ISCE_INSAR/components/isceobj/Alos2Proc/Alos2Proc.py

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#
# Author: Cunren Liang
# Copyright 2015-present, NASA-JPL/Caltech
#
import os
import logging
import logging.config
from iscesys.Component.Component import Component
from iscesys.DateTimeUtil.DateTimeUtil import DateTimeUtil as DTU
from iscesys.Compatibility import Compatibility
REFERENCE_DATE = Component.Parameter('referenceDate',
public_name='reference date',
default=None,
type=str,
mandatory=True,
doc='reference acquistion date')
SECONDARY_DATE = Component.Parameter('secondaryDate',
public_name='secondary date',
default=None,
type=str,
mandatory=True,
doc='secondary acquistion date')
MODE_COMBINATION = Component.Parameter('modeCombination',
public_name='mode combination',
default=None,
type=int,
mandatory=True,
doc='mode combination')
REFERENCE_FRAMES = Component.Parameter('referenceFrames',
public_name = 'reference frames',
default = None,
type=str,
container=list,
mandatory=False,
doc = 'reference frames to process')
SECONDARY_FRAMES = Component.Parameter('secondaryFrames',
public_name = 'secondary frames',
default = None,
type=str,
container=list,
mandatory=False,
doc = 'secondary frames to process')
STARTING_SWATH = Component.Parameter('startingSwath',
public_name='starting swath',
default=1,
type=int,
mandatory=False,
doc="starting swath to process")
ENDING_SWATH = Component.Parameter('endingSwath',
public_name='ending swath',
default=5,
type=int,
mandatory=False,
doc="ending swath to process")
BURST_UNSYNCHRONIZED_TIME = Component.Parameter('burstUnsynchronizedTime',
public_name = 'burst unsynchronized time',
default = None,
type = float,
mandatory = False,
doc = 'burst unsynchronized time in second')
BURST_SYNCHRONIZATION = Component.Parameter('burstSynchronization',
public_name = 'burst synchronization',
default = None,
type = float,
mandatory = False,
doc = 'average burst synchronization of all swaths and frames in percentage')
SWATH_RANGE_OFFSET_GEOMETRICAL_REFERENCE = Component.Parameter('swathRangeOffsetGeometricalReference',
public_name = 'swath range offset from geometry reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath range offset from geometry reference')
SWATH_AZIMUTH_OFFSET_GEOMETRICAL_REFERENCE = Component.Parameter('swathAzimuthOffsetGeometricalReference',
public_name = 'swath azimuth offset from geometry reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath azimuth offset from geometry reference')
SWATH_RANGE_OFFSET_MATCHING_REFERENCE = Component.Parameter('swathRangeOffsetMatchingReference',
public_name = 'swath range offset from matching reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath range offset from matching reference')
SWATH_AZIMUTH_OFFSET_MATCHING_REFERENCE = Component.Parameter('swathAzimuthOffsetMatchingReference',
public_name = 'swath azimuth offset from matching reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath azimuth offset from matching reference')
SWATH_RANGE_OFFSET_GEOMETRICAL_SECONDARY = Component.Parameter('swathRangeOffsetGeometricalSecondary',
public_name = 'swath range offset from geometry secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath range offset from geometry secondary')
SWATH_AZIMUTH_OFFSET_GEOMETRICAL_SECONDARY = Component.Parameter('swathAzimuthOffsetGeometricalSecondary',
public_name = 'swath azimuth offset from geometry secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath azimuth offset from geometry secondary')
SWATH_RANGE_OFFSET_MATCHING_SECONDARY = Component.Parameter('swathRangeOffsetMatchingSecondary',
