Variables | |
tuple | AutoMagneticFieldESProducer |
tuple | es_prefer_magfield = cms.ESPrefer("XMLIdealGeometryESSource","magfield") |
tuple | magfield |
tuple | master = cms.int32(1) |
tuple | path = cms.string('grid.[v].bin') |
tuple | sectors = cms.string('0') |
tuple | SlaveField0 |
tuple | SlaveField20 |
tuple | SlaveField30 = SlaveField20.clone() |
tuple | SlaveField35 = SlaveField20.clone() |
tuple | SlaveField38 = SlaveField20.clone() |
tuple | SlaveField40 = SlaveField20.clone() |
tuple | VBF0 |
tuple | VBF20 = VBF0.clone() |
tuple | VBF30 = VBF0.clone() |
tuple | VBF35 = VBF0.clone() |
tuple | VBF38 = VBF0.clone() |
tuple | VBF40 = VBF0.clone() |
tuple | volumes = cms.string('1-312') |
00001 cms.ESProducer("AutoMagneticFieldESProducer", 00002 # if positive, set B value (in kGauss), overriding the current reading from DB 00003 valueOverride = cms.int32(-1), 00004 nominalCurrents = cms.untracked.vint32(-1, 0,9558,14416,16819,18268,19262), 00005 mapLabels = cms.untracked.vstring("090322_3_8t", 00006 "0t", 00007 "071212_2t", 00008 "071212_3t", 00009 "071212_3_5t", 00010 "090322_3_8t", 00011 "071212_4t"), 00012 label = cms.untracked.string(''), 00013 )
Definition at line 147 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::es_prefer_magfield = cms.ESPrefer("XMLIdealGeometryESSource","magfield") |
Definition at line 16 of file autoMagneticFieldProducer_cfi.py.
00001 cms.ESSource("XMLIdealGeometryESSource", 00002 geomXMLFiles = cms.vstring('Geometry/CMSCommonData/data/normal/cmsextent.xml', 00003 'Geometry/CMSCommonData/data/cms.xml', 00004 'Geometry/CMSCommonData/data/cmsMagneticField.xml', 00005 'MagneticField/GeomBuilder/data/MagneticFieldVolumes_1103l.xml', 00006 'Geometry/CMSCommonData/data/materials.xml'), 00007 rootNodeName = cms.string('cmsMagneticField:MAGF') 00008 )
Definition at line 6 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::master = cms.int32(1) |
Definition at line 99 of file autoMagneticFieldProducer_cfi.py.
Referenced by L1TGT::analyze(), DQMStore::extract(), reco::utilsNew::CandMatcher< C >::operator[](), reco::modulesNew::IsolationProducer< C1, C2, Alg, OutputCollection, Setup >::produce(), reco::PhysObjectMatcher< C1, C2, S, D, Q >::produce(), reco::modulesNew::Matcher< C1, C2, S, D >::produce(), magneticfield::VolumeBasedMagneticFieldESProducer::produce(), CandidateProducer< TColl, CColl, Selector, Conv, Creator, Init >::produce(), and DQMStore::save().
tuple autoMagneticFieldProducer_cfi::path = cms.string('grid.[v].bin') |
Definition at line 100 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::sectors = cms.string('0') |
Definition at line 98 of file autoMagneticFieldProducer_cfi.py.
00001 cms.ESProducer("UniformMagneticFieldESProducer", 00002 ZFieldInTesla = cms.double(0.0), 00003 label = cms.untracked.string('slave_0') 00004 )
Definition at line 21 of file autoMagneticFieldProducer_cfi.py.
00001 cms.ESProducer("ParametrizedMagneticFieldProducer", 00002 version = cms.string('OAE_1103l_071212'), 00003 parameters = cms.PSet( 00004 BValue = cms.string('2_0T') 00005 ), 00006 label = cms.untracked.string('slave_20') 00007 )
Definition at line 26 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::SlaveField30 = SlaveField20.clone() |
Definition at line 34 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::SlaveField35 = SlaveField20.clone() |
Definition at line 38 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::SlaveField38 = SlaveField20.clone() |
Definition at line 42 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::SlaveField40 = SlaveField20.clone() |
Definition at line 46 of file autoMagneticFieldProducer_cfi.py.
00001 cms.ESProducer("VolumeBasedMagneticFieldESProducer", 00002 label = cms.untracked.string('0t'), 00003 useParametrizedTrackerField = cms.bool(True), 00004 paramLabel = cms.string('slave_0'), 00005 version = cms.string('grid_1103l_071212_2t'), 00006 geometryVersion = cms.int32(71212), 00007 debugBuilder = cms.untracked.bool(False), 00008 cacheLastVolume = cms.untracked.bool(True), 00009 scalingVolumes = cms.vint32(), 00010 scalingFactors = cms.vdouble(), 00011 gridFiles = cms.VPSet( 00012 cms.PSet( # Default tables, replicate sector 1 00013 volumes = cms.string('1-312'), 00014 sectors = cms.string('0') , 00015 master = cms.int32(1), 00016 path = cms.string('grid.[v].bin'), 00017 ), 00018 ) 00019 )
Definition at line 51 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::VBF20 = VBF0.clone() |
Definition at line 71 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::VBF30 = VBF0.clone() |
Definition at line 76 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::VBF35 = VBF0.clone() |
Definition at line 81 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::VBF38 = VBF0.clone() |
Definition at line 88 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::VBF40 = VBF0.clone() |
Definition at line 141 of file autoMagneticFieldProducer_cfi.py.
tuple autoMagneticFieldProducer_cfi::volumes = cms.string('1-312') |
Definition at line 97 of file autoMagneticFieldProducer_cfi.py.
Referenced by MagGeoBuilderFromDDD::bSector::buildMagBSector(), MagGeoBuilderFromDDD::bSlab::buildMagBSlab(), MagGeoBuilderFromDDD::bSlab::maxPhi(), MagGeoBuilderFromDDD::bSlab::minPhi(), and magneticfield::VolumeBasedMagneticFieldESProducer::produce().