1cb25d741SMark Adams #include <../src/mat/impls/aij/seq/aij.h> 2e0eea495SMark #include <petsc/private/dmpleximpl.h> /*I "petscdmplex.h" I*/ 3e0eea495SMark #include <petsclandau.h> /*I "petsclandau.h" I*/ 4e0eea495SMark #include <petscts.h> 5e0eea495SMark #include <petscdmforest.h> 68a6f2e61SMark Adams #include <petscdmcomposite.h> 78a6f2e61SMark Adams 8e0eea495SMark /* Landau collision operator */ 9cefb98e8SMark Adams 10cefb98e8SMark Adams /* relativistic terms */ 11cefb98e8SMark Adams #if defined(PETSC_USE_REAL_SINGLE) 128a6f2e61SMark Adams #define SPEED_OF_LIGHT 2.99792458e8F 13cefb98e8SMark Adams #define C_0(v0) (SPEED_OF_LIGHT/v0) /* needed for relativistic tensor on all architectures */ 14cefb98e8SMark Adams #else 158a6f2e61SMark Adams #define SPEED_OF_LIGHT 2.99792458e8 16cefb98e8SMark Adams #define C_0(v0) (SPEED_OF_LIGHT/v0) /* needed for relativistic tensor on all architectures */ 17cefb98e8SMark Adams #endif 18cefb98e8SMark Adams 19e0eea495SMark #define PETSC_THREAD_SYNC 2052cdd6eaSMark #include "land_tensors.h" 21e0eea495SMark 228fdabdddSMark Adams #if defined(PETSC_HAVE_OPENMP) 238fdabdddSMark Adams #include <omp.h> 248fdabdddSMark Adams #endif 258fdabdddSMark Adams 26a587d139SMark /* vector padding not supported */ 27e0eea495SMark #define LANDAU_VL 1 2852cdd6eaSMark 29cb25d741SMark Adams static PetscErrorCode LandauMatMult(Mat A, Vec x, Vec y) 30cb25d741SMark Adams { 31cb25d741SMark Adams PetscErrorCode ierr; 32cb25d741SMark Adams LandauCtx *ctx; 33cb25d741SMark Adams PetscContainer container; 34cb25d741SMark Adams 35cb25d741SMark Adams PetscFunctionBegin; 36cb25d741SMark Adams ierr = PetscObjectQuery((PetscObject) A, "LandauCtx", (PetscObject *) &container);CHKERRQ(ierr); 37cb25d741SMark Adams if (container) { 38cb25d741SMark Adams ierr = PetscContainerGetPointer(container, (void **) &ctx);CHKERRQ(ierr); 39cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,x,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 40cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,x,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 41cb25d741SMark Adams ierr = (*ctx->seqaij_mult)(A,ctx->work_vec,y);CHKERRQ(ierr); 42cb25d741SMark Adams ierr = VecCopy(y, ctx->work_vec);CHKERRQ(ierr); 43cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,ctx->work_vec,y,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 44cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,ctx->work_vec,y,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 45cb25d741SMark Adams PetscFunctionReturn(0); 46cb25d741SMark Adams } 47cb25d741SMark Adams ierr = MatMult(A,x,y);CHKERRQ(ierr); 48cb25d741SMark Adams PetscFunctionReturn(0); 49cb25d741SMark Adams } 50cb25d741SMark Adams 51cb25d741SMark Adams // Computes v3 = v2 + A * v1. 52cb25d741SMark Adams static PetscErrorCode LandauMatMultAdd(Mat A,Vec v1,Vec v2,Vec v3) 53cb25d741SMark Adams { 54cb25d741SMark Adams PetscErrorCode ierr; 55cb25d741SMark Adams 56cb25d741SMark Adams PetscFunctionBegin; 57cb25d741SMark Adams SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "?????"); 58cb25d741SMark Adams ierr = LandauMatMult(A,v1,v3);CHKERRQ(ierr); 59cb25d741SMark Adams ierr = VecAYPX(v3,1,v2);CHKERRQ(ierr); 60cb25d741SMark Adams PetscFunctionReturn(0); 61cb25d741SMark Adams } 62cb25d741SMark Adams 63cb25d741SMark Adams static PetscErrorCode LandauMatMultTranspose(Mat A, Vec x, Vec y) 64cb25d741SMark Adams { 65cb25d741SMark Adams PetscErrorCode ierr; 66cb25d741SMark Adams LandauCtx *ctx; 67cb25d741SMark Adams PetscContainer container; 68cb25d741SMark Adams 69cb25d741SMark Adams PetscFunctionBegin; 70cb25d741SMark Adams ierr = PetscObjectQuery((PetscObject) A, "LandauCtx", (PetscObject *) &container);CHKERRQ(ierr); 71cb25d741SMark Adams if (container) { 72cb25d741SMark Adams ierr = PetscContainerGetPointer(container, (void **) &ctx);CHKERRQ(ierr); 73cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,x,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 74cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,x,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 75cb25d741SMark Adams ierr = (*ctx->seqaij_multtranspose)(A,ctx->work_vec,y);CHKERRQ(ierr); 76cb25d741SMark Adams ierr = VecCopy(y, ctx->work_vec);CHKERRQ(ierr); 77cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,ctx->work_vec,y,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 78cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,ctx->work_vec,y,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 79cb25d741SMark Adams PetscFunctionReturn(0); 80cb25d741SMark Adams } 81cb25d741SMark Adams ierr = MatMultTranspose(A,x,y);CHKERRQ(ierr); 82cb25d741SMark Adams PetscFunctionReturn(0); 83cb25d741SMark Adams } 84cb25d741SMark Adams 85cb25d741SMark Adams static PetscErrorCode LandauMatGetDiagonal(Mat A,Vec x) 86cb25d741SMark Adams { 87cb25d741SMark Adams PetscErrorCode ierr; 88cb25d741SMark Adams LandauCtx *ctx; 89cb25d741SMark Adams PetscContainer container; 90cb25d741SMark Adams 91cb25d741SMark Adams PetscFunctionBegin; 92cb25d741SMark Adams ierr = PetscObjectQuery((PetscObject) A, "LandauCtx", (PetscObject *) &container);CHKERRQ(ierr); 93cb25d741SMark Adams if (container) { 94cb25d741SMark Adams ierr = PetscContainerGetPointer(container, (void **) &ctx);CHKERRQ(ierr); 95cb25d741SMark Adams ierr = (*ctx->seqaij_getdiagonal)(A,ctx->work_vec);CHKERRQ(ierr); 96cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,ctx->work_vec,x,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 97cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,ctx->work_vec,x,INSERT_VALUES,SCATTER_REVERSE);CHKERRQ(ierr); 98cb25d741SMark Adams PetscFunctionReturn(0); 99cb25d741SMark Adams } 100cb25d741SMark Adams ierr = MatGetDiagonal(A, x);CHKERRQ(ierr); 101cb25d741SMark Adams PetscFunctionReturn(0); 102cb25d741SMark Adams } 103cb25d741SMark Adams 104e8d2b73aSMark Adams static PetscErrorCode LandauGPUMapsDestroy(void *ptr) 105a587d139SMark { 106a587d139SMark P4estVertexMaps *maps = (P4estVertexMaps*)ptr; 107a587d139SMark PetscErrorCode ierr; 108a587d139SMark PetscFunctionBegin; 1098a6f2e61SMark Adams // free device data 1108a6f2e61SMark Adams if (maps[0].deviceType != LANDAU_CPU) { 111a587d139SMark #if defined(PETSC_HAVE_KOKKOS_KERNELS) 1128a6f2e61SMark Adams if (maps[0].deviceType == LANDAU_KOKKOS) { 1138a6f2e61SMark Adams ierr = LandauKokkosDestroyMatMaps(maps, maps[0].numgrids);CHKERRQ(ierr); // imples Kokkos does 114a587d139SMark } // else could be CUDA 115a587d139SMark #elif defined(PETSC_HAVE_CUDA) 1168a6f2e61SMark Adams if (maps[0].deviceType == LANDAU_CUDA) { 1178a6f2e61SMark Adams ierr = LandauCUDADestroyMatMaps(maps, maps[0].numgrids);CHKERRQ(ierr); 118d618d24fSMark Adams } else SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "maps->deviceType %" PetscInt_FMT " ?????",maps->deviceType); 119a587d139SMark #endif 120a587d139SMark } 1218a6f2e61SMark Adams // free host data 1228a6f2e61SMark Adams for (PetscInt grid=0 ; grid < maps[0].numgrids ; grid++) { 1238a6f2e61SMark Adams ierr = PetscFree(maps[grid].c_maps);CHKERRQ(ierr); 1248a6f2e61SMark Adams ierr = PetscFree(maps[grid].gIdx);CHKERRQ(ierr); 1258a6f2e61SMark Adams } 126a587d139SMark ierr = PetscFree(maps);CHKERRQ(ierr); 1278a6f2e61SMark Adams 128a587d139SMark PetscFunctionReturn(0); 129a587d139SMark } 130cefb98e8SMark Adams static PetscErrorCode energy_f(PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf_dummy, PetscScalar *u, void *actx) 131cefb98e8SMark Adams { 132cefb98e8SMark Adams PetscReal v2 = 0; 133cefb98e8SMark Adams PetscFunctionBegin; 134cefb98e8SMark Adams /* compute v^2 / 2 */ 135cefb98e8SMark Adams for (int i = 0; i < dim; ++i) v2 += x[i]*x[i]; 136cefb98e8SMark Adams /* evaluate the Maxwellian */ 137cefb98e8SMark Adams u[0] = v2/2; 138cefb98e8SMark Adams PetscFunctionReturn(0); 139cefb98e8SMark Adams } 140cefb98e8SMark Adams 141cefb98e8SMark Adams /* needs double */ 142cefb98e8SMark Adams static PetscErrorCode gamma_m1_f(PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf_dummy, PetscScalar *u, void *actx) 143cefb98e8SMark Adams { 144cefb98e8SMark Adams PetscReal *c2_0_arr = ((PetscReal*)actx); 145cefb98e8SMark Adams double u2 = 0, c02 = (double)*c2_0_arr, xx; 146cefb98e8SMark Adams 147cefb98e8SMark Adams PetscFunctionBegin; 148cefb98e8SMark Adams /* compute u^2 / 2 */ 149cefb98e8SMark Adams for (int i = 0; i < dim; ++i) u2 += x[i]*x[i]; 150cefb98e8SMark Adams /* gamma - 1 = g_eps, for conditioning and we only take derivatives */ 151cefb98e8SMark Adams xx = u2/c02; 152cefb98e8SMark Adams #if defined(PETSC_USE_DEBUG) 153cefb98e8SMark Adams u[0] = PetscSqrtReal(1. + xx); 154cefb98e8SMark Adams #else 155cefb98e8SMark Adams u[0] = xx/(PetscSqrtReal(1. + xx) + 1.) - 1.; // better conditioned. -1 might help condition and only used for derivative 156cefb98e8SMark Adams #endif 157cefb98e8SMark Adams PetscFunctionReturn(0); 158cefb98e8SMark Adams } 159e8d2b73aSMark Adams 160e0eea495SMark /* 161e0eea495SMark LandauFormJacobian_Internal - Evaluates Jacobian matrix. 162e0eea495SMark 163e0eea495SMark Input Parameters: 164e0eea495SMark . globX - input vector 165e0eea495SMark . actx - optional user-defined context 166e0eea495SMark . dim - dimension 167e0eea495SMark 168e0eea495SMark Output Parameters: 169e0eea495SMark . J0acP - Jacobian matrix filled, not created 170e0eea495SMark */ 171930e68a5SMark Adams static PetscErrorCode LandauFormJacobian_Internal(Vec a_X, Mat JacP, const PetscInt dim, PetscReal shift, void *a_ctx) 172e0eea495SMark { 173e0eea495SMark LandauCtx *ctx = (LandauCtx*)a_ctx; 174e0eea495SMark PetscErrorCode ierr; 175a82411e9SMark Adams PetscInt numCells[LANDAU_MAX_GRIDS],Nq,Nb; 176e0eea495SMark PetscQuadrature quad; 177a82411e9SMark Adams PetscReal Eq_m[LANDAU_MAX_SPECIES]; // could be static data w/o quench (ex2) 1788a6f2e61SMark Adams PetscScalar *cellClosure=NULL; 179af0767daSMark Adams const PetscScalar *xdata=NULL; 1808a6f2e61SMark Adams PetscDS prob; 181a587d139SMark PetscContainer container; 1828a6f2e61SMark Adams P4estVertexMaps *maps; 1838fdabdddSMark Adams Mat subJ[LANDAU_MAX_GRIDS*LANDAU_MAX_BATCH_SZ]; 184e0eea495SMark 185e0eea495SMark PetscFunctionBegin; 186e0eea495SMark PetscValidHeaderSpecific(a_X,VEC_CLASSID,1); 187e0eea495SMark PetscValidHeaderSpecific(JacP,MAT_CLASSID,2); 188064a246eSJacob Faibussowitsch PetscValidPointer(ctx,5); 189a82411e9SMark Adams /* check for matrix container for GPU assembly. Support CPU assembly for debugging */ 1902c71b3e2SJacob Faibussowitsch PetscCheckFalse(ctx->plex[0] == NULL,ctx->comm,PETSC_ERR_ARG_WRONG,"Plex not created"); 191930e68a5SMark Adams ierr = PetscLogEventBegin(ctx->events[10],0,0,0,0);CHKERRQ(ierr); 1928a6f2e61SMark Adams ierr = DMGetDS(ctx->plex[0], &prob);CHKERRQ(ierr); // same DS for all grids 193a587d139SMark ierr = PetscObjectQuery((PetscObject) JacP, "assembly_maps", (PetscObject *) &container);CHKERRQ(ierr); 1948a6f2e61SMark Adams if (container) { 1952c71b3e2SJacob Faibussowitsch PetscCheck(ctx->gpu_assembly,ctx->comm,PETSC_ERR_ARG_WRONG,"maps but no GPU assembly"); 196a587d139SMark ierr = PetscContainerGetPointer(container, (void **) &maps);CHKERRQ(ierr); 1972c71b3e2SJacob Faibussowitsch PetscCheckFalse(!maps,ctx->comm,PETSC_ERR_ARG_WRONG,"empty GPU matrix container"); 1988fdabdddSMark Adams for (PetscInt i=0;i<ctx->num_grids*ctx->batch_sz;i++) subJ[i] = NULL; 1998a6f2e61SMark Adams } else { 2002c71b3e2SJacob Faibussowitsch PetscCheck(!ctx->gpu_assembly,ctx->comm,PETSC_ERR_ARG_WRONG,"No maps but GPU assembly"); 2018fdabdddSMark Adams for (PetscInt tid=0 ; tid<ctx->batch_sz ; tid++) { 2028a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 2038fdabdddSMark Adams ierr = DMCreateMatrix(ctx->plex[grid], &subJ[ LAND_PACK_IDX(tid,grid) ]);CHKERRQ(ierr); 2048fdabdddSMark Adams } 205a587d139SMark } 2068a6f2e61SMark Adams maps = NULL; 20754545eeeSMark Adams } 208a82411e9SMark Adams // get dynamic data (Eq is odd, for quench and Spitzer test) for CPU assembly and raw data for Jacobian GPU assembly. Get host numCells[], Nq (yuck) 209e0eea495SMark ierr = PetscFEGetQuadrature(ctx->fe[0], &quad);CHKERRQ(ierr); 210a82411e9SMark Adams ierr = PetscQuadratureGetData(quad, NULL, NULL, &Nq, NULL, NULL);CHKERRQ(ierr); Nb = Nq; 211d618d24fSMark Adams PetscCheckFalse(Nq >LANDAU_MAX_NQ,ctx->comm,PETSC_ERR_ARG_WRONG,"Order too high. Nq = %" PetscInt_FMT " > LANDAU_MAX_NQ (%" PetscInt_FMT ")",Nq,LANDAU_MAX_NQ); 212a82411e9SMark Adams // get metadata for collecting dynamic data 2138a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 2148a6f2e61SMark Adams PetscInt cStart, cEnd; 2152c71b3e2SJacob Faibussowitsch PetscCheckFalse(ctx->plex[grid] == NULL,ctx->comm,PETSC_ERR_ARG_WRONG,"Plex not created"); 2168a6f2e61SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, &cEnd);CHKERRQ(ierr); 2178a6f2e61SMark Adams numCells[grid] = cEnd - cStart; // grids can have different topology 218930e68a5SMark Adams } 2198a6f2e61SMark Adams ierr = PetscLogEventEnd(ctx->events[10],0,0,0,0);CHKERRQ(ierr); 2208fdabdddSMark Adams if (shift==0) { /* create dynamic point data: f_alpha for closure of each cell (cellClosure[nbatch,ngrids,ncells[g],f[Nb,ns[g]]]) or xdata */ 2218a6f2e61SMark Adams DM pack; 2228a6f2e61SMark Adams ierr = VecGetDM(a_X, &pack);CHKERRQ(ierr); 2232c71b3e2SJacob Faibussowitsch PetscCheckFalse(!pack,PETSC_COMM_SELF, PETSC_ERR_PLIB, "pack has no DM"); 224e8d2b73aSMark Adams ierr = PetscLogEventBegin(ctx->events[1],0,0,0,0);CHKERRQ(ierr); 225e8d2b73aSMark Adams ierr = MatZeroEntries(JacP);CHKERRQ(ierr); 226365b711fSMark Adams for (PetscInt fieldA=0;fieldA<ctx->num_species;fieldA++) { 227e8d2b73aSMark Adams Eq_m[fieldA] = ctx->Ez * ctx->t_0 * ctx->charges[fieldA] / (ctx->v_0 * ctx->masses[fieldA]); /* normalize dimensionless */ 228e8d2b73aSMark Adams if (dim==2) Eq_m[fieldA] *= 2 * PETSC_PI; /* add the 2pi term that is not in Landau */ 229e8d2b73aSMark Adams } 230a82411e9SMark Adams if (!ctx->gpu_assembly) { 231f37ccb5fSMark Adams Vec *locXArray,*globXArray; 2328a6f2e61SMark Adams PetscScalar *cellClosure_it; 233a82411e9SMark Adams PetscInt cellClosure_sz=0,nDMs,Nf[LANDAU_MAX_GRIDS]; 234a82411e9SMark Adams PetscSection section[LANDAU_MAX_GRIDS],globsection[LANDAU_MAX_GRIDS]; 235a82411e9SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 236a82411e9SMark Adams ierr = DMGetLocalSection(ctx->plex[grid], §ion[grid]);CHKERRQ(ierr); 237a82411e9SMark Adams ierr = DMGetGlobalSection(ctx->plex[grid], &globsection[grid]);CHKERRQ(ierr); 238a82411e9SMark Adams ierr = PetscSectionGetNumFields(section[grid], &Nf[grid]);CHKERRQ(ierr); 239a82411e9SMark Adams } 2408a6f2e61SMark Adams /* count cellClosure size */ 241f37ccb5fSMark Adams ierr = DMCompositeGetNumberDM(pack,&nDMs);CHKERRQ(ierr); 2428a6f2e61SMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) cellClosure_sz += Nb*Nf[grid]*numCells[grid]; 2438fdabdddSMark Adams ierr = PetscMalloc1(cellClosure_sz*ctx->batch_sz,&cellClosure);CHKERRQ(ierr); 2448a6f2e61SMark Adams cellClosure_it = cellClosure; 245f37ccb5fSMark Adams ierr = PetscMalloc(sizeof(*locXArray)*nDMs, &locXArray);CHKERRQ(ierr); 246f37ccb5fSMark Adams ierr = PetscMalloc(sizeof(*globXArray)*nDMs, &globXArray);CHKERRQ(ierr); 247f37ccb5fSMark Adams ierr = DMCompositeGetLocalAccessArray(pack, a_X, nDMs, NULL, locXArray);CHKERRQ(ierr); 248f37ccb5fSMark Adams ierr = DMCompositeGetAccessArray(pack, a_X, nDMs, NULL, globXArray);CHKERRQ(ierr); 2498fdabdddSMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { // OpenMP (once) 2508a6f2e61SMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 2518fdabdddSMark Adams Vec locX = locXArray[ LAND_PACK_IDX(b_id,grid) ], globX = globXArray[ LAND_PACK_IDX(b_id,grid) ], locX2; 2528a6f2e61SMark Adams PetscInt cStart, cEnd, ei; 2538a6f2e61SMark Adams ierr = VecDuplicate(locX,&locX2);CHKERRQ(ierr); 2548a6f2e61SMark Adams ierr = DMGlobalToLocalBegin(ctx->plex[grid], globX, INSERT_VALUES, locX2);CHKERRQ(ierr); 2558a6f2e61SMark Adams ierr = DMGlobalToLocalEnd (ctx->plex[grid], globX, INSERT_VALUES, locX2);CHKERRQ(ierr); 2568a6f2e61SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, &cEnd);CHKERRQ(ierr); 2578a6f2e61SMark Adams for (ei = cStart ; ei < cEnd; ++ei) { 258e8d2b73aSMark Adams PetscScalar *coef = NULL; 2598a6f2e61SMark Adams ierr = DMPlexVecGetClosure(ctx->plex[grid], section[grid], locX2, ei, NULL, &coef);CHKERRQ(ierr); 2608a6f2e61SMark Adams ierr = PetscMemcpy(cellClosure_it,coef,Nb*Nf[grid]*sizeof(*cellClosure_it));CHKERRQ(ierr); /* change if LandauIPReal != PetscScalar */ 2618a6f2e61SMark Adams ierr = DMPlexVecRestoreClosure(ctx->plex[grid], section[grid], locX2, ei, NULL, &coef);CHKERRQ(ierr); 2628a6f2e61SMark Adams cellClosure_it += Nb*Nf[grid]; 2638a6f2e61SMark Adams } 2648a6f2e61SMark Adams ierr = VecDestroy(&locX2);CHKERRQ(ierr); 2658a6f2e61SMark Adams } 2668fdabdddSMark Adams } 267d618d24fSMark Adams PetscCheck(cellClosure_it-cellClosure == cellClosure_sz*ctx->batch_sz,PETSC_COMM_SELF, PETSC_ERR_PLIB, "iteration wrong %" PetscInt_FMT " != cellClosure_sz = %" PetscInt_FMT,cellClosure_it-cellClosure,cellClosure_sz*ctx->batch_sz); 268f37ccb5fSMark Adams ierr = DMCompositeRestoreLocalAccessArray(pack, a_X, nDMs, NULL, locXArray);CHKERRQ(ierr); 269f37ccb5fSMark Adams ierr = DMCompositeRestoreAccessArray(pack, a_X, nDMs, NULL, globXArray);CHKERRQ(ierr); 270f37ccb5fSMark Adams ierr = PetscFree(locXArray);CHKERRQ(ierr); 271f37ccb5fSMark Adams ierr = PetscFree(globXArray);CHKERRQ(ierr); 2728a6f2e61SMark Adams xdata = NULL; 273b8d122ceSMark Adams } else { 274af0767daSMark Adams PetscMemType mtype; 275cb25d741SMark Adams if (ctx->jacobian_field_major_order) { // get data in batch ordering 276cb25d741SMark Adams ierr = VecScatterBegin(ctx->plex_batch,a_X,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 277cb25d741SMark Adams ierr = VecScatterEnd(ctx->plex_batch,a_X,ctx->work_vec,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr); 278cb25d741SMark Adams ierr = VecGetArrayReadAndMemType(ctx->work_vec,&xdata,&mtype);CHKERRQ(ierr); 279cb25d741SMark Adams } else { 280af0767daSMark Adams ierr = VecGetArrayReadAndMemType(a_X,&xdata,&mtype);CHKERRQ(ierr); 281cb25d741SMark Adams } 2821eec90e4SMark Adams if (mtype!=PETSC_MEMTYPE_HOST && ctx->deviceType == LANDAU_CPU) { 2831eec90e4SMark Adams SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"CPU run with device data: use -mat_type aij"); 2841eec90e4SMark Adams } 2858a6f2e61SMark Adams cellClosure = NULL; 286b8d122ceSMark Adams } 287e8d2b73aSMark Adams ierr = PetscLogEventEnd(ctx->events[1],0,0,0,0);CHKERRQ(ierr); 2888a6f2e61SMark Adams } else xdata = cellClosure = NULL; 289f37ccb5fSMark Adams 290e8d2b73aSMark Adams /* do it */ 291e8d2b73aSMark Adams if (ctx->deviceType == LANDAU_CUDA || ctx->deviceType == LANDAU_KOKKOS) { 292e8d2b73aSMark Adams if (ctx->deviceType == LANDAU_CUDA) { 293e8d2b73aSMark Adams #if defined(PETSC_HAVE_CUDA) 294d2319daeSMark Adams ierr = LandauCUDAJacobian(ctx->plex,Nq,ctx->batch_sz,ctx->num_grids,numCells,Eq_m,cellClosure,xdata,&ctx->SData_d,shift,ctx->events,ctx->mat_offset, ctx->species_offset, subJ, JacP);CHKERRQ(ierr); 295e8d2b73aSMark Adams #else 29698921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","cuda"); 297e8d2b73aSMark Adams #endif 298e8d2b73aSMark Adams } else if (ctx->deviceType == LANDAU_KOKKOS) { 2998a6f2e61SMark Adams #if defined(PETSC_HAVE_KOKKOS_KERNELS) 300d2319daeSMark Adams ierr = LandauKokkosJacobian(ctx->plex,Nq,ctx->batch_sz,ctx->num_grids,numCells,Eq_m,cellClosure,xdata,&ctx->SData_d,shift,ctx->events,ctx->mat_offset, ctx->species_offset, subJ,JacP);CHKERRQ(ierr); 301e8d2b73aSMark Adams #else 30298921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","kokkos"); 303e8d2b73aSMark Adams #endif 304e8d2b73aSMark Adams } 305e0eea495SMark } else { /* CPU version */ 306a82411e9SMark Adams PetscTabulation *Tf; // used for CPU and print info. Same on all grids and all species 307a82411e9SMark Adams PetscInt ip_offset[LANDAU_MAX_GRIDS+1], ipf_offset[LANDAU_MAX_GRIDS+1], elem_offset[LANDAU_MAX_GRIDS+1],IPf_sz_glb,IPf_sz_tot,num_grids=ctx->num_grids,Nf[LANDAU_MAX_GRIDS]; 3088fdabdddSMark Adams PetscReal *ff, *dudx, *dudy, *dudz, *invJ_a = (PetscReal*)ctx->SData_d.invJ, *xx = (PetscReal*)ctx->SData_d.x, *yy = (PetscReal*)ctx->SData_d.y, *zz = (PetscReal*)ctx->SData_d.z, *ww = (PetscReal*)ctx->SData_d.w; 309e8d2b73aSMark Adams PetscReal Eq_m[LANDAU_MAX_SPECIES], invMass[LANDAU_MAX_SPECIES], nu_alpha[LANDAU_MAX_SPECIES], nu_beta[LANDAU_MAX_SPECIES]; 310a82411e9SMark Adams PetscSection section[LANDAU_MAX_GRIDS],globsection[LANDAU_MAX_GRIDS]; 311bfc784b7SMark Adams PetscScalar *coo_vals=NULL; 312a82411e9SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 313a82411e9SMark Adams ierr = DMGetLocalSection(ctx->plex[grid], §ion[grid]);CHKERRQ(ierr); 314a82411e9SMark Adams ierr = DMGetGlobalSection(ctx->plex[grid], &globsection[grid]);CHKERRQ(ierr); 315a82411e9SMark Adams ierr = PetscSectionGetNumFields(section[grid], &Nf[grid]);CHKERRQ(ierr); 316a82411e9SMark Adams } 3178fdabdddSMark Adams /* count IPf size, etc */ 318a82411e9SMark Adams ierr = PetscDSGetTabulation(prob, &Tf);CHKERRQ(ierr); // Bf, &Df same for all grids 319a82411e9SMark Adams const PetscReal *const BB = Tf[0]->T[0], * const DD = Tf[0]->T[1]; 3208fdabdddSMark Adams ip_offset[0] = ipf_offset[0] = elem_offset[0] = 0; 3218fdabdddSMark Adams for (PetscInt grid=0 ; grid<num_grids ; grid++) { 3228fdabdddSMark Adams PetscInt nfloc = ctx->species_offset[grid+1] - ctx->species_offset[grid]; 3238fdabdddSMark Adams elem_offset[grid+1] = elem_offset[grid] + numCells[grid]; 3248fdabdddSMark Adams ip_offset[grid+1] = ip_offset[grid] + numCells[grid]*Nq; 3258fdabdddSMark Adams ipf_offset[grid+1] = ipf_offset[grid] + Nq*nfloc*numCells[grid]; 3268fdabdddSMark Adams } 3278fdabdddSMark Adams IPf_sz_glb = ipf_offset[num_grids]; 3288fdabdddSMark Adams IPf_sz_tot = IPf_sz_glb*ctx->batch_sz; 329bfc784b7SMark Adams // prep COO 330aab769cbSMark Adams if (ctx->coo_assembly) { 331bfc784b7SMark Adams ierr = PetscMalloc1(ctx->SData_d.coo_size,&coo_vals);CHKERRQ(ierr); // allocate every time? 332d618d24fSMark Adams ierr = PetscInfo(ctx->plex[0], "COO Allocate %" PetscInt_FMT " values\n",ctx->SData_d.coo_size);CHKERRQ(ierr); 333bfc784b7SMark Adams } 3348a6f2e61SMark Adams if (shift==0.0) { /* compute dynamic data f and df and init data for Jacobian */ 3358fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 3368fdabdddSMark Adams double starttime, endtime; 3378fdabdddSMark Adams starttime = MPI_Wtime(); 3388fdabdddSMark Adams #endif 339a587d139SMark ierr = PetscLogEventBegin(ctx->events[8],0,0,0,0);CHKERRQ(ierr); 340365b711fSMark Adams for (PetscInt fieldA=0;fieldA<ctx->num_species;fieldA++) { 341a82411e9SMark Adams invMass[fieldA] = ctx->m_0/ctx->masses[fieldA]; 342e8d2b73aSMark Adams Eq_m[fieldA] = ctx->Ez * ctx->t_0 * ctx->charges[fieldA] / (ctx->v_0 * ctx->masses[fieldA]); /* normalize dimensionless */ 343e8d2b73aSMark Adams if (dim==2) Eq_m[fieldA] *= 2 * PETSC_PI; /* add the 2pi term that is not in Landau */ 344a82411e9SMark Adams nu_alpha[fieldA] = PetscSqr(ctx->charges[fieldA]/ctx->m_0)*ctx->m_0/ctx->masses[fieldA]; 345e8d2b73aSMark Adams nu_beta[fieldA] = PetscSqr(ctx->charges[fieldA]/ctx->epsilon0)*ctx->lnLam / (8*PETSC_PI) * ctx->t_0*ctx->n_0/PetscPowReal(ctx->v_0,3); 346e8d2b73aSMark Adams } 3478fdabdddSMark Adams ierr = PetscMalloc4(IPf_sz_tot, &ff, IPf_sz_tot, &dudx, IPf_sz_tot, &dudy, dim==3 ? IPf_sz_tot : 0, &dudz);CHKERRQ(ierr); 3488fdabdddSMark Adams // F df/dx 3498fdabdddSMark Adams for (PetscInt tid = 0 ; tid < ctx->batch_sz*elem_offset[num_grids] ; tid++) { // for each element 3508fdabdddSMark Adams const PetscInt b_Nelem = elem_offset[num_grids], b_elem_idx = tid%b_Nelem, b_id = tid/b_Nelem; // b_id == OMP thd_id in batch 3518fdabdddSMark Adams // find my grid: 3528fdabdddSMark Adams PetscInt grid = 0; 3538fdabdddSMark Adams while (b_elem_idx >= elem_offset[grid+1]) grid++; // yuck search for grid 3548fdabdddSMark Adams { 3558fdabdddSMark Adams const PetscInt loc_nip = numCells[grid]*Nq, loc_Nf = ctx->species_offset[grid+1] - ctx->species_offset[grid], loc_elem = b_elem_idx - elem_offset[grid]; 3568fdabdddSMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); //b_id*b_N + ctx->mat_offset[grid]; 3578fdabdddSMark Adams PetscScalar *coef, coef_buff[LANDAU_MAX_SPECIES*LANDAU_MAX_NQ]; 3588fdabdddSMark Adams PetscReal *invJe = &invJ_a[(ip_offset[grid] + loc_elem*Nq)*dim*dim]; // ingJ is static data on batch 0 3598a6f2e61SMark Adams PetscInt b,f,q; 3608a6f2e61SMark Adams if (cellClosure) { 3618fdabdddSMark Adams coef = &cellClosure[b_id*IPf_sz_glb + ipf_offset[grid] + loc_elem*Nb*loc_Nf]; // this is const 362b8d122ceSMark Adams } else { 363b8d122ceSMark Adams coef = coef_buff; 3648fdabdddSMark Adams for (f = 0; f < loc_Nf; ++f) { 3658fdabdddSMark Adams LandauIdx *const Idxs = &maps[grid].gIdx[loc_elem][f][0]; 366b8d122ceSMark Adams for (b = 0; b < Nb; ++b) { 3678a6f2e61SMark Adams PetscInt idx = Idxs[b]; 368b8d122ceSMark Adams if (idx >= 0) { 3698a6f2e61SMark Adams coef[f*Nb+b] = xdata[idx+moffset]; 370b8d122ceSMark Adams } else { 371b8d122ceSMark Adams idx = -idx - 1; 372b8d122ceSMark Adams coef[f*Nb+b] = 0; 3738a6f2e61SMark Adams for (q = 0; q < maps[grid].num_face; q++) { 3748a6f2e61SMark Adams PetscInt id = maps[grid].c_maps[idx][q].gid; 3758a6f2e61SMark Adams PetscScalar scale = maps[grid].c_maps[idx][q].scale; 3768a6f2e61SMark Adams coef[f*Nb+b] += scale*xdata[id+moffset]; 377b8d122ceSMark Adams } 378b8d122ceSMark Adams } 379b8d122ceSMark Adams } 380b8d122ceSMark Adams } 381b8d122ceSMark Adams } 382a587d139SMark /* get f and df */ 3838fdabdddSMark Adams for (PetscInt qi = 0; qi < Nq; qi++) { 3848fdabdddSMark Adams const PetscReal *invJ = &invJe[qi*dim*dim]; 385a587d139SMark const PetscReal *Bq = &BB[qi*Nb]; 386a587d139SMark const PetscReal *Dq = &DD[qi*Nb*dim]; 3878fdabdddSMark Adams PetscReal u_x[LANDAU_DIM]; 388a587d139SMark /* get f & df */ 3898fdabdddSMark Adams for (f = 0; f < loc_Nf; ++f) { 3908fdabdddSMark Adams const PetscInt idx = b_id*IPf_sz_glb + ipf_offset[grid] + f*loc_nip + loc_elem*Nq + qi; 391a587d139SMark PetscInt b, e; 392e8d2b73aSMark Adams PetscReal refSpaceDer[LANDAU_DIM]; 3938a6f2e61SMark Adams ff[idx] = 0.0; 394365b711fSMark Adams for (int d = 0; d < LANDAU_DIM; ++d) refSpaceDer[d] = 0.0; 395a587d139SMark for (b = 0; b < Nb; ++b) { 396a587d139SMark const PetscInt cidx = b; 3978a6f2e61SMark Adams ff[idx] += Bq[cidx]*PetscRealPart(coef[f*Nb+cidx]); 398365b711fSMark Adams for (int d = 0; d < dim; ++d) { 3998fdabdddSMark Adams refSpaceDer[d] += Dq[cidx*dim+d]*PetscRealPart(coef[f*Nb+cidx]); 400a587d139SMark } 401a587d139SMark } 402a82411e9SMark Adams for (int d = 0; d < LANDAU_DIM; ++d) { 403a82411e9SMark Adams for (e = 0, u_x[d] = 0.0; e < LANDAU_DIM; ++e) { 4048fdabdddSMark Adams u_x[d] += invJ[e*dim+d]*refSpaceDer[e]; 405a587d139SMark } 4068fdabdddSMark Adams } 4078fdabdddSMark Adams dudx[idx] = u_x[0]; 4088fdabdddSMark Adams dudy[idx] = u_x[1]; 409a587d139SMark #if LANDAU_DIM==3 4108fdabdddSMark Adams dudz[idx] = u_x[2]; 411a587d139SMark #endif 412a587d139SMark } 4138a6f2e61SMark Adams } // q 4148a6f2e61SMark Adams } // grid 4158fdabdddSMark Adams } // grid*batch 416a587d139SMark ierr = PetscLogEventEnd(ctx->events[8],0,0,0,0);CHKERRQ(ierr); 4178fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 4188fdabdddSMark Adams endtime = MPI_Wtime(); 4198fdabdddSMark Adams if (ctx->stage) ctx->times[LANDAU_F_DF] += (endtime - starttime); 4208fdabdddSMark Adams #endif 4218a6f2e61SMark Adams } // Jacobian setup 422bfc784b7SMark Adams // assemble Jacobian (or mass) 4238fdabdddSMark Adams for (PetscInt tid = 0 ; tid < ctx->batch_sz*elem_offset[num_grids] ; tid++) { // for each element 4248fdabdddSMark Adams const PetscInt b_Nelem = elem_offset[num_grids]; 425bfc784b7SMark Adams const PetscInt glb_elem_idx = tid%b_Nelem, b_id = tid/b_Nelem; 4268fdabdddSMark Adams PetscInt grid = 0; 4278fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 4288fdabdddSMark Adams double starttime, endtime; 4298fdabdddSMark Adams starttime = MPI_Wtime(); 4308fdabdddSMark Adams #endif 431bfc784b7SMark Adams while (glb_elem_idx >= elem_offset[grid+1]) grid++; 4328fdabdddSMark Adams { 433bfc784b7SMark Adams const PetscInt loc_Nf = ctx->species_offset[grid+1] - ctx->species_offset[grid], loc_elem = glb_elem_idx - elem_offset[grid]; 434bfc784b7SMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset), totDim = loc_Nf*Nq, elemMatSize = totDim*totDim; 4358a6f2e61SMark Adams PetscScalar *elemMat; 4368fdabdddSMark Adams const PetscReal *invJe = &invJ_a[(ip_offset[grid] + loc_elem*Nq)*dim*dim]; 4378a6f2e61SMark Adams ierr = PetscMalloc1(elemMatSize, &elemMat);CHKERRQ(ierr); 4388a6f2e61SMark Adams ierr = PetscMemzero(elemMat, elemMatSize*sizeof(*elemMat));CHKERRQ(ierr); 439e607c864SMark Adams if (shift==0.0) { // Jacobian 4408a6f2e61SMark Adams ierr = PetscLogEventBegin(ctx->events[4],0,0,0,0);CHKERRQ(ierr); 441bfc784b7SMark Adams } else { // mass 442e607c864SMark Adams ierr = PetscLogEventBegin(ctx->events[16],0,0,0,0);CHKERRQ(ierr); 443e607c864SMark Adams } 4448fdabdddSMark Adams for (PetscInt qj = 0; qj < Nq; ++qj) { 4458fdabdddSMark Adams const PetscInt jpidx_glb = ip_offset[grid] + qj + loc_elem * Nq; 4468a6f2e61SMark Adams PetscReal g0[LANDAU_MAX_SPECIES], g2[LANDAU_MAX_SPECIES][LANDAU_DIM], g3[LANDAU_MAX_SPECIES][LANDAU_DIM][LANDAU_DIM]; // could make a LANDAU_MAX_SPECIES_GRID ~ number of ions - 1 4478a6f2e61SMark Adams PetscInt d,d2,dp,d3,IPf_idx; 4488fdabdddSMark Adams if (shift==0.0) { // Jacobian 4498fdabdddSMark Adams const PetscReal * const invJj = &invJe[qj*dim*dim]; 450930e68a5SMark Adams PetscReal gg2[LANDAU_MAX_SPECIES][LANDAU_DIM],gg3[LANDAU_MAX_SPECIES][LANDAU_DIM][LANDAU_DIM], gg2_temp[LANDAU_DIM], gg3_temp[LANDAU_DIM][LANDAU_DIM]; 4518fdabdddSMark Adams const PetscReal vj[3] = {xx[jpidx_glb], yy[jpidx_glb], zz ? zz[jpidx_glb] : 0}, wj = ww[jpidx_glb]; 45252cdd6eaSMark // create g2 & g3 453a82411e9SMark Adams for (d=0;d<LANDAU_DIM;d++) { // clear accumulation data D & K 45452cdd6eaSMark gg2_temp[d] = 0; 455a82411e9SMark Adams for (d2=0;d2<LANDAU_DIM;d2++) gg3_temp[d][d2] = 0; 45652cdd6eaSMark } 4578a6f2e61SMark Adams /* inner beta reduction */ 4588a6f2e61SMark Adams IPf_idx = 0; 4598fdabdddSMark Adams for (PetscInt grid_r = 0, f_off = 0, ipidx = 0; grid_r < ctx->num_grids ; grid_r++, f_off = ctx->species_offset[grid_r]) { // IPf_idx += nip_loc_r*Nfloc_r 4608a6f2e61SMark Adams PetscInt nip_loc_r = numCells[grid_r]*Nq, Nfloc_r = Nf[grid_r]; 4618a6f2e61SMark Adams for (PetscInt ei_r = 0, loc_fdf_idx = 0; ei_r < numCells[grid_r]; ++ei_r) { 4628a6f2e61SMark Adams for (PetscInt qi = 0; qi < Nq; qi++, ipidx++, loc_fdf_idx++) { 463e8d2b73aSMark Adams const PetscReal wi = ww[ipidx], x = xx[ipidx], y = yy[ipidx]; 46452cdd6eaSMark PetscReal temp1[3] = {0, 0, 0}, temp2 = 0; 46552cdd6eaSMark #if LANDAU_DIM==2 4668a6f2e61SMark Adams PetscReal Ud[2][2], Uk[2][2], mask = (PetscAbs(vj[0]-x) < 100*PETSC_SQRT_MACHINE_EPSILON && PetscAbs(vj[1]-y) < 100*PETSC_SQRT_MACHINE_EPSILON) ? 0. : 1.; 4678a6f2e61SMark Adams LandauTensor2D(vj, x, y, Ud, Uk, mask); 46852cdd6eaSMark #else 4698a6f2e61SMark Adams PetscReal U[3][3], z = zz[ipidx], mask = (PetscAbs(vj[0]-x) < 100*PETSC_SQRT_MACHINE_EPSILON && PetscAbs(vj[1]-y) < 100*PETSC_SQRT_MACHINE_EPSILON && PetscAbs(vj[2]-z) < 100*PETSC_SQRT_MACHINE_EPSILON) ? 0. : 1.; 470cefb98e8SMark Adams if (ctx->use_relativistic_corrections) { 4718a6f2e61SMark Adams LandauTensor3DRelativistic(vj, x, y, z, U, mask, C_0(ctx->v_0)); 472cefb98e8SMark Adams } else { 4738a6f2e61SMark Adams LandauTensor3D(vj, x, y, z, U, mask); 474cefb98e8SMark Adams } 47552cdd6eaSMark #endif 476365b711fSMark Adams for (int f = 0; f < Nfloc_r ; ++f) { 4778fdabdddSMark Adams const PetscInt idx = b_id*IPf_sz_glb + ipf_offset[grid_r] + f*nip_loc_r + ei_r*Nq + qi; // IPf_idx + f*nip_loc_r + loc_fdf_idx; 4788a6f2e61SMark Adams temp1[0] += dudx[idx]*nu_beta[f+f_off]*invMass[f+f_off]; 4798a6f2e61SMark Adams temp1[1] += dudy[idx]*nu_beta[f+f_off]*invMass[f+f_off]; 48052cdd6eaSMark #if LANDAU_DIM==3 4818a6f2e61SMark Adams temp1[2] += dudz[idx]*nu_beta[f+f_off]*invMass[f+f_off]; 48252cdd6eaSMark #endif 4838a6f2e61SMark Adams temp2 += ff[idx]*nu_beta[f+f_off]; 48452cdd6eaSMark } 48552cdd6eaSMark temp1[0] *= wi; 48652cdd6eaSMark temp1[1] *= wi; 48752cdd6eaSMark #if LANDAU_DIM==3 48852cdd6eaSMark temp1[2] *= wi; 48952cdd6eaSMark #endif 49052cdd6eaSMark temp2 *= wi; 49152cdd6eaSMark #if LANDAU_DIM==2 49252cdd6eaSMark for (d2 = 0; d2 < 2; d2++) { 49352cdd6eaSMark for (d3 = 0; d3 < 2; ++d3) { 49452cdd6eaSMark /* K = U * grad(f): g2=e: i,A */ 49552cdd6eaSMark gg2_temp[d2] += Uk[d2][d3]*temp1[d3]; 49652cdd6eaSMark /* D = -U * (I \kron (fx)): g3=f: i,j,A */ 49752cdd6eaSMark gg3_temp[d2][d3] += Ud[d2][d3]*temp2; 49852cdd6eaSMark } 49952cdd6eaSMark } 50052cdd6eaSMark #else 50152cdd6eaSMark for (d2 = 0; d2 < 3; ++d2) { 50252cdd6eaSMark for (d3 = 0; d3 < 3; ++d3) { 50352cdd6eaSMark /* K = U * grad(f): g2 = e: i,A */ 50452cdd6eaSMark gg2_temp[d2] += U[d2][d3]*temp1[d3]; 50552cdd6eaSMark /* D = -U * (I \kron (fx)): g3 = f: i,j,A */ 50652cdd6eaSMark gg3_temp[d2][d3] += U[d2][d3]*temp2; 50752cdd6eaSMark } 50852cdd6eaSMark } 50952cdd6eaSMark #endif 5108a6f2e61SMark Adams } // qi 5118a6f2e61SMark Adams } // ei_r 5128a6f2e61SMark Adams IPf_idx += nip_loc_r*Nfloc_r; 5138a6f2e61SMark Adams } /* grid_r - IPs */ 514d618d24fSMark Adams PetscCheck(IPf_idx == IPf_sz_glb,PETSC_COMM_SELF, PETSC_ERR_PLIB, "IPf_idx != IPf_sz %" PetscInt_FMT " %" PetscInt_FMT,IPf_idx,IPf_sz_glb); 51552cdd6eaSMark // add alpha and put in gg2/3 5168fdabdddSMark Adams for (PetscInt fieldA = 0, f_off = ctx->species_offset[grid]; fieldA < loc_Nf; ++fieldA) { 51752cdd6eaSMark for (d2 = 0; d2 < dim; d2++) { 5188a6f2e61SMark Adams gg2[fieldA][d2] = gg2_temp[d2]*nu_alpha[fieldA+f_off]; 51952cdd6eaSMark for (d3 = 0; d3 < dim; d3++) { 5208a6f2e61SMark Adams gg3[fieldA][d2][d3] = -gg3_temp[d2][d3]*nu_alpha[fieldA+f_off]*invMass[fieldA+f_off]; 52152cdd6eaSMark } 52252cdd6eaSMark } 52352cdd6eaSMark } 52452cdd6eaSMark /* add electric field term once per IP */ 5258fdabdddSMark Adams for (PetscInt fieldA = 0, f_off = ctx->species_offset[grid] ; fieldA < loc_Nf; ++fieldA) { 5268a6f2e61SMark Adams gg2[fieldA][dim-1] += Eq_m[fieldA+f_off]; 52752cdd6eaSMark } 528930e68a5SMark Adams /* Jacobian transform - g2, g3 */ 5298fdabdddSMark Adams for (PetscInt fieldA = 0; fieldA < loc_Nf; ++fieldA) { 53052cdd6eaSMark for (d = 0; d < dim; ++d) { 53152cdd6eaSMark g2[fieldA][d] = 0.0; 53252cdd6eaSMark for (d2 = 0; d2 < dim; ++d2) { 53352cdd6eaSMark g2[fieldA][d] += invJj[d*dim+d2]*gg2[fieldA][d2]; 53452cdd6eaSMark g3[fieldA][d][d2] = 0.0; 53552cdd6eaSMark for (d3 = 0; d3 < dim; ++d3) { 53652cdd6eaSMark for (dp = 0; dp < dim; ++dp) { 53752cdd6eaSMark g3[fieldA][d][d2] += invJj[d*dim + d3]*gg3[fieldA][d3][dp]*invJj[d2*dim + dp]; 53852cdd6eaSMark } 53952cdd6eaSMark } 54052cdd6eaSMark g3[fieldA][d][d2] *= wj; 54152cdd6eaSMark } 54252cdd6eaSMark g2[fieldA][d] *= wj; 54352cdd6eaSMark } 54452cdd6eaSMark } 545930e68a5SMark Adams } else { // mass 5468fdabdddSMark Adams PetscReal wj = ww[jpidx_glb]; 547930e68a5SMark Adams /* Jacobian transform - g0 */ 5488fdabdddSMark Adams for (PetscInt fieldA = 0; fieldA < loc_Nf ; ++fieldA) { 5498a6f2e61SMark Adams if (dim==2) { 5508a6f2e61SMark Adams g0[fieldA] = wj * shift * 2. * PETSC_PI; // move this to below and remove g0 5518a6f2e61SMark Adams } else { 5528a6f2e61SMark Adams g0[fieldA] = wj * shift; // move this to below and remove g0 5538a6f2e61SMark Adams } 554930e68a5SMark Adams } 555930e68a5SMark Adams } 55652cdd6eaSMark /* FE matrix construction */ 55752cdd6eaSMark { 558a587d139SMark PetscInt fieldA,d,f,d2,g; 55952cdd6eaSMark const PetscReal *BJq = &BB[qj*Nb], *DIq = &DD[qj*Nb*dim]; 56052cdd6eaSMark /* assemble - on the diagonal (I,I) */ 5618fdabdddSMark Adams for (fieldA = 0; fieldA < loc_Nf ; fieldA++) { 562a587d139SMark for (f = 0; f < Nb ; f++) { 56352cdd6eaSMark const PetscInt i = fieldA*Nb + f; /* Element matrix row */ 56452cdd6eaSMark for (g = 0; g < Nb; ++g) { 56552cdd6eaSMark const PetscInt j = fieldA*Nb + g; /* Element matrix column */ 56652cdd6eaSMark const PetscInt fOff = i*totDim + j; 567930e68a5SMark Adams if (shift==0.0) { 56852cdd6eaSMark for (d = 0; d < dim; ++d) { 56952cdd6eaSMark elemMat[fOff] += DIq[f*dim+d]*g2[fieldA][d]*BJq[g]; 57052cdd6eaSMark for (d2 = 0; d2 < dim; ++d2) { 57152cdd6eaSMark elemMat[fOff] += DIq[f*dim + d]*g3[fieldA][d][d2]*DIq[g*dim + d2]; 57252cdd6eaSMark } 57352cdd6eaSMark } 574930e68a5SMark Adams } else { // mass 575930e68a5SMark Adams elemMat[fOff] += BJq[f]*g0[fieldA]*BJq[g]; 576930e68a5SMark Adams } 57752cdd6eaSMark } 57852cdd6eaSMark } 57952cdd6eaSMark } 58052cdd6eaSMark } 581e0eea495SMark } /* qj loop */ 582e607c864SMark Adams if (shift==0.0) { // Jacobian 583c8a6034eSMark ierr = PetscLogEventEnd(ctx->events[4],0,0,0,0);CHKERRQ(ierr); 584e607c864SMark Adams } else { 585e607c864SMark Adams ierr = PetscLogEventEnd(ctx->events[16],0,0,0,0);CHKERRQ(ierr); 586e607c864SMark Adams } 5878fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 5888fdabdddSMark Adams endtime = MPI_Wtime(); 5898fdabdddSMark Adams if (ctx->stage) ctx->times[LANDAU_KERNEL] += (endtime - starttime); 5908fdabdddSMark Adams #endif 591e0eea495SMark /* assemble matrix */ 5928a6f2e61SMark Adams if (!container) { 5938fdabdddSMark Adams PetscInt cStart; 594a82411e9SMark Adams ierr = PetscLogEventBegin(ctx->events[6],0,0,0,0);CHKERRQ(ierr); 5958fdabdddSMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, NULL);CHKERRQ(ierr); 5968fdabdddSMark Adams ierr = DMPlexMatSetClosure(ctx->plex[grid], section[grid], globsection[grid], subJ[ LAND_PACK_IDX(b_id,grid) ], loc_elem + cStart, elemMat, ADD_VALUES);CHKERRQ(ierr); 597a82411e9SMark Adams ierr = PetscLogEventEnd(ctx->events[6],0,0,0,0);CHKERRQ(ierr); 598a587d139SMark } else { // GPU like assembly for debugging 599bfc784b7SMark Adams PetscInt fieldA,q,f,g,d,nr,nc,rows0[LANDAU_MAX_Q_FACE]={0},cols0[LANDAU_MAX_Q_FACE]={0},rows[LANDAU_MAX_Q_FACE],cols[LANDAU_MAX_Q_FACE]; 600b6bace71SJacob Faibussowitsch PetscScalar vals[LANDAU_MAX_Q_FACE*LANDAU_MAX_Q_FACE]={0},row_scale[LANDAU_MAX_Q_FACE]={0},col_scale[LANDAU_MAX_Q_FACE]={0}; 601a587d139SMark /* assemble - from the diagonal (I,I) in this format for DMPlexMatSetClosure */ 6028fdabdddSMark Adams for (fieldA = 0; fieldA < loc_Nf ; fieldA++) { 6038fdabdddSMark Adams LandauIdx *const Idxs = &maps[grid].gIdx[loc_elem][fieldA][0]; 604a587d139SMark for (f = 0; f < Nb ; f++) { 605bfc784b7SMark Adams PetscInt idx = Idxs[f]; 606a587d139SMark if (idx >= 0) { 607a587d139SMark nr = 1; 608a587d139SMark rows0[0] = idx; 609a587d139SMark row_scale[0] = 1.; 610a587d139SMark } else { 611a587d139SMark idx = -idx - 1; 612b2767044SMark Adams for (q = 0, nr = 0; q < maps[grid].num_face; q++, nr++) { 613b2767044SMark Adams if (maps[grid].c_maps[idx][q].gid < 0) break; 6148a6f2e61SMark Adams rows0[q] = maps[grid].c_maps[idx][q].gid; 6158a6f2e61SMark Adams row_scale[q] = maps[grid].c_maps[idx][q].scale; 616a587d139SMark } 617a587d139SMark } 618a587d139SMark for (g = 0; g < Nb; ++g) { 619a587d139SMark idx = Idxs[g]; 620a587d139SMark if (idx >= 0) { 621a587d139SMark nc = 1; 622a587d139SMark cols0[0] = idx; 623a587d139SMark col_scale[0] = 1.; 624a587d139SMark } else { 625a587d139SMark idx = -idx - 1; 6268a6f2e61SMark Adams nc = maps[grid].num_face; 627b2767044SMark Adams for (q = 0, nc = 0; q < maps[grid].num_face; q++, nc++) { 628b2767044SMark Adams if (maps[grid].c_maps[idx][q].gid < 0) break; 6298a6f2e61SMark Adams cols0[q] = maps[grid].c_maps[idx][q].gid; 6308a6f2e61SMark Adams col_scale[q] = maps[grid].c_maps[idx][q].scale; 631a587d139SMark } 632a587d139SMark } 633a587d139SMark const PetscInt i = fieldA*Nb + f; /* Element matrix row */ 634a587d139SMark const PetscInt j = fieldA*Nb + g; /* Element matrix column */ 635a587d139SMark const PetscScalar Aij = elemMat[i*totDim + j]; 636bfc784b7SMark Adams if (coo_vals) { // mirror (i,j) in CreateStaticGPUData 637bfc784b7SMark Adams const int fullNb = ctx->SData_d.coo_elem_fullNb[glb_elem_idx],fullNb2=fullNb*fullNb; 638bfc784b7SMark Adams const int idx0 = b_id*ctx->SData_d.coo_elem_offsets[elem_offset[num_grids]] + ctx->SData_d.coo_elem_offsets[glb_elem_idx] + fieldA*fullNb2 + fullNb * ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f] + nr * ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][g]; 639bfc784b7SMark Adams for (int q = 0, idx2 = idx0; q < nr; q++) { 640bfc784b7SMark Adams for (int d = 0; d < nc; d++, idx2++) { 641bfc784b7SMark Adams coo_vals[idx2] = row_scale[q]*col_scale[d]*Aij; 642bfc784b7SMark Adams } 643bfc784b7SMark Adams } 644bfc784b7SMark Adams } else { 6458a6f2e61SMark Adams for (q = 0; q < nr; q++) rows[q] = rows0[q] + moffset; 6468a6f2e61SMark Adams for (d = 0; d < nc; d++) cols[d] = cols0[d] + moffset; 647a587d139SMark for (q = 0; q < nr; q++) { 648a587d139SMark for (d = 0; d < nc; d++) { 649a587d139SMark vals[q*nc + d] = row_scale[q]*col_scale[d]*Aij; 650a587d139SMark } 651a587d139SMark } 652a587d139SMark ierr = MatSetValues(JacP,nr,rows,nc,cols,vals,ADD_VALUES);CHKERRQ(ierr); 653a587d139SMark } 654a587d139SMark } 655a587d139SMark } 656a587d139SMark } 657bfc784b7SMark Adams } 6588fdabdddSMark Adams if (loc_elem==-1) { 659c8a6034eSMark PetscErrorCode ierr2; 660930e68a5SMark Adams ierr2 = PetscPrintf(ctx->comm,"CPU Element matrix\n");CHKERRQ(ierr2); 661365b711fSMark Adams for (int d = 0; d < totDim; ++d) { 662365b711fSMark Adams for (int f = 0; f < totDim; ++f) {ierr2 = PetscPrintf(ctx->comm," %12.5e", PetscRealPart(elemMat[d*totDim + f]));CHKERRQ(ierr2);} 663930e68a5SMark Adams ierr2 = PetscPrintf(ctx->comm,"\n");CHKERRQ(ierr2); 664e0eea495SMark } 665930e68a5SMark Adams exit(12); 666e0eea495SMark } 667930e68a5SMark Adams ierr = PetscFree(elemMat);CHKERRQ(ierr); 6688fdabdddSMark Adams } /* grid */ 6698fdabdddSMark Adams } /* outer element & batch loop */ 6708fdabdddSMark Adams if (shift==0.0) { // mass 6718fdabdddSMark Adams ierr = PetscFree4(ff, dudx, dudy, dudz);CHKERRQ(ierr); 6728fdabdddSMark Adams } 673bfc784b7SMark Adams if (!container) { // 'CPU' assembly move nest matrix to global JacP 6748fdabdddSMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { // OpenMP 6758fdabdddSMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 6768fdabdddSMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); // b_id*b_N + ctx->mat_offset[grid]; 6778fdabdddSMark Adams PetscInt nloc, nzl, colbuf[1024], row; 6788a6f2e61SMark Adams const PetscInt *cols; 6798a6f2e61SMark Adams const PetscScalar *vals; 6808fdabdddSMark Adams Mat B = subJ[ LAND_PACK_IDX(b_id,grid) ]; 6818a6f2e61SMark Adams ierr = MatAssemblyBegin(B, MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 6828a6f2e61SMark Adams ierr = MatAssemblyEnd(B, MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 6838a6f2e61SMark Adams ierr = MatGetSize(B, &nloc, NULL);CHKERRQ(ierr); 6848a6f2e61SMark Adams for (int i=0 ; i<nloc ; i++) { 6858a6f2e61SMark Adams ierr = MatGetRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 686d618d24fSMark Adams PetscCheck(nzl<=1024,PetscObjectComm((PetscObject) B), PETSC_ERR_PLIB, "Row too big: %" PetscInt_FMT,nzl); 687cb25d741SMark Adams for (int j=0; j<nzl; j++) colbuf[j] = moffset + cols[j]; 688cb25d741SMark Adams row = moffset + i; 6898a6f2e61SMark Adams ierr = MatSetValues(JacP,1,&row,nzl,colbuf,vals,ADD_VALUES);CHKERRQ(ierr); 6908a6f2e61SMark Adams ierr = MatRestoreRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 6918a6f2e61SMark Adams } 6928fdabdddSMark Adams ierr = MatDestroy(&B);CHKERRQ(ierr); 6938a6f2e61SMark Adams } 6948fdabdddSMark Adams } 695930e68a5SMark Adams } 696bfc784b7SMark Adams if (coo_vals) { 697bfc784b7SMark Adams ierr = MatSetValuesCOO(JacP,coo_vals,ADD_VALUES);CHKERRQ(ierr); 698bfc784b7SMark Adams ierr = PetscFree(coo_vals);CHKERRQ(ierr); 699bfc784b7SMark Adams } 700a587d139SMark } /* CPU version */ 701e0eea495SMark ierr = MatAssemblyBegin(JacP, MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 702e0eea495SMark ierr = MatAssemblyEnd(JacP, MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 703e0eea495SMark /* clean up */ 7048a6f2e61SMark Adams if (cellClosure) { 7058a6f2e61SMark Adams ierr = PetscFree(cellClosure);CHKERRQ(ierr); 706930e68a5SMark Adams } 707af0767daSMark Adams if (xdata) { 708af0767daSMark Adams ierr = VecRestoreArrayReadAndMemType(a_X,&xdata);CHKERRQ(ierr); 709b8d122ceSMark Adams } 710e0eea495SMark PetscFunctionReturn(0); 711e0eea495SMark } 712e0eea495SMark 713e0eea495SMark #if defined(LANDAU_ADD_BCS) 714e0eea495SMark static void zero_bc(PetscInt dim, PetscInt Nf, PetscInt NfAux, 715e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 716e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 717e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar uexact[]) 718e0eea495SMark { 719e0eea495SMark uexact[0] = 0; 720e0eea495SMark } 721e0eea495SMark #endif 722e0eea495SMark 723e0eea495SMark #define MATVEC2(__a,__x,__p) {int i,j; for (i=0.; i<2; i++) {__p[i] = 0; for (j=0.; j<2; j++) __p[i] += __a[i][j]*__x[j]; }} 724e0eea495SMark static void CircleInflate(PetscReal r1, PetscReal r2, PetscReal r0, PetscInt num_sections, PetscReal x, PetscReal y, 725e0eea495SMark PetscReal *outX, PetscReal *outY) 726e0eea495SMark { 727e0eea495SMark PetscReal rr = PetscSqrtReal(x*x + y*y), outfact, efact; 728a003a357SMark if (rr < r1 + PETSC_SQRT_MACHINE_EPSILON) { 729e0eea495SMark *outX = x; *outY = y; 730e0eea495SMark } else { 731e0eea495SMark const PetscReal xy[2] = {x,y}, sinphi=y/rr, cosphi=x/rr; 732e0eea495SMark PetscReal cth,sth,xyprime[2],Rth[2][2],rotcos,newrr; 733e0eea495SMark if (num_sections==2) { 734e0eea495SMark rotcos = 0.70710678118654; 735e0eea495SMark outfact = 1.5; efact = 2.5; 736e0eea495SMark /* rotate normalized vector into [-pi/4,pi/4) */ 737e0eea495SMark if (sinphi >= 0.) { /* top cell, -pi/2 */ 738e0eea495SMark cth = 0.707106781186548; sth = -0.707106781186548; 739e0eea495SMark } else { /* bottom cell -pi/8 */ 740e0eea495SMark cth = 0.707106781186548; sth = .707106781186548; 741e0eea495SMark } 742e0eea495SMark } else if (num_sections==3) { 743e0eea495SMark rotcos = 0.86602540378443; 744e0eea495SMark outfact = 1.5; efact = 2.5; 745e0eea495SMark /* rotate normalized vector into [-pi/6,pi/6) */ 746e0eea495SMark if (sinphi >= 0.5) { /* top cell, -pi/3 */ 747e0eea495SMark cth = 0.5; sth = -0.866025403784439; 748e0eea495SMark } else if (sinphi >= -.5) { /* mid cell 0 */ 749e0eea495SMark cth = 1.; sth = .0; 750e0eea495SMark } else { /* bottom cell +pi/3 */ 751e0eea495SMark cth = 0.5; sth = 0.866025403784439; 752e0eea495SMark } 753e0eea495SMark } else if (num_sections==4) { 754e0eea495SMark rotcos = 0.9238795325112; 755e0eea495SMark outfact = 1.5; efact = 3; 756e0eea495SMark /* rotate normalized vector into [-pi/8,pi/8) */ 757e0eea495SMark if (sinphi >= 0.707106781186548) { /* top cell, -3pi/8 */ 758e0eea495SMark cth = 0.38268343236509; sth = -0.923879532511287; 759e0eea495SMark } else if (sinphi >= 0.) { /* mid top cell -pi/8 */ 760e0eea495SMark cth = 0.923879532511287; sth = -.38268343236509; 761e0eea495SMark } else if (sinphi >= -0.707106781186548) { /* mid bottom cell + pi/8 */ 762e0eea495SMark cth = 0.923879532511287; sth = 0.38268343236509; 763e0eea495SMark } else { /* bottom cell + 3pi/8 */ 764e0eea495SMark cth = 0.38268343236509; sth = .923879532511287; 765e0eea495SMark } 766e0eea495SMark } else { 767e0eea495SMark cth = 0.; sth = 0.; rotcos = 0; efact = 0; 768e0eea495SMark } 769e0eea495SMark Rth[0][0] = cth; Rth[0][1] =-sth; 770e0eea495SMark Rth[1][0] = sth; Rth[1][1] = cth; 771e0eea495SMark MATVEC2(Rth,xy,xyprime); 772e0eea495SMark if (num_sections==2) { 773e0eea495SMark newrr = xyprime[0]/rotcos; 774e0eea495SMark } else { 775e0eea495SMark PetscReal newcosphi=xyprime[0]/rr, rin = r1, rout = rr - rin; 776e0eea495SMark PetscReal routmax = r0*rotcos/newcosphi - rin, nroutmax = r0 - rin, routfrac = rout/routmax; 777e0eea495SMark newrr = rin + routfrac*nroutmax; 778e0eea495SMark } 779e0eea495SMark *outX = cosphi*newrr; *outY = sinphi*newrr; 780e0eea495SMark /* grade */ 