Reference documentation for deal.II version 9.5.0
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Classes | Public Member Functions | Private Attributes | List of all members
Utilities::MPI::RemotePointEvaluation< dim, spacedim > Class Template Reference

#include <deal.II/base/mpi_remote_point_evaluation.h>

Inheritance diagram for Utilities::MPI::RemotePointEvaluation< dim, spacedim >:
[legend]

Classes

struct  CellData
 

Public Member Functions

 RemotePointEvaluation (const double tolerance=1e-6, const bool enforce_unique_mapping=false, const unsigned int rtree_level=0, const std::function< std::vector< bool >()> &marked_vertices={})
 
 ~RemotePointEvaluation ()
 
void reinit (const std::vector< Point< spacedim > > &points, const Triangulation< dim, spacedim > &tria, const Mapping< dim, spacedim > &mapping)
 
void reinit (const GridTools::internal::DistributedComputePointLocationsInternal< dim, spacedim > &data, const Triangulation< dim, spacedim > &tria, const Mapping< dim, spacedim > &mapping)
 
const CellDataget_cell_data () const
 
template<typename T >
void evaluate_and_process (std::vector< T > &output, std::vector< T > &buffer, const std::function< void(const ArrayView< T > &, const CellData &)> &evaluation_function) const
 
template<typename T >
void process_and_evaluate (const std::vector< T > &input, std::vector< T > &buffer, const std::function< void(const ArrayView< const T > &, const CellData &)> &evaluation_function) const
 
const std::vector< unsigned int > & get_point_ptrs () const
 
bool is_map_unique () const
 
bool all_points_found () const
 
bool point_found (const unsigned int i) const
 
const Triangulation< dim, spacedim > & get_triangulation () const
 
const Mapping< dim, spacedim > & get_mapping () const
 
bool is_ready () const
 

Private Attributes

const double tolerance
 
const bool enforce_unique_mapping
 
const unsigned int rtree_level
 
const std::function< std::vector< bool >()> marked_vertices
 
boost::signals2::connection tria_signal
 
bool ready_flag
 
SmartPointer< const Triangulation< dim, spacedim > > tria
 
SmartPointer< const Mapping< dim, spacedim > > mapping
 
bool unique_mapping
 
bool all_points_found_flag
 
std::vector< unsigned intpoint_ptrs
 
std::vector< unsigned intrecv_permutation
 
std::vector< unsigned intrecv_ptrs
 
std::vector< unsigned intrecv_ranks
 
CellData cell_data
 
std::vector< unsigned intsend_permutation
 
std::vector< unsigned intsend_ranks
 
std::vector< unsigned intsend_ptrs
 

Detailed Description

template<int dim, int spacedim = dim>
class Utilities::MPI::RemotePointEvaluation< dim, spacedim >

Helper class to access values on non-matching grids.

Note
The name of the fields are chosen with the method evaluate_and_process() in mind. Here, quantities are computed at specified arbitrary positioned points (and even on remote processes in the MPI universe) cell by cell and these values are sent to requesting processes, which receive the result and resort the result according to the points.

Definition at line 53 of file mpi_remote_point_evaluation.h.

Constructor & Destructor Documentation

◆ RemotePointEvaluation()

template<int dim, int spacedim>
Utilities::MPI::RemotePointEvaluation< dim, spacedim >::RemotePointEvaluation ( const double  tolerance = 1e-6,
const bool  enforce_unique_mapping = false,
const unsigned int  rtree_level = 0,
const std::function< std::vector< bool >()> &  marked_vertices = {} 
)

Constructor.

Parameters
toleranceTolerance in terms of unit cell coordinates for determining all cells around a point passed to the class during reinit(). Depending on the problem, it might be necessary to adjust the tolerance in order to be able to identify a cell. Floating point arithmetic implies that a point will, in general, not lie exactly on a vertex, edge, or face.
enforce_unique_mappingEnforce unique mapping, i.e., (one-to-one) relation of points and cells.
rtree_levelRTree level to be used during the construction of the bounding boxes.
marked_verticesFunction that marks relevant vertices to make search of active cells around point more efficient.

Definition at line 39 of file mpi_remote_point_evaluation.cc.

◆ ~RemotePointEvaluation()

template<int dim, int spacedim>
Utilities::MPI::RemotePointEvaluation< dim, spacedim >::~RemotePointEvaluation

Destructor.

Definition at line 54 of file mpi_remote_point_evaluation.cc.

Member Function Documentation

◆ reinit() [1/2]

template<int dim, int spacedim>
void Utilities::MPI::RemotePointEvaluation< dim, spacedim >::reinit ( const std::vector< Point< spacedim > > &  points,
const Triangulation< dim, spacedim > &  tria,
const Mapping< dim, spacedim > &  mapping 
)

Set up internal data structures and communication pattern based on a list of points points and mesh description (tria and mapping).

