory   : 8042.1875MB
% 0.13/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.13/0.34  % CPULimit : 300
% 0.13/0.34  % WCLimit  : 600
% 0.13/0.34  % DateTime : Mon Jun 13 11:58:21 EDT 2022
% 0.13/0.34  % CPUTime  : 
% 4.36/4.75  ----- EQP 0.9e, May 2009 -----
% 4.36/4.75  The job began on n026.cluster.edu, Mon Jun 13 11:58:21 2022
% 4.36/4.75  The command was "./eqp09e".
% 4.36/4.75  
% 4.36/4.75  set(prolog_style_variables).
% 4.36/4.75  set(lrpo).
% 4.36/4.75  set(basic_paramod).
% 4.36/4.75  set(functional_subsume).
% 4.36/4.75  set(ordered_paramod).
% 4.36/4.75  set(prime_paramod).
% 4.36/4.75  set(para_pairs).
% 4.36/4.75  assign(pick_given_ratio,4).
% 4.36/4.75  clear(print_kept).
% 4.36/4.75  clear(print_new_demod).
% 4.36/4.75  clear(print_back_demod).
% 4.36/4.75  clear(print_given).
% 4.36/4.75  assign(max_mem,64000).
% 4.36/4.75  end_of_commands.
% 4.36/4.75  
% 4.36/4.75  Usable:
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Sos:
% 4.36/4.75  0 (wt=-1) [] mult(unit,A) = A.
% 4.36/4.75  0 (wt=-1) [] mult(A,unit) = A.
% 4.36/4.75  0 (wt=-1) [] mult(A,i(A)) = unit.
% 4.36/4.75  0 (wt=-1) [] mult(i(A),A) = unit.
% 4.36/4.75  0 (wt=-1) [] i(mult(A,B)) = mult(i(A),i(B)).
% 4.36/4.75  0 (wt=-1) [] mult(i(A),mult(A,B)) = B.
% 4.36/4.75  0 (wt=-1) [] rd(mult(A,B),B) = A.
% 4.36/4.75  0 (wt=-1) [] mult(rd(A,B),B) = A.
% 4.36/4.75  0 (wt=-1) [] mult(mult(A,mult(B,A)),C) = mult(A,mult(B,mult(A,C))).
% 4.36/4.75  0 (wt=-1) [] mult(mult(A,B),C) = mult(mult(A,mult(B,C)),asoc(A,B,C)).
% 4.36/4.75  0 (wt=-1) [] mult(A,B) = mult(mult(B,A),op_k(A,B)).
% 4.36/4.75  0 (wt=-1) [] op_l(A,B,C) = mult(i(mult(C,B)),mult(C,mult(B,A))).
% 4.36/4.75  0 (wt=-1) [] op_r(A,B,C) = rd(mult(mult(A,B),C),mult(B,C)).
% 4.36/4.75  0 (wt=-1) [] op_t(A,B) = mult(i(B),mult(A,B)).
% 4.36/4.75  0 (wt=-1) [] op_r(op_r(A,B,C),D,E) = op_r(op_r(A,D,E),B,C).
% 4.36/4.75  0 (wt=-1) [] op_l(op_r(A,B,C),D,E) = op_r(op_l(A,D,E),B,C).
% 4.36/4.75  0 (wt=-1) [] op_l(op_l(A,B,C),D,E) = op_l(op_l(A,D,E),B,C).
% 4.36/4.75  0 (wt=-1) [] op_t(op_r(A,B,C),D) = op_r(op_t(A,D),B,C).
% 4.36/4.75  0 (wt=-1) [] op_t(op_l(A,B,C),D) = op_l(op_t(A,D),B,C).
% 4.36/4.75  0 (wt=-1) [] op_t(op_t(A,B),C) = op_t(op_t(A,C),B).
% 4.36/4.75  0 (wt=-1) [] asoc(asoc(A,B,C),D,E) = unit.
% 4.36/4.75  0 (wt=-1) [] asoc(A,B,asoc(C,D,E)) = unit.
% 4.36/4.75  0 (wt=-1) [] -(op_k(asoc(a,b,c),d) = unit).
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Demodulators:
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Passive:
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Starting to process input.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 1 (wt=5) [] mult(unit,A) = A.
% 4.36/4.75  1 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 2 (wt=5) [] mult(A,unit) = A.
% 4.36/4.75  2 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 3 (wt=6) [] mult(A,i(A)) = unit.
% 4.36/4.75  3 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 4 (wt=6) [] mult(i(A),A) = unit.
% 4.36/4.75  4 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 5 (wt=10) [] i(mult(A,B)) = mult(i(A),i(B)).
