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TrioCFD 1.9.9_beta
TrioCFD documentation
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class Champ_Generique_base More...
#include <Champ_Generique_base.h>
Public Member Functions | |
| virtual std::vector< YAML_data > | data_a_sauvegarder () const |
| int | sauvegarder (Sortie &os) const override |
| Saves an Objet_U to an output stream. Virtual method to override. | |
| int | reprendre (Entree &is) override |
| Restores an Objet_U from an input stream. Virtual method to override. | |
| virtual void | set_param (Param ¶m) const override=0 |
| int | lire_motcle_non_standard (const Motcle &, Entree &) override |
| Reads non-simple-type parameters of an Objet_U from an input stream. | |
| virtual int | get_dimension () const |
| Returns the dimension of the space in which the field is defined. | |
| virtual double | get_time () const |
| Returns the time of the Champ_Generique_base. | |
| virtual const Probleme_base & | get_ref_pb_base () const |
| Returns the problem that carries the target field. | |
| virtual const Discretisation_base & | get_discretisation () const |
| Returns the discretization associated with the problem. | |
| virtual const Motcle | get_directive_pour_discr () const |
| Returns the directive (champ_elem, champ_sommets, champ_face or pression) to launch the discretization of the storage space returned by get_champ(). | |
| void | nommer (const Nom &nom) override |
| Assigns a name to the Objet_U. Virtual method to override. | |
| virtual const Nom & | get_nom_post () const |
| virtual void | get_property_names (Motcles &list) const |
| Returns the list of possible "queries" for the field. | |
| virtual const Noms | get_property (const Motcle &query) const |
| Returns the requested property. | |
| virtual Entity | get_localisation (const int index=-1) const |
| Returns the type of geometric entities on which the discrete values are attached (NODE for a P1 field, FACE for a P1NC field, ELEMENT for a. | |
| virtual int | get_nb_localisations () const |
| virtual const DoubleTab & | get_ref_values () const |
| Returns a reference to the array of discrete values if it exists in memory. | |
| virtual void | get_copy_values (DoubleTab &) const |
| Fills the values array with the discrete values of the field (creates a copy). | |
| virtual void | get_xyz_values (const DoubleTab &coords, DoubleTab &values, ArrOfBit &validity_flag) const |
| Computes the point value of the field at the coordinates given in coords and puts them in values. | |
| virtual const Domaine & | get_ref_domain () const |
| Returns a ref to the domain on which the storage space will be evaluated. | |
| virtual void | get_copy_domain (Domaine &) const |
| Creates a copy of the domain on which the storage space will be evaluated. | |
| virtual const Domaine_dis_base & | get_ref_domaine_dis_base () const |
| Returns a ref to the discretized domain on which the storage space will be evaluated. | |
| virtual const Domaine_Cl_dis_base & | get_ref_zcl_dis_base () const |
| Returns a ref to the discretized boundary conditions domain of the equation carrying the target field. | |
| virtual const DoubleTab & | get_ref_coordinates () const |
| Returns a reference to the array of coordinates of the vertices of the mesh supporting the field, if it exists. | |
| virtual void | get_copy_coordinates (DoubleTab &) const |
| virtual const IntTab & | get_ref_connectivity (Entity index1, Entity index2) const |
| Returns the connectivity array between the geometric entity index1 and entity index2. | |
| virtual void | get_copy_connectivity (Entity index1, Entity index2, IntTab &) const |
| virtual void | reset ()=0 |
| virtual void | completer (const Postraitement_base &post)=0 |
| virtual void | mettre_a_jour (double temps)=0 |
| virtual const Champ_base & | get_champ (OWN_PTR(Champ_base) &espace_stockage) const =0 |
| virtual const Champ_base & | get_champ_without_evaluation (OWN_PTR(Champ_base)&espace_stockage) const =0 |
| virtual const Champ_Generique_base & | get_champ_post (const Motcle &nom) const |
| virtual bool | has_champ_post (const Motcle &nom) const |
| virtual int | comprend_champ_post (const Motcle &identifiant) const |
| virtual int | get_info_type_post () const =0 |
| void | fixer_identifiant_appel (const Nom &identifiant) |
| virtual const Noms & | fixer_noms_compo (const Noms &noms) |
| virtual const Noms & | fixer_noms_synonyms (const Noms &noms) |
| 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 Sortie & | printOn (Sortie &) const |
| Writes the object to an output stream. Virtual method to override. | |
| virtual Entree & | readOn (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 Nom & | le_nom () const |
| Returns the name of the Objet_U. Virtual method to override: returns "neant" in this implementation. | |
| int | get_object_id () const |
