TrioCFD 1.9.8
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Cut_field_template< _TYPE_, _TYPE_ARRAY_ > Class Template Reference

: class Cut_field_template More...

#include <Cut_field.h>

Inheritance diagram for Cut_field_template< _TYPE_, _TYPE_ARRAY_ >:
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Collaboration diagram for Cut_field_template< _TYPE_, _TYPE_ARRAY_ >:
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Public Member Functions

 Cut_field_template ()
void echange_espace_virtuel (int ghost)
void copie_pure_vers_diph_sans_interpolation ()
void echange_pure_vers_diph_cellules_initialement_pures ()
bool check_agreement_diph_pure_cellules_initialement_pures () const
bool check_agreement_diph_pure_cellules_finalement_pures () const
void echange_diph_vers_pure_cellules_finalement_pures ()
void vide_phase_invalide_cellules_diphasiques ()
bool check_agreement_tableau_pure_cellules_diphasiques (bool next_time) const
void remplir_tableau_pure_cellules_diphasiques (bool next_time)
void remplir_tableau_pure_cellules_diphasiques_max (bool next_time)
void set_field_data (const Nom &parser_expression_of_x_y_z_and_t, const IJK_Field_template< _TYPE_, _TYPE_ARRAY_ > &input_f, const double current_time)
void set_to_uniform_value (_TYPE_ valeur)
void set_to_sum (const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > &data_1, const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > &data_2)
void associer_persistant (Cut_cell_FT_Disc &cut_cell_disc)
void associer_ephemere (Cut_cell_FT_Disc &cut_cell_disc)
void associer_paresseux (Cut_cell_FT_Disc &cut_cell_disc)
void copy_from (const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > &data)
void add_from (const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > &data, _TYPE_ constant=1)
const Cut_cell_FT_Discget_cut_cell_disc () const
void allocate_persistant (Cut_cell_FT_Disc &cut_cell_disc, const Domaine_IJK &splitting, Domaine_IJK::Localisation loc, int ghost_size, int additional_k_layers=0, int nb_compo=1, bool external_storage=false, int monofluide=0, double rov=0., double rol=0., int use_inv_rho_in_pressure_solver=0)
void allocate_ephemere (Cut_cell_FT_Disc &cut_cell_disc, const Domaine_IJK &splitting, Domaine_IJK::Localisation loc, int ghost_size, int additional_k_layers=0, int nb_compo=1, bool external_storage=false, int monofluide=0, double rov=0., double rol=0., int use_inv_rho_in_pressure_solver=0)
void allocate_paresseux (Cut_cell_FT_Disc &cut_cell_disc, const Domaine_IJK &splitting, Domaine_IJK::Localisation loc, int ghost_size, int additional_k_layers=0, int nb_compo=1, bool external_storage=false, int monofluide=0, double rov=0., double rol=0., int use_inv_rho_in_pressure_solver=0)
void dumplata_scalar (const char *filename, int step) const override
_TYPE_ & from_signed_independent_index (int signed_independent_index)
const _TYPE_ & from_signed_independent_index (int signed_independent_index) const
_TYPE_ & from_ijk_and_phase (int i, int j, int k, bool phase)
const _TYPE_ & from_ijk_and_phase (int i, int j, int k, bool phase) const
_TYPE_ & from_n_num_face_and_phase (int n, int num_face, bool phase)
const _TYPE_ & from_n_num_face_and_phase (int n, int num_face, bool phase) const
CutCell_GlobalInfo compute_global_energy_cut_cell (bool next, double constant_l, double constant_v) const
CutCell_GlobalInfo compute_d_global_energy_cut_cell (bool next) const
CutCell_GlobalInfo compute_norm_cut_cell (bool next) const
CutCell_GlobalInfo compute_min_cut_cell (bool next) const
CutCell_GlobalInfo compute_max_cut_cell (bool next) const
Nom get_value_location (_TYPE_ T) const
_TYPE_ & pure_ (int i, int j, int k)
const _TYPE_ & pure_ (int i, int j, int k) const
