1ccaff030SJeremy L Thompson // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at 2ccaff030SJeremy L Thompson // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights 3ccaff030SJeremy L Thompson // reserved. See files LICENSE and NOTICE for details. 4ccaff030SJeremy L Thompson // 5ccaff030SJeremy L Thompson // This file is part of CEED, a collection of benchmarks, miniapps, software 6ccaff030SJeremy L Thompson // libraries and APIs for efficient high-order finite element and spectral 7ccaff030SJeremy L Thompson // element discretizations for exascale applications. For more information and 8ccaff030SJeremy L Thompson // source code availability see http://github.com/ceed. 9ccaff030SJeremy L Thompson // 10ccaff030SJeremy L Thompson // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC, 11ccaff030SJeremy L Thompson // a collaborative effort of two U.S. Department of Energy organizations (Office 12ccaff030SJeremy L Thompson // of Science and the National Nuclear Security Administration) responsible for 13ccaff030SJeremy L Thompson // the planning and preparation of a capable exascale ecosystem, including 14ccaff030SJeremy L Thompson // software, applications, hardware, advanced system engineering and early 15ccaff030SJeremy L Thompson // testbed platforms, in support of the nation's exascale computing imperative. 16ccaff030SJeremy L Thompson 17ccaff030SJeremy L Thompson // libCEED + PETSc Example: Navier-Stokes 18ccaff030SJeremy L Thompson // 19ccaff030SJeremy L Thompson // This example demonstrates a simple usage of libCEED with PETSc to solve a 20ccaff030SJeremy L Thompson // Navier-Stokes problem. 21ccaff030SJeremy L Thompson // 22ccaff030SJeremy L Thompson // The code is intentionally "raw", using only low-level communication 23ccaff030SJeremy L Thompson // primitives. 24ccaff030SJeremy L Thompson // 25ccaff030SJeremy L Thompson // Build with: 26ccaff030SJeremy L Thompson // 27ccaff030SJeremy L Thompson // make [PETSC_DIR=</path/to/petsc>] [CEED_DIR=</path/to/libceed>] navierstokes 28ccaff030SJeremy L Thompson // 29ccaff030SJeremy L Thompson // Sample runs: 30ccaff030SJeremy L Thompson // 3184d34d69SLeila Ghaffari // ./navierstokes -ceed /cpu/self -problem density_current -degree 1 3228688798Sjeremylt // ./navierstokes -ceed /gpu/cuda -problem advection -degree 1 33ccaff030SJeremy L Thompson // 34dc8efd83SLeila Ghaffari //TESTARGS(name="dc_explicit") -ceed {ceed_resource} -test -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -thetaC -35. -ts_dt 1e-3 -compare_final_state_atol 1E-11 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-dc-explicit.bin 35dc8efd83SLeila Ghaffari //TESTARGS(name="dc_implicit_stab_none") -ceed {ceed_resource} -test -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -thetaC -35. -ksp_atol 1e-4 -ksp_rtol 1e-3 -ksp_type bcgs -snes_atol 1e-3 -snes_lag_jacobian 100 -snes_lag_jacobian_persists -snes_mf_operator -ts_dt 1e-3 -implicit -ts_type alpha -compare_final_state_atol 5E-4 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-dc-implicit-stab-none.bin 36dc8efd83SLeila Ghaffari //TESTARGS(name="adv_rotation_explicit_strong") -ceed {ceed_resource} -test -problem advection -strong_form 1 -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ts_dt 1e-3 -compare_final_state_atol 1E-11 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv-rotation-explicit-strong.bin 37dc8efd83SLeila Ghaffari //TESTARGS(name="adv_rotation_implicit_stab_supg") -ceed {ceed_resource} -test -problem advection -CtauS .3 -stab supg -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ksp_atol 1e-4 -ksp_rtol 1e-3 -ksp_type bcgs -snes_atol 1e-3 -snes_lag_jacobian 100 -snes_lag_jacobian_persists -snes_mf_operator -ts_dt 1e-3 -implicit -ts_type alpha -compare_final_state_atol 5E-4 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv-rotation-implicit-stab-supg.bin 38dc8efd83SLeila Ghaffari //TESTARGS(name="adv_translation_implicit_stab_su") -ceed {ceed_resource} -test -problem advection -CtauS .3 -stab su -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ksp_atol 1e-4 -ksp_rtol 1e-3 -ksp_type bcgs -snes_atol 1e-3 -snes_lag_jacobian 100 -snes_lag_jacobian_persists -snes_mf_operator -ts_dt 1e-3 -implicit -ts_type alpha -problem_advection_wind translation -problem_advection_wind_translation .53,-1.33,-2.65 -compare_final_state_atol 5E-4 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv-translation-implicit-stab-su.bin 39dc8efd83SLeila Ghaffari //TESTARGS(name="adv2d_rotation_explicit_strong") -ceed {ceed_resource} -test -problem advection2d -strong_form 1 -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ts_dt 1e-3 -compare_final_state_atol 1E-11 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv2d-rotation-explicit-strong.bin 40dc8efd83SLeila Ghaffari //TESTARGS(name="adv2d_rotation_implicit_stab_supg") -ceed {ceed_resource} -test -problem advection2d -CtauS .3 -stab supg -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ksp_atol 1e-4 -ksp_rtol 1e-3 -ksp_type bcgs -snes_atol 1e-3 -snes_lag_jacobian 100 -snes_lag_jacobian_persists -snes_mf_operator -ts_dt 1e-3 -implicit -ts_type alpha -compare_final_state_atol 5E-4 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv2d-rotation-implicit-stab-supg.bin 41dc8efd83SLeila Ghaffari //TESTARGS(name="adv2d_translation_implicit_stab_su") -ceed {ceed_resource} -test -problem advection2d -CtauS .3 -stab su -degree 3 -dm_plex_box_faces 1,1,2 -units_kilogram 1e-9 -lx 125 -ly 125 -lz 250 -center 62.5,62.5,187.5 -rc 100. -ksp_atol 1e-4 -ksp_rtol 1e-3 -ksp_type bcgs -snes_atol 1e-3 -snes_lag_jacobian 100 -snes_lag_jacobian_persists -snes_mf_operator -ts_dt 1e-3 -implicit -ts_type alpha -problem_advection_wind translation -problem_advection_wind_translation .53,-1.33,0 -compare_final_state_atol 5E-4 -compare_final_state_filename examples/fluids/tests-output/fluids-navierstokes-adv2d-translation-implicit-stab-su.bin 42ccaff030SJeremy L Thompson 43ccaff030SJeremy L Thompson /// @file 44ccaff030SJeremy L Thompson /// Navier-Stokes example using PETSc 45ccaff030SJeremy L Thompson 46ccaff030SJeremy L Thompson const char help[] = "Solve Navier-Stokes using PETSc and libCEED\n"; 47ccaff030SJeremy L Thompson 48ccaff030SJeremy L Thompson #include <ceed.h> 493d576824SJeremy L Thompson #include <petscdmplex.h> 50ccaff030SJeremy L Thompson #include <petscsys.h> 513d576824SJeremy L Thompson #include <petscts.h> 523d576824SJeremy L Thompson #include <stdbool.h> 53ccaff030SJeremy L Thompson #include "advection.h" 54ccaff030SJeremy L Thompson #include "advection2d.h" 553d576824SJeremy L Thompson #include "common.h" 56eb088987SLeila Ghaffari #include "euler-vortex.h" 57ccaff030SJeremy L Thompson #include "densitycurrent.h" 583d576824SJeremy L Thompson #include "setup-boundary.h" 59ccaff030SJeremy L Thompson 6084d34d69SLeila Ghaffari #if PETSC_VERSION_LT(3,14,0) 6184d34d69SLeila Ghaffari # define DMPlexGetClosureIndices(a,b,c,d,e,f,g,h,i) DMPlexGetClosureIndices(a,b,c,d,f,g,i) 6284d34d69SLeila Ghaffari # define DMPlexRestoreClosureIndices(a,b,c,d,e,f,g,h,i) DMPlexRestoreClosureIndices(a,b,c,d,f,g,i) 6384d34d69SLeila Ghaffari #endif 6484d34d69SLeila Ghaffari 653ab4fca6SValeria Barra #if PETSC_VERSION_LT(3,14,0) 663ab4fca6SValeria Barra # define DMAddBoundary(a,b,c,d,e,f,g,h,i,j,k,l) DMAddBoundary(a,b,c,d,e,f,g,h,j,k,l) 673ab4fca6SValeria Barra #endif 683ab4fca6SValeria Barra 6984d34d69SLeila Ghaffari // MemType Options 7084d34d69SLeila Ghaffari static const char *const memTypes[] = { 7184d34d69SLeila Ghaffari "host", 7284d34d69SLeila Ghaffari "device", 7384d34d69SLeila Ghaffari "memType", "CEED_MEM_", NULL 7484d34d69SLeila Ghaffari }; 7584d34d69SLeila Ghaffari 76ccaff030SJeremy L Thompson // Problem Options 77ccaff030SJeremy L Thompson typedef enum { 78ccaff030SJeremy L Thompson NS_DENSITY_CURRENT = 0, 79ccaff030SJeremy L Thompson NS_ADVECTION = 1, 80ccaff030SJeremy L Thompson NS_ADVECTION2D = 2, 81eb088987SLeila Ghaffari NS_EULER_VORTEX = 3, 82ccaff030SJeremy L Thompson } problemType; 83ccaff030SJeremy L Thompson static const char *const problemTypes[] = { 84ccaff030SJeremy L Thompson "density_current", 85ccaff030SJeremy L Thompson "advection", 86ccaff030SJeremy L Thompson "advection2d", 87e5ed8c30SLeila Ghaffari "euler_vortex", 8884d34d69SLeila Ghaffari "problemType", "NS_", NULL 89ccaff030SJeremy L Thompson }; 90ccaff030SJeremy L Thompson 911184866aSLeila Ghaffari // Wind Options for Advection 921184866aSLeila Ghaffari typedef enum { 931184866aSLeila Ghaffari ADVECTION_WIND_ROTATION = 0, 941184866aSLeila Ghaffari ADVECTION_WIND_TRANSLATION = 1, 951184866aSLeila Ghaffari } WindType; 961184866aSLeila Ghaffari static const char *const WindTypes[] = { 971184866aSLeila Ghaffari "rotation", 981184866aSLeila Ghaffari "translation", 991184866aSLeila Ghaffari "WindType", "ADVECTION_WIND_", NULL 1001184866aSLeila Ghaffari }; 1011184866aSLeila Ghaffari 102ccaff030SJeremy L Thompson typedef enum { 103ccaff030SJeremy L Thompson STAB_NONE = 0, 104ccaff030SJeremy L Thompson STAB_SU = 1, // Streamline Upwind 105ccaff030SJeremy L Thompson STAB_SUPG = 2, // Streamline Upwind Petrov-Galerkin 106ccaff030SJeremy L Thompson } StabilizationType; 107ccaff030SJeremy L Thompson static const char *const StabilizationTypes[] = { 10884d34d69SLeila Ghaffari "none", 109ccaff030SJeremy L Thompson "SU", 110ccaff030SJeremy L Thompson "SUPG", 111ccaff030SJeremy L Thompson "StabilizationType", "STAB_", NULL 112ccaff030SJeremy L Thompson }; 113ccaff030SJeremy L Thompson 114ccaff030SJeremy L Thompson // Problem specific data 115ccaff030SJeremy L Thompson typedef struct { 1168b982baeSLeila Ghaffari CeedInt dim, qdatasizeVol, qdatasizeSur; 117ebb4b9bdSLeila Ghaffari CeedQFunctionUser setupVol, setupSur, ics, applyVol_rhs, applyVol_ifunction, 1184438636fSLeila Ghaffari applySur, applyIn, applyOut; 119ccaff030SJeremy L Thompson PetscErrorCode (*bc)(PetscInt, PetscReal, const PetscReal[], PetscInt, 120ccaff030SJeremy L Thompson PetscScalar[], void *); 1217659d40cSLeila Ghaffari const char *setupVol_loc, *setupSur_loc, *ics_loc, *applyVol_rhs_loc, 1224438636fSLeila Ghaffari *applyVol_ifunction_loc, *applySur_loc, *applyIn_loc, *applyOut_loc; 123ccaff030SJeremy L Thompson const bool non_zero_time; 124ccaff030SJeremy L Thompson } problemData; 125ccaff030SJeremy L Thompson 126ccaff030SJeremy L Thompson problemData problemOptions[] = { 127ccaff030SJeremy L Thompson [NS_DENSITY_CURRENT] = { 128ccaff030SJeremy L Thompson .dim = 3, 129ea6e0f84SLeila Ghaffari .qdatasizeVol = 10, 1308b982baeSLeila Ghaffari .qdatasizeSur = 4, 131b0137797SLeila Ghaffari .setupVol = Setup, 132b0137797SLeila Ghaffari .setupVol_loc = Setup_loc, 133356fbf4bSLeila Ghaffari .setupSur = SetupBoundary, 134356fbf4bSLeila Ghaffari .setupSur_loc = SetupBoundary_loc, 135ccaff030SJeremy L Thompson .ics = ICsDC, 136ccaff030SJeremy L Thompson .ics_loc = ICsDC_loc, 137c96c872fSLeila Ghaffari .applyVol_rhs = DC, 138c96c872fSLeila Ghaffari .applyVol_rhs_loc = DC_loc, 139c96c872fSLeila Ghaffari .applyVol_ifunction = IFunction_DC, 140c96c872fSLeila Ghaffari .applyVol_ifunction_loc = IFunction_DC_loc, 141ccaff030SJeremy L Thompson .bc = Exact_DC, 14284d34d69SLeila Ghaffari .non_zero_time = PETSC_FALSE, 143ccaff030SJeremy L Thompson }, 144ccaff030SJeremy L Thompson [NS_ADVECTION] = { 145ccaff030SJeremy L Thompson .dim = 3, 146ea6e0f84SLeila Ghaffari .qdatasizeVol = 10, 1478b982baeSLeila Ghaffari .qdatasizeSur = 4, 148b0137797SLeila Ghaffari .setupVol = Setup, 149b0137797SLeila Ghaffari .setupVol_loc = Setup_loc, 150356fbf4bSLeila Ghaffari .setupSur = SetupBoundary, 151356fbf4bSLeila Ghaffari .setupSur_loc = SetupBoundary_loc, 152ccaff030SJeremy L Thompson .ics = ICsAdvection, 153ccaff030SJeremy L Thompson .ics_loc = ICsAdvection_loc, 154c96c872fSLeila Ghaffari .applyVol_rhs = Advection, 155c96c872fSLeila Ghaffari .applyVol_rhs_loc = Advection_loc, 156c96c872fSLeila Ghaffari .applyVol_ifunction = IFunction_Advection, 157c96c872fSLeila Ghaffari .applyVol_ifunction_loc = IFunction_Advection_loc, 1587659d40cSLeila Ghaffari .applySur = Advection_Sur, 1597659d40cSLeila Ghaffari .applySur_loc = Advection_Sur_loc, 160ccaff030SJeremy L Thompson .bc = Exact_Advection, 16184d34d69SLeila Ghaffari .non_zero_time = PETSC_FALSE, 162ccaff030SJeremy L Thompson }, 163ccaff030SJeremy L Thompson [NS_ADVECTION2D] = { 164ccaff030SJeremy L Thompson .dim = 2, 165ea6e0f84SLeila Ghaffari .qdatasizeVol = 5, 1668b982baeSLeila Ghaffari .qdatasizeSur = 3, 167c96c872fSLeila Ghaffari .setupVol = Setup2d, 168c96c872fSLeila Ghaffari .setupVol_loc = Setup2d_loc, 169b0137797SLeila Ghaffari .setupSur = SetupBoundary2d, 170b0137797SLeila Ghaffari .setupSur_loc = SetupBoundary2d_loc, 171ccaff030SJeremy L Thompson .ics = ICsAdvection2d, 172ccaff030SJeremy L Thompson .ics_loc = ICsAdvection2d_loc, 173c96c872fSLeila Ghaffari .applyVol_rhs = Advection2d, 174c96c872fSLeila Ghaffari .applyVol_rhs_loc = Advection2d_loc, 175c96c872fSLeila Ghaffari .applyVol_ifunction = IFunction_Advection2d, 176c96c872fSLeila Ghaffari .applyVol_ifunction_loc = IFunction_Advection2d_loc, 1777659d40cSLeila Ghaffari .applySur = Advection2d_Sur, 1787659d40cSLeila Ghaffari .applySur_loc = Advection2d_Sur_loc, 179ccaff030SJeremy L Thompson .bc = Exact_Advection2d, 18084d34d69SLeila Ghaffari .non_zero_time = PETSC_TRUE, 181ccaff030SJeremy L Thompson }, 182eb088987SLeila Ghaffari [NS_EULER_VORTEX] = { 183eb088987SLeila Ghaffari .dim = 3, 184eb088987SLeila Ghaffari .qdatasizeVol = 10, 185eb088987SLeila Ghaffari .qdatasizeSur = 4, 186eb088987SLeila Ghaffari .setupVol = Setup, 187eb088987SLeila Ghaffari .setupVol_loc = Setup_loc, 188eb088987SLeila Ghaffari .setupSur = SetupBoundary, 189eb088987SLeila Ghaffari .setupSur_loc = SetupBoundary_loc, 190eb088987SLeila Ghaffari .ics = ICsEuler, 191eb088987SLeila Ghaffari .ics_loc = ICsEuler_loc, 192eb088987SLeila Ghaffari .applyVol_rhs = Euler, 193eb088987SLeila Ghaffari .applyVol_rhs_loc = Euler_loc, 1944438636fSLeila Ghaffari .applyIn = Euler_In, 1954438636fSLeila Ghaffari .applyIn_loc = Euler_In_loc, 1964438636fSLeila Ghaffari .applyOut = Euler_Out, 1974438636fSLeila Ghaffari .applyOut_loc = Euler_Out_loc, 198eb088987SLeila Ghaffari .bc = Exact_Euler, 199*47ff3025SLeila Ghaffari .non_zero_time = PETSC_TRUE, 200eb088987SLeila Ghaffari }, 201ccaff030SJeremy L Thompson }; 202ccaff030SJeremy L Thompson 203ccaff030SJeremy L Thompson // PETSc user data 204ccaff030SJeremy L Thompson typedef struct User_ *User; 205ccaff030SJeremy L Thompson typedef struct Units_ *Units; 206ccaff030SJeremy L Thompson 207ccaff030SJeremy L Thompson struct User_ { 208ccaff030SJeremy L Thompson MPI_Comm comm; 209ccaff030SJeremy L Thompson PetscInt outputfreq; 210ccaff030SJeremy L Thompson DM dm; 211ccaff030SJeremy L Thompson DM dmviz; 212ccaff030SJeremy L Thompson Mat interpviz; 213ccaff030SJeremy L Thompson Ceed ceed; 214ccaff030SJeremy L Thompson Units units; 215ccaff030SJeremy L Thompson CeedVector qceed, qdotceed, gceed; 2161e150236SLeila Ghaffari CeedOperator op_rhs_vol, op_rhs, op_ifunction_vol, op_ifunction; 217ccaff030SJeremy L Thompson Vec M; 218d99129b9SLeila Ghaffari char outputdir[PETSC_MAX_PATH_LEN]; 219ccaff030SJeremy L Thompson PetscInt contsteps; 220ccaff030SJeremy L Thompson }; 221ccaff030SJeremy L Thompson 222ccaff030SJeremy L Thompson struct Units_ { 223ccaff030SJeremy L Thompson // fundamental units 224ccaff030SJeremy L Thompson PetscScalar meter; 225ccaff030SJeremy L Thompson PetscScalar kilogram; 226ccaff030SJeremy L Thompson PetscScalar second; 227ccaff030SJeremy L Thompson PetscScalar Kelvin; 228ccaff030SJeremy L Thompson // derived units 229ccaff030SJeremy L Thompson PetscScalar Pascal; 230ccaff030SJeremy L Thompson PetscScalar JperkgK; 231ccaff030SJeremy L Thompson PetscScalar mpersquareds; 232ccaff030SJeremy L Thompson PetscScalar WpermK; 233ccaff030SJeremy L Thompson PetscScalar kgpercubicm; 234ccaff030SJeremy L Thompson PetscScalar kgpersquaredms; 235ccaff030SJeremy L Thompson PetscScalar Joulepercubicm; 23616c0476cSLeila Ghaffari PetscScalar Joule; 237ccaff030SJeremy L Thompson }; 238ccaff030SJeremy L Thompson 239ccaff030SJeremy L Thompson typedef struct SimpleBC_ *SimpleBC; 240ccaff030SJeremy L Thompson struct SimpleBC_ { 2417659d40cSLeila Ghaffari PetscInt nwall, nslip[3]; 2427659d40cSLeila Ghaffari PetscInt walls[6], slips[3][6]; 24384d34d69SLeila Ghaffari PetscBool userbc; 244ccaff030SJeremy L Thompson }; 245ccaff030SJeremy L Thompson 246ccaff030SJeremy L Thompson // Essential BC dofs are encoded in closure indices as -(i+1). 