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			210 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			210 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| # -*- coding: utf-8 -*-
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| 
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| """
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| ***************************************************************************
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|     ExportGeometryInfo.py
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|     ---------------------
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|     Date                 : August 2012
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|     Copyright            : (C) 2012 by Victor Olaya
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|     Email                : volayaf at gmail dot com
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| ***************************************************************************
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| *                                                                         *
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| *   This program is free software; you can redistribute it and/or modify  *
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| *   it under the terms of the GNU General Public License as published by  *
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| *   the Free Software Foundation; either version 2 of the License, or     *
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| *   (at your option) any later version.                                   *
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| *                                                                         *
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| ***************************************************************************
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| """
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| 
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| __author__ = 'Victor Olaya'
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| __date__ = 'August 2012'
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| __copyright__ = '(C) 2012, Victor Olaya'
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| 
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| import os
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| import math
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| 
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| from qgis.PyQt.QtGui import QIcon
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| from qgis.PyQt.QtCore import QVariant
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| 
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| from qgis.core import (NULL,
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|                        QgsApplication,
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|                        QgsCoordinateTransform,
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|                        QgsField,
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|                        QgsFields,
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|                        QgsWkbTypes,
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|                        QgsPointXY,
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|                        QgsFeatureSink,
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|                        QgsDistanceArea,
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|                        QgsProcessingUtils,
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|                        QgsProcessingException,
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|                        QgsProcessingParameterFeatureSource,
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|                        QgsProcessingParameterEnum,
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|                        QgsProcessingParameterFeatureSink)
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| 
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| from processing.algs.qgis.QgisAlgorithm import QgisAlgorithm
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| from processing.tools import vector
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| 
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| pluginPath = os.path.split(os.path.split(os.path.dirname(__file__))[0])[0]
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| 
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| 
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| class ExportGeometryInfo(QgisAlgorithm):
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|     INPUT = 'INPUT'
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|     METHOD = 'CALC_METHOD'
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|     OUTPUT = 'OUTPUT'
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| 
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|     def icon(self):
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|         return QgsApplication.getThemeIcon("/algorithms/mAlgorithmAddGeometryAttributes.svg")
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| 
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|     def svgIconPath(self):
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|         return QgsApplication.iconPath("/algorithms/mAlgorithmAddGeometryAttributes.svg")
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| 
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|     def tags(self):
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|         return self.tr('export,add,information,measurements,areas,lengths,perimeters,latitudes,longitudes,x,y,z,extract,points,lines,polygons,sinuosity,fields').split(',')
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| 
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|     def group(self):
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|         return self.tr('Vector geometry')
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| 
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|     def groupId(self):
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|         return 'vectorgeometry'
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| 
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|     def __init__(self):
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|         super().__init__()
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|         self.export_z = False
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|         self.export_m = False
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|         self.distance_area = None
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|         self.calc_methods = [self.tr('Layer CRS'),
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|                              self.tr('Project CRS'),
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|                              self.tr('Ellipsoidal')]
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| 
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|     def initAlgorithm(self, config=None):
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|         self.addParameter(QgsProcessingParameterFeatureSource(self.INPUT,
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|                                                               self.tr('Input layer')))
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|         self.addParameter(QgsProcessingParameterEnum(self.METHOD,
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|                                                      self.tr('Calculate using'), options=self.calc_methods, defaultValue=0))
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|         self.addParameter(QgsProcessingParameterFeatureSink(self.OUTPUT, self.tr('Added geom info')))
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| 
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|     def name(self):
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|         return 'exportaddgeometrycolumns'
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| 
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|     def displayName(self):
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|         return self.tr('Add geometry attributes')
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| 
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|     def processAlgorithm(self, parameters, context, feedback):
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|         source = self.parameterAsSource(parameters, self.INPUT, context)
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|         if source is None:
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|             raise QgsProcessingException(self.invalidSourceError(parameters, self.INPUT))
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| 
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|         method = self.parameterAsEnum(parameters, self.METHOD, context)
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| 
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|         wkb_type = source.wkbType()
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|         fields = source.fields()
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| 
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|         new_fields = QgsFields()
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|         if QgsWkbTypes.geometryType(wkb_type) == QgsWkbTypes.PolygonGeometry:
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|             new_fields.append(QgsField('area', QVariant.Double))
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|             new_fields.append(QgsField('perimeter', QVariant.Double))