781e0eea495SMark PetscReal fact,tt,rs,re, rr = PetscSqrtReal(PetscSqr(*outX) + PetscSqr(*outY)); 782e0eea495SMark if (rr > r2) { rs = r2; re = r0; fact = outfact;} /* outer zone */ 783e0eea495SMark else { rs = r1; re = r2; fact = efact;} /* electron zone */ 784e0eea495SMark tt = (rs + PetscPowReal((rr - rs)/(re - rs),fact) * (re-rs)) / rr; 785e0eea495SMark *outX *= tt; 786e0eea495SMark *outY *= tt; 787e0eea495SMark } 788e0eea495SMark } 789e0eea495SMark 790e0eea495SMark static PetscErrorCode GeometryDMLandau(DM base, PetscInt point, PetscInt dim, const PetscReal abc[], PetscReal xyz[], void *a_ctx) 791e0eea495SMark { 792e0eea495SMark LandauCtx *ctx = (LandauCtx*)a_ctx; 793e0eea495SMark PetscReal r = abc[0], z = abc[1]; 794e0eea495SMark if (ctx->inflate) { 795e0eea495SMark PetscReal absR, absZ; 796930e68a5SMark Adams absR = PetscAbs(r); 797930e68a5SMark Adams absZ = PetscAbs(z); 7988a6f2e61SMark Adams CircleInflate(ctx->i_radius[0],ctx->e_radius,ctx->radius[0],ctx->num_sections,absR,absZ,&absR,&absZ); // wrong: how do I know what grid I am on? 799e0eea495SMark r = (r > 0) ? absR : -absR; 800e0eea495SMark z = (z > 0) ? absZ : -absZ; 801e0eea495SMark } 802e0eea495SMark xyz[0] = r; 803e0eea495SMark xyz[1] = z; 804e0eea495SMark if (dim==3) xyz[2] = abc[2]; 805e0eea495SMark 806e0eea495SMark PetscFunctionReturn(0); 807e0eea495SMark } 808e0eea495SMark 8098a6f2e61SMark Adams /* create DMComposite of meshes for each species group */ 810a82411e9SMark Adams static PetscErrorCode LandauDMCreateVMeshes(MPI_Comm comm_self, const PetscInt dim, const char prefix[], LandauCtx *ctx, DM pack) 811e0eea495SMark { 812e0eea495SMark PetscErrorCode ierr; 813e0eea495SMark 814e0eea495SMark PetscFunctionBegin; 815a82411e9SMark Adams { /* p4est, quads */ 816e0eea495SMark /* Create plex mesh of Landau domain */ 8178a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 8188a6f2e61SMark Adams PetscReal radius = ctx->radius[grid]; 819e0eea495SMark if (!ctx->sphere) { 820e0eea495SMark PetscInt cells[] = {2,2,2}; 821e0eea495SMark PetscReal lo[] = {-radius,-radius,-radius}, hi[] = {radius,radius,radius}; 822e0eea495SMark DMBoundaryType periodicity[3] = {DM_BOUNDARY_NONE, dim==2 ? DM_BOUNDARY_NONE : DM_BOUNDARY_NONE, DM_BOUNDARY_NONE}; 823cb25d741SMark Adams if (dim==2) { lo[0] = 0; cells[0] /* = cells[1] */ = 1; } 8248a6f2e61SMark Adams ierr = DMPlexCreateBoxMesh(comm_self, dim, PETSC_FALSE, cells, lo, hi, periodicity, PETSC_TRUE, &ctx->plex[grid]);CHKERRQ(ierr); // todo: make composite and create dm[grid] here 8258a6f2e61SMark Adams ierr = DMLocalizeCoordinates(ctx->plex[grid]);CHKERRQ(ierr); /* needed for periodic */ 8268a6f2e61SMark Adams if (dim==3) {ierr = PetscObjectSetName((PetscObject) ctx->plex[grid], "cube");CHKERRQ(ierr);} 8278a6f2e61SMark Adams else {ierr = PetscObjectSetName((PetscObject) ctx->plex[grid], "half-plane");CHKERRQ(ierr);} 8288a6f2e61SMark Adams } else if (dim==2) { // sphere is all wrong. should just have one inner radius 829e0eea495SMark PetscInt numCells,cells[16][4],i,j; 830e0eea495SMark PetscInt numVerts; 8318a6f2e61SMark Adams PetscReal inner_radius1 = ctx->i_radius[grid], inner_radius2 = ctx->e_radius; 832e0eea495SMark PetscReal *flatCoords = NULL; 833e0eea495SMark PetscInt *flatCells = NULL, *pcell; 834e0eea495SMark if (ctx->num_sections==2) { 835e0eea495SMark #if 1 836e0eea495SMark numCells = 5; 837e0eea495SMark numVerts = 10; 838e0eea495SMark int cells2[][4] = { {0,1,4,3}, 839e0eea495SMark {1,2,5,4}, 840e0eea495SMark {3,4,7,6}, 841e0eea495SMark {4,5,8,7}, 842e0eea495SMark {6,7,8,9} }; 843e0eea495SMark for (i = 0; i < numCells; i++) for (j = 0; j < 4; j++) cells[i][j] = cells2[i][j]; 844e0eea495SMark ierr = PetscMalloc2(numVerts * 2, &flatCoords, numCells * 4, &flatCells);CHKERRQ(ierr); 845e0eea495SMark { 846e0eea495SMark PetscReal (*coords)[2] = (PetscReal (*) [2]) flatCoords; 847e0eea495SMark for (j = 0; j < numVerts-1; j++) { 848e0eea495SMark PetscReal z, r, theta = -PETSC_PI/2 + (j%3) * PETSC_PI/2; 8498a6f2e61SMark Adams PetscReal rad = (j >= 6) ? inner_radius1 : (j >= 3) ? inner_radius2 : ctx->radius[grid]; 850e0eea495SMark z = rad * PetscSinReal(theta); 851e0eea495SMark coords[j][1] = z; 852e0eea495SMark r = rad * PetscCosReal(theta); 853e0eea495SMark coords[j][0] = r; 854e0eea495SMark } 855e0eea495SMark coords[numVerts-1][0] = coords[numVerts-1][1] = 0; 856e0eea495SMark } 857e0eea495SMark #else 858e0eea495SMark numCells = 4; 859e0eea495SMark numVerts = 8; 860e0eea495SMark static int cells2[][4] = {{0,1,2,3}, 861e0eea495SMark {4,5,1,0}, 862e0eea495SMark {5,6,2,1}, 863e0eea495SMark {6,7,3,2}}; 864e0eea495SMark for (i = 0; i < numCells; i++) for (j = 0; j < 4; j++) cells[i][j] = cells2[i][j]; 865a587d139SMark ierr = loc2(numVerts * 2, &flatCoords, numCells * 4, &flatCells);CHKERRQ(ierr); 866e0eea495SMark { 867e0eea495SMark PetscReal (*coords)[2] = (PetscReal (*) [2]) flatCoords; 868e0eea495SMark PetscInt j; 869e0eea495SMark for (j = 0; j < 8; j++) { 870e0eea495SMark PetscReal z, r; 871e0eea495SMark PetscReal theta = -PETSC_PI/2 + (j%4) * PETSC_PI/3.; 8728a6f2e61SMark Adams PetscReal rad = ctx->radius[grid] * ((j < 4) ? 0.5 : 1.0); 873e0eea495SMark z = rad * PetscSinReal(theta); 874e0eea495SMark coords[j][1] = z; 875e0eea495SMark r = rad * PetscCosReal(theta); 876e0eea495SMark coords[j][0] = r; 877e0eea495SMark } 878e0eea495SMark } 879e0eea495SMark #endif 880e0eea495SMark } else if (ctx->num_sections==3) { 881e0eea495SMark numCells = 7; 882e0eea495SMark numVerts = 12; 883e0eea495SMark int cells2[][4] = { {0,1,5,4}, 884e0eea495SMark {1,2,6,5}, 885e0eea495SMark {2,3,7,6}, 886e0eea495SMark {4,5,9,8}, 887e0eea495SMark {5,6,10,9}, 888e0eea495SMark {6,7,11,10}, 889e0eea495SMark {8,9,10,11} }; 890e0eea495SMark for (i = 0; i < numCells; i++) for (j = 0; j < 4; j++) cells[i][j] = cells2[i][j]; 891e0eea495SMark ierr = PetscMalloc2(numVerts * 2, &flatCoords, numCells * 4, &flatCells);CHKERRQ(ierr); 892e0eea495SMark { 893e0eea495SMark PetscReal (*coords)[2] = (PetscReal (*) [2]) flatCoords; 894e0eea495SMark for (j = 0; j < numVerts; j++) { 895e0eea495SMark PetscReal z, r, theta = -PETSC_PI/2 + (j%4) * PETSC_PI/3; 8968a6f2e61SMark Adams PetscReal rad = (j >= 8) ? inner_radius1 : (j >= 4) ? inner_radius2 : ctx->radius[grid]; 897e0eea495SMark z = rad * PetscSinReal(theta); 898e0eea495SMark coords[j][1] = z; 899e0eea495SMark r = rad * PetscCosReal(theta); 900e0eea495SMark coords[j][0] = r; 901e0eea495SMark } 902e0eea495SMark } 903e0eea495SMark } else if (ctx->num_sections==4) { 904e0eea495SMark numCells = 10; 905e0eea495SMark numVerts = 16; 906e0eea495SMark int cells2[][4] = { {0,1,6,5}, 907e0eea495SMark {1,2,7,6}, 908e0eea495SMark {2,3,8,7}, 909e0eea495SMark {3,4,9,8}, 910e0eea495SMark {5,6,11,10}, 911e0eea495SMark {6,7,12,11}, 912e0eea495SMark {7,8,13,12}, 913e0eea495SMark {8,9,14,13}, 914e0eea495SMark {10,11,12,15}, 915e0eea495SMark {12,13,14,15}}; 916e0eea495SMark for (i = 0; i < numCells; i++) for (j = 0; j < 4; j++) cells[i][j] = cells2[i][j]; 917e0eea495SMark ierr = PetscMalloc2(numVerts * 2, &flatCoords, numCells * 4, &flatCells);CHKERRQ(ierr); 918e0eea495SMark { 919e0eea495SMark PetscReal (*coords)[2] = (PetscReal (*) [2]) flatCoords; 920e0eea495SMark for (j = 0; j < numVerts-1; j++) { 921e0eea495SMark PetscReal z, r, theta = -PETSC_PI/2 + (j%5) * PETSC_PI/4; 9228a6f2e61SMark Adams PetscReal rad = (j >= 10) ? inner_radius1 : (j >= 5) ? inner_radius2 : ctx->radius[grid]; 923e0eea495SMark z = rad * PetscSinReal(theta); 924e0eea495SMark coords[j][1] = z; 925e0eea495SMark r = rad * PetscCosReal(theta); 926e0eea495SMark coords[j][0] = r; 927e0eea495SMark } 928e0eea495SMark coords[numVerts-1][0] = coords[numVerts-1][1] = 0; 929e0eea495SMark } 930e0eea495SMark } else { 931e0eea495SMark numCells = 0; 932e0eea495SMark numVerts = 0; 933e0eea495SMark } 934e0eea495SMark for (j = 0, pcell = flatCells; j < numCells; j++, pcell += 4) { 935e0eea495SMark pcell[0] = cells[j][0]; pcell[1] = cells[j][1]; 936e0eea495SMark pcell[2] = cells[j][2]; pcell[3] = cells[j][3]; 937e0eea495SMark } 9388a6f2e61SMark Adams ierr = DMPlexCreateFromCellListPetsc(comm_self,2,numCells,numVerts,4,ctx->interpolate,flatCells,2,flatCoords,&ctx->plex[grid]);CHKERRQ(ierr); 939e0eea495SMark ierr = PetscFree2(flatCoords,flatCells);CHKERRQ(ierr); 9408a6f2e61SMark Adams ierr = PetscObjectSetName((PetscObject) ctx->plex[grid], "semi-circle");CHKERRQ(ierr); 941930e68a5SMark Adams } else SETERRQ(ctx->comm, PETSC_ERR_PLIB, "Velocity space meshes does not support cubed sphere"); 942e0eea495SMark 9438a6f2e61SMark Adams ierr = DMSetFromOptions(ctx->plex[grid]);CHKERRQ(ierr); 9448a6f2e61SMark Adams } // grid loop 945a82411e9SMark Adams ierr = PetscObjectSetOptionsPrefix((PetscObject)pack,prefix);CHKERRQ(ierr); 946a82411e9SMark Adams ierr = DMSetFromOptions(pack);CHKERRQ(ierr); 947e0eea495SMark 9488a6f2e61SMark Adams { /* convert to p4est (or whatever), wait for discretization to create pack */ 949e0eea495SMark char convType[256]; 950e0eea495SMark PetscBool flg; 951930e68a5SMark Adams ierr = PetscOptionsBegin(ctx->comm, prefix, "Mesh conversion options", "DMPLEX");CHKERRQ(ierr); 9528a6f2e61SMark Adams ierr = PetscOptionsFList("-dm_landau_type","Convert DMPlex to another format (p4est)","plexland.c",DMList,DMPLEX,convType,256,&flg);CHKERRQ(ierr); 9531e1ea65dSPierre Jolivet ierr = PetscOptionsEnd();CHKERRQ(ierr); 954e0eea495SMark if (flg) { 9558a6f2e61SMark Adams ctx->use_p4est = PETSC_TRUE; /* flag for Forest */ 9568a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 957e0eea495SMark DM dmforest; 9588a6f2e61SMark Adams ierr = DMConvert(ctx->plex[grid],convType,&dmforest);CHKERRQ(ierr); 959e0eea495SMark if (dmforest) { 960e0eea495SMark PetscBool isForest; 961e0eea495SMark ierr = PetscObjectSetOptionsPrefix((PetscObject)dmforest,prefix);CHKERRQ(ierr); 962e0eea495SMark ierr = DMIsForest(dmforest,&isForest);CHKERRQ(ierr); 963e0eea495SMark if (isForest) { 964e0eea495SMark if (ctx->sphere && ctx->inflate) { 965e0eea495SMark ierr = DMForestSetBaseCoordinateMapping(dmforest,GeometryDMLandau,ctx);CHKERRQ(ierr); 966e0eea495SMark } 9678a6f2e61SMark Adams ierr = DMDestroy(&ctx->plex[grid]);CHKERRQ(ierr); 9688a6f2e61SMark Adams ctx->plex[grid] = dmforest; // Forest for adaptivity 969f37ccb5fSMark Adams } else SETERRQ(ctx->comm, PETSC_ERR_PLIB, "Converted to non Forest?"); 970f37ccb5fSMark Adams } else SETERRQ(ctx->comm, PETSC_ERR_PLIB, "Convert failed?"); 971e0eea495SMark } 9728a6f2e61SMark Adams } else ctx->use_p4est = PETSC_FALSE; /* flag for Forest */ 973e0eea495SMark } 9748a6f2e61SMark Adams } /* non-file */ 975a82411e9SMark Adams ierr = DMSetDimension(pack, dim);CHKERRQ(ierr); 976a82411e9SMark Adams ierr = PetscObjectSetName((PetscObject) pack, "Mesh");CHKERRQ(ierr); 977a82411e9SMark Adams ierr = DMSetApplicationContext(pack, ctx);CHKERRQ(ierr); 9788a6f2e61SMark Adams 979e0eea495SMark PetscFunctionReturn(0); 980e0eea495SMark } 981e0eea495SMark 9828a6f2e61SMark Adams static PetscErrorCode SetupDS(DM pack, PetscInt dim, PetscInt grid, LandauCtx *ctx) 983e0eea495SMark { 984e0eea495SMark PetscErrorCode ierr; 9858a6f2e61SMark Adams PetscInt ii,i0; 986e0eea495SMark char buf[256]; 9878a6f2e61SMark Adams PetscSection section; 9888a6f2e61SMark Adams 9898a6f2e61SMark Adams PetscFunctionBegin; 9908a6f2e61SMark Adams for (ii = ctx->species_offset[grid], i0 = 0 ; ii < ctx->species_offset[grid+1] ; ii++, i0++) { 991e0eea495SMark if (ii==0) ierr = PetscSNPrintf(buf, 256, "e"); 992d618d24fSMark Adams else {ierr = PetscSNPrintf(buf, sizeof(buf), "i%" PetscInt_FMT, ii);CHKERRQ(ierr);} 993e0eea495SMark /* Setup Discretization - FEM */ 994cefb98e8SMark Adams ierr = PetscFECreateDefault(PETSC_COMM_SELF, dim, 1, PETSC_FALSE, NULL, PETSC_DECIDE, &ctx->fe[ii]);CHKERRQ(ierr); 995e0eea495SMark ierr = PetscObjectSetName((PetscObject) ctx->fe[ii], buf);CHKERRQ(ierr); 9968a6f2e61SMark Adams ierr = DMSetField(ctx->plex[grid], i0, NULL, (PetscObject) ctx->fe[ii]);CHKERRQ(ierr); 997e0eea495SMark } 9988a6f2e61SMark Adams ierr = DMCreateDS(ctx->plex[grid]);CHKERRQ(ierr); 9998a6f2e61SMark Adams ierr = DMGetSection(ctx->plex[grid], §ion);CHKERRQ(ierr); 10008a6f2e61SMark Adams for (PetscInt ii = ctx->species_offset[grid], i0 = 0 ; ii < ctx->species_offset[grid+1] ; ii++, i0++) { 1001d618d24fSMark Adams if (ii==0) {ierr = PetscSNPrintf(buf, sizeof(buf), "se");CHKERRQ(ierr);} 1002d618d24fSMark Adams else {ierr = PetscSNPrintf(buf, sizeof(buf), "si%" PetscInt_FMT, ii);CHKERRQ(ierr);} 10038a6f2e61SMark Adams ierr = PetscSectionSetComponentName(section, i0, 0, buf);CHKERRQ(ierr); 1004e0eea495SMark } 1005e0eea495SMark PetscFunctionReturn(0); 1006e0eea495SMark } 1007e0eea495SMark 1008e0eea495SMark /* Define a Maxwellian function for testing out the operator. */ 1009e0eea495SMark 1010e0eea495SMark /* Using cartesian velocity space coordinates, the particle */ 1011e0eea495SMark /* density, [1/m^3], is defined according to */ 1012e0eea495SMark 1013e0eea495SMark /* $$ n=\int_{R^3} dv^3 \left(\frac{m}{2\pi T}\right)^{3/2}\exp [- mv^2/(2T)] $$ */ 1014e0eea495SMark 1015e0eea495SMark /* Using some constant, c, we normalize the velocity vector into a */ 1016e0eea495SMark /* dimensionless variable according to v=c*x. Thus the density, $n$, becomes */ 1017e0eea495SMark 1018e0eea495SMark /* $$ n=\int_{R^3} dx^3 \left(\frac{mc^2}{2\pi T}\right)^{3/2}\exp [- mc^2/(2T)*x^2] $$ */ 1019e0eea495SMark 1020e0eea495SMark /* Defining $\theta=2T/mc^2$, we thus find that the probability density */ 1021e0eea495SMark /* for finding the particle within the interval in a box dx^3 around x is */ 1022e0eea495SMark 1023e0eea495SMark /* f(x;\theta)=\left(\frac{1}{\pi\theta}\right)^{3/2} \exp [ -x^2/\theta ] */ 1024e0eea495SMark 1025e0eea495SMark typedef struct { 10268a6f2e61SMark Adams PetscReal v_0; 1027e0eea495SMark PetscReal kT_m; 1028e0eea495SMark PetscReal n; 1029e0eea495SMark PetscReal shift; 1030e0eea495SMark } MaxwellianCtx; 1031e0eea495SMark 1032e0eea495SMark static PetscErrorCode maxwellian(PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf_dummy, PetscScalar *u, void *actx) 1033e0eea495SMark { 1034e0eea495SMark MaxwellianCtx *mctx = (MaxwellianCtx*)actx; 1035e0eea495SMark PetscInt i; 10368a6f2e61SMark Adams PetscReal v2 = 0, theta = 2*mctx->kT_m/(mctx->v_0*mctx->v_0); /* theta = 2kT/mc^2 */ 1037e0eea495SMark PetscFunctionBegin; 1038e0eea495SMark /* compute the exponents, v^2 */ 1039e0eea495SMark for (i = 0; i < dim; ++i) v2 += x[i]*x[i]; 1040e0eea495SMark /* evaluate the Maxwellian */ 1041e0eea495SMark u[0] = mctx->n*PetscPowReal(PETSC_PI*theta,-1.5)*(PetscExpReal(-v2/theta)); 1042e0eea495SMark if (mctx->shift!=0.) { 1043e0eea495SMark v2 = 0; 1044e0eea495SMark for (i = 0; i < dim-1; ++i) v2 += x[i]*x[i]; 1045e0eea495SMark v2 += (x[dim-1]-mctx->shift)*(x[dim-1]-mctx->shift); 1046e0eea495SMark /* evaluate the shifted Maxwellian */ 1047e0eea495SMark u[0] += mctx->n*PetscPowReal(PETSC_PI*theta,-1.5)*(PetscExpReal(-v2/theta)); 1048e0eea495SMark } 1049e0eea495SMark PetscFunctionReturn(0); 1050e0eea495SMark } 1051e0eea495SMark 1052e0eea495SMark /*@ 1053*8594ddcfSMark Adams DMPlexLandauAddMaxwellians - Add a Maxwellian distribution to a state 1054e0eea495SMark 1055e0eea495SMark Collective on X 1056e0eea495SMark 1057e0eea495SMark Input Parameters: 10588a6f2e61SMark Adams . dm - The mesh (local) 1059e0eea495SMark + time - Current time 10608a6f2e61SMark Adams - temps - Temperatures of each species (global) 10618a6f2e61SMark Adams . ns - Number density of each species (global) 10628a6f2e61SMark Adams - grid - index into current grid - just used for offset into temp and ns 1063e0eea495SMark + actx - Landau context 1064e0eea495SMark 1065e0eea495SMark Output Parameter: 10668a6f2e61SMark Adams . X - The state (local to this grid) 1067e0eea495SMark 10681e3d9a73SSatish Balay Level: beginner 10691e3d9a73SSatish Balay 1070e0eea495SMark .keywords: mesh 1071*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace() 1072e0eea495SMark @*/ 1073*8594ddcfSMark Adams PetscErrorCode DMPlexLandauAddMaxwellians(DM dm, Vec X, PetscReal time, PetscReal temps[], PetscReal ns[], PetscInt grid, PetscInt b_id, void *actx) 1074e0eea495SMark { 1075e0eea495SMark LandauCtx *ctx = (LandauCtx*)actx; 1076e0eea495SMark PetscErrorCode (*initu[LANDAU_MAX_SPECIES])(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar [], void *); 10778a6f2e61SMark Adams PetscErrorCode ierr,ii,i0; 1078e0eea495SMark PetscInt dim; 1079e0eea495SMark MaxwellianCtx *mctxs[LANDAU_MAX_SPECIES], data[LANDAU_MAX_SPECIES]; 1080e0eea495SMark 1081e0eea495SMark PetscFunctionBegin; 1082e0eea495SMark ierr = DMGetDimension(dm, &dim);CHKERRQ(ierr); 1083e0eea495SMark if (!ctx) { ierr = DMGetApplicationContext(dm, &ctx);CHKERRQ(ierr); } 10848a6f2e61SMark Adams for (ii = ctx->species_offset[grid], i0 = 0 ; ii < ctx->species_offset[grid+1] ; ii++, i0++) { 10858a6f2e61SMark Adams mctxs[i0] = &data[i0]; 10868fdabdddSMark Adams data[i0].v_0 = ctx->v_0; // v_0 same for all grids 10878a6f2e61SMark Adams data[i0].kT_m = ctx->k*temps[ii]/ctx->masses[ii]; /* kT/m */ 108819be780dSMark Adams data[i0].n = ns[ii] * (1+(double)b_id/100.0); // make solves a little different to mimic application, n[0] use for Conner-Hastie 10898a6f2e61SMark Adams initu[i0] = maxwellian; 10908a6f2e61SMark Adams data[i0].shift = 0; 1091e0eea495SMark } 1092e0eea495SMark data[0].shift = ctx->electronShift; 1093e0eea495SMark /* need to make ADD_ALL_VALUES work - TODO */ 1094e0eea495SMark ierr = DMProjectFunction(dm, time, initu, (void**)mctxs, INSERT_ALL_VALUES, X);CHKERRQ(ierr); 1095e0eea495SMark PetscFunctionReturn(0); 1096e0eea495SMark } 1097e0eea495SMark 1098e0eea495SMark /* 1099e0eea495SMark LandauSetInitialCondition - Addes Maxwellians with context 1100e0eea495SMark 1101e0eea495SMark Collective on X 1102e0eea495SMark 1103e0eea495SMark Input Parameters: 1104e0eea495SMark . dm - The mesh 11058a6f2e61SMark Adams - grid - index into current grid - just used for offset into temp and ns 1106e0eea495SMark + actx - Landau context with T and n 1107e0eea495SMark 1108e0eea495SMark Output Parameter: 1109e0eea495SMark . X - The state 1110e0eea495SMark 1111e0eea495SMark Level: beginner 1112e0eea495SMark 1113e0eea495SMark .keywords: mesh 1114*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace(), DMPlexLandauAddMaxwellians() 1115e0eea495SMark */ 11168fdabdddSMark Adams static PetscErrorCode LandauSetInitialCondition(DM dm, Vec X, PetscInt grid, PetscInt b_id, void *actx) 1117e0eea495SMark { 1118e0eea495SMark LandauCtx *ctx = (LandauCtx*)actx; 1119e0eea495SMark PetscErrorCode ierr; 1120e0eea495SMark PetscFunctionBegin; 1121e0eea495SMark if (!ctx) { ierr = DMGetApplicationContext(dm, &ctx);CHKERRQ(ierr); } 1122e0eea495SMark ierr = VecZeroEntries(X);CHKERRQ(ierr); 1123*8594ddcfSMark Adams ierr = DMPlexLandauAddMaxwellians(dm, X, 0.0, ctx->thermal_temps, ctx->n, grid, b_id, ctx);CHKERRQ(ierr); 1124e0eea495SMark PetscFunctionReturn(0); 1125e0eea495SMark } 1126e0eea495SMark 11278a6f2e61SMark Adams // adapt a level once. Forest in/out 11288a6f2e61SMark Adams static PetscErrorCode adaptToleranceFEM(PetscFE fem, Vec sol, PetscInt type, PetscInt grid, LandauCtx *ctx, DM *newForest) 1129e0eea495SMark { 11308a6f2e61SMark Adams DM forest, plex, adaptedDM = NULL; 1131e0eea495SMark PetscDS prob; 1132e0eea495SMark PetscBool isForest; 1133e0eea495SMark PetscQuadrature quad; 1134e0eea495SMark PetscInt Nq, *Nb, cStart, cEnd, c, dim, qj, k; 1135e0eea495SMark DMLabel adaptLabel = NULL; 1136e0eea495SMark PetscErrorCode ierr; 1137e0eea495SMark 1138e0eea495SMark PetscFunctionBegin; 11398a6f2e61SMark Adams forest = ctx->plex[grid]; 11408a6f2e61SMark Adams ierr = DMCreateDS(forest);CHKERRQ(ierr); 11418a6f2e61SMark Adams ierr = DMGetDS(forest, &prob);CHKERRQ(ierr); 11428a6f2e61SMark Adams ierr = DMGetDimension(forest, &dim);CHKERRQ(ierr); 11438a6f2e61SMark Adams ierr = DMIsForest(forest, &isForest);CHKERRQ(ierr); 11442c71b3e2SJacob Faibussowitsch PetscCheckFalse(!isForest,ctx->comm,PETSC_ERR_ARG_WRONG,"! Forest"); 11458a6f2e61SMark Adams ierr = DMConvert(forest, DMPLEX, &plex);CHKERRQ(ierr); 1146e0eea495SMark ierr = DMPlexGetHeightStratum(plex,0,&cStart,&cEnd);CHKERRQ(ierr); 1147e0eea495SMark ierr = DMLabelCreate(PETSC_COMM_SELF,"adapt",&adaptLabel);CHKERRQ(ierr); 1148e0eea495SMark ierr = PetscFEGetQuadrature(fem, &quad);CHKERRQ(ierr); 1149e0eea495SMark ierr = PetscQuadratureGetData(quad, NULL, NULL, &Nq, NULL, NULL);CHKERRQ(ierr); 1150d618d24fSMark Adams PetscCheckFalse(Nq >LANDAU_MAX_NQ,ctx->comm,PETSC_ERR_ARG_WRONG,"Order too high. Nq = %" PetscInt_FMT " > LANDAU_MAX_NQ (%" PetscInt_FMT ")",Nq,LANDAU_MAX_NQ); 1151e0eea495SMark ierr = PetscDSGetDimensions(prob, &Nb);CHKERRQ(ierr); 1152e0eea495SMark if (type==4) { 1153e0eea495SMark for (c = cStart; c < cEnd; c++) { 1154e0eea495SMark ierr = DMLabelSetValue(adaptLabel, c, DM_ADAPT_REFINE);CHKERRQ(ierr); 1155e0eea495SMark } 11567d3de750SJacob Faibussowitsch ierr = PetscInfo(sol, "Phase:%s: Uniform refinement\n","adaptToleranceFEM");CHKERRQ(ierr); 1157e0eea495SMark } else if (type==2) { 115852cdd6eaSMark PetscInt rCellIdx[8], eCellIdx[64], iCellIdx[64], eMaxIdx = -1, iMaxIdx = -1, nr = 0, nrmax = (dim==3) ? 