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			173 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			173 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
# -*- coding: utf-8 -*-
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"""
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***************************************************************************
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    ConcaveHull.py
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    ---------------------
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    Date                 : May 2014
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    Copyright            : (C) 2012 by Piotr Pociask
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    Email                : piotr dot pociask at gis-support dot pl
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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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__author__ = 'Piotr Pociask'
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__date__ = 'May 2014'
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__copyright__ = '(C) 2014, Piotr Pociask'
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# This will get replaced with a git SHA1 when you do a git archive
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__revision__ = '$Format:%H$'
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from qgis.PyQt.QtCore import QCoreApplication
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from math import sqrt
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from qgis.core import (QgsFeature,
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                       QgsFeatureSink,
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                       QgsWkbTypes,
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                       QgsProcessing,
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                       QgsProcessingException,
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                       QgsProcessingParameterFeatureSource,
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                       QgsProcessingParameterNumber,
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                       QgsProcessingParameterBoolean,
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                       QgsProcessingParameterFeatureSink)
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import processing
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from processing.algs.qgis.QgisAlgorithm import QgisAlgorithm
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class ConcaveHull(QgisAlgorithm):
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    INPUT = 'INPUT'
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    ALPHA = 'ALPHA'
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    HOLES = 'HOLES'
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    NO_MULTIGEOMETRY = 'NO_MULTIGEOMETRY'
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    OUTPUT = 'OUTPUT'
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    def group(self):
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        return self.tr('Vector geometry')
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    def groupId(self):
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        return 'vectorgeometry'
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    def __init__(self):
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        super().__init__()
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    def initAlgorithm(self, config=None):
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        self.addParameter(QgsProcessingParameterFeatureSource(self.INPUT, self.tr('Input point layer'), [QgsProcessing.TypeVectorPoint]))
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        self.addParameter(QgsProcessingParameterNumber(self.ALPHA,
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                                                       self.tr('Threshold (0-1, where 1 is equivalent with Convex Hull)'),
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                                                       minValue=0, maxValue=1, defaultValue=0.3, type=QgsProcessingParameterNumber.Double))
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        self.addParameter(QgsProcessingParameterBoolean(self.HOLES,
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                                                        self.tr('Allow holes'), defaultValue=True))
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        self.addParameter(QgsProcessingParameterBoolean(self.NO_MULTIGEOMETRY,
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                                                        self.tr('Split multipart geometry into singleparts geometries'), defaultValue=False))
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        self.addParameter(QgsProcessingParameterFeatureSink(self.OUTPUT, self.tr('Concave hull'), type=QgsProcessing.TypeVectorPolygon))
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    def name(self):
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        return 'concavehull'
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    def displayName(self):
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        return self.tr('Concave hull')
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    def processAlgorithm(self, parameters, context, feedback):
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        layer = self.parameterAsSource(parameters, ConcaveHull.INPUT, context)
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        if layer is None:
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            raise QgsProcessingException(self.invalidSourceError(parameters, self.INPUT))
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        alpha = self.parameterAsDouble(parameters, self.ALPHA, context)
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        holes = self.parameterAsBool(parameters, self.HOLES, context)
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        no_multigeom = self.parameterAsBool(parameters, self.NO_MULTIGEOMETRY, context)
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        # Delaunay triangulation from input point layer
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        feedback.setProgressText(QCoreApplication.translate('ConcaveHull', 'Creating Delaunay triangles…'))
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        delaunay_layer = processing.run("qgis:delaunaytriangulation", {'INPUT': parameters[ConcaveHull.INPUT], 'OUTPUT': 'memory:'}, feedback=feedback, context=context)['OUTPUT']
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        # Get max edge length from Delaunay triangles
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        feedback.setProgressText(QCoreApplication.translate('ConcaveHull', 'Computing edges max length…'))
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        features = delaunay_layer.getFeatures()
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        count = delaunay_layer.featureCount()
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        if count == 0:
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            raise QgsProcessingException(self.tr('No Delaunay triangles created.'))
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        counter = 50. / count
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        lengths = []
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        edges = {}
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        for feat in features:
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            if feedback.isCanceled():
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                break
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            line = feat.geometry().asPolygon()[0]
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            for i in range(len(line) - 1):
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                lengths.append(sqrt(line[i].sqrDist(line[i + 1])))
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            edges[feat.id()] = max(lengths[-3:])
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            feedback.setProgress(feat.id() * counter)
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        max_length = max(lengths)
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        # Get features with longest edge longer than alpha*max_length
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        feedback.setProgressText(QCoreApplication.translate('ConcaveHull', 'Removing features…'))
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        counter = 50. / len(edges)
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        i = 0
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        ids = []
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        for id, max_len in list(edges.items()):
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            if feedback.isCanceled():
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                break
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            if max_len > alpha * max_length:
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                ids.append(id)
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            feedback.setProgress(50 + i * counter)
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            i += 1
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        # Remove features
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        delaunay_layer.dataProvider().deleteFeatures(ids)
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        # Dissolve all Delaunay triangles
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        feedback.setProgressText(QCoreApplication.translate('ConcaveHull', 'Dissolving Delaunay triangles…'))
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        dissolved_layer = processing.run("native:dissolve", {'INPUT': delaunay_layer, 'OUTPUT': 'memory:'}, feedback=feedback, context=context)['OUTPUT']
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        # Save result
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        feedback.setProgressText(QCoreApplication.translate('ConcaveHull', 'Saving data…'))
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        feat = QgsFeature()
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        dissolved_layer.getFeatures().nextFeature(feat)
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        # Not needed anymore, free up some resources
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        del delaunay_layer
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        del dissolved_layer
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        (sink, dest_id) = self.parameterAsSink(parameters, self.OUTPUT, context,
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                                               layer.fields(), QgsWkbTypes.Polygon, layer.sourceCrs())
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        if sink is None:
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            raise QgsProcessingException(self.invalidSinkError(parameters, self.OUTPUT))
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        geom = feat.geometry()
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        if no_multigeom and geom.isMultipart():
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            # Only singlepart geometries are allowed
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            geom_list = geom.asGeometryCollection()
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            for single_geom in geom_list:
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                if feedback.isCanceled():
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                    break
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                single_feature = QgsFeature()
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                if not holes:
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                    # Delete holes
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                    single_geom = single_geom.removeInteriorRings()
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                single_feature.setGeometry(single_geom)
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                sink.addFeature(single_feature, QgsFeatureSink.FastInsert)
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        else:
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            # Multipart geometries are allowed
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            if not holes:
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                # Delete holes
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                geom = geom.removeInteriorRings()
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                feat.setGeometry(geom)
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            sink.addFeature(feat, QgsFeatureSink.FastInsert)
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        return {self.OUTPUT: dest_id}
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