Inciter: Integrating the scalar advection equation for a smooth problem
This example runs Inciter to integrate the advection equation (see, e.g., PDE/Transport/CGTransport.h) configured to solve only the smooth portion of Zalesak's slotted cylinder (inciter::
This example slightly differs from Inciter: Integrating the scalar advection equation for a non-smooth problem, in that the non-smooth regions are commented out. This can be used to estimate the order of converge of the spatial and teporal discretization for smooth problems.
The following modification, applied in PDE/Transport/Problem/SlotCyl.h, removes the non-smooth part of the solution from the slotted cylinder case:
class TransportProblemSlotCyl { private: using ncomp_t = tk::ctr::ncomp_type; public: //! Evaluate analytical solution at (x,y,t) for all components //! \param[in] ncomp Number of components in this transport equation system //! \param[in] x X coordinate where to evaluate the solution //! \param[in] y Y coordinate where to evaluate the solution //! \param[in] t Time where to evaluate the solution //! \return Values of all components evaluated at (x,y,t) static std::vector< tk::real > solution( ncomp_t, ncomp_t ncomp, tk::real x, tk::real y, tk::real, tk::real t ) { using std::sin; using std::cos; std::vector< tk::real > s( ncomp, 0.0 ); for (ncomp_t c=0; c<ncomp; ++c) { auto T = t + 2.0*M_PI/ncomp * c; const tk::real R0 = 0.15; // center of the cone tk::real x0 = 0.5; tk::real y0 = 0.25; tk::real r = std::sqrt((x0-0.5)*(x0-0.5) + (y0-0.5)*(y0-0.5)); tk::real kx = 0.5 + r*sin( T ); tk::real ky = 0.5 - r*cos( T ); // center of the hump x0 = 0.25; y0 = 0.5; r = std::sqrt((x0-0.5)*(x0-0.5) + (y0-0.5)*(y0-0.5)); tk::real hx = 0.5 + r*sin( T-M_PI/2.0 ), hy = 0.5 - r*cos( T-M_PI/2.0 ); // center of the slotted cylinder x0 = 0.5; y0 = 0.75; r = std::sqrt((x0-0.5)*(x0-0.5) + (y0-0.5)*(y0-0.5)); tk::real cx = 0.5 + r*sin( T+M_PI ), cy = 0.5 - r*cos( T+M_PI ); // end points of the cylinder slot tk::real i1x = 0.525, i1y = cy - r*cos( std::asin(0.025/r) ), i2x = 0.525, i2y = 0.8, i3x = 0.475, i3y = 0.8; // rotate end points of cylinder slot tk::real ri1x = 0.5 + cos(T)*(i1x-0.5) - sin(T)*(i1y-0.5), ri1y = 0.5 + sin(T)*(i1x-0.5) + cos(T)*(i1y-0.5), ri2x = 0.5 + cos(T)*(i2x-0.5) - sin(T)*(i2y-0.5), ri2y = 0.5 + sin(T)*(i2x-0.5) + cos(T)*(i2y-0.5), ri3x = 0.5 + cos(T)*(i3x-0.5) - sin(T)*(i3y-0.5), ri3y = 0.5 + sin(T)*(i3x-0.5) + cos(T)*(i3y-0.5); // direction of slot sides tk::real v1x = ri2x-ri1x, v1y = ri2y-ri1y, v2x = ri3x-ri2x, v2y = ri3y-ri2y; // lengths of direction of slot sides vectors tk::real v1 = std::sqrt(v1x*v1x + v1y*v1y), v2 = std::sqrt(v2x*v2x + v2y*v2y); // cone // r = std::sqrt((x-kx)*(x-kx) + (y-ky)*(y-ky)) / R0; // if (r<1.0) s[c] = 0.6*(1.0-r); // hump r = std::sqrt((x-hx)*(x-hx) + (y-hy)*(y-hy)) / R0; if (r<1.0) s[c] = 0.2*(1.0+cos(M_PI*std::min(r,1.0))); // cylinder // r = std::sqrt((x-cx)*(x-cx) + (y-cy)*(y-cy)) / R0; // const std::array< tk::real, 2 > r1{{ v1x, v1y }}, // r2{{ x-ri1x, y-ri1y }}; // const auto d1 = (r1[0]*r2[1] - r2[0]*r1[1]) / v1; // const std::array< tk::real, 2 > r3{{ v2x, v2y }}, // r4{{ x-ri2x, y-ri2y }}; // const auto d2 = (r3[0]*r4[1] - r4[0]*r3[1]) / v2; // if (r<1.0 && (d1>0.05 || d1<0.0 || d2<0.0)) s[c] = 0.6; } return s; } ... }
Control file
The control file is the same as that of the slotted cylinder problem, see also inciter_exampl_slot_cyl.
# vim: filetype=sh: # This is a comment # Keywords are case-sensitive title "Zalesak's slotted cylinder" inciter #nstep 10 # Max number of time steps #term 6.28318530718 # Max time = 2*pi term 1.57079632679 # Max time = pi/2 #term 0.78539816339 # Max time = pi/4 #term 0.39270 # Max time = pi/8 cfl 0.5 ttyi 10 # TTY output interval ctau 1.0 # FCT mass diffusivity transport physics advection problem slot_cyl ncomp 1 end field_output interval 100 end end
Output for three runs (750K, 6M, and 48M)
$ ./charmrun +p36 Main/inciter -v -c slot_cyl.q -i unitcube_01_750K.exo Running on 36 processors: Main/inciter -v -c slot_cyl.q -i unitcube_01_750K.exo charmrun> /usr/bin/setarch x86_64 -R mpirun -np 36 Main/inciter -v -c slot_cyl.q -i unitcube_01_750K.exo Charm++> Running on MPI version: 3.1 Charm++> level of thread support used: MPI_THREAD_SINGLE (desired: MPI_THREAD_SINGLE) Charm++> Running in non-SMP mode: numPes 36 Converse/Charm++ Commit ID: CharmLB> Load balancer assumes all CPUs are same. Charm++> Running on 1 unique compute nodes (36-way SMP). Charm++> cpu topology info is gathered in 0.014 seconds. ,::,` `. .;;;'';;;: ;;# ;;;@+ +;;; ;;;;;, ;;;;. ;;;;;, ;;;; ;;;; `;;;;;;: ;;; :;;@` :;;' .;;;@, ,;@, ,;;;@: .;;;' .;+;. ;;;@#:';;; ;;;;' ;;;# ;;;: ;;;' ;: ;;;' ;;;;; ;# ;;;@ ;;; ;+;;' .;;+ ;;;# ;;;' ;: ;;;' ;#;;;` ;# ;;@ `;;+ .;#;;;. ;;;# :;;' ;;;' ;: ;;;' ;# ;;; ;# ;;;@ ;;; ;# ;;;+ ;;;# .;;; ;;;' ;: ;;;' ;# ,;;; ;# ;;;# ;;;: ;@ ;;; ;;;# .;;' ;;;' ;: ;;;' ;# ;;;; ;# ;;;' ;;;+ ;', ;;;@ ;;;+ ,;;+ ;;;' ;: ;;;' ;# ;;;' ;# ;;;' ;;;' ;':::;;;; `;;; ;;;@ ;;;' ;: ;;;' ;# ;;;';# ;;;@ ;;;:,;+++++;;;' ;;;; ;;;@ ;;;# .;. ;;;' ;# ;;;;# `;;+ ;;# ;# ;;;' .;;; :;;@ ,;;+ ;+ ;;;' ;# ;;;# ;;; ;;;@ ;@ ;;;. ';;; ;;;@, ;;;;``.;;@ ;;;' ;+ .;;# ;;; :;;@ ;;; ;;;+ :;;;;;;;+@` ';;;;;'@ ;;;;;, ;;;; ;;+ +;;;;;;#@ ;;;;. .;;;;;; .;;#@' `#@@@: ;::::; ;:::: ;@ '@@@+ ;:::; ;:::::: :;;;;;;. .___ .