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	* issues identified by pyflakes (star and unused imports)
* pyqtwrapper: add QtSvg
* some exceptions e.message => unicode(e)
* some translations tr("..." % foo) => tr("...") % foo
* TODO:
  python/console/console_sci.py:547 QsciScintillaCompat?
  python/plugins/db_manager/dlg_query_builder.py:304 pop_up_error?
		
	
			
		
			
				
	
	
		
			122 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			122 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| # -*- coding: utf-8 -*-
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| 
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| """
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| ***************************************************************************
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|     raster.py
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|     ---------------------
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|     Date                 : February 2013
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|     Copyright            : (C) 2013 by Victor Olaya  and Alexander Bruy
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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  and Alexander Bruy'
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| __date__ = 'February 2013'
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| __copyright__ = '(C) 2013, Victor Olaya  and Alexander Bruy'
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| 
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| # This will get replaced with a git SHA1 when you do a git archive
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| 
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| __revision__ = '$Format:%H$'
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| 
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| import struct
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| import numpy
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| from osgeo import gdal
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| from osgeo.gdalconst import GA_ReadOnly
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| from processing.core.GeoAlgorithmExecutionException import GeoAlgorithmExecutionException
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| 
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| 
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| def scanraster(layer, progress):
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|     filename = unicode(layer.source())
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|     dataset = gdal.Open(filename, GA_ReadOnly)
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|     band = dataset.GetRasterBand(1)
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|     nodata = band.GetNoDataValue()
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|     bandtype = gdal.GetDataTypeName(band.DataType)
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|     for y in xrange(band.YSize):
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|         progress.setPercentage(y / float(band.YSize) * 100)
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|         scanline = band.ReadRaster(0, y, band.XSize, 1, band.XSize, 1,
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|                                    band.DataType)
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|         if bandtype == 'Byte':
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|             values = struct.unpack('B' * band.XSize, scanline)
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|         elif bandtype == 'Int16':
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|             values = struct.unpack('h' * band.XSize, scanline)
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|         elif bandtype == 'UInt16':
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|             values = struct.unpack('H' * band.XSize, scanline)
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|         elif bandtype == 'Int32':
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|             values = struct.unpack('i' * band.XSize, scanline)
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|         elif bandtype == 'UInt32':
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|             values = struct.unpack('I' * band.XSize, scanline)
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|         elif bandtype == 'Float32':
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|             values = struct.unpack('f' * band.XSize, scanline)
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|         elif bandtype == 'Float64':
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|             values = struct.unpack('d' * band.XSize, scanline)
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|         else:
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|             raise GeoAlgorithmExecutionException('Raster format not supported')
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|         for value in values:
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|             if value == nodata:
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|                 value = None
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|             yield value
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| 
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| 
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| def mapToPixel(mX, mY, geoTransform):
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|     try:
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|         # GDAL 1.x
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|         (pX, pY) = gdal.ApplyGeoTransform(
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|             gdal.InvGeoTransform(geoTransform)[1], mX, mY)
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|     except TypeError:
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|         # GDAL 2.x
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|         (pX, pY) = gdal.ApplyGeoTransform(
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|             gdal.InvGeoTransform(geoTransform), mX, mY)
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|     return (int(pX), int(pY))
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| 
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| 
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| def pixelToMap(pX, pY, geoTransform):
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|     return gdal.ApplyGeoTransform(geoTransform, pX + 0.5, pY + 0.5)
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| 
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| 
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| class RasterWriter:
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| 
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|     NODATA = -99999.0
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| 
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|     def __init__(self, fileName, minx, miny, maxx, maxy, cellsize,
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|                  nbands, crs):
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|         self.fileName = fileName
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|         self.nx = int((maxx - minx) / float(cellsize))
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|         self.ny = int((maxy - miny) / float(cellsize))
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|         self.nbands = nbands
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|         self.matrix = numpy.ones(shape=(self.ny, self.nx), dtype=numpy.float32)
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|         self.matrix[:] = self.NODATA
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|         self.cellsize = cellsize
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|         self.crs = crs
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|         self.minx = minx
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|         self.maxy = maxy
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| 
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|     def setValue(self, value, x, y, band=0):
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|         try:
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|             self.matrix[y, x] = value
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|         except IndexError:
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|             pass
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| 
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|     def getValue(self, x, y, band=0):
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|         try:
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|             return self.matrix[y, x]
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|         except IndexError:
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|             return self.NODATA
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| 
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|     def close(self):
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|         format = 'GTiff'
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|         driver = gdal.GetDriverByName(format)
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|         dst_ds = driver.Create(self.fileName, self.nx, self.ny, 1,
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|                                gdal.GDT_Float32)
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|         dst_ds.SetProjection(str(self.crs.toWkt()))
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|         dst_ds.SetGeoTransform([self.minx, self.cellsize, 0,
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|                                 self.maxy, self.cellsize, 0])
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|         dst_ds.GetRasterBand(1).WriteArray(self.matrix)
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|         dst_ds = None
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