TRANSP Grid Analysis 204112S34 NSTU tr.log

==>runtrx_r9 start: date:  Fri Oct 2 10:56:45 PM EDT 2026 ( flux-node09.local )
argv = 2
iarg = 2
cmd_opt  = run
runtrx_r9: tok.yy = NSTU.16
==========(runtrx_r9)======================
date:  Fri Oct 2 10:56:45 PM EDT 2026 ( flux-node09.local )
args:  204112S34 run
==========(runtrx_r9)======================
==========(runtrx_r9)======================
==========TRANSP link & load============
==========(runtrx_r9)======================
date:  Fri Oct 2 10:56:45 PM EDT 2026 ( flux-node09.local )
--> copy_expert_for: standard expert source copied to: 204112S34ex.for
 **** tr_build.py trexe 204112S34
/p/pshare/git/transp-test-gcc/codesys/tools/tr_build.py trexe 204112S34
Building 204112S34TR.EXE executable
/usr/bin/ld: /p/pshare/transp/opt/toric6_pppl/1.1.1/gcc/13.2.0/bin/Linux/Ser/libtoric.a(mytmpname.o): in function `mytempname_':
mytmpname.c:(.text+0x90): warning: the use of `tempnam' is dangerous, better use `mkstemp'
==>runtrx_r9:  TRANSP link successful
==========(runtrx_r9)======================
==========TRANSP execution==============
date:  Fri Oct 2 10:56:49 PM EDT 2026 ( flux-node09.local )
==========(runtrx_r9)======================
runtrx_r9: Check File System
runtrx_r9: mpirun_option=  true
 found proclist.dat
%shell_server_exec: Testing file system ...
%shell_server_exec:   runid    = 204112S34
%shell_server_exec:   dir0     = /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
%shell_server_exec:   dirN     = /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
%shell_server_exec:   testfile = 204112S34_1854296_test.dat
 
%shell_server_exec: parallel file system, only one node flux-node09.local
 
%runtrx_r9: TRANSP_EXEC_METHOD = 0
 
%runtrx_r9: TRANSP_PARALLEL_FILESYS = YES
 ...runtrx_r9 executing: /opt/pppl/software/gcc/13.2.0/openmpi/4.1.6/bin/mpirun -np  32  /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34/204112S34TR.EXE 204112S34 ... 
  %trmpi_init.f90: LOG_LEVEL env. var.: 1
  %trmpi_init.f90: logfile_level: warn
  !trmpi_init.f90 (rank 0): MAX_MPI_INT_BLOCK environment variable: undefined. Default value will be used.
  !trmpi_init.f90 (rank 0): MAX_MPI_R8_BLOCK environment variable: undefined. Default value will be used.
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 trmpi_init: NBI_NPROCS =          32   32
 %trmpi_openlog: LOGFILE_LEVEL = warn
     DATE:  Fri Oct  2 22:56:53 2026

  TRANSP Version: 25.1.0
  TRANSP DOI: 10.11578/dc.20180627.4
  Build Date: 2026/05/27


  ------------- 
  %splitn_rhs: warning: namelist assign spans multiple rows of array.
 NIGCX=2,0,2,0,2,0,2,0,2,0,1,0,1,0,1,0   ! WHICH SPECIES
  ------------- 
  %splitn_rhs: warning: namelist assign spans multiple rows of array.
 CXLMLO=10*500., 2160.,0.,2820.,0.,2380.,0.
  ------------- 
  %splitn_rhs: warning: namelist assign spans multiple rows of array.
 CXLMHI=10*2500., 8780.,0.,8470.,0.,8000.,0.
  ------------- 
  %splitn_rhs: warning: namelist assign spans multiple rows of array.
 CXMULO=10*0.1, 6*1.5
  ------------- 
  %splitn_rhs: warning: namelist assign spans multiple rows of array.
 CXMUHI=10*2.0, 6*20.0
  %splitn_module: update block detected, t=   8.0000000000000002E-002
  %splitn_module: update block detected, t=  0.17999999999999999     
  %splitn_module: update block detected, t=  0.28000000000000003     
  %splitn_module: update block detected, t=  0.38000000000000000     
  %splitn_module: update block detected, t=  0.47999999999999998     
  %splitn_module: update block detected, t=  0.57999999999999996     
  %splitn_module: update block detected, t=  0.68000000000000005     
  %splitn_module: update block detected, t=  0.78000000000000003     
  %splitn_module: update block detected, t=  0.88000000000000000     
  
 namelist elements assigned the same value more than once:
   XYBAPA                               XYBSCA                                 
  
 namelist element value field(s): decimal point(s) inserted:
   APROF_EDGE_VALUE_D2F                                                        
     %NLIST: open namelist file204112S34TR.ZDA             
 %trcom_static_box: loading static data
  %trgdat: NLBCCW= F  from PH.CDF file
  %trgdat: NLJCCW= T  from PH.CDF file
  %trcom_allocate: reallocate: RLIM_PTS
  %trcom_allocate: reallocate: YLIM_PTS
%get_mhd_free_grid: loading ISOLVER state file iso_nstx-upgrade.nc
%refresh_dual: refreshing internal dual memory
%green_points: cpu time =      0.210
%refresh_dual: done
%isobox_setup::regrid: a regrid is not needed
!set_active_feedbacks: cleared source for feedback ihor
!set_active_feedbacks: cleared source for feedback iver
!set_active_feedbacks: cleared source for feedback ioh
 %setup_mhd_free: nr=  129, nz=  129
  %check_rzfs_data: RFS and ZFS flux surface data has   41 radial grid points:
   mapped to TRANSP run with   21 radial grid points.
  %trgdat: NMOM=          64
  %DATCHK_MPI: NBI_PSERVE =            1
 %trmpi_set_numprocs: TRANSP w/MPI linked in, numprocs=    32.
  
  ************************** 
  **** TRANSP MPI MODE: **** 
  ************************** 
      TRANSP_NPROCS =           32
  
  trmpi_env_update broadcast (cpu0): mpi_share_env done. 
  
  %datchk: reset MRSTRT to            0
  %datchk: time dependent output resolution (sedit,stedit vs. time: "DTX") detected.
  %datchk: time dependent geometry timestep (dtmaxg vs. time: "DTG") detected.
  %datchk: time dependent source timestep (dt_sources vs. time: "DTS") detected.
  %DATCHK: ISOLVER, free-boundary
 DATCHK: CHECKING ARRAY DIMENSIONS, SWITCHES, ETC
  %TIME DEPENDENT FAST ION ANOM. DIFFUSION CONTROLS DETECTED!
  %DATCHK: NYXINV incremented to be odd:         101         161
  %DATCHK: no ECH/ECCD, NLECH=F,
  %DATCHK: no Lower Hybrid, NLLH=F
  TIDXSW defaulted: value of 0.05 assigned.
 %DATCHK warning:  RFRAC defaulted.
  %DATCKICH -- NLICRF=F so force NICHA=0
  %DATCKA: ACfile times pre-screen... 
 %DATCKA -- CHECKING NON-DEFAULT SPECIFICATIONS FOR AC FILE I/O
  GIVEN IN NAMELIST CHARACTER DATA ARRAYS "SELOUT" AND "SELAVG"
 %ASCXFIN -- AC FILE OPERATION COMPLETED SUCCESSFULLY.
  %LH_ONOFF: no LH on/off times found.
  %EC_ONOFF: no ECH on/off times found.
  %ICRF_ONOFF: no ICRF on/off times found.
 %NB_ONOFF: NBI on/off times (s):   7.5000E-02  1.2000E+00
  ps_init_tag: Plasma State v3.000 f90 module initialization.
 AUXVAL-- INITITIALIZE shared data structures.
  %DATCKA: ACfile times pre-screen... 
  arrays allocated in pt_diff_data_init
  arrays allocated in ptsolver_data_init
 MCINIT: RANDOM NUMBER GEN INITIALIZED -          1652280961           1652280961
  %tabort_update: no namelist TABORT requests after t=   5.0000000000000003E-002
 AUXVAL-- INITIALIZE PLOTTING OUTPUT SYSTEM
  %AUXVAL: tbon & nb_next_ontime mismatch: 
      tbon:  7.5000E-02
  tbon_int:  1.0000E+34
 AUXVAL-- INITIALIZE TEMPERATURE AND DENSITY PROFILES
 AUXVAL-- GEOMETRY INITIALIZATION PART 2.
  GFRAM0: bdy curvature ratio OK at t= 5.2200E-02 seconds:  8.3037E-02
  GFRAM0: bdy curvature ratio OK at t= 5.0000E-02 seconds:  8.3037E-02
  dmg_datbuf_expand call from dmgini_sized: isize=           0
  ...reading TF.PLN header data...
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      0
 TA=-5.00000E-02 CPU TIME= 5.00120E-02 SECONDS.  DT= 1.00000E-04
 %INITAL:  pseudo time advanced to -4.887412E-02
 %INITAL:  pseudo time advanced to -4.741977E-02
 %INITAL:  pseudo time advanced to -4.574339E-02
 %INITAL:  pseudo time advanced to -4.457923E-02
 %INITAL:  pseudo time advanced to -4.312404E-02
 %INITAL:  pseudo time advanced to -4.130505E-02
 %INITAL:  pseudo time advanced to -3.930505E-02
 %INITAL:  pseudo time advanced to -3.730505E-02
 %INITAL:  pseudo time advanced to -3.530505E-02
 %INITAL:  pseudo time advanced to -3.330505E-02
 %INITAL:  pseudo time advanced to -3.130505E-02
 %INITAL:  pseudo time advanced to -2.930505E-02
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
 %treqbox_init_tr: clearing eqbox and loading tr attributes
 %treqbox_init_iso: loading iso attributes for isolver
%isobox_ncloadTok: state file for nstu, config "shot: 204112" is iso_nstx-upgrade.nc
%isom_deallocate: deallocated variable data
%isog_deallocate: deallocated variable data
%isoc_deallocate: deallocated variable data
%taint_dual: internal data is tainted
%dual_mod::free_int_memory: freeing internal dual memory
%isod_deallocate: deallocated variable data
%isop_deallocate: deallocated variable data
%isol_deallocate: deallocated variable data
%ref_mod::free_int_memory: freeing internal reference memory
%isor_deallocate: deallocated variable data
%isoi_deallocate: deallocated variable data
%isos_deallocate: deallocated variable data
%isof_deallocate: deallocated variable data
%isob_deallocate: deallocated variable data
%isow_deallocate: deallocated variable data
%isoq_deallocate: deallocated variable data
%refresh_dual: refreshing internal dual memory
%green_points: cpu time =      0.209
%refresh_dual: done
!set_active_feedbacks: cleared source for feedback ihor
!set_active_feedbacks: cleared source for feedback iver
!set_active_feedbacks: cleared source for feedback ioh
 %meq_resize: allocating meq storage of size =            5
  Avg. GS error:     8.906E-03
  Plasma Current:    2.250E+05,   target:   2.250E+05,   error:   0.001%
  Edge Q:               28.090,   target:      18.513,   error:  51.737%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3279E+01 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.5283E-01
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     9.052E-03
  Plasma Current:    2.283E+05,   target:   2.283E+05,   error:   0.004%
  Edge Q:               27.937,   target:      18.513,   error:  50.910%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  3.2687E+01 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.4415E-01
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      0
 TA=-2.93051E-02 CPU TIME= 4.43550E-02 SECONDS.  DT= 2.00000E-03
 %INITAL:  pseudo time advanced to -2.730505E-02
 %INITAL:  pseudo time advanced to -2.530505E-02
 %INITAL:  pseudo time advanced to -2.330505E-02
 %INITAL:  pseudo time advanced to -2.130505E-02
 %INITAL:  pseudo time advanced to -1.930505E-02
 %INITAL:  pseudo time advanced to -1.730505E-02
 %INITAL:  pseudo time advanced to -1.530505E-02
 %INITAL:  pseudo time advanced to -1.330505E-02
 %INITAL:  pseudo time advanced to -1.130505E-02
 %INITAL:  pseudo time advanced to -9.305053E-03
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     8.130E-03
  Plasma Current:    1.852E+05,   target:   2.250E+05,   error:  17.709%
  Edge Q:               20.164,   target:      29.582,   error:  31.839%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7718E+00 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.4268E-01
  %tdb_profin:  t%rmajmp and input data major radius grids not matched:
  R1(t%rmajmp, data):    31.501216270432447        34.655854180519299     
  R2(t%rmajmp, data):    146.87593410607997        146.51266187131722     
    (fixup applied).
  %tdb_profin:  t%rmajmp and input data major radius grids not matched:
  R1(t%rmajmp, data):    31.501216270432447        34.655854180519299     
  R2(t%rmajmp, data):    146.87593410607997        146.51266187131722     
    (fixup applied).
  %tdb_profin:  t%rmajmp and input data major radius grids not matched:
  R1(t%rmajmp, data):    31.501216270432447        34.655854180519299     
  R2(t%rmajmp, data):    146.87593410607997        146.51266187131722     
    (fixup applied).
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  %tdb_profin:  t%rmajmp and input data major radius grids not matched:
  R1(t%rmajmp, data):    31.501216270432447        34.655854180519299     
  R2(t%rmajmp, data):    146.87593410607997        146.51266187131722     
    (fixup applied).
  Avg. GS error:     7.766E-03
  Plasma Current:    1.979E+05,   target:   2.283E+05,   error:  13.311%
  Edge Q:               20.119,   target:      29.582,   error:  31.991%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.9222E+00 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.4854E-01
  %tdb_profin:  t%rmajmp and input data major radius grids not matched:
  R1(t%rmajmp, data):    31.501278926645259        34.655854180519299     
  R2(t%rmajmp, data):    147.08814283016443        146.51266187131722     
    (fixup applied).
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      0
 TA=-9.30505E-03 CPU TIME= 4.42510E-02 SECONDS.  DT= 2.00000E-03
 %INITAL:  pseudo time advanced to -7.305053E-03
 %INITAL:  pseudo time advanced to -5.305053E-03
 %INITAL:  pseudo time advanced to -3.305053E-03
 %INITAL:  pseudo time advanced to -1.305053E-03
 %INITAL:  pseudo time advanced to  6.949470E-04
 %INITAL:  pseudo time advanced to  2.694947E-03
 %INITAL:  pseudo time advanced to  4.694947E-03
 %INITAL:  pseudo time advanced to  6.694947E-03
 %INITAL:  pseudo time advanced to  8.694947E-03
 %INITAL:  pseudo time advanced to  1.069495E-02
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     5.949E-03
  Plasma Current:    2.250E+05,   target:   2.250E+05,   error:   0.003%
  Edge Q:               17.605,   target:      16.788,   error:   4.867%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  2.1835E+00 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6042E-01
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     5.583E-03
  Plasma Current:    2.283E+05,   target:   2.283E+05,   error:   0.001%
  Edge Q:               17.070,   target:      16.788,   error:   1.681%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6912E+00 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5839E-01
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      0
 TA= 1.06949E-02 CPU TIME= 4.49210E-02 SECONDS.  DT= 2.00000E-03
 %INITAL:  pseudo time advanced to  1.269495E-02
 %INITAL:  pseudo time advanced to  1.469495E-02
 %INITAL:  pseudo time advanced to  1.669495E-02
 %INITAL:  pseudo time advanced to  1.869495E-02
 %INITAL:  pseudo time advanced to  2.069495E-02
 %INITAL:  pseudo time advanced to  2.269495E-02
 %INITAL:  pseudo time advanced to  2.469495E-02
 %INITAL:  pseudo time advanced to  2.669495E-02
 %INITAL:  pseudo time advanced to  2.869495E-02
 %INITAL:  pseudo time advanced to  3.069495E-02
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     5.698E-03
  Plasma Current:    2.250E+05,   target:   2.250E+05,   error:   0.002%
  Edge Q:               17.328,   target:      17.736,   error:   2.301%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7128E+00 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5327E-01
% MHDEQ: TG1=     0.050000 ; TG2=     0.052200 ; DTG=  2.200E-03
  *** Isolver *** 
  Avg. GS error:     5.659E-03
  Plasma Current:    2.283E+05,   target:   2.283E+05,   error:   0.001%
  Edge Q:               17.246,   target:      17.736,   error:   2.765%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4637E+00 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5266E-01
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      0
 TA= 3.06949E-02 CPU TIME= 4.43550E-02 SECONDS.  DT= 2.00000E-03
 %INITAL:  pseudo time advanced to  3.269495E-02
 %INITAL:  pseudo time advanced to  3.469495E-02
 %INITAL:  pseudo time advanced to  3.669495E-02
 %INITAL:  pseudo time advanced to  3.869495E-02
 %INITAL:  pseudo time advanced to  4.069495E-02
 %INITAL:  pseudo time advanced to  4.269495E-02
 %INITAL:  pseudo time advanced to  4.469495E-02
 %INITAL:  pseudo time advanced to  4.669495E-02
 %INITAL:  pseudo time advanced to  4.869495E-02
 sce_equil_init:
    Equilibration feature not active (noption_equil <= 0 in namelist).
  
  %fi_finish: enter
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      1
 TA= 5.00000E-02 CPU TIME= 4.74950E-02 SECONDS.  DT= 1.00000E-03
  %check_save_state: TR_WALLTIME =          600
  %check_save_state: QSHARE=/p/transpgrid/qshare                                                                                                    
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  T
  %check_save_state: check at wall_hours =    1.9250833333444461E-002
  %wrstf: start call wrstf.
  %wrstf: open new restart file:204112S34RS.DAT
  %wrstf: open204112S34RS.DAT_NEW, status=           0
  %wrstf: record, ier=           1  (ier=1, OK)
  %wrstf: psload_save
  %ps_rezone_chk: no rezone operator available (no MHD equilibrium).
  %ps_rezone_chk: no rezone operator available (no MHD equilibrium).
  %ps_rezone_chk: no rezone operator available (no MHD equilibrium).
  %wrstf: write marker file.
  %wrstf: transp_rplot_state_backup
%trIsoSaveState: writing ISO savefile 204112S34_iso_restart.cdf

 % RESTART RECORD WRITTEN AT TA=  5.0000000E-02

  arrays allocated in pt_diff_data_init
  arrays allocated in ptsolver_data_init

 %WRSTF: virtual memory size =  1.454E+03 MB.

 --> plasma_hash("gframe"): TA= 5.000000E-02 NSTEP=     1 Hash code:   15294939
 ->PRGCHK: bdy curvature ratio at t= 5.0397E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.050000 ; TG2=     0.050397 ; DTG=  3.968E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Avg. GS error:     3.168E-03
  Plasma Current:    2.256E+05,   target:   2.256E+05,   error:   0.001%
  Edge Q:               17.251,   target:      17.463,   error:   1.216%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0041E+00 SECONDS
   DATA R*BT AT EDGE:  5.9042E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5428E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.050000 TO TG2=    0.050397 @ NSTEP        1
   GFRAME TG2 MOMENTS CHECKSUM:  3.3273668577789D+03
  GASFL called from sbrtn pbal
  GASFL called from sbrtn pbal
  %nclass_geometry: Allocating module variables
  %nclass_geometry_mod: replacing geometry module variables in the ncbox
  %nclass_driver: Allocating module variables
  %nclass_driver_mod: replacing geometry module variables in the ncbox
  %nclass_geometry: Deallocating module variables
  %nclass_geometry: Allocating module variables
  %nclass_geometry_mod: replacing geometry module variables in the ncbox
  %nclass_driver: Deallocating module variables
  %nclass_driver: Allocating module variables
  %nclass_driver_mod: replacing geometry module variables in the ncbox
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.73817E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  7.11951E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  7.06562E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.039683E-02 NSTEP=     2 Hash code:   70169868
 ->PRGCHK: bdy curvature ratio at t= 5.0828E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.050397 ; TG2=     0.050828 ; DTG=  4.316E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.047E-07
  FluxDiff MaxDT:  4.376E-04

  Avg. GS error:     3.192E-03
  Plasma Current:    2.262E+05,   target:   2.262E+05,   error:   0.001%
  Edge Q:               17.213,   target:      17.260,   error:   0.270%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8401E-01 SECONDS
   DATA R*BT AT EDGE:  5.9043E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5530E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.050397 TO TG2=    0.050828 @ NSTEP        2
   GFRAME TG2 MOMENTS CHECKSUM:  3.3279187299693D+03
 --> plasma_hash("gframe"): TA= 5.082846E-02 NSTEP=     3 Hash code:   63031350
 ->PRGCHK: bdy curvature ratio at t= 5.1260E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.050828 ; TG2=     0.051260 ; DTG=  4.316E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.472E-07
  FluxDiff MaxDT:  4.741E-04

  Avg. GS error:     3.116E-03
  Plasma Current:    2.269E+05,   target:   2.269E+05,   error:   0.002%
  Edge Q:               17.179,   target:      17.363,   error:   1.058%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.7496E-01 SECONDS
   DATA R*BT AT EDGE:  5.9044E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5554E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.050828 TO TG2=    0.051260 @ NSTEP        3
   GFRAME TG2 MOMENTS CHECKSUM:  3.3287043599182D+03
 --> plasma_hash("gframe"): TA= 5.126009E-02 NSTEP=     4 Hash code:  118416696
 ->PRGCHK: bdy curvature ratio at t= 5.1726E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.051260 ; TG2=     0.051726 ; DTG=  4.655E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.023E-07
  FluxDiff MaxDT:  4.869E-04

  Avg. GS error:     3.180E-03
  Plasma Current:    2.276E+05,   target:   2.276E+05,   error:   0.001%
  Edge Q:               17.140,   target:      17.194,   error:   0.313%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6920E-01 SECONDS
   DATA R*BT AT EDGE:  5.9046E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5607E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.051260 TO TG2=    0.051726 @ NSTEP        4
   GFRAME TG2 MOMENTS CHECKSUM:  3.3294849813972D+03
 --> plasma_hash("gframe"): TA= 5.172558E-02 NSTEP=     5 Hash code:   55735642
 ->PRGCHK: bdy curvature ratio at t= 5.2210E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.051726 ; TG2=     0.052210 ; DTG=  4.849E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.321E-07
  FluxDiff MaxDT:  5.056E-04

  Avg. GS error:     3.171E-03
  Plasma Current:    2.283E+05,   target:   2.283E+05,   error:   0.002%
  Edge Q:               17.105,   target:      17.288,   error:   1.064%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5505E-01 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5621E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.051726 TO TG2=    0.052210 @ NSTEP        5
   GFRAME TG2 MOMENTS CHECKSUM:  3.3304440395692D+03
 --> plasma_hash("gframe"): TA= 5.221047E-02 NSTEP=     6 Hash code:   85722830
 ->PRGCHK: bdy curvature ratio at t= 5.2706E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.052210 ; TG2=     0.052706 ; DTG=  4.954E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.452E-07
  FluxDiff MaxDT:  5.138E-04

  Avg. GS error:     3.205E-03
  Plasma Current:    2.291E+05,   target:   2.291E+05,   error:   0.001%
  Edge Q:               17.067,   target:      17.125,   error:   0.336%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6450E-01 SECONDS
   DATA R*BT AT EDGE:  5.9048E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5660E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.052210 TO TG2=    0.052706 @ NSTEP        6
   GFRAME TG2 MOMENTS CHECKSUM:  3.3313744128239D+03
 --> plasma_hash("gframe"): TA= 5.270589E-02 NSTEP=     7 Hash code:   34759040
 ->PRGCHK: bdy curvature ratio at t= 5.3213E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.052706 ; TG2=     0.053213 ; DTG=  5.067E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.957E-07
  FluxDiff MaxDT:  5.264E-04

  Avg. GS error:     3.215E-03
  Plasma Current:    2.298E+05,   target:   2.298E+05,   error:   0.002%
  Edge Q:               17.033,   target:      17.214,   error:   1.053%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.3668E-01 SECONDS
   DATA R*BT AT EDGE:  5.9049E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5672E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.052706 TO TG2=    0.053213 @ NSTEP        7
   GFRAME TG2 MOMENTS CHECKSUM:  3.3323933412233D+03
 --> plasma_hash("gframe"): TA= 5.321258E-02 NSTEP=     8 Hash code:   58646095
 ->PRGCHK: bdy curvature ratio at t= 5.3731E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.053213 ; TG2=     0.053731 ; DTG=  5.187E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.897E-07
  FluxDiff MaxDT:  5.333E-04

  Avg. GS error:     3.233E-03
  Plasma Current:    2.306E+05,   target:   2.306E+05,   error:   0.001%
  Edge Q:               16.995,   target:      17.056,   error:   0.357%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6592E-01 SECONDS
   DATA R*BT AT EDGE:  5.9049E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5707E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.053213 TO TG2=    0.053731 @ NSTEP        8
   GFRAME TG2 MOMENTS CHECKSUM:  3.3334287026934D+03
 --> plasma_hash("gframe"): TA= 5.373132E-02 NSTEP=     9 Hash code:   47842089
 ->PRGCHK: bdy curvature ratio at t= 5.4263E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.053731 ; TG2=     0.054263 ; DTG=  5.317E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.075E-06
  FluxDiff MaxDT:  5.431E-04

  Avg. GS error:     3.248E-03
  Plasma Current:    2.314E+05,   target:   2.314E+05,   error:   0.002%
  Edge Q:               16.961,   target:      17.141,   error:   1.052%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1881E-01 SECONDS
   DATA R*BT AT EDGE:  5.9049E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5721E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.053731 TO TG2=    0.054263 @ NSTEP        9
   GFRAME TG2 MOMENTS CHECKSUM:  3.3345215197929D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=      9
 TA= 5.37313E-02 CPU TIME= 4.66540E-02 SECONDS.  DT= 5.31717E-04
 --> plasma_hash("gframe"): TA= 5.426304E-02 NSTEP=    10 Hash code:   27515219
 ->PRGCHK: bdy curvature ratio at t= 5.4795E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.054263 ; TG2=     0.054795 ; DTG=  5.317E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.150E-06
  FluxDiff MaxDT:  5.489E-04

  Avg. GS error:     3.244E-03
  Plasma Current:    2.322E+05,   target:   2.322E+05,   error:   0.001%
  Edge Q:               16.925,   target:      16.988,   error:   0.368%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6765E-01 SECONDS
   DATA R*BT AT EDGE:  5.9048E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5755E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.054263 TO TG2=    0.054795 @ NSTEP       10
   GFRAME TG2 MOMENTS CHECKSUM:  3.3356190497999D+03
 --> plasma_hash("gframe"): TA= 5.479476E-02 NSTEP=    11 Hash code:   83503248
 ->PRGCHK: bdy curvature ratio at t= 5.5341E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.054795 ; TG2=     0.055341 ; DTG=  5.461E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.206E-06
  FluxDiff MaxDT:  5.587E-04

  Avg. GS error:     3.258E-03
  Plasma Current:    2.330E+05,   target:   2.330E+05,   error:   0.002%
  Edge Q:               16.891,   target:      17.070,   error:   1.049%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1932E-01 SECONDS
   DATA R*BT AT EDGE:  5.9047E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5768E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.054795 TO TG2=    0.055341 @ NSTEP       11
   GFRAME TG2 MOMENTS CHECKSUM:  3.3367493582430D+03
 --> plasma_hash("gframe"): TA= 5.534085E-02 NSTEP=    12 Hash code:   35122075
 ->PRGCHK: bdy curvature ratio at t= 5.5887E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.055341 ; TG2=     0.055887 ; DTG=  5.461E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.311E-06
  FluxDiff MaxDT:  5.647E-04

  Avg. GS error:     3.258E-03
  Plasma Current:    2.338E+05,   target:   2.338E+05,   error:   0.001%
  Edge Q:               16.856,   target:      16.920,   error:   0.379%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6686E-01 SECONDS
   DATA R*BT AT EDGE:  5.9046E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5782E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.055341 TO TG2=    0.055887 @ NSTEP       12
   GFRAME TG2 MOMENTS CHECKSUM:  3.3378878462627D+03
 --> plasma_hash("gframe"): TA= 5.588693E-02 NSTEP=    13 Hash code:   93438075
 ->PRGCHK: bdy curvature ratio at t= 5.6449E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.055887 ; TG2=     0.056449 ; DTG=  5.621E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.361E-06
  FluxDiff MaxDT:  5.751E-04

  Avg. GS error:     3.284E-03
  Plasma Current:    2.347E+05,   target:   2.347E+05,   error:   0.001%
  Edge Q:               16.822,   target:      17.000,   error:   1.046%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0146E-01 SECONDS
   DATA R*BT AT EDGE:  5.9044E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5781E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.055887 TO TG2=    0.056449 @ NSTEP       13
   GFRAME TG2 MOMENTS CHECKSUM:  3.3390314004005D+03
 --> plasma_hash("gframe"): TA= 5.644908E-02 NSTEP=    14 Hash code:   86963491
 ->PRGCHK: bdy curvature ratio at t= 5.7011E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.056449 ; TG2=     0.057011 ; DTG=  5.621E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.488E-06
  FluxDiff MaxDT:  5.804E-04

  Avg. GS error:     3.286E-03
  Plasma Current:    2.355E+05,   target:   2.355E+05,   error:   0.001%
  Edge Q:               16.786,   target:      16.852,   error:   0.389%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6733E-01 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5794E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.056449 TO TG2=    0.057011 @ NSTEP       14
   GFRAME TG2 MOMENTS CHECKSUM:  3.3401947265766D+03
 --> plasma_hash("gframe"): TA= 5.701123E-02 NSTEP=    15 Hash code:   78041670
 ->PRGCHK: bdy curvature ratio at t= 5.7592E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.057011 ; TG2=     0.057592 ; DTG=  5.803E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.538E-06
  FluxDiff MaxDT:  5.888E-04

  Avg. GS error:     3.310E-03
  Plasma Current:    2.364E+05,   target:   2.364E+05,   error:   0.001%
  Edge Q:               16.752,   target:      16.928,   error:   1.042%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0036E-01 SECONDS
   DATA R*BT AT EDGE:  5.9039E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5793E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.057011 TO TG2=    0.057592 @ NSTEP       15
   GFRAME TG2 MOMENTS CHECKSUM:  3.3414073421547D+03
 --> plasma_hash("gframe"): TA= 5.759151E-02 NSTEP=    16 Hash code:   57595494
 ->PRGCHK: bdy curvature ratio at t= 5.8172E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.057592 ; TG2=     0.058172 ; DTG=  5.803E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.688E-06
  FluxDiff MaxDT:  5.933E-04

  Avg. GS error:     3.308E-03
  Plasma Current:    2.373E+05,   target:   2.373E+05,   error:   0.000%
  Edge Q:               16.716,   target:      16.783,   error:   0.395%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6581E-01 SECONDS
   DATA R*BT AT EDGE:  5.9037E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5786E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.057592 TO TG2=    0.058172 @ NSTEP       16
   GFRAME TG2 MOMENTS CHECKSUM:  3.3425902109397D+03
 --> plasma_hash("gframe"): TA= 5.817180E-02 NSTEP=    17 Hash code:   26535971
 ->PRGCHK: bdy curvature ratio at t= 5.8752E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.058172 ; TG2=     0.058752 ; DTG=  5.803E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.682E-06
  FluxDiff MaxDT:  6.017E-04

  Avg. GS error:     3.329E-03
  Plasma Current:    2.381E+05,   target:   2.381E+05,   error:   0.001%
  Edge Q:               16.684,   target:      16.856,   error:   1.023%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8435E-01 SECONDS
   DATA R*BT AT EDGE:  5.9034E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5760E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.058172 TO TG2=    0.058752 @ NSTEP       17
   GFRAME TG2 MOMENTS CHECKSUM:  3.3437646123797D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     17
 TA= 5.81718E-02 CPU TIME= 4.66960E-02 SECONDS.  DT= 5.80283E-04
 --> plasma_hash("gframe"): TA= 5.875208E-02 NSTEP=    18 Hash code:   10958415
 ->PRGCHK: bdy curvature ratio at t= 5.9332E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.058752 ; TG2=     0.059332 ; DTG=  5.803E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.756E-06
  FluxDiff MaxDT:  6.081E-04

  Avg. GS error:     3.331E-03
  Plasma Current:    2.390E+05,   target:   2.390E+05,   error:   0.000%
  Edge Q:               16.649,   target:      16.715,   error:   0.394%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6707E-01 SECONDS
   DATA R*BT AT EDGE:  5.9032E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5756E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.058752 TO TG2=    0.059332 @ NSTEP       18
   GFRAME TG2 MOMENTS CHECKSUM:  3.3449180262124D+03
 --> plasma_hash("gframe"): TA= 5.933236E-02 NSTEP=    19 Hash code:   81467777
 ->PRGCHK: bdy curvature ratio at t= 5.9935E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.059332 ; TG2=     0.059935 ; DTG=  6.026E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.856E-06
  FluxDiff MaxDT:  6.173E-04

  Avg. GS error:     3.354E-03
  Plasma Current:    2.399E+05,   target:   2.399E+05,   error:   0.001%
  Edge Q:               16.615,   target:      16.786,   error:   1.022%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8345E-01 SECONDS
   DATA R*BT AT EDGE:  5.9029E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5739E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.059332 TO TG2=    0.059935 @ NSTEP       19
   GFRAME TG2 MOMENTS CHECKSUM:  3.3460793208257D+03
 --> plasma_hash("gframe"): TA= 5.993496E-02 NSTEP=    20 Hash code:  113019536
 ->PRGCHK: bdy curvature ratio at t= 6.0538E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.059935 ; TG2=     0.060538 ; DTG=  6.026E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.022E-06
  FluxDiff MaxDT:  6.226E-04

  Avg. GS error:     3.360E-03
  Plasma Current:    2.408E+05,   target:   2.408E+05,   error:   0.000%
  Edge Q:               16.580,   target:      16.646,   error:   0.395%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.7532E-01 SECONDS
   DATA R*BT AT EDGE:  5.9028E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5747E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.059935 TO TG2=    0.060538 @ NSTEP       20
   GFRAME TG2 MOMENTS CHECKSUM:  3.3472590504120D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.70889E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  7.65020E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  7.58910E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 6.053757E-02 NSTEP=    21 Hash code:  106613956
 ->PRGCHK: bdy curvature ratio at t= 6.1140E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.060538 ; TG2=     0.061140 ; DTG=  6.026E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.008E-06
  FluxDiff MaxDT:  6.310E-04

  Avg. GS error:     3.383E-03
  Plasma Current:    2.417E+05,   target:   2.417E+05,   error:   0.001%
  Edge Q:               16.547,   target:      16.714,   error:   1.000%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8531E-01 SECONDS
   DATA R*BT AT EDGE:  5.9026E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5743E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.060538 TO TG2=    0.061140 @ NSTEP       21
   GFRAME TG2 MOMENTS CHECKSUM:  3.3484162732867D+03
 --> plasma_hash("gframe"): TA= 6.114017E-02 NSTEP=    22 Hash code:   35042477
 ->PRGCHK: bdy curvature ratio at t= 6.1770E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.061140 ; TG2=     0.061770 ; DTG=  6.300E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.187E-06
  FluxDiff MaxDT:  6.389E-04

  Avg. GS error:     3.396E-03
  Plasma Current:    2.427E+05,   target:   2.427E+05,   error:   0.000%
  Edge Q:               16.510,   target:      16.578,   error:   0.408%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6404E-01 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5764E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.061140 TO TG2=    0.061770 @ NSTEP       22
   GFRAME TG2 MOMENTS CHECKSUM:  3.3495557920523D+03
 --> plasma_hash("gframe"): TA= 6.177016E-02 NSTEP=    23 Hash code:   58386395
 ->PRGCHK: bdy curvature ratio at t= 6.2400E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.061770 ; TG2=     0.062400 ; DTG=  6.300E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.367E-06
  FluxDiff MaxDT:  6.458E-04

  Avg. GS error:     3.420E-03
  Plasma Current:    2.436E+05,   target:   2.436E+05,   error:   0.000%
  Edge Q:               16.478,   target:      16.642,   error:   0.987%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8600E-01 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5775E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.061770 TO TG2=    0.062400 @ NSTEP       23
   GFRAME TG2 MOMENTS CHECKSUM:  3.3507566394975D+03
 --> plasma_hash("gframe"): TA= 6.240015E-02 NSTEP=    24 Hash code:   75012089
 ->PRGCHK: bdy curvature ratio at t= 6.3030E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.062400 ; TG2=     0.063030 ; DTG=  6.300E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.349E-06
  FluxDiff MaxDT:  6.543E-04

  Avg. GS error:     3.435E-03
  Plasma Current:    2.445E+05,   target:   2.445E+05,   error:   0.000%
  Edge Q:               16.443,   target:      16.508,   error:   0.396%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6653E-01 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5809E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.062400 TO TG2=    0.063030 @ NSTEP       24
   GFRAME TG2 MOMENTS CHECKSUM:  3.3519063817799D+03
 --> plasma_hash("gframe"): TA= 6.303014E-02 NSTEP=    25 Hash code:   10363698
 ->PRGCHK: bdy curvature ratio at t= 6.3660E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.063030 ; TG2=     0.063660 ; DTG=  6.300E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.433E-06
  FluxDiff MaxDT:  6.618E-04

  Avg. GS error:     3.453E-03
  Plasma Current:    2.455E+05,   target:   2.455E+05,   error:   0.000%
  Edge Q:               16.411,   target:      16.572,   error:   0.973%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8699E-01 SECONDS
   DATA R*BT AT EDGE:  5.9026E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5833E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.063030 TO TG2=    0.063660 @ NSTEP       25
   GFRAME TG2 MOMENTS CHECKSUM:  3.3530641855154D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     25
 TA= 6.30301E-02 CPU TIME= 4.74600E-02 SECONDS.  DT= 6.29992E-04
 --> plasma_hash("gframe"): TA= 6.366014E-02 NSTEP=    26 Hash code:   93497572
 ->PRGCHK: bdy curvature ratio at t= 6.4290E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.063660 ; TG2=     0.064290 ; DTG=  6.300E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.461E-06
  FluxDiff MaxDT:  6.700E-04

  Avg. GS error:     3.466E-03
  Plasma Current:    2.464E+05,   target:   2.464E+05,   error:   0.000%
  Edge Q:               16.376,   target:      16.440,   error:   0.389%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6772E-01 SECONDS
   DATA R*BT AT EDGE:  5.9027E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5879E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.063660 TO TG2=    0.064290 @ NSTEP       26
   GFRAME TG2 MOMENTS CHECKSUM:  3.3541867718915D+03
 --> plasma_hash("gframe"): TA= 6.429013E-02 NSTEP=    27 Hash code:   10712188
 ->PRGCHK: bdy curvature ratio at t= 6.4959E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.064290 ; TG2=     0.064959 ; DTG=  6.694E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.691E-06
  FluxDiff MaxDT:  6.804E-04

