TrioCFD 1.9.9_beta
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TRUSTTab< _TYPE_, _SIZE_ > Class Template Reference

N-dimensional array for N <= 4. More...

#include <TRUSTTab.h>

Inheritance diagram for TRUSTTab< _TYPE_, _SIZE_ >:
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Collaboration diagram for TRUSTTab< _TYPE_, _SIZE_ >:
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Public Member Functions

 TRUSTTab ()
 TRUSTTab (const TRUSTTab &dbt)
 TRUSTTab (_SIZE_ n)
 TRUSTTab (_SIZE_ n1, int n2)
 TRUSTTab (_SIZE_ n1, int n2, int n3)
 TRUSTTab (_SIZE_ n1, int n2, int n3, int n4)
void resize_dim0 (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize (_SIZE_ n1, int n2, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize (_SIZE_ n1, int n2, int n3, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize (_SIZE_ n1, int n2, int n3, int n4, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize (const TRUSTArray< _SIZE_, int > &tailles, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void copy (const TRUSTTab &, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void append_line (_TYPE_)
void append_line (_TYPE_, _TYPE_)
void append_line (_TYPE_, _TYPE_, _TYPE_)
void append_line (_TYPE_, _TYPE_, _TYPE_, _TYPE_)
_SIZE_ dimension (int d) const
int dimension_int (int d) const
int nb_dim () const
void from_tid_to_int (TRUSTTab< int, int > &out) const
void ref_as_big (TRUSTTab< _TYPE_, trustIdType > &out) const
void ref_as_small (TRUSTTab< _TYPE_, int > &out) const
TRUSTTaboperator= (const TRUSTTab &)
TRUSTTaboperator= (const TRUSTVect< _TYPE_, _SIZE_ > &)
TRUSTTaboperator= (_TYPE_ d)
_TYPE_ & operator() (const TRUSTArray< _SIZE_, int > &indice)
_TYPE_ operator() (const TRUSTArray< _SIZE_, int > &indice) const
_TYPE_ & operator[] (_SIZE_ i)
const _TYPE_ & operator[] (_SIZE_ i) const
_TYPE_ & operator() (_SIZE_ i)
const _TYPE_ & operator() (_SIZE_ i) const
_TYPE_ & operator() (_SIZE_ i1, int i2)
const _TYPE_ & operator() (_SIZE_ i1, int i2) const
_TYPE_ & operator() (_SIZE_ i1, int i2, int i3)
const _TYPE_ & operator() (_SIZE_ i1, int i2, int i3) const
_TYPE_ & operator() (_SIZE_ i1, int i2, int i3, int i4)
const _TYPE_ & operator() (_SIZE_ i1, int i2, int i3, int i4) const
template<typename _T_>
void ajoute_produit_tensoriel (_T_ alpha, const TRUSTTab< _T_, _SIZE_ > &, const TRUSTTab< _T_, _SIZE_ > &)
template<typename _T_>
void resoud_LU (_SIZE_, TRUSTArray< int, _SIZE_ > &, const TRUSTArray< _T_, _SIZE_ > &, TRUSTArray< _T_, _SIZE_ > &)
template<typename _T_>
bool inverse_LU (const TRUSTArray< _T_, _SIZE_ > &, TRUSTArray< _T_, _SIZE_ > &)
template<typename _T_>
bool decomp_LU (_SIZE_, TRUSTArray< int, _SIZE_ > &, TRUSTTab< _T_, _SIZE_ > &)
template<typename _T_>
_T_ max_du_u (const TRUSTTab< _T_, _SIZE_ > &)
void ajoute_produit_tensoriel (int alpha, const TRUSTTab< int, _SIZE_ > &, const TRUSTTab< int, _SIZE_ > &)=delete
void resoud_LU (int, TRUSTArray< int, _SIZE_ > &, const TRUSTArray< int, _SIZE_ > &, TRUSTArray< int, _SIZE_ > &)=delete
int inverse_LU (const TRUSTArray< int, _SIZE_ > &, TRUSTArray< int, _SIZE_ > &)=delete
int decomp_LU (int, TRUSTArray< int, _SIZE_ > &, TRUSTTab< int, _SIZE_ > &)=delete
int max_du_u (const TRUSTTab< int, _SIZE_ > &)=delete
_SIZE_ dimension_tot (int) const override
virtual void ref (const TRUSTTab &)
virtual void ref_tab (TRUSTTab &, _SIZE_ start_line=0, _SIZE_ nb_lines=-1)
void set_md_vector (const MD_Vector &) override
void jump (Entree &) override
void lit (Entree &, bool resize_and_read=true) override
void ecrit (Sortie &) const override
void ref (const TRUSTVect< _TYPE_, _SIZE_ > &) override
