Omaha #3591 Adding original, unaltered scripts.
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111
pythonPackages/msaslaps/maritime/a2cvboyStub.py
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pythonPackages/msaslaps/maritime/a2cvboyStub.py
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# pointDataQuery.stationName_lat_lon.py
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from com.raytheon.uf.common.message.response import ResponseMessageGeneric
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import PointDataQuery
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# 1.
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pdq = PointDataQuery.PointDataQuery("sfcobs")
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# 3. the stuff we want returned to us in PointDataContainer
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reqPar = "stationId,timeObs"
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reqPar += ",latitude,longitude,elevation,reportType,wx_present,visibility"
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reqPar += ",seaLevelPress,stationPress,pressChange3Hour,pressChangeChar"
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reqPar += ",temperature,dewpoint,seaSurfaceTemp,wetBulb"
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reqPar += ",windDir,windSpeed,equivWindSpeed10m,windGust"
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reqPar += ",precip1Hour,precip6Hour,precip24Hour"
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pdq.setRequestedParameters(reqPar)
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# 2. some constraints
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pdq.addConstraint("dataTime","BBBBB:00.0",">=")
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pdq.addConstraint("dataTime","EEEEE:00.0","<=")
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# 5.1 execute() returns a ResponseMessageGeneric
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pdq.requestAllLevels()
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rmg = pdq.execute()
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# 5.1, cont'd. RMG's payload is a PointDataContainer
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pdc = rmg.getContents()
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#return ResponseMessageGeneric(pdc)
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# Initialize conversion array for wx. Would be better to read from a
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# file, but do not know how to do this through the UEngine.
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wxstr = [ " ", " ", " ", " ", "FU", "HZ", "DU", "BLSA", "PO", "VCSS", \
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"BR", "BCFG", "MIFG", "VCTS", "VCSH", "VCSH", "VCSH", " ", "SQ", "+FC", \
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"DZ", "RA", "SN", "RA SN", "FZRA", "SHRA", "SHRA SHSN", "SHGR", "FG FZFG", "TS", \
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"SS", "SS", "SS", "+SS", "+SS", "+SS", "DRSN", " ", "BLSN", "+BLSN", \
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"VCFG", "BCFG", "FG FZFG", "FG FZFG", "FG FZFG", "FG FZFG", "FG FZFG", "FG FZFG", "FZFG", "FZFG", \
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"-DZ", "-DZ", "DZ", "DZ", "+DZ", "+DZ", "-FZDZ", "FZDZ", "-DZ -RA", "DZ RA", \
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"-RA", "-RA", "RA", "RA", "+RA", "+RA", "-FZRA", "FZRA", "-RA -SN", "RA SN", \
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"-SN", "-SN", "SN", "SN", "+SN", "+SN", "IC", "SG", "IC", "PE", \
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"-SHRA", "SHRA", "+SHRA", "-SHSN -SHRA", "SHSN SHRA", "-SNSN", "SHSN", "-SHPE", "SHPE", " ", \
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"SHGR", "-RA", "+RA", "-RA -SN -GR", "+RA +SN +GR", "TSRA", "TSPE", "+TSRA", " ", "+TSPE" ]
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# Get the data for each requested parameter.
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sName = pdc.getPointDataTypes().get("stationId").getStringData()
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tobs = pdc.getPointDataTypes().get("timeObs").getLongData()
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lat = pdc.getPointDataTypes().get("latitude").getFloatData()
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lon = pdc.getPointDataTypes().get("longitude").getFloatData()
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elev = pdc.getPointDataTypes().get("elevation").getFloatData()
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typ = pdc.getPointDataTypes().get("reportType").getIntData()
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wx = pdc.getPointDataTypes().get("wx_present").getIntData()
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vis = pdc.getPointDataTypes().get("visibility").getIntData()
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msl = pdc.getPointDataTypes().get("seaLevelPress").getFloatData()
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p = pdc.getPointDataTypes().get("stationPress").getFloatData()
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pchg = pdc.getPointDataTypes().get("pressChange3Hour").getFloatData()
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pchr = pdc.getPointDataTypes().get("pressChangeChar").getIntData()
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temp = pdc.getPointDataTypes().get("temperature").getFloatData()
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dpt = pdc.getPointDataTypes().get("dewpoint").getFloatData()
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th2o = pdc.getPointDataTypes().get("seaSurfaceTemp").getFloatData()
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tw = pdc.getPointDataTypes().get("wetBulb").getFloatData()
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dir = pdc.getPointDataTypes().get("windDir").getFloatData()
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spd = pdc.getPointDataTypes().get("windSpeed").getFloatData()
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s10 = pdc.getPointDataTypes().get("equivWindSpeed10m").getFloatData()
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gust = pdc.getPointDataTypes().get("windGust").getFloatData()
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pr1 = pdc.getPointDataTypes().get("precip1Hour").getFloatData()
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pr6 = pdc.getPointDataTypes().get("precip6Hour").getFloatData()
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pr24 = pdc.getPointDataTypes().get("precip24Hour").getFloatData()
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# 5.2 and 5.3
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if len(tobs) == 0 :
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msg = "couldn't get data"
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return ResponseMessageGeneric(msg)
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msg = "\n"
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i = 0
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while i < len(tobs) :
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msg += sName[i] + ","
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msg += str(tobs[i]/1000) + ","
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msg += "%.4f"%lat[i] + ","
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msg += "%.4f"%lon[i] + ","
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msg += "%.0f"%elev[i] + ","
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if typ[i] < 1001 or typ[i] > 1007 :
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msg += "-32767,"
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elif typ[i] == 1001 or typ[i] == 1004 or typ[i] == 1005 :
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msg += "0,"
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else :
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msg += "1,"
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if wx[i] < 0 or wx[i] > 99 :
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msg += " ,"
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else :