8 : 2; 1159a003a357SMark PetscReal minRad = PETSC_INFINITY, r, eMinRad = PETSC_INFINITY, iMinRad = PETSC_INFINITY; 1160e0eea495SMark for (c = 0; c < 64; c++) { eCellIdx[c] = iCellIdx[c] = -1; } 1161e0eea495SMark for (c = cStart; c < cEnd; c++) { 1162e0eea495SMark PetscReal tt, v0[LANDAU_MAX_NQ*3], detJ[LANDAU_MAX_NQ]; 1163e0eea495SMark ierr = DMPlexComputeCellGeometryFEM(plex, c, quad, v0, NULL, NULL, detJ);CHKERRQ(ierr); 1164e0eea495SMark for (qj = 0; qj < Nq; ++qj) { 1165e0eea495SMark tt = PetscSqr(v0[dim*qj+0]) + PetscSqr(v0[dim*qj+1]) + PetscSqr(((dim==3) ? v0[dim*qj+2] : 0)); 1166e0eea495SMark r = PetscSqrtReal(tt); 1167a003a357SMark if (r < minRad - PETSC_SQRT_MACHINE_EPSILON*10.) { 1168e0eea495SMark minRad = r; 1169e0eea495SMark nr = 0; 1170e0eea495SMark rCellIdx[nr++]= c; 1171d618d24fSMark Adams ierr = PetscInfo(sol, "\t\tPhase: adaptToleranceFEM Found first inner r=%e, cell %" PetscInt_FMT ", qp %" PetscInt_FMT "/%" PetscInt_FMT "\n", r, c, qj+1, Nq);CHKERRQ(ierr); 1172a003a357SMark } else if ((r-minRad) < PETSC_SQRT_MACHINE_EPSILON*100. && nr < nrmax) { 1173e0eea495SMark for (k=0;k<nr;k++) if (c == rCellIdx[k]) break; 1174e0eea495SMark if (k==nr) { 1175e0eea495SMark rCellIdx[nr++]= c; 1176d618d24fSMark Adams ierr = PetscInfo(sol, "\t\t\tPhase: adaptToleranceFEM Found another inner r=%e, cell %" PetscInt_FMT ", qp %" PetscInt_FMT "/%" PetscInt_FMT ", d=%e\n", r, c, qj+1, Nq, r-minRad);CHKERRQ(ierr); 1177e0eea495SMark } 1178e0eea495SMark } 1179e0eea495SMark if (ctx->sphere) { 1180e0eea495SMark if ((tt=r-ctx->e_radius) > 0) { 1181d618d24fSMark Adams ierr = PetscInfo(sol, "\t\t\t %" PetscInt_FMT " cell r=%g\n",c,tt);CHKERRQ(ierr); 1182a003a357SMark if (tt < eMinRad - PETSC_SQRT_MACHINE_EPSILON*100.) { 1183e0eea495SMark eMinRad = tt; 1184e0eea495SMark eMaxIdx = 0; 1185e0eea495SMark eCellIdx[eMaxIdx++] = c; 1186a003a357SMark } else if (eMaxIdx > 0 && (tt-eMinRad) <= PETSC_SQRT_MACHINE_EPSILON && c != eCellIdx[eMaxIdx-1]) { 1187e0eea495SMark eCellIdx[eMaxIdx++] = c; 1188e0eea495SMark } 1189e0eea495SMark } 11908a6f2e61SMark Adams if ((tt=r-ctx->i_radius[grid]) > 0) { 1191e0eea495SMark if (tt < iMinRad - 1.e-5) { 1192e0eea495SMark iMinRad = tt; 1193e0eea495SMark iMaxIdx = 0; 1194e0eea495SMark iCellIdx[iMaxIdx++] = c; 1195a003a357SMark } else if (iMaxIdx > 0 && (tt-iMinRad) <= PETSC_SQRT_MACHINE_EPSILON && c != iCellIdx[iMaxIdx-1]) { 1196e0eea495SMark iCellIdx[iMaxIdx++] = c; 1197e0eea495SMark } 1198e0eea495SMark } 1199e0eea495SMark } 1200e0eea495SMark } 1201e0eea495SMark } 1202e0eea495SMark for (k=0;k<nr;k++) { 1203e0eea495SMark ierr = DMLabelSetValue(adaptLabel, rCellIdx[k], DM_ADAPT_REFINE);CHKERRQ(ierr); 1204e0eea495SMark } 1205e0eea495SMark if (ctx->sphere) { 1206e0eea495SMark for (c = 0; c < eMaxIdx; c++) { 1207e0eea495SMark ierr = DMLabelSetValue(adaptLabel, eCellIdx[c], DM_ADAPT_REFINE);CHKERRQ(ierr); 1208d618d24fSMark Adams ierr = PetscInfo(sol, "\t\tPhase:%s: refine sphere e cell %" PetscInt_FMT " r=%g\n","adaptToleranceFEM",eCellIdx[c],eMinRad);CHKERRQ(ierr); 1209e0eea495SMark } 1210e0eea495SMark for (c = 0; c < iMaxIdx; c++) { 1211e0eea495SMark ierr = DMLabelSetValue(adaptLabel, iCellIdx[c], DM_ADAPT_REFINE);CHKERRQ(ierr); 1212d618d24fSMark Adams ierr = PetscInfo(sol, "\t\tPhase:%s: refine sphere i cell %" PetscInt_FMT " r=%g\n","adaptToleranceFEM",iCellIdx[c],iMinRad);CHKERRQ(ierr); 1213e0eea495SMark } 1214e0eea495SMark } 1215d618d24fSMark Adams ierr = PetscInfo(sol, "Phase:%s: Adaptive refine origin cells %" PetscInt_FMT ",%" PetscInt_FMT " r=%g\n","adaptToleranceFEM",rCellIdx[0],rCellIdx[1],minRad);CHKERRQ(ierr); 1216e0eea495SMark } else if (type==0 || type==1 || type==3) { /* refine along r=0 axis */ 1217e0eea495SMark PetscScalar *coef = NULL; 1218e0eea495SMark Vec coords; 1219e0eea495SMark PetscInt csize,Nv,d,nz; 1220e0eea495SMark DM cdm; 1221e0eea495SMark PetscSection cs; 12228a6f2e61SMark Adams ierr = DMGetCoordinatesLocal(forest, &coords);CHKERRQ(ierr); 12238a6f2e61SMark Adams ierr = DMGetCoordinateDM(forest, &cdm);CHKERRQ(ierr); 1224e0eea495SMark ierr = DMGetLocalSection(cdm, &cs);CHKERRQ(ierr); 1225e0eea495SMark for (c = cStart; c < cEnd; c++) { 1226e0eea495SMark PetscInt doit = 0, outside = 0; 1227e0eea495SMark ierr = DMPlexVecGetClosure(cdm, cs, coords, c, &csize, &coef);CHKERRQ(ierr); 1228e0eea495SMark Nv = csize/dim; 1229e0eea495SMark for (nz = d = 0; d < Nv; d++) { 1230e0eea495SMark PetscReal z = PetscRealPart(coef[d*dim + (dim-1)]), x = PetscSqr(PetscRealPart(coef[d*dim + 0])) + ((dim==3) ? PetscSqr(PetscRealPart(coef[d*dim + 1])) : 0); 1231e0eea495SMark x = PetscSqrtReal(x); 1232930e68a5SMark Adams if (x < PETSC_MACHINE_EPSILON*10. && PetscAbs(z)<PETSC_MACHINE_EPSILON*10.) doit = 1; /* refine origin */ 1233a003a357SMark else if (type==0 && (z < -PETSC_MACHINE_EPSILON*10. || z > ctx->re_radius+PETSC_MACHINE_EPSILON*10.)) outside++; /* first pass don't refine bottom */ 1234e0eea495SMark else if (type==1 && (z > ctx->vperp0_radius1 || z < -ctx->vperp0_radius1)) outside++; /* don't refine outside electron refine radius */ 1235e0eea495SMark else if (type==3 && (z > ctx->vperp0_radius2 || z < -ctx->vperp0_radius2)) outside++; /* don't refine outside ion refine radius */ 1236a003a357SMark if (x < PETSC_MACHINE_EPSILON*10.) nz++; 1237e0eea495SMark } 1238e0eea495SMark ierr = DMPlexVecRestoreClosure(cdm, cs, coords, c, &csize, &coef);CHKERRQ(ierr); 1239e0eea495SMark if (doit || (outside<Nv && nz)) { 1240e0eea495SMark ierr = DMLabelSetValue(adaptLabel, c, DM_ADAPT_REFINE);CHKERRQ(ierr); 1241e0eea495SMark } 1242e0eea495SMark } 12437d3de750SJacob Faibussowitsch ierr = PetscInfo(sol, "Phase:%s: RE refinement\n","adaptToleranceFEM");CHKERRQ(ierr); 1244e0eea495SMark } 1245e0eea495SMark ierr = DMDestroy(&plex);CHKERRQ(ierr); 12468a6f2e61SMark Adams ierr = DMAdaptLabel(forest, adaptLabel, &adaptedDM);CHKERRQ(ierr); 1247e0eea495SMark ierr = DMLabelDestroy(&adaptLabel);CHKERRQ(ierr); 12488a6f2e61SMark Adams *newForest = adaptedDM; 1249e0eea495SMark if (adaptedDM) { 1250e0eea495SMark if (isForest) { 12518a6f2e61SMark Adams ierr = DMForestSetAdaptivityForest(adaptedDM,NULL);CHKERRQ(ierr); // ???? 12528a6f2e61SMark Adams } else exit(33); // ??????? 1253e0eea495SMark ierr = DMConvert(adaptedDM, DMPLEX, &plex);CHKERRQ(ierr); 1254e0eea495SMark ierr = DMPlexGetHeightStratum(plex,0,&cStart,&cEnd);CHKERRQ(ierr); 1255d618d24fSMark Adams ierr = PetscInfo(sol, "\tPhase: adaptToleranceFEM: %" PetscInt_FMT " cells, %" PetscInt_FMT " total quadrature points\n",cEnd-cStart,Nq*(cEnd-cStart));CHKERRQ(ierr); 1256e0eea495SMark ierr = DMDestroy(&plex);CHKERRQ(ierr); 12578a6f2e61SMark Adams } else *newForest = NULL; 1258e0eea495SMark PetscFunctionReturn(0); 1259e0eea495SMark } 1260e0eea495SMark 12618a6f2e61SMark Adams // forest goes in (ctx->plex[grid]), plex comes out 12628a6f2e61SMark Adams static PetscErrorCode adapt(PetscInt grid, LandauCtx *ctx, Vec *uu) 1263e0eea495SMark { 1264e0eea495SMark PetscErrorCode ierr; 1265e0eea495SMark PetscInt adaptIter; 1266e0eea495SMark 1267e0eea495SMark PetscFunctionBegin; 12688a6f2e61SMark Adams PetscInt type, limits[5] = {(grid==0) ? ctx->numRERefine : 0, (grid==0) ? ctx->nZRefine1 : 0, ctx->numAMRRefine[grid], (grid==0) ? ctx->nZRefine2 : 0,ctx->postAMRRefine[grid]}; 1269e0eea495SMark for (type=0;type<5;type++) { 1270e0eea495SMark for (adaptIter = 0; adaptIter<limits[type];adaptIter++) { 12718a6f2e61SMark Adams DM newForest = NULL; 12728a6f2e61SMark Adams ierr = adaptToleranceFEM(ctx->fe[0], *uu, type, grid, ctx, &newForest);CHKERRQ(ierr); 12738a6f2e61SMark Adams if (newForest) { 12748a6f2e61SMark Adams ierr = DMDestroy(&ctx->plex[grid]);CHKERRQ(ierr); 1275e0eea495SMark ierr = VecDestroy(uu);CHKERRQ(ierr); 12768a6f2e61SMark Adams ierr = DMCreateGlobalVector(newForest,uu);CHKERRQ(ierr); 12778a6f2e61SMark Adams ierr = PetscObjectSetName((PetscObject) *uu, "uAMR");CHKERRQ(ierr); 12788fdabdddSMark Adams ierr = LandauSetInitialCondition(newForest, *uu, grid, 0, ctx);CHKERRQ(ierr); 12798a6f2e61SMark Adams ctx->plex[grid] = newForest; 12808a6f2e61SMark Adams } else { 12818a6f2e61SMark Adams exit(4); // can happen with no AMR and post refinement 1282e0eea495SMark } 1283e0eea495SMark } 1284e0eea495SMark } 1285e0eea495SMark PetscFunctionReturn(0); 1286e0eea495SMark } 1287e0eea495SMark 1288e0eea495SMark static PetscErrorCode ProcessOptions(LandauCtx *ctx, const char prefix[]) 1289e0eea495SMark { 1290e0eea495SMark PetscErrorCode ierr; 1291e0eea495SMark PetscBool flg, sph_flg; 12928a6f2e61SMark Adams PetscInt ii,nt,nm,nc,num_species_grid[LANDAU_MAX_GRIDS]; 12938a6f2e61SMark Adams PetscReal v0_grid[LANDAU_MAX_GRIDS]; 1294e0eea495SMark DM dummy; 1295e0eea495SMark 1296e0eea495SMark PetscFunctionBegin; 1297930e68a5SMark Adams ierr = DMCreate(ctx->comm,&dummy);CHKERRQ(ierr); 1298e0eea495SMark /* get options - initialize context */ 1299a82411e9SMark Adams ctx->verbose = 1; // should be 0 for silent compliance 13008fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 13018fdabdddSMark Adams ctx->batch_sz = PetscNumOMPThreads; 13028fdabdddSMark Adams #else 13038fdabdddSMark Adams ctx->batch_sz = 1; 13048fdabdddSMark Adams #endif 13058fdabdddSMark Adams ctx->batch_view_idx = 0; 1306e0eea495SMark ctx->interpolate = PETSC_TRUE; 1307a587d139SMark ctx->gpu_assembly = PETSC_TRUE; 13088a6f2e61SMark Adams ctx->aux_bool = PETSC_FALSE; 13098a6f2e61SMark Adams ctx->electronShift = 0; 13108a6f2e61SMark Adams ctx->M = NULL; 13118a6f2e61SMark Adams ctx->J = NULL; 13128a6f2e61SMark Adams /* geometry and grids */ 1313e0eea495SMark ctx->sphere = PETSC_FALSE; 1314e0eea495SMark ctx->inflate = PETSC_FALSE; 13158a6f2e61SMark Adams ctx->aux_bool = PETSC_FALSE; 13168a6f2e61SMark Adams ctx->use_p4est = PETSC_FALSE; 13178a6f2e61SMark Adams ctx->num_sections = 3; /* 2, 3 or 4 */ 13188a6f2e61SMark Adams for (PetscInt grid=0;grid<LANDAU_MAX_GRIDS;grid++) { 13198a6f2e61SMark Adams ctx->radius[grid] = 5.; /* thermal radius (velocity) */ 13208a6f2e61SMark Adams ctx->numAMRRefine[grid] = 5; 13218a6f2e61SMark Adams ctx->postAMRRefine[grid] = 0; 13228a6f2e61SMark Adams ctx->species_offset[grid+1] = 1; // one species default 13238a6f2e61SMark Adams num_species_grid[grid] = 0; 13248a6f2e61SMark Adams ctx->plex[grid] = NULL; /* cache as expensive to Convert */ 13258a6f2e61SMark Adams } 13268a6f2e61SMark Adams ctx->species_offset[0] = 0; 1327e0eea495SMark ctx->re_radius = 0.; 1328e0eea495SMark ctx->vperp0_radius1 = 0; 1329e0eea495SMark ctx->vperp0_radius2 = 0; 1330e0eea495SMark ctx->nZRefine1 = 0; 1331e0eea495SMark ctx->nZRefine2 = 0; 1332e0eea495SMark ctx->numRERefine = 0; 13338a6f2e61SMark Adams num_species_grid[0] = 1; // one species default 1334e0eea495SMark /* species - [0] electrons, [1] one ion species eg, duetarium, [2] heavy impurity ion, ... */ 1335e0eea495SMark ctx->charges[0] = -1; /* electron charge (MKS) */ 13368a6f2e61SMark Adams ctx->masses[0] = 1/1835.469965278441013; /* temporary value in proton mass */ 1337e0eea495SMark ctx->n[0] = 1; 13388a6f2e61SMark Adams ctx->v_0 = 1; /* thermal velocity, we could start with a scale != 1 */ 1339e0eea495SMark ctx->thermal_temps[0] = 1; 1340e0eea495SMark /* constants, etc. */ 1341e0eea495SMark ctx->epsilon0 = 8.8542e-12; /* permittivity of free space (MKS) F/m */ 1342e0eea495SMark ctx->k = 1.38064852e-23; /* Boltzmann constant (MKS) J/K */ 1343e0eea495SMark ctx->lnLam = 10; /* cross section ratio large - small angle collisions */ 1344e0eea495SMark ctx->n_0 = 1.e20; /* typical plasma n, but could set it to 1 */ 1345e0eea495SMark ctx->Ez = 0; 13468fdabdddSMark Adams for (PetscInt grid=0;grid<LANDAU_NUM_TIMERS;grid++) ctx->times[grid] = 0; 1347bfc784b7SMark Adams ctx->use_matrix_mass = PETSC_FALSE; 1348cefb98e8SMark Adams ctx->use_relativistic_corrections = PETSC_FALSE; 1349cefb98e8SMark Adams ctx->use_energy_tensor_trick = PETSC_FALSE; /* Use Eero's trick for energy conservation v --> grad(v^2/2) */ 13508a6f2e61SMark Adams ctx->SData_d.w = NULL; 13518a6f2e61SMark Adams ctx->SData_d.x = NULL; 13528a6f2e61SMark Adams ctx->SData_d.y = NULL; 13538a6f2e61SMark Adams ctx->SData_d.z = NULL; 13548a6f2e61SMark Adams ctx->SData_d.invJ = NULL; 1355cb25d741SMark Adams ctx->jacobian_field_major_order = PETSC_FALSE; 1356bfc784b7SMark Adams ctx->SData_d.coo_elem_offsets = NULL; 1357bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets = NULL; 1358aab769cbSMark Adams ctx->coo_assembly = PETSC_FALSE; 1359bfc784b7SMark Adams ctx->SData_d.coo_elem_fullNb = NULL; 1360bfc784b7SMark Adams ctx->SData_d.coo_size = 0; 1361930e68a5SMark Adams ierr = PetscOptionsBegin(ctx->comm, prefix, "Options for Fokker-Plank-Landau collision operator", "none");CHKERRQ(ierr); 1362e0eea495SMark { 1363e0eea495SMark char opstring[256]; 13648a6f2e61SMark Adams #if defined(PETSC_HAVE_KOKKOS_KERNELS) 1365e0eea495SMark ctx->deviceType = LANDAU_KOKKOS; 1366e0eea495SMark ierr = PetscStrcpy(opstring,"kokkos");CHKERRQ(ierr); 1367e0eea495SMark #elif defined(PETSC_HAVE_CUDA) 1368e0eea495SMark ctx->deviceType = LANDAU_CUDA; 1369e0eea495SMark ierr = PetscStrcpy(opstring,"cuda");CHKERRQ(ierr); 1370e0eea495SMark #else 1371e0eea495SMark ctx->deviceType = LANDAU_CPU; 1372e0eea495SMark ierr = PetscStrcpy(opstring,"cpu");CHKERRQ(ierr); 1373e0eea495SMark #endif 1374bfc784b7SMark Adams ierr = PetscOptionsString("-dm_landau_device_type","Use kernels on 'cpu', 'cuda', or 'kokkos'","plexland.c",opstring,opstring,sizeof(opstring),NULL);CHKERRQ(ierr); 1375e0eea495SMark ierr = PetscStrcmp("cpu",opstring,&flg);CHKERRQ(ierr); 1376e0eea495SMark if (flg) { 1377e0eea495SMark ctx->deviceType = LANDAU_CPU; 1378e0eea495SMark } else { 1379e0eea495SMark ierr = PetscStrcmp("cuda",opstring,&flg);CHKERRQ(ierr); 1380a587d139SMark if (flg) { 1381a587d139SMark ctx->deviceType = LANDAU_CUDA; 1382a587d139SMark } else { 1383e0eea495SMark ierr = PetscStrcmp("kokkos",opstring,&flg);CHKERRQ(ierr); 1384e0eea495SMark if (flg) ctx->deviceType = LANDAU_KOKKOS; 138598921bdaSJacob Faibussowitsch else SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_device_type %s",opstring); 1386e0eea495SMark } 1387e0eea495SMark } 1388e0eea495SMark } 1389e0eea495SMark ierr = PetscOptionsReal("-dm_landau_electron_shift","Shift in thermal velocity of electrons","none",ctx->electronShift,&ctx->electronShift, NULL);CHKERRQ(ierr); 13908a6f2e61SMark Adams ierr = PetscOptionsInt("-dm_landau_verbose", "Level of verbosity output", "plexland.c", ctx->verbose, &ctx->verbose, NULL);CHKERRQ(ierr); 13918fdabdddSMark Adams ierr = PetscOptionsInt("-dm_landau_batch_size", "Number of 'vertices' to batch", "ex2.c", ctx->batch_sz, &ctx->batch_sz, NULL);CHKERRQ(ierr); 1392d618d24fSMark Adams PetscCheck(LANDAU_MAX_BATCH_SZ >= ctx->batch_sz,ctx->comm,PETSC_ERR_ARG_WRONG,"LANDAU_MAX_BATCH_SZ %" PetscInt_FMT " < ctx->batch_sz %" PetscInt_FMT,LANDAU_MAX_BATCH_SZ,ctx->batch_sz); 13938fdabdddSMark Adams ierr = PetscOptionsInt("-dm_landau_batch_view_idx", "Index of batch for diagnostics like plotting", "ex2.c", ctx->batch_view_idx, &ctx->batch_view_idx, NULL);CHKERRQ(ierr); 1394d618d24fSMark Adams PetscCheck(ctx->batch_view_idx < ctx->batch_sz,ctx->comm,PETSC_ERR_ARG_WRONG,"-ctx->batch_view_idx %" PetscInt_FMT " > ctx->batch_sz %" PetscInt_FMT,ctx->batch_view_idx,ctx->batch_sz); 13958fdabdddSMark Adams ierr = PetscOptionsReal("-dm_landau_Ez","Initial parallel electric field in unites of Conner-Hastie critical field","plexland.c",ctx->Ez,&ctx->Ez, NULL);CHKERRQ(ierr); 1396e0eea495SMark ierr = PetscOptionsReal("-dm_landau_n_0","Normalization constant for number density","plexland.c",ctx->n_0,&ctx->n_0, NULL);CHKERRQ(ierr); 1397e0eea495SMark ierr = PetscOptionsReal("-dm_landau_ln_lambda","Cross section parameter","plexland.c",ctx->lnLam,&ctx->lnLam, NULL);CHKERRQ(ierr); 1398e8d2b73aSMark Adams ierr = PetscOptionsBool("-dm_landau_use_mataxpy_mass", "Use fast but slightly fragile MATAXPY to add mass term", "plexland.c", ctx->use_matrix_mass, &ctx->use_matrix_mass, NULL);CHKERRQ(ierr); 1399cefb98e8SMark Adams ierr = PetscOptionsBool("-dm_landau_use_relativistic_corrections", "Use relativistic corrections", "plexland.c", ctx->use_relativistic_corrections, &ctx->use_relativistic_corrections, NULL);CHKERRQ(ierr); 1400cefb98e8SMark Adams ierr = PetscOptionsBool("-dm_landau_use_energy_tensor_trick", "Use Eero's trick of using grad(v^2/2) instead of v as args to Landau tensor to conserve energy with relativistic corrections and Q1 elements", "plexland.c", ctx->use_energy_tensor_trick, &ctx->use_energy_tensor_trick, NULL);CHKERRQ(ierr); 1401a587d139SMark 14028fdabdddSMark Adams /* get num species with temperature, set defaults */ 1403e0eea495SMark for (ii=1;ii<LANDAU_MAX_SPECIES;ii++) { 14048fdabdddSMark Adams ctx->thermal_temps[ii] = 1; 1405e0eea495SMark ctx->charges[ii] = 1; 1406e0eea495SMark ctx->masses[ii] = 1; 14078fdabdddSMark Adams ctx->n[ii] = 1; 1408e0eea495SMark } 14098fdabdddSMark Adams nt = LANDAU_MAX_SPECIES; 1410e0eea495SMark ierr = PetscOptionsRealArray("-dm_landau_thermal_temps", "Temperature of each species [e,i_0,i_1,...] in keV (must be set to set number of species)", "plexland.c", ctx->thermal_temps, &nt, &flg);CHKERRQ(ierr); 1411e0eea495SMark if (flg) { 1412d618d24fSMark Adams ierr = PetscInfo(dummy, "num_species set to number of thermal temps provided (%" PetscInt_FMT ")\n",nt);CHKERRQ(ierr); 1413e0eea495SMark ctx->num_species = nt; 1414930e68a5SMark Adams } else SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_thermal_temps ,t1,t2,.. must be provided to set the number of species"); 1415e0eea495SMark for (ii=0;ii<ctx->num_species;ii++) ctx->thermal_temps[ii] *= 1.1604525e7; /* convert to Kelvin */ 1416e0eea495SMark nm = LANDAU_MAX_SPECIES-1; 1417e0eea495SMark ierr = PetscOptionsRealArray("-dm_landau_ion_masses", "Mass of each species in units of proton mass [i_0=2,i_1=40...]", "plexland.c", &ctx->masses[1], &nm, &flg);CHKERRQ(ierr); 1418e0eea495SMark if (flg && nm != ctx->num_species-1) { 1419d618d24fSMark Adams SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"num ion masses %" PetscInt_FMT " != num species %" PetscInt_FMT "",nm,ctx->num_species-1); 1420e0eea495SMark } 1421e0eea495SMark nm = LANDAU_MAX_SPECIES; 14228fdabdddSMark Adams ierr = PetscOptionsRealArray("-dm_landau_n", "Number density of each species = n_s * n_0", "plexland.c", ctx->n, &nm, &flg);CHKERRQ(ierr); 1423d618d24fSMark Adams PetscCheckFalse(flg && nm != ctx->num_species,ctx->comm,PETSC_ERR_ARG_WRONG,"wrong num n: %" PetscInt_FMT " != num species %" PetscInt_FMT "",nm,ctx->num_species); 1424e0eea495SMark for (ii=0;ii<LANDAU_MAX_SPECIES;ii++) ctx->masses[ii] *= 1.6720e-27; /* scale by proton mass kg */ 1425e0eea495SMark ctx->masses[0] = 9.10938356e-31; /* electron mass kg (should be about right already) */ 1426e0eea495SMark ctx->m_0 = ctx->masses[0]; /* arbitrary reference mass, electrons */ 1427e0eea495SMark nc = LANDAU_MAX_SPECIES-1; 1428e0eea495SMark ierr = PetscOptionsRealArray("-dm_landau_ion_charges", "Charge of each species in units of proton charge [i_0=2,i_1=18,...]", "plexland.c", &ctx->charges[1], &nc, &flg);CHKERRQ(ierr); 1429d618d24fSMark Adams if (flg) PetscCheck(nc == ctx->num_species-1,ctx->comm,PETSC_ERR_ARG_WRONG,"num charges %" PetscInt_FMT " != num species %" PetscInt_FMT,nc,ctx->num_species-1); 1430e0eea495SMark for (ii=0;ii<LANDAU_MAX_SPECIES;ii++) ctx->charges[ii] *= 1.6022e-19; /* electron/proton charge (MKS) */ 14318a6f2e61SMark Adams /* geometry and grids */ 14328a6f2e61SMark Adams nt = LANDAU_MAX_GRIDS; 14338a6f2e61SMark Adams ierr = PetscOptionsIntArray("-dm_landau_num_species_grid","Number of species on each grid: [ 1, ....] or [S, 0 ....] for single grid","plexland.c", num_species_grid, &nt, &flg);CHKERRQ(ierr); 14348a6f2e61SMark Adams if (flg) { 14358a6f2e61SMark Adams ctx->num_grids = nt; 14368a6f2e61SMark Adams for (ii=nt=0;ii<ctx->num_grids;ii++) nt += num_species_grid[ii]; 1437d618d24fSMark Adams PetscCheck(ctx->num_species == nt,ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_num_species_grid: sum %" PetscInt_FMT " != num_species = %" PetscInt_FMT ". %" PetscInt_FMT " grids (check that number of grids <= LANDAU_MAX_GRIDS = %" PetscInt_FMT ")",nt,ctx->num_species,ctx->num_grids,LANDAU_MAX_GRIDS); 14388a6f2e61SMark Adams } else { 14398a6f2e61SMark Adams ctx->num_grids = 1; // go back to a single grid run 14408a6f2e61SMark Adams num_species_grid[0] = ctx->num_species; 14418a6f2e61SMark Adams } 14428a6f2e61SMark Adams for (ctx->species_offset[0] = ii = 0; ii < ctx->num_grids ; ii++) ctx->species_offset[ii+1] = ctx->species_offset[ii] + num_species_grid[ii]; 1443d618d24fSMark Adams PetscCheck(ctx->species_offset[ctx->num_grids] == ctx->num_species,ctx->comm,PETSC_ERR_ARG_WRONG,"ctx->species_offset[ctx->num_grids] %" PetscInt_FMT " != ctx->num_species = %" PetscInt_FMT " ???????????",ctx->species_offset[ctx->num_grids],ctx->num_species); 14448a6f2e61SMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { 14458a6f2e61SMark Adams int iii = ctx->species_offset[grid]; // normalize with first (arbitrary) species on grid 14468fdabdddSMark Adams v0_grid[grid] = PetscSqrtReal(ctx->k*ctx->thermal_temps[iii]/ctx->masses[iii]); /* arbitrary units for non-dimensionalization: mean velocity in 1D of first species on grid */ 14478a6f2e61SMark Adams } 14488a6f2e61SMark Adams ii = 0; 14498fdabdddSMark Adams ierr = PetscOptionsInt("-dm_landau_v0_grid", "Index of grid to use for setting v_0 (electrons are default). Not recommended to change", "plexland.c", ii, &ii, NULL);CHKERRQ(ierr); 14508fdabdddSMark Adams ctx->v_0 = v0_grid[ii]; /* arbitrary units for non dimensionalization: global mean velocity in 1D of electrons */ 1451e0eea495SMark ctx->t_0 = 8*PETSC_PI*PetscSqr(ctx->epsilon0*ctx->m_0/PetscSqr(ctx->charges[0]))/ctx->lnLam/ctx->n_0*PetscPowReal(ctx->v_0,3); /* note, this t_0 makes nu[0,0]=1 */ 14528a6f2e61SMark Adams /* domain */ 14538a6f2e61SMark Adams nt = LANDAU_MAX_GRIDS; 14548a6f2e61SMark Adams ierr = PetscOptionsRealArray("-dm_landau_domain_radius","Phase space size in units of thermal velocity of grid","plexland.c",ctx->radius,&nt, &flg);CHKERRQ(ierr); 1455d618d24fSMark Adams if (flg) PetscCheck(nt >= ctx->num_grids,ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_domain_radius: given %" PetscInt_FMT " radius != number grids %" PetscInt_FMT,nt,ctx->num_grids); 14568a6f2e61SMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { 14578a6f2e61SMark Adams if (flg && ctx->radius[grid] <= 0) { /* negative is ratio of c */ 14588a6f2e61SMark Adams if (ctx->radius[grid] == 0) ctx->radius[grid] = 0.75; 14598a6f2e61SMark Adams else ctx->radius[grid] = -ctx->radius[grid]; 14608a6f2e61SMark Adams ctx->radius[grid] = ctx->radius[grid]*SPEED_OF_LIGHT/ctx->v_0; // use any species on grid to normalize (v_0 same for all on grid) 1461d618d24fSMark Adams ierr = PetscInfo(dummy, "Change domain radius to %g for grid %" PetscInt_FMT "\n",ctx->radius[grid],grid);CHKERRQ(ierr); 1462e0eea495SMark } 14638a6f2e61SMark Adams ctx->radius[grid] *= v0_grid[grid]/ctx->v_0; // scale domain by thermal radius relative to v_0 1464e0eea495SMark } 14658a6f2e61SMark Adams /* amr parametres */ 14668a6f2e61SMark Adams nt = LANDAU_MAX_GRIDS; 14678a6f2e61SMark Adams ierr = PetscOptionsIntArray("-dm_landau_amr_levels_max", "Number of AMR levels of refinement around origin, after (RE) refinements along z", "plexland.c", ctx->numAMRRefine, &nt, &flg);CHKERRQ(ierr); 1468d618d24fSMark Adams PetscCheckFalse(flg && nt < ctx->num_grids,ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_amr_levels_max: given %" PetscInt_FMT " != number grids %" PetscInt_FMT,nt,ctx->num_grids); 14698a6f2e61SMark Adams nt = LANDAU_MAX_GRIDS; 14708a6f2e61SMark Adams ierr = PetscOptionsIntArray("-dm_landau_amr_post_refine", "Number of levels to uniformly refine after AMR", "plexland.c", ctx->postAMRRefine, &nt, &flg);CHKERRQ(ierr); 14718a6f2e61SMark Adams for (ii=1;ii<ctx->num_grids;ii++) ctx->postAMRRefine[ii] = ctx->postAMRRefine[0]; // all grids the same now 14728a6f2e61SMark Adams ierr = PetscOptionsInt("-dm_landau_amr_re_levels", "Number of levels to refine along v_perp=0, z>0", "plexland.c", ctx->numRERefine, &ctx->numRERefine, &flg);CHKERRQ(ierr); 14738a6f2e61SMark Adams ierr = PetscOptionsInt("-dm_landau_amr_z_refine1", "Number of levels to refine along v_perp=0", "plexland.c", ctx->nZRefine1, &ctx->nZRefine1, &flg);CHKERRQ(ierr); 14748a6f2e61SMark Adams ierr = PetscOptionsInt("-dm_landau_amr_z_refine2", "Number of levels to refine along v_perp=0", "plexland.c", ctx->nZRefine2, &ctx->nZRefine2, &flg);CHKERRQ(ierr); 14758a6f2e61SMark Adams ierr = PetscOptionsReal("-dm_landau_re_radius","velocity range to refine on positive (z>0) r=0 axis for runaways","plexland.c",ctx->re_radius,&ctx->re_radius, &flg);CHKERRQ(ierr); 14768a6f2e61SMark Adams ierr = PetscOptionsReal("-dm_landau_z_radius1","velocity range to refine r=0 axis (for electrons)","plexland.c",ctx->vperp0_radius1,&ctx->vperp0_radius1, &flg);CHKERRQ(ierr); 14778a6f2e61SMark Adams ierr = PetscOptionsReal("-dm_landau_z_radius2","velocity range to refine r=0 axis (for ions) after origin AMR","plexland.c",ctx->vperp0_radius2, &ctx->vperp0_radius2, &flg);CHKERRQ(ierr); 14788a6f2e61SMark Adams /* spherical domain (not used) */ 14798a6f2e61SMark Adams ierr = PetscOptionsInt("-dm_landau_num_sections", "Number of tangential section in (2D) grid, 2, 3, of 4", "plexland.c", ctx->num_sections, &ctx->num_sections, NULL);CHKERRQ(ierr); 14808a6f2e61SMark Adams ierr = PetscOptionsBool("-dm_landau_sphere", "use sphere/semi-circle domain instead of rectangle", "plexland.c", ctx->sphere, &ctx->sphere, &sph_flg);CHKERRQ(ierr); 14818a6f2e61SMark Adams ierr = PetscOptionsBool("-dm_landau_inflate", "With sphere, inflate for curved edges", "plexland.c", ctx->inflate, &ctx->inflate, &flg);CHKERRQ(ierr); 1482e0eea495SMark ierr = PetscOptionsReal("-dm_landau_e_radius","Electron thermal velocity, used for circular meshes","plexland.c",ctx->e_radius, &ctx->e_radius, &flg);CHKERRQ(ierr); 1483e0eea495SMark if (flg && !sph_flg) ctx->sphere = PETSC_TRUE; /* you gave me an e radius but did not set sphere, user error really */ 1484e0eea495SMark if (!flg) { 14858a6f2e61SMark Adams ctx->e_radius = 1.5*PetscSqrtReal(8*ctx->k*ctx->thermal_temps[0]/ctx->masses[0]/PETSC_PI)/ctx->v_0; 1486e0eea495SMark } 14878a6f2e61SMark Adams nt = LANDAU_MAX_GRIDS; 14888a6f2e61SMark Adams ierr = PetscOptionsRealArray("-dm_landau_i_radius","Ion thermal velocity, used for circular meshes","plexland.c",ctx->i_radius, &nt, &flg);CHKERRQ(ierr); 14898a6f2e61SMark Adams if (flg && !sph_flg) ctx->sphere = PETSC_TRUE; 14908a6f2e61SMark Adams if (!flg) { 14918a6f2e61SMark Adams ctx->i_radius[0] = 1.5*PetscSqrtReal(8*ctx->k*ctx->thermal_temps[1]/ctx->masses[1]/PETSC_PI)/ctx->v_0; // need to correct for ion grid domain 14928a6f2e61SMark Adams } 1493d618d24fSMark Adams if (flg) PetscCheck(ctx->num_grids == nt,ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_i_radius: %" PetscInt_FMT " != num_species = %" PetscInt_FMT,nt,ctx->num_grids); 1494d618d24fSMark Adams if (ctx->sphere) PetscCheck(ctx->e_radius > ctx->i_radius[0],ctx->comm,PETSC_ERR_ARG_WRONG,"bad radii: %g < %g < %g",ctx->i_radius[0],ctx->e_radius,ctx->radius[0]); 14958a6f2e61SMark Adams /* processing options */ 14968a6f2e61SMark Adams ierr = PetscOptionsBool("-dm_landau_gpu_assembly", "Assemble Jacobian on GPU", "plexland.c", ctx->gpu_assembly, &ctx->gpu_assembly, NULL);CHKERRQ(ierr); 1497bfc784b7SMark Adams if (ctx->deviceType == LANDAU_CPU || ctx->deviceType == LANDAU_KOKKOS) { // make Kokkos 1498aab769cbSMark Adams ierr = PetscOptionsBool("-dm_landau_coo_assembly", "Assemble Jacobian with Kokkos on 'device'", "plexland.c", ctx->coo_assembly, &ctx->coo_assembly, NULL);CHKERRQ(ierr); 1499aab769cbSMark Adams if (ctx->coo_assembly) PetscCheck(ctx->gpu_assembly,ctx->comm,PETSC_ERR_ARG_WRONG,"COO assembly requires 'gpu assembly' even if Kokkos 'CPU' back-end %d",ctx->coo_assembly); 1500e607c864SMark Adams } 1501bfc784b7SMark Adams ierr = PetscOptionsBool("-dm_landau_jacobian_field_major_order", "Reorder Jacobian for GPU assembly with field major, or block diagonal, ordering", "plexland.c", ctx->jacobian_field_major_order, &ctx->jacobian_field_major_order, NULL);CHKERRQ(ierr); 1502bfc784b7SMark Adams if (ctx->jacobian_field_major_order) PetscCheck(ctx->gpu_assembly,ctx->comm,PETSC_ERR_ARG_WRONG,"-dm_landau_jacobian_field_major_order requires -dm_landau_gpu_assembly"); 1503e0eea495SMark ierr = PetscOptionsEnd();CHKERRQ(ierr); 1504cb25d741SMark Adams 1505e0eea495SMark for (ii=ctx->num_species;ii<LANDAU_MAX_SPECIES;ii++) ctx->masses[ii] = ctx->thermal_temps[ii] = ctx->charges[ii] = 0; 1506e0eea495SMark if (ctx->verbose > 0) { 1507930e68a5SMark Adams ierr = PetscPrintf(ctx->comm, "masses: e=%10.3e; ions in proton mass units: %10.3e %10.3e ...