Initializing AMReX (26.09-7-g55dda725ff4d)... MPI initialized with 8 MPI processes MPI initialized with thread support level 3 AMReX (26.09-7-g55dda725ff4d) initialized Starting run at 05:22:44 UTC on 2026-09-03. Successfully read inputs file ... Castro git describe: 26.09 AMReX git describe: 26.09-7-g55dda725f Microphysics git describe: 26.09 reading extern runtime parameters ... 3 Species: C12 O16 Mg24 Successfully read inputs file ... grid_places() time: 0.000730687 new finest: 1 Now regridding at level lbase = 0 grid_places() time: 0.00561025 new finest: 2 STEP = 0 TIME = 0 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 Now regridding at level lbase = 0 grid_places() time: 0.007425743 new finest: 2 STEP = 0 TIME = 0 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 grid_places() time: 0.008740047 new finest: 2 INITIAL GRIDS Level 0 16 grids 65536 cells 100 % of domain smallest grid: 64 x 64 biggest grid: 64 x 64 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 PLOTFILE: file = dustcollapse-2d-poissonn_plt00000 Write plotfile time = 0.011538927 seconds [Level 0 step 1] ADVANCE at time 0 with dt = 1.135435554e-05 [Level 0 step 1] Advanced 65536 cells [Level 1 step 1] ADVANCE at time 0 with dt = 5.677177769e-06 [Level 1 step 1] Advanced 36800 cells [Level 2 step 1] ADVANCE at time 0 with dt = 2.838588884e-06 [Level 2 step 1] Advanced 75392 cells [Level 2 step 2] ADVANCE at time 2.838588884e-06 with dt = 2.838588884e-06 [Level 2 step 2] Advanced 75392 cells [Level 1 step 2] ADVANCE at time 5.677177769e-06 with dt = 5.677177769e-06 [Level 1 step 2] Advanced 36800 cells [Level 2 step 3] ADVANCE at time 5.677177769e-06 with dt = 2.838588884e-06 [Level 2 step 3] Advanced 75392 cells [Level 2 step 4] ADVANCE at time 8.515766653e-06 with dt = 2.838588884e-06 [Level 2 step 4] Advanced 75392 cells STEP = 1 TIME = 1.135435554e-05 DT = 1.135435554e-05 [STEP 1] Coarse TimeStep time: 0.550575442 [STEP 1] FAB kilobyte spread across MPI nodes: [18263 ... 21716] Now regridding at level lbase = 1 TIME = 1.135435554e-05 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 2] ADVANCE at time 1.135435554e-05 with dt = 1.192207331e-05 grid_places() time: 0.000630489 new finest: 2 [Level 0 step 2] Advanced 65536 cells [Level 1 step 3] ADVANCE at time 1.135435554e-05 with dt = 5.961036657e-06 [Level 1 step 3] Advanced 36800 cells [Level 2 step 5] ADVANCE at time 1.135435554e-05 with dt = 2.980518328e-06 [Level 2 step 5] Advanced 75392 cells [Level 2 step 6] ADVANCE at time 1.433487387e-05 with dt = 2.980518328e-06 [Level 2 step 6] Advanced 75392 cells [Level 1 step 4] ADVANCE at time 1.731539219e-05 with dt = 5.961036657e-06 [Level 1 step 4] Advanced 36800 cells [Level 2 step 7] ADVANCE at time 1.731539219e-05 with dt = 2.980518328e-06 [Level 2 step 7] Advanced 75392 cells [Level 2 step 8] ADVANCE at time 2.029591052e-05 with dt = 2.980518328e-06 [Level 2 step 8] Advanced 75392 cells STEP = 2 TIME = 2.327642885e-05 DT = 1.192207331e-05 [STEP 2] Coarse TimeStep time: 0.595347784 [STEP 2] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000919396 new finest: 2 STEP = 2 TIME = 2.327642885e-05 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 3] ADVANCE at time 2.327642885e-05 with dt = 1.251817698e-05 [Level 0 step 3] Advanced 65536 cells [Level 1 step 5] ADVANCE at time 2.327642885e-05 with dt = 6.25908849e-06 [Level 1 step 5] Advanced 36800 cells [Level 2 step 9] ADVANCE at time 2.327642885e-05 with dt = 3.129544245e-06 [Level 2 step 9] Advanced 75392 cells [Level 2 step 10] ADVANCE at time 2.64059731e-05 with dt = 3.129544245e-06 [Level 2 step 10] Advanced 75392 cells [Level 1 step 6] ADVANCE at time 2.953551734e-05 with dt = 6.25908849e-06 [Level 1 step 6] Advanced 36800 cells [Level 2 step 11] ADVANCE at time 2.953551734e-05 with dt = 3.129544245e-06 [Level 2 step 11] Advanced 75392 cells [Level 2 step 12] ADVANCE at time 3.266506159e-05 with dt = 3.129544245e-06 [Level 2 step 12] Advanced 75392 cells STEP = 3 TIME = 3.579460583e-05 DT = 1.251817698e-05 [STEP 3] Coarse TimeStep time: 0.643586228 [STEP 3] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 3.579460583e-05 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 4] ADVANCE at time 3.579460583e-05 with dt = 1.314408583e-05 grid_places() time: 0.000664665 new finest: 2 [Level 0 step 4] Advanced 65536 cells [Level 1 step 7] ADVANCE at time 3.579460583e-05 with dt = 6.572042914e-06 [Level 1 step 7] Advanced 36800 cells [Level 2 step 13] ADVANCE at time 3.579460583e-05 with dt = 3.286021457e-06 [Level 2 step 13] Advanced 75392 cells [Level 2 step 14] ADVANCE at time 3.908062729e-05 with dt = 3.286021457e-06 [Level 2 step 14] Advanced 75392 cells [Level 1 step 8] ADVANCE at time 4.236664874e-05 with dt = 6.572042914e-06 [Level 1 step 8] Advanced 36800 cells [Level 2 step 15] ADVANCE at time 4.236664874e-05 with dt = 3.286021457e-06 [Level 2 step 15] Advanced 75392 cells [Level 2 step 16] ADVANCE at time 4.56526702e-05 with dt = 3.286021457e-06 [Level 2 step 16] Advanced 75392 cells STEP = 4 TIME = 4.893869166e-05 DT = 1.314408583e-05 [STEP 4] Coarse TimeStep time: 0.567305753 [STEP 4] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000867686 new finest: 2 STEP = 4 TIME = 4.893869166e-05 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 5] ADVANCE at time 4.893869166e-05 with dt = 1.380129012e-05 [Level 0 step 5] Advanced 65536 cells [Level 1 step 9] ADVANCE at time 4.893869166e-05 with dt = 6.90064506e-06 [Level 1 step 9] Advanced 36800 cells [Level 2 step 17] ADVANCE at time 4.893869166e-05 with dt = 3.45032253e-06 [Level 2 step 17] Advanced 75392 cells [Level 2 step 18] ADVANCE at time 5.238901419e-05 with dt = 3.45032253e-06 [Level 2 step 18] Advanced 75392 cells [Level 1 step 10] ADVANCE at time 5.583933672e-05 with dt = 6.90064506e-06 [Level 1 step 10] Advanced 36800 cells [Level 2 step 19] ADVANCE at time 5.583933672e-05 with dt = 3.45032253e-06 [Level 2 step 19] Advanced 75392 cells [Level 2 step 20] ADVANCE at