13d8e8822SJeremy L Thompson // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors. 23d8e8822SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 366087c08SValeria Barra // 43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 566087c08SValeria Barra // 63d8e8822SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 766087c08SValeria Barra 866087c08SValeria Barra // libCEED Example 2 966087c08SValeria Barra // 1066087c08SValeria Barra // This example illustrates a simple usage of libCEED to compute the surface 1166087c08SValeria Barra // area of a 3D body using matrix-free application of a diffusion operator. 12ded9b81dSJeremy L Thompson // Arbitrary mesh and solution degrees in 1D, 2D and 3D are supported from the 1366087c08SValeria Barra // same code. 1466087c08SValeria Barra // 1566087c08SValeria Barra // The example has no dependencies, and is designed to be self-contained. For 1666087c08SValeria Barra // additional examples that use external discretization libraries (MFEM, PETSc, 1766087c08SValeria Barra // etc.) see the subdirectories in libceed/examples. 1866087c08SValeria Barra // 1966087c08SValeria Barra // All libCEED objects use a Ceed device object constructed based on a command 2066087c08SValeria Barra // line argument (-ceed). 2166087c08SValeria Barra // 2266087c08SValeria Barra // Build with: 2366087c08SValeria Barra // 2466087c08SValeria Barra // make ex2-surface [CEED_DIR=</path/to/libceed>] 2566087c08SValeria Barra // 2666087c08SValeria Barra // Sample runs: 2766087c08SValeria Barra // 2866087c08SValeria Barra // ./ex2-surface 2966087c08SValeria Barra // ./ex2-surface -ceed /cpu/self 3028688798Sjeremylt // ./ex2-surface -ceed /gpu/cuda 3166087c08SValeria Barra // 3266087c08SValeria Barra // Test in 1D-3D 33dc8efd83SLeila Ghaffari //TESTARGS(name="1D_user_QFunction") -ceed {ceed_resource} -d 1 -t 34dc8efd83SLeila Ghaffari //TESTARGS(name="2D_user_QFunction") -ceed {ceed_resource} -d 2 -t 35dc8efd83SLeila Ghaffari //TESTARGS(name="3D_user_QFunction") -ceed {ceed_resource} -d 3 -t 36dc8efd83SLeila Ghaffari //TESTARGS(name="1D_Gallery_QFunction") -ceed {ceed_resource} -d 1 -t -g 37dc8efd83SLeila Ghaffari //TESTARGS(name="2D_Gallery_QFunction") -ceed {ceed_resource} -d 2 -t -g 38dc8efd83SLeila Ghaffari //TESTARGS(name="3D_Gallery_QFunction") -ceed {ceed_resource} -d 3 -t -g 3966087c08SValeria Barra 4066087c08SValeria Barra /// @file 4166087c08SValeria Barra /// libCEED example using diffusion operator to compute surface area 4266087c08SValeria Barra 43*2b730f8bSJeremy L Thompson #include "ex2-surface.h" 44*2b730f8bSJeremy L Thompson 4566087c08SValeria Barra #include <ceed.h> 4666087c08SValeria Barra #include <math.h> 473d576824SJeremy L Thompson #include <stdlib.h> 4866087c08SValeria Barra #include <string.h> 4966087c08SValeria Barra 50*2b730f8bSJeremy L Thompson // Auxiliary functions 51*2b730f8bSJeremy L Thompson int GetCartesianMeshSize(CeedInt dim, CeedInt degree, CeedInt prob_size, CeedInt num_xyz[3]); 52*2b730f8bSJeremy L Thompson int BuildCartesianRestriction(Ceed ceed, CeedInt dim, CeedInt num_xyz[3], CeedInt degree, CeedInt num_comp, CeedInt *size, CeedInt num_qpts, 53*2b730f8bSJeremy L Thompson CeedElemRestriction *restr, CeedElemRestriction *restr_i); 54*2b730f8bSJeremy L Thompson int SetCartesianMeshCoords(CeedInt dim, CeedInt num_xyz[3], CeedInt mesh_degree, CeedVector mesh_coords); 55*2b730f8bSJeremy L Thompson CeedScalar TransformMeshCoords(CeedInt dim, CeedInt mesh_size, CeedVector mesh_coords); 5666087c08SValeria Barra 57*2b730f8bSJeremy L Thompson // Main example 5866087c08SValeria Barra int main(int argc, const char *argv[]) { 5966087c08SValeria Barra const char *ceed_spec = "/cpu/self"; 60990fdeb6SJeremy L Thompson CeedInt dim = 3; // dimension of the mesh 61990fdeb6SJeremy L Thompson CeedInt num_comp_x = 3; // number of x components 62990fdeb6SJeremy L Thompson CeedInt mesh_degree = 4; // polynomial degree for the mesh 63990fdeb6SJeremy L Thompson CeedInt sol_degree = 4; // polynomial degree for the solution 64990fdeb6SJeremy L Thompson CeedInt num_qpts = sol_degree + 2; // number of 1D quadrature points 65990fdeb6SJeremy L Thompson CeedInt prob_size = -1; // approximate problem size 66990fdeb6SJeremy L Thompson CeedInt help = 0, test = 0, gallery = 0; 6766087c08SValeria Barra 6866087c08SValeria Barra // Process command line arguments. 6966087c08SValeria Barra for (int ia = 1; ia < argc; ia++) { 70ded9b81dSJeremy L Thompson // LCOV_EXCL_START 7166087c08SValeria Barra int next_arg = ((ia + 1) < argc), parse_error = 0; 7266087c08SValeria Barra if (!strcmp(argv[ia], "-h")) { 7366087c08SValeria Barra help = 1; 7466087c08SValeria Barra } else if (!strcmp(argv[ia], "-c") || !strcmp(argv[ia], "-ceed")) { 7566087c08SValeria Barra parse_error = next_arg ? ceed_spec = argv[++ia], 0 : 1; 7666087c08SValeria Barra } else if (!strcmp(argv[ia], "-d")) { 7766087c08SValeria Barra parse_error = next_arg ? dim = atoi(argv[++ia]), 0 : 1; 78d1d35e2fSjeremylt num_comp_x = dim; 7966087c08SValeria Barra } else if (!strcmp(argv[ia], "-m")) { 80ded9b81dSJeremy L Thompson parse_error = next_arg ? mesh_degree = atoi(argv[++ia]), 0 : 1; 81ded9b81dSJeremy L Thompson } else if (!strcmp(argv[ia], "-p")) { 82ded9b81dSJeremy L Thompson parse_error = next_arg ? sol_degree = atoi(argv[++ia]), 0 : 1; 8366087c08SValeria Barra } else if (!strcmp(argv[ia], "-q")) { 8466087c08SValeria Barra parse_error = next_arg ? num_qpts = atoi(argv[++ia]), 0 : 1; 8566087c08SValeria Barra } else if (!strcmp(argv[ia], "-s")) { 8666087c08SValeria Barra parse_error = next_arg ? prob_size = atoi(argv[++ia]), 0 : 1; 8766087c08SValeria Barra } else if (!strcmp(argv[ia], "-t")) { 8866087c08SValeria Barra test = 1; 8966087c08SValeria Barra } else if (!strcmp(argv[ia], "-g")) { 9066087c08SValeria Barra gallery = 1; 9166087c08SValeria Barra } 9266087c08SValeria Barra if (parse_error) { 9366087c08SValeria Barra printf("Error parsing command line options.\n"); 9466087c08SValeria Barra return 1; 9566087c08SValeria Barra } 96ded9b81dSJeremy L Thompson // LCOV_EXCL_STOP 9766087c08SValeria Barra } 9866087c08SValeria Barra if (prob_size < 0) prob_size = test ? 16 * 16 * dim * dim : 256 * 1024; 9966087c08SValeria Barra 100ded9b81dSJeremy L Thompson // Set mesh_degree = sol_degree. 