  Avg. GS error:     3.482E-03
  Plasma Current:    2.474E+05,   target:   2.474E+05,   error:   0.000%
  Edge Q:               16.341,   target:      16.503,   error:   0.983%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1114E-01 SECONDS
   DATA R*BT AT EDGE:  5.9028E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5915E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.064290 TO TG2=    0.064959 @ NSTEP       27
   GFRAME TG2 MOMENTS CHECKSUM:  3.3553253145799D+03
 --> plasma_hash("gframe"): TA= 6.495950E-02 NSTEP=    28 Hash code:   48977689
 ->PRGCHK: bdy curvature ratio at t= 6.5629E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.064959 ; TG2=     0.065629 ; DTG=  6.694E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.975E-06
  FluxDiff MaxDT:  6.872E-04

  Avg. GS error:     3.499E-03
  Plasma Current:    2.484E+05,   target:   2.484E+05,   error:   0.000%
  Edge Q:               16.306,   target:      16.370,   error:   0.392%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9520E-01 SECONDS
   DATA R*BT AT EDGE:  5.9030E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5971E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.064959 TO TG2=    0.065629 @ NSTEP       28
   GFRAME TG2 MOMENTS CHECKSUM:  3.3565104185131D+03
 --> plasma_hash("gframe"): TA= 6.562886E-02 NSTEP=    29 Hash code:   94504800
 ->PRGCHK: bdy curvature ratio at t= 6.6298E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.065629 ; TG2=     0.066298 ; DTG=  6.694E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.906E-06
  FluxDiff MaxDT:  7.033E-04

  Avg. GS error:     3.512E-03
  Plasma Current:    2.494E+05,   target:   2.494E+05,   error:   0.000%
  Edge Q:               16.275,   target:      16.431,   error:   0.950%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9675E-01 SECONDS
   DATA R*BT AT EDGE:  5.9032E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6018E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.065629 TO TG2=    0.066298 @ NSTEP       29
   GFRAME TG2 MOMENTS CHECKSUM:  3.3576417699838D+03
 --> plasma_hash("gframe"): TA= 6.629823E-02 NSTEP=    30 Hash code:  103827860
 ->PRGCHK: bdy curvature ratio at t= 6.6968E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.066298 ; TG2=     0.066968 ; DTG=  6.694E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.013E-06
  FluxDiff MaxDT:  7.258E-04

  Avg. GS error:     3.520E-03
  Plasma Current:    2.505E+05,   target:   2.505E+05,   error:   0.000%
  Edge Q:               16.243,   target:      16.304,   error:   0.377%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9705E-01 SECONDS
   DATA R*BT AT EDGE:  5.9034E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6066E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.066298 TO TG2=    0.066968 @ NSTEP       30
   GFRAME TG2 MOMENTS CHECKSUM:  3.3588136718288D+03
 --> plasma_hash("gframe"): TA= 6.696760E-02 NSTEP=    31 Hash code:   89585118
 ->PRGCHK: bdy curvature ratio at t= 6.7637E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.066968 ; TG2=     0.067637 ; DTG=  6.694E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.017E-06
  FluxDiff MaxDT:  7.510E-04

  Avg. GS error:     3.523E-03
  Plasma Current:    2.515E+05,   target:   2.515E+05,   error:   0.000%
  Edge Q:               16.213,   target:      16.367,   error:   0.944%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9724E-01 SECONDS
   DATA R*BT AT EDGE:  5.9036E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6110E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.066968 TO TG2=    0.067637 @ NSTEP       31
   GFRAME TG2 MOMENTS CHECKSUM:  3.3599310418175D+03
 --> plasma_hash("gframe"): TA= 6.763696E-02 NSTEP=    32 Hash code:   16757490
 ->PRGCHK: bdy curvature ratio at t= 6.8373E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.067637 ; TG2=     0.068373 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.430E-06
  FluxDiff MaxDT:  7.800E-04

  Avg. GS error:     3.538E-03
  Plasma Current:    2.526E+05,   target:   2.526E+05,   error:   0.000%
  Edge Q:               16.174,   target:      16.242,   error:   0.420%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1555E-01 SECONDS
   DATA R*BT AT EDGE:  5.9038E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6167E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.067637 TO TG2=    0.068373 @ NSTEP       32
   GFRAME TG2 MOMENTS CHECKSUM:  3.3610223360114D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     32
 TA= 6.76370E-02 CPU TIME= 4.68340E-02 SECONDS.  DT= 7.36304E-04
 --> plasma_hash("gframe"): TA= 6.837327E-02 NSTEP=    33 Hash code:   66677559
 ->PRGCHK: bdy curvature ratio at t= 6.9110E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.068373 ; TG2=     0.069110 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.924E-06
  FluxDiff MaxDT:  8.023E-04

  Avg. GS error:     3.394E-03
  Plasma Current:    2.537E+05,   target:   2.537E+05,   error:   0.000%
  Edge Q:               16.142,   target:      16.298,   error:   0.956%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1660E-01 SECONDS
   DATA R*BT AT EDGE:  5.9039E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6230E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.068373 TO TG2=    0.069110 @ NSTEP       33
   GFRAME TG2 MOMENTS CHECKSUM:  3.3622343838563D+03
 --> plasma_hash("gframe"): TA= 6.910957E-02 NSTEP=    34 Hash code:  105520844
 ->PRGCHK: bdy curvature ratio at t= 6.9846E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.069110 ; TG2=     0.069846 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.736E-06
  FluxDiff MaxDT:  8.324E-04

  Avg. GS error:     3.420E-03
  Plasma Current:    2.548E+05,   target:   2.548E+05,   error:   0.001%
  Edge Q:               16.106,   target:      16.173,   error:   0.410%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9889E-01 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6278E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.069110 TO TG2=    0.069846 @ NSTEP       34
   GFRAME TG2 MOMENTS CHECKSUM:  3.3633547008155D+03
 --> plasma_hash("gframe"): TA= 6.984587E-02 NSTEP=    35 Hash code:  107738730
 ->PRGCHK: bdy curvature ratio at t= 7.0582E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.069846 ; TG2=     0.070582 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.903E-06
  FluxDiff MaxDT:  8.575E-04

  Avg. GS error:     3.442E-03
  Plasma Current:    2.559E+05,   target:   2.559E+05,   error:   0.001%
  Edge Q:               16.073,   target:      16.231,   error:   0.973%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1726E-01 SECONDS
   DATA R*BT AT EDGE:  5.9042E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6288E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.069846 TO TG2=    0.070582 @ NSTEP       35
   GFRAME TG2 MOMENTS CHECKSUM:  3.3644849575091D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.14150E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  8.02938E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  7.96145E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 7.058218E-02 NSTEP=    36 Hash code:   19465521
 ->PRGCHK: bdy curvature ratio at t= 7.1318E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.070582 ; TG2=     0.071318 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.881E-06
  FluxDiff MaxDT:  8.842E-04

  Avg. GS error:     3.476E-03
  Plasma Current:    2.570E+05,   target:   2.570E+05,   error:   0.001%
  Edge Q:               16.037,   target:      16.105,   error:   0.423%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0244E-01 SECONDS
   DATA R*BT AT EDGE:  5.9042E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6288E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.070582 TO TG2=    0.071318 @ NSTEP       36
   GFRAME TG2 MOMENTS CHECKSUM:  3.3655617719847D+03
 --> plasma_hash("gframe"): TA= 7.131848E-02 NSTEP=    37 Hash code:   34766440
 ->PRGCHK: bdy curvature ratio at t= 7.2055E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.071318 ; TG2=     0.072055 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.957E-06
  FluxDiff MaxDT:  9.083E-04

  Avg. GS error:     3.496E-03
  Plasma Current:    2.581E+05,   target:   2.581E+05,   error:   0.001%
  Edge Q:               16.003,   target:      16.163,   error:   0.988%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2114E-01 SECONDS
   DATA R*BT AT EDGE:  5.9042E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6265E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.071318 TO TG2=    0.072055 @ NSTEP       37
   GFRAME TG2 MOMENTS CHECKSUM:  3.3666748616036D+03
 --> plasma_hash("gframe"): TA= 7.205479E-02 NSTEP=    38 Hash code:    1145182
 ->PRGCHK: bdy curvature ratio at t= 7.2791E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.072055 ; TG2=     0.072791 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.980E-06
  FluxDiff MaxDT:  9.317E-04

  Avg. GS error:     3.519E-03
  Plasma Current:    2.592E+05,   target:   2.592E+05,   error:   0.002%
  Edge Q:               15.967,   target:      16.037,   error:   0.438%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0439E-01 SECONDS
   DATA R*BT AT EDGE:  5.9041E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6270E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.072055 TO TG2=    0.072791 @ NSTEP       38
   GFRAME TG2 MOMENTS CHECKSUM:  3.3677033492227D+03
 --> plasma_hash("gframe"): TA= 7.279109E-02 NSTEP=    39 Hash code:   82862353
 ->PRGCHK: bdy curvature ratio at t= 7.3527E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.072791 ; TG2=     0.073527 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.029E-06
  FluxDiff MaxDT:  9.537E-04

  Avg. GS error:     3.525E-03
  Plasma Current:    2.603E+05,   target:   2.603E+05,   error:   0.002%
  Edge Q:               15.932,   target:      16.093,   error:   0.998%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0562E-01 SECONDS
   DATA R*BT AT EDGE:  5.9039E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6275E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.072791 TO TG2=    0.073527 @ NSTEP       39
   GFRAME TG2 MOMENTS CHECKSUM:  3.3687199794549D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     39
 TA= 7.27911E-02 CPU TIME= 4.69110E-02 SECONDS.  DT= 7.36304E-04
 --> plasma_hash("gframe"): TA= 7.352739E-02 NSTEP=    40 Hash code:     738024
 ->PRGCHK: bdy curvature ratio at t= 7.4264E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.073527 ; TG2=     0.074264 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.063E-06
  FluxDiff MaxDT:  9.755E-04

  Avg. GS error:     3.539E-03
  Plasma Current:    2.614E+05,   target:   2.614E+05,   error:   0.002%
  Edge Q:               15.895,   target:      15.967,   error:   0.452%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.8797E-01 SECONDS
   DATA R*BT AT EDGE:  5.9037E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6306E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.073527 TO TG2=    0.074264 @ NSTEP       40
   GFRAME TG2 MOMENTS CHECKSUM:  3.3697002567875D+03
 --> plasma_hash("gframe"): TA= 7.426370E-02 NSTEP=    41 Hash code:   74395668
 ->PRGCHK: bdy curvature ratio at t= 7.5000E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.074264 ; TG2=     0.075000 ; DTG=  7.363E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.103E-06
  FluxDiff MaxDT:  9.953E-04

  Avg. GS error:     3.540E-03
  Plasma Current:    2.625E+05,   target:   2.625E+05,   error:   0.002%
  Edge Q:               15.859,   target:      16.020,   error:   1.004%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.0589E-01 SECONDS
   DATA R*BT AT EDGE:  5.9034E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6335E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.074264 TO TG2=    0.075000 @ NSTEP       41
   GFRAME TG2 MOMENTS CHECKSUM:  3.3706619685932D+03
 cpu time (sec) in nubeam_ctrl_init:   4.0500E-04
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            0
  ==> entering nubeam_step_child, mpi myidd =            0
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6092E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6092E+20
  nbstart... 
 % nbi_alloc2_init: nbi_alloc2 done
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    6.9999999965375537E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     42
 TA= 7.50000E-02 CPU TIME= 9.49660E-02 SECONDS.  DT= 9.20380E-04
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =    4.9190277776688163E-002
 --> plasma_hash("gframe"): TA= 7.500000E-02 NSTEP=    42 Hash code:  119522921
 ->PRGCHK: bdy curvature ratio at t= 7.5952E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.075000 ; TG2=     0.075952 ; DTG=  9.524E-04
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.740E-06
  FluxDiff MaxDT:  1.026E-03

  Avg. GS error:     3.552E-03
  Plasma Current:    2.639E+05,   target:   2.639E+05,   error:   0.002%
  Edge Q:               15.801,   target:      15.895,   error:   0.592%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8683E-01 SECONDS
   DATA R*BT AT EDGE:  5.9030E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6396E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.075000 TO TG2=    0.075952 @ NSTEP       42
   GFRAME TG2 MOMENTS CHECKSUM:  3.3715639658123D+03
 --> plasma_hash("gframe"): TA= 7.595238E-02 NSTEP=    44 Hash code:   29884151
 ->PRGCHK: bdy curvature ratio at t= 7.6955E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.075952 ; TG2=     0.076955 ; DTG=  1.003E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.225E-06
  FluxDiff MaxDT:  1.028E-03

  Avg. GS error:     3.555E-03
  Plasma Current:    2.654E+05,   target:   2.654E+05,   error:   0.002%
  Edge Q:               15.753,   target:      15.924,   error:   1.074%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5418E-01 SECONDS
   DATA R*BT AT EDGE:  5.9027E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6494E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.075952 TO TG2=    0.076955 @ NSTEP       44
   GFRAME TG2 MOMENTS CHECKSUM:  3.3728405293525D+03
 --> plasma_hash("gframe"): TA= 7.695489E-02 NSTEP=    45 Hash code:   16568558
 ->PRGCHK: bdy curvature ratio at t= 7.7957E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.076955 ; TG2=     0.077957 ; DTG=  1.003E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.742E-06
  FluxDiff MaxDT:  1.053E-03

  Avg. GS error:     3.570E-03
  Plasma Current:    2.669E+05,   target:   2.669E+05,   error:   0.002%
  Edge Q:               15.701,   target:      15.788,   error:   0.546%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9944E-01 SECONDS
   DATA R*BT AT EDGE:  5.9024E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6612E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.076955 TO TG2=    0.077957 @ NSTEP       45
   GFRAME TG2 MOMENTS CHECKSUM:  3.3740397232810D+03
 --> plasma_hash("gframe"): TA= 7.795739E-02 NSTEP=    46 Hash code:   84483182
 ->PRGCHK: bdy curvature ratio at t= 7.8960E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.077957 ; TG2=     0.078960 ; DTG=  1.003E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.128E-06
  FluxDiff MaxDT:  1.067E-03

  Avg. GS error:     3.565E-03
  Plasma Current:    2.684E+05,   target:   2.684E+05,   error:   0.002%
  Edge Q:               15.654,   target:      15.823,   error:   1.073%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9379E-01 SECONDS
   DATA R*BT AT EDGE:  5.9023E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6676E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.077957 TO TG2=    0.078960 @ NSTEP       46
   GFRAME TG2 MOMENTS CHECKSUM:  3.3752550219612D+03
 --> plasma_hash("gframe"): TA= 7.895990E-02 NSTEP=    47 Hash code:   49504670
 ->PRGCHK: bdy curvature ratio at t= 7.9962E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.078960 ; TG2=     0.079962 ; DTG=  1.003E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.055E-06
  FluxDiff MaxDT:  1.086E-03

  Avg. GS error:     3.570E-03
  Plasma Current:    2.699E+05,   target:   2.699E+05,   error:   0.002%
  Edge Q:               15.603,   target:      15.686,   error:   0.525%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9126E-01 SECONDS
   DATA R*BT AT EDGE:  5.9023E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6697E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.078960 TO TG2=    0.079962 @ NSTEP       47
   GFRAME TG2 MOMENTS CHECKSUM:  3.3764163627983D+03
 --> plasma_hash("gframe"): TA= 7.996241E-02 NSTEP=    48 Hash code:   10861637
 ->PRGCHK: bdy curvature ratio at t= 8.1037E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.079962 ; TG2=     0.081037 ; DTG=  1.074E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.999E-06
  FluxDiff MaxDT:  1.107E-03

  Avg. GS error:     3.562E-03
  Plasma Current:    2.716E+05,   target:   2.716E+05,   error:   0.001%
  Edge Q:               15.550,   target:      15.723,   error:   1.105%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2752E-01 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6681E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.079962 TO TG2=    0.081037 @ NSTEP       48
   GFRAME TG2 MOMENTS CHECKSUM:  3.3775356005096D+03
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=   8.0000000000000002E-002
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.42372E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  7.97210E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  7.91359E-38 RESET TO ZERO 
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     55
 TA= 8.05291E-02 CPU TIME= 6.75940E-02 SECONDS.  DT= 1.79262E-04
 --> plasma_hash("gframe"): TA= 8.103652E-02 NSTEP=    58 Hash code:   24501726
 ->PRGCHK: bdy curvature ratio at t= 8.2111E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.081037 ; TG2=     0.082111 ; DTG=  1.074E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.754E-06
  FluxDiff MaxDT:  1.131E-03

  Avg. GS error:     3.579E-03
  Plasma Current:    2.732E+05,   target:   2.732E+05,   error:   0.001%
  Edge Q:               15.500,   target:      15.580,   error:   0.512%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.9618E-01 SECONDS
   DATA R*BT AT EDGE:  5.9028E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6661E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.081037 TO TG2=    0.082111 @ NSTEP       58
   GFRAME TG2 MOMENTS CHECKSUM:  3.3787534645372D+03
 --> plasma_hash("gframe"): TA= 8.211063E-02 NSTEP=    62 Hash code:  115881927
 ->PRGCHK: bdy curvature ratio at t= 8.3185E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.082111 ; TG2=     0.083185 ; DTG=  1.074E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.491E-06
  FluxDiff MaxDT:  1.177E-03

  Avg. GS error:     3.588E-03
  Plasma Current:    2.748E+05,   target:   2.748E+05,   error:   0.001%
  Edge Q:               15.451,   target:      15.618,   error:   1.070%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1798E-01 SECONDS
   DATA R*BT AT EDGE:  5.9032E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6639E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.082111 TO TG2=    0.083185 @ NSTEP       62
   GFRAME TG2 MOMENTS CHECKSUM:  3.3799247288421D+03
 --> plasma_hash("gframe"): TA= 8.318475E-02 NSTEP=    64 Hash code:   96751319
 ->PRGCHK: bdy curvature ratio at t= 8.4259E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.083185 ; TG2=     0.084259 ; DTG=  1.074E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.745E-06
  FluxDiff MaxDT:  1.221E-03

  Avg. GS error:     3.610E-03
  Plasma Current:    2.764E+05,   target:   2.764E+05,   error:   0.000%
  Edge Q:               15.402,   target:      15.479,   error:   0.500%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1520E-01 SECONDS
   DATA R*BT AT EDGE:  5.9035E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6620E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.083185 TO TG2=    0.084259 @ NSTEP       64
   GFRAME TG2 MOMENTS CHECKSUM:  3.3811024959476D+03
 --> plasma_hash("gframe"): TA= 8.425886E-02 NSTEP=    66 Hash code:   30402414
 ->PRGCHK: bdy curvature ratio at t= 8.5452E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.084259 ; TG2=     0.085452 ; DTG=  1.193E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.124E-05
  FluxDiff MaxDT:  1.289E-03

  Avg. GS error:     3.638E-03
  Plasma Current:    2.782E+05,   target:   2.782E+05,   error:   0.000%
  Edge Q:               15.345,   target:      15.519,   error:   1.119%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.3458E-01 SECONDS
   DATA R*BT AT EDGE:  5.9037E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6598E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.084259 TO TG2=    0.085452 @ NSTEP       66
   GFRAME TG2 MOMENTS CHECKSUM:  3.3822372745023D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     67
 TA= 8.51136E-02 CPU TIME= 6.85490E-02 SECONDS.  DT= 3.38672E-04
 --> plasma_hash("gframe"): TA= 8.545232E-02 NSTEP=    68 Hash code:   23766512
 ->PRGCHK: bdy curvature ratio at t= 8.6646E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.085452 ; TG2=     0.086646 ; DTG=  1.193E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.261E-05
  FluxDiff MaxDT:  1.360E-03

  Avg. GS error:     3.711E-03
  Plasma Current:    2.800E+05,   target:   2.800E+05,   error:   0.001%
  Edge Q:               15.294,   target:      15.371,   error:   0.499%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.3154E-01 SECONDS
   DATA R*BT AT EDGE:  5.9038E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6620E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.085452 TO TG2=    0.086646 @ NSTEP       68
   GFRAME TG2 MOMENTS CHECKSUM:  3.3834542257135D+03
 --> plasma_hash("gframe"): TA= 8.664578E-02 NSTEP=    70 Hash code:  119887528
 ->PRGCHK: bdy curvature ratio at t= 8.7839E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.086646 ; TG2=     0.087839 ; DTG=  1.193E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.200E-05
  FluxDiff MaxDT:  1.449E-03

  Avg. GS error:     3.755E-03
  Plasma Current:    2.818E+05,   target:   2.818E+05,   error:   0.001%
  Edge Q:               15.242,   target:      15.411,   error:   1.097%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5258E-01 SECONDS
   DATA R*BT AT EDGE:  5.9038E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6608E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.086646 TO TG2=    0.087839 @ NSTEP       70
   GFRAME TG2 MOMENTS CHECKSUM:  3.3847116134967D+03
 --> plasma_hash("gframe"): TA= 8.783924E-02 NSTEP=    71 Hash code:   38864051
 ->PRGCHK: bdy curvature ratio at t= 8.9271E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.087839 ; TG2=     0.089271 ; DTG=  1.432E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.612E-05
  FluxDiff MaxDT:  1.536E-03

  Avg. GS error:     3.810E-03
  Plasma Current:    2.839E+05,   target:   2.839E+05,   error:   0.001%
  Edge Q:               15.169,   target:      15.266,   error:   0.637%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8927E-01 SECONDS
   DATA R*BT AT EDGE:  5.9037E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6609E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.087839 TO TG2=    0.089271 @ NSTEP       71
   GFRAME TG2 MOMENTS CHECKSUM:  3.3858980988493D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     72
 TA= 8.91748E-02 CPU TIME= 6.83230E-02 SECONDS.  DT= 9.65452E-05
 --> plasma_hash("gframe"): TA= 8.927139E-02 NSTEP=    73 Hash code:  120511297
 ->PRGCHK: bdy curvature ratio at t= 9.0704E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.089271 ; TG2=     0.090704 ; DTG=  1.432E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.885E-05
  FluxDiff MaxDT:  1.588E-03

  Avg. GS error:     3.871E-03
  Plasma Current:    2.861E+05,   target:   2.861E+05,   error:   0.001%
  Edge Q:               15.111,   target:      15.287,   error:   1.154%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5111E-01 SECONDS
   DATA R*BT AT EDGE:  5.9033E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6620E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.089271 TO TG2=    0.090704 @ NSTEP       73
   GFRAME TG2 MOMENTS CHECKSUM:  3.3874837369610D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.86285E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  9.81510E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  9.78289E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 9.070354E-02 NSTEP=    74 Hash code:   95259444
 ->PRGCHK: bdy curvature ratio at t= 9.2136E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.090704 ; TG2=     0.092136 ; DTG=  1.432E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.762E-05
  FluxDiff MaxDT:  1.685E-03

  Avg. GS error:     3.971E-03
  Plasma Current:    2.882E+05,   target:   2.882E+05,   error:   0.001%
  Edge Q:               15.045,   target:      15.133,   error:   0.580%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2751E-01 SECONDS
   DATA R*BT AT EDGE:  5.9029E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6631E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.090704 TO TG2=    0.092136 @ NSTEP       74
   GFRAME TG2 MOMENTS CHECKSUM:  3.3889326875761D+03
 --> plasma_hash("gframe"): TA= 9.213570E-02 NSTEP=    75 Hash code:   38952150
 ->PRGCHK: bdy curvature ratio at t= 9.3568E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.092136 ; TG2=     0.093568 ; DTG=  1.432E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.840E-05
  FluxDiff MaxDT:  1.753E-03

  Avg. GS error:     4.047E-03
  Plasma Current:    2.903E+05,   target:   2.904E+05,   error:   0.001%
  Edge Q:               14.985,   target:      15.164,   error:   1.179%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2527E-01 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6544E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.092136 TO TG2=    0.093568 @ NSTEP       75
   GFRAME TG2 MOMENTS CHECKSUM:  3.3904748253280D+03
 --> plasma_hash("gframe"): TA= 9.356785E-02 NSTEP=    76 Hash code:   39536286
 ->PRGCHK: bdy curvature ratio at t= 9.5000E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.093568 ; TG2=     0.095000 ; DTG=  1.432E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.815E-05
  FluxDiff MaxDT:  1.747E-03

  Avg. GS error:     4.112E-03
  Plasma Current:    2.925E+05,   target:   2.925E+05,   error:   0.000%
  Edge Q:               14.918,   target:      15.005,   error:   0.582%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2730E-01 SECONDS
   DATA R*BT AT EDGE:  5.9022E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6469E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.093568 TO TG2=    0.095000 @ NSTEP       76
   GFRAME TG2 MOMENTS CHECKSUM:  3.3918627246377D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     76
 TA= 9.35678E-02 CPU TIME= 6.71080E-02 SECONDS.  DT= 1.43215E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    1.0000000258969521E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     77
 TA= 9.50000E-02 CPU TIME= 6.73330E-02 SECONDS.  DT= 1.79019E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =    6.3341666665564844E-002
 --> plasma_hash("gframe"): TA= 9.500000E-02 NSTEP=    77 Hash code:  102767987
 ->PRGCHK: bdy curvature ratio at t= 9.6667E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.095000 ; TG2=     0.096667 ; DTG=  1.667E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.345E-05
  FluxDiff MaxDT:  1.672E-03

  Avg. GS error:     4.167E-03
  Plasma Current:    2.950E+05,   target:   2.950E+05,   error:   0.000%
  Edge Q:               14.834,   target:      15.035,   error:   1.340%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0193E+00 SECONDS
   DATA R*BT AT EDGE:  5.9023E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6372E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.095000 TO TG2=    0.096667 @ NSTEP       77
   GFRAME TG2 MOMENTS CHECKSUM:  3.3931251874141D+03
 --> plasma_hash("gframe"): TA= 9.666667E-02 NSTEP=    78 Hash code:   34757161
 ->PRGCHK: bdy curvature ratio at t= 9.8333E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.096667 ; TG2=     0.098333 ; DTG=  1.667E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.654E-05
  FluxDiff MaxDT:  1.592E-03

  Avg. GS error:     4.256E-03
  Plasma Current:    2.975E+05,   target:   2.975E+05,   error:   0.000%
  Edge Q:               14.751,   target:      14.853,   error:   0.689%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0261E+00 SECONDS
   DATA R*BT AT EDGE:  5.9028E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6326E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.096667 TO TG2=    0.098333 @ NSTEP       78
   GFRAME TG2 MOMENTS CHECKSUM:  3.3941048968046D+03
 --> plasma_hash("gframe"): TA= 9.833333E-02 NSTEP=    79 Hash code:   55288201
 ->PRGCHK: bdy curvature ratio at t= 9.9848E-02 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.098333 ; TG2=     0.099848 ; DTG=  1.515E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.205E-05
  FluxDiff MaxDT:  1.565E-03

  Avg. GS error:     4.313E-03
  Plasma Current:    2.998E+05,   target:   2.998E+05,   error:   0.001%
  Edge Q:               14.680,   target:      14.865,   error:   1.241%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1568E-01 SECONDS
   DATA R*BT AT EDGE:  5.9034E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6297E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.098333 TO TG2=    0.099848 @ NSTEP       79
   GFRAME TG2 MOMENTS CHECKSUM:  3.3949888995902D+03
 --> plasma_hash("gframe"): TA= 9.984848E-02 NSTEP=    80 Hash code:   38413885
 ->PRGCHK: bdy curvature ratio at t= 1.0136E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.099848 ; TG2=     0.101364 ; DTG=  1.515E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.142E-05
  FluxDiff MaxDT:  1.645E-03

  Avg. GS error:     4.300E-03
  Plasma Current:    3.020E+05,   target:   3.020E+05,   error:   0.001%
  Edge Q:               14.611,   target:      14.697,   error:   0.590%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1808E-01 SECONDS
   DATA R*BT AT EDGE:  5.9040E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6283E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.099848 TO TG2=    0.101364 @ NSTEP       80
   GFRAME TG2 MOMENTS CHECKSUM:  3.3958003198632D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     80
 TA= 9.98485E-02 CPU TIME= 6.73330E-02 SECONDS.  DT= 1.51515E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -3.15306E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -5.73271E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -2.57979E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.013636E-01 NSTEP=    81 Hash code:  101276236
 ->PRGCHK: bdy curvature ratio at t= 1.0288E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.101364 ; TG2=     0.102879 ; DTG=  1.515E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.199E-05
  FluxDiff MaxDT:  1.821E-03

  Avg. GS error:     4.246E-03
  Plasma Current:    3.043E+05,   target:   3.043E+05,   error:   0.002%
  Edge Q:               14.548,   target:      14.723,   error:   1.191%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1554E-01 SECONDS
   DATA R*BT AT EDGE:  5.9043E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6274E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.101364 TO TG2=    0.102879 @ NSTEP       81
   GFRAME TG2 MOMENTS CHECKSUM:  3.3966941214824D+03
 --> plasma_hash("gframe"): TA= 1.028788E-01 NSTEP=    82 Hash code:  116892241
 ->PRGCHK: bdy curvature ratio at t= 1.0439E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.102879 ; TG2=     0.104394 ; DTG=  1.515E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.180E-05
  FluxDiff MaxDT:  2.076E-03

  Avg. GS error:     4.200E-03
  Plasma Current:    3.066E+05,   target:   3.066E+05,   error:   0.002%
  Edge Q:               14.487,   target:      14.561,   error:   0.513%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.1668E-01 SECONDS
   DATA R*BT AT EDGE:  5.9042E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6291E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.102879 TO TG2=    0.104394 @ NSTEP       82
   GFRAME TG2 MOMENTS CHECKSUM:  3.3976466475428D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     82
 TA= 1.02879E-01 CPU TIME= 6.81030E-02 SECONDS.  DT= 1.51515E-03
 --> plasma_hash("gframe"): TA= 1.043939E-01 NSTEP=    83 Hash code:   59791273
 ->PRGCHK: bdy curvature ratio at t= 1.0616E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.104394 ; TG2=     0.106162 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.833E-05
  FluxDiff MaxDT:  2.465E-03

  Avg. GS error:     4.182E-03
  Plasma Current:    3.092E+05,   target:   3.092E+05,   error:   0.002%
  Edge Q:               14.416,   target:      14.601,   error:   1.264%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.2599E-01 SECONDS
   DATA R*BT AT EDGE:  5.9038E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6247E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.104394 TO TG2=    0.106162 @ NSTEP       83
   GFRAME TG2 MOMENTS CHECKSUM:  3.3987947008816D+03
 --> plasma_hash("gframe"): TA= 1.061616E-01 NSTEP=    84 Hash code:   16286283
 ->PRGCHK: bdy curvature ratio at t= 1.0793E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.106162 ; TG2=     0.107929 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.065E-05
  FluxDiff MaxDT:  3.166E-03

  Avg. GS error:     4.191E-03
  Plasma Current:    3.119E+05,   target:   3.119E+05,   error:   0.001%
  Edge Q:               14.363,   target:      14.424,   error:   0.418%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.3750E-01 SECONDS
   DATA R*BT AT EDGE:  5.9032E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6313E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.106162 TO TG2=    0.107929 @ NSTEP       84
   GFRAME TG2 MOMENTS CHECKSUM:  3.4003818634380D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     84
 TA= 1.06162E-01 CPU TIME= 6.84610E-02 SECONDS.  DT= 1.76768E-03
 --> plasma_hash("gframe"): TA= 1.079293E-01 NSTEP=    85 Hash code:  116584543
 ->PRGCHK: bdy curvature ratio at t= 1.0970E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.107929 ; TG2=     0.109697 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.895E-05
  FluxDiff MaxDT:  7.475E-03

  Avg. GS error:     4.333E-03
  Plasma Current:    3.145E+05,   target:   3.145E+05,   error:   0.001%
  Edge Q:               14.343,   target:      14.484,   error:   0.975%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.4907E-01 SECONDS
   DATA R*BT AT EDGE:  5.9026E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.6023E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.107929 TO TG2=    0.109697 @ NSTEP       85
   GFRAME TG2 MOMENTS CHECKSUM:  3.4028522963198D+03
 --> plasma_hash("gframe"): TA= 1.096970E-01 NSTEP=    86 Hash code:   80500649
 ->PRGCHK: bdy curvature ratio at t= 1.1146E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.109697 ; TG2=     0.111465 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.830E-05
  FluxDiff MaxDT:  5.603E-03

  Avg. GS error:     4.506E-03
  Plasma Current:    3.172E+05,   target:   3.172E+05,   error:   0.004%
  Edge Q:               14.358,   target:      14.331,   error:   0.183%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0881E+00 SECONDS
   DATA R*BT AT EDGE:  5.9023E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5677E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.109697 TO TG2=    0.111465 @ NSTEP       86
   GFRAME TG2 MOMENTS CHECKSUM:  3.4067990359710D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.41531E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.41531E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       4= -2.83062E-42 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.114646E-01 NSTEP=    87 Hash code:  101198728
 ->PRGCHK: bdy curvature ratio at t= 1.1323E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.111465 ; TG2=     0.113232 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.641E-05
  FluxDiff MaxDT:  4.950E-03

  Avg. GS error:     4.588E-03
  Plasma Current:    3.198E+05,   target:   3.198E+05,   error:   0.003%
  Edge Q:               14.375,   target:      14.530,   error:   1.067%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0952E+00 SECONDS
   DATA R*BT AT EDGE:  5.9021E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.5057E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.111465 TO TG2=    0.113232 @ NSTEP       87
   GFRAME TG2 MOMENTS CHECKSUM:  3.4111811610492D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     87
 TA= 1.11465E-01 CPU TIME= 6.78420E-02 SECONDS.  DT= 1.76768E-03
 --> plasma_hash("gframe"): TA= 1.132323E-01 NSTEP=    88 Hash code:   59526138
 ->PRGCHK: bdy curvature ratio at t= 1.1500E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.113232 ; TG2=     0.115000 ; DTG=  1.768E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.606E-05
  FluxDiff MaxDT:  6.400E-03

  Avg. GS error:     4.629E-03
  Plasma Current:    3.225E+05,   target:   3.225E+05,   error:   0.001%
  Edge Q:               14.375,   target:      14.328,   error:   0.330%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.3947E-01 SECONDS
   DATA R*BT AT EDGE:  5.9022E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.4523E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.113232 TO TG2=    0.115000 @ NSTEP       88
   GFRAME TG2 MOMENTS CHECKSUM:  3.4147320687815D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     89
 TA= 1.15000E-01 CPU TIME= 6.76750E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =    7.4665833332346665E-002
 --> plasma_hash("gframe"): TA= 1.150000E-01 NSTEP=    89 Hash code:   65606232
 ->PRGCHK: bdy curvature ratio at t= 1.1682E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.115000 ; TG2=     0.116818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.736E-05
  FluxDiff MaxDT:  7.365E-03

  Avg. GS error:     4.628E-03
  Plasma Current:    3.252E+05,   target:   3.252E+05,   error:   0.004%
  Edge Q:               14.386,   target:      14.544,   error:   1.087%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.3823E-01 SECONDS
   DATA R*BT AT EDGE:  5.9026E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.4575E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.115000 TO TG2=    0.116818 @ NSTEP       89
   GFRAME TG2 MOMENTS CHECKSUM:  3.4177405009768D+03
 --> plasma_hash("gframe"): TA= 1.168182E-01 NSTEP=    90 Hash code:   86873291
 ->PRGCHK: bdy curvature ratio at t= 1.1864E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.116818 ; TG2=     0.118636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.737E-05
  FluxDiff MaxDT:  7.848E-03

  Avg. GS error:     4.592E-03
  Plasma Current:    3.280E+05,   target:   3.280E+05,   error:   0.003%
  Edge Q:               14.392,   target:      14.322,   error:   0.490%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.4261E-01 SECONDS
   DATA R*BT AT EDGE:  5.9032E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.4330E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.116818 TO TG2=    0.118636 @ NSTEP       90
   GFRAME TG2 MOMENTS CHECKSUM:  3.4205819540014D+03
 --> plasma_hash("gframe"): TA= 1.186364E-01 NSTEP=    91 Hash code:  102382941
 ->PRGCHK: bdy curvature ratio at t= 1.2045E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.118636 ; TG2=     0.120455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.721E-05
  FluxDiff MaxDT:  7.429E-03

  Avg. GS error:     4.646E-03
  Plasma Current:    3.307E+05,   target:   3.307E+05,   error:   0.001%
  Edge Q:               14.419,   target:      14.547,   error:   0.879%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  7.9940E-01 SECONDS
   DATA R*BT AT EDGE:  5.9036E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.3881E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.118636 TO TG2=    0.120455 @ NSTEP       91
   GFRAME TG2 MOMENTS CHECKSUM:  3.4235104876888D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     91
 TA= 1.18636E-01 CPU TIME= 6.83720E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.204545E-01 NSTEP=    92 Hash code:   25445377
 ->PRGCHK: bdy curvature ratio at t= 1.2227E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.120455 ; TG2=     0.122273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.671E-05
  FluxDiff MaxDT:  6.970E-03

  Avg. GS error:     4.666E-03
  Plasma Current:    3.334E+05,   target:   3.334E+05,   error:   0.004%
  Edge Q:               14.433,   target:      14.348,   error:   0.595%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.2530E-01 SECONDS
   DATA R*BT AT EDGE:  5.9033E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.3749E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.120455 TO TG2=    0.122273 @ NSTEP       92
   GFRAME TG2 MOMENTS CHECKSUM:  3.4262268416124D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     92
 TA= 1.20455E-01 CPU TIME= 6.89060E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -5.71730E-42 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  7.12990E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  7.11075E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.222727E-01 NSTEP=    93 Hash code:   66923548
 ->PRGCHK: bdy curvature ratio at t= 1.2409E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.122273 ; TG2=     0.124091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.623E-05
  FluxDiff MaxDT:  6.460E-03