\n",ctx->masses[0],ctx->masses[1]/1.6720e-27,ctx->num_species>2 ? ctx->masses[2]/1.6720e-27 : 0);CHKERRQ(ierr); 1508930e68a5SMark Adams ierr = PetscPrintf(ctx->comm, "charges: e=%10.3e; charges in elementary units: %10.3e %10.3e\n", ctx->charges[0],-ctx->charges[1]/ctx->charges[0],ctx->num_species>2 ? -ctx->charges[2]/ctx->charges[0] : 0);CHKERRQ(ierr); 15098fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "n: e: %10.3e i: %10.3e %10.3e\n", ctx->n[0],ctx->n[1],ctx->num_species>2 ? ctx->n[2] : 0);CHKERRQ(ierr); 1510d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "thermal T (K): e=%10.3e i=%10.3e %10.3e. v_0=%10.3e (%10.3ec) n_0=%10.3e t_0=%10.3e, %s, %s, %" PetscInt_FMT " batched\n", ctx->thermal_temps[0], ctx->thermal_temps[1], (ctx->num_species>2) ? ctx->thermal_temps[2] : 0, ctx->v_0, ctx->v_0/SPEED_OF_LIGHT, ctx->n_0, ctx->t_0, ctx->use_relativistic_corrections ? "relativistic" : "classical", ctx->use_energy_tensor_trick ? "Use trick" : "Intuitive",ctx->batch_sz);CHKERRQ(ierr); 1511d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "Domain radius (AMR levels) grid %" PetscInt_FMT ": %10.3e (%" PetscInt_FMT ") ",0,ctx->radius[0],ctx->numAMRRefine[0]);CHKERRQ(ierr); 1512d618d24fSMark Adams for (ii=1;ii<ctx->num_grids;ii++) {ierr = PetscPrintf(ctx->comm, ", %" PetscInt_FMT ": %10.3e (%" PetscInt_FMT ") ",ii,ctx->radius[ii],ctx->numAMRRefine[ii]);CHKERRQ(ierr);} 15138a6f2e61SMark Adams ierr = PetscPrintf(ctx->comm,"\n");CHKERRQ(ierr); 1514cb25d741SMark Adams if (ctx->jacobian_field_major_order) { 1515cb25d741SMark Adams ierr = PetscPrintf(ctx->comm,"Using field major order for GPU Jacobian\n");CHKERRQ(ierr); 1516cb25d741SMark Adams } else { 1517cb25d741SMark Adams ierr = PetscPrintf(ctx->comm,"Using default Plex order for all matrices\n");CHKERRQ(ierr); 1518cb25d741SMark Adams } 1519e0eea495SMark } 1520e0eea495SMark ierr = DMDestroy(&dummy);CHKERRQ(ierr); 1521e0eea495SMark { 1522e0eea495SMark PetscMPIInt rank; 1523930e68a5SMark Adams ierr = MPI_Comm_rank(ctx->comm, &rank);CHKERRMPI(ierr); 1524c751c0a2SMark Adams ctx->stage = 0; 1525a82411e9SMark Adams ierr = PetscLogEventRegister("Landau Create", DM_CLASSID, &ctx->events[13]);CHKERRQ(ierr); /* 13 */ 1526e607c864SMark Adams ierr = PetscLogEventRegister(" GPU ass. setup", DM_CLASSID, &ctx->events[2]);CHKERRQ(ierr); /* 2 */ 1527e607c864SMark Adams ierr = PetscLogEventRegister(" Build matrix", DM_CLASSID, &ctx->events[12]);CHKERRQ(ierr); /* 12 */ 1528e607c864SMark Adams ierr = PetscLogEventRegister(" Assembly maps", DM_CLASSID, &ctx->events[15]);CHKERRQ(ierr); /* 15 */ 1529e607c864SMark Adams ierr = PetscLogEventRegister("Landau Mass mat", DM_CLASSID, &ctx->events[14]);CHKERRQ(ierr); /* 14 */ 1530e8d2b73aSMark Adams ierr = PetscLogEventRegister("Landau Operator", DM_CLASSID, &ctx->events[11]);CHKERRQ(ierr); /* 11 */ 1531930e68a5SMark Adams ierr = PetscLogEventRegister("Landau Jacobian", DM_CLASSID, &ctx->events[0]);CHKERRQ(ierr); /* 0 */ 1532e8d2b73aSMark Adams ierr = PetscLogEventRegister("Landau Mass", DM_CLASSID, &ctx->events[9]);CHKERRQ(ierr); /* 9 */ 1533e8d2b73aSMark Adams ierr = PetscLogEventRegister(" Preamble", DM_CLASSID, &ctx->events[10]);CHKERRQ(ierr); /* 10 */ 1534e8d2b73aSMark Adams ierr = PetscLogEventRegister(" static IP Data", DM_CLASSID, &ctx->events[7]);CHKERRQ(ierr); /* 7 */ 1535e8d2b73aSMark Adams ierr = PetscLogEventRegister(" dynamic IP-Jac", DM_CLASSID, &ctx->events[1]);CHKERRQ(ierr); /* 1 */ 1536e8d2b73aSMark Adams ierr = PetscLogEventRegister(" Kernel-init", DM_CLASSID, &ctx->events[3]);CHKERRQ(ierr); /* 3 */ 1537e8d2b73aSMark Adams ierr = PetscLogEventRegister(" Jac-f-df (GPU)", DM_CLASSID, &ctx->events[8]);CHKERRQ(ierr); /* 8 */ 1538e607c864SMark Adams ierr = PetscLogEventRegister(" J Kernel (GPU)", DM_CLASSID, &ctx->events[4]);CHKERRQ(ierr); /* 4 */ 1539e607c864SMark Adams ierr = PetscLogEventRegister(" M Kernel (GPU)", DM_CLASSID, &ctx->events[16]);CHKERRQ(ierr); /* 16 */ 1540930e68a5SMark Adams ierr = PetscLogEventRegister(" Copy to CPU", DM_CLASSID, &ctx->events[5]);CHKERRQ(ierr); /* 5 */ 1541a82411e9SMark Adams ierr = PetscLogEventRegister(" CPU assemble", DM_CLASSID, &ctx->events[6]);CHKERRQ(ierr); /* 6 */ 1542930e68a5SMark Adams 1543e0eea495SMark if (rank) { /* turn off output stuff for duplicate runs - do we need to add the prefix to all this? */ 1544e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-snes_converged_reason");CHKERRQ(ierr); 1545e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-ksp_converged_reason");CHKERRQ(ierr); 1546e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-snes_monitor");CHKERRQ(ierr); 1547e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-ksp_monitor");CHKERRQ(ierr); 1548e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-ts_monitor");CHKERRQ(ierr); 1549e607c864SMark Adams ierr = PetscOptionsClearValue(NULL,"-ts_view");CHKERRQ(ierr); 1550e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-ts_adapt_monitor");CHKERRQ(ierr); 1551e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-dm_landau_amr_dm_view");CHKERRQ(ierr); 1552e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-dm_landau_amr_vec_view");CHKERRQ(ierr); 15538a6f2e61SMark Adams ierr = PetscOptionsClearValue(NULL,"-dm_landau_mass_dm_view");CHKERRQ(ierr); 15548a6f2e61SMark Adams ierr = PetscOptionsClearValue(NULL,"-dm_landau_mass_view");CHKERRQ(ierr); 15558a6f2e61SMark Adams ierr = PetscOptionsClearValue(NULL,"-dm_landau_jacobian_view");CHKERRQ(ierr); 15568a6f2e61SMark Adams ierr = PetscOptionsClearValue(NULL,"-dm_landau_mat_view");CHKERRQ(ierr); 1557aab769cbSMark Adams ierr = PetscOptionsClearValue(NULL,"-pc_bjkokkos_ksp_converged_reason");CHKERRQ(ierr); 1558aab769cbSMark Adams ierr = PetscOptionsClearValue(NULL,"-pc_bjkokkos_ksp_monitor");CHKERRQ(ierr); 15598a6f2e61SMark Adams ierr = PetscOptionsClearValue(NULL,"-");CHKERRQ(ierr); 1560e0eea495SMark ierr = PetscOptionsClearValue(NULL,"-info");CHKERRQ(ierr); 1561e0eea495SMark } 1562e0eea495SMark } 1563e0eea495SMark PetscFunctionReturn(0); 1564e0eea495SMark } 1565e0eea495SMark 1566cb25d741SMark Adams static PetscErrorCode CreateStaticGPUData(PetscInt dim, IS grid_batch_is_inv[], LandauCtx *ctx) 1567a82411e9SMark Adams { 1568a82411e9SMark Adams PetscErrorCode ierr; 1569a82411e9SMark Adams PetscSection section[LANDAU_MAX_GRIDS],globsection[LANDAU_MAX_GRIDS]; 1570a82411e9SMark Adams PetscQuadrature quad; 1571a82411e9SMark Adams const PetscReal *quadWeights; 1572bfc784b7SMark Adams PetscInt numCells[LANDAU_MAX_GRIDS],Nq,Nf[LANDAU_MAX_GRIDS], ncellsTot=0; 1573a82411e9SMark Adams PetscTabulation *Tf; 1574a82411e9SMark Adams PetscDS prob; 1575a82411e9SMark Adams 1576a82411e9SMark Adams PetscFunctionBegin; 1577a82411e9SMark Adams ierr = DMGetDS(ctx->plex[0], &prob);CHKERRQ(ierr); // same DS for all grids 1578a82411e9SMark Adams ierr = PetscDSGetTabulation(prob, &Tf);CHKERRQ(ierr); // Bf, &Df same for all grids 1579a82411e9SMark Adams /* DS, Tab and quad is same on all grids */ 1580d618d24fSMark Adams PetscCheck(ctx->plex[0],ctx->comm,PETSC_ERR_ARG_WRONG,"Plex not created"); 1581a82411e9SMark Adams ierr = PetscFEGetQuadrature(ctx->fe[0], &quad);CHKERRQ(ierr); 1582d2319daeSMark Adams ierr = PetscQuadratureGetData(quad, NULL, NULL, &Nq, NULL, &quadWeights);CHKERRQ(ierr); 1583d618d24fSMark Adams PetscCheck(Nq <= LANDAU_MAX_NQ,ctx->comm,PETSC_ERR_ARG_WRONG,"Order too high. Nq = %" PetscInt_FMT " > LANDAU_MAX_NQ (%" PetscInt_FMT ")",Nq,LANDAU_MAX_NQ); 1584a82411e9SMark Adams /* setup each grid */ 1585a82411e9SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 1586a82411e9SMark Adams PetscInt cStart, cEnd; 15872c71b3e2SJacob Faibussowitsch PetscCheckFalse(ctx->plex[grid] == NULL,ctx->comm,PETSC_ERR_ARG_WRONG,"Plex not created"); 1588a82411e9SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, &cEnd);CHKERRQ(ierr); 1589a82411e9SMark Adams numCells[grid] = cEnd - cStart; // grids can have different topology 1590a82411e9SMark Adams ierr = DMGetLocalSection(ctx->plex[grid], §ion[grid]);CHKERRQ(ierr); 1591a82411e9SMark Adams ierr = DMGetGlobalSection(ctx->plex[grid], &globsection[grid]);CHKERRQ(ierr); 1592a82411e9SMark Adams ierr = PetscSectionGetNumFields(section[grid], &Nf[grid]);CHKERRQ(ierr); 1593bfc784b7SMark Adams ncellsTot += numCells[grid]; 1594a82411e9SMark Adams } 1595a82411e9SMark Adams #define MAP_BF_SIZE (64*LANDAU_DIM*LANDAU_DIM*LANDAU_MAX_Q_FACE*LANDAU_MAX_SPECIES) 1596a82411e9SMark Adams /* create GPU assembly data */ 1597a82411e9SMark Adams if (ctx->gpu_assembly) { /* we need GPU object with GPU assembly */ 1598a82411e9SMark Adams PetscContainer container; 1599a82411e9SMark Adams PetscScalar elemMatrix[LANDAU_MAX_NQ*LANDAU_MAX_NQ*LANDAU_MAX_SPECIES*LANDAU_MAX_SPECIES], *elMat; 1600a82411e9SMark Adams pointInterpolationP4est pointMaps[MAP_BF_SIZE][LANDAU_MAX_Q_FACE]; 1601a82411e9SMark Adams P4estVertexMaps *maps; 1602bfc784b7SMark Adams const PetscInt *plex_batch=NULL,Nb=Nq; // tensor elements; 1603cb25d741SMark Adams 1604a82411e9SMark Adams /* create GPU asssembly data */ 1605bfc784b7SMark Adams ierr = PetscInfo(ctx->plex[0], "Make GPU maps %d\n",1);CHKERRQ(ierr); 1606a82411e9SMark Adams ierr = PetscLogEventBegin(ctx->events[2],0,0,0,0);CHKERRQ(ierr); 1607a82411e9SMark Adams ierr = PetscMalloc(sizeof(*maps)*ctx->num_grids, &maps);CHKERRQ(ierr); 1608a82411e9SMark Adams 1609aab769cbSMark Adams if (ctx->coo_assembly) { // setup COO assembly -- put COO metadata directly in ctx->SData_d 1610bfc784b7SMark Adams ierr = PetscMalloc3(ncellsTot+1,&ctx->SData_d.coo_elem_offsets,ncellsTot,&ctx->SData_d.coo_elem_fullNb,ncellsTot, &ctx->SData_d.coo_elem_point_offsets);CHKERRQ(ierr); // array of integer pointers 1611bfc784b7SMark Adams ctx->SData_d.coo_elem_offsets[0] = 0; // finish later 1612d618d24fSMark Adams ierr = PetscInfo(ctx->plex[0], "COO initialization, %" PetscInt_FMT " cells\n",ncellsTot);CHKERRQ(ierr); 1613bfc784b7SMark Adams ctx->SData_d.n_coo_cellsTot = ncellsTot; 1614bfc784b7SMark Adams } else { 1615bfc784b7SMark Adams ctx->SData_d.coo_elem_offsets = ctx->SData_d.coo_elem_fullNb = NULL; 1616bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets = NULL; 1617bfc784b7SMark Adams ctx->SData_d.n_coo_cellsTot = 0; 1618bfc784b7SMark Adams } 1619bfc784b7SMark Adams 162013241b68SMark Adams ctx->SData_d.coo_max_fullnb = 0; 1621bfc784b7SMark Adams for (PetscInt grid=0,glb_elem_idx=0;grid<ctx->num_grids;grid++) { 1622d2319daeSMark Adams PetscInt cStart, cEnd, Nfloc = Nf[grid], totDim = Nfloc*Nq; 1623cb25d741SMark Adams if (grid_batch_is_inv[grid]) { 1624cb25d741SMark Adams ierr = ISGetIndices(grid_batch_is_inv[grid], &plex_batch);CHKERRQ(ierr); 1625cb25d741SMark Adams } 1626a82411e9SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, &cEnd);CHKERRQ(ierr); 1627a82411e9SMark Adams // make maps 1628a82411e9SMark Adams maps[grid].d_self = NULL; 1629a82411e9SMark Adams maps[grid].num_elements = numCells[grid]; 1630a82411e9SMark Adams maps[grid].num_face = (PetscInt)(pow(Nq,1./((double)dim))+.001); // Q 1631a82411e9SMark Adams maps[grid].num_face = (PetscInt)(pow(maps[grid].num_face,(double)(dim-1))+.001); // Q^2 1632a82411e9SMark Adams maps[grid].num_reduced = 0; 1633a82411e9SMark Adams maps[grid].deviceType = ctx->deviceType; 1634a82411e9SMark Adams maps[grid].numgrids = ctx->num_grids; 1635a82411e9SMark Adams // count reduced and get 1636a82411e9SMark Adams ierr = PetscMalloc(maps[grid].num_elements * sizeof(*maps[grid].gIdx), &maps[grid].gIdx);CHKERRQ(ierr); 1637bfc784b7SMark Adams for (int ej = cStart, eidx = 0 ; ej < cEnd; ++ej, ++eidx, glb_elem_idx++) { 1638bfc784b7SMark Adams if (ctx->SData_d.coo_elem_offsets) ctx->SData_d.coo_elem_offsets[glb_elem_idx+1] = ctx->SData_d.coo_elem_offsets[glb_elem_idx]; // start with last one, then add 1639d2319daeSMark Adams for (int fieldA=0;fieldA<Nf[grid];fieldA++) { 1640bfc784b7SMark Adams int fullNb = 0; 1641d2319daeSMark Adams for (int q = 0; q < Nb; ++q) { 1642a82411e9SMark Adams PetscInt numindices,*indices; 1643a82411e9SMark Adams PetscScalar *valuesOrig = elMat = elemMatrix; 1644bfc784b7SMark Adams ierr = PetscArrayzero(elMat, totDim*totDim);CHKERRQ(ierr); 1645a82411e9SMark Adams elMat[ (fieldA*Nb + q)*totDim + fieldA*Nb + q] = 1; 1646a82411e9SMark Adams ierr = DMPlexGetClosureIndices(ctx->plex[grid], section[grid], globsection[grid], ej, PETSC_TRUE, &numindices, &indices, NULL, (PetscScalar **) &elMat);CHKERRQ(ierr); 1647a82411e9SMark Adams for (PetscInt f = 0 ; f < numindices ; ++f) { // look for a non-zero on the diagonal 1648a82411e9SMark Adams if (PetscAbs(PetscRealPart(elMat[f*numindices + f])) > PETSC_MACHINE_EPSILON) { 1649a82411e9SMark Adams // found it 1650cb25d741SMark Adams if (PetscAbs(PetscRealPart(elMat[f*numindices + f] - 1.)) < PETSC_MACHINE_EPSILON) { // normal vertex 1.0 1651cb25d741SMark Adams if (plex_batch) { 1652cb25d741SMark Adams maps[grid].gIdx[eidx][fieldA][q] = (LandauIdx) plex_batch[indices[f]]; 1653cb25d741SMark Adams } else { 1654cb25d741SMark Adams maps[grid].gIdx[eidx][fieldA][q] = (LandauIdx)indices[f]; 1655cb25d741SMark Adams } 1656bfc784b7SMark Adams fullNb++; 1657a82411e9SMark Adams } else { //found a constraint 1658a82411e9SMark Adams int jj = 0; 1659a82411e9SMark Adams PetscReal sum = 0; 1660a82411e9SMark Adams const PetscInt ff = f; 1661cb25d741SMark Adams maps[grid].gIdx[eidx][fieldA][q] = -maps[grid].num_reduced - 1; // store (-)index: id = -(idx+1): idx = -id - 1 1662b2767044SMark Adams 1663b2767044SMark Adams do { // constraints are continuous in Plex - exploit that here 1664cb25d741SMark Adams int ii; // get 'scale' 1665cb25d741SMark Adams for (ii = 0, pointMaps[maps[grid].num_reduced][jj].scale = 0; ii < maps[grid].num_face; ii++) { // sum row of outer product to recover vector value 1666cb25d741SMark Adams if (ff + ii < numindices) { // 3D has Q and Q^2 interps so might run off end. We could test that elMat[f*numindices + ff + ii] > 0, and break if not 1667a82411e9SMark Adams pointMaps[maps[grid].num_reduced][jj].scale += PetscRealPart(elMat[f*numindices + ff + ii]); 1668a82411e9SMark Adams } 1669a82411e9SMark Adams } 1670cb25d741SMark Adams sum += pointMaps[maps[grid].num_reduced][jj].scale; // diagnostic 1671cb25d741SMark Adams // get 'gid' 1672cb25d741SMark Adams if (pointMaps[maps[grid].num_reduced][jj].scale == 0) pointMaps[maps[grid].num_reduced][jj].gid = -1; // 3D has Q and Q^2 interps 1673cb25d741SMark Adams else { 1674cb25d741SMark Adams if (plex_batch) { 1675cb25d741SMark Adams pointMaps[maps[grid].num_reduced][jj].gid = plex_batch[indices[f]]; 1676cb25d741SMark Adams } else { 1677cb25d741SMark Adams pointMaps[maps[grid].num_reduced][jj].gid = indices[f]; 1678cb25d741SMark Adams } 1679bfc784b7SMark Adams fullNb++; 1680cb25d741SMark Adams } 1681a82411e9SMark Adams } while (++jj < maps[grid].num_face && ++f < numindices); // jj is incremented if we hit the end 1682b2767044SMark Adams while (jj < maps[grid].num_face) { 1683a82411e9SMark Adams pointMaps[maps[grid].num_reduced][jj].scale = 0; 1684a82411e9SMark Adams pointMaps[maps[grid].num_reduced][jj].gid = -1; 1685b2767044SMark Adams jj++; 1686a82411e9SMark Adams } 1687a82411e9SMark Adams if (PetscAbs(sum-1.0) > 10*PETSC_MACHINE_EPSILON) { // debug 1688a82411e9SMark Adams int d,f; 1689a82411e9SMark Adams PetscReal tmp = 0; 1690d618d24fSMark Adams ierr = PetscPrintf(PETSC_COMM_SELF,"\t\t%" PetscInt_FMT ".%" PetscInt_FMT ".%" PetscInt_FMT ") ERROR total I = %22.16e (LANDAU_MAX_Q_FACE=%d, #face=%" PetscInt_FMT ")\n",eidx,q,fieldA,sum,LANDAU_MAX_Q_FACE,maps[grid].num_face);CHKERRQ(ierr); 1691a82411e9SMark Adams for (d = 0, tmp = 0; d < numindices; ++d) { 1692d618d24fSMark Adams if (tmp!=0 && PetscAbs(tmp-1.0) > 10*PETSC_MACHINE_EPSILON) {ierr = PetscPrintf(PETSC_COMM_WORLD,"%3" PetscInt_FMT ") %3" PetscInt_FMT ": ",d,indices[d]);CHKERRQ(ierr);} 1693a82411e9SMark Adams for (f = 0; f < numindices; ++f) { 1694a82411e9SMark Adams tmp += PetscRealPart(elMat[d*numindices + f]); 1695a82411e9SMark Adams } 1696a82411e9SMark Adams if (tmp!=0) {ierr = PetscPrintf(ctx->comm," | %22.16e\n",tmp);CHKERRQ(ierr);} 1697a82411e9SMark Adams } 1698a82411e9SMark Adams } 1699a82411e9SMark Adams maps[grid].num_reduced++; 17002c71b3e2SJacob Faibussowitsch PetscCheckFalse(maps[grid].num_reduced>=MAP_BF_SIZE,PETSC_COMM_SELF, PETSC_ERR_PLIB, "maps[grid].num_reduced %d > %d",maps[grid].num_reduced,MAP_BF_SIZE); 1701a82411e9SMark Adams } 1702a82411e9SMark Adams break; 1703a82411e9SMark Adams } 1704a82411e9SMark Adams } 1705a82411e9SMark Adams // cleanup 1706a82411e9SMark Adams ierr = DMPlexRestoreClosureIndices(ctx->plex[grid], section[grid], globsection[grid], ej, PETSC_TRUE, &numindices, &indices, NULL, (PetscScalar **) &elMat);CHKERRQ(ierr); 1707a82411e9SMark Adams if (elMat != valuesOrig) {ierr = DMRestoreWorkArray(ctx->plex[grid], numindices*numindices, MPIU_SCALAR, &elMat);CHKERRQ(ierr);} 1708a82411e9SMark Adams } 1709aab769cbSMark Adams if (ctx->coo_assembly) { // setup COO assembly 1710bfc784b7SMark Adams ctx->SData_d.coo_elem_offsets[glb_elem_idx+1] += fullNb*fullNb; // one species block, adds a block for each species, on this element in this grid 1711bfc784b7SMark Adams if (fieldA==0) { // cache full Nb for this element, on this grid per species 1712bfc784b7SMark Adams ctx->SData_d.coo_elem_fullNb[glb_elem_idx] = fullNb; 171313241b68SMark Adams if (fullNb>ctx->SData_d.coo_max_fullnb) ctx->SData_d.coo_max_fullnb = fullNb; 1714d618d24fSMark Adams } else PetscCheck(ctx->SData_d.coo_elem_fullNb[glb_elem_idx] == fullNb,PETSC_COMM_SELF, PETSC_ERR_PLIB, "full element size change with species %" PetscInt_FMT " %" PetscInt_FMT,ctx->SData_d.coo_elem_fullNb[glb_elem_idx],fullNb); 1715bfc784b7SMark Adams } 1716cb25d741SMark Adams } // field 1717bfc784b7SMark Adams } // cell 1718a82411e9SMark Adams // allocate and copy point data maps[grid].gIdx[eidx][field][q] 1719a82411e9SMark Adams ierr = PetscMalloc(maps[grid].num_reduced * sizeof(*maps[grid].c_maps), &maps[grid].c_maps);CHKERRQ(ierr); 1720d2319daeSMark Adams for (int ej = 0; ej < maps[grid].num_reduced; ++ej) { 1721d2319daeSMark Adams for (int q = 0; q < maps[grid].num_face; ++q) { 1722a82411e9SMark Adams maps[grid].c_maps[ej][q].scale = pointMaps[ej][q].scale; 1723a82411e9SMark Adams maps[grid].c_maps[ej][q].gid = pointMaps[ej][q].gid; 1724a82411e9SMark Adams } 1725a82411e9SMark Adams } 1726a82411e9SMark Adams #if defined(PETSC_HAVE_KOKKOS_KERNELS) 1727a82411e9SMark Adams if (ctx->deviceType == LANDAU_KOKKOS) { 1728a82411e9SMark Adams ierr = LandauKokkosCreateMatMaps(maps, pointMaps, Nf, Nq, grid);CHKERRQ(ierr); // imples Kokkos does 1729a82411e9SMark Adams } // else could be CUDA 1730a82411e9SMark Adams #endif 1731a82411e9SMark Adams #if defined(PETSC_HAVE_CUDA) 1732a82411e9SMark Adams if (ctx->deviceType == LANDAU_CUDA) { 1733a82411e9SMark Adams ierr = LandauCUDACreateMatMaps(maps, pointMaps, Nf, Nq, grid);CHKERRQ(ierr); 1734a82411e9SMark Adams } 1735a82411e9SMark Adams #endif 1736cb25d741SMark Adams if (plex_batch) { 1737cb25d741SMark Adams ierr = ISRestoreIndices(grid_batch_is_inv[grid], &plex_batch);CHKERRQ(ierr); 1738cb25d741SMark Adams ierr = ISDestroy(&grid_batch_is_inv[grid]);CHKERRQ(ierr); // we are done with this 1739cb25d741SMark Adams } 1740a82411e9SMark Adams } /* grids */ 1741bfc784b7SMark Adams // finish COO 1742aab769cbSMark Adams if (ctx->coo_assembly) { // setup COO assembly 1743bfc784b7SMark Adams PetscInt *oor, *ooc; 1744bfc784b7SMark Adams ctx->SData_d.coo_size = ctx->SData_d.coo_elem_offsets[ncellsTot]*ctx->batch_sz; 1745bfc784b7SMark Adams ierr = PetscMalloc2(ctx->SData_d.coo_size,&oor,ctx->SData_d.coo_size,&ooc);CHKERRQ(ierr); 1746bfc784b7SMark Adams for (int i=0;i<ctx->SData_d.coo_size;i++) oor[i] = ooc[i] = -1; 1747bfc784b7SMark Adams // get 1748bfc784b7SMark Adams for (int grid=0,glb_elem_idx=0;grid<ctx->num_grids;grid++) { 1749bfc784b7SMark Adams for (int ej = 0 ; ej < numCells[grid] ; ++ej, glb_elem_idx++) { 1750bfc784b7SMark Adams const int fullNb = ctx->SData_d.coo_elem_fullNb[glb_elem_idx]; 1751bfc784b7SMark Adams const LandauIdx *const Idxs = &maps[grid].gIdx[ej][0][0]; // just use field-0 maps, They should be the same but this is just for COO storage 1752bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][0] = 0; 1753bfc784b7SMark Adams for (int f=0, cnt2=0;f<Nb;f++) { 1754bfc784b7SMark Adams int idx = Idxs[f]; 1755bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f+1] = ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f]; // start at last 1756bfc784b7SMark Adams if (idx >= 0) { 1757bfc784b7SMark Adams cnt2++; 1758bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f+1]++; // inc 1759bfc784b7SMark Adams } else { 1760bfc784b7SMark Adams idx = -idx - 1; 1761bfc784b7SMark Adams for (int q = 0 ; q < maps[grid].num_face; q++) { 1762bfc784b7SMark Adams if (maps[grid].c_maps[idx][q].gid < 0) break; 1763bfc784b7SMark Adams cnt2++; 1764bfc784b7SMark Adams ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f+1]++; // inc 1765bfc784b7SMark Adams } 1766bfc784b7SMark Adams } 1767bfc784b7SMark Adams PetscCheck(cnt2 <= fullNb,PETSC_COMM_SELF, PETSC_ERR_PLIB, "wrong count %d < %d",fullNb,cnt2); 1768bfc784b7SMark Adams } 1769bfc784b7SMark Adams PetscCheck(ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][Nb]==fullNb,PETSC_COMM_SELF, PETSC_ERR_PLIB, "coo_elem_point_offsets size %d != fullNb=%d",ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][Nb],fullNb); 1770bfc784b7SMark Adams } 1771bfc784b7SMark Adams } 1772bfc784b7SMark Adams // set 1773bfc784b7SMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { 1774bfc784b7SMark Adams for (int grid=0,glb_elem_idx=0;grid<ctx->num_grids;grid++) { 1775bfc784b7SMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); 1776bfc784b7SMark Adams for (int ej = 0 ; ej < numCells[grid] ; ++ej, glb_elem_idx++) { 1777bfc784b7SMark Adams const int fullNb = ctx->SData_d.coo_elem_fullNb[glb_elem_idx],fullNb2=fullNb*fullNb; 1778bfc784b7SMark Adams // set (i,j) 1779bfc784b7SMark Adams for (int fieldA=0;fieldA<Nf[grid];fieldA++) { 1780bfc784b7SMark Adams const LandauIdx *const Idxs = &maps[grid].gIdx[ej][fieldA][0]; 1781bfc784b7SMark Adams int rows[LANDAU_MAX_Q_FACE],cols[LANDAU_MAX_Q_FACE]; 1782bfc784b7SMark Adams for (int f = 0; f < Nb; ++f) { 1783bfc784b7SMark Adams const int nr = ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f+1] - ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f]; 1784bfc784b7SMark Adams if (nr==1) rows[0] = Idxs[f]; 1785bfc784b7SMark Adams else { 1786bfc784b7SMark Adams const int idx = -Idxs[f] - 1; 1787bfc784b7SMark Adams for (int q = 0; q < nr; q++) { 1788bfc784b7SMark Adams rows[q] = maps[grid].c_maps[idx][q].gid; 1789bfc784b7SMark Adams } 1790bfc784b7SMark Adams } 1791bfc784b7SMark Adams for (int g = 0; g < Nb; ++g) { 1792bfc784b7SMark Adams const int nc = ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][g+1] - ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][g]; 1793bfc784b7SMark Adams if (nc==1) cols[0] = Idxs[g]; 1794bfc784b7SMark Adams else { 1795bfc784b7SMark Adams const int idx = -Idxs[g] - 1; 1796bfc784b7SMark Adams for (int q = 0; q < nc; q++) { 1797bfc784b7SMark Adams cols[q] = maps[grid].c_maps[idx][q].gid; 1798bfc784b7SMark Adams } 1799bfc784b7SMark Adams } 1800bfc784b7SMark Adams const int idx0 = b_id*ctx->SData_d.coo_elem_offsets[ncellsTot] + ctx->SData_d.coo_elem_offsets[glb_elem_idx] + fieldA*fullNb2 + fullNb * ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][f] + nr * ctx->SData_d.coo_elem_point_offsets[glb_elem_idx][g]; 1801bfc784b7SMark Adams for (int q = 0, idx = idx0; q < nr; q++) { 1802bfc784b7SMark Adams for (int d = 0; d < nc; d++, idx++) { 1803bfc784b7SMark Adams oor[idx] = rows[q] + moffset; 1804bfc784b7SMark Adams ooc[idx] = cols[d] + moffset; 1805bfc784b7SMark Adams } 1806bfc784b7SMark Adams } 1807bfc784b7SMark Adams } 1808bfc784b7SMark Adams } 1809bfc784b7SMark Adams } 1810bfc784b7SMark Adams } // cell 1811bfc784b7SMark Adams } // grid 1812bfc784b7SMark Adams } // batch 1813bfc784b7SMark Adams ierr = MatSetPreallocationCOO(ctx->J,ctx->SData_d.coo_size,oor,ooc);CHKERRQ(ierr); 1814bfc784b7SMark Adams ierr = PetscFree2(oor,ooc);CHKERRQ(ierr); 1815bfc784b7SMark Adams } 1816bfc784b7SMark Adams ierr = PetscContainerCreate(PETSC_COMM_SELF, &container);CHKERRQ(ierr); 1817bfc784b7SMark Adams ierr = PetscContainerSetPointer(container, (void *)maps);CHKERRQ(ierr); 1818bfc784b7SMark Adams ierr = PetscContainerSetUserDestroy(container, LandauGPUMapsDestroy);CHKERRQ(ierr); 1819bfc784b7SMark Adams ierr = PetscObjectCompose((PetscObject) ctx->J, "assembly_maps", (PetscObject) container);CHKERRQ(ierr); 1820bfc784b7SMark Adams ierr = PetscContainerDestroy(&container);CHKERRQ(ierr); 1821a82411e9SMark Adams ierr = PetscLogEventEnd(ctx->events[2],0,0,0,0);CHKERRQ(ierr); 1822cb25d741SMark Adams } // end GPU assembly 1823a82411e9SMark Adams { /* create static point data, Jacobian called first, only one vertex copy */ 1824a82411e9SMark Adams PetscReal *invJe,*ww,*xx,*yy,*zz=NULL,*invJ_a; 1825a82411e9SMark Adams PetscInt outer_ipidx, outer_ej,grid, nip_glb = 0; 1826a82411e9SMark Adams PetscFE fe; 1827bfc784b7SMark Adams const PetscInt Nb = Nq; 1828a82411e9SMark Adams ierr = PetscLogEventBegin(ctx->events[7],0,0,0,0);CHKERRQ(ierr); 1829a82411e9SMark Adams ierr = PetscInfo(ctx->plex[0], "Initialize static data\n");CHKERRQ(ierr); 1830a82411e9SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) nip_glb += Nq*numCells[grid]; 1831a82411e9SMark Adams /* collect f data, first time is for Jacobian, but make mass now */ 1832a82411e9SMark Adams if (ctx->verbose > 0) { 1833a82411e9SMark Adams PetscInt ncells = 0, N; 1834a82411e9SMark Adams ierr = MatGetSize(ctx->J,&N,NULL);CHKERRQ(ierr); 1835a82411e9SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) ncells += numCells[grid]; 1836d618d24fSMark Adams ierr = PetscPrintf(ctx->comm,"%" PetscInt_FMT ") %s %" PetscInt_FMT " IPs, %" PetscInt_FMT " cells total, Nb=%" PetscInt_FMT ", Nq=%" PetscInt_FMT ", dim=%" PetscInt_FMT ", Tab: Nb=%" PetscInt_FMT " Nf=%" PetscInt_FMT " Np=%" PetscInt_FMT " cdim=%" PetscInt_FMT " N=%" PetscInt_FMT "\n", 1837a82411e9SMark Adams 0,"FormLandau",nip_glb,ncells, Nb, Nq, dim, Nb, ctx->num_species, Nb, dim, N);CHKERRQ(ierr); 1838a82411e9SMark Adams } 1839a82411e9SMark Adams ierr = PetscMalloc4(nip_glb,&ww,nip_glb,&xx,nip_glb,&yy,nip_glb*dim*dim,&invJ_a);CHKERRQ(ierr); 1840a82411e9SMark Adams if (dim==3) { 1841a82411e9SMark Adams ierr = PetscMalloc1(nip_glb,&zz);CHKERRQ(ierr); 1842a82411e9SMark Adams } 1843a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1844a82411e9SMark Adams ierr = PetscFECreateDefault(PETSC_COMM_SELF, dim, 1, PETSC_FALSE, NULL, PETSC_DECIDE, &fe);CHKERRQ(ierr); 1845a82411e9SMark Adams ierr = PetscObjectSetName((PetscObject) fe, "energy");CHKERRQ(ierr); 1846a82411e9SMark Adams } 1847a82411e9SMark Adams /* init each grids static data - no batch */ 1848a82411e9SMark Adams for (grid=0, outer_ipidx=0, outer_ej=0 ; grid < ctx->num_grids ; grid++) { // OpenMP (once) 1849a82411e9SMark Adams Vec v2_2 = NULL; // projected function: v^2/2 for non-relativistic, gamma... for relativistic 1850a82411e9SMark Adams PetscSection e_section; 1851a82411e9SMark Adams DM dmEnergy; 1852a82411e9SMark Adams PetscInt cStart, cEnd, ej; 1853a82411e9SMark Adams 1854a82411e9SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[grid], 0, &cStart, &cEnd);CHKERRQ(ierr); 1855a82411e9SMark Adams // prep energy trick, get v^2 / 2 vector 1856a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1857a82411e9SMark Adams PetscErrorCode (*energyf[1])(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar [], void *) = {ctx->use_relativistic_corrections ? gamma_m1_f : energy_f}; 1858a82411e9SMark Adams Vec glob_v2; 1859a82411e9SMark Adams PetscReal *c2_0[1], data[1] = {PetscSqr(C_0(ctx->v_0))}; 1860a82411e9SMark Adams 1861a82411e9SMark Adams ierr = DMClone(ctx->plex[grid], &dmEnergy);CHKERRQ(ierr); 1862a82411e9SMark Adams ierr = PetscObjectSetName((PetscObject) dmEnergy, "energy");CHKERRQ(ierr); 1863a82411e9SMark Adams ierr = DMSetField(dmEnergy, 0, NULL, (PetscObject)fe);CHKERRQ(ierr); 1864a82411e9SMark Adams ierr = DMCreateDS(dmEnergy);CHKERRQ(ierr); 1865a82411e9SMark Adams ierr = DMGetSection(dmEnergy, &e_section);CHKERRQ(ierr); 1866a82411e9SMark Adams ierr = DMGetGlobalVector(dmEnergy,&glob_v2);CHKERRQ(ierr); 1867a82411e9SMark Adams ierr = PetscObjectSetName((PetscObject) glob_v2, "trick");CHKERRQ(ierr); 1868a82411e9SMark Adams c2_0[0] = &data[0]; 1869a82411e9SMark Adams ierr = DMProjectFunction(dmEnergy, 0., energyf, (void**)c2_0, INSERT_ALL_VALUES, glob_v2);CHKERRQ(ierr); 1870a82411e9SMark Adams ierr = DMGetLocalVector(dmEnergy, &v2_2);CHKERRQ(ierr); 1871a82411e9SMark Adams ierr = VecZeroEntries(v2_2);CHKERRQ(ierr); /* zero BCs so don't set */ 1872a82411e9SMark Adams ierr = DMGlobalToLocalBegin(dmEnergy, glob_v2, INSERT_VALUES, v2_2);CHKERRQ(ierr); 1873a82411e9SMark Adams ierr = DMGlobalToLocalEnd (dmEnergy, glob_v2, INSERT_VALUES, v2_2);CHKERRQ(ierr); 1874a82411e9SMark Adams ierr = DMViewFromOptions(dmEnergy,NULL, "-energy_dm_view");CHKERRQ(ierr); 1875a82411e9SMark Adams ierr = VecViewFromOptions(glob_v2,NULL, "-energy_vec_view");CHKERRQ(ierr); 1876a82411e9SMark Adams ierr = DMRestoreGlobalVector(dmEnergy, &glob_v2);CHKERRQ(ierr); 1877a82411e9SMark Adams } 1878a82411e9SMark Adams /* append part of the IP data for each grid */ 1879a82411e9SMark Adams for (ej = 0 ; ej < numCells[grid]; ++ej, ++outer_ej) { 1880a82411e9SMark Adams PetscScalar *coefs = NULL; 1881a82411e9SMark Adams PetscReal vj[LANDAU_MAX_NQ*LANDAU_DIM],detJj[LANDAU_MAX_NQ], Jdummy[LANDAU_MAX_NQ*LANDAU_DIM*LANDAU_DIM], c0 = C_0(ctx->v_0), c02 = PetscSqr(c0); 1882a82411e9SMark Adams invJe = invJ_a + outer_ej*Nq*dim*dim; 1883a82411e9SMark Adams ierr = DMPlexComputeCellGeometryFEM(ctx->plex[grid], ej+cStart, quad, vj, Jdummy, invJe, detJj);CHKERRQ(ierr); 1884a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1885a82411e9SMark Adams ierr = DMPlexVecGetClosure(dmEnergy, e_section, v2_2, ej+cStart, NULL, &coefs);CHKERRQ(ierr); 1886a82411e9SMark Adams } 1887a82411e9SMark Adams /* create static point data */ 1888a82411e9SMark Adams for (PetscInt qj = 0; qj < Nq; qj++, outer_ipidx++) { 1889a82411e9SMark Adams const PetscInt gidx = outer_ipidx; 1890a82411e9SMark Adams const PetscReal *invJ = &invJe[qj*dim*dim]; 1891a82411e9SMark Adams ww [gidx] = detJj[qj] * quadWeights[qj]; 1892a82411e9SMark Adams if (dim==2) ww [gidx] *= vj[qj * dim + 0]; /* cylindrical coordinate, w/o 2pi */ 1893a82411e9SMark Adams // get xx, yy, zz 1894a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1895a82411e9SMark Adams double refSpaceDer[3],eGradPhi[3]; 1896a82411e9SMark Adams const PetscReal * const DD = Tf[0]->T[1]; 1897a82411e9SMark Adams const PetscReal *Dq = &DD[qj*Nb*dim]; 1898a82411e9SMark Adams for (int d = 0; d < 3; ++d) refSpaceDer[d] = eGradPhi[d] = 0.0; 1899a82411e9SMark Adams for (int b = 0; b < Nb; ++b) { 1900a82411e9SMark Adams for (int d = 0; d < dim; ++d) refSpaceDer[d] += Dq[b*dim+d]*PetscRealPart(coefs[b]); 1901a82411e9SMark Adams } 1902a82411e9SMark Adams xx[gidx] = 1e10; 1903a82411e9SMark Adams if (ctx->use_relativistic_corrections) { 1904a82411e9SMark Adams double dg2_c2 = 0; 1905a82411e9SMark Adams //for (int d = 0; d < dim; ++d) refSpaceDer[d] *= c02; 1906a82411e9SMark Adams for (int d = 0; d < dim; ++d) dg2_c2 += PetscSqr(refSpaceDer[d]); 1907a82411e9SMark Adams dg2_c2 *= (double)c02; 1908a82411e9SMark Adams if (dg2_c2 >= .999) { 1909a82411e9SMark Adams xx[gidx] = vj[qj * dim + 0]; /* coordinate */ 1910a82411e9SMark Adams yy[gidx] = vj[qj * dim + 1]; 1911a82411e9SMark Adams if (dim==3) zz[gidx] = vj[qj * dim + 2]; 1912d618d24fSMark Adams ierr = PetscPrintf(ctx->comm,"Error: %12.5e %" PetscInt_FMT ".%" PetscInt_FMT ") dg2/c02 = %12.5e x= %12.5e %12.5e %12.5e\n",PetscSqrtReal(xx[gidx]*xx[gidx] + yy[gidx]*yy[gidx] + zz[gidx]*zz[gidx]), ej, qj, dg2_c2, xx[gidx],yy[gidx],zz[gidx]);CHKERRQ(ierr); 1913a82411e9SMark Adams } else { 1914a82411e9SMark Adams PetscReal fact = c02/PetscSqrtReal(1. - dg2_c2); 1915a82411e9SMark Adams for (int d = 0; d < dim; ++d) refSpaceDer[d] *= fact; 1916a82411e9SMark Adams // could test with other point u' that (grad - grad') * U (refSpaceDer, refSpaceDer') == 0 1917a82411e9SMark Adams } 1918a82411e9SMark Adams } 1919a82411e9SMark Adams if (xx[gidx] == 1e10) { 1920a82411e9SMark Adams for (int d = 0; d < dim; ++d) { 1921a82411e9SMark Adams for (int e = 0 ; e < dim; ++e) { 1922a82411e9SMark Adams eGradPhi[d] += invJ[e*dim+d]*refSpaceDer[e]; 1923a82411e9SMark Adams } 1924a82411e9SMark Adams } 1925a82411e9SMark Adams xx[gidx] = eGradPhi[0]; 1926a82411e9SMark Adams yy[gidx] = eGradPhi[1]; 1927a82411e9SMark Adams if (dim==3) zz[gidx] = eGradPhi[2]; 1928a82411e9SMark Adams } 1929a82411e9SMark Adams } else { 1930a82411e9SMark Adams xx[gidx] = vj[qj * dim + 0]; /* coordinate */ 1931a82411e9SMark Adams yy[gidx] = vj[qj * dim + 1]; 1932a82411e9SMark Adams if (dim==3) zz[gidx] = vj[qj * dim + 2]; 1933a82411e9SMark Adams } 1934a82411e9SMark Adams } /* q */ 1935a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1936a82411e9SMark Adams ierr = DMPlexVecRestoreClosure(dmEnergy, e_section, v2_2, ej+cStart, NULL, &coefs);CHKERRQ(ierr); 1937a82411e9SMark Adams } 1938a82411e9SMark Adams } /* ej */ 1939a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1940a82411e9SMark Adams ierr = DMRestoreLocalVector(dmEnergy, &v2_2);CHKERRQ(ierr); 1941a82411e9SMark Adams ierr = DMDestroy(&dmEnergy);CHKERRQ(ierr); 1942a82411e9SMark Adams } 1943a82411e9SMark Adams } /* grid */ 1944a82411e9SMark Adams if (ctx->use_energy_tensor_trick) { 1945a82411e9SMark Adams ierr = PetscFEDestroy(&fe);CHKERRQ(ierr); 1946a82411e9SMark Adams } 1947a82411e9SMark Adams /* cache static data */ 1948a82411e9SMark Adams if (ctx->deviceType == LANDAU_CUDA || ctx->deviceType == LANDAU_KOKKOS) { 1949a82411e9SMark Adams #if defined(PETSC_HAVE_CUDA) || defined(PETSC_HAVE_KOKKOS_KERNELS) 1950a82411e9SMark Adams PetscReal invMass[LANDAU_MAX_SPECIES],nu_alpha[LANDAU_MAX_SPECIES], nu_beta[LANDAU_MAX_SPECIES]; 1951a82411e9SMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { 1952a82411e9SMark Adams for (PetscInt ii=ctx->species_offset[grid];ii<ctx->species_offset[grid+1];ii++) { 1953a82411e9SMark Adams invMass[ii] = ctx->m_0/ctx->masses[ii]; 1954a82411e9SMark Adams nu_alpha[ii] = PetscSqr(ctx->charges[ii]/ctx->m_0)*ctx->m_0/ctx->masses[ii]; 1955a82411e9SMark Adams nu_beta[ii] = PetscSqr(ctx->charges[ii]/ctx->epsilon0)*ctx->lnLam / (8*PETSC_PI) * ctx->t_0*ctx->n_0/PetscPowReal(ctx->v_0,3); 1956a82411e9SMark Adams } 1957a82411e9SMark Adams } 1958a82411e9SMark Adams if (ctx->deviceType == LANDAU_CUDA) { 1959a82411e9SMark Adams #if defined(PETSC_HAVE_CUDA) 1960a82411e9SMark Adams ierr = LandauCUDAStaticDataSet(ctx->plex[0], Nq, ctx->batch_sz, ctx->num_grids, numCells, ctx->species_offset, ctx->mat_offset, 1961a82411e9SMark Adams nu_alpha, nu_beta, invMass, invJ_a, xx, yy, zz, ww, &ctx->SData_d);CHKERRQ(ierr); 1962a82411e9SMark Adams #else 196398921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","cuda"); 1964a82411e9SMark Adams #endif 1965a82411e9SMark Adams } else if (ctx->deviceType == LANDAU_KOKKOS) { 1966a82411e9SMark Adams #if defined(PETSC_HAVE_KOKKOS_KERNELS) 1967a82411e9SMark Adams ierr = LandauKokkosStaticDataSet(ctx->plex[0], Nq, ctx->batch_sz, ctx->num_grids, numCells, ctx->species_offset, ctx->mat_offset, 1968a82411e9SMark Adams nu_alpha, nu_beta, invMass,invJ_a,xx,yy,zz,ww,&ctx->SData_d);CHKERRQ(ierr); 1969a82411e9SMark Adams #else 197098921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","kokkos"); 1971a82411e9SMark Adams #endif 1972a82411e9SMark Adams } 1973a82411e9SMark Adams #endif 1974a82411e9SMark Adams /* free */ 1975a82411e9SMark Adams ierr = PetscFree4(ww,xx,yy,invJ_a);CHKERRQ(ierr); 1976a82411e9SMark Adams if (dim==3) { 1977a82411e9SMark Adams ierr = PetscFree(zz);CHKERRQ(ierr); 1978a82411e9SMark Adams } 1979a82411e9SMark Adams } else { /* CPU version, just copy in, only use part */ 1980a82411e9SMark Adams ctx->SData_d.w = (void*)ww; 1981a82411e9SMark Adams ctx->SData_d.x = (void*)xx; 1982a82411e9SMark Adams ctx->SData_d.y = (void*)yy; 1983a82411e9SMark Adams ctx->SData_d.z = (void*)zz; 1984a82411e9SMark Adams ctx->SData_d.invJ = (void*)invJ_a; 1985a82411e9SMark Adams } 1986a82411e9SMark Adams ierr = PetscLogEventEnd(ctx->events[7],0,0,0,0);CHKERRQ(ierr); 1987a82411e9SMark Adams } // initialize 1988a82411e9SMark Adams PetscFunctionReturn(0); 1989a82411e9SMark Adams } 1990a82411e9SMark Adams 1991cb25d741SMark Adams /* < v, u > */ 1992cb25d741SMark Adams static void g0_1(PetscInt dim, PetscInt Nf, PetscInt NfAux, 1993cb25d741SMark Adams const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 1994cb25d741SMark Adams const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 1995cb25d741SMark Adams PetscReal t, PetscReal u_tShift, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar g0[]) 1996cb25d741SMark Adams { 1997cb25d741SMark Adams g0[0] = 1.; 1998cb25d741SMark Adams } 1999cb25d741SMark Adams 2000cb25d741SMark Adams /* < v, u > */ 2001cb25d741SMark Adams static void g0_fake(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2002cb25d741SMark Adams const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2003cb25d741SMark Adams const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2004cb25d741SMark Adams PetscReal t, PetscReal u_tShift, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar g0[]) 2005cb25d741SMark Adams { 2006cb25d741SMark Adams static double ttt = 1; 2007cb25d741SMark Adams g0[0] = ttt++; 2008cb25d741SMark Adams } 2009cb25d741SMark Adams 2010cb25d741SMark Adams /* < v, u > */ 2011cb25d741SMark Adams static void g0_r(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2012cb25d741SMark Adams const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2013cb25d741SMark Adams const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2014cb25d741SMark Adams PetscReal t, PetscReal u_tShift, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar g0[]) 2015cb25d741SMark Adams { 2016cb25d741SMark Adams g0[0] = 2.*PETSC_PI*x[0]; 2017cb25d741SMark Adams } 2018cb25d741SMark Adams 2019e607c864SMark Adams static PetscErrorCode MatrixNfDestroy(void *ptr) 2020e607c864SMark Adams { 2021e607c864SMark Adams PetscInt *nf = (PetscInt *)ptr; 2022e607c864SMark Adams PetscErrorCode ierr; 2023e607c864SMark Adams PetscFunctionBegin; 2024e607c864SMark Adams ierr = PetscFree(nf);CHKERRQ(ierr); 2025e607c864SMark Adams PetscFunctionReturn(0); 2026e607c864SMark Adams } 2027e607c864SMark Adams 2028e607c864SMark Adams static PetscErrorCode LandauCreateMatrix(MPI_Comm comm, Vec X, IS grid_batch_is_inv[LANDAU_MAX_GRIDS], LandauCtx *ctx) 2029cb25d741SMark Adams { 2030cb25d741SMark Adams PetscErrorCode ierr; 2031cb25d741SMark Adams PetscInt *idxs=NULL; 2032cb25d741SMark Adams Mat subM[LANDAU_MAX_GRIDS]; 2033cb25d741SMark Adams 2034cb25d741SMark Adams PetscFunctionBegin; 2035cb25d741SMark Adams if (!ctx->gpu_assembly) { /* we need GPU object with GPU assembly */ 2036cb25d741SMark Adams PetscFunctionReturn(0); 2037cb25d741SMark Adams } 2038cb25d741SMark Adams // get the RCM for this grid to separate out species into blocks -- create 'idxs' & 'ctx->batch_is' 2039cb25d741SMark Adams if (ctx->gpu_assembly && ctx->jacobian_field_major_order) { 2040cb25d741SMark Adams ierr = PetscMalloc1(ctx->mat_offset[ctx->num_grids]*ctx->batch_sz, &idxs);CHKERRQ(ierr); 2041cb25d741SMark Adams } 2042cb25d741SMark Adams for (PetscInt grid=0 ; grid < ctx->num_grids ; grid++) { 2043cb25d741SMark Adams const PetscInt *values, n = ctx->mat_offset[grid+1] - ctx->mat_offset[grid]; 2044cb25d741SMark Adams Mat gMat; 2045cb25d741SMark Adams DM massDM; 2046cb25d741SMark Adams PetscDS prob; 2047cb25d741SMark Adams Vec tvec; 2048cb25d741SMark Adams // get "mass" matrix for reordering 2049cb25d741SMark Adams ierr = DMClone(ctx->plex[grid], &massDM);CHKERRQ(ierr); 2050cb25d741SMark Adams ierr = DMCopyFields(ctx->plex[grid], massDM);CHKERRQ(ierr); 2051cb25d741SMark Adams ierr = DMCreateDS(massDM);CHKERRQ(ierr); 2052cb25d741SMark Adams ierr = DMGetDS(massDM, &prob);CHKERRQ(ierr); 2053cb25d741SMark Adams for (int ix=0, ii=ctx->species_offset[grid];ii<ctx->species_offset[grid+1];ii++,ix++) { 2054cb25d741SMark Adams ierr = PetscDSSetJacobian(prob, ix, ix, g0_fake, NULL, NULL, NULL);CHKERRQ(ierr); 2055cb25d741SMark Adams } 2056cb25d741SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only"); 2057e607c864SMark Adams ierr = DMSetFromOptions(massDM);CHKERRQ(ierr); 2058cb25d741SMark Adams ierr = DMCreateMatrix(massDM, &gMat);CHKERRQ(ierr); 2059cb25d741SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only false"); 206027e9dae1SMark Adams ierr = MatSetOption(gMat,MAT_STRUCTURALLY_SYMMETRIC, PETSC_TRUE);CHKERRQ(ierr); 206127e9dae1SMark Adams ierr = MatSetOption(gMat,MAT_IGNORE_ZERO_ENTRIES,PETSC_TRUE);CHKERRQ(ierr); 2062cb25d741SMark Adams ierr = DMCreateLocalVector(ctx->plex[grid],&tvec);CHKERRQ(ierr); 2063cb25d741SMark Adams ierr = DMPlexSNESComputeJacobianFEM(massDM, tvec, gMat, gMat, ctx);CHKERRQ(ierr); 206427e9dae1SMark Adams ierr = MatViewFromOptions(gMat, NULL, "-dm_landau_reorder_mat_view");CHKERRQ(ierr); 2065cb25d741SMark Adams ierr = DMDestroy(&massDM);CHKERRQ(ierr); 2066cb25d741SMark Adams ierr = VecDestroy(&tvec);CHKERRQ(ierr); 2067cb25d741SMark Adams subM[grid] = gMat; 2068cb25d741SMark Adams if (ctx->gpu_assembly && ctx->jacobian_field_major_order) { 2069cb25d741SMark Adams MatOrderingType rtype = MATORDERINGRCM; 2070cb25d741SMark Adams IS isrow,isicol; 2071cb25d741SMark Adams ierr = MatGetOrdering(gMat,rtype,&isrow,&isicol);CHKERRQ(ierr); 2072cb25d741SMark Adams ierr = ISInvertPermutation(isrow,PETSC_DECIDE,&grid_batch_is_inv[grid]);CHKERRQ(ierr); 2073cb25d741SMark Adams ierr = ISGetIndices(isrow, &values);CHKERRQ(ierr); 2074cb25d741SMark Adams for (PetscInt b_id=0 ; b_id < ctx->batch_sz ; b_id++) { // add batch size DMs for this species grid 2075cb25d741SMark Adams #if !defined(LANDAU_SPECIES_MAJOR) 2076cb25d741SMark Adams PetscInt N = ctx->mat_offset[ctx->num_grids], n0 = ctx->mat_offset[grid] + b_id*N; 2077cb25d741SMark Adams for (int ii = 0; ii < n; ++ii) idxs[n0+ii] = values[ii] + n0; 2078cb25d741SMark Adams #else 2079cb25d741SMark Adams PetscInt n0 = ctx->mat_offset[grid]*ctx->batch_sz + b_id*n; 2080cb25d741SMark Adams for (int ii = 0; ii < n; ++ii) idxs[n0+ii] = values[ii] + n0; 2081cb25d741SMark Adams #endif 2082cb25d741SMark Adams } 2083cb25d741SMark Adams ierr = ISRestoreIndices(isrow, &values);CHKERRQ(ierr); 2084cb25d741SMark Adams ierr = ISDestroy(&isrow);CHKERRQ(ierr); 2085cb25d741SMark Adams ierr = ISDestroy(&isicol);CHKERRQ(ierr); 2086cb25d741SMark Adams } 2087cb25d741SMark Adams } 2088cb25d741SMark Adams if (ctx->gpu_assembly && ctx->jacobian_field_major_order) { 2089cb25d741SMark Adams ierr = ISCreateGeneral(comm,ctx->mat_offset[ctx->num_grids]*ctx->batch_sz,idxs,PETSC_OWN_POINTER,&ctx->batch_is);CHKERRQ(ierr); 2090cb25d741SMark Adams } 2091cb25d741SMark Adams // get a block matrix 2092cb25d741SMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 2093cb25d741SMark Adams Mat B = subM[grid]; 2094cb25d741SMark Adams PetscInt nloc, nzl, colbuf[1024], row; 2095cb25d741SMark Adams ierr = MatGetSize(B, &nloc, NULL);CHKERRQ(ierr); 2096cb25d741SMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { 2097cb25d741SMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); 2098cb25d741SMark Adams const PetscInt *cols; 2099cb25d741SMark Adams const PetscScalar *vals; 2100cb25d741SMark Adams for (int i=0 ; i<nloc ; i++) { 2101cb25d741SMark Adams ierr = MatGetRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 2102d618d24fSMark Adams PetscCheck(nzl<=1024,comm, PETSC_ERR_PLIB, "Row too big: %" PetscInt_FMT,nzl); 2103cb25d741SMark Adams for (int j=0; j<nzl; j++) colbuf[j] = cols[j] + moffset; 2104cb25d741SMark Adams row = i + moffset; 2105cb25d741SMark Adams ierr = MatSetValues(ctx->J,1,&row,nzl,colbuf,vals,INSERT_VALUES);CHKERRQ(ierr); 2106cb25d741SMark Adams ierr = MatRestoreRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 2107cb25d741SMark Adams } 2108cb25d741SMark Adams } 2109cb25d741SMark Adams } 2110cb25d741SMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 2111cb25d741SMark Adams ierr = MatDestroy(&subM[grid]);CHKERRQ(ierr); 2112cb25d741SMark Adams } 2113cb25d741SMark Adams ierr = MatAssemblyBegin(ctx->J,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2114cb25d741SMark Adams ierr = MatAssemblyEnd(ctx->J,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2115cb25d741SMark Adams 2116cb25d741SMark Adams if (ctx->gpu_assembly && ctx->jacobian_field_major_order) { 2117cb25d741SMark Adams Mat mat_block_order; 2118cb25d741SMark Adams ierr = MatCreateSubMatrix(ctx->J,ctx->batch_is,ctx->batch_is,MAT_INITIAL_MATRIX,&mat_block_order);CHKERRQ(ierr); // use MatPermute 211927e9dae1SMark Adams ierr = MatViewFromOptions(mat_block_order, NULL, "-dm_landau_field_major_mat_view");CHKERRQ(ierr); 2120cb25d741SMark Adams ierr = MatDestroy(&ctx->J);CHKERRQ(ierr); 2121cb25d741SMark Adams ctx->J = mat_block_order; 2122e607c864SMark Adams // override ops to make KSP work in field major space 2123cb25d741SMark Adams ctx->seqaij_mult = mat_block_order->ops->mult; 2124cb25d741SMark Adams mat_block_order->ops->mult = LandauMatMult; 2125cb25d741SMark Adams mat_block_order->ops->multadd = LandauMatMultAdd; 2126cb25d741SMark Adams ctx->seqaij_solve = NULL; 2127cb25d741SMark Adams ctx->seqaij_getdiagonal = mat_block_order->ops->getdiagonal; 2128cb25d741SMark Adams mat_block_order->ops->getdiagonal = LandauMatGetDiagonal; 2129cb25d741SMark Adams ctx->seqaij_multtranspose = mat_block_order->ops->multtranspose; 2130cb25d741SMark Adams mat_block_order->ops->multtranspose = LandauMatMultTranspose; 2131cb25d741SMark Adams ierr = VecDuplicate(X,&ctx->work_vec);CHKERRQ(ierr); 2132cb25d741SMark Adams ierr = VecScatterCreate(X, ctx->batch_is, ctx->work_vec, NULL, &ctx->plex_batch);CHKERRQ(ierr); 2133cb25d741SMark Adams } 2134cb25d741SMark Adams 2135cb25d741SMark Adams PetscFunctionReturn(0); 2136cb25d741SMark Adams } 2137cb25d741SMark Adams 2138*8594ddcfSMark Adams PetscErrorCode DMPlexLandauCreateMassMatrix(DM pack, Mat *Amat); 2139e0eea495SMark /*@C 2140*8594ddcfSMark Adams DMPlexLandauCreateVelocitySpace - Create a DMPlex velocity space mesh 2141e0eea495SMark 2142e0eea495SMark Collective on comm 2143e0eea495SMark 2144e0eea495SMark Input Parameters: 2145e0eea495SMark + comm - The MPI communicator 2146e0eea495SMark . dim - velocity space dimension (2 for axisymmetric, 3 for full 3X + 3V solver) 21478a6f2e61SMark Adams - prefix - prefix for options (not tested) 2148e0eea495SMark 2149e0eea495SMark Output Parameter: 21508a6f2e61SMark Adams . pack - The DM object representing the mesh 2151e0eea495SMark + X - A vector (user destroys) 2152e0eea495SMark - J - Optional matrix (object destroys) 2153e0eea495SMark 2154e0eea495SMark Level: beginner 2155e0eea495SMark 2156e0eea495SMark .keywords: mesh 2157*8594ddcfSMark Adams .seealso: DMPlexCreate(), DMPlexLandauDestroyVelocitySpace() 2158e0eea495SMark @*/ 2159*8594ddcfSMark Adams PetscErrorCode DMPlexLandauCreateVelocitySpace(MPI_Comm comm, PetscInt dim, const char prefix[], Vec *X, Mat *J, DM *pack) 2160e0eea495SMark { 2161e0eea495SMark PetscErrorCode ierr; 2162e0eea495SMark LandauCtx *ctx; 21638a6f2e61SMark Adams Vec Xsub[LANDAU_MAX_GRIDS]; 2164cb25d741SMark Adams IS grid_batch_is_inv[LANDAU_MAX_GRIDS]; 2165e0eea495SMark 2166e0eea495SMark PetscFunctionBegin; 21672c71b3e2SJacob Faibussowitsch PetscCheckFalse(dim!