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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 _IFC4X3_ADD2_IFCMAPCONVERSION_AUTO_IMPL_H
#define _IFC4X3_ADD2_IFCMAPCONVERSION_AUTO_IMPL_H
#include "IfcCoordinateOperationAutoImpl.h"
#include "TD_PackPush.h"
/** \details
The namespace contains schema-dependent classes, definitions and sub routines
for work with IFC4X3_ADD2 express schema definitions.
*/
namespace OdIfc4x3_add2 {
/** \details
The map conversion deals with transforming the local engineering coordinate system, often called world coordinate system,
into the coordinate reference system of the underlying map.
The map conversion allows to convert the local origin of the local engineering coordinate system to its place within a map
(easting, northing, orthogonal height) and to rotate the x-axis of the local engineering coordinate system within the horizontal (easting/westing) plane of the map.
The scale factor can be used when the length unit for the 3 axes of the map coordinate system
are not identical with the length unit established for this project (see IfcProject.UnitsInContext). If omitted, the scale factor 1.0 is assumed.
\changes
* IFC4 changes:
The assignment of curve, surface and other styles to an IfcStyledItem has been simplified by IfcStyleAssignmentSelect.
The use of intermediate IfcPresentationStyleAssignment is deprecated.
*/
class IFC4X3_EXPORT IfcMapConversion : public IfcCoordinateOperation
{
//DOM-IGNORE-BEGIN
OD_EXP_DECLARE_MEMBERS(OdIfc4x3_add2::IfcMapConversion);
//DOM-IGNORE-END
public:
//
// OdDAI early binding accessors
//
/** \details
Returns the value of Eastings attribute.
This attribute represents the location along the easting of the coordinate system of the target map coordinate reference system.
\returns
Returns the value of Eastings attribute.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the x axis.
*/
double getEastings() const;
/** \details
Sets the value of Eastings attribute.
This attribute represents the location along the easting of the coordinate system of the target map coordinate reference system.
\param Eastings [in] Eastings attribute to set.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the x axis.
*/
void setEastings(double Eastings);
/** \details
Returns the value of Northings attribute.
This attribute represents the location along the northing of the coordinate system of the target map coordinate reference system.
\returns
Returns the value of Northings attribute.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the y axis.
*/
double getNorthings() const;
/** \details
Sets the value of Northings attribute.
This attribute represents the location along the northing of the coordinate system of the target map coordinate reference system.
\param Northings [in] Northings attribute to set.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the y axis.
*/
void setNorthings(double Northings);
/** \details
Returns the value of OrthogonalHeight attribute.
This attribute represents orthogonal height relative to the vertical datum specified.
\returns
Returns the value of OrthogonalHeight attribute.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the z axis.
*/
double getOrthogonalHeight() const;
/** \details
Sets the value of OrthogonalHeight attribute.
This attribute represents orthogonal height relative to the vertical datum specified.
\param OrthogonalHeight [in] Orthogonal height to set.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the z axis.
*/
void setOrthogonalHeight(double OrthogonalHeight);
/** \details
Returns the value of XAxisAbscissa attribute.
This attribute represents the value along the easing axis of the end point
of a vector indicating the position of the local x axis of the engineering coordinate reference system.
\returns
Returns the value of XAxisAbscissa attribute.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the x axis.
Together with the XAxisOrdinate it provides the direction of the local x axis within the horizontal plane of the map coordinate system.
*/
double getXAxisAbscissa() const;
/** \details
Sets the value of XAxisAbscissa attribute.
This attribute represents the value along the easing axis of the end point
of a vector indicating the position of the local x axis of the engineering coordinate reference system.
\param XAxisAbscissa [in] X axis abscissa to set.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the x axis.
Together with the XAxisOrdinate it provides the direction of the local x axis within the horizontal plane of the map coordinate system.
*/
void setXAxisAbscissa(double XAxisAbscissa);
/** \details
Returns the value of XAxisOrdinate attribute.
This attribute represents the value along the northing axis of the end point
of a vector indicating the position of the local x axis of the engineering coordinate reference system.
\returns
Returns the value of XAxisOrdinate attribute.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the y axis.
*/
double getXAxisOrdinate() const;
/** \details
Sets the value of XAxisOrdinate attribute.
This attribute represents the value along the northing axis of the end point
of a vector indicating the position of the local x axis of the engineering coordinate reference system.
\param XAxisOrdinate [in] X axis ordinate to set.
\remarks
For right-handed Cartesian coordinate systems this would establish the location along the y axis.
*/
void setXAxisOrdinate(double XAxisOrdinate);
/** \details
Returns the value of Scale attribute.
This attribute represents scale that is used, when the units of the CRS are not identical to the units of the engineering coordinate system.
If omitted, the value of 1.0 is assumed.
\returns
Returns the value of Scale attribute.
*/
double getScale() const;
/** \details
Sets the value of Scale attribute.
This attribute represents scale that is used, when the units of the CRS are not identical to the units of the engineering coordinate system.
If omitted, the value of 1.0 is assumed.
\param Scale [in] Scale to set.
*/
void setScale(double Scale);
public:
/** \details
Default constructor for the IfcMapConversion class.
*/
IfcMapConversion();
/** \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