101ded9b81dSJeremy L Thompson mesh_degree = fmax(mesh_degree, sol_degree); 102ded9b81dSJeremy L Thompson sol_degree = mesh_degree; 10366087c08SValeria Barra 10466087c08SValeria Barra // Print the values of all options: 10566087c08SValeria Barra if (!test || help) { 106ded9b81dSJeremy L Thompson // LCOV_EXCL_START 10766087c08SValeria Barra printf("Selected options: [command line option] : <current value>\n"); 10866087c08SValeria Barra printf(" Ceed specification [-c] : %s\n", ceed_spec); 109990fdeb6SJeremy L Thompson printf(" Mesh dimension [-d] : %" CeedInt_FMT "\n", dim); 110990fdeb6SJeremy L Thompson printf(" Mesh degree [-m] : %" CeedInt_FMT "\n", mesh_degree); 111990fdeb6SJeremy L Thompson printf(" Solution degree [-p] : %" CeedInt_FMT "\n", sol_degree); 112990fdeb6SJeremy L Thompson printf(" Num. 1D quadr. pts [-q] : %" CeedInt_FMT "\n", num_qpts); 113990fdeb6SJeremy L Thompson printf(" Approx. # unknowns [-s] : %" CeedInt_FMT "\n", prob_size); 11466087c08SValeria Barra printf(" QFunction source [-g] : %s\n", gallery ? "gallery" : "header"); 11566087c08SValeria Barra if (help) { 11666087c08SValeria Barra printf("Test/quiet mode is %s\n", (test ? "ON" : "OFF (use -t to enable)")); 11766087c08SValeria Barra return 0; 11866087c08SValeria Barra } 11966087c08SValeria Barra printf("\n"); 120ded9b81dSJeremy L Thompson // LCOV_EXCL_STOP 12166087c08SValeria Barra } 12266087c08SValeria Barra 12366087c08SValeria Barra // Select appropriate backend and logical device based on the <ceed-spec> 12466087c08SValeria Barra // command line argument. 12566087c08SValeria Barra Ceed ceed; 12666087c08SValeria Barra CeedInit(ceed_spec, &ceed); 12766087c08SValeria Barra 12866087c08SValeria Barra // Construct the mesh and solution bases. 12966087c08SValeria Barra CeedBasis mesh_basis, sol_basis; 130*2b730f8bSJeremy L Thompson CeedBasisCreateTensorH1Lagrange(ceed, dim, num_comp_x, mesh_degree + 1, num_qpts, CEED_GAUSS, &mesh_basis); 131*2b730f8bSJeremy L Thompson CeedBasisCreateTensorH1Lagrange(ceed, dim, 1, sol_degree + 1, num_qpts, CEED_GAUSS, &sol_basis); 13266087c08SValeria Barra 13366087c08SValeria Barra // Determine the mesh size based on the given approximate problem size. 134990fdeb6SJeremy L Thompson CeedInt num_xyz[3]; 135d1d35e2fSjeremylt GetCartesianMeshSize(dim, sol_degree, prob_size, num_xyz); 13666087c08SValeria Barra 13766087c08SValeria Barra if (!test) { 138ded9b81dSJeremy L Thompson // LCOV_EXCL_START 139990fdeb6SJeremy L Thompson printf("Mesh size: nx = %" CeedInt_FMT, num_xyz[0]); 140*2b730f8bSJeremy L Thompson if (dim > 1) printf(", ny = %" CeedInt_FMT, num_xyz[1]); 141*2b730f8bSJeremy L Thompson if (dim > 2) printf(", nz = %" CeedInt_FMT, num_xyz[2]); 14266087c08SValeria Barra printf("\n"); 143ded9b81dSJeremy L Thompson // LCOV_EXCL_STOP 14466087c08SValeria Barra } 14566087c08SValeria Barra 14666087c08SValeria Barra // Build CeedElemRestriction objects describing the mesh and solution discrete 14766087c08SValeria Barra // representations. 