247ccaff030SJeremy L Thompson static PetscInt Involute(PetscInt i) { 248ccaff030SJeremy L Thompson return i >= 0 ? i : -(i+1); 249ccaff030SJeremy L Thompson } 250ccaff030SJeremy L Thompson 251ccaff030SJeremy L Thompson // Utility function to create local CEED restriction 252ccaff030SJeremy L Thompson static PetscErrorCode CreateRestrictionFromPlex(Ceed ceed, DM dm, CeedInt P, 25384d34d69SLeila Ghaffari CeedInt height, DMLabel domainLabel, CeedInt value, 254ccaff030SJeremy L Thompson CeedElemRestriction *Erestrict) { 255ccaff030SJeremy L Thompson 256ccaff030SJeremy L Thompson PetscSection section; 2571184866aSLeila Ghaffari PetscInt p, Nelem, Ndof, *erestrict, eoffset, nfields, dim, depth; 2580c6c0b13SLeila Ghaffari DMLabel depthLabel; 2590c6c0b13SLeila Ghaffari IS depthIS, iterIS; 26084d34d69SLeila Ghaffari Vec Uloc; 2610c6c0b13SLeila Ghaffari const PetscInt *iterIndices; 262ccaff030SJeremy L Thompson PetscErrorCode ierr; 263ccaff030SJeremy L Thompson 264ccaff030SJeremy L Thompson PetscFunctionBeginUser; 265ccaff030SJeremy L Thompson ierr = DMGetDimension(dm, &dim); CHKERRQ(ierr); 266da51bdd9SLeila Ghaffari dim -= height; 267ccaff030SJeremy L Thompson ierr = DMGetLocalSection(dm, §ion); CHKERRQ(ierr); 268ccaff030SJeremy L Thompson ierr = PetscSectionGetNumFields(section, &nfields); CHKERRQ(ierr); 269ccaff030SJeremy L Thompson PetscInt ncomp[nfields], fieldoff[nfields+1]; 270ccaff030SJeremy L Thompson fieldoff[0] = 0; 271ccaff030SJeremy L Thompson for (PetscInt f=0; f<nfields; f++) { 272ccaff030SJeremy L Thompson ierr = PetscSectionGetFieldComponents(section, f, &ncomp[f]); CHKERRQ(ierr); 273ccaff030SJeremy L Thompson fieldoff[f+1] = fieldoff[f] + ncomp[f]; 274ccaff030SJeremy L Thompson } 275ccaff030SJeremy L Thompson 2760c6c0b13SLeila Ghaffari ierr = DMPlexGetDepth(dm, &depth); CHKERRQ(ierr); 2770c6c0b13SLeila Ghaffari ierr = DMPlexGetDepthLabel(dm, &depthLabel); CHKERRQ(ierr); 2780c6c0b13SLeila Ghaffari ierr = DMLabelGetStratumIS(depthLabel, depth - height, &depthIS); CHKERRQ(ierr); 2790c6c0b13SLeila Ghaffari if (domainLabel) { 2800c6c0b13SLeila Ghaffari IS domainIS; 2810c6c0b13SLeila Ghaffari ierr = DMLabelGetStratumIS(domainLabel, value, &domainIS); CHKERRQ(ierr); 2821119eeeeSJed Brown if (domainIS) { // domainIS is non-empty 2830c6c0b13SLeila Ghaffari ierr = ISIntersect(depthIS, domainIS, &iterIS); CHKERRQ(ierr); 2840c6c0b13SLeila Ghaffari ierr = ISDestroy(&domainIS); CHKERRQ(ierr); 2851119eeeeSJed Brown } else { // domainIS is NULL (empty) 2861119eeeeSJed Brown iterIS = NULL; 2871119eeeeSJed Brown } 2880c6c0b13SLeila Ghaffari ierr = ISDestroy(&depthIS); CHKERRQ(ierr); 2890c6c0b13SLeila Ghaffari } else { 2900c6c0b13SLeila Ghaffari iterIS = depthIS; 2910c6c0b13SLeila Ghaffari } 2921119eeeeSJed Brown if (iterIS) { 2930c6c0b13SLeila Ghaffari ierr = ISGetLocalSize(iterIS, &Nelem); CHKERRQ(ierr); 2940c6c0b13SLeila Ghaffari ierr = ISGetIndices(iterIS, &iterIndices); CHKERRQ(ierr); 2951119eeeeSJed Brown } else { 2961119eeeeSJed Brown Nelem = 0; 2971119eeeeSJed Brown iterIndices = NULL; 2981119eeeeSJed Brown } 299ccaff030SJeremy L Thompson ierr = PetscMalloc1(Nelem*PetscPowInt(P, dim), &erestrict); CHKERRQ(ierr); 3000c6c0b13SLeila Ghaffari for (p=0,eoffset=0; p<Nelem; p++) { 3010c6c0b13SLeila Ghaffari PetscInt c = iterIndices[p]; 302ccaff030SJeremy L Thompson PetscInt numindices, *indices, nnodes; 30384d34d69SLeila Ghaffari ierr = DMPlexGetClosureIndices(dm, section, section, c, PETSC_TRUE, 30484d34d69SLeila Ghaffari &numindices, &indices, NULL, NULL); 30584d34d69SLeila Ghaffari CHKERRQ(ierr); 30632b5ec5fSJed Brown bool flip = false; 30732b5ec5fSJed Brown if (height > 0) { 30832b5ec5fSJed Brown PetscInt numCells, numFaces, start = -1; 30932b5ec5fSJed Brown const PetscInt *orients, *faces, *cells; 31032b5ec5fSJed Brown ierr = DMPlexGetSupport(dm, c, &cells); CHKERRQ(ierr); 31132b5ec5fSJed Brown ierr = DMPlexGetSupportSize(dm, c, &numCells); CHKERRQ(ierr); 312ebb4b9bdSLeila Ghaffari if (numCells != 1) SETERRQ1(PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, 313f259b054Svaleriabarra "Expected one cell in support of exterior face, but got %D cells", 314f259b054Svaleriabarra numCells); 31532b5ec5fSJed Brown ierr = DMPlexGetCone(dm, cells[0], &faces); CHKERRQ(ierr); 31632b5ec5fSJed Brown ierr = DMPlexGetConeSize(dm, cells[0], &numFaces); CHKERRQ(ierr); 31732b5ec5fSJed Brown for (PetscInt i=0; i<numFaces; i++) {if (faces[i] == c) start = i;} 318ebb4b9bdSLeila Ghaffari if (start < 0) SETERRQ1(PETSC_COMM_SELF, PETSC_ERR_ARG_CORRUPT, 319f259b054Svaleriabarra "Could not find face %D in cone of its support", 320f259b054Svaleriabarra c); 32132b5ec5fSJed Brown ierr = DMPlexGetConeOrientation(dm, cells[0], &orients); CHKERRQ(ierr); 32232b5ec5fSJed Brown if (orients[start] < 0) flip = true; 32332b5ec5fSJed Brown } 32484d34d69SLeila Ghaffari if (numindices % fieldoff[nfields]) SETERRQ1(PETSC_COMM_SELF, 32584d34d69SLeila Ghaffari PETSC_ERR_ARG_INCOMP, "Number of closure indices not compatible with Cell %D", 32684d34d69SLeila Ghaffari c); 327ccaff030SJeremy L Thompson nnodes = numindices / fieldoff[nfields]; 328ccaff030SJeremy L Thompson for (PetscInt i=0; i<nnodes; i++) { 32932b5ec5fSJed Brown PetscInt ii = i; 33032b5ec5fSJed Brown if (flip) { 33132b5ec5fSJed Brown if (P == nnodes) ii = nnodes - 1 - i; 33232b5ec5fSJed Brown else if (P*P == nnodes) { 33332b5ec5fSJed Brown PetscInt row = i / P, col = i % P; 33432b5ec5fSJed Brown ii = row + col * P; 335ebb4b9bdSLeila Ghaffari } else SETERRQ2(PETSC_COMM_SELF, PETSC_ERR_SUP, 336f259b054Svaleriabarra "No support for flipping point with %D nodes != P (%D) or P^2", 337f259b054Svaleriabarra nnodes, P); 33832b5ec5fSJed Brown } 339ccaff030SJeremy L Thompson // Check that indices are blocked by node and thus can be coalesced as a single field with 340ccaff030SJeremy L Thompson // fieldoff[nfields] = sum(ncomp) components. 341ccaff030SJeremy L Thompson for (PetscInt f=0; f<nfields; f++) { 342ccaff030SJeremy L Thompson for (PetscInt j=0; j<ncomp[f]; j++) { 34332b5ec5fSJed Brown if (Involute(indices[fieldoff[f]*nnodes + ii*ncomp[f] + j]) 34432b5ec5fSJed Brown != Involute(indices[ii*ncomp[0]]) + fieldoff[f] + j) 345ccaff030SJeremy L Thompson SETERRQ4(PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, 346ccaff030SJeremy L Thompson "Cell %D closure indices not interlaced for node %D field %D component %D", 34732b5ec5fSJed Brown c, ii, f, j); 348ccaff030SJeremy L Thompson } 349ccaff030SJeremy L Thompson } 350ccaff030SJeremy L Thompson // Essential boundary conditions are encoded as -(loc+1), but we don't care so we decode. 35132b5ec5fSJed Brown PetscInt loc = Involute(indices[ii*ncomp[0]]); 3526f55dfd5Svaleriabarra erestrict[eoffset++] = loc; 353ccaff030SJeremy L Thompson } 35484d34d69SLeila Ghaffari ierr = DMPlexRestoreClosureIndices(dm, section, section, c, PETSC_TRUE, 35584d34d69SLeila Ghaffari &numindices, &indices, NULL, NULL); 35684d34d69SLeila Ghaffari CHKERRQ(ierr); 357ccaff030SJeremy L Thompson } 3580c6c0b13SLeila Ghaffari if (eoffset != Nelem*PetscPowInt(P, dim)) 3590c6c0b13SLeila Ghaffari SETERRQ3(PETSC_COMM_SELF, PETSC_ERR_LIB, 3600c6c0b13SLeila Ghaffari "ElemRestriction of size (%D,%D) initialized %D nodes", Nelem, 361ccaff030SJeremy L Thompson PetscPowInt(P, dim),eoffset); 3621119eeeeSJed Brown if (iterIS) { 3630c6c0b13SLeila Ghaffari ierr = ISRestoreIndices(iterIS, &iterIndices); CHKERRQ(ierr); 3641119eeeeSJed Brown } 3650c6c0b13SLeila Ghaffari ierr = ISDestroy(&iterIS); CHKERRQ(ierr); 3660c6c0b13SLeila Ghaffari 367ccaff030SJeremy L Thompson ierr = DMGetLocalVector(dm, &Uloc); CHKERRQ(ierr); 368ccaff030SJeremy L Thompson ierr = VecGetLocalSize(Uloc, &Ndof); CHKERRQ(ierr); 369ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(dm, &Uloc); CHKERRQ(ierr); 3706f55dfd5Svaleriabarra CeedElemRestrictionCreate(ceed, Nelem, PetscPowInt(P, dim), fieldoff[nfields], 3716f55dfd5Svaleriabarra 1, Ndof, CEED_MEM_HOST, CEED_COPY_VALUES, erestrict, 3726f55dfd5Svaleriabarra Erestrict); 373ccaff030SJeremy L Thompson ierr = PetscFree(erestrict); CHKERRQ(ierr); 374ccaff030SJeremy L Thompson PetscFunctionReturn(0); 375ccaff030SJeremy L Thompson } 376ccaff030SJeremy L Thompson 377c96c872fSLeila Ghaffari // Utility function to get Ceed Restriction for each domain 3781e150236SLeila Ghaffari static PetscErrorCode GetRestrictionForDomain(Ceed ceed, DM dm, CeedInt height, 3791e150236SLeila Ghaffari DMLabel domainLabel, PetscInt value, CeedInt P, CeedInt Q, CeedInt qdatasize, 3801e150236SLeila Ghaffari CeedElemRestriction *restrictq, CeedElemRestriction *restrictx, 3811e150236SLeila Ghaffari CeedElemRestriction *restrictqdi) { 382c96c872fSLeila Ghaffari 383c96c872fSLeila Ghaffari DM dmcoord; 3841e150236SLeila Ghaffari CeedInt dim, localNelem; 3851e150236SLeila Ghaffari CeedInt Qdim; 386c96c872fSLeila Ghaffari PetscErrorCode ierr; 387c96c872fSLeila Ghaffari 388c96c872fSLeila Ghaffari PetscFunctionBeginUser; 3891e150236SLeila Ghaffari ierr = DMGetDimension(dm, &dim); CHKERRQ(ierr); 3901e150236SLeila Ghaffari dim -= height; 3911e150236SLeila Ghaffari Qdim = CeedIntPow(Q, dim); 392c96c872fSLeila Ghaffari ierr = DMGetCoordinateDM(dm, &dmcoord); CHKERRQ(ierr); 393c96c872fSLeila Ghaffari ierr = DMPlexSetClosurePermutationTensor(dmcoord, PETSC_DETERMINE, NULL); 394c96c872fSLeila Ghaffari CHKERRQ(ierr); 395ebb4b9bdSLeila Ghaffari ierr = CreateRestrictionFromPlex(ceed, dm, P, height, domainLabel, value, 396ebb4b9bdSLeila Ghaffari restrictq); 397c96c872fSLeila Ghaffari CHKERRQ(ierr); 398ebb4b9bdSLeila Ghaffari ierr = CreateRestrictionFromPlex(ceed, dmcoord, 2, height, domainLabel, value, 399ebb4b9bdSLeila Ghaffari restrictx); 400c96c872fSLeila Ghaffari CHKERRQ(ierr); 401c96c872fSLeila Ghaffari CeedElemRestrictionGetNumElements(*restrictq, &localNelem); 402c96c872fSLeila Ghaffari CeedElemRestrictionCreateStrided(ceed, localNelem, Qdim, 403c96c872fSLeila Ghaffari qdatasize, qdatasize*localNelem*Qdim, 404c96c872fSLeila Ghaffari CEED_STRIDES_BACKEND, restrictqdi); 405c96c872fSLeila Ghaffari PetscFunctionReturn(0); 406c96c872fSLeila Ghaffari } 407c96c872fSLeila Ghaffari 4081e150236SLeila Ghaffari // Utility function to create CEED Composite Operator for the entire domain 4097659d40cSLeila Ghaffari static PetscErrorCode CreateOperatorForDomain(Ceed ceed, DM dm, SimpleBC bc, 4104438636fSLeila Ghaffari problemType problemChoice, WindType wind_type, CeedOperator op_applyVol, 4114438636fSLeila Ghaffari CeedQFunction qf_applySur, CeedQFunction qf_setupSur, 4124438636fSLeila Ghaffari CeedQFunction qf_applyIn, CeedQFunction qf_applyOut, CeedInt height, 4134438636fSLeila Ghaffari CeedInt numP_Sur, CeedInt numQ_Sur, CeedInt qdatasizeSur, CeedInt NqptsSur, 4144438636fSLeila Ghaffari CeedBasis basisxSur, CeedBasis basisqSur, CeedOperator *op_apply) { 415ca3ac6ddSLeila Ghaffari 4167659d40cSLeila Ghaffari CeedInt dim, nFace; 4174438636fSLeila Ghaffari PetscInt lsize; 4181e150236SLeila Ghaffari Vec Xloc; 4194438636fSLeila Ghaffari CeedVector xcorners; 420ca3ac6ddSLeila Ghaffari DMLabel domainLabel; 4211e150236SLeila Ghaffari PetscScalar *x; 422ca3ac6ddSLeila Ghaffari PetscErrorCode ierr; 423ca3ac6ddSLeila Ghaffari 424ca3ac6ddSLeila Ghaffari PetscFunctionBeginUser; 425ca3ac6ddSLeila Ghaffari // Composite Operaters 426ca3ac6ddSLeila Ghaffari CeedCompositeOperatorCreate(ceed, op_apply); 4274438636fSLeila Ghaffari // --Apply a Sub-Operator for the volume 4284438636fSLeila Ghaffari CeedCompositeOperatorAddSub(*op_apply, op_applyVol); 429ca3ac6ddSLeila Ghaffari 4304438636fSLeila Ghaffari // Required data for in/outflow BCs 4311e150236SLeila Ghaffari ierr = DMGetCoordinatesLocal(dm, &Xloc); CHKERRQ(ierr); 4321e150236SLeila Ghaffari ierr = VecGetLocalSize(Xloc, &lsize); CHKERRQ(ierr); 4331e150236SLeila Ghaffari ierr = CeedVectorCreate(ceed, lsize, &xcorners); CHKERRQ(ierr); 4341e150236SLeila Ghaffari ierr = VecGetArray(Xloc, &x); CHKERRQ(ierr); 4351e150236SLeila Ghaffari CeedVectorSetArray(xcorners, CEED_MEM_HOST, CEED_USE_POINTER, x); 436ca3ac6ddSLeila Ghaffari ierr = DMGetLabel(dm, "Face Sets", &domainLabel); CHKERRQ(ierr); 4377659d40cSLeila Ghaffari ierr = DMGetDimension(dm, &dim); CHKERRQ(ierr); 4384438636fSLeila Ghaffari 4394438636fSLeila Ghaffari if (wind_type == ADVECTION_WIND_TRANSLATION) { 4404438636fSLeila Ghaffari // Ignore wall and slip BCs 4414438636fSLeila Ghaffari bc->nwall = 0; 4424438636fSLeila Ghaffari bc->nslip[0] = bc->nslip[1] = bc->nslip[2] = 0; 4434438636fSLeila Ghaffari 4444438636fSLeila Ghaffari // Set number of faces 4457659d40cSLeila Ghaffari if (dim == 2) nFace = 4; 4467659d40cSLeila Ghaffari if (dim == 3) nFace = 6; 4479fe13df9SLeila Ghaffari 4487659d40cSLeila Ghaffari // Create CEED Operator for each boundary face 4494438636fSLeila Ghaffari PetscInt localNelemSur[6]; 4504438636fSLeila Ghaffari CeedVector qdataSur[6]; 4514438636fSLeila Ghaffari CeedOperator op_setupSur[6], op_applySur[6]; 4524438636fSLeila Ghaffari CeedElemRestriction restrictxSur[6], restrictqSur[6], restrictqdiSur[6]; 45386ba6f09SLeila Ghaffari 4547659d40cSLeila Ghaffari for (CeedInt i=0; i<nFace; i++) { 4557659d40cSLeila Ghaffari ierr = GetRestrictionForDomain(ceed, dm, height, domainLabel, i+1, numP_Sur, 456f259b054Svaleriabarra numQ_Sur, qdatasizeSur, &restrictqSur[i], 457f259b054Svaleriabarra &restrictxSur[i], &restrictqdiSur[i]); 458f259b054Svaleriabarra CHKERRQ(ierr); 4597659d40cSLeila Ghaffari // Create the CEED vectors that will be needed in Boundary setup 4607659d40cSLeila Ghaffari CeedElemRestrictionGetNumElements(restrictqSur[i], &localNelemSur[i]); 461f259b054Svaleriabarra CeedVectorCreate(ceed, qdatasizeSur*localNelemSur[i]*NqptsSur, 462f259b054Svaleriabarra &qdataSur[i]); 4637659d40cSLeila Ghaffari // Create the operator that builds the quadrature data for the Boundary operator 4647659d40cSLeila Ghaffari CeedOperatorCreate(ceed, qf_setupSur, NULL, NULL, &op_setupSur[i]); 465ebb4b9bdSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "dx", restrictxSur[i], basisxSur, 466ebb4b9bdSLeila Ghaffari CEED_VECTOR_ACTIVE); 4677659d40cSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "weight", CEED_ELEMRESTRICTION_NONE, 468ca3ac6ddSLeila Ghaffari basisxSur, CEED_VECTOR_NONE); 4697659d40cSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "qdataSur", restrictqdiSur[i], 470ca3ac6ddSLeila Ghaffari CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE); 4717659d40cSLeila Ghaffari // Create Boundary operator 4727659d40cSLeila Ghaffari CeedOperatorCreate(ceed, qf_applySur, NULL, NULL, &op_applySur[i]); 473ebb4b9bdSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "q", restrictqSur[i], basisqSur, 474ebb4b9bdSLeila Ghaffari CEED_VECTOR_ACTIVE); 4757659d40cSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "qdataSur", restrictqdiSur[i], 4767659d40cSLeila Ghaffari CEED_BASIS_COLLOCATED, qdataSur[i]); 477f259b054Svaleriabarra