time 5.928965925e-05 with dt = 3.45032253e-06 [Level 2 step 20] Advanced 75392 cells STEP = 5 TIME = 6.273998178e-05 DT = 1.380129012e-05 [STEP 5] Coarse TimeStep time: 0.568361971 [STEP 5] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 6.273998178e-05 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 6] ADVANCE at time 6.273998178e-05 with dt = 1.449135463e-05 grid_places() time: 0.000614076 new finest: 2 [Level 0 step 6] Advanced 65536 cells [Level 1 step 11] ADVANCE at time 6.273998178e-05 with dt = 7.245677313e-06 [Level 1 step 11] Advanced 36800 cells [Level 2 step 21] ADVANCE at time 6.273998178e-05 with dt = 3.622838657e-06 [Level 2 step 21] Advanced 75392 cells [Level 2 step 22] ADVANCE at time 6.636282044e-05 with dt = 3.622838657e-06 [Level 2 step 22] Advanced 75392 cells [Level 1 step 12] ADVANCE at time 6.998565909e-05 with dt = 7.245677313e-06 [Level 1 step 12] Advanced 36800 cells [Level 2 step 23] ADVANCE at time 6.998565909e-05 with dt = 3.622838657e-06 [Level 2 step 23] Advanced 75392 cells [Level 2 step 24] ADVANCE at time 7.360849775e-05 with dt = 3.622838657e-06 [Level 2 step 24] Advanced 75392 cells STEP = 6 TIME = 7.723133641e-05 DT = 1.449135463e-05 [STEP 6] Coarse TimeStep time: 0.580644401 [STEP 6] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.001100549 new finest: 2 STEP = 6 TIME = 7.723133641e-05 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 7] ADVANCE at time 7.723133641e-05 with dt = 1.521592236e-05 [Level 0 step 7] Advanced 65536 cells [Level 1 step 13] ADVANCE at time 7.723133641e-05 with dt = 7.607961179e-06 [Level 1 step 13] Advanced 36800 cells [Level 2 step 25] ADVANCE at time 7.723133641e-05 with dt = 3.803980589e-06 [Level 2 step 25] Advanced 75392 cells [Level 2 step 26] ADVANCE at time 8.103531699e-05 with dt = 3.803980589e-06 [Level 2 step 26] Advanced 75392 cells [Level 1 step 14] ADVANCE at time 8.483929758e-05 with dt = 7.607961179e-06 [Level 1 step 14] Advanced 36800 cells [Level 2 step 27] ADVANCE at time 8.483929758e-05 with dt = 3.803980589e-06 [Level 2 step 27] Advanced 75392 cells [Level 2 step 28] ADVANCE at time 8.864327817e-05 with dt = 3.803980589e-06 [Level 2 step 28] Advanced 75392 cells STEP = 7 TIME = 9.244725876e-05 DT = 1.521592236e-05 [STEP 7] Coarse TimeStep time: 0.581947082 [STEP 7] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 9.244725876e-05 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 8] ADVANCE at time 9.244725876e-05 with dt = 1.597671848e-05 grid_places() time: 0.000629347 new finest: 2 [Level 0 step 8] Advanced 65536 cells [Level 1 step 15] ADVANCE at time 9.244725876e-05 with dt = 7.988359238e-06 [Level 1 step 15] Advanced 36800 cells [Level 2 step 29] ADVANCE at time 9.244725876e-05 with dt = 3.994179619e-06 [Level 2 step 29] Advanced 75392 cells [Level 2 step 30] ADVANCE at time 9.644143838e-05 with dt = 3.994179619e-06 [Level 2 step 30] Advanced 75392 cells [Level 1 step 16] ADVANCE at time 0.000100435618 with dt = 7.988359238e-06 [Level 1 step 16] Advanced 36800 cells [Level 2 step 31] ADVANCE at time 0.000100435618 with dt = 3.994179619e-06 [Level 2 step 31] Advanced 75392 cells [Level 2 step 32] ADVANCE at time 0.0001044297976 with dt = 3.994179619e-06 [Level 2 step 32] Advanced 75392 cells STEP = 8 TIME = 0.0001084239772 DT = 1.597671848e-05 [STEP 8] Coarse TimeStep time: 0.566133744 [STEP 8] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000853567 new finest: 2 STEP = 8 TIME = 0.0001084239772 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 9] ADVANCE at time 0.0001084239772 with dt = 1.67755544e-05 [Level 0 step 9] Advanced 65536 cells [Level 1 step 17] ADVANCE at time 0.0001084239772 with dt = 8.387777199e-06 [Level 1 step 17] Advanced 36800 cells [Level 2 step 33] ADVANCE at time 0.0001084239772 with dt = 4.1938886e-06 [Level 2 step 33] Advanced 75392 cells [Level 2 step 34] ADVANCE at time 0.0001126178658 with dt = 4.1938886e-06 [Level 2 step 34] Advanced 75392 cells [Level 1 step 18] ADVANCE at time 0.0001168117544 with dt = 8.387777199e-06 [Level 1 step 18] Advanced 36800 cells [Level 2 step 35] ADVANCE at time 0.0001168117544 with dt = 4.1938886e-06 [Level 2 step 35] Advanced 75392 cells [Level 2 step 36] ADVANCE at time 0.000121005643 with dt = 4.1938886e-06 [Level 2 step 36] Advanced 75392 cells STEP = 9 TIME = 0.0001251995316 DT = 1.67755544e-05 [STEP 9] Coarse TimeStep time: 0.572921614 [STEP 9] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.0001251995316 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 10] ADVANCE at time 0.0001251995316 with dt = 1.761433212e-05 grid_places() time: 0.000602343 new finest: 2 [Level 0 step 10] Advanced 65536 cells [Level 1 step 19] ADVANCE at time 0.0001251995316 with dt = 8.807166059e-06 [Level 1 step 19] Advanced 36800 cells [Level 2 step 37] ADVANCE at time 0.0001251995316 with dt = 4.40358303e-06 [Level 2 step 37] Advanced 75392 cells [Level 2 step 38] ADVANCE at time 0.0001296031147 with dt = 4.40358303e-06 [Level 2 step 38] Advanced 75392 cells [Level 1 step 20] ADVANCE at time 0.0001340066977 with dt = 8.807166059e-06 [Level 1 step 20] Advanced 36800 cells [Level 2 step 39] ADVANCE at time 0.0001340066977 with dt = 4.40358303e-06 [Level 2 step 39] Advanced 75392 cells [Level 2 step 40] ADVANCE at time 0.0001384102807 with dt = 4.40358303e-06 [Level 2 step 40] Advanced 75392 cells STEP = 10 TIME = 0.0001428138638 DT = 1.761433212e-05 [STEP 10] Coarse TimeStep time: 0.566415707 [STEP 10] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.00087917 new finest: 2 STEP = 10 TIME = 0.0001428138638 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 11] ADVANCE at time 0.0001428138638 with dt = 1.849504872e-05 [Level 0 step 11] Advanced 65536 cells [Level 1 step 21] ADVANCE at time 0.0001428138638 with dt = 9.247524362e-06 [Level 1 step 21] Advanced 36800 cells [Level 2 step 41] ADVANCE at time 0.0001428138638 with dt = 4.623762181e-06 [Level 2 step 41] Advanced 75392 cells [Level 2 step 42] ADVANCE at