14866087c08SValeria Barra CeedInt mesh_size, sol_size; 149d1d35e2fSjeremylt CeedElemRestriction mesh_restr, sol_restr, q_data_restr_i; 150*2b730f8bSJeremy L Thompson BuildCartesianRestriction(ceed, dim, num_xyz, mesh_degree, num_comp_x, &mesh_size, num_qpts, &mesh_restr, NULL); 151*2b730f8bSJeremy L Thompson BuildCartesianRestriction(ceed, dim, num_xyz, sol_degree, dim * (dim + 1) / 2, &sol_size, num_qpts, NULL, &q_data_restr_i); 152*2b730f8bSJeremy L Thompson BuildCartesianRestriction(ceed, dim, num_xyz, sol_degree, 1, &sol_size, num_qpts, &sol_restr, NULL); 15366087c08SValeria Barra if (!test) { 154ded9b81dSJeremy L Thompson // LCOV_EXCL_START 155990fdeb6SJeremy L Thompson printf("Number of mesh nodes : %" CeedInt_FMT "\n", mesh_size / dim); 156990fdeb6SJeremy L Thompson printf("Number of solution nodes : %" CeedInt_FMT "\n", sol_size); 157ded9b81dSJeremy L Thompson // LCOV_EXCL_STOP 15866087c08SValeria Barra } 15966087c08SValeria Barra 16066087c08SValeria Barra // Create a CeedVector with the mesh coordinates. 16166087c08SValeria Barra CeedVector mesh_coords; 16266087c08SValeria Barra CeedVectorCreate(ceed, mesh_size, &mesh_coords); 163d1d35e2fSjeremylt SetCartesianMeshCoords(dim, num_xyz, mesh_degree, mesh_coords); 16466087c08SValeria Barra 16566087c08SValeria Barra // Apply a transformation to the mesh. 16666087c08SValeria Barra CeedScalar exact_sa = TransformMeshCoords(dim, mesh_size, mesh_coords); 16766087c08SValeria Barra 168ded9b81dSJeremy L Thompson // Context data to be passed to the 'f_build_diff' QFunction. 169777ff853SJeremy L Thompson CeedQFunctionContext build_ctx; 170777ff853SJeremy L Thompson struct BuildContext build_ctx_data; 171777ff853SJeremy L Thompson build_ctx_data.dim = build_ctx_data.space_dim = dim; 172777ff853SJeremy L Thompson CeedQFunctionContextCreate(ceed, &build_ctx); 173*2b730f8bSJeremy L Thompson CeedQFunctionContextSetData(build_ctx, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(build_ctx_data), &build_ctx_data); 17466087c08SValeria Barra 175ded9b81dSJeremy L Thompson // Create the QFunction that builds the diffusion operator (i.e. computes its 17666087c08SValeria Barra // quadrature data) and set its context data. 177d1d35e2fSjeremylt CeedQFunction qf_build; 17866087c08SValeria Barra switch (gallery) { 17966087c08SValeria Barra case 0: 18066087c08SValeria Barra // This creates the QFunction directly. 181*2b730f8bSJeremy L Thompson CeedQFunctionCreateInterior(ceed, 1, f_build_diff, f_build_diff_loc, &qf_build); 182d1d35e2fSjeremylt CeedQFunctionAddInput(qf_build, "dx", num_comp_x * dim, CEED_EVAL_GRAD); 183d1d35e2fSjeremylt CeedQFunctionAddInput(qf_build, "weights", 1, CEED_EVAL_WEIGHT); 184d1d35e2fSjeremylt CeedQFunctionAddOutput(qf_build, "qdata", dim * (dim + 1) / 2, CEED_EVAL_NONE); 185d1d35e2fSjeremylt CeedQFunctionSetContext(qf_build, build_ctx); 18666087c08SValeria Barra break; 18766087c08SValeria Barra case 1: { 18866087c08SValeria Barra // This creates the QFunction via the gallery. 18966087c08SValeria Barra char name[16] = ""; 190990fdeb6SJeremy L Thompson snprintf(name, sizeof name, "Poisson%" CeedInt_FMT "DBuild", dim); 191d1d35e2fSjeremylt CeedQFunctionCreateInteriorByName(ceed, name, &qf_build); 19266087c08SValeria Barra break; 19366087c08SValeria Barra } 19466087c08SValeria Barra } 19566087c08SValeria Barra 19666087c08SValeria Barra // Create the operator that builds the quadrature data for the diffusion 19766087c08SValeria Barra // operator. 