# -*- coding: utf-8 -*- """ *************************************************************************** GeometryByExpression.py ----------------------- Date : October 2016 Copyright : (C) 2016 by Nyall Dawson Email : nyall dot dawson at gmail dot com *************************************************************************** * * * This program is free software; you can redistribute it and/or modify * * it under the terms of the GNU General Public License as published by * * the Free Software Foundation; either version 2 of the License, or * * (at your option) any later version. * * * *************************************************************************** """ __author__ = 'Nyall Dawson' __date__ = 'October 2016' __copyright__ = '(C) 2016, Nyall Dawson' # This will get replaced with a git SHA1 when you do a git archive323 __revision__ = '$Format:%H$' from qgis.core import (QgsWkbTypes, QgsExpression, QgsExpressionContext, QgsExpressionContextUtils, QgsGeometry, QgsApplication) from processing.core.GeoAlgorithm import GeoAlgorithm from processing.core.GeoAlgorithmExecutionException import GeoAlgorithmExecutionException from processing.core.parameters import ParameterVector, ParameterSelection, ParameterBoolean, ParameterExpression from processing.core.outputs import OutputVector from processing.tools import dataobjects, vector class GeometryByExpression(GeoAlgorithm): INPUT_LAYER = 'INPUT_LAYER' OUTPUT_LAYER = 'OUTPUT_LAYER' OUTPUT_GEOMETRY = 'OUTPUT_GEOMETRY' WITH_Z = 'WITH_Z' WITH_M = 'WITH_M' EXPRESSION = 'EXPRESSION' def icon(self): return QgsApplication.getThemeIcon("/providerQgis.svg") def svgIconPath(self): return QgsApplication.iconPath("providerQgis.svg") def defineCharacteristics(self): self.name, self.i18n_name = self.trAlgorithm('Geometry by expression') self.group, self.i18n_group = self.trAlgorithm('Vector geometry tools') self.addParameter(ParameterVector(self.INPUT_LAYER, self.tr('Input layer'))) self.geometry_types = [self.tr('Polygon'), 'Line', 'Point'] self.addParameter(ParameterSelection( self.OUTPUT_GEOMETRY, self.tr('Output geometry type'), self.geometry_types, default=0)) self.addParameter(ParameterBoolean(self.WITH_Z, self.tr('Output geometry has z dimension'), False)) self.addParameter(ParameterBoolean(self.WITH_M, self.tr('Output geometry has m values'), False)) self.addParameter(ParameterExpression(self.EXPRESSION, self.tr("Geometry expression"), '$geometry', parent_layer=self.INPUT_LAYER)) self.addOutput(OutputVector(self.OUTPUT_LAYER, self.tr('Modified geometry'))) def processAlgorithm(self, feedback): layer = dataobjects.getObjectFromUri( self.getParameterValue(self.INPUT_LAYER)) geometry_type = self.getParameterValue(self.OUTPUT_GEOMETRY) wkb_type = None if geometry_type == 0: wkb_type = QgsWkbTypes.Polygon elif geometry_type == 1: wkb_type = QgsWkbTypes.LineString else: wkb_type = QgsWkbTypes.Point if self.getParameterValue(self.WITH_Z): wkb_type = QgsWkbTypes.addZ(wkb_type) if self.getParameterValue(self.WITH_M): wkb_type = QgsWkbTypes.addM(wkb_type) writer = self.getOutputFromName( self.OUTPUT_LAYER).getVectorWriter( layer.fields(), wkb_type, layer.crs()) expression = QgsExpression(self.getParameterValue(self.EXPRESSION)) if expression.hasParserError(): raise GeoAlgorithmExecutionException(expression.parserErrorString()) exp_context = QgsExpressionContext(QgsExpressionContextUtils.globalProjectLayerScopes(layer)) if not expression.prepare(exp_context): raise GeoAlgorithmExecutionException( self.tr('Evaluation error: {0}').format(expression.evalErrorString())) features = vector.features(layer) total = 100.0 / len(features) for current, input_feature in enumerate(features): output_feature = input_feature exp_context.setFeature(input_feature) value = expression.evaluate(exp_context) if expression.hasEvalError(): raise GeoAlgorithmExecutionException( self.tr('Evaluation error: {0}').format(expression.evalErrorString())) if not value: output_feature.setGeometry(QgsGeometry()) else: if not isinstance(value, QgsGeometry): raise GeoAlgorithmExecutionException( self.tr('{} is not a geometry').format(value)) output_feature.setGeometry(value) writer.addFeature(output_feature) feedback.setProgress(int(current * total)) del writer