_TYPE_ & operator() (int i, int j, int k)
const _TYPE_ & operator() (int i, int j, int k) const
_TYPE_ & operator() (int i, int j, int k, int compo)
const _TYPE_ & operator() (int i, int j, int k, int compo) const
void multiply_by_scalar (_TYPE_ scalar_l, _TYPE_ scalar_v)
void divide_by_scalar (_TYPE_ scalar_l, _TYPE_ scalar_v)
bool check_agreement_tableau_pure_cellules_diphasiques (bool next_time) const
void remplir_tableau_pure_cellules_diphasiques (bool next_time)
void remplir_tableau_pure_cellules_diphasiques_max (bool next_time)
void set_field_data (const Nom &parser_expression_of_x_y_z_and_t, const IJK_Field_template< double, ArrOfDouble > &input_f, const double current_time)
void dumplata_scalar (const char *filename, int step) const
void dumplata_scalar (const char *filename, int step) const
CutCell_GlobalInfo compute_norm_cut_cell (bool next) const
CutCell_GlobalInfo compute_d_global_energy_cut_cell (bool next) const
CutCell_GlobalInfo compute_global_energy_cut_cell (bool next, double constant_l, double constant_v) const
CutCell_GlobalInfo compute_min_cut_cell (bool next) const
CutCell_GlobalInfo compute_max_cut_cell (bool next) const
void multiply_by_scalar (double scalar_l, double scalar_v)
void divide_by_scalar (double scalar_l, double scalar_v)
Public Member Functions inherited from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >
 IJK_Field_template ()
void allocate (const Domaine_IJK &d, Domaine_IJK::Localisation l, int ghost_size, int additional_k_layers=0, int nb_compo=1, const Nom &name=Nom(), bool external_storage=false, int monofluide=0, double rov=0., double rol=0., int use_inv_rho_in_pressure_solver=0)
void allocate (const Domaine_IJK &d, Domaine_IJK::Localisation l, int ghost_size, const Nom &name)
const Domaine_IJKget_domaine () const
Domaine_IJK::Localisation get_localisation () const
void echange_espace_virtuel (int ghost)
 Exchange data over "ghost" number of cells.
_TYPE_ interpolation_for_shear_periodicity_IJK_Field (const int send_j, const int send_k)
void interpolation_for_shear_periodicity_I_sig_kappa (const int send_j, const int send_k_zmin, const int send_k_zmax, _TYPE_ &Isigkappazmin, _TYPE_ &Isigkappazmax)
void redistribute_with_shear_domain_ft (const IJK_Field_double &input, double DU_perio, const int ft_extension)
void ajouter_second_membre_shear_perio (IJK_Field_double &resu)
IJK_Shear_Periodic_helplerget_shear_BC_helpler ()
const IJK_Shear_Periodic_helplerget_shear_BC_helpler () const
Public Member Functions inherited from IJK_Field_local_template< _TYPE_, _TYPE_ARRAY_ >
 IJK_Field_local_template ()
void allocate (int ni, int nj, int nk, int ghosts, int additional_k_layers=0, int nb_compo=1, bool external_storage=false)
void shift_k_origin (int n)
void ref_ij (IJK_Field_local_template &src, int k_layer)
int linear_index (int i, int j, int k) const
int linear_index (int i, int j, int k, int compo) const
_TYPE_ & operator() (int i, int j, int k)
const _TYPE_ & operator() (int i, int j, int k) const
_TYPE_ & operator() (int i, int j, int k, int compo)
const _TYPE_ & operator() (int i, int j, int k, int compo) const
int linear_index_relaxed_test (int i, int j, int k) const
int linear_index_relaxed_test (int i, int j, int k, int compo) const
_TYPE_ & get_in_allocated_area (int i, int j, int k)
const _TYPE_ & get_in_allocated_area (int i, int j, int k) const
_TYPE_ & get_in_allocated_area (int i, int j, int k, int compo)
const _TYPE_ & get_in_allocated_area (int i, int j, int k, int compo) const
_TYPE_ * k_layer (int k)
const _TYPE_ * k_layer (int k) const
_TYPE_ * k_layer (int k, int compo)
const _TYPE_ * k_layer (int k, int compo) const
int ni () const
int nj () const