public_name = 'swath range offset from matching secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath range offset from matching secondary')
SWATH_AZIMUTH_OFFSET_MATCHING_SECONDARY = Component.Parameter('swathAzimuthOffsetMatchingSecondary',
public_name = 'swath azimuth offset from matching secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'swath azimuth offset from matching secondary')
FRAME_RANGE_OFFSET_GEOMETRICAL_REFERENCE = Component.Parameter('frameRangeOffsetGeometricalReference',
public_name = 'frame range offset from geometry reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame range offset from geometry reference')
FRAME_AZIMUTH_OFFSET_GEOMETRICAL_REFERENCE = Component.Parameter('frameAzimuthOffsetGeometricalReference',
public_name = 'frame azimuth offset from geometry reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame azimuth offset from geometry reference')
FRAME_RANGE_OFFSET_MATCHING_REFERENCE = Component.Parameter('frameRangeOffsetMatchingReference',
public_name = 'frame range offset from matching reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame range offset from matching reference')
FRAME_AZIMUTH_OFFSET_MATCHING_REFERENCE = Component.Parameter('frameAzimuthOffsetMatchingReference',
public_name = 'frame azimuth offset from matching reference',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame azimuth offset from matching reference')
FRAME_RANGE_OFFSET_GEOMETRICAL_SECONDARY = Component.Parameter('frameRangeOffsetGeometricalSecondary',
public_name = 'frame range offset from geometry secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame range offset from geometry secondary')
FRAME_AZIMUTH_OFFSET_GEOMETRICAL_SECONDARY = Component.Parameter('frameAzimuthOffsetGeometricalSecondary',
public_name = 'frame azimuth offset from geometry secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame azimuth offset from geometry secondary')
FRAME_RANGE_OFFSET_MATCHING_SECONDARY = Component.Parameter('frameRangeOffsetMatchingSecondary',
public_name = 'frame range offset from matching secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame range offset from matching secondary')
FRAME_AZIMUTH_OFFSET_MATCHING_SECONDARY = Component.Parameter('frameAzimuthOffsetMatchingSecondary',
public_name = 'frame azimuth offset from matching secondary',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'frame azimuth offset from matching secondary')
NUMBER_RANGE_LOOKS1 = Component.Parameter('numberRangeLooks1',
public_name='number of range looks 1',
default=None,
type=int,
mandatory=False,
doc="number of range looks when forming interferogram")
NUMBER_AZIMUTH_LOOKS1 = Component.Parameter('numberAzimuthLooks1',
public_name='number of azimuth looks 1',
default=None,
type=int,
mandatory=False,
doc="number of azimuth looks when forming interferogram")
NUMBER_RANGE_LOOKS2 = Component.Parameter('numberRangeLooks2',
public_name='number of range looks 2',
default=None,
type=int,
mandatory=False,
doc="number of range looks for further multiple looking")
NUMBER_AZIMUTH_LOOKS2 = Component.Parameter('numberAzimuthLooks2',
public_name='number of azimuth looks 2',
default=None,
type=int,
mandatory=False,
doc="number of azimuth looks for further multiple looking")
NUMBER_RANGE_LOOKS_SIM = Component.Parameter('numberRangeLooksSim',
public_name='number of range looks sim',
default=None,
type=int,
mandatory=False,
doc="number of range looks when simulating radar image")
NUMBER_AZIMUTH_LOOKS_SIM = Component.Parameter('numberAzimuthLooksSim',
public_name='number of azimuth looks sim',