=2 && dim!=3,PETSC_COMM_SELF, PETSC_ERR_PLIB, "Only 2D and 3D supported"); 2168d618d24fSMark Adams PetscCheck(LANDAU_DIM == dim,PETSC_COMM_SELF, PETSC_ERR_PLIB, "dim %" PetscInt_FMT " != LANDAU_DIM %d",dim,LANDAU_DIM); 2169e8d2b73aSMark Adams ierr = PetscNew(&ctx);CHKERRQ(ierr); 2170930e68a5SMark Adams ctx->comm = comm; /* used for diagnostics and global errors */ 2171e0eea495SMark /* process options */ 2172e0eea495SMark ierr = ProcessOptions(ctx,prefix);CHKERRQ(ierr); 2173cefb98e8SMark Adams if (dim==2) ctx->use_relativistic_corrections = PETSC_FALSE; 2174e0eea495SMark /* Create Mesh */ 2175a82411e9SMark Adams ierr = DMCompositeCreate(PETSC_COMM_SELF,pack);CHKERRQ(ierr); 2176a82411e9SMark Adams ierr = PetscLogEventBegin(ctx->events[13],0,0,0,0);CHKERRQ(ierr); 2177cb25d741SMark Adams ierr = PetscLogEventBegin(ctx->events[15],0,0,0,0);CHKERRQ(ierr); 2178a82411e9SMark Adams ierr = LandauDMCreateVMeshes(PETSC_COMM_SELF, dim, prefix, ctx, *pack);CHKERRQ(ierr); // creates grids (Forest of AMR) 21798a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 2180e0eea495SMark /* create FEM */ 21818a6f2e61SMark Adams ierr = SetupDS(ctx->plex[grid],dim,grid,ctx);CHKERRQ(ierr); 2182e0eea495SMark /* set initial state */ 21838a6f2e61SMark Adams ierr = DMCreateGlobalVector(ctx->plex[grid],&Xsub[grid]);CHKERRQ(ierr); 21848a6f2e61SMark Adams ierr = PetscObjectSetName((PetscObject) Xsub[grid], "u_orig");CHKERRQ(ierr); 2185e0eea495SMark /* initial static refinement, no solve */ 21868fdabdddSMark Adams ierr = LandauSetInitialCondition(ctx->plex[grid], Xsub[grid], grid, 0, ctx);CHKERRQ(ierr); 21878a6f2e61SMark Adams /* forest refinement - forest goes in (if forest), plex comes out */ 21888a6f2e61SMark Adams if (ctx->use_p4est) { 21898a6f2e61SMark Adams DM plex; 21908a6f2e61SMark Adams ierr = adapt(grid,ctx,&Xsub[grid]);CHKERRQ(ierr); // forest goes in, plex comes out 21918a6f2e61SMark Adams ierr = DMViewFromOptions(ctx->plex[grid],NULL,"-dm_landau_amr_dm_view");CHKERRQ(ierr); // need to differentiate - todo 21928a6f2e61SMark Adams ierr = VecViewFromOptions(Xsub[grid], NULL, "-dm_landau_amr_vec_view");CHKERRQ(ierr); 21938a6f2e61SMark Adams // convert to plex, all done with this level 21948a6f2e61SMark Adams ierr = DMConvert(ctx->plex[grid], DMPLEX, &plex);CHKERRQ(ierr); 21958a6f2e61SMark Adams ierr = DMDestroy(&ctx->plex[grid]);CHKERRQ(ierr); 21968a6f2e61SMark Adams ctx->plex[grid] = plex; 2197e0eea495SMark } 21988fdabdddSMark Adams #if !defined(LANDAU_SPECIES_MAJOR) 21998a6f2e61SMark Adams ierr = DMCompositeAddDM(*pack,ctx->plex[grid]);CHKERRQ(ierr); 22008fdabdddSMark Adams #else 22018fdabdddSMark Adams for (PetscInt b_id=0;b_id<ctx->batch_sz;b_id++) { // add batch size DMs for this species grid 22028fdabdddSMark Adams ierr = DMCompositeAddDM(*pack,ctx->plex[grid]);CHKERRQ(ierr); 22038fdabdddSMark Adams } 22048fdabdddSMark Adams #endif 22058a6f2e61SMark Adams ierr = DMSetApplicationContext(ctx->plex[grid], ctx);CHKERRQ(ierr); 22068a6f2e61SMark Adams } 22078fdabdddSMark Adams #if !defined(LANDAU_SPECIES_MAJOR) 22088fdabdddSMark Adams // stack the batched DMs, could do it all here!!! b_id=0 22098fdabdddSMark Adams for (PetscInt b_id=1;b_id<ctx->batch_sz;b_id++) { 22108fdabdddSMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 22118fdabdddSMark Adams ierr = DMCompositeAddDM(*pack,ctx->plex[grid]);CHKERRQ(ierr); 22128fdabdddSMark Adams } 22138fdabdddSMark Adams } 22148fdabdddSMark Adams #endif 22158fdabdddSMark Adams // create ctx->mat_offset 22168fdabdddSMark Adams ctx->mat_offset[0] = 0; 22178fdabdddSMark Adams for (PetscInt grid=0 ; grid < ctx->num_grids ; grid++) { 22188fdabdddSMark Adams PetscInt n; 22198fdabdddSMark Adams ierr = VecGetLocalSize(Xsub[grid],&n);CHKERRQ(ierr); 22208fdabdddSMark Adams ctx->mat_offset[grid+1] = ctx->mat_offset[grid] + n; 22218fdabdddSMark Adams } 2222cb25d741SMark Adams // creat DM & Jac 22238a6f2e61SMark Adams ierr = DMSetApplicationContext(*pack, ctx);CHKERRQ(ierr); 2224cb25d741SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only"); 22258a6f2e61SMark Adams ierr = DMSetFromOptions(*pack);CHKERRQ(ierr); 22268a6f2e61SMark Adams ierr = DMCreateMatrix(*pack, &ctx->J);CHKERRQ(ierr); 2227cb25d741SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only false"); 22288f7e8f9dSMark Adams ierr = MatSetOption(ctx->J,MAT_STRUCTURALLY_SYMMETRIC, PETSC_TRUE);CHKERRQ(ierr); 222927e9dae1SMark Adams ierr = MatSetOption(ctx->J,MAT_IGNORE_ZERO_ENTRIES,PETSC_TRUE);CHKERRQ(ierr); 22308a6f2e61SMark Adams ierr = PetscObjectSetName((PetscObject)ctx->J, "Jac");CHKERRQ(ierr); 2231cb25d741SMark Adams // construct initial conditions in X 22328a6f2e61SMark Adams ierr = DMCreateGlobalVector(*pack,X);CHKERRQ(ierr); 22338fdabdddSMark Adams for (PetscInt grid=0 ; grid < ctx->num_grids ; grid++) { 22348a6f2e61SMark Adams PetscInt n; 22358a6f2e61SMark Adams ierr = VecGetLocalSize(Xsub[grid],&n);CHKERRQ(ierr); 22368fdabdddSMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { 22378fdabdddSMark Adams PetscScalar const *values; 22388fdabdddSMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); 22398fdabdddSMark Adams ierr = LandauSetInitialCondition(ctx->plex[grid], Xsub[grid], grid, b_id, ctx);CHKERRQ(ierr); 22408a6f2e61SMark Adams ierr = VecGetArrayRead(Xsub[grid],&values);CHKERRQ(ierr); 22418fdabdddSMark Adams for (int i=0, idx = moffset; i<n; i++, idx++) { 22428a6f2e61SMark Adams ierr = VecSetValue(*X,idx,values[i],INSERT_VALUES);CHKERRQ(ierr); 22438a6f2e61SMark Adams } 22448a6f2e61SMark Adams ierr = VecRestoreArrayRead(Xsub[grid],&values);CHKERRQ(ierr); 22458fdabdddSMark Adams } 22468fdabdddSMark Adams } 22478fdabdddSMark Adams // cleanup 22488fdabdddSMark Adams for (PetscInt grid=0 ; grid < ctx->num_grids ; grid++) { 22498a6f2e61SMark Adams ierr = VecDestroy(&Xsub[grid]);CHKERRQ(ierr); 22508a6f2e61SMark Adams } 2251a82411e9SMark Adams /* check for correct matrix type */ 2252a587d139SMark if (ctx->gpu_assembly) { /* we need GPU object with GPU assembly */ 225346804e07SMark Adams PetscBool flg; 2254a587d139SMark if (ctx->deviceType == LANDAU_CUDA) { 2255a587d139SMark ierr = PetscObjectTypeCompareAny((PetscObject)ctx->J,&flg,MATSEQAIJCUSPARSE,MATMPIAIJCUSPARSE,MATAIJCUSPARSE,"");CHKERRQ(ierr); 22562c71b3e2SJacob Faibussowitsch PetscCheckFalse(!flg,ctx->comm,PETSC_ERR_ARG_WRONG,"must use '-dm_mat_type aijcusparse -dm_vec_type cuda' for GPU assembly and Cuda or use '-dm_landau_device_type cpu'"); 2257a587d139SMark } else if (ctx->deviceType == LANDAU_KOKKOS) { 2258a587d139SMark ierr = PetscObjectTypeCompareAny((PetscObject)ctx->J,&flg,MATSEQAIJKOKKOS,MATMPIAIJKOKKOS,MATAIJKOKKOS,"");CHKERRQ(ierr); 2259a587d139SMark #if defined(PETSC_HAVE_KOKKOS_KERNELS) 22602c71b3e2SJacob Faibussowitsch PetscCheckFalse(!flg,ctx->comm,PETSC_ERR_ARG_WRONG,"must use '-dm_mat_type aijkokkos -dm_vec_type kokkos' for GPU assembly and Kokkos or use '-dm_landau_device_type cpu'"); 2261a587d139SMark #else 22622c71b3e2SJacob Faibussowitsch PetscCheckFalse(!flg,ctx->comm,PETSC_ERR_ARG_WRONG,"must configure with '--download-kokkos-kernels' for GPU assembly and Kokkos or use '-dm_landau_device_type cpu'"); 2263a587d139SMark #endif 2264a587d139SMark } 2265a587d139SMark } 2266cb25d741SMark Adams ierr = PetscLogEventEnd(ctx->events[15],0,0,0,0);CHKERRQ(ierr); 2267cb25d741SMark Adams // create field major ordering 2268cb25d741SMark Adams 2269cb25d741SMark Adams ctx->work_vec = NULL; 2270cb25d741SMark Adams ctx->plex_batch = NULL; 2271cb25d741SMark Adams ctx->batch_is = NULL; 2272cb25d741SMark Adams for (int i=0;i<LANDAU_MAX_GRIDS;i++) grid_batch_is_inv[i] = NULL; 2273cb25d741SMark Adams ierr = PetscLogEventBegin(ctx->events[12],0,0,0,0);CHKERRQ(ierr); 2274e607c864SMark Adams ierr = LandauCreateMatrix(comm, *X, grid_batch_is_inv, ctx);CHKERRQ(ierr); 2275cb25d741SMark Adams ierr = PetscLogEventEnd(ctx->events[12],0,0,0,0);CHKERRQ(ierr); 2276cb25d741SMark Adams 2277a82411e9SMark Adams // create AMR GPU assembly maps and static GPU data 2278cb25d741SMark Adams ierr = CreateStaticGPUData(dim,grid_batch_is_inv,ctx);CHKERRQ(ierr); 2279a82411e9SMark Adams 2280a82411e9SMark Adams ierr = PetscLogEventEnd(ctx->events[13],0,0,0,0);CHKERRQ(ierr); 2281cb25d741SMark Adams 2282cb25d741SMark Adams // create mass matrix 2283*8594ddcfSMark Adams ierr = DMPlexLandauCreateMassMatrix(*pack, NULL);CHKERRQ(ierr); 2284cb25d741SMark Adams 2285cb25d741SMark Adams if (J) *J = ctx->J; 2286cb25d741SMark Adams 2287bfc784b7SMark Adams if (ctx->gpu_assembly && ctx->jacobian_field_major_order) { 2288bfc784b7SMark Adams PetscContainer container; 2289bfc784b7SMark Adams // cache ctx for KSP with batch/field major Jacobian ordering -ksp_type gmres/etc -dm_landau_jacobian_field_major_order 2290bfc784b7SMark Adams ierr = PetscContainerCreate(PETSC_COMM_SELF, &container);CHKERRQ(ierr); 2291bfc784b7SMark Adams ierr = PetscContainerSetPointer(container, (void *)ctx);CHKERRQ(ierr); 2292bfc784b7SMark Adams ierr = PetscObjectCompose((PetscObject) ctx->J, "LandauCtx", (PetscObject) container);CHKERRQ(ierr); 2293bfc784b7SMark Adams ierr = PetscContainerDestroy(&container);CHKERRQ(ierr); 2294bfc784b7SMark Adams // batch solvers need to map -- can batch solvers work 2295bfc784b7SMark Adams ierr = PetscContainerCreate(PETSC_COMM_SELF, &container);CHKERRQ(ierr); 2296bfc784b7SMark Adams ierr = PetscContainerSetPointer(container, (void *)ctx->plex_batch);CHKERRQ(ierr); 2297bfc784b7SMark Adams ierr = PetscObjectCompose((PetscObject) ctx->J, "plex_batch_is", (PetscObject) container);CHKERRQ(ierr); 2298bfc784b7SMark Adams ierr = PetscContainerDestroy(&container);CHKERRQ(ierr); 2299bfc784b7SMark Adams } 2300bfc784b7SMark Adams // for batch solvers 2301bfc784b7SMark Adams { 2302bfc784b7SMark Adams PetscContainer container; 2303bfc784b7SMark Adams PetscInt *pNf; 2304bfc784b7SMark Adams ierr = PetscContainerCreate(PETSC_COMM_SELF, &container);CHKERRQ(ierr); 2305bfc784b7SMark Adams ierr = PetscMalloc1(sizeof(*pNf), &pNf);CHKERRQ(ierr); 2306bfc784b7SMark Adams *pNf = ctx->batch_sz; 2307bfc784b7SMark Adams ierr = PetscContainerSetPointer(container, (void *)pNf);CHKERRQ(ierr); 2308bfc784b7SMark Adams ierr = PetscContainerSetUserDestroy(container, MatrixNfDestroy);CHKERRQ(ierr); 2309bfc784b7SMark Adams ierr = PetscObjectCompose((PetscObject)ctx->J, "batch size", (PetscObject) container);CHKERRQ(ierr); 2310bfc784b7SMark Adams ierr = PetscContainerDestroy(&container);CHKERRQ(ierr); 2311bfc784b7SMark Adams } 2312bfc784b7SMark Adams 2313e0eea495SMark PetscFunctionReturn(0); 2314e0eea495SMark } 2315e0eea495SMark 2316e0eea495SMark /*@ 2317*8594ddcfSMark Adams DMPlexLandauDestroyVelocitySpace - Destroy a DMPlex velocity space mesh 2318e0eea495SMark 2319e0eea495SMark Collective on dm 2320e0eea495SMark 2321e0eea495SMark Input/Output Parameters: 2322e0eea495SMark . dm - the dm to destroy 2323e0eea495SMark 2324e0eea495SMark Level: beginner 2325e0eea495SMark 2326e0eea495SMark .keywords: mesh 2327*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace() 2328e0eea495SMark @*/ 2329*8594ddcfSMark Adams PetscErrorCode DMPlexLandauDestroyVelocitySpace(DM *dm) 2330e0eea495SMark { 2331e0eea495SMark PetscErrorCode ierr,ii; 2332e0eea495SMark LandauCtx *ctx; 2333e0eea495SMark PetscFunctionBegin; 2334e0eea495SMark ierr = DMGetApplicationContext(*dm, &ctx);CHKERRQ(ierr); 2335e0eea495SMark ierr = MatDestroy(&ctx->M);CHKERRQ(ierr); 2336e0eea495SMark ierr = MatDestroy(&ctx->J);CHKERRQ(ierr); 2337e0eea495SMark for (ii=0;ii<ctx->num_species;ii++) { 2338e0eea495SMark ierr = PetscFEDestroy(&ctx->fe[ii]);CHKERRQ(ierr); 2339e0eea495SMark } 2340cb25d741SMark Adams ierr = ISDestroy(&ctx->batch_is);CHKERRQ(ierr); 2341cb25d741SMark Adams ierr = VecDestroy(&ctx->work_vec);CHKERRQ(ierr); 2342cb25d741SMark Adams ierr = VecScatterDestroy(&ctx->plex_batch);CHKERRQ(ierr); 2343e8d2b73aSMark Adams if (ctx->deviceType == LANDAU_CUDA) { 2344e8d2b73aSMark Adams #if defined(PETSC_HAVE_CUDA) 23458a6f2e61SMark Adams ierr = LandauCUDAStaticDataClear(&ctx->SData_d);CHKERRQ(ierr); 2346e8d2b73aSMark Adams #else 234798921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","cuda"); 2348e8d2b73aSMark Adams #endif 2349e8d2b73aSMark Adams } else if (ctx->deviceType == LANDAU_KOKKOS) { 23508a6f2e61SMark Adams #if defined(PETSC_HAVE_KOKKOS_KERNELS) 23518a6f2e61SMark Adams ierr = LandauKokkosStaticDataClear(&ctx->SData_d);CHKERRQ(ierr); 2352e8d2b73aSMark Adams #else 235398921bdaSJacob Faibussowitsch SETERRQ(ctx->comm,PETSC_ERR_ARG_WRONG,"-landau_device_type %s not built","kokkos"); 2354e8d2b73aSMark Adams #endif 2355e8d2b73aSMark Adams } else { 23568a6f2e61SMark Adams if (ctx->SData_d.x) { /* in a CPU run */ 23578a6f2e61SMark Adams PetscReal *invJ = (PetscReal*)ctx->SData_d.invJ, *xx = (PetscReal*)ctx->SData_d.x, *yy = (PetscReal*)ctx->SData_d.y, *zz = (PetscReal*)ctx->SData_d.z, *ww = (PetscReal*)ctx->SData_d.w; 23588a6f2e61SMark Adams ierr = PetscFree4(ww,xx,yy,invJ);CHKERRQ(ierr); 2359e8d2b73aSMark Adams if (zz) { 2360e8d2b73aSMark Adams ierr = PetscFree(zz);CHKERRQ(ierr); 2361e8d2b73aSMark Adams } 2362bfc784b7SMark Adams ierr = PetscFree3(ctx->SData_d.coo_elem_offsets,ctx->SData_d.coo_elem_fullNb,ctx->SData_d.coo_elem_point_offsets);CHKERRQ(ierr); // could be NULL 2363e8d2b73aSMark Adams } 2364e8d2b73aSMark Adams } 23658fdabdddSMark Adams 23668fdabdddSMark Adams if (ctx->times[LANDAU_MATRIX_TOTAL] > 0) { // OMP timings 23678fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "TSStep N 1.0 %10.3e\n",ctx->times[LANDAU_EX2_TSSOLVE]);CHKERRQ(ierr); 2368d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "2: Solve: %10.3e with %" PetscInt_FMT " threads\n",ctx->times[LANDAU_EX2_TSSOLVE] - ctx->times[LANDAU_MATRIX_TOTAL],ctx->batch_sz);CHKERRQ(ierr); 23698fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "3: Landau: %10.3e\n",ctx->times[LANDAU_MATRIX_TOTAL]);CHKERRQ(ierr); 2370d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "Landau Jacobian %" PetscInt_FMT " 1.0 %10.3e\n",(PetscInt)ctx->times[LANDAU_JACOBIAN_COUNT],ctx->times[LANDAU_JACOBIAN]);CHKERRQ(ierr); 23718fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "Landau Operator N 1.0 %10.3e\n",ctx->times[LANDAU_OPERATOR]);CHKERRQ(ierr); 23728fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "Landau Mass N 1.0 %10.3e\n",ctx->times[LANDAU_MASS]);CHKERRQ(ierr); 23738fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, " Jac-f-df (GPU) N 1.0 %10.3e\n",ctx->times[LANDAU_F_DF]);CHKERRQ(ierr); 23748fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, " Kernel (GPU) N 1.0 %10.3e\n",ctx->times[LANDAU_KERNEL]);CHKERRQ(ierr); 23758fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "MatLUFactorNum X 1.0 %10.3e\n",ctx->times[KSP_FACTOR]);CHKERRQ(ierr); 23768fdabdddSMark Adams ierr = PetscPrintf(ctx->comm, "MatSolve X 1.0 %10.3e\n",ctx->times[KSP_SOLVE]);CHKERRQ(ierr); 2377e8d2b73aSMark Adams } 23788a6f2e61SMark Adams for (PetscInt grid=0 ; grid < ctx->num_grids ; grid++) { 23798a6f2e61SMark Adams ierr = DMDestroy(&ctx->plex[grid]);CHKERRQ(ierr); 238054545eeeSMark Adams } 2381e8d2b73aSMark Adams PetscFree(ctx); 2382e0eea495SMark ierr = DMDestroy(dm);CHKERRQ(ierr); 2383e0eea495SMark PetscFunctionReturn(0); 2384e0eea495SMark } 2385e0eea495SMark 2386e0eea495SMark /* < v, ru > */ 2387e0eea495SMark static void f0_s_den(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2388e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2389e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2390e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2391e0eea495SMark { 2392e0eea495SMark PetscInt ii = (PetscInt)PetscRealPart(constants[0]); 2393e0eea495SMark f0[0] = u[ii]; 2394e0eea495SMark } 2395e0eea495SMark 2396e0eea495SMark /* < v, ru > */ 2397e0eea495SMark static void f0_s_mom(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2398e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2399e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2400e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2401e0eea495SMark { 2402e0eea495SMark PetscInt ii = (PetscInt)PetscRealPart(constants[0]), jj = (PetscInt)PetscRealPart(constants[1]); 2403e0eea495SMark f0[0] = x[jj]*u[ii]; /* x momentum */ 2404e0eea495SMark } 2405e0eea495SMark 2406e0eea495SMark static void f0_s_v2(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2407e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2408e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2409e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2410e0eea495SMark { 2411e0eea495SMark PetscInt i, ii = (PetscInt)PetscRealPart(constants[0]); 2412e0eea495SMark double tmp1 = 0.; 2413e0eea495SMark for (i = 0; i < dim; ++i) tmp1 += x[i]*x[i]; 2414e0eea495SMark f0[0] = tmp1*u[ii]; 2415e0eea495SMark } 2416e0eea495SMark 2417cefb98e8SMark Adams static PetscErrorCode gamma_n_f(PetscInt dim, PetscReal time, const PetscReal x[], PetscInt Nf, PetscScalar *u, void *actx) 2418cefb98e8SMark Adams { 2419cefb98e8SMark Adams const PetscReal *c2_0_arr = ((PetscReal*)actx); 2420cefb98e8SMark Adams const PetscReal c02 = c2_0_arr[0]; 2421cefb98e8SMark Adams 2422cefb98e8SMark Adams PetscFunctionBegin; 2423cefb98e8SMark Adams for (int s = 0 ; s < Nf ; s++) { 2424cefb98e8SMark Adams PetscReal tmp1 = 0.; 2425cefb98e8SMark Adams for (int i = 0; i < dim; ++i) tmp1 += x[i]*x[i]; 2426cefb98e8SMark Adams #if defined(PETSC_USE_DEBUG) 2427cefb98e8SMark Adams u[s] = PetscSqrtReal(1. + tmp1/c02);// u[0] = PetscSqrtReal(1. + xx); 2428cefb98e8SMark Adams #else 2429cefb98e8SMark Adams { 2430cefb98e8SMark Adams PetscReal xx = tmp1/c02; 2431cefb98e8SMark Adams u[s] = xx/(PetscSqrtReal(1. + xx) + 1.); // better conditioned = xx/(PetscSqrtReal(1. + xx) + 1.) 2432cefb98e8SMark Adams } 2433cefb98e8SMark Adams #endif 2434cefb98e8SMark Adams } 2435cefb98e8SMark Adams PetscFunctionReturn(0); 2436cefb98e8SMark Adams } 2437cefb98e8SMark Adams 2438e0eea495SMark /* < v, ru > */ 2439e0eea495SMark static void f0_s_rden(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2440e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2441e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2442e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2443e0eea495SMark { 2444e0eea495SMark PetscInt ii = (PetscInt)PetscRealPart(constants[0]); 2445e0eea495SMark f0[0] = 2.*PETSC_PI*x[0]*u[ii]; 2446e0eea495SMark } 2447e0eea495SMark 2448e0eea495SMark /* < v, ru > */ 2449e0eea495SMark static void f0_s_rmom(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2450e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2451e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2452e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2453e0eea495SMark { 2454e0eea495SMark PetscInt ii = (PetscInt)PetscRealPart(constants[0]); 2455e0eea495SMark f0[0] = 2.*PETSC_PI*x[0]*x[1]*u[ii]; 2456e0eea495SMark } 2457e0eea495SMark 2458e0eea495SMark static void f0_s_rv2(PetscInt dim, PetscInt Nf, PetscInt NfAux, 2459e0eea495SMark const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], 2460e0eea495SMark const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], 2461e0eea495SMark PetscReal t, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar *f0) 2462e0eea495SMark { 2463e0eea495SMark PetscInt ii = (PetscInt)PetscRealPart(constants[0]); 2464e0eea495SMark f0[0] = 2.*PETSC_PI*x[0]*(x[0]*x[0] + x[1]*x[1])*u[ii]; 2465e0eea495SMark } 2466e0eea495SMark 2467e0eea495SMark /*@ 2468*8594ddcfSMark Adams DMPlexLandauPrintNorms - collects moments and prints them 2469e0eea495SMark 2470e0eea495SMark Collective on dm 2471e0eea495SMark 2472e0eea495SMark Input Parameters: 2473e0eea495SMark + X - the state 24740045b13dSSatish Balay - stepi - current step to print 2475e0eea495SMark 2476e0eea495SMark Level: beginner 2477e0eea495SMark 2478e0eea495SMark .keywords: mesh 2479*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace() 2480e0eea495SMark @*/ 2481*8594ddcfSMark Adams PetscErrorCode DMPlexLandauPrintNorms(Vec X, PetscInt stepi) 2482e0eea495SMark { 2483e0eea495SMark PetscErrorCode ierr; 2484e0eea495SMark LandauCtx *ctx; 2485e0eea495SMark PetscDS prob; 24868a6f2e61SMark Adams DM pack; 2487f37ccb5fSMark Adams PetscInt cStart, cEnd, dim, ii, i0, nDMs; 2488e0eea495SMark PetscScalar xmomentumtot=0, ymomentumtot=0, zmomentumtot=0, energytot=0, densitytot=0, tt[LANDAU_MAX_SPECIES]; 2489e0eea495SMark PetscScalar xmomentum[LANDAU_MAX_SPECIES], ymomentum[LANDAU_MAX_SPECIES], zmomentum[LANDAU_MAX_SPECIES], energy[LANDAU_MAX_SPECIES], density[LANDAU_MAX_SPECIES]; 2490f37ccb5fSMark Adams Vec *globXArray; 2491e0eea495SMark 2492e0eea495SMark PetscFunctionBegin; 24938a6f2e61SMark Adams ierr = VecGetDM(X, &pack);CHKERRQ(ierr); 24942c71b3e2SJacob Faibussowitsch PetscCheckFalse(!pack,PETSC_COMM_SELF, PETSC_ERR_PLIB, "Vector has no DM"); 24958a6f2e61SMark Adams ierr = DMGetDimension(pack, &dim);CHKERRQ(ierr); 2496d618d24fSMark Adams PetscCheck(dim == 2 || dim == 3,PETSC_COMM_SELF, PETSC_ERR_PLIB, "dim %" PetscInt_FMT " not in [2,3]",dim); 24978a6f2e61SMark Adams ierr = DMGetApplicationContext(pack, &ctx);CHKERRQ(ierr); 2498d618d24fSMark Adams PetscCheck(ctx,PETSC_COMM_SELF, PETSC_ERR_PLIB, "no context"); 2499e0eea495SMark /* print momentum and energy */ 2500f37ccb5fSMark Adams ierr = DMCompositeGetNumberDM(pack,&nDMs);CHKERRQ(ierr); 2501d618d24fSMark Adams PetscCheck(nDMs == ctx->num_grids*ctx->batch_sz,PETSC_COMM_WORLD, PETSC_ERR_PLIB, "#DM wrong %" PetscInt_FMT " %" PetscInt_FMT,nDMs,ctx->num_grids*ctx->batch_sz); 2502f37ccb5fSMark Adams ierr = PetscMalloc(sizeof(*globXArray)*nDMs, &globXArray);CHKERRQ(ierr); 2503f37ccb5fSMark Adams ierr = DMCompositeGetAccessArray(pack, X, nDMs, NULL, globXArray);CHKERRQ(ierr); 25048a6f2e61SMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { 25058fdabdddSMark Adams Vec Xloc = globXArray[ LAND_PACK_IDX(ctx->batch_view_idx,grid) ]; 25068a6f2e61SMark Adams ierr = DMGetDS(ctx->plex[grid], &prob);CHKERRQ(ierr); 25078a6f2e61SMark Adams for (ii=ctx->species_offset[grid],i0=0;ii<ctx->species_offset[grid+1];ii++,i0++) { 25088a6f2e61SMark Adams PetscScalar user[2] = { (PetscScalar)i0, (PetscScalar)ctx->charges[ii]}; 2509e0eea495SMark ierr = PetscDSSetConstants(prob, 2, user);CHKERRQ(ierr); 2510e0eea495SMark if (dim==2) { /* 2/3X + 3V (cylindrical coordinates) */ 2511e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_rden);CHKERRQ(ierr); 25128a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2513e0eea495SMark density[ii] = tt[0]*ctx->n_0*ctx->charges[ii]; 2514e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_rmom);CHKERRQ(ierr); 25158a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2516e0eea495SMark zmomentum[ii] = tt[0]*ctx->n_0*ctx->v_0*ctx->masses[ii]; 2517e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_rv2);CHKERRQ(ierr); 25188a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2519e0eea495SMark energy[ii] = tt[0]*0.5*ctx->n_0*ctx->v_0*ctx->v_0*ctx->masses[ii]; 2520e0eea495SMark zmomentumtot += zmomentum[ii]; 2521e0eea495SMark energytot += energy[ii]; 2522e0eea495SMark densitytot += density[ii]; 2523d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "%3D) species-%" PetscInt_FMT ": charge density= %20.13e z-momentum= %20.13e energy= %20.13e",stepi,ii,PetscRealPart(density[ii]),PetscRealPart(zmomentum[ii]),PetscRealPart(energy[ii]));CHKERRQ(ierr); 25248a6f2e61SMark Adams } else { /* 2/3Xloc + 3V */ 2525e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_den);CHKERRQ(ierr); 25268a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2527e0eea495SMark density[ii] = tt[0]*ctx->n_0*ctx->charges[ii]; 2528e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_mom);CHKERRQ(ierr); 2529e0eea495SMark user[1] = 0; 2530cefb98e8SMark Adams ierr = PetscDSSetConstants(prob, 2, user);CHKERRQ(ierr); 25318a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2532e0eea495SMark xmomentum[ii] = tt[0]*ctx->n_0*ctx->v_0*ctx->masses[ii]; 2533e0eea495SMark user[1] = 1; 2534cefb98e8SMark Adams ierr = PetscDSSetConstants(prob, 2, user);CHKERRQ(ierr); 25358a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2536e0eea495SMark ymomentum[ii] = tt[0]*ctx->n_0*ctx->v_0*ctx->masses[ii]; 2537e0eea495SMark user[1] = 2; 2538cefb98e8SMark Adams ierr = PetscDSSetConstants(prob, 2, user);CHKERRQ(ierr); 25398a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2540e0eea495SMark zmomentum[ii] = tt[0]*ctx->n_0*ctx->v_0*ctx->masses[ii]; 2541cefb98e8SMark Adams if (ctx->use_relativistic_corrections) { 25428a6f2e61SMark Adams /* gamma * M * f */ 25438a6f2e61SMark Adams if (ii==0 && grid==0) { // do all at once 2544f37ccb5fSMark Adams Vec Mf, globGamma, *globMfArray, *globGammaArray; 2545cefb98e8SMark Adams PetscErrorCode (*gammaf[1])(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar [], void *) = {gamma_n_f}; 2546cefb98e8SMark Adams PetscReal *c2_0[1], data[1]; 2547cefb98e8SMark Adams 25488a6f2e61SMark Adams ierr = VecDuplicate(X,&globGamma);CHKERRQ(ierr); 25498a6f2e61SMark Adams ierr = VecDuplicate(X,&Mf);CHKERRQ(ierr); 2550f37ccb5fSMark Adams ierr = PetscMalloc(sizeof(*globMfArray)*nDMs, &globMfArray);CHKERRQ(ierr); 2551f37ccb5fSMark Adams ierr = PetscMalloc(sizeof(*globMfArray)*nDMs, &globGammaArray);CHKERRQ(ierr); 25528a6f2e61SMark Adams /* M * f */ 2553cefb98e8SMark Adams ierr = MatMult(ctx->M,X,Mf);CHKERRQ(ierr); 25548a6f2e61SMark Adams /* gamma */ 2555f37ccb5fSMark Adams ierr = DMCompositeGetAccessArray(pack, globGamma, nDMs, NULL, globGammaArray);CHKERRQ(ierr); 25568fdabdddSMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { // yes a grid loop in a grid loop to print nice, need to fix for batching 25578fdabdddSMark Adams Vec v1 = globGammaArray[ LAND_PACK_IDX(ctx->batch_view_idx,grid) ]; 25588a6f2e61SMark Adams data[0] = PetscSqr(C_0(ctx->v_0)); 25598a6f2e61SMark Adams c2_0[0] = &data[0]; 25608a6f2e61SMark Adams ierr = DMProjectFunction(ctx->plex[grid], 0., gammaf, (void**)c2_0, INSERT_ALL_VALUES, v1);CHKERRQ(ierr); 2561cefb98e8SMark Adams } 2562f37ccb5fSMark Adams ierr = DMCompositeRestoreAccessArray(pack, globGamma, nDMs, NULL, globGammaArray);CHKERRQ(ierr); 25638a6f2e61SMark Adams /* gamma * Mf */ 2564f37ccb5fSMark Adams ierr = DMCompositeGetAccessArray(pack, globGamma, nDMs, NULL, globGammaArray);CHKERRQ(ierr); 2565f37ccb5fSMark Adams ierr = DMCompositeGetAccessArray(pack, Mf, nDMs, NULL, globMfArray);CHKERRQ(ierr); 25668a6f2e61SMark Adams for (PetscInt grid = 0; grid < ctx->num_grids ; grid++) { // yes a grid loop in a grid loop to print nice 25678a6f2e61SMark Adams PetscInt Nf = ctx->species_offset[grid+1] - ctx->species_offset[grid], N, bs; 25688fdabdddSMark Adams Vec Mfsub = globMfArray[ LAND_PACK_IDX(ctx->batch_view_idx,grid) ], Gsub = globGammaArray[ LAND_PACK_IDX(ctx->batch_view_idx,grid) ], v1, v2; 25698a6f2e61SMark Adams // get each component 25708a6f2e61SMark Adams ierr = VecGetSize(Mfsub,&N);CHKERRQ(ierr); 25718a6f2e61SMark Adams ierr = VecCreate(ctx->comm,&v1);CHKERRQ(ierr); 25728a6f2e61SMark Adams ierr = VecSetSizes(v1,PETSC_DECIDE,N/Nf);CHKERRQ(ierr); 25738a6f2e61SMark Adams ierr = VecCreate(ctx->comm,&v2);CHKERRQ(ierr); 25748a6f2e61SMark Adams ierr = VecSetSizes(v2,PETSC_DECIDE,N/Nf);CHKERRQ(ierr); 25758a6f2e61SMark Adams ierr = VecSetFromOptions(v1);CHKERRQ(ierr); // ??? 25768a6f2e61SMark Adams ierr = VecSetFromOptions(v2);CHKERRQ(ierr); 25778a6f2e61SMark Adams // get each component 25788a6f2e61SMark Adams ierr = VecGetBlockSize(Gsub,&bs);CHKERRQ(ierr); 2579d618d24fSMark Adams PetscCheck(bs == Nf,PETSC_COMM_SELF, PETSC_ERR_PLIB, "bs %" PetscInt_FMT " != num_species %" PetscInt_FMT " in Gsub",bs,Nf); 25808a6f2e61SMark Adams ierr = VecGetBlockSize(Mfsub,&bs);CHKERRQ(ierr); 2581d618d24fSMark Adams PetscCheck(bs == Nf,PETSC_COMM_SELF, PETSC_ERR_PLIB, "bs %" PetscInt_FMT " != num_species %" PetscInt_FMT,bs,Nf); 25828a6f2e61SMark Adams for (int i=0, ix=ctx->species_offset[grid] ; i<Nf ; i++, ix++) { 25838a6f2e61SMark Adams PetscScalar val; 25848a6f2e61SMark Adams ierr = VecStrideGather(Gsub,i,v1,INSERT_VALUES);CHKERRQ(ierr); 25858a6f2e61SMark Adams ierr = VecStrideGather(Mfsub,i,v2,INSERT_VALUES);CHKERRQ(ierr); 25868a6f2e61SMark Adams ierr = VecDot(v1,v2,&val);CHKERRQ(ierr); 25878a6f2e61SMark Adams energy[ix] = PetscRealPart(val)*ctx->n_0*ctx->v_0*ctx->v_0*ctx->masses[ix]; 25888a6f2e61SMark Adams } 2589cefb98e8SMark Adams ierr = VecDestroy(&v1);CHKERRQ(ierr); 2590cefb98e8SMark Adams ierr = VecDestroy(&v2);CHKERRQ(ierr); 25918a6f2e61SMark Adams } /* grids */ 2592f37ccb5fSMark Adams ierr = DMCompositeRestoreAccessArray(pack, globGamma, nDMs, NULL, globGammaArray);CHKERRQ(ierr); 2593f37ccb5fSMark Adams ierr = DMCompositeRestoreAccessArray(pack, Mf, nDMs, NULL, globMfArray);CHKERRQ(ierr); 2594f37ccb5fSMark Adams ierr = PetscFree(globGammaArray);CHKERRQ(ierr); 2595f37ccb5fSMark Adams ierr = PetscFree(globMfArray);CHKERRQ(ierr); 25968a6f2e61SMark Adams ierr = VecDestroy(&globGamma);CHKERRQ(ierr); 25978a6f2e61SMark Adams ierr = VecDestroy(&Mf);CHKERRQ(ierr); 2598cefb98e8SMark Adams } 2599cefb98e8SMark Adams } else { 2600e0eea495SMark ierr = PetscDSSetObjective(prob, 0, &f0_s_v2);CHKERRQ(ierr); 26018a6f2e61SMark Adams ierr = DMPlexComputeIntegralFEM(ctx->plex[grid],Xloc,tt,ctx);CHKERRQ(ierr); 2602e0eea495SMark energy[ii] = 0.5*tt[0]*ctx->n_0*ctx->v_0*ctx->v_0*ctx->masses[ii]; 2603cefb98e8SMark Adams } 2604d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "%3" PetscInt_FMT ") species %" PetscInt_FMT ": density=%20.13e, x-momentum=%20.13e, y-momentum=%20.13e, z-momentum=%20.13e, energy=%21.13e", 2605c8913f0eSSatish Balay stepi,ii,PetscRealPart(density[ii]),PetscRealPart(xmomentum[ii]),PetscRealPart(ymomentum[ii]),PetscRealPart(zmomentum[ii]),PetscRealPart(energy[ii]));CHKERRQ(ierr); 2606e0eea495SMark xmomentumtot += xmomentum[ii]; 2607e0eea495SMark ymomentumtot += ymomentum[ii]; 2608e0eea495SMark zmomentumtot += zmomentum[ii]; 2609e0eea495SMark energytot += energy[ii]; 2610e0eea495SMark densitytot += density[ii]; 2611e0eea495SMark } 2612930e68a5SMark Adams if (ctx->num_species>1) PetscPrintf(ctx->comm, "\n"); 2613e0eea495SMark } 26148a6f2e61SMark Adams } 2615f37ccb5fSMark Adams ierr = DMCompositeRestoreAccessArray(pack, X, nDMs, NULL, globXArray);CHKERRQ(ierr); 2616f37ccb5fSMark Adams ierr = PetscFree(globXArray);CHKERRQ(ierr); 2617e0eea495SMark /* totals */ 26188a6f2e61SMark Adams ierr = DMPlexGetHeightStratum(ctx->plex[0],0,&cStart,&cEnd);CHKERRQ(ierr); 2619e0eea495SMark if (ctx->num_species>1) { 2620e0eea495SMark if (dim==2) { 2621d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "\t%3" PetscInt_FMT ") Total: charge density=%21.13e, momentum=%21.13e, energy=%21.13e (m_i[0]/m_e = %g, %" PetscInt_FMT " cells on electron grid)", 2622930e68a5SMark Adams stepi,(double)PetscRealPart(densitytot),(double)PetscRealPart(zmomentumtot),(double)PetscRealPart(energytot),(double)(ctx->masses[1]/ctx->masses[0]),cEnd-cStart);CHKERRQ(ierr); 2623e0eea495SMark } else { 2624d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, "\t%3" PetscInt_FMT ") Total: charge density=%21.13e, x-momentum=%21.13e, y-momentum=%21.13e, z-momentum=%21.13e, energy=%21.13e (m_i[0]/m_e = %g, %" PetscInt_FMT " cells)", 2625930e68a5SMark Adams stepi,(double)PetscRealPart(densitytot),(double)PetscRealPart(xmomentumtot),(double)PetscRealPart(ymomentumtot),(double)PetscRealPart(zmomentumtot),(double)PetscRealPart(energytot),(double)(ctx->masses[1]/ctx->masses[0]),cEnd-cStart);CHKERRQ(ierr); 2626e0eea495SMark } 2627e0eea495SMark } else { 2628d618d24fSMark Adams ierr = PetscPrintf(ctx->comm, " -- %" PetscInt_FMT " cells",cEnd-cStart);CHKERRQ(ierr); 2629e0eea495SMark } 2630d2319daeSMark Adams ierr = PetscPrintf(ctx->comm,"\n");CHKERRQ(ierr); 2631e0eea495SMark PetscFunctionReturn(0); 2632e0eea495SMark } 2633e0eea495SMark 2634e0eea495SMark /*@ 2635*8594ddcfSMark Adams DMPlexLandauCreateMassMatrix - Create mass matrix for Landau in Plex space (not field major order of Jacobian) 2636e0eea495SMark 26378a6f2e61SMark Adams Collective on pack 2638e0eea495SMark 2639e0eea495SMark Input Parameters: 26408a6f2e61SMark Adams . pack - the DM object 2641e0eea495SMark 2642e0eea495SMark Output Parameters: 26430045b13dSSatish Balay . Amat - The mass matrix (optional), mass matrix is added to the DM context 2644e0eea495SMark 2645e0eea495SMark Level: beginner 2646e0eea495SMark 2647e0eea495SMark .keywords: mesh 2648*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace() 2649e0eea495SMark @*/ 2650*8594ddcfSMark Adams PetscErrorCode DMPlexLandauCreateMassMatrix(DM pack, Mat *Amat) 2651e0eea495SMark { 26528a6f2e61SMark Adams DM mass_pack,massDM[LANDAU_MAX_GRIDS]; 2653e0eea495SMark PetscDS prob; 2654e0eea495SMark PetscInt ii,dim,N1=1,N2; 2655e0eea495SMark PetscErrorCode ierr; 2656e0eea495SMark LandauCtx *ctx; 26578a6f2e61SMark Adams Mat packM,subM[LANDAU_MAX_GRIDS]; 2658e0eea495SMark 2659e0eea495SMark PetscFunctionBegin; 26608a6f2e61SMark Adams PetscValidHeaderSpecific(pack,DM_CLASSID,1); 2661064a246eSJacob Faibussowitsch if (Amat) PetscValidPointer(Amat,2); 26628a6f2e61SMark Adams ierr = DMGetApplicationContext(pack, &ctx);CHKERRQ(ierr); 26632c71b3e2SJacob Faibussowitsch PetscCheck(ctx,PETSC_COMM_SELF, PETSC_ERR_PLIB, "no context"); 2664cb25d741SMark Adams ierr = PetscLogEventBegin(ctx->events[14],0,0,0,0);CHKERRQ(ierr); 26658a6f2e61SMark Adams ierr = DMGetDimension(pack, &dim);CHKERRQ(ierr); 26668a6f2e61SMark Adams ierr = DMCompositeCreate(PetscObjectComm((PetscObject) pack),&mass_pack);CHKERRQ(ierr); 26678a6f2e61SMark Adams /* create pack mass matrix */ 26688a6f2e61SMark Adams for (PetscInt grid=0, ix=0 ; grid<ctx->num_grids ; grid++) { 26698a6f2e61SMark Adams ierr = DMClone(ctx->plex[grid], &massDM[grid]);CHKERRQ(ierr); 26708a6f2e61SMark Adams ierr = DMCopyFields(ctx->plex[grid], massDM[grid]);CHKERRQ(ierr); 26718a6f2e61SMark Adams ierr = DMCreateDS(massDM[grid]);CHKERRQ(ierr); 26728a6f2e61SMark Adams ierr = DMGetDS(massDM[grid], &prob);CHKERRQ(ierr); 26738a6f2e61SMark Adams for (ix=0, ii=ctx->species_offset[grid];ii<ctx->species_offset[grid+1];ii++,ix++) { 26748a6f2e61SMark Adams if (dim==3) {ierr = PetscDSSetJacobian(prob, ix, ix, g0_1, NULL, NULL, NULL);CHKERRQ(ierr);} 26758a6f2e61SMark Adams else {ierr = PetscDSSetJacobian(prob, ix, ix, g0_r, NULL, NULL, NULL);CHKERRQ(ierr);} 2676e0eea495SMark } 26778fdabdddSMark Adams #if !defined(LANDAU_SPECIES_MAJOR) 26788a6f2e61SMark Adams ierr = DMCompositeAddDM(mass_pack,massDM[grid]);CHKERRQ(ierr); 26798fdabdddSMark Adams #else 26808fdabdddSMark Adams for (PetscInt b_id=0;b_id<ctx->batch_sz;b_id++) { // add batch size DMs for this species grid 26818fdabdddSMark Adams ierr = DMCompositeAddDM(mass_pack,massDM[grid]);CHKERRQ(ierr); 26828fdabdddSMark Adams } 26838fdabdddSMark Adams #endif 26848a6f2e61SMark Adams ierr = DMCreateMatrix(massDM[grid], &subM[grid]);CHKERRQ(ierr); 26858a6f2e61SMark Adams } 26868fdabdddSMark Adams #if !defined(LANDAU_SPECIES_MAJOR) 26878fdabdddSMark Adams // stack the batched DMs 26888fdabdddSMark Adams for (PetscInt b_id=1;b_id<ctx->batch_sz;b_id++) { 26898fdabdddSMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 26908fdabdddSMark Adams ierr = DMCompositeAddDM(mass_pack, massDM[grid]);CHKERRQ(ierr); 26918fdabdddSMark Adams } 26928fdabdddSMark Adams } 26938fdabdddSMark Adams #endif 26948a6f2e61SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only"); 26958a6f2e61SMark Adams ierr = DMSetFromOptions(mass_pack);CHKERRQ(ierr); 26968a6f2e61SMark Adams ierr = DMCreateMatrix(mass_pack, &packM);CHKERRQ(ierr); 26978a6f2e61SMark Adams ierr = PetscOptionsInsertString(NULL,"-dm_preallocate_only false"); 26988a6f2e61SMark Adams ierr = MatSetOption(packM,MAT_STRUCTURALLY_SYMMETRIC, PETSC_TRUE);CHKERRQ(ierr); 269927e9dae1SMark Adams ierr = MatSetOption(packM,MAT_IGNORE_ZERO_ENTRIES,PETSC_TRUE);CHKERRQ(ierr); 27008a6f2e61SMark Adams ierr = DMDestroy(&mass_pack);CHKERRQ(ierr); 27018a6f2e61SMark Adams /* make mass matrix for each block */ 27028a6f2e61SMark Adams for (PetscInt grid=0;grid<ctx->num_grids;grid++) { 2703e0eea495SMark Vec locX; 27048a6f2e61SMark Adams DM plex = massDM[grid]; 27058a6f2e61SMark Adams ierr = DMGetLocalVector(plex, &locX);CHKERRQ(ierr); 2706e0eea495SMark /* Mass matrix is independent of the input, so no need to fill locX */ 27078a6f2e61SMark Adams ierr = DMPlexSNESComputeJacobianFEM(plex, locX, subM[grid], subM[grid], ctx);CHKERRQ(ierr); 27088a6f2e61SMark Adams ierr = DMRestoreLocalVector(plex, &locX);CHKERRQ(ierr); 27098a6f2e61SMark Adams ierr = DMDestroy(&massDM[grid]);CHKERRQ(ierr); 2710e0eea495SMark } 2711e0eea495SMark ierr = MatGetSize(ctx->J, &N1, NULL);CHKERRQ(ierr); 27128a6f2e61SMark Adams ierr = MatGetSize(packM, &N2, NULL);CHKERRQ(ierr); 2713d618d24fSMark Adams PetscCheck(N1 == N2,PetscObjectComm((PetscObject) pack), PETSC_ERR_PLIB, "Incorrect matrix sizes: |Jacobian| = %" PetscInt_FMT ", |Mass|=%" PetscInt_FMT,N1,N2); 27148a6f2e61SMark Adams /* assemble block diagonals */ 27158a6f2e61SMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 27168fdabdddSMark Adams Mat B = subM[grid]; 27178a6f2e61SMark Adams PetscInt nloc, nzl, colbuf[1024], row; 27188fdabdddSMark Adams ierr = MatGetSize(B, &nloc, NULL);CHKERRQ(ierr); 27198fdabdddSMark Adams for (PetscInt b_id = 0 ; b_id < ctx->batch_sz ; b_id++) { 27208fdabdddSMark Adams const PetscInt moffset = LAND_MOFFSET(b_id,grid,ctx->batch_sz,ctx->num_grids,ctx->mat_offset); 27218a6f2e61SMark Adams const PetscInt *cols; 27228a6f2e61SMark Adams const PetscScalar *vals; 27238a6f2e61SMark Adams for (int i=0 ; i<nloc ; i++) { 27248a6f2e61SMark Adams ierr = MatGetRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 2725d618d24fSMark Adams PetscCheck(nzl<=1024,PetscObjectComm((PetscObject) pack), PETSC_ERR_PLIB, "Row too big: %" PetscInt_FMT,nzl); 27268fdabdddSMark Adams for (int j=0; j<nzl; j++) colbuf[j] = cols[j] + moffset; 27278fdabdddSMark Adams row = i + moffset; 27288a6f2e61SMark Adams ierr = MatSetValues(packM,1,&row,nzl,colbuf,vals,INSERT_VALUES);CHKERRQ(ierr); 27298a6f2e61SMark Adams ierr = MatRestoreRow(B,i,&nzl,&cols,&vals);CHKERRQ(ierr); 27308a6f2e61SMark Adams } 27318fdabdddSMark Adams } 27328fdabdddSMark Adams } 27338fdabdddSMark Adams // cleanup 27348fdabdddSMark Adams for (PetscInt grid=0 ; grid<ctx->num_grids ; grid++) { 27358a6f2e61SMark Adams ierr = MatDestroy(&subM[grid]);CHKERRQ(ierr); 27368a6f2e61SMark Adams } 27378a6f2e61SMark Adams ierr = MatAssemblyBegin(packM,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 27388a6f2e61SMark Adams ierr = MatAssemblyEnd(packM,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 27398a6f2e61SMark Adams ierr = PetscObjectSetName((PetscObject)packM, "mass");CHKERRQ(ierr); 27408a6f2e61SMark Adams ierr = MatViewFromOptions(packM,NULL,"-dm_landau_mass_view");CHKERRQ(ierr); 2741cb25d741SMark Adams ctx->M = packM; 27428a6f2e61SMark Adams if (Amat) *Amat = packM; 2743cb25d741SMark Adams ierr = PetscLogEventEnd(ctx->events[14],0,0,0,0);CHKERRQ(ierr); 2744e0eea495SMark PetscFunctionReturn(0); 2745e0eea495SMark } 2746e0eea495SMark 2747e0eea495SMark /*@ 2748*8594ddcfSMark Adams DMPlexLandauIFunction - TS residual calculation 2749e0eea495SMark 2750e0eea495SMark Collective on ts 2751e0eea495SMark 2752e0eea495SMark Input Parameters: 2753e0eea495SMark + TS - The time stepping context 2754e0eea495SMark . time_dummy - current time (not used) 2755e0eea495SMark - X - Current state 2756e0eea495SMark + X_t - Time derivative of current state 2757e0eea495SMark . actx - Landau context 2758e0eea495SMark 2759e0eea495SMark Output Parameter: 2760e0eea495SMark . F - The residual 2761e0eea495SMark 2762e0eea495SMark Level: beginner 2763e0eea495SMark 2764e0eea495SMark .keywords: mesh 2765*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace(), DMPlexLandauIJacobian() 2766e0eea495SMark @*/ 2767*8594ddcfSMark Adams PetscErrorCode DMPlexLandauIFunction(TS ts, PetscReal time_dummy, Vec X, Vec X_t, Vec F, void *actx) 2768e0eea495SMark { 2769e0eea495SMark PetscErrorCode ierr; 2770e0eea495SMark LandauCtx *ctx=(LandauCtx*)actx; 2771e0eea495SMark PetscInt dim; 27728a6f2e61SMark Adams DM pack; 2773e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 2774e8d2b73aSMark Adams double starttime, endtime; 2775e8d2b73aSMark Adams #endif 2776e0eea495SMark 2777e0eea495SMark PetscFunctionBegin; 27788a6f2e61SMark Adams ierr = TSGetDM(ts,&pack);CHKERRQ(ierr); 27798a6f2e61SMark Adams ierr = DMGetApplicationContext(pack, &ctx);CHKERRQ(ierr); 27802c71b3e2SJacob Faibussowitsch PetscCheckFalse(!ctx,PETSC_COMM_SELF, PETSC_ERR_PLIB, "no context"); 2781c751c0a2SMark Adams if (ctx->stage) { 2782c751c0a2SMark Adams ierr = PetscLogStagePush(ctx->stage);CHKERRQ(ierr); 2783c751c0a2SMark Adams } 2784e8d2b73aSMark Adams ierr = PetscLogEventBegin(ctx->events[11],0,0,0,0);CHKERRQ(ierr); 2785e0eea495SMark ierr = PetscLogEventBegin(ctx->events[0],0,0,0,0);CHKERRQ(ierr); 2786e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 2787e8d2b73aSMark Adams starttime = MPI_Wtime(); 2788e8d2b73aSMark Adams #endif 27898a6f2e61SMark Adams ierr = DMGetDimension(pack, &dim);CHKERRQ(ierr); 2790e8d2b73aSMark Adams if (!ctx->aux_bool) { 27917d3de750SJacob Faibussowitsch ierr = PetscInfo(ts, "Create Landau Jacobian t=%g X=%p %s\n",time_dummy,X_t,ctx->aux_bool ? " -- seems to be in line search" : "");CHKERRQ(ierr); 2792930e68a5SMark Adams ierr = LandauFormJacobian_Internal(X,ctx->J,dim,0.0,(void*)ctx);CHKERRQ(ierr); 27938a6f2e61SMark Adams ierr = MatViewFromOptions(ctx->J, NULL, "-dm_landau_jacobian_view");CHKERRQ(ierr); 2794930e68a5SMark Adams ctx->aux_bool = PETSC_TRUE; 2795e8d2b73aSMark Adams } else { 2796e8d2b73aSMark Adams ierr = PetscInfo(ts, "Skip forming Jacobian, has not changed (should check norm)\n");CHKERRQ(ierr); 2797e8d2b73aSMark Adams } 2798e0eea495SMark /* mat vec for op */ 2799e0eea495SMark ierr = MatMult(ctx->J,X,F);CHKERRQ(ierr);CHKERRQ(ierr); /* C*f */ 2800e0eea495SMark /* add time term */ 2801e0eea495SMark if (X_t) { 2802e0eea495SMark ierr = MatMultAdd(ctx->M,X_t,F,F);CHKERRQ(ierr); 2803e0eea495SMark } 2804e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 28058fdabdddSMark Adams if (ctx->stage) { 2806e8d2b73aSMark Adams endtime = MPI_Wtime(); 28078fdabdddSMark Adams ctx->times[LANDAU_OPERATOR] += (endtime - starttime); 28088fdabdddSMark Adams ctx->times[LANDAU_JACOBIAN] += (endtime - starttime); 28098fdabdddSMark Adams ctx->times[LANDAU_JACOBIAN_COUNT] += 1; 28108fdabdddSMark Adams } 2811e8d2b73aSMark Adams #endif 2812e0eea495SMark ierr = PetscLogEventEnd(ctx->events[0],0,0,0,0);CHKERRQ(ierr); 2813e8d2b73aSMark Adams ierr = PetscLogEventEnd(ctx->events[11],0,0,0,0);CHKERRQ(ierr); 2814c751c0a2SMark Adams if (ctx->stage) { 2815c751c0a2SMark Adams ierr = PetscLogStagePop();CHKERRQ(ierr); 28168fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 28178fdabdddSMark Adams ctx->times[LANDAU_MATRIX_TOTAL] += (endtime - starttime); 28188fdabdddSMark Adams #endif 2819c751c0a2SMark Adams } 2820e0eea495SMark PetscFunctionReturn(0); 2821e0eea495SMark } 2822c751c0a2SMark Adams 2823e0eea495SMark /*@ 2824*8594ddcfSMark Adams DMPlexLandauIJacobian - TS Jacobian construction 2825e0eea495SMark 2826e0eea495SMark Collective on ts 2827e0eea495SMark 2828e0eea495SMark Input Parameters: 2829e0eea495SMark + TS - The time stepping context 2830e0eea495SMark . time_dummy - current time (not used) 2831e0eea495SMark - X - Current state 2832e0eea495SMark + U_tdummy - Time derivative of current state (not used) 2833e0eea495SMark . shift - shift for du/dt term 2834e0eea495SMark - actx - Landau context 2835e0eea495SMark 2836e0eea495SMark Output Parameter: 2837e0eea495SMark . Amat - Jacobian 2838e0eea495SMark + Pmat - same as Amat 2839e0eea495SMark 2840e0eea495SMark Level: beginner 2841e0eea495SMark 2842e0eea495SMark .keywords: mesh 2843*8594ddcfSMark Adams .seealso: DMPlexLandauCreateVelocitySpace(), DMPlexLandauIFunction() 2844e0eea495SMark @*/ 2845*8594ddcfSMark Adams PetscErrorCode DMPlexLandauIJacobian(TS ts, PetscReal time_dummy, Vec X, Vec U_tdummy, PetscReal shift, Mat Amat, Mat Pmat, void *actx) 2846e0eea495SMark { 2847e0eea495SMark PetscErrorCode ierr; 28488fdabdddSMark Adams LandauCtx *ctx=NULL; 2849e0eea495SMark PetscInt dim; 28508a6f2e61SMark Adams DM pack; 2851e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 2852e8d2b73aSMark Adams double starttime, endtime; 2853e8d2b73aSMark Adams #endif 2854e0eea495SMark PetscFunctionBegin; 28558a6f2e61SMark Adams ierr = TSGetDM(ts,&pack);CHKERRQ(ierr); 28568a6f2e61SMark Adams ierr = DMGetApplicationContext(pack, &ctx);CHKERRQ(ierr); 28572c71b3e2SJacob Faibussowitsch PetscCheckFalse(!ctx,PETSC_COMM_SELF, PETSC_ERR_PLIB, "no context"); 28582c71b3e2SJacob Faibussowitsch PetscCheckFalse(Amat!=Pmat || Amat!=ctx->J,ctx->comm, PETSC_ERR_PLIB, "Amat!=Pmat || Amat!=ctx->J"); 28598a6f2e61SMark Adams ierr = DMGetDimension(pack, &dim);CHKERRQ(ierr); 2860e0eea495SMark /* get collision Jacobian into A */ 2861c751c0a2SMark Adams if (ctx->stage) { 2862c751c0a2SMark Adams ierr = PetscLogStagePush(ctx->stage);CHKERRQ(ierr); 2863c751c0a2SMark Adams } 2864e8d2b73aSMark Adams ierr = PetscLogEventBegin(ctx->events[11],0,0,0,0);CHKERRQ(ierr); 2865e0eea495SMark ierr = PetscLogEventBegin(ctx->events[9],0,0,0,0);CHKERRQ(ierr); 2866e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 2867e8d2b73aSMark Adams starttime = MPI_Wtime(); 2868e8d2b73aSMark Adams #endif 28697d3de750SJacob Faibussowitsch ierr = PetscInfo(ts, "Adding just mass to Jacobian t=%g, shift=%g\n",(double)time_dummy,(double)shift);CHKERRQ(ierr); 28702c71b3e2SJacob Faibussowitsch PetscCheckFalse(shift==0.0,ctx->comm, PETSC_ERR_PLIB, "zero shift"); 28712c71b3e2SJacob Faibussowitsch PetscCheckFalse(!ctx->aux_bool,ctx->comm, PETSC_ERR_PLIB, "wrong state"); 2872e8d2b73aSMark Adams if (!ctx->use_matrix_mass) { 2873930e68a5SMark Adams ierr = LandauFormJacobian_Internal(X,ctx->J,dim,shift,(void*)ctx);CHKERRQ(ierr); 28748a6f2e61SMark Adams ierr = MatViewFromOptions(ctx->J, NULL, "-dm_landau_mat_view");CHKERRQ(ierr); 2875e8d2b73aSMark Adams } else { /* add mass */ 2876e8d2b73aSMark Adams ierr = MatAXPY(Pmat,shift,ctx->M,SAME_NONZERO_PATTERN);CHKERRQ(ierr); 2877e8d2b73aSMark Adams } 287874c602b1SMark ctx->aux_bool = PETSC_FALSE; 2879e8d2b73aSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 28808fdabdddSMark Adams if (ctx->stage) { 2881e8d2b73aSMark Adams endtime = MPI_Wtime(); 28828fdabdddSMark Adams ctx->times[LANDAU_OPERATOR] += (endtime - starttime); 28838fdabdddSMark Adams ctx->times[LANDAU_MASS] += (endtime - starttime); 28848fdabdddSMark Adams } 2885e8d2b73aSMark Adams #endif 2886e8d2b73aSMark Adams ierr = PetscLogEventEnd(ctx->events[9],0,0,0,0);CHKERRQ(ierr); 2887e8d2b73aSMark Adams ierr = PetscLogEventEnd(ctx->events[11],0,0,0,0);CHKERRQ(ierr); 2888c751c0a2SMark Adams if (ctx->stage) { 2889c751c0a2SMark Adams ierr = PetscLogStagePop();CHKERRQ(ierr); 28908fdabdddSMark Adams #if defined(PETSC_HAVE_THREADSAFETY) 28918fdabdddSMark Adams ctx->times[LANDAU_MATRIX_TOTAL] += (endtime - starttime); 28928fdabdddSMark Adams #endif 2893c751c0a2SMark Adams } 2894e0eea495SMark PetscFunctionReturn(0); 2895e0eea495SMark } 2896