1#ifndef HHO_INTERPOLATE_HPP
2#define HHO_INTERPOLATE_HPP
15 struct InterpolateParameters {
21 template<TensorRankE Rank,
typename F>
23 const DiscreteSpace & Vh,
25 const InterpolateParameters & parameters = {}
28 const auto & cell_dofs_bases = Vh.get<
typename HHODOFsTypes<Rank>::CellDOFsType>(
"CellDOFs");
29 const auto & edge_dofs_bases = Vh.get<
typename HHODOFsTypes<Rank>::EdgeDOFsType>(
"EdgeDOFs");
31 Eigen::VectorXd vh = Eigen::VectorXd::Zero(Vh.dimension());
33 int doe_cell = (parameters.doe_cell > 0 ? parameters.doe_cell : 2 * cell_dofs_bases[0]->max_degree() + 3);
34 int doe_edge = (parameters.doe_edge > 0 ? parameters.doe_edge : 2 * edge_dofs_bases[0]->max_degree() + 3);
37 std::function<void(
size_t,
size_t)> interpolate_edges
38 = [&Vh, &edge_dofs_bases, &vh,
v, &doe_edge](
size_t start,
size_t end)->
void
40 for (
size_t iE = start; iE <
end; iE++) {
41 const Edge & E = *Vh.mesh().edge(iE);
44 vh.segment(Vh.globalOffset(E), edge_dofs_bases[iE]->dimension())
48 parallel_for(Vh.mesh().n_edges(), interpolate_edges, parameters.use_threads);
51 std::function<void(
size_t,
size_t)> interpolate_cells
52 = [&Vh, &cell_dofs_bases, &vh,
v, &doe_cell](
size_t start,
size_t end)->
void
54 for (
size_t iT = start; iT <
end; iT++) {
55 const Cell &
T = *Vh.mesh().cell(iT);
58 vh.segment(Vh.globalOffset(
T), cell_dofs_bases[iT]->dimension())
62 parallel_for(Vh.mesh().n_cells(), interpolate_cells, parameters.use_threads);
end
Definition compute_eigs.m:12
Eigen::VectorXd l2_projection(const std::function< typename BasisType::FunctionValue(const VectorRd &)> &f, const BasisType &basis, QuadratureRule &quad, const boost::multi_array< typename BasisType::FunctionValue, 2 > &basis_quad, const Eigen::MatrixXd &mass_basis=Eigen::MatrixXd::Zero(1, 1))
Compute the L2-projection of a function.
Definition basis.hpp:2886
static boost::multi_array< typename detail::basis_evaluation_traits< BasisType, BasisFunction >::ReturnValue, 2 > compute(const BasisType &basis, const QuadratureRule &quad)
Generic basis evaluation.
Definition basis.hpp:2288
static void parallel_for(unsigned nb_elements, std::function< void(size_t start, size_t end)> functor, bool use_threads=true, unsigned nb_threads_max=1e9)
Generic function to execute threaded processes.
Definition parallel_for.hpp:42
Polytope< DIMENSION > Cell
Definition Polytope2D.hpp:151
Polytope< 1 > Edge
A Face is a Polytope with object_dim = DIMENSION - 1.
Definition Polytope2D.hpp:147
std::vector< QuadratureNode > QuadratureRule
Definition quadraturerule.hpp:55
Eigen::MatrixXd GramMatrix(const Cell &T, const MonomialScalarBasisCell &basis1, const MonomialScalarBasisCell &basis2, MonomialCellIntegralsType mono_int_map={})
Computes the Gram Matrix of a pair of local scalar monomial bases.
Definition GMpoly_cell.cpp:86
QuadratureRule generate_quadrature_rule(const Cell &T, const int doe, const bool force_split)
Generate quadrature rule on mesh element.
Definition quadraturerule.cpp:10
if(strcmp(field, 'real')) % real valued entries T
Definition mmread.m:93
Eigen::VectorXd hho_interpolate(const DiscreteSpace &Vh, const F &v, const InterpolateParameters ¶meters={})
Definition hho-interpolate.hpp:22
Definition ddr-klplate.hpp:27
static auto v
Definition ddrcore-test.hpp:32
int doe_cell
Definition hho-interpolate.hpp:17
bool use_threads
Definition hho-interpolate.hpp:16
int doe_edge
Definition hho-interpolate.hpp:18