  Avg. GS error:     5.012E-03
  Plasma Current:    3.361E+05,   target:   3.361E+05,   error:   0.004%
  Edge Q:               14.455,   target:      14.571,   error:   0.794%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.4570E-01 SECONDS
   DATA R*BT AT EDGE:  5.9027E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.3681E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.122273 TO TG2=    0.124091 @ NSTEP       93
   GFRAME TG2 MOMENTS CHECKSUM:  3.4289769811627D+03
 --> plasma_hash("gframe"): TA= 1.240909E-01 NSTEP=    94 Hash code:   97230573
 ->PRGCHK: bdy curvature ratio at t= 1.2591E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.124091 ; TG2=     0.125909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.573E-05
  FluxDiff MaxDT:  6.581E-03

  Avg. GS error:     5.290E-03
  Plasma Current:    3.389E+05,   target:   3.389E+05,   error:   0.000%
  Edge Q:               14.471,   target:      14.366,   error:   0.735%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.5885E-01 SECONDS
   DATA R*BT AT EDGE:  5.9019E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.3591E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.124091 TO TG2=    0.125909 @ NSTEP       94
   GFRAME TG2 MOMENTS CHECKSUM:  3.4318312112183D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     94
 TA= 1.24091E-01 CPU TIME= 6.83930E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.259091E-01 NSTEP=    95 Hash code:  109884884
 ->PRGCHK: bdy curvature ratio at t= 1.2773E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.125909 ; TG2=     0.127727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.519E-05
  FluxDiff MaxDT:  5.289E-03

  Avg. GS error:     5.528E-03
  Plasma Current:    3.416E+05,   target:   3.416E+05,   error:   0.004%
  Edge Q:               14.506,   target:      14.582,   error:   0.519%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.4685E-01 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.3286E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.125909 TO TG2=    0.127727 @ NSTEP       95
   GFRAME TG2 MOMENTS CHECKSUM:  3.4348830861846D+03
 --> plasma_hash("gframe"): TA= 1.277273E-01 NSTEP=    96 Hash code:   70909193
 ->PRGCHK: bdy curvature ratio at t= 1.2955E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.127727 ; TG2=     0.129545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.474E-05
  FluxDiff MaxDT:  6.536E-03

  Avg. GS error:     5.819E-03
  Plasma Current:    3.443E+05,   target:   3.443E+05,   error:   0.003%
  Edge Q:               14.537,   target:      14.375,   error:   1.125%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  8.6775E-01 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.2958E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.127727 TO TG2=    0.129545 @ NSTEP       96
   GFRAME TG2 MOMENTS CHECKSUM:  3.4379288973461D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     96
 TA= 1.27727E-01 CPU TIME= 6.83290E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.295455E-01 NSTEP=    97 Hash code:  111492607
 ->PRGCHK: bdy curvature ratio at t= 1.3136E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.129545 ; TG2=     0.131364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.442E-05
  FluxDiff MaxDT:  5.419E-03

  Avg. GS error:     6.146E-03
  Plasma Current:    3.470E+05,   target:   3.470E+05,   error:   0.000%
  Edge Q:               14.579,   target:      14.621,   error:   0.283%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.4359E-01 SECONDS
   DATA R*BT AT EDGE:  5.9020E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.2655E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.129545 TO TG2=    0.131364 @ NSTEP       97
   GFRAME TG2 MOMENTS CHECKSUM:  3.4410055924251D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.84999E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       2=  9.25114E-38 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       2=  9.22966E-38 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.313636E-01 NSTEP=    98 Hash code:   97487786
 ->PRGCHK: bdy curvature ratio at t= 1.3318E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.131364 ; TG2=     0.133182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.433E-05
  FluxDiff MaxDT:  6.630E-03

  Avg. GS error:     6.323E-03
  Plasma Current:    3.498E+05,   target:   3.498E+05,   error:   0.002%
  Edge Q:               14.618,   target:      14.444,   error:   1.203%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.4175E-01 SECONDS
   DATA R*BT AT EDGE:  5.9027E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.2260E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.131364 TO TG2=    0.133182 @ NSTEP       98
   GFRAME TG2 MOMENTS CHECKSUM:  3.4443451382078D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=     98
 TA= 1.31364E-01 CPU TIME= 6.83990E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.331818E-01 NSTEP=    99 Hash code:   10700131
 ->PRGCHK: bdy curvature ratio at t= 1.3500E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.133182 ; TG2=     0.135000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.489E-05
  FluxDiff MaxDT:  5.865E-03

  Avg. GS error:     6.264E-03
  Plasma Current:    3.525E+05,   target:   3.525E+05,   error:   0.001%
  Edge Q:               14.678,   target:      14.690,   error:   0.082%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0002E+00 SECONDS
   DATA R*BT AT EDGE:  5.9033E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.1669E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.133182 TO TG2=    0.135000 @ NSTEP       99
   GFRAME TG2 MOMENTS CHECKSUM:  3.4488488442786D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    100
 TA= 1.35000E-01 CPU TIME= 6.84700E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =    8.2831944443569228E-002
 --> plasma_hash("gframe"): TA= 1.350000E-01 NSTEP=   100 Hash code:   85688757
 ->PRGCHK: bdy curvature ratio at t= 1.3682E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.135000 ; TG2=     0.136818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.498E-05
  FluxDiff MaxDT:  6.472E-03

  Avg. GS error:     5.965E-03
  Plasma Current:    3.552E+05,   target:   3.552E+05,   error:   0.002%
  Edge Q:               14.724,   target:      14.553,   error:   1.170%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0524E+00 SECONDS
   DATA R*BT AT EDGE:  5.9036E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.1128E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.135000 TO TG2=    0.136818 @ NSTEP      100
   GFRAME TG2 MOMENTS CHECKSUM:  3.4531835923460D+03
 --> plasma_hash("gframe"): TA= 1.368182E-01 NSTEP=   101 Hash code:   16094413
 ->PRGCHK: bdy curvature ratio at t= 1.3864E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.136818 ; TG2=     0.138636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.547E-05
  FluxDiff MaxDT:  6.456E-03

  Avg. GS error:     5.661E-03
  Plasma Current:    3.580E+05,   target:   3.580E+05,   error:   0.005%
  Edge Q:               14.775,   target:      14.781,   error:   0.037%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.7438E-01 SECONDS
   DATA R*BT AT EDGE:  5.9036E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.0923E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.136818 TO TG2=    0.138636 @ NSTEP      101
   GFRAME TG2 MOMENTS CHECKSUM:  3.4578299436659D+03
 --> plasma_hash("gframe"): TA= 1.386364E-01 NSTEP=   102 Hash code:   99073489
 ->PRGCHK: bdy curvature ratio at t= 1.4045E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.138636 ; TG2=     0.140455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.568E-05
  FluxDiff MaxDT:  6.517E-03

  Avg. GS error:     5.614E-03
  Plasma Current:    3.607E+05,   target:   3.607E+05,   error:   0.006%
  Edge Q:               14.814,   target:      14.662,   error:   1.037%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5414E-01 SECONDS
   DATA R*BT AT EDGE:  5.9033E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.0775E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.138636 TO TG2=    0.140455 @ NSTEP      102
   GFRAME TG2 MOMENTS CHECKSUM:  3.4624294857445D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    102
 TA= 1.38636E-01 CPU TIME= 6.74350E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.404545E-01 NSTEP=   103 Hash code:   19431326
 ->PRGCHK: bdy curvature ratio at t= 1.4227E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.140455 ; TG2=     0.142273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.623E-05
  FluxDiff MaxDT:  6.687E-03

  Avg. GS error:     5.723E-03
  Plasma Current:    3.634E+05,   target:   3.634E+05,   error:   0.006%
  Edge Q:               14.856,   target:      14.858,   error:   0.014%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.5819E-01 SECONDS
   DATA R*BT AT EDGE:  5.9026E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.0608E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.140455 TO TG2=    0.142273 @ NSTEP      103
   GFRAME TG2 MOMENTS CHECKSUM:  3.4670342024747D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -3.69172E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -3.12377E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -5.67946E-42 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.422727E-01 NSTEP=   104 Hash code:  110447208
 ->PRGCHK: bdy curvature ratio at t= 1.4409E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.142273 ; TG2=     0.144091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.671E-05
  FluxDiff MaxDT:  7.267E-03

  Avg. GS error:     5.655E-03
  Plasma Current:    3.662E+05,   target:   3.661E+05,   error:   0.005%
  Edge Q:               14.888,   target:      14.750,   error:   0.932%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0002E+00 SECONDS
   DATA R*BT AT EDGE:  5.9019E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  3.0129E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.142273 TO TG2=    0.144091 @ NSTEP      104
   GFRAME TG2 MOMENTS CHECKSUM:  3.4714681099675D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    104
 TA= 1.42273E-01 CPU TIME= 6.74270E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.440909E-01 NSTEP=   105 Hash code:   89501532
 ->PRGCHK: bdy curvature ratio at t= 1.4591E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.144091 ; TG2=     0.145909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.757E-05
  FluxDiff MaxDT:  6.161E-03

  Avg. GS error:     5.734E-03
  Plasma Current:    3.689E+05,   target:   3.689E+05,   error:   0.003%
  Edge Q:               14.923,   target:      14.922,   error:   0.005%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0780E+00 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.9444E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.144091 TO TG2=    0.145909 @ NSTEP      105
   GFRAME TG2 MOMENTS CHECKSUM:  3.4757984218959D+03
 --> plasma_hash("gframe"): TA= 1.459091E-01 NSTEP=   106 Hash code:   88350124
 ->PRGCHK: bdy curvature ratio at t= 1.4773E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.145909 ; TG2=     0.147727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.857E-05
  FluxDiff MaxDT:  5.418E-03

  Avg. GS error:     5.838E-03
  Plasma Current:    3.716E+05,   target:   3.716E+05,   error:   0.001%
  Edge Q:               14.953,   target:      14.829,   error:   0.837%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0809E+00 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.8810E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.145909 TO TG2=    0.147727 @ NSTEP      106
   GFRAME TG2 MOMENTS CHECKSUM:  3.4800172387864D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    106
 TA= 1.45909E-01 CPU TIME= 6.76210E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.477273E-01 NSTEP=   107 Hash code:    3684113
 ->PRGCHK: bdy curvature ratio at t= 1.4955E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.147727 ; TG2=     0.149545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.970E-05
  FluxDiff MaxDT:  4.995E-03

  Avg. GS error:     5.919E-03
  Plasma Current:    3.743E+05,   target:   3.743E+05,   error:   0.001%
  Edge Q:               14.984,   target:      14.983,   error:   0.005%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0820E+00 SECONDS
   DATA R*BT AT EDGE:  5.9018E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.8251E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.147727 TO TG2=    0.149545 @ NSTEP      107
   GFRAME TG2 MOMENTS CHECKSUM:  3.4842266360196D+03
 --> plasma_hash("gframe"): TA= 1.495455E-01 NSTEP=   108 Hash code:    7265639
 ->PRGCHK: bdy curvature ratio at t= 1.5136E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.149545 ; TG2=     0.151364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.084E-05
  FluxDiff MaxDT:  4.894E-03

  Avg. GS error:     5.957E-03
  Plasma Current:    3.770E+05,   target:   3.770E+05,   error:   0.002%
  Edge Q:               15.004,   target:      14.904,   error:   0.671%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0784E+00 SECONDS
   DATA R*BT AT EDGE:  5.9023E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.7824E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.149545 TO TG2=    0.151364 @ NSTEP      108
   GFRAME TG2 MOMENTS CHECKSUM:  3.4884922716925D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    108
 TA= 1.49545E-01 CPU TIME= 6.76860E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.70861E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  2.28342E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  3.42519E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.513636E-01 NSTEP=   109 Hash code:   29647016
 ->PRGCHK: bdy curvature ratio at t= 1.5318E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.151364 ; TG2=     0.153182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.173E-05
  FluxDiff MaxDT:  5.054E-03

  Avg. GS error:     5.963E-03
  Plasma Current:    3.798E+05,   target:   3.798E+05,   error:   0.004%
  Edge Q:               15.014,   target:      15.029,   error:   0.100%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0593E+00 SECONDS
   DATA R*BT AT EDGE:  5.9027E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.7483E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.151364 TO TG2=    0.153182 @ NSTEP      109
   GFRAME TG2 MOMENTS CHECKSUM:  3.4925566407086D+03
 --> plasma_hash("gframe"): TA= 1.531818E-01 NSTEP=   110 Hash code:   37174825
 ->PRGCHK: bdy curvature ratio at t= 1.5500E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.153182 ; TG2=     0.155000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.317E-05
  FluxDiff MaxDT:  5.453E-03

  Avg. GS error:     6.150E-03
  Plasma Current:    3.825E+05,   target:   3.825E+05,   error:   0.006%
  Edge Q:               15.016,   target:      14.940,   error:   0.506%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0895E+00 SECONDS
   DATA R*BT AT EDGE:  5.9028E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.7171E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.153182 TO TG2=    0.155000 @ NSTEP      110
   GFRAME TG2 MOMENTS CHECKSUM:  3.4966600134186D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    110
 TA= 1.53182E-01 CPU TIME= 6.67130E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    111
 TA= 1.55000E-01 CPU TIME= 6.90680E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =    9.1560833331641334E-002
 --> plasma_hash("gframe"): TA= 1.550000E-01 NSTEP=   111 Hash code:   76123564
 ->PRGCHK: bdy curvature ratio at t= 1.5682E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.155000 ; TG2=     0.156818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.512E-05
  FluxDiff MaxDT:  5.599E-03

  Avg. GS error:     5.904E-03
  Plasma Current:    3.852E+05,   target:   3.852E+05,   error:   0.006%
  Edge Q:               15.015,   target:      15.034,   error:   0.122%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0644E+00 SECONDS
   DATA R*BT AT EDGE:  5.9025E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.6797E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.155000 TO TG2=    0.156818 @ NSTEP      111
   GFRAME TG2 MOMENTS CHECKSUM:  3.4999083075554D+03
 --> plasma_hash("gframe"): TA= 1.568182E-01 NSTEP=   112 Hash code:   25599067
 ->PRGCHK: bdy curvature ratio at t= 1.5864E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.156818 ; TG2=     0.158636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.637E-05
  FluxDiff MaxDT:  5.790E-03

  Avg. GS error:     5.670E-03
  Plasma Current:    3.879E+05,   target:   3.880E+05,   error:   0.006%
  Edge Q:               15.007,   target:      14.947,   error:   0.406%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0879E+00 SECONDS
   DATA R*BT AT EDGE:  5.9020E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.6386E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.156818 TO TG2=    0.158636 @ NSTEP      112
   GFRAME TG2 MOMENTS CHECKSUM:  3.5037167141802D+03
 --> plasma_hash("gframe"): TA= 1.586364E-01 NSTEP=   113 Hash code:   81959922
 ->PRGCHK: bdy curvature ratio at t= 1.6045E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.158636 ; TG2=     0.160455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.592E-05
  FluxDiff MaxDT:  4.981E-03

  Avg. GS error:     5.574E-03
  Plasma Current:    3.907E+05,   target:   3.907E+05,   error:   0.005%
  Edge Q:               14.998,   target:      15.019,   error:   0.141%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0861E+00 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.5934E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.158636 TO TG2=    0.160455 @ NSTEP      113
   GFRAME TG2 MOMENTS CHECKSUM:  3.5072359513510D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    113
 TA= 1.58636E-01 CPU TIME= 6.87610E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.604545E-01 NSTEP=   114 Hash code:   89298645
 ->PRGCHK: bdy curvature ratio at t= 1.6227E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.160455 ; TG2=     0.162273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.587E-05
  FluxDiff MaxDT:  4.434E-03

  Avg. GS error:     5.559E-03
  Plasma Current:    3.934E+05,   target:   3.934E+05,   error:   0.005%
  Edge Q:               14.983,   target:      14.935,   error:   0.325%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0976E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.5512E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.160455 TO TG2=    0.162273 @ NSTEP      114
   GFRAME TG2 MOMENTS CHECKSUM:  3.5106638679203D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.76173E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.07977E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  6.81956E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.622727E-01 NSTEP=   115 Hash code:  113163830
 ->PRGCHK: bdy curvature ratio at t= 1.6409E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.162273 ; TG2=     0.164091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.583E-05
  FluxDiff MaxDT:  3.996E-03

  Avg. GS error:     5.778E-03
  Plasma Current:    3.961E+05,   target:   3.961E+05,   error:   0.004%
  Edge Q:               14.968,   target:      14.991,   error:   0.154%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1049E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.5149E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.162273 TO TG2=    0.164091 @ NSTEP      115
   GFRAME TG2 MOMENTS CHECKSUM:  3.5138900391285D+03
 --> plasma_hash("gframe"): TA= 1.640909E-01 NSTEP=   116 Hash code:   10453063
 ->PRGCHK: bdy curvature ratio at t= 1.6591E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.164091 ; TG2=     0.165909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.593E-05
  FluxDiff MaxDT:  3.692E-03

  Avg. GS error:     6.109E-03
  Plasma Current:    3.989E+05,   target:   3.989E+05,   error:   0.003%
  Edge Q:               14.947,   target:      14.910,   error:   0.253%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1301E+00 SECONDS
   DATA R*BT AT EDGE:  5.9013E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.4863E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.164091 TO TG2=    0.165909 @ NSTEP      116
   GFRAME TG2 MOMENTS CHECKSUM:  3.5168066871862D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    116
 TA= 1.64091E-01 CPU TIME= 6.88170E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.659091E-01 NSTEP=   117 Hash code:   43107502
 ->PRGCHK: bdy curvature ratio at t= 1.6773E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.165909 ; TG2=     0.167727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.592E-05
  FluxDiff MaxDT:  3.476E-03

  Avg. GS error:     6.150E-03
  Plasma Current:    4.016E+05,   target:   4.016E+05,   error:   0.003%
  Edge Q:               14.934,   target:      14.952,   error:   0.126%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1496E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.4557E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.165909 TO TG2=    0.167727 @ NSTEP      117
   GFRAME TG2 MOMENTS CHECKSUM:  3.5195467329378D+03
 --> plasma_hash("gframe"): TA= 1.677273E-01 NSTEP=   118 Hash code:   36696009
 ->PRGCHK: bdy curvature ratio at t= 1.6955E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.167727 ; TG2=     0.169545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.586E-05
  FluxDiff MaxDT:  3.412E-03

  Avg. GS error:     6.108E-03
  Plasma Current:    4.043E+05,   target:   4.043E+05,   error:   0.003%
  Edge Q:               14.920,   target:      14.880,   error:   0.270%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1398E+00 SECONDS
   DATA R*BT AT EDGE:  5.9017E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.4288E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.167727 TO TG2=    0.169545 @ NSTEP      118
   GFRAME TG2 MOMENTS CHECKSUM:  3.5223328658165D+03
 --> plasma_hash("gframe"): TA= 1.695455E-01 NSTEP=   119 Hash code:   75121203
 ->PRGCHK: bdy curvature ratio at t= 1.7136E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.169545 ; TG2=     0.171364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.566E-05
  FluxDiff MaxDT:  3.356E-03

  Avg. GS error:     5.971E-03
  Plasma Current:    4.070E+05,   target:   4.070E+05,   error:   0.003%
  Edge Q:               14.913,   target:      14.922,   error:   0.061%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1441E+00 SECONDS
   DATA R*BT AT EDGE:  5.9018E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.3943E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.169545 TO TG2=    0.171364 @ NSTEP      119
   GFRAME TG2 MOMENTS CHECKSUM:  3.5250503580834D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    119
 TA= 1.69545E-01 CPU TIME= 6.87370E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.713636E-01 NSTEP=   120 Hash code:   95829153
 ->PRGCHK: bdy curvature ratio at t= 1.7318E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.171364 ; TG2=     0.173182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.557E-05
  FluxDiff MaxDT:  3.340E-03

  Avg. GS error:     5.781E-03
  Plasma Current:    4.098E+05,   target:   4.098E+05,   error:   0.002%
  Edge Q:               14.907,   target:      14.861,   error:   0.308%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1225E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.3591E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.171364 TO TG2=    0.173182 @ NSTEP      120
   GFRAME TG2 MOMENTS CHECKSUM:  3.5280022376755D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.27809E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.55618E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -2.27809E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.731818E-01 NSTEP=   121 Hash code:   67431684
 ->PRGCHK: bdy curvature ratio at t= 1.7500E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.173182 ; TG2=     0.175000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.541E-05
  FluxDiff MaxDT:  3.301E-03

  Avg. GS error:     5.662E-03
  Plasma Current:    4.125E+05,   target:   4.125E+05,   error:   0.002%
  Edge Q:               14.904,   target:      14.903,   error:   0.010%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0974E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.3210E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.173182 TO TG2=    0.175000 @ NSTEP      121
   GFRAME TG2 MOMENTS CHECKSUM:  3.5308706528412D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    122
 TA= 1.75000E-01 CPU TIME= 6.91220E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.10052527777634168     
 --> plasma_hash("gframe"): TA= 1.750000E-01 NSTEP=   122 Hash code:   39642115
 ->PRGCHK: bdy curvature ratio at t= 1.7682E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.175000 ; TG2=     0.176818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.544E-05
  FluxDiff MaxDT:  3.262E-03

  Avg. GS error:     5.600E-03
  Plasma Current:    4.152E+05,   target:   4.152E+05,   error:   0.001%
  Edge Q:               14.903,   target:      14.848,   error:   0.366%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0926E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.2739E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.175000 TO TG2=    0.176818 @ NSTEP      122
   GFRAME TG2 MOMENTS CHECKSUM:  3.5337782271574D+03
 --> plasma_hash("gframe"): TA= 1.768182E-01 NSTEP=   123 Hash code:   97022692
 ->PRGCHK: bdy curvature ratio at t= 1.7864E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.176818 ; TG2=     0.178636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.547E-05
  FluxDiff MaxDT:  3.211E-03

  Avg. GS error:     5.680E-03
  Plasma Current:    4.179E+05,   target:   4.180E+05,   error:   0.001%
  Edge Q:               14.906,   target:      14.889,   error:   0.118%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0919E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.2274E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.176818 TO TG2=    0.178636 @ NSTEP      123
   GFRAME TG2 MOMENTS CHECKSUM:  3.5366837855310D+03
 --> plasma_hash("gframe"): TA= 1.786364E-01 NSTEP=   124 Hash code:  116232153
 ->PRGCHK: bdy curvature ratio at t= 1.8045E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.178636 ; TG2=     0.180455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.564E-05
  FluxDiff MaxDT:  3.164E-03

  Avg. GS error:     5.805E-03
  Plasma Current:    4.207E+05,   target:   4.207E+05,   error:   0.002%
  Edge Q:               14.913,   target:      14.844,   error:   0.463%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0923E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.1577E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.178636 TO TG2=    0.180455 @ NSTEP      124
   GFRAME TG2 MOMENTS CHECKSUM:  3.5394683464837D+03
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=  0.17999999999999999     
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 --> plasma_hash("gframe"): TA= 1.804545E-01 NSTEP=   126 Hash code:   62912457
 ->PRGCHK: bdy curvature ratio at t= 1.8227E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.180455 ; TG2=     0.182273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.588E-05
  FluxDiff MaxDT:  3.110E-03

  Avg. GS error:     5.984E-03
  Plasma Current:    4.234E+05,   target:   4.234E+05,   error:   0.003%
  Edge Q:               14.930,   target:      14.888,   error:   0.287%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1186E+00 SECONDS
   DATA R*BT AT EDGE:  5.9003E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  2.0727E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.180455 TO TG2=    0.182273 @ NSTEP      126
   GFRAME TG2 MOMENTS CHECKSUM:  3.5423162511430D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    127
 TA= 1.82159E-01 CPU TIME= 6.83200E-02 SECONDS.  DT= 1.13636E-04
 --> plasma_hash("gframe"): TA= 1.822727E-01 NSTEP=   128 Hash code:   24728500
 ->PRGCHK: bdy curvature ratio at t= 1.8409E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.182273 ; TG2=     0.184091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.612E-05
  FluxDiff MaxDT:  3.083E-03

  Avg. GS error:     6.178E-03
  Plasma Current:    4.261E+05,   target:   4.261E+05,   error:   0.003%
  Edge Q:               14.959,   target:      14.863,   error:   0.643%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1409E+00 SECONDS
   DATA R*BT AT EDGE:  5.9008E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.9773E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.182273 TO TG2=    0.184091 @ NSTEP      128
   GFRAME TG2 MOMENTS CHECKSUM:  3.5453407045805D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.25720E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       4=  5.71562E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.25720E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.840909E-01 NSTEP=   129 Hash code:   56406021
 ->PRGCHK: bdy curvature ratio at t= 1.8591E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.184091 ; TG2=     0.185909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.645E-05
  FluxDiff MaxDT:  3.046E-03

  Avg. GS error:     6.395E-03
  Plasma Current:    4.289E+05,   target:   4.289E+05,   error:   0.002%
  Edge Q:               15.019,   target:      14.925,   error:   0.628%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2230E+00 SECONDS
   DATA R*BT AT EDGE:  5.9013E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.8954E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.184091 TO TG2=    0.185909 @ NSTEP      129
   GFRAME TG2 MOMENTS CHECKSUM:  3.5484460642379D+03
 --> plasma_hash("gframe"): TA= 1.859091E-01 NSTEP=   130 Hash code:   61239986
 ->PRGCHK: bdy curvature ratio at t= 1.8773E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.185909 ; TG2=     0.187727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.622E-05
  FluxDiff MaxDT:  3.151E-03

  Avg. GS error:     6.629E-03
  Plasma Current:    4.316E+05,   target:   4.316E+05,   error:   0.001%
  Edge Q:               15.091,   target:      14.950,   error:   0.940%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2614E+00 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.8307E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.185909 TO TG2=    0.187727 @ NSTEP      130
   GFRAME TG2 MOMENTS CHECKSUM:  3.5518073723740D+03
 --> plasma_hash("gframe"): TA= 1.877273E-01 NSTEP=   131 Hash code:   35473019
 ->PRGCHK: bdy curvature ratio at t= 1.8955E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.187727 ; TG2=     0.189545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.593E-05
  FluxDiff MaxDT:  3.261E-03

  Avg. GS error:     6.916E-03
  Plasma Current:    4.343E+05,   target:   4.343E+05,   error:   0.004%
  Edge Q:               15.178,   target:      15.056,   error:   0.808%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3011E+00 SECONDS
   DATA R*BT AT EDGE:  5.9012E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.7822E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.187727 TO TG2=    0.189545 @ NSTEP      131
   GFRAME TG2 MOMENTS CHECKSUM:  3.5552675515569D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    131
 TA= 1.87727E-01 CPU TIME= 6.85200E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 1.895455E-01 NSTEP=   132 Hash code:  102577538
 ->PRGCHK: bdy curvature ratio at t= 1.9136E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.189545 ; TG2=     0.191364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.521E-05
  FluxDiff MaxDT:  3.332E-03

  Avg. GS error:     7.204E-03
  Plasma Current:    4.371E+05,   target:   4.370E+05,   error:   0.005%
  Edge Q:               15.275,   target:      15.116,   error:   1.050%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2673E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.6748E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.189545 TO TG2=    0.191364 @ NSTEP      132
   GFRAME TG2 MOMENTS CHECKSUM:  3.5590967503378D+03
 --> plasma_hash("gframe"): TA= 1.913636E-01 NSTEP=   133 Hash code:   94561603
 ->PRGCHK: bdy curvature ratio at t= 1.9318E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.191364 ; TG2=     0.193182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.345E-05
  FluxDiff MaxDT:  3.377E-03

  Avg. GS error:     7.536E-03
  Plasma Current:    4.398E+05,   target:   4.398E+05,   error:   0.003%
  Edge Q:               15.389,   target:      15.240,   error:   0.980%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2326E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.5489E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.191364 TO TG2=    0.193182 @ NSTEP      133
   GFRAME TG2 MOMENTS CHECKSUM:  3.5630807433725D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.69571E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -6.78285E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.01743E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 1.931818E-01 NSTEP=   134 Hash code:   11212617
 ->PRGCHK: bdy curvature ratio at t= 1.9500E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.193182 ; TG2=     0.195000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.180E-05
  FluxDiff MaxDT:  3.448E-03

  Avg. GS error:     7.897E-03
  Plasma Current:    4.425E+05,   target:   4.425E+05,   error:   0.002%
  Edge Q:               15.525,   target:      15.330,   error:   1.274%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2679E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.4470E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.193182 TO TG2=    0.195000 @ NSTEP      134
   GFRAME TG2 MOMENTS CHECKSUM:  3.5672547346197D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    134
 TA= 1.93182E-01 CPU TIME= 6.81620E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  %fi_finish: enter
  %fimain: eflux cpu time =    2.9999999924257281E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    135
 TA= 1.95000E-01 CPU TIME= 6.86040E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.10991944444458568     
 --> plasma_hash("gframe"): TA= 1.950000E-01 NSTEP=   135 Hash code:   52143962
 ->PRGCHK: bdy curvature ratio at t= 1.9682E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.195000 ; TG2=     0.196818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.008E-05
  FluxDiff MaxDT:  3.526E-03

  Avg. GS error:     8.410E-03
  Plasma Current:    4.452E+05,   target:   4.452E+05,   error:   0.002%
  Edge Q:               15.693,   target:      15.495,   error:   1.274%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3486E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.3743E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.195000 TO TG2=    0.196818 @ NSTEP      135
   GFRAME TG2 MOMENTS CHECKSUM:  3.5717422719854D+03
 --> plasma_hash("gframe"): TA= 1.968182E-01 NSTEP=   136 Hash code:   21619468
 ->PRGCHK: bdy curvature ratio at t= 1.9864E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.196818 ; TG2=     0.198636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.834E-05
  FluxDiff MaxDT:  3.625E-03

  Avg. GS error:     8.202E-03
  Plasma Current:    4.480E+05,   target:   4.480E+05,   error:   0.000%
  Edge Q:               15.889,   target:      15.652,   error:   1.519%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3831E+00 SECONDS
   DATA R*BT AT EDGE:  5.9001E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.2659E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.196818 TO TG2=    0.198636 @ NSTEP      136
   GFRAME TG2 MOMENTS CHECKSUM:  3.5765441942469D+03
 --> plasma_hash("gframe"): TA= 1.986364E-01 NSTEP=   137 Hash code:    2654631
 ->PRGCHK: bdy curvature ratio at t= 2.0045E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.198636 ; TG2=     0.200455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.594E-05
  FluxDiff MaxDT:  3.481E-03

  Avg. GS error:     8.636E-03
  Plasma Current:    4.507E+05,   target:   4.507E+05,   error:   0.001%
  Edge Q:               16.157,   target:      15.885,   error:   1.713%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3226E+00 SECONDS
   DATA R*BT AT EDGE:  5.9008E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  1.1343E-01
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.198636 TO TG2=    0.200455 @ NSTEP      137
   GFRAME TG2 MOMENTS CHECKSUM:  3.5817432536749D+03
 --> plasma_hash("gframe"): TA= 2.004545E-01 NSTEP=   138 Hash code:  122163502
 ->PRGCHK: bdy curvature ratio at t= 2.0227E-01 seconds is:  8.3037E-02
% MHDEQ: TG1=     0.200455 ; TG2=     0.202273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.501E-05
  FluxDiff MaxDT:  3.568E-03

  Avg. GS error:     9.191E-03
  Plasma Current:    4.534E+05,   target:   4.534E+05,   error:   0.004%
  Edge Q:               16.509,   target:      16.145,   error:   2.256%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4833E+00 SECONDS
   DATA R*BT AT EDGE:  5.9013E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  9.5730E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.200455 TO TG2=    0.202273 @ NSTEP      138
   GFRAME TG2 MOMENTS CHECKSUM:  3.5872681201194D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    138
 TA= 2.00455E-01 CPU TIME= 6.86710E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.022727E-01 NSTEP=   139 Hash code:  109666353
 ->PRGCHK: bdy curvature ratio at t= 2.0409E-01 seconds is:  8.2422E-02
% MHDEQ: TG1=     0.202273 ; TG2=     0.204091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.311E-05
  FluxDiff MaxDT:  3.388E-03

  Avg. GS error:     9.801E-03
  Plasma Current:    4.561E+05,   target:   4.561E+05,   error:   0.009%
  Edge Q:               17.074,   target:      16.557,   error:   3.118%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6537E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  7.1530E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.202273 TO TG2=    0.204091 @ NSTEP      139
   GFRAME TG2 MOMENTS CHECKSUM:  3.5959555725846D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.58214E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -9.04076E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -6.78060E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.040909E-01 NSTEP=   140 Hash code:   15057755
 ->PRGCHK: bdy curvature ratio at t= 2.0591E-01 seconds is:  8.1414E-02
% MHDEQ: TG1=     0.204091 ; TG2=     0.205909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.280E-05
  FluxDiff MaxDT:  3.983E-03

  Avg. GS error:     1.074E-02
  Plasma Current:    4.585E+05,   target:   4.589E+05,   error:   0.068%
  Edge Q:               17.555,   target:      17.184,   error:   2.156%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4965E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3353E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.204091 TO TG2=    0.205909 @ NSTEP      140
   GFRAME TG2 MOMENTS CHECKSUM:  3.6030653996692D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    140
 TA= 2.04091E-01 CPU TIME= 6.85470E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.059091E-01 NSTEP=   141 Hash code:   28074622
 ->PRGCHK: bdy curvature ratio at t= 2.0773E-01 seconds is:  7.8606E-02
% MHDEQ: TG1=     0.205909 ; TG2=     0.207727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.462E-05
  FluxDiff MaxDT:  7.353E-03

  Avg. GS error:     1.162E-02
  Plasma Current:    4.611E+05,   target:   4.616E+05,   error:   0.102%
  Edge Q:               16.990,   target:      17.850,   error:   4.820%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0646E+00 SECONDS
   DATA R*BT AT EDGE:  5.9011E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2994E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.205909 TO TG2=    0.207727 @ NSTEP      141
   GFRAME TG2 MOMENTS CHECKSUM:  3.6037786444030D+03
 --> plasma_hash("gframe"): TA= 2.077273E-01 NSTEP=   142 Hash code:   91967227
 ->PRGCHK: bdy curvature ratio at t= 2.0955E-01 seconds is:  7.5869E-02
% MHDEQ: TG1=     0.207727 ; TG2=     0.209545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.936E-05
  FluxDiff MaxDT:  6.654E-03

  Avg. GS error:     1.136E-02
  Plasma Current:    4.637E+05,   target:   4.643E+05,   error:   0.123%
  Edge Q:               16.510,   target:      17.195,   error:   3.987%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2776E+00 SECONDS
   DATA R*BT AT EDGE:  5.9006E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2746E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.207727 TO TG2=    0.209545 @ NSTEP      142
   GFRAME TG2 MOMENTS CHECKSUM:  3.6056210094165D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    142
 TA= 2.07727E-01 CPU TIME= 6.87750E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.095455E-01 NSTEP=   143 Hash code:   17564785
 ->PRGCHK: bdy curvature ratio at t= 2.1136E-01 seconds is:  7.3161E-02
% MHDEQ: TG1=     0.209545 ; TG2=     0.211364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.744E-05
  FluxDiff MaxDT:  6.798E-03

  Avg. GS error:     1.152E-02
  Plasma Current:    4.664E+05,   target:   4.670E+05,   error:   0.139%
  Edge Q:               16.069,   target:      16.760,   error:   4.125%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3433E+00 SECONDS
   DATA R*BT AT EDGE:  5.9003E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2434E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.209545 TO TG2=    0.211364 @ NSTEP      143
   GFRAME TG2 MOMENTS CHECKSUM:  3.6076281392079D+03
 --> plasma_hash("gframe"): TA= 2.113636E-01 NSTEP=   144 Hash code:   23150374
 ->PRGCHK: bdy curvature ratio at t= 2.1318E-01 seconds is:  7.1801E-02
% MHDEQ: TG1=     0.211364 ; TG2=     0.213182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.655E-05
  FluxDiff MaxDT:  6.523E-03

  Avg. GS error:     1.191E-02
  Plasma Current:    4.691E+05,   target:   4.698E+05,   error:   0.144%
  Edge Q:               15.810,   target:      16.285,   error:   2.915%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3952E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3281E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.211364 TO TG2=    0.213182 @ NSTEP      144
   GFRAME TG2 MOMENTS CHECKSUM:  3.6075798541174D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    144
 TA= 2.11364E-01 CPU TIME= 6.90760E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.131818E-01 NSTEP=   145 Hash code:  102969638
 ->PRGCHK: bdy curvature ratio at t= 2.1500E-01 seconds is:  7.1460E-02
% MHDEQ: TG1=     0.213182 ; TG2=     0.215000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.341E-05
  FluxDiff MaxDT:  7.344E-03

  Avg. GS error:     1.205E-02
  Plasma Current:    4.718E+05,   target:   4.725E+05,   error:   0.147%
  Edge Q:               15.646,   target:      16.069,   error:   2.638%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3759E+00 SECONDS
   DATA R*BT AT EDGE:  5.9008E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3539E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.213182 TO TG2=    0.215000 @ NSTEP      145
   GFRAME TG2 MOMENTS CHECKSUM:  3.6069021349826D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  3.45602E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  3.45602E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       4=  8.06237E-41 RESET TO ZERO 
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    146
 TA= 2.15000E-01 CPU TIME= 6.82420E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.11961499999915759     
 --> plasma_hash("gframe"): TA= 2.150000E-01 NSTEP=   146 Hash code:   13323239
 ->PRGCHK: bdy curvature ratio at t= 2.1682E-01 seconds is:  7.6670E-02
% MHDEQ: TG1=     0.215000 ; TG2=     0.216818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.051E-05
  FluxDiff MaxDT:  3.917E-03

  Avg. GS error:     1.234E-02
  Plasma Current:    4.746E+05,   target:   4.752E+05,   error:   0.135%
  Edge Q:               16.113,   target:      15.892,   error:   1.389%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4723E+00 SECONDS
   DATA R*BT AT EDGE:  5.9014E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4398E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.215000 TO TG2=    0.216818 @ NSTEP      146
   GFRAME TG2 MOMENTS CHECKSUM:  3.6021076840443D+03
 --> plasma_hash("gframe"): TA= 2.168182E-01 NSTEP=   147 Hash code:   94693025
 ->PRGCHK: bdy curvature ratio at t= 2.1864E-01 seconds is:  8.2282E-02
% MHDEQ: TG1=     0.216818 ; TG2=     0.218636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.796E-05
  FluxDiff MaxDT:  7.544E-03