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|         elif QgsWkbTypes.geometryType(wkb_type) == QgsWkbTypes.LineGeometry:
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|             new_fields.append(QgsField('length', QVariant.Double))
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|             if not QgsWkbTypes.isMultiType(source.wkbType()):
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|                 new_fields.append(QgsField('straightdis', QVariant.Double))
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|                 new_fields.append(QgsField('sinuosity', QVariant.Double))
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|         else:
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|             if QgsWkbTypes.isMultiType(source.wkbType()):
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|                 new_fields.append(QgsField('numparts', QVariant.Int))
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|             else:
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|                 new_fields.append(QgsField('xcoord', QVariant.Double))
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|                 new_fields.append(QgsField('ycoord', QVariant.Double))
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|                 if QgsWkbTypes.hasZ(source.wkbType()):
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|                     self.export_z = True
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|                     new_fields.append(QgsField('zcoord', QVariant.Double))
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|                 if QgsWkbTypes.hasM(source.wkbType()):
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|                     self.export_m = True
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|                     new_fields.append(QgsField('mvalue', QVariant.Double))
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| 
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|         fields = QgsProcessingUtils.combineFields(fields, new_fields)
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|         (sink, dest_id) = self.parameterAsSink(parameters, self.OUTPUT, context,
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|                                                fields, wkb_type, source.sourceCrs())
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|         if sink is None:
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|             raise QgsProcessingException(self.invalidSinkError(parameters, self.OUTPUT))
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| 
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|         coordTransform = None
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| 
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|         # Calculate with:
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|         # 0 - layer CRS
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|         # 1 - project CRS
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|         # 2 - ellipsoidal
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| 
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|         self.distance_area = QgsDistanceArea()
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|         if method == 2:
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|             self.distance_area.setSourceCrs(source.sourceCrs(), context.transformContext())
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|             self.distance_area.setEllipsoid(context.project().ellipsoid())
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|         elif method == 1:
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|             coordTransform = QgsCoordinateTransform(source.sourceCrs(), context.project().crs(), context.project())
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| 
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|         features = source.getFeatures()
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|         total = 100.0 / source.featureCount() if source.featureCount() else 0
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|         for current, f in enumerate(features):
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|             if feedback.isCanceled():
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|                 break
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| 
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|             outFeat = f
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|             attrs = f.attributes()
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|             inGeom = f.geometry()
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|             if inGeom:
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|                 if coordTransform is not None:
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|                     inGeom.transform(coordTransform)
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| 
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|                 if inGeom.type() == QgsWkbTypes.PointGeometry:
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|                     attrs.extend(self.point_attributes(inGeom))
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|                 elif inGeom.type() == QgsWkbTypes.PolygonGeometry:
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|                     attrs.extend(self.polygon_attributes(inGeom))
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|                 else:
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|                     attrs.extend(self.line_attributes(inGeom))
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| 
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|             # ensure consistent count of attributes - otherwise null
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|             # geometry features will have incorrect attribute length
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|             # and provider may reject them
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|             if len(attrs) < len(fields):
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|                 attrs += [NULL] * (len(fields) - len(attrs))
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| 
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|             outFeat.setAttributes(attrs)
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|             sink.addFeature(outFeat, QgsFeatureSink.FastInsert)
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| 
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|             feedback.setProgress(int(current * total))
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| 
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|         return {self.OUTPUT: dest_id}
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| 
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|     def point_attributes(self, geometry):
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|         attrs = []
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|         if not geometry.isMultipart():
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|             pt = geometry.constGet()
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|             attrs.append(pt.x())
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|             attrs.append(pt.y())
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|             # add point z/m
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|             if self.export_z:
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|                 attrs.append(pt.z())
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|             if self.export_m:
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|                 attrs.append(pt.m())
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|         else:
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|             attrs = [geometry.constGet().numGeometries()]
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|         return attrs
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| 
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|     def line_attributes(self, geometry):
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|         if geometry.isMultipart():
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|             return [self.distance_area.measureLength(geometry)]
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|         else:
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|             curve = geometry.constGet()
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|             p1 = curve.startPoint()
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|             p2 = curve.endPoint()
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|             straight_distance = self.distance_area.measureLine(QgsPointXY(p1), QgsPointXY(p2))
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|             sinuosity = curve.sinuosity()
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|             if math.isnan(sinuosity):
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|                 sinuosity = NULL
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|             return [self.distance_area.measureLength(geometry), straight_distance, sinuosity]
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| 
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|     def polygon_attributes(self, geometry):
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|         area = self.distance_area.measureArea(geometry)
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|         perimeter = self.distance_area.measurePerimeter(geometry)
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|         return [area, perimeter]
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