Warning
This is a collective call that needs to be executed by all processors in the communicator.
Note
If you want to be sure that all points have been found, call all_points_found() after calling this function.

Definition at line 64 of file mpi_remote_point_evaluation.cc.

◆ reinit() [2/2]

template<int dim, int spacedim>
void Utilities::MPI::RemotePointEvaluation< dim, spacedim >::reinit ( const GridTools::internal::DistributedComputePointLocationsInternal< dim, spacedim > &  data,
const Triangulation< dim, spacedim > &  tria,
const Mapping< dim, spacedim > &  mapping 
)

Set up internal data structures and communication pattern based on GridTools::internal::DistributedComputePointLocationsInternal.

This function is called internally by the reinit() function above. Having it as a separate function makes it possible to set up the class if it is known in which cells corresponding reference points are located (e.g. if intersections of cells are known).

Definition at line 113 of file mpi_remote_point_evaluation.cc.

◆ get_cell_data()

template<int dim, int spacedim>
const RemotePointEvaluation< dim, spacedim >::CellData & Utilities::MPI::RemotePointEvaluation< dim, spacedim >::get_cell_data

Return internal data structure storing the data of points positioned in cells.

Definition at line 219 of file mpi_remote_point_evaluation.cc.

◆ evaluate_and_process()

template<int dim, int spacedim>
template<typename T >
void Utilities::MPI::RemotePointEvaluation< dim, spacedim >::evaluate_and_process ( std::vector< T > &  output,
std::vector< T > &  buffer,
const std::function< void(const ArrayView< T > &, const CellData &)> &  evaluation_function 
) const

Evaluate function evaluation_function in the given points and triangulation. The result is stored in output.

Note
If the map of points to cells is not a one-to-one relation (is_map_unique()==false), the result needs to be processed with the help of get_point_ptrs(). This might be the case if a point coincides with a geometric entity (e.g., vertex) that is shared by multiple cells or a point is outside of the computational domain.
Warning
This is a collective call that needs to be executed by all processors in the communicator.

Definition at line 334 of file mpi_remote_point_evaluation.h.

◆ process_and_evaluate()

template<int dim, int spacedim>
template<typename T >
void Utilities::MPI::RemotePointEvaluation< dim, spacedim >::process_and_evaluate ( const std::vector< T > &  input,
std::vector< T > &  buffer,
const std::function< void(const ArrayView< const T > &, const CellData &)> &  evaluation_function 
) const

This method is the inverse of the method evaluate_and_process(). It makes the data at the points, provided by input, available in the function evaluation_function.

Warning
This is a collective call that needs to be executed by all processors in the communicator.

Definition at line 490 of file mpi_remote_point_evaluation.h.

◆ get_point_ptrs()

template<int dim, int spacedim>
const std::vector< unsigned int > & Utilities::MPI::RemotePointEvaluation< dim, spacedim >::get_point_ptrs

Return a CRS-like data structure to determine the position of the result corresponding a point and the amount.

Definition at line 228 of file mpi_remote_point_evaluation.cc.

◆ is_map_unique()

template<int dim, int spacedim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::is_map_unique

Return if points and cells have a one-to-one relation. This is not the case if a point is not owned by any cell (the point is outside of the domain) or if multiple cells own the point (the point is positioned on a geometric entity shared by neighboring cells).

Definition at line 237 of file mpi_remote_point_evaluation.cc.

◆ all_points_found()

template<int dim, int spacedim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::all_points_found

Return if all points could be found in the domain.

Definition at line 246 of file mpi_remote_point_evaluation.cc.

◆ point_found()

template<int dim, int spacedim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::point_found ( const unsigned int  i) const

Return if point i could be found in the domain.

Definition at line 255 of file mpi_remote_point_evaluation.cc.

◆ get_triangulation()

template<int dim, int spacedim>
const Triangulation< dim, spacedim > & Utilities::MPI::RemotePointEvaluation< dim, spacedim >::get_triangulation

Return the Triangulation object used during reinit().

Definition at line 270 of file mpi_remote_point_evaluation.cc.

◆ get_mapping()

template<int dim, int spacedim>
const Mapping< dim, spacedim > & Utilities::MPI::RemotePointEvaluation< dim, spacedim >::get_mapping

Return the Mapping object used during reinit().

Definition at line 279 of file mpi_remote_point_evaluation.cc.

◆ is_ready()

template<int dim, int spacedim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::is_ready

Return if the internal data structures have been set up and if yes whether they are still valid (and not invalidated due to changes of the Triangulation).

