Initializing CUDA...
CUDA initialized with 1 device.
AMReX (23.03-1-gb96f6e5bd13d) initialized
Calling Setup()
Calling ReadParameters()
reading extern runtime parameters ...
Calling VariableSetup()
Calling BCSetup()
Calling BaseStateGeometry::Init()
Calling Init()
Calling InitData()
initdata model_File = kepler_new_6.25e8.hybrid.hse.320
model file = kepler_new_6.25e8.hybrid.hse.320


reading initial model
320 points found in the initial model
6 variables found in the initial model
WARNING: variable not found: ash
WARNING: magnesium-24 not provided in inputs file
model file mapping (spherical base state)
dr of MAESTRO base state =                            781250.000000
dr of input file data =                               1562500.000000

maximum radius (cell-centered) of input model =       499218750.000000
 
setting r_cutoff to 239
radius at r_cutoff 187109375

Maximum HSE Error = 0.002311
(after putting initial model into base state arrays, and
for density < base_cutoff_density)


Writing plotfile wdconvect-amr_pltInitData after InitData
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.418435172
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Doing initial projection
Calling nodal solver
MLMG: Initial rhs               = 214086148.6
MLMG: Initial residual (resid0) = 214086148.6
MLMG: Final Iter. 5 resid, resid/bnorm = 0.005460712517, 2.550707999e-11
MLMG: Timers: Solve = 2.150494625 Iter = 2.102004769 Bottom = 0.000348919
Done calling nodal solver

Writing plotfile wdconvect-amr_pltafter_InitProj after InitProj
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.391381273
Call to firstdt for level 0 gives dt_lev = 0.005789736987
Multiplying dt_lev by init_shrink; dt_lev = 0.0005789736987
Call to firstdt for level 1 gives dt_lev = 0.002885750885
Multiplying dt_lev by init_shrink; dt_lev = 0.0002885750885
Minimum firstdt over all levels = 0.0002885750885
Doing initial divu iteration #1
Calling nodal solver
MLMG: Initial rhs               = 98262295.15
MLMG: Initial residual (resid0) = 98262295.15
MLMG: Final Iter. 1 resid, resid/bnorm = 6.20165053, 6.311322691e-08
MLMG: Timers: Solve = 0.48021447 Iter = 0.433583322 Bottom = 0.000132807
Done calling nodal solver
Call to estdt for level 0 gives dt_lev = 21.60061365
Call to estdt for level 1 gives dt_lev = 10.10291125
Minimum estdt over all levels = 10.10291125
Call to estdt at end of istep_divu_iter = 1 gives dt = 10.10291125
Multiplying dt by init_shrink; dt = 1.010291125
Ignoring this new dt since it's larger than the previous dt = 0.0002885750885
Doing initial divu iteration #2
Calling nodal solver
MLMG: Initial rhs               = 57185021.56
MLMG: Initial residual (resid0) = 57185021.56
MLMG: Final Iter. 1 resid, resid/bnorm = 0.1141292169, 1.995788648e-09
MLMG: Timers: Solve = 0.469916914 Iter = 0.425050044 Bottom = 0.000112055
Done calling nodal solver
Call to estdt for level 0 gives dt_lev = 21.60061365
Call to estdt for level 1 gives dt_lev = 10.47579657
Minimum estdt over all levels = 10.47579657
Call to estdt at end of istep_divu_iter = 2 gives dt = 10.47579657
Multiplying dt by init_shrink; dt = 1.047579657
Ignoring this new dt since it's larger than the previous dt = 0.0002885750885
Doing initial divu iteration #3
Calling nodal solver
MLMG: Initial rhs               = 36948393.66
MLMG: Initial residual (resid0) = 36948393.66
MLMG: Final Iter. 3 resid, resid/bnorm = 0.003112264979, 8.423275469e-11
MLMG: Timers: Solve = 1.300845345 Iter = 1.255937312 Bottom = 0.000242903
Done calling nodal solver
Call to estdt for level 0 gives dt_lev = 21.60061365
Call to estdt for level 1 gives dt_lev = 10.62248182
Minimum estdt over all levels = 10.62248182
Call to estdt at end of istep_divu_iter = 3 gives dt = 10.62248182
Multiplying dt by init_shrink; dt = 1.062248182
Ignoring this new dt since it's larger than the previous dt = 0.0002885750885

Writing plotfile wdconvect-amr_pltafter_DivuIter after final DivuIter
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.346529463
Doing initial pressure iteration #1