CeedOperatorSetField(op_applySur[i], "x", restrictxSur[i], basisxSur, 478f259b054Svaleriabarra xcorners); 479ebb4b9bdSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "v", restrictqSur[i], basisqSur, 480ebb4b9bdSLeila Ghaffari CEED_VECTOR_ACTIVE); 4817659d40cSLeila Ghaffari // Apply CEED operator for Boundary setup 482ebb4b9bdSLeila Ghaffari CeedOperatorApply(op_setupSur[i], xcorners, qdataSur[i], 483ebb4b9bdSLeila Ghaffari CEED_REQUEST_IMMEDIATE); 4844438636fSLeila Ghaffari // --Apply Sub-Operator for the Boundary 4857659d40cSLeila Ghaffari CeedCompositeOperatorAddSub(*op_apply, op_applySur[i]); 4869fe13df9SLeila Ghaffari } 4871e150236SLeila Ghaffari CeedVectorDestroy(&xcorners); 488ca3ac6ddSLeila Ghaffari } 4894438636fSLeila Ghaffari 4904438636fSLeila Ghaffari if (problemChoice == NS_EULER_VORTEX) { 491fae0d315SLeila Ghaffari // All faces are slip, except for 5 and 6 4924438636fSLeila Ghaffari bc->nwall = 0; 4934438636fSLeila Ghaffari bc->nslip[0] = 0; 4944438636fSLeila Ghaffari bc->nslip[1] = 2; bc->slips[1][0] = 3; bc->slips[1][1] = 4; 4954438636fSLeila Ghaffari bc->nslip[2] = 2; bc->slips[2][0] = 1; bc->slips[2][1] = 2; 4964438636fSLeila Ghaffari 4974438636fSLeila Ghaffari // Create CEED Operator for each boundary face 4984438636fSLeila Ghaffari PetscInt localNelemSur[2]; 4994438636fSLeila Ghaffari CeedVector qdataSur[2]; 5004438636fSLeila Ghaffari CeedQFunction qf_apply; 5014438636fSLeila Ghaffari CeedOperator op_setupSur[2], op_applySur[2]; 5024438636fSLeila Ghaffari CeedElemRestriction restrictxSur[2], restrictqSur[2], restrictqdiSur[2]; 50386ba6f09SLeila Ghaffari 5044438636fSLeila Ghaffari for (CeedInt i=0; i<2; i++) { 50586ba6f09SLeila Ghaffari if (i == 0) qf_apply = qf_applyIn; // Face 5: inflow 50686ba6f09SLeila Ghaffari if (i == 1) qf_apply = qf_applyOut; // Face 6: outflow 5074438636fSLeila Ghaffari ierr = GetRestrictionForDomain(ceed, dm, height, domainLabel, i+5, numP_Sur, 5084438636fSLeila Ghaffari numQ_Sur, qdatasizeSur, &restrictqSur[i], 5094438636fSLeila Ghaffari &restrictxSur[i], &restrictqdiSur[i]); 5104438636fSLeila Ghaffari CHKERRQ(ierr); 5114438636fSLeila Ghaffari // Create the CEED vectors that will be needed in Boundary setup 5124438636fSLeila Ghaffari CeedElemRestrictionGetNumElements(restrictqSur[i], &localNelemSur[i]); 5134438636fSLeila Ghaffari CeedVectorCreate(ceed, qdatasizeSur*localNelemSur[i]*NqptsSur, 5144438636fSLeila Ghaffari &qdataSur[i]); 5154438636fSLeila Ghaffari // Create the operator that builds the quadrature data for the Boundary operator 5164438636fSLeila Ghaffari CeedOperatorCreate(ceed, qf_setupSur, NULL, NULL, &op_setupSur[i]); 5174438636fSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "dx", restrictxSur[i], basisxSur, 5184438636fSLeila Ghaffari CEED_VECTOR_ACTIVE); 5194438636fSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "weight", CEED_ELEMRESTRICTION_NONE, 5204438636fSLeila Ghaffari basisxSur, CEED_VECTOR_NONE); 5214438636fSLeila Ghaffari CeedOperatorSetField(op_setupSur[i], "qdataSur", restrictqdiSur[i], 5224438636fSLeila Ghaffari CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE); 5234438636fSLeila Ghaffari // Create Boundary operator 5244438636fSLeila Ghaffari CeedOperatorCreate(ceed, qf_apply, NULL, NULL, &op_applySur[i]); 5254438636fSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "q", restrictqSur[i], basisqSur, 5264438636fSLeila Ghaffari CEED_VECTOR_ACTIVE); 5274438636fSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "qdataSur", restrictqdiSur[i], 5284438636fSLeila Ghaffari CEED_BASIS_COLLOCATED, qdataSur[i]); 5294438636fSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "x", restrictxSur[i], basisxSur, 5304438636fSLeila Ghaffari xcorners); 5314438636fSLeila Ghaffari CeedOperatorSetField(op_applySur[i], "v", restrictqSur[i], basisqSur, 5324438636fSLeila Ghaffari CEED_VECTOR_ACTIVE); 5334438636fSLeila Ghaffari // Apply CEED operator for Boundary setup 5344438636fSLeila Ghaffari CeedOperatorApply(op_setupSur[i], xcorners, qdataSur[i], 5354438636fSLeila Ghaffari CEED_REQUEST_IMMEDIATE); 5364438636fSLeila Ghaffari // --Apply Sub-Operator for the Boundary 5374438636fSLeila Ghaffari CeedCompositeOperatorAddSub(*op_apply, op_applySur[i]); 5384438636fSLeila Ghaffari } 5394438636fSLeila Ghaffari CeedVectorDestroy(&xcorners); 5404438636fSLeila Ghaffari } 541ca3ac6ddSLeila Ghaffari PetscFunctionReturn(0); 542ca3ac6ddSLeila Ghaffari } 543ca3ac6ddSLeila Ghaffari 544ccaff030SJeremy L Thompson static int CreateVectorFromPetscVec(Ceed ceed, Vec p, CeedVector *v) { 545ccaff030SJeremy L Thompson PetscErrorCode ierr; 546ccaff030SJeremy L Thompson PetscInt m; 547ccaff030SJeremy L Thompson 548ccaff030SJeremy L Thompson PetscFunctionBeginUser; 549ccaff030SJeremy L Thompson ierr = VecGetLocalSize(p, &m); CHKERRQ(ierr); 550ccaff030SJeremy L Thompson ierr = CeedVectorCreate(ceed, m, v); CHKERRQ(ierr); 551ccaff030SJeremy L Thompson PetscFunctionReturn(0); 552ccaff030SJeremy L Thompson } 553ccaff030SJeremy L Thompson 554ccaff030SJeremy L Thompson static int VectorPlacePetscVec(CeedVector c, Vec p) { 555ccaff030SJeremy L Thompson PetscErrorCode ierr; 556ccaff030SJeremy L Thompson PetscInt mceed, mpetsc; 557ccaff030SJeremy L Thompson PetscScalar *a; 558ccaff030SJeremy L Thompson 559ccaff030SJeremy L Thompson PetscFunctionBeginUser; 560ccaff030SJeremy L Thompson ierr = CeedVectorGetLength(c, &mceed); CHKERRQ(ierr); 561ccaff030SJeremy L Thompson ierr = VecGetLocalSize(p, &mpetsc); CHKERRQ(ierr); 562ccaff030SJeremy L Thompson if (mceed != mpetsc) SETERRQ2(PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, 56384d34d69SLeila Ghaffari "Cannot place PETSc Vec of length %D in CeedVector of length %D", 56484d34d69SLeila Ghaffari mpetsc, mceed); 565ccaff030SJeremy L Thompson ierr = VecGetArray(p, &a); CHKERRQ(ierr); 566ccaff030SJeremy L Thompson CeedVectorSetArray(c, CEED_MEM_HOST, CEED_USE_POINTER, a); 567ccaff030SJeremy L Thompson PetscFunctionReturn(0); 568ccaff030SJeremy L Thompson } 569ccaff030SJeremy L Thompson 570ccaff030SJeremy L Thompson static PetscErrorCode DMPlexInsertBoundaryValues_NS(DM dm, 571ccaff030SJeremy L Thompson PetscBool insertEssential, Vec Qloc, PetscReal time, Vec faceGeomFVM, 572ccaff030SJeremy L Thompson Vec cellGeomFVM, Vec gradFVM) { 573ccaff030SJeremy L Thompson PetscErrorCode ierr; 574ccaff030SJeremy L Thompson Vec Qbc; 575ccaff030SJeremy L Thompson 576ccaff030SJeremy L Thompson PetscFunctionBegin; 577ccaff030SJeremy L Thompson ierr = DMGetNamedLocalVector(dm, "Qbc", &Qbc); CHKERRQ(ierr); 578ccaff030SJeremy L Thompson ierr = VecAXPY(Qloc, 1., Qbc); CHKERRQ(ierr); 579ccaff030SJeremy L Thompson ierr = DMRestoreNamedLocalVector(dm, "Qbc", &Qbc); CHKERRQ(ierr); 580ccaff030SJeremy L Thompson PetscFunctionReturn(0); 581ccaff030SJeremy L Thompson } 582ccaff030SJeremy L Thompson 583ccaff030SJeremy L Thompson // This is the RHS of the ODE, given as u_t = G(t,u) 584ccaff030SJeremy L Thompson // This function takes in a state vector Q and writes into G 585ccaff030SJeremy L Thompson static PetscErrorCode RHS_NS(TS ts, PetscReal t, Vec Q, Vec G, void *userData) { 586ccaff030SJeremy L Thompson PetscErrorCode ierr; 587ccaff030SJeremy L Thompson User user = *(User *)userData; 588ccaff030SJeremy L Thompson PetscScalar *q, *g; 589ccaff030SJeremy L Thompson Vec Qloc, Gloc; 590ccaff030SJeremy L Thompson 591ccaff030SJeremy L Thompson // Global-to-local 592ccaff030SJeremy L Thompson PetscFunctionBeginUser; 593ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 594ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Gloc); CHKERRQ(ierr); 595ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qloc); CHKERRQ(ierr); 596ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(user->dm, Q, INSERT_VALUES, Qloc); CHKERRQ(ierr); 597ccaff030SJeremy L Thompson ierr = DMPlexInsertBoundaryValues(user->dm, PETSC_TRUE, Qloc, 0.0, 598ccaff030SJeremy L Thompson NULL, NULL, NULL); CHKERRQ(ierr); 599ccaff030SJeremy L Thompson ierr = VecZeroEntries(Gloc); CHKERRQ(ierr); 600ccaff030SJeremy L Thompson 601ccaff030SJeremy L Thompson // Ceed Vectors 602ccaff030SJeremy L Thompson ierr = VecGetArrayRead(Qloc, (const PetscScalar **)&q); CHKERRQ(ierr); 603ccaff030SJeremy L Thompson ierr = VecGetArray(Gloc, &g); CHKERRQ(ierr); 604ccaff030SJeremy L Thompson CeedVectorSetArray(user->qceed, CEED_MEM_HOST, CEED_USE_POINTER, q); 605ccaff030SJeremy L Thompson CeedVectorSetArray(user->gceed, CEED_MEM_HOST, CEED_USE_POINTER, g); 606ccaff030SJeremy L Thompson 607ccaff030SJeremy L Thompson // Apply CEED operator 608ccaff030SJeremy L Thompson CeedOperatorApply(user->op_rhs, user->qceed, user->gceed, 609ccaff030SJeremy L Thompson CEED_REQUEST_IMMEDIATE); 610ccaff030SJeremy L Thompson 611ccaff030SJeremy L Thompson // Restore vectors 612ccaff030SJeremy L Thompson ierr = VecRestoreArrayRead(Qloc, (const PetscScalar **)&q); CHKERRQ(ierr); 613ccaff030SJeremy L Thompson ierr = VecRestoreArray(Gloc, &g); CHKERRQ(ierr); 614ccaff030SJeremy L Thompson 615ccaff030SJeremy L Thompson ierr = VecZeroEntries(G); CHKERRQ(ierr); 616ccaff030SJeremy L Thompson ierr = DMLocalToGlobal(user->dm, Gloc, ADD_VALUES, G); CHKERRQ(ierr); 617ccaff030SJeremy L Thompson 618ccaff030SJeremy L Thompson // Inverse of the lumped mass matrix 619ccaff030SJeremy L Thompson ierr = VecPointwiseMult(G, G, user->M); // M is Minv 620ccaff030SJeremy L Thompson CHKERRQ(ierr); 621ccaff030SJeremy L Thompson 622ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 623ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Gloc); CHKERRQ(ierr); 624ccaff030SJeremy L Thompson PetscFunctionReturn(0); 625ccaff030SJeremy L Thompson } 626ccaff030SJeremy L Thompson 627ccaff030SJeremy L Thompson static PetscErrorCode IFunction_NS(TS ts, PetscReal t, Vec Q, Vec Qdot, Vec G, 628ccaff030SJeremy L Thompson void *userData) { 629ccaff030SJeremy L Thompson PetscErrorCode ierr; 630ccaff030SJeremy L Thompson User user = *(User *)userData; 631ccaff030SJeremy L Thompson const PetscScalar *q, *qdot; 632ccaff030SJeremy L Thompson PetscScalar *g; 633ccaff030SJeremy L Thompson Vec Qloc, Qdotloc, Gloc; 634ccaff030SJeremy L Thompson 635ccaff030SJeremy L Thompson // Global-to-local 636ccaff030SJeremy L Thompson PetscFunctionBeginUser; 637ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 638ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Qdotloc); CHKERRQ(ierr); 639ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Gloc); CHKERRQ(ierr); 640ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qloc); CHKERRQ(ierr); 641ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(user->dm, Q, INSERT_VALUES, Qloc); CHKERRQ(ierr); 642ccaff030SJeremy L Thompson ierr = DMPlexInsertBoundaryValues(user->dm, PETSC_TRUE, Qloc, 0.0, 643ccaff030SJeremy L Thompson NULL, NULL, NULL); CHKERRQ(ierr); 644ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qdotloc); CHKERRQ(ierr); 645ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(user->dm, Qdot, INSERT_VALUES, Qdotloc); CHKERRQ(ierr); 646ccaff030SJeremy L Thompson ierr = VecZeroEntries(Gloc); CHKERRQ(ierr); 647ccaff030SJeremy L Thompson 648ccaff030SJeremy L Thompson // Ceed Vectors 649ccaff030SJeremy L Thompson ierr = VecGetArrayRead(Qloc, &q); CHKERRQ(ierr); 650ccaff030SJeremy L Thompson ierr = VecGetArrayRead(Qdotloc, &qdot); CHKERRQ(ierr); 651ccaff030SJeremy L Thompson ierr = VecGetArray(Gloc, &g); CHKERRQ(ierr); 652ccaff030SJeremy L Thompson CeedVectorSetArray(user->qceed, CEED_MEM_HOST, CEED_USE_POINTER, 653ccaff030SJeremy L Thompson (PetscScalar *)q); 654ccaff030SJeremy L Thompson CeedVectorSetArray(user->qdotceed, CEED_MEM_HOST, CEED_USE_POINTER, 655ccaff030SJeremy L Thompson (PetscScalar *)qdot); 656ccaff030SJeremy L Thompson CeedVectorSetArray(user->gceed, CEED_MEM_HOST, CEED_USE_POINTER, g); 657ccaff030SJeremy L Thompson 658ccaff030SJeremy L Thompson // Apply CEED operator 659ccaff030SJeremy L Thompson CeedOperatorApply(user->op_ifunction, user->qceed, user->gceed, 660ccaff030SJeremy L Thompson CEED_REQUEST_IMMEDIATE); 661ccaff030SJeremy L Thompson 662ccaff030SJeremy L Thompson // Restore vectors 663ccaff030SJeremy L Thompson ierr = VecRestoreArrayRead(Qloc, &q); CHKERRQ(ierr); 664ccaff030SJeremy L Thompson ierr = VecRestoreArrayRead(Qdotloc, &qdot); CHKERRQ(ierr); 665ccaff030SJeremy L Thompson ierr = VecRestoreArray(Gloc, &g); CHKERRQ(ierr); 666ccaff030SJeremy L Thompson 667ccaff030SJeremy L Thompson ierr = VecZeroEntries(G); CHKERRQ(ierr); 668ccaff030SJeremy L Thompson ierr = DMLocalToGlobal(user->dm, Gloc, ADD_VALUES, G); CHKERRQ(ierr); 669ccaff030SJeremy L Thompson 670ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 671ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Qdotloc); CHKERRQ(ierr); 672ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Gloc); CHKERRQ(ierr); 673ccaff030SJeremy L Thompson PetscFunctionReturn(0); 674ccaff030SJeremy L Thompson } 675ccaff030SJeremy L Thompson 676ccaff030SJeremy L Thompson // User provided TS Monitor 677ccaff030SJeremy L Thompson static PetscErrorCode TSMonitor_NS(TS ts, PetscInt stepno, PetscReal time, 678ccaff030SJeremy L Thompson Vec Q, void *ctx) { 679ccaff030SJeremy L Thompson User user = ctx; 680ccaff030SJeremy L Thompson Vec Qloc; 681ccaff030SJeremy L Thompson char filepath[PETSC_MAX_PATH_LEN]; 682ccaff030SJeremy L Thompson PetscViewer viewer; 683ccaff030SJeremy L Thompson PetscErrorCode ierr; 684ccaff030SJeremy L Thompson 685ccaff030SJeremy L Thompson // Set up output 686ccaff030SJeremy L Thompson PetscFunctionBeginUser; 687ccaff030SJeremy L Thompson // Print every 'outputfreq' steps 688ccaff030SJeremy L Thompson if (stepno % user->outputfreq != 0) 689ccaff030SJeremy L Thompson PetscFunctionReturn(0); 690ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 691ccaff030SJeremy L Thompson ierr = PetscObjectSetName((PetscObject)Qloc, "StateVec"); CHKERRQ(ierr); 692ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qloc); CHKERRQ(ierr); 693ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(user->dm, Q, INSERT_VALUES, Qloc); CHKERRQ(ierr); 694ccaff030SJeremy L Thompson 695ccaff030SJeremy L Thompson // Output 696ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath, sizeof filepath, "%s/ns-%03D.vtu", 697d99129b9SLeila Ghaffari user->outputdir, stepno + user->contsteps); 698ccaff030SJeremy L Thompson CHKERRQ(ierr); 699ccaff030SJeremy L Thompson ierr = PetscViewerVTKOpen(PetscObjectComm((PetscObject)Q), filepath, 700ccaff030SJeremy L Thompson FILE_MODE_WRITE, &viewer); CHKERRQ(ierr); 701ccaff030SJeremy L Thompson ierr = VecView(Qloc, viewer); CHKERRQ(ierr); 7029d801c56SJed Brown ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 703ccaff030SJeremy L Thompson if (user->dmviz) { 704ccaff030SJeremy L Thompson Vec Qrefined, Qrefined_loc; 705ccaff030SJeremy L Thompson char filepath_refined[PETSC_MAX_PATH_LEN]; 706ccaff030SJeremy L Thompson PetscViewer viewer_refined; 707ccaff030SJeremy L Thompson 708ccaff030SJeremy L Thompson ierr = DMGetGlobalVector(user->dmviz, &Qrefined); CHKERRQ(ierr); 709ccaff030SJeremy L Thompson ierr = DMGetLocalVector(user->dmviz, &Qrefined_loc); CHKERRQ(ierr); 710ccaff030SJeremy L Thompson ierr = PetscObjectSetName((PetscObject)Qrefined_loc, "Refined"); 711ccaff030SJeremy L Thompson CHKERRQ(ierr); 712ccaff030SJeremy L Thompson ierr = MatInterpolate(user->interpviz, Q, Qrefined); CHKERRQ(ierr); 713ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qrefined_loc); CHKERRQ(ierr); 714ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(user->dmviz, Qrefined, INSERT_VALUES, Qrefined_loc); 715ccaff030SJeremy L Thompson CHKERRQ(ierr); 716ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath_refined, sizeof filepath_refined, 717ccaff030SJeremy