  Avg. GS error:     1.193E-02
  Plasma Current:    4.774E+05,   target:   4.780E+05,   error:   0.125%
  Edge Q:               15.716,   target:      16.502,   error:   4.765%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4924E+00 SECONDS
   DATA R*BT AT EDGE:  5.9017E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6928E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.216818 TO TG2=    0.218636 @ NSTEP      147
   GFRAME TG2 MOMENTS CHECKSUM:  3.5854493920619D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    147
 TA= 2.16818E-01 CPU TIME= 6.74720E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.186364E-01 NSTEP=   148 Hash code:   93794314
 ->PRGCHK: bdy curvature ratio at t= 2.2045E-01 seconds is:  8.9124E-02
% MHDEQ: TG1=     0.218636 ; TG2=     0.220455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.145E-05
  FluxDiff MaxDT:  3.349E-03

  Avg. GS error:     1.188E-02
  Plasma Current:    4.799E+05,   target:   4.807E+05,   error:   0.159%
  Edge Q:               14.815,   target:      15.981,   error:   7.298%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6163E+00 SECONDS
   DATA R*BT AT EDGE:  5.9017E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9298E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.218636 TO TG2=    0.220455 @ NSTEP      148
   GFRAME TG2 MOMENTS CHECKSUM:  3.5626434208529D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    148
 TA= 2.18636E-01 CPU TIME= 6.77440E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.204545E-01 NSTEP=   149 Hash code:  108684919
 ->PRGCHK: bdy curvature ratio at t= 2.2227E-01 seconds is:  9.7570E-02
% MHDEQ: TG1=     0.220455 ; TG2=     0.222273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.129E-05
  FluxDiff MaxDT:  3.939E-03

  Avg. GS error:     1.107E-02
  Plasma Current:    4.827E+05,   target:   4.834E+05,   error:   0.155%
  Edge Q:               14.159,   target:      15.059,   error:   5.982%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6059E+00 SECONDS
   DATA R*BT AT EDGE:  5.9013E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.2957E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.220455 TO TG2=    0.222273 @ NSTEP      149
   GFRAME TG2 MOMENTS CHECKSUM:  3.5416119508224D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    149
 TA= 2.20455E-01 CPU TIME= 6.79610E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.222727E-01 NSTEP=   150 Hash code:   81461194
 ->PRGCHK: bdy curvature ratio at t= 2.2409E-01 seconds is:  9.5617E-02
% MHDEQ: TG1=     0.222273 ; TG2=     0.224091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.169E-05
  FluxDiff MaxDT:  4.122E-03

  Avg. GS error:     1.053E-02
  Plasma Current:    4.855E+05,   target:   4.861E+05,   error:   0.135%
  Edge Q:               13.631,   target:      14.360,   error:   5.080%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6102E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1349E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.222273 TO TG2=    0.224091 @ NSTEP      150
   GFRAME TG2 MOMENTS CHECKSUM:  3.5215860354193D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    150
 TA= 2.22273E-01 CPU TIME= 6.73690E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -5.59159E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -2.79579E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -2.79579E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.240909E-01 NSTEP=   151 Hash code:  103609021
 ->PRGCHK: bdy curvature ratio at t= 2.2591E-01 seconds is:  8.8034E-02
% MHDEQ: TG1=     0.224091 ; TG2=     0.225909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.124E-05
  FluxDiff MaxDT:  4.754E-03

  Avg. GS error:     9.907E-03
  Plasma Current:    4.884E+05,   target:   4.889E+05,   error:   0.102%
  Edge Q:               13.241,   target:      13.862,   error:   4.484%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1058E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0862E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.224091 TO TG2=    0.225909 @ NSTEP      151
   GFRAME TG2 MOMENTS CHECKSUM:  3.5047646915912D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    151
 TA= 2.24091E-01 CPU TIME= 6.76140E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.259091E-01 NSTEP=   152 Hash code:  105844978
 ->PRGCHK: bdy curvature ratio at t= 2.2773E-01 seconds is:  8.2009E-02
% MHDEQ: TG1=     0.225909 ; TG2=     0.227727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.060E-05
  FluxDiff MaxDT:  4.954E-03

  Avg. GS error:     1.001E-02
  Plasma Current:    4.911E+05,   target:   4.916E+05,   error:   0.100%
  Edge Q:               12.817,   target:      13.470,   error:   4.843%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1298E+00 SECONDS
   DATA R*BT AT EDGE:  5.8996E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6435E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.225909 TO TG2=    0.227727 @ NSTEP      152
   GFRAME TG2 MOMENTS CHECKSUM:  3.4854976589281D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    152
 TA= 2.25909E-01 CPU TIME= 6.83160E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.277273E-01 NSTEP=   153 Hash code:   72488141
 ->PRGCHK: bdy curvature ratio at t= 2.2955E-01 seconds is:  7.6772E-02
% MHDEQ: TG1=     0.227727 ; TG2=     0.229545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.088E-05
  FluxDiff MaxDT:  5.236E-03

  Avg. GS error:     1.044E-02
  Plasma Current:    4.938E+05,   target:   4.943E+05,   error:   0.107%
  Edge Q:               12.432,   target:      13.067,   error:   4.858%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0921E+00 SECONDS
   DATA R*BT AT EDGE:  5.8996E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4627E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.227727 TO TG2=    0.229545 @ NSTEP      153
   GFRAME TG2 MOMENTS CHECKSUM:  3.4667272627900D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    153
 TA= 2.27727E-01 CPU TIME= 6.78770E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.295455E-01 NSTEP=   154 Hash code:   21646317
 ->PRGCHK: bdy curvature ratio at t= 2.3136E-01 seconds is:  7.1794E-02
% MHDEQ: TG1=     0.229545 ; TG2=     0.231364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.177E-05
  FluxDiff MaxDT:  5.965E-03

  Avg. GS error:     1.042E-02
  Plasma Current:    4.965E+05,   target:   4.970E+05,   error:   0.100%
  Edge Q:               12.156,   target:      12.662,   error:   3.996%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1540E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4696E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.229545 TO TG2=    0.231364 @ NSTEP      154
   GFRAME TG2 MOMENTS CHECKSUM:  3.4535749854247D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    154
 TA= 2.29545E-01 CPU TIME= 6.85530E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.313636E-01 NSTEP=   155 Hash code:   48396749
 ->PRGCHK: bdy curvature ratio at t= 2.3318E-01 seconds is:  6.7706E-02
% MHDEQ: TG1=     0.231364 ; TG2=     0.233182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.260E-05
  FluxDiff MaxDT:  6.601E-03

  Avg. GS error:     1.031E-02
  Plasma Current:    4.992E+05,   target:   4.998E+05,   error:   0.110%
  Edge Q:               11.936,   target:      12.405,   error:   3.781%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0350E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4399E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.231364 TO TG2=    0.233182 @ NSTEP      155
   GFRAME TG2 MOMENTS CHECKSUM:  3.4442619952192D+03
 --> plasma_hash("gframe"): TA= 2.331818E-01 NSTEP=   156 Hash code:   63067426
 ->PRGCHK: bdy curvature ratio at t= 2.3500E-01 seconds is:  6.5071E-02
% MHDEQ: TG1=     0.233182 ; TG2=     0.235000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.398E-05
  FluxDiff MaxDT:  3.806E-03

  Avg. GS error:     9.816E-03
  Plasma Current:    5.020E+05,   target:   5.025E+05,   error:   0.093%
  Edge Q:               11.925,   target:      12.168,   error:   1.993%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4282E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4777E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.233182 TO TG2=    0.235000 @ NSTEP      156
   GFRAME TG2 MOMENTS CHECKSUM:  3.4494237456347D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.58622E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -9.31037E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  6.51726E-40 RESET TO ZERO 
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    157
 TA= 2.35000E-01 CPU TIME= 6.79810E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.12915166666653022     
 --> plasma_hash("gframe"): TA= 2.350000E-01 NSTEP=   157 Hash code:    6020060
 ->PRGCHK: bdy curvature ratio at t= 2.3682E-01 seconds is:  6.2312E-02
% MHDEQ: TG1=     0.235000 ; TG2=     0.236818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.513E-05
  FluxDiff MaxDT:  3.834E-03

  Avg. GS error:     9.569E-03
  Plasma Current:    5.048E+05,   target:   5.052E+05,   error:   0.093%
  Edge Q:               11.905,   target:      12.179,   error:   2.251%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4090E+00 SECONDS
   DATA R*BT AT EDGE:  5.9009E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5249E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.235000 TO TG2=    0.236818 @ NSTEP      157
   GFRAME TG2 MOMENTS CHECKSUM:  3.4541243681112D+03
 --> plasma_hash("gframe"): TA= 2.368182E-01 NSTEP=   158 Hash code:   82656416
 ->PRGCHK: bdy curvature ratio at t= 2.3864E-01 seconds is:  5.9099E-02
% MHDEQ: TG1=     0.236818 ; TG2=     0.238636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.701E-05
  FluxDiff MaxDT:  3.794E-03

  Avg. GS error:     9.430E-03
  Plasma Current:    5.075E+05,   target:   5.080E+05,   error:   0.092%
  Edge Q:               11.894,   target:      12.151,   error:   2.117%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4242E+00 SECONDS
   DATA R*BT AT EDGE:  5.9009E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6511E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.236818 TO TG2=    0.238636 @ NSTEP      158
   GFRAME TG2 MOMENTS CHECKSUM:  3.4587185264813D+03
 --> plasma_hash("gframe"): TA= 2.386364E-01 NSTEP=   159 Hash code:   96045215
 ->PRGCHK: bdy curvature ratio at t= 2.4045E-01 seconds is:  5.8735E-02
% MHDEQ: TG1=     0.238636 ; TG2=     0.240455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.640E-05
  FluxDiff MaxDT:  2.958E-03

  Avg. GS error:     9.376E-03
  Plasma Current:    5.102E+05,   target:   5.107E+05,   error:   0.085%
  Edge Q:               11.975,   target:      12.156,   error:   1.495%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6539E+00 SECONDS
   DATA R*BT AT EDGE:  5.9008E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6935E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.238636 TO TG2=    0.240455 @ NSTEP      159
   GFRAME TG2 MOMENTS CHECKSUM:  3.4689237803774D+03
 --> plasma_hash("gframe"): TA= 2.404545E-01 NSTEP=   160 Hash code:   25610363
 ->PRGCHK: bdy curvature ratio at t= 2.4227E-01 seconds is:  6.0420E-02
% MHDEQ: TG1=     0.240455 ; TG2=     0.242273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.791E-05
  FluxDiff MaxDT:  2.599E-03

  Avg. GS error:     9.207E-03
  Plasma Current:    5.130E+05,   target:   5.134E+05,   error:   0.079%
  Edge Q:               12.137,   target:      12.231,   error:   0.768%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7124E+00 SECONDS
   DATA R*BT AT EDGE:  5.9005E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9546E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.240455 TO TG2=    0.242273 @ NSTEP      160
   GFRAME TG2 MOMENTS CHECKSUM:  3.4841092397727D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    160
 TA= 2.40455E-01 CPU TIME= 6.82880E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.422727E-01 NSTEP=   161 Hash code:   21261305
 ->PRGCHK: bdy curvature ratio at t= 2.4409E-01 seconds is:  7.1148E-02
% MHDEQ: TG1=     0.242273 ; TG2=     0.244091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.300E-05
  FluxDiff MaxDT:  1.898E-03

  Avg. GS error:     9.657E-03
  Plasma Current:    5.158E+05,   target:   5.161E+05,   error:   0.072%
  Edge Q:               12.611,   target:      12.405,   error:   1.661%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.8400E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9591E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.242273 TO TG2=    0.244091 @ NSTEP      161
   GFRAME TG2 MOMENTS CHECKSUM:  3.5135224230141D+03
 --> plasma_hash("gframe"): TA= 2.440909E-01 NSTEP=   162 Hash code:   54209872
 ->PRGCHK: bdy curvature ratio at t= 2.4591E-01 seconds is:  8.0173E-02
% MHDEQ: TG1=     0.244091 ; TG2=     0.245909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.751E-05
  FluxDiff MaxDT:  2.440E-03

  Avg. GS error:     9.611E-03
  Plasma Current:    5.184E+05,   target:   5.189E+05,   error:   0.084%
  Edge Q:               13.197,   target:      12.916,   error:   2.174%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7448E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8597E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.244091 TO TG2=    0.245909 @ NSTEP      162
   GFRAME TG2 MOMENTS CHECKSUM:  3.5409663508891D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.76192E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  6.16675E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -4.40481E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.459091E-01 NSTEP=   163 Hash code:   81046186
 ->PRGCHK: bdy curvature ratio at t= 2.4773E-01 seconds is:  6.6769E-02
% MHDEQ: TG1=     0.245909 ; TG2=     0.247727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.882E-05
  FluxDiff MaxDT:  2.991E-03

  Avg. GS error:     9.437E-03
  Plasma Current:    5.209E+05,   target:   5.216E+05,   error:   0.123%
  Edge Q:               12.152,   target:      13.648,   error:  10.961%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2627E+00 SECONDS
   DATA R*BT AT EDGE:  5.8998E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0892E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.245909 TO TG2=    0.247727 @ NSTEP      163
   GFRAME TG2 MOMENTS CHECKSUM:  3.5445371603690D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    163
 TA= 2.45909E-01 CPU TIME= 6.76890E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.477273E-01 NSTEP=   164 Hash code:   49933205
 ->PRGCHK: bdy curvature ratio at t= 2.4955E-01 seconds is:  5.9477E-02
% MHDEQ: TG1=     0.247727 ; TG2=     0.249545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.185E-05
  FluxDiff MaxDT:  3.699E-03

  Avg. GS error:     9.706E-03
  Plasma Current:    5.234E+05,   target:   5.243E+05,   error:   0.168%
  Edge Q:               11.536,   target:      12.397,   error:   6.946%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2731E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4600E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.247727 TO TG2=    0.249545 @ NSTEP      164
   GFRAME TG2 MOMENTS CHECKSUM:  3.5518192533571D+03
 --> plasma_hash("gframe"): TA= 2.495455E-01 NSTEP=   165 Hash code:   92692482
 ->PRGCHK: bdy curvature ratio at t= 2.5136E-01 seconds is:  5.5142E-02
% MHDEQ: TG1=     0.249545 ; TG2=     0.251364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.954E-05
  FluxDiff MaxDT:  4.084E-03

  Avg. GS error:     1.017E-02
  Plasma Current:    5.261E+05,   target:   5.270E+05,   error:   0.170%
  Edge Q:               11.091,   target:      11.819,   error:   6.165%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2560E+00 SECONDS
   DATA R*BT AT EDGE:  5.9011E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5678E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.249545 TO TG2=    0.251364 @ NSTEP      165
   GFRAME TG2 MOMENTS CHECKSUM:  3.5585179461054D+03
 --> plasma_hash("gframe"): TA= 2.513636E-01 NSTEP=   166 Hash code:  103328044
 ->PRGCHK: bdy curvature ratio at t= 2.5318E-01 seconds is:  5.7846E-02
% MHDEQ: TG1=     0.251364 ; TG2=     0.253182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.773E-05
  FluxDiff MaxDT:  4.058E-03

  Avg. GS error:     1.011E-02
  Plasma Current:    5.290E+05,   target:   5.298E+05,   error:   0.152%
  Edge Q:               10.796,   target:      11.324,   error:   4.666%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2253E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6896E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.251364 TO TG2=    0.253182 @ NSTEP      166
   GFRAME TG2 MOMENTS CHECKSUM:  3.5634351530274D+03
 --> plasma_hash("gframe"): TA= 2.531818E-01 NSTEP=   167 Hash code:   51394601
 ->PRGCHK: bdy curvature ratio at t= 2.5500E-01 seconds is:  6.1684E-02
% MHDEQ: TG1=     0.253182 ; TG2=     0.255000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.932E-05
  FluxDiff MaxDT:  4.641E-03

  Avg. GS error:     1.004E-02
  Plasma Current:    5.317E+05,   target:   5.325E+05,   error:   0.146%
  Edge Q:               10.521,   target:      11.061,   error:   4.886%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2765E+00 SECONDS
   DATA R*BT AT EDGE:  5.9015E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6758E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.253182 TO TG2=    0.255000 @ NSTEP      167
   GFRAME TG2 MOMENTS CHECKSUM:  3.5683681680994D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  4.82686E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  2.41343E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  2.41343E-40 RESET TO ZERO 
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    168
 TA= 2.55000E-01 CPU TIME= 6.79720E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.13879222222158205     
 --> plasma_hash("gframe"): TA= 2.550000E-01 NSTEP=   168 Hash code:  112486707
 ->PRGCHK: bdy curvature ratio at t= 2.5682E-01 seconds is:  6.2801E-02
% MHDEQ: TG1=     0.255000 ; TG2=     0.256818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.948E-05
  FluxDiff MaxDT:  4.381E-03

  Avg. GS error:     9.940E-03
  Plasma Current:    5.345E+05,   target:   5.352E+05,   error:   0.131%
  Edge Q:               10.269,   target:      10.755,   error:   4.514%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2447E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5531E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.255000 TO TG2=    0.256818 @ NSTEP      168
   GFRAME TG2 MOMENTS CHECKSUM:  3.5739463835264D+03
 --> plasma_hash("gframe"): TA= 2.568182E-01 NSTEP=   169 Hash code:   64110209
 ->PRGCHK: bdy curvature ratio at t= 2.5864E-01 seconds is:  6.3802E-02
% MHDEQ: TG1=     0.256818 ; TG2=     0.258636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.225E-05
  FluxDiff MaxDT:  3.664E-03

  Avg. GS error:     9.864E-03
  Plasma Current:    5.373E+05,   target:   5.380E+05,   error:   0.117%
  Edge Q:               10.151,   target:      10.521,   error:   3.521%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4006E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4870E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.256818 TO TG2=    0.258636 @ NSTEP      169
   GFRAME TG2 MOMENTS CHECKSUM:  3.5783319393041D+03
 --> plasma_hash("gframe"): TA= 2.586364E-01 NSTEP=   170 Hash code:   34306753
 ->PRGCHK: bdy curvature ratio at t= 2.6045E-01 seconds is:  6.4030E-02
% MHDEQ: TG1=     0.258636 ; TG2=     0.260455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.419E-05
  FluxDiff MaxDT:  2.809E-03

  Avg. GS error:     9.589E-03
  Plasma Current:    5.401E+05,   target:   5.407E+05,   error:   0.107%
  Edge Q:               10.105,   target:      10.380,   error:   2.651%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5209E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4593E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.258636 TO TG2=    0.260455 @ NSTEP      170
   GFRAME TG2 MOMENTS CHECKSUM:  3.5817303989822D+03
 --> plasma_hash("gframe"): TA= 2.604545E-01 NSTEP=   171 Hash code:   53329225
 ->PRGCHK: bdy curvature ratio at t= 2.6227E-01 seconds is:  6.2497E-02
% MHDEQ: TG1=     0.260455 ; TG2=     0.262273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.984E-05
  FluxDiff MaxDT:  1.750E-03

  Avg. GS error:     9.216E-03
  Plasma Current:    5.429E+05,   target:   5.434E+05,   error:   0.099%
  Edge Q:               10.265,   target:      10.349,   error:   0.809%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7800E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2058E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.260455 TO TG2=    0.262273 @ NSTEP      171
   GFRAME TG2 MOMENTS CHECKSUM:  3.5832352955082D+03
 --> plasma_hash("gframe"): TA= 2.622727E-01 NSTEP=   172 Hash code:   95840229
 ->PRGCHK: bdy curvature ratio at t= 2.6386E-01 seconds is:  5.9584E-02
% MHDEQ: TG1=     0.262273 ; TG2=     0.263864 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.994E-05
  FluxDiff MaxDT:  1.937E-03

  Avg. GS error:     9.194E-03
  Plasma Current:    5.453E+05,   target:   5.458E+05,   error:   0.088%
  Edge Q:               10.388,   target:      10.499,   error:   1.054%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.7171E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9848E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.262273 TO TG2=    0.263864 @ NSTEP      172
   GFRAME TG2 MOMENTS CHECKSUM:  3.5840250715366D+03
 --> plasma_hash("gframe"): TA= 2.638636E-01 NSTEP=   173 Hash code:   64454138
 ->PRGCHK: bdy curvature ratio at t= 2.6545E-01 seconds is:  5.5743E-02
% MHDEQ: TG1=     0.263864 ; TG2=     0.265455 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.055E-05
  FluxDiff MaxDT:  2.029E-03

  Avg. GS error:     9.368E-03
  Plasma Current:    5.477E+05,   target:   5.482E+05,   error:   0.088%
  Edge Q:               10.519,   target:      10.646,   error:   1.195%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6897E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1026E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.263864 TO TG2=    0.265455 @ NSTEP      173
   GFRAME TG2 MOMENTS CHECKSUM:  3.5845110851034D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  7.16457E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  9.85128E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -2.68671E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.654545E-01 NSTEP=   174 Hash code:   77076037
 ->PRGCHK: bdy curvature ratio at t= 2.6705E-01 seconds is:  5.4204E-02
% MHDEQ: TG1=     0.265455 ; TG2=     0.267045 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.027E-05
  FluxDiff MaxDT:  2.159E-03

  Avg. GS error:     9.196E-03
  Plasma Current:    5.501E+05,   target:   5.506E+05,   error:   0.082%
  Edge Q:               10.641,   target:      10.757,   error:   1.083%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5787E+00 SECONDS
   DATA R*BT AT EDGE:  5.9006E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8221E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.265455 TO TG2=    0.267045 @ NSTEP      174
   GFRAME TG2 MOMENTS CHECKSUM:  3.5865931924064D+03
 --> plasma_hash("gframe"): TA= 2.670455E-01 NSTEP=   175 Hash code:   69579997
 ->PRGCHK: bdy curvature ratio at t= 2.6864E-01 seconds is:  5.3832E-02
% MHDEQ: TG1=     0.267045 ; TG2=     0.268636 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.982E-05
  FluxDiff MaxDT:  2.331E-03

  Avg. GS error:     9.339E-03
  Plasma Current:    5.525E+05,   target:   5.530E+05,   error:   0.085%
  Edge Q:               10.771,   target:      10.904,   error:   1.222%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.6251E+00 SECONDS
   DATA R*BT AT EDGE:  5.9008E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9550E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.267045 TO TG2=    0.268636 @ NSTEP      175
   GFRAME TG2 MOMENTS CHECKSUM:  3.5869324599960D+03
 --> plasma_hash("gframe"): TA= 2.686364E-01 NSTEP=   176 Hash code:   77043005
 ->PRGCHK: bdy curvature ratio at t= 2.7023E-01 seconds is:  5.6634E-02
% MHDEQ: TG1=     0.268636 ; TG2=     0.270227 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.690E-05
  FluxDiff MaxDT:  2.685E-03

  Avg. GS error:     9.504E-03
  Plasma Current:    5.549E+05,   target:   5.553E+05,   error:   0.087%
  Edge Q:               10.875,   target:      11.026,   error:   1.372%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4394E+00 SECONDS
   DATA R*BT AT EDGE:  5.9009E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9627E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.268636 TO TG2=    0.270227 @ NSTEP      176
   GFRAME TG2 MOMENTS CHECKSUM:  3.5876242480568D+03
 --> plasma_hash("gframe"): TA= 2.702273E-01 NSTEP=   177 Hash code:  117151635
 ->PRGCHK: bdy curvature ratio at t= 2.7182E-01 seconds is:  5.9800E-02
% MHDEQ: TG1=     0.270227 ; TG2=     0.271818 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.487E-05
  FluxDiff MaxDT:  2.941E-03

  Avg. GS error:     9.581E-03
  Plasma Current:    5.572E+05,   target:   5.577E+05,   error:   0.091%
  Edge Q:               10.985,   target:      11.150,   error:   1.476%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5024E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0233E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.270227 TO TG2=    0.271818 @ NSTEP      177
   GFRAME TG2 MOMENTS CHECKSUM:  3.5879754888265D+03
 --> plasma_hash("gframe"): TA= 2.718182E-01 NSTEP=   178 Hash code:   79252886
 ->PRGCHK: bdy curvature ratio at t= 2.7341E-01 seconds is:  6.3472E-02
% MHDEQ: TG1=     0.271818 ; TG2=     0.273409 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.329E-05
  FluxDiff MaxDT:  3.090E-03

  Avg. GS error:     9.149E-03
  Plasma Current:    5.595E+05,   target:   5.601E+05,   error:   0.101%
  Edge Q:               11.109,   target:      11.266,   error:   1.395%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4644E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0370E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.271818 TO TG2=    0.273409 @ NSTEP      178
   GFRAME TG2 MOMENTS CHECKSUM:  3.5884392992282D+03
 --> plasma_hash("gframe"): TA= 2.734091E-01 NSTEP=   179 Hash code:   87759802
 ->PRGCHK: bdy curvature ratio at t= 2.7500E-01 seconds is:  6.7826E-02
% MHDEQ: TG1=     0.273409 ; TG2=     0.275000 ; DTG=  1.591E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.207E-05
  FluxDiff MaxDT:  3.238E-03

  Avg. GS error:     9.338E-03
  Plasma Current:    5.619E+05,   target:   5.625E+05,   error:   0.111%
  Edge Q:               11.263,   target:      11.422,   error:   1.388%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4371E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0954E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.273409 TO TG2=    0.275000 @ NSTEP      179
   GFRAME TG2 MOMENTS CHECKSUM:  3.5893242617898D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    180
 TA= 2.75000E-01 CPU TIME= 6.88590E-02 SECONDS.  DT= 1.98864E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.14913444444346169     
 --> plasma_hash("gframe"): TA= 2.750000E-01 NSTEP=   180 Hash code:   62924169
 ->PRGCHK: bdy curvature ratio at t= 2.7682E-01 seconds is:  7.3820E-02
% MHDEQ: TG1=     0.275000 ; TG2=     0.276818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.820E-05
  FluxDiff MaxDT:  3.634E-03

  Avg. GS error:     9.633E-03
  Plasma Current:    5.644E+05,   target:   5.652E+05,   error:   0.138%
  Edge Q:               11.413,   target:      11.606,   error:   1.664%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5120E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5471E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.275000 TO TG2=    0.276818 @ NSTEP      180
   GFRAME TG2 MOMENTS CHECKSUM:  3.5896976072369D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.82855E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -9.14277E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.73712E-39 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.768182E-01 NSTEP=   181 Hash code:   88127398
 ->PRGCHK: bdy curvature ratio at t= 2.7864E-01 seconds is:  8.1173E-02
% MHDEQ: TG1=     0.276818 ; TG2=     0.278636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.567E-05
  FluxDiff MaxDT:  6.135E-03

  Avg. GS error:     9.384E-03
  Plasma Current:    5.671E+05,   target:   5.680E+05,   error:   0.156%
  Edge Q:               11.003,   target:      11.824,   error:   6.944%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2689E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2367E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.276818 TO TG2=    0.278636 @ NSTEP      181
   GFRAME TG2 MOMENTS CHECKSUM:  3.5815861980762D+03
 --> plasma_hash("gframe"): TA= 2.786364E-01 NSTEP=   182 Hash code:   13762270
 ->PRGCHK: bdy curvature ratio at t= 2.8045E-01 seconds is:  8.0797E-02
% MHDEQ: TG1=     0.278636 ; TG2=     0.280455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.655E-05
  FluxDiff MaxDT:  5.177E-03

  Avg. GS error:     1.026E-02
  Plasma Current:    5.696E+05,   target:   5.707E+05,   error:   0.193%
  Edge Q:               10.657,   target:      11.301,   error:   5.700%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2420E+00 SECONDS
   DATA R*BT AT EDGE:  5.8991E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3485E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.278636 TO TG2=    0.280455 @ NSTEP      182
   GFRAME TG2 MOMENTS CHECKSUM:  3.5740013155746D+03
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=  0.28000000000000003     
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 --> plasma_hash("gframe"): TA= 2.804545E-01 NSTEP=   184 Hash code:   17099238
 ->PRGCHK: bdy curvature ratio at t= 2.8227E-01 seconds is:  7.6184E-02
% MHDEQ: TG1=     0.280455 ; TG2=     0.282273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.582E-05
  FluxDiff MaxDT:  5.532E-03

  Avg. GS error:     9.661E-03
  Plasma Current:    5.725E+05,   target:   5.734E+05,   error:   0.152%
  Edge Q:               10.488,   target:      10.943,   error:   4.154%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2942E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0203E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.280455 TO TG2=    0.282273 @ NSTEP      184
   GFRAME TG2 MOMENTS CHECKSUM:  3.5694383601012D+03
 --> plasma_hash("gframe"): TA= 2.822727E-01 NSTEP=   186 Hash code:   65031260
 ->PRGCHK: bdy curvature ratio at t= 2.8409E-01 seconds is:  7.2562E-02
% MHDEQ: TG1=     0.282273 ; TG2=     0.284091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.566E-05
  FluxDiff MaxDT:  5.187E-03

  Avg. GS error:     9.502E-03
  Plasma Current:    5.753E+05,   target:   5.761E+05,   error:   0.145%
  Edge Q:               10.290,   target:      10.733,   error:   4.129%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2338E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9171E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.282273 TO TG2=    0.284091 @ NSTEP      186
   GFRAME TG2 MOMENTS CHECKSUM:  3.5640411380540D+03
 --> plasma_hash("gframe"): TA= 2.840909E-01 NSTEP=   187 Hash code:   92031404
 ->PRGCHK: bdy curvature ratio at t= 2.8591E-01 seconds is:  7.0409E-02
% MHDEQ: TG1=     0.284091 ; TG2=     0.285909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.606E-05
  FluxDiff MaxDT:  4.732E-03

  Avg. GS error:     9.345E-03
  Plasma Current:    5.781E+05,   target:   5.789E+05,   error:   0.140%
  Edge Q:               10.173,   target:      10.531,   error:   3.402%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2983E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8714E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.284091 TO TG2=    0.285909 @ NSTEP      187
   GFRAME TG2 MOMENTS CHECKSUM:  3.5607814028155D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.85669E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -9.28346E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.76386E-39 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.859091E-01 NSTEP=   188 Hash code:   88441950
 ->PRGCHK: bdy curvature ratio at t= 2.8773E-01 seconds is:  6.9081E-02
% MHDEQ: TG1=     0.285909 ; TG2=     0.287727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.505E-05
  FluxDiff MaxDT:  4.095E-03

  Avg. GS error:     9.201E-03
  Plasma Current:    5.808E+05,   target:   5.816E+05,   error:   0.135%
  Edge Q:               10.110,   target:      10.400,   error:   2.797%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3132E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8512E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.285909 TO TG2=    0.287727 @ NSTEP      188
   GFRAME TG2 MOMENTS CHECKSUM:  3.5592863580978D+03
 --> plasma_hash("gframe"): TA= 2.877273E-01 NSTEP=   189 Hash code:   46316594
 ->PRGCHK: bdy curvature ratio at t= 2.8955E-01 seconds is:  6.8646E-02
% MHDEQ: TG1=     0.287727 ; TG2=     0.289545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.370E-05
  FluxDiff MaxDT:  3.404E-03

  Avg. GS error:     9.149E-03
  Plasma Current:    5.836E+05,   target:   5.843E+05,   error:   0.129%
  Edge Q:               10.118,   target:      10.344,   error:   2.190%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2665E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8628E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.287727 TO TG2=    0.289545 @ NSTEP      189
   GFRAME TG2 MOMENTS CHECKSUM:  3.5602167915675D+03
 --> plasma_hash("gframe"): TA= 2.895455E-01 NSTEP=   190 Hash code:   62505451
 ->PRGCHK: bdy curvature ratio at t= 2.9136E-01 seconds is:  6.8230E-02
% MHDEQ: TG1=     0.289545 ; TG2=     0.291364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.174E-05
  FluxDiff MaxDT:  3.639E-03

  Avg. GS error:     9.133E-03
  Plasma Current:    5.863E+05,   target:   5.870E+05,   error:   0.127%
  Edge Q:               10.120,   target:      10.348,   error:   2.208%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2415E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8800E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.289545 TO TG2=    0.291364 @ NSTEP      190
   GFRAME TG2 MOMENTS CHECKSUM:  3.5609628194253D+03
 --> plasma_hash("gframe"): TA= 2.913636E-01 NSTEP=   191 Hash code:    4105243
 ->PRGCHK: bdy curvature ratio at t= 2.9318E-01 seconds is:  6.7834E-02
% MHDEQ: TG1=     0.291364 ; TG2=     0.293182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.227E-05
  FluxDiff MaxDT:  3.783E-03

  Avg. GS error:     9.164E-03
  Plasma Current:    5.890E+05,   target:   5.898E+05,   error:   0.127%
  Edge Q:               10.120,   target:      10.358,   error:   2.303%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2450E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9019E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.291364 TO TG2=    0.293182 @ NSTEP      191
   GFRAME TG2 MOMENTS CHECKSUM:  3.5616682398296D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    191
 TA= 2.91364E-01 CPU TIME= 6.90860E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 2.931818E-01 NSTEP=   192 Hash code:   40332338
 ->PRGCHK: bdy curvature ratio at t= 2.9500E-01 seconds is:  6.7458E-02
% MHDEQ: TG1=     0.293182 ; TG2=     0.295000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.228E-05
  FluxDiff MaxDT:  3.882E-03

  Avg. GS error:     9.255E-03
  Plasma Current:    5.917E+05,   target:   5.925E+05,   error:   0.129%
  Edge Q:               10.119,   target:      10.353,   error:   2.261%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2468E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9191E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.293182 TO TG2=    0.295000 @ NSTEP      192
   GFRAME TG2 MOMENTS CHECKSUM:  3.5623521284331D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    193
 TA= 2.95000E-01 CPU TIME= 6.80550E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.15825999999879059     
 --> plasma_hash("gframe"): TA= 2.950000E-01 NSTEP=   193 Hash code:  114654887
 ->PRGCHK: bdy curvature ratio at t= 2.9682E-01 seconds is:  6.7100E-02
% MHDEQ: TG1=     0.295000 ; TG2=     0.296818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.214E-05
  FluxDiff MaxDT:  3.936E-03

  Avg. GS error:     9.382E-03
  Plasma Current:    5.944E+05,   target:   5.952E+05,   error:   0.131%
  Edge Q:               10.118,   target:      10.360,   error:   2.329%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2234E+00 SECONDS
   DATA R*BT AT EDGE:  5.8993E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9404E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.295000 TO TG2=    0.296818 @ NSTEP      193
   GFRAME TG2 MOMENTS CHECKSUM:  3.5629542071683D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.28449E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  6.42245E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  6.42245E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 2.968182E-01 NSTEP=   194 Hash code:   26701526
 ->PRGCHK: bdy curvature ratio at t= 2.9864E-01 seconds is:  6.6760E-02
% MHDEQ: TG1=     0.296818 ; TG2=     0.298636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.190E-05
  FluxDiff MaxDT:  3.949E-03

  Avg. GS error:     9.147E-03
  Plasma Current:    5.972E+05,   target:   5.980E+05,   error:   0.134%
  Edge Q:               10.118,   target:      10.354,   error:   2.279%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1974E+00 SECONDS
   DATA R*BT AT EDGE:  5.8996E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9590E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.296818 TO TG2=    0.298636 @ NSTEP      194
   GFRAME TG2 MOMENTS CHECKSUM:  3.5635402986809D+03
 --> plasma_hash("gframe"): TA= 2.986364E-01 NSTEP=   195 Hash code:   41413912
 ->PRGCHK: bdy curvature ratio at t= 3.0045E-01 seconds is:  6.6437E-02
% MHDEQ: TG1=     0.298636 ; TG2=     0.300455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.163E-05
  FluxDiff MaxDT:  3.951E-03

  Avg. GS error:     9.018E-03
  Plasma Current:    5.999E+05,   target:   6.007E+05,   error:   0.136%
  Edge Q:               10.120,   target:      10.360,   error:   2.322%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1782E+00 SECONDS
   DATA R*BT AT EDGE:  5.9001E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9767E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.298636 TO TG2=    0.300455 @ NSTEP      195
   GFRAME TG2 MOMENTS CHECKSUM:  3.5641812078416D+03
 --> plasma_hash("gframe"): TA= 3.004545E-01 NSTEP=   196 Hash code:   16154170
 ->PRGCHK: bdy curvature ratio at t= 3.0227E-01 seconds is:  6.6132E-02
% MHDEQ: TG1=     0.300455 ; TG2=     0.302273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.125E-05
  FluxDiff MaxDT:  3.931E-03

  Avg. GS error:     8.950E-03
  Plasma Current:    6.026E+05,   target:   6.034E+05,   error:   0.138%
  Edge Q:               10.124,   target:      10.358,   error:   2.263%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1721E+00 SECONDS
   DATA R*BT AT EDGE:  5.9006E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9765E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.300455 TO TG2=    0.302273 @ NSTEP      196
   GFRAME TG2 MOMENTS CHECKSUM:  3.5649070684582D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    196
 TA= 3.00455E-01 CPU TIME= 6.85340E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.022727E-01 NSTEP=   197 Hash code:   61491072
 ->PRGCHK: bdy curvature ratio at t= 3.0409E-01 seconds is:  6.5844E-02
% MHDEQ: TG1=     0.302273 ; TG2=     0.304091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.113E-05
  FluxDiff MaxDT:  3.956E-03

  Avg. GS error:     8.933E-03
  Plasma Current:    6.053E+05,   target:   6.061E+05,   error:   0.141%
  Edge Q:               10.127,   target:      10.368,   error:   2.330%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1757E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9927E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.302273 TO TG2=    0.304091 @ NSTEP      197
   GFRAME TG2 MOMENTS CHECKSUM:  3.5655772448968D+03
 --> plasma_hash("gframe"): TA= 3.040909E-01 NSTEP=   198 Hash code:     331801
 ->PRGCHK: bdy curvature ratio at t= 3.0591E-01 seconds is:  6.5572E-02
% MHDEQ: TG1=     0.304091 ; TG2=     0.305909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.083E-05
  FluxDiff MaxDT:  4.010E-03