time 0.0001474376259 with dt = 4.623762181e-06 [Level 2 step 42] Advanced 75392 cells [Level 1 step 22] ADVANCE at time 0.0001520613881 with dt = 9.247524362e-06 [Level 1 step 22] Advanced 36800 cells [Level 2 step 43] ADVANCE at time 0.0001520613881 with dt = 4.623762181e-06 [Level 2 step 43] Advanced 75392 cells [Level 2 step 44] ADVANCE at time 0.0001566851503 with dt = 4.623762181e-06 [Level 2 step 44] Advanced 75392 cells STEP = 11 TIME = 0.0001613089125 DT = 1.849504872e-05 [STEP 11] Coarse TimeStep time: 0.58551202 [STEP 11] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.0001613089125 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 12] ADVANCE at time 0.0001613089125 with dt = 1.941980116e-05 grid_places() time: 0.000604956 new finest: 2 [Level 0 step 12] Advanced 65536 cells [Level 1 step 23] ADVANCE at time 0.0001613089125 with dt = 9.709900581e-06 [Level 1 step 23] Advanced 36800 cells [Level 2 step 45] ADVANCE at time 0.0001613089125 with dt = 4.85495029e-06 [Level 2 step 45] Advanced 75392 cells [Level 2 step 46] ADVANCE at time 0.0001661638628 with dt = 4.85495029e-06 [Level 2 step 46] Advanced 75392 cells [Level 1 step 24] ADVANCE at time 0.0001710188131 with dt = 9.709900581e-06 [Level 1 step 24] Advanced 36800 cells [Level 2 step 47] ADVANCE at time 0.0001710188131 with dt = 4.85495029e-06 [Level 2 step 47] Advanced 75392 cells [Level 2 step 48] ADVANCE at time 0.0001758737634 with dt = 4.85495029e-06 [Level 2 step 48] Advanced 75392 cells STEP = 12 TIME = 0.0001807287136 DT = 1.941980116e-05 [STEP 12] Coarse TimeStep time: 0.572662241 [STEP 12] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000830514 new finest: 2 STEP = 12 TIME = 0.0001807287136 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 13] ADVANCE at time 0.0001807287136 with dt = 2.039079122e-05 [Level 0 step 13] Advanced 65536 cells [Level 1 step 25] ADVANCE at time 0.0001807287136 with dt = 1.019539561e-05 [Level 1 step 25] Advanced 36800 cells [Level 2 step 49] ADVANCE at time 0.0001807287136 with dt = 5.097697805e-06 [Level 2 step 49] Advanced 75392 cells [Level 2 step 50] ADVANCE at time 0.0001858264114 with dt = 5.097697805e-06 [Level 2 step 50] Advanced 75392 cells [Level 1 step 26] ADVANCE at time 0.0001909241093 with dt = 1.019539561e-05 [Level 1 step 26] Advanced 36800 cells [Level 2 step 51] ADVANCE at time 0.0001909241093 with dt = 5.097697805e-06 [Level 2 step 51] Advanced 75392 cells [Level 2 step 52] ADVANCE at time 0.0001960218071 with dt = 5.097697805e-06 [Level 2 step 52] Advanced 75392 cells STEP = 13 TIME = 0.0002011195049 DT = 2.039079122e-05 [STEP 13] Coarse TimeStep time: 0.583490764 [STEP 13] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.0002011195049 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 14] ADVANCE at time 0.0002011195049 with dt = 2.141033078e-05 grid_places() time: 0.000636177 new finest: 2 [Level 0 step 14] Advanced 65536 cells [Level 1 step 27] ADVANCE at time 0.0002011195049 with dt = 1.070516539e-05 [Level 1 step 27] Advanced 36800 cells [Level 2 step 53] ADVANCE at time 0.0002011195049 with dt = 5.352582695e-06 [Level 2 step 53] Advanced 75392 cells [Level 2 step 54] ADVANCE at time 0.0002064720876 with dt = 5.352582695e-06 [Level 2 step 54] Advanced 75392 cells [Level 1 step 28] ADVANCE at time 0.0002118246703 with dt = 1.070516539e-05 [Level 1 step 28] Advanced 36800 cells [Level 2 step 55] ADVANCE at time 0.0002118246703 with dt = 5.352582695e-06 [Level 2 step 55] Advanced 75392 cells [Level 2 step 56] ADVANCE at time 0.0002171772529 with dt = 5.352582695e-06 [Level 2 step 56] Advanced 75392 cells STEP = 14 TIME = 0.0002225298356 DT = 2.141033078e-05 [STEP 14] Coarse TimeStep time: 0.584154681 [STEP 14] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000869722 new finest: 2 STEP = 14 TIME = 0.0002225298356 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 15] ADVANCE at time 0.0002225298356 with dt = 2.248084732e-05 [Level 0 step 15] Advanced 65536 cells [Level 1 step 29] ADVANCE at time 0.0002225298356 with dt = 1.124042366e-05 [Level 1 step 29] Advanced 36800 cells [Level 2 step 57] ADVANCE at time 0.0002225298356 with dt = 5.62021183e-06 [Level 2 step 57] Advanced 75392 cells [Level 2 step 58] ADVANCE at time 0.0002281500475 with dt = 5.62021183e-06 [Level 2 step 58] Advanced 75392 cells [Level 1 step 30] ADVANCE at time 0.0002337702593 with dt = 1.124042366e-05 [Level 1 step 30] Advanced 36800 cells [Level 2 step 59] ADVANCE at time 0.0002337702593 with dt = 5.62021183e-06 [Level 2 step 59] Advanced 75392 cells [Level 2 step 60] ADVANCE at time 0.0002393904711 with dt = 5.62021183e-06 [Level 2 step 60] Advanced 75392 cells STEP = 15 TIME = 0.000245010683 DT = 2.248084732e-05 [STEP 15] Coarse TimeStep time: 0.579706546 [STEP 15] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.000245010683 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 16] ADVANCE at time 0.000245010683 with dt = 2.360488969e-05 grid_places() time: 0.000627522 new finest: 2 [Level 0 step 16] Advanced 65536 cells [Level 1 step 31] ADVANCE at time 0.000245010683 with dt = 1.180244484e-05 [Level 1 step 31] Advanced 36800 cells [Level 2 step 61] ADVANCE at time 0.000245010683 with dt = 5.901222421e-06 [Level 2 step 61] Advanced 75392 cells [Level 2 step 62] ADVANCE at time 0.0002509119054 with dt = 5.901222421e-06 [Level 2 step 62] Advanced 75392 cells [Level 1 step 32] ADVANCE at time 0.0002568131278 with dt = 1.180244484e-05 [Level 1 step 32] Advanced 36800 cells [Level 2 step 63] ADVANCE at time 0.0002568131278 with dt = 5.901222421e-06 [Level 2 step 63] Advanced 75392 cells [Level 2 step 64] ADVANCE at time 0.0002627143502 with dt = 5.901222421e-06 [Level 2 step 64] Advanced 75392 cells STEP = 16 TIME = 0.0002686155726 DT = 2.360488969e-05 [STEP 16] Coarse TimeStep time: 0.571819378 [STEP 16] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000864665 new finest: 2 STEP = 16 TIME = 0.0002686155726 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 