__ __ .;@+@';;;;;;' | | ____ ____ |__|/ |_ ___________ ` '#''@` | |/ \_/ ___\| \ __\/ __ \_ __ \ | | | \ \___| || | \ ___/| | \/ |___|___| /\___ >__||__| \___ >__| \/ \/ \/ < ENVIRONMENT > ------ o ------ * Build environment: -------------------- Hostname : lagrange Executable : inciter Version : 0.1 (C16015) Revision SHA1 : Quinoa_v0.1-914-g40abfa98 CMake build type : RELEASE Asserts : off (turn on: CMAKE_BUILD_TYPE=DEBUG) Exception trace : off (turn on: CMAKE_BUILD_TYPE=DEBUG) MPI C++ wrapper : /usr/bin/mpicxx Underlying C++ compiler : /usr/bin/g++ Build date : Sun Jun 4 13:51:45 MDT 2017 * Run-time environment: ----------------------- Date, time : Mon Jun 5 07:07:37 2017 Work directory : /home/jbakosi/code/quinoa/build/gnu Executable (rel. to work dir) : Main/inciter Command line arguments : '-v -c slot_cyl.q -i unitcube_01_750K.exo' Output : verbose (quiet: omit -v) Control file : slot_cyl.q Parsed control file : success < FACTORY > ---- o ---- * Unknowns data layout (CMake: FIELD_DATA_LAYOUT): -------------------------------------------------- unknown-major * Registered partial differential equations: -------------------------------------------- Unique equation types : 2 With all policy combinations : 12 Legend: equation name : supported policies Policy codes: * h: physics configuration: A - Advection D - Advection + diffusion L - Laplace N - Navier-Stokes E - Euler * r: problem: U - User-defined S - Shear-diffusion D - Dirichlet & Neumann V - Vortical flow V - Nonlinear energy growth V - Rayleigh-Taylor Z - Zalesak's slotted cylinder Compressible flow : h:EN, r:UV Transport : h:AD, r:SZ < PROBLEM > ---- o ---- * Title: Zalesak's slotted cylinder ----------------------------------- * Partial differential equations integrated (1): ------------------------------------------------ < Transport > problem : Zalesak's slotted cylinder start offset in unknowns array : 0 number of components : 1 * Discretization parameters: ---------------------------- Number of time steps : 18446744073709551615 Start time : 0 Terminate time : 1.5708 CFL coefficient : 0.5 Mass diffusion coeff : 1 * Output filenames: ------------------- Field : out.<chareid> Diagnostics : diag * Output intervals: ------------------- TTY : 1 Field : 10 Diagnostics : 1 Quinoa> Reading side sets ... done Quinoa> Creating linear system mergers Quinoa> Creating particle writers Quinoa> Creating partitioners and reading mesh graph ... done * Input mesh graph statistics: ------------------------------ Number of tetrahedra : 750000 Number of nodes : 132651 * Load distribution: -------------------- Virtualization [0.0...1.0] : 0 Load (number of tetrahedra) : 750000 Number of processing elements : 36 Number of work units : 36 (35*20833+20845) * Initial mesh partitioning: ---------------------------- Mesh partitioning algorithm : recursive coordinate bisection Quinoa> Mesh read time: 0.021658 sec Quinoa> Partitioning and distributing mesh ... ZOLTAN Load balancing method = 3 (RCB) Build configuration: ZOLTAN_ID_TYPE: unsigned int (4 bytes) ZOLTAN_GNO_TYPE: ssize_t, (8 bytes) MPI_Datatype for ZOLTAN_ID_TYPE: MPI_UNSIGNED MPI_Datatype for ZOLTAN_GNO_TYPE: MPI_LONG ZOLTAN Parameter IMBALANCE_TOL[0] = 1.100000 ZOLTAN Parameter AUTO_MIGRATE = FALSE ZOLTAN Parameter MIGRATE_ONLY_PROC_CHANGES = 1 ZOLTAN Parameter OBJ_WEIGHT_DIM = 0 ZOLTAN Parameter EDGE_WEIGHT_DIM = 0 ZOLTAN Parameter DEBUG_LEVEL = 1 ZOLTAN Parameter DEBUG_PROCESSOR = 0 ZOLTAN Parameter DETERMINISTIC = TRUE ZOLTAN Parameter TIMER = 1 (wall) ZOLTAN Parameter NUM_GID_ENTRIES = 2 ZOLTAN Parameter NUM_LID_ENTRIES = 2 ZOLTAN Parameter RETURN_LISTS = PARTITION ASSIGNMENTS ZOLTAN Parameter NUM_GLOBAL_PARTS = 36 ZOLTAN Parameter NUM_LOCAL_PARTS = -1 ZOLTAN Parameter REMAP = 1 ZOLTAN Parameter SEED = 123456789 (123456789) ZOLTAN Parameter LB_APPROACH = repartition ZOLTAN Parameter RCB_OVERALLOC = 1.200000 ZOLTAN Parameter RCB_REUSE = 0 ZOLTAN Parameter CHECK_GEOM = 1 ZOLTAN Parameter RCB_OUTPUT_LEVEL = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter RCB_LOCK_DIRECTIONS = 0 ZOLTAN Parameter RCB_SET_DIRECTIONS = 0 ZOLTAN Parameter RCB_RECTILINEAR_BLOCKS = 0 ZOLTAN Parameter OBJ_WEIGHTS_COMPARABLE = 0 ZOLTAN Parameter RCB_MULTICRITERIA_NORM = 1 ZOLTAN Parameter RCB_MAX_ASPECT_RATIO = 10.000000 ZOLTAN Parameter AVERAGE_CUTS = 0 ZOLTAN Parameter RANDOM_PIVOTS = 0 ZOLTAN Parameter RCB_RECOMPUTE_BOX = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 0.000000 ZOLTAN Parameter FINAL_OUTPUT = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 10.000000 done Quinoa> Reordering mesh ... done Quinoa> Creating workers Quinoa> Linear system communication cost: avg = 0.195648, std = 0.097498 Quinoa> Reading mesh node coordinates, computing nodal volumes Quinoa> Mesh statistics: min/max/avg(edgelength) = 0.020000 / 0.034641 / 0.025496 Quinoa> Mesh statistics: min/max/avg(V^{1/3}) = 0.011006 / 0.011006 / 0.011006 Quinoa> Computing row IDs, querying BCs, outputting mesh done Quinoa> Setting and outputting ICs, computing initial dt, computing LHS ... done Quinoa> Starting time stepping ... * Time integration: Unstructured-mesh PDE solver testbed -------------------------------------------------------- Legend: it - iteration count t - time dt - time step size ETE - estimated time elapsed (h:m:s) ETA - estimated time for accomplishment (h:m:s) out - output-saved flags (F: field, D: diagnostics) it t dt ETE ETA out --------------------------------------------------------------- 1 7.782717e-03 7.782717e-03 000:00:00 000:00:28 D 2 1.556543e-02 7.782717e-03 000:00:00 000:00:28 D 3 2.334815e-02 7.782717e-03 000:00:00 000:00:28 D 4 3.113087e-02 7.782717e-03 000:00:00 000:00:29 D 5 3.891359e-02 7.782717e-03 000:00:00 000:00:29 D 6 4.669630e-02 7.782717e-03 000:00:00 000:00:29 D 7 5.447902e-02 7.782717e-03 000:00:01 000:00:30 D 8 6.226174e-02 7.782717e-03 000:00:01 000:00:30 D 9 7.004445e-02 7.782717e-03 000:00:01 000:00:30 D 10 7.782717e-02 7.782717e-03 000:00:01 000:00:31 FD 11 8.560989e-02 7.782717e-03 000:00:01 000:00:31 D 12 9.339261e-02 7.782717e-03 000:00:01 000:00:31 D 13 1.011753e-01 7.782717e-03 000:00:02 000:00:31 D 14 1.089580e-01 7.782717e-03 000:00:02 000:00:30 D 15 1.167408e-01 7.782717e-03 000:00:02 000:00:30 D 16 1.245235e-01 7.782717e-03 000:00:02 000:00:30 D 17 1.323062e-01 7.782717e-03 000:00:02 000:00:29 D 