int nk () const
int nb_elem_local (int dir) const
int j_stride () const
int compo_stride () const
int k_stride () const
int ghost () const
int k_shift () const
int k_shift_max () const
int get_allocated_size () const
_TYPE_ARRAY_ & data ()
const _TYPE_ARRAY_ & data () const
void ref_ij (IJK_Field_local_float &src, int k_lay)
void ref_ij (IJK_Field_local_double &src, int k_lay)
Public Member Functions inherited from Field_base
 Field_base ()
 Field_base (const Field_base &other)=default
void nommer (const Nom &) override
 Donne un nom au champ.
const Nomle_nom () const override
 Renvoie le nom du champ.
const Nomsget_synonyms () const
virtual void add_synonymous (const Nom &nom)
virtual int nb_comp () const
virtual void fixer_nb_comp (int i)
 Fixe le nombre de composantes du champ.
virtual int nb_vect_comp () const
const Nomsnoms_compo () const
 Renvoie le tableau des noms des composantes du champ.
const Nomnom_compo (int) const
 Renvoie le nom de la ieme composante du champ.
const Nomnom_compo () const
 Renvoie le nom d'un champ scalaire.
virtual const Nomsfixer_noms_compo (const Noms &)
 Fixe le nom des composantes du champ.
virtual const Nomfixer_nom_compo (int, const Nom &)
 Fixe le nom de la i-eme composante du champ.
virtual const Nomfixer_nom_compo (const Nom &)
 Fixe le nom d'un champ scalaire.
const Nomsunites () const
 Renvoie les unites des composantes du champ.
const Nomunite () const
 Renvoie l'unite d'un champ scalaire dont toutes les composantes ont la meme unite.
const Nomunite (int) const
 Renvoie l'unite de la i-eme composante du champ.
virtual const Nomsfixer_unites (const Noms &)
 Specifie les unites des composantes du champ.
virtual const Nomfixer_unite (const Nom &)
 Specifie l'unite d'un champ scalaire ou dont toutes les composantes ont la meme unite.
virtual const Nomfixer_unite (int i, const Nom &)
 Specifie l'unite de la i-eme composante du champ Signification: l'index de la composante du champ dont on veut specifier l'unite.
virtual Nature_du_champ nature_du_champ () const
virtual Nature_du_champ fixer_nature_du_champ (Nature_du_champ nat)
 Fixer la nature d'un champ: scalaire, multiscalaire, vectoriel.
bool is_basis_function () const
bool is_quadrature () const
bool is_vectorial () const
bool is_scalar () const
int order_field () const
 Renvoie l'ordre des fonctions de base.
Public Member Functions inherited from Objet_U
 ~Objet_U () override
 Destructeur, supprime l'objet de la liste d'objets enregistres dans "memoire".
int numero () const
 Renvoie l'indice de l'objet dans Memoire::data.
virtual int est_egal_a (const Objet_U &) const
 Renvoie 1 si l'objet x et *this sont une seule et meme instance (meme adresse en memoire).
virtual int reprendre (Entree &)
 Reprise d'un Objet_U sur un flot d'entree Methode a surcharger.
virtual int sauvegarder (Sortie &) const
 Sauvegarde d'un Objet_U sur un flot de sortie Methode a surcharger.
int get_object_id () const
 Renvoie l'identifiant unique de l'objet object_id_.
virtual const Type_infoget_info () const
 Donne des informations sur le type de l'Objet_U.
const Nomque_suis_je () const
 renvoie la chaine identifiant la classe.
const char * le_type () const
 Donne le nom du type de l'Objet_U.
virtual int change_num (const int *const)
 Change le numero interne de l'Objet_U.
virtual int lire_motcle_non_standard (const Motcle &motlu, Entree &is)
 Lecture des parametres de type non simple d'un objet_U a partir d'un flot d'entree.
virtual int associer_ (Objet_U &)
 Associe l'Objet_U a un autre Objet_U Methode virtuelle a surcharger.
const Interpreteinterprete () const
Interpreteinterprete ()
Public Member Functions inherited from Process
virtual ~Process ()