Definition at line 288 of file mpi_remote_point_evaluation.cc.

Member Data Documentation

◆ tolerance

template<int dim, int spacedim = dim>
const double Utilities::MPI::RemotePointEvaluation< dim, spacedim >::tolerance
private

Tolerance to be used while determining the surrounding cells of a point.

Definition at line 233 of file mpi_remote_point_evaluation.h.

◆ enforce_unique_mapping

template<int dim, int spacedim = dim>
const bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::enforce_unique_mapping
private

Enforce unique mapping, i.e., (one-to-one) relation of points and cells.

Definition at line 239 of file mpi_remote_point_evaluation.h.

◆ rtree_level

template<int dim, int spacedim = dim>
const unsigned int Utilities::MPI::RemotePointEvaluation< dim, spacedim >::rtree_level
private

RTree level to be used during the construction of the bounding boxes.

Definition at line 244 of file mpi_remote_point_evaluation.h.

◆ marked_vertices

template<int dim, int spacedim = dim>
const std::function<std::vector<bool>()> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::marked_vertices
private

Function that marks relevant vertices to make search of active cells around point more efficient.

Definition at line 250 of file mpi_remote_point_evaluation.h.

◆ tria_signal

template<int dim, int spacedim = dim>
boost::signals2::connection Utilities::MPI::RemotePointEvaluation< dim, spacedim >::tria_signal
private

Storage for the status of the triangulation signal.

Definition at line 255 of file mpi_remote_point_evaluation.h.

◆ ready_flag

template<int dim, int spacedim = dim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::ready_flag
private

Flag indicating if the reinit() function has been called and if yes the triangulation has not been modified since then (potentially invalidating the communication pattern).

Definition at line 262 of file mpi_remote_point_evaluation.h.

◆ tria

template<int dim, int spacedim = dim>
SmartPointer<const Triangulation<dim, spacedim> > Utilities::MPI::RemotePointEvaluation< dim, spacedim >::tria
private

Reference to the Triangulation object used during reinit().

Definition at line 267 of file mpi_remote_point_evaluation.h.

◆ mapping

template<int dim, int spacedim = dim>
SmartPointer<const Mapping<dim, spacedim> > Utilities::MPI::RemotePointEvaluation< dim, spacedim >::mapping
private

Reference to the Mapping object used during reinit().

Definition at line 272 of file mpi_remote_point_evaluation.h.

◆ unique_mapping

template<int dim, int spacedim = dim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::unique_mapping
private

(One-to-one) relation of points and cells.

Definition at line 277 of file mpi_remote_point_evaluation.h.

◆ all_points_found_flag

template<int dim, int spacedim = dim>
bool Utilities::MPI::RemotePointEvaluation< dim, spacedim >::all_points_found_flag
private

Cache if all points passed in during reinit() have been found.

Definition at line 282 of file mpi_remote_point_evaluation.h.

◆ point_ptrs

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::point_ptrs
private

Since for each point multiple or no results can be available, the pointers in this vector indicate the first and last entry associated with a point in a CRS-like fashion.

Definition at line 289 of file mpi_remote_point_evaluation.h.

◆ recv_permutation

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::recv_permutation
private

Permutation index within a recv buffer.

Definition at line 294 of file mpi_remote_point_evaluation.h.

◆ recv_ptrs

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::recv_ptrs
private

Pointers of ranges within a receive buffer that are filled by ranks specified by recv_ranks.

Definition at line 300 of file mpi_remote_point_evaluation.h.

◆ recv_ranks

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::recv_ranks
private

Ranks from where data is received.

Definition at line 305 of file mpi_remote_point_evaluation.h.

◆ cell_data

template<int dim, int spacedim = dim>
CellData Utilities::MPI::RemotePointEvaluation< dim, spacedim >::cell_data
private

Point data sorted according to cells so that evaluation (incl. reading of degrees of freedoms) needs to performed only once per cell.

Definition at line 311 of file mpi_remote_point_evaluation.h.

◆ send_permutation

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::send_permutation
private

Permutation index within a send buffer.

Definition at line 316 of file mpi_remote_point_evaluation.h.

◆ send_ranks

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::send_ranks
private

Ranks to send to.

Definition at line 321 of file mpi_remote_point_evaluation.h.

◆ send_ptrs

template<int dim, int spacedim = dim>
std::vector<unsigned int> Utilities::MPI::RemotePointEvaluation< dim, spacedim >::send_ptrs
private

Pointers of ranges within a send buffer to be sent to the ranks specified by send_ranks.

Definition at line 327 of file mpi_remote_point_evaluation.h.


The documentation for this class was generated from the following files: