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//
// This application incorporates Open Design Alliance software pursuant to a license
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// This file is generated automatically.
#ifndef _IFC4X1_IFCFAILURECONNECTIONCONDITION_AUTO_IMPL_H
#define _IFC4X1_IFCFAILURECONNECTIONCONDITION_AUTO_IMPL_H
#include "IfcStructuralConnectionConditionAutoImpl.h"
#include "TD_PackPush.h"
/** \details
The namespace contains schema-dependent classes, definitions and sub routines
for work with IFC4X1 express schema definitions.
*/
namespace OdIfc4x1 {
/** \details
Defines forces at which a support or connection fails.
Applicability:
* Point supports and connections
*/
class IFC4X1_EXPORT IfcFailureConnectionCondition : public IfcStructuralConnectionCondition
{
//DOM-IGNORE-BEGIN
OD_EXP_DECLARE_MEMBERS(OdIfc4x1::IfcFailureConnectionCondition);
//DOM-IGNORE-END
public:
//
// OdDAI early binding accessors
//
/** \details
Returns the value of TensionFailureX attribute.
This attribute represents tension force in x-direction leading to failure of the connection.
\returns
Returns the value of TensionFailureX attribute.
*/
double getTensionFailureX() const;
/** \details
Sets the value of TensionFailureX attribute.
This attribute represents tension force in x-direction leading to failure of the connection.
\param TensionFailureX [in] TensionFailureX attribute to set.
*/
void setTensionFailureX(double TensionFailureX);
/** \details
Returns the value of TensionFailureY attribute.
This attribute represents tension force in y-direction leading to failure of the connection.
\returns
Returns the value of TensionFailureY attribute.
*/
double getTensionFailureY() const;
/** \details
Sets the value of TensionFailureY attribute.
This attribute represents tension force in y-direction leading to failure of the connection.
\param TensionFailureY [in] TensionFailureY attribute to set.
*/
void setTensionFailureY(double TensionFailureY);
/** \details
Returns the value of TensionFailureZ attribute.
This attribute represents tension force in z-direction leading to failure of the connection.
\returns
Returns the value of TensionFailureZ attribute.
*/
double getTensionFailureZ() const;
/** \details
Sets the value of TensionFailureZ attribute.
This attribute represents tension force in z-direction leading to failure of the connection.
\param TensionFailureZ [in] TensionFailureZ attribute to set.
*/
void setTensionFailureZ(double TensionFailureZ);
/** \details
Returns the value of CompressionFailureX attribute.
This attribute represents compression force in x-direction leading to failure of the connection.
\returns
Returns the value of CompressionFailureX attribute.
*/
double getCompressionFailureX() const;
/** \details
Sets the value of CompressionFailureX attribute.
This attribute represents compression force in x-direction leading to failure of the connection.
\param CompressionFailureX [in] CompressionFailureX attribute to set.
*/
void setCompressionFailureX(double CompressionFailureX);
/** \details
Returns the value of CompressionFailureY attribute.
This attribute represents compression force in y-direction leading to failure of the connection.
\returns
Returns the value of CompressionFailureY attribute.
*/
double getCompressionFailureY() const;
/** \details
Sets the value of CompressionFailureY attribute.
This attribute represents compression force in y-direction leading to failure of the connection.
\param CompressionFailureY [in] CompressionFailureY attribute to set.
*/
void setCompressionFailureY(double CompressionFailureY);
/** \details
Returns the value of CompressionFailureZ attribute.
This attribute represents compression force in z-direction leading to failure of the connection.
\returns
Returns the value of CompressionFailureZ attribute.
*/
double getCompressionFailureZ() const;
/** \details
Sets the value of CompressionFailureZ attribute.
This attribute represents compression force in z-direction leading to failure of the connection.
\param CompressionFailureZ [in] CompressionFailureZ attribute to set.
*/
void setCompressionFailureZ(double CompressionFailureZ);
public:
/** \details
Default constructor for the IfcFailureConnectionCondition class.
*/
IfcFailureConnectionCondition();
/** \details
Reads object's data from the specified filer.
