6 #Start each new event with an empty event. 
   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. 
   20                 hitEffAnalysisGauss:       @local::icarus_HitEfficiencyAnalysis
 
   22                 hitEffAnalysisRaw:         @local::icarus_HitEfficiencyAnalysis
 
   25         #define the producer and filter modules for this path, order matters,  
   26         #filters reject all following items.  see lines starting physics.producers below 
   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) 
   39                 fileName:    
"hitEfficiency_icarus.root" 
   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 
   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 
   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
physics producers trigslidewindowOR6mW physics effSlidingOR6mW physics end_paths
process_name can override from command line with o or output dataTier
process_name opflashCryoW ana
source drop raw::ubdaqSoftwareTriggerData_ *_ *_ * maxEvents
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
services TFileService fileName
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