default=None,
type=int,
mandatory=False,
doc="number of azimuth looks when simulating radar image")
NUMBER_RANGE_LOOKS_ION = Component.Parameter('numberRangeLooksIon',
public_name='number of range looks ion',
default=None,
type=int,
mandatory=False,
doc="number of range looks for ionospheric correction")
NUMBER_AZIMUTH_LOOKS_ION = Component.Parameter('numberAzimuthLooksIon',
public_name='number of azimuth looks ion',
default=None,
type=int,
mandatory=False,
doc="number of azimuth looks for ionospheric correction")
SUBBAND_RADAR_WAVLENGTH = Component.Parameter('subbandRadarWavelength',
public_name='lower and upper radar wavelength for ionosphere correction',
default=None,
type=float,
mandatory=False,
container = list,
doc="lower and upper radar wavelength for ionosphere correction")
RADAR_DEM_AFFINE_TRANSFORM = Component.Parameter('radarDemAffineTransform',
public_name = 'radar dem affine transform parameters',
default = None,
type = float,
mandatory = True,
container = list,
doc = 'radar dem affine transform parameters')
REFERENCE_SLC = Component.Parameter('referenceSlc',
public_name='reference slc',
default=None,
type=str,
mandatory=False,
doc='reference slc file')
SECONDARY_SLC = Component.Parameter('secondarySlc',
public_name='secondary slc',
default=None,
type=str,
mandatory=False,
doc='secondary slc file')
REFERENCE_SWATH_OFFSET = Component.Parameter('referenceSwathOffset',
public_name='reference swath offset',
default=None,
type=str,
mandatory=False,
doc='reference swath offset file')
SECONDARY_SWATH_OFFSET = Component.Parameter('secondarySwathOffset',
public_name='secondary swath offset',
default=None,
type=str,
mandatory=False,
doc='secondary swath offset file')
REFERENCE_FRAME_OFFSET = Component.Parameter('referenceFrameOffset',
public_name='reference frame offset',
default=None,
type=str,
mandatory=False,
doc='reference frame offset file')
SECONDARY_FRAME_OFFSET = Component.Parameter('secondaryFrameOffset',
public_name='secondary frame offset',
default=None,
type=str,
mandatory=False,
doc='secondary frame offset file')
REFERENCE_FRAME_PARAMETER = Component.Parameter('referenceFrameParameter',
public_name='reference frame parameter',
default=None,
type=str,
mandatory=False,
doc='reference frame parameter file')
SECONDARY_FRAME_PARAMETER = Component.Parameter('secondaryFrameParameter',
public_name='secondary frame parameter',
default=None,
type=str,
mandatory=False,
doc='secondary frame parameter file')
REFERENCE_TRACK_PARAMETER = Component.Parameter('referenceTrackParameter',
public_name='reference track parameter',
default=None,
type=str,
mandatory=False,
doc='reference track parameter file')
SECONDARY_TRACK_PARAMETER = Component.Parameter('secondaryTrackParameter',
public_name='secondary track parameter',
default=None,
type=str,
mandatory=False,
doc='secondary track parameter file')
DEM = Component.Parameter('dem',
public_name='dem for coregistration',
default=None,
type=str,
mandatory=False,
doc='dem for coregistration file')
DEM_GEO = Component.Parameter('demGeo',
public_name='dem for geocoding',
default=None,
type=str,
mandatory=False,
doc='dem for geocoding file')
WBD = Component.Parameter('wbd',
public_name='water body',
default=None,
type=str,
mandatory=False,
doc='water body file')
WBD_OUT = Component.Parameter('wbdOut',
public_name='output water body',
default=None,
type=str,
mandatory=False,
doc='output water body file')
INTERFEROGRAM = Component.Parameter('interferogram',
public_name='interferogram',
default=None,
type=str,
mandatory=False,
doc='interferogram file')
AMPLITUDE = Component.Parameter('amplitude',