void ref_data (_TYPE_ *ptr, _SIZE_ size) override
void ref_array (TRUSTArray< _TYPE_, _SIZE_ > &, _SIZE_ start=0, _SIZE_ sz=-1) override
void reset () override
void resize_tab (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT) override
void reshape (_SIZE_ n1, int n2)
void reshape (_SIZE_ n1, int n2, int n3)
void reshape (_SIZE_ n1, int n2, int n3, int n4)
void promote_scalar_to_dim2 ()
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, ConstView< _TYPE_, _SHAPE_ > > view_ro () const
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, ConstHostView< _TYPE_, _SHAPE_ > > view_ro () const
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, View< _TYPE_, _SHAPE_ > > view_wo ()
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, HostView< _TYPE_, _SHAPE_ > > view_wo ()
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, View< _TYPE_, _SHAPE_ > > view_rw ()
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, HostView< _TYPE_, _SHAPE_ > > view_rw ()
Public Member Functions inherited from TRUSTVect< _TYPE_, _SIZE_ >
virtual ~TRUSTVect ()
 TRUSTVect ()
 TRUSTVect (_SIZE_ n)
 Constructs a vector of size n.
 TRUSTVect (const TRUSTVect &v)
 Copy constructor.
TRUSTVectoperator= (const TRUSTVect &)
TRUSTVectoperator= (_TYPE_)
_SIZE_ size () const
_SIZE_ size_totale () const
_SIZE_ size_reelle () const
_SIZE_ size_reelle_ok () const
int line_size () const
void resize (_SIZE_, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void copy (const TRUSTArray< _TYPE_, _SIZE_ > &, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void copy (const TRUSTVect &, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void operator+= (const TRUSTVect &v)
void operator+= (const _TYPE_ x)
void operator-= (const TRUSTVect &v)
void operator-= (const _TYPE_ x)
void operator*= (const TRUSTVect &v)
void operator*= (const _TYPE_ x)
template<typename _T_>
void operator/= (const TRUSTVect< _T_, _SIZE_ > &v)
void operator/= (const _TYPE_ x)
virtual const MD_Vectorget_md_vector () const
void resize_tab (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT) override
void from_tid_to_int (TRUSTVect< int, int > &out) const
void ref_as_big (TRUSTVect< _TYPE_, trustIdType > &out) const
void ref_as_small (TRUSTVect< _TYPE_, int > &out) const
void abs (Mp_vect_options opt=VECT_ALL_ITEMS)
void carre (Mp_vect_options opt=VECT_ALL_ITEMS)
void racine_carree (Mp_vect_options opt=VECT_ALL_ITEMS)
template<typename _SCALAR_TYPE_>
void ajoute (_SCALAR_TYPE_ alpha, const TRUSTVect &y, Mp_vect_options opt=VECT_ALL_ITEMS)
template<typename _SCALAR_TYPE_>
void ajoute_sans_ech_esp_virt (_SCALAR_TYPE_ alpha, const TRUSTVect &y, Mp_vect_options opt=VECT_REAL_ITEMS)
template<typename _SCALAR_TYPE_>
void ajoute_produit_scalaire (_SCALAR_TYPE_ alpha, const TRUSTVect &x, const TRUSTVect &y, Mp_vect_options opt=VECT_ALL_ITEMS)
template<typename _SCALAR_TYPE_>
void ajoute_carre (_SCALAR_TYPE_ alpha, const TRUSTVect &y, Mp_vect_options opt=VECT_ALL_ITEMS)
_TYPE_ local_max_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ local_min_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ local_max_abs_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ local_min_abs_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ mp_max_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ mp_min_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ mp_max_abs_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ mp_min_abs_vect (Mp_vect_options opt=VECT_REAL_ITEMS) const
_TYPE_ mp_norme_vect () const
virtual void echange_espace_virtuel (IsExchangeBlocking exchange_type=IsExchangeBlocking::DefaultBlocking, const std::string kernel_name="noname")