  Avg. GS error:     8.941E-03
  Plasma Current:    6.080E+05,   target:   6.089E+05,   error:   0.146%
  Edge Q:               10.129,   target:      10.368,   error:   2.299%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1729E+00 SECONDS
   DATA R*BT AT EDGE:  5.9005E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0052E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.304091 TO TG2=    0.305909 @ NSTEP      198
   GFRAME TG2 MOMENTS CHECKSUM:  3.5662643746761D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    198
 TA= 3.04091E-01 CPU TIME= 6.95040E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -4.58702E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -9.17402E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -3.66962E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.059091E-01 NSTEP=   199 Hash code:    3553699
 ->PRGCHK: bdy curvature ratio at t= 3.0773E-01 seconds is:  6.5316E-02
% MHDEQ: TG1=     0.305909 ; TG2=     0.307727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.055E-05
  FluxDiff MaxDT:  4.064E-03

  Avg. GS error:     8.767E-03
  Plasma Current:    6.107E+05,   target:   6.116E+05,   error:   0.152%
  Edge Q:               10.133,   target:      10.375,   error:   2.341%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1913E+00 SECONDS
   DATA R*BT AT EDGE:  5.9003E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0294E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.305909 TO TG2=    0.307727 @ NSTEP      199
   GFRAME TG2 MOMENTS CHECKSUM:  3.5669182529635D+03
 --> plasma_hash("gframe"): TA= 3.077273E-01 NSTEP=   200 Hash code:   18414531
 ->PRGCHK: bdy curvature ratio at t= 3.0955E-01 seconds is:  6.5076E-02
% MHDEQ: TG1=     0.307727 ; TG2=     0.309545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.037E-05
  FluxDiff MaxDT:  4.123E-03

  Avg. GS error:     8.642E-03
  Plasma Current:    6.133E+05,   target:   6.143E+05,   error:   0.158%
  Edge Q:               10.136,   target:      10.375,   error:   2.309%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2118E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0603E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.307727 TO TG2=    0.309545 @ NSTEP      200
   GFRAME TG2 MOMENTS CHECKSUM:  3.5675412106941D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    200
 TA= 3.07727E-01 CPU TIME= 6.93300E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.095455E-01 NSTEP=   201 Hash code:  104651417
 ->PRGCHK: bdy curvature ratio at t= 3.1136E-01 seconds is:  6.4851E-02
% MHDEQ: TG1=     0.309545 ; TG2=     0.311364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.045E-05
  FluxDiff MaxDT:  4.187E-03

  Avg. GS error:     8.607E-03
  Plasma Current:    6.160E+05,   target:   6.170E+05,   error:   0.166%
  Edge Q:               10.139,   target:      10.382,   error:   2.343%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2102E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0946E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.309545 TO TG2=    0.311364 @ NSTEP      201
   GFRAME TG2 MOMENTS CHECKSUM:  3.5681263905257D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    201
 TA= 3.09545E-01 CPU TIME= 6.93740E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.113636E-01 NSTEP=   202 Hash code:   55616831
 ->PRGCHK: bdy curvature ratio at t= 3.1318E-01 seconds is:  6.4641E-02
% MHDEQ: TG1=     0.311364 ; TG2=     0.313182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.019E-05
  FluxDiff MaxDT:  4.213E-03

  Avg. GS error:     8.606E-03
  Plasma Current:    6.187E+05,   target:   6.198E+05,   error:   0.174%
  Edge Q:               10.142,   target:      10.381,   error:   2.303%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1946E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1381E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.311364 TO TG2=    0.313182 @ NSTEP      202
   GFRAME TG2 MOMENTS CHECKSUM:  3.5687111304299D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    202
 TA= 3.11364E-01 CPU TIME= 6.92030E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.131818E-01 NSTEP=   203 Hash code:   36959282
 ->PRGCHK: bdy curvature ratio at t= 3.1500E-01 seconds is:  6.4446E-02
% MHDEQ: TG1=     0.313182 ; TG2=     0.315000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.030E-05
  FluxDiff MaxDT:  4.223E-03

  Avg. GS error:     8.627E-03
  Plasma Current:    6.214E+05,   target:   6.225E+05,   error:   0.182%
  Edge Q:               10.148,   target:      10.387,   error:   2.300%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1313E+00 SECONDS
   DATA R*BT AT EDGE:  5.9001E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1809E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.313182 TO TG2=    0.315000 @ NSTEP      203
   GFRAME TG2 MOMENTS CHECKSUM:  3.5693309414949D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    203
 TA= 3.13182E-01 CPU TIME= 6.95040E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    204
 TA= 3.15000E-01 CPU TIME= 6.95200E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.16716499999847656     
 --> plasma_hash("gframe"): TA= 3.150000E-01 NSTEP=   204 Hash code:   57319661
 ->PRGCHK: bdy curvature ratio at t= 3.1682E-01 seconds is:  6.4265E-02
% MHDEQ: TG1=     0.315000 ; TG2=     0.316818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.008E-05
  FluxDiff MaxDT:  4.157E-03

  Avg. GS error:     8.596E-03
  Plasma Current:    6.241E+05,   target:   6.252E+05,   error:   0.188%
  Edge Q:               10.158,   target:      10.393,   error:   2.257%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1095E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2279E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.315000 TO TG2=    0.316818 @ NSTEP      204
   GFRAME TG2 MOMENTS CHECKSUM:  3.5700873727682D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -9.17360E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.58687E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.37605E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.168182E-01 NSTEP=   205 Hash code:   88226992
 ->PRGCHK: bdy curvature ratio at t= 3.1864E-01 seconds is:  6.4099E-02
% MHDEQ: TG1=     0.316818 ; TG2=     0.318636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.019E-05
  FluxDiff MaxDT:  4.070E-03

  Avg. GS error:     8.523E-03
  Plasma Current:    6.267E+05,   target:   6.280E+05,   error:   0.194%
  Edge Q:               10.174,   target:      10.408,   error:   2.248%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1083E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2643E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.316818 TO TG2=    0.318636 @ NSTEP      205
   GFRAME TG2 MOMENTS CHECKSUM:  3.5710687053548D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    205
 TA= 3.16818E-01 CPU TIME= 6.94060E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.186364E-01 NSTEP=   206 Hash code:   78940190
 ->PRGCHK: bdy curvature ratio at t= 3.2045E-01 seconds is:  6.3946E-02
% MHDEQ: TG1=     0.318636 ; TG2=     0.320455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.012E-05
  FluxDiff MaxDT:  3.991E-03

  Avg. GS error:     8.374E-03
  Plasma Current:    6.294E+05,   target:   6.307E+05,   error:   0.201%
  Edge Q:               10.196,   target:      10.430,   error:   2.244%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1312E+00 SECONDS
   DATA R*BT AT EDGE:  5.9010E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2668E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.318636 TO TG2=    0.320455 @ NSTEP      206
   GFRAME TG2 MOMENTS CHECKSUM:  3.5722792200785D+03
 --> plasma_hash("gframe"): TA= 3.204545E-01 NSTEP=   207 Hash code:   80206835
 ->PRGCHK: bdy curvature ratio at t= 3.2227E-01 seconds is:  6.3806E-02
% MHDEQ: TG1=     0.320455 ; TG2=     0.322273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.018E-05
  FluxDiff MaxDT:  3.965E-03

  Avg. GS error:     8.215E-03
  Plasma Current:    6.321E+05,   target:   6.334E+05,   error:   0.209%
  Edge Q:               10.222,   target:      10.464,   error:   2.317%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1521E+00 SECONDS
   DATA R*BT AT EDGE:  5.9009E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3021E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.320455 TO TG2=    0.322273 @ NSTEP      207
   GFRAME TG2 MOMENTS CHECKSUM:  3.5733488738295D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    207
 TA= 3.20455E-01 CPU TIME= 6.93010E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.222727E-01 NSTEP=   208 Hash code:   21400812
 ->PRGCHK: bdy curvature ratio at t= 3.2409E-01 seconds is:  6.3679E-02
% MHDEQ: TG1=     0.322273 ; TG2=     0.324091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.007E-05
  FluxDiff MaxDT:  3.928E-03

  Avg. GS error:     8.070E-03
  Plasma Current:    6.348E+05,   target:   6.361E+05,   error:   0.212%
  Edge Q:               10.251,   target:      10.501,   error:   2.382%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1198E+00 SECONDS
   DATA R*BT AT EDGE:  5.9004E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3274E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.322273 TO TG2=    0.324091 @ NSTEP      208
   GFRAME TG2 MOMENTS CHECKSUM:  3.5744750758826D+03
 --> plasma_hash("gframe"): TA= 3.240909E-01 NSTEP=   209 Hash code:   96658005
 ->PRGCHK: bdy curvature ratio at t= 3.2591E-01 seconds is:  6.3057E-02
% MHDEQ: TG1=     0.324091 ; TG2=     0.325909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.014E-05
  FluxDiff MaxDT:  4.228E-03

  Avg. GS error:     7.745E-03
  Plasma Current:    6.376E+05,   target:   6.389E+05,   error:   0.197%
  Edge Q:               10.254,   target:      10.543,   error:   2.742%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3089E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5117E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.324091 TO TG2=    0.325909 @ NSTEP      209
   GFRAME TG2 MOMENTS CHECKSUM:  3.5753795573739D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    209
 TA= 3.24091E-01 CPU TIME= 6.91960E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -4.58477E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.37543E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.83391E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.259091E-01 NSTEP=   210 Hash code:   25248615
 ->PRGCHK: bdy curvature ratio at t= 3.2773E-01 seconds is:  6.2423E-02
% MHDEQ: TG1=     0.325909 ; TG2=     0.327727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.035E-05
  FluxDiff MaxDT:  4.419E-03

  Avg. GS error:     7.598E-03
  Plasma Current:    6.403E+05,   target:   6.416E+05,   error:   0.195%
  Edge Q:               10.184,   target:      10.543,   error:   3.403%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2898E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4977E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.325909 TO TG2=    0.327727 @ NSTEP      210
   GFRAME TG2 MOMENTS CHECKSUM:  3.5750119900900D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    210
 TA= 3.25909E-01 CPU TIME= 6.93560E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.277273E-01 NSTEP=   211 Hash code:    1005478
 ->PRGCHK: bdy curvature ratio at t= 3.2955E-01 seconds is:  6.1811E-02
% MHDEQ: TG1=     0.327727 ; TG2=     0.329545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.086E-05
  FluxDiff MaxDT:  4.117E-03

  Avg. GS error:     7.467E-03
  Plasma Current:    6.431E+05,   target:   6.443E+05,   error:   0.192%
  Edge Q:               10.126,   target:      10.457,   error:   3.166%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2907E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5408E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.327727 TO TG2=    0.329545 @ NSTEP      211
   GFRAME TG2 MOMENTS CHECKSUM:  3.5748335236154D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    211
 TA= 3.27727E-01 CPU TIME= 6.92110E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.295455E-01 NSTEP=   212 Hash code:   23192384
 ->PRGCHK: bdy curvature ratio at t= 3.3136E-01 seconds is:  6.1220E-02
% MHDEQ: TG1=     0.329545 ; TG2=     0.331364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.129E-05
  FluxDiff MaxDT:  3.938E-03

  Avg. GS error:     7.345E-03
  Plasma Current:    6.458E+05,   target:   6.470E+05,   error:   0.189%
  Edge Q:               10.077,   target:      10.387,   error:   2.989%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3174E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5001E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.329545 TO TG2=    0.331364 @ NSTEP      212
   GFRAME TG2 MOMENTS CHECKSUM:  3.5746768703963D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    212
 TA= 3.29545E-01 CPU TIME= 6.94150E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.313636E-01 NSTEP=   213 Hash code:   52665340
 ->PRGCHK: bdy curvature ratio at t= 3.3318E-01 seconds is:  6.0650E-02
% MHDEQ: TG1=     0.331364 ; TG2=     0.333182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.183E-05
  FluxDiff MaxDT:  3.806E-03

  Avg. GS error:     7.227E-03
  Plasma Current:    6.486E+05,   target:   6.498E+05,   error:   0.185%
  Edge Q:               10.035,   target:      10.330,   error:   2.855%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3087E+00 SECONDS
   DATA R*BT AT EDGE:  5.9001E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4978E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.331364 TO TG2=    0.333182 @ NSTEP      213
   GFRAME TG2 MOMENTS CHECKSUM:  3.5747307028102D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    213
 TA= 3.31364E-01 CPU TIME= 6.95770E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.331818E-01 NSTEP=   214 Hash code:  104339883
 ->PRGCHK: bdy curvature ratio at t= 3.3500E-01 seconds is:  6.0100E-02
% MHDEQ: TG1=     0.333182 ; TG2=     0.335000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.223E-05
  FluxDiff MaxDT:  3.686E-03

  Avg. GS error:     7.081E-03
  Plasma Current:    6.513E+05,   target:   6.525E+05,   error:   0.178%
  Edge Q:               10.000,   target:      10.282,   error:   2.737%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2943E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5160E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.333182 TO TG2=    0.335000 @ NSTEP      214
   GFRAME TG2 MOMENTS CHECKSUM:  3.5748034453171D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    215
 TA= 3.35000E-01 CPU TIME= 6.87000E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.17643055555481624     
 --> plasma_hash("gframe"): TA= 3.350000E-01 NSTEP=   215 Hash code:   94633971
 ->PRGCHK: bdy curvature ratio at t= 3.3682E-01 seconds is:  5.9569E-02
% MHDEQ: TG1=     0.335000 ; TG2=     0.336818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.294E-05
  FluxDiff MaxDT:  3.587E-03

  Avg. GS error:     6.919E-03
  Plasma Current:    6.541E+05,   target:   6.552E+05,   error:   0.170%
  Edge Q:                9.972,   target:      10.242,   error:   2.636%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2930E+00 SECONDS
   DATA R*BT AT EDGE:  5.9012E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5907E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.335000 TO TG2=    0.336818 @ NSTEP      215
   GFRAME TG2 MOMENTS CHECKSUM:  3.5748299126856D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.73645E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.35971E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.37675E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.368182E-01 NSTEP=   216 Hash code:   29099686
 ->PRGCHK: bdy curvature ratio at t= 3.3864E-01 seconds is:  5.9064E-02
% MHDEQ: TG1=     0.336818 ; TG2=     0.338636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.366E-05
  FluxDiff MaxDT:  3.502E-03

  Avg. GS error:     6.788E-03
  Plasma Current:    6.569E+05,   target:   6.580E+05,   error:   0.161%
  Edge Q:                9.947,   target:      10.209,   error:   2.566%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2933E+00 SECONDS
   DATA R*BT AT EDGE:  5.9013E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6788E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.336818 TO TG2=    0.338636 @ NSTEP      216
   GFRAME TG2 MOMENTS CHECKSUM:  3.5755872301987D+03
 --> plasma_hash("gframe"): TA= 3.386364E-01 NSTEP=   217 Hash code:  109554344
 ->PRGCHK: bdy curvature ratio at t= 3.4045E-01 seconds is:  5.8587E-02
% MHDEQ: TG1=     0.338636 ; TG2=     0.340455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.491E-05
  FluxDiff MaxDT:  3.417E-03

  Avg. GS error:     6.690E-03
  Plasma Current:    6.597E+05,   target:   6.607E+05,   error:   0.153%
  Edge Q:                9.924,   target:      10.183,   error:   2.538%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3377E+00 SECONDS
   DATA R*BT AT EDGE:  5.9009E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.7659E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.338636 TO TG2=    0.340455 @ NSTEP      217
   GFRAME TG2 MOMENTS CHECKSUM:  3.5770617069253D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    217
 TA= 3.38636E-01 CPU TIME= 6.74060E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.404545E-01 NSTEP=   218 Hash code:   32501586
 ->PRGCHK: bdy curvature ratio at t= 3.4227E-01 seconds is:  5.8143E-02
% MHDEQ: TG1=     0.340455 ; TG2=     0.342273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.659E-05
  FluxDiff MaxDT:  3.273E-03

  Avg. GS error:     6.647E-03
  Plasma Current:    6.624E+05,   target:   6.634E+05,   error:   0.149%
  Edge Q:                9.899,   target:      10.159,   error:   2.551%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3989E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8113E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.340455 TO TG2=    0.342273 @ NSTEP      218
   GFRAME TG2 MOMENTS CHECKSUM:  3.5801443946244D+03
 --> plasma_hash("gframe"): TA= 3.422727E-01 NSTEP=   219 Hash code:   94004982
 ->PRGCHK: bdy curvature ratio at t= 3.4409E-01 seconds is:  5.7714E-02
% MHDEQ: TG1=     0.342273 ; TG2=     0.344091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.796E-05
  FluxDiff MaxDT:  3.155E-03

  Avg. GS error:     6.591E-03
  Plasma Current:    6.652E+05,   target:   6.661E+05,   error:   0.145%
  Edge Q:                9.876,   target:      10.134,   error:   2.537%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3957E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8467E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.342273 TO TG2=    0.344091 @ NSTEP      219
   GFRAME TG2 MOMENTS CHECKSUM:  3.5839866404078D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    219
 TA= 3.42273E-01 CPU TIME= 6.73610E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.440909E-01 NSTEP=   220 Hash code:   63960856
 ->PRGCHK: bdy curvature ratio at t= 3.4591E-01 seconds is:  5.7289E-02
% MHDEQ: TG1=     0.344091 ; TG2=     0.345909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.891E-05
  FluxDiff MaxDT:  3.078E-03

  Avg. GS error:     6.484E-03
  Plasma Current:    6.679E+05,   target:   6.689E+05,   error:   0.140%
  Edge Q:                9.858,   target:      10.111,   error:   2.507%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3882E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8979E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.344091 TO TG2=    0.345909 @ NSTEP      220
   GFRAME TG2 MOMENTS CHECKSUM:  3.5878422651891D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.27809E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -4.55632E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  6.83441E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.459091E-01 NSTEP=   221 Hash code:    1669935
 ->PRGCHK: bdy curvature ratio at t= 3.4773E-01 seconds is:  5.7076E-02
% MHDEQ: TG1=     0.345909 ; TG2=     0.347727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.970E-05
  FluxDiff MaxDT:  2.989E-03

  Avg. GS error:     6.320E-03
  Plasma Current:    6.707E+05,   target:   6.716E+05,   error:   0.132%
  Edge Q:                9.846,   target:      10.094,   error:   2.453%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3896E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9519E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.345909 TO TG2=    0.347727 @ NSTEP      221
   GFRAME TG2 MOMENTS CHECKSUM:  3.5918584224597D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    221
 TA= 3.45909E-01 CPU TIME= 6.74760E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.477273E-01 NSTEP=   222 Hash code:   87394882
 ->PRGCHK: bdy curvature ratio at t= 3.4955E-01 seconds is:  5.7172E-02
% MHDEQ: TG1=     0.347727 ; TG2=     0.349545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.041E-05
  FluxDiff MaxDT:  2.923E-03

  Avg. GS error:     6.233E-03
  Plasma Current:    6.735E+05,   target:   6.743E+05,   error:   0.123%
  Edge Q:                9.845,   target:      10.084,   error:   2.373%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3936E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0189E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.347727 TO TG2=    0.349545 @ NSTEP      222
   GFRAME TG2 MOMENTS CHECKSUM:  3.5960600610990D+03
 --> plasma_hash("gframe"): TA= 3.495455E-01 NSTEP=   223 Hash code:   21869122
 ->PRGCHK: bdy curvature ratio at t= 3.5136E-01 seconds is:  5.8052E-02
% MHDEQ: TG1=     0.349545 ; TG2=     0.351364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.024E-05
  FluxDiff MaxDT:  2.866E-03

  Avg. GS error:     6.209E-03
  Plasma Current:    6.763E+05,   target:   6.770E+05,   error:   0.117%
  Edge Q:                9.857,   target:      10.086,   error:   2.278%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4350E+00 SECONDS
   DATA R*BT AT EDGE:  5.8998E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0993E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.349545 TO TG2=    0.351364 @ NSTEP      223
   GFRAME TG2 MOMENTS CHECKSUM:  3.6005378349086D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    223
 TA= 3.49545E-01 CPU TIME= 6.72850E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.513636E-01 NSTEP=   224 Hash code:   19732812
 ->PRGCHK: bdy curvature ratio at t= 3.5318E-01 seconds is:  5.9222E-02
% MHDEQ: TG1=     0.351364 ; TG2=     0.353182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.079E-05
  FluxDiff MaxDT:  2.911E-03

  Avg. GS error:     6.558E-03
  Plasma Current:    6.788E+05,   target:   6.798E+05,   error:   0.147%
  Edge Q:                9.814,   target:      10.106,   error:   2.885%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4737E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8179E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.351364 TO TG2=    0.353182 @ NSTEP      224
   GFRAME TG2 MOMENTS CHECKSUM:  3.6057764034353D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    224
 TA= 3.51364E-01 CPU TIME= 6.75550E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.531818E-01 NSTEP=   225 Hash code:   79070195
 ->PRGCHK: bdy curvature ratio at t= 3.5500E-01 seconds is:  6.0425E-02
% MHDEQ: TG1=     0.353182 ; TG2=     0.355000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.145E-05
  FluxDiff MaxDT:  2.952E-03

  Avg. GS error:     6.562E-03
  Plasma Current:    6.816E+05,   target:   6.825E+05,   error:   0.136%
  Edge Q:                9.826,   target:      10.082,   error:   2.539%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4518E+00 SECONDS
   DATA R*BT AT EDGE:  5.9003E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8762E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.353182 TO TG2=    0.355000 @ NSTEP      225
   GFRAME TG2 MOMENTS CHECKSUM:  3.6103227151246D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    225
 TA= 3.53182E-01 CPU TIME= 6.71300E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    226
 TA= 3.55000E-01 CPU TIME= 6.82840E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.18659194444353489     
 --> plasma_hash("gframe"): TA= 3.550000E-01 NSTEP=   226 Hash code:  117987592
 ->PRGCHK: bdy curvature ratio at t= 3.5682E-01 seconds is:  6.1182E-02
% MHDEQ: TG1=     0.355000 ; TG2=     0.356818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.182E-05
  FluxDiff MaxDT:  2.971E-03

  Avg. GS error:     6.251E-03
  Plasma Current:    6.846E+05,   target:   6.852E+05,   error:   0.089%
  Edge Q:                9.891,   target:      10.100,   error:   2.069%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3975E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6932E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.355000 TO TG2=    0.356818 @ NSTEP      226
   GFRAME TG2 MOMENTS CHECKSUM:  3.6165885721635D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.09488E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.36861E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -9.58022E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.568182E-01 NSTEP=   227 Hash code:   84963707
 ->PRGCHK: bdy curvature ratio at t= 3.5864E-01 seconds is:  6.1361E-02
% MHDEQ: TG1=     0.356818 ; TG2=     0.358636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.195E-05
  FluxDiff MaxDT:  2.983E-03

  Avg. GS error:     6.427E-03
  Plasma Current:    6.874E+05,   target:   6.880E+05,   error:   0.086%
  Edge Q:                9.885,   target:      10.173,   error:   2.834%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3964E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.7255E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.356818 TO TG2=    0.358636 @ NSTEP      227
   GFRAME TG2 MOMENTS CHECKSUM:  3.6213663762453D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    227
 TA= 3.56818E-01 CPU TIME= 6.80540E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.586364E-01 NSTEP=   228 Hash code:   31341063
 ->PRGCHK: bdy curvature ratio at t= 3.6045E-01 seconds is:  5.9874E-02
% MHDEQ: TG1=     0.358636 ; TG2=     0.360455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.235E-05
  FluxDiff MaxDT:  3.058E-03

  Avg. GS error:     6.720E-03
  Plasma Current:    6.901E+05,   target:   6.907E+05,   error:   0.088%
  Edge Q:                9.845,   target:      10.171,   error:   3.202%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4444E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6876E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.358636 TO TG2=    0.360455 @ NSTEP      228
   GFRAME TG2 MOMENTS CHECKSUM:  3.6266433740790D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    228
 TA= 3.58636E-01 CPU TIME= 6.82520E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.604545E-01 NSTEP=   229 Hash code:   64778713
 ->PRGCHK: bdy curvature ratio at t= 3.6227E-01 seconds is:  5.8067E-02
% MHDEQ: TG1=     0.360455 ; TG2=     0.362273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.393E-05
  FluxDiff MaxDT:  3.044E-03

  Avg. GS error:     6.858E-03
  Plasma Current:    6.928E+05,   target:   6.934E+05,   error:   0.090%
  Edge Q:                9.796,   target:      10.127,   error:   3.267%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4977E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.6397E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.360455 TO TG2=    0.362273 @ NSTEP      229
   GFRAME TG2 MOMENTS CHECKSUM:  3.6299721900920D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    229
 TA= 3.60455E-01 CPU TIME= 6.81610E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.622727E-01 NSTEP=   230 Hash code:   88320857
 ->PRGCHK: bdy curvature ratio at t= 3.6409E-01 seconds is:  5.6359E-02
% MHDEQ: TG1=     0.362273 ; TG2=     0.364091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.536E-05
  FluxDiff MaxDT:  3.017E-03

  Avg. GS error:     6.879E-03
  Plasma Current:    6.955E+05,   target:   6.961E+05,   error:   0.086%
  Edge Q:                9.748,   target:      10.068,   error:   3.183%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5105E+00 SECONDS
   DATA R*BT AT EDGE:  5.8988E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.5974E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.362273 TO TG2=    0.364091 @ NSTEP      230
   GFRAME TG2 MOMENTS CHECKSUM:  3.6352709230198D+03
 --> plasma_hash("gframe"): TA= 3.640909E-01 NSTEP=   231 Hash code:   20268655
 ->PRGCHK: bdy curvature ratio at t= 3.6591E-01 seconds is:  5.4377E-02
% MHDEQ: TG1=     0.364091 ; TG2=     0.365909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.853E-05
  FluxDiff MaxDT:  2.861E-03

  Avg. GS error:     7.076E-03
  Plasma Current:    6.983E+05,   target:   6.989E+05,   error:   0.075%
  Edge Q:                9.728,   target:      10.022,   error:   2.938%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4940E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3979E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.364091 TO TG2=    0.365909 @ NSTEP      231
   GFRAME TG2 MOMENTS CHECKSUM:  3.6404447550530D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    231
 TA= 3.64091E-01 CPU TIME= 6.80430E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  8.68560E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.57137E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  4.11423E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.659091E-01 NSTEP=   232 Hash code:   88268166
 ->PRGCHK: bdy curvature ratio at t= 3.6773E-01 seconds is:  5.2732E-02
% MHDEQ: TG1=     0.365909 ; TG2=     0.367727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.090E-05
  FluxDiff MaxDT:  2.725E-03

  Avg. GS error:     6.918E-03
  Plasma Current:    7.012E+05,   target:   7.016E+05,   error:   0.055%
  Edge Q:                9.742,   target:      10.011,   error:   2.689%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4479E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1563E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.365909 TO TG2=    0.367727 @ NSTEP      232
   GFRAME TG2 MOMENTS CHECKSUM:  3.6454534089879D+03
 --> plasma_hash("gframe"): TA= 3.677273E-01 NSTEP=   233 Hash code:   15435492
 ->PRGCHK: bdy curvature ratio at t= 3.6955E-01 seconds is:  5.2050E-02
% MHDEQ: TG1=     0.367727 ; TG2=     0.369545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.672E-05
  FluxDiff MaxDT:  2.502E-03

  Avg. GS error:     6.824E-03
  Plasma Current:    7.041E+05,   target:   7.043E+05,   error:   0.029%
  Edge Q:                9.863,   target:      10.037,   error:   1.732%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3945E+00 SECONDS
   DATA R*BT AT EDGE:  5.9001E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8525E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.367727 TO TG2=    0.369545 @ NSTEP      233
   GFRAME TG2 MOMENTS CHECKSUM:  3.6500285957030D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    233
 TA= 3.67727E-01 CPU TIME= 6.76560E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.695455E-01 NSTEP=   234 Hash code:   35253549
 ->PRGCHK: bdy curvature ratio at t= 3.7136E-01 seconds is:  5.1640E-02
% MHDEQ: TG1=     0.369545 ; TG2=     0.371364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.735E-05
  FluxDiff MaxDT:  2.671E-03

  Avg. GS error:     6.950E-03
  Plasma Current:    7.066E+05,   target:   7.070E+05,   error:   0.066%
  Edge Q:                9.878,   target:      10.198,   error:   3.142%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5465E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0406E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.369545 TO TG2=    0.371364 @ NSTEP      234
   GFRAME TG2 MOMENTS CHECKSUM:  3.6516194260990D+03
 --> plasma_hash("gframe"): TA= 3.713636E-01 NSTEP=   235 Hash code:   10899546
 ->PRGCHK: bdy curvature ratio at t= 3.7318E-01 seconds is:  5.1348E-02
% MHDEQ: TG1=     0.371364 ; TG2=     0.373182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.689E-05
  FluxDiff MaxDT:  3.678E-03

  Avg. GS error:     6.932E-03
  Plasma Current:    7.093E+05,   target:   7.098E+05,   error:   0.070%
  Edge Q:                9.752,   target:      10.241,   error:   4.776%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5169E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4630E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.371364 TO TG2=    0.373182 @ NSTEP      235
   GFRAME TG2 MOMENTS CHECKSUM:  3.6512176783977D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    235
 TA= 3.71364E-01 CPU TIME= 6.82580E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 3.731818E-01 NSTEP=   236 Hash code:   54297786
 ->PRGCHK: bdy curvature ratio at t= 3.7500E-01 seconds is:  5.1621E-02
% MHDEQ: TG1=     0.373182 ; TG2=     0.375000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.178E-05
  FluxDiff MaxDT:  3.352E-03

  Avg. GS error:     6.903E-03
  Plasma Current:    7.121E+05,   target:   7.125E+05,   error:   0.061%
  Edge Q:                9.676,   target:      10.073,   error:   3.936%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4829E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9236E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.373182 TO TG2=    0.375000 @ NSTEP      236
   GFRAME TG2 MOMENTS CHECKSUM:  3.6519186666085D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    237
 TA= 3.75000E-01 CPU TIME= 6.78440E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.19667749999916850     
 --> plasma_hash("gframe"): TA= 3.750000E-01 NSTEP=   237 Hash code:   50972466
 ->PRGCHK: bdy curvature ratio at t= 3.7682E-01 seconds is:  5.2304E-02
% MHDEQ: TG1=     0.375000 ; TG2=     0.376818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.690E-05
  FluxDiff MaxDT:  3.216E-03

  Avg. GS error:     6.738E-03
  Plasma Current:    7.149E+05,   target:   7.152E+05,   error:   0.047%
  Edge Q:                9.620,   target:       9.984,   error:   3.645%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4553E+00 SECONDS
   DATA R*BT AT EDGE:  5.8988E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5263E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.375000 TO TG2=    0.376818 @ NSTEP      237
   GFRAME TG2 MOMENTS CHECKSUM:  3.6517559898643D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.96184E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.58603E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.37581E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.768182E-01 NSTEP=   238 Hash code:   39992733
 ->PRGCHK: bdy curvature ratio at t= 3.7864E-01 seconds is:  5.4530E-02
% MHDEQ: TG1=     0.376818 ; TG2=     0.378636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.030E-05
  FluxDiff MaxDT:  3.010E-03

  Avg. GS error:     6.635E-03
  Plasma Current:    7.177E+05,   target:   7.180E+05,   error:   0.031%
  Edge Q:                9.618,   target:       9.916,   error:   3.008%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3713E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1822E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.376818 TO TG2=    0.378636 @ NSTEP      238
   GFRAME TG2 MOMENTS CHECKSUM:  3.6511820456736D+03
 --> plasma_hash("gframe"): TA= 3.786364E-01 NSTEP=   239 Hash code:    6890701
 ->PRGCHK: bdy curvature ratio at t= 3.8045E-01 seconds is:  5.7099E-02
% MHDEQ: TG1=     0.378636 ; TG2=     0.380455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.729E-05
  FluxDiff MaxDT:  3.041E-03

  Avg. GS error:     6.610E-03
  Plasma Current:    7.206E+05,   target:   7.207E+05,   error:   0.016%
  Edge Q:                9.631,   target:       9.920,   error:   2.919%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3669E+00 SECONDS
   DATA R*BT AT EDGE:  5.8983E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.9242E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.378636 TO TG2=    0.380455 @ NSTEP      239
   GFRAME TG2 MOMENTS CHECKSUM:  3.6511261908160D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    239
 TA= 3.78636E-01 CPU TIME= 6.67070E-02 SECONDS.  DT= 1.36364E-03
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=  0.38000000000000000     
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
 namelist update changed RESIS_FACTOR from  1.40000000E+00 to  1.20000000E+00
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 --> plasma_hash("gframe"): TA= 3.804545E-01 NSTEP=   241 Hash code:  119959477
 ->PRGCHK: bdy curvature ratio at t= 3.8227E-01 seconds is:  5.9866E-02
% MHDEQ: TG1=     0.380455 ; TG2=     0.382273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.825E-05
  FluxDiff MaxDT:  3.271E-03

  Avg. GS error:     6.727E-03
  Plasma Current:    7.234E+05,   target:   7.234E+05,   error:   0.004%
  Edge Q:                9.666,   target:       9.934,   error:   2.696%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3308E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.7199E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.380455 TO TG2=    0.382273 @ NSTEP      241
   GFRAME TG2 MOMENTS CHECKSUM:  3.6518206884002D+03
 --> plasma_hash("gframe"): TA= 3.822727E-01 NSTEP=   243 Hash code:   41421961
 ->PRGCHK: bdy curvature ratio at t= 3.8409E-01 seconds is:  6.2265E-02
% MHDEQ: TG1=     0.382273 ; TG2=     0.384091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.608E-05
  FluxDiff MaxDT:  3.289E-03

  Avg. GS error:     6.773E-03
  Plasma Current:    7.262E+05,   target:   7.261E+05,   error:   0.003%
  Edge Q:                9.669,   target:       9.976,   error:   3.072%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3502E+00 SECONDS
   DATA R*BT AT EDGE:  5.8993E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.7244E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.382273 TO TG2=    0.384091 @ NSTEP      243
   GFRAME TG2 MOMENTS CHECKSUM:  3.6530086755224D+03
 --> plasma_hash("gframe"): TA= 3.840909E-01 NSTEP=   244 Hash code:   46279001
 ->PRGCHK: bdy curvature ratio at t= 3.8591E-01 seconds is:  6.4476E-02
% MHDEQ: TG1=     0.384091 ; TG2=     0.385909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.713E-05
  FluxDiff MaxDT:  3.175E-03

  Avg. GS error:     6.873E-03
  Plasma Current:    7.289E+05,   target:   7.289E+05,   error:   0.008%
  Edge Q:                9.689,   target:       9.979,   error:   2.905%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3518E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.7264E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.384091 TO TG2=    0.385909 @ NSTEP      244
   GFRAME TG2 MOMENTS CHECKSUM:  3.6556425093598D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -6.38792E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -5.01907E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.36884E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.859091E-01 NSTEP=   245 Hash code:  109556767
 ->PRGCHK: bdy curvature ratio at t= 3.8773E-01 seconds is:  6.5085E-02
% MHDEQ: TG1=     0.385909 ; TG2=     0.387727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.045E-05
  FluxDiff MaxDT:  2.752E-03

  Avg. GS error:     6.988E-03
  Plasma Current:    7.317E+05,   target:   7.316E+05,   error:   0.014%
  Edge Q:                9.801,   target:      10.007,   error:   2.058%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4894E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.5790E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.385909 TO TG2=    0.387727 @ NSTEP      245
   GFRAME TG2 MOMENTS CHECKSUM:  3.6644886502238D+03
 --> plasma_hash("gframe"): TA= 3.877273E-01 NSTEP=   246 Hash code:   32799361
 ->PRGCHK: bdy curvature ratio at t= 3.8955E-01 seconds is:  6.5881E-02
% MHDEQ: TG1=     0.387727 ; TG2=     0.389545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.571E-05
  FluxDiff MaxDT:  2.881E-03

  Avg. GS error:     6.629E-03
  Plasma Current:    7.344E+05,   target:   7.343E+05,   error:   0.013%
  Edge Q:                9.938,   target:      10.150,   error:   2.085%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4358E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.4402E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.387727 TO TG2=    0.389545 @ NSTEP      246
   GFRAME TG2 MOMENTS CHECKSUM:  3.6737537321039D+03
 --> plasma_hash("gframe"): TA= 3.895455E-01 NSTEP=   247 Hash code:   31803258
 ->PRGCHK: bdy curvature ratio at t= 3.9136E-01 seconds is:  6.6958E-02
% MHDEQ: TG1=     0.389545 ; TG2=     0.391364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.445E-05
  FluxDiff MaxDT:  3.748E-03

  Avg. GS error:     6.813E-03
  Plasma Current:    7.366E+05,   target:   7.370E+05,   error:   0.058%
  Edge Q:                9.747,   target:      10.339,   error:   5.727%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5026E+00 SECONDS
   DATA R*BT AT EDGE:  5.8996E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.5479E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.389545 TO TG2=    0.391364 @ NSTEP      247
   GFRAME TG2 MOMENTS CHECKSUM:  3.6778309510578D+03
 --> plasma_hash("gframe"): TA= 3.913636E-01 NSTEP=   248 Hash code:   88551166
 ->PRGCHK: bdy curvature ratio at t= 3.9318E-01 seconds is:  6.6961E-02
% MHDEQ: TG1=     0.391364 ; TG2=     0.393182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.733E-05
  FluxDiff MaxDT:  4.329E-03

  Avg. GS error:     7.059E-03
  Plasma Current:    7.393E+05,   target:   7.398E+05,   error:   0.071%
  Edge Q:                9.594,   target:      10.118,   error:   5.181%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4700E+00 SECONDS
   DATA R*BT AT EDGE:  5.8991E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.6686E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.391364 TO TG2=    0.393182 @ NSTEP      248
   GFRAME TG2 MOMENTS CHECKSUM:  3.6807749123725D+03
 --> plasma_hash("gframe"): TA= 3.931818E-01 NSTEP=   249 Hash code:   87146326
 ->PRGCHK: bdy curvature ratio at t= 3.9500E-01 seconds is:  6.6498E-02
% MHDEQ: TG1=     0.393182 ; TG2=     0.395000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.754E-05
  FluxDiff MaxDT:  3.893E-03

