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			266 lines
		
	
	
		
			7.9 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
/************************************************************************
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 * This file has been generated automatically from                      *
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 *                                                                      *
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 * src/core/geometry/qgsellipse.h                                       *
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 *                                                                      *
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 * Do not edit manually ! Edit header and run scripts/sipify.py again   *
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 ************************************************************************/
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class QgsEllipse
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{
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%Docstring(signature="appended")
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Ellipse geometry type.
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An ellipse is defined by a center point with a semi-major axis, a semi-minor axis and an azimuth.
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The azimuth is the north angle to the first quadrant (always oriented on the semi-major axis), in degrees. By default, the semi-major axis is oriented to the east (90 degrees).
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The semi-minor axis is always smaller than the semi-major axis. If it is set larger, it will be swapped and the azimuth will increase by 90 degrees.
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%End
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%TypeHeaderCode
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#include "qgsellipse.h"
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%End
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  public:
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    QgsEllipse() /HoldGIL/;
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%Docstring
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Constructor for QgsEllipse.
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%End
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    virtual ~QgsEllipse();
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    QgsEllipse( const QgsPoint ¢er, double semiMajorAxis, double semiMinorAxis, double azimuth = 90 ) /HoldGIL/;
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%Docstring
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Constructs an ellipse by defining all the members.
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:param center: The center of the ellipse.
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:param semiMajorAxis: Semi-major axis of the ellipse.
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:param semiMinorAxis: Semi-minor axis of the ellipse.
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:param azimuth: Angle in degrees started from the North to the first quadrant.
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%End
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    static QgsEllipse fromFoci( const QgsPoint &pt1, const QgsPoint &pt2, const QgsPoint &pt3 ) /HoldGIL/;
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%Docstring
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Constructs an ellipse by foci (``pt1`` and ``pt2``) and a point ``pt3``.
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The center point can have m value which is the result from the midpoint
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operation between ``pt1`` and ``pt2``. Z dimension is also supported and
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is retrieved from the first 3D point amongst ``pt1`` and ``pt2``.
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Axes are calculated from the 2D distance with the third point ``pt3``.
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The azimuth is the angle between ``pt1`` and ``pt2``.
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:param pt1: First focus.
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:param pt2: Second focus.
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:param pt3: A point to calculate the axes.
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%End
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    static QgsEllipse fromExtent( const QgsPoint &pt1, const QgsPoint &pt2 ) /HoldGIL/;
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%Docstring
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Constructs an ellipse by an extent (aka bounding box / :py:class:`QgsRectangle`).
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The center point can have m value which is the result from the midpoint
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operation between ``pt1`` and ``pt2``. Z dimension is also supported and
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is retrieved from the first 3D point amongst ``pt1`` and ``pt2``.
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Axes are calculated from the 2D distance between ``pt1`` and ``pt2``.
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The azimuth always takes the default value.
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:param pt1: First corner.
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:param pt2: Second corner.
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%End
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    static QgsEllipse fromCenterPoint( const QgsPoint &ptc, const QgsPoint &pt1 ) /HoldGIL/;
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%Docstring
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Constructs an ellipse by a center point and a another point.
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The center point keeps m value from ``ptc``. Z dimension is also
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supported and is retrieved from the first 3D point amongst ``ptc`` and
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``pt1``.
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Axes are calculated from the 2D distance between ``ptc`` and ``pt1``.
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The azimuth always takes the default value.
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:param ptc: Center point.
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:param pt1: First point.
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%End
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    static QgsEllipse fromCenter2Points( const QgsPoint &ptc, const QgsPoint &pt1, const QgsPoint &pt2 ) /HoldGIL/;
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%Docstring
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Constructs an ellipse by a central point and two other points.
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The center point keeps m value from ``ptc``. Z dimension is also
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supported and is retrieved from the first 3D point amongst ``ptc``,
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``pt1`` and ``pt2``.
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Axes are calculated from the 2D distance between ``ptc`` and ``pt1`` and ``pt2``.
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The azimuth is the angle between ``ptc`` and ``pt1``.
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:param ptc: Center point.
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:param pt1: First point.
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:param pt2: Second point.
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%End
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    virtual bool operator ==( const QgsEllipse &elp ) const;
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    virtual bool operator !=( const QgsEllipse &elp ) const;
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    virtual bool isEmpty() const /HoldGIL/;
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%Docstring
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An ellipse is empty if axes are equal to 0
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%End
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    QgsPoint center() const /HoldGIL/;
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%Docstring
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Returns the center point.
