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Classes | Functions | Variables
projection_from_10node_op_volume.cpp File Reference
#include <MoFEM.hpp>

Go to the source code of this file.

Classes

struct  OpVolumeCalculation
 

Functions

int main (int argc, char *argv[])
 

Variables

static char help [] = "...\n\n"
 

Function Documentation

◆ main()

int main ( int  argc,
char *  argv[] 
)

Definition at line 39 of file projection_from_10node_op_volume.cpp.

39 {
40
41 MoFEM::Core::Initialize(&argc, &argv, (char *)0, help);
42
43 try {
44
45 moab::Core mb_instance;
46 moab::Interface &moab = mb_instance;
47 int rank;
48 MPI_Comm_rank(PETSC_COMM_WORLD, &rank);
49
50 PetscBool flg = PETSC_TRUE;
51 char mesh_file_name[255];
52#if PETSC_VERSION_GE(3, 6, 4)
53 CHKERR PetscOptionsGetString(PETSC_NULLPTR, "", "-my_file", mesh_file_name,
54 255, &flg);
55#else
56 CHKERR PetscOptionsGetString(PETSC_NULLPTR, PETSC_NULLPTR, "-my_file",
57 mesh_file_name, 255, &flg);
58#endif
59 if (flg != PETSC_TRUE) {
60 SETERRQ(PETSC_COMM_SELF, 1, "*** ERROR -my_file (MESH FILE NEEDED)");
61 }
62
63 const char *option;
64 option = ""; //"PARALLEL=BCAST;";//;DEBUG_IO";
65 CHKERR moab.load_file(mesh_file_name, 0, option);
66
67 // ParallelComm *pcomm = ParallelComm::get_pcomm(&moab, MYPCOMM_INDEX);
68 // auto moab_comm_wrap =
69 // boost::make_shared<WrapMPIComm>(PETSC_COMM_WORLD, false);
70 // if (pcomm == NULL)
71 // pcomm = new ParallelComm(&moab, moab_comm_wrap->get_comm());
72
73 MoFEM::Core core(moab);
74 MoFEM::Interface &m_field = core;
75
76 // add filds
77 CHKERR m_field.add_field("MESH_NODE_POSITIONS", H1, AINSWORTH_LEGENDRE_BASE,
78 3);
79
80 // add finite elements
81 CHKERR m_field.add_finite_element("TET_ELEM");
83 "MESH_NODE_POSITIONS");
85 "MESH_NODE_POSITIONS");
87 "MESH_NODE_POSITIONS");
88
89 BitRefLevel bit_level0;
90 bit_level0.set(0);
91 CHKERR m_field.getInterface<BitRefManager>()->setBitRefLevelByDim(
92 0, 3, bit_level0);
93 Range tets;
94 CHKERR moab.get_entities_by_type(0, MBTET, tets, true);
95 Range edges;
96 CHKERR moab.get_entities_by_type(0, MBEDGE, edges, true);
97 CHKERR m_field.getInterface<BitRefManager>()->setElementsBitRefLevel(edges);
98
99 // add ents to field and set app. order
100 CHKERR m_field.add_ents_to_field_by_type(0, MBTET, "MESH_NODE_POSITIONS");
101 CHKERR m_field.set_field_order(0, MBVERTEX, "MESH_NODE_POSITIONS", 1);
102 CHKERR m_field.set_field_order(0, MBEDGE, "MESH_NODE_POSITIONS", 2);
103 CHKERR m_field.set_field_order(0, MBTRI, "MESH_NODE_POSITIONS", 2);
104 CHKERR m_field.set_field_order(0, MBTET, "MESH_NODE_POSITIONS", 2);
105
106 // add finite elements entities
107 CHKERR m_field.add_ents_to_finite_element_by_type(tets, MBTET, "TET_ELEM");
108
109 // build fields
110 CHKERR m_field.build_fields();
111 // build finite elements
113 // build adjacencies
114 CHKERR m_field.build_adjacencies(bit_level0);
115
116 Projection10NodeCoordsOnField ent_method(m_field, "MESH_NODE_POSITIONS");
117 CHKERR m_field.loop_dofs("MESH_NODE_POSITIONS", ent_method);
118
119 CHKERR DMRegister_MoFEM("DMMOFEM");
120 auto dM = createDM(m_field.get_comm(), "DMMOFEM");
121 CHKERR DMMoFEMCreateMoFEM(dM, &m_field, "TET_PROBLEM", bit_level0);
122 CHKERR DMMoFEMAddElement(dM, "TET_ELEM");
123 CHKERR DMMoFEMSetIsPartitioned(dM, PETSC_FALSE);
125
126 auto vol_vec = createVectorMPI(m_field.get_comm(),
127 m_field.get_comm_rank() ? 0 : 1, 1);
128
129 auto fe_ptr =
130 boost::make_shared<VolumeElementForcesAndSourcesCore>(m_field);
131 auto material_grad_mat = boost::make_shared<MatrixDouble>();
132 auto material_det_vec = boost::make_shared<VectorDouble>();
133 fe_ptr->getOpPtrVector().push_back(new OpCalculateVectorFieldGradient<3, 3>(
134 "MESH_NODE_POSITIONS", material_grad_mat));
135 fe_ptr->getOpPtrVector().push_back(
136 new OpInvertMatrix<3>(material_grad_mat, material_det_vec, nullptr));
137 fe_ptr->getOpPtrVector().push_back(new OpSetHOWeights(material_det_vec));
138 fe_ptr->getOpPtrVector().push_back(new OpVolumeCalculation(vol_vec));
139
140 CHKERR DMoFEMLoopFiniteElements(dM, "TET_ELEM", fe_ptr);
141
142 double vol;
143 CHKERR VecAssemblyBegin(vol_vec);
144 CHKERR VecAssemblyEnd(vol_vec);
145 CHKERR VecSum(vol_vec, &vol);
146 CHKERR PetscPrintf(PETSC_COMM_WORLD, "vol = %3.8e\n", vol);
147 if (fabs(vol - 1.0) > 1e-4)
148 SETERRQ(PETSC_COMM_WORLD, MOFEM_ATOM_TEST_INVALID, "Failed to pass test");
149 }
151
153}
#define CATCH_ERRORS
Catch errors.
@ AINSWORTH_LEGENDRE_BASE