17] ADVANCE at time 0.0002686155726 with dt = 2.478513417e-05 [Level 0 step 17] Advanced 65536 cells [Level 1 step 33] ADVANCE at time 0.0002686155726 with dt = 1.239256708e-05 [Level 1 step 33] Advanced 36800 cells [Level 2 step 65] ADVANCE at time 0.0002686155726 with dt = 6.196283542e-06 [Level 2 step 65] Advanced 75392 cells [Level 2 step 66] ADVANCE at time 0.0002748118562 with dt = 6.196283542e-06 [Level 2 step 66] Advanced 75392 cells [Level 1 step 34] ADVANCE at time 0.0002810081397 with dt = 1.239256708e-05 [Level 1 step 34] Advanced 36800 cells [Level 2 step 67] ADVANCE at time 0.0002810081397 with dt = 6.196283542e-06 [Level 2 step 67] Advanced 75392 cells [Level 2 step 68] ADVANCE at time 0.0002872044233 with dt = 6.196283542e-06 [Level 2 step 68] Advanced 75392 cells STEP = 17 TIME = 0.0002934007068 DT = 2.478513417e-05 [STEP 17] Coarse TimeStep time: 0.577241506 [STEP 17] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.0002934007068 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 18] ADVANCE at time 0.0002934007068 with dt = 2.602439088e-05 grid_places() time: 0.000632155 new finest: 2 [Level 0 step 18] Advanced 65536 cells [Level 1 step 35] ADVANCE at time 0.0002934007068 with dt = 1.301219544e-05 [Level 1 step 35] Advanced 36800 cells [Level 2 step 69] ADVANCE at time 0.0002934007068 with dt = 6.506097719e-06 [Level 2 step 69] Advanced 75392 cells [Level 2 step 70] ADVANCE at time 0.0002999068045 with dt = 6.506097719e-06 [Level 2 step 70] Advanced 75392 cells [Level 1 step 36] ADVANCE at time 0.0003064129023 with dt = 1.301219544e-05 [Level 1 step 36] Advanced 36800 cells [Level 2 step 71] ADVANCE at time 0.0003064129023 with dt = 6.506097719e-06 [Level 2 step 71] Advanced 75392 cells [Level 2 step 72] ADVANCE at time 0.000312919 with dt = 6.506097719e-06 [Level 2 step 72] Advanced 75392 cells STEP = 18 TIME = 0.0003194250977 DT = 2.602439088e-05 [STEP 18] Coarse TimeStep time: 0.57366879 [STEP 18] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 0 grid_places() time: 0.000878474 new finest: 2 STEP = 18 TIME = 0.0003194250977 : REGRID with lbase = 0 Level 1 25 grids 36800 cells 14.03808594 % of domain smallest grid: 8 x 8 biggest grid: 40 x 64 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 19] ADVANCE at time 0.0003194250977 with dt = 2.732561042e-05 [Level 0 step 19] Advanced 65536 cells [Level 1 step 37] ADVANCE at time 0.0003194250977 with dt = 1.366280521e-05 [Level 1 step 37] Advanced 36800 cells [Level 2 step 73] ADVANCE at time 0.0003194250977 with dt = 6.831402605e-06 [Level 2 step 73] Advanced 75392 cells [Level 2 step 74] ADVANCE at time 0.0003262565003 with dt = 6.831402605e-06 [Level 2 step 74] Advanced 75392 cells [Level 1 step 38] ADVANCE at time 0.0003330879029 with dt = 1.366280521e-05 [Level 1 step 38] Advanced 36800 cells [Level 2 step 75] ADVANCE at time 0.0003330879029 with dt = 6.831402605e-06 [Level 2 step 75] Advanced 75392 cells [Level 2 step 76] ADVANCE at time 0.0003399193055 with dt = 6.831402605e-06 [Level 2 step 76] Advanced 75392 cells STEP = 19 TIME = 0.0003467507081 DT = 2.732561042e-05 [STEP 19] Coarse TimeStep time: 0.574692201 [STEP 19] FAB kilobyte spread across MPI nodes: [18425 ... 22701] Now regridding at level lbase = 1 TIME = 0.0003467507081 : REGRID with lbase = 1 Level 2 58 grids 75392 cells 7.189941406 % of domain smallest grid: 8 x 8 biggest grid: 56 x 56 [Level 0 step 20] ADVANCE at time 0.0003467507081 with dt = 2.869189094e-05 grid_places() time: 0.000605466 new finest: 2 [Level 0 step 20] Advanced 65536 cells [Level 1 step 39] ADVANCE at time 0.0003467507081 with dt = 1.434594547e-05 [Level 1 step 39] Advanced 36800 cells [Level 2 step 77] ADVANCE at time 0.0003467507081 with dt = 7.172972736e-06 [Level 2 step 77] Advanced 75392 cells [Level 2 step 78] ADVANCE at time 0.0003539236808 with dt = 7.172972736e-06 [Level 2 step 78] Advanced 75392 cells [Level 1 step 40] ADVANCE at time 0.0003610966536 with dt = 1.434594547e-05 [Level 1 step 40] Advanced 36800 cells [Level 2 step 79] ADVANCE at time 0.0003610966536 with dt = 7.172972736e-06 [Level 2 step 79] Advanced 75392 cells [Level 2 step 80] ADVANCE at time 0.0003682696263 with dt = 7.172972736e-06 [Level 2 step 80] Advanced 75392 cells STEP = 20 TIME = 0.0003754425991 DT = 2.869189094e-05 [STEP 20] Coarse TimeStep time: 0.576196771 [STEP 20] FAB kilobyte spread across MPI nodes: [18425 ... 22701] PLOTFILE: file = dustcollapse-2d-poissonn_plt00020 Write plotfile time = 0.014583145 seconds Ending run at 05:22:56 UTC on 2026-09-03. Run time = 11.76407863 Run time without initialization = 11.58945219 Average number of zones advanced per microsecond: 0.761 Average number of zones advanced per microsecond per rank: 0.095 TinyProfiler total time across processes [min...avg...max]: 11.7631 ... 11.7637 ... 11.7641 -------------------------------------------------------------------------------------------- Name NCalls Excl. Min Excl. Avg Excl. Max Max % -------------------------------------------------------------------------------------------- Castro::construct_ctu_hydro_source() 140 1.9678 2.3790 2.6316 22.37% MLCGSolver::ParallelAllReduce 243443 1.539 1.78 2.137 18.16% FillBoundary_finish() 156398 0.5465 0.7477 1.009 8.58% check_for_negative_density() 140 0.3222 0.5822 0.9949 8.46% FillBoundary_nowait() 156398 0.5076 0.8243 0.9796 8.33% MLPoisson::Fsmooth() 54976 0.7925 0.8832 0.9786 8.32% FabArray::ParallelCopy_finish() 21259 0.3525 0.5231 0.7592 6.45% MLCellLinOp::applyBC() 163791 0.2338 0.3279 0.4133 3.51% MLPoisson::Fapply() 107414 0.2497 0.2841 0.3075 2.61% FabArray::ParallelCopy_nowait() 21259 0.1732 0.2061 0.2298 1.95% amrex::Dot() 193234 0.1563 0.1837 0.1999 1.70% FabArray::setVal() 26094 0.1428 0.1785 0.1993 1.69% Castro::estTimeStep() 308 0.1118 0.1492 0.1879 1.60% Castro::reset_internal_energy(Fab) 5919 0.1389 0.1668 0.1877 1.60% Castro::normalize_species() 1182 0.1064 0.1218 0.1314 1.12% FabArray::norminf() 100600 0.1061 0.1208 0.1309 