Timestep 0 starts with TIME = 0 DT = 0.0002885750885

Cell Count:
Level 0, 262144 cells
Level 1, 304128 cells
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
<<< STEP 1 : react state >>>
<<< STEP 2 : make w0 >>>
<<< STEP 3 : create MAC velocities >>>
MLMG: Initial rhs               = 300731019.7
MLMG: Initial residual (resid0) = 300731019.7
MLMG: Final Iter. 5 resid, resid/bnorm = 0.2849788219, 9.476203092e-10
MLMG: Timers: Solve = 0.046237499 Iter = 0.041191844 Bottom = 0.005054206
<<< STEP 4 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 4a: thermal conduct >>>
<<< STEP 5 : react state >>>
<<< STEP 6 : make new S and new w0 >>>
<<< STEP 7 : create MAC velocities >>>
MLMG: Initial rhs               = 300731020.2
MLMG: Initial residual (resid0) = 1282.174763
MLMG: Final Iter. 2 resid, resid/bnorm = 0.01771812088, 5.891683825e-11
MLMG: Timers: Solve = 0.025892083 Iter = 0.020987169 Bottom = 0.002134976
<<< STEP 8 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 8a: thermal conduct >>>
<<< STEP 9 : react state >>>
<<< STEP 10: make new S >>>
<<< STEP 11: update and project new velocity >>>
Calling nodal solver
MLMG: Initial rhs               = 16091212.77
MLMG: Initial residual (resid0) = 16091212.77
MLMG: Final Iter. 18 resid, resid/bnorm = 0.001556652132, 9.673926725e-11
MLMG: Timers: Solve = 7.33664624 Iter = 7.289804726 Bottom = 0.00100378
Done calling nodal solver

Timestep 0 ends with TIME = 0.0002885750885 DT = 0.0002885750885
Timing summary:
Advection  :1.631450893 seconds
MAC Proj   :0.158840641 seconds
Nodal Proj :7.463159287 seconds
Reactions  :0.171815135 seconds
Misc       :0.07287312 seconds
Base State :0.046250622 seconds
Time to advance time step: 9.498778407

Writing plotfile 0 after all initialization
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.34425867
Calling Evolve()

Timestep 1 starts with TIME = 0 DT = 0.0002885750885

Cell Count:
Level 0, 262144 cells
Level 1, 304128 cells
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
<<< STEP 1 : react state >>>
<<< STEP 2 : make w0 >>>
<<< STEP 3 : create MAC velocities >>>
MLMG: Initial rhs               = 300732039.4
MLMG: Initial residual (resid0) = 300732039.4
MLMG: Final Iter. 5 resid, resid/bnorm = 0.2849641144, 9.475681906e-10
MLMG: Timers: Solve = 0.046371075 Iter = 0.042158605 Bottom = 0.005018547
<<< STEP 4 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 4a: thermal conduct >>>
<<< STEP 5 : react state >>>
<<< STEP 6 : make new S and new w0 >>>
<<< STEP 7 : create MAC velocities >>>
MLMG: Initial rhs               = 300732039.2
MLMG: Initial residual (resid0) = 0.4613403517
MLMG: Final Iter. 1 resid, resid/bnorm = 0.02874185051, 9.557295787e-11
MLMG: Timers: Solve = 0.014208631 Iter = 0.009981935 Bottom = 0.000875464
<<< STEP 8 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 8a: thermal conduct >>>
<<< STEP 9 : react state >>>
<<< STEP 10: make new S >>>
<<< STEP 11: update and project new velocity >>>
Calling nodal solver
MLMG: Initial rhs               = 27933872.39
MLMG: Initial residual (resid0) = 27933872.39
MLMG: Final Iter. 5 resid, resid/bnorm = 0.001094802748, 3.919265948e-11
MLMG: Timers: Solve = 2.099453138 Iter = 2.053727836 Bottom = 0.000487248
Done calling nodal solver

Timestep 1 ends with TIME = 0.0002885750885 DT = 0.0002885750885
Timing summary:
Advection  :1.441892241 seconds
MAC Proj   :0.13668346 seconds
Nodal Proj :2.240067394 seconds
Reactions  :0.149975759 seconds
Misc       :0.062062396 seconds
Base State :0.040494498 seconds
Time to advance time step: 4.031263513

Writing plotfile 1
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.3401192
Call to estdt for level 0 gives dt_lev = 2.502711311
Call to estdt for level 1 gives dt_lev = 0.5259217834
Minimum estdt over all levels = 0.5259217834
Call to estdt at beginning of step 2 gives dt =0.5259217834
dt_growth factor limits the new dt = 0.0003174325974