virtual void start_echange_espace_virtuel_async (const std::string kernel_name)
virtual void finish_echange_espace_virtuel_async (const std::string kernel_name)
virtual void detach_vect ()
void ref_data (_TYPE_ *ptr, _SIZE_ new_size) override
void ref_array (TRUSTArray< _TYPE_, _SIZE_ > &, _SIZE_ start=0, _SIZE_ sz=-1) override
Span_ get_span () override
Span_ get_span_tot () override
const Span_ get_span () const override
const Span_ get_span_tot () const override
void reset () override
 Resets the object to the state obtained by the default constructor.
Public Member Functions inherited from TRUSTArray< _TYPE_, _SIZE_ >
Iterator_ begin ()
Iterator_ end ()
const Iterator_ begin () const
const Iterator_ end () const
virtual ~TRUSTArray ()
 TRUSTArray ()
 TRUSTArray (_SIZE_ n)
 TRUSTArray (const TRUSTArray &A)
void resize (_SIZE_ new_size, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void resize_array (_SIZE_ new_size, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void ref_as_big (TRUSTArray< _TYPE_, trustIdType > &out) const
void ref_as_small (TRUSTArray< _TYPE_, int > &out) const
void from_tid_to_int (TRUSTArray< int, int > &out) const
void set_mem_storage (const STORAGE storage)
STORAGE get_mem_storage () const
std::shared_ptr< Vector_get_mem ()
TRUSTArrayoperator= (const TRUSTArray &)
_TYPE_ & operator[] (_SIZE_ i)
const _TYPE_ & operator[] (_SIZE_ i) const
_TYPE_ & operator() (_SIZE_ i)
const _TYPE_ & operator() (_SIZE_ i) const
_TYPE_ * addr ()
const _TYPE_ * addr () const
_TYPE_ * data ()
const _TYPE_ * data () const
_SIZE_ size_array () const
int ref_count () const
void append_array (_TYPE_ valeur)
TRUSTArrayoperator= (_TYPE_ x)
TRUSTArrayoperator+= (const TRUSTArray &y)
TRUSTArrayoperator+= (const _TYPE_ dy)
TRUSTArrayoperator-= (const TRUSTArray &y)
TRUSTArrayoperator-= (const _TYPE_ dy)
TRUSTArrayoperator*= (const _TYPE_ dy)
TRUSTArrayoperator/= (const _TYPE_ dy)
TRUSTArrayinject_array (const TRUSTArray &source, _SIZE_ nb_elements=-1, _SIZE_ first_element_dest=0, _SIZE_ first_element_source=0)
TRUSTArraycopy_array (const TRUSTArray &a)
void ordonne_array ()
DataLocation get_data_location ()
DataLocation get_data_location () const
void set_data_location (DataLocation flag)
void set_data_location (DataLocation flag) const
int size_mem ()
void ensureDataOnHost ()
void ensureDataOnHost () const
bool isDataOnDevice () const
bool checkDataOnDevice ()
bool checkDataOnDevice () const
bool checkDataOnDevice (const TRUSTArray &arr)
void ref_as_big (TRUSTArray< trustIdType, trustIdType > &out) const
 Conversion methods - from a small array (SIZE=int) of TID (TYPE=trustIdType), return a big one (SIZE=trustIdType). No data copied! This behaves somewhat like a ref_array. Used in LATA stuff notably. Not implemented for TYPE=double or float (because never needed).
void ref_as_small (TRUSTArray< float, int > &out) const
 Conversion methods - from a big array (SIZE=trustIdType), return a small one (SIZE=int). Overflow is detected in debug if array is too big to be fit into SIZE=int. No data copied! This behaves somewhat like a ref_array. Used in LATA stuff and FT notably.
void ref_as_small (TRUSTArray< int, int > &out) const
void from_tid_to_int (TRUSTArray< int, int > &out) const
 Conversion from a BigArrOfTID to an ArrOfInt. Careful, it always does a copy! It is your responsibility to invoke it only when necessary (typically you should avoid this when trustIdType == int ...).
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 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

