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397 lines
13 KiB
Plaintext
397 lines
13 KiB
Plaintext
struct QgsVertexId
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{
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%TypeHeaderCode
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#include <qgsabstractgeometryv2.h>
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%End
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enum VertexType
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{
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SegmentVertex, //start / endpoint of a segment
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CurveVertex
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};
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QgsVertexId();
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QgsVertexId( int _part, int _ring, int _vertex, VertexType _type);
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bool isValid() const;
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bool operator==( QgsVertexId other ) const;
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bool operator!=( QgsVertexId other ) const;
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bool partEqual( QgsVertexId o ) const;
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bool ringEqual( QgsVertexId o ) const;
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bool vertexEqual( QgsVertexId o ) const;
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bool isValid(const QgsAbstractGeometryV2* geom) const;
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int part;
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int ring;
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int vertex;
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VertexType type;
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};
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/** \ingroup core
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* \class QgsAbstractGeometryV2
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* \brief Abstract base class for all geometries
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* \note added in QGIS 2.10
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*/
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class QgsAbstractGeometryV2
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{
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%TypeHeaderCode
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#include <qgsabstractgeometryv2.h>
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#include <qgslinestringv2.h>
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%End
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%ConvertToSubClassCode
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if (dynamic_cast<QgsPointV2*>(sipCpp) != NULL)
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sipType = sipType_QgsPointV2;
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else if (dynamic_cast<QgsLineStringV2*>(sipCpp) != NULL )
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sipType = sipType_QgsLineStringV2;
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else if (dynamic_cast<QgsCircularStringV2*>(sipCpp) != NULL )
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sipType = sipType_QgsCircularStringV2;
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else if (dynamic_cast<QgsCompoundCurveV2*>(sipCpp) != NULL )
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sipType = sipType_QgsCompoundCurveV2;
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else if (dynamic_cast<QgsPolygonV2*>(sipCpp) != NULL )
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sipType = sipType_QgsPolygonV2;
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else if (dynamic_cast<QgsCurvePolygonV2*>(sipCpp) != NULL )
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sipType = sipType_QgsCurvePolygonV2;
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else if (dynamic_cast<QgsMultiPointV2*>(sipCpp) != NULL )
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sipType = sipType_QgsMultiPointV2;
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else if (dynamic_cast<QgsMultiLineStringV2*>(sipCpp) != NULL )
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sipType = sipType_QgsMultiLineStringV2;
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else if (dynamic_cast<QgsMultiPolygonV2*>(sipCpp) != NULL )
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sipType = sipType_QgsMultiPolygonV2;
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else if (dynamic_cast<QgsMultiSurfaceV2*>(sipCpp) != NULL )
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sipType = sipType_QgsMultiSurfaceV2;
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else if (dynamic_cast<QgsMultiCurveV2*>(sipCpp) != NULL )
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sipType = sipType_QgsMultiCurveV2;
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else if (dynamic_cast<QgsGeometryCollectionV2*>(sipCpp) != NULL )
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sipType = sipType_QgsGeometryCollectionV2;
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else
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sipType = 0;
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%End
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public:
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/** Segmentation tolerance as maximum angle or maximum difference between approximation and circle*/
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enum SegmentationToleranceType
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{
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MaximumAngle = 0,
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MaximumDifference
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};
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QgsAbstractGeometryV2();
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virtual ~QgsAbstractGeometryV2();
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QgsAbstractGeometryV2( const QgsAbstractGeometryV2& geom );
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//virtual QgsAbstractGeometryV2& operator=( const QgsAbstractGeometryV2& geom );
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/** Clones the geometry by performing a deep copy
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*/
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virtual QgsAbstractGeometryV2* clone() const = 0;
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/** Clears the geometry, ie reset it to a null geometry
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*/
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virtual void clear() = 0;
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/** Returns the minimal bounding box for the geometry
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*/
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virtual QgsRectangle boundingBox() const = 0;
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//mm-sql interface
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/** Returns the inherent dimension of the geometry. For example, this is 0 for a point geometry,
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* 1 for a linestring and 2 for a polygon.
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*/
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virtual int dimension() const = 0;
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//virtual int coordDim() const { return mCoordDimension; }
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/** Returns a unique string representing the geometry type.
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* @see wkbType
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* @see wktTypeStr
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*/
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virtual QString geometryType() const = 0;
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/** Returns the WKB type of the geometry.
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* @see geometryType
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* @see wktTypeStr
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*/
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QgsWKBTypes::Type wkbType() const;
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/** Returns the WKT type string of the geometry.
