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//
// This application incorporates Open Design Alliance software pursuant to a license
// agreement with Open Design Alliance.
// Open Design Alliance Copyright (C) 2002-2025 by Open Design Alliance.
// All rights reserved.
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///////////////////////////////////////////////////////////////////////////////
// This file is generated automatically.
#ifndef _IFC2X3_IFCGENERALPROFILEPROPERTIES_AUTO_IMPL_H
#define _IFC2X3_IFCGENERALPROFILEPROPERTIES_AUTO_IMPL_H
#include "IfcProfilePropertiesAutoImpl.h"
#include "TD_PackPush.h"
/** \details
The namespace contains schema-dependent classes, definitions and sub routines
for work with IFC2X3 express schema definitions.
*/
namespace OdIfc2x3 {
/** \details
This is a collection of properties applicable to all linear structural members having a profile definition.
*/
class IFC2X3_EXPORT IfcGeneralProfileProperties : public IfcProfileProperties
{
//DOM-IGNORE-BEGIN
OD_EXP_DECLARE_MEMBERS(OdIfc2x3::IfcGeneralProfileProperties);
//DOM-IGNORE-END
public:
//
// OdDAI early binding accessors
//
/** \details
Returns the value of PhysicalWeight attribute.
This attribute represents the weight of an imaginary steel beam per length,
as for example given by the national standards for this profile. Usually measured in [kg/m].
\returns
Returns the value of PhysicalWeight attribute.
*/
double getPhysicalWeight() const;
/** \details
Sets the value of PhysicalWeight attribute.
This attribute represents the weight of an imaginary steel beam per length,
as for example given by the national standards for this profile. Usually measured in [kg/m].
\param PhysicalWeight [in] PhysicalWeight attribute to set.
*/
void setPhysicalWeight(double PhysicalWeight);
/** \details
Returns the value of Perimeter attribute.
This attribute represents the perimeter of the profile for calculating the surface area. Usually measured in [mm].
\returns
Returns the value of Perimeter attribute.
*/
double getPerimeter() const;
/** \details
Sets the value of Perimeter attribute.
This attribute represents the perimeter of the profile for calculating the surface area. Usually measured in [mm].
\param Perimeter [in] Perimeter attribute to set.
*/
void setPerimeter(double Perimeter);
/** \details
Returns the value of MinimumPlateThickness attribute.
This attribute represents a value that is needed for stress analysis and for handling buckling problems.
It can be derived from the given profile geometry and therefore
it is only an optional feature allowing an explicit description. Usually measured in [mm].
\returns
Returns the value of MinimumPlateThickness attribute.
*/
double getMinimumPlateThickness() const;
/** \details
Sets the value of MinimumPlateThickness attribute.
This attribute represents a value that is needed for stress analysis and for handling buckling problems.
It can be derived from the given profile geometry and therefore
it is only an optional feature allowing an explicit description. Usually measured in [mm].
\param MinimumPlateThickness [in] MinimumPlateThickness attribute to set.
*/
void setMinimumPlateThickness(double MinimumPlateThickness);
/** \details
Returns the value of MaximumPlateThickness attribute.
This attribute represents the value that is needed for stress analysis and for handling buckling problems.
It can be derived from the given profile geometry and therefore
it is only an optional feature allowing an explicit description. Usually measured in [mm].
\returns
Returns the value of MaximumPlateThickness attribute.
*/
double getMaximumPlateThickness() const;
/** \details
Sets the value of MaximumPlateThickness attribute.
This attribute represents the value that is needed for stress analysis and for handling buckling problems.
It can be derived from the given profile geometry and therefore
it is only an optional feature allowing an explicit description. Usually measured in [mm].
\param MaximumPlateThickness [in] MaximumPlateThickness attribute to set.
*/
void setMaximumPlateThickness(double MaximumPlateThickness);
/** \details
Returns the value of CrossSectionArea attribute.
This attribute represents the cross-sectional area of profile. Usually measured in [mm2].
\returns
Returns the value of CrossSectionArea attribute.
*/
double getCrossSectionArea() const;
/** \details
Sets the value of CrossSectionArea attribute.
This attribute represents the cross-sectional area of profile. Usually measured in [mm2].
\param CrossSectionArea [in] CrossSectionArea attribute to set.
*/
void setCrossSectionArea(double CrossSectionArea);
public:
/** \details
Default constructor for the IfcGeneralProfileProperties class.
*/
IfcGeneralProfileProperties();
/** \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