18 1.400889e-01 7.782717e-03 000:00:02 000:00:29 D 19 1.478716e-01 7.782717e-03 000:00:03 000:00:29 D 20 1.556543e-01 7.782717e-03 000:00:03 000:00:29 FD 21 1.634371e-01 7.782717e-03 000:00:03 000:00:29 D 22 1.712198e-01 7.782717e-03 000:00:03 000:00:29 D 23 1.790025e-01 7.782717e-03 000:00:03 000:00:30 D 24 1.867852e-01 7.782717e-03 000:00:04 000:00:30 D 25 1.945679e-01 7.782717e-03 000:00:04 000:00:30 D 26 2.023506e-01 7.782717e-03 000:00:04 000:00:30 D 27 2.101334e-01 7.782717e-03 000:00:04 000:00:30 D 28 2.179161e-01 7.782717e-03 000:00:04 000:00:29 D 29 2.256988e-01 7.782717e-03 000:00:04 000:00:29 D 30 2.334815e-01 7.782717e-03 000:00:05 000:00:29 FD 31 2.412642e-01 7.782717e-03 000:00:05 000:00:29 D 32 2.490469e-01 7.782717e-03 000:00:05 000:00:28 D 33 2.568297e-01 7.782717e-03 000:00:05 000:00:28 D 34 2.646124e-01 7.782717e-03 000:00:05 000:00:28 D 35 2.723951e-01 7.782717e-03 000:00:05 000:00:28 D 36 2.801778e-01 7.782717e-03 000:00:06 000:00:27 D 37 2.879605e-01 7.782717e-03 000:00:06 000:00:27 D 38 2.957433e-01 7.782717e-03 000:00:06 000:00:27 D 39 3.035260e-01 7.782717e-03 000:00:06 000:00:27 D 40 3.113087e-01 7.782717e-03 000:00:06 000:00:27 FD 41 3.190914e-01 7.782717e-03 000:00:06 000:00:26 D 42 3.268741e-01 7.782717e-03 000:00:07 000:00:26 D 43 3.346568e-01 7.782717e-03 000:00:07 000:00:26 D 44 3.424396e-01 7.782717e-03 000:00:07 000:00:26 D 45 3.502223e-01 7.782717e-03 000:00:07 000:00:26 D 46 3.580050e-01 7.782717e-03 000:00:07 000:00:26 D 47 3.657877e-01 7.782717e-03 000:00:07 000:00:25 D 48 3.735704e-01 7.782717e-03 000:00:07 000:00:25 D 49 3.813531e-01 7.782717e-03 000:00:08 000:00:25 D 50 3.891359e-01 7.782717e-03 000:00:08 000:00:25 FD 51 3.969186e-01 7.782717e-03 000:00:08 000:00:25 D 52 4.047013e-01 7.782717e-03 000:00:08 000:00:24 D 53 4.124840e-01 7.782717e-03 000:00:08 000:00:24 D 54 4.202667e-01 7.782717e-03 000:00:08 000:00:24 D 55 4.280494e-01 7.782717e-03 000:00:09 000:00:24 D 56 4.358322e-01 7.782717e-03 000:00:09 000:00:24 D 57 4.436149e-01 7.782717e-03 000:00:09 000:00:23 D 58 4.513976e-01 7.782717e-03 000:00:09 000:00:23 D 59 4.591803e-01 7.782717e-03 000:00:09 000:00:23 D 60 4.669630e-01 7.782717e-03 000:00:09 000:00:23 FD 61 4.747457e-01 7.782717e-03 000:00:10 000:00:23 D 62 4.825285e-01 7.782717e-03 000:00:10 000:00:23 D 63 4.903112e-01 7.782717e-03 000:00:10 000:00:22 D 64 4.980939e-01 7.782717e-03 000:00:10 000:00:22 D 65 5.058766e-01 7.782717e-03 000:00:10 000:00:22 D 66 5.136593e-01 7.782717e-03 000:00:10 000:00:22 D 67 5.214420e-01 7.782717e-03 000:00:10 000:00:22 D 68 5.292248e-01 7.782717e-03 000:00:11 000:00:21 D 69 5.370075e-01 7.782717e-03 000:00:11 000:00:21 D 70 5.447902e-01 7.782717e-03 000:00:11 000:00:21 FD 71 5.525729e-01 7.782717e-03 000:00:11 000:00:21 D 72 5.603556e-01 7.782717e-03 000:00:11 000:00:21 D 73 5.681384e-01 7.782717e-03 000:00:11 000:00:21 D 74 5.759211e-01 7.782717e-03 000:00:12 000:00:21 D 75 5.837038e-01 7.782717e-03 000:00:12 000:00:20 D 76 5.914865e-01 7.782717e-03 000:00:12 000:00:20 D 77 5.992692e-01 7.782717e-03 000:00:12 000:00:20 D 78 6.070519e-01 7.782717e-03 000:00:12 000:00:20 D 79 6.148347e-01 7.782717e-03 000:00:12 000:00:20 D 80 6.226174e-01 7.782717e-03 000:00:13 000:00:20 FD 81 6.304001e-01 7.782717e-03 000:00:13 000:00:19 D 82 6.381828e-01 7.782717e-03 000:00:13 000:00:19 D 83 6.459655e-01 7.782717e-03 000:00:13 000:00:19 D 84 6.537482e-01 7.782717e-03 000:00:13 000:00:19 D 85 6.615310e-01 7.782717e-03 000:00:13 000:00:19 D 86 6.693137e-01 7.782717e-03 000:00:14 000:00:19 D 87 6.770964e-01 7.782717e-03 000:00:14 000:00:18 D 88 6.848791e-01 7.782717e-03 000:00:14 000:00:18 D 89 6.926618e-01 7.782717e-03 000:00:14 000:00:18 D 90 7.004445e-01 7.782717e-03 000:00:14 000:00:18 FD 91 7.082273e-01 7.782717e-03 000:00:14 000:00:18 D 92 7.160100e-01 7.782717e-03 000:00:15 000:00:18 D 93 7.237927e-01 7.782717e-03 000:00:15 000:00:17 D 94 7.315754e-01 7.782717e-03 000:00:15 000:00:17 D 95 7.393581e-01 7.782717e-03 000:00:15 000:00:17 D 96 7.471408e-01 7.782717e-03 000:00:15 000:00:17 D 97 7.549236e-01 7.782717e-03 000:00:15 000:00:17 D 98 7.627063e-01 7.782717e-03 000:00:16 000:00:17 D 99 7.704890e-01 7.782717e-03 000:00:16 000:00:16 D 100 7.782717e-01 7.782717e-03 000:00:16 000:00:16 FD 101 7.860544e-01 7.782717e-03 000:00:16 000:00:16 D 102 7.938372e-01 7.782717e-03 000:00:16 000:00:16 D 103 8.016199e-01 7.782717e-03 000:00:16 000:00:16 D 104 8.094026e-01 7.782717e-03 000:00:17 000:00:15 D 105 8.171853e-01 7.782717e-03 000:00:17 000:00:15 D 106 8.249680e-01 7.782717e-03 000:00:17 000:00:15 D 107 8.327507e-01 7.782717e-03 000:00:17 000:00:15 D 108 8.405335e-01 7.782717e-03 000:00:17 000:00:15 D 109 8.483162e-01 7.782717e-03 000:00:17 000:00:15 D 110 8.560989e-01 7.782717e-03 000:00:17 000:00:15 FD 111 8.638816e-01 7.782717e-03 000:00:18 000:00:14 D 112 8.716643e-01 7.782717e-03 000:00:18 000:00:14 D 113 8.794470e-01 7.782717e-03 000:00:18 000:00:14 D 114 8.872298e-01 7.782717e-03 000:00:18 000:00:14 D 115 8.950125e-01 7.782717e-03 000:00:18 000:00:14 D 116 9.027952e-01 7.782717e-03 000:00:18 000:00:14 D 117 9.105779e-01 7.782717e-03 000:00:19 000:00:13 D 118 9.183606e-01 7.782717e-03 000:00:19 000:00:13 D 119 9.261433e-01 7.782717e-03 000:00:19 000:00:13 D 120 9.339261e-01 7.782717e-03 000:00:19 000:00:13 FD 121 9.417088e-01 7.782717e-03 000:00:20 000:00:13 D 122 9.494915e-01 7.782717e-03 000:00:20 000:00:13 D 123 9.572742e-01 7.782717e-03 000:00:20 000:00:13 D 124 9.650569e-01 7.782717e-03 000:00:20 000:00:13 D 125 9.728396e-01 7.782717e-03 000:00:20 000:00:12 D 126 9.806224e-01 7.782717e-03 000:00:21 000:00:12 D 127 9.884051e-01 7.782717e-03 000:00:21 000:00:12 D 128 9.961878e-01 7.782717e-03 000:00:21 000:00:12 D 129 1.003971e+00 7.782717e-03 000:00:21 000:00:12 D 130 1.011753e+00 7.782717e-03 000:00:21 000:00:12 FD 131 