| Returns the unique identifier of the object (object_id_). | |
| virtual const Type_info * | get_info () const |
| Returns type information for the Objet_U. | |
| const Nom & | que_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 | associer_ (Objet_U &) |
| Associates the Objet_U with another Objet_U. Virtual method to override. | |
| const Interprete & | interprete () const |
| Interprete & | interprete () |
| Public Member Functions inherited from Process | |
| virtual | ~Process () |
Static Public Member Functions | |
| static int | composante (const Nom &nom_test, const Nom &nom, const Noms &composantes, const Noms &synonyms) |
| Static Public Member Functions inherited from Objet_U | |
| static const Nom & | nom_du_cas () |
| Returns a constant reference to the case name. This method is static. | |
| static Nom & | get_set_nom_du_cas () |
| Returns a non-constant reference to the case name (to allow modification). This method is static. | |
| static const Type_info * | info () |
| Returns type information for the Objet_U (static version). | |
| static const Objet_U & | self_cast (const Objet_U &) |
| Method added for casting in Python. | |
| static Objet_U & | self_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 Sortie & | Journal (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) |
Protected Member Functions | |
| OBS_PTR (Probleme_base) ref_pb_ | |
| 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_U & | operator= (const Objet_U &) |
| Assignment operator: does nothing (the number and identifier are preserved). | |
Static Protected Member Functions | |
| static void | assert_parallel (int) |
Protected Attributes | |
| Nom | nom_post_ |
| Nom | identifiant_appel_ |
| Nom | nom_pb_ |
Additional Inherited Members | |
| 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 |
class Champ_Generique_base
Base class of generic fields for importing a discrete field and elementary actions on this field
(post-processing, etc) Warning: all methods are PARALLEL, they must be called simultaneously on all processors (get_domain() can for example build the parallel domain before returning it).
Definition at line 43 of file Champ_Generique_base.h.
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Implemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Correlation, Champ_Generique_Divergence, Champ_Generique_Ecart_Type, Champ_Generique_Extraction, Champ_Generique_Gradient, Champ_Generique_Interpolation, Champ_Generique_modifier_pour_QC, Champ_Generique_Morceau_Equation, Champ_Generique_Moyenne, Champ_Generique_Predefini, Champ_Generique_Reduction_0D, Champ_Generique_refChamp, Champ_Generique_Transformation, and Champ_Post_Operateur_Eqn.
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inlinestatic |
Definition at line 156 of file Champ_Generique_base.h.
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Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_Moyenne.
Definition at line 387 of file Champ_Generique_base.cpp.
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inlinevirtual |
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_Statistiques_base.
Definition at line 49 of file Champ_Generique_base.h.
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inline |
Definition at line 131 of file Champ_Generique_base.h.
Reimplemented in Champ_Generique_Interpolation, and Champ_Generique_refChamp.
Definition at line 136 of file Champ_Generique_base.h.
Reimplemented in Champ_Generique_Interpolation, and Champ_Generique_refChamp.
Definition at line 141 of file Champ_Generique_base.h.
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pure virtual |
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virtual |
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_Moyenne.
Definition at line 343 of file Champ_Generique_base.cpp.
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pure virtual |
Implemented in Champ_Generique_Correlation, Champ_Generique_Divergence, Champ_Generique_Ecart_Type, Champ_Generique_Extraction, Champ_Generique_Gradient, Champ_Generique_Interpolation, Champ_Generique_modifier_pour_QC, Champ_Generique_Morceau_Equation, Champ_Generique_Moyenne, Champ_Generique_Predefini, Champ_Generique_Reduction_0D, Champ_Generique_refChamp, Champ_Generique_Tparoi_VEF, Champ_Generique_Transformation, and Champ_Post_Operateur_Eqn.
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Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 263 of file Champ_Generique_base.cpp.
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Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Interpolation, and Champ_Generique_refChamp.
Definition at line 237 of file Champ_Generique_base.cpp.
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Creates a copy of the domain on which the storage space will be evaluated.
By default the domain associated with the problem.
