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File: doug.out
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 Parsing DOUG control file: /home/olegus/work/doug-git/tests/testdir/DOUG-exec.ctl                                              
 Seperate aggregated RHS file is used. RHS from elemmat_rhs_file is discarded.
 Control parameters:
              solver =     2
              method =     1
         fine_method =     1
           num_iters =    -1
           grid_size =    -1
       coarse_method =    -1
      num_subdomains =     1
              levels =     2
             overlap =     0
           smoothers =     0
          symmstruct =     T
         symmnumeric =     T
          input_type =     2
         matrix_type =     1
    number_of_blocks =     1
             strong1 =    6.700E-01
             strong2 =    6.700E-01
     solve_tolerance =    1.000E-12
      solve_maxiters =   300
             radius1 =     2
             radius2 =     1
           minasize1 =     2
           minasize2 =     2
           maxasize1 =    -1
           maxasize2 =   128
               debug =     0
             verbose =     3
            plotting =     0
       initial_guess =     2
  interpolation_type =    -1
     solution_format =     2
      start_vec_type =     2
assembled_rhs_format =     2
  assembled_rhs_file = /home/olegus/work/doug-git/tests/assembled/lap16x16/rhs.xdr
  assembled_mtx_file = /home/olegus/work/doug-git/tests/assembled/lap16x16/Lap16x16.txt
assembled_mtx_format =     0
 Type of Graph set to default D_GRAPH_DUAL
 ##### Assembled input file: ##### /home/olegus/work/doug-git/tests/assembled/lap16x16/Lap16x16.txt                                                                                      
 n,nnz:         225        1065
   1 mat: 1 1  0.4000000000000000E+01
   2 mat: 116 -0.1000000000000000E+01
1064 mat:**** -0.1000000000000000E+01
1065 mat:****  0.4000000000000000E+01
 ##### Assembled RHS file: ##### /home/olegus/work/doug-git/tests/assembled/lap16x16/rhs.xdr                                                                                           
 Cartesian Mesh!!!

 Mesh object [info]:
  # of elements              (nell)   =       0
  # of global freedoms       (ngf)    =     225
  # of local  freedoms       (nlf)    =     225
  # of spacial dimensions    (nsd)    =       2
  max # of freedoms per elem (mfrelt) =       4
  total # of nodes in a mesh (nnode)  =     225

 Building restriction matrix
 Building coarse matrix
 WARNING: SpMtx_arrange to            1  not needed...
 WARNING: SpMtx_arrange to            1  not needed...
 WARNING: SpMtx_arrange to            1  not needed...
 WARNING: SpMtx_arrange to            1  not needed...
 too small aggr            3  of size:           1  maxcw_sum:  0.35714285714285715     
 eater of            3  is:           2
 too small aggr            5  of size:           1  maxcw_sum:  0.31250000000000000     
 eater of            5  is:           4
 too small aggr            6  of size:           1  maxcw_sum:  0.50000000000000000     
 eater of            6  is:           4
 too small aggr            7  of size:           1  maxcw_sum:  0.50000000000000000     
 eater of            7  is:           4
 too small aggr            8  of size:           1  maxcw_sum:  0.50000000000000000     
 eater of            8  is:           2
 too small aggr            9  of size:           1  maxcw_sum:  0.50000000000000000     
 eater of            9  is:           4
 # too small aggrs:           6  #eaten:           6  #occupied:           0  # remaining:           0
 # coarse aggregates:           3
 WARNING: SpMtx_arrange to            1  not needed...
 calling pcg_weigs

Preconditioned conjugate gradient:
maxit =    300, tol = 0.10E-11
init_norm =  0.150000000000000E+02
 factorising coarse matrix of size          16  and nnz:          66
    1: res_norm= 0.281040419017740E+02
    2: res_norm= 0.158307973887397E+02
    3: res_norm= 0.988545516060756E+01
    4: res_norm= 0.363446828265227E+01
    5: res_norm= 0.263643421861945E+01
    6: res_norm= 0.437086400811533E+00
    7: res_norm= 0.181367498833968E+00
    8: res_norm= 0.899599363650845E-01
    9: res_norm= 0.503683349370465E-01
   10: res_norm= 0.259588635707797E-01
   11: res_norm= 0.907101507654872E-02
   12: res_norm= 0.308349854479839E-02
   13: res_norm= 0.103861756052779E-02
   14: res_norm= 0.448671270988383E-03
   15: res_norm= 0.116413893493432E-03
   16: res_norm= 0.445148193911540E-04
   17: res_norm= 0.172238024664943E-04
   18: res_norm= 0.703192697735285E-05
   19: res_norm= 0.384571239226030E-05
   20: res_norm= 0.134976189609716E-05
   21: res_norm= 0.373940756842984E-06
   22: res_norm= 0.903117685006044E-07
   23: res_norm= 0.256719772580470E-07
   24: res_norm= 0.112046996291686E-07
   25: res_norm= 0.266207107066202E-08
   26: res_norm= 0.646010432744940E-09
   27: res_norm= 0.121671113433887E-09
   28: res_norm= 0.271379195600645E-10
   29: res_norm= 0.797956772058899E-11
#it: 29 Cond#: 0.1072E+02
 time spent in pcg():  5.12003898620605469E-003
     ...of which setup:  2.13813781738281250E-003
        ...of which factorisation:  2.13718414306640625E-003
 solve time without setup:  2.98190116882324219E-003

DOUG: <  0> doug ended

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