1.019536e+00 7.782717e-03 000:00:21 000:00:11 D 132 1.027319e+00 7.782717e-03 000:00:22 000:00:11 D 133 1.035101e+00 7.782717e-03 000:00:22 000:00:11 D 134 1.042884e+00 7.782717e-03 000:00:22 000:00:11 D 135 1.050667e+00 7.782717e-03 000:00:22 000:00:11 D 136 1.058450e+00 7.782717e-03 000:00:23 000:00:11 D 137 1.066232e+00 7.782717e-03 000:00:23 000:00:10 D 138 1.074015e+00 7.782717e-03 000:00:23 000:00:10 D 139 1.081798e+00 7.782717e-03 000:00:23 000:00:10 D 140 1.089580e+00 7.782717e-03 000:00:23 000:00:10 FD 141 1.097363e+00 7.782717e-03 000:00:23 000:00:10 D 142 1.105146e+00 7.782717e-03 000:00:24 000:00:10 D 143 1.112929e+00 7.782717e-03 000:00:24 000:00:10 D 144 1.120711e+00 7.782717e-03 000:00:24 000:00:09 D 145 1.128494e+00 7.782717e-03 000:00:24 000:00:09 D 146 1.136277e+00 7.782717e-03 000:00:24 000:00:09 D 147 1.144059e+00 7.782717e-03 000:00:25 000:00:09 D 148 1.151842e+00 7.782717e-03 000:00:25 000:00:09 D 149 1.159625e+00 7.782717e-03 000:00:25 000:00:09 D 150 1.167408e+00 7.782717e-03 000:00:25 000:00:08 FD 151 1.175190e+00 7.782717e-03 000:00:25 000:00:08 D 152 1.182973e+00 7.782717e-03 000:00:25 000:00:08 D 153 1.190756e+00 7.782717e-03 000:00:26 000:00:08 D 154 1.198538e+00 7.782717e-03 000:00:26 000:00:08 D 155 1.206321e+00 7.782717e-03 000:00:26 000:00:08 D 156 1.214104e+00 7.782717e-03 000:00:26 000:00:07 D 157 1.221887e+00 7.782717e-03 000:00:26 000:00:07 D 158 1.229669e+00 7.782717e-03 000:00:27 000:00:07 D 159 1.237452e+00 7.782717e-03 000:00:27 000:00:07 D 160 1.245235e+00 7.782717e-03 000:00:27 000:00:07 FD 161 1.253017e+00 7.782717e-03 000:00:27 000:00:07 D 162 1.260800e+00 7.782717e-03 000:00:27 000:00:06 D 163 1.268583e+00 7.782717e-03 000:00:28 000:00:06 D 164 1.276366e+00 7.782717e-03 000:00:28 000:00:06 D 165 1.284148e+00 7.782717e-03 000:00:28 000:00:06 D 166 1.291931e+00 7.782717e-03 000:00:28 000:00:06 D 167 1.299714e+00 7.782717e-03 000:00:28 000:00:06 D 168 1.307496e+00 7.782717e-03 000:00:29 000:00:05 D 169 1.315279e+00 7.782717e-03 000:00:29 000:00:05 D 170 1.323062e+00 7.782717e-03 000:00:29 000:00:05 FD 171 1.330845e+00 7.782717e-03 000:00:29 000:00:05 D 172 1.338627e+00 7.782717e-03 000:00:29 000:00:05 D 173 1.346410e+00 7.782717e-03 000:00:30 000:00:05 D 174 1.354193e+00 7.782717e-03 000:00:30 000:00:04 D 175 1.361976e+00 7.782717e-03 000:00:30 000:00:04 D 176 1.369758e+00 7.782717e-03 000:00:30 000:00:04 D 177 1.377541e+00 7.782717e-03 000:00:30 000:00:04 D 178 1.385324e+00 7.782717e-03 000:00:30 000:00:04 D 179 1.393106e+00 7.782717e-03 000:00:31 000:00:03 D 180 1.400889e+00 7.782717e-03 000:00:31 000:00:03 FD 181 1.408672e+00 7.782717e-03 000:00:31 000:00:03 D 182 1.416455e+00 7.782717e-03 000:00:31 000:00:03 D 183 1.424237e+00 7.782717e-03 000:00:31 000:00:03 D 184 1.432020e+00 7.782717e-03 000:00:31 000:00:03 D 185 1.439803e+00 7.782717e-03 000:00:32 000:00:02 D 186 1.447585e+00 7.782717e-03 000:00:32 000:00:02 D 187 1.455368e+00 7.782717e-03 000:00:32 000:00:02 D 188 1.463151e+00 7.782717e-03 000:00:32 000:00:02 D 189 1.470934e+00 7.782717e-03 000:00:32 000:00:02 D 190 1.478716e+00 7.782717e-03 000:00:32 000:00:02 FD 191 1.486499e+00 7.782717e-03 000:00:33 000:00:01 D 192 1.494282e+00 7.782717e-03 000:00:33 000:00:01 D 193 1.502064e+00 7.782717e-03 000:00:33 000:00:01 D 194 1.509847e+00 7.782717e-03 000:00:33 000:00:01 D 195 1.517630e+00 7.782717e-03 000:00:33 000:00:01 D 196 1.525413e+00 7.782717e-03 000:00:33 000:00:01 D 197 1.533195e+00 7.782717e-03 000:00:34 000:00:00 D 198 1.540978e+00 7.782717e-03 000:00:34 000:00:00 D 199 1.548761e+00 7.782717e-03 000:00:34 000:00:00 D 200 1.556543e+00 7.782717e-03 000:00:34 000:00:00 FD 201 1.564326e+00 7.782717e-03 000:00:34 000:00:00 D 202 1.570796e+00 6.470177e-03 000:00:34 000:00:00 D Normal finish, maximum time reached: 1.570796 * Timers (h:m:s): ----------------- Migrate global-scope data : 0:0:0 Total runtime : 0:0:35 [Partition 0][Node 0] End of program $ cp diag diag.750K $ ./charmrun +p36 Main/inciter -v -c slot_cyl.q -i unitcube_01_6M.exo Running on 36 processors: Main/inciter -v -c slot_cyl.q -i unitcube_01_6M.exo charmrun> /usr/bin/setarch x86_64 -R mpirun -np 36 Main/inciter -v -c slot_cyl.q -i unitcube_01_6M.exo Charm++> Running on MPI version: 3.1 Charm++> level of thread support used: MPI_THREAD_SINGLE (desired: MPI_THREAD_SINGLE) Charm++> Running in non-SMP mode: numPes 36 Converse/Charm++ Commit ID: CharmLB> Load balancer assumes all CPUs are same. Charm++> Running on 1 unique compute nodes (36-way SMP). Charm++> cpu topology info is gathered in 0.022 seconds. ,::,` `. .;;;'';;;: ;;# ;;;@+ +;;; ;;;;;, ;;;;. ;;;;;, ;;;; ;;;; `;;;;;;: ;;; :;;@` :;;' .;;;@, ,;@, ,;;;@: .;;;' .;+;. ;;;@#:';;; ;;;;' ;;;# ;;;: ;;;' ;: ;;;' ;;;;; ;# ;;;@ ;;; ;+;;' .;;+ ;;;# ;;;' ;: ;;;' ;#;;;` ;# ;;@ `;;+ .;#;;;. ;;;# :;;' ;;;' ;: ;;;' ;# ;;; ;# ;;;@ ;;; ;# ;;;+ ;;;# .;;; ;;;' ;: ;;;' ;# ,;;; ;# ;;;# ;;;: ;@ ;;; ;;;# .;;' ;;;' ;: ;;;' ;# ;;;; ;# ;;;' ;;;+ ;', ;;;@ ;;;+ ,;;+ ;;;' ;: ;;;' ;# ;;;' ;# ;;;' ;;;' ;':::;;;; `;;; ;;;@ ;;;' ;: ;;;' ;# ;;;';# ;;;@ ;;;:,;+++++;;;' ;;;; ;;;@ ;;;# .;. ;;;' ;# ;;;;# `;;+ ;;# ;# ;;;' .;;; :;;@ ,;;+ ;+ ;;;' ;# ;;;# ;;; ;;;@ ;@ ;;;. ';;; ;;;@, ;;;;``.;;@ ;;;' ;+ .;;# ;;; :;;@ ;;; ;;;+ :;;;;;;;+@` ';;;;;'@ ;;;;;, ;;;; ;;+ +;;;;;;#@ ;;;;. .;;;;;; .;;#@' `#@@@: ;::::; ;:::: ;@ '@@@+ ;:::; ;:::::: :;;;;;;. .___ .