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cms-2016-collision-datasets: added outputs
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nancyhamdan authored and joudmas committed Nov 24, 2023
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# Auto generated configuration file
# using:
# Revision: 1.19
# Source: /local/reps/CMSSW/CMSSW/Configuration/Applications/python/ConfigBuilder.py,v
# with command line options: RECO --conditions 106X_dataRun2_v35 --datatier MINIAOD --era Run2_2016 --eventcontent MINIAOD --filein _placeholder_.root --fileout file:ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2-00001.root --nThreads 2 --no_exec --python_filename ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2-00001_0_cfg.py --scenario pp --step PAT --runUnscheduled --data --procModifiers run2_miniAOD_UL_preSummer20
import FWCore.ParameterSet.Config as cms

from Configuration.Eras.Era_Run2_2016_cff import Run2_2016
from Configuration.ProcessModifiers.run2_miniAOD_UL_preSummer20_cff import run2_miniAOD_UL_preSummer20

process = cms.Process('PAT',Run2_2016,run2_miniAOD_UL_preSummer20)

# import of standard configurations
process.load('Configuration.StandardSequences.Services_cff')
process.load('SimGeneral.HepPDTESSource.pythiapdt_cfi')
process.load('FWCore.MessageService.MessageLogger_cfi')
process.load('Configuration.EventContent.EventContent_cff')
process.load('Configuration.StandardSequences.GeometryRecoDB_cff')
process.load('Configuration.StandardSequences.MagneticField_AutoFromDBCurrent_cff')
process.load('PhysicsTools.PatAlgos.slimming.metFilterPaths_cff')
process.load('Configuration.StandardSequences.PAT_cff')
process.load('Configuration.StandardSequences.EndOfProcess_cff')
process.load('Configuration.StandardSequences.FrontierConditions_GlobalTag_cff')

process.maxEvents = cms.untracked.PSet(
input = cms.untracked.int32(1)
)

# Input source
process.source = cms.Source("PoolSource",
fileNames = cms.untracked.vstring('_placeholder_.root'),
secondaryFileNames = cms.untracked.vstring()
)

process.options = cms.untracked.PSet(

)

# Production Info
process.configurationMetadata = cms.untracked.PSet(
annotation = cms.untracked.string('RECO nevts:1'),
name = cms.untracked.string('Applications'),
version = cms.untracked.string('$Revision: 1.19 $')
)

# Output definition

process.MINIAODoutput = cms.OutputModule("PoolOutputModule",
compressionAlgorithm = cms.untracked.string('LZMA'),
compressionLevel = cms.untracked.int32(4),
dataset = cms.untracked.PSet(
dataTier = cms.untracked.string('MINIAOD'),
filterName = cms.untracked.string('')
),
dropMetaData = cms.untracked.string('ALL'),
eventAutoFlushCompressedSize = cms.untracked.int32(-900),
fastCloning = cms.untracked.bool(False),
fileName = cms.untracked.string('file:ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2-00001.root'),
outputCommands = process.MINIAODEventContent.outputCommands,
overrideBranchesSplitLevel = cms.untracked.VPSet(
cms.untracked.PSet(
branch = cms.untracked.string('patPackedCandidates_packedPFCandidates__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('recoGenParticles_prunedGenParticles__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('patTriggerObjectStandAlones_slimmedPatTrigger__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('patPackedGenParticles_packedGenParticles__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('patJets_slimmedJets__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('recoVertexs_offlineSlimmedPrimaryVertices__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('recoCaloClusters_reducedEgamma_reducedESClusters_*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('EcalRecHitsSorted_reducedEgamma_reducedEBRecHits_*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('EcalRecHitsSorted_reducedEgamma_reducedEERecHits_*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('recoGenJets_slimmedGenJets__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('patJets_slimmedJetsPuppi__*'),
splitLevel = cms.untracked.int32(99)
),
cms.untracked.PSet(
branch = cms.untracked.string('EcalRecHitsSorted_reducedEgamma_reducedESRecHits_*'),
splitLevel = cms.untracked.int32(99)
)
),
overrideInputFileSplitLevels = cms.untracked.bool(True),
splitLevel = cms.untracked.int32(0)
)

# Additional output definition

# Other statements
from Configuration.AlCa.GlobalTag import GlobalTag
process.GlobalTag = GlobalTag(process.GlobalTag, '106X_dataRun2_v35', '')