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* @see geometryType
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* @see wkbType
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*/
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QString wktTypeStr() const;
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/** Returns true if the geometry is 3D and contains a z-value.
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* @see isMeasure
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*/
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bool is3D() const;
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/** Returns true if the geometry contains m values.
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* @see is3D
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*/
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bool isMeasure() const;
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//import
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/** Sets the geometry from a WKB string.
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* @see fromWkt
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*/
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virtual bool fromWkb( QgsConstWkbPtr wkb ) = 0;
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/** Sets the geometry from a WKT string.
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* @see fromWkb
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*/
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virtual bool fromWkt( const QString& wkt ) = 0;
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//export
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/** Returns the size of the WKB representation of the geometry.
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* @see asWkb
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*/
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virtual int wkbSize() const = 0;
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/** Returns a WKB representation of the geometry.
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* @param binarySize will be set to the size of the returned WKB string
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* @see wkbSize
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* @see asWkt
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* @see asGML2
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* @see asGML3
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* @see asJSON
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*/
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virtual unsigned char* asWkb( int& binarySize ) const = 0;
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/** Returns a WKT representation of the geometry.
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* @param precision number of decimal places for coordinates
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* @see asWkb
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* @see asGML2
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* @see asGML3
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* @see asJSON
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*/
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virtual QString asWkt( int precision = 17 ) const = 0;
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/** Returns a GML2 representation of the geometry.
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* @param doc DOM document
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* @param precision number of decimal places for coordinates
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* @param ns XML namespace
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* @see asWkb
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* @see asWkt
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* @see asGML3
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* @see asJSON
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*/
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virtual QDomElement asGML2( QDomDocument& doc, int precision = 17, const QString& ns = "gml" ) const = 0;
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/** Returns a GML3 representation of the geometry.
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* @param doc DOM document
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* @param precision number of decimal places for coordinates
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* @param ns XML namespace
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* @see asWkb
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* @see asWkt
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* @see asGML2
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* @see asJSON
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*/
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virtual QDomElement asGML3( QDomDocument& doc, int precision = 17, const QString& ns = "gml" ) const = 0;
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/** Returns a GeoJSON representation of the geometry.
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* @param precision number of decimal places for coordinates
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* @see asWkb
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* @see asWkt
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* @see asGML2
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* @see asGML3
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*/
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virtual QString asJSON( int precision = 17 ) const = 0;
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//render pipeline
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/** Transforms the geometry using a coordinate transform
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* @param ct coordinate transform
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@param d transformation direction
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*/
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virtual void transform( const QgsCoordinateTransform& ct, QgsCoordinateTransform::TransformDirection d = QgsCoordinateTransform::ForwardTransform ) = 0;
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/** Transforms the geometry using a QTransform object
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* @param t QTransform transformation
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*/
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virtual void transform( const QTransform& t ) = 0;
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//virtual void clip( const QgsRectangle& rect );
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/** Draws the geometry using the specified QPainter.
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* @param p destination QPainter
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*/
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virtual void draw( QPainter& p ) const = 0;
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/** Returns next vertex id and coordinates
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* @param id initial value should be the starting vertex id. The next vertex id will be stored
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* in this variable if found.
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* @param vertex container for found node
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* @return false if at end
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*/
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virtual bool nextVertex( QgsVertexId& id, QgsPointV2& vertex ) const = 0;
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/** Retrieves the sequence of geometries, rings and nodes.
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* @return coordinate sequence
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*/
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virtual QList< QList< QList< QgsPointV2 > > > coordinateSequence() const = 0;
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/** Returns the number of nodes contained in the geometry
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*/
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int nCoordinates() const;
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/** Returns the point corresponding to a specified vertex id
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*/
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virtual QgsPointV2 vertexAt( QgsVertexId id ) const = 0;
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/** Searches for the closest segment of the geometry to a given point.
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* @param pt specifies the point to find closest segment to
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* @param segmentPt storage for the closest point within the geometry
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* @param vertexAfter storage for the ID of the vertex at the end of the closest segment
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* @param leftOf returns whether the point lies on the left side of the nearest segment (true if point is to left of segment,
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* false if point is to right of segment)
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* @param epsilon epsilon for segment snapping
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* @returns squared distance to closest segment
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*/
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virtual double closestSegment( const QgsPointV2& pt, QgsPointV2& segmentPt, QgsVertexId& vertexAfter, bool* leftOf, double epsilon ) const = 0;
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//low-level editing
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/** Inserts a vertex into the geometry
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* @param position vertex id for position of inserted vertex
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* @param vertex vertex to insert
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* @returns true if insert was successful
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* @see moveVertex
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* @see deleteVertex
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*/
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virtual bool insertVertex( QgsVertexId position, const QgsPointV2& vertex ) = 0;
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/** Moves a vertex within the geometry
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* @param position vertex id for vertex to move
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* @param newPos new position of vertex
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* @returns true if move was successful
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* @see insertVertex
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* @see deleteVertex
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*/
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virtual bool moveVertex( QgsVertexId position, const QgsPointV2& newPos ) = 0;
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/** Deletes a vertex within the geometry
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* @param position vertex id for vertex to delete
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* @returns true if delete was successful
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* @see insertVertex
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* @see moveVertex
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*/
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virtual bool deleteVertex( QgsVertexId position ) = 0;
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/** Returns the length of the geometry.