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msg += wxstr[wx[i]] + ","
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msg += str(vis[i]) + ","
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msg += "%.2f"%msl[i] + ","
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msg += "%.2f"%p[i] + ","
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msg += "%.0f"%pchg[i] + ","
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if pchr[i] <= -9999 :
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pchr[i] = -32767
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msg += str(pchr[i]) + " ,"
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msg += "%.1f"%temp[i] + ","
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msg += "%.1f"%dpt[i] + ","
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msg += "%.1f"%th2o[i] + ","
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msg += "%.1f"%tw[i] + ","
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msg += "%.0f"%dir[i] + ","
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msg += "%.1f"%spd[i] + ","
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msg += "%.1f"%s10[i] + ","
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msg += "%.1f"%gust[i] + ","
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msg += "%.2f"%pr1[i] + ","
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msg += "%.2f"%pr6[i] + ","
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msg += "%.2f"%pr24[i] + "\n"
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i += 1
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return ResponseMessageGeneric(msg)
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pythonPackages/msaslaps/maritime/a2gtboy.csh
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pythonPackages/msaslaps/maritime/a2gtboy.csh
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#!/bin/csh
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#
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# A script wrapper around a UEngine call that is meant to get all available
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# maritime data in the A-II database over a specified range of times.
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# The data is output to stdout as ASCII. Each line is one time/platform
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# combination. The individual data items are comma delimited.
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# This version can adapt to use a python stub that calls the
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# data access framework.
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#
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# Usage:
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#
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# a2gtboy.csh {p} {c} yyyy-mm-dd hh:mm yyyy-mm-dd hh:mm
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#
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# The literal p and c flags are optional. The p flag means preserve
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# the final version of the python submitted to the UEngine instead of
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# cleaning it up. The path to the finalized python is /tmp/a2gtboyNNNNN.py
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# where NNNNN is a unix process id. The c flag means to retreive the
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# Laps set of variables, instead of the default MSAS set.
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#
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#
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# Not using the 'c' format, the MSAS set of variables, outputs the following
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# variables for each line:
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#
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# stationId,timeObs,latitude,longitude,elevation,seaLevelPress,
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# stationPress,temperature,dewpoint,windDir,windSpeed,pressChange3Hour
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#
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# Using the 'c' format, the Laps set of variables, outputs the following
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# variables for each line:
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#
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# stationId,timeObs,latitude,longitude,elevation,reportType,wx_present,
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# visibility,seaLevelPress,stationPress,pressChange3Hour,pressChangeChar,
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# temperature,dewpoint,seaSurfaceTemp,wetBulb,windDir,windSpeed,
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# equivWindSpeed10m,windGust,precip1Hour,precip6Hour,precip24Hour
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#
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set rmpy = yes
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if ( "$1" == "p" ) then
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set rmpy = no
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shift
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endif
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#
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# Identify directory this script is in, will be one of the directories we
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# search for other files in.
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#
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set mydir = `dirname $0`
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set d1 = `echo $mydir | cut -c1`
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if ( "$mydir" == '.' ) then
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set mydir = $PWD
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else if ( "$d1" != "/" ) then
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set mydir = $PWD/$mydir
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endif
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set mydir = `(cd $mydir ; pwd)`
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if ( ! $?FXA_HOME ) set FXA_HOME = xxxx
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#
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set stubbase = a2gtboyStub.py
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if ( "$1" == "c" ) then
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shift
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set stubbase = a2cvboyStub.py
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endif
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#
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# Locate python stub that we will modify to create the final python logic.
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#
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if ( -e ./$stubbase ) then
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set stubpy = ./$stubbase
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else if ( -e $mydir/$stubbase ) then
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set stubpy = $mydir/$stubbase
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else if ( -e $FXA_HOME/src/dm/maritime/$stubbase ) then
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set stubpy = $FXA_HOME/src/dm/maritime/$stubbase
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else if ( -e $FXA_HOME/bin/$stubbase ) then
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set stubpy = $FXA_HOME/bin/$stubbase
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else
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bash -c "echo could not find $stubbase 1>&2"
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exit
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endif
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#
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# Determine if we are using the data access framework or the uEngine.
