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Elem_geom_base_32_64< _SIZE_ > Class Template Referenceabstract

Class Elem_geom_base This class is the base class for the definition of elements. More...

#include <Elem_geom_base.h>

Inheritance diagram for Elem_geom_base_32_64< _SIZE_ >:
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Collaboration diagram for Elem_geom_base_32_64< _SIZE_ >:
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Public Types

using int_t = _SIZE_
using ArrOfInt_t = ArrOfInt_T<_SIZE_>
using IntVect_t = IntVect_T<_SIZE_>
using IntTab_t = IntTab_T<_SIZE_>
using SmallArrOfTID_t = SmallArrOfTID_T<_SIZE_>
using ArrOfDouble_t = ArrOfDouble_T<_SIZE_>
using DoubleVect_t = DoubleVect_T<_SIZE_>
using DoubleTab_t = DoubleTab_T<_SIZE_>
using Domaine_t = Domaine_32_64<_SIZE_>
using Faces_t = Faces_32_64<_SIZE_>

Public Member Functions

virtual void creer_faces_elem (Faces_t &, int_t, Type_Face) const
 Creates the faces of the specified geometric element of the domain using the given face type.
void creer_faces_elem (Faces_t &, int_t) const
 Create the faces of the element of the specified domain.
virtual int face_sommet (int i, int j) const =0
 Returns the number of the j-th vertex of the i-th face of the element.
void associer_domaine (const Domaine_32_64< int_t > &dom)
virtual int nb_som () const =0
 Nb of vertices for the element.
virtual int nb_faces (int=0) const =0
 Nb of faces for the element.
virtual int nb_som_face (int=0) const =0
 Nb of vertices for one face of the element.
virtual bool est_structure () const =0
virtual const Nomnom_lml () const =0
virtual int contient (const ArrOfDouble &pos, int_t elem) const =0
 DOes the element 'elem' contains the point 'pos'.
virtual int contient (const SmallArrOfTID_t &soms, int_t elem) const =0
 Returns 1 if the vertices specified by the parameter "pos" are the vertices of the element "element" of the associated domain.
virtual int nb_type_face () const
 Nb of face types of the elemnt (for example 2 for a prism).
virtual int num_face (int face, Type_Face &type) const
 Returns the face parameter if the specified face type matches that of the geometric element.
virtual Type_Face type_face (int face_typ=0) const =0
 Type of the face of the element - face_typ < nb_type_face().
virtual void calculer_centres_gravite (DoubleTab_t &) const
 Compute all centers of mass of all elements in the domain.
virtual void reordonner ()
virtual void calculer_volumes (DoubleVect_t &vols) const =0
 Compute vols of all elements in the domain.
virtual void calculer_normales (const IntTab_t &faces_sommets, DoubleTab_t &face_normales) const
 Exits with an error. This method is not pure virtual for convenience.
virtual int get_tab_faces_sommets_locaux (IntTab &faces_som_local) const
 Fills faces_som_local(i,j) giving for 0 <= i < nb_faces() and 0 <= j < nb_som_face(i) the local vertex index on the element.
virtual void get_tab_aretes_sommets_locaux (IntTab &aretes_som_local) const
 Same as Elem_geom_base::get_tab_faces_sommets_locaux but for edges: aretes_som_local.
Public Member Functions inherited from Objet_U
 ~Objet_U () override
 Destructor. Removes the object from the list of objects registered in "memory".
int numero () const
 Returns the index of the object in Memoire::data.
virtual int duplique () const =0
virtual SortieprintOn (Sortie &) const
 Writes the object to an output stream. Virtual method to override.
virtual EntreereadOn (Entree &)
 Reads an Objet_U from an input stream. Virtual method to override.
virtual unsigned taille_memoire () const =0
virtual int est_egal_a (const Objet_U &) const
 Returns 1 if x and *this are the same instance (same memory address).
virtual const Nomle_nom () const
 Returns the name of the Objet_U. Virtual method to override: returns "neant" in this implementation.
virtual void nommer (const Nom &)
 Assigns a name to the Objet_U. Virtual method to override.
virtual int reprendre (Entree &)
 Restores an Objet_U from an input stream. Virtual method to override.
virtual int sauvegarder (Sortie &) const
 Saves an Objet_U to an output stream. Virtual method to override.
int get_object_id () const
 Returns the unique identifier of the object (object_id_).
virtual const Type_infoget_info () const
 Returns type information for the Objet_U.
const Nomque_suis_je () const
 Returns the string identifying the class.
const char * le_type () const
 Returns the type name of the Objet_U.
virtual int change_num (const int *const)
 Changes the internal number of the Objet_U.
virtual int lire_motcle_non_standard (const Motcle &motlu, Entree &is)
 Reads non-simple-type parameters of an Objet_U from an input stream.
virtual int associer_ (Objet_U &)
 Associates the Objet_U with another Objet_U. Virtual method to override.
const Interpreteinterprete () const
Interpreteinterprete ()
Public Member Functions inherited from Process
virtual ~Process ()

