ISCE_INSAR/components/stdproc/rectify/geocode/test/testGeocode.py

97 lines
3.3 KiB
Python

#!/usr/bin/env python3
#~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
# Copyright 2010 California Institute of Technology. ALL RIGHTS RESERVED.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
#
# United States Government Sponsorship acknowledged. This software is subject to
# U.S. export control laws and regulations and has been classified as 'EAR99 NLR'
# (No [Export] License Required except when exporting to an embargoed country,
# end user, or in support of a prohibited end use). By downloading this software,
# the user agrees to comply with all applicable U.S. export laws and regulations.
# The user has the responsibility to obtain export licenses, or other export
# authority as may be required before exporting this software to any 'EAR99'
# embargoed foreign country or citizen of those countries.
#
# Author: Giangi Sacco
#~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
from __future__ import print_function
import sys
import os
import math
from iscesys.Compatibility import Compatibility
Compatibility.checkPythonVersion()
from iscesys.Component.InitFromXmlFile import InitFromXmlFile
from isceobj.Image.DemImage import DemImage
from isceobj.Image.IntImage import IntImage
from stdproc.rectify.geocode.Geocode import Geocode
def main():
referenceOrbit = sys.argv[1] #look for reference_orbit.txt
fin1 = open(referenceOrbit)
allLines = fin1.readlines()
s_mocomp = []
for line in allLines:
lineS = line.split()
s_mocomp.append(float(lineS[2]))
fin1.close()
initfileDem = 'DemImage.xml'
initDem = InitFromXmlFile(initfileDem)
objDem = DemImage()
# only sets the parameter
objDem.initComponent(initDem)
# it actually creates the C++ object
objDem.createImage()
initfileTopo = 'TopoImage.xml'
initTopo = InitFromXmlFile(initfileTopo)
objTopo = IntImage()
# only sets the parameter
objTopo.initComponent(initTopo)
# it actually creates the C++ object
objTopo.createImage()
initFile = 'Geocode.xml'
fileInit = InitFromXmlFile(initFile)
obj = Geocode()
obj.initComponent(fileInit)
obj.setReferenceOrbit(s_mocomp)
obj.geocode(objDem,objTopo)
geoWidth= obj.getGeoWidth()
geoLength = obj.getGeoLength()
latitudeSpacing = obj.getLatitudeSpacing()
longitudeSpacing = obj.getLongitudeSpacing()
minimumGeoLatitude = obj.getMinimumGeoLatitude()
minimumGeoLongitude = obj.getMinimumGeoLongitude()
maximumGeoLatitude = obj.getMaximumGeoLatitude()
maximumGeoLongitude = obj.getMaxmumGeoLongitude()
print(geoWidth,\
geoLength,\
latitudeSpacing,\
longitudeSpacing,\
minimumGeoLatitude,\
minimumGeoLongitude,\
maximumGeoLatitude,\
maximumGeoLongitude)
objDem.finalizeImage()
objTopo.finalizeImage()
if __name__ == "__main__":
sys.exit(main())