1.11% MLPoisson::normalize() 98037 0.0953 0.1085 0.115 0.98% amrex::Copy() 9904 0.08591 0.1026 0.1134 0.96% MLCGSolver::bicgstab 1420 0.09305 0.1043 0.1114 0.95% amrex::average_down 8093 0.07388 0.08639 0.09757 0.83% MLMG::ResNormInf() 2383 0.02947 0.05661 0.08992 0.76% MLCellLinOp::defineAuxData() 360 0.04879 0.06708 0.0866 0.74% Castro::construct_new_gravity_source() 260 0.06442 0.07445 0.08156 0.69% FillPatchInterp(MF) 728 0.07822 0.0793 0.08028 0.68% MLMG::solve() 360 0.01151 0.03664 0.07541 0.64% Gravity::actual_solve_with_mlmg() 360 0.03413 0.0504 0.07249 0.62% Castro::computeTemp() 1189 0.05452 0.06444 0.07073 0.60% FabArray::Saxpy() 1180 0.05322 0.06095 0.06553 0.56% FillPatchIterator::Initialize 889 0.05246 0.05813 0.06493 0.55% MLMG::addInterpCorrection() 6101 0.05126 0.05678 0.06284 0.53% Castro::initData() 7 0.04118 0.05022 0.05897 0.50% MLMG::prepareForSolve() 360 0.03711 0.04669 0.05716 0.49% FabArray::Saxpy_Saxpy() 48788 0.03773 0.0478 0.05625 0.48% amrex::Add() 6281 0.03641 0.04516 0.05208 0.44% FabArray::Saypy_Saxpy() 47828 0.03514 0.04431 0.05161 0.44% FabArray::FillBoundary() 156398 0.0469 0.04834 0.04995 0.42% FillPatchSingleLevel 1617 0.02982 0.0412 0.04925 0.42% FabArray::Saxpy_Xpay() 47368 0.03155 0.03984 0.04586 0.39% FabArrayBase::CPC::define() 4099 0.03028 0.03663 0.04125 0.35% FillPatchTwoLevels 756 0.03486 0.03854 0.04095 0.35% amrex::average_down_w_geom 248 0.02897 0.03358 0.03917 0.33% FluxRegister::Reflux() 960 0.02641 0.03251 0.03724 0.32% BndryData::define() 540 0.01721 0.02596 0.03672 0.31% Castro::reflux() 60 0.02473 0.03184 0.03587 0.30% MLCellLinOp::apply() 107414 0.03229 0.03314 0.03438 0.29% FabArray::Xpay() 10797 0.02505 0.02933 0.03242 0.28% FabArrayBase::getCPC() 29651 0.02895 0.0303 0.0314 0.27% Castro::initialize_do_advance() 140 0.02335 0.02781 0.03125 0.27% FabArrayBase::getFB() 156398 0.02457 0.02594 0.03108 0.26% Castro::initMFs() 35 0.0226 0.02625 0.03056 0.26% Gravity::fill_multipole_BCs() 70 0.02556 0.02731 0.02949 0.25% Castro::construct_new_source() 1300 0.02425 0.02702 0.02875 0.24% MLCellLinOp::reflux() 951 0.019 0.02197 0.02722 0.23% MLCellLinOp::updateSolBC() 871 0.01112 0.01631 0.02299 0.20% Castro::enforce_min_density() 1182 0.01798 0.02047 0.02241 0.19% MLMG::interpCorrection_1 771 0.01537 0.01821 0.02211 0.19% Gravity::get_new_grav_vector() 263 0.01423 0.01719 0.02164 0.18% MultiFab::contains_nan() 280 0.01607 0.01927 0.02161 0.18% Amr::writePlotFile() 2 0.006158 0.01882 0.02134 0.18% VisMF::Write(FabArray) 6 0.005857 0.008311 0.02069 0.18% MLCellLinOp::updateCorBC() 771 0.01001 0.01482 0.02054 0.17% Castro::FluxRegCrseInit 140 0.014 0.01745 0.02042 0.17% MLCellLinOp::setLevelBC() 450 0.009017 0.01238 0.01665 0.14% MLCellLinOp::defineBC() 360 0.009354 0.01172 0.01547 0.13% Castro::initialize_advance() 140 0.01011 0.013 0.01506 0.13% Castro::construct_old_source() 700 0.01321 0.01409 0.01498 0.13% MLLinOp::defineGrids() 360 0.01144 0.01254 0.0149 0.13% StateData::define() 140 0.01057 0.01254 0.01457 0.12% MLPoisson::FFlux() 7882 0.007792 0.01184 0.01436 0.12% MLCellLinOp::smooth() 15164 0.01269 0.01317 0.01363 0.12% Castro::FluxRegFineAdd() 140 0.005735 0.008722 0.01223 0.10% Gravity::get_old_grav_vector() 140 0.006592 0.008498 0.01197 0.10% Castro::swap_state_time_levels() 140 0.008213 0.01022 0.01192 0.10% MLCellLinOp::compGrad() 450 0.007912 0.00941 0.01092 0.09% Castro::buildMetrics() 35 0.006823 0.008036 0.01075 0.09% Castro::construct_old_gravity_source() 140 0.007333 0.009392 0.01064 0.09% MultiFab::max() 90 0.004936 0.006634 0.01046 0.09% FPinfo::FPinfo() 7 0.001102 0.0056 0.01042 0.09% Amr::regrid() 21 0.004704 0.006909 0.009598 0.08% Gravity::solve_for_phi() 280 0.006052 0.007583 0.009013 0.08% FabArray::setVal(val, thecmd, scomp, ncomp) 8420 0.003937 0.007057 0.008828 0.08% Gravity::gravity_sync() 60 0.005092 0.006401 0.007519 0.06% AmrMesh::MakeNewGrids() 23 0.003471 0.005958 0.006698 0.06% FabArray::ParallelCopy() 13691 0.005861 0.006232 0.006514 0.06% AmrLevel::FillPatch() 889 0.003703 0.004636 0.005777 0.05% Castro::Castro() 35 0.004356 0.005051 0.005523 0.05% Amr::timeStep() 140 0.002147 0.002921 0.00519 0.04% average_down_faces 360 0.00237 0.00307 0.004108 0.03% Gravity::GetCrsePhi() 250 0.002758 0.003349 0.004005 0.03% Gravity::update_max_rhs() 30 0.002999 0.003608 0.003983 0.03% MLMG::mgVcycle() 3385 0.003293 0.003464 0.003735 0.03% Amr::coarseTimeStep() 20 0.001059 0.00234 0.003717 0.03% MLCellLinOp::correctionResidual() 7643 0.003197 0.003357 0.003504 0.03% MLMG::actualBottomSolve() 1843 0.00229 0.002563 0.003254 0.03% Castro::construct_old_gravity() 140 0.002353 0.002679 0.003134 0.03% Gravity::multilevel_solve_for_new_phi() 20 0.001503 0.002163 0.002891 0.02% Gravity::average_fine_ec_onto_crse_ec() 90 0.001684 0.002198 0.002874 0.02% MLMG::MLResNormInf() 440 0.001043 0.001585 0.002641 0.02% MLMG::oneIter() 1843 0.002389 0.00251 0.002629 0.02% MLMG:computeResOfCorrection() 6101 0.001943 0.002008 0.002114 0.02% Castro::reset_internal_energy(MultiFab) 1189 0.001414 0.001782 0.002058 0.02% Castro::finalize_advance() 140 0.001413 0.001718 0.001972 0.02% MLCellLinOp::solutionResidual() 3154 0.001727 0.001774 0.001848 0.02% Castro::finalize_do_advance() 140 0.001183 0.001484 0.001839 0.02% MLMG::mgVcycle_bottom 3385 0.001635 0.001681 0.001801 0.02% MLMG::mgVcycle_down::0 1843 0.001373 0.001469 0.001546 0.01% Castro::clean_state() 1182 0.001299 0.001405 0.001509 0.01% FillPatchIterator::FillFromTwoLevels() 756 0.001157 0.001297 0.001422 0.01% FabArrayBase::TheFPinfo() 728 0.001093 0.001227 0.001366 0.01% Gravity::solve_phi_with_mlmg() 300 0.000885 0.0009977 0.001181 0.01% MLMG::mgVcycle_up::1 1843 0.001015 0.001128 0.001179 0.01% Castro::do_advance_ctu() 140 0.0009191 0.001075 0.001156 0.01% MLMG::mgVcycle_down::1 1843 0.001047 0.001101 0.00113 0.01% MLMG::computeResWithCrseSolFineCor() 771 0.00101 0.001043 0.00108 0.01% Castro::construct_new_gravity() 140 0.0009246 0.001012 0.001061 0.01% main() 1 0.0007953 0.0008751 