unsigned taille_memoire () const override
int duplique () const override
SortieprintOn (Sortie &os) const override
 Writes a sequential array (same as TRUSTVect::printOn(); no meaningful action is defined for a distributed array).
EntreereadOn (Entree &is) override
 Reads a sequential array.
Protected Member Functions inherited from TRUSTVect< _TYPE_, _SIZE_ >
unsigned taille_memoire () const override
int duplique () const override
SortieprintOn (Sortie &os) const override
 Writes the object to an output stream. Virtual method to override.
EntreereadOn (Entree &is) override
 Reads a sequential vector (like an ArrOfDouble). Invalid call if the vector has a non-null MD_Vector.
void set_line_size_ (int n)
void resize_vect_ (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
void copy_ (const TRUSTVect &v, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
Protected Member Functions inherited from TRUSTArray< _TYPE_, _SIZE_ >
void attach_array (const TRUSTArray &a, _SIZE_ start=0, _SIZE_ size=-1)
bool detach_array ()
void resize_array_ (_SIZE_ n, RESIZE_OPTIONS opt=RESIZE_OPTIONS::COPY_INIT)
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

Friends

template<typename _TYPE2_, typename _SIZE2_>
class TRUSTTab

Additional Inherited Members

Public Types inherited from TRUSTVect< _TYPE_, _SIZE_ >
using Span_ = tcb::span<_TYPE_>
Public Types inherited from TRUSTArray< _TYPE_, _SIZE_ >
using Value_type_ = _TYPE_
using int_t = _SIZE_
using Iterator_ = typename tcb::span<_TYPE_>::iterator
using Vector_ = std::vector<_TYPE_, TVAlloc<_TYPE_> >
using Span_ = tcb::span<_TYPE_>
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
Protected Attributes inherited from TRUSTVect< _TYPE_, _SIZE_ >
MD_Vector md_vector_
_SIZE_ size_reelle_
int line_size_
Protected Attributes inherited from TRUSTArray< _TYPE_, _SIZE_ >
int nb_dim_ = 1

Detailed Description

template<typename _TYPE_, typename _SIZE_>
class TRUSTTab< _TYPE_, _SIZE_ >

N-dimensional array for N <= 4.

Built on top of TRUSTVect with index computation for each dimension.

Definition at line 30 of file TRUSTTab.h.

Constructor & Destructor Documentation

◆ TRUSTTab() [1/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( )
inline

Definition at line 114 of file TRUSTTab.h.

◆ TRUSTTab() [2/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( const TRUSTTab< _TYPE_, _SIZE_ > & dbt)
inline

Definition at line 121 of file TRUSTTab.h.

◆ TRUSTTab() [3/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( _SIZE_ n)
inline

Definition at line 127 of file TRUSTTab.h.

◆ TRUSTTab() [4/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( _SIZE_ n1,
int n2 )
inline

Definition at line 134 of file TRUSTTab.h.

◆ TRUSTTab() [5/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( _SIZE_ n1,
int n2,
int n3 )
inline

Definition at line 149 of file TRUSTTab.h.

◆ TRUSTTab() [6/6]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ >::TRUSTTab ( _SIZE_ n1,
int n2,
int n3,
int n4 )
inline

Definition at line 166 of file TRUSTTab.h.

Member Function Documentation

◆ ajoute_produit_tensoriel() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<typename _T_>
void TRUSTTab< _TYPE_, _SIZE_ >::ajoute_produit_tensoriel ( _T_ alpha,
const TRUSTTab< _T_, _SIZE_ > & x,
const TRUSTTab< _T_, _SIZE_ > & y )
inline

Definition at line 760 of file TRUSTTab.tpp.

◆ ajoute_produit_tensoriel() [2/2]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ajoute_produit_tensoriel ( int alpha,
const TRUSTTab< int, _SIZE_ > & ,
const TRUSTTab< int, _SIZE_ > &  )
delete

◆ append_line() [1/4]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::append_line ( _TYPE_ a)
inline

Definition at line 213 of file TRUSTTab.tpp.

