OCCT3D OCCT 8.0.1
OCCT documentation

Search guides and API reference

Enter at least two characters.

    Open CASCADE Technology Reference Manual 8.0.1
    StepFEA_SymmetricTensor43d Class Reference

    Representation of STEP SELECT type SymmetricTensor43d. More...

    #include <StepFEA_SymmetricTensor43d.hxx>

    Inheritance diagram for StepFEA_SymmetricTensor43d:

    Public Member Functions

     StepFEA_SymmetricTensor43d ()
     Empty constructor.
    int CaseNum (const occ::handle< Standard_Transient > &ent) const override
     return 0
    int CaseMem (const occ::handle< StepData_SelectMember > &ent) const override
     Recognizes a items of select member CurveElementFreedomMember 1 -> AnisotropicSymmetricTensor43d 2 -> FeaIsotropicSymmetricTensor43d 3 -> FeaIsoOrthotropicSymmetricTensor43d 4 -> FeaTransverseIsotropicSymmetricTensor43d 5 -> FeaColumnNormalisedOrthotropicSymmetricTensor43d 6 -> FeaColumnNormalisedMonoclinicSymmetricTensor43d 0 else.
    occ::handle< StepData_SelectMemberNewMember () const override
     Returns a preferred SelectMember. Default returns a Null By default, a SelectMember can be set according to data type and Name : it is a SelectNamed if Name is defined.
    occ::handle< NCollection_HArray1< double > > AnisotropicSymmetricTensor43d () const
     Returns Value as AnisotropicSymmetricTensor43d (or Null if another type).
    void SetFeaIsotropicSymmetricTensor43d (const occ::handle< NCollection_HArray1< double > > &valval)
    occ::handle< NCollection_HArray1< double > > FeaIsotropicSymmetricTensor43d () const
     Returns Value as FeaIsotropicSymmetricTensor43d (or Null if another type).
    occ::handle< NCollection_HArray1< double > > FeaIsoOrthotropicSymmetricTensor43d () const
     Returns Value as FeaIsoOrthotropicSymmetricTensor43d (or Null if another type).
    occ::handle< NCollection_HArray1< double > > FeaTransverseIsotropicSymmetricTensor43d () const
     Returns Value as FeaTransverseIsotropicSymmetricTensor43d (or Null if another type).
    occ::handle< NCollection_HArray1< double > > FeaColumnNormalisedOrthotropicSymmetricTensor43d () const
     Returns Value as FeaColumnNormalisedOrthotropicSymmetricTensor43d (or Null if another type).
    occ::handle< NCollection_HArray1< double > > FeaColumnNormalisedMonoclinicSymmetricTensor43d () const
     Returns Value as FeaColumnNormalisedMonoclinicSymmetricTensor43d (or Null if another type).
    Public Member Functions inherited from StepData_SelectType
    bool Matches (const occ::handle< Standard_Transient > &ent) const
     Returns True if the Type of an Entity complies with the definition list of the SelectType. Also checks for a SelectMember Default Implementation looks for CaseNum or CaseMem positive.
    void SetValue (const occ::handle< Standard_Transient > &ent)
     Stores an Entity. This allows to define a specific SelectType class with one read method per member Type, which returns the Value casted with the good Type.
    void Nullify ()
     Nullifies the Stored Entity.
    const occ::handle< Standard_Transient > & Value () const
     Returns the Stored Entity. Can be used to define specific read methods (see above).
    bool IsNull () const
     Returns True if there is no Stored Entity (i.e. it is Null).
    occ::handle< Standard_TypeType () const
     Returns the Effective (Dynamic) Type of the Stored Entity If it is Null, returns TYPE(Transient).
    int CaseNumber () const
     Recognizes the Type of the stored Entity, or zero if it is Null or SelectMember. Calls the first method CaseNum on Value.
    virtual occ::handle< StepData_PDescrDescription () const
     Returns the Description which corresponds to <me> Null if no specific description to give. This description is used to control reading an check validity. Default returns a Null Handle, i.e. undefined description It can suffice if CaseNum and CaseMem give enough control.
    int CaseMember () const
     Returns the Type of the stored SelectMember, or zero if it is Null or Entity. Calls the method CaseMem on Value.
    occ::handle< StepData_SelectMemberMember () const
     Returns Value as a SelectMember. Null if not a SelectMember.
    const char * SelectName () const
     Returns the type name of SelectMember. If no SelectMember or with no type name, returns an empty string To change it, pass through the SelectMember itself.
    int Int () const
     This internal method gives access to a value implemented by an Integer (to read it).
    void SetInt (const int valval)
     This internal method gives access to a value implemented by an Integer (to set it) : a SelectMember MUST ALREADY BE THERE !
    int Integer () const
     Gets the value as an Integer.
    void SetInteger (const int valval, const char *const namename="")
     Sets a new Integer value, with an optional type name Warning : If a SelectMember is already set, works on it : value and name must then be accepted by this SelectMember.
    bool Boolean () const
    void SetBoolean (const bool valval, const char *const namename="")
    StepData_Logical Logical () const
    void SetLogical (const StepData_Logical valval, const char *const namename="")
    double Real () const
    void SetReal (const double valval, const char *const namename="")
    virtual ~StepData_SelectType ()

