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Workflow 1528, Stage 1

Priority50
Processors1
Wall seconds3600
RSS bytes2621440000 (2500 MiB)
Max distance for inputs30.0
Enabled input RSEs
Enabled output RSEs
Enabled sites
Scopefardet-hd
Events for this stage

Output patterns

 DestinationPatternLifetimeFor next stage
0Rucio fardet-hd:fardet-hd-reco2_ritm1780305_nu_fhc_skip12000_limit5000*reco2.root86400False
0Rucio fardet-hd:fardet-hd-reco2ana_ritm1780305_nu_fhc_skip12000_limit5000*reco2_ana.root86400False

Environment variables

NameValue
CONVERT_DIR/cvmfs/fifeuser1.opensciencegrid.org/sw/dune/523f4bf9052aa4030d4cad66a2e9f6f70d3dbe19
DETPRODHD
HCPRODFHC

File states

Total filesFindingUnallocatedAllocatedOutputtingProcessedNot foundFailed
500013262001692045

Job states

TotalSubmittedStartedProcessingOutputtingFinishedNotusedAbortedStalledJobscript errorOutputting failedNone processed
1417400001736208868862959364690
Files processed00100100200200300300400400500500600600700700Feb-05 15:00Feb-05 17:00Feb-05 19:00Feb-05 21:00Feb-05 23:00Feb-06 01:00Feb-06 03:00Feb-06 05:00Feb-06 07:00Feb-06 09:00Feb-06 11:00Feb-06 13:00Feb-06 15:00Files processedBin start timesNumber per binCERNCA_SFUUK_RAL-Tier1UK_QMULUK_BrunelUS_SU-ITSUS_UCSDFR_CCIN2P3UK_ImperialUS_WisconsinNL_NIKHEFUK_Manchester
Replicas per RSE4999490.025244.54999269.975244.50000000000003Replicas per RSEDUNE_ES_PIC (50%)DUNE_US_FNAL_DISK_STAGE (50%)

RSEs used

NameInputsOutputs
DUNE_ES_PIC83990
DUNE_US_FNAL_DISK_STAGE1245175
DUNE_CERN_EOS03005
DUNE_US_BNL_SDCC0155
RAL_ECHO013
RAL-PP010
DUNE_FR_CCIN2P3_DISK010
MANCHESTER08
NIKHEF06
DUNE_UK_LANCASTER_CEPH05
QMUL03
PRAGUE01
SURFSARA01

Stats of processed input files as CSV or JSON, and of uploaded output files as CSV or JSON (up to 10000 files included)

File reset events, by site

SiteAllocatedOutputting
CERN1452123
UK_RAL-Tier199949
FR_CCIN2P388968
NL_NIKHEF62786
US_SU-ITS49191
UK_QMUL37461
NL_SURFsara24173
US_Wisconsin22164
US_PuertoRico164
CZ_FZU13157
UK_Manchester13253
CA_SFU12115
US_UChicago8259
ES_CIEMAT669
UK_Bristol6104
UK_Imperial648
UK_Lancaster427
US_FNAL-FermiGrid3122
US_BNL326
UK_Oxford254
US_Michigan116
US_UCSD12
UK_Brunel132
US_NotreDame10
UK_Sheffield140
UK_RAL-PPD169
US_Colorado029
ES_PIC07

Jobscript

#!/bin/bash
#
source /cvmfs/dune.opensciencegrid.org/products/dune/setup_dune.sh
setup metacat
export METACAT_SERVER_URL=https://metacat.fnal.gov:9443/dune_meta_prod/app
export METACAT_AUTH_SERVER_URL=https://metacat.fnal.gov:8143/auth/dune


##TODO -- write usage



DETECTOR="${DETPROD:-HD}"
HC="${HCPROD:-FHC}"

## Build up the fcls to use
if [ "${DETECTOR}" = "HD" ]; then
  ANAFCL="standard_ana_dune10kt_1x2x6.fcl"
  MDDETTYPE="fardet-hd"

  if [ "$HC" = "FHC" ]; then
    RECOFCL="standard_reco2_dune10kt_nu_1x2x6.fcl"
  elif [ "$HC" = "RHC" ]; then
    RECOFCL="standard_reco2_dune10kt_anu_1x2x6.fcl"
  fi

elif [ "${DETECTOR}" = "VD" ]; then
  ANAFCL="anatree_dunevd10kt_1x8x6_3view_30deg_geov3.fcl"
  MDDETTYPE="fardet-vd"