\param rdFiler [in] Pointer to a filer from which to read the data.
\returns
A value of OdResult type that contains the result of the method execution.
*/
virtual OdResult inFields(OdDAI::OdSpfFilerBase* rdFiler) override;
/** \details
Writes object's data the the specified filer.
\param wrFiler [in] Pointer to a filer to which to write the data.
\returns
A value of OdResult type that contains the result of the method execution.
*/
virtual OdResult outFields(OdDAI::OdSpfFilerBase* wrFiler) override;
/** \details
Returns a type of a class instance.
\returns
Pointer to the OdDAI::Entity type that determines an entity definition within a schema.
*/
virtual OdDAI::Entity* getInstanceType() const override;
/** \details
Returns an attribute value for the specified attribute name.
\param attrName [in] Name of an attribute to query.
\returns
OdRxValue object that represents a generic variant type value.
*/
virtual OdRxValue getAttr(const char * attrName) const override;
/** \details
Resets a value for the specified attribute.
\param explicitAttrName [in] Explicit name of the attribute to reset.
*/
virtual void unsetAttr(const char * explicitAttrName) override;
/** \details
Checks whether the specified attribute is set.
\param explicitAttrName [in] Explicit name of the attribute to test.
\returns
true if the specified attribute is set, false otherwise.
*/
virtual bool testAttr(const char * explicitAttrName) const override;
/** \details
Sets the specified attribute with a given value.
\param explicitAttrName [in] Explicit name of the attribute to set.
\param val [in] Value to set.
\returns
true if the value is successfully set for the specified attribute, false otherwise.
*/
virtual bool putAttr(const char * explicitAttrName, const OdRxValue &val) override;
/** \details
Checks whether the specified instance is the object derived from or belongs to this class.
\param entityType [in] Entity to check.
\returns
true if the specified instance is the object derived from or belongs to this class, false otherwise.
*/
virtual bool isKindOf(OdIfc::OdIfcEntityType entityType) const override;
/** \details
Returns the type of this entity.
\returns
A value of the OdIfc::OdIfcEntityType type that represents type of this entity.
*/
virtual OdIfc::OdIfcEntityType type() const override;
/** \details
Returns an attribute value for the specified attribute definition.
\param attrDef [in] Attribute definition to query.
\returns
OdRxValue object that represents a generic variant type value.
*/
virtual OdRxValue getAttr(const OdIfc::OdIfcAttribute attrDef) const override;
/** \details
Resets a value for the specified attribute.
\param explicitAttrDef [in] Explicit definition that represents an attribute to reset.
*/
virtual void unsetAttr(const OdIfc::OdIfcAttribute explicitAttrDef) override;
/** \details
Checks whether the specified attribute is set.
\param explicitAttrDef [in] Attribute definition to test.
\returns
true if the specified attribute is set, false otherwise.
*/
virtual bool testAttr(const OdIfc::OdIfcAttribute explicitAttrDef) const override;
/** \details
Sets the specified attribute with a given value.
\param explicitAttrDef [in] Explicit attribute definition to set.
\param val [in] Value to set.
\returns
true if the value is successfully set for the specified attribute, false otherwise.
*/
virtual bool putAttr(const OdIfc::OdIfcAttribute explicitAttrDef, const OdRxValue &val) override;
protected:
// Fields declaration:
double m_TensionFailureX; // IfcForceMeasure [optional]
double m_TensionFailureY; // IfcForceMeasure [optional]
double m_TensionFailureZ; // IfcForceMeasure [optional]
double m_CompressionFailureX; // IfcForceMeasure [optional]
double m_CompressionFailureY; // IfcForceMeasure [optional]
double m_CompressionFailureZ; // IfcForceMeasure [optional]
};
/** \details
A data type that represents a smart pointer to a IfcFailureConnectionCondition object.
*/
typedef OdSmartPtr IfcFailureConnectionConditionPtr;
} // namespace
#include "TD_PackPop.h"
#endif // _IFC4X1_IFCFAILURECONNECTIONCONDITION_AUTO_IMPL_H