# Path and EndPath definitions
process.Flag_trackingFailureFilter = cms.Path(process.goodVertices+process.trackingFailureFilter)
process.Flag_goodVertices = cms.Path(process.primaryVertexFilter)
process.Flag_CSCTightHaloFilter = cms.Path(process.CSCTightHaloFilter)
process.Flag_trkPOGFilters = cms.Path(process.trkPOGFilters)
process.Flag_HcalStripHaloFilter = cms.Path(process.HcalStripHaloFilter)
process.Flag_trkPOG_logErrorTooManyClusters = cms.Path(~process.logErrorTooManyClusters)
process.Flag_hfNoisyHitsFilter = cms.Path(process.hfNoisyHitsFilter)
process.Flag_EcalDeadCellTriggerPrimitiveFilter = cms.Path(process.EcalDeadCellTriggerPrimitiveFilter)
process.Flag_ecalLaserCorrFilter = cms.Path(process.ecalLaserCorrFilter)
process.Flag_globalSuperTightHalo2016Filter = cms.Path(process.globalSuperTightHalo2016Filter)
process.Flag_eeBadScFilter = cms.Path(process.eeBadScFilter)
process.Flag_METFilters = cms.Path(process.metFilters)
process.Flag_chargedHadronTrackResolutionFilter = cms.Path(process.chargedHadronTrackResolutionFilter)
process.Flag_globalTightHalo2016Filter = cms.Path(process.globalTightHalo2016Filter)
process.Flag_CSCTightHaloTrkMuUnvetoFilter = cms.Path(process.CSCTightHaloTrkMuUnvetoFilter)
process.Flag_HBHENoiseIsoFilter = cms.Path(process.HBHENoiseFilterResultProducer+process.HBHENoiseIsoFilter)
process.Flag_BadChargedCandidateSummer16Filter = cms.Path(process.BadChargedCandidateSummer16Filter)
process.Flag_hcalLaserEventFilter = cms.Path(process.hcalLaserEventFilter)
process.Flag_BadPFMuonFilter = cms.Path(process.BadPFMuonFilter)
process.Flag_ecalBadCalibFilter = cms.Path(process.ecalBadCalibFilter)
process.Flag_HBHENoiseFilter = cms.Path(process.HBHENoiseFilterResultProducer+process.HBHENoiseFilter)
process.Flag_trkPOG_toomanystripclus53X = cms.Path(~process.toomanystripclus53X)
process.Flag_EcalDeadCellBoundaryEnergyFilter = cms.Path(process.EcalDeadCellBoundaryEnergyFilter)
process.Flag_BadChargedCandidateFilter = cms.Path(process.BadChargedCandidateFilter)
process.Flag_trkPOG_manystripclus53X = cms.Path(~process.manystripclus53X)
process.Flag_BadPFMuonSummer16Filter = cms.Path(process.BadPFMuonSummer16Filter)
process.Flag_muonBadTrackFilter = cms.Path(process.muonBadTrackFilter)
process.Flag_CSCTightHalo2015Filter = cms.Path(process.CSCTightHalo2015Filter)
process.Flag_BadPFMuonDzFilter = cms.Path(process.BadPFMuonDzFilter)
process.endjob_step = cms.EndPath(process.endOfProcess)
process.MINIAODoutput_step = cms.EndPath(process.MINIAODoutput)

# Schedule definition
process.schedule = cms.Schedule(process.Flag_HBHENoiseFilter,process.Flag_HBHENoiseIsoFilter,process.Flag_CSCTightHaloFilter,process.Flag_CSCTightHaloTrkMuUnvetoFilter,process.Flag_CSCTightHalo2015Filter,process.Flag_globalTightHalo2016Filter,process.Flag_globalSuperTightHalo2016Filter,process.Flag_HcalStripHaloFilter,process.Flag_hcalLaserEventFilter,process.Flag_EcalDeadCellTriggerPrimitiveFilter,process.Flag_EcalDeadCellBoundaryEnergyFilter,process.Flag_ecalBadCalibFilter,process.Flag_goodVertices,process.Flag_eeBadScFilter,process.Flag_ecalLaserCorrFilter,process.Flag_trkPOGFilters,process.Flag_chargedHadronTrackResolutionFilter,process.Flag_muonBadTrackFilter,process.Flag_BadChargedCandidateFilter,process.Flag_BadPFMuonFilter,process.Flag_BadPFMuonDzFilter,process.Flag_hfNoisyHitsFilter,process.Flag_BadChargedCandidateSummer16Filter,process.Flag_BadPFMuonSummer16Filter,process.Flag_trkPOG_manystripclus53X,process.Flag_trkPOG_toomanystripclus53X,process.Flag_trkPOG_logErrorTooManyClusters,process.Flag_METFilters,process.endjob_step,process.MINIAODoutput_step)
process.schedule.associate(process.patTask)
from PhysicsTools.PatAlgos.tools.helpers import associatePatAlgosToolsTask
associatePatAlgosToolsTask(process)

#Setup FWK for multithreaded
process.options.numberOfThreads=cms.untracked.uint32(2)
process.options.numberOfStreams=cms.untracked.uint32(0)
process.options.numberOfConcurrentLuminosityBlocks=cms.untracked.uint32(1)

#do not add changes to your config after this point (unless you know what you are doing)
from FWCore.ParameterSet.Utilities import convertToUnscheduled
process=convertToUnscheduled(process)

# customisation of the process.

# Automatic addition of the customisation function from PhysicsTools.PatAlgos.slimming.miniAOD_tools
from PhysicsTools.PatAlgos.slimming.miniAOD_tools import miniAOD_customizeAllData

