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DataMixerSimOnSim_cff.py
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1 import FWCore.ParameterSet.Config as cms
2 
3 # Start with Standard Digitization:
4 
6 
8 
9 # Run after the DataMixer only.
10 #
11 # Calorimetry Digis (Ecal + Hcal) - * unsuppressed *
12 #
13 #
14 # clone these sequences:
15 
16 DMEcalTriggerPrimitiveDigis = simEcalTriggerPrimitiveDigis.clone()
17 DMEcalDigis = simEcalDigis.clone()
18 DMEcalPreshowerDigis = simEcalPreshowerDigis.clone()
19 
20 # Re-define inputs to point at DataMixer output
21 DMEcalTriggerPrimitiveDigis.Label = cms.string('mixData')
22 DMEcalTriggerPrimitiveDigis.InstanceEB = cms.string('EBDigiCollectionDM')
23 DMEcalTriggerPrimitiveDigis.InstanceEE = cms.string('EEDigiCollectionDM')
24 #
25 DMEcalDigis.digiProducer = cms.string('mixData')
26 DMEcalDigis.EBdigiCollection = cms.string('EBDigiCollectionDM')
27 DMEcalDigis.EEdigiCollection = cms.string('EEDigiCollectionDM')
28 DMEcalDigis.trigPrimProducer = cms.string('DMEcalTriggerPrimitiveDigis')
29 #
30 DMEcalPreshowerDigis.digiProducer = cms.string('mixData')
31 #DMEcalPreshowerDigis.ESdigiCollection = cms.string('ESDigiCollectionDM')
32 
33 ecalDigiSequenceDM = cms.Sequence(DMEcalTriggerPrimitiveDigis*DMEcalDigis*DMEcalPreshowerDigis)
34 
35 # same for Hcal:
36 
37 # clone these sequences:
38 
39 DMHcalTriggerPrimitiveDigis = simHcalTriggerPrimitiveDigis.clone()
40 DMHcalDigis = simHcalDigis.clone()
41 DMHcalTTPDigis = simHcalTTPDigis.clone()
42 
43 # Re-define inputs to point at DataMixer output
44 DMHcalTriggerPrimitiveDigis.inputLabel = cms.VInputTag(cms.InputTag('mixData'),cms.InputTag('mixData'))
45 DMHcalDigis.digiLabel = cms.string("mixData")
46 DMHcalTTPDigis.HFDigiCollection = cms.InputTag("mixData")
47 
48 hcalDigiSequenceDM = cms.Sequence(DMHcalTriggerPrimitiveDigis+DMHcalDigis*DMHcalTTPDigis)
49 
50 postDMDigi = cms.Sequence(ecalDigiSequenceDM+hcalDigiSequenceDM)
51 
52 # disable adding noise to HCAL cells with no MC signal
53 #mixData.doEmpty = False
54 
55 pdatamix = cms.Sequence(mixData+postDMDigi)
56