  if [ "$HC" = "FHC" ]; then
    RECOFCL="reco2_dunevd10kt_nu_1x8x6_3view_30deg_geov3.fcl"
  elif [ "$HC" = "RHC" ]; then
    RECOFCL="reco2_dunevd10kt_anu_1x8x6_3view_30deg_geov3.fcl"
  fi

elif [ "${DETECTOR}" = "TEST" ]; then
  RECOFCL="${INPUT_TAR_DIR_LOCAL}/test.fcl"

elif [ "${DETECTOR}" = "TEST2" ]; then
  RECOFCL="${INPUT_TAR_DIR_LOCAL}/test2.fcl"

else
  echo "NEED TO REQUEST EITHER HD OR VD. USER REQUESTED ${DETECTOR}"
  exit 1
fi

echo "Using Reco fcl: ${RECOFCL}"
echo "and Ana fcl: ${ANAFCL}"


#Setup recent lar software suite
setup dunesw \
   "${DUNE_VERSION:-v09_81_00d02}" \
   -q "${DUNE_QUALIFIER:-e26:prof}"
echo "printing env"
env


##Force certain env vars to force good behavior
#export TF_NUM_THREADS=$JUSTIN_PROCESSORS    
#export OPENBLAS_NUM_THREADS=$JUSTIN_PROCESSORS  
#export JULIA_NUM_THREADS=$JUSTIN_PROCESSORS  
#export MKL_NUM_THREADS=$JUSTIN_PROCESSORS  
#export NUMEXPR_NUM_THREADS=$JUSTIN_PROCESSORS  
#export OMP_NUM_THREADS=$JUSTIN_PROCESSORS   

if [ -z ${JUSTIN_PROCESSORS} ]; then
  JUSTIN_PROCESSORS=1
fi

echo "Justin processors: ${JUSTIN_PROCESSORS}"

export TF_NUM_THREADS=${JUSTIN_PROCESSORS}   
export OPENBLAS_NUM_THREADS=${JUSTIN_PROCESSORS} 
export JULIA_NUM_THREADS=${JUSTIN_PROCESSORS} 
export MKL_NUM_THREADS=${JUSTIN_PROCESSORS} 
export NUMEXPR_NUM_THREADS=${JUSTIN_PROCESSORS} 
export OMP_NUM_THREADS=${JUSTIN_PROCESSORS}  

#
echo "Will use justin-get-file"
#
DID_PFN_RSE=`$JUSTIN_PATH/justin-get-file`
#getfileExit=$?

#if [ $getfileExit -ne 0 ] ; then
#  # Success !
#  # Error -- exit immediately 
#  jobscriptExit=1
#  echo "Error in justin-get-file"
#  exit $jobscriptExit
#fi

##Check that any file was returned
if [ "${DID_PFN_RSE}" == "" ] ; then
  echo "Could not get file"
  exit 0
fi

FILE=`echo ${DID_PFN_RSE} | cut -f2 -d' '`
DID=`echo ${DID_PFN_RSE} | cut -f1 -d' '`
echo "DID: ${DID}"

metacat file show -mj ${DID} > old_md.json
mcExit=$?
if [ $mcExit -eq 0 ] ; then
  echo "old metadata:"
  cat old_md.json
else
  echo "Could not retrieve old metadata"
  exit 1 
fi

#
#
now=$(date -u +"%Y%m%dT%H%M%SZ")
#OUTFILE="${OUTPREFIX:-fd_mc_prod_test}.${JUSTIN_REQUEST_ID}"
#OUTFILE="$OUTFILE.$JUSTIN_JOBSUB_ID.${now}"
#OUTFILE=`echo $OUTFILE | sed -e 's/@/./'`
#
####Run reco2
lar -c "${RECOFCL}" \
    -n "${NEVENTS:--1}" \
    "$FILE" >reco2.log 2>&1
    #-o "$OUTFILE.root" \
    #-n "${NEVENTS:--1}" \
    #"$FILE" >$OUTFILE.log 2>&1

larExit=$?
echo "Reco step lar exit code $larExit"

if [ $larExit -eq 0 ] ; then
  # Success !
  # Log the file for justin and move on to the next step
  #echo "$FILE" > justin-processed-pfns.txt
  echo "Moving on to analysis "
else
  # Error -- exit immediately 
  #jobscriptExit=1
  tail -100 reco2.log
  exit $larExit 
fi

if [ "${DETECTOR}" = "TEST" ] || [ "${DETECTOR}" = "TEST2" ]; then
  echo "Done testing. Exiting"
  exit 0
fi
ORIG_OUTFILE=`ls *reco2.root`
OUTFILE=`echo "${ORIG_OUTFILE}_${now}_reco2" | sed -e 's/reco2.root//'`

mv ${ORIG_OUTFILE} ${OUTFILE}.root

### Get the metadata
##TODO -- convert this is the right file extensions
extractor_prod.py --infile ${OUTFILE}.root --campaign ${CAMPAIGN:-fd_mc_2023a_reco2} \
                  --requestid ritm1780305 --no_crc > ${OUTFILE}.root.json
extractorExit=$?
if [ $extractorExit -eq 0 ] ; then
  # Success !
  echo "Extracted metadata"
else
  # Error -- exit immediately 
  jobscriptExit=1
  echo "Failed to extract md"
  exit $extractorExit
fi

### Convert the metadata to metacat
##TODO -- make sure the RCDS behavior is correct
python $CONVERT_DIR/convert_metadata.py -i ${OUTFILE}.root.json \
                                                -c ${RECOFCL} -j old_md.json \
                                                --app "art.reco2" \
                                                --app_ver "${DUNE_VERSION:-v09_81_00d02}" \
                                                --det "${MDDETTYPE}" \
                                                --parent ${DID}
converterExit=$?
if [ $converterExit -eq 0 ] ; then
  # Success !
  echo "Converted metadata"
else
  # Error -- exit immediately 
  jobscriptExit=1
  echo "Failed to convert md"
  exit $converterExit
fi

##If running VD, there will also be pandora files. Rename these
if [ "${DETECTOR}" = "VD" ]; then
  all_good=true
  mv Validation.root "${OUTFILE}_Validation.root" || all_good=false
  mv Pandora_Events.pndr "${OUTFILE}_Pandora_Events.pndr" || all_good=false

  ##Copy over the metadata for pndr
  ##Edit the fields corresepondingly
  sed ${OUTFILE}.root.json -e 's/full-reconstructed/pandora-info/' > ${OUTFILE}_Pandora_Events.pndr.json || all_good=false
  sed -i ${OUTFILE}_Pandora_Events.pndr.json -e 's/artroot/binary/' || all_good=false
  sed -i ${OUTFILE}_Pandora_Events.pndr.json -e '/art.file_format/d' || all_good=false
  
  ##Copy over the metadata for validation.root 
  ##Edit the fields corresepondingly
  sed ${OUTFILE}.root.json -e 's/full-reconstructed/pandora-info/' > ${OUTFILE}_Validation.root.json || all_good=false
  sed -i ${OUTFILE}_Validation.root.json -e 's/artroot/root/' || all_good=false
  sed -i ${OUTFILE}_Validation.root.json -e '/art.file_format/d' || all_good=false

  if [ $all_good = false ]; then
    echo "Something failed when editing pandora metadata"
    jobscriptExit=1
    exit $jobscriptExit
  fi

fi

ANAOUTFILE="${OUTFILE}_ana"
echo "Will output ana to $ANAOUTFILE"

###Run ana 
lar -c "${ANAFCL}" \
    -n "${NEVENTS:--1}" \
    -T "$ANAOUTFILE.root" \
    "$OUTFILE.root" >ana.log 2>&1


larExit=$?
echo "Ana step lar exit code $larExit"

### TODO: Handle this correctly
if [ $larExit -eq 0 ] ; then
  # Success !
  # Log the file for justin and move on to the next step
  echo "$FILE" > justin-processed-pfns.txt
else
  # Error -- exit immediately 
  jobscriptExit=1
  tail -100 ana.log
  exit $larExit
fi

sed_good=true
sed ${OUTFILE}.root.json -e 's/full-reconstructed/root-tuple-virtual/' > ${ANAOUTFILE}.root.json || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e 's/artroot/root/' || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e '/art.file_format/d' || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e '/art.process/d' || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e "s/${RECOFCL}/${ANAFCL}/" || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e '/campaign/!s/reco2/anatree/' || sed_good=false
sed -i ${ANAOUTFILE}.root.json -e "s/${DID}/${OUTFILE}.root/" || sed_good=false

if [ $sed_good = false ]; then
  echo "Something failed when editing ana metadata"
  jobscriptExit=1
  exit $jobscriptExit
fi

ls
exit 0
justIN time: 2024-09-29 09:24:19 UTC       justIN version: 01.01.08