=====================================================================
 WARNING: using SINGLE PRECISION, you'd better know what you're doing!
 =====================================================================
 
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SVN: start.in,v         v. 1.1     (2025/03/28 16:06:31) brandenb
SVN: run.in,v           v. 1.1     (2025/03/28 16:06:31) brandenb
 initialize_mpicomm: enabled MPI
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 The verbose level is ip=          14  (ldebug= F )
 This is a 1-D run
 nxgrid, nygrid, nzgrid=        4608           1           1
 Lx, Ly, Lz=   7.00000000       1.00000000       1.00000000    
       Vbox=   7.00000000    
 rsnap: read snapshot var.dat in    1.6872300000000001E-003  seconds
 setup_slices: slice_position = p
 setup_slices: ix_loc,iy_loc,iz_loc, (video files) = 4 4 4                                                                           
 units_general: unit_velocity=   1.0000000000000000     
 units_general: unit_density=   1.0000000000000000     
 units_general: unit_length=   1.0000000000000000     
 units_general: unit_magnetic=   3.5449078083038330     
 units_eos: unit_temperature=   1.2027220775801925E-008
 units_eos: cp, lnTT0, cs0, pp0, Rgas=   1.00000000      -1.09861231      0.577350259      0.333333313       1.00000000    
 alpha_fine =   7.2973525643000000E-003
 sigma_Thomson_cgs =   6.6524587321600003E-025
 diffusion: div(D*grad(rho))
WARNING:  initialize_density: For diffusion energy/momentum correction should use lmassdiff_fix=T!
 initialize_density: no need to read initial stratification for lanti_shockdiffusion=F.
 select_eos_variable: Using rho and cs2
 viscous force: nu*del2v
sh: 1: Syntax error: Bad fd number
 pde: ENTER
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 duu_dt: SOLVE
Bcs for         ux,  x: <       a>, y: <       p>,  z: <       p>
Bcs for         uy,  x: <       s>, y: <       p>,  z: <       p>
Bcs for         uz,  x: <       s>, y: <       p>,  z: <       p>
 dlnrho_dt: SOLVE
Bcs for      lnrho,  x: <       s>, y: <       p>,  z: <       p>
 dlnrho_dt: diffrho=   9.99999975E-05

 ---it--------t-----------dt---------urms--------ekin--------ethm-------pdivum-------ruxm--------rhom----
      0   0.0000E+00  2.0000E-04  0.0000E+00  0.0000E+00  0.0000E+00  0.0000E+00  0.0000E+00  4.2146E-01
     50   1.0000E-02  2.0000E-04  1.1354E-02  6.3208E-05  0.0000E+00  3.6308E-03  3.1280E-04  4.2139E-01
    100   2.0000E-02  2.0000E-04  2.0185E-02  2.0791E-04  0.0000E+00  5.2984E-03  5.9754E-04  4.2125E-01
    150   3.0000E-02  2.0000E-04  2.6883E-02  3.8013E-04  0.0000E+00  5.8044E-03  8.6569E-04  4.2108E-01
    200   4.0000E-02  2.0000E-04  3.2313E-02  5.5921E-04  0.0000E+00  5.9294E-03  1.1287E-03  4.2090E-01
    250   5.0000E-02  2.0000E-04  3.6969E-02  7.3984E-04  0.0000E+00  5.9578E-03  1.3905E-03  4.2072E-01
    300   6.0000E-02  2.0000E-04  4.1108E-02  9.2086E-04  0.0000E+00  5.9646E-03  1.6519E-03  4.2054E-01
    350   7.0000E-02  2.0000E-04  4.4870E-02  1.1020E-03  0.0000E+00  5.9669E-03  1.9133E-03  4.2036E-01

 Simulation finished after          400  time-steps

 Writing final snapshot at time t =   8.0000002344604582E-002

 Wall clock time [hours] =  6.717E-04 (+/-  2.7778E-13)
 Wall clock time/timestep/meshpoint [microsec] =  1.311886    
 Wall clock time/timestep/local meshpoint [microsec] =  3.935657    
 Rhs wall clock time/timestep/local meshpoint [microsec] = 0.7790696    
 Maximum used memory per cpu [MBytes] =    27.969
 Maximum used memory [MBytes] =       83.117

real 3.06
user 7.23
sys 0.17