Protected Member Functions

 OBS_PTR (Domaine_t) mon_dom
Protected Member Functions inherited from Objet_U
 Objet_U ()
 Default constructor: assigns a unique identifier to the object (object_id_) and registers the object in "memory" by giving it a num_obj number.
 Objet_U (const Objet_U &)
 Copy constructor.
const Objet_Uoperator= (const Objet_U &)
 Assignment operator: does nothing (the number and identifier are preserved).
virtual void set_param (Param &) const

Additional Inherited Members

Static Public Member Functions inherited from Objet_U
static const Nomnom_du_cas ()
 Returns a constant reference to the case name. This method is static.
static Nomget_set_nom_du_cas ()
 Returns a non-constant reference to the case name (to allow modification). This method is static.
static const Type_infoinfo ()
 Returns type information for the Objet_U (static version).
static const Objet_Uself_cast (const Objet_U &)
 Method added for casting in Python.
static Objet_Uself_cast (Objet_U &)
Static Public Member Functions inherited from Process
static int me ()
 Returns the rank of the local processor in the current communication group. See Comm_Group::rank() and PE_Groups::current_group().
static int nproc ()
 Returns the number of processors in the current group. See Comm_Group::nproc() and PE_Groups::current_group().
static bool is_parallel ()
static void exit (int exit_code=-1)
 Exit routine for TRUST within a Kokkos region.
static double mp_sum (double)
 Computes the sum of x over all processors in the current group.
static float mp_sum (float)
static trustIdType mp_sum (trustIdType)
 Computes the sum of x over all processors in the current group.
static double mp_max (double)
static double mp_min (double)
static int mp_max (int)
 Returns the maximum value of x across all processors in the current group.
static int mp_min (int)
 Returns the minimum value of x across all processors in the current group.
static double mp_sum_as_double (int v)
static trustIdType mppartial_sum (trustIdType i)
 Computes the partial sum of x over processors 0 to me()-1 (returns 0 on processor 0).
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2)
 C++14 compatible mp_sum_for_each: combine multiple mp_sum calls into one collective operation Usage: mp_sum_for_each(a, b); mp_sum_for_each(a, b, c); mp_sum_for_each(a, b, c, d); mp_sum_for_each(a, b, c, d, e); All arguments must be of the same type (double or int) and are modified in place. Supports 2-5 parameters.
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_sum_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2)
 C++14 compatible mp_max_for_each: combine multiple mp_max calls into one collective operation.
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_max_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2)
 C++14 compatible mp_min_for_each: combine multiple mp_min calls into one collective operation.
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3, T &arg4)
template<typename T>
static void mp_min_for_each (T &arg1, T &arg2, T &arg3, T &arg4, T &arg5)
template<typename _TYPE_>
static void mp_sum_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
template<typename _TYPE_>
static void mp_max_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
template<typename _TYPE_>
static void mp_min_for_each_item (TRUSTArray< _TYPE_ > &x, int n=-1)
static bool mp_and (bool)
 Computes the logical AND of b across all processors in the current group.
static bool mp_or (bool)
static int check_int_overflow (trustIdType)
static int je_suis_maitre ()
 Returns 1 if on the master processor of the current group (i.e. me() == 0), 0 otherwise.
static KOKKOS_INLINE_FUNCTION void Kokkos_exit (const char *)
 Exit routine for TRUST within a Kokkos region.
static int node_master ()
 Returns 1 if on the NUMA node master processor, 0 otherwise.
static void exit (const Nom &message, int exit_code=-1)
static bool is_sequential ()
static void barrier ()
 Synchronizes all processors in the current group (waits until all processors have reached the barrier).
static void abort ()
 Abort routine for TRUST on a fatal error.
static SortieJournal (int message_level=0)
 Returns a static Sortie object used as an event journal.
static double ram_processeur ()
static void imprimer_ram_totale (int all_process=0)
static bool force_single_file (const int ranks, const Nom &filename)
Static Public Attributes inherited from Objet_U
static double precision_geom = 1e-10
static constexpr bool HAS_POINTER = false
static int dimension =0
static int format_precision_geom =11
static int axi =0
static int bidim_axi =0
static int DEACTIVATE_SIGINT_CATCH =0
static Type_info info_obj
static bool disable_TU =false
 Flag to disable or not the writing of the .TU files.
static bool stat_per_proc_perf_log =false
 Flag to enable the writing of the statistics detailed per processor in _csv.TU file.
Static Public Attributes inherited from Process
static int exception_sur_exit =0
static int multiple_files =5120