__ __ .;@+@';;;;;;' | | ____ ____ |__|/ |_ ___________ ` '#''@` | |/ \_/ ___\| \ __\/ __ \_ __ \ | | | \ \___| || | \ ___/| | \/ |___|___| /\___ >__||__| \___ >__| \/ \/ \/ < ENVIRONMENT > ------ o ------ * Build environment: -------------------- Hostname : lagrange Executable : inciter Version : 0.1 (C16015) Revision SHA1 : Quinoa_v0.1-914-g40abfa98 CMake build type : RELEASE Asserts : off (turn on: CMAKE_BUILD_TYPE=DEBUG) Exception trace : off (turn on: CMAKE_BUILD_TYPE=DEBUG) MPI C++ wrapper : /usr/bin/mpicxx Underlying C++ compiler : /usr/bin/g++ Build date : Sun Jun 4 13:51:45 MDT 2017 * Run-time environment: ----------------------- Date, time : Mon Jun 5 07:08:32 2017 Work directory : /home/jbakosi/code/quinoa/build/gnu Executable (rel. to work dir) : Main/inciter Command line arguments : '-v -c slot_cyl.q -i unitcube_01_6M.exo' Output : verbose (quiet: omit -v) Control file : slot_cyl.q Parsed control file : success < FACTORY > ---- o ---- * Unknowns data layout (CMake: FIELD_DATA_LAYOUT): -------------------------------------------------- unknown-major * Registered partial differential equations: -------------------------------------------- Unique equation types : 2 With all policy combinations : 12 Legend: equation name : supported policies Policy codes: * h: physics configuration: A - Advection D - Advection + diffusion L - Laplace N - Navier-Stokes E - Euler * r: problem: U - User-defined S - Shear-diffusion D - Dirichlet & Neumann V - Vortical flow V - Nonlinear energy growth V - Rayleigh-Taylor Z - Zalesak's slotted cylinder Compressible flow : h:EN, r:UV Transport : h:AD, r:SZ < PROBLEM > ---- o ---- * Title: Zalesak's slotted cylinder ----------------------------------- * Partial differential equations integrated (1): ------------------------------------------------ < Transport > problem : Zalesak's slotted cylinder start offset in unknowns array : 0 number of components : 1 * Discretization parameters: ---------------------------- Number of time steps : 18446744073709551615 Start time : 0 Terminate time : 1.5708 CFL coefficient : 0.5 Mass diffusion coeff : 1 * Output filenames: ------------------- Field : out.<chareid> Diagnostics : diag * Output intervals: ------------------- TTY : 1 Field : 10 Diagnostics : 1 Quinoa> Reading side sets ... done Quinoa> Creating linear system mergers Quinoa> Creating particle writers Quinoa> Creating partitioners and reading mesh graph ... done * Input mesh graph statistics: ------------------------------ Number of tetrahedra : 6000000 Number of nodes : 1030301 * Load distribution: -------------------- Virtualization [0.0...1.0] : 0 Load (number of tetrahedra) : 6000000 Number of processing elements : 36 Number of work units : 36 (35*166666+166690) * Initial mesh partitioning: ---------------------------- Mesh partitioning algorithm : recursive coordinate bisection Quinoa> Mesh read time: 0.230858 sec Quinoa> Partitioning and distributing mesh ... ZOLTAN Load balancing method = 3 (RCB) Build configuration: ZOLTAN_ID_TYPE: unsigned int (4 bytes) ZOLTAN_GNO_TYPE: ssize_t, (8 bytes) MPI_Datatype for ZOLTAN_ID_TYPE: MPI_UNSIGNED MPI_Datatype for ZOLTAN_GNO_TYPE: MPI_LONG ZOLTAN Parameter IMBALANCE_TOL[0] = 1.100000 ZOLTAN Parameter AUTO_MIGRATE = FALSE ZOLTAN Parameter MIGRATE_ONLY_PROC_CHANGES = 1 ZOLTAN Parameter OBJ_WEIGHT_DIM = 0 ZOLTAN Parameter EDGE_WEIGHT_DIM = 0 ZOLTAN Parameter DEBUG_LEVEL = 1 ZOLTAN Parameter DEBUG_PROCESSOR = 0 ZOLTAN Parameter DETERMINISTIC = TRUE ZOLTAN Parameter TIMER = 1 (wall) ZOLTAN Parameter NUM_GID_ENTRIES = 2 ZOLTAN Parameter NUM_LID_ENTRIES = 2 ZOLTAN Parameter RETURN_LISTS = PARTITION ASSIGNMENTS ZOLTAN Parameter NUM_GLOBAL_PARTS = 36 ZOLTAN Parameter NUM_LOCAL_PARTS = -1 ZOLTAN Parameter REMAP = 1 ZOLTAN Parameter SEED = 123456789 (123456789) ZOLTAN Parameter LB_APPROACH = repartition ZOLTAN Parameter RCB_OVERALLOC = 1.200000 ZOLTAN Parameter RCB_REUSE = 0 ZOLTAN Parameter CHECK_GEOM = 1 ZOLTAN Parameter RCB_OUTPUT_LEVEL = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter RCB_LOCK_DIRECTIONS = 0 ZOLTAN Parameter RCB_SET_DIRECTIONS = 0 ZOLTAN Parameter RCB_RECTILINEAR_BLOCKS = 0 ZOLTAN Parameter OBJ_WEIGHTS_COMPARABLE = 0 ZOLTAN Parameter RCB_MULTICRITERIA_NORM = 1 ZOLTAN Parameter RCB_MAX_ASPECT_RATIO = 10.000000 ZOLTAN Parameter AVERAGE_CUTS = 0 ZOLTAN Parameter RANDOM_PIVOTS = 0 ZOLTAN Parameter RCB_RECOMPUTE_BOX = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 0.000000 ZOLTAN Parameter FINAL_OUTPUT = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 10.000000 done Quinoa> Reordering mesh ... done Quinoa> Creating workers Quinoa> Reading mesh node coordinates, computing nodal volumes Quinoa> Linear system communication cost: avg = 0.091166, std = 0.054424 Quinoa> Mesh statistics: min/max/avg(edgelength) = 0.010000 / 0.017321 / 0.012771 Quinoa> Mesh statistics: min/max/avg(V^{1/3}) = 0.005503 / 0.005503 / 0.005503 Quinoa> Computing row IDs, querying BCs, outputting mesh done Quinoa> Setting and outputting ICs, computing initial dt, computing LHS ... done Quinoa> Starting time stepping ... * Time integration: Unstructured-mesh PDE solver testbed -------------------------------------------------------- Legend: it - iteration count t - time dt - time step size ETE - estimated time elapsed (h:m:s) ETA - estimated time for accomplishment (h:m:s) out - output-saved flags (F: field, D: diagnostics) it t dt ETE ETA out --------------------------------------------------------------- 1 3.891359e-03 3.891359e-03 000:00:01 000:08:19 D 2 7.782717e-03 3.891359e-03 000:00:02 000:08:38 D 3 1.167408e-02 3.891359e-03 000:00:03 000:08:47 D 4 1.556543e-02 3.891359e-03 000:00:05 000:08:42 D 5 1.945679e-02 3.891359e-03 000:00:06 000:08:48 D 6 2.334815e-02 3.891359e-03 000:00:07 000:08:46 D 7 2.723951e-02 3.891359e-03 000:00:09 000:09:11 D 8 3.113087e-02 3.891359e-03 000:00:11 000:09:09 D 9 3.502223e-02 3.891359e-03 000:00:12 000:09:10 D 10 3.891359e-02 3.891359e-03 000:00:13 000:09:08 FD 11 4.280494e-02 3.891359e-03 000:00:15 000:09:06 D 12 4.669630e-02 3.891359e-03 000:00:16 000:09:01 D 13 5.058766e-02 3.891359e-03 000:00:17 000:09:00 D 14 5.447902e-02 3.891359e-03 000:00:19 000:08:57 D 15 5.837038e-02 3.891359e-03 000:00:20 000:08:56 D 16 6.226174e-02 3.891359e-03 000:00:22 000:08:54 D 17 6.615310e-02 3.891359e-03 