Public Attributes

TRUSTTabFT_cut_cell< _TYPE_ > diph_l_
TRUSTTabFT_cut_cell< _TYPE_ > diph_v_

Protected Member Functions

 OBS_PTR (Cut_cell_FT_Disc) cut_cell_disc_
Protected Member Functions inherited from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >
unsigned taille_memoire () const override
int duplique () const override
SortieprintOn (Sortie &os) const override
 Ecriture de l'objet sur un flot de sortie Methode a surcharger.
EntreereadOn (Entree &is) override
 Lecture d'un Objet_U sur un flot d'entree Methode a surcharger.
 OBS_PTR (Domaine_IJK) domaine_ref_
void exchange_data (int pe_imin_, int is, int js, int ks, int pe_imax_, int ir, int jr, int kr, int isz, int jsz, int ksz, double offset_i=0., double jump_i=0., int nb_ghost=0)
Protected Member Functions inherited from Objet_U
 Objet_U ()
 Constructeur par defaut : attribue un numero d'identifiant unique a l'objet (object_id_), et enregistre l'objet en "memoire".
 Objet_U (const Objet_U &)
 Constructeur par copie.
const Objet_Uoperator= (const Objet_U &)
 Operateur= : ne fait rien (on conserve le numero et l'identifiant).
virtual void set_param (Param &) const

Additional Inherited Members

Static Public Member Functions inherited from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >
static void increase_alloc_counter (int i=1)
static int alloc_counter ()
Static Public Member Functions inherited from Objet_U
static const Nomnom_du_cas ()
 Renvoie une reference constante vers le nom du cas.
static Nomget_set_nom_du_cas ()
 Renvoie une reference non constante vers le nom du cas (pour pouvoir le modifier).
static const Type_infoinfo ()
 Donne des informations sur le type de l'Objet_U.
static const Objet_Uself_cast (const Objet_U &)
 methode ajoutee pour caster en python
static Objet_Uself_cast (Objet_U &)
Static Public Member Functions inherited from Process
static int me ()
 renvoie mon rang dans le groupe de communication courant.
static int nproc ()
 renvoie le nombre de processeurs dans le groupe courant Voir Comm_Group::nproc() et PE_Groups::current_group()
static bool is_parallel ()
static void exit (int exit_code=-1)
 Routine de sortie de TRUST dans une region Kokkos.
static double mp_sum (double)
 Calcule la somme de x sur tous les processeurs du groupe courant.
static float mp_sum (float)
static trustIdType mp_sum (trustIdType)
 Calcule la somme de x sur tous les processeurs du groupe courant.
static double mp_max (double)
static double mp_min (double)
static int mp_max (int)
 renvoie le plus grand int i sur l'ensemble des processeurs du groupe courant.
static int mp_min (int)
 renvoie le plus petit int i sur l'ensemble des processeurs du groupe courant.
static double mp_sum_as_double (int v)
static trustIdType mppartial_sum (trustIdType i)
 Calul de la somme partielle de i sur les processeurs 0 a me()-1 (renvoie 0 sur le processeur 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)
 Calcule le 'et' logique de b sur tous les processeurs du groupe courant.
static bool mp_or (bool)
static int check_int_overflow (trustIdType)
static int je_suis_maitre ()
 renvoie 1 si on est sur le processeur maitre du groupe courant (c'est a dire me() == 0), 0 sinon.
static KOKKOS_INLINE_FUNCTION void Kokkos_exit (const char *)
 Routine de sortie de TRUST dans une region Kokkos.
static int node_master ()
 renvoie 1 si on est sur le processeur maitre du noeud numa, 0 sinon.
static void exit (const Nom &message, int exit_code=-1)
static bool is_sequential ()
static void barrier ()
 Synchronise tous les processeurs du groupe courant (attend que tous les processeurs soient arrives a la barriere).
static void abort ()
 Routine de sortie de Trio-U sur une erreur abort().
static SortieJournal (int message_level=0)
 Renvoie un objet statique de type Sortie qui sert de journal d'evenements.
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
Protected Attributes inherited from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >
Domaine_IJK::Localisation localisation_
IJK_Shear_Periodic_helpler shear_BC_helpler_
Protected Attributes inherited from IJK_Field_local_template< _TYPE_, _TYPE_ARRAY_ >
int ni_
int nj_
int nk_
int ghost_size_
int j_stride_
int compo_stride_
int offset_
int k_layer_shift_
int additional_k_layers_
int allocated_size_
_TYPE_ARRAY_ data_
Protected Attributes inherited from Field_base
Nom nom_
Noms noms_synonymes_
Noms noms_compo_
Noms unite_
int nb_compo_
Nature_du_champ nature_
Static Protected Attributes inherited from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >
static int alloc_counter_
 To monitor how many field allocations we perform.

Detailed Description

template<typename _TYPE_, typename _TYPE_ARRAY_>
class Cut_field_template< _TYPE_, _TYPE_ARRAY_ >

: class Cut_field_template

Definition at line 44 of file Cut_field.h.