#call to customisation function miniAOD_customizeAllData imported from PhysicsTools.PatAlgos.slimming.miniAOD_tools
process = miniAOD_customizeAllData(process)

# End of customisation functions

# Customisation from command line

# Add early deletion of temporary data products to reduce peak memory need
from Configuration.StandardSequences.earlyDeleteSettings_cff import customiseEarlyDelete
process = customiseEarlyDelete(process)
# End adding early deletion
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# Auto generated configuration file
# using:
# Revision: 1.19
# Source: /local/reps/CMSSW/CMSSW/Configuration/Applications/python/ConfigBuilder.py,v
# with command line options: RECO --conditions 106X_dataRun2_v35 --customise Configuration/DataProcessing/Utils.addMonitoring --datatier NANOAOD --era Run2_2016,run2_nanoAOD_106Xv2 --eventcontent NANOEDMAOD --filein _placeholder_.root --fileout file:ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2_NanoAODv9-00001.root --nThreads 2 --no_exec --python_filename ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2_NanoAODv9-00001_0_cfg.py --scenario pp --step NANO --data
import FWCore.ParameterSet.Config as cms

from Configuration.Eras.Era_Run2_2016_cff import Run2_2016
from Configuration.Eras.Modifier_run2_nanoAOD_106Xv2_cff import run2_nanoAOD_106Xv2

process = cms.Process('NANO',Run2_2016,run2_nanoAOD_106Xv2)

# import of standard configurations
process.load('Configuration.StandardSequences.Services_cff')
process.load('SimGeneral.HepPDTESSource.pythiapdt_cfi')
process.load('FWCore.MessageService.MessageLogger_cfi')
process.load('Configuration.EventContent.EventContent_cff')
process.load('Configuration.StandardSequences.GeometryRecoDB_cff')
process.load('Configuration.StandardSequences.MagneticField_AutoFromDBCurrent_cff')
process.load('PhysicsTools.NanoAOD.nano_cff')
process.load('Configuration.StandardSequences.EndOfProcess_cff')
process.load('Configuration.StandardSequences.FrontierConditions_GlobalTag_cff')

process.maxEvents = cms.untracked.PSet(
input = cms.untracked.int32(1)
)

# Input source
process.source = cms.Source("PoolSource",
fileNames = cms.untracked.vstring('_placeholder_.root'),
secondaryFileNames = cms.untracked.vstring()
)

process.options = cms.untracked.PSet(

)

# Production Info
process.configurationMetadata = cms.untracked.PSet(
annotation = cms.untracked.string('RECO nevts:1'),
name = cms.untracked.string('Applications'),
version = cms.untracked.string('$Revision: 1.19 $')
)

# Output definition

process.NANOEDMAODoutput = cms.OutputModule("PoolOutputModule",
compressionAlgorithm = cms.untracked.string('LZMA'),
compressionLevel = cms.untracked.int32(9),
dataset = cms.untracked.PSet(
dataTier = cms.untracked.string('NANOAOD'),
filterName = cms.untracked.string('')
),
fileName = cms.untracked.string('file:ReReco-Run2016G-BTagCSV-UL2016_MiniAODv2_NanoAODv9-00001.root'),
outputCommands = process.NANOAODEventContent.outputCommands
)

# Additional output definition

# Other statements
from Configuration.AlCa.GlobalTag import GlobalTag
process.GlobalTag = GlobalTag(process.GlobalTag, '106X_dataRun2_v35', '')

# Path and EndPath definitions
process.nanoAOD_step = cms.Path(process.nanoSequence)
process.endjob_step = cms.EndPath(process.endOfProcess)
process.NANOEDMAODoutput_step = cms.EndPath(process.NANOEDMAODoutput)

# Schedule definition
process.schedule = cms.Schedule(process.nanoAOD_step,process.endjob_step,process.NANOEDMAODoutput_step)
from PhysicsTools.PatAlgos.tools.helpers import associatePatAlgosToolsTask
associatePatAlgosToolsTask(process)

#Setup FWK for multithreaded
process.options.numberOfThreads=cms.untracked.uint32(2)
process.options.numberOfStreams=cms.untracked.uint32(0)
process.options.numberOfConcurrentLuminosityBlocks=cms.untracked.uint32(1)

# customisation of the process.

# Automatic addition of the customisation function from PhysicsTools.NanoAOD.nano_cff
from PhysicsTools.NanoAOD.nano_cff import nanoAOD_customizeData

#call to customisation function nanoAOD_customizeData imported from PhysicsTools.NanoAOD.nano_cff
process = nanoAOD_customizeData(process)

# Automatic addition of the customisation function from Configuration.DataProcessing.Utils
from Configuration.DataProcessing.Utils import addMonitoring

#call to customisation function addMonitoring imported from Configuration.DataProcessing.Utils
process = addMonitoring(process)

# End of customisation functions

# Customisation from command line

# Add early deletion of temporary data products to reduce peak memory need
from Configuration.StandardSequences.earlyDeleteSettings_cff import customiseEarlyDelete
process = customiseEarlyDelete(process)
# End adding early deletion
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