% 4.36/4.75  5 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 6 (wt=8) [] mult(i(A),mult(A,B)) = B.
% 4.36/4.75  6 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 7 (wt=7) [] rd(mult(A,B),B) = A.
% 4.36/4.75  7 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 8 (wt=7) [] mult(rd(A,B),B) = A.
% 4.36/4.75  8 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 9 (wt=15) [] mult(mult(A,mult(B,A)),C) = mult(A,mult(B,mult(A,C))).
% 4.36/4.75  9 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 10 (wt=16) [flip(1)] mult(mult(A,mult(B,C)),asoc(A,B,C)) = mult(mult(A,B),C).
% 4.36/4.75  10 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 11 (wt=11) [flip(1)] mult(mult(A,B),op_k(B,A)) = mult(B,A).
% 4.36/4.75  11 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 12 (wt=16) [demod([5]),flip(1)] mult(mult(i(A),i(B)),mult(A,mult(B,C))) = op_l(C,B,A).
% 4.36/4.75  12 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 13 (wt=14) [flip(1)] rd(mult(mult(A,B),C),mult(B,C)) = op_r(A,B,C).
% 4.36/4.75  13 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 14 (wt=10) [] op_t(A,B) = mult(i(B),mult(A,B)).
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 15 (wt=10) [flip(14)] mult(i(A),mult(B,A)) = op_t(B,A).
% 4.36/4.75  clause forward subsumed: 0 (wt=10) [flip(15)] op_t(B,A) = mult(i(A),mult(B,A)).
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 16 (wt=15) [] op_r(op_r(A,B,C),D,E) = op_r(op_r(A,D,E),B,C).
% 4.36/4.75  clause forward subsumed: 0 (wt=15) [flip(16)] op_r(op_r(A,D,E),B,C) = op_r(op_r(A,B,C),D,E).
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 17 (wt=15) [flip(1)] op_r(op_l(A,B,C),D,E) = op_l(op_r(A,D,E),B,C).
% 4.36/4.75  17 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 18 (wt=15) [] op_l(op_l(A,B,C),D,E) = op_l(op_l(A,D,E),B,C).
% 4.36/4.75  clause forward subsumed: 0 (wt=15) [flip(18)] op_l(op_l(A,D,E),B,C) = op_l(op_l(A,B,C),D,E).
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 19 (wt=13) [] op_t(op_r(A,B,C),D) = op_r(op_t(A,D),B,C).
% 4.36/4.75  19 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 20 (wt=13) [] op_t(op_l(A,B,C),D) = op_l(op_t(A,D),B,C).
% 4.36/4.75  20 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 21 (wt=11) [] op_t(op_t(A,B),C) = op_t(op_t(A,C),B).
% 4.36/4.75  clause forward subsumed: 0 (wt=11) [flip(21)] op_t(op_t(A,C),B) = op_t(op_t(A,B),C).
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 22 (wt=9) [] asoc(asoc(A,B,C),D,E) = unit.
% 4.36/4.75  22 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 23 (wt=9) [] asoc(A,B,asoc(C,D,E)) = unit.
% 4.36/4.75  23 is a new demodulator.
% 4.36/4.75  
% 4.36/4.75  ** KEPT: 24 (wt=8) [] -(op_k(asoc(a,b,c),d) = unit).
% 4.36/4.75  
% 4.36/4.75  After processing input:
% 4.36/4.75  
% 4.36/4.75  Usable:
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Sos:
% 4.36/4.75  1 (wt=5) [] mult(unit,A) = A.
% 4.36/4.75  2 (wt=5) [] mult(A,unit) = A.
% 4.36/4.75  3 (wt=6) [] mult(A,i(A)) = unit.
% 4.36/4.75  4 (wt=6) [] mult(i(A),A) = unit.
% 4.36/4.75  7 (wt=7) [] rd(mult(A,B),B) = A.
% 4.36/4.75  8 (wt=7) [] mult(rd(A,B),B) = A.
% 4.36/4.75  6 (wt=8) [] mult(i(A),mult(A,B)) = B.
% 4.36/4.75  24 (wt=8) [] -(op_k(asoc(a,b,c),d) = unit).
% 4.36/4.75  22 (wt=9) [] asoc(asoc(A,B,C),D,E) = unit.
% 4.36/4.75  23 (wt=9) [] asoc(A,B,asoc(C,D,E)) = unit.
% 4.36/4.75  5 (wt=10) [] i(mult(A,B)) = mult(i(A),i(B)).
% 4.36/4.75  14 (wt=10) [] op_t(A,B) = mult(i(B),mult(A,B)).