0.0009834 0.01% MLMG::mgVcycle_up::0 1843 0.0008189 0.0008721 0.0009035 0.01% Gravity::actual_multilevel_solve() 20 0.0005454 0.0007176 0.0008482 0.01% MLPoisson::define() 360 0.0006589 0.0007147 0.0008381 0.01% MLMG::computeResidual() 1843 0.0007224 0.0007918 0.0008293 0.01% MLLinOp::define() 360 0.000554 0.0006018 0.0007038 0.01% Castro::do_new_sources() 260 0.0005796 0.0006212 0.0006574 0.01% Castro::advance() 140 0.0004657 0.0005557 0.0006372 0.01% MLMG::computeResWithCrseCorFineCor() 771 0.0005253 0.0005599 0.0005829 0.00% AmrLevel::derive() 34 0.0004217 0.0005042 0.0005695 0.00% MLMG::miniCycle() 1542 0.0005007 0.0005196 0.000547 0.00% Castro::do_old_sources() 140 0.0004454 0.0004817 0.0005084 0.00% MLMG::computeMLResidual() 440 0.0004212 0.0004492 0.0005014 0.00% Castro::apply_source_to_state() 520 0.0004251 0.0004528 0.0004812 0.00% Castro::subcycle_advance_ctu() 140 0.0004196 0.0004435 0.0004661 0.00% MLMG::mgVcycle_down::2 483 0.0003204 0.0003423 0.0003659 0.00% MLMG::mgVcycle_down::6 483 0.0003039 0.0003352 0.0003612 0.00% MLMG::mgVcycle_down::3 483 0.0002598 0.0002761 0.0002963 0.00% MLMG::mgVcycle_down::4 483 0.0002624 0.0002744 0.0002905 0.00% MLMG::mgVcycle_down::5 483 0.0002369 0.0002509 0.0002836 0.00% MLMG::getGradSolution() 360 0.0002317 0.0002493 0.0002753 0.00% Castro::post_regrid() 66 0.0001592 0.0001923 0.0002687 0.00% Castro::expand_state() 200 0.0002347 0.0002503 0.0002661 0.00% MLMG::mgVcycle_up::6 483 0.0002137 0.0002203 0.0002287 0.00% MLMG::mgVcycle_up::2 483 0.0001988 0.0002145 0.0002243 0.00% MLMG::mgVcycle_up::3 483 0.0001623 0.0001908 0.0002238 0.00% Castro::post_timestep() 140 0.000182 0.0001908 0.0002032 0.00% FillPatchIterator::FillFromLevel0() 133 0.0001715 0.0001843 0.0001994 0.00% Castro::check_for_nan() 280 0.0001497 0.0001747 0.0001982 0.00% AmrLevel::AmrLevel(dm) 35 0.0001588 0.0001764 0.0001979 0.00% Castro::avgDown(state_indx) 248 0.0001437 0.0001704 0.0001924 0.00% MLMG::mgVcycle_up::4 483 0.0001659 0.0001747 0.0001898 0.00% Gravity::solve_for_delta_phi 60 9.007e-05 0.0001158 0.0001364 0.00% Amr::FinalizeInit() 1 3.849e-06 1.862e-05 0.0001178 0.00% Castro::errorEst() 34 7.629e-05 8.492e-05 0.0001039 0.00% Castro::init(old) 28 7.544e-05 8.285e-05 9.122e-05 0.00% Amr::grid_places() 23 7.316e-05 8.07e-05 8.903e-05 0.00% Castro::avgDown() 62 5.883e-05 6.268e-05 6.876e-05 0.00% Castro::computeNewDt() 28 3.701e-05 4.195e-05 4.79e-05 0.00% Amr::defBaseLevel() 1 3.007e-05 3.695e-05 4.618e-05 0.00% Castro::derive() 34 2.571e-05 3.273e-05 4.477e-05 0.00% Amr::bldFineLevels() 1 2.441e-05 2.556e-05 2.779e-05 0.00% Castro::post_init() 3 6.405e-06 8.259e-06 1.141e-05 0.00% Amr::InitializeInit() 1 2.534e-06 3.788e-06 5.907e-06 0.00% Amr::initialInit() 1 1.233e-06 3.343e-06 4.464e-06 0.00% Amr::init() 1 1.611e-06 1.83e-06 2.186e-06 0.00% Other 10879 0.03439 0.04702 0.06411 0.54% -------------------------------------------------------------------------------------------- -------------------------------------------------------------------------------------------- Name NCalls Incl. Min Incl. Avg Incl. Max Max % -------------------------------------------------------------------------------------------- main() 1 11.76 11.76 11.76 100.00% Amr::coarseTimeStep() 20 11.57 11.57 11.57 98.38% Amr::timeStep() 140 11.56 11.56 11.56 98.25% Castro::advance() 140 8.469 8.475 8.478 72.07% Castro::subcycle_advance_ctu() 140 8.26 8.281 8.319 70.72% Castro::do_advance_ctu() 140 8.26 8.28 8.319 70.71% Gravity::actual_solve_with_mlmg() 360 6.547 6.557 6.571 55.86% MLMG::solve() 360 6.273 6.31 6.343 53.92% MLMG::oneIter() 1843 5.859 5.878 5.894 50.10% MLMG::mgVcycle() 3385 5.449 5.489 5.519 46.91% Gravity::solve_phi_with_mlmg() 300 4.937 4.95 4.964 42.19% Gravity::solve_for_phi() 280 4.215 4.227 4.239 36.03% MLMG::mgVcycle_bottom 3385 3.932 3.945 3.963 33.69% MLMG::actualBottomSolve() 1843 3.562 3.569 3.591 30.53% MLCGSolver::bicgstab 1420 3.558 3.565 3.586 30.48% Castro::construct_new_gravity() 140 3.351 3.355 3.363 28.58% Castro::construct_ctu_hydro_source() 140 3.007 3.014 3.02 25.67% Castro::post_timestep() 140 2.222 2.226 2.231 18.96% MLCGSolver::ParallelAllReduce 243443 1.639 1.875 2.217 18.85% MLCellLinOp::applyBC() 163791 1.758 1.947 2.18 18.53% Castro::reflux() 60 2.08 2.096 2.108 17.92% FabArray::FillBoundary() 156398 1.434 1.647 1.891 16.07% Gravity::gravity_sync() 60 1.758 1.758 1.759 14.96% MLCellLinOp::apply() 107414 1.318 1.543 1.701 14.46% Gravity::solve_for_delta_phi 60 1.661 1.663 1.665 14.15% MLCellLinOp::smooth() 15164 1.534 1.588 1.637 13.91% Castro::construct_old_gravity() 140 1.04 1.043 1.049 8.92% FillBoundary_finish() 156398 0.5465 0.7477 1.009 8.58% FillBoundary_nowait() 156398 0.5324 0.8508 1.005 8.54% check_for_negative_density() 140 0.3222 0.5822 0.9949 8.46% MLPoisson::Fsmooth() 54976 0.7925 0.8832 0.9786 8.32% Amr::regrid() 21 0.8945 0.9015 0.9092 7.73% FabArray::ParallelCopy() 13691 0.5435 0.7048 0.8911 7.57% FabArray::ParallelCopy_finish() 21259 0.3525 0.5231 0.7592 6.45% Gravity::multilevel_solve_for_new_phi() 20 0.7449 0.7462 0.7481 6.36% Gravity::actual_multilevel_solve() 20 0.7424 0.7441 0.7466 6.35% AmrLevel::FillPatch() 889 0.6002 0.6536 0.732 6.22% Castro::post_regrid() 66 0.7166 0.7218 0.7268 6.18% FillPatchIterator::Initialize 889 0.5472 0.6078 0.6932 5.89% FillPatchIterator::FillFromTwoLevels() 756 0.4602 0.5236 0.6156 5.23% FillPatchTwoLevels 756 0.4588 0.5223 0.6144 5.22% MLMG::mgVcycle_down::0 1843 0.4532 0.4764 0.4943 4.20% MLMG::mgVcycle_up::0 1843 0.4251 0.4356 0.4428 3.76% FillPatchSingleLevel 1617 0.2717 0.3255 0.4236 3.60% Castro::initialize_do_advance() 140 0.3688 0.386 0.4203 3.57% Castro::clean_state() 1182 0.3205 0.3759 0.414 3.52% MLMG::miniCycle() 1542 0.3586 0.3758 0.3864 3.28% Castro::expand_state() 200 0.2599 0.2844 0.3289 2.80% MLPoisson::Fapply() 107414 0.2497 0.2841 0.3075 2.61% FabArray::ParallelCopy_nowait() 21259 0.2279 0.2671 0.2956 2.51% MLCellLinOp::solutionResidual() 3154 0.2181 0.2453 0.2827 