198d1d35e2fSjeremylt CeedOperator op_build; 199*2b730f8bSJeremy L Thompson CeedOperatorCreate(ceed, qf_build, CEED_QFUNCTION_NONE, CEED_QFUNCTION_NONE, &op_build); 200*2b730f8bSJeremy L Thompson CeedOperatorSetField(op_build, "dx", mesh_restr, mesh_basis, CEED_VECTOR_ACTIVE); 201*2b730f8bSJeremy L Thompson CeedOperatorSetField(op_build, "weights", CEED_ELEMRESTRICTION_NONE, mesh_basis, CEED_VECTOR_NONE); 202*2b730f8bSJeremy L Thompson CeedOperatorSetField(op_build, "qdata", q_data_restr_i, CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE); 20366087c08SValeria Barra 20466087c08SValeria Barra // Compute the quadrature data for the diffusion operator. 205d1d35e2fSjeremylt CeedVector q_data; 20666087c08SValeria Barra CeedInt elem_qpts = CeedIntPow(num_qpts, dim); 20766087c08SValeria Barra CeedInt num_elem = 1; 208*2b730f8bSJeremy L Thompson for (CeedInt d = 0; d < dim; d++) num_elem *= num_xyz[d]; 209d1d35e2fSjeremylt CeedVectorCreate(ceed, num_elem * elem_qpts * dim * (dim + 1) / 2, &q_data); 210*2b730f8bSJeremy L Thompson CeedOperatorApply(op_build, mesh_coords, q_data, CEED_REQUEST_IMMEDIATE); 21166087c08SValeria Barra 212ded9b81dSJeremy L Thompson // Create the QFunction that defines the action of the diffusion operator. 213d1d35e2fSjeremylt CeedQFunction qf_apply; 21466087c08SValeria Barra switch (gallery) { 21566087c08SValeria Barra case 0: 21666087c08SValeria Barra // This creates the QFunction directly. 217*2b730f8bSJeremy L Thompson CeedQFunctionCreateInterior(ceed, 1, f_apply_diff, f_apply_diff_loc, &qf_apply); 218d1d35e2fSjeremylt CeedQFunctionAddInput(qf_apply, "du", dim, CEED_EVAL_GRAD); 219d1d35e2fSjeremylt CeedQFunctionAddInput(qf_apply, "qdata", dim * (dim + 1) / 2, CEED_EVAL_NONE); 220d1d35e2fSjeremylt CeedQFunctionAddOutput(qf_apply, "dv", dim, CEED_EVAL_GRAD); 221d1d35e2fSjeremylt CeedQFunctionSetContext(qf_apply, build_ctx); 22266087c08SValeria Barra break; 22366087c08SValeria Barra case 1: { 22466087c08SValeria Barra // This creates the QFunction via the gallery. 22566087c08SValeria Barra char name[16] = ""; 226990fdeb6SJeremy L Thompson snprintf(name, sizeof name, "Poisson%" CeedInt_FMT "DApply", dim); 227d1d35e2fSjeremylt CeedQFunctionCreateInteriorByName(ceed, name, &qf_apply); 22866087c08SValeria Barra break; 22966087c08SValeria Barra } 23066087c08SValeria Barra } 23166087c08SValeria Barra 23266087c08SValeria Barra // Create the diffusion operator. 233d1d35e2fSjeremylt CeedOperator op_apply; 234*2b730f8bSJeremy L Thompson CeedOperatorCreate(ceed, qf_apply, CEED_QFUNCTION_NONE, CEED_QFUNCTION_NONE, &op_apply); 235d1d35e2fSjeremylt CeedOperatorSetField(op_apply, "du", sol_restr, sol_basis, CEED_VECTOR_ACTIVE); 236*2b730f8bSJeremy L Thompson CeedOperatorSetField(op_apply, "qdata", q_data_restr_i, CEED_BASIS_COLLOCATED, q_data); 237d1d35e2fSjeremylt CeedOperatorSetField(op_apply, "dv", sol_restr, sol_basis, CEED_VECTOR_ACTIVE); 23866087c08SValeria Barra 23966087c08SValeria Barra // Create auxiliary solution-size vectors. 