  Avg. GS error:     7.217E-03
  Plasma Current:    7.419E+05,   target:   7.425E+05,   error:   0.076%
  Edge Q:                9.488,   target:       9.933,   error:   4.479%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4690E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8805E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.393182 TO TG2=    0.395000 @ NSTEP      249
   GFRAME TG2 MOMENTS CHECKSUM:  3.6839813350686D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    250
 TA= 3.95000E-01 CPU TIME= 6.67940E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.20657527777802898     
 --> plasma_hash("gframe"): TA= 3.950000E-01 NSTEP=   250 Hash code:  109540314
 ->PRGCHK: bdy curvature ratio at t= 3.9682E-01 seconds is:  6.5753E-02
% MHDEQ: TG1=     0.395000 ; TG2=     0.396818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.865E-05
  FluxDiff MaxDT:  3.251E-03

  Avg. GS error:     7.277E-03
  Plasma Current:    7.446E+05,   target:   7.452E+05,   error:   0.084%
  Edge Q:                9.490,   target:       9.807,   error:   3.240%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4785E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0402E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.395000 TO TG2=    0.396818 @ NSTEP      250
   GFRAME TG2 MOMENTS CHECKSUM:  3.6867775295090D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  4.57888E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  4.12101E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -3.66312E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 3.968182E-01 NSTEP=   251 Hash code:  109520481
 ->PRGCHK: bdy curvature ratio at t= 3.9864E-01 seconds is:  6.4934E-02
% MHDEQ: TG1=     0.396818 ; TG2=     0.398636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.557E-05
  FluxDiff MaxDT:  3.373E-03

  Avg. GS error:     7.523E-03
  Plasma Current:    7.470E+05,   target:   7.480E+05,   error:   0.128%
  Edge Q:                9.440,   target:       9.822,   error:   3.892%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5162E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3905E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.396818 TO TG2=    0.398636 @ NSTEP      251
   GFRAME TG2 MOMENTS CHECKSUM:  3.6880649570709D+03
 --> plasma_hash("gframe"): TA= 3.986364E-01 NSTEP=   252 Hash code:  100665930
 ->PRGCHK: bdy curvature ratio at t= 4.0045E-01 seconds is:  6.3510E-02
% MHDEQ: TG1=     0.398636 ; TG2=     0.400455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.665E-05
  FluxDiff MaxDT:  3.402E-03

  Avg. GS error:     7.679E-03
  Plasma Current:    7.496E+05,   target:   7.507E+05,   error:   0.147%
  Edge Q:                9.422,   target:       9.771,   error:   3.577%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4724E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6093E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.398636 TO TG2=    0.400455 @ NSTEP      252
   GFRAME TG2 MOMENTS CHECKSUM:  3.6902930162002D+03
 --> plasma_hash("gframe"): TA= 4.004545E-01 NSTEP=   253 Hash code:   85322203
 ->PRGCHK: bdy curvature ratio at t= 4.0227E-01 seconds is:  6.1848E-02
% MHDEQ: TG1=     0.400455 ; TG2=     0.402273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.931E-05
  FluxDiff MaxDT:  3.567E-03

  Avg. GS error:     7.509E-03
  Plasma Current:    7.525E+05,   target:   7.534E+05,   error:   0.118%
  Edge Q:                9.454,   target:       9.755,   error:   3.083%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3973E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.7476E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.400455 TO TG2=    0.402273 @ NSTEP      253
   GFRAME TG2 MOMENTS CHECKSUM:  3.6934045048176D+03
 --> plasma_hash("gframe"): TA= 4.022727E-01 NSTEP=   254 Hash code:   98832965
 ->PRGCHK: bdy curvature ratio at t= 4.0409E-01 seconds is:  6.0084E-02
% MHDEQ: TG1=     0.402273 ; TG2=     0.404091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.254E-05
  FluxDiff MaxDT:  3.691E-03

  Avg. GS error:     7.553E-03
  Plasma Current:    7.552E+05,   target:   7.561E+05,   error:   0.118%
  Edge Q:                9.425,   target:       9.780,   error:   3.636%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3765E+00 SECONDS
   DATA R*BT AT EDGE:  5.9006E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9996E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.402273 TO TG2=    0.404091 @ NSTEP      254
   GFRAME TG2 MOMENTS CHECKSUM:  3.6944599526590D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    254
 TA= 4.02273E-01 CPU TIME= 6.68190E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.040909E-01 NSTEP=   255 Hash code:  111290710
 ->PRGCHK: bdy curvature ratio at t= 4.0591E-01 seconds is:  5.7600E-02
% MHDEQ: TG1=     0.404091 ; TG2=     0.405909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.386E-05
  FluxDiff MaxDT:  4.321E-03

  Avg. GS error:     7.524E-03
  Plasma Current:    7.580E+05,   target:   7.589E+05,   error:   0.115%
  Edge Q:                9.369,   target:       9.744,   error:   3.858%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2974E+00 SECONDS
   DATA R*BT AT EDGE:  5.9007E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8578E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.404091 TO TG2=    0.405909 @ NSTEP      255
   GFRAME TG2 MOMENTS CHECKSUM:  3.6931608820342D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.29806E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.37884E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  9.19224E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.059091E-01 NSTEP=   256 Hash code:   13970342
 ->PRGCHK: bdy curvature ratio at t= 4.0773E-01 seconds is:  5.5296E-02
% MHDEQ: TG1=     0.405909 ; TG2=     0.407727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.783E-05
  FluxDiff MaxDT:  4.308E-03

  Avg. GS error:     7.452E-03
  Plasma Current:    7.608E+05,   target:   7.616E+05,   error:   0.105%
  Edge Q:                9.328,   target:       9.671,   error:   3.544%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2723E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5397E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.405909 TO TG2=    0.407727 @ NSTEP      256
   GFRAME TG2 MOMENTS CHECKSUM:  3.6923441539305D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    256
 TA= 4.05909E-01 CPU TIME= 6.67920E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.077273E-01 NSTEP=   257 Hash code:   89939924
 ->PRGCHK: bdy curvature ratio at t= 4.0955E-01 seconds is:  5.3157E-02
% MHDEQ: TG1=     0.407727 ; TG2=     0.409545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.679E-05
  FluxDiff MaxDT:  4.264E-03

  Avg. GS error:     7.342E-03
  Plasma Current:    7.636E+05,   target:   7.643E+05,   error:   0.088%
  Edge Q:                9.301,   target:       9.615,   error:   3.273%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2253E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4598E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.407727 TO TG2=    0.409545 @ NSTEP      257
   GFRAME TG2 MOMENTS CHECKSUM:  3.6918569581350D+03
 --> plasma_hash("gframe"): TA= 4.095455E-01 NSTEP=   258 Hash code:    5676061
 ->PRGCHK: bdy curvature ratio at t= 4.1136E-01 seconds is:  5.1924E-02
% MHDEQ: TG1=     0.409545 ; TG2=     0.411364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.262E-05
  FluxDiff MaxDT:  3.904E-03

  Avg. GS error:     7.494E-03
  Plasma Current:    7.663E+05,   target:   7.670E+05,   error:   0.093%
  Edge Q:                9.282,   target:       9.573,   error:   3.048%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1607E+00 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.7298E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.409545 TO TG2=    0.411364 @ NSTEP      258
   GFRAME TG2 MOMENTS CHECKSUM:  3.6900073105433D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    258
 TA= 4.09545E-01 CPU TIME= 6.67530E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.113636E-01 NSTEP=   259 Hash code:  105893074
 ->PRGCHK: bdy curvature ratio at t= 4.1318E-01 seconds is:  5.1192E-02
% MHDEQ: TG1=     0.411364 ; TG2=     0.413182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.952E-05
  FluxDiff MaxDT:  3.808E-03

  Avg. GS error:     7.420E-03
  Plasma Current:    7.693E+05,   target:   7.698E+05,   error:   0.064%
  Edge Q:                9.343,   target:       9.550,   error:   2.171%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1633E+00 SECONDS
   DATA R*BT AT EDGE:  5.8981E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8980E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.411364 TO TG2=    0.413182 @ NSTEP      259
   GFRAME TG2 MOMENTS CHECKSUM:  3.6889041418823D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    259
 TA= 4.11364E-01 CPU TIME= 6.67980E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.131818E-01 NSTEP=   260 Hash code:   32423994
 ->PRGCHK: bdy curvature ratio at t= 4.1500E-01 seconds is:  5.2270E-02
% MHDEQ: TG1=     0.413182 ; TG2=     0.415000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.467E-05
  FluxDiff MaxDT:  3.299E-03

  Avg. GS error:     7.187E-03
  Plasma Current:    7.720E+05,   target:   7.725E+05,   error:   0.062%
  Edge Q:                9.444,   target:       9.608,   error:   1.710%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1355E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9972E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.413182 TO TG2=    0.415000 @ NSTEP      260
   GFRAME TG2 MOMENTS CHECKSUM:  3.6844881563448D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    260
 TA= 4.13182E-01 CPU TIME= 6.67120E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    261
 TA= 4.15000E-01 CPU TIME= 6.78490E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.21633194444348192     
 --> plasma_hash("gframe"): TA= 4.150000E-01 NSTEP=   261 Hash code:  102628574
 ->PRGCHK: bdy curvature ratio at t= 4.1682E-01 seconds is:  5.3381E-02
% MHDEQ: TG1=     0.415000 ; TG2=     0.416818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.121E-05
  FluxDiff MaxDT:  3.524E-03

  Avg. GS error:     6.590E-03
  Plasma Current:    7.748E+05,   target:   7.752E+05,   error:   0.049%
  Edge Q:                9.571,   target:       9.723,   error:   1.566%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1311E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6856E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.415000 TO TG2=    0.416818 @ NSTEP      261
   GFRAME TG2 MOMENTS CHECKSUM:  3.6803453261690D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  4.81943E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  9.17991E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  3.90144E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.168182E-01 NSTEP=   262 Hash code:   40122531
 ->PRGCHK: bdy curvature ratio at t= 4.1864E-01 seconds is:  5.4526E-02
% MHDEQ: TG1=     0.416818 ; TG2=     0.418636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.998E-05
  FluxDiff MaxDT:  3.749E-03

  Avg. GS error:     6.500E-03
  Plasma Current:    7.779E+05,   target:   7.780E+05,   error:   0.005%
  Edge Q:                9.770,   target:       9.859,   error:   0.907%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1252E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3066E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.416818 TO TG2=    0.418636 @ NSTEP      262
   GFRAME TG2 MOMENTS CHECKSUM:  3.6781100089318D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    262
 TA= 4.16818E-01 CPU TIME= 6.67020E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.186364E-01 NSTEP=   263 Hash code:   87933401
 ->PRGCHK: bdy curvature ratio at t= 4.2045E-01 seconds is:  5.5163E-02
% MHDEQ: TG1=     0.418636 ; TG2=     0.420455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.848E-05
  FluxDiff MaxDT:  4.252E-03

  Avg. GS error:     6.408E-03
  Plasma Current:    7.806E+05,   target:   7.807E+05,   error:   0.006%
  Edge Q:                9.824,   target:      10.080,   error:   2.535%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1081E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2324E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.418636 TO TG2=    0.420455 @ NSTEP      263
   GFRAME TG2 MOMENTS CHECKSUM:  3.6741671768732D+03
 --> plasma_hash("gframe"): TA= 4.204545E-01 NSTEP=   264 Hash code:   76042674
 ->PRGCHK: bdy curvature ratio at t= 4.2227E-01 seconds is:  5.5468E-02
% MHDEQ: TG1=     0.420455 ; TG2=     0.422273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.819E-05
  FluxDiff MaxDT:  4.536E-03

  Avg. GS error:     6.446E-03
  Plasma Current:    7.834E+05,   target:   7.834E+05,   error:   0.007%
  Edge Q:                9.846,   target:      10.126,   error:   2.764%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1218E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2712E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.420455 TO TG2=    0.422273 @ NSTEP      264
   GFRAME TG2 MOMENTS CHECKSUM:  3.6708287200846D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    264
 TA= 4.20455E-01 CPU TIME= 6.70790E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.222727E-01 NSTEP=   265 Hash code:   45237635
 ->PRGCHK: bdy curvature ratio at t= 4.2409E-01 seconds is:  5.4628E-02
% MHDEQ: TG1=     0.422273 ; TG2=     0.424091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.842E-05
  FluxDiff MaxDT:  5.825E-03

  Avg. GS error:     6.290E-03
  Plasma Current:    7.861E+05,   target:   7.861E+05,   error:   0.008%
  Edge Q:                9.769,   target:      10.145,   error:   3.705%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1535E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5532E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.422273 TO TG2=    0.424091 @ NSTEP      265
   GFRAME TG2 MOMENTS CHECKSUM:  3.6686606749827D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    265
 TA= 4.22273E-01 CPU TIME= 6.72150E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.240909E-01 NSTEP=   266 Hash code:  101424064
 ->PRGCHK: bdy curvature ratio at t= 4.2591E-01 seconds is:  5.3563E-02
% MHDEQ: TG1=     0.424091 ; TG2=     0.425909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.859E-05
  FluxDiff MaxDT:  5.482E-03

  Avg. GS error:     6.121E-03
  Plasma Current:    7.888E+05,   target:   7.889E+05,   error:   0.006%
  Edge Q:                9.703,   target:      10.036,   error:   3.314%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1467E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5413E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.424091 TO TG2=    0.425909 @ NSTEP      266
   GFRAME TG2 MOMENTS CHECKSUM:  3.6669197548468D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    266
 TA= 4.24091E-01 CPU TIME= 6.73260E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -4.60256E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.61090E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.15065E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.259091E-01 NSTEP=   267 Hash code:    9159331
 ->PRGCHK: bdy curvature ratio at t= 4.2773E-01 seconds is:  5.2464E-02
% MHDEQ: TG1=     0.425909 ; TG2=     0.427727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.747E-05
  FluxDiff MaxDT:  5.310E-03

  Avg. GS error:     5.937E-03
  Plasma Current:    7.916E+05,   target:   7.916E+05,   error:   0.002%
  Edge Q:                9.648,   target:       9.957,   error:   3.109%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1442E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3571E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.425909 TO TG2=    0.427727 @ NSTEP      267
   GFRAME TG2 MOMENTS CHECKSUM:  3.6653342543280D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    267
 TA= 4.25909E-01 CPU TIME= 6.73210E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.277273E-01 NSTEP=   268 Hash code:   68364071
 ->PRGCHK: bdy curvature ratio at t= 4.2955E-01 seconds is:  5.1725E-02
% MHDEQ: TG1=     0.427727 ; TG2=     0.429545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.689E-05
  FluxDiff MaxDT:  4.887E-03

  Avg. GS error:     5.891E-03
  Plasma Current:    7.943E+05,   target:   7.943E+05,   error:   0.000%
  Edge Q:                9.616,   target:       9.884,   error:   2.719%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1427E+00 SECONDS
   DATA R*BT AT EDGE:  5.8981E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1998E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.427727 TO TG2=    0.429545 @ NSTEP      268
   GFRAME TG2 MOMENTS CHECKSUM:  3.6638838672068D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    268
 TA= 4.27727E-01 CPU TIME= 6.68350E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.295455E-01 NSTEP=   269 Hash code:   34563601
 ->PRGCHK: bdy curvature ratio at t= 4.3136E-01 seconds is:  5.1210E-02
% MHDEQ: TG1=     0.429545 ; TG2=     0.431364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.622E-05
  FluxDiff MaxDT:  4.689E-03

  Avg. GS error:     5.872E-03
  Plasma Current:    7.970E+05,   target:   7.970E+05,   error:   0.000%
  Edge Q:                9.597,   target:       9.847,   error:   2.540%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1734E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.0094E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.429545 TO TG2=    0.431364 @ NSTEP      269
   GFRAME TG2 MOMENTS CHECKSUM:  3.6625702923989D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    269
 TA= 4.29545E-01 CPU TIME= 6.69640E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.313636E-01 NSTEP=   270 Hash code:   46147633
 ->PRGCHK: bdy curvature ratio at t= 4.3318E-01 seconds is:  5.1330E-02
% MHDEQ: TG1=     0.431364 ; TG2=     0.433182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.539E-05
  FluxDiff MaxDT:  4.294E-03

  Avg. GS error:     5.856E-03
  Plasma Current:    7.997E+05,   target:   7.998E+05,   error:   0.003%
  Edge Q:                9.606,   target:       9.818,   error:   2.161%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2116E+00 SECONDS
   DATA R*BT AT EDGE:  5.8990E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.8539E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.431364 TO TG2=    0.433182 @ NSTEP      270
   GFRAME TG2 MOMENTS CHECKSUM:  3.6617273384740D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    270
 TA= 4.31364E-01 CPU TIME= 6.68790E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.331818E-01 NSTEP=   271 Hash code:  119779950
 ->PRGCHK: bdy curvature ratio at t= 4.3500E-01 seconds is:  5.1472E-02
% MHDEQ: TG1=     0.433182 ; TG2=     0.435000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.462E-05
  FluxDiff MaxDT:  4.400E-03

  Avg. GS error:     5.807E-03
  Plasma Current:    8.024E+05,   target:   8.025E+05,   error:   0.007%
  Edge Q:                9.614,   target:       9.828,   error:   2.178%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1912E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.7445E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.433182 TO TG2=    0.435000 @ NSTEP      271
   GFRAME TG2 MOMENTS CHECKSUM:  3.6607962090785D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    272
 TA= 4.35000E-01 CPU TIME= 6.65840E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.22506499999963125     
 --> plasma_hash("gframe"): TA= 4.350000E-01 NSTEP=   272 Hash code:   80945578
 ->PRGCHK: bdy curvature ratio at t= 4.3682E-01 seconds is:  5.1558E-02
% MHDEQ: TG1=     0.435000 ; TG2=     0.436818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.369E-05
  FluxDiff MaxDT:  4.471E-03

  Avg. GS error:     5.791E-03
  Plasma Current:    8.051E+05,   target:   8.052E+05,   error:   0.011%
  Edge Q:                9.619,   target:       9.830,   error:   2.144%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2975E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.6795E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.435000 TO TG2=    0.436818 @ NSTEP      272
   GFRAME TG2 MOMENTS CHECKSUM:  3.6598368075818D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.72175E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -6.88696E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -1.03305E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.368182E-01 NSTEP=   273 Hash code:   84843241
 ->PRGCHK: bdy curvature ratio at t= 4.3864E-01 seconds is:  5.1782E-02
% MHDEQ: TG1=     0.436818 ; TG2=     0.438636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.292E-05
  FluxDiff MaxDT:  4.790E-03

  Avg. GS error:     5.815E-03
  Plasma Current:    8.078E+05,   target:   8.080E+05,   error:   0.014%
  Edge Q:                9.613,   target:       9.836,   error:   2.265%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1434E+00 SECONDS
   DATA R*BT AT EDGE:  5.9003E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.6526E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.436818 TO TG2=    0.438636 @ NSTEP      273
   GFRAME TG2 MOMENTS CHECKSUM:  3.6585209005935D+03
 --> plasma_hash("gframe"): TA= 4.386364E-01 NSTEP=   274 Hash code:    3083968
 ->PRGCHK: bdy curvature ratio at t= 4.4045E-01 seconds is:  5.2132E-02
% MHDEQ: TG1=     0.438636 ; TG2=     0.440455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.201E-05
  FluxDiff MaxDT:  5.025E-03

  Avg. GS error:     5.819E-03
  Plasma Current:    8.106E+05,   target:   8.107E+05,   error:   0.016%
  Edge Q:                9.600,   target:       9.826,   error:   2.301%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1385E+00 SECONDS
   DATA R*BT AT EDGE:  5.9000E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  4.6894E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.438636 TO TG2=    0.440455 @ NSTEP      274
   GFRAME TG2 MOMENTS CHECKSUM:  3.6567038929025D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    274
 TA= 4.38636E-01 CPU TIME= 6.65900E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.404545E-01 NSTEP=   275 Hash code:   71178942
 ->PRGCHK: bdy curvature ratio at t= 4.4227E-01 seconds is:  5.2517E-02
% MHDEQ: TG1=     0.440455 ; TG2=     0.442273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.154E-05
  FluxDiff MaxDT:  5.564E-03

  Avg. GS error:     5.783E-03
  Plasma Current:    8.133E+05,   target:   8.134E+05,   error:   0.018%
  Edge Q:                9.572,   target:       9.812,   error:   2.440%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1411E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.1010E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.440455 TO TG2=    0.442273 @ NSTEP      275
   GFRAME TG2 MOMENTS CHECKSUM:  3.6536778851587D+03
 --> plasma_hash("gframe"): TA= 4.422727E-01 NSTEP=   276 Hash code:   40350939
 ->PRGCHK: bdy curvature ratio at t= 4.4409E-01 seconds is:  5.2960E-02
% MHDEQ: TG1=     0.442273 ; TG2=     0.444091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.075E-05
  FluxDiff MaxDT:  5.611E-03

  Avg. GS error:     5.747E-03
  Plasma Current:    8.157E+05,   target:   8.161E+05,   error:   0.054%
  Edge Q:                9.486,   target:       9.778,   error:   2.996%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1533E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.2921E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.442273 TO TG2=    0.444091 @ NSTEP      276
   GFRAME TG2 MOMENTS CHECKSUM:  3.6501773023169D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    276
 TA= 4.42273E-01 CPU TIME= 6.72810E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.440909E-01 NSTEP=   277 Hash code:   54214932
 ->PRGCHK: bdy curvature ratio at t= 4.4591E-01 seconds is:  5.3461E-02
% MHDEQ: TG1=     0.444091 ; TG2=     0.445909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.062E-05
  FluxDiff MaxDT:  5.648E-03

  Avg. GS error:     5.818E-03
  Plasma Current:    8.184E+05,   target:   8.189E+05,   error:   0.061%
  Edge Q:                9.450,   target:       9.689,   error:   2.472%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1570E+00 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3942E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.444091 TO TG2=    0.445909 @ NSTEP      277
   GFRAME TG2 MOMENTS CHECKSUM:  3.6478658293053D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -4.62204E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.15551E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -5.77755E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.459091E-01 NSTEP=   278 Hash code:   60772105
 ->PRGCHK: bdy curvature ratio at t= 4.4773E-01 seconds is:  5.3553E-02
% MHDEQ: TG1=     0.445909 ; TG2=     0.447727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.043E-05
  FluxDiff MaxDT:  5.374E-03

  Avg. GS error:     5.959E-03
  Plasma Current:    8.211E+05,   target:   8.216E+05,   error:   0.065%
  Edge Q:                9.423,   target:       9.651,   error:   2.357%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1585E+00 SECONDS
   DATA R*BT AT EDGE:  5.8988E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3909E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.445909 TO TG2=    0.447727 @ NSTEP      278
   GFRAME TG2 MOMENTS CHECKSUM:  3.6463090013480D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    278
 TA= 4.45909E-01 CPU TIME= 6.67370E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.477273E-01 NSTEP=   279 Hash code:  104085335
 ->PRGCHK: bdy curvature ratio at t= 4.4955E-01 seconds is:  5.3343E-02
% MHDEQ: TG1=     0.447727 ; TG2=     0.449545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.080E-05
  FluxDiff MaxDT:  5.236E-03

  Avg. GS error:     6.074E-03
  Plasma Current:    8.238E+05,   target:   8.243E+05,   error:   0.066%
  Edge Q:                9.404,   target:       9.622,   error:   2.264%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1585E+00 SECONDS
   DATA R*BT AT EDGE:  5.8993E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3995E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.447727 TO TG2=    0.449545 @ NSTEP      279
   GFRAME TG2 MOMENTS CHECKSUM:  3.6450161813098D+03
 --> plasma_hash("gframe"): TA= 4.495455E-01 NSTEP=   280 Hash code:   11159838
 ->PRGCHK: bdy curvature ratio at t= 4.5136E-01 seconds is:  5.2467E-02
% MHDEQ: TG1=     0.449545 ; TG2=     0.451364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.091E-05
  FluxDiff MaxDT:  4.947E-03

  Avg. GS error:     6.157E-03
  Plasma Current:    8.265E+05,   target:   8.270E+05,   error:   0.066%
  Edge Q:                9.388,   target:       9.599,   error:   2.194%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1792E+00 SECONDS
   DATA R*BT AT EDGE:  5.8998E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4318E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.449545 TO TG2=    0.451364 @ NSTEP      280
   GFRAME TG2 MOMENTS CHECKSUM:  3.6452991206932D+03
 --> plasma_hash("gframe"): TA= 4.513636E-01 NSTEP=   281 Hash code:   91413435
 ->PRGCHK: bdy curvature ratio at t= 4.5318E-01 seconds is:  5.1616E-02
% MHDEQ: TG1=     0.451364 ; TG2=     0.453182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.125E-05
  FluxDiff MaxDT:  4.995E-03

  Avg. GS error:     6.336E-03
  Plasma Current:    8.289E+05,   target:   8.298E+05,   error:   0.101%
  Edge Q:                9.328,   target:       9.580,   error:   2.638%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1539E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6990E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.451364 TO TG2=    0.453182 @ NSTEP      281
   GFRAME TG2 MOMENTS CHECKSUM:  3.6442984033717D+03
 --> plasma_hash("gframe"): TA= 4.531818E-01 NSTEP=   282 Hash code:   57864529
 ->PRGCHK: bdy curvature ratio at t= 4.5500E-01 seconds is:  5.0790E-02
% MHDEQ: TG1=     0.453182 ; TG2=     0.455000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.076E-05
  FluxDiff MaxDT:  4.992E-03

  Avg. GS error:     6.273E-03
  Plasma Current:    8.317E+05,   target:   8.325E+05,   error:   0.094%
  Edge Q:                9.326,   target:       9.516,   error:   1.989%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1911E+00 SECONDS
   DATA R*BT AT EDGE:  5.9002E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5617E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.453182 TO TG2=    0.455000 @ NSTEP      282
   GFRAME TG2 MOMENTS CHECKSUM:  3.6451404055953D+03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    283
 TA= 4.55000E-01 CPU TIME= 6.79700E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.23435972222159762     
 --> plasma_hash("gframe"): TA= 4.550000E-01 NSTEP=   283 Hash code:    4548333
 ->PRGCHK: bdy curvature ratio at t= 4.5682E-01 seconds is:  5.0348E-02
% MHDEQ: TG1=     0.455000 ; TG2=     0.456818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.073E-05
  FluxDiff MaxDT:  5.344E-03

  Avg. GS error:     6.344E-03
  Plasma Current:    8.343E+05,   target:   8.352E+05,   error:   0.107%
  Edge Q:                9.289,   target:       9.512,   error:   2.338%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2127E+00 SECONDS
   DATA R*BT AT EDGE:  5.8999E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4793E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.455000 TO TG2=    0.456818 @ NSTEP      283
   GFRAME TG2 MOMENTS CHECKSUM:  3.6454990735215D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -2.18095E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.37745E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -8.03505E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.568182E-01 NSTEP=   284 Hash code:   82197055
 ->PRGCHK: bdy curvature ratio at t= 4.5864E-01 seconds is:  5.0177E-02
% MHDEQ: TG1=     0.456818 ; TG2=     0.458636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.056E-05
  FluxDiff MaxDT:  5.589E-03

  Avg. GS error:     6.442E-03
  Plasma Current:    8.369E+05,   target:   8.380E+05,   error:   0.127%
  Edge Q:                9.239,   target:       9.471,   error:   2.449%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2452E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4193E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.456818 TO TG2=    0.458636 @ NSTEP      284
   GFRAME TG2 MOMENTS CHECKSUM:  3.6459969309622D+03
 --> plasma_hash("gframe"): TA= 4.586364E-01 NSTEP=   285 Hash code:   75257775
 ->PRGCHK: bdy curvature ratio at t= 4.6045E-01 seconds is:  5.0571E-02
% MHDEQ: TG1=     0.458636 ; TG2=     0.460455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.052E-05
  FluxDiff MaxDT:  5.975E-03

  Avg. GS error:     6.516E-03
  Plasma Current:    8.395E+05,   target:   8.407E+05,   error:   0.142%
  Edge Q:                9.184,   target:       9.419,   error:   2.497%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2433E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3828E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.458636 TO TG2=    0.460455 @ NSTEP      285
   GFRAME TG2 MOMENTS CHECKSUM:  3.6471397304524D+03
 --> plasma_hash("gframe"): TA= 4.604545E-01 NSTEP=   286 Hash code:   56452963
 ->PRGCHK: bdy curvature ratio at t= 4.6227E-01 seconds is:  5.1070E-02
% MHDEQ: TG1=     0.460455 ; TG2=     0.462273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.049E-05
  FluxDiff MaxDT:  5.769E-03

  Avg. GS error:     6.583E-03
  Plasma Current:    8.421E+05,   target:   8.434E+05,   error:   0.152%
  Edge Q:                9.138,   target:       9.360,   error:   2.373%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2585E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3360E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.460455 TO TG2=    0.462273 @ NSTEP      286
   GFRAME TG2 MOMENTS CHECKSUM:  3.6487158515020D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    286
 TA= 4.60455E-01 CPU TIME= 6.75810E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.622727E-01 NSTEP=   287 Hash code:   80032853
 ->PRGCHK: bdy curvature ratio at t= 4.6409E-01 seconds is:  5.1654E-02
% MHDEQ: TG1=     0.462273 ; TG2=     0.464091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.046E-05
  FluxDiff MaxDT:  5.515E-03

  Avg. GS error:     6.651E-03
  Plasma Current:    8.448E+05,   target:   8.461E+05,   error:   0.154%
  Edge Q:                9.103,   target:       9.313,   error:   2.256%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2345E+00 SECONDS
   DATA R*BT AT EDGE:  5.8989E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3109E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.462273 TO TG2=    0.464091 @ NSTEP      287
   GFRAME TG2 MOMENTS CHECKSUM:  3.6503842656402D+03
 --> plasma_hash("gframe"): TA= 4.640909E-01 NSTEP=   288 Hash code:   73118663
 ->PRGCHK: bdy curvature ratio at t= 4.6591E-01 seconds is:  5.1820E-02
% MHDEQ: TG1=     0.464091 ; TG2=     0.465909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.001E-05
  FluxDiff MaxDT:  4.768E-03

  Avg. GS error:     6.754E-03
  Plasma Current:    8.475E+05,   target:   8.489E+05,   error:   0.157%
  Edge Q:                9.092,   target:       9.274,   error:   1.962%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2348E+00 SECONDS
   DATA R*BT AT EDGE:  5.8991E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.3378E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.464091 TO TG2=    0.465909 @ NSTEP      288
   GFRAME TG2 MOMENTS CHECKSUM:  3.6512610031539D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.94958E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.03213E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  9.17444E-41 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.659091E-01 NSTEP=   289 Hash code:   91681957
 ->PRGCHK: bdy curvature ratio at t= 4.6773E-01 seconds is:  5.1589E-02
% MHDEQ: TG1=     0.465909 ; TG2=     0.467727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.429E-06
  FluxDiff MaxDT:  4.464E-03

  Avg. GS error:     6.874E-03
  Plasma Current:    8.502E+05,   target:   8.516E+05,   error:   0.162%
  Edge Q:                9.099,   target:       9.264,   error:   1.782%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2601E+00 SECONDS
   DATA R*BT AT EDGE:  5.8993E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.4146E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.465909 TO TG2=    0.467727 @ NSTEP      289
   GFRAME TG2 MOMENTS CHECKSUM:  3.6512008723469D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    289
 TA= 4.65909E-01 CPU TIME= 6.73690E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.677273E-01 NSTEP=   290 Hash code:   17193208
 ->PRGCHK: bdy curvature ratio at t= 4.6955E-01 seconds is:  5.0926E-02
% MHDEQ: TG1=     0.467727 ; TG2=     0.469545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.667E-06
  FluxDiff MaxDT:  4.119E-03

  Avg. GS error:     7.001E-03
  Plasma Current:    8.529E+05,   target:   8.543E+05,   error:   0.163%
  Edge Q:                9.139,   target:       9.271,   error:   1.424%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3643E+00 SECONDS
   DATA R*BT AT EDGE:  5.8994E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.5137E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.467727 TO TG2=    0.469545 @ NSTEP      290
   GFRAME TG2 MOMENTS CHECKSUM:  3.6499844591301D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    290
 TA= 4.67727E-01 CPU TIME= 6.79190E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.695455E-01 NSTEP=   291 Hash code:   45029732
 ->PRGCHK: bdy curvature ratio at t= 4.7136E-01 seconds is:  5.0498E-02
% MHDEQ: TG1=     0.469545 ; TG2=     0.471364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.112E-06
  FluxDiff MaxDT:  4.307E-03

  Avg. GS error:     7.145E-03
  Plasma Current:    8.557E+05,   target:   8.570E+05,   error:   0.155%
  Edge Q:                9.178,   target:       9.314,   error:   1.460%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2623E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.6342E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.469545 TO TG2=    0.471364 @ NSTEP      291
   GFRAME TG2 MOMENTS CHECKSUM:  3.6487304385484D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    291
 TA= 4.69545E-01 CPU TIME= 6.83010E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.713636E-01 NSTEP=   292 Hash code:   13841979
 ->PRGCHK: bdy curvature ratio at t= 4.7318E-01 seconds is:  5.0306E-02
% MHDEQ: TG1=     0.471364 ; TG2=     0.473182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.840E-06
  FluxDiff MaxDT:  4.571E-03

  Avg. GS error:     7.261E-03
  Plasma Current:    8.585E+05,   target:   8.598E+05,   error:   0.146%
  Edge Q:                9.216,   target:       9.348,   error:   1.419%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2540E+00 SECONDS
   DATA R*BT AT EDGE:  5.8995E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.7797E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.471364 TO TG2=    0.473182 @ NSTEP      292
   GFRAME TG2 MOMENTS CHECKSUM:  3.6477649610948D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    292
 TA= 4.71364E-01 CPU TIME= 6.81130E-02 SECONDS.  DT= 1.81818E-03
 --> plasma_hash("gframe"): TA= 4.731818E-01 NSTEP=   293 Hash code:  110360999
 ->PRGCHK: bdy curvature ratio at t= 4.7500E-01 seconds is:  5.0266E-02
% MHDEQ: TG1=     0.473182 ; TG2=     0.475000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.712E-06
  FluxDiff MaxDT:  5.808E-03

  Avg. GS error:     7.179E-03
  Plasma Current:    8.616E+05,   target:   8.625E+05,   error:   0.109%
  Edge Q:                9.250,   target:       9.387,   error:   1.454%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2530E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8967E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.473182 TO TG2=    0.475000 @ NSTEP      293
   GFRAME TG2 MOMENTS CHECKSUM:  3.6490228651333D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    293
 TA= 4.73182E-01 CPU TIME= 6.78210E-02 SECONDS.  DT= 1.81818E-03
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %trackr(xstraln): too many re-entries, track truncated.
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    294
 TA= 4.75000E-01 CPU TIME= 6.75330E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.24392805555407904     
 --> plasma_hash("gframe"): TA= 4.750000E-01 NSTEP=   294 Hash code:   89193545
 ->PRGCHK: bdy curvature ratio at t= 4.7682E-01 seconds is:  5.0228E-02
% MHDEQ: TG1=     0.475000 ; TG2=     0.476818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.062E-06
  FluxDiff MaxDT:  7.414E-03

  Avg. GS error:     7.274E-03
  Plasma Current:    8.642E+05,   target:   8.652E+05,   error:   0.116%
  Edge Q:                9.197,   target:       9.416,   error:   2.327%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2341E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1782E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.475000 TO TG2=    0.476818 @ NSTEP      294
   GFRAME TG2 MOMENTS CHECKSUM:  3.6499490415894D+03
 %MFRCHK - LABEL "BALE0_SGF", #       3=  3.21704E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  2.06811E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.14894E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.768182E-01 NSTEP=   295 Hash code:   36971358
 ->PRGCHK: bdy curvature ratio at t= 4.7864E-01 seconds is:  5.0261E-02
% MHDEQ: TG1=     0.476818 ; TG2=     0.478636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.637E-06
  FluxDiff MaxDT:  1.015E-02

  Avg. GS error:     7.376E-03
  Plasma Current:    8.668E+05,   target:   8.680E+05,   error:   0.129%
  Edge Q:                9.095,   target:       9.358,   error:   2.805%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2217E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.6911E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.476818 TO TG2=    0.478636 @ NSTEP      295
   GFRAME TG2 MOMENTS CHECKSUM:  3.6520788929235D+03
 --> plasma_hash("gframe"): TA= 4.786364E-01 NSTEP=   296 Hash code:  112573271
 ->PRGCHK: bdy curvature ratio at t= 4.8045E-01 seconds is:  5.0442E-02
% MHDEQ: TG1=     0.478636 ; TG2=     0.480455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    9.008E-06
  FluxDiff MaxDT:  9.150E-03

  Avg. GS error:     7.477E-03
  Plasma Current:    8.695E+05,   target:   8.707E+05,   error:   0.137%
  Edge Q:                9.007,   target:       9.248,   error:   2.596%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2417E+00 SECONDS
   DATA R*BT AT EDGE:  5.8983E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.6586E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.478636 TO TG2=    0.480455 @ NSTEP      296
   GFRAME TG2 MOMENTS CHECKSUM:  3.6548294984830D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    296
 TA= 4.78636E-01 CPU TIME= 6.76120E-02 SECONDS.  DT= 1.36364E-03
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=  0.47999999999999998     
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 --> plasma_hash("gframe"): TA= 4.804545E-01 NSTEP=   298 Hash code:    9411660
 ->PRGCHK: bdy curvature ratio at t= 4.8227E-01 seconds is:  5.0791E-02
% MHDEQ: TG1=     0.480455 ; TG2=     0.482273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.913E-06
  FluxDiff MaxDT:  8.302E-03

  Avg. GS error:     7.555E-03
  Plasma Current:    8.722E+05,   target:   8.734E+05,   error:   0.143%
  Edge Q:                8.935,   target:       9.159,   error:   2.447%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2930E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4929E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.480455 TO TG2=    0.482273 @ NSTEP      298
   GFRAME TG2 MOMENTS CHECKSUM:  3.6576333807886D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    298
 TA= 4.80455E-01 CPU TIME= 6.75680E-02 SECONDS.  DT= 1.70455E-03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    299
 TA= 4.82159E-01 CPU TIME= 6.75550E-02 SECONDS.  DT= 1.13636E-04
 --> plasma_hash("gframe"): TA= 4.822727E-01 NSTEP=   300 Hash code:  101760818
 ->PRGCHK: bdy curvature ratio at t= 4.8409E-01 seconds is:  5.1331E-02
% MHDEQ: TG1=     0.482273 ; TG2=     0.484091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.656E-06
  FluxDiff MaxDT:  6.419E-03