000:00:23 000:08:53 D 18 7.004445e-02 3.891359e-03 000:00:25 000:08:56 D 19 7.393581e-02 3.891359e-03 000:00:27 000:09:08 D 20 7.782717e-02 3.891359e-03 000:00:28 000:09:08 FD 21 8.171853e-02 3.891359e-03 000:00:30 000:09:07 D 22 8.560989e-02 3.891359e-03 000:00:31 000:09:05 D 23 8.950125e-02 3.891359e-03 000:00:32 000:09:02 D 24 9.339261e-02 3.891359e-03 000:00:34 000:08:59 D 25 9.728396e-02 3.891359e-03 000:00:35 000:08:57 D 26 1.011753e-01 3.891359e-03 000:00:36 000:08:55 D 27 1.050667e-01 3.891359e-03 000:00:38 000:08:53 D 28 1.089580e-01 3.891359e-03 000:00:39 000:08:51 D 29 1.128494e-01 3.891359e-03 000:00:40 000:08:49 D 30 1.167408e-01 3.891359e-03 000:00:42 000:08:51 FD 31 1.206321e-01 3.891359e-03 000:00:44 000:08:50 D 32 1.245235e-01 3.891359e-03 000:00:45 000:08:46 D 33 1.284148e-01 3.891359e-03 000:00:46 000:08:45 D 34 1.323062e-01 3.891359e-03 000:00:48 000:08:43 D 35 1.361976e-01 3.891359e-03 000:00:49 000:08:40 D 36 1.400889e-01 3.891359e-03 000:00:50 000:08:38 D 37 1.439803e-01 3.891359e-03 000:00:52 000:08:36 D 38 1.478716e-01 3.891359e-03 000:00:53 000:08:35 D 39 1.517630e-01 3.891359e-03 000:00:54 000:08:33 D 40 1.556543e-01 3.891359e-03 000:00:56 000:08:31 FD 41 1.595457e-01 3.891359e-03 000:00:57 000:08:29 D 42 1.634371e-01 3.891359e-03 000:00:59 000:08:32 D 43 1.673284e-01 3.891359e-03 000:01:00 000:08:30 D 44 1.712198e-01 3.891359e-03 000:01:02 000:08:28 D 45 1.751111e-01 3.891359e-03 000:01:03 000:08:26 D 46 1.790025e-01 3.891359e-03 000:01:04 000:08:25 D 47 1.828939e-01 3.891359e-03 000:01:06 000:08:23 D 48 1.867852e-01 3.891359e-03 000:01:07 000:08:21 D 49 1.906766e-01 3.891359e-03 000:01:09 000:08:19 D 50 1.945679e-01 3.891359e-03 000:01:10 000:08:17 FD 51 1.984593e-01 3.891359e-03 000:01:11 000:08:16 D 52 2.023506e-01 3.891359e-03 000:01:13 000:08:14 D 53 2.062420e-01 3.891359e-03 000:01:14 000:08:13 D 54 2.101334e-01 3.891359e-03 000:01:16 000:08:13 D 55 2.140247e-01 3.891359e-03 000:01:17 000:08:12 D 56 2.179161e-01 3.891359e-03 000:01:18 000:08:10 D 57 2.218074e-01 3.891359e-03 000:01:20 000:08:08 D 58 2.256988e-01 3.891359e-03 000:01:21 000:08:07 D 59 2.295902e-01 3.891359e-03 000:01:23 000:08:05 D 60 2.334815e-01 3.891359e-03 000:01:24 000:08:05 FD 61 2.373729e-01 3.891359e-03 000:01:26 000:08:04 D 62 2.412642e-01 3.891359e-03 000:01:27 000:08:03 D 63 2.451556e-01 3.891359e-03 000:01:29 000:08:02 D 64 2.490469e-01 3.891359e-03 000:01:30 000:08:01 D 65 2.529383e-01 3.891359e-03 000:01:32 000:07:59 D 66 2.568297e-01 3.891359e-03 000:01:33 000:07:57 D 67 2.607210e-01 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1.373650e+00 3.891359e-03 000:08:24 000:01:12 D 354 1.377541e+00 3.891359e-03 000:08:26 000:01:10 D 355 1.381432e+00 3.891359e-03 000:08:27 000:01:09 D 356 1.385324e+00 3.891359e-03 000:08:29 000:01:08 D 357 1.389215e+00 3.891359e-03 000:08:30 000:01:06 D 358 1.393106e+00 3.891359e-03 000:08:32 000:01:05 D 359 1.396998e+00 3.891359e-03 000:08:33 000:01:03 D 360 1.400889e+00 3.891359e-03 000:08:34 000:01:02 FD 361 1.404780e+00 3.891359e-03 000:08:36 000:01:01 D 362 1.408672e+00 3.891359e-03 000:08:37 000:00:59 D 363 1.412563e+00 3.891359e-03 000:08:39 000:00:58 D 364 1.416455e+00 3.891359e-03 000:08:40 000:00:56 D 365 1.420346e+00 3.891359e-03 000:08:42 000:00:55 D 366 1.424237e+00 3.891359e-03 000:08:43 000:00:53 D 367 1.428129e+00 3.891359e-03 000:08:44 000:00:52 D 368 1.432020e+00 3.891359e-03 000:08:46 000:00:51 D 369 1.435911e+00 3.891359e-03 000:08:47 000:00:49 D 370 1.439803e+00 3.891359e-03 000:08:49 000:00:48 FD 371 1.443694e+00 3.891359e-03 000:08:50 000:00:46 D 372 1.447585e+00 3.891359e-03 000:08:51 000:00:45 D 373 1.451477e+00 3.891359e-03 000:08:53 000:00:43 D 374 1.455368e+00 3.891359e-03 000:08:54 000:00:42 D 375 1.459259e+00 3.891359e-03 000:08:56 000:00:40 D 376 1.463151e+00 3.891359e-03 000:08:57 000:00:39 D 377 1.467042e+00 3.891359e-03 000:08:59 000:00:38 D 378 1.470934e+00 3.891359e-03 000:09:00 000:00:36 D 379 1.474825e+00 3.891359e-03 000:09:01 000:00:35 D 380 1.478716e+00 3.891359e-03 000:09:03 000:00:33 FD 381 1.482608e+00 3.891359e-03 000:09:04 000:00:32 D 382 1.486499e+00 3.891359e-03 000:09:06 000:00:30 D 383 1.490390e+00 3.891359e-03 000:09:07 000:00:29 D 384 1.494282e+00 3.891359e-03 000:09:08 000:00:28 D 385 1.498173e+00 3.891359e-03 000:09:10 000:00:26 D 386 1.502064e+00 3.891359e-03 000:09:11 000:00:25 D 387 1.505956e+00 3.891359e-03 000:09:13 000:00:23 D 388 1.509847e+00 3.891359e-03 000:09:14 000:00:22 D 389 1.513738e+00 3.891359e-03 000:09:16 000:00:20 D 390 1.517630e+00 3.891359e-03 000:09:17 000:00:19 FD 391 1.521521e+00 3.891359e-03 000:09:18 000:00:18 D 392 1.525413e+00 3.891359e-03 000:09:20 000:00:16 D 393 1.529304e+00 3.891359e-03 000:09:21 000:00:15 D 394 1.533195e+00 3.891359e-03 000:09:23 000:00:13 D 395 1.537087e+00 3.891359e-03 000:09:24 000:00:12 D 396 1.540978e+00 3.891359e-03 000:09:26 000:00:10 D 397 1.544869e+00 3.891359e-03 000:09:27 000:00:09 D 398 1.548761e+00 3.891359e-03 000:09:29 000:00:08 D 399 1.552652e+00 3.891359e-03 000:09:30 000:00:06 D 400 1.556543e+00 3.891359e-03 000:09:32 000:00:05 FD 401 1.560435e+00 3.891359e-03 000:09:33 000:00:03 D 402 1.564326e+00 3.891359e-03 000:09:35 000:00:02 D 403 1.568218e+00 3.891359e-03 000:09:36 000:00:00 D 404 1.570796e+00 2.578819e-03 000:09:37 000:00:00 D Normal finish, maximum time reached: 1.570796 * Timers (h:m:s): ----------------- Migrate global-scope data : 0:0:0 Total runtime : 0:9:42 [Partition 0][Node 0] End of program $ cp diag diag.6M $ ./charmrun +p36 Main/inciter -v -c slot_cyl.q -i unitcube_01_48M.exo Running on 36 processors: Main/inciter -v -c slot_cyl.q -i unitcube_01_48M.exo charmrun> /usr/bin/setarch x86_64 -R mpirun -np 36 Main/inciter -v -c slot_cyl.q -i unitcube_01_48M.exo Charm++> Running on MPI version: 3.1 Charm++> level of thread support used: MPI_THREAD_SINGLE (desired: MPI_THREAD_SINGLE) Charm++> Running in non-SMP mode: numPes 36 Converse/Charm++ Commit ID: CharmLB> Load balancer assumes all CPUs are same. Charm++> Running on 1 unique compute nodes (36-way SMP). Charm++> cpu topology info is gathered in 0.022 seconds. ,::,` `. .;;;'';;;: ;;# ;;;@+ +;;; ;;;;;, ;;;;. ;;;;;, ;;;; ;;;; `;;;;;;: ;;; :;;@` :;;' .;;;@, ,;@, ,;;;@: .;;;' .;+;. ;;;@#:';;; ;;;;' ;;;# ;;;: ;;;' ;: ;;;' ;;;;; ;# ;;;@ ;;; ;+;;' .;;+ ;;;# ;;;' ;: ;;;' ;#;;;` ;# ;;@ `;;+ .;#;;;. ;;;# :;;' ;;;' ;: ;;;' ;# ;;; ;# ;;;@ ;;; ;# ;;;+ ;;;# .;;; ;;;' ;: ;;;' ;# ,;;; ;# ;;;# ;;;: ;@ ;;; ;;;# .;;' ;;;' ;: ;;;' ;# ;;;; ;# ;;;' ;;;+ ;', ;;;@ ;;;+ ,;;+ ;;;' ;: ;;;' ;# ;;;' ;# ;;;' ;;;' ;':::;;;; `;;; ;;;@ ;;;' ;: ;;;' ;# ;;;';# ;;;@ ;;;:,;+++++;;;' ;;;; ;;;@ ;;;# .;. ;;;' ;# ;;;;# `;;+ ;;# ;# ;;;' .;;; :;;@ ,;;+ ;+ ;;;' ;# ;;;# ;;; ;;;@ ;@ ;;;. ';;; ;;;@, ;;;;``.;;@ ;;;' ;+ .;;# ;;; :;;@ ;;; ;;;+ :;;;;;;;+@` ';;;;;'@ ;;;;;, ;;;; ;;+ +;;;;;;#@ ;;;;. .;;;;;; .;;#@' `#@@@: ;::::; ;:::: ;@ '@@@+ ;:::; ;:::::: :;;;;;;. .___ .__ __ .;@+@';;;;;;' | | ____ ____ |__|/ |_ ___________ ` '#''@` | |/ \_/ ___\| \ __\/ __ \_ __ \ | | | \ \___| || | \ ___/| | \/ |___|___| /\___ >__||__| \___ >__| \/ \/ \/ < ENVIRONMENT > ------ o ------ * Build environment: -------------------- Hostname : lagrange Executable : inciter Version : 0.1 (C16015) Revision SHA1 : Quinoa_v0.1-914-g40abfa98 CMake build type : RELEASE Asserts : off (turn on: CMAKE_BUILD_TYPE=DEBUG) Exception trace : off (turn on: CMAKE_BUILD_TYPE=DEBUG) MPI C++ wrapper : /usr/bin/mpicxx Underlying C++ compiler : /usr/bin/g++ Build date : Sun Jun 4 13:51:45 MDT 2017 * Run-time environment: ----------------------- Date, time : Mon Jun 5 07:18:32 2017 Work directory : /home/jbakosi/code/quinoa/build/gnu Executable (rel. to work dir) : Main/inciter Command line arguments : '-v -c slot_cyl.q -i unitcube_01_48M.exo' Output : verbose (quiet: omit -v) Control file : slot_cyl.q Parsed control file : success < FACTORY > ---- o ---- * Unknowns data layout (CMake: FIELD_DATA_LAYOUT): -------------------------------------------------- unknown-major * Registered partial differential equations: -------------------------------------------- Unique equation types : 2 With all policy combinations : 12 Legend: equation name : supported policies Policy codes: * h: physics configuration: A - Advection D - Advection + diffusion L - Laplace N - Navier-Stokes E - Euler * r: problem: U - User-defined S - Shear-diffusion D - Dirichlet & Neumann V - Vortical flow V - Nonlinear energy growth V - Rayleigh-Taylor Z - Zalesak's slotted cylinder Compressible flow : h:EN, r:UV Transport : h:AD, r:SZ < PROBLEM > ---- o ---- * Title: Zalesak's slotted cylinder ----------------------------------- * Partial differential equations integrated (1): ------------------------------------------------ < Transport > problem : Zalesak's slotted cylinder start offset in unknowns array : 0 number of components : 1 * Discretization parameters: ---------------------------- Number of time steps : 18446744073709551615 Start time : 0 Terminate time : 1.5708 CFL coefficient : 0.5 Mass diffusion coeff : 1 * Output filenames: ------------------- Field : out.<chareid> Diagnostics : diag * Output intervals: ------------------- TTY : 1 Field : 10 Diagnostics : 1 Quinoa> Reading side sets ... done Quinoa> Creating linear system mergers Quinoa> Creating particle writers Quinoa> Creating partitioners and reading mesh graph ... done * Input mesh graph statistics: ------------------------------ Number of tetrahedra : 48000000 Number of nodes : 8120601 * Load distribution: -------------------- Virtualization [0.0...1.0] : 0 Load (number of tetrahedra) : 48000000 Number of processing elements : 36 Number of work units : 36 (35*1333333+1333345) * Initial mesh partitioning: ---------------------------- Mesh partitioning algorithm : recursive coordinate bisection Quinoa> Mesh read time: 1.933377 sec Quinoa> Partitioning and distributing mesh ... ZOLTAN Load balancing method = 3 (RCB) Build configuration: ZOLTAN_ID_TYPE: unsigned int (4 bytes) ZOLTAN_GNO_TYPE: ssize_t, (8 bytes) MPI_Datatype for ZOLTAN_ID_TYPE: MPI_UNSIGNED MPI_Datatype for ZOLTAN_GNO_TYPE: MPI_LONG ZOLTAN Parameter IMBALANCE_TOL[0] = 1.100000 ZOLTAN Parameter AUTO_MIGRATE = FALSE ZOLTAN Parameter MIGRATE_ONLY_PROC_CHANGES = 1 ZOLTAN Parameter OBJ_WEIGHT_DIM = 0 ZOLTAN Parameter EDGE_WEIGHT_DIM = 0 ZOLTAN Parameter DEBUG_LEVEL = 1 ZOLTAN Parameter DEBUG_PROCESSOR = 0 ZOLTAN Parameter DETERMINISTIC = TRUE ZOLTAN Parameter TIMER = 1 (wall) ZOLTAN Parameter NUM_GID_ENTRIES = 2 ZOLTAN Parameter NUM_LID_ENTRIES = 2 ZOLTAN Parameter RETURN_LISTS = PARTITION ASSIGNMENTS ZOLTAN Parameter NUM_GLOBAL_PARTS = 36 ZOLTAN Parameter NUM_LOCAL_PARTS = -1 ZOLTAN Parameter REMAP = 1 ZOLTAN Parameter SEED = 123456789 (123456789) ZOLTAN Parameter LB_APPROACH = repartition ZOLTAN Parameter RCB_OVERALLOC = 1.200000 ZOLTAN Parameter RCB_REUSE = 0 ZOLTAN Parameter CHECK_GEOM = 1 ZOLTAN Parameter RCB_OUTPUT_LEVEL = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter RCB_LOCK_DIRECTIONS = 0 ZOLTAN Parameter RCB_SET_DIRECTIONS = 0 ZOLTAN Parameter RCB_RECTILINEAR_BLOCKS = 0 ZOLTAN Parameter OBJ_WEIGHTS_COMPARABLE = 0 ZOLTAN Parameter RCB_MULTICRITERIA_NORM = 1 ZOLTAN Parameter RCB_MAX_ASPECT_RATIO = 10.000000 ZOLTAN Parameter AVERAGE_CUTS = 0 ZOLTAN Parameter RANDOM_PIVOTS = 0 ZOLTAN Parameter RCB_RECOMPUTE_BOX = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 0.000000 ZOLTAN Parameter FINAL_OUTPUT = 0 ZOLTAN Parameter KEEP_CUTS = 0 ZOLTAN Parameter REDUCE_DIMENSIONS = 0 ZOLTAN Parameter DEGENERATE_RATIO = 10.000000 done Quinoa> Reordering mesh ... done Quinoa> Creating workers Quinoa> Reading mesh node coordinates, computing nodal volumes Quinoa> Linear system