Constructor & Destructor Documentation

◆ Cut_field_template()

template<typename _TYPE_, typename _TYPE_ARRAY_>
Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::Cut_field_template ( )

Definition at line 23 of file Cut_field.cpp.

Member Function Documentation

◆ add_from()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::add_from ( const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > & data,
_TYPE_ constant = 1 )

Definition at line 512 of file Cut_field.cpp.

◆ allocate_ephemere()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::allocate_ephemere ( Cut_cell_FT_Disc & cut_cell_disc,
const Domaine_IJK & splitting,
Domaine_IJK::Localisation loc,
int ghost_size,
int additional_k_layers = 0,
int nb_compo = 1,
bool external_storage = false,
int monofluide = 0,
double rov = 0.,
double rol = 0.,
int use_inv_rho_in_pressure_solver = 0 )
inline

Definition at line 86 of file Cut_field.h.

◆ allocate_paresseux()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::allocate_paresseux ( Cut_cell_FT_Disc & cut_cell_disc,
const Domaine_IJK & splitting,
Domaine_IJK::Localisation loc,
int ghost_size,
int additional_k_layers = 0,
int nb_compo = 1,
bool external_storage = false,
int monofluide = 0,
double rov = 0.,
double rol = 0.,
int use_inv_rho_in_pressure_solver = 0 )
inline

Definition at line 92 of file Cut_field.h.

◆ allocate_persistant()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::allocate_persistant ( Cut_cell_FT_Disc & cut_cell_disc,
const Domaine_IJK & splitting,
Domaine_IJK::Localisation loc,
int ghost_size,
int additional_k_layers = 0,
int nb_compo = 1,
bool external_storage = false,
int monofluide = 0,
double rov = 0.,
double rol = 0.,
int use_inv_rho_in_pressure_solver = 0 )
inline

Definition at line 80 of file Cut_field.h.

◆ associer_ephemere()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::associer_ephemere ( Cut_cell_FT_Disc & cut_cell_disc)

Definition at line 468 of file Cut_field.cpp.

◆ associer_paresseux()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::associer_paresseux ( Cut_cell_FT_Disc & cut_cell_disc)

Definition at line 476 of file Cut_field.cpp.

◆ associer_persistant()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::associer_persistant ( Cut_cell_FT_Disc & cut_cell_disc)

Definition at line 460 of file Cut_field.cpp.

◆ check_agreement_diph_pure_cellules_finalement_pures()

template<typename _TYPE_, typename _TYPE_ARRAY_>
bool Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::check_agreement_diph_pure_cellules_finalement_pures ( ) const

Definition at line 136 of file Cut_field.cpp.

◆ check_agreement_diph_pure_cellules_initialement_pures()

template<typename _TYPE_, typename _TYPE_ARRAY_>
bool Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::check_agreement_diph_pure_cellules_initialement_pures ( ) const

Definition at line 101 of file Cut_field.cpp.

◆ check_agreement_tableau_pure_cellules_diphasiques() [1/2]

bool Cut_field_template< double, ArrOfDouble >::check_agreement_tableau_pure_cellules_diphasiques ( bool next_time) const

Definition at line 259 of file Cut_field.cpp.

◆ check_agreement_tableau_pure_cellules_diphasiques() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
bool Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::check_agreement_tableau_pure_cellules_diphasiques ( bool next_time) const

◆ compute_d_global_energy_cut_cell() [1/2]

CutCell_GlobalInfo Cut_field_template< double, ArrOfDouble >::compute_d_global_energy_cut_cell ( bool next) const

Definition at line 885 of file Cut_field.cpp.

◆ compute_d_global_energy_cut_cell() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
CutCell_GlobalInfo Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::compute_d_global_energy_cut_cell ( bool next) const

◆ compute_global_energy_cut_cell() [1/2]

CutCell_GlobalInfo Cut_field_template< double, ArrOfDouble >::compute_global_energy_cut_cell ( bool next,
double constant_l,
double constant_v ) const

Definition at line 1067 of file Cut_field.cpp.