% 4.36/4.75  15 (wt=10) [flip(14)] mult(i(A),mult(B,A)) = op_t(B,A).
% 4.36/4.75  11 (wt=11) [flip(1)] mult(mult(A,B),op_k(B,A)) = mult(B,A).
% 4.36/4.75  21 (wt=11) [] op_t(op_t(A,B),C) = op_t(op_t(A,C),B).
% 4.36/4.75  19 (wt=13) [] op_t(op_r(A,B,C),D) = op_r(op_t(A,D),B,C).
% 4.36/4.75  20 (wt=13) [] op_t(op_l(A,B,C),D) = op_l(op_t(A,D),B,C).
% 4.36/4.75  13 (wt=14) [flip(1)] rd(mult(mult(A,B),C),mult(B,C)) = op_r(A,B,C).
% 4.36/4.75  9 (wt=15) [] mult(mult(A,mult(B,A)),C) = mult(A,mult(B,mult(A,C))).
% 4.36/4.75  16 (wt=15) [] op_r(op_r(A,B,C),D,E) = op_r(op_r(A,D,E),B,C).
% 4.36/4.75  17 (wt=15) [flip(1)] op_r(op_l(A,B,C),D,E) = op_l(op_r(A,D,E),B,C).
% 4.36/4.75  18 (wt=15) [] op_l(op_l(A,B,C),D,E) = op_l(op_l(A,D,E),B,C).
% 4.36/4.75  10 (wt=16) [flip(1)] mult(mult(A,mult(B,C)),asoc(A,B,C)) = mult(mult(A,B),C).
% 4.36/4.75  12 (wt=16) [demod([5]),flip(1)] mult(mult(i(A),i(B)),mult(A,mult(B,C))) = op_l(C,B,A).
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Demodulators:
% 4.36/4.75  1 (wt=5) [] mult(unit,A) = A.
% 4.36/4.75  2 (wt=5) [] mult(A,unit) = A.
% 4.36/4.75  3 (wt=6) [] mult(A,i(A)) = unit.
% 4.36/4.75  4 (wt=6) [] mult(i(A),A) = unit.
% 4.36/4.75  5 (wt=10) [] i(mult(A,B)) = mult(i(A),i(B)).
% 4.36/4.75  6 (wt=8) [] mult(i(A),mult(A,B)) = B.
% 4.36/4.75  7 (wt=7) [] rd(mult(A,B),B) = A.
% 4.36/4.75  8 (wt=7) [] mult(rd(A,B),B) = A.
% 4.36/4.75  9 (wt=15) [] mult(mult(A,mult(B,A)),C) = mult(A,mult(B,mult(A,C))).
% 4.36/4.75  10 (wt=16) [flip(1)] mult(mult(A,mult(B,C)),asoc(A,B,C)) = mult(mult(A,B),C).
% 4.36/4.75  11 (wt=11) [flip(1)] mult(mult(A,B),op_k(B,A)) = mult(B,A).
% 4.36/4.75  12 (wt=16) [demod([5]),flip(1)] mult(mult(i(A),i(B)),mult(A,mult(B,C))) = op_l(C,B,A).
% 4.36/4.75  13 (wt=14) [flip(1)] rd(mult(mult(A,B),C),mult(B,C)) = op_r(A,B,C).
% 4.36/4.75  17 (wt=15) [flip(1)] op_r(op_l(A,B,C),D,E) = op_l(op_r(A,D,E),B,C).
% 4.36/4.75  19 (wt=13) [] op_t(op_r(A,B,C),D) = op_r(op_t(A,D),B,C).
% 4.36/4.75  20 (wt=13) [] op_t(op_l(A,B,C),D) = op_l(op_t(A,D),B,C).
% 4.36/4.75  22 (wt=9) [] asoc(asoc(A,B,C),D,E) = unit.
% 4.36/4.75  23 (wt=9) [] asoc(A,B,asoc(C,D,E)) = unit.
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  Passive:
% 4.36/4.75  end_of_list.
% 4.36/4.75  
% 4.36/4.75  ------------- memory usage ------------
% 4.36/4.75  Memory dynamically allocated (tp_alloc): 63964.