Detailed Description

template<typename _SIZE_>
class Elem_geom_base_32_64< _SIZE_ >

Class Elem_geom_base This class is the base class for the definition of elements.

geometric constituting a mesh (i.e. a geometric Domain) A geometric element has an associated Domain to which it provides the basic routines for manipulating its elements. (A domain has only one type of geometric element)

See also
Hexaedre Prisme Rectangle Segment Tetraedre Triangle, Domaine, Abstract class, Abstract methods:, int face_sommet(int i, int j) const, int nb_som() const, int nb_faces(int=0) const, int nb_som_face(int=0) const, int est_structure() const, const Nom& nom_lml() const, int contient(const ArrOfDouble&, int ) const, int contient(const ArrOfInt&, int ) const, Type_Face type_face(int=0) const, void calculer_volumes(DoubleVect& ) const, void calculer_normales(const IntTab& , DoubleTab& ) const

Definition at line 34 of file Elem_geom_base.h.

Member Typedef Documentation

◆ ArrOfDouble_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::ArrOfDouble_t = ArrOfDouble_T<_SIZE_>

Definition at line 46 of file Elem_geom_base.h.

◆ ArrOfInt_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::ArrOfInt_t = ArrOfInt_T<_SIZE_>

Definition at line 42 of file Elem_geom_base.h.

◆ Domaine_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::Domaine_t = Domaine_32_64<_SIZE_>

Definition at line 49 of file Elem_geom_base.h.

◆ DoubleTab_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::DoubleTab_t = DoubleTab_T<_SIZE_>

Definition at line 48 of file Elem_geom_base.h.

◆ DoubleVect_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::DoubleVect_t = DoubleVect_T<_SIZE_>

Definition at line 47 of file Elem_geom_base.h.

◆ Faces_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::Faces_t = Faces_32_64<_SIZE_>

Definition at line 50 of file Elem_geom_base.h.

◆ int_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::int_t = _SIZE_

Definition at line 41 of file Elem_geom_base.h.

◆ IntTab_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::IntTab_t = IntTab_T<_SIZE_>

Definition at line 44 of file Elem_geom_base.h.

◆ IntVect_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::IntVect_t = IntVect_T<_SIZE_>

Definition at line 43 of file Elem_geom_base.h.