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Extraction, and Champ_Generique_Interpolation.
Definition at line 287 of file Champ_Generique_base.cpp.
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Fills the values array with the discrete values of the field (creates a copy).
Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Interpolation, and Champ_Generique_refChamp.
Definition at line 190 of file Champ_Generique_base.cpp.
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Returns the dimension of the space in which the field is defined.
This is the number of components of the coordinates that must be provided in get_xyz_values. (for example, a field defined on a surface can be of dimension 3 if the vertex coordinates are 3D, or dimension 2 if it is curvilinear coordinates along the surface)
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 60 of file Champ_Generique_base.cpp.
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Returns the directive (champ_elem, champ_sommets, champ_face or pression) to launch the discretization of the storage space returned by get_champ().
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Correlation, Champ_Generique_Divergence, Champ_Generique_Extraction, Champ_Generique_Gradient, Champ_Generique_Interpolation, Champ_Generique_Morceau_Equation, Champ_Generique_Reduction_0D, Champ_Generique_refChamp, and Champ_Generique_Transformation.
Definition at line 97 of file Champ_Generique_base.cpp.
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Returns the discretization associated with the problem.
Reimplemented in Champ_Gen_de_Champs_Gen.
Definition at line 85 of file Champ_Generique_base.cpp.
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Implemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Correlation, and Champ_Generique_refChamp.
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Returns the type of geometric entities on which the discrete values are attached (NODE for a P1 field, FACE for a P1NC field, ELEMENT for a.
P0 field, etc). It is recommended to use the get_localisation() syntax without parameter, unless you know what to do for multi-support fields.
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Divergence, Champ_Generique_Extraction, Champ_Generique_Gradient, Champ_Generique_Interpolation, Champ_Generique_Morceau_Equation, Champ_Generique_refChamp, Champ_Generique_Transformation, and Champ_Post_Operateur_Eqn.
Definition at line 155 of file Champ_Generique_base.cpp.
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Definition at line 160 of file Champ_Generique_base.cpp.
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Reimplemented in Champ_Generique_Predefini.
Definition at line 107 of file Champ_Generique_base.cpp.
Returns the requested property.
Examples: "DISCRETISATION" : type of discrete field (P0, P1, P1NC, etc...) "ELEMENT_TYPE" : type of element with the largest dimension ({TRIANGLE}, {TETRAHEDRA}, {QUAD}, {HEXA}, etc) "DYNAMIC_MESH" : is the mesh dynamic or not ({STATIC}, {DYNAMIC}) "NAME" : name of the field "COMPONENT_NAMES" : name of the field components ({K,EPSILON} or {VITESSE_X,VITESSE_Y,VITESSE_Z}) "BOUNDARY_NAMES" : name of the boundaries "COORDINATES" : coordinate system of the nodes ({X}, {X,Y}, {X,Y,Z}, {R,THETA}, etc...) Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Correlation, Champ_Generique_Divergence, Champ_Generique_Ecart_Type, Champ_Generique_Extraction, Champ_Generique_Gradient, Champ_Generique_Interpolation, Champ_Generique_Morceau_Equation, Champ_Generique_Moyenne, Champ_Generique_Predefini, Champ_Generique_Reduction_0D, Champ_Generique_refChamp, Champ_Generique_Tparoi_VEF, Champ_Generique_Transformation, and Champ_Post_Operateur_Eqn.
Definition at line 133 of file Champ_Generique_base.cpp.
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Returns the list of possible "queries" for the field.
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 115 of file Champ_Generique_base.cpp.
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Returns the connectivity array between the geometric entity index1 and entity index2.
For example get_ref_connectivity(ELEM, NODE) = Domaine::mes_elems get_ref_connectivity(ELEM, FACE) = DomaineVF::elem_faces_ get_ref_connectivity(FACE, ELEM) = DomaineVF::face_voisins_ The array always has two dimensions: dimension(0) = number of real entities "index1" dimension(1) = number of entities "index2" connected to each entity "index1" In parallel, the array is a distributed array with common items Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 258 of file Champ_Generique_base.cpp.
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Returns a reference to the array of coordinates of the vertices of the mesh supporting the field, if it exists.
The array always has two dimensions: dimension(0) = number of real vertices dimension(1) = get_dimension() (dimension of the space in which the field is defined) In parallel, the array is a distributed array with common items. Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Interpolation, and Champ_Generique_refChamp.