  Avg. GS error:     7.584E-03
  Plasma Current:    8.749E+05,   target:   8.761E+05,   error:   0.137%
  Edge Q:                8.898,   target:       9.083,   error:   2.041%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3069E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3766E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.482273 TO TG2=    0.484091 @ NSTEP      300
   GFRAME TG2 MOMENTS CHECKSUM:  3.6602081603883D+03
 --> plasma_hash("gframe"): TA= 4.840909E-01 NSTEP=   301 Hash code:   20042918
 ->PRGCHK: bdy curvature ratio at t= 4.8591E-01 seconds is:  5.2001E-02
% MHDEQ: TG1=     0.484091 ; TG2=     0.485909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    8.306E-06
  FluxDiff MaxDT:  5.210E-03

  Avg. GS error:     7.448E-03
  Plasma Current:    8.778E+05,   target:   8.789E+05,   error:   0.120%
  Edge Q:                8.901,   target:       9.045,   error:   1.595%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3762E+00 SECONDS
   DATA R*BT AT EDGE:  5.8991E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3241E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.484091 TO TG2=    0.485909 @ NSTEP      301
   GFRAME TG2 MOMENTS CHECKSUM:  3.6621563262269D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    301
 TA= 4.84091E-01 CPU TIME= 6.73900E-02 SECONDS.  DT= 1.81818E-03
 %MFRCHK - LABEL "BALE0_SGF", #       3= -4.81444E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  2.29259E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -7.10704E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.859091E-01 NSTEP=   302 Hash code:   57236143
 ->PRGCHK: bdy curvature ratio at t= 4.8773E-01 seconds is:  5.2897E-02
% MHDEQ: TG1=     0.485909 ; TG2=     0.487727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.944E-06
  FluxDiff MaxDT:  4.483E-03

  Avg. GS error:     7.297E-03
  Plasma Current:    8.807E+05,   target:   8.816E+05,   error:   0.098%
  Edge Q:                8.944,   target:       9.050,   error:   1.176%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4925E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.2401E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.485909 TO TG2=    0.487727 @ NSTEP      302
   GFRAME TG2 MOMENTS CHECKSUM:  3.6637012509150D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    302
 TA= 4.85909E-01 CPU TIME= 6.74180E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 4.877273E-01 NSTEP=   303 Hash code:   26331558
 ->PRGCHK: bdy curvature ratio at t= 4.8955E-01 seconds is:  5.3946E-02
% MHDEQ: TG1=     0.487727 ; TG2=     0.489545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.587E-06
  FluxDiff MaxDT:  4.664E-03

  Avg. GS error:     7.155E-03
  Plasma Current:    8.837E+05,   target:   8.843E+05,   error:   0.075%
  Edge Q:                8.990,   target:       9.100,   error:   1.204%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5011E+00 SECONDS
   DATA R*BT AT EDGE:  5.8990E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3011E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.487727 TO TG2=    0.489545 @ NSTEP      303
   GFRAME TG2 MOMENTS CHECKSUM:  3.6652573575754D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    303
 TA= 4.87727E-01 CPU TIME= 6.75520E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 4.895455E-01 NSTEP=   304 Hash code:   71384027
 ->PRGCHK: bdy curvature ratio at t= 4.9136E-01 seconds is:  5.5041E-02
% MHDEQ: TG1=     0.489545 ; TG2=     0.491364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.301E-06
  FluxDiff MaxDT:  4.891E-03

  Avg. GS error:     7.071E-03
  Plasma Current:    8.866E+05,   target:   8.870E+05,   error:   0.049%
  Edge Q:                9.036,   target:       9.153,   error:   1.276%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.5174E+00 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3241E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.489545 TO TG2=    0.491364 @ NSTEP      304
   GFRAME TG2 MOMENTS CHECKSUM:  3.6667304554753D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    304
 TA= 4.89545E-01 CPU TIME= 6.75700E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 4.913636E-01 NSTEP=   305 Hash code:  100393518
 ->PRGCHK: bdy curvature ratio at t= 4.9318E-01 seconds is:  5.5707E-02
% MHDEQ: TG1=     0.491364 ; TG2=     0.493182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    7.060E-06
  FluxDiff MaxDT:  5.286E-03

  Avg. GS error:     7.103E-03
  Plasma Current:    8.897E+05,   target:   8.898E+05,   error:   0.006%
  Edge Q:                9.097,   target:       9.208,   error:   1.207%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.4228E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3273E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.491364 TO TG2=    0.493182 @ NSTEP      305
   GFRAME TG2 MOMENTS CHECKSUM:  3.6691062191489D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    305
 TA= 4.91364E-01 CPU TIME= 6.71150E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 4.931818E-01 NSTEP=   306 Hash code:   70293870
 ->PRGCHK: bdy curvature ratio at t= 4.9500E-01 seconds is:  5.5618E-02
% MHDEQ: TG1=     0.493182 ; TG2=     0.495000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.925E-06
  FluxDiff MaxDT:  5.825E-03

  Avg. GS error:     7.145E-03
  Plasma Current:    8.924E+05,   target:   8.925E+05,   error:   0.007%
  Edge Q:                9.082,   target:       9.278,   error:   2.109%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3343E+00 SECONDS
   DATA R*BT AT EDGE:  5.8980E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3659E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.493182 TO TG2=    0.495000 @ NSTEP      306
   GFRAME TG2 MOMENTS CHECKSUM:  3.6696090467296D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    306
 TA= 4.93182E-01 CPU TIME= 6.76620E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    307
 TA= 4.95000E-01 CPU TIME= 6.78150E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.25390527777653915     
 --> plasma_hash("gframe"): TA= 4.950000E-01 NSTEP=   307 Hash code:   75042967
 ->PRGCHK: bdy curvature ratio at t= 4.9682E-01 seconds is:  5.5514E-02
% MHDEQ: TG1=     0.495000 ; TG2=     0.496818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.846E-06
  FluxDiff MaxDT:  6.351E-03

  Avg. GS error:     7.123E-03
  Plasma Current:    8.952E+05,   target:   8.952E+05,   error:   0.006%
  Edge Q:                9.056,   target:       9.269,   error:   2.302%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2713E+00 SECONDS
   DATA R*BT AT EDGE:  5.8979E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3976E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.495000 TO TG2=    0.496818 @ NSTEP      307
   GFRAME TG2 MOMENTS CHECKSUM:  3.6704631936970D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  6.89259E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.37851E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  5.51408E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 4.968182E-01 NSTEP=   308 Hash code:   57495893
 ->PRGCHK: bdy curvature ratio at t= 4.9864E-01 seconds is:  5.5117E-02
% MHDEQ: TG1=     0.496818 ; TG2=     0.498636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.770E-06
  FluxDiff MaxDT:  6.327E-03

  Avg. GS error:     6.973E-03
  Plasma Current:    8.976E+05,   target:   8.977E+05,   error:   0.003%
  Edge Q:                9.034,   target:       9.249,   error:   2.321%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2959E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4290E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.496818 TO TG2=    0.498636 @ NSTEP      308
   GFRAME TG2 MOMENTS CHECKSUM:  3.6710184170779D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 4.986364E-01 NSTEP=   309 Hash code:   84690008
 ->PRGCHK: bdy curvature ratio at t= 5.0045E-01 seconds is:  5.4769E-02
% MHDEQ: TG1=     0.498636 ; TG2=     0.500455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    6.779E-06
  FluxDiff MaxDT:  6.392E-03

  Avg. GS error:     6.834E-03
  Plasma Current:    8.988E+05,   target:   8.989E+05,   error:   0.002%
  Edge Q:                9.031,   target:       9.233,   error:   2.195%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2639E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4224E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.498636 TO TG2=    0.500455 @ NSTEP      309
   GFRAME TG2 MOMENTS CHECKSUM:  3.6716066845851D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    309
 TA= 4.98636E-01 CPU TIME= 6.67270E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.004545E-01 NSTEP=   310 Hash code:  108016302
 ->PRGCHK: bdy curvature ratio at t= 5.0227E-01 seconds is:  5.4551E-02
% MHDEQ: TG1=     0.500455 ; TG2=     0.502273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.688E-06
  FluxDiff MaxDT:  6.244E-03

  Avg. GS error:     6.719E-03
  Plasma Current:    8.998E+05,   target:   8.998E+05,   error:   0.001%
  Edge Q:                9.038,   target:       9.238,   error:   2.170%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3273E+00 SECONDS
   DATA R*BT AT EDGE:  5.8993E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4123E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.500455 TO TG2=    0.502273 @ NSTEP      310
   GFRAME TG2 MOMENTS CHECKSUM:  3.6719569177803D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.022727E-01 NSTEP=   311 Hash code:   76959288
 ->PRGCHK: bdy curvature ratio at t= 5.0409E-01 seconds is:  5.4566E-02
% MHDEQ: TG1=     0.502273 ; TG2=     0.504091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    5.944E-06
  FluxDiff MaxDT:  6.048E-03

  Avg. GS error:     6.640E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.000%
  Edge Q:                9.064,   target:       9.247,   error:   1.977%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3664E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3431E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.502273 TO TG2=    0.504091 @ NSTEP      311
   GFRAME TG2 MOMENTS CHECKSUM:  3.6721865901095D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.040909E-01 NSTEP=   312 Hash code:  116480556
 ->PRGCHK: bdy curvature ratio at t= 5.0591E-01 seconds is:  5.4461E-02
% MHDEQ: TG1=     0.504091 ; TG2=     0.505909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.938E-06
  FluxDiff MaxDT:  6.078E-03

  Avg. GS error:     6.572E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.100,   target:       9.280,   error:   1.947%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3849E+00 SECONDS
   DATA R*BT AT EDGE:  5.8997E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.2811E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.504091 TO TG2=    0.505909 @ NSTEP      312
   GFRAME TG2 MOMENTS CHECKSUM:  3.6721595453639D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.83133E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -4.57834E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  2.74699E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.059091E-01 NSTEP=   313 Hash code:   62979521
 ->PRGCHK: bdy curvature ratio at t= 5.0773E-01 seconds is:  5.4024E-02
% MHDEQ: TG1=     0.505909 ; TG2=     0.507727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.755E-06
  FluxDiff MaxDT:  6.445E-03

  Avg. GS error:     6.542E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.133,   target:       9.317,   error:   1.970%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3774E+00 SECONDS
   DATA R*BT AT EDGE:  5.8992E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.2132E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.505909 TO TG2=    0.507727 @ NSTEP      313
   GFRAME TG2 MOMENTS CHECKSUM:  3.6721318029699D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    313
 TA= 5.05909E-01 CPU TIME= 6.74060E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.077273E-01 NSTEP=   314 Hash code:   29323482
 ->PRGCHK: bdy curvature ratio at t= 5.0955E-01 seconds is:  5.3553E-02
% MHDEQ: TG1=     0.507727 ; TG2=     0.509545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    4.235E-06
  FluxDiff MaxDT:  6.756E-03

  Avg. GS error:     6.565E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.167,   target:       9.353,   error:   1.992%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.3328E+00 SECONDS
   DATA R*BT AT EDGE:  5.8985E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1541E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.507727 TO TG2=    0.509545 @ NSTEP      314
   GFRAME TG2 MOMENTS CHECKSUM:  3.6716442223296D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.095455E-01 NSTEP=   315 Hash code:   31599863
 ->PRGCHK: bdy curvature ratio at t= 5.1136E-01 seconds is:  5.2875E-02
% MHDEQ: TG1=     0.509545 ; TG2=     0.511364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    3.706E-06
  FluxDiff MaxDT:  7.083E-03

  Avg. GS error:     6.707E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.204,   target:       9.388,   error:   1.964%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2060E+00 SECONDS
   DATA R*BT AT EDGE:  5.8980E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0911E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.509545 TO TG2=    0.511364 @ NSTEP      315
   GFRAME TG2 MOMENTS CHECKSUM:  3.6701405815059D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    315
 TA= 5.09545E-01 CPU TIME= 6.67960E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.113636E-01 NSTEP=   316 Hash code:   55944584
 ->PRGCHK: bdy curvature ratio at t= 5.1318E-01 seconds is:  5.1733E-02
% MHDEQ: TG1=     0.511364 ; TG2=     0.513182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.788E-06
  FluxDiff MaxDT:  7.465E-03

  Avg. GS error:     7.022E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.247,   target:       9.428,   error:   1.914%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0763E+00 SECONDS
   DATA R*BT AT EDGE:  5.8978E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0117E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.511364 TO TG2=    0.513182 @ NSTEP      316
   GFRAME TG2 MOMENTS CHECKSUM:  3.6667886493765D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.131818E-01 NSTEP=   317 Hash code:   45103123
 ->PRGCHK: bdy curvature ratio at t= 5.1500E-01 seconds is:  5.0358E-02
% MHDEQ: TG1=     0.513182 ; TG2=     0.515000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.007E-06
  FluxDiff MaxDT:  7.898E-03

  Avg. GS error:     7.139E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.003%
  Edge Q:                9.295,   target:       9.473,   error:   1.886%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.2054E+00 SECONDS
   DATA R*BT AT EDGE:  5.8979E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9281E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.513182 TO TG2=    0.515000 @ NSTEP      317
   GFRAME TG2 MOMENTS CHECKSUM:  3.6625081625020D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    317
 TA= 5.13182E-01 CPU TIME= 6.69730E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    9.9999999747524271E-007
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    318
 TA= 5.15000E-01 CPU TIME= 6.65770E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.26358999999956723     
 --> plasma_hash("gframe"): TA= 5.150000E-01 NSTEP=   318 Hash code:    4484751
 ->PRGCHK: bdy curvature ratio at t= 5.1682E-01 seconds is:  4.9028E-02
% MHDEQ: TG1=     0.515000 ; TG2=     0.516818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.662E-06
  FluxDiff MaxDT:  8.389E-03

  Avg. GS error:     6.900E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.004%
  Edge Q:                9.342,   target:       9.523,   error:   1.898%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1607E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9240E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.515000 TO TG2=    0.516818 @ NSTEP      318
   GFRAME TG2 MOMENTS CHECKSUM:  3.6583334203506D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  3.67960E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.83981E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.83981E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.168182E-01 NSTEP=   319 Hash code:    4679730
 ->PRGCHK: bdy curvature ratio at t= 5.1864E-01 seconds is:  4.8112E-02
% MHDEQ: TG1=     0.516818 ; TG2=     0.518636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.469E-06
  FluxDiff MaxDT:  8.978E-03

  Avg. GS error:     6.779E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.003%
  Edge Q:                9.383,   target:       9.575,   error:   1.999%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1593E+00 SECONDS
   DATA R*BT AT EDGE:  5.8985E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8832E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.516818 TO TG2=    0.518636 @ NSTEP      319
   GFRAME TG2 MOMENTS CHECKSUM:  3.6546805816453D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.186364E-01 NSTEP=   320 Hash code:  114334063
 ->PRGCHK: bdy curvature ratio at t= 5.2045E-01 seconds is:  4.7901E-02
% MHDEQ: TG1=     0.518636 ; TG2=     0.520455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.446E-06
  FluxDiff MaxDT:  1.020E-02

  Avg. GS error:     6.790E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.410,   target:       9.615,   error:   2.131%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1562E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8767E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.518636 TO TG2=    0.520455 @ NSTEP      320
   GFRAME TG2 MOMENTS CHECKSUM:  3.6520494833356D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    320
 TA= 5.18636E-01 CPU TIME= 6.67190E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.204545E-01 NSTEP=   321 Hash code:   57806554
 ->PRGCHK: bdy curvature ratio at t= 5.2227E-01 seconds is:  4.9210E-02
% MHDEQ: TG1=     0.520455 ; TG2=     0.522273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.619E-06
  FluxDiff MaxDT:  1.259E-02

  Avg. GS error:     6.844E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.408,   target:       9.640,   error:   2.400%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8834E-01 SECONDS
   DATA R*BT AT EDGE:  5.8985E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9105E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.520455 TO TG2=    0.522273 @ NSTEP      321
   GFRAME TG2 MOMENTS CHECKSUM:  3.6512124762828D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.222727E-01 NSTEP=   322 Hash code:   66832245
 ->PRGCHK: bdy curvature ratio at t= 5.2409E-01 seconds is:  5.1276E-02
% MHDEQ: TG1=     0.522273 ; TG2=     0.524091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.149E-06
  FluxDiff MaxDT:  1.350E-02

  Avg. GS error:     6.936E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.395,   target:       9.632,   error:   2.462%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9809E-01 SECONDS
   DATA R*BT AT EDGE:  5.8980E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9246E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.522273 TO TG2=    0.524091 @ NSTEP      322
   GFRAME TG2 MOMENTS CHECKSUM:  3.6514771764793D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    322
 TA= 5.22273E-01 CPU TIME= 6.67830E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.240909E-01 NSTEP=   323 Hash code:   68774078
 ->PRGCHK: bdy curvature ratio at t= 5.2591E-01 seconds is:  5.3472E-02
% MHDEQ: TG1=     0.524091 ; TG2=     0.525909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.117E-06
  FluxDiff MaxDT:  1.289E-02

  Avg. GS error:     7.041E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.000%
  Edge Q:                9.384,   target:       9.615,   error:   2.406%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9064E-01 SECONDS
   DATA R*BT AT EDGE:  5.8974E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8384E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.524091 TO TG2=    0.525909 @ NSTEP      323
   GFRAME TG2 MOMENTS CHECKSUM:  3.6515753977352D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3= -1.10271E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -3.21623E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -7.81085E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.259091E-01 NSTEP=   324 Hash code:   98952054
 ->PRGCHK: bdy curvature ratio at t= 5.2773E-01 seconds is:  5.5355E-02
% MHDEQ: TG1=     0.525909 ; TG2=     0.527727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.188E-06
  FluxDiff MaxDT:  1.273E-02

  Avg. GS error:     7.155E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.000%
  Edge Q:                9.373,   target:       9.600,   error:   2.368%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9256E-01 SECONDS
   DATA R*BT AT EDGE:  5.8971E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8618E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.525909 TO TG2=    0.527727 @ NSTEP      324
   GFRAME TG2 MOMENTS CHECKSUM:  3.6519812492633D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    324
 TA= 5.25909E-01 CPU TIME= 6.71950E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.277273E-01 NSTEP=   325 Hash code:   88897620
 ->PRGCHK: bdy curvature ratio at t= 5.2955E-01 seconds is:  5.6151E-02
% MHDEQ: TG1=     0.527727 ; TG2=     0.529545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.194E-06
  FluxDiff MaxDT:  1.271E-02

  Avg. GS error:     7.372E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.362,   target:       9.588,   error:   2.360%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9621E-01 SECONDS
   DATA R*BT AT EDGE:  5.8971E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.8937E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.527727 TO TG2=    0.529545 @ NSTEP      325
   GFRAME TG2 MOMENTS CHECKSUM:  3.6525071878132D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    325
 TA= 5.27727E-01 CPU TIME= 6.68750E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.295455E-01 NSTEP=   326 Hash code:  110784514
 ->PRGCHK: bdy curvature ratio at t= 5.3136E-01 seconds is:  5.5564E-02
% MHDEQ: TG1=     0.529545 ; TG2=     0.531364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.196E-06
  FluxDiff MaxDT:  1.358E-02

  Avg. GS error:     7.486E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.346,   target:       9.576,   error:   2.408%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0000E+00 SECONDS
   DATA R*BT AT EDGE:  5.8974E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9339E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.529545 TO TG2=    0.531364 @ NSTEP      326
   GFRAME TG2 MOMENTS CHECKSUM:  3.6529991959155D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    326
 TA= 5.29545E-01 CPU TIME= 6.69100E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.313636E-01 NSTEP=   327 Hash code:   67386194
 ->PRGCHK: bdy curvature ratio at t= 5.3318E-01 seconds is:  5.4604E-02
% MHDEQ: TG1=     0.531364 ; TG2=     0.533182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.157E-06
  FluxDiff MaxDT:  1.381E-02

  Avg. GS error:     7.495E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.328,   target:       9.559,   error:   2.425%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0734E+00 SECONDS
   DATA R*BT AT EDGE:  5.8979E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  5.9698E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.531364 TO TG2=    0.533182 @ NSTEP      327
   GFRAME TG2 MOMENTS CHECKSUM:  3.6534796175046D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.331818E-01 NSTEP=   328 Hash code:   32058211
 ->PRGCHK: bdy curvature ratio at t= 5.3500E-01 seconds is:  5.3669E-02
% MHDEQ: TG1=     0.533182 ; TG2=     0.535000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.147E-06
  FluxDiff MaxDT:  1.354E-02

  Avg. GS error:     7.471E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.000%
  Edge Q:                9.310,   target:       9.541,   error:   2.416%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.6651E-01 SECONDS
   DATA R*BT AT EDGE:  5.8983E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0058E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.533182 TO TG2=    0.535000 @ NSTEP      328
   GFRAME TG2 MOMENTS CHECKSUM:  3.6539992531901D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    328
 TA= 5.33182E-01 CPU TIME= 6.73230E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    329
 TA= 5.35000E-01 CPU TIME= 6.72240E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.27284833333214920     
 --> plasma_hash("gframe"): TA= 5.350000E-01 NSTEP=   329 Hash code:   13651399
 ->PRGCHK: bdy curvature ratio at t= 5.3682E-01 seconds is:  5.2971E-02
% MHDEQ: TG1=     0.535000 ; TG2=     0.536818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.087E-06
  FluxDiff MaxDT:  1.229E-02

  Avg. GS error:     7.335E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.298,   target:       9.523,   error:   2.358%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.6554E-01 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0323E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.535000 TO TG2=    0.536818 @ NSTEP      329
   GFRAME TG2 MOMENTS CHECKSUM:  3.6544419635146D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.06770E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  9.18972E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.14871E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.368182E-01 NSTEP=   330 Hash code:   42668071
 ->PRGCHK: bdy curvature ratio at t= 5.3864E-01 seconds is:  5.2544E-02
% MHDEQ: TG1=     0.536818 ; TG2=     0.538636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.063E-06
  FluxDiff MaxDT:  1.127E-02

  Avg. GS error:     7.198E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.293,   target:       9.509,   error:   2.268%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9347E-01 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0490E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.536818 TO TG2=    0.538636 @ NSTEP      330
   GFRAME TG2 MOMENTS CHECKSUM:  3.6547703337728D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.386364E-01 NSTEP=   331 Hash code:   17358638
 ->PRGCHK: bdy curvature ratio at t= 5.4045E-01 seconds is:  5.2871E-02
% MHDEQ: TG1=     0.538636 ; TG2=     0.540455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.973E-06
  FluxDiff MaxDT:  9.256E-03

  Avg. GS error:     7.056E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.308,   target:       9.504,   error:   2.061%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1396E+00 SECONDS
   DATA R*BT AT EDGE:  5.8985E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0414E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.538636 TO TG2=    0.540455 @ NSTEP      331
   GFRAME TG2 MOMENTS CHECKSUM:  3.6547509632533D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.404545E-01 NSTEP=   332 Hash code:  105877271
 ->PRGCHK: bdy curvature ratio at t= 5.4227E-01 seconds is:  5.3394E-02
% MHDEQ: TG1=     0.540455 ; TG2=     0.542273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.959E-06
  FluxDiff MaxDT:  9.185E-03

  Avg. GS error:     6.923E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.327,   target:       9.520,   error:   2.028%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1802E+00 SECONDS
   DATA R*BT AT EDGE:  5.8981E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0252E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.540455 TO TG2=    0.542273 @ NSTEP      332
   GFRAME TG2 MOMENTS CHECKSUM:  3.6544991089942D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.422727E-01 NSTEP=   333 Hash code:   91107116
 ->PRGCHK: bdy curvature ratio at t= 5.4409E-01 seconds is:  5.3928E-02
% MHDEQ: TG1=     0.542273 ; TG2=     0.544091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.883E-06
  FluxDiff MaxDT:  9.440E-03

  Avg. GS error:     6.799E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.345,   target:       9.540,   error:   2.045%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1828E+00 SECONDS
   DATA R*BT AT EDGE:  5.8977E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0107E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.542273 TO TG2=    0.544091 @ NSTEP      333
   GFRAME TG2 MOMENTS CHECKSUM:  3.6542349510832D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.440909E-01 NSTEP=   334 Hash code:  121302817
 ->PRGCHK: bdy curvature ratio at t= 5.4591E-01 seconds is:  5.4386E-02
% MHDEQ: TG1=     0.544091 ; TG2=     0.545909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.853E-06
  FluxDiff MaxDT:  1.009E-02

  Avg. GS error:     6.691E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.356,   target:       9.558,   error:   2.115%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1176E+00 SECONDS
   DATA R*BT AT EDGE:  5.8974E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0058E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.544091 TO TG2=    0.545909 @ NSTEP      334
   GFRAME TG2 MOMENTS CHECKSUM:  3.6541749476987D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  2.06181E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  9.16365E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.14545E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.459091E-01 NSTEP=   335 Hash code:  110927916
 ->PRGCHK: bdy curvature ratio at t= 5.4773E-01 seconds is:  5.4765E-02
% MHDEQ: TG1=     0.545909 ; TG2=     0.547727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.866E-06
  FluxDiff MaxDT:  1.068E-02

  Avg. GS error:     6.598E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.361,   target:       9.570,   error:   2.176%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0969E+00 SECONDS
   DATA R*BT AT EDGE:  5.8973E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0097E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.545909 TO TG2=    0.547727 @ NSTEP      335
   GFRAME TG2 MOMENTS CHECKSUM:  3.6543713729792D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.477273E-01 NSTEP=   336 Hash code:   44252303
 ->PRGCHK: bdy curvature ratio at t= 5.4955E-01 seconds is:  5.4865E-02
% MHDEQ: TG1=     0.547727 ; TG2=     0.549545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.959E-06
  FluxDiff MaxDT:  1.307E-02

  Avg. GS error:     6.517E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.346,   target:       9.574,   error:   2.383%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.6952E-01 SECONDS
   DATA R*BT AT EDGE:  5.8975E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0411E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.547727 TO TG2=    0.549545 @ NSTEP      336
   GFRAME TG2 MOMENTS CHECKSUM:  3.6553557302018D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.495455E-01 NSTEP=   337 Hash code:   30366556
 ->PRGCHK: bdy curvature ratio at t= 5.5136E-01 seconds is:  5.4937E-02
% MHDEQ: TG1=     0.549545 ; TG2=     0.551364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.108E-06
  FluxDiff MaxDT:  1.274E-02

  Avg. GS error:     6.429E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.328,   target:       9.555,   error:   2.377%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0318E+00 SECONDS
   DATA R*BT AT EDGE:  5.8978E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.0794E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.549545 TO TG2=    0.551364 @ NSTEP      337
   GFRAME TG2 MOMENTS CHECKSUM:  3.6565882416433D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    337
 TA= 5.49545E-01 CPU TIME= 6.68070E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.513636E-01 NSTEP=   338 Hash code:   69842191
 ->PRGCHK: bdy curvature ratio at t= 5.5318E-01 seconds is:  5.5031E-02
% MHDEQ: TG1=     0.551364 ; TG2=     0.553182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.139E-06
  FluxDiff MaxDT:  1.208E-02

  Avg. GS error:     6.352E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.313,   target:       9.536,   error:   2.346%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0331E+00 SECONDS
   DATA R*BT AT EDGE:  5.8983E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1116E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.551364 TO TG2=    0.553182 @ NSTEP      338
   GFRAME TG2 MOMENTS CHECKSUM:  3.6578476179182D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.531818E-01 NSTEP=   339 Hash code:   19641930
 ->PRGCHK: bdy curvature ratio at t= 5.5500E-01 seconds is:  5.5130E-02
% MHDEQ: TG1=     0.553182 ; TG2=     0.555000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.154E-06
  FluxDiff MaxDT:  1.153E-02

  Avg. GS error:     6.301E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.301,   target:       9.519,   error:   2.295%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0515E+00 SECONDS
   DATA R*BT AT EDGE:  5.8986E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1386E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.553182 TO TG2=    0.555000 @ NSTEP      339
   GFRAME TG2 MOMENTS CHECKSUM:  3.6590024513092D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    340
 TA= 5.55000E-01 CPU TIME= 6.75560E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.28168055555443061     
 --> plasma_hash("gframe"): TA= 5.550000E-01 NSTEP=   340 Hash code:   20962577
 ->PRGCHK: bdy curvature ratio at t= 5.5682E-01 seconds is:  5.5233E-02
% MHDEQ: TG1=     0.555000 ; TG2=     0.556818 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.101E-06
  FluxDiff MaxDT:  1.132E-02

  Avg. GS error:     6.231E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.292,   target:       9.507,   error:   2.267%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0521E+00 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1627E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.555000 TO TG2=    0.556818 @ NSTEP      340
   GFRAME TG2 MOMENTS CHECKSUM:  3.6600622949156D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3= -9.18327E-41 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.83665E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -2.75498E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.568182E-01 NSTEP=   341 Hash code:   70266925
 ->PRGCHK: bdy curvature ratio at t= 5.5864E-01 seconds is:  5.5284E-02
% MHDEQ: TG1=     0.556818 ; TG2=     0.558636 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.991E-06
  FluxDiff MaxDT:  1.060E-02

  Avg. GS error:     6.003E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.291,   target:       9.498,   error:   2.178%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0724E+00 SECONDS
   DATA R*BT AT EDGE:  5.8983E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1762E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.556818 TO TG2=    0.558636 @ NSTEP      341
   GFRAME TG2 MOMENTS CHECKSUM:  3.6606645170632D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.586364E-01 NSTEP=   342 Hash code:   61213252
 ->PRGCHK: bdy curvature ratio at t= 5.6045E-01 seconds is:  5.5331E-02
% MHDEQ: TG1=     0.558636 ; TG2=     0.560455 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.861E-06
  FluxDiff MaxDT:  1.077E-02

  Avg. GS error:     5.758E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.291,   target:       9.499,   error:   2.185%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0705E+00 SECONDS
   DATA R*BT AT EDGE:  5.8976E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1895E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.558636 TO TG2=    0.560455 @ NSTEP      342
   GFRAME TG2 MOMENTS CHECKSUM:  3.6611615663449D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.604545E-01 NSTEP=   343 Hash code:   27429776
 ->PRGCHK: bdy curvature ratio at t= 5.6227E-01 seconds is:  5.5378E-02
% MHDEQ: TG1=     0.560455 ; TG2=     0.562273 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.837E-06
  FluxDiff MaxDT:  1.081E-02

  Avg. GS error:     5.576E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.290,   target:       9.498,   error:   2.189%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0691E+00 SECONDS
   DATA R*BT AT EDGE:  5.8972E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.1971E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.560455 TO TG2=    0.562273 @ NSTEP      343
   GFRAME TG2 MOMENTS CHECKSUM:  3.6616332310747D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    343
 TA= 5.60455E-01 CPU TIME= 6.71220E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.622727E-01 NSTEP=   344 Hash code:   10186488
 ->PRGCHK: bdy curvature ratio at t= 5.6409E-01 seconds is:  5.5293E-02
% MHDEQ: TG1=     0.562273 ; TG2=     0.564091 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.817E-06
  FluxDiff MaxDT:  1.026E-02

  Avg. GS error:     5.442E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.295,   target:       9.498,   error:   2.140%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0683E+00 SECONDS
   DATA R*BT AT EDGE:  5.8972E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3940E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.562273 TO TG2=    0.564091 @ NSTEP      344
   GFRAME TG2 MOMENTS CHECKSUM:  3.6620766128487D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.640909E-01 NSTEP=   345 Hash code:   86234542
 ->PRGCHK: bdy curvature ratio at t= 5.6591E-01 seconds is:  5.5120E-02
% MHDEQ: TG1=     0.564091 ; TG2=     0.565909 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.787E-06
  FluxDiff MaxDT:  9.893E-03

  Avg. GS error:     5.379E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.001%
  Edge Q:                9.302,   target:       9.503,   error:   2.119%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0718E+00 SECONDS
   DATA R*BT AT EDGE:  5.8976E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4035E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.564091 TO TG2=    0.565909 @ NSTEP      345
   GFRAME TG2 MOMENTS CHECKSUM:  3.6620741574136D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3= -2.06564E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -3.21322E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  1.14758E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.659091E-01 NSTEP=   346 Hash code:  100864482
 ->PRGCHK: bdy curvature ratio at t= 5.6773E-01 seconds is:  5.4542E-02
% MHDEQ: TG1=     0.565909 ; TG2=     0.567727 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.828E-06
  FluxDiff MaxDT:  8.867E-03

  Avg. GS error:     5.355E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.003%
  Edge Q:                9.323,   target:       9.511,   error:   1.977%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0665E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4151E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.565909 TO TG2=    0.567727 @ NSTEP      346
   GFRAME TG2 MOMENTS CHECKSUM:  3.6611984029478D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    346
 TA= 5.65909E-01 CPU TIME= 6.72170E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.677273E-01 NSTEP=   347 Hash code:   31945838
 ->PRGCHK: bdy curvature ratio at t= 5.6955E-01 seconds is:  5.3971E-02
% MHDEQ: TG1=     0.567727 ; TG2=     0.569545 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.706E-06
  FluxDiff MaxDT:  8.885E-03

  Avg. GS error:     5.414E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.004%
  Edge Q:                9.345,   target:       9.534,   error:   1.986%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8127E-01 SECONDS
   DATA R*BT AT EDGE:  5.8987E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4151E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.567727 TO TG2=    0.569545 @ NSTEP      347
   GFRAME TG2 MOMENTS CHECKSUM:  3.6602997234842D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    347
 TA= 5.67727E-01 CPU TIME= 6.70350E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.695455E-01 NSTEP=   348 Hash code:   29962136
 ->PRGCHK: bdy curvature ratio at t= 5.7136E-01 seconds is:  5.3430E-02
% MHDEQ: TG1=     0.569545 ; TG2=     0.571364 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.774E-06
  FluxDiff MaxDT:  9.055E-03

  Avg. GS error:     5.447E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.005%
  Edge Q:                9.366,   target:       9.558,   error:   2.007%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.7995E-01 SECONDS
   DATA R*BT AT EDGE:  5.8988E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4325E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.569545 TO TG2=    0.571364 @ NSTEP      348
   GFRAME TG2 MOMENTS CHECKSUM:  3.6594312957785D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    348
 TA= 5.69545E-01 CPU TIME= 6.69640E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.713636E-01 NSTEP=   349 Hash code:   16971902
 ->PRGCHK: bdy curvature ratio at t= 5.7318E-01 seconds is:  5.3208E-02
% MHDEQ: TG1=     0.571364 ; TG2=     0.573182 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.720E-06
  FluxDiff MaxDT:  9.412E-03

  Avg. GS error:     5.497E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.382,   target:       9.581,   error:   2.075%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8396E-01 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4534E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.571364 TO TG2=    0.573182 @ NSTEP      349
   GFRAME TG2 MOMENTS CHECKSUM:  3.6588622124182D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.731818E-01 NSTEP=   350 Hash code:   79345121
 ->PRGCHK: bdy curvature ratio at t= 5.7500E-01 seconds is:  5.3158E-02
% MHDEQ: TG1=     0.573182 ; TG2=     0.575000 ; DTG=  1.818E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.771E-06
  FluxDiff MaxDT:  9.616E-03

  Avg. GS error:     5.572E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.396,   target:       9.600,   error:   2.117%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0662E+00 SECONDS
   DATA R*BT AT EDGE:  5.8977E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4780E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.573182 TO TG2=    0.575000 @ NSTEP      350
   GFRAME TG2 MOMENTS CHECKSUM:  3.6584261082981D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    350
 TA= 5.73182E-01 CPU TIME= 6.74240E-02 SECONDS.  DT= 1.81818E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  ADAS310_INIT: /p/pshare/transp/adas                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                           
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  !adas310/v2bnmod_f: WARNING for input data
  !DENS .lt. DENSP + DENIMP 
  %fi_finish: enter
  %fimain: eflux cpu time =    1.9999999949504854E-006
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    351
 TA= 5.75000E-01 CPU TIME= 6.79670E-02 SECONDS.  DT= 2.00000E-03
  %check_save_state: nbflag              =  T
  %check_save_state: iwrite_now          =  F
  %check_save_state: check at wall_hours =   0.29100305555357409     
 --> plasma_hash("gframe"): TA= 5.750000E-01 NSTEP=   351 Hash code:   25626286
 ->PRGCHK: bdy curvature ratio at t= 5.7692E-01 seconds is:  5.4068E-02
% MHDEQ: TG1=     0.575000 ; TG2=     0.576923 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.944E-06
  FluxDiff MaxDT:  1.019E-02

  Avg. GS error:     5.690E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.399,   target:       9.616,   error:   2.256%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0847E+00 SECONDS
   DATA R*BT AT EDGE:  5.8971E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.5066E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.575000 TO TG2=    0.576923 @ NSTEP      351
   GFRAME TG2 MOMENTS CHECKSUM:  3.6589113990397D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3= -6.88423E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -3.67158E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3= -3.21264E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.769231E-01 NSTEP=   352 Hash code:   72042708
 ->PRGCHK: bdy curvature ratio at t= 5.7885E-01 seconds is:  5.5002E-02
% MHDEQ: TG1=     0.576923 ; TG2=     0.578846 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.121E-06
  FluxDiff MaxDT:  9.778E-03

  Avg. GS error:     5.839E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.403,   target:       9.619,   error:   2.252%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0909E+00 SECONDS
   DATA R*BT AT EDGE:  5.8968E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.5418E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.576923 TO TG2=    0.578846 @ NSTEP      352
   GFRAME TG2 MOMENTS CHECKSUM:  3.6594478278317D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.788462E-01 NSTEP=   353 Hash code:   26150126
 ->PRGCHK: bdy curvature ratio at t= 5.8077E-01 seconds is:  5.5961E-02
% MHDEQ: TG1=     0.578846 ; TG2=     0.580769 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.032E-06
  FluxDiff MaxDT:  9.466E-03

  Avg. GS error:     6.011E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.407,   target:       9.626,   error:   2.270%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0925E+00 SECONDS
   DATA R*BT AT EDGE:  5.8970E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.5786E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.578846 TO TG2=    0.580769 @ NSTEP      353
   GFRAME TG2 MOMENTS CHECKSUM:  3.6599580919943D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    353
 TA= 5.78846E-01 CPU TIME= 6.76770E-02 SECONDS.  DT= 1.15385E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
  %splitn_update_check: writing update: 204112S34TR.TMP @ t=  0.57999999999999996     
  -------------------------------- 
  Namelist update: 204112S34TR.TMP
  