◆ compute_global_energy_cut_cell() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
CutCell_GlobalInfo Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::compute_global_energy_cut_cell ( bool next,
double constant_l,
double constant_v ) const

◆ compute_max_cut_cell() [1/2]

CutCell_GlobalInfo Cut_field_template< double, ArrOfDouble >::compute_max_cut_cell ( bool next) const

Definition at line 1368 of file Cut_field.cpp.

◆ compute_max_cut_cell() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
CutCell_GlobalInfo Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::compute_max_cut_cell ( bool next) const

◆ compute_min_cut_cell() [1/2]

CutCell_GlobalInfo Cut_field_template< double, ArrOfDouble >::compute_min_cut_cell ( bool next) const

Definition at line 1253 of file Cut_field.cpp.

◆ compute_min_cut_cell() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
CutCell_GlobalInfo Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::compute_min_cut_cell ( bool next) const

◆ compute_norm_cut_cell() [1/2]

CutCell_GlobalInfo Cut_field_template< double, ArrOfDouble >::compute_norm_cut_cell ( bool next) const

Definition at line 694 of file Cut_field.cpp.

◆ compute_norm_cut_cell() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
CutCell_GlobalInfo Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::compute_norm_cut_cell ( bool next) const

◆ copie_pure_vers_diph_sans_interpolation()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::copie_pure_vers_diph_sans_interpolation ( )

Definition at line 37 of file Cut_field.cpp.

◆ copy_from()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::copy_from ( const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > & data)

Definition at line 484 of file Cut_field.cpp.

◆ divide_by_scalar() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::divide_by_scalar ( _TYPE_ scalar_l,
_TYPE_ scalar_v )

◆ divide_by_scalar() [2/2]

void Cut_field_template< double, ArrOfDouble >::divide_by_scalar ( double scalar_l,
double scalar_v )

Definition at line 1550 of file Cut_field.cpp.

◆ dumplata_scalar() [1/3]

void Cut_field_template< int, ArrOfInt >::dumplata_scalar ( const char * filename,
int step ) const
virtual

Reimplemented from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >.

Definition at line 440 of file Cut_field.cpp.

◆ dumplata_scalar() [2/3]

void Cut_field_template< double, ArrOfDouble >::dumplata_scalar ( const char * filename,
int step ) const
virtual

Reimplemented from IJK_Field_template< _TYPE_, _TYPE_ARRAY_ >.

Definition at line 422 of file Cut_field.cpp.

◆ dumplata_scalar() [3/3]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::dumplata_scalar ( const char * filename,
int step ) const
overridevirtual

◆ echange_diph_vers_pure_cellules_finalement_pures()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::echange_diph_vers_pure_cellules_finalement_pures ( )

Definition at line 171 of file Cut_field.cpp.

◆ echange_espace_virtuel()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::echange_espace_virtuel ( int ghost)

Definition at line 29 of file Cut_field.cpp.

◆ echange_pure_vers_diph_cellules_initialement_pures()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::echange_pure_vers_diph_cellules_initialement_pures ( )

Definition at line 54 of file Cut_field.cpp.

◆ from_ijk_and_phase() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_ijk_and_phase ( int i,
int j,
int k,
bool phase )

Definition at line 640 of file Cut_field.cpp.

◆ from_ijk_and_phase() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_ijk_and_phase ( int i,
int j,
int k,
bool phase ) const

Definition at line 657 of file Cut_field.cpp.

◆ from_n_num_face_and_phase() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_n_num_face_and_phase ( int n,
int num_face,
bool phase )

Definition at line 674 of file Cut_field.cpp.

◆ from_n_num_face_and_phase() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_n_num_face_and_phase ( int n,
int num_face,
bool phase ) const

Definition at line 684 of file Cut_field.cpp.

◆ from_signed_independent_index() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_signed_independent_index ( int signed_independent_index)

Definition at line 608 of file Cut_field.cpp.

◆ from_signed_independent_index() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::from_signed_independent_index ( int signed_independent_index) const

Definition at line 624 of file Cut_field.cpp.

◆ get_cut_cell_disc()

template<typename _TYPE_, typename _TYPE_ARRAY_>
const Cut_cell_FT_Disc & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::get_cut_cell_disc ( ) const
inline

Definition at line 78 of file Cut_field.h.

◆ get_value_location()

template<typename _TYPE_, typename _TYPE_ARRAY_>
Nom Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::get_value_location ( _TYPE_ T) const

Definition at line 1484 of file Cut_field.cpp.