◆ SmallArrOfTID_t

template<typename _SIZE_>
using Elem_geom_base_32_64< _SIZE_ >::SmallArrOfTID_t = SmallArrOfTID_T<_SIZE_>

Definition at line 45 of file Elem_geom_base.h.

Member Function Documentation

◆ associer_domaine()

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::associer_domaine ( const Domaine_32_64< int_t > & dom)
inline

Definition at line 57 of file Elem_geom_base.h.

◆ calculer_centres_gravite()

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::calculer_centres_gravite ( DoubleTab_t & tab_xp) const
virtual

Compute all centers of mass of all elements in the domain.

Computes the centers of mass of all elements in the domain associated with this geometric element.

Parameters
tab_xpArray to fill with the coordinates of the centers of mass.

Reimplemented in Hexaedre_axi_32_64< _SIZE_ >, Hexaedre_axi_32_64< int >, Hexaedre_axi_32_64< trustIdType >, Polyedre_32_64< _SIZE_ >, Polyedre_32_64< int >, Polyedre_32_64< trustIdType >, Polygone_32_64< _SIZE_ >, Polygone_32_64< int >, Polygone_32_64< trustIdType >, Rectangle_2D_axi_32_64< _SIZE_ >, Rectangle_2D_axi_32_64< int >, Rectangle_2D_axi_32_64< trustIdType >, Rectangle_axi_32_64< _SIZE_ >, Rectangle_axi_32_64< int >, and Rectangle_axi_32_64< trustIdType >.

Definition at line 93 of file Elem_geom_base.cpp.

◆ calculer_normales()

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::calculer_normales ( const IntTab_t & faces_sommets,
DoubleTab_t & face_normales ) const
virtual

Exits with an error. This method is not pure virtual for convenience.

Parameters
faces_sommetsVertex indices of the faces.
face_normalesArray to fill with face normals.

Reimplemented in Hexaedre_32_64< _SIZE_ >, Hexaedre_32_64< int >, Hexaedre_32_64< trustIdType >, Rectangle_32_64< _SIZE_ >, Rectangle_32_64< int >, Rectangle_32_64< trustIdType >, Tetraedre_32_64< _SIZE_ >, Tetraedre_32_64< int >, Tetraedre_32_64< trustIdType >, Triangle_32_64< _SIZE_ >, Triangle_32_64< int >, and Triangle_32_64< trustIdType >.

Definition at line 133 of file Elem_geom_base.cpp.

◆ calculer_volumes()

◆ contient() [1/2]

◆ contient() [2/2]

◆ creer_faces_elem() [1/2]

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::creer_faces_elem ( Faces_t & faces,
int_t elem ) const
inline

Create the faces of the element of the specified domain.

Parameters
(Faces_t&faces) the faces of the elements to create
(intelem) the number of the element of the domain whose faces we want to create

Definition at line 94 of file Elem_geom_base.h.

◆ creer_faces_elem() [2/2]

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::creer_faces_elem ( Faces_t & les_faces,
int_t num_elem,
Type_Face type ) const
virtual

Creates the faces of the specified geometric element of the domain using the given face type.

Parameters
les_facesFaces object to fill.
num_elemIndex of the element whose faces are to be created.
typeFace type to create.

Definition at line 64 of file Elem_geom_base.cpp.

◆ est_structure()

◆ face_sommet()

◆ get_tab_aretes_sommets_locaux()

template<typename _SIZE_>
void Elem_geom_base_32_64< _SIZE_ >::get_tab_aretes_sommets_locaux ( IntTab & aretes_som_local) const
virtual

Same as Elem_geom_base::get_tab_faces_sommets_locaux but for edges: aretes_som_local.

aretes_som_local.dimension(0) = number of edges on the reference element. aretes_som_local.dimension(1) = 2 (number of vertices per edge). aretes_som_local(i,j) = index of a vertex of the element (0 <= n < nb_vertices_per_element).

Parameters
aretes_som_localTable to fill with local edge-vertex indices.