% 4.36/4.75    type (bytes each)        gets      frees     in use      avail      bytes
% 4.36/4.75  sym_ent (  96)               66          0         66          0      6.2 K
% 4.36/4.75  term (  16)             4487012    3849603     637409          4  12432.7 K
% 4.36/4.75  gen_ptr (   8)          5201182     254893    4946289          0  38642.9 K
% 4.36/4.75  context ( 808)           764862     764860          2         24     20.5 K
% 4.36/4.75  trail (  12)             191504     191504          0          9      0.1 K
% 4.36/4.75  bt_node (  68)           160399     160394          5         53      3.9 K
% 4.36/4.75  ac_position (285432)          0          0          0          0      0.0 K
% 4.36/4.75  ac_match_pos (14044)          0          0          0          0      0.0 K
% 4.36/4.75  ac_match_free_vars_pos (4020)
% 4.36/4.75                                0          0          0          0      0.0 K
% 4.36/4.75  discrim (  12)           812887     182133     630754          0   7391.6 K
% 4.36/4.75  flat (  40)             3709709    3709709          0      59314   2317.0 K
% 4.36/4.75  discrim_pos (  12)        49678      49678          0          1      0.0 K
% 4.36/4.75  fpa_head (  12)           84127          0      84127          0    985.9 K
% 4.36/4.75  fpa_tree (  28)           17456      17456          0        109      3.0 K
% 4.36/4.75  fpa_pos (  36)             6443       6443          0          1      0.0 K
% 4.36/4.75  literal (  12)            18259      13976       4283          1     50.2 K
% 4.36/4.75  clause (  24)             18259      13976       4283          1    100.4 K
% 4.36/4.75  list (  12)                2219       2162         57          2      0.7 K
% 4.36/4.75  list_pos (  20)           18634       5135      13499          5    263.8 K
% 4.36/4.75  pair_index (   40)              2          0          2          0      0.1 K
% 4.36/4.75  
% 4.36/4.75  -------------- statistics -------------
% 4.36/4.75  Clauses input                 23
% 4.36/4.75    Usable input                   0
% 4.36/4.75    Sos input           
% 4.36/4.75  
% 4.36/4.75  ********** ABNORMAL END **********
% 4.36/4.75  ********** in tp_alloc, max_mem parameter exceeded.
% 4.36/4.75            23
% 4.36/4.75    Demodulators input             0
% 4.36/4.75    Passive input                  0
% 4.36/4.75  
% 4.36/4.75  Processed BS (before search)  28
% 4.36/4.75  Forward subsumed BS            4
% 4.36/4.75  Kept BS                       24
% 4.36/4.75  New demodulators BS           18
% 4.36/4.75  Back demodulated BS            0
% 4.36/4.75  
% 4.36/4.75  Clauses or pairs given     29348
% 4.36/4.75  Clauses generated          10179
% 4.36/4.75  Forward subsumed            5920
% 4.36/4.75  Deleted by weight              0
% 4.36/4.75  Deleted by variable count      0
% 4.36/4.75  Kept                        4259
% 4.36/4.75  New demodulators            2142
% 4.36/4.75  Back demodulated            1118
% 4.36/4.75  Ordered paramod prunes         0
% 4.36/4.75  Basic paramod prunes       76918
% 4.36/4.75  Prime paramod prunes        1817
% 4.36/4.75  Semantic prunes                0
% 4.36/4.75  
% 4.36/4.75  Rewrite attmepts          485301
% 4.36/4.75  Rewrites                   45958
% 4.36/4.75  
% 4.36/4.75  FPA overloads                  0
% 4.36/4.75  FPA underloads                 0
% 4.36/4.75  
% 4.36/4.75  Usable size                    0
% 4.36/4.75  Sos size                    3165
% 4.36/4.75  Demodulators size           1539
% 4.36/4.75  Passive size                   0
% 4.36/4.75  Disabled size               1118
% 4.36/4.75  
% 4.36/4.75  Proofs found                   0
% 4.36/4.75  
% 4.36/4.75  ----------- times (seconds) ----------- Mon Jun 13 11:58:25 2022
% 4.36/4.75  
% 4.36/4.75  user CPU time             3.33   (0 hr, 0 min, 3 sec)
% 4.36/4.75  system CPU time           0.25   (0 hr, 0 min, 0 sec)
% 4.36/4.75  wall-clock time           4      (0 hr, 0 min, 4 sec)
% 4.36/4.75  input time                0.00
% 4.36/4.75  paramodulation time       0.07
% 4.36/4.75  demodulation time         0.25
% 4.36/4.75  orient time               0.04
% 4.36/4.75  weigh time                0.01
% 4.36/4.75  forward subsume time      0.02
% 4.36/4.75  back demod find time      0.05
% 4.36/4.75  conflict time             0.01
% 4.36/4.75  LRPO time                 0.02
% 4.36/4.75  store clause time         2.75
% 4.36/4.75  disable clause time       0.03
% 4.36/4.75  prime paramod time        0.01
% 4.36/4.75  semantics time            0.00
% 4.36/4.75  
% 4.36/4.75  EQP interrupted
%------------------------------------------------------------------------------