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.. seealso:: :py:func:`setCenter`
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.. seealso:: :py:func:`rcenter`
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%End
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    double semiMajorAxis() const /HoldGIL/;
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%Docstring
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Returns the semi-major axis.
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.. seealso:: :py:func:`setSemiMajorAxis`
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%End
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    double semiMinorAxis() const /HoldGIL/;
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%Docstring
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Returns the semi-minor axis.
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.. seealso:: :py:func:`setSemiMinorAxis`
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%End
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    double azimuth() const /HoldGIL/;
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%Docstring
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Returns the azimuth.
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.. seealso:: :py:func:`setAzimuth`
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%End
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    void setCenter( const QgsPoint ¢er ) /HoldGIL/;
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%Docstring
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Sets the center point.
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.. seealso:: :py:func:`center`
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.. seealso:: :py:func:`rcenter`
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%End
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    virtual void setSemiMajorAxis( double semiMajorAxis ) /HoldGIL/;
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%Docstring
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Sets the semi-major axis.
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.. seealso:: :py:func:`semiMajorAxis`
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%End
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    virtual void setSemiMinorAxis( double semiMinorAxis ) /HoldGIL/;
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%Docstring
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Sets the semi-minor axis.
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.. seealso:: :py:func:`semiMinorAxis`
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%End
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    void setAzimuth( double azimuth ) /HoldGIL/;
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%Docstring
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Sets the azimuth (orientation).
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.. seealso:: :py:func:`azimuth`
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%End
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    virtual double focusDistance() const /HoldGIL/;
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%Docstring
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The distance between the center and each foci.
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.. seealso:: :py:func:`fromFoci`
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.. seealso:: :py:func:`foci`
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:return: The distance between the center and each foci.
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%End
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    virtual QVector<QgsPoint> foci() const;
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%Docstring
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Two foci of the ellipse. The axes are oriented by the azimuth and are on the semi-major axis.
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.. seealso:: :py:func:`fromFoci`
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.. seealso:: :py:func:`focusDistance`
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:return: the two foci.
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%End
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    virtual double eccentricity() const /HoldGIL/;
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%Docstring
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The eccentricity of the ellipse.
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nan is returned if the ellipse is empty.
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%End
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    virtual double area() const /HoldGIL/;
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%Docstring
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The area of the ellipse.
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%End
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    virtual double perimeter() const /HoldGIL/;
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%Docstring
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The circumference of the ellipse using first approximation of Ramanujan.
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%End
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    virtual QVector<QgsPoint> quadrant() const;
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%Docstring
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The four quadrants of the ellipse.
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They are oriented and started always from semi-major axis.
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:return: quadrants defined by four points.
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%End
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    virtual QgsPointSequence points( unsigned int segments = 36 ) const;
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%Docstring
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Returns a list of points with segmentation from ``segments``.
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:param segments: Number of segments used to segment geometry.
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%End
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    virtual QgsPolygon *toPolygon( unsigned int segments = 36 ) const /Factory/;
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%Docstring
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Returns a segmented polygon.
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:param segments: Number of segments used to segment geometry.
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%End
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    virtual QgsLineString *toLineString( unsigned int segments = 36 ) const /Factory/;
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%Docstring
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Returns a segmented linestring.
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:param segments: Number of segments used to segment geometry.
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%End
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    virtual QgsPolygon *orientedBoundingBox() const /Factory/;
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%Docstring
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Returns the oriented minimal bounding box for the ellipse.
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%End
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    virtual QgsRectangle boundingBox() const;
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%Docstring
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Returns the minimal bounding box for the ellipse.
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%End
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    virtual QString toString( int pointPrecision = 17, int axisPrecision = 17, int azimuthPrecision = 2 ) const;
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%Docstring
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returns a string representation of the ellipse.
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Members will be truncated to the specified precision.
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%End
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    SIP_PYOBJECT __repr__();
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%MethodCode
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    QString str = QStringLiteral( "<QgsEllipse: %1>" ).arg( sipCpp->toString() );
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    sipRes = PyUnicode_FromString( str.toUtf8().constData() );
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%End
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  protected:
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};
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/************************************************************************
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 * This file has been generated automatically from                      *
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 *                                                                      *
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 * src/core/geometry/qgsellipse.h                                       *
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 *                                                                      *
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 * Do not edit manually ! Edit header and run scripts/sipify.py again   *
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 ************************************************************************/
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