L Thompson "%s/nsrefined-%03D.vtu", 718d99129b9SLeila Ghaffari user->outputdir, stepno + user->contsteps); 719ccaff030SJeremy L Thompson CHKERRQ(ierr); 720ccaff030SJeremy L Thompson ierr = PetscViewerVTKOpen(PetscObjectComm((PetscObject)Qrefined), 721ccaff030SJeremy L Thompson filepath_refined, 722ccaff030SJeremy L Thompson FILE_MODE_WRITE, &viewer_refined); CHKERRQ(ierr); 723ccaff030SJeremy L Thompson ierr = VecView(Qrefined_loc, viewer_refined); CHKERRQ(ierr); 724ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dmviz, &Qrefined_loc); CHKERRQ(ierr); 725ccaff030SJeremy L Thompson ierr = DMRestoreGlobalVector(user->dmviz, &Qrefined); CHKERRQ(ierr); 726ccaff030SJeremy L Thompson ierr = PetscViewerDestroy(&viewer_refined); CHKERRQ(ierr); 727ccaff030SJeremy L Thompson } 728ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(user->dm, &Qloc); CHKERRQ(ierr); 729ccaff030SJeremy L Thompson 730ccaff030SJeremy L Thompson // Save data in a binary file for continuation of simulations 731ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath, sizeof filepath, "%s/ns-solution.bin", 732d99129b9SLeila Ghaffari user->outputdir); CHKERRQ(ierr); 733ccaff030SJeremy L Thompson ierr = PetscViewerBinaryOpen(user->comm, filepath, FILE_MODE_WRITE, &viewer); 734ccaff030SJeremy L Thompson CHKERRQ(ierr); 735ccaff030SJeremy L Thompson ierr = VecView(Q, viewer); CHKERRQ(ierr); 736ccaff030SJeremy L Thompson ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 737ccaff030SJeremy L Thompson 738ccaff030SJeremy L Thompson // Save time stamp 739ccaff030SJeremy L Thompson // Dimensionalize time back 740ccaff030SJeremy L Thompson time /= user->units->second; 741ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath, sizeof filepath, "%s/ns-time.bin", 742d99129b9SLeila Ghaffari user->outputdir); CHKERRQ(ierr); 743ccaff030SJeremy L Thompson ierr = PetscViewerBinaryOpen(user->comm, filepath, FILE_MODE_WRITE, &viewer); 744ccaff030SJeremy L Thompson CHKERRQ(ierr); 745ccaff030SJeremy L Thompson #if PETSC_VERSION_GE(3,13,0) 746ccaff030SJeremy L Thompson ierr = PetscViewerBinaryWrite(viewer, &time, 1, PETSC_REAL); 747ccaff030SJeremy L Thompson #else 748ccaff030SJeremy L Thompson ierr = PetscViewerBinaryWrite(viewer, &time, 1, PETSC_REAL, true); 749ccaff030SJeremy L Thompson #endif 750ccaff030SJeremy L Thompson CHKERRQ(ierr); 751ccaff030SJeremy L Thompson ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 752ccaff030SJeremy L Thompson 753ccaff030SJeremy L Thompson PetscFunctionReturn(0); 754ccaff030SJeremy L Thompson } 755ccaff030SJeremy L Thompson 75684d34d69SLeila Ghaffari static PetscErrorCode ICs_FixMultiplicity(CeedOperator op_ics, 757ccaff030SJeremy L Thompson CeedVector xcorners, CeedVector q0ceed, DM dm, Vec Qloc, Vec Q, 758777ff853SJeremy L Thompson CeedElemRestriction restrictq, CeedQFunctionContext ctxSetup, CeedScalar time) { 759ccaff030SJeremy L Thompson PetscErrorCode ierr; 760ccaff030SJeremy L Thompson CeedVector multlvec; 761ccaff030SJeremy L Thompson Vec Multiplicity, MultiplicityLoc; 762ccaff030SJeremy L Thompson 763777ff853SJeremy L Thompson SetupContext ctxSetupData; 764777ff853SJeremy L Thompson CeedQFunctionContextGetData(ctxSetup, CEED_MEM_HOST, (void **)&ctxSetupData); 765777ff853SJeremy L Thompson ctxSetupData->time = time; 766777ff853SJeremy L Thompson CeedQFunctionContextRestoreData(ctxSetup, (void **)&ctxSetupData); 767777ff853SJeremy L Thompson 768ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qloc); CHKERRQ(ierr); 769ccaff030SJeremy L Thompson ierr = VectorPlacePetscVec(q0ceed, Qloc); CHKERRQ(ierr); 770ccaff030SJeremy L Thompson CeedOperatorApply(op_ics, xcorners, q0ceed, CEED_REQUEST_IMMEDIATE); 771ccaff030SJeremy L Thompson ierr = VecZeroEntries(Q); CHKERRQ(ierr); 772ccaff030SJeremy L Thompson ierr = DMLocalToGlobal(dm, Qloc, ADD_VALUES, Q); CHKERRQ(ierr); 773ccaff030SJeremy L Thompson 774ccaff030SJeremy L Thompson // Fix multiplicity for output of ICs 775ccaff030SJeremy L Thompson ierr = DMGetLocalVector(dm, &MultiplicityLoc); CHKERRQ(ierr); 776ccaff030SJeremy L Thompson CeedElemRestrictionCreateVector(restrictq, &multlvec, NULL); 777ccaff030SJeremy L Thompson ierr = VectorPlacePetscVec(multlvec, MultiplicityLoc); CHKERRQ(ierr); 778ccaff030SJeremy L Thompson CeedElemRestrictionGetMultiplicity(restrictq, multlvec); 779ccaff030SJeremy L Thompson CeedVectorDestroy(&multlvec); 780ccaff030SJeremy L Thompson ierr = DMGetGlobalVector(dm, &Multiplicity); CHKERRQ(ierr); 781ccaff030SJeremy L Thompson ierr = VecZeroEntries(Multiplicity); CHKERRQ(ierr); 782ccaff030SJeremy L Thompson ierr = DMLocalToGlobal(dm, MultiplicityLoc, ADD_VALUES, Multiplicity); 783ccaff030SJeremy L Thompson CHKERRQ(ierr); 784ccaff030SJeremy L Thompson ierr = VecPointwiseDivide(Q, Q, Multiplicity); CHKERRQ(ierr); 785ccaff030SJeremy L Thompson ierr = VecPointwiseDivide(Qloc, Qloc, MultiplicityLoc); CHKERRQ(ierr); 786ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(dm, &MultiplicityLoc); CHKERRQ(ierr); 787ccaff030SJeremy L Thompson ierr = DMRestoreGlobalVector(dm, &Multiplicity); CHKERRQ(ierr); 788ccaff030SJeremy L Thompson 789ccaff030SJeremy L Thompson PetscFunctionReturn(0); 790ccaff030SJeremy L Thompson } 791ccaff030SJeremy L Thompson 792ccaff030SJeremy L Thompson static PetscErrorCode ComputeLumpedMassMatrix(Ceed ceed, DM dm, 793ccaff030SJeremy L Thompson CeedElemRestriction restrictq, CeedBasis basisq, 794ccaff030SJeremy L Thompson CeedElemRestriction restrictqdi, CeedVector qdata, Vec M) { 795ccaff030SJeremy L Thompson PetscErrorCode ierr; 796ccaff030SJeremy L Thompson CeedQFunction qf_mass; 797ccaff030SJeremy L Thompson CeedOperator op_mass; 798ccaff030SJeremy L Thompson CeedVector mceed; 799ccaff030SJeremy L Thompson Vec Mloc; 800ccaff030SJeremy L Thompson CeedInt ncompq, qdatasize; 801ccaff030SJeremy L Thompson 802ccaff030SJeremy L Thompson PetscFunctionBeginUser; 803ccaff030SJeremy L Thompson CeedElemRestrictionGetNumComponents(restrictq, &ncompq); 804ccaff030SJeremy L Thompson CeedElemRestrictionGetNumComponents(restrictqdi, &qdatasize); 805ccaff030SJeremy L Thompson // Create the Q-function that defines the action of the mass operator 806ccaff030SJeremy L Thompson CeedQFunctionCreateInterior(ceed, 1, Mass, Mass_loc, &qf_mass); 807ccaff030SJeremy L Thompson CeedQFunctionAddInput(qf_mass, "q", ncompq, CEED_EVAL_INTERP); 808ccaff030SJeremy L Thompson CeedQFunctionAddInput(qf_mass, "qdata", qdatasize, CEED_EVAL_NONE); 809ccaff030SJeremy L Thompson CeedQFunctionAddOutput(qf_mass, "v", ncompq, CEED_EVAL_INTERP); 810ccaff030SJeremy L Thompson 811ccaff030SJeremy L Thompson // Create the mass operator 812ccaff030SJeremy L Thompson CeedOperatorCreate(ceed, qf_mass, NULL, NULL, &op_mass); 813ccaff030SJeremy L Thompson CeedOperatorSetField(op_mass, "q", restrictq, basisq, CEED_VECTOR_ACTIVE); 814ccaff030SJeremy L Thompson CeedOperatorSetField(op_mass, "qdata", restrictqdi, 815ccaff030SJeremy L Thompson CEED_BASIS_COLLOCATED, qdata); 816ccaff030SJeremy L Thompson CeedOperatorSetField(op_mass, "v", restrictq, basisq, CEED_VECTOR_ACTIVE); 817ccaff030SJeremy L Thompson 818ccaff030SJeremy L Thompson ierr = DMGetLocalVector(dm, &Mloc); CHKERRQ(ierr); 819ccaff030SJeremy L Thompson ierr = VecZeroEntries(Mloc); CHKERRQ(ierr); 820ccaff030SJeremy L Thompson CeedElemRestrictionCreateVector(restrictq, &mceed, NULL); 821ccaff030SJeremy L Thompson ierr = VectorPlacePetscVec(mceed, Mloc); CHKERRQ(ierr); 822ccaff030SJeremy L Thompson 823ccaff030SJeremy L Thompson { 824ccaff030SJeremy L Thompson // Compute a lumped mass matrix 825ccaff030SJeremy L Thompson CeedVector onesvec; 826ccaff030SJeremy L Thompson CeedElemRestrictionCreateVector(restrictq, &onesvec, NULL); 827ccaff030SJeremy L Thompson CeedVectorSetValue(onesvec, 1.0); 828ccaff030SJeremy L Thompson CeedOperatorApply(op_mass, onesvec, mceed, CEED_REQUEST_IMMEDIATE); 829ccaff030SJeremy L Thompson CeedVectorDestroy(&onesvec); 830ccaff030SJeremy L Thompson CeedOperatorDestroy(&op_mass); 831ccaff030SJeremy L Thompson CeedVectorDestroy(&mceed); 832ccaff030SJeremy L Thompson } 833ccaff030SJeremy L Thompson CeedQFunctionDestroy(&qf_mass); 834ccaff030SJeremy L Thompson 835ccaff030SJeremy L Thompson ierr = VecZeroEntries(M); CHKERRQ(ierr); 836ccaff030SJeremy L Thompson ierr = DMLocalToGlobal(dm, Mloc, ADD_VALUES, M); CHKERRQ(ierr); 837ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(dm, &Mloc); CHKERRQ(ierr); 838ccaff030SJeremy L Thompson 839ccaff030SJeremy L Thompson // Invert diagonally lumped mass vector for RHS function 840ccaff030SJeremy L Thompson ierr = VecReciprocal(M); CHKERRQ(ierr); 841ccaff030SJeremy L Thompson PetscFunctionReturn(0); 842ccaff030SJeremy L Thompson } 843ccaff030SJeremy L Thompson 84484d34d69SLeila Ghaffari static PetscErrorCode SetUpDM(DM dm, problemData *problem, PetscInt degree, 845777ff853SJeremy L Thompson SimpleBC bc, void *ctxSetupData) { 846ccaff030SJeremy L Thompson PetscErrorCode ierr; 847ccaff030SJeremy L Thompson 848ccaff030SJeremy L Thompson PetscFunctionBeginUser; 849ccaff030SJeremy L Thompson { 850ccaff030SJeremy L Thompson // Configure the finite element space and boundary conditions 851ccaff030SJeremy L Thompson PetscFE fe; 852ccaff030SJeremy L Thompson PetscInt ncompq = 5; 853ff6701fcSJed Brown ierr = PetscFECreateLagrange(PETSC_COMM_SELF, problem->dim, ncompq, 854ff6701fcSJed Brown PETSC_FALSE, degree, PETSC_DECIDE, 85532ed2d11SJed Brown &fe); CHKERRQ(ierr); 856ccaff030SJeremy L Thompson ierr = PetscObjectSetName((PetscObject)fe, "Q"); CHKERRQ(ierr); 857ccaff030SJeremy L Thompson ierr = DMAddField(dm, NULL,(PetscObject)fe); CHKERRQ(ierr); 858ccaff030SJeremy L Thompson ierr = DMCreateDS(dm); CHKERRQ(ierr); 85907af6069Svaleriabarra { 86007af6069Svaleriabarra PetscInt comps[1] = {1}; 86107af6069Svaleriabarra ierr = DMAddBoundary(dm, DM_BC_ESSENTIAL, "slipx", "Face Sets", 0, 8623ab4fca6SValeria Barra 1, comps, (void(*)(void))NULL, NULL, bc->nslip[0], 863777ff853SJeremy L Thompson bc->slips[0], ctxSetupData); CHKERRQ(ierr); 86407af6069Svaleriabarra comps[0] = 2; 86507af6069Svaleriabarra ierr = DMAddBoundary(dm, DM_BC_ESSENTIAL, "slipy", "Face Sets", 0, 8663ab4fca6SValeria Barra 1, comps, (void(*)(void))NULL, NULL, bc->nslip[1], 867777ff853SJeremy L Thompson bc->slips[1], ctxSetupData); CHKERRQ(ierr); 86807af6069Svaleriabarra comps[0] = 3; 86907af6069Svaleriabarra ierr = DMAddBoundary(dm, DM_BC_ESSENTIAL, "slipz", "Face Sets", 0, 8703ab4fca6SValeria Barra 1, comps, (void(*)(void))NULL, NULL, bc->nslip[2], 871777ff853SJeremy L Thompson bc->slips[2], ctxSetupData); CHKERRQ(ierr); 87207af6069Svaleriabarra } 87384d34d69SLeila Ghaffari if (bc->userbc == PETSC_TRUE) { 87484d34d69SLeila Ghaffari for (PetscInt c = 0; c < 3; c++) { 87584d34d69SLeila Ghaffari for (PetscInt s = 0; s < bc->nslip[c]; s++) { 87684d34d69SLeila Ghaffari for (PetscInt w = 0; w < bc->nwall; w++) { 87784d34d69SLeila Ghaffari if (bc->slips[c][s] == bc->walls[w]) 87884d34d69SLeila Ghaffari SETERRQ1(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, 879f259b054Svaleriabarra "Boundary condition already set on face %D!\n", 880f259b054Svaleriabarra bc->walls[w]); 88184d34d69SLeila Ghaffari 88284d34d69SLeila Ghaffari } 88384d34d69SLeila Ghaffari } 88484d34d69SLeila Ghaffari } 88584d34d69SLeila Ghaffari } 88684d34d69SLeila Ghaffari // Wall boundary conditions are zero energy density and zero flux for 88784d34d69SLeila Ghaffari // velocity in advection/advection2d, and zero velocity and zero flux 88884d34d69SLeila Ghaffari // for mass density and energy density in density_current 88984d34d69SLeila Ghaffari { 89084d34d69SLeila Ghaffari if (problem->bc == Exact_Advection || problem->bc == Exact_Advection2d) { 89184d34d69SLeila Ghaffari PetscInt comps[1] = {4}; 89284d34d69SLeila Ghaffari ierr = DMAddBoundary(dm, DM_BC_ESSENTIAL, "wall", "Face Sets", 0, 8933ab4fca6SValeria Barra 1, comps, (void(*)(void))problem->bc, NULL, 894e5ed8c30SLeila Ghaffari bc->nwall, bc->walls, ctxSetup); CHKERRQ(ierr); 895e5ed8c30SLeila Ghaffari } else if (problem->bc == Exact_DC || problem->bc == Exact_Euler) { 89684d34d69SLeila Ghaffari PetscInt comps[3] = {1, 2, 3}; 89784d34d69SLeila Ghaffari ierr = DMAddBoundary(dm, DM_BC_ESSENTIAL, "wall", "Face Sets", 0, 8983ab4fca6SValeria Barra 3, comps, (void(*)(void))problem->bc, NULL, 899777ff853SJeremy L Thompson bc->nwall, bc->walls, ctxSetupData); CHKERRQ(ierr); 90084d34d69SLeila Ghaffari } else 90184d34d69SLeila Ghaffari SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_NULL, 90284d34d69SLeila Ghaffari "Undefined boundary conditions for this problem"); 90384d34d69SLeila Ghaffari } 904ccaff030SJeremy L Thompson ierr = DMPlexSetClosurePermutationTensor(dm, PETSC_DETERMINE, NULL); 905ccaff030SJeremy L Thompson CHKERRQ(ierr); 906ccaff030SJeremy L Thompson ierr = PetscFEDestroy(&fe); CHKERRQ(ierr); 907ccaff030SJeremy L Thompson } 908ccaff030SJeremy L Thompson { 909ccaff030SJeremy L Thompson // Empty name for conserved field (because there is only one field) 910ccaff030SJeremy L Thompson PetscSection section; 911ccaff030SJeremy L Thompson ierr = DMGetLocalSection(dm, §ion); CHKERRQ(ierr); 912ccaff030SJeremy L Thompson ierr = PetscSectionSetFieldName(section, 0, ""); CHKERRQ(ierr); 913ccaff030SJeremy L Thompson ierr = PetscSectionSetComponentName(section, 0, 0, "Density"); 914ccaff030SJeremy L Thompson CHKERRQ(ierr); 915ccaff030SJeremy L Thompson ierr = PetscSectionSetComponentName(section, 0, 1, "MomentumX"); 916ccaff030SJeremy L Thompson CHKERRQ(ierr); 917ccaff030SJeremy L Thompson ierr = PetscSectionSetComponentName(section, 0, 2, "MomentumY"); 918ccaff030SJeremy L Thompson CHKERRQ(ierr); 919ccaff030SJeremy L Thompson ierr = PetscSectionSetComponentName(section, 0, 3, "MomentumZ"); 920ccaff030SJeremy L Thompson CHKERRQ(ierr); 921ccaff030SJeremy L Thompson ierr = PetscSectionSetComponentName(section, 0, 4, "EnergyDensity"); 922ccaff030SJeremy L Thompson CHKERRQ(ierr); 923ccaff030SJeremy L Thompson } 924ccaff030SJeremy L Thompson PetscFunctionReturn(0); 925ccaff030SJeremy L Thompson } 926ccaff030SJeremy L Thompson 927ccaff030SJeremy L Thompson int main(int argc, char **argv) { 928ccaff030SJeremy L Thompson PetscInt ierr; 929ccaff030SJeremy L Thompson MPI_Comm comm; 93084d34d69SLeila Ghaffari DM dm, dmcoord, dmviz; 931ccaff030SJeremy L Thompson Mat interpviz; 932ccaff030SJeremy L Thompson TS ts; 933ccaff030SJeremy L Thompson TSAdapt adapt; 934ccaff030SJeremy L Thompson User user; 935ccaff030SJeremy L Thompson Units units; 936ccaff030SJeremy L Thompson char ceedresource[4096] = "/cpu/self"; 93784d34d69SLeila Ghaffari PetscInt localNelemVol, lnodes, gnodes, steps; 938ccaff030SJeremy L Thompson const PetscInt ncompq = 5; 939ccaff030SJeremy L Thompson PetscMPIInt rank; 940ccaff030SJeremy L Thompson PetscScalar ftime; 941ccaff030SJeremy L Thompson Vec Q, Qloc, Xloc; 942ccaff030SJeremy L Thompson Ceed ceed; 94384d34d69SLeila Ghaffari CeedInt numP, numQ; 944cfa64770SLeila Ghaffari CeedVector xcorners, qdata, q0ceed; 94584d34d69SLeila Ghaffari CeedBasis basisx, basisxc, basisq; 94684d34d69SLeila Ghaffari CeedElemRestriction restrictx, restrictq, restrictqdi; 947cfa64770SLeila Ghaffari CeedQFunction qf_setupVol, qf_ics, qf_rhsVol, qf_ifunctionVol; 948777ff853SJeremy L Thompson CeedQFunctionContext ctxSetup, ctxNS, ctxAdvection2d, ctxSurface; 949cfa64770SLeila Ghaffari CeedOperator op_setupVol, op_ics; 950ccaff030SJeremy L Thompson CeedScalar Rd; 95184d34d69SLeila Ghaffari CeedMemType memtyperequested; 952ccaff030SJeremy L Thompson PetscScalar WpermK, Pascal, JperkgK, mpersquareds, kgpercubicm, 95316c0476cSLeila Ghaffari kgpersquaredms, Joulepercubicm, Joule; 954ccaff030SJeremy L Thompson problemType problemChoice; 