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EcalTrivialCondRetriever_cfi.py

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00001 import FWCore.ParameterSet.Config as cms
00002 
00003 EcalTrivialConditionRetriever = cms.ESSource("EcalTrivialConditionRetriever",
00004     producedChannelStatus = cms.untracked.bool(True),
00005     #       Values to get correct noise on RecHit amplitude using 3+5 weights
00006     EBpedRMSX12 = cms.untracked.double(1.26),
00007     weightsForTB = cms.untracked.bool(False),
00008     # channel status
00009     channelStatusFile = cms.untracked.string(''),
00010     producedEcalPedestals = cms.untracked.bool(True),
00011     #       If set true reading optimized weights (3+5 weights) from file 
00012     getWeightsFromFile = cms.untracked.bool(True),
00013     intercalibErrorsFile = cms.untracked.string(''),
00014     laserAPDPNMean = cms.untracked.double(1.0),
00015     #       untracked string amplWeightsFile = "CalibCalorimetry/EcalTrivialCondModules/data/ampWeights_TB.txt"
00016     # file with intercalib constants - same format used for online and offline DB
00017     # by default set all inter calib const to 1.0 if no file provided
00018     intercalibConstantsFile = cms.untracked.string(''),
00019     producedEcalWeights = cms.untracked.bool(True),
00020     EEpedRMSX12 = cms.untracked.double(2.87),
00021     producedEcalIntercalibConstants = cms.untracked.bool(True),
00022     producedEcalIntercalibErrors = cms.untracked.bool(True),
00023     producedEcalLaserCorrection = cms.untracked.bool(True),
00024     producedEcalGainRatios = cms.untracked.bool(True),
00025     laserAPDPNRefMean = cms.untracked.double(1.0),
00026     producedEcalADCToGeVConstant = cms.untracked.bool(True)
00027 )
00028 
00029 

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