◆ append_line() [2/4]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::append_line ( _TYPE_ a,
_TYPE_ b )
inline

Definition at line 228 of file TRUSTTab.tpp.

◆ append_line() [3/4]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::append_line ( _TYPE_ a,
_TYPE_ b,
_TYPE_ c )
inline

Definition at line 243 of file TRUSTTab.tpp.

◆ append_line() [4/4]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::append_line ( _TYPE_ a,
_TYPE_ b,
_TYPE_ c,
_TYPE_ d )
inline

Definition at line 259 of file TRUSTTab.tpp.

◆ copy()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::copy ( const TRUSTTab< _TYPE_, _SIZE_ > & src,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 622 of file TRUSTTab.tpp.

◆ decomp_LU() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<typename _T_>
bool TRUSTTab< _TYPE_, _SIZE_ >::decomp_LU ( _SIZE_ n,
TRUSTArray< int, _SIZE_ > & index,
TRUSTTab< _T_, _SIZE_ > & matLU )
inline

Definition at line 833 of file TRUSTTab.tpp.

◆ decomp_LU() [2/2]

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::decomp_LU ( int ,
TRUSTArray< int, _SIZE_ > & ,
TRUSTTab< int, _SIZE_ > &  )
delete

◆ dimension()

template<typename _TYPE_, typename _SIZE_>
_SIZE_ TRUSTTab< _TYPE_, _SIZE_ >::dimension ( int i) const
inline

Returns one of the "real" dimensions of the multi-dimensionnal array, as defined by: dimension(0) = size_reelle() / line_size(), or 0 if line_size()==0 and, for i >= 1 : dimension(i) is equal to dimension_tot(i) If TRUSTVect<TYPE,SIZE>::size_reelle_ok() returns 0, it is invalid to ask for dimension(0). You can only ask for dimension_tot(0) (see TRUSTVect<TYPE,SIZE>::size_reelle_ok())

In 64 bits, dimensions higher than 1 can always safely be casted down to an int, only the first dimension might be big. To help with this, the RET_TYPE parameter can be used. One can write: int d1 = toto.dimension<int>(1); which is cleaner than doing a wild cast like int d1 = (int)toto.dimension(1); and it will also check for potential overflow (with an assert). This type of pattern is used in the 64b part of the code (before Scatter) when retreiving higher dimensions of arrays. See arch.h.in for more explanations on 64b.

Definition at line 133 of file TRUSTTab.tpp.

◆ dimension_int()

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::dimension_int ( int i) const
inline

In 64 bits, dimensions higher than 1 can always safely be casted down to an int, only the first dimension might be big. To help with this, this method can be used. One can write: int d1 = toto.dimension_int(1); which is cleaner than doing a wild cast like int d1 = (int)toto.dimension(1); and it will also check for potential overflow (with an assert). This type of pattern is used in the 64b part of the code (before Scatter) when retrieving higher dimensions of arrays. See arch.h.in for more explanations on 64b.

Definition at line 152 of file TRUSTTab.tpp.

◆ dimension_tot()

template<typename _TYPE_, typename _SIZE_>
_SIZE_ TRUSTTab< _TYPE_, _SIZE_ >::dimension_tot ( int i) const
inlineoverridevirtual

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Definition at line 160 of file TRUSTTab.tpp.

◆ duplique()

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::duplique ( ) const
inlineoverrideprotectedvirtual

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Reimplemented in TRUSTTrav< _TYPE_ >, TRUSTTrav< double >, TRUSTTrav< float >, and TRUSTTrav< int >.

Definition at line 35 of file TRUSTTab.h.

◆ ecrit()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ecrit ( Sortie & os) const
inlineoverridevirtual

Reimplemented from TRUSTVect< _TYPE_, _SIZE_ >.

Definition at line 688 of file TRUSTTab.tpp.

◆ from_tid_to_int()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::from_tid_to_int ( TRUSTTab< int, int > & out) const
inline

See doc in TRUSTArray. This one also deals with multi-dim.

Definition at line 170 of file TRUSTTab.tpp.

◆ inverse_LU() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<typename _T_>
bool TRUSTTab< _TYPE_, _SIZE_ >::inverse_LU ( const TRUSTArray< _T_, _SIZE_ > & b,
TRUSTArray< _T_, _SIZE_ > & solution )
inline

Definition at line 815 of file TRUSTTab.tpp.

