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SingleTopTChannelLeptonDQM Class Reference

define MonitorEnsembple to be used More...

#include <SingleTopTChannelLeptonDQM.h>

Inheritance diagram for SingleTopTChannelLeptonDQM:
DQMEDAnalyzer edm::stream::EDAnalyzer< edm::RunSummaryCache< dqmDetails::NoCache >, edm::LuminosityBlockSummaryCache< dqmDetails::NoCache > > edm::stream::EDAnalyzerBase edm::EDConsumerBase

Public Member Functions

virtual void analyze (const edm::Event &event, const edm::EventSetup &setup)
 do this during the event loop More...
 
 SingleTopTChannelLeptonDQM (const edm::ParameterSet &cfg)
 default constructor More...
 
 ~SingleTopTChannelLeptonDQM ()
 default destructor More...
 
- Public Member Functions inherited from DQMEDAnalyzer
virtual void beginRun (edm::Run const &, edm::EventSetup const &) final
 
virtual void beginStream (edm::StreamID id) final
 
virtual void dqmBeginRun (edm::Run const &, edm::EventSetup const &)
 
 DQMEDAnalyzer (void)
 
virtual void endLuminosityBlockSummary (edm::LuminosityBlock const &, edm::EventSetup const &, dqmDetails::NoCache *) const final
 
virtual void endRunSummary (edm::Run const &, edm::EventSetup const &, dqmDetails::NoCache *) const final
 
uint32_t streamId () const
 
- Public Member Functions inherited from edm::stream::EDAnalyzer< edm::RunSummaryCache< dqmDetails::NoCache >, edm::LuminosityBlockSummaryCache< dqmDetails::NoCache > >
 EDAnalyzer ()=default
 
- Public Member Functions inherited from edm::stream::EDAnalyzerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
 EDAnalyzerBase ()
 
ModuleDescription const & moduleDescription () const
 
virtual ~EDAnalyzerBase ()
 
- Public Member Functions inherited from edm::EDConsumerBase
std::vector< ConsumesInfoconsumesInfo () const
 
 EDConsumerBase ()
 
ProductHolderIndexAndSkipBit indexFrom (EDGetToken, BranchType, TypeID const &) const
 
void itemsMayGet (BranchType, std::vector< ProductHolderIndexAndSkipBit > &) const
 
void itemsToGet (BranchType, std::vector< ProductHolderIndexAndSkipBit > &) const
 
std::vector
< ProductHolderIndexAndSkipBit >
const & 
itemsToGetFromEvent () const
 
void labelsForToken (EDGetToken iToken, Labels &oLabels) const
 
void modulesDependentUpon (std::string const &iProcessName, std::string const &iModuleLabel, bool iPrint, std::vector< char const * > &oModuleLabels) const
 
void modulesWhoseProductsAreConsumed (std::vector< ModuleDescription const * > &modules, ProductRegistry const &preg, std::map< std::string, ModuleDescription const * > const &labelsToDesc, std::string const &processName) const
 
bool registeredToConsume (ProductHolderIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
void updateLookup (BranchType iBranchType, ProductHolderIndexHelper const &)
 
virtual ~EDConsumerBase ()
 

Protected Member Functions

void bookHistograms (DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &) override
 
- Protected Member Functions inherited from edm::EDConsumerBase
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > consumes (edm::InputTag const &tag)
 
EDGetToken consumes (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken consumes (TypeToGet const &id, edm::InputTag const &tag)
 
ConsumesCollector consumesCollector ()
 Use a ConsumesCollector to gather consumes information from helper functions. More...
 
template<typename ProductType , BranchType B = InEvent>
void consumesMany ()
 
void consumesMany (const TypeToGet &id)
 
template<BranchType B>
void consumesMany (const TypeToGet &id)
 
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > mayConsume (edm::InputTag const &tag)
 
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 

Private Member Functions

std::string objectType (const std::string &label)
 
std::string selectionStep (const std::string &label)
 

Private Attributes

edm::InputTag beamspot_
 beamspot More...
 
edm::EDGetTokenT< reco::BeamSpotbeamspot__
 
std::unique_ptr
< StringCutObjectSelector
< reco::BeamSpot > > 
beamspotSelect_
 string cut selector More...
 
