Initializing AMReX (26.08-11-g5273b558c130)...
MPI initialized with 2 MPI processes
MPI initialized with thread support level 0
Initializing CUDA...
CUDA initialized with 1 device.
AMReX (26.08-11-g5273b558c130) initialized
Successfully read inputs file ... 
Using conservative advection update for tracer.
Successfully read inputs file ... 
NavierStokesBase::init_additional_state_types()::have_divu = 0
NavierStokesBase::init_additional_state_types()::have_dsdt = 0
NavierStokesBase::init_additional_state_types: num_state_type = 3
estTimeStep :: 
LEV = 0 UMAX = 1  0.04993977281  0  
estimated timestep: dt = 0.015625
Multiplying dt by init_shrink: dt = 0.015625
grid_places() time: 0.007236948 new finest: 1
Now regridding at level lbase = 0
grid_places() time: 0.006160098 new finest: 1
STEP = 0 TIME = 0 : REGRID  with lbase = 0
  Level 1   32 grids  286720 cells  13.671875 % of domain
            smallest grid: 8 x 8 x 8  biggest grid: 32 x 32 x 32

calling initialVelocityProject
done calling initialVelocityProject
estTimeStep :: 
LEV = 0 UMAX = 1.413884744  1.358916106  1.094692626  
estimated timestep: dt = 0.01105111295
Multiplying dt by init_shrink: dt = 0.01105111295
estTimeStep :: 
LEV = 1 UMAX = 1.71966304  1.490634699  1.204118065  
estimated timestep: dt = 0.004543041175
Multiplying dt by init_shrink: dt = 0.004543041175

post_init_press(): doing initial pressure iterations with dt = 0.004543041175

post_init_press(): iter = 0
Advancing grids at level 0 : starting time = 0 with dt = 0.004543041175
NavierStokes::advance(): before velocity update:
max(abs(u/v/w))  = 1.413884744  1.358916106  1.094692626
max(abs(gpx/gpy/gpz/p)) = 0  0  0  0
... predict edge velocities
... mac_projection
NavierStokesBase:mac_project(): lev: 0, time: 0.307362341
... advect velocities
... advect scalars
... update scalars
... update scalars
... update velocities 
NavierStokes::advance(): exiting.
max(abs(u/v/w))  = 1.407989133  1.370125424  1.063106806
max(abs(gpx/gpy/gpz/p)) = 0  0  0  0
Advancing grids at level 1 : starting time = 0 with dt = 0.004543041175
NavierStokes::advance(): before velocity update:
max(abs(u/v/w))  = 1.71966304  1.490634699  1.204118065
max(abs(gpx/gpy/gpz/p)) = 0  0  0  0
... predict edge velocities
... mac_projection
NavierStokesBase:mac_project(): lev: 1, time: 0.636258308
... advect velocities
... advect scalars
... update scalars
... update scalars
... update velocities 
NavierStokes::advance(): exiting.
max(abs(u/v/w))  = 1.606958999  1.496184497  1.094985102
max(abs(gpx/gpy/gpz/p)) = 0  0  0  0
After sync projection and avgDown:
max(abs(u/v/w))  = 1.419000037  1.383821459  1.097603039
max(abs(gpx/gpy/gpz/p)) = 49.95673586  27.52934967  23.56950201  1.540027087

post_init_press(): iter = 1
Advancing grids at level 0 : starting time = 0 with dt = 0.004543041175
NavierStokes::advance(): before velocity update:
max(abs(u/v/w))  = 1.413884744  1.358916106  1.094692626
max(abs(gpx/gpy/gpz/p)) = 49.95673586  27.52934967  23.56950201  1.540027087
... predict edge velocities
... mac_projection
NavierStokesBase:mac_project(): lev: 0, time: 0.305223198
... advect velocities
... advect scalars
... update scalars
... update scalars
... update velocities 
NavierStokes:velocity_diffusion_update(): lev: 0, time: 1.859999994e-07
NavierStokes::advance(): exiting.
max(abs(u/v/w))  = 1.40160602  1.360474196  1.166753314
max(abs(gpx/gpy/gpz/p)) = 49.95673586  27.52934967  23.56950201  1.540027087
Advancing grids at level 1 : starting time = 0 with dt = 0.004543041175
NavierStokes::advance(): before velocity update:
max(abs(u/v/w))  = 1.71966304  1.490634699  1.204118065
max(abs(gpx/gpy/gpz/p)) = 54.51358154  51.62160864  41.84755778  1.540027087
... predict edge velocities
... mac_projection
NavierStokesBase:mac_project(): lev: 1, time: 0.567149628
... advect velocities
... advect scalars
... update scalars
... update scalars
... update velocities 
NavierStokes:velocity_diffusion_update(): lev: 1, time: 1.780000005e-07
NavierStokes::advance(): exiting.
max(abs(u/v/w))  = 1.69850031  1.503275776  1.211423099
max(abs(gpx/gpy/gpz/p)) = 54.51358154  51.62160864  41.84755778  1.540027087
