LUXSimUsingHTCondor: Difference between revisions

From LZ Computing
Jump to navigation Jump to search
 
(7 intermediate revisions by the same user not shown)
Line 9: Line 9:
voms-proxy-init --voms=lz --valid=142:00
voms-proxy-init --voms=lz --valid=142:00


# Run farmout script to submit jobs
# Run runWiscJobs script to submit jobs
# To get help about options
# To get help about options
# python /cvmfs/lz.opensciencegrid.org/sw/bin/farmoutGeneric.py -h
# python /cvmfs/lz.opensciencegrid.org/sw/bin/runWiscJobs.py -h


python /cvmfs/lz.opensciencegrid.org/sw/bin/farmoutGeneric.py \
python /cvmfs/lz.opensciencegrid.org/sw/bin/runWiscJobs.py \
--WorkFlow="test.mac_test1" \
--WorkFlow="test.mac_test1" \
--Executable="/afs/hep.wisc.edu/user/cvuosalo/work/lz/farmoutluxsim.sh" \
--Executable="/afs/hep.wisc.edu/user/cvuosalo/work/lz/RunLUXSim.sh" \
--Experiment=lz \
-e lz \
--nJobs=10 \
--nJobs=10 \
--TransferInputFile="/afs/hep.wisc.edu/user/cvuosalo/work/lz/test.mac" \
--TransferInputFile="/afs/hep.wisc.edu/user/cvuosalo/work/lz/test.mac" \
--HDFSProdDir=outfiles \
-f '*.bin *.root' \
--UserEnv="UserName=`whoami` " \
--UserEnv="UserName=`whoami` " \
-o "test.mac" \
--OutputDir="test.mac" \
--Arguments="test.mac"
--Arguments="test.mac"


# If you want your output copied to HDFS, have your executable copy the output
# files to the directory you specify with --HDFSProdDir.


#The above python scipt generates job file using your input macro. \
# It uses the shell script to run LUXSim and copy your output to LZ storage area.
</nowiki>
</nowiki>

==== Executable example: RunLUXSim.sh ====


<nowiki>
<nowiki>
Line 54: Line 56:
# Run the LUXSim
# Run the LUXSim
./LUXSimExecutable $@
./LUXSimExecutable $@

mkdir -p ../outfiles


for i in *.bin
for i in *.bin
Line 62: Line 66:
echo /cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
echo /cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
/cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
/cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
ln -s "${i}" ..
(cd ../outfiles ; ln -s ../$tmpDir/${i} .)


else
else
Line 69: Line 73:
fi
fi
done
done
cd ../outfiles
ln -s *.root ..
ln -s ../$tmpDir/*.root .



</nowiki>
</nowiki>
Line 76: Line 82:


<nowiki>
<nowiki>
/run/verbose 0
/control/verbose 0
/tracking/verbose 0
/grdm/verbose 0


/run/initialize
/run/initialize


/LUXSim/io/alwaysRecordPrimary true
# Output folder
/LUXSim/io/updateFrequency 100
/LUXSim/io/outputDir .
/LUXSim/io/outputDir .
/LUXSim/io/updateFrequency 1
/LUXSim/io/outputName EnergyDeposition_
/LUXSim/physicsList/useOpticalProcesses true



/LUXSim/detector/select LZDetector
/LUXSim/detector/select LZDetector
/LUXSim/detector/gridWires on
/LUXSim/detector/gridWires off
/LUXSim/detector/topGrid on

/LUXSim/detector/printEFields

/LUXSim/detector/update
/LUXSim/detector/update


/LUXSim/detector/recordLevel LiquidXenonTarget 3
/LUXSim/materials/LXeTeflonRefl 0.95
/LUXSim/detector/recordLevelOptPhot LiquidXenonTarget 3
/LUXSim/materials/GXeTeflonRefl 0.75
/LUXSim/detector/recordLevelThermElec LiquidXenonTarget 3
/LUXSim/materials/LXeAbsorption 100 m
/LUXSim/materials/GXeAbsorption 500 m
/LUXSim/materials/LXeSteelRefl 0.2
/LUXSim/materials/GXeSteelRefl 0.2
/LUXSim/materials/AlUnoxidizedQuartzRefl 0.9
/LUXSim/materials/GXeRayleigh 500 m
/LUXSim/materials/LXeRayleigh 0.3 m


/gps/particle e-
/gps/particle e-
/gps/energy 5 keV
/gps/energy 30 keV
/gps/position 0 0 75 cm
/gps/position 0 0 75 cm
#this is approximate center. See ElectronCollection for whole volume
/gps/ang/type iso
/gps/ang/type iso