Reimplemented in Tetraedre_32_64< _SIZE_ >, Tetraedre_32_64< int >, and Tetraedre_32_64< trustIdType >.

Definition at line 181 of file Elem_geom_base.cpp.

◆ get_tab_faces_sommets_locaux()

template<typename _SIZE_>
int Elem_geom_base_32_64< _SIZE_ >::get_tab_faces_sommets_locaux ( IntTab & faces_som_local) const
virtual

Fills faces_som_local(i,j) giving for 0 <= i < nb_faces() and 0 <= j < nb_som_face(i) the local vertex index on the element.

We have 0 <= faces_sommets_locaux(i,j) < nb_som(). If faces do not all have the same number of vertices, the number of columns equals the maximum, and unused entries are set to -1. Returns 1 if all faces have the same number of vertices, 0 otherwise.

Parameters
faces_som_localTable to fill with local face-vertex indices.
Returns
1 if all faces have the same vertex count, 0 otherwise.

Reimplemented in Hexaedre_32_64< _SIZE_ >, Hexaedre_32_64< int >, Hexaedre_32_64< trustIdType >, Hexaedre_VEF_32_64< _SIZE_ >, Hexaedre_VEF_32_64< int >, Hexaedre_VEF_32_64< trustIdType >, Point_32_64< _SIZE_ >, Point_32_64< int >, Point_32_64< trustIdType >, Poly_geom_base_32_64< _SIZE_ >, Poly_geom_base_32_64< int >, Poly_geom_base_32_64< trustIdType >, Polyedre_32_64< _SIZE_ >, Polyedre_32_64< int >, Polyedre_32_64< trustIdType >, Polygone_32_64< _SIZE_ >, Polygone_32_64< int >, Polygone_32_64< trustIdType >, Prisme_32_64< _SIZE_ >, Prisme_32_64< int >, Prisme_32_64< trustIdType >, Quadrangle_VEF_32_64< _SIZE_ >, Quadrangle_VEF_32_64< int >, Quadrangle_VEF_32_64< trustIdType >, Rectangle_32_64< _SIZE_ >, Rectangle_32_64< int >, Rectangle_32_64< trustIdType >, Segment_32_64< _SIZE_ >, Segment_32_64< int >, Segment_32_64< trustIdType >, Tetraedre_32_64< _SIZE_ >, Tetraedre_32_64< int >, Tetraedre_32_64< trustIdType >, Triangle_32_64< _SIZE_ >, Triangle_32_64< int >, and Triangle_32_64< trustIdType >.

Definition at line 163 of file Elem_geom_base.cpp.

◆ nb_faces()

◆ nb_som()

◆ nb_som_face()

◆ nb_type_face()

template<typename _SIZE_>
int Elem_geom_base_32_64< _SIZE_ >::nb_type_face ( ) const
virtual

Nb of face types of the elemnt (for example 2 for a prism).

Returns the number of face types of the geometric element.

For example, a prism (class Prisme) has 2 face types: triangle and quadrangle.

Returns
Always returns 1 for this base implementation.

Reimplemented in Poly_geom_base_32_64< _SIZE_ >, Poly_geom_base_32_64< int >, Poly_geom_base_32_64< trustIdType >, Prisme_32_64< _SIZE_ >, Prisme_32_64< int >, and Prisme_32_64< trustIdType >.

Definition at line 147 of file Elem_geom_base.cpp.

◆ nom_lml()

◆ num_face()

template<typename _SIZE_>
int Elem_geom_base_32_64< _SIZE_ >::num_face ( int face,
Type_Face & type ) const
virtual

Returns the face parameter if the specified face type matches that of the geometric element.

Parameters
faceFace index.
typeA face type.
Exceptions
Badface type specified.

Definition at line 51 of file Elem_geom_base.cpp.

◆ OBS_PTR()

template<typename _SIZE_>
Elem_geom_base_32_64< _SIZE_ >::OBS_PTR ( Domaine_t )
protected

◆ reordonner()

◆ type_face()


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