955ccaff030SJeremy L Thompson problemData *problem = NULL; 9561184866aSLeila Ghaffari WindType wind_type; 957ccaff030SJeremy L Thompson StabilizationType stab; 95884d34d69SLeila Ghaffari PetscBool implicit; 959cb3e2689Svaleriabarra PetscInt viz_refine = 0; 960ccaff030SJeremy L Thompson struct SimpleBC_ bc = { 96184d34d69SLeila Ghaffari .nslip = {2, 2, 2}, 96284d34d69SLeila Ghaffari .slips = {{5, 6}, {3, 4}, {1, 2}} 963ccaff030SJeremy L Thompson }; 964ccaff030SJeremy L Thompson double start, cpu_time_used; 965dc8efd83SLeila Ghaffari // Test variables 966dc8efd83SLeila Ghaffari PetscBool test; 967dc8efd83SLeila Ghaffari PetscScalar testtol = 0.; 968dc8efd83SLeila Ghaffari char filepath[PETSC_MAX_PATH_LEN]; 96984d34d69SLeila Ghaffari // Check PETSc CUDA support 97084d34d69SLeila Ghaffari PetscBool petschavecuda, setmemtyperequest = PETSC_FALSE; 97184d34d69SLeila Ghaffari // *INDENT-OFF* 97284d34d69SLeila Ghaffari #ifdef PETSC_HAVE_CUDA 97384d34d69SLeila Ghaffari petschavecuda = PETSC_TRUE; 97484d34d69SLeila Ghaffari #else 97584d34d69SLeila Ghaffari petschavecuda = PETSC_FALSE; 97684d34d69SLeila Ghaffari #endif 97784d34d69SLeila Ghaffari // *INDENT-ON* 978ccaff030SJeremy L Thompson 979ccaff030SJeremy L Thompson // Create the libCEED contexts 980ccaff030SJeremy L Thompson PetscScalar meter = 1e-2; // 1 meter in scaled length units 981ccaff030SJeremy L Thompson PetscScalar second = 1e-2; // 1 second in scaled time units 982ccaff030SJeremy L Thompson PetscScalar kilogram = 1e-6; // 1 kilogram in scaled mass units 983ccaff030SJeremy L Thompson PetscScalar Kelvin = 1; // 1 Kelvin in scaled temperature units 984ccaff030SJeremy L Thompson CeedScalar theta0 = 300.; // K 985ccaff030SJeremy L Thompson CeedScalar thetaC = -15.; // K 986ccaff030SJeremy L Thompson CeedScalar P0 = 1.e5; // Pa 98716c0476cSLeila Ghaffari CeedScalar E_wind = 1.e6; // J 988ccaff030SJeremy L Thompson CeedScalar N = 0.01; // 1/s 989ccaff030SJeremy L Thompson CeedScalar cv = 717.; // J/(kg K) 990ccaff030SJeremy L Thompson CeedScalar cp = 1004.; // J/(kg K) 991011314a7SLeila Ghaffari CeedScalar vortex_strength = 5.; // - 992b9c3f7b3SLeila Ghaffari CeedScalar rho_enter = 1.2; // Kg/m^3 993ccaff030SJeremy L Thompson CeedScalar g = 9.81; // m/s^2 994ccaff030SJeremy L Thompson CeedScalar lambda = -2./3.; // - 995ccaff030SJeremy L Thompson CeedScalar mu = 75.; // Pa s, dynamic viscosity 996ccaff030SJeremy L Thompson // mu = 75 is not physical for air, but is good for numerical stability 997ccaff030SJeremy L Thompson CeedScalar k = 0.02638; // W/(m K) 998ccaff030SJeremy L Thompson CeedScalar CtauS = 0.; // dimensionless 999ccaff030SJeremy L Thompson CeedScalar strong_form = 0.; // [0,1] 1000ccaff030SJeremy L Thompson PetscScalar lx = 8000.; // m 1001ccaff030SJeremy L Thompson PetscScalar ly = 8000.; // m 1002ccaff030SJeremy L Thompson PetscScalar lz = 4000.; // m 1003ccaff030SJeremy L Thompson CeedScalar rc = 1000.; // m (Radius of bubble) 1004ccaff030SJeremy L Thompson PetscScalar resx = 1000.; // m (resolution in x) 1005ccaff030SJeremy L Thompson PetscScalar resy = 1000.; // m (resolution in y) 1006ccaff030SJeremy L Thompson PetscScalar resz = 1000.; // m (resolution in z) 1007ccaff030SJeremy L Thompson PetscInt outputfreq = 10; // - 1008ccaff030SJeremy L Thompson PetscInt contsteps = 0; // - 100984d34d69SLeila Ghaffari PetscInt degree = 1; // - 101084d34d69SLeila Ghaffari PetscInt qextra = 2; // - 1011ea6e0f84SLeila Ghaffari PetscInt qextraSur = 2; // - 1012b9c3f7b3SLeila Ghaffari PetscReal center[3], dc_axis[3] = {0, 0, 0}, wind[3] = {1., 0, 0}, 10131b7fe7aeSLeila Ghaffari u_enter[3] = {-1.2, 0, 0}; 1014ccaff030SJeremy L Thompson 1015ccaff030SJeremy L Thompson ierr = PetscInitialize(&argc, &argv, NULL, help); 1016ccaff030SJeremy L Thompson if (ierr) return ierr; 1017ccaff030SJeremy L Thompson 1018ccaff030SJeremy L Thompson // Allocate PETSc context 1019ccaff030SJeremy L Thompson ierr = PetscCalloc1(1, &user); CHKERRQ(ierr); 1020ccaff030SJeremy L Thompson ierr = PetscMalloc1(1, &units); CHKERRQ(ierr); 1021ccaff030SJeremy L Thompson 1022ccaff030SJeremy L Thompson // Parse command line options 1023ccaff030SJeremy L Thompson comm = PETSC_COMM_WORLD; 1024ccaff030SJeremy L Thompson ierr = PetscOptionsBegin(comm, NULL, "Navier-Stokes in PETSc with libCEED", 1025ccaff030SJeremy L Thompson NULL); CHKERRQ(ierr); 1026ccaff030SJeremy L Thompson ierr = PetscOptionsString("-ceed", "CEED resource specifier", 1027ccaff030SJeremy L Thompson NULL, ceedresource, ceedresource, 1028ccaff030SJeremy L Thompson sizeof(ceedresource), NULL); CHKERRQ(ierr); 1029dc8efd83SLeila Ghaffari ierr = PetscOptionsBool("-test", "Run in test mode", 1030dc8efd83SLeila Ghaffari NULL, test=PETSC_FALSE, &test, NULL); CHKERRQ(ierr); 1031dc8efd83SLeila Ghaffari ierr = PetscOptionsScalar("-compare_final_state_atol", 1032dc8efd83SLeila Ghaffari "Test absolute tolerance", 1033dc8efd83SLeila Ghaffari NULL, testtol, &testtol, NULL); CHKERRQ(ierr); 1034dc8efd83SLeila Ghaffari ierr = PetscOptionsString("-compare_final_state_filename", "Test filename", 1035dc8efd83SLeila Ghaffari NULL, filepath, filepath, 1036dc8efd83SLeila Ghaffari sizeof(filepath), NULL); CHKERRQ(ierr); 1037ccaff030SJeremy L Thompson problemChoice = NS_DENSITY_CURRENT; 1038ccaff030SJeremy L Thompson ierr = PetscOptionsEnum("-problem", "Problem to solve", NULL, 1039ccaff030SJeremy L Thompson problemTypes, (PetscEnum)problemChoice, 1040ccaff030SJeremy L Thompson (PetscEnum *)&problemChoice, NULL); CHKERRQ(ierr); 1041ccaff030SJeremy L Thompson problem = &problemOptions[problemChoice]; 10421184866aSLeila Ghaffari ierr = PetscOptionsEnum("-problem_advection_wind", "Wind type in Advection", 1043f259b054Svaleriabarra NULL, WindTypes, 1044f259b054Svaleriabarra (PetscEnum)(wind_type = ADVECTION_WIND_ROTATION), 10451184866aSLeila Ghaffari (PetscEnum *)&wind_type, NULL); CHKERRQ(ierr); 10461184866aSLeila Ghaffari PetscInt n = problem->dim; 104782c09b01SLeila Ghaffari PetscBool userWind; 1048ebb4b9bdSLeila Ghaffari ierr = PetscOptionsRealArray("-problem_advection_wind_translation", 1049ebb4b9bdSLeila Ghaffari "Constant wind vector", 105082c09b01SLeila Ghaffari NULL, wind, &n, &userWind); CHKERRQ(ierr); 105182c09b01SLeila Ghaffari if (wind_type == ADVECTION_WIND_ROTATION && userWind) { 1052ebb4b9bdSLeila Ghaffari ierr = PetscPrintf(comm, 1053ebb4b9bdSLeila Ghaffari "Warning! Use -problem_advection_wind_translation only with -problem_advection_wind translation\n"); 105482c09b01SLeila Ghaffari CHKERRQ(ierr); 10551184866aSLeila Ghaffari } 1056b9c3f7b3SLeila Ghaffari if (wind_type == ADVECTION_WIND_TRANSLATION 1057b9c3f7b3SLeila Ghaffari && (problemChoice == NS_DENSITY_CURRENT || 1058b9c3f7b3SLeila Ghaffari problemChoice == NS_EULER_VORTEX)) { 105967babd9cSLeila Ghaffari SETERRQ(comm, PETSC_ERR_ARG_INCOMP, 1060b9c3f7b3SLeila Ghaffari "-problem_advection_wind translation is not defined for -problem density_current or -problem euler_vortex"); 106167babd9cSLeila Ghaffari } 1062b9c3f7b3SLeila Ghaffari ierr = PetscOptionsRealArray("-problem_euler_vortex_velocity", 1063b9c3f7b3SLeila Ghaffari "Incoming velocity vector", 1064b9c3f7b3SLeila Ghaffari NULL, u_enter, &n, NULL); CHKERRQ(ierr); 1065ccaff030SJeremy L Thompson ierr = PetscOptionsEnum("-stab", "Stabilization method", NULL, 1066ccaff030SJeremy L Thompson StabilizationTypes, (PetscEnum)(stab = STAB_NONE), 1067ccaff030SJeremy L Thompson (PetscEnum *)&stab, NULL); CHKERRQ(ierr); 1068ccaff030SJeremy L Thompson ierr = PetscOptionsBool("-implicit", "Use implicit (IFunction) formulation", 1069ccaff030SJeremy L Thompson NULL, implicit=PETSC_FALSE, &implicit, NULL); 1070ccaff030SJeremy L Thompson CHKERRQ(ierr); 107184d34d69SLeila Ghaffari if (!implicit && stab != STAB_NONE) { 107284d34d69SLeila Ghaffari ierr = PetscPrintf(comm, "Warning! Use -stab only with -implicit\n"); 107384d34d69SLeila Ghaffari CHKERRQ(ierr); 107484d34d69SLeila Ghaffari } 1075ccaff030SJeremy L Thompson { 10767573aee6SJed Brown PetscInt len; 10777573aee6SJed Brown PetscBool flg; 1078ccaff030SJeremy L Thompson ierr = PetscOptionsIntArray("-bc_wall", 1079ccaff030SJeremy L Thompson "Use wall boundary conditions on this list of faces", 1080ccaff030SJeremy L Thompson NULL, bc.walls, 1081ccaff030SJeremy L Thompson (len = sizeof(bc.walls) / sizeof(bc.walls[0]), 1082ccaff030SJeremy L Thompson &len), &flg); CHKERRQ(ierr); 10837573aee6SJed Brown if (flg) { 10847573aee6SJed Brown bc.nwall = len; 10857573aee6SJed Brown // Using a no-slip wall disables automatic slip walls (they must be set explicitly) 10867573aee6SJed Brown bc.nslip[0] = bc.nslip[1] = bc.nslip[2] = 0; 10877573aee6SJed Brown } 1088ccaff030SJeremy L Thompson for (PetscInt j=0; j<3; j++) { 1089ccaff030SJeremy L Thompson const char *flags[3] = {"-bc_slip_x", "-bc_slip_y", "-bc_slip_z"}; 1090ccaff030SJeremy L Thompson ierr = PetscOptionsIntArray(flags[j], 1091ccaff030SJeremy L Thompson "Use slip boundary conditions on this list of faces", 1092ccaff030SJeremy L Thompson NULL, bc.slips[j], 1093ccaff030SJeremy L Thompson (len = sizeof(bc.slips[j]) / sizeof(bc.slips[j][0]), 1094ccaff030SJeremy L Thompson &len), &flg); 1095ccaff030SJeremy L Thompson CHKERRQ(ierr); 109684d34d69SLeila Ghaffari if (flg) { 109784d34d69SLeila Ghaffari bc.nslip[j] = len; 109884d34d69SLeila Ghaffari bc.userbc = PETSC_TRUE; 109984d34d69SLeila Ghaffari } 1100ccaff030SJeremy L Thompson } 1101ccaff030SJeremy L Thompson } 1102cb3e2689Svaleriabarra ierr = PetscOptionsInt("-viz_refine", 1103cb3e2689Svaleriabarra "Regular refinement levels for visualization", 1104cb3e2689Svaleriabarra NULL, viz_refine, &viz_refine, NULL); 1105ccaff030SJeremy L Thompson CHKERRQ(ierr); 1106ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-units_meter", "1 meter in scaled length units", 1107ccaff030SJeremy L Thompson NULL, meter, &meter, NULL); CHKERRQ(ierr); 1108ccaff030SJeremy L Thompson meter = fabs(meter); 1109ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-units_second","1 second in scaled time units", 1110ccaff030SJeremy L Thompson NULL, second, &second, NULL); CHKERRQ(ierr); 1111ccaff030SJeremy L Thompson second = fabs(second); 1112ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-units_kilogram","1 kilogram in scaled mass units", 1113ccaff030SJeremy L Thompson NULL, kilogram, &kilogram, NULL); CHKERRQ(ierr); 1114ccaff030SJeremy L Thompson kilogram = fabs(kilogram); 1115ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-units_Kelvin", 1116ccaff030SJeremy L Thompson "1 Kelvin in scaled temperature units", 1117ccaff030SJeremy L Thompson NULL, Kelvin, &Kelvin, NULL); CHKERRQ(ierr); 1118ccaff030SJeremy L Thompson Kelvin = fabs(Kelvin); 1119ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-theta0", "Reference potential temperature", 1120ccaff030SJeremy L Thompson NULL, theta0, &theta0, NULL); CHKERRQ(ierr); 1121ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-thetaC", "Perturbation of potential temperature", 1122ccaff030SJeremy L Thompson NULL, thetaC, &thetaC, NULL); CHKERRQ(ierr); 1123ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-P0", "Atmospheric pressure", 1124ccaff030SJeremy L Thompson NULL, P0, &P0, NULL); CHKERRQ(ierr); 112516c0476cSLeila Ghaffari ierr = PetscOptionsScalar("-E_wind", "Total energy of inflow wind", 112616c0476cSLeila Ghaffari NULL, E_wind, &E_wind, NULL); CHKERRQ(ierr); 1127ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-N", "Brunt-Vaisala frequency", 1128ccaff030SJeremy L Thompson NULL, N, &N, NULL); CHKERRQ(ierr); 1129ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-cv", "Heat capacity at constant volume", 1130ccaff030SJeremy L Thompson NULL, cv, &cv, NULL); CHKERRQ(ierr); 1131ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-cp", "Heat capacity at constant pressure", 1132ccaff030SJeremy L Thompson NULL, cp, &cp, NULL); CHKERRQ(ierr); 1133011314a7SLeila Ghaffari PetscBool userVortex; 1134011314a7SLeila Ghaffari ierr = PetscOptionsScalar("-vortex_strength", "Strength of Vortex", 1135011314a7SLeila Ghaffari NULL, vortex_strength, &vortex_strength, &userVortex); 1136011314a7SLeila Ghaffari CHKERRQ(ierr); 1137011314a7SLeila Ghaffari if (problemChoice != NS_EULER_VORTEX && userVortex) { 1138011314a7SLeila Ghaffari ierr = PetscPrintf(comm, 1139011314a7SLeila Ghaffari "Warning! Use -vortex_strength only with -problem euler_vortex\n"); 1140011314a7SLeila Ghaffari CHKERRQ(ierr); 1141011314a7SLeila Ghaffari } 1142b9c3f7b3SLeila Ghaffari ierr = PetscOptionsScalar("-problem_euler_vortex_rho", "Incoming density", 1143b9c3f7b3SLeila Ghaffari NULL, rho_enter, &rho_enter, NULL); 1144b9c3f7b3SLeila Ghaffari CHKERRQ(ierr); 1145ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-g", "Gravitational acceleration", 1146ccaff030SJeremy L Thompson NULL, g, &g, NULL); CHKERRQ(ierr); 1147ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-lambda", 1148ccaff030SJeremy L Thompson "Stokes hypothesis second viscosity coefficient", 1149ccaff030SJeremy L Thompson NULL, lambda, &lambda, NULL); CHKERRQ(ierr); 1150ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-mu", "Shear dynamic viscosity coefficient", 1151ccaff030SJeremy L Thompson NULL, mu, &mu, NULL); CHKERRQ(ierr); 1152ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-k", "Thermal conductivity", 1153ccaff030SJeremy L Thompson NULL, k, &k, NULL); CHKERRQ(ierr); 1154ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-CtauS", 1155ccaff030SJeremy L Thompson "Scale coefficient for tau (nondimensional)", 1156ccaff030SJeremy L Thompson NULL, CtauS, &CtauS, NULL); CHKERRQ(ierr); 115784d34d69SLeila Ghaffari if (stab == STAB_NONE && CtauS != 0) { 115884d34d69SLeila Ghaffari ierr = PetscPrintf(comm, 115984d34d69SLeila Ghaffari "Warning! Use -CtauS only with -stab su or -stab supg\n"); 116084d34d69SLeila Ghaffari CHKERRQ(ierr); 116184d34d69SLeila Ghaffari } 1162ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-strong_form", 1163ccaff030SJeremy L Thompson "Strong (1) or weak/integrated by parts (0) advection residual", 1164ccaff030SJeremy L Thompson NULL, strong_form, &strong_form, NULL); 1165ccaff030SJeremy L Thompson CHKERRQ(ierr); 116684d34d69SLeila Ghaffari if (problemChoice == NS_DENSITY_CURRENT && (CtauS != 0 || strong_form != 0)) { 116784d34d69SLeila Ghaffari ierr = PetscPrintf(comm, 116884d34d69SLeila Ghaffari "Warning! Problem density_current does not support -CtauS or -strong_form\n"); 116984d34d69SLeila Ghaffari CHKERRQ(ierr); 117084d34d69SLeila Ghaffari } 1171ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-lx", "Length scale in x direction", 1172ccaff030SJeremy L Thompson NULL, lx, &lx, NULL); CHKERRQ(ierr); 1173ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-ly", "Length scale in y direction", 1174ccaff030SJeremy L Thompson NULL, ly, &ly, NULL); CHKERRQ(ierr); 1175ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-lz", "Length scale in z direction", 1176ccaff030SJeremy L Thompson NULL, lz, &lz, NULL); CHKERRQ(ierr); 1177ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-rc", "Characteristic radius of thermal bubble", 1178ccaff030SJeremy L Thompson NULL, rc, &rc, NULL); CHKERRQ(ierr); 1179ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-resx","Target resolution in x", 1180ccaff030SJeremy L Thompson NULL, resx, &resx, NULL); CHKERRQ(ierr); 1181ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-resy","Target resolution in y", 1182ccaff030SJeremy L Thompson NULL, resy, &resy, NULL); CHKERRQ(ierr); 1183ccaff030SJeremy L Thompson ierr = PetscOptionsScalar("-resz","Target resolution in z", 1184ccaff030SJeremy L Thompson NULL, resz, &resz, NULL); CHKERRQ(ierr); 118582c09b01SLeila Ghaffari n = problem->dim; 1186ccaff030SJeremy L Thompson center[0] = 0.5 * lx; 1187ccaff030SJeremy L Thompson center[1] = 0.5 * ly; 1188ccaff030SJeremy L Thompson center[2] = 0.5 * lz; 1189ccaff030SJeremy L Thompson ierr = PetscOptionsRealArray("-center", "Location of bubble center", 1190ccaff030SJeremy L Thompson NULL, center, &n, NULL); CHKERRQ(ierr); 1191ccaff030SJeremy L Thompson n = problem->dim; 1192ccaff030SJeremy L Thompson ierr = PetscOptionsRealArray("-dc_axis", 1193ccaff030SJeremy L Thompson "Axis of density current cylindrical anomaly, or {0,0,0} for spherically symmetric", 1194ccaff030SJeremy L Thompson NULL, dc_axis, &n, NULL); CHKERRQ(ierr); 1195ccaff030SJeremy L Thompson { 1196ccaff030SJeremy L Thompson PetscReal norm = PetscSqrtReal(PetscSqr(dc_axis[0]) + 1197ccaff030SJeremy L Thompson PetscSqr(dc_axis[1]) + PetscSqr(dc_axis[2])); 1198ccaff030SJeremy L Thompson if (norm > 0) { 1199ccaff030SJeremy L Thompson for (int i=0; i<3; i++) dc_axis[i] /= norm; 1200ccaff030SJeremy L Thompson } 1201ccaff030SJeremy L Thompson } 1202ccaff030SJeremy L Thompson ierr = PetscOptionsInt("-output_freq", 1203ccaff030SJeremy L Thompson "Frequency of output, in number of steps", 1204ccaff030SJeremy L Thompson NULL, outputfreq, &outputfreq, NULL); CHKERRQ(ierr); 1205ccaff030SJeremy L Thompson ierr = PetscOptionsInt("-continue", "Continue from previous solution", 1206ccaff030SJeremy L Thompson NULL, contsteps, &contsteps, NULL); CHKERRQ(ierr); 120784d34d69SLeila Ghaffari ierr = PetscOptionsInt("-degree", "Polynomial degree of finite elements", 120884d34d69SLeila Ghaffari NULL, degree, °ree, NULL); CHKERRQ(ierr); 120984d34d69SLeila Ghaffari ierr = PetscOptionsInt("-qextra", "Number of extra quadrature points", 121084d34d69SLeila Ghaffari NULL, qextra, &qextra, NULL); CHKERRQ(ierr); 121181f92cf0SLeila Ghaffari PetscBool userQextraSur; 1212ebb4b9bdSLeila Ghaffari ierr = PetscOptionsInt("-qextra_boundary", 1213ebb4b9bdSLeila Ghaffari "Number of extra quadrature points on in/outflow faces", 1214f259b054Svaleriabarra NULL, qextraSur, &qextraSur, &userQextraSur); 1215f259b054Svaleriabarra CHKERRQ(ierr); 1216ebb4b9bdSLeila Ghaffari if ((wind_type == ADVECTION_WIND_ROTATION 1217ebb4b9bdSLeila Ghaffari || problemChoice == NS_DENSITY_CURRENT) && userQextraSur) { 1218ebb4b9bdSLeila Ghaffari ierr = PetscPrintf(comm, 1219ebb4b9bdSLeila Ghaffari "Warning! Use -qextra_boundary only with -problem_advection_wind translation\n"); 122081f92cf0SLeila Ghaffari CHKERRQ(ierr); 122181f92cf0SLeila Ghaffari } 1222d99129b9SLeila Ghaffari ierr = PetscStrncpy(user->outputdir, ".", 2); CHKERRQ(ierr); 1223d99129b9SLeila Ghaffari ierr = PetscOptionsString("-output_dir", "Output directory", 1224d99129b9SLeila Ghaffari NULL, user->outputdir, user->outputdir, 1225d99129b9SLeila Ghaffari sizeof(user->outputdir), NULL); CHKERRQ(ierr); 122684d34d69SLeila Ghaffari memtyperequested = petschavecuda ? CEED_MEM_DEVICE : CEED_MEM_HOST; 122784d34d69SLeila Ghaffari ierr = PetscOptionsEnum("-memtype", 122884d34d69SLeila Ghaffari "CEED MemType requested", NULL, 122984d34d69SLeila Ghaffari memTypes, (PetscEnum)memtyperequested, 123084d34d69SLeila Ghaffari (PetscEnum *)&memtyperequested, &setmemtyperequest); 123184d34d69SLeila Ghaffari CHKERRQ(ierr); 1232ccaff030SJeremy L Thompson ierr = PetscOptionsEnd(); CHKERRQ(ierr); 1233ccaff030SJeremy L Thompson 1234ccaff030SJeremy L Thompson // Define derived units 1235ccaff030SJeremy L Thompson Pascal = kilogram / (meter * PetscSqr(second)); 1236ccaff030SJeremy L Thompson JperkgK = PetscSqr(meter) / (PetscSqr(second) * Kelvin); 1237ccaff030SJeremy L Thompson mpersquareds = meter / PetscSqr(second); 1238ccaff030SJeremy L Thompson WpermK = kilogram * meter / (pow(second,3) * Kelvin); 1239ccaff030SJeremy L Thompson kgpercubicm = kilogram / pow(meter,3); 1240ccaff030SJeremy L Thompson kgpersquaredms = kilogram / (PetscSqr(meter) * second); 1241ccaff030SJeremy L Thompson Joulepercubicm = kilogram / (meter * PetscSqr(second)); 124216c0476cSLeila Ghaffari Joule = kilogram * PetscSqr(meter) / PetscSqr(second); 1243ccaff030SJeremy L Thompson 1244ccaff030SJeremy L Thompson // Scale variables to desired units 1245ccaff030SJeremy L Thompson theta0 *= Kelvin; 1246ccaff030SJeremy L Thompson thetaC *= Kelvin; 1247ccaff030SJeremy L Thompson P0 *= Pascal; 124816c0476cSLeila Ghaffari E_wind *= Joule; 1249b9c3f7b3SLeila Ghaffari rho_enter *= kgpercubicm; 1250ccaff030SJeremy L Thompson N *= (1./second); 1251ccaff030SJeremy L Thompson cv *= JperkgK; 1252ccaff030SJeremy L Thompson cp *= JperkgK; 1253ccaff030SJeremy L Thompson Rd = cp - cv; 1254ccaff030SJeremy L Thompson g *= mpersquareds; 1255ccaff030SJeremy L Thompson mu *= Pascal * second; 1256ccaff030SJeremy L Thompson k *= WpermK; 1257ccaff030SJeremy L Thompson lx = fabs(lx) * meter; 1258ccaff030SJeremy L Thompson ly = fabs(ly) * meter; 1259ccaff030SJeremy L Thompson lz = fabs(lz) * meter; 1260ccaff030SJeremy L Thompson rc = fabs(rc) * meter; 1261ccaff030SJeremy L Thompson resx = fabs(resx) * meter; 1262ccaff030SJeremy L Thompson resy = fabs(resy) * meter; 1263ccaff030SJeremy L Thompson resz = fabs(resz) * meter; 1264ccaff030SJeremy L Thompson for (int i=0; i<3; i++) center[i] *= meter; 1265ccaff030SJeremy L Thompson 1266ccaff030SJeremy L Thompson const CeedInt dim = problem->dim, ncompx = problem->dim, 1267cfa64770SLeila Ghaffari qdatasizeVol = problem->qdatasizeVol; 1268ccaff030SJeremy L Thompson // Set up the libCEED context 1269777ff853SJeremy L Thompson struct SetupContext_ ctxSetupData = { 1270ccaff030SJeremy L Thompson .theta0 = theta0, 1271ccaff030SJeremy L Thompson .thetaC = thetaC, 1272ccaff030SJeremy L Thompson .P0 = P0, 1273ccaff030SJeremy L Thompson .N = N, 1274ccaff030SJeremy L Thompson .cv = cv, 1275ccaff030SJeremy L Thompson .cp = cp, 1276ccaff030SJeremy L Thompson .Rd = Rd, 1277ccaff030SJeremy L Thompson .g = g, 1278ccaff030SJeremy L Thompson .rc = rc, 1279ccaff030SJeremy L Thompson .lx = lx, 1280ccaff030SJeremy L Thompson .ly = ly, 1281ccaff030SJeremy L Thompson .lz = lz, 1282ccaff030SJeremy L Thompson .center[0] = center[0], 1283ccaff030SJeremy L Thompson .center[1] = center[1], 1284ccaff030SJeremy L Thompson .center[2] = center[2], 1285ccaff030SJeremy L Thompson .dc_axis[0] = dc_axis[0], 1286ccaff030SJeremy L Thompson .dc_axis[1] = dc_axis[1], 1287ccaff030SJeremy L Thompson .dc_axis[2] = dc_axis[2], 12881184866aSLeila Ghaffari .wind[0] = wind[0], 12891184866aSLeila Ghaffari .wind[1] = wind[1], 12901184866aSLeila Ghaffari .wind[2] = wind[2], 1291ccaff030SJeremy L Thompson .time = 0, 1292011314a7SLeila Ghaffari .vortex_strength = vortex_strength, 12931184866aSLeila Ghaffari .wind_type = wind_type, 1294ccaff030SJeremy L Thompson }; 1295ccaff030SJeremy L Thompson 129684d34d69SLeila Ghaffari // Create the mesh 1297ccaff030SJeremy L Thompson { 1298ccaff030SJeremy L Thompson const PetscReal scale[3] = {lx, ly, lz}; 1299ccaff030SJeremy L Thompson ierr = DMPlexCreateBoxMesh(comm, dim, PETSC_FALSE, NULL, NULL, scale, 130084d34d69SLeila Ghaffari NULL, PETSC_TRUE, &dm); 1301ccaff030SJeremy L Thompson CHKERRQ(ierr); 1302ccaff030SJeremy L Thompson } 130384d34d69SLeila Ghaffari 130484d34d69SLeila Ghaffari // Distribute the mesh over processes 130584d34d69SLeila Ghaffari { 1306ccaff030SJeremy L Thompson DM dmDist = NULL; 1307ccaff030SJeremy L Thompson PetscPartitioner part; 1308ccaff030SJeremy L Thompson 1309ccaff030SJeremy L Thompson ierr = DMPlexGetPartitioner(dm, &part); CHKERRQ(ierr); 1310ccaff030SJeremy L Thompson ierr = PetscPartitionerSetFromOptions(part); CHKERRQ(ierr); 1311ccaff030SJeremy L Thompson ierr = DMPlexDistribute(dm, 0, NULL, &dmDist); CHKERRQ(ierr); 1312ccaff030SJeremy L Thompson if (dmDist) { 1313ccaff030SJeremy L Thompson ierr = DMDestroy(&dm); CHKERRQ(ierr); 1314ccaff030SJeremy L Thompson dm = dmDist; 1315ccaff030SJeremy L Thompson } 1316ccaff030SJeremy L Thompson } 1317ccaff030SJeremy L Thompson ierr = DMViewFromOptions(dm, NULL, "-dm_view"); CHKERRQ(ierr); 1318ccaff030SJeremy L Thompson 131984d34d69SLeila Ghaffari // Setup DM 1320ccaff030SJeremy L Thompson ierr = DMLocalizeCoordinates(dm); CHKERRQ(ierr); 1321ccaff030SJeremy L Thompson ierr = DMSetFromOptions(dm); CHKERRQ(ierr); 1322777ff853SJeremy L Thompson ierr = SetUpDM(dm, problem, degree, &bc, &ctxSetupData); CHKERRQ(ierr); 132384d34d69SLeila Ghaffari 132484d34d69SLeila Ghaffari // Refine DM for high-order viz 1325ccaff030SJeremy L Thompson dmviz = NULL; 1326ccaff030SJeremy L Thompson interpviz = NULL; 1327ccaff030SJeremy L Thompson if (viz_refine) { 1328ff6701fcSJed Brown DM dmhierarchy[viz_refine+1]; 1329ff6701fcSJed Brown 1330ccaff030SJeremy L Thompson ierr = DMPlexSetRefinementUniform(dm, PETSC_TRUE); CHKERRQ(ierr); 1331ff6701fcSJed Brown dmhierarchy[0] = dm; 133284d34d69SLeila Ghaffari for (PetscInt i = 0, d = degree; i < viz_refine; i++) { 1333ff6701fcSJed Brown Mat interp_next; 1334ff6701fcSJed Brown 1335ff6701fcSJed Brown ierr = DMRefine(dmhierarchy[i], MPI_COMM_NULL, &dmhierarchy[i+1]); 1336ccaff030SJeremy L Thompson CHKERRQ(ierr); 1337bc6a41f7SJed Brown ierr = DMClearDS(dmhierarchy[i+1]); CHKERRQ(ierr); 1338bc6a41f7SJed Brown ierr = DMClearFields(dmhierarchy[i+1]); CHKERRQ(ierr); 1339ff6701fcSJed Brown ierr = DMSetCoarseDM(dmhierarchy[i+1], dmhierarchy[i]); CHKERRQ(ierr); 1340ff6701fcSJed Brown d = (d + 1) / 2; 1341ff6701fcSJed Brown if (i + 1 == viz_refine) d = 1; 1342777ff853SJeremy L Thompson ierr = SetUpDM(dmhierarchy[i+1], problem, d, &bc, &ctxSetupData); 1343f259b054Svaleriabarra CHKERRQ(ierr); 1344ff6701fcSJed Brown ierr = DMCreateInterpolation(dmhierarchy[i], dmhierarchy[i+1], 1345ff6701fcSJed Brown &interp_next, NULL); CHKERRQ(ierr); 1346ff6701fcSJed Brown if (!i) interpviz = interp_next; 1347ff6701fcSJed Brown else { 1348ff6701fcSJed Brown Mat C; 1349ff6701fcSJed Brown ierr = MatMatMult(interp_next, interpviz, MAT_INITIAL_MATRIX, 1350ff6701fcSJed Brown PETSC_DECIDE, &C); CHKERRQ(ierr); 1351ff6701fcSJed Brown ierr = MatDestroy(&interp_next); CHKERRQ(ierr); 1352ff6701fcSJed Brown ierr = MatDestroy(&interpviz); CHKERRQ(ierr); 1353ff6701fcSJed Brown interpviz = C; 1354ff6701fcSJed Brown } 1355ff6701fcSJed Brown } 1356cb3e2689Svaleriabarra for (PetscInt i=1; i<viz_refine; i++) { 1357ff6701fcSJed Brown ierr = DMDestroy(&dmhierarchy[i]); CHKERRQ(ierr); 1358cb3e2689Svaleriabarra } 1359ff6701fcSJed Brown dmviz = dmhierarchy[viz_refine]; 1360ccaff030SJeremy L Thompson } 1361ccaff030SJeremy L Thompson ierr = DMCreateGlobalVector(dm, &Q); CHKERRQ(ierr); 1362ccaff030SJeremy L Thompson ierr = DMGetLocalVector(dm, &Qloc); CHKERRQ(ierr); 1363ccaff030SJeremy L Thompson ierr = VecGetSize(Qloc, &lnodes); CHKERRQ(ierr); 1364ccaff030SJeremy L Thompson lnodes /= ncompq; 1365ccaff030SJeremy L Thompson 136684d34d69SLeila Ghaffari // Initialize CEED 136784d34d69SLeila Ghaffari CeedInit(ceedresource, &ceed); 136884d34d69SLeila Ghaffari // Set memtype 136984d34d69SLeila Ghaffari CeedMemType memtypebackend; 137084d34d69SLeila Ghaffari CeedGetPreferredMemType(ceed, &memtypebackend); 137184d34d69SLeila Ghaffari // Check memtype compatibility 137284d34d69SLeila Ghaffari if (!setmemtyperequest) 137384d34d69SLeila Ghaffari memtyperequested = memtypebackend; 137484d34d69SLeila Ghaffari else if (!petschavecuda && memtyperequested == CEED_MEM_DEVICE) 137584d34d69SLeila Ghaffari SETERRQ1(PETSC_COMM_WORLD, PETSC_ERR_SUP_SYS, 137684d34d69SLeila Ghaffari "PETSc was not built with CUDA. " 137784d34d69SLeila Ghaffari "Requested MemType CEED_MEM_DEVICE is not supported.", NULL); 137884d34d69SLeila Ghaffari 137984d34d69SLeila Ghaffari // Set number of 1D nodes and quadrature points 138084d34d69SLeila Ghaffari numP = degree + 1; 138184d34d69SLeila Ghaffari numQ = numP + qextra; 138284d34d69SLeila Ghaffari 138384d34d69SLeila Ghaffari // Print summary 1384dc8efd83SLeila Ghaffari if (!test) { 1385ccaff030SJeremy L Thompson CeedInt gdofs, odofs; 1386ccaff030SJeremy L Thompson int comm_size; 1387ccaff030SJeremy L Thompson char box_faces_str[PETSC_MAX_PATH_LEN] = "NONE"; 1388ccaff030SJeremy L Thompson ierr = VecGetSize(Q, &gdofs); CHKERRQ(ierr); 1389ccaff030SJeremy L Thompson ierr = VecGetLocalSize(Q, &odofs); CHKERRQ(ierr); 139084d34d69SLeila Ghaffari gnodes = gdofs/ncompq; 1391ccaff030SJeremy L Thompson ierr = MPI_Comm_size(comm, &comm_size); CHKERRQ(ierr); 1392ccaff030SJeremy L Thompson ierr = PetscOptionsGetString(NULL, NULL, "-dm_plex_box_faces", box_faces_str, 1393ccaff030SJeremy L Thompson sizeof(box_faces_str), NULL); CHKERRQ(ierr); 139484d34d69SLeila Ghaffari const char *usedresource; 139584d34d69SLeila Ghaffari CeedGetResource(ceed, &usedresource); 1396ccaff030SJeremy L Thompson 139784d34d69SLeila Ghaffari ierr = PetscPrintf(comm, 139884d34d69SLeila Ghaffari "\n-- Navier-Stokes solver - libCEED + PETSc --\n" 139984d34d69SLeila Ghaffari " rank(s) : %d\n" 140084d34d69SLeila Ghaffari " Problem:\n" 140184d34d69SLeila Ghaffari " Problem Name : %s\n" 140284d34d69SLeila Ghaffari " Stabilization : %s\n" 140384d34d69SLeila Ghaffari " PETSc:\n" 140484d34d69SLeila Ghaffari " Box Faces : %s\n" 140584d34d69SLeila Ghaffari " libCEED:\n" 140684d34d69SLeila Ghaffari " libCEED Backend : %s\n" 140784d34d69SLeila Ghaffari " libCEED Backend MemType : %s\n" 140884d34d69SLeila Ghaffari " libCEED User Requested MemType : %s\n" 140984d34d69SLeila Ghaffari " Mesh:\n" 141084d34d69SLeila Ghaffari " Number of 1D Basis Nodes (P) : %d\n" 141184d34d69SLeila Ghaffari " Number of 1D Quadrature Points (Q) : %d\n" 141284d34d69SLeila Ghaffari " Global DoFs : %D\n" 141384d34d69SLeila Ghaffari " Owned DoFs : %D\n" 141484d34d69SLeila Ghaffari " DoFs per node : %D\n" 141584d34d69SLeila Ghaffari " Global nodes : %D\n" 141684d34d69SLeila Ghaffari " Owned nodes : %D\n", 141784d34d69SLeila Ghaffari comm_size, problemTypes[problemChoice], 141884d34d69SLeila Ghaffari StabilizationTypes[stab], box_faces_str, usedresource, 141984d34d69SLeila Ghaffari CeedMemTypes[memtypebackend], 142084d34d69SLeila Ghaffari (setmemtyperequest) ? 142184d34d69SLeila Ghaffari CeedMemTypes[memtyperequested] : "none", 142284d34d69SLeila Ghaffari numP, numQ, gdofs, odofs, ncompq, gnodes, lnodes); 142384d34d69SLeila Ghaffari CHKERRQ(ierr); 14240c6c0b13SLeila Ghaffari } 14250c6c0b13SLeila Ghaffari 1426ccaff030SJeremy L Thompson // Set up global mass vector 1427ccaff030SJeremy L Thompson ierr = VecDuplicate(Q, &user->M); CHKERRQ(ierr); 1428ccaff030SJeremy L Thompson 142984d34d69SLeila Ghaffari // Set up libCEED 1430ccaff030SJeremy L Thompson // CEED Bases 1431ccaff030SJeremy L Thompson CeedInit(ceedresource, &ceed); 143284d34d69SLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dim, ncompq, numP, numQ, CEED_GAUSS, 143384d34d69SLeila Ghaffari &basisq); 143484d34d69SLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dim, ncompx, 2, numQ, CEED_GAUSS, 143584d34d69SLeila Ghaffari &basisx); 143684d34d69SLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dim, ncompx, 2, numP, 143784d34d69SLeila Ghaffari CEED_GAUSS_LOBATTO, &basisxc); 1438ccaff030SJeremy L Thompson ierr = DMGetCoordinateDM(dm, &dmcoord); CHKERRQ(ierr); 1439ccaff030SJeremy L Thompson ierr = DMPlexSetClosurePermutationTensor(dmcoord, PETSC_DETERMINE, NULL); 1440ccaff030SJeremy L Thompson CHKERRQ(ierr); 1441ccaff030SJeremy L Thompson 1442ccaff030SJeremy L Thompson // CEED Restrictions 14431e150236SLeila Ghaffari ierr = GetRestrictionForDomain(ceed, dm, 0, 0, 0, numP, numQ, 144484d34d69SLeila Ghaffari qdatasizeVol, &restrictq, &restrictx, 144584d34d69SLeila Ghaffari &restrictqdi); CHKERRQ(ierr); 1446ccaff030SJeremy L Thompson 1447ccaff030SJeremy L Thompson ierr = DMGetCoordinatesLocal(dm, &Xloc); CHKERRQ(ierr); 1448ccaff030SJeremy L Thompson ierr = CreateVectorFromPetscVec(ceed, Xloc, &xcorners); CHKERRQ(ierr); 1449ccaff030SJeremy L Thompson 1450ccaff030SJeremy L Thompson // Create the CEED vectors that will be needed in setup 1451bd910870SLeila Ghaffari CeedInt NqptsVol; 145284d34d69SLeila Ghaffari CeedBasisGetNumQuadraturePoints(basisq, &NqptsVol); 145384d34d69SLeila Ghaffari CeedElemRestrictionGetNumElements(restrictq, &localNelemVol); 14548b982baeSLeila Ghaffari CeedVectorCreate(ceed, qdatasizeVol*localNelemVol*NqptsVol, &qdata); 145584d34d69SLeila Ghaffari CeedElemRestrictionCreateVector(restrictq, &q0ceed, NULL); 1456ccaff030SJeremy L Thompson 1457ccaff030SJeremy L Thompson // Create the Q-function that builds the quadrature data for the NS operator 1458ea6e0f84SLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->setupVol, problem->setupVol_loc, 1459ea6e0f84SLeila Ghaffari &qf_setupVol); 1460ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_setupVol, "dx", ncompx*dim, CEED_EVAL_GRAD); 1461ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_setupVol, "weight", 1, CEED_EVAL_WEIGHT); 14628b982baeSLeila Ghaffari CeedQFunctionAddOutput(qf_setupVol, "qdata", qdatasizeVol, CEED_EVAL_NONE); 1463ccaff030SJeremy L Thompson 1464ccaff030SJeremy L Thompson // Create the Q-function that sets the ICs of the operator 1465ccaff030SJeremy L Thompson CeedQFunctionCreateInterior(ceed, 1, problem->ics, problem->ics_loc, &qf_ics); 1466ccaff030SJeremy L Thompson CeedQFunctionAddInput(qf_ics, "x", ncompx, CEED_EVAL_INTERP); 1467ccaff030SJeremy L Thompson CeedQFunctionAddOutput(qf_ics, "q0", ncompq, CEED_EVAL_NONE); 1468ccaff030SJeremy L Thompson 1469ea6e0f84SLeila Ghaffari qf_rhsVol = NULL; 1470ea6e0f84SLeila Ghaffari if (problem->applyVol_rhs) { // Create the Q-function that defines the action of the RHS operator 1471ea6e0f84SLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->applyVol_rhs, 1472ea6e0f84SLeila Ghaffari problem->applyVol_rhs_loc, &qf_rhsVol); 1473ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_rhsVol, "q", ncompq, CEED_EVAL_INTERP); 1474ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_rhsVol, "dq", ncompq*dim, CEED_EVAL_GRAD); 14758b982baeSLeila Ghaffari CeedQFunctionAddInput(qf_rhsVol, "qdata", qdatasizeVol, CEED_EVAL_NONE); 1476ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_rhsVol, "x", ncompx, CEED_EVAL_INTERP); 1477ea6e0f84SLeila Ghaffari CeedQFunctionAddOutput(qf_rhsVol, "v", ncompq, CEED_EVAL_INTERP); 1478ea6e0f84SLeila Ghaffari CeedQFunctionAddOutput(qf_rhsVol, "dv", ncompq*dim, CEED_EVAL_GRAD); 1479ccaff030SJeremy L Thompson } 1480ccaff030SJeremy L Thompson 1481ea6e0f84SLeila Ghaffari qf_ifunctionVol = NULL; 1482ea6e0f84SLeila Ghaffari if (problem->applyVol_ifunction) { // Create the Q-function that defines the action of the IFunction 1483ea6e0f84SLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->applyVol_ifunction, 1484ea6e0f84SLeila Ghaffari problem->applyVol_ifunction_loc, &qf_ifunctionVol); 1485ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_ifunctionVol, "q", ncompq, CEED_EVAL_INTERP); 1486ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_ifunctionVol, "dq", ncompq*dim, CEED_EVAL_GRAD); 1487ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_ifunctionVol, "qdot", ncompq, CEED_EVAL_INTERP); 14888b982baeSLeila Ghaffari CeedQFunctionAddInput(qf_ifunctionVol, "qdata", qdatasizeVol, CEED_EVAL_NONE); 1489ea6e0f84SLeila Ghaffari CeedQFunctionAddInput(qf_ifunctionVol, "x", ncompx, CEED_EVAL_INTERP); 1490ea6e0f84SLeila Ghaffari CeedQFunctionAddOutput(qf_ifunctionVol, "v", ncompq, CEED_EVAL_INTERP); 1491ea6e0f84SLeila Ghaffari CeedQFunctionAddOutput(qf_ifunctionVol, "dv", ncompq*dim, CEED_EVAL_GRAD); 1492ccaff030SJeremy L Thompson } 1493ccaff030SJeremy L Thompson 1494ccaff030SJeremy L Thompson // Create the operator that builds the quadrature data for the NS operator 1495ea6e0f84SLeila Ghaffari CeedOperatorCreate(ceed, qf_setupVol, NULL, NULL, &op_setupVol); 149684d34d69SLeila Ghaffari CeedOperatorSetField(op_setupVol, "dx", restrictx, basisx, CEED_VECTOR_ACTIVE); 1497ea6e0f84SLeila Ghaffari CeedOperatorSetField(op_setupVol, "weight", CEED_ELEMRESTRICTION_NONE, 149884d34d69SLeila Ghaffari basisx, CEED_VECTOR_NONE); 149984d34d69SLeila Ghaffari CeedOperatorSetField(op_setupVol, "qdata", restrictqdi, 1500ccaff030SJeremy L Thompson CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE); 1501ccaff030SJeremy L Thompson 1502ccaff030SJeremy L Thompson // Create the operator that sets the ICs 1503ccaff030SJeremy L Thompson CeedOperatorCreate(ceed, qf_ics, NULL, NULL, &op_ics); 150484d34d69SLeila Ghaffari CeedOperatorSetField(op_ics, "x", restrictx, basisxc, CEED_VECTOR_ACTIVE); 150584d34d69SLeila Ghaffari CeedOperatorSetField(op_ics, "q0", restrictq, 1506ccaff030SJeremy L Thompson CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE); 1507ccaff030SJeremy L Thompson 150884d34d69SLeila Ghaffari CeedElemRestrictionCreateVector(restrictq, &user->qceed, NULL); 150984d34d69SLeila Ghaffari CeedElemRestrictionCreateVector(restrictq, &user->qdotceed, NULL); 151084d34d69SLeila Ghaffari CeedElemRestrictionCreateVector(restrictq, &user->gceed, NULL); 1511ccaff030SJeremy L Thompson 1512ea6e0f84SLeila Ghaffari if (qf_rhsVol) { // Create the RHS physics operator 1513ccaff030SJeremy L Thompson CeedOperator op; 1514ea6e0f84SLeila Ghaffari CeedOperatorCreate(ceed, qf_rhsVol, NULL, NULL, &op); 151584d34d69SLeila Ghaffari CeedOperatorSetField(op, "q", restrictq, basisq, CEED_VECTOR_ACTIVE); 151684d34d69SLeila Ghaffari CeedOperatorSetField(op, "dq", restrictq, basisq, CEED_VECTOR_ACTIVE); 151784d34d69SLeila Ghaffari CeedOperatorSetField(op, "qdata", restrictqdi, 15188b982baeSLeila Ghaffari CEED_BASIS_COLLOCATED, qdata); 151984d34d69SLeila Ghaffari CeedOperatorSetField(op, "x", restrictx, basisx, xcorners); 152084d34d69SLeila Ghaffari CeedOperatorSetField(op, "v", restrictq, basisq, CEED_VECTOR_ACTIVE); 152184d34d69SLeila Ghaffari CeedOperatorSetField(op, "dv", restrictq, basisq, CEED_VECTOR_ACTIVE); 1522d3630711SJed Brown user->op_rhs_vol = op; 1523ccaff030SJeremy L Thompson } 1524ccaff030SJeremy L Thompson 1525ea6e0f84SLeila Ghaffari if (qf_ifunctionVol) { // Create the IFunction operator 1526ccaff030SJeremy L Thompson CeedOperator op; 1527ea6e0f84SLeila Ghaffari CeedOperatorCreate(ceed, qf_ifunctionVol, NULL, NULL, &op); 152884d34d69SLeila Ghaffari CeedOperatorSetField(op, "q", restrictq, basisq, CEED_VECTOR_ACTIVE); 152984d34d69SLeila Ghaffari CeedOperatorSetField(op, "dq", restrictq, basisq, CEED_VECTOR_ACTIVE); 153084d34d69SLeila Ghaffari CeedOperatorSetField(op, "qdot", restrictq, basisq, user->qdotceed); 153184d34d69SLeila Ghaffari CeedOperatorSetField(op, "qdata", restrictqdi, 15328b982baeSLeila Ghaffari CEED_BASIS_COLLOCATED, qdata); 153384d34d69SLeila Ghaffari CeedOperatorSetField(op, "x", restrictx, basisx, xcorners); 153484d34d69SLeila Ghaffari CeedOperatorSetField(op, "v", restrictq, basisq, CEED_VECTOR_ACTIVE); 153584d34d69SLeila Ghaffari CeedOperatorSetField(op, "dv", restrictq, basisq, CEED_VECTOR_ACTIVE); 1536d3630711SJed Brown user->op_ifunction_vol = op; 1537ccaff030SJeremy L Thompson } 1538ccaff030SJeremy L Thompson 15396a0edaf9SLeila Ghaffari // Set up CEED for the boundaries 15406a0edaf9SLeila Ghaffari CeedInt height = 1; 15416a0edaf9SLeila Ghaffari CeedInt dimSur = dim - height; 15421e150236SLeila Ghaffari CeedInt numP_Sur = degree + 1; 15431e150236SLeila Ghaffari CeedInt numQ_Sur = numP_Sur + qextraSur; 1544cfa64770SLeila Ghaffari const CeedInt qdatasizeSur = problem->qdatasizeSur; 1545cfa64770SLeila Ghaffari CeedBasis basisxSur, basisxcSur, basisqSur; 1546cfa64770SLeila Ghaffari CeedInt NqptsSur; 15474438636fSLeila Ghaffari CeedQFunction qf_setupSur, qf_applySur, qf_applyIn, qf_applyOut; 1548cfa64770SLeila Ghaffari 1549cfa64770SLeila Ghaffari // CEED bases for the boundaries 1550ebb4b9bdSLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dimSur, ncompq, numP_Sur, numQ_Sur, 1551ebb4b9bdSLeila Ghaffari CEED_GAUSS, 15526a0edaf9SLeila Ghaffari &basisqSur); 15536a0edaf9SLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dimSur, ncompx, 2, numQ_Sur, CEED_GAUSS, 15546a0edaf9SLeila Ghaffari &basisxSur); 15556a0edaf9SLeila Ghaffari CeedBasisCreateTensorH1Lagrange(ceed, dimSur, ncompx, 2, numP_Sur, 15566a0edaf9SLeila Ghaffari CEED_GAUSS_LOBATTO, &basisxcSur); 15576a0edaf9SLeila Ghaffari CeedBasisGetNumQuadraturePoints(basisqSur, &NqptsSur); 15586a0edaf9SLeila Ghaffari 1559cfa64770SLeila Ghaffari // Create the Q-function that builds the quadrature data for the Surface operator 15606a0edaf9SLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->setupSur, problem->setupSur_loc, 15616a0edaf9SLeila Ghaffari &qf_setupSur); 15626a0edaf9SLeila Ghaffari CeedQFunctionAddInput(qf_setupSur, "dx", ncompx*dimSur, CEED_EVAL_GRAD); 15636a0edaf9SLeila Ghaffari CeedQFunctionAddInput(qf_setupSur, "weight", 1, CEED_EVAL_WEIGHT); 15646a0edaf9SLeila Ghaffari CeedQFunctionAddOutput(qf_setupSur, "qdataSur", qdatasizeSur, CEED_EVAL_NONE); 15656a0edaf9SLeila Ghaffari 15667659d40cSLeila Ghaffari // Creat Q-Function for Boundaries 156786ba6f09SLeila Ghaffari // -- Defined for Advection(2d) test cases 15687ed8b9c7SLeila Ghaffari qf_applySur = NULL; 15697659d40cSLeila Ghaffari if (problem->applySur) { 15707659d40cSLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->applySur, 15717ed8b9c7SLeila Ghaffari problem->applySur_loc, &qf_applySur); 15727ed8b9c7SLeila Ghaffari CeedQFunctionAddInput(qf_applySur, "q", ncompq, CEED_EVAL_INTERP); 15737ed8b9c7SLeila Ghaffari CeedQFunctionAddInput(qf_applySur, "qdataSur", qdatasizeSur, CEED_EVAL_NONE); 15747ed8b9c7SLeila Ghaffari CeedQFunctionAddInput(qf_applySur, "x", ncompx, CEED_EVAL_INTERP); 15757ed8b9c7SLeila Ghaffari CeedQFunctionAddOutput(qf_applySur, "v", ncompq, CEED_EVAL_INTERP); 15769fe13df9SLeila Ghaffari } 157786ba6f09SLeila Ghaffari // -- Defined for Euler Traveling Vortex test case 15784438636fSLeila Ghaffari qf_applyIn = NULL; 15794438636fSLeila Ghaffari if (problem->applyIn) { 15804438636fSLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->applyIn, 15814438636fSLeila Ghaffari problem->applyIn_loc, &qf_applyIn); 15824438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyIn, "q", ncompq, CEED_EVAL_INTERP); 15834438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyIn, "qdataSur", qdatasizeSur, CEED_EVAL_NONE); 15844438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyIn, "x", ncompx, CEED_EVAL_INTERP); 15854438636fSLeila Ghaffari CeedQFunctionAddOutput(qf_applyIn, "v", ncompq, CEED_EVAL_INTERP); 15864438636fSLeila Ghaffari } 15874438636fSLeila Ghaffari qf_applyOut = NULL; 15884438636fSLeila Ghaffari if (problem->applyOut) { 15894438636fSLeila Ghaffari CeedQFunctionCreateInterior(ceed, 1, problem->applyOut, 15904438636fSLeila Ghaffari problem->applyOut_loc, &qf_applyOut); 15914438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyOut, "q", ncompq, CEED_EVAL_INTERP); 15924438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyOut, "qdataSur", qdatasizeSur, CEED_EVAL_NONE); 15934438636fSLeila Ghaffari CeedQFunctionAddInput(qf_applyOut, "x", ncompx, CEED_EVAL_INTERP); 15944438636fSLeila Ghaffari CeedQFunctionAddOutput(qf_applyOut, "v", ncompq, CEED_EVAL_INTERP); 15954438636fSLeila Ghaffari } 15969fe13df9SLeila Ghaffari 15979fe13df9SLeila Ghaffari // Create CEED Operator for the whole domain 15989fe13df9SLeila Ghaffari if (!implicit) 15994438636fSLeila Ghaffari ierr = CreateOperatorForDomain(ceed, dm, &bc, problemChoice, wind_type, 16004438636fSLeila Ghaffari user->op_rhs_vol, qf_applySur, 16014438636fSLeila Ghaffari qf_setupSur, qf_applyIn, qf_applyOut, 16024438636fSLeila Ghaffari height, numP_Sur, numQ_Sur, 16034438636fSLeila Ghaffari qdatasizeSur, NqptsSur, basisxSur, 16044438636fSLeila Ghaffari basisqSur, &user->op_rhs); 16054438636fSLeila Ghaffari CHKERRQ(ierr); 16069fe13df9SLeila Ghaffari if (implicit) 16074438636fSLeila Ghaffari ierr = CreateOperatorForDomain(ceed, dm, &bc, problemChoice, wind_type, 16084438636fSLeila Ghaffari user->op_ifunction_vol, qf_applySur, 16094438636fSLeila Ghaffari qf_setupSur, NULL, NULL, 16104438636fSLeila Ghaffari height, numP_Sur, numQ_Sur, 16114438636fSLeila Ghaffari qdatasizeSur, NqptsSur, basisxSur, 16124438636fSLeila Ghaffari basisqSur, &user->op_ifunction); 16134438636fSLeila Ghaffari CHKERRQ(ierr); 16147659d40cSLeila Ghaffari // Set up contex for QFunctions 1615777ff853SJeremy L Thompson CeedQFunctionContextCreate(ceed, &ctxSetup); 1616777ff853SJeremy L Thompson CeedQFunctionContextSetData(ctxSetup, CEED_MEM_HOST, CEED_USE_POINTER, 1617777ff853SJeremy L Thompson sizeof ctxSetupData, &ctxSetupData); 1618777ff853SJeremy L Thompson CeedQFunctionSetContext(qf_ics, ctxSetup); 1619777ff853SJeremy L Thompson 1620777ff853SJeremy L Thompson CeedScalar ctxNSData[8] = {lambda, mu, k, cv, cp, g, Rd}; 1621777ff853SJeremy L Thompson CeedQFunctionContextCreate(ceed, &ctxNS); 1622777ff853SJeremy L Thompson CeedQFunctionContextSetData(ctxNS, CEED_MEM_HOST, CEED_USE_POINTER, 1623777ff853SJeremy L Thompson sizeof ctxNSData, &ctxNSData); 1624777ff853SJeremy L Thompson 1625777ff853SJeremy L Thompson struct Advection2dContext_ ctxAdvection2dData = { 1626ccaff030SJeremy L Thompson .CtauS = CtauS, 1627ccaff030SJeremy L Thompson .strong_form = strong_form, 1628ccaff030SJeremy L Thompson .stabilization = stab, 1629ccaff030SJeremy L Thompson }; 1630777ff853SJeremy L Thompson CeedQFunctionContextCreate(ceed, &ctxAdvection2d); 1631777ff853SJeremy L Thompson CeedQFunctionContextSetData(ctxAdvection2d, CEED_MEM_HOST, CEED_USE_POINTER, 1632777ff853SJeremy L Thompson sizeof ctxAdvection2dData, &ctxAdvection2dData); 1633777ff853SJeremy L Thompson 1634777ff853SJeremy L Thompson struct SurfaceContext_ ctxSurfaceData = { 163516c0476cSLeila Ghaffari .E_wind = E_wind, 16367659d40cSLeila Ghaffari .strong_form = strong_form, 1637e5ed8c30SLeila Ghaffari .implicit = implicit, 1638e5ed8c30SLeila Ghaffari }; 1639e5ed8c30SLeila Ghaffari struct EulerContext_ ctxEuler = { 1640b9c3f7b3SLeila Ghaffari .rho_enter = rho_enter, 1641b9c3f7b3SLeila Ghaffari .u_enter[0] = u_enter[0], 1642b9c3f7b3SLeila Ghaffari .u_enter[1] = u_enter[1], 1643b9c3f7b3SLeila Ghaffari .u_enter[2] = u_enter[2], 16447659d40cSLeila Ghaffari .implicit = implicit, 16457659d40cSLeila Ghaffari }; 1646777ff853SJeremy L Thompson CeedQFunctionContextCreate(ceed, &ctxSurface); 1647777ff853SJeremy L Thompson CeedQFunctionContextSetData(ctxSurface, CEED_MEM_HOST, CEED_USE_POINTER, 1648777ff853SJeremy L Thompson sizeof ctxSurfaceData, &ctxSurfaceData); 1649777ff853SJeremy L Thompson 1650ccaff030SJeremy L Thompson switch (problemChoice) { 1651ccaff030SJeremy L Thompson case NS_DENSITY_CURRENT: 1652e5ed8c30SLeila Ghaffari if (qf_rhsVol) CeedQFunctionSetContext(qf_rhsVol, &ctxNS, sizeof ctxNS); 1653e5ed8c30SLeila Ghaffari if (qf_ifunctionVol) CeedQFunctionSetContext(qf_ifunctionVol, &ctxNS, 1654e5ed8c30SLeila Ghaffari sizeof ctxNS); 1655ccaff030SJeremy L Thompson break; 1656ccaff030SJeremy L Thompson case NS_ADVECTION: 1657ccaff030SJeremy L Thompson case NS_ADVECTION2D: 1658e5ed8c30SLeila Ghaffari if (qf_rhsVol) CeedQFunctionSetContext(qf_rhsVol, &ctxAdvection2d, 1659e5ed8c30SLeila Ghaffari sizeof ctxAdvection2d); 1660e5ed8c30SLeila Ghaffari if (qf_ifunctionVol) CeedQFunctionSetContext(qf_ifunctionVol, &ctxAdvection2d, 1661e5ed8c30SLeila Ghaffari sizeof ctxAdvection2d); 1662e5ed8c30SLeila Ghaffari if (qf_applySur) CeedQFunctionSetContext(qf_applySur, &ctxSurface, 1663e5ed8c30SLeila Ghaffari sizeof ctxSurface); 1664e5ed8c30SLeila Ghaffari case NS_EULER_VORTEX: 1665e5ed8c30SLeila Ghaffari if (qf_applyIn) CeedQFunctionSetContext(qf_applyIn, &ctxEuler, 1666e5ed8c30SLeila Ghaffari sizeof ctxEuler); 