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Since it's safe to evaluate parameters in background threads now, it's usually going to be ok to evaluate everything in the processAlgorithm step. This keeps the algorithm code as simple as possible, and will make porting faster. Note that the prepare/postProcess virtual methods still exist and can be used when an algorithm MUST do setup/cleanup work in the main thread.
185 lines
6.6 KiB
Python
185 lines
6.6 KiB
Python
# -*- coding: utf-8 -*-
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"""
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***************************************************************************
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ExtentFromLayer.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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__author__ = 'Victor Olaya'
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__date__ = 'August 2012'
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__copyright__ = '(C) 2012, Victor Olaya'
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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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import os
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from qgis.PyQt.QtGui import QIcon
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from qgis.PyQt.QtCore import QVariant
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from qgis.core import (QgsField,
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QgsFeatureSink,
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QgsPointXY,
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QgsGeometry,
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QgsFeature,
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QgsWkbTypes,
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QgsProcessingUtils,
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QgsProcessingParameterFeatureSource,
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QgsProcessingParameterFeatureSink,
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QgsProcessingOutputVectorLayer,
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QgsProcessingParameterBoolean,
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QgsProcessingParameterDefinition,
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QgsFields)
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from processing.algs.qgis.QgisAlgorithm import QgisAlgorithm
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from processing.core.parameters import ParameterVector
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from processing.core.parameters import ParameterBoolean
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from processing.core.outputs import OutputVector
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from processing.tools import dataobjects
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pluginPath = os.path.split(os.path.split(os.path.dirname(__file__))[0])[0]
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class ExtentFromLayer(QgisAlgorithm):
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INPUT_LAYER = 'INPUT_LAYER'
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BY_FEATURE = 'BY_FEATURE'
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OUTPUT = 'OUTPUT'
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def icon(self):
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return QIcon(os.path.join(pluginPath, 'images', 'ftools', 'layer_extent.png'))
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def tags(self):
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return self.tr('extent,envelope,bounds,bounding,boundary,layer').split(',')
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def group(self):
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return self.tr('Vector general tools')
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def __init__(self):
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super().__init__()
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self.addParameter(QgsProcessingParameterFeatureSource(self.INPUT_LAYER, self.tr('Input layer')))
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self.addParameter(QgsProcessingParameterBoolean(self.BY_FEATURE,
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self.tr('Calculate extent for each feature separately'), False))
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self.addParameter(QgsProcessingParameterFeatureSink(self.OUTPUT, self.tr('Extent')))
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self.addOutput(QgsProcessingOutputVectorLayer(self.OUTPUT, self.tr("Extent"), QgsProcessingParameterDefinition.TypeVectorPolygon))
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def name(self):
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return 'polygonfromlayerextent'
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def displayName(self):
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return self.tr('Polygon from layer extent')
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def processAlgorithm(self, parameters, context, feedback):
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source = self.parameterAsSource(parameters, self.INPUT_LAYER, context)
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byFeature = self.parameterAsBool(parameters, self.BY_FEATURE, context)
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fields = QgsFields()
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fields.append(QgsField('MINX', QVariant.Double))
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fields.append(QgsField('MINY', QVariant.Double))
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fields.append(QgsField('MAXX', QVariant.Double))
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fields.append(QgsField('MAXY', QVariant.Double))
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fields.append(QgsField('CNTX', QVariant.Double))
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fields.append(QgsField('CNTY', QVariant.Double))
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fields.append(QgsField('AREA', QVariant.Double))
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fields.append(QgsField('PERIM', QVariant.Double))
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fields.append(QgsField('HEIGHT', QVariant.Double))
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fields.append(QgsField('WIDTH', QVariant.Double))
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(sink, dest_id) = self.parameterAsSink(parameters, self.OUTPUT, context,
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fields, QgsWkbTypes.Polygon, source.sourceCrs())
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if byFeature:
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self.featureExtent(source, context, sink, feedback)
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else:
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self.layerExtent(source, sink, feedback)
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return {self.OUTPUT: dest_id}
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def layerExtent(self, source, sink, feedback):
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rect = source.sourceExtent()
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geometry = QgsGeometry.fromRect(rect)
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minx = rect.xMinimum()
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miny = rect.yMinimum()
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maxx = rect.xMaximum()
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maxy = rect.yMaximum()
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height = rect.height()
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width = rect.width()
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cntx = minx + width / 2.0
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cnty = miny + height / 2.0
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area = width * height
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perim = 2 * width + 2 * height
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feat = QgsFeature()
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feat.setGeometry(geometry)
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attrs = [
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minx,
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miny,
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maxx,
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maxy,
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cntx,
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cnty,
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area,
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perim,
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height,
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width,
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]
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feat.setAttributes(attrs)
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sink.addFeature(feat, QgsFeatureSink.FastInsert)
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def featureExtent(self, source, context, sink, feedback):
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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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feat = QgsFeature()
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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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rect = f.geometry().boundingBox()
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minx = rect.xMinimum()
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miny = rect.yMinimum()
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maxx = rect.xMaximum()
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maxy = rect.yMaximum()
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height = rect.height()
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width = rect.width()
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cntx = minx + width / 2.0
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cnty = miny + height / 2.0
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area = width * height
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perim = 2 * width + 2 * height
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rect = [QgsPointXY(minx, miny), QgsPointXY(minx, maxy), QgsPointXY(maxx,
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maxy), QgsPointXY(maxx, miny), QgsPointXY(minx, miny)]
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geometry = QgsGeometry().fromPolygon([rect])
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feat.setGeometry(geometry)
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attrs = [
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minx,
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miny,
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maxx,
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maxy,
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cntx,
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cnty,
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area,
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perim,
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height,
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width,
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]
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feat.setAttributes(attrs)
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sink.addFeature(feat, QgsFeatureSink.FastInsert)
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feedback.setProgress(int(current * total))
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