std::vector< std::unique_ptr
< SelectionStep< reco::CaloJet > > > 
CaloJetSteps
 
std::unique_ptr< SelectionStep
< reco::GsfElectron > > 
ElectronStep
 
std::vector< std::unique_ptr
< SelectionStep< reco::Jet > > > 
JetSteps
 
std::unique_ptr< SelectionStep
< reco::MET > > 
METStep
 
std::unique_ptr< SelectionStep
< reco::Muon > > 
MuonStep
 
std::unique_ptr< SelectionStep
< reco::PFCandidate > > 
PFElectronStep
 
std::vector< std::unique_ptr
< SelectionStep< reco::PFJet > > > 
PFJetSteps
 
std::unique_ptr< SelectionStep
< reco::PFCandidate > > 
PFMuonStep
 
std::unique_ptr< SelectionStep
< reco::Vertex > > 
PvStep
 
std::vector< edm::ParameterSetsel
 
std::map< std::string,
std::pair< edm::ParameterSet,
std::unique_ptr
< SingleTopTChannelLepton::MonitorEnsemble > > > 
selection_
 
std::vector< std::string > selectionOrder_
 
std::vector< std::string > triggerPaths_
 trigger paths More...
 
edm::EDGetTokenT
< edm::TriggerResults
triggerTable__
 trigger table More...
 
edm::InputTag vertex_
 primary vertex More...
 
edm::EDGetTokenT< reco::Vertexvertex__
 
std::unique_ptr
< StringCutObjectSelector
< reco::Vertex > > 
vertexSelect_
 string cut selector More...
 

Additional Inherited Members

- Public Types inherited from edm::stream::EDAnalyzer< edm::RunSummaryCache< dqmDetails::NoCache >, edm::LuminosityBlockSummaryCache< dqmDetails::NoCache > >
typedef CacheContexts< T...> CacheTypes
 
typedef CacheTypes::GlobalCache GlobalCache
 
typedef AbilityChecker< T...> HasAbility
 
typedef
CacheTypes::LuminosityBlockCache 
LuminosityBlockCache
 
typedef
LuminosityBlockContextT
< LuminosityBlockCache,
RunCache, GlobalCache
LuminosityBlockContext
 
typedef
CacheTypes::LuminosityBlockSummaryCache 
LuminosityBlockSummaryCache
 
typedef CacheTypes::RunCache RunCache
 
typedef RunContextT< RunCache,
GlobalCache
RunContext
 
typedef CacheTypes::RunSummaryCache RunSummaryCache
 
- Public Types inherited from edm::stream::EDAnalyzerBase
typedef EDAnalyzerAdaptorBase ModuleType
 
- Public Types inherited from edm::EDConsumerBase
typedef ProductLabels Labels
 
- Static Public Member Functions inherited from DQMEDAnalyzer
static std::shared_ptr
< dqmDetails::NoCache
globalBeginLuminosityBlockSummary (edm::LuminosityBlock const &, edm::EventSetup const &, LuminosityBlockContext const *)
 
static std::shared_ptr
< dqmDetails::NoCache
globalBeginRunSummary (edm::Run const &, edm::EventSetup const &, RunContext const *)
 
static void globalEndLuminosityBlockSummary (edm::LuminosityBlock const &, edm::EventSetup const &, LuminosityBlockContext const *, dqmDetails::NoCache *)
 
static void globalEndRunSummary (edm::Run const &, edm::EventSetup const &, RunContext const *, dqmDetails::NoCache *)
 
- Static Public Member Functions inherited from edm::stream::EDAnalyzerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 

Detailed Description

define MonitorEnsembple to be used

Module to apply a monitored selection of top like events in the semi-leptonic channel.

"DQM/Physics/plugins/SingleTopTChannelLeptonDQM.h"

Plugin to apply a monitored selection of top like events with some minimal flexibility in the number and definition of the selection steps. To achieve this flexibility it employes the SelectionStep class. The MonitorEnsemble class is used to provide a well defined set of histograms to be monitored after each selection step. The SelectionStep class provides a flexible and intuitive selection via the StringCutParser. SelectionStep and MonitorEnsemble classes are interleaved. The monitoring starts after a preselection step (which is not monitored in the context of this module) with an instance of the MonitorEnsemble class. The following objects are supported for selection:

These types have to be present as prefix of the selection step paramter label separated from the rest of the label by a ':' (e.g. in the form "jets:step0"). The class expects selection labels of this type. They will be disentangled by the private helper functions objectType and seletionStep as declared below.

Definition at line 298 of file SingleTopTChannelLeptonDQM.h.

Constructor & Destructor Documentation

SingleTopTChannelLeptonDQM::SingleTopTChannelLeptonDQM ( const edm::ParameterSet cfg)

default constructor

Definition at line 824 of file SingleTopTChannelLeptonDQM.cc.