Ainsworth Cole (Legendre) approx. base .
Definition definitions.h:60
@ H1
continuous field
Definition definitions.h:85
@ MOFEM_ATOM_TEST_INVALID
Definition definitions.h:40
#define CHKERR
Inline error check.
PetscErrorCode DMMoFEMSetIsPartitioned(DM dm, PetscBool is_partitioned)
Definition DMMoFEM.cpp:1113
PetscErrorCode DMMoFEMAddElement(DM dm, std::string fe_name)
add element to dm
Definition DMMoFEM.cpp:488
PetscErrorCode DMMoFEMCreateMoFEM(DM dm, MoFEM::Interface *m_field_ptr, const char problem_name[], const MoFEM::BitRefLevel bit_level, const MoFEM::BitRefLevel bit_mask=MoFEM::BitRefLevel().set())
Must be called by user to set MoFEM data structures.
Definition DMMoFEM.cpp:114
PetscErrorCode DMRegister_MoFEM(const char sname[])
Register MoFEM problem.
Definition DMMoFEM.cpp:43
PetscErrorCode DMoFEMLoopFiniteElements(DM dm, const char fe_name[], MoFEM::FEMethod *method, CacheTupleWeakPtr cache_ptr=CacheTupleSharedPtr())
Executes FEMethod for finite elements in DM.
Definition DMMoFEM.cpp:576
PetscErrorCode DMSetUp_MoFEM(DM dm)
Definition DMMoFEM.cpp:1297
virtual MoFEMErrorCode add_finite_element(const std::string &fe_name, enum MoFEMTypes bh=MF_EXCL, int verb=DEFAULT_VERBOSITY)=0
add finite element
virtual MoFEMErrorCode build_finite_elements(int verb=DEFAULT_VERBOSITY)=0
Build finite elements.
virtual MoFEMErrorCode modify_finite_element_add_field_col(const std::string &fe_name, const std::string name_row)=0
set field col which finite element use
virtual MoFEMErrorCode add_ents_to_finite_element_by_type(const EntityHandle entities, const EntityType type, const std::string name, const bool recursive=true)=0
add entities to finite element
virtual MoFEMErrorCode modify_finite_element_add_field_row(const std::string &fe_name, const std::string name_row)=0
set field row which finite element use
virtual MoFEMErrorCode modify_finite_element_add_field_data(const std::string &fe_name, const std::string name_field)=0
set finite element field data
virtual MoFEMErrorCode build_fields(int verb=DEFAULT_VERBOSITY)=0
virtual MoFEMErrorCode set_field_order(const EntityHandle meshset, const EntityType type, const std::string &name, const ApproximationOrder order, int verb=DEFAULT_VERBOSITY)=0
Set order approximation of the entities in the field.
virtual MoFEMErrorCode add_ents_to_field_by_type(const Range &ents, const EntityType type, const std::string &name, int verb=DEFAULT_VERBOSITY)=0
Add entities to field meshset.
virtual MoFEMErrorCode loop_dofs(const Problem *problem_ptr, const std::string &field_name, RowColData rc, DofMethod &method, int lower_rank, int upper_rank, int verb=DEFAULT_VERBOSITY)=0
Make a loop over dofs.
char mesh_file_name[255]
std::bitset< BITREFLEVEL_SIZE > BitRefLevel
Bit structure attached to each entity identifying to what mesh entity is attached.
Definition Types.hpp:40
auto createVectorMPI(MPI_Comm comm, PetscInt n, PetscInt N)
Create MPI Vector.
PetscErrorCode PetscOptionsGetString(PetscOptions *, const char pre[], const char name[], char str[], size_t size, PetscBool *set)
auto createDM(MPI_Comm comm, const std::string dm_type_name)
Creates smart DM object.
static char help[]
Managing BitRefLevels.
virtual MoFEMErrorCode build_adjacencies(const Range &ents, int verb=DEFAULT_VERBOSITY)=0
build adjacencies
virtual MoFEMErrorCode add_field(const std::string name, const FieldSpace space, const FieldApproximationBase base, const FieldCoefficientsNumber nb_of_coefficients, const TagType tag_type=MB_TAG_SPARSE, const enum MoFEMTypes bh=MF_EXCL, int verb=DEFAULT_VERBOSITY)=0
Add field.
virtual MPI_Comm & get_comm() const =0
virtual int get_comm_rank() const =0
Core (interface) class.
Definition Core.hpp:82
static MoFEMErrorCode Initialize(int *argc, char ***args, const char file[], const char help[])
Initializes the MoFEM database PETSc, MOAB and MPI.
Definition Core.cpp:72
static MoFEMErrorCode Finalize()
Checks for options to be called at the conclusion of the program.
Definition Core.cpp:118
Deprecated interface functions.
Get field gradients at integration pts for scalar field rank 0, i.e. vector field.
Operator for inverting matrices at integration points.
Set integration weights for higher-order elements.
Projection of edge entities with one mid-node on hierarchical basis.
MoFEMErrorCode getInterface(IFACE *&iface) const
Get interface reference to pointer of interface.

Variable Documentation

◆ help

char help[] = "...\n\n"
static

Definition at line 7 of file projection_from_10node_op_volume.cpp.