◆ multiply_by_scalar() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::multiply_by_scalar ( _TYPE_ scalar_l,
_TYPE_ scalar_v )

◆ multiply_by_scalar() [2/2]

void Cut_field_template< double, ArrOfDouble >::multiply_by_scalar ( double scalar_l,
double scalar_v )

Definition at line 1522 of file Cut_field.cpp.

◆ OBS_PTR()

template<typename _TYPE_, typename _TYPE_ARRAY_>
Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::OBS_PTR ( Cut_cell_FT_Disc )
protected

◆ operator()() [1/4]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::operator() ( int i,
int j,
int k )
inline

Definition at line 126 of file Cut_field.h.

◆ operator()() [2/4]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::operator() ( int i,
int j,
int k ) const
inline

Definition at line 133 of file Cut_field.h.

◆ operator()() [3/4]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::operator() ( int i,
int j,
int k,
int compo )
inline

Definition at line 140 of file Cut_field.h.

◆ operator()() [4/4]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::operator() ( int i,
int j,
int k,
int compo ) const
inline

Definition at line 147 of file Cut_field.h.

◆ pure_() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
_TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::pure_ ( int i,
int j,
int k )
inline

Definition at line 116 of file Cut_field.h.

◆ pure_() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
const _TYPE_ & Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::pure_ ( int i,
int j,
int k ) const
inline

Definition at line 121 of file Cut_field.h.

◆ remplir_tableau_pure_cellules_diphasiques() [1/2]

void Cut_field_template< double, ArrOfDouble >::remplir_tableau_pure_cellules_diphasiques ( bool next_time)

Definition at line 292 of file Cut_field.cpp.

◆ remplir_tableau_pure_cellules_diphasiques() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::remplir_tableau_pure_cellules_diphasiques ( bool next_time)

◆ remplir_tableau_pure_cellules_diphasiques_max() [1/2]

void Cut_field_template< int, ArrOfInt >::remplir_tableau_pure_cellules_diphasiques_max ( bool next_time)

Definition at line 317 of file Cut_field.cpp.

◆ remplir_tableau_pure_cellules_diphasiques_max() [2/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::remplir_tableau_pure_cellules_diphasiques_max ( bool next_time)

◆ set_field_data() [1/2]

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::set_field_data ( const Nom & parser_expression_of_x_y_z_and_t,
const IJK_Field_template< _TYPE_, _TYPE_ARRAY_ > & input_f,
const double current_time )

◆ set_field_data() [2/2]

void Cut_field_template< double, ArrOfDouble >::set_field_data ( const Nom & parser_expression_of_x_y_z_and_t,
const IJK_Field_template< double, ArrOfDouble > & input_f,
const double current_time )

Definition at line 341 of file Cut_field.cpp.

◆ set_to_sum()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::set_to_sum ( const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > & data_1,
const Cut_field_template< _TYPE_, _TYPE_ARRAY_ > & data_2 )

Definition at line 559 of file Cut_field.cpp.

◆ set_to_uniform_value()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::set_to_uniform_value ( _TYPE_ valeur)

Definition at line 448 of file Cut_field.cpp.

◆ vide_phase_invalide_cellules_diphasiques()

template<typename _TYPE_, typename _TYPE_ARRAY_>
void Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::vide_phase_invalide_cellules_diphasiques ( )

Definition at line 213 of file Cut_field.cpp.

Member Data Documentation

◆ diph_l_

template<typename _TYPE_, typename _TYPE_ARRAY_>
TRUSTTabFT_cut_cell<_TYPE_> Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::diph_l_

Definition at line 49 of file Cut_field.h.

◆ diph_v_

template<typename _TYPE_, typename _TYPE_ARRAY_>
TRUSTTabFT_cut_cell<_TYPE_> Cut_field_template< _TYPE_, _TYPE_ARRAY_ >::diph_v_

Definition at line 50 of file Cut_field.h.


The documentation for this class was generated from the following files:
  • /home/docs/checkouts/readthedocs.org/user_builds/triocfd-documentation/checkouts/next/src/Multiphase/Front_tracking_discontinu/IJK/Cut_Cell/Cut_field.h
  • /home/docs/checkouts/readthedocs.org/user_builds/triocfd-documentation/checkouts/next/src/Multiphase/Front_tracking_discontinu/IJK/Cut_Cell/Cut_field.cpp