◆ inverse_LU() [2/2]

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::inverse_LU ( const TRUSTArray< int, _SIZE_ > & ,
TRUSTArray< int, _SIZE_ > &  )
delete

◆ jump()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::jump ( Entree & is)
inlineoverridevirtual

Reimplemented from TRUSTVect< _TYPE_, _SIZE_ >.

Definition at line 701 of file TRUSTTab.tpp.

◆ lit()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::lit ( Entree & is,
bool resize_and_read = true )
inlineoverridevirtual

Reimplemented from TRUSTVect< _TYPE_, _SIZE_ >.

Definition at line 710 of file TRUSTTab.tpp.

◆ max_du_u() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<typename _T_>
_T_ TRUSTTab< _TYPE_, _SIZE_ >::max_du_u ( const TRUSTTab< _T_, _SIZE_ > & u)
inline

Definition at line 929 of file TRUSTTab.tpp.

◆ max_du_u() [2/2]

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::max_du_u ( const TRUSTTab< int, _SIZE_ > & )
delete

◆ nb_dim()

template<typename _TYPE_, typename _SIZE_>
int TRUSTTab< _TYPE_, _SIZE_ >::nb_dim ( ) const
inline

Definition at line 199 of file TRUSTTab.h.

◆ operator()() [1/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i)
inline

Definition at line 40 of file TRUSTTab.tpp.

◆ operator()() [2/10]

template<typename _TYPE_, typename _SIZE_>
const _TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i) const
inline

Definition at line 48 of file TRUSTTab.tpp.

◆ operator()() [3/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2 )
inline

Definition at line 58 of file TRUSTTab.tpp.

◆ operator()() [4/10]

template<typename _TYPE_, typename _SIZE_>
const _TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2 ) const
inline

Definition at line 67 of file TRUSTTab.tpp.

◆ operator()() [5/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2,
int i3 )
inline

Definition at line 76 of file TRUSTTab.tpp.

◆ operator()() [6/10]

template<typename _TYPE_, typename _SIZE_>
const _TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2,
int i3 ) const
inline

Definition at line 86 of file TRUSTTab.tpp.

◆ operator()() [7/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2,
int i3,
int i4 )
inline

Definition at line 96 of file TRUSTTab.tpp.

◆ operator()() [8/10]

template<typename _TYPE_, typename _SIZE_>
const _TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( _SIZE_ i1,
int i2,
int i3,
int i4 ) const
inline

Definition at line 107 of file TRUSTTab.tpp.

◆ operator()() [9/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator() ( const TRUSTArray< _SIZE_, int > & indice)
inline

Definition at line 635 of file TRUSTTab.tpp.

◆ operator()() [10/10]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ TRUSTTab< _TYPE_, _SIZE_ >::operator() ( const TRUSTArray< _SIZE_, int > & indice) const
inline

Definition at line 653 of file TRUSTTab.tpp.

◆ operator=() [1/3]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ > & TRUSTTab< _TYPE_, _SIZE_ >::operator= ( _TYPE_ d)
inline

Definition at line 615 of file TRUSTTab.tpp.

◆ operator=() [2/3]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ > & TRUSTTab< _TYPE_, _SIZE_ >::operator= ( const TRUSTTab< _TYPE_, _SIZE_ > & src)
inline

Definition at line 578 of file TRUSTTab.tpp.

◆ operator=() [3/3]

template<typename _TYPE_, typename _SIZE_>
TRUSTTab< _TYPE_, _SIZE_ > & TRUSTTab< _TYPE_, _SIZE_ >::operator= ( const TRUSTVect< _TYPE_, _SIZE_ > & src)
inline

Definition at line 587 of file TRUSTTab.tpp.

◆ operator[]() [1/2]

template<typename _TYPE_, typename _SIZE_>
_TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator[] ( _SIZE_ i)
inline

Definition at line 23 of file TRUSTTab.tpp.

◆ operator[]() [2/2]

template<typename _TYPE_, typename _SIZE_>
const _TYPE_ & TRUSTTab< _TYPE_, _SIZE_ >::operator[] ( _SIZE_ i) const
inline

Definition at line 32 of file TRUSTTab.tpp.