1667ccaff030SJeremy L Thompson } 1668ccaff030SJeremy L Thompson 1669ccaff030SJeremy L Thompson // Set up PETSc context 1670ccaff030SJeremy L Thompson // Set up units structure 1671ccaff030SJeremy L Thompson units->meter = meter; 1672ccaff030SJeremy L Thompson units->kilogram = kilogram; 1673ccaff030SJeremy L Thompson units->second = second; 1674ccaff030SJeremy L Thompson units->Kelvin = Kelvin; 1675ccaff030SJeremy L Thompson units->Pascal = Pascal; 1676ccaff030SJeremy L Thompson units->JperkgK = JperkgK; 1677ccaff030SJeremy L Thompson units->mpersquareds = mpersquareds; 1678ccaff030SJeremy L Thompson units->WpermK = WpermK; 1679ccaff030SJeremy L Thompson units->kgpercubicm = kgpercubicm; 1680ccaff030SJeremy L Thompson units->kgpersquaredms = kgpersquaredms; 1681ccaff030SJeremy L Thompson units->Joulepercubicm = Joulepercubicm; 168216c0476cSLeila Ghaffari units->Joule = Joule; 1683ccaff030SJeremy L Thompson 1684ccaff030SJeremy L Thompson // Set up user structure 1685ccaff030SJeremy L Thompson user->comm = comm; 1686ccaff030SJeremy L Thompson user->outputfreq = outputfreq; 1687ccaff030SJeremy L Thompson user->contsteps = contsteps; 1688ccaff030SJeremy L Thompson user->units = units; 1689ccaff030SJeremy L Thompson user->dm = dm; 1690ccaff030SJeremy L Thompson user->dmviz = dmviz; 1691ccaff030SJeremy L Thompson user->interpviz = interpviz; 1692ccaff030SJeremy L Thompson user->ceed = ceed; 1693ccaff030SJeremy L Thompson 16948b982baeSLeila Ghaffari // Calculate qdata and ICs 1695ccaff030SJeremy L Thompson // Set up state global and local vectors 1696ccaff030SJeremy L Thompson ierr = VecZeroEntries(Q); CHKERRQ(ierr); 1697ccaff030SJeremy L Thompson 1698cfa64770SLeila Ghaffari ierr = VectorPlacePetscVec(q0ceed, Qloc); CHKERRQ(ierr); 1699ccaff030SJeremy L Thompson 1700ccaff030SJeremy L Thompson // Apply Setup Ceed Operators 1701ccaff030SJeremy L Thompson ierr = VectorPlacePetscVec(xcorners, Xloc); CHKERRQ(ierr); 17028b982baeSLeila Ghaffari CeedOperatorApply(op_setupVol, xcorners, qdata, CEED_REQUEST_IMMEDIATE); 170384d34d69SLeila Ghaffari ierr = ComputeLumpedMassMatrix(ceed, dm, restrictq, basisq, restrictqdi, qdata, 1704ccaff030SJeremy L Thompson user->M); CHKERRQ(ierr); 1705ccaff030SJeremy L Thompson 170684d34d69SLeila Ghaffari ierr = ICs_FixMultiplicity(op_ics, xcorners, q0ceed, dm, Qloc, Q, restrictq, 1707777ff853SJeremy L Thompson ctxSetup, 0.0); CHKERRQ(ierr); 1708ccaff030SJeremy L Thompson if (1) { // Record boundary values from initial condition and override DMPlexInsertBoundaryValues() 1709ccaff030SJeremy L Thompson // We use this for the main simulation DM because the reference DMPlexInsertBoundaryValues() is very slow. If we 1710ccaff030SJeremy L Thompson // disable this, we should still get the same results due to the problem->bc function, but with potentially much 1711ccaff030SJeremy L Thompson // slower execution. 1712ccaff030SJeremy L Thompson Vec Qbc; 1713ccaff030SJeremy L Thompson ierr = DMGetNamedLocalVector(dm, "Qbc", &Qbc); CHKERRQ(ierr); 1714ccaff030SJeremy L Thompson ierr = VecCopy(Qloc, Qbc); CHKERRQ(ierr); 1715ccaff030SJeremy L Thompson ierr = VecZeroEntries(Qloc); CHKERRQ(ierr); 1716ccaff030SJeremy L Thompson ierr = DMGlobalToLocal(dm, Q, INSERT_VALUES, Qloc); CHKERRQ(ierr); 1717ccaff030SJeremy L Thompson ierr = VecAXPY(Qbc, -1., Qloc); CHKERRQ(ierr); 1718ccaff030SJeremy L Thompson ierr = DMRestoreNamedLocalVector(dm, "Qbc", &Qbc); CHKERRQ(ierr); 1719ccaff030SJeremy L Thompson ierr = PetscObjectComposeFunction((PetscObject)dm, 172084d34d69SLeila Ghaffari "DMPlexInsertBoundaryValues_C", DMPlexInsertBoundaryValues_NS); 172184d34d69SLeila Ghaffari CHKERRQ(ierr); 1722ccaff030SJeremy L Thompson } 1723ccaff030SJeremy L Thompson 1724ccaff030SJeremy L Thompson MPI_Comm_rank(comm, &rank); 1725d99129b9SLeila Ghaffari if (!rank) {ierr = PetscMkdir(user->outputdir); CHKERRQ(ierr);} 1726ccaff030SJeremy L Thompson // Gather initial Q values 1727ccaff030SJeremy L Thompson // In case of continuation of simulation, set up initial values from binary file 1728ccaff030SJeremy L Thompson if (contsteps) { // continue from existent solution 1729ccaff030SJeremy L Thompson PetscViewer viewer; 1730ccaff030SJeremy L Thompson char filepath[PETSC_MAX_PATH_LEN]; 1731ccaff030SJeremy L Thompson // Read input 1732ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath, sizeof filepath, "%s/ns-solution.bin", 1733d99129b9SLeila Ghaffari user->outputdir); 1734ccaff030SJeremy L Thompson CHKERRQ(ierr); 1735ccaff030SJeremy L Thompson ierr = PetscViewerBinaryOpen(comm, filepath, FILE_MODE_READ, &viewer); 1736ccaff030SJeremy L Thompson CHKERRQ(ierr); 1737ccaff030SJeremy L Thompson ierr = VecLoad(Q, viewer); CHKERRQ(ierr); 1738ccaff030SJeremy L Thompson ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 1739ccaff030SJeremy L Thompson } 1740ccaff030SJeremy L Thompson ierr = DMRestoreLocalVector(dm, &Qloc); CHKERRQ(ierr); 1741ccaff030SJeremy L Thompson 1742ccaff030SJeremy L Thompson // Create and setup TS 1743ccaff030SJeremy L Thompson ierr = TSCreate(comm, &ts); CHKERRQ(ierr); 1744ccaff030SJeremy L Thompson ierr = TSSetDM(ts, dm); CHKERRQ(ierr); 1745ccaff030SJeremy L Thompson if (implicit) { 1746ccaff030SJeremy L Thompson ierr = TSSetType(ts, TSBDF); CHKERRQ(ierr); 1747ccaff030SJeremy L Thompson if (user->op_ifunction) { 1748ccaff030SJeremy L Thompson ierr = TSSetIFunction(ts, NULL, IFunction_NS, &user); CHKERRQ(ierr); 1749ccaff030SJeremy L Thompson } else { // Implicit integrators can fall back to using an RHSFunction 1750ccaff030SJeremy L Thompson ierr = TSSetRHSFunction(ts, NULL, RHS_NS, &user); CHKERRQ(ierr); 1751ccaff030SJeremy L Thompson } 1752ccaff030SJeremy L Thompson } else { 1753ccaff030SJeremy L Thompson if (!user->op_rhs) SETERRQ(comm, PETSC_ERR_ARG_NULL, 1754ccaff030SJeremy L Thompson "Problem does not provide RHSFunction"); 1755ccaff030SJeremy L Thompson ierr = TSSetType(ts, TSRK); CHKERRQ(ierr); 1756ccaff030SJeremy L Thompson ierr = TSRKSetType(ts, TSRK5F); CHKERRQ(ierr); 1757ccaff030SJeremy L Thompson ierr = TSSetRHSFunction(ts, NULL, RHS_NS, &user); CHKERRQ(ierr); 1758ccaff030SJeremy L Thompson } 1759ccaff030SJeremy L Thompson ierr = TSSetMaxTime(ts, 500. * units->second); CHKERRQ(ierr); 1760ccaff030SJeremy L Thompson ierr = TSSetExactFinalTime(ts, TS_EXACTFINALTIME_STEPOVER); CHKERRQ(ierr); 1761ccaff030SJeremy L Thompson ierr = TSSetTimeStep(ts, 1.e-2 * units->second); CHKERRQ(ierr); 1762dc8efd83SLeila Ghaffari if (test) {ierr = TSSetMaxSteps(ts, 10); CHKERRQ(ierr);} 1763ccaff030SJeremy L Thompson ierr = TSGetAdapt(ts, &adapt); CHKERRQ(ierr); 1764ccaff030SJeremy L Thompson ierr = TSAdaptSetStepLimits(adapt, 1765ccaff030SJeremy L Thompson 1.e-12 * units->second, 1766ccaff030SJeremy L Thompson 1.e2 * units->second); CHKERRQ(ierr); 1767ccaff030SJeremy L Thompson ierr = TSSetFromOptions(ts); CHKERRQ(ierr); 1768ccaff030SJeremy L Thompson if (!contsteps) { // print initial condition 1769dc8efd83SLeila Ghaffari if (!test) { 1770ccaff030SJeremy L Thompson ierr = TSMonitor_NS(ts, 0, 0., Q, user); CHKERRQ(ierr); 1771ccaff030SJeremy L Thompson } 1772ccaff030SJeremy L Thompson } else { // continue from time of last output 1773ccaff030SJeremy L Thompson PetscReal time; 1774ccaff030SJeremy L Thompson PetscInt count; 1775ccaff030SJeremy L Thompson PetscViewer viewer; 1776ccaff030SJeremy L Thompson char filepath[PETSC_MAX_PATH_LEN]; 1777ccaff030SJeremy L Thompson ierr = PetscSNPrintf(filepath, sizeof filepath, "%s/ns-time.bin", 1778d99129b9SLeila Ghaffari user->outputdir); CHKERRQ(ierr); 1779ccaff030SJeremy L Thompson ierr = PetscViewerBinaryOpen(comm, filepath, FILE_MODE_READ, &viewer); 1780ccaff030SJeremy L Thompson CHKERRQ(ierr); 1781ccaff030SJeremy L Thompson ierr = PetscViewerBinaryRead(viewer, &time, 1, &count, PETSC_REAL); 1782ccaff030SJeremy L Thompson CHKERRQ(ierr); 1783ccaff030SJeremy L Thompson ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 1784ccaff030SJeremy L Thompson ierr = TSSetTime(ts, time * user->units->second); CHKERRQ(ierr); 1785ccaff030SJeremy L Thompson } 1786dc8efd83SLeila Ghaffari if (!test) { 1787ccaff030SJeremy L Thompson ierr = TSMonitorSet(ts, TSMonitor_NS, user, NULL); CHKERRQ(ierr); 1788ccaff030SJeremy L Thompson } 1789ccaff030SJeremy L Thompson 1790ccaff030SJeremy L Thompson // Solve 1791ccaff030SJeremy L Thompson start = MPI_Wtime(); 1792ccaff030SJeremy L Thompson ierr = PetscBarrier((PetscObject)ts); CHKERRQ(ierr); 1793ccaff030SJeremy L Thompson ierr = TSSolve(ts, Q); CHKERRQ(ierr); 1794ccaff030SJeremy L Thompson cpu_time_used = MPI_Wtime() - start; 1795ccaff030SJeremy L Thompson ierr = TSGetSolveTime(ts, &ftime); CHKERRQ(ierr); 1796ccaff030SJeremy L Thompson ierr = MPI_Allreduce(MPI_IN_PLACE, &cpu_time_used, 1, MPI_DOUBLE, MPI_MIN, 1797ccaff030SJeremy L Thompson comm); CHKERRQ(ierr); 1798dc8efd83SLeila Ghaffari if (!test) { 1799ccaff030SJeremy L Thompson ierr = PetscPrintf(PETSC_COMM_WORLD, 180084d34d69SLeila Ghaffari "Time taken for solution (sec): %g\n", 1801ccaff030SJeremy L Thompson (double)cpu_time_used); CHKERRQ(ierr); 1802ccaff030SJeremy L Thompson } 1803ccaff030SJeremy L Thompson 1804ccaff030SJeremy L Thompson // Get error 1805dc8efd83SLeila Ghaffari if (problem->non_zero_time && !test) { 1806ccaff030SJeremy L Thompson Vec Qexact, Qexactloc; 1807ccaff030SJeremy L Thompson PetscReal norm; 1808ccaff030SJeremy L Thompson ierr = DMCreateGlobalVector(dm, &Qexact); CHKERRQ(ierr); 1809ccaff030SJeremy L Thompson ierr = DMGetLocalVector(dm, &Qexactloc); CHKERRQ(ierr); 1810ccaff030SJeremy L Thompson ierr = VecGetSize(Qexactloc, &lnodes); CHKERRQ(ierr); 1811ccaff030SJeremy L Thompson 181284d34d69SLeila Ghaffari ierr = ICs_FixMultiplicity(op_ics, xcorners, q0ceed, dm, Qexactloc, Qexact, 1813777ff853SJeremy L Thompson restrictq, ctxSetup, ftime); CHKERRQ(ierr); 1814ccaff030SJeremy L Thompson 1815ccaff030SJeremy L Thompson ierr = VecAXPY(Q, -1.0, Qexact); CHKERRQ(ierr); 1816ccaff030SJeremy L Thompson ierr = VecNorm(Q, NORM_MAX, &norm); CHKERRQ(ierr); 1817cfa64770SLeila Ghaffari CeedVectorDestroy(&q0ceed); 1818ccaff030SJeremy L Thompson ierr = PetscPrintf(PETSC_COMM_WORLD, 1819ccaff030SJeremy L Thompson "Max Error: %g\n", 1820ccaff030SJeremy L Thompson (double)norm); CHKERRQ(ierr); 182184d34d69SLeila Ghaffari // Clean up vectors 182284d34d69SLeila Ghaffari ierr = DMRestoreLocalVector(dm, &Qexactloc); CHKERRQ(ierr); 182384d34d69SLeila Ghaffari ierr = VecDestroy(&Qexact); CHKERRQ(ierr); 1824ccaff030SJeremy L Thompson } 1825ccaff030SJeremy L Thompson 1826ccaff030SJeremy L Thompson // Output Statistics 1827ccaff030SJeremy L Thompson ierr = TSGetStepNumber(ts, &steps); CHKERRQ(ierr); 1828dc8efd83SLeila Ghaffari if (!test) { 1829ccaff030SJeremy L Thompson ierr = PetscPrintf(PETSC_COMM_WORLD, 1830ccaff030SJeremy L Thompson "Time integrator took %D time steps to reach final time %g\n", 1831ccaff030SJeremy L Thompson steps, (double)ftime); CHKERRQ(ierr); 1832ccaff030SJeremy L Thompson } 183384d34d69SLeila Ghaffari // Output numerical values from command line 183484d34d69SLeila Ghaffari ierr = VecViewFromOptions(Q, NULL, "-vec_view"); CHKERRQ(ierr); 183584d34d69SLeila Ghaffari 1836335ea220SLeila Ghaffari // Compare reference solution values with current test run for CI 1837dc8efd83SLeila Ghaffari if (test) { 183884d34d69SLeila Ghaffari PetscViewer viewer; 183984d34d69SLeila Ghaffari // Read reference file 184084d34d69SLeila Ghaffari Vec Qref; 184184d34d69SLeila Ghaffari PetscReal error, Qrefnorm; 184284d34d69SLeila Ghaffari ierr = VecDuplicate(Q, &Qref); CHKERRQ(ierr); 1843dc8efd83SLeila Ghaffari ierr = PetscViewerBinaryOpen(comm, filepath, FILE_MODE_READ, &viewer); 184484d34d69SLeila Ghaffari CHKERRQ(ierr); 184584d34d69SLeila Ghaffari ierr = VecLoad(Qref, viewer); CHKERRQ(ierr); 184684d34d69SLeila Ghaffari ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 184784d34d69SLeila Ghaffari 184884d34d69SLeila Ghaffari // Compute error with respect to reference solution 184984d34d69SLeila Ghaffari ierr = VecAXPY(Q, -1.0, Qref); CHKERRQ(ierr); 185084d34d69SLeila Ghaffari ierr = VecNorm(Qref, NORM_MAX, &Qrefnorm); CHKERRQ(ierr); 185184d34d69SLeila Ghaffari ierr = VecScale(Q, 1./Qrefnorm); CHKERRQ(ierr); 185284d34d69SLeila Ghaffari ierr = VecNorm(Q, NORM_MAX, &error); CHKERRQ(ierr); 185384d34d69SLeila Ghaffari ierr = VecDestroy(&Qref); CHKERRQ(ierr); 185484d34d69SLeila Ghaffari // Check error 1855dc8efd83SLeila Ghaffari if (error > testtol) { 185684d34d69SLeila Ghaffari ierr = PetscPrintf(PETSC_COMM_WORLD, 185784d34d69SLeila Ghaffari "Test failed with error norm %g\n", 185884d34d69SLeila Ghaffari (double)error); CHKERRQ(ierr); 185984d34d69SLeila Ghaffari } 186084d34d69SLeila Ghaffari ierr = PetscViewerDestroy(&viewer); CHKERRQ(ierr); 186184d34d69SLeila Ghaffari } 18629cf88b28Svaleriabarra 1863ccaff030SJeremy L Thompson // Clean up libCEED 18648b982baeSLeila Ghaffari CeedVectorDestroy(&qdata); 1865ccaff030SJeremy L Thompson CeedVectorDestroy(&user->qceed); 1866ccaff030SJeremy L Thompson CeedVectorDestroy(&user->qdotceed); 1867ccaff030SJeremy L Thompson CeedVectorDestroy(&user->gceed); 1868ccaff030SJeremy L Thompson CeedVectorDestroy(&xcorners); 186984d34d69SLeila Ghaffari CeedBasisDestroy(&basisq); 187084d34d69SLeila Ghaffari CeedBasisDestroy(&basisx); 187184d34d69SLeila Ghaffari CeedBasisDestroy(&basisxc); 187284d34d69SLeila Ghaffari CeedElemRestrictionDestroy(&restrictq); 187384d34d69SLeila Ghaffari CeedElemRestrictionDestroy(&restrictx); 187484d34d69SLeila Ghaffari CeedElemRestrictionDestroy(&restrictqdi); 1875ea6e0f84SLeila Ghaffari CeedQFunctionDestroy(&qf_setupVol); 1876ccaff030SJeremy L Thompson CeedQFunctionDestroy(&qf_ics); 1877ea6e0f84SLeila Ghaffari CeedQFunctionDestroy(&qf_rhsVol); 1878ea6e0f84SLeila Ghaffari CeedQFunctionDestroy(&qf_ifunctionVol); 1879777ff853SJeremy L Thompson CeedQFunctionContextDestroy(&ctxSetup); 1880777ff853SJeremy L Thompson CeedQFunctionContextDestroy(&ctxNS); 1881777ff853SJeremy L Thompson CeedQFunctionContextDestroy(&ctxAdvection2d); 1882777ff853SJeremy L Thompson CeedQFunctionContextDestroy(&ctxSurface); 1883ea6e0f84SLeila Ghaffari CeedOperatorDestroy(&op_setupVol); 1884ccaff030SJeremy L Thompson CeedOperatorDestroy(&op_ics); 18856a0edaf9SLeila Ghaffari CeedOperatorDestroy(&user->op_rhs_vol); 18866a0edaf9SLeila Ghaffari CeedOperatorDestroy(&user->op_ifunction_vol); 18876a0edaf9SLeila Ghaffari CeedDestroy(&ceed); 18886a0edaf9SLeila Ghaffari CeedBasisDestroy(&basisqSur); 18896a0edaf9SLeila Ghaffari CeedBasisDestroy(&basisxSur); 18906a0edaf9SLeila Ghaffari CeedBasisDestroy(&basisxcSur); 18916a0edaf9SLeila Ghaffari CeedQFunctionDestroy(&qf_setupSur); 18927ed8b9c7SLeila Ghaffari CeedQFunctionDestroy(&qf_applySur); 189386ba6f09SLeila Ghaffari CeedQFunctionDestroy(&qf_applyIn); 189486ba6f09SLeila Ghaffari CeedQFunctionDestroy(&qf_applyOut); 1895ccaff030SJeremy L Thompson CeedOperatorDestroy(&user->op_rhs); 1896ccaff030SJeremy L Thompson CeedOperatorDestroy(&user->op_ifunction); 1897ccaff030SJeremy L Thompson 1898ccaff030SJeremy L Thompson // Clean up PETSc 1899ccaff030SJeremy L Thompson ierr = VecDestroy(&Q); CHKERRQ(ierr); 1900ccaff030SJeremy L Thompson ierr = VecDestroy(&user->M); CHKERRQ(ierr); 1901ccaff030SJeremy L Thompson ierr = MatDestroy(&interpviz); CHKERRQ(ierr); 1902ccaff030SJeremy L Thompson ierr = DMDestroy(&dmviz); CHKERRQ(ierr); 1903ccaff030SJeremy L Thompson ierr = TSDestroy(&ts); CHKERRQ(ierr); 1904ccaff030SJeremy L Thompson ierr = DMDestroy(&dm); CHKERRQ(ierr); 1905ccaff030SJeremy L Thompson ierr = PetscFree(units); CHKERRQ(ierr); 1906ccaff030SJeremy L Thompson ierr = PetscFree(user); CHKERRQ(ierr); 1907ccaff030SJeremy L Thompson return PetscFinalize(); 1908ccaff030SJeremy L Thompson } 1909