Timestep 2 starts with TIME = 0.0002885750885 DT = 0.0003174325974

Cell Count:
Level 0, 262144 cells
Level 1, 304128 cells
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
<<< STEP 1 : react state >>>
<<< STEP 2 : make w0 >>>
<<< STEP 3 : create MAC velocities >>>
MLMG: Initial rhs               = 294777750.2
MLMG: Initial residual (resid0) = 294777750.2
MLMG: Final Iter. 5 resid, resid/bnorm = 0.2824536115, 9.581917608e-10
MLMG: Timers: Solve = 0.046460881 Iter = 0.042169915 Bottom = 0.005047053
<<< STEP 4 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 4a: thermal conduct >>>
<<< STEP 5 : react state >>>
<<< STEP 6 : make new S and new w0 >>>
<<< STEP 7 : create MAC velocities >>>
MLMG: Initial rhs               = 294777750
MLMG: Initial residual (resid0) = 0.4034976006
MLMG: Final Iter. 1 resid, resid/bnorm = 0.02507372783, 8.505977073e-11
MLMG: Timers: Solve = 0.013643106 Iter = 0.00950221 Bottom = 0.0008791
<<< STEP 8 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 8a: thermal conduct >>>
<<< STEP 9 : react state >>>
<<< STEP 10: make new S >>>
<<< STEP 11: update and project new velocity >>>
Calling nodal solver
MLMG: Initial rhs               = 21482439.4
MLMG: Initial residual (resid0) = 21482439.4
MLMG: Final Iter. 5 resid, resid/bnorm = 0.00126458313, 5.886590003e-11
MLMG: Timers: Solve = 2.122911419 Iter = 2.077009759 Bottom = 0.000534577
Done calling nodal solver

Timestep 2 ends with TIME = 0.0006060076859 DT = 0.0003174325974
Timing summary:
Advection  :1.474408503 seconds
MAC Proj   :0.134780426 seconds
Nodal Proj :2.247851144 seconds
Reactions  :0.149509696 seconds
Misc       :0.064623371 seconds
Base State :0.044686479 seconds
Time to advance time step: 4.071796821

Writing plotfile 2
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.332801901
Time to regrid: 0.05442481
Call to estdt for level 0 gives dt_lev = 3.210069119
Call to estdt for level 1 gives dt_lev = 0.6510223113
Minimum estdt over all levels = 0.6510223113
Call to estdt at beginning of step 3 gives dt =0.6510223113
dt_growth factor limits the new dt = 0.0003491758571

Timestep 3 starts with TIME = 0.0006060076859 DT = 0.0003491758571

Cell Count:
Level 0, 262144 cells
Level 1, 304128 cells
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
<<< STEP 1 : react state >>>
<<< STEP 2 : make w0 >>>
<<< STEP 3 : create MAC velocities >>>
MLMG: Initial rhs               = 292704984.1
MLMG: Initial residual (resid0) = 292704984.1
MLMG: Final Iter. 5 resid, resid/bnorm = 0.273159638, 9.332251001e-10
MLMG: Timers: Solve = 0.045859782 Iter = 0.04168924 Bottom = 0.005047483
<<< STEP 4 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 4a: thermal conduct >>>
<<< STEP 5 : react state >>>
<<< STEP 6 : make new S and new w0 >>>
<<< STEP 7 : create MAC velocities >>>
MLMG: Initial rhs               = 292704983.8
MLMG: Initial residual (resid0) = 0.3807753602
MLMG: Final Iter. 1 resid, resid/bnorm = 0.02360978279, 8.066067917e-11
MLMG: Timers: Solve = 0.013628842 Iter = 0.009249364 Bottom = 0.000883228
<<< STEP 8 : advect base >>>
            :  density_advance >>>
            :   tracer_advance >>>
            : enthalpy_advance >>>
<<< STEP 8a: thermal conduct >>>
<<< STEP 9 : react state >>>
<<< STEP 10: make new S >>>
<<< STEP 11: update and project new velocity >>>
Calling nodal solver
MLMG: Initial rhs               = 16800418.13
MLMG: Initial residual (resid0) = 16800418.13
MLMG: Final Iter. 5 resid, resid/bnorm = 0.001389111143, 8.268312921e-11
MLMG: Timers: Solve = 2.135806655 Iter = 2.090029546 Bottom = 0.000441166
Done calling nodal solver

Timestep 3 ends with TIME = 0.0009551835431 DT = 0.0003491758571
Timing summary:
Advection  :1.463010082 seconds
MAC Proj   :0.134318742 seconds
Nodal Proj :2.278284993 seconds
Reactions  :0.153299651 seconds
Misc       :0.062918942 seconds
Base State :0.049322317 seconds
Time to advance time step: 4.092467861

Writing plotfile 3
inner sponge: r_sp      , r_tp      : 151953125, 183203125
outer sponge: r_sp_outer, r_tp_outer: 183203125, 198828125
Time to write plotfile: 0.338586988

Total Time: 31.1820475
Unused ParmParse Variables:
  [TOP]::maestro.v(nvals = 1)  :: [1]
  [TOP]::amr.check_file(nvals = 1)  :: [wdconvect-amr_chk]
  [TOP]::amr.checkpoint_files_output(nvals = 1)  :: [0]

Total GPU global memory (MB): 12056
Free  GPU global memory (MB): 10127
[The         Arena] space allocated (MB): 9042
[The         Arena] space used      (MB): 0
[The  Device Arena] space allocated (MB): 8
[The  Device Arena] space used      (MB): 0
[The  Pinned Arena] space allocated (MB): 33
[The  Pinned Arena] space used      (MB): 0
AMReX (23.03-1-gb96f6e5bd13d) finalized