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BeamMonitor_cff.py
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1 import FWCore.ParameterSet.Config as cms
2 from DQMServices.Core.DQMEDAnalyzer import DQMEDAnalyzer
3 
4 dqmBeamMonitor = DQMEDAnalyzer("BeamMonitor",
5  monitorName = cms.untracked.string('BeamMonitor'),
6  beamSpot = cms.untracked.InputTag('offlineBeamSpot'),
7  primaryVertex = cms.untracked.InputTag('offlinePrimaryVertices'),
8  timeInterval = cms.untracked.int32(920),
9  fitEveryNLumi = cms.untracked.int32(1),
10  resetEveryNLumi = cms.untracked.int32(20),
11  fitPVEveryNLumi = cms.untracked.int32(1),
12  resetPVEveryNLumi = cms.untracked.int32(5),
13  Debug = cms.untracked.bool(False),
14  OnlineMode = cms.untracked.bool(True),
15  recordName = cms.untracked.string('BeamSpotOnlineHLTObjectsRcd'),
16  useLockRecords = cms.untracked.bool(False),
17  hltResults = cms.InputTag("TriggerResults::HLT"),
18  BeamFitter = cms.PSet(
19  Debug = cms.untracked.bool(False),
20  TrackCollection = cms.untracked.InputTag('generalTracks'),
21  IsMuonCollection = cms.untracked.bool(False),
22  WriteAscii = cms.untracked.bool(False),
23  AsciiFileName = cms.untracked.string('BeamFit.txt'),
24  AppendRunToFileName = cms.untracked.bool(True), #runnumber will be inserted to the file name
25  WriteDIPAscii = cms.untracked.bool(False),
26  DIPFileName = cms.untracked.string('BeamFitDIP.txt'),
27  SaveNtuple = cms.untracked.bool(False),
28  SavePVVertices = cms.untracked.bool(False),
29  SaveFitResults = cms.untracked.bool(False),
30  OutputFileName = cms.untracked.string('BeamFit.root'),
31  MinimumPt = cms.untracked.double(1.0),
32  MaximumEta = cms.untracked.double(2.4),
33  MaximumImpactParameter = cms.untracked.double(1.0),
34  MaximumZ = cms.untracked.double(60),
35  MinimumTotalLayers = cms.untracked.int32(6),
36  MinimumPixelLayers = cms.untracked.int32(0),
37  MaximumNormChi2 = cms.untracked.double(10.0),
38  TrackAlgorithm = cms.untracked.vstring(),
39  TrackQuality = cms.untracked.vstring(),
40  InputBeamWidth = cms.untracked.double(0.0060),
41  FractionOfFittedTrks = cms.untracked.double(0.9),
42  MinimumInputTracks = cms.untracked.int32(150),
43  deltaSignificanceCut = cms.untracked.double(10)
44  ),
45  PVFitter = cms.PSet(
46  Debug = cms.untracked.bool(False),
47  Apply3DFit = cms.untracked.bool(True),
48  VertexCollection = cms.untracked.InputTag('offlinePrimaryVertices'),
49  #WriteAscii = cms.untracked.bool(True),
50  #AsciiFileName = cms.untracked.string('PVFit.txt'),
51  maxNrStoredVertices = cms.untracked.uint32(100000),
52  minNrVerticesForFit = cms.untracked.uint32(50),
53  minVertexNdf = cms.untracked.double(10.),
54  maxVertexNormChi2 = cms.untracked.double(10.),
55  minVertexNTracks = cms.untracked.uint32(0),
56  minVertexMeanWeight = cms.untracked.double(0.5),
57  maxVertexR = cms.untracked.double(2),
58  maxVertexZ = cms.untracked.double(10),
59  errorScale = cms.untracked.double(0.9),
60  nSigmaCut = cms.untracked.double(50.),
61  FitPerBunchCrossing = cms.untracked.bool(False),
62  useOnlyFirstPV = cms.untracked.bool(False),
63  minSumPt = cms.untracked.double(0.)
64  ),
65  dxBin = cms.int32(200),
66  dxMin = cms.double(-1.0),
67  dxMax = cms.double(1.0),
68 
69  vxBin = cms.int32(200),
70  vxMin = cms.double(-0.5),
71  vxMax = cms.double(0.5),
72 
73  dzBin = cms.int32(80),
74  dzMin = cms.double(-20),
75  dzMax = cms.double(20),
76 
77  phiBin = cms.int32(63),
78  phiMin = cms.double(-3.15),
79  phiMax = cms.double(3.15)
80  )
DQMEDAnalyzer
Definition: DQMEDAnalyzer.py:1