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* @see area()
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* @see perimeter()
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*/
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virtual double length() const;
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/** Returns the perimeter of the geometry.
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* @see area()
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* @see length()
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*/
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virtual double perimeter() const;
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/** Returns the area of the geometry.
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* @see length()
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* @see perimeter()
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*/
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virtual double area() const;
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/** Returns the centroid of the geometry */
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virtual QgsPointV2 centroid() const;
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/** Returns true if the geometry is empty
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*/
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bool isEmpty() const;
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/** Returns true if the geometry contains curved segments
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*/
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virtual bool hasCurvedSegments() const;
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/** Returns a version of the geometry without curves. Caller takes ownership of
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* the returned geometry.
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* @param tolerance segmentation tolerance
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* @param toleranceType maximum segmentation angle or maximum difference between approximation and curve
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*/
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virtual QgsAbstractGeometryV2* segmentize( double tolerance = M_PI_2 / 90, SegmentationToleranceType toleranceType = MaximumAngle ) const /Factory/;
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/** Returns the geometry converted to the more generic curve type.
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E.g. QgsLineStringV2 -> QgsCompoundCurveV2, QgsPolygonV2 -> QgsCurvePolygonV2,
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QgsMultiLineStringV2 -> QgsMultiCurveV2, QgsMultiPolygonV2 -> QgsMultiSurfaceV2
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@return the converted geometry. Caller takes ownership*/
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virtual QgsAbstractGeometryV2* toCurveType() const /Factory/;
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/** Returns approximate angle at a vertex. This is usually the average angle between adjacent
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* segments, and can be pictured as the orientation of a line following the curvature of the
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* geometry at the specified vertex.
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* @param vertex the vertex id
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* @return rotation in radians, clockwise from north
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*/
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virtual double vertexAngle( QgsVertexId vertex ) const = 0;
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virtual int vertexCount( int part = 0, int ring = 0 ) const = 0;
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virtual int ringCount( int part = 0 ) const = 0;
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/** Returns count of parts contained in the geometry.
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* @see vertexCount
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* @see ringCount
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*/
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virtual int partCount() const = 0;
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/** Adds a z-dimension to the geometry, initialized to a preset value.
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* @param zValue initial z-value for all nodes
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* @returns true on success
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* @note added in QGIS 2.12
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* @see dropZValue()
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* @see addMValue()
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*/
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virtual bool addZValue( double zValue = 0 ) = 0;
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/** Adds a measure to the geometry, initialized to a preset value.
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* @param mValue initial m-value for all nodes
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* @returns true on success
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* @note added in QGIS 2.12
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* @see dropMValue()
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* @see addZValue()
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*/
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virtual bool addMValue( double mValue = 0 ) = 0;
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/** Drops any z-dimensions which exist in the geometry.
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* @returns true if Z values were present and have been removed
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* @see addZValue()
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* @see dropMValue()
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* @note added in QGIS 2.14
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*/
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virtual bool dropZValue() = 0;
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/** Drops any measure values which exist in the geometry.
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* @returns true if m-values were present and have been removed
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* @see addMValue()
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* @see dropZValue()
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* @note added in QGIS 2.14
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*/
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virtual bool dropMValue() = 0;
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/** Converts the geometry to a specified type.
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* @returns true if conversion was successful
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* @note added in QGIS 2.14
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*/
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virtual bool convertTo( QgsWKBTypes::Type type );
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protected:
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/** Updates the geometry type based on whether sub geometries contain z or m values.
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*/
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void setZMTypeFromSubGeometry( const QgsAbstractGeometryV2* subggeom, QgsWKBTypes::Type baseGeomType );
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/** Default calculator for the minimal bounding box for the geometry. Derived classes should override this method
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* if a more efficient bounding box calculation is available.
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*/
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virtual QgsRectangle calculateBoundingBox() const;
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/** Clears any cached parameters associated with the geometry, eg bounding boxes
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*/
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virtual void clearCache() const;
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};
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