public_name='amplitude',
default=None,
type=str,
mandatory=False,
doc='amplitude file')
DIFFERENTIAL_INTERFEROGRAM = Component.Parameter('differentialInterferogram',
public_name='differential interferogram',
default=None,
type=str,
mandatory=False,
doc='differential interferogram file')
MULTILOOK_DIFFERENTIAL_INTERFEROGRAM = Component.Parameter('multilookDifferentialInterferogram',
public_name='multilook differential interferogram',
default=None,
type=str,
mandatory=False,
doc='multilook differential interferogram file')
MULTILOOK_DIFFERENTIAL_INTERFEROGRAM_ORIGINAL = Component.Parameter('multilookDifferentialInterferogramOriginal',
public_name='original multilook differential interferogram',
default=None,
type=str,
mandatory=False,
doc='original multilook differential interferogram file')
MULTILOOK_AMPLITUDE = Component.Parameter('multilookAmplitude',
public_name='multilook amplitude',
default=None,
type=str,
mandatory=False,
doc='multilook amplitude file')
MULTILOOK_COHERENCE = Component.Parameter('multilookCoherence',
public_name='multilook coherence',
default=None,
type=str,
mandatory=False,
doc='multilook coherence file')
MULTILOOK_PHSIG = Component.Parameter('multilookPhsig',
public_name='multilook phase sigma',
default=None,
type=str,
mandatory=False,
doc='multilook phase sigma file')
FILTERED_INTERFEROGRAM = Component.Parameter('filteredInterferogram',
public_name='filtered interferogram',
default=None,
type=str,
mandatory=False,
doc='filtered interferogram file')
UNWRAPPED_INTERFEROGRAM = Component.Parameter('unwrappedInterferogram',
public_name='unwrapped interferogram',
default=None,
type=str,
mandatory=False,
doc='unwrapped interferogram file')
UNWRAPPED_MASKED_INTERFEROGRAM = Component.Parameter('unwrappedMaskedInterferogram',
public_name='unwrapped masked interferogram',
default=None,
type=str,
mandatory=False,
doc='unwrapped masked interferogram file')
LATITUDE = Component.Parameter('latitude',
public_name='latitude',
default=None,
type=str,
mandatory=False,
doc='latitude file')
LONGITUDE = Component.Parameter('longitude',
public_name='longitude',
default=None,
type=str,
mandatory=False,
doc='longitude file')
HEIGHT = Component.Parameter('height',
public_name='height',
default=None,
type=str,
mandatory=False,
doc='height file')
LOS = Component.Parameter('los',
public_name='los',
default=None,
type=str,
mandatory=False,
doc='los file')
SIM = Component.Parameter('sim',
public_name='sim',
default=None,
type=str,
mandatory=False,
doc='sim file')
MSK = Component.Parameter('msk',
public_name='msk',
default=None,
type=str,
mandatory=False,
doc='msk file')
RANGE_OFFSET = Component.Parameter('rangeOffset',
public_name='range offset',
default=None,
type=str,
mandatory=False,
doc='range offset file')
AZIMUTH_OFFSET = Component.Parameter('azimuthOffset',
public_name='azimuth offset',
default=None,
type=str,
mandatory=False,
doc='azimuth offset file')
MULTILOOK_LOS = Component.Parameter('multilookLos',
public_name='multilook los',
default=None,
type=str,
mandatory=False,
doc='multilook los file')
MULTILOOK_MSK = Component.Parameter('multilookMsk',
public_name='multilook msk',
default=None,
type=str,
mandatory=False,
doc='multilook msk file')
MULTILOOK_WBD_OUT = Component.Parameter('multilookWbdOut',
public_name='multilook wbdOut',
default=None,
type=str,
mandatory=False,
doc='multilook output water body file')
MULTILOOK_LATITUDE = Component.Parameter('multilookLatitude',
public_name='multilook latitude',
default=None,
type=str,
mandatory=False,
doc='multilook latitude file')