2.40% MLCellLinOp::correctionResidual() 7643 0.2416 0.2635 0.2702 2.30% Castro::do_new_sources() 260 0.2066 0.24 0.2624 2.23% Castro::computeTemp() 1189 0.1952 0.233 0.2603 2.21% MLMG::mgVcycle_down::1 1843 0.2294 0.237 0.2479 2.11% Castro::do_old_sources() 140 0.2287 0.2332 0.2368 2.01% MLMG::computeResWithCrseSolFineCor() 771 0.1668 0.1882 0.2061 1.75% amrex::Dot() 193234 0.1563 0.1837 0.1999 1.70% FabArray::setVal() 26094 0.1428 0.1785 0.1993 1.69% MLMG::mgVcycle_up::1 1843 0.1819 0.1883 0.1928 1.64% Castro::reset_internal_energy(MultiFab) 1189 0.1407 0.1686 0.1896 1.61% Castro::estTimeStep() 308 0.1118 0.1492 0.1879 1.60% Castro::reset_internal_energy(Fab) 5919 0.1389 0.1668 0.1877 1.60% amrex::average_down 8093 0.1355 0.1617 0.1854 1.58% Amr::init() 1 0.1733 0.1739 0.1743 1.48% MLPoisson::define() 360 0.1069 0.1376 0.1729 1.47% Castro::initialize_advance() 140 0.1174 0.15 0.166 1.41% Amr::initialInit() 1 0.1608 0.1614 0.1618 1.37% Amr::FinalizeInit() 1 0.1486 0.1512 0.1537 1.31% MLMG::addInterpCorrection() 6101 0.07029 0.1228 0.1498 1.27% MLMG:computeResOfCorrection() 6101 0.1354 0.1379 0.1412 1.20% Castro::construct_new_source() 1300 0.1138 0.1291 0.1408 1.20% MLMG::computeResidual() 1843 0.1175 0.1304 0.1406 1.19% Gravity::get_new_grav_vector() 263 0.1247 0.1316 0.1394 1.18% Castro::normalize_species() 1182 0.1064 0.1218 0.1314 1.12% FabArray::norminf() 100600 0.1061 0.1208 0.1309 1.11% MLMG::computeMLResidual() 440 0.06571 0.09306 0.1228 1.04% MLMG::mgVcycle_up::2 483 0.0352 0.07901 0.1227 1.04% MLMG::ResNormInf() 2383 0.05952 0.08461 0.1166 0.99% MLPoisson::normalize() 98037 0.0953 0.1085 0.115 0.98% Castro::avgDown() 62 0.07721 0.09176 0.1142 0.97% Castro::avgDown(state_indx) 248 0.07715 0.0917 0.1141 0.97% amrex::average_down_w_geom 248 0.077 0.09153 0.1139 0.97% amrex::Copy() 9904 0.08591 0.1026 0.1134 0.96% Castro::finalize_do_advance() 140 0.05896 0.08002 0.1045 0.89% MLMG::computeResWithCrseCorFineCor() 771 0.07832 0.0937 0.1013 0.86% MLCellLinOp::reflux() 951 0.07665 0.08972 0.1005 0.85% MLCellLinOp::defineAuxData() 360 0.05852 0.07909 0.09979 0.85% Amr::bldFineLevels() 1 0.07675 0.08082 0.0833 0.71% Gravity::get_old_grav_vector() 140 0.07117 0.0776 0.08324 0.71% MLMG::prepareForSolve() 360 0.07327 0.08013 0.08212 0.70% Castro::construct_new_gravity_source() 260 0.06442 0.07445 0.08156 0.69% FillPatchInterp(MF) 728 0.07822 0.0793 0.08028 0.68% Castro::init(old) 28 0.05844 0.06547 0.0721 0.61% FabArrayBase::getCPC() 29651 0.06035 0.06693 0.07203 0.61% Castro::post_init() 3 0.06394 0.06657 0.07079 0.60% FluxRegister::Reflux() 960 0.05432 0.0623 0.06822 0.58% FabArray::Saxpy() 1180 0.05322 0.06095 0.06553 0.56% MLMG::mgVcycle_up::3 483 0.004747 0.0298 0.0652 0.55% MLCellLinOp::setLevelBC() 450 0.02142 0.04163 0.06381 0.54% Castro::initData() 7 0.04463 0.05424 0.06356 0.54% MLCellLinOp::updateSolBC() 871 0.03659 0.04974 0.06122 0.52% MLCellLinOp::defineBC() 360 0.02965 0.0422 0.05777 0.49% MLCellLinOp::updateCorBC() 771 0.03399 0.04383 0.05625 0.48% FabArray::Saxpy_Saxpy() 48788 0.03773 0.0478 0.05625 0.48% MLMG::interpCorrection_1 771 0.0335 0.03987 0.05622 0.48% Castro::Castro() 35 0.04153 0.04754 0.05496 0.47% amrex::Add() 6281 0.03641 0.04516 0.05208 0.44% FabArray::Saypy_Saxpy() 47828 0.03514 0.04431 0.05161 0.44% Gravity::GetCrsePhi() 250 0.02388 0.03422 0.04719 0.40% Castro::finalize_advance() 140 0.03942 0.04342 0.04675 0.40% FabArray::Saxpy_Xpay() 47368 0.03155 0.03984 0.04586 0.39% MLMG::mgVcycle_down::2 483 0.03901 0.04077 0.04277 0.36% BndryData::define() 540 0.02005 0.03019 0.04196 0.36% FabArrayBase::CPC::define() 4099 0.03028 0.03663 0.04125 0.35% Castro::apply_source_to_state() 520 0.02964 0.03391 0.03702 0.31% Castro::construct_old_source() 700 0.02921 0.03346 0.03541 0.30% FabArray::Xpay() 10797 0.02505 0.02933 0.03242 0.28% Amr::grid_places() 23 0.02111 0.02634 0.0321 0.27% AmrMesh::MakeNewGrids() 23 0.02104 0.02626 0.03202 0.27% FabArrayBase::getFB() 156398 0.0248 0.02645 0.03137 0.27% FillPatchIterator::FillFromLevel0() 133 0.02127 0.02493 0.03121 0.27% Gravity::fill_multipole_BCs() 70 0.02678 0.02845 0.03061 0.26% Castro::initMFs() 35 0.0226 0.02625 0.03056 0.26% MLMG::mgVcycle_down::3 483 0.006513 0.01738 0.03022 0.26% Castro::FluxRegCrseInit 140 0.02748 0.02876 0.02916 0.25% Amr::writePlotFile() 2 0.02768 0.02777 0.02781 0.24% Gravity::average_fine_ec_onto_crse_ec() 90 0.02003 0.02139 0.02331 0.20% Castro::computeNewDt() 28 0.01981 0.02134 0.02251 0.19% Castro::enforce_min_density() 1182 0.01798 0.02047 0.02241 0.19% Castro::check_for_nan() 280 0.01625 0.01945 0.02179 0.19% MultiFab::contains_nan() 280 0.01607 0.01927 0.02161 0.18% VisMF::Write(FabArray) 6 0.005857 0.008311 0.02069 0.18% Gravity::update_max_rhs() 30 0.0151 0.01621 0.01883 0.16% MLMG::getGradSolution() 360 0.01497 0.01716 0.0185 0.16% MLCellLinOp::compGrad() 450 0.01472 0.01691 0.01822 0.15% Castro::errorEst() 34 0.009663 0.01368 0.01813 0.15% MLLinOp::define() 360 0.01416 0.01557 0.01791 0.15% MLLinOp::defineGrids() 360 0.01359 0.01496 0.01721 0.15% Castro::derive() 34 0.007074 0.01122 0.01543 0.13% AmrLevel::derive() 34 0.007046 0.01119 0.01538 0.13% AmrLevel::AmrLevel(dm) 35 0.01073 0.01271 0.01474 0.13% StateData::define() 140 0.01057 0.01254 0.01457 0.12% MLPoisson::FFlux() 7882 0.007792 0.01184 0.01436 0.12% Amr::InitializeInit() 1 0.007602 0.01022 0.01316 0.11% Amr::defBaseLevel() 1 0.007596 0.01022 0.01316 0.11% average_down_faces 360 0.009472 0.0113 0.01292 0.11% MLMG::mgVcycle_down::4 483 0.005938 0.007154 0.01263 0.11% Castro::FluxRegFineAdd() 140 0.005735 0.008722 0.01223 0.10% Castro::swap_state_time_levels() 140 0.008213 0.01022 0.01192 0.10% FabArrayBase::TheFPinfo() 728 0.002491 0.007035 0.01178 0.10% Castro::buildMetrics() 35 0.00692 0.008145 0.01088 0.09% Castro::construct_old_gravity_source() 140 0.007333 0.009392 0.01064 0.09% FPinfo::FPinfo() 7 0.001315 0.005808 0.01062 0.09% MultiFab::max() 90 0.004936 0.006634 0.01046 0.09% MLMG::mgVcycle_down::5 483 0.005759 0.006445 0.009522 