/LUXSim/physicsList/useOpticalProcesses true
# Output .bin files


/LUXSim/beamOn 5
/control/getEnv MyRandomNumber
exit
/control/getEnv MyOutputName
/LUXSim/io/outputName {MyOutputName}
/LUXSim/randomSeed {MyRandomNumber}
/LUXSim/physicsList/driftElecAttenuation 1.5 m
/LUXSim/beamOn 10


exit</nowiki>
</nowiki>


==== Files in the storage area ====
==== Files in the storage area ====

Latest revision as of 19:20, 21 April 2017

Submit HTCondor Jobs

In order to use the computing resources at Wisconsin, one can submit HTCondor jobs to run simulation

ssh <username>@lzlogin01.hep.wisc.edu

# Make a valid voms-proxy
voms-proxy-init --voms=lz --valid=142:00

# Run runWiscJobs script to submit jobs
# To get help about options 
 # python  /cvmfs/lz.opensciencegrid.org/sw/bin/runWiscJobs.py -h 

 python /cvmfs/lz.opensciencegrid.org/sw/bin/runWiscJobs.py \
        --WorkFlow="test.mac_test1" \
        --Executable="/afs/hep.wisc.edu/user/cvuosalo/work/lz/RunLUXSim.sh" \
        --Experiment=lz \
        --nJobs=10 \
        --TransferInputFile="/afs/hep.wisc.edu/user/cvuosalo/work/lz/test.mac" \
	--HDFSProdDir=outfiles \
        --UserEnv="UserName=`whoami` " \
        --OutputDir="test.mac" \
        --Arguments="test.mac"

# If you want your output copied to HDFS, have your executable copy the output
# files to the directory you specify with --HDFSProdDir.


Executable example: RunLUXSim.sh

 
#!/bin/bash

wdir=$(pwd)
ver=release-4.4.2

# Source the environment needed to run LUXSim
export ROOTSYS=/cvmfs/lz.opensciencegrid.org/ROOT/v5.34.32/slc6_gcc44_x86_64/root
export PATH=${ROOTSYS}/bin:/sbin:/usr/sbin:/usr/bin:/bin:/usr/local/bin
export LD_LIBRARY_PATH=${ROOTSYS}/lib:/lib64:/usr/lib64:/lib:/usr/lib
source /cvmfs/lz.opensciencegrid.org/geant4/etc/geant4env.sh geant4.9.5.p02

# Temporary directory that gets created on the execute node
tmpDir=$(mktemp -d --tmpdir="./")
echo "Linking CVMFS LUXSim area to temp dir. $tmpDir"
cd $tmpDir
# ln -s /cvmfs/lz.opensciencegrid.org/LUXSim/release-4.3.2/* .
ln -s /cvmfs/lz.opensciencegrid.org/LUXSim/$ver/* .

# echo "MyOutputName=$MyOutputDir/$MyOutputName$MyRandomNumber"
# export MyOutputName=$MyOutputDir/$MyOutputName$MyRandomNumber
cp ../*.mac .

# Run the LUXSim
./LUXSimExecutable $@

mkdir -p ../outfiles

for i in *.bin
do
    if [ -s "${i}" ]; then
 
      # Convert .bin file to .root file
     echo /cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
     /cvmfs/lz.opensciencegrid.org/LUXSim/$ver/tools/LUXRootReader "${i}"
    (cd ../outfiles ; ln -s ../$tmpDir/${i} .)

   else
     echo "Something went wrong... No bin files made. Look at the log"
     exit 1
   fi
done
cd ../outfiles
ln -s ../$tmpDir/*.root .


 

Example test.mac


/run/initialize

/LUXSim/io/alwaysRecordPrimary true
/LUXSim/io/updateFrequency 100
/LUXSim/io/outputDir .
/LUXSim/io/outputName EnergyDeposition_

/LUXSim/detector/select LZDetector
/LUXSim/detector/gridWires off
/LUXSim/detector/topGrid on
/LUXSim/detector/update

/LUXSim/detector/recordLevel LiquidXenonTarget 3
/LUXSim/detector/recordLevelOptPhot LiquidXenonTarget 3
/LUXSim/detector/recordLevelThermElec LiquidXenonTarget 3

/gps/particle e- 
/gps/energy 30 keV
/gps/position 0 0 75 cm
#this is approximate center. See ElectronCollection for whole volume
/gps/ang/type iso

/LUXSim/physicsList/useOpticalProcesses true

/LUXSim/beamOn 5
exit


Files in the storage area

  • Some events are available in the Wisconsin LZ storage area and can be accessed using the following command :
  xrdfs g22n02.hep.wisc.edu:31094 ls /lz/user/tapas/LZSim/pmt-Co_gdecay_1_pro_sci_ioni_drift/
  xrdfs g22n02.hep.wisc.edu:31094 ls /lz/user/tapas/LZSim/pmt-Co_gdecay_1_pro_sci_ioni_drift_gammma100KeV

  • copy the files using xrdcp
  xrdcp -d 1 -v \
   root://cmsxrootd.hep.wisc.edu//lz/user/tapas/LZSim/pmt-Co_gdecay_1_pro_sci_ioni_drift_gammma100KeV/filename.root .