MULTILOOK_LONGITUDE = Component.Parameter('multilookLongitude',
public_name='multilook longitude',
default=None,
type=str,
mandatory=False,
doc='multilook longitude file')
MULTILOOK_HEIGHT = Component.Parameter('multilookHeight',
public_name='multilook height',
default=None,
type=str,
mandatory=False,
doc='multilook height file')
MULTILOOK_ION = Component.Parameter('multilookIon',
public_name='multilook ionospheric phase',
default=None,
type=str,
mandatory=False,
doc='multilook ionospheric phase file')
RECT_RANGE_OFFSET = Component.Parameter('rectRangeOffset',
public_name='rectified range offset',
default=None,
type=str,
mandatory=False,
doc='rectified range offset file')
GEO_INTERFEROGRAM = Component.Parameter('geoInterferogram',
public_name='geocoded interferogram',
default=None,
type=str,
mandatory=False,
doc='geocoded interferogram file')
GEO_MASKED_INTERFEROGRAM = Component.Parameter('geoMaskedInterferogram',
public_name='geocoded masked interferogram',
default=None,
type=str,
mandatory=False,
doc='geocoded masked interferogram file')
GEO_COHERENCE = Component.Parameter('geoCoherence',
public_name='geocoded coherence',
default=None,
type=str,
mandatory=False,
doc='geocoded coherence file')
GEO_LOS = Component.Parameter('geoLos',
public_name='geocoded los',
default=None,
type=str,
mandatory=False,
doc='geocoded los file')
GEO_ION = Component.Parameter('geoIon',
public_name='geocoded ionospheric phase',
default=None,
type=str,
mandatory=False,
doc='geocoded ionospheric phase file')
###################################################################
#for dense offset
OFFSET_IMAGE_TOPOFFSET = Component.Parameter('offsetImageTopoffset',
public_name='offset image top offset',
default=None,
type=int,
mandatory=False,
doc="offset image top offset in samples")
OFFSET_IMAGE_LEFTOFFSET = Component.Parameter('offsetImageLeftoffset',
public_name='offset image left offset',
default=None,
type=int,
mandatory=False,
doc="offset image left offset in samples")
SECONDARY_SLC_COREGISTERED = Component.Parameter('secondarySlcCoregistered',
public_name='coregistered secondary slc',
default=None,
type=str,
mandatory=False,
doc='coregistered secondary slc file')
DENSE_OFFSET = Component.Parameter('denseOffset',
public_name='dense offset',
default=None,
type=str,
mandatory=False,
doc='dense offset file')
DENSE_OFFSET_SNR = Component.Parameter('denseOffsetSnr',
public_name='dense offset snr',
default=None,
type=str,
mandatory=False,
doc='dense offset snr file')
DENSE_OFFSET_COV = Component.Parameter('denseOffsetCov',
public_name='dense offset covariance',
default=None,
type=str,
mandatory=False,
doc='dense offset covariance file')
DENSE_OFFSET_FILT = Component.Parameter('denseOffsetFilt',
public_name='filtered dense offset',
default=None,
type=str,
mandatory=False,
doc='filtered dense offset file')
GEO_DENSE_OFFSET = Component.Parameter('GeoDenseOffset',
public_name='geocoded dense offset',
default=None,
type=str,
mandatory=False,
doc='geocoded dense offset file')
GEO_DENSE_OFFSET_SNR = Component.Parameter('GeoDenseOffsetSnr',
public_name='geocoded dense offset snr',
default=None,
type=str,
mandatory=False,
doc='geocoded dense offset snr file')
GEO_DENSE_OFFSET_FILT = Component.Parameter('GeoDenseOffsetFilt',
public_name='geocoded dense offset with filtering',
default=None,
type=str,
mandatory=False,
doc='geocoded dense offset with filtering')
###################################################################
class Alos2Proc(Component):
"""
This class holds the properties, along with methods (setters and getters)
to modify and return their values.
"""
