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ana_mods_icarus.fcl
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1 #include "analysis_icarus.fcl"
3 
4 process_name: HitEfficiency
5 
6 #Start each new event with an empty event.
7 source:
8 {
9  module_type: RootInput
10  maxEvents: 10 # Number of events to create
11 }
12 
13 # Define and configure some modules to do work on each event.
14 # First modules are defined; they are scheduled later.
15 # Modules are grouped by type.
16 physics:
17 {
18  analyzers:
19  {
20  hitEffAnalysisGauss: @local::icarus_HitEfficiencyAnalysis
21  hitEffAnalysisCluster3d: @local::icarus_HitEfficiencyAnalysis
22  hitEffAnalysisRaw: @local::icarus_HitEfficiencyAnalysis
23  }
24 
25  #define the producer and filter modules for this path, order matters,
26  #filters reject all following items. see lines starting physics.producers below
27  ana: [ hitEffAnalysisGauss, hitEffAnalysisCluster3d, hitEffAnalysisRaw ]
28  end_paths: [ana]
29 }
30 
31 #block to define where the output goes. if you defined a filter in the physics
32 #block and put it in the trigger_paths then you need to put a SelectEvents: {SelectEvents: [XXX]}
33 #entry in the output stream you want those to go to, where XXX is the label of the filter module(s)
34 outputs:
35 {
36  out1:
37  {
38  module_type: RootOutput
39  fileName: "hitEfficiency_icarus.root"
40  dataTier: "reco-simulated"
41  compressionLevel: 1
42  fastCloning: false
43  }
44 }
45 
46 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].OffsetVec: [9, 4, 2]
47 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].RawDigitLabel: "rawdigitfilter"
48 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].WireModuleLabel: "recowireraw"
49 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].HitModuleLabel: "icarushit"
50 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].MCParticleLabel: "largeant"
51 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].SimChannelLabel: "largeant"
52 phsyics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].UseBadChannelDB: false
53 
54 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].RawDigitLabel: "rawdigitfilter"
55 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].WireModuleLabel: "recowire" #"decon1droi"
56 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].HitModuleLabel: "gaushit"
57 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].MCParticleLabel: "largeant"
58 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].SimChannelLabel: "largeant"
59 phsyics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].UseBadChannelDB: false
60 
61 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].RawDigitLabelVec: ["rawDigitFilterTPC0","rawDigitFilterTPC1","rawDigitFilterTPC2","rawDigitFilterTPC3"]
62 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].WireModuleLabelVec: ["decon1DroiTPC0","decon1DroiTPC1","decon1DroiTPC2","decon1DroiTPC3"]
63 physics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].HitModuleLabelVec: ["gaushitTPC0","gaushitTPC1","gaushitTPC2","gaushitTPC3"]
64 phsyics.analyzers.hitEffAnalysisGauss.HitEfficiencyHistogramToolList[0].UseBadChannelDB: false
65 physics.analyzers.hitEffAnalysisCluster3d.HitEfficiencyHistogramToolList[0].RawDigitLabelVec: ["rawDigitFilterTPC0","rawDigitFilterTPC1","rawDigitFilterTPC2","rawDigitFilterTPC3"]
66 physics.analyzers.hitEffAnalysisCluster3d.HitEfficiencyHistogramToolList[0].WireModuleLabelVec: ["decon1DroiTPC0","decon1DroiTPC1","decon1DroiTPC2","decon1DroiTPC3"]
67 physics.analyzers.hitEffAnalysisCluster3d.HitEfficiencyHistogramToolList[0].HitModuleLabelVec: ["cluster3DCryo0","cluster3DCryo1"]
68 phsyics.analyzers.hitEffAnalysisCluster3d.HitEfficiencyHistogramToolList[0].UseBadChannelDB: false
69 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].RawDigitLabelVec: ["rawDigitFilterTPC0","rawDigitFilterTPC1","rawDigitFilterTPC2","rawDigitFilterTPC3"]
70 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].WireModuleLabelVec: ["recoWireRawTPC0","recoWireRawTPC1","recoWireRawTPC2","recoWireRawTPC3"]
71 physics.analyzers.hitEffAnalysisRaw.HitEfficiencyHistogramToolList[0].HitModuleLabelVec: ["icarusHitTPC0","icarusHitTPC1","icarusHitTPC2","icarusHitTPC3"]
process_name drop raw::OpDetWaveforms_DataApr2016RecoStage1_saturation_ * physics
process_name hitEffAnalysisCluster3d
do source
physics producers trigslidewindowOR6mW physics effSlidingOR6mW physics end_paths
process_name can override from command line with o or output dataTier
Definition: runPID.fcl:28
process_name opflashCryoW ana
source drop raw::ubdaqSoftwareTriggerData_ *_ *_ * maxEvents
Definition: frame-shunt.fcl:6
BEGIN_PROLOG triggeremu_data_config_icarus settings PMTADCthresholds sequence::icarus_stage0_multiTPC_TPC physics sequence::icarus_stage0_EastHits_TPC physics sequence::icarus_stage0_WestHits_TPC physics producers purityana0 module_type
process_name analyzers
process_name showerreco Particles Coinciding wih the Vertex services ScanOptions nu_mu services ScanOptions Number
BEGIN_PROLOG sequence::SlidingWindowTriggerPatternsWindowPair END_PROLOG trigslidewindowOR6m output outputs
BEGIN_PROLOG sequence::SlidingWindowTriggerPatternsOppositeWindows END_PROLOG process_name