24066087c08SValeria Barra CeedVector u, v; 24166087c08SValeria Barra CeedVectorCreate(ceed, sol_size, &u); 24266087c08SValeria Barra CeedVectorCreate(ceed, sol_size, &v); 24366087c08SValeria Barra 24466087c08SValeria Barra // Initialize 'u' with sum of coordinates, x+y+z. 245d1d35e2fSjeremylt CeedScalar *u_array; 246d1d35e2fSjeremylt const CeedScalar *x_array; 2479c774eddSJeremy L Thompson CeedVectorGetArrayWrite(u, CEED_MEM_HOST, &u_array); 248d1d35e2fSjeremylt CeedVectorGetArrayRead(mesh_coords, CEED_MEM_HOST, &x_array); 24966087c08SValeria Barra for (CeedInt i = 0; i < sol_size; i++) { 250d1d35e2fSjeremylt u_array[i] = 0; 251*2b730f8bSJeremy L Thompson for (CeedInt d = 0; d < dim; d++) u_array[i] += x_array[i + d * sol_size]; 25266087c08SValeria Barra } 253d1d35e2fSjeremylt CeedVectorRestoreArray(u, &u_array); 254d1d35e2fSjeremylt CeedVectorRestoreArrayRead(mesh_coords, &x_array); 25566087c08SValeria Barra 256ded9b81dSJeremy L Thompson // Compute the mesh surface area using the diff operator: 257ded9b81dSJeremy L Thompson // sa = 1^T \cdot abs( K \cdot x). 258d1d35e2fSjeremylt CeedOperatorApply(op_apply, u, v, CEED_REQUEST_IMMEDIATE); 25966087c08SValeria Barra 26066087c08SValeria Barra // Compute and print the sum of the entries of 'v' giving the mesh surface area. 261d1d35e2fSjeremylt const CeedScalar *v_array; 262d1d35e2fSjeremylt CeedVectorGetArrayRead(v, CEED_MEM_HOST, &v_array); 26366087c08SValeria Barra CeedScalar sa = 0.; 264*2b730f8bSJeremy L Thompson for (CeedInt i = 0; i < sol_size; i++) sa += fabs(v_array[i]); 265d1d35e2fSjeremylt CeedVectorRestoreArrayRead(v, &v_array); 26666087c08SValeria Barra if (!test) { 267ded9b81dSJeremy L Thompson // LCOV_EXCL_START 26866087c08SValeria Barra printf(" done.\n"); 26966087c08SValeria Barra printf("Exact mesh surface area : % .14g\n", exact_sa); 27066087c08SValeria Barra printf("Computed mesh surface area : % .14g\n", sa); 27166087c08SValeria Barra printf("Surface area error : % .14g\n", sa - exact_sa); 272ded9b81dSJeremy L Thompson // LCOV_EXCL_STOP 27366087c08SValeria Barra } else { 27480a9ef05SNatalie Beams CeedScalar tol = (dim == 1 ? 10000. * CEED_EPSILON : dim == 2 ? 1E-1 : 1E-1); 275*2b730f8bSJeremy L Thompson if (fabs(sa - exact_sa) > tol) printf("Surface area error : % .14g\n", sa - exact_sa); 27666087c08SValeria Barra } 27766087c08SValeria Barra 27866087c08SValeria Barra // Free dynamically allocated memory. 27966087c08SValeria Barra CeedVectorDestroy(&u); 28066087c08SValeria Barra CeedVectorDestroy(&v); 281d1d35e2fSjeremylt CeedVectorDestroy(&q_data); 28266087c08SValeria Barra CeedVectorDestroy(&mesh_coords); 283d1d35e2fSjeremylt CeedOperatorDestroy(&op_apply); 284d1d35e2fSjeremylt CeedQFunctionDestroy(&qf_apply); 285777ff853SJeremy L Thompson CeedQFunctionContextDestroy(&build_ctx); 286d1d35e2fSjeremylt CeedOperatorDestroy(&op_build); 287d1d35e2fSjeremylt CeedQFunctionDestroy(&qf_build); 28866087c08SValeria Barra CeedElemRestrictionDestroy(&sol_restr); 28966087c08SValeria Barra CeedElemRestrictionDestroy(&mesh_restr); 290d1d35e2fSjeremylt CeedElemRestrictionDestroy(&q_data_restr_i); 29166087c08SValeria Barra CeedBasisDestroy(&sol_basis); 29266087c08SValeria Barra CeedBasisDestroy(&mesh_basis); 29366087c08SValeria Barra CeedDestroy(&ceed); 29466087c08SValeria Barra return 0; 29566087c08SValeria Barra } 29666087c08SValeria Barra 297*2b730f8bSJeremy L Thompson int GetCartesianMeshSize(CeedInt dim, CeedInt degree, CeedInt