parameter_list = (REFERENCE_DATE,
SECONDARY_DATE,
MODE_COMBINATION,
REFERENCE_FRAMES,
SECONDARY_FRAMES,
STARTING_SWATH,
ENDING_SWATH,
BURST_UNSYNCHRONIZED_TIME,
BURST_SYNCHRONIZATION,
SWATH_RANGE_OFFSET_GEOMETRICAL_REFERENCE,
SWATH_AZIMUTH_OFFSET_GEOMETRICAL_REFERENCE,
SWATH_RANGE_OFFSET_MATCHING_REFERENCE,
SWATH_AZIMUTH_OFFSET_MATCHING_REFERENCE,
SWATH_RANGE_OFFSET_GEOMETRICAL_SECONDARY,
SWATH_AZIMUTH_OFFSET_GEOMETRICAL_SECONDARY,
SWATH_RANGE_OFFSET_MATCHING_SECONDARY,
SWATH_AZIMUTH_OFFSET_MATCHING_SECONDARY,
FRAME_RANGE_OFFSET_GEOMETRICAL_REFERENCE,
FRAME_AZIMUTH_OFFSET_GEOMETRICAL_REFERENCE,
FRAME_RANGE_OFFSET_MATCHING_REFERENCE,
FRAME_AZIMUTH_OFFSET_MATCHING_REFERENCE,
FRAME_RANGE_OFFSET_GEOMETRICAL_SECONDARY,
FRAME_AZIMUTH_OFFSET_GEOMETRICAL_SECONDARY,
FRAME_RANGE_OFFSET_MATCHING_SECONDARY,
FRAME_AZIMUTH_OFFSET_MATCHING_SECONDARY,
NUMBER_RANGE_LOOKS1,
NUMBER_AZIMUTH_LOOKS1,
NUMBER_RANGE_LOOKS2,
NUMBER_AZIMUTH_LOOKS2,
NUMBER_RANGE_LOOKS_SIM,
NUMBER_AZIMUTH_LOOKS_SIM,
NUMBER_RANGE_LOOKS_ION,
NUMBER_AZIMUTH_LOOKS_ION,
SUBBAND_RADAR_WAVLENGTH,
RADAR_DEM_AFFINE_TRANSFORM,
REFERENCE_SLC,
SECONDARY_SLC,
REFERENCE_SWATH_OFFSET,
SECONDARY_SWATH_OFFSET,
REFERENCE_FRAME_OFFSET,
SECONDARY_FRAME_OFFSET,
REFERENCE_FRAME_PARAMETER,
SECONDARY_FRAME_PARAMETER,
REFERENCE_TRACK_PARAMETER,
SECONDARY_TRACK_PARAMETER,
DEM,
DEM_GEO,
WBD,
WBD_OUT,
INTERFEROGRAM,
AMPLITUDE,
DIFFERENTIAL_INTERFEROGRAM,
MULTILOOK_DIFFERENTIAL_INTERFEROGRAM,
MULTILOOK_DIFFERENTIAL_INTERFEROGRAM_ORIGINAL,
MULTILOOK_AMPLITUDE,
MULTILOOK_COHERENCE,
MULTILOOK_PHSIG,
FILTERED_INTERFEROGRAM,
UNWRAPPED_INTERFEROGRAM,
UNWRAPPED_MASKED_INTERFEROGRAM,
LATITUDE,
LONGITUDE,
HEIGHT,
LOS,
SIM,
MSK,
RANGE_OFFSET,
AZIMUTH_OFFSET,
MULTILOOK_LOS,
MULTILOOK_MSK,
MULTILOOK_WBD_OUT,
MULTILOOK_LATITUDE,
MULTILOOK_LONGITUDE,
MULTILOOK_HEIGHT,
MULTILOOK_ION,
RECT_RANGE_OFFSET,
GEO_INTERFEROGRAM,
GEO_MASKED_INTERFEROGRAM,
GEO_COHERENCE,
GEO_LOS,
GEO_ION,
OFFSET_IMAGE_TOPOFFSET,
OFFSET_IMAGE_LEFTOFFSET,
SECONDARY_SLC_COREGISTERED,
DENSE_OFFSET,
DENSE_OFFSET_SNR,
DENSE_OFFSET_COV,
DENSE_OFFSET_FILT,
GEO_DENSE_OFFSET,
GEO_DENSE_OFFSET_SNR,
GEO_DENSE_OFFSET_FILT)
facility_list = ()
family='alos2context'
def __init__(self, name='', procDoc=None):
#self.updatePrivate()
super().__init__(family=self.__class__.family, name=name)
self.procDoc = procDoc
return None
def setFilename(self, referenceDate, secondaryDate, nrlks1, nalks1, nrlks2, nalks2):
# if referenceDate == None:
# referenceDate = self.referenceDate
# if secondaryDate == None:
# secondaryDate = self.secondaryDate
# if nrlks1 == None:
# nrlks1 = self.numberRangeLooks1
# if nalks1 == None:
# nalks1 = self.numberAzimuthLooks1
# if nrlks2 == None:
# nrlks2 = self.numberRangeLooks2
# if nalks2 == None:
# nalks2 = self.numberAzimuthLooks2
ms = referenceDate + '-' + secondaryDate
ml1 = '_{}rlks_{}alks'.format(nrlks1, nalks1)
ml2 = '_{}rlks_{}alks'.format(nrlks1*nrlks2, nalks1*nalks2)
self.referenceSlc = referenceDate + '.slc'
self.secondarySlc = secondaryDate + '.slc'
self.referenceSwathOffset = 'swath_offset_' + referenceDate + '.txt'
self.secondarySwathOffset = 'swath_offset_' + secondaryDate + '.txt'
self.referenceFrameOffset = 'frame_offset_' + referenceDate + '.txt'
self.secondaryFrameOffset = 'frame_offset_' + secondaryDate + '.txt'
self.referenceFrameParameter = referenceDate + '.frame.xml'
self.secondaryFrameParameter = secondaryDate + '.frame.xml'
self.referenceTrackParameter = referenceDate + '.track.xml'
self.secondaryTrackParameter = secondaryDate + '.track.xml'
#self.dem =
#self.demGeo =
#self.wbd =
self.interferogram = ms + ml1 + '.int'