communication cost: avg = 0.044557, std = 0.026130 Quinoa> Mesh statistics: min/max/avg(edgelength) = 0.005000 / 0.008660 / 0.006397 Quinoa> Mesh statistics: min/max/avg(V^{1/3}) = 0.002752 / 0.002752 / 0.002752 Quinoa> Computing row IDs, querying BCs, outputting mesh done Quinoa> Setting and outputting ICs, computing initial dt, computing LHS ... done Quinoa> Starting time stepping ... * Time integration: Unstructured-mesh PDE solver testbed -------------------------------------------------------- Legend: it - iteration count t - time dt - time step size ETE - estimated time elapsed (h:m:s) ETA - estimated time for accomplishment (h:m:s) out - output-saved flags (F: field, D: diagnostics) it t dt ETE ETA out --------------------------------------------------------------- 1 1.945679e-03 1.945679e-03 000:00:10 002:23:17 D 2 3.891359e-03 1.945679e-03 000:00:22 002:30:35 D 3 5.837038e-03 1.945679e-03 000:00:35 002:38:17 D 4 7.782717e-03 1.945679e-03 000:00:46 002:35:40 D 5 9.728396e-03 1.945679e-03 000:00:57 002:35:01 D 6 1.167408e-02 1.945679e-03 000:01:08 002:33:26 D 7 1.361976e-02 1.945679e-03 000:01:19 002:31:22 D 8 1.556543e-02 1.945679e-03 000:01:31 002:31:55 D 9 1.751111e-02 1.945679e-03 000:01:43 002:32:51 D 10 1.945679e-02 1.945679e-03 000:01:54 002:32:29 FD 11 2.140247e-02 1.945679e-03 000:02:05 002:31:21 D 12 2.334815e-02 1.945679e-03 000:02:17 002:31:28 D 13 2.529383e-02 1.945679e-03 000:02:29 002:31:47 D 14 2.723951e-02 1.945679e-03 000:02:39 002:30:31 D 15 2.918519e-02 1.945679e-03 000:02:51 002:30:38 D 16 3.113087e-02 1.945679e-03 000:03:01 002:29:44 D 17 3.307655e-02 1.945679e-03 000:03:12 002:29:09 D 18 3.502223e-02 1.945679e-03 000:03:23 002:28:59 D 19 3.696791e-02 1.945679e-03 000:03:34 002:28:26 D 20 3.891359e-02 1.945679e-03 000:03:46 002:28:31 FD 21 4.085927e-02 1.945679e-03 000:03:57 002:28:09 D 22 4.280494e-02 1.945679e-03 000:04:08 002:27:54 D 23 4.475062e-02 1.945679e-03 000:04:19 002:27:25 D 24 4.669630e-02 1.945679e-03 000:04:30 002:26:55 D 25 4.864198e-02 1.945679e-03 000:04:41 002:26:41 D 26 5.058766e-02 1.945679e-03 000:04:52 002:26:29 D 27 5.253334e-02 1.945679e-03 000:05:03 002:26:06 D 28 5.447902e-02 1.945679e-03 000:05:13 002:25:36 D 29 5.642470e-02 1.945679e-03 000:05:24 002:25:20 D 30 5.837038e-02 1.945679e-03 000:05:35 002:25:03 FD 31 6.031606e-02 1.945679e-03 000:05:48 002:25:21 D 32 6.226174e-02 1.945679e-03 000:05:58 002:24:56 D 33 6.420742e-02 1.945679e-03 000:06:10 002:24:46 D 34 6.615310e-02 1.945679e-03 000:06:21 002:24:28 D 35 6.809878e-02 1.945679e-03 000:06:31 002:24:04 D 36 7.004445e-02 1.945679e-03 000:06:42 002:23:52 D 37 7.199013e-02 1.945679e-03 000:06:54 002:23:44 D 38 7.393581e-02 1.945679e-03 000:07:05 002:23:26 D 39 7.588149e-02 1.945679e-03 000:07:16 002:23:12 D 40 7.782717e-02 1.945679e-03 000:07:27 002:23:05 FD 41 7.977285e-02 1.945679e-03 000:07:38 002:22:43 D 42 8.171853e-02 1.945679e-03 000:07:50 002:22:55 D 43 8.366421e-02 1.945679e-03 000:08:01 002:22:44 D 44 8.560989e-02 1.945679e-03 000:08:12 002:22:30 D 45 8.755557e-02 1.945679e-03 000:08:23 002:22:17 D 46 8.950125e-02 1.945679e-03 000:08:34 002:22:00 D 47 9.144693e-02 1.945679e-03 000:08:46 002:21:54 D 48 9.339261e-02 1.945679e-03 000:08:57 002:21:45 D 49 9.533829e-02 1.945679e-03 000:09:08 002:21:29 D 50 9.728396e-02 1.945679e-03 000:09:19 002:21:13 FD 51 9.922964e-02 1.945679e-03 000:09:30 002:21:01 D 52 1.011753e-01 1.945679e-03 000:09:42 002:21:02 D 53 1.031210e-01 1.945679e-03 000:09:53 002:20:48 D 54 1.050667e-01 1.945679e-03 000:10:04 002:20:37 D 55 1.070124e-01 1.945679e-03 000:10:15 002:20:26 D 56 1.089580e-01 1.945679e-03 000:10:27 002:20:14 D 57 1.109037e-01 1.945679e-03 000:10:37 002:19:55 D 58 1.128494e-01 1.945679e-03 000:10:48 002:19:41 D 59 1.147951e-01 1.945679e-03 000:10:59 002:19:20 D 60 1.167408e-01 1.945679e-03 000:11:09 002:19:03 FD 61 1.186864e-01 1.945679e-03 000:11:20 002:18:49 D 62 1.206321e-01 1.945679e-03 000:11:31 002:18:35 D 63 1.225778e-01 1.945679e-03 000:11:42 002:18:19 D 64 1.245235e-01 1.945679e-03 000:11:53 002:18:02 D 65 1.264692e-01 1.945679e-03 000:12:03 002:17:47 D 66 1.284148e-01 1.945679e-03 000:12:15 002:17:36 D 67 1.303605e-01 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1.537087e+00 1.945679e-03 002:29:40 000:03:16 FD 791 1.539032e+00 1.945679e-03 002:29:51 000:03:05 D 792 1.540978e+00 1.945679e-03 002:30:02 000:02:54 D 793 1.542924e+00 1.945679e-03 002:30:13 000:02:42 D 794 1.544869e+00 1.945679e-03 002:30:24 000:02:31 D 795 1.546815e+00 1.945679e-03 002:30:35 000:02:20 D 796 1.548761e+00 1.945679e-03 002:30:47 000:02:08 D 797 1.550706e+00 1.945679e-03 002:30:58 000:01:57 D 798 1.552652e+00 1.945679e-03 002:31:10 000:01:45 D 799 1.554598e+00 1.945679e-03 002:31:22 000:01:34 D 800 1.556543e+00 1.945679e-03 002:31:33 000:01:23 FD 801 1.558489e+00 1.945679e-03 002:31:44 000:01:11 D 802 1.560435e+00 1.945679e-03 002:31:56 000:01:00 D 803 1.562380e+00 1.945679e-03 002:32:07 000:00:49 D 804 1.564326e+00 1.945679e-03 002:32:18 000:00:37 D 805 1.566272e+00 1.945679e-03 002:32:29 000:00:26 D 806 1.568218e+00 1.945679e-03 002:32:41 000:00:15 D 807 1.570163e+00 1.945679e-03 002:32:52 000:00:03 D 808 1.570796e+00 6.331393e-04 002:33:03 000:00:00 D Normal finish, maximum time reached: 1.570796 * Timers (h:m:s): ----------------- Migrate global-scope data : 0:0:0 Total runtime : 2:33:54 [Partition 0][Node 0] End of program $ cp diag diag.48M
Example visualization
Example visualization of the 3D field data result with ParaView.
paraview out.0
L2 errors
The following figure shows the time evolution of the error for three different meshes whose edge lengths are successively halved, which indicates approximately second-order convergence. See also https:/
Gnuplot commands to reproduce the above plot:
plot "diag.750K" u 2:4, "diag.6M" u 2:4, "diag.48M" u 2:4