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#
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grep DataAccessLayer $stubpy >& /dev/null
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if ( $status == 0 ) then
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set method = "daf"
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else
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#
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# Set up the environment we need to run the UEngine.
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#
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set method = "uengine"
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if ( -e ./UEngine.cshsrc ) then
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set ueenv = ./UEngine.cshsrc
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else if ( -e $mydir/UEngine.cshsrc ) then
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set ueenv = $mydir/UEngine.cshsrc
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else if ( -e $FXA_HOME/src/dm/point/UEngine.cshsrc ) then
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set ueenv = $FXA_HOME/src/dm/point/UEngine.cshsrc
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else if ( -e $FXA_HOME/bin/UEngine.cshsrc ) then
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set ueenv = $FXA_HOME/bin/UEngine.cshsrc
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else
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bash -c "echo could not find UEngine.cshsrc 1>&2"
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exit
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endif
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source $ueenv
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endif
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#
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set specpy = /tmp/a2gtboy${$}.py
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rm -rf $specpy >& /dev/null
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touch $specpy
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chmod 775 $specpy
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cat $stubpy | sed "s/BBBBB/$1 $2/g" | sed "s/EEEEE/$3 $4/g" > $specpy
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if ( "$method" == "daf" ) then
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/awips2/python/bin/python $specpy
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else
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cd $UE_BIN_PATH
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( uengine -r python < $specpy ) | grep -v '<' | sed -n '3,$p'
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endif
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if ( "$rmpy" == "yes" ) rm -rf $specpy >& /dev/null
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#
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62
pythonPackages/msaslaps/maritime/a2gtboyStub.py
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pythonPackages/msaslaps/maritime/a2gtboyStub.py
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# pointDataQuery.stationName_lat_lon.py
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from com.raytheon.uf.common.message.response import ResponseMessageGeneric
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import PointDataQuery
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# 1.
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pdq = PointDataQuery.PointDataQuery("sfcobs")
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# 3. the stuff we want returned to us in PointDataContainer
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reqPar = "stationId,timeObs"
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reqPar += ",latitude,longitude,elevation,seaLevelPress,stationPress"
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reqPar += ",temperature,dewpoint,windDir,windSpeed,pressChange3Hour"
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pdq.setRequestedParameters(reqPar)
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# 2. some constraints
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pdq.addConstraint("dataTime","BBBBB:00.0",">=")
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pdq.addConstraint("dataTime","EEEEE:00.0","<=")
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# 5.1 execute() returns a ResponseMessageGeneric
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rmg = pdq.execute()
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# 5.1, cont'd. RMG's payload is a PointDataContainer
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pdc = rmg.getContents()
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#return ResponseMessageGeneric(pdc)
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# Get the data for each requested parameter.
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sName = pdc.getPointDataTypes().get("stationId").getStringData()
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tobs = pdc.getPointDataTypes().get("timeObs").getLongData()
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lat = pdc.getPointDataTypes().get("latitude").getFloatData()
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lon = pdc.getPointDataTypes().get("longitude").getFloatData()
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elev = pdc.getPointDataTypes().get("elevation").getFloatData()
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msl = pdc.getPointDataTypes().get("seaLevelPress").getFloatData()
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p = pdc.getPointDataTypes().get("stationPress").getFloatData()
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temp = pdc.getPointDataTypes().get("temperature").getFloatData()
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dpt = pdc.getPointDataTypes().get("dewpoint").getFloatData()
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dir = pdc.getPointDataTypes().get("windDir").getFloatData()
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spd = pdc.getPointDataTypes().get("windSpeed").getFloatData()
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pchg = pdc.getPointDataTypes().get("pressChange3Hour").getFloatData()
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# 5.2 and 5.3
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if len(tobs) == 0 :
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msg = "couldn't get data"
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return ResponseMessageGeneric(msg)
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msg = "\n"
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i = 0
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while i < len(tobs) :
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msg += sName[i] + ","
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msg += str(tobs[i]/1000) + ","
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msg += "%.4f"%lat[i] + ","
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msg += "%.4f"%lon[i] + ","
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msg += "%.0f"%elev[i] + ","
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msg += "%.2f"%msl[i] + ","
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msg += "%.2f"%p[i] + ","
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msg += "%.1f"%temp[i] + ","
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msg += "%.1f"%dpt[i] + ","
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msg += "%.0f"%dir[i] + ","
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msg += "%.1f"%spd[i] + ","
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msg += "%.0f"%pchg[i] + "\n"
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i += 1
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return ResponseMessageGeneric(msg)
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