self.amplitude = ms + ml1 + '.amp'
self.differentialInterferogram = 'diff_' + ms + ml1 + '.int'
self.multilookDifferentialInterferogram = 'diff_' + ms + ml2 + '.int'
self.multilookDifferentialInterferogramOriginal = 'diff_' + ms + ml2 + '_ori.int'
self.multilookAmplitude = ms + ml2 + '.amp'
self.multilookCoherence = ms + ml2 + '.cor'
self.multilookPhsig = ms + ml2 + '.phsig'
self.filteredInterferogram = 'filt_' + ms + ml2 + '.int'
self.unwrappedInterferogram = 'filt_' + ms + ml2 + '.unw'
self.unwrappedMaskedInterferogram = 'filt_' + ms + ml2 + '_msk.unw'
self.latitude = ms + ml1 + '.lat'
self.longitude = ms + ml1 + '.lon'
self.height = ms + ml1 + '.hgt'
self.los = ms + ml1 + '.los'
self.sim = ms + ml1 + '.sim'
self.msk = ms + ml1 + '.msk'
self.wbdOut = ms + ml1 + '.wbd'
self.rangeOffset = ms + ml1 + '_rg.off'
self.azimuthOffset = ms + ml1 + '_az.off'
self.multilookLos = ms + ml2 + '.los'
self.multilookWbdOut = ms + ml2 + '.wbd'
self.multilookMsk = ms + ml2 + '.msk'
self.multilookLatitude = ms + ml2 + '.lat'
self.multilookLongitude = ms + ml2 + '.lon'
self.multilookHeight = ms + ml2 + '.hgt'
self.multilookIon = ms + ml2 + '.ion'
self.rectRangeOffset = ms + ml1 + '_rg_rect.off'
self.geoInterferogram = 'filt_' + ms + ml2 + '.unw.geo'
self.geoMaskedInterferogram = 'filt_' + ms + ml2 + '_msk.unw.geo'
self.geoCoherence = ms + ml2 + '.cor.geo'
self.geoLos = ms + ml2 + '.los.geo'
#dense offset field
self.secondarySlcCoregistered = secondaryDate + '_coreg.slc'
self.denseOffset = ms + '_denseoffset.off'
self.denseOffsetSnr = ms + '_denseoffset.snr'
self.denseOffsetCov = ms + '_denseoffset.cov'
self.denseOffsetFilt = 'filt_' + ms + '_denseoffset.off'
self.GeoDenseOffset = ms + '_denseoffset.off.geo'
self.GeoDenseOffsetSnr = ms + '_denseoffset.snr.geo'
self.GeoDenseOffsetFilt = 'filt_' + ms + '_denseoffset.off.geo'
self.geoIon = ms + ml2 + '.ion.geo'
def loadProduct(self, xmlname):
'''
Load the product using Product Manager.
'''
from iscesys.Component.ProductManager import ProductManager as PM
pm = PM()
pm.configure()
obj = pm.loadProduct(xmlname)
return obj
def saveProduct(self, obj, xmlname):
'''
Save the product to an XML file using Product Manager.
'''
from iscesys.Component.ProductManager import ProductManager as PM
pm = PM()
pm.configure()
pm.dumpProduct(obj, xmlname)
return None
def loadTrack(self, reference=True):
'''
Load the track using Product Manager.
'''
if reference:
track = self.loadProduct(self.referenceTrackParameter)
else:
track = self.loadProduct(self.secondaryTrackParameter)
track.frames = []
for i, frameNumber in enumerate(self.referenceFrames):
os.chdir('f{}_{}'.format(i+1, frameNumber))
if reference:
track.frames.append(self.loadProduct(self.referenceFrameParameter))
else:
track.frames.append(self.loadProduct(self.secondaryFrameParameter))
os.chdir('../')
return track
def saveTrack(self, track, reference=True):
'''
Save the track to XML files using Product Manager.
'''
if reference:
self.saveProduct(track, self.referenceTrackParameter)
else:
self.saveProduct(track, self.secondaryTrackParameter)
for i, frameNumber in enumerate(self.referenceFrames):
os.chdir('f{}_{}'.format(i+1, frameNumber))
if reference:
self.saveProduct(track.frames[i], self.referenceFrameParameter)
else:
self.saveProduct(track.frames[i], self.secondaryFrameParameter)
os.chdir('../')
return None
def hasGPU(self):
'''
Determine if GPU modules are available.
'''
flag = False
try:
from zerodop.GPUtopozero.GPUtopozero import PyTopozero
from zerodop.GPUgeo2rdr.GPUgeo2rdr import PyGeo2rdr
flag = True
except:
pass
return flag