◆ printOn()

template<typename _TYPE_, typename _SIZE_>
Sortie & TRUSTTab< _TYPE_, _SIZE_ >::printOn ( Sortie & os) const
inlineoverrideprotectedvirtual

Writes a sequential array (same as TRUSTVect::printOn(); no meaningful action is defined for a distributed array).

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Reimplemented in TRUSTTrav< _TYPE_ >, TRUSTTrav< double >, TRUSTTrav< float >, and TRUSTTrav< int >.

Definition at line 45 of file TRUSTTab.h.

◆ promote_scalar_to_dim2()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::promote_scalar_to_dim2 ( )
inline

Definition at line 441 of file TRUSTTab.tpp.

◆ readOn()

template<typename _TYPE_, typename _SIZE_>
Entree & TRUSTTab< _TYPE_, _SIZE_ >::readOn ( Entree & is)
inlineoverrideprotectedvirtual

Reads a sequential array.

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Reimplemented in TRUSTTrav< _TYPE_ >, TRUSTTrav< double >, TRUSTTrav< float >, and TRUSTTrav< int >.

Definition at line 68 of file TRUSTTab.h.

◆ ref() [1/2]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref ( const TRUSTTab< _TYPE_, _SIZE_ > & src)
inlinevirtual

Definition at line 308 of file TRUSTTab.tpp.

◆ ref() [2/2]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref ( const TRUSTVect< _TYPE_, _SIZE_ > & v)
inlineoverridevirtual

Reimplemented from TRUSTVect< _TYPE_, _SIZE_ >.

Definition at line 279 of file TRUSTTab.tpp.

◆ ref_array()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref_array ( TRUSTArray< _TYPE_, _SIZE_ > & m,
_SIZE_ start = 0,
_SIZE_ size = -1 )
inlineoverridevirtual

Make the current array point to the data of another existing array. Ownership of the data is hence shared.

The current array is first detached (see detach_array()), and then attached to the provided data (see attach_array()) Wanring: virtual -> in derived classes this method initializes structures to create a sequential array.

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Definition at line 332 of file TRUSTTab.tpp.

◆ ref_as_big()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref_as_big ( TRUSTTab< _TYPE_, trustIdType > & out) const
inline

Definition at line 188 of file TRUSTTab.tpp.

◆ ref_as_small()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref_as_small ( TRUSTTab< _TYPE_, int > & out) const
inline

Definition at line 198 of file TRUSTTab.tpp.

◆ ref_data()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref_data ( _TYPE_ * ptr,
_SIZE_ size )
inlineoverridevirtual

Constructs an array pointing to existing data !!! Use ref_data with caution

Make the array point to the memory zone indicated by data_. The array is detached from its current underlying data ('mem_' is released).

Warning: virtual method. In derived classes this method initializes the structures to create a sequential array. To create a ref on a parallel array, see DoubleVect::ref()

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Definition at line 319 of file TRUSTTab.tpp.

◆ ref_tab()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::ref_tab ( TRUSTTab< _TYPE_, _SIZE_ > & t,
_SIZE_ start_line = 0,
_SIZE_ nb_lines = -1 )
inlinevirtual

Definition at line 345 of file TRUSTTab.tpp.

◆ reset()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::reset ( )
inlineoverridevirtual

Resets the array to the state obtained by the default constructor (frees memory but keeps the current memory allocation mode)

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Definition at line 362 of file TRUSTTab.tpp.

◆ reshape() [1/3]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::reshape ( _SIZE_ n1,
int n2 )
inline

Definition at line 381 of file TRUSTTab.tpp.

◆ reshape() [2/3]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::reshape ( _SIZE_ n1,
int n2,
int n3 )
inline

Definition at line 400 of file TRUSTTab.tpp.

◆ reshape() [3/3]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::reshape ( _SIZE_ n1,
int n2,
int n3,
int n4 )
inline

Definition at line 420 of file TRUSTTab.tpp.

◆ resize() [1/5]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize ( _SIZE_ n,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 469 of file TRUSTTab.tpp.