Definition at line 230 of file Champ_Generique_base.cpp.
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Returns a ref to the domain on which the storage space will be evaluated.
By default the domain associated with the problem.
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Extraction, and Champ_Generique_Interpolation.
Definition at line 273 of file Champ_Generique_base.cpp.
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Returns a ref to the discretized domain on which the storage space will be evaluated.
By default the domain associated with the problem.
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Extraction, and Champ_Generique_Interpolation.
Definition at line 299 of file Champ_Generique_base.cpp.
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Returns the problem that carries the target field.
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 77 of file Champ_Generique_base.cpp.
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Returns a reference to the array of discrete values if it exists in memory.
The reference is valid at least until the next call to a non-const method. The mesh on which these values are defined is accessible through the methods get_node_coordinates(), get_connectivity(), get_field_type(). Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Interpolation, Champ_Generique_refChamp, and Champ_Generique_refChamp_special.
Definition at line 177 of file Champ_Generique_base.cpp.
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Returns a ref to the discretized boundary conditions domain of the equation carrying the target field.
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 310 of file Champ_Generique_base.cpp.
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Returns the time of the Champ_Generique_base.
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 69 of file Champ_Generique_base.cpp.
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Computes the point value of the field at the coordinates given in coords and puts them in values.
validity_flag is filled with 1 if the value is valid (coordinates inside the domain), 0 otherwise. Warning in parallel: Each processor processes the coords array provided to it: one can either have the same array computed by everyone: in this case, validity_flag indicates on each processor which values each processor was able to compute, or one knows in advance which coordinates are computable by each processor and gives the processor locally only the coordinates it owns. If the same coordinate is requested from multiple processors, there is no guarantee that all give the same result. In general, only one will have the validity_flag set for this coordinate. Exceptions:
Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_refChamp.
Definition at line 213 of file Champ_Generique_base.cpp.
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Reimplemented in Champ_Gen_de_Champs_Gen, and Champ_Generique_Moyenne.
Definition at line 315 of file Champ_Generique_base.cpp.
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Reads non-simple-type parameters of an Objet_U from an input stream.
| motlu | The name of the keyword to read. |
| is | An input stream. |
Reimplemented from Objet_U.
Reimplemented in Champ_Generique_Moyenne, Champ_Generique_Predefini, Champ_Generique_refChamp, and Champ_Generique_Transformation.
Definition at line 47 of file Champ_Generique_base.cpp.
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pure virtual |
Implemented in Champ_Gen_de_Champs_Gen, Champ_Generique_refChamp, and Champ_Generique_Statistiques_base.
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overridevirtual |
Assigns a name to the Objet_U. Virtual method to override.
| nom | The name to assign to the Objet_U. |
Reimplemented from Objet_U.
Reimplemented in Champ_Generique_Predefini.
Definition at line 102 of file Champ_Generique_base.cpp.
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protected |
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inlineoverridevirtual |
Restores an Objet_U from an input stream. Virtual method to override.
| is | Input stream to use for restoration. |
Reimplemented from Objet_U.
Reimplemented in Champ_Generique_Statistiques_base.
Definition at line 51 of file Champ_Generique_base.h.
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pure virtual |
Implemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Interpolation, and Champ_Generique_refChamp.
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inlineoverridevirtual |
Saves an Objet_U to an output stream. Virtual method to override.
| os | Output stream to use for saving. |
Reimplemented from Objet_U.
Reimplemented in Champ_Generique_Statistiques_base.
Definition at line 50 of file Champ_Generique_base.h.
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overridepure virtual |
Reimplemented from Objet_U.
Implemented in Champ_Gen_de_Champs_Gen, Champ_Generique_Extraction, Champ_Generique_Interpolation, Champ_Generique_modifier_pour_QC, Champ_Generique_Morceau_Equation, Champ_Generique_Moyenne, Champ_Generique_Predefini, Champ_Generique_Reduction_0D, Champ_Generique_refChamp, Champ_Generique_refChamp_special, Champ_Generique_Statistiques_base, Champ_Generique_Transformation, and Champ_Post_Operateur_Eqn.
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Definition at line 151 of file Champ_Generique_base.h.
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Definition at line 152 of file Champ_Generique_base.h.
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Definition at line 150 of file Champ_Generique_base.h.