  ==> subroutine datchk_update: check namelist updates... 
  %DATCKA: ACfile times pre-screen... 
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.807692E-01 NSTEP=   355 Hash code:   55451636
 ->PRGCHK: bdy curvature ratio at t= 5.8269E-01 seconds is:  5.6452E-02
% MHDEQ: TG1=     0.580769 ; TG2=     0.582692 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    2.051E-06
  FluxDiff MaxDT:  9.621E-03

  Avg. GS error:     5.996E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.412,   target:       9.632,   error:   2.283%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8366E-01 SECONDS
   DATA R*BT AT EDGE:  5.8974E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3400E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.580769 TO TG2=    0.582692 @ NSTEP      355
   GFRAME TG2 MOMENTS CHECKSUM:  3.6596575607581D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    356
 TA= 5.82212E-01 CPU TIME= 6.77330E-02 SECONDS.  DT= 4.80769E-04
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.826923E-01 NSTEP=   357 Hash code:   39163869
 ->PRGCHK: bdy curvature ratio at t= 5.8462E-01 seconds is:  5.6528E-02
% MHDEQ: TG1=     0.582692 ; TG2=     0.584615 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.823E-06
  FluxDiff MaxDT:  9.984E-03

  Avg. GS error:     5.934E-03
  Plasma Current:    9.001E+05,   target:   9.000E+05,   error:   0.006%
  Edge Q:                9.416,   target:       9.639,   error:   2.315%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.8067E-01 SECONDS
   DATA R*BT AT EDGE:  5.8978E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3568E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.582692 TO TG2=    0.584615 @ NSTEP      357
   GFRAME TG2 MOMENTS CHECKSUM:  3.6591633908685D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.846154E-01 NSTEP=   359 Hash code:   48107575
 ->PRGCHK: bdy curvature ratio at t= 5.8654E-01 seconds is:  5.5874E-02
% MHDEQ: TG1=     0.584615 ; TG2=     0.586538 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.729E-06
  FluxDiff MaxDT:  1.077E-02

  Avg. GS error:     5.893E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.005%
  Edge Q:                9.419,   target:       9.645,   error:   2.342%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1504E+00 SECONDS
   DATA R*BT AT EDGE:  5.8982E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.3745E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.584615 TO TG2=    0.586538 @ NSTEP      359
   GFRAME TG2 MOMENTS CHECKSUM:  3.6579214247382D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  1.93231E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3=  1.10418E-39 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  8.28134E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.865385E-01 NSTEP=   360 Hash code:   55042949
 ->PRGCHK: bdy curvature ratio at t= 5.8846E-01 seconds is:  5.5257E-02
% MHDEQ: TG1=     0.586538 ; TG2=     0.588462 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.492E-06
  FluxDiff MaxDT:  1.106E-02

  Avg. GS error:     5.867E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.004%
  Edge Q:                9.423,   target:       9.652,   error:   2.377%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.1563E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4312E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.586538 TO TG2=    0.588462 @ NSTEP      360
   GFRAME TG2 MOMENTS CHECKSUM:  3.6567009168335D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    360
 TA= 5.86538E-01 CPU TIME= 6.79290E-02 SECONDS.  DT= 1.92308E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.884615E-01 NSTEP=   361 Hash code:  117429309
 ->PRGCHK: bdy curvature ratio at t= 5.9038E-01 seconds is:  5.4764E-02
% MHDEQ: TG1=     0.588462 ; TG2=     0.590385 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.586E-06
  FluxDiff MaxDT:  1.128E-02

  Avg. GS error:     5.865E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.003%
  Edge Q:                9.426,   target:       9.656,   error:   2.379%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0714E+00 SECONDS
   DATA R*BT AT EDGE:  5.8984E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.4272E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.588462 TO TG2=    0.590385 @ NSTEP      361
   GFRAME TG2 MOMENTS CHECKSUM:  3.6554296779939D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.903846E-01 NSTEP=   362 Hash code:   62051056
 ->PRGCHK: bdy curvature ratio at t= 5.9231E-01 seconds is:  5.4657E-02
% MHDEQ: TG1=     0.590385 ; TG2=     0.592308 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.543E-06
  FluxDiff MaxDT:  1.109E-02

  Avg. GS error:     5.897E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.431,   target:       9.660,   error:   2.375%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0625E+00 SECONDS
   DATA R*BT AT EDGE:  5.8979E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.7948E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.590385 TO TG2=    0.592308 @ NSTEP      362
   GFRAME TG2 MOMENTS CHECKSUM:  3.6544568494328D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    362
 TA= 5.90385E-01 CPU TIME= 6.77950E-02 SECONDS.  DT= 1.92308E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.923077E-01 NSTEP=   363 Hash code:   89652634
 ->PRGCHK: bdy curvature ratio at t= 5.9423E-01 seconds is:  5.5150E-02
% MHDEQ: TG1=     0.592308 ; TG2=     0.594231 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.632E-06
  FluxDiff MaxDT:  1.054E-02

  Avg. GS error:     5.984E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.439,   target:       9.664,   error:   2.328%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  9.9972E-01 SECONDS
   DATA R*BT AT EDGE:  5.8973E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.8346E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.592308 TO TG2=    0.594231 @ NSTEP      363
   GFRAME TG2 MOMENTS CHECKSUM:  3.6536712034433D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.942308E-01 NSTEP=   364 Hash code:   23410203
 ->PRGCHK: bdy curvature ratio at t= 5.9615E-01 seconds is:  5.6006E-02
% MHDEQ: TG1=     0.594231 ; TG2=     0.596154 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.715E-06
  FluxDiff MaxDT:  1.018E-02

  Avg. GS error:     6.098E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.450,   target:       9.673,   error:   2.307%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0053E+00 SECONDS
   DATA R*BT AT EDGE:  5.8969E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.8757E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.594231 TO TG2=    0.596154 @ NSTEP      364
   GFRAME TG2 MOMENTS CHECKSUM:  3.6529839848192D+03
 *** FULL NEUTRAL SOURCE CALCULATION PERFORMED ***         NSTEP=    364
 TA= 5.94231E-01 CPU TIME= 6.77190E-02 SECONDS.  DT= 1.92308E-03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.97040E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.83705E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  7.80745E-40 RESET TO ZERO 
 --> plasma_hash("gframe"): TA= 5.961538E-01 NSTEP=   365 Hash code:   32883332
 ->PRGCHK: bdy curvature ratio at t= 5.9808E-01 seconds is:  5.6908E-02
% MHDEQ: TG1=     0.596154 ; TG2=     0.598077 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.762E-06
  FluxDiff MaxDT:  1.009E-02

  Avg. GS error:     6.225E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.461,   target:       9.682,   error:   2.290%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0076E+00 SECONDS
   DATA R*BT AT EDGE:  5.8968E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.8945E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.596154 TO TG2=    0.598077 @ NSTEP      365
   GFRAME TG2 MOMENTS CHECKSUM:  3.6522494942205D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 --> plasma_hash("gframe"): TA= 5.980769E-01 NSTEP=   366 Hash code:  108330370
 ->PRGCHK: bdy curvature ratio at t= 6.0000E-01 seconds is:  5.7856E-02
% MHDEQ: TG1=     0.598077 ; TG2=     0.600000 ; DTG=  1.923E-03
  *** Isolver *** 
!get_mhd_diff_input: using existing NE, TE
  Rel. Circ. Bal:    1.779E-06
  FluxDiff MaxDT:  9.815E-03

  Avg. GS error:     6.328E-03
  Plasma Current:    9.000E+05,   target:   9.000E+05,   error:   0.002%
  Edge Q:                9.474,   target:       9.693,   error:   2.267%

 * MHD EQUILIBRIUM CALCULATED, CPU TIME =  1.0090E+00 SECONDS
   DATA R*BT AT EDGE:  5.8972E+01
 ->EQBDY_CHECK: last flux surface curvature ratio is:  6.9179E-02
 % GFRAME - GEOMETRY TIMESTEP TG1=    0.598077 TO TG2=    0.600000 @ NSTEP      366
   GFRAME TG2 MOMENTS CHECKSUM:  3.6515755416603D+03
 ?ncsmoo1 error: profile has negative value at the center
 ?ncsmoo1 error: profile has negative value at the center
 %MFRCHK - LABEL "BALE0_SGF", #       3=  5.97203E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_H", #       3= -1.83755E-40 RESET TO ZERO 
 %MFRCHK - LABEL "BALE0_GF_D", #       3=  7.80956E-40 RESET TO ZERO 
  
    4.2 Call trmpi_end (NORMAL EXIT) 
  
 trmpi_end2 -I-           0 Ended MPI for TRANSP          
  
    4.2 TERMINATE THE RUN (NORMAL EXIT) 
  
     CPU TIME USED (hours):  1.63147E-02
 %kill_nubeam_server: no server READY file found. 
 ------------ stderr ---------------- 
  (mpi_share_env) process myid=           4  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          18  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          19  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          20  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          22  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          28  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          30  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           0  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           3  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          11  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          14  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          21  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          23  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          24  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          25  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          26  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          27  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          29  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          31  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           1  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           5  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           6  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           7  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           8  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           9  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          10  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          12  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          13  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          15  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          17  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=           2  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
  (mpi_share_env) process myid=          16  cwd: /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34
 OPENACC is not available
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
 nbi_alloc_orbit will allocate for            1  ptcls
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  %depall depall_mpi_split initinal done
  %depall nuse(isb)=            0
 %depall will be using            1  OMP threads
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   1040389864480.9744        1040389864480.9744     
  zfext1,zfext2=   4.4719278270014483E+017   69436326905525.555     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6921722792448.4795        6921722792448.4795     
  zfext1,zfext2=   4.4963455739320883E+017   88394567327015.844     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   8197934873314.8027        8197934873314.8027     
  zfext1,zfext2=   4.4893889495010682E+017   82765234248270.688     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4194294981322.7036        4194294981322.7036     
  zfext1,zfext2=   4.4592173387673773E+017   64185887463374.234     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5846293612392.2295        5846293612392.2295     
  zfext1,zfext2=   4.4971831507457997E+017   89128588865269.250     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   8941839625269.9355        8941839625269.9355     
  zfext1,zfext2=   4.4831349540596928E+017   77715665626894.672     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6598809538893.7969        6598809538893.7969     
  zfext1,zfext2=   4.5145837453966355E+017   102888698108167.98     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6810173652093.9551        6810173652093.9551     
  zfext1,zfext2=   4.4620955899094950E+017   65271249943392.578     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   7453347506591.2656        7453347506591.2656     
  zfext1,zfext2=   4.4852099181315392E+017   79469941130716.656     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4285349081869.3926        4285349081869.3926     
  zfext1,zfext2=   4.4587316106026195E+017   63985594594528.492     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   2174014905634.8525        2174014905634.8525     
  zfext1,zfext2=   4.4577009603049760E+017   63634011187036.609     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5759129850756.5908        5759129850756.5908     
  zfext1,zfext2=   4.4770915619451027E+017   73067341389849.656     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   7632424366435.9346        7632424366435.9346     
  zfext1,zfext2=   4.5023913445725734E+017   93160523266778.141     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6716507506534.0527        6716507506534.0527     
  zfext1,zfext2=   4.4980590412465082E+017   89771824221379.016     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   3773947096312.9473        3773947096312.9473     
  zfext1,zfext2=   4.4585271219531251E+017   63918802422800.375     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   8487907961911.1074        8487907961911.1074     
  zfext1,zfext2=   4.4860437955938195E+017   80072682776410.125     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5202973508030.0244        5202973508030.0244     
  zfext1,zfext2=   4.5269501854412851E+017   112727552652838.23     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4810256105527.6699        4810256105527.6699     
  zfext1,zfext2=   4.5316182967947494E+017   116420355447896.84     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   3979206096852.5190        3979206096852.5190     
  zfext1,zfext2=   4.4519130106815366E+017   61219952612709.695     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5826647900530.0781        5826647900530.0781     
  zfext1,zfext2=   4.5213904566659360E+017   108310582015450.88     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   8689821590816.1025        8689821590816.1025     
  zfext1,zfext2=   4.4780290796924134E+017   73636966572764.953     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4918224922134.5596        4918224922134.5596     
  zfext1,zfext2=   4.5206428366312147E+017   107777294179411.14     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6916033778138.7510        6916033778138.7510     
  zfext1,zfext2=   4.4608690222518630E+017   64769960547173.672     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   3502613186892.2207        3502613186892.2207     
  zfext1,zfext2=   4.4665564651094637E+017   67185166847131.422     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   10979175233837.227        10979175233837.227     
  zfext1,zfext2=   4.4585926116161664E+017   63715486691107.242     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   9039862047464.1621        9039862047464.1621     
  zfext1,zfext2=   4.4831298733528275E+017   77705478509616.656     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5812704520604.7695        5812704520604.7695     
  zfext1,zfext2=   4.4687158327369216E+017   67985752327846.484     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5108795743192.2129        5108795743192.2129     
  zfext1,zfext2=   4.4761251941062707E+017   72331794435949.344     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   3203147902839.4473        3203147902839.4473     
  zfext1,zfext2=   4.4585029526075187E+017   63927193782230.070     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6364649490392.0938        6364649490392.0938     
  zfext1,zfext2=   4.4613566349411066E+017   64985519400497.703     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6491074079138.1455        6491074079138.1455     
  zfext1,zfext2=   4.5032800035431680E+017   93937468495539.734     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6899538015736.0781        6899538015736.0781     
  zfext1,zfext2=   4.4689944619023002E+017   68063888281859.891     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5359636182372.7520        5359636182372.7520     
  zfext1,zfext2=   4.4707455018791002E+017   68821071018187.891     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   6441033487059.1572        6441033487059.1572     
  zfext1,zfext2=   4.4721048713557741E+017   69336051241658.641     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   3754285740135.9185        3754285740135.9185     
  zfext1,zfext2=   4.4557008839483981E+017   62769976283542.727     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   2918696156216.6587        2918696156216.6587     
  zfext1,zfext2=   4.4684690383090010E+017   67978026336350.016     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5814534881981.2734        5814534881981.2734     
  zfext1,zfext2=   4.4943137387053709E+017   86844216689964.281     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   7057014406459.5273        7057014406459.5273     
  zfext1,zfext2=   4.5061869722220909E+017   96210010543531.984     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   5483707456148.6533        5483707456148.6533     
  zfext1,zfext2=   4.4983024839378477E+017   90042288659122.391     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   8340434525689.7891        8340434525689.7891     
  zfext1,zfext2=   4.4874683310976461E+017   81221263217241.594     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   2056614590191.7156        2056614590191.7156     
  zfext1,zfext2=   4.4692058411432256E+017   68303570994833.188     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   7949864356101.6367        7949864356101.6367     
  zfext1,zfext2=   4.4757888623172416E+017   71884000536590.953     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4993827999490.6973        4993827999490.6973     
  zfext1,zfext2=   4.4667592625316570E+017   67219800123872.836     
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   7313570893270.5186        7313570893270.5186     
  zfext1,zfext2=   4.5048771148365389E+017   95154582809774.281     
 %depall specie #1  ->         0 -        0 (killed) +    32000 (dep) =    32000 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %orball:  in processor     0: orbit # iorb=       206 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       270 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       401 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           25
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            5
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           15
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            1
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6489E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6489E+20
  nbstart... 

%nbi_states: cpu  1 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.264E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.264E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  **xjaset: .ge.3 iterations...
  zfmin,zfcorr=   4146513859699.1567        4146513859699.1567     
  zfext1,zfext2=   4.1586000628631878E+017   102188194677792.59     
 %depall specie #1  ->      3909 -        0 (killed) +    28646 (dep) =    32555 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %orball:  in processor     0: orbit # iorb=       563 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       688 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       893 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       921 never inside plasma.
 %orball:  in processor     0: orbit # iorb=      1009 never inside plasma.
 %orball:  in processor     0: orbit # iorb=      1019 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           27
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           29
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =            2
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            2
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.6970E+20
    nbi_getprofiles ne*dvol sum (ions):  1.6970E+20
  nbstart... 

%nbi_states: cpu  5 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.274E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.274E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->      4987 -        0 (killed) +    27408 (dep) =    32395 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.039117E+08  1.039084E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   2.786404E+08  2.765171E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   2.773844E+08  2.764740E+08
 %orball:  in processor     0: orbit # iorb=       726 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           21
  nbfinish... 
 entering outptb2
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           11
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            3
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
    nbi_getprofiles ne*dvol sum (input): 1.7757E+20
    nbi_getprofiles ne*dvol sum (ions):  1.7757E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu  1 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.267E+03 MB.

  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->      6655 -        0 (killed) +    25910 (dep) =    32565 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           23
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           28
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           29
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            4
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
    nbi_getprofiles ne*dvol sum (input): 1.8311E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8311E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu  3 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.267E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     10090 -        0 (killed) +    23283 (dep) =    33373 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   2.769190E+08  2.766919E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   2.780270E+08  2.770640E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   2.775817E+08  2.768405E+08
 %orball:  in processor     0: orbit # iorb=       917 never inside plasma.
 %cxline - vtor.gt.zvion; vtor,zvion =   5.224203E+07  5.219426E+07
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =            4
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           17
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           28
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            5
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
    nbi_getprofiles ne*dvol sum (input): 1.8514E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8514E+20
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.267E+03 MB.



%nbi_states: cpu 18 virtual memory size =  1.267E+03 MB.

%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     13583 -        0 (killed) +    20591 (dep) =    34174 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.195367E+08  1.193541E+08
 %orball:  in processor     0: orbit # iorb=       776 never inside plasma.
 %cxline - vtor.gt.zvion; vtor,zvion =   1.206765E+08  1.205254E+08
 %orball:  in processor     0: orbit # iorb=       963 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           21
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            1
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            3
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            6
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8878E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8878E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu  1 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.267E+03 MB.



%nbi_states: cpu 27 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     15461 -        0 (killed) +    18871 (dep) =    34332 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   9.990368E+07  9.987097E+07
 %cxline - vtor.gt.zvion; vtor,zvion =   2.779550E+08  2.768527E+08
 %orball:  in processor     0: orbit # iorb=       781 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       796 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       947 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       980 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           28
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           21
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           31
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            7
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9293E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9293E+20
  nbstart... 

%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.267E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     17538 -        0 (killed) +    17196 (dep) =    34734 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %orball:  in processor     0: orbit # iorb=       594 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       729 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       853 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           26
  nbfinish... 
 entering outptb2
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           23
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            8
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
    nbi_getprofiles ne*dvol sum (input): 1.8155E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8155E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.269E+03 MB.

  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     18769 -        0 (killed) +    16069 (dep) =    34838 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   7.049701E+07  7.034669E+07
 %cxline - vtor.gt.zvion; vtor,zvion =   6.153984E+07  6.151706E+07
 %orball:  in processor     0: orbit # iorb=       989 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           14
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           29
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =            6
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps            9
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.8335E+20
    nbi_getprofiles ne*dvol sum (ions):  1.8335E+20
  nbstart... 

%nbi_states: cpu  3 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.

  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     19648 -        0 (killed) +    15168 (dep) =    34816 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   7.719236E+07  7.693683E+07
 %orball:  in processor     0: orbit # iorb=       936 never inside plasma.
 %orball:  in processor     0: orbit # iorb=       960 never inside plasma.
 %orball:  in processor     0: orbit # iorb=      1086 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           30
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           13
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           15
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           10
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9395E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9395E+20
  nbstart... 

%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     19595 -        0 (killed) +    14701 (dep) =    34296 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.819339E+08  1.818274E+08
 %orball:  in processor     0: orbit # iorb=       872 never inside plasma.
 %cxline - vtor.gt.zvion; vtor,zvion =   5.239058E+07  5.227313E+07
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           14
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           29
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            2
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           11
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9413E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9413E+20
  nbstart... 

%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.269E+03 MB.

%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     19317 -        0 (killed) +    14458 (dep) =    33775 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.430915E+08  1.426744E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.116799E+08  1.114739E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           23
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           25
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           31
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           12
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9577E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9577E+20
  nbstart... 
  nbstart... 

%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     19712 -        0 (killed) +    14053 (dep) =    33765 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %orball:  in processor     0: orbit # iorb=       617 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            4
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           24
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           31
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           13
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 1.9724E+20
    nbi_getprofiles ne*dvol sum (ions):  1.9724E+20
  nbstart... 

%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3

%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20327 -        0 (killed) +    13590 (dep) =    33917 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.956664E+08  1.954677E+08
 %orball:  in processor     0: orbit # iorb=      1016 never inside plasma.
 %orball:  in processor     0: orbit # iorb=      1093 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           22
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            2
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            8
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           14
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.0466E+20
    nbi_getprofiles ne*dvol sum (ions):  2.0466E+20
  nbstart... 
  nbstart... 

%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20956 -        0 (killed) +    13150 (dep) =    34106 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.424674E+08  1.414913E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           27
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =            4
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           16
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           15
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.1608E+20
    nbi_getprofiles ne*dvol sum (ions):  2.1608E+20
  nbstart... 

%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.269E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20994 -        0 (killed) +    12930 (dep) =    33924 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   8.006237E+07  8.006040E+07
 %orball:  in processor     0: orbit # iorb=       692 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            7
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           22
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            9
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           16
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
    nbi_getprofiles ne*dvol sum (input): 2.2441E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2441E+20
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3

%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20539 -        0 (killed) +    12898 (dep) =    33437 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.615362E+08  1.609861E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           23
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           16
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            5
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           17
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
    nbi_getprofiles ne*dvol sum (input): 2.2826E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2826E+20
  nbstart... 
  nbstart... 

%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20027 -        0 (killed) +    12946 (dep) =    32973 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %orball:  in processor     0: orbit # iorb=       816 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           22
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           15
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           12
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           18
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2737E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2737E+20
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.269E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     20080 -        0 (killed) +    12871 (dep) =    32951 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.512383E+08  1.511635E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.469639E+08  1.466809E+08
 %orball:  in processor     0: orbit # iorb=       998 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           21
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            9
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           13
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           19
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2604E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2604E+20
  nbstart... 

%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     21242 -        0 (killed) +    12446 (dep) =    33688 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.195575E+08  1.195132E+08
 %orball:  in processor     0: orbit # iorb=       887 never inside plasma.
 %cxline - vtor.gt.zvion; vtor,zvion =   1.362858E+08  1.356532E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   7.804592E+07  7.784226E+07
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           23
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           12
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           15
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           20
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.2904E+20
    nbi_getprofiles ne*dvol sum (ions):  2.2904E+20
  nbstart... 

%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3

%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     22074 -        0 (killed) +    12036 (dep) =    34110 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =           14
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            5
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           17
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           21
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3380E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3380E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     22457 -        0 (killed) +    11711 (dep) =    34168 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.459203E+08  1.454953E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.387963E+08  1.387871E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.101872E+08  1.090691E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            4
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            7
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           12
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           22
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbi_interp_profiles... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3542E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3542E+20
  nbstart... 

%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     22580 -        0 (killed) +    11493 (dep) =    34073 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   5.326868E+07  5.306021E+07
 %cxline - vtor.gt.zvion; vtor,zvion =   1.716792E+08  1.716246E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.671015E+08  1.670053E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.466365E+08  1.460675E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            3
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            2
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           23
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           23
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
    nbi_getprofiles ne*dvol sum (input): 2.3292E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3292E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     23011 -        0 (killed) +    11180 (dep) =    34191 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.561332E+08  1.547127E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.037421E+08  1.027814E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.824276E+08  1.815112E+08
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           12
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           30
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           23
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           17
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           24
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3320E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3320E+20
  nbstart... 

%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  1 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.



%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.

%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     23296 -        0 (killed) +    10926 (dep) =    34222 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.377606E+08  1.374066E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   8.348837E+07  8.334198E+07
 %cxline - vtor.gt.zvion; vtor,zvion =   1.360077E+08  1.348671E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.650022E+08  1.641019E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   2.287959E+08  2.277428E+08
 %orball:  in processor     0: orbit # iorb=       931 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           14
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           31
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           22
  nbfinish... 
 entering outptb2
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  ==> entering nubeam_step_child, mpi myidd =           30
  ==> entering nubeam_step_child, mpi myidd =           19
  ==> entering nubeam_step_child, mpi myidd =           27
  ==> entering nubeam_step_child, mpi myidd =           25
  ==> entering nubeam_step_child, mpi myidd =           26
  ==> entering nubeam_step_child, mpi myidd =            9
  ==> entering nubeam_step_child, mpi myidd =           13
  ==> entering nubeam_step_child, mpi myidd =           31
  ==> entering nubeam_step_child, mpi myidd =            8
  ==> entering nubeam_step_child, mpi myidd =           28
  ==> entering nubeam_step_child, mpi myidd =            4
  ==> entering nubeam_step_child, mpi myidd =           11
  ==> entering nubeam_step_child, mpi myidd =            5
  ==> entering nubeam_step_child, mpi myidd =           18
  ==> entering nubeam_step_child, mpi myidd =           21
  ==> entering nubeam_step_child, mpi myidd =            2
  ==> entering nubeam_step_child, mpi myidd =           20
  ==> entering nubeam_step_child, mpi myidd =            3
  ==> entering nubeam_step_child, mpi myidd =           24
  ==> entering nubeam_step_child, mpi myidd =           12
  ==> entering nubeam_step_child, mpi myidd =            7
  ==> entering nubeam_step_child, mpi myidd =            1
  ==> entering nubeam_step_child, mpi myidd =           29
  ==> entering nubeam_step_child, mpi myidd =           17
  ==> entering nubeam_step_child, mpi myidd =           10
  ==> entering nubeam_step_child, mpi myidd =           16
  ==> entering nubeam_step_child, mpi myidd =            6
  ==> entering nubeam_step_child, mpi myidd =           15
  ==> entering nubeam_step_child, mpi myidd =           22
  ==> entering nubeam_step_child, mpi myidd =           14
  ==> entering nubeam_step_child, mpi myidd =           23
  %nubeam_step ++++++++ nltrk_dep0 F
  %nubeam_step ++++++++ nlbout (lost ptcl.) F
  %nubeam_step ++++++++ nbsteps           25
  ==> entering nubeam_step_child, mpi myidd =            0
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc: backz already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbstart... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
 %nbi_alloc2: ebb_rel_co already allocated; exiting.
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
  nbi_interp_profiles... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
  nbstart... 
    nbi_getprofiles ne*dvol sum (input): 2.3333E+20
    nbi_getprofiles ne*dvol sum (ions):  2.3333E+20
  nbstart... 
  nbstart... 
  nbstart... 
  nbstart... 

%nbi_states: cpu  1 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 19 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 18 virtual memory size =  1.269E+03 MB.


%nbi_states: cpu 29 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  3 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 17 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  5 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  2 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 25 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  7 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 23 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 22 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 21 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 11 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 10 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  9 virtual memory size =  1.267E+03 MB.


%nbi_states: cpu 13 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 27 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 31 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 30 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 28 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 12 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 14 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  8 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 24 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 15 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  6 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 26 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu  4 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 16 virtual memory size =  1.268E+03 MB.


%nbi_states: cpu 20 virtual memory size =  1.268E+03 MB.

  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  % nbi_states: fld_states write OK to filename: 204112S34_fi/204112S34_debug_nbi_fld_state.cdf
  %nbatom deposition model: lev_nbidep=           2
  %nbatom deposition model: nsigexc=           3
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
  depall... 
 %depall specie #1  ->     23027 -        0 (killed) +    12498 (dep) =    35525 ptcls.
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
  depall exited            0
  orball... 
 %cxline - vtor.gt.zvion; vtor,zvion =   1.561904E+08  1.551550E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.559628E+08  1.536901E+08
 %cxline - vtor.gt.zvion; vtor,zvion =   1.434887E+08  1.428838E+08
 %orball:  in processor     0: orbit # iorb=       937 never inside plasma.
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  orball exited            0
  ==> exiting nubeam_step_child, mpi myidd =           14
  nbfinish... 
 entering outptb2
  ==> exiting nubeam_step_child, mpi myidd =           23
  ==> exiting nubeam_step_child, mpi myidd =           27
  ==> exiting nubeam_step_child, mpi myidd =            1
  ==> exiting nubeam_step_child, mpi myidd =           25
  ==> exiting nubeam_step_child, mpi myidd =           12
  ==> exiting nubeam_step_child, mpi myidd =           10
  ==> exiting nubeam_step_child, mpi myidd =            6
  ==> exiting nubeam_step_child, mpi myidd =           19
  ==> exiting nubeam_step_child, mpi myidd =            7
  ==> exiting nubeam_step_child, mpi myidd =            8
  ==> exiting nubeam_step_child, mpi myidd =            5
  ==> exiting nubeam_step_child, mpi myidd =           20
  ==> exiting nubeam_step_child, mpi myidd =           16
  ==> exiting nubeam_step_child, mpi myidd =            2
  ==> exiting nubeam_step_child, mpi myidd =            4
  ==> exiting nubeam_step_child, mpi myidd =           11
  ==> exiting nubeam_step_child, mpi myidd =           26
  ==> exiting nubeam_step_child, mpi myidd =           13
  ==> exiting nubeam_step_child, mpi myidd =           24
  ==> exiting nubeam_step_child, mpi myidd =           22
  ==> exiting nubeam_step_child, mpi myidd =           30
  ==> exiting nubeam_step_child, mpi myidd =           28
  ==> exiting nubeam_step_child, mpi myidd =            3
  ==> exiting nubeam_step_child, mpi myidd =           15
  ==> exiting nubeam_step_child, mpi myidd =           29
  ==> exiting nubeam_step_child, mpi myidd =           21
  ==> exiting nubeam_step_child, mpi myidd =            9
  ==> exiting nubeam_step_child, mpi myidd =           17
  ==> exiting nubeam_step_child, mpi myidd =           18
  ==> exiting nubeam_step_child, mpi myidd =           31
 exited outptb2
 entering nbo_load
 exit nbo_load
  exit nbfinish... 
  ==> exiting nubeam_step_child, mpi myidd =            0
  nubeam_load_state... 
  nubeam_step: levmod_halo=            0
  trmpi_listener: service request "EXIT" on cpu#           16
  trmpi_listener: service request "EXIT" on cpu#           22
  trmpi_listener: service request "EXIT" on cpu#           18
  trmpi_listener: service request "EXIT" on cpu#           19
  trmpi_listener: service request "EXIT" on cpu#            7
  trmpi_listener: service request "EXIT" on cpu#           11
  trmpi_listener: service request "EXIT" on cpu#           13
  trmpi_listener: service request "EXIT" on cpu#           15
  trmpi_listener: service request "EXIT" on cpu#           14
  trmpi_listener: service request "EXIT" on cpu#            1
  trmpi_listener: service request "EXIT" on cpu#           25
  trmpi_listener: service request "EXIT" on cpu#           28
  trmpi_listener: service request "EXIT" on cpu#            3
  trmpi_listener: service request "EXIT" on cpu#           29
  trmpi_listener: service request "EXIT" on cpu#           21
  trmpi_listener: service request "EXIT" on cpu#            9
  trmpi_listener: service request "EXIT" on cpu#           17
  trmpi_listener: service request "EXIT" on cpu#           31
  trmpi_listener: service request "EXIT" on cpu#           23
  trmpi_listener: service request "EXIT" on cpu#           27
  trmpi_listener: service request "EXIT" on cpu#           12
  trmpi_listener: service request "EXIT" on cpu#           10
  trmpi_listener: service request "EXIT" on cpu#            6
  trmpi_listener: service request "EXIT" on cpu#            8
  trmpi_listener: service request "EXIT" on cpu#            5
  trmpi_listener: service request "EXIT" on cpu#           20
  trmpi_listener: service request "EXIT" on cpu#            2
  trmpi_listener: service request "EXIT" on cpu#            4
  trmpi_listener: service request "EXIT" on cpu#           26
  trmpi_listener: service request "EXIT" on cpu#           24
  trmpi_listener: service request "EXIT" on cpu#           30
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_UNDERFLOW_FLAG IEEE_DENORMAL
Note: The following floating-point exceptions are signalling: IEEE_DENORMAL
==>runtrx_r9:  TRANSP run successful
==========(runtrx_r9)======================
==========TRANSP output conversion======
date:  Fri Oct 2 11:14:42 PM EDT 2026 ( flux-node09.local )
==========(runtrx_r9)====runsite=pppl.gov=================
 srart tr_finish_mpi.pl false pppl.gov 204112S34 NSTU 
---------------> starting:  plotcon 204112S34 2026/10/02:23:14:42
 %PoPlot -- reading .PLN files

 %POPLT2-- PROCESSING RUN 204112S34  SHOT NO. 204112
  EXPECT   918 SCALAR FCNS,  1385 PROFILE FCNS OF TIME
  "MF" FILE RECORD SIZE =  20 WORDS (FLOATING PT)
  dmg_datbuf_expand call from dmgini_sized: isize=           0
204112S34MF.PLN size = 23M
 [mds_cache_disable:  MDS+ cache disabled.]
  dmg_datbuf_expand call from dmgini_sized: isize=           0
 (retry folding filename to lowercase)
  ...reading TF.PLN header data...
cdfcon: NETcdf file datestamp : Fri Oct  2 23:14:47 2026
 build_date: call getenv
 build_date: call ufopen xshare_build.dat
cdfcon: Transp common build date : Fri May  3 15:19:16 EDT 
  
 Define Dimensions          12
  
 define Scalar Fct         918
  
 Define Multi Graphs         528
  
 Write Profiles        1385
 X                               1           1          20
 XB                              2           2          20
 THETA                           3           7          80
 RMJSYM                          4          22          85
 RMAJM                           5          24          41
 MCINDX                          6          25         840
 IBOLO                           7          27          14
 ILIM                            8          33          33
 RGRID                           9        1137         129
 ZGRID                          10        1138         129
 PSIRZ                          11        1139       16641
 %dmgxot_spredm:  non-monotonic X axis:
  #increasing steps:  571767 avg & max steps:   1.3906E-03  7.8835E-02
  #decreasing steps:  360072 avg & max steps:   2.1975E-03  1.2082E-01
  #zero steps:             1
 B_FIELD                        12        1140       49923
 %dmgxot_spredm:  non-monotonic X axis:
  #increasing steps: 1629640 avg & max steps:   3.0810E-02  3.9461E+00
  #decreasing steps: 1165960 avg & max steps:   4.3019E-02  5.9232E+00
  #zero steps:            32
  
 read NF File :         919         918
  
 Write Multigraph:         528
  ...readback test of .CDF file...
        2833  variables,          14  dimensions          15  att
  ...header check SUCCESSFUL; now check data.
  ...check profile data...
plotcon:  CDF files in  /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34 
/scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34/204112S34.CDF
/scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34/204112S34PH.CDF
 %targz_pseq: no directory: 204112S34_replay (normal exit) 
 %targz_solv: in /scratch/shared/flux/tr_mscottod/transp_compute/NSTU/204112S34 on host flux-node09
 %targz_solv: no TGLF debug info found (normal exit) 
 %targz_solv: no TGLF debug info found (normal exit) 
--------------->plotcon:  normal exit. 2026/10/02:23:14:48
==>runtrx_r9:  TRANSP postprocessing OK
==========(runtrx_r9)======================
==========TRANSP add to MDSplus ========
date:  Fri Oct 2 11:14:48 PM EDT 2026 ( flux-node09.local )
==========(runtrx_r9)======================
 %mdsplot: call INITPL
 %mdsplot: call getenv
 %mdsplot: call ufopen xshare_build.dat
 %mdsplot:  MDSplus controls cleared, server set to local.
 mds_conopn: option =           4  2041121934  TRANSP_NSTU
  ...connecting to server:  TRANSPGRID.PPPL.GOV
 ...tcl("EDIT TRANSP_NSTU/SHOT=2041121934")
  dmg_datbuf_expand call from dmgini_sized: isize=           0
  ... reading NetCDF header data ...
  cdfhrd: size(time) =         2048
  cdfhrd: size(time3) =         2048
  MDS 1D Put OK
  MDS 2D Put OK
  MDS MG Put OK
 open 204112S34_nubeam_init.dat                                                                                                                                                                                                                       
  add_file:          208  lines -         132
 delete node .TRDATA
 tcl("write")
 ...mdsplot:  normal exit.
==========(runtrx_r9)======================
==========TRANSP finish and cleanup=====
date:  Fri Oct 2 11:15:23 PM EDT 2026 ( flux-node09.local )
==========(runtrx_r9)======================
%finishup -I- pppl.gov production run
%finishup:  copying TRANSP permanent output files to /u/tr_mscottod/transp/result/NSTU.16
acsort.py: No match.
mv 204112S34.CDF /u/tr_mscottod/transp/result/NSTU.16/204112S34.CDF
mv 204112S34ex.for /u/tr_mscottod/transp/result/NSTU.16/204112S34ex.for
mv 204112S34_mmm.nml /u/tr_mscottod/transp/result/NSTU.16/204112S34_mmm.nml
mv 204112S34_nubeam_init.dat /u/tr_mscottod/transp/result/NSTU.16/204112S34_nubeam_init.dat
mv 204112S34PH.CDF /u/tr_mscottod/transp/result/NSTU.16/204112S34PH.CDF
mv 204112S34_pt.nml /u/tr_mscottod/transp/result/NSTU.16/204112S34_pt.nml
mv 204112S34TR.DAT /u/tr_mscottod/transp/result/NSTU.16/204112S34TR.DAT
mv 204112S34TR.INF /u/tr_mscottod/transp/result/NSTU.16/204112S34TR.INF
%finishup:  retaining 204112S34tr.log
mv 204112S34TR.MSG /u/tr_mscottod/transp/result/NSTU.16/204112S34TR.MSG
mv 204112S34.yml /u/tr_mscottod/transp/result/NSTU.16/204112S34.yml
rm: No match.
%finishup -I- both the GRID and the PPPL flags are set.
/p/transpgrid/lqshare/204112S34_NSTU.qarc status 0
==========(runtrx_r9)======================
==========>runtrx_r9 normal exit<==========
date:  Fri Oct 2 11:15:27 PM EDT 2026 ( flux-node09.local )
==========>runtrx_r9 runsite = pppl.gov <======