◆ resize() [2/5]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize ( _SIZE_ n1,
int n2,
int n3,
int n4,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 521 of file TRUSTTab.tpp.

◆ resize() [3/5]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize ( _SIZE_ n1,
int n2,
int n3,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 500 of file TRUSTTab.tpp.

◆ resize() [4/5]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize ( _SIZE_ n1,
int n2,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 480 of file TRUSTTab.tpp.

◆ resize() [5/5]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize ( const TRUSTArray< _SIZE_, int > & tailles,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 545 of file TRUSTTab.tpp.

◆ resize_dim0()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize_dim0 ( _SIZE_ n,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inline

Definition at line 459 of file TRUSTTab.tpp.

◆ resize_tab()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resize_tab ( _SIZE_ n,
RESIZE_OPTIONS opt = RESIZE_OPTIONS::COPY_INIT )
inlineoverridevirtual

Methode virtuelle (dans Array_base) identique a resize_array(), permet de traiter de facon generique les ArrOf, Vect et Tab. Si l'objet est de type TRUSTArray, appel a resize_array(n)

Prerequis: le tableau doit etre "resizable" (voir resize_array()). S'il est d'un type derive (Vect ou Tab), il ne doit pas avoir de descripteur parallele si la taille est effectivement modifiee.

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Definition at line 373 of file TRUSTTab.tpp.

◆ resoud_LU() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<typename _T_>
void TRUSTTab< _TYPE_, _SIZE_ >::resoud_LU ( _SIZE_ n,
TRUSTArray< int, _SIZE_ > & index,
const TRUSTArray< _T_, _SIZE_ > & b,
TRUSTArray< _T_, _SIZE_ > & solution )
inline

Definition at line 900 of file TRUSTTab.tpp.

◆ resoud_LU() [2/2]

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::resoud_LU ( int ,
TRUSTArray< int, _SIZE_ > & ,
const TRUSTArray< int, _SIZE_ > & ,
TRUSTArray< int, _SIZE_ > &  )
delete

◆ set_md_vector()

template<typename _TYPE_, typename _SIZE_>
void TRUSTTab< _TYPE_, _SIZE_ >::set_md_vector ( const MD_Vector & md_vector)
inlineoverridevirtual

Reimplemented from TRUSTVect< _TYPE_, _SIZE_ >.

Definition at line 673 of file TRUSTTab.tpp.

◆ taille_memoire()

template<typename _TYPE_, typename _SIZE_>
unsigned TRUSTTab< _TYPE_, _SIZE_ >::taille_memoire ( ) const
inlineoverrideprotectedvirtual

Reimplemented from TRUSTArray< _TYPE_, _SIZE_ >.

Reimplemented in TRUSTTrav< _TYPE_ >, TRUSTTrav< double >, TRUSTTrav< float >, and TRUSTTrav< int >.

Definition at line 33 of file TRUSTTab.h.

◆ view_ro() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, ConstHostView< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_ro ( ) const
inline

Definition at line 268 of file TRUSTTab.h.

◆ view_ro() [2/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, ConstView< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_ro ( ) const
inline

Definition at line 261 of file TRUSTTab.h.

◆ view_rw() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, HostView< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_rw ( )
inline

Definition at line 298 of file TRUSTTab.h.

◆ view_rw() [2/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, View< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_rw ( )
inline

Definition at line 291 of file TRUSTTab.h.

◆ view_wo() [1/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< gpu_enabled_is_host_exec_space< EXEC_SPACE >, HostView< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_wo ( )
inline

Definition at line 283 of file TRUSTTab.h.

◆ view_wo() [2/2]

template<typename _TYPE_, typename _SIZE_>
template<int _SHAPE_ = 2, typename EXEC_SPACE = Kokkos::DefaultExecutionSpace>
std::enable_if_t< is_default_exec_space< EXEC_SPACE >, View< _TYPE_, _SHAPE_ > > TRUSTTab< _TYPE_, _SIZE_ >::view_wo ( )
inline

Definition at line 276 of file TRUSTTab.h.

◆ TRUSTTab

template<typename _TYPE_, typename _SIZE_>
template<typename _TYPE2_, typename _SIZE2_>
friend class TRUSTTab
friend

Definition at line 112 of file TRUSTTab.h.


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