    Detailed Description

    Representation of STEP SELECT type SymmetricTensor43d.

    Constructor & Destructor Documentation

    ◆ StepFEA_SymmetricTensor43d()

    StepFEA_SymmetricTensor43d::StepFEA_SymmetricTensor43d ( )

    Empty constructor.

    Member Function Documentation

    ◆ AnisotropicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::AnisotropicSymmetricTensor43d ( ) const

    Returns Value as AnisotropicSymmetricTensor43d (or Null if another type).

    ◆ CaseMem()

    int StepFEA_SymmetricTensor43d::CaseMem ( const occ::handle< StepData_SelectMember > & ent) const
    overridevirtual

    Recognizes a items of select member CurveElementFreedomMember 1 -> AnisotropicSymmetricTensor43d 2 -> FeaIsotropicSymmetricTensor43d 3 -> FeaIsoOrthotropicSymmetricTensor43d 4 -> FeaTransverseIsotropicSymmetricTensor43d 5 -> FeaColumnNormalisedOrthotropicSymmetricTensor43d 6 -> FeaColumnNormalisedMonoclinicSymmetricTensor43d 0 else.

    Reimplemented from StepData_SelectType.

    ◆ CaseNum()

    int StepFEA_SymmetricTensor43d::CaseNum ( const occ::handle< Standard_Transient > & ent) const
    overridevirtual

    return 0

    Implements StepData_SelectType.

    ◆ FeaColumnNormalisedMonoclinicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::FeaColumnNormalisedMonoclinicSymmetricTensor43d ( ) const

    Returns Value as FeaColumnNormalisedMonoclinicSymmetricTensor43d (or Null if another type).

    ◆ FeaColumnNormalisedOrthotropicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::FeaColumnNormalisedOrthotropicSymmetricTensor43d ( ) const

    Returns Value as FeaColumnNormalisedOrthotropicSymmetricTensor43d (or Null if another type).

    ◆ FeaIsoOrthotropicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::FeaIsoOrthotropicSymmetricTensor43d ( ) const

    Returns Value as FeaIsoOrthotropicSymmetricTensor43d (or Null if another type).

    ◆ FeaIsotropicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::FeaIsotropicSymmetricTensor43d ( ) const

    Returns Value as FeaIsotropicSymmetricTensor43d (or Null if another type).

    ◆ FeaTransverseIsotropicSymmetricTensor43d()

    occ::handle< NCollection_HArray1< double > > StepFEA_SymmetricTensor43d::FeaTransverseIsotropicSymmetricTensor43d ( ) const

    Returns Value as FeaTransverseIsotropicSymmetricTensor43d (or Null if another type).

    ◆ NewMember()

    occ::handle< StepData_SelectMember > StepFEA_SymmetricTensor43d::NewMember ( ) const
    overridevirtual

    Returns a preferred SelectMember. Default returns a Null By default, a SelectMember can be set according to data type and Name : it is a SelectNamed if Name is defined.

    This method allows to define, for a specific SelectType, a specific SelectMember than SelectNamed. For instance for a Real plus a Name, a SelectReal plus a case number is a good solution, lighter than SelectNamed which is very multipurpose

    Reimplemented from StepData_SelectType.

    ◆ SetFeaIsotropicSymmetricTensor43d()

    void StepFEA_SymmetricTensor43d::SetFeaIsotropicSymmetricTensor43d ( const occ::handle< NCollection_HArray1< double > > & val)

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