# -*- coding: utf-8 -*- """ *************************************************************************** Grid.py --------------------- Date : May 2010 Copyright : (C) 2010 by Michael Minn Email : pyqgis at michaelminn 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__ = 'Michael Minn' __date__ = 'May 2010' __copyright__ = '(C) 2010, Michael Minn' # This will get replaced with a git SHA1 when you do a git archive __revision__ = '$Format:%H$' import os import math from qgis.PyQt.QtCore import QVariant from qgis.core import QgsRectangle, QgsCoordinateReferenceSystem, Qgis, QgsField, QgsFeature, QgsGeometry, QgsPoint, QgsWkbTypes from processing.core.GeoAlgorithm import GeoAlgorithm from processing.core.GeoAlgorithmExecutionException import GeoAlgorithmExecutionException from processing.core.parameters import ParameterExtent from processing.core.parameters import ParameterNumber from processing.core.parameters import ParameterCrs from processing.core.outputs import OutputVector from processing.tools import dataobjects pluginPath = os.path.split(os.path.split(os.path.dirname(__file__))[0])[0] class GridLine(GeoAlgorithm): EXTENT = 'EXTENT' HSPACING = 'HSPACING' VSPACING = 'VSPACING' CRS = 'CRS' OUTPUT = 'OUTPUT' #def getIcon(self): # return QIcon(os.path.join(pluginPath, 'images', 'ftools', 'vector_grid.png')) def defineCharacteristics(self): self.name, self.i18n_name = self.trAlgorithm('Create grid (lines)') self.group, self.i18n_group = self.trAlgorithm('Vector creation tools') self.addParameter(ParameterExtent(self.EXTENT, self.tr('Grid extent'))) self.addParameter(ParameterNumber(self.HSPACING, self.tr('Horizontal spacing'), default=10.0)) self.addParameter(ParameterNumber(self.VSPACING, self.tr('Vertical spacing'), default=10.0)) self.addParameter(ParameterCrs(self.CRS, 'Grid CRS')) self.addOutput(OutputVector(self.OUTPUT, self.tr('Grid'), datatype=[dataobjects.TYPE_VECTOR_LINE])) def processAlgorithm(self, progress): extent = self.getParameterValue(self.EXTENT).split(',') hSpacing = self.getParameterValue(self.HSPACING) vSpacing = self.getParameterValue(self.VSPACING) crs = QgsCoordinateReferenceSystem(self.getParameterValue(self.CRS)) bbox = QgsRectangle(float(extent[0]), float(extent[2]), float(extent[1]), float(extent[3])) width = bbox.width() height = bbox.height() originX = bbox.xMinimum() originY = bbox.yMaximum() if hSpacing <= 0 or vSpacing <= 0: raise GeoAlgorithmExecutionException( self.tr('Invalid grid spacing: %s/%s' % (hSpacing, vSpacing))) if width < hSpacing: raise GeoAlgorithmExecutionException( self.tr('Horizontal spacing is too small for the covered area')) if height < vSpacing: raise GeoAlgorithmExecutionException( self.tr('Vertical spacing is too small for the covered area')) fields = [QgsField('left', QVariant.Double, '', 24, 16), QgsField('top', QVariant.Double, '', 24, 16), QgsField('right', QVariant.Double, '', 24, 16), QgsField('bottom', QVariant.Double, '', 24, 16) ] writer = self.getOutputFromName(self.OUTPUT).getVectorWriter(fields, QgsWkbTypes.LineString, crs) self._rectangleGridLine( writer, width, height, originX, originY, hSpacing, vSpacing) def _rectangleGridLine(self, writer, width, height, originX, originY, hSpacing, vSpacing): ft = QgsFeature() columns = int(math.ceil(float(width) / hSpacing)) rows = int(math.ceil(float(height) / vSpacing)) # Longitude lines for col in xrange(columns + 1): polyline = [] x = originX + (col * hSpacing) for row in xrange(rows + 1): y = originY - (row * vSpacing) polyline.append(QgsPoint(x, y)) ft.setGeometry(QgsGeometry.fromPolyline(polyline)) ft.setAttributes([x, originY, x, originY + (rows * vSpacing)]) writer.addFeature(ft) # Latitude lines for row in xrange(rows + 1): polyline = [] y = originY - (row * vSpacing) for col in xrange(columns + 1): x = originX + (col * hSpacing) polyline.append(QgsPoint(x, y)) ft.setGeometry(QgsGeometry.fromPolyline(polyline)) ft.setAttributes([originX, y, originX + (col * hSpacing), y]) writer.addFeature(ft)