Variables | |
tuple | lctreader |
00001 cms.EDAnalyzer("CSCTriggerPrimitivesDQM", 00002 # Switch on/off the verbosity and turn on/off histogram production 00003 debug = cms.untracked.bool(True), 00004 # Define which LCTs are present in the input file. This will determine the 00005 # workflow of the Reader. 00006 dataLctsIn = cms.bool(True), 00007 emulLctsIn = cms.bool(True), 00008 printps = cms.bool(False), 00009 # Flag to indicate MTCC data (used only when dataLctsIn = true). 00010 isMTCCData = cms.bool(False), 00011 # Labels to retrieve LCTs from the event (optional) 00012 # produced by unpacker 00013 CSCLCTProducerData = cms.untracked.string("muonCSCDigis"), 00014 # CSCLCTProducerData = cms.untracked.string("cscunpacker"), 00015 # produced by emulator 00016 CSCLCTProducerEmul = cms.untracked.string("cscTriggerPrimitiveDigis"), 00017 # Labels to retrieve simHits, comparator and wire digis. 00018 # (Used only when emulLctsIn = true.) 00019 CSCSimHitProducer = cms.InputTag("g4SimHits", "MuonCSCHits"), # Full sim. 00020 #CSCSimHitProducer = cms.InputTag("MuonSimHits", "MuonCSCHits"), # Fast sim. 00021 CSCComparatorDigiProducer = cms.InputTag("simMuonCSCDigis","MuonCSCComparatorDigi"), 00022 CSCWireDigiProducer = cms.InputTag("simMuonCSCDigis","MuonCSCWireDigi"), 00023 bad_chambers = cms.untracked.vstring("ME+1/2/15","ME+1/1/20","ME-1/1/34","ME-1/1/15","ME+1/2/36", 00024 "ME+1/1/02","ME-1/1/30","ME+1/1/29","ME+1/1/03"), 00025 bad_wires = cms.untracked.vstring("ME-1/1/4","ME-1/1/12","ME-1/1/36","ME-1/2/10","ME-2/2/11","ME-3/2/9"), 00026 bad_strips = cms.untracked.vstring("ME+1/1/20","ME-1/1/34","ME-3/2/24") 00027 )
Definition at line 19 of file CSCTPE_setup_cfi.py.