prob_size, CeedInt num_xyz[3]) { 29866087c08SValeria Barra // Use the approximate formula: 299ded9b81dSJeremy L Thompson // prob_size ~ num_elem * degree^dim 300ded9b81dSJeremy L Thompson CeedInt num_elem = prob_size / CeedIntPow(degree, dim); 30166087c08SValeria Barra CeedInt s = 0; // find s: num_elem/2 < 2^s <= num_elem 30266087c08SValeria Barra while (num_elem > 1) { 30366087c08SValeria Barra num_elem /= 2; 30466087c08SValeria Barra s++; 30566087c08SValeria Barra } 30666087c08SValeria Barra CeedInt r = s % dim; 307990fdeb6SJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 308990fdeb6SJeremy L Thompson CeedInt sd = s / dim; 309*2b730f8bSJeremy L Thompson if (r > 0) { 310*2b730f8bSJeremy L Thompson sd++; 311*2b730f8bSJeremy L Thompson r--; 312*2b730f8bSJeremy L Thompson } 313d1d35e2fSjeremylt num_xyz[d] = 1 << sd; 31466087c08SValeria Barra } 31566087c08SValeria Barra return 0; 31666087c08SValeria Barra } 31766087c08SValeria Barra 318*2b730f8bSJeremy L Thompson int BuildCartesianRestriction(Ceed ceed, CeedInt dim, CeedInt num_xyz[3], CeedInt degree, CeedInt num_comp, CeedInt *size, CeedInt num_qpts, 319*2b730f8bSJeremy L Thompson CeedElemRestriction *restr, CeedElemRestriction *restr_i) { 320ded9b81dSJeremy L Thompson CeedInt p = degree + 1; 321d1d35e2fSjeremylt CeedInt num_nodes = CeedIntPow(p, dim); // number of scalar nodes per element 32266087c08SValeria Barra CeedInt elem_qpts = CeedIntPow(num_qpts, dim); // number of qpts per element 32366087c08SValeria Barra CeedInt nd[3], num_elem = 1, scalar_size = 1; 324990fdeb6SJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 325d1d35e2fSjeremylt num_elem *= num_xyz[d]; 326d1d35e2fSjeremylt nd[d] = num_xyz[d] * (p - 1) + 1; 32766087c08SValeria Barra scalar_size *= nd[d]; 32866087c08SValeria Barra } 329d1d35e2fSjeremylt *size = scalar_size * num_comp; 33066087c08SValeria Barra // elem: 0 1 n-1 33166087c08SValeria Barra // |---*-...-*---|---*-...-*---|- ... -|--...--| 332d1d35e2fSjeremylt // num_nodes: 0 1 p-1 p p+1 2*p n*p 333d1d35e2fSjeremylt CeedInt *el_nodes = malloc(sizeof(CeedInt) * num_elem * num_nodes); 33466087c08SValeria Barra for (CeedInt e = 0; e < num_elem; e++) { 335d1d35e2fSjeremylt CeedInt e_xyz[3] = {1, 1, 1}, re = e; 336*2b730f8bSJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 337*2b730f8bSJeremy L Thompson e_xyz[d] = re % num_xyz[d]; 338*2b730f8bSJeremy L Thompson re /= num_xyz[d]; 339*2b730f8bSJeremy L Thompson } 340d1d35e2fSjeremylt CeedInt *loc_el_nodes = el_nodes + e * num_nodes; 341990fdeb6SJeremy L Thompson for (CeedInt l_nodes = 0; l_nodes < num_nodes; l_nodes++) { 342d1d35e2fSjeremylt CeedInt g_nodes = 0, g_nodes_stride = 1, r_nodes = l_nodes; 343990fdeb6SJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 344d1d35e2fSjeremylt g_nodes += (e_xyz[d] * (p - 1) + r_nodes % p) * g_nodes_stride; 345d1d35e2fSjeremylt g_nodes_stride *= nd[d]; 346d1d35e2fSjeremylt r_nodes /= p; 34766087c08SValeria Barra } 348d1d35e2fSjeremylt loc_el_nodes[l_nodes] = g_nodes; 34966087c08SValeria Barra } 35066087c08SValeria Barra } 35166087c08SValeria Barra if (restr) 352*2b730f8bSJeremy L Thompson CeedElemRestrictionCreate(ceed, num_elem, num_nodes, num_comp, scalar_size, num_comp * scalar_size, CEED_MEM_HOST, CEED_COPY_VALUES, el_nodes, 353*2b730f8bSJeremy L Thompson restr); 35466087c08SValeria Barra free(el_nodes); 3557509a596Sjeremylt 3567509a596Sjeremylt if (restr_i) { 357*2b730f8bSJeremy L Thompson CeedElemRestrictionCreateStrided(ceed, num_elem, elem_qpts, num_comp, num_comp * elem_qpts * num_elem, CEED_STRIDES_BACKEND, restr_i); 3587509a596Sjeremylt } 3597509a596Sjeremylt 36066087c08SValeria Barra return 0; 36166087c08SValeria Barra } 36266087c08SValeria Barra 363*2b730f8bSJeremy L Thompson int SetCartesianMeshCoords(CeedInt dim, CeedInt num_xyz[3], CeedInt mesh_degree, CeedVector mesh_coords) { 364ded9b81dSJeremy L Thompson CeedInt p = mesh_degree + 1; 36566087c08SValeria Barra CeedInt nd[3], num_elem = 1, scalar_size = 1; 366990fdeb6SJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 367d1d35e2fSjeremylt num_elem *= num_xyz[d]; 368d1d35e2fSjeremylt nd[d] = num_xyz[d] * (p - 1) + 1; 36966087c08SValeria Barra scalar_size *= nd[d]; 37066087c08SValeria Barra } 37166087c08SValeria Barra CeedScalar *coords; 3729c774eddSJeremy L Thompson CeedVectorGetArrayWrite(mesh_coords, CEED_MEM_HOST, &coords); 373ded9b81dSJeremy L Thompson CeedScalar *nodes = malloc(sizeof(CeedScalar) * p); 37466087c08SValeria Barra // The H1 basis uses Lobatto quadrature points as nodes. 375ded9b81dSJeremy L Thompson CeedLobattoQuadrature(p, nodes, NULL); // nodes are in [-1,1] 376*2b730f8bSJeremy L Thompson for (CeedInt i = 0; i < p; i++) { 377*2b730f8bSJeremy L Thompson nodes[i] = 0.5 + 0.5 * nodes[i]; 378*2b730f8bSJeremy L Thompson } 379d1d35e2fSjeremylt for (CeedInt gs_nodes = 0; gs_nodes < scalar_size; gs_nodes++) { 380d1d35e2fSjeremylt CeedInt r_nodes = gs_nodes; 381990fdeb6SJeremy L Thompson for (CeedInt d = 0; d < dim; d++) { 382d1d35e2fSjeremylt CeedInt d1d = r_nodes % nd[d]; 383*2b730f8bSJeremy L Thompson coords[gs_nodes + scalar_size * d] = ((d1d / (p - 1)) + nodes[d1d % (p - 1)]) / num_xyz[d]; 384d1d35e2fSjeremylt r_nodes /= nd[d]; 38566087c08SValeria Barra } 38666087c08SValeria Barra } 38766087c08SValeria Barra free(nodes); 38866087c08SValeria Barra CeedVectorRestoreArray(mesh_coords, &coords); 38966087c08SValeria Barra return 0; 39066087c08SValeria Barra } 39166087c08SValeria Barra 39266087c08SValeria Barra #ifndef M_PI 39366087c08SValeria Barra #define M_PI 3.14159265358979323846 39466087c08SValeria Barra #endif 39566087c08SValeria Barra 396*2b730f8bSJeremy L Thompson CeedScalar TransformMeshCoords(CeedInt dim, CeedInt mesh_size, CeedVector mesh_coords) { 39766087c08SValeria Barra CeedScalar exact_sa = (dim == 1 ? 2 : dim == 2 ? 4 : 6); 39866087c08SValeria Barra CeedScalar *coords; 39966087c08SValeria Barra 40066087c08SValeria Barra CeedVectorGetArray(mesh_coords, CEED_MEM_HOST, &coords); 40166087c08SValeria Barra for (CeedInt i = 0; i < mesh_size; i++) { 40266087c08SValeria Barra // map [0,1] to [0,1] varying the mesh density 40366087c08SValeria Barra coords[i] = 0.5 + 1. / sqrt(3.) * sin((2. / 3.) * M_PI * (coords[i] - 0.5)); 40466087c08SValeria Barra } 40566087c08SValeria Barra CeedVectorRestoreArray(mesh_coords, &coords); 40666087c08SValeria Barra 40766087c08SValeria Barra return exact_sa; 40866087c08SValeria Barra } 409