0.08% MLMG::MLResNormInf() 440 0.007245 0.008221 0.009436 0.08% MLMG::mgVcycle_up::4 483 0.004744 0.005441 0.009233 0.08% FabArray::setVal(val, thecmd, scomp, ncomp) 8420 0.003937 0.007057 0.008828 0.08% MLMG::mgVcycle_down::6 483 0.005835 0.006333 0.00848 0.07% MLMG::mgVcycle_up::6 483 0.005302 0.00569 0.006934 0.06% Other 10879 0.05643 0.08143 0.1149 0.98% -------------------------------------------------------------------------------------------- Async Memory Usage: -------------------------------------------------------------------------------------------------------------------- Name Nalloc AvgMem min AvgMem avg AvgMem max MaxMem min MaxMem avg MaxMem max -------------------------------------------------------------------------------------------------------------------- Castro::construct_ctu_hydro_source() 43920 200 KiB 237 KiB 263 KiB 1293 KiB 1431 KiB 1623 KiB Castro::FluxRegCrseInit 7920 891 B 1043 B 1183 B 715 KiB 715 KiB 715 KiB FluxRegister::Reflux() 21120 1206 B 1735 B 1969 B 650 KiB 650 KiB 650 KiB Castro::reflux() 2640 23 B 37 B 72 B 65 KiB 65 KiB 65 KiB MLCellLinOp::reflux() 36900 55 B 103 B 134 B 35 KiB 59 KiB 65 KiB -------------------------------------------------------------------------------------------------------------------- Pinned Memory Usage: -------------------------------------------------------------------------------------------------------------- Name Nalloc AvgMem min AvgMem avg AvgMem max MaxMem min MaxMem avg MaxMem max -------------------------------------------------------------------------------------------------------------- The_Pinned_Arena::Initialize() 8 0 B 0 B 1 B 8192 KiB 8192 KiB 8192 KiB -------------------------------------------------------------------------------------------------------------- Cpu Memory Usage: ---------------------------------------------------------------------------------------------------------------------------- Name Nalloc AvgMem min AvgMem avg AvgMem max MaxMem min MaxMem avg MaxMem max ---------------------------------------------------------------------------------------------------------------------------- Castro::initMFs() 30550 5565 KiB 6077 KiB 6504 KiB 8154 KiB 8777 KiB 9620 KiB StateData::define() 6472 3831 KiB 4161 KiB 4438 KiB 5650 KiB 6063 KiB 6780 KiB Castro::swap_state_time_levels() 5704 3318 KiB 3605 KiB 3862 KiB 3824 KiB 4154 KiB 4433 KiB Castro::buildMetrics() 9708 1246 KiB 1389 KiB 1516 KiB 1925 KiB 2064 KiB 2369 KiB Castro::reflux() 17520 51 KiB 57 KiB 64 KiB 2282 KiB 2309 KiB 2332 KiB Castro::construct_ctu_hydro_source() 43920 200 KiB 237 KiB 264 KiB 1295 KiB 1433 KiB 1626 KiB Castro::initialize_do_advance() 5960 552 KiB 635 KiB 791 KiB 865 KiB 1074 KiB 1505 KiB FillPatchIterator::Initialize 35453 27 KiB 30 KiB 34 KiB 865 KiB 1074 KiB 1505 KiB MLMG::prepareForSolve() 184260 223 KiB 252 KiB 276 KiB 852 KiB 915 KiB 982 KiB Castro::initialize_advance() 5960 357 KiB 417 KiB 512 KiB 545 KiB 688 KiB 943 KiB Castro::Castro() 6472 361 KiB 392 KiB 419 KiB 856 KiB 881 KiB 933 KiB Amr::writePlotFile() 198 297 B 411 B 989 B 512 KiB 598 KiB 740 KiB Castro::FluxRegCrseInit 7920 893 B 1046 B 1187 B 715 KiB 715 KiB 715 KiB FluxRegister::Reflux() 21120 1211 B 1741 B 1977 B 650 KiB 650 KiB 650 KiB Castro::construct_old_source() 5960 548 B 763 B 942 B 448 KiB 523 KiB 647 KiB Castro::construct_new_source() 10100 1309 B 1804 B 2373 B 448 KiB 523 KiB 647 KiB FillPatchSingleLevel 5920 2548 B 3216 B 4642 B 640 KiB 640 KiB 640 KiB Gravity::update_max_rhs() 8910 331 B 366 B 383 B 485 KiB 530 KiB 567 KiB Gravity::gravity_sync() 16560 60 KiB 66 KiB 74 KiB 411 KiB 462 KiB 509 KiB FabArray::ParallelCopy_nowait() 264906 2101 B 3816 B 5376 B 193 KiB 319 KiB 416 KiB Gravity::multilevel_solve_for_new_phi() 3640 353 KiB 384 KiB 410 KiB 358 KiB 389 KiB 415 KiB amrex::average_down_w_geom 23224 1087 B 1319 B 1678 B 192 KiB 257 KiB 323 KiB MLCellLinOp::defineAuxData() 383260 28 KiB 41 KiB 47 KiB 217 KiB 253 KiB 276 KiB Gravity::get_old_grav_vector() 5960 932 B 1102 B 1184 B 157 KiB 197 KiB 272 KiB Gravity::get_new_grav_vector() 10199 1484 B 1721 B 1917 B 157 KiB 197 KiB 272 KiB FillPatchTwoLevels 144956 2423 B 2778 B 3182 B 230 KiB 233 KiB 235 KiB Castro::construct_old_gravity() 3960 7098 B 9694 B 11 KiB 198 KiB 198 KiB 198 KiB Gravity::create_comp_minus_level_grad_phi() 3960 16 KiB 21 KiB 25 KiB 194 KiB 194 KiB 194 KiB Gravity::actual_multilevel_solve() 1820 8290 B 9252 B 9 KiB 158 KiB 173 KiB 186 KiB MLCellLinOp::defineBC() 38070 1364 B 3134 B 5549 B 87 KiB 105 KiB 143 KiB BndryData::define() 176880 12 KiB 19 KiB 28 KiB 60 KiB 86 KiB 120 KiB Castro::build_fine_mask() 714 10 KiB 11 KiB 12 KiB 86 KiB 99 KiB 111 KiB Gravity::fill_multipole_BCs() 5810 91 B 97 B 104 B 65 KiB 76 KiB 94 KiB Gravity::solve_for_phi() 11920 18 KiB 21 KiB 23 KiB 64 KiB 74 KiB 92 KiB AmrLevel::derive() 746 28 B 44 B 69 B 68 KiB 68 KiB 68 KiB Gravity::GetCrsePhi() 5440 15 KiB 18 KiB 21 KiB 68 KiB 68 KiB 68 KiB MLCellLinOp::reflux() 36900 57 B 106 B 138 B 36 KiB 59 KiB 65 KiB Gravity::average_fine_ec_onto_crse_ec() 8460 48 B 62 B 73 B 31 KiB 40 KiB 53 KiB MLCGSolver::bicgstab 251615 5792 B 6998 B 8093 B 25 KiB 31 KiB 45 KiB FillPatchInterp(MF) 15618 41 B 65 B 102 B 16 KiB 23 KiB 43 KiB MLMG::interpCorrection_1 36006 47 B 67 B 132 B 19 KiB 23 KiB 32 KiB average_down_faces 8460 13 B 16 B 19 B 15 KiB 20 KiB 27 KiB amrex::average_down 104271 134 B 154 B 195 B 14 KiB 18 KiB 23 KiB MLCellLinOp::setLevelBC() 50120 1290 B 2519 B 3767 B 3072 B 7936 B 15 KiB AmrMesh::MakeNewGrids() 1492 7 B 10 B 14 B 10 KiB 10 KiB 10 KiB FillBoundary_nowait() 2280560 139 B 217 B 273 B 3584 B 4672 B 5632 B OwnerMask() 746 0 B 0 B 0 B 3072 B 3072 B 3072 B TagBoxArray::mapPRD 746 0 B 0 B 0 B 1024 B 1120 B 1280 B MLMG::addInterpCorrection() 11109 0 B 4 B 8 B 1024 B 1024 B 1024 B MLCellLinOp::applyBC() 1310331 3 B 5 B 7 B 256 B 256 B 256 B ---------------------------------------------------------------------------------------------------------------------------- AMReX (26.09-7-g55dda725ff4d) finalized