References HLT_FULL_cff::beamspot, beamspot_, beamspot__, beamspotSelect_, CaloJetSteps, edm::EDConsumerBase::consumesCollector(), ElectronStep, edm::ParameterSet::existsAs(), plotBeamSpotDB::first, edm::ParameterSet::getParameter(), i, JetSteps, relval_steps::key, METStep, MuonStep, objectType(), PFElectronStep, PFJetSteps, PFMuonStep, PvStep, sel, selection_, selectionOrder_, selectionStep(), AlCaHLTBitMon_QueryRunRegistry::string, triggerPaths_, triggerTable__, vertex_, vertex__, and vertexSelect_.

826  : vertexSelect_(nullptr),
827  beamspot_(""),
828  beamspotSelect_(nullptr),
829  MuonStep(nullptr),
830  PFMuonStep(nullptr),
831  ElectronStep(nullptr),
832  PFElectronStep(nullptr),
833  PvStep(nullptr),
834  METStep(nullptr) {
835  JetSteps.clear();
836  CaloJetSteps.clear();
837  PFJetSteps.clear();
838 
839  // configure preselection
840  edm::ParameterSet presel =
841  cfg.getParameter<edm::ParameterSet>("preselection");
842  if (presel.existsAs<edm::ParameterSet>("trigger")) {
843  edm::ParameterSet trigger =
844  presel.getParameter<edm::ParameterSet>("trigger");
845  triggerTable__ = consumes<edm::TriggerResults>(
846  trigger.getParameter<edm::InputTag>("src"));
847  triggerPaths_ = trigger.getParameter<std::vector<std::string>>("select");
848  }
849  if (presel.existsAs<edm::ParameterSet>("vertex")) {
850  edm::ParameterSet vertex = presel.getParameter<edm::ParameterSet>("vertex");
851  vertex_ = vertex.getParameter<edm::InputTag>("src");
852  vertex__ =
853  consumes<reco::Vertex>(vertex.getParameter<edm::InputTag>("src"));
855  vertex.getParameter<std::string>("select")));
856  }
857  if (presel.existsAs<edm::ParameterSet>("beamspot")) {
859  presel.getParameter<edm::ParameterSet>("beamspot");
860  beamspot_ = beamspot.getParameter<edm::InputTag>("src");
861  beamspot__ =
862  consumes<reco::BeamSpot>(beamspot.getParameter<edm::InputTag>("src"));
864  beamspot.getParameter<std::string>("select")));
865  }
866  // conifgure the selection
867  std::vector<edm::ParameterSet> sel =
868  cfg.getParameter<std::vector<edm::ParameterSet>>("selection");
869 
870  for (unsigned int i = 0; i < sel.size(); ++i) {
871  selectionOrder_.push_back(sel.at(i).getParameter<std::string>("label"));
872  selection_[selectionStep(selectionOrder_.back())] = std::make_pair(
873  sel.at(i),
874  std::unique_ptr<SingleTopTChannelLepton::MonitorEnsemble>(
876  selectionStep(selectionOrder_.back()).c_str(),
877  cfg.getParameter<edm::ParameterSet>("setup"),
878  cfg.getParameter<std::vector<edm::ParameterSet>>("selection"),
879  consumesCollector())));
880  }
881  for (std::vector<std::string>::const_iterator selIt = selectionOrder_.begin();
882  selIt != selectionOrder_.end(); ++selIt) {
883  std::string key = selectionStep(*selIt), type = objectType(*selIt);
884  if (selection_.find(key) != selection_.end()) {
885  using std::unique_ptr;
886 
887  if (type == "muons") {
889  consumesCollector()));
890  }
891  if (type == "muons/pf") {
893  selection_[key].first, consumesCollector()));
894  }
895  if (type == "elecs") {
897  selection_[key].first, consumesCollector()));
898  }
899  if (type == "elecs/pf") {
901  selection_[key].first, consumesCollector()));
902  }
903  if (type == "pvs") {
904  PvStep.reset(new SelectionStep<reco::Vertex>(selection_[key].first,
905  consumesCollector()));
906  }
907  if (type == "jets") {
908  JetSteps.push_back(std::unique_ptr<SelectionStep<reco::Jet>>(
909  new SelectionStep<reco::Jet>(selection_[key].first,
910  consumesCollector())));
911  }
912  if (type == "jets/pf") {
913  PFJetSteps.push_back(std::unique_ptr<SelectionStep<reco::PFJet>>(
914  new SelectionStep<reco::PFJet>(selection_[key].first,
915  consumesCollector())));
916  }
917  if (type == "jets/calo") {
918  CaloJetSteps.push_back(std::unique_ptr<SelectionStep<reco::CaloJet>>(
920  consumesCollector())));
921  }
922  if (type == "met") {
923  METStep.reset(new SelectionStep<reco::MET>(selection_[key].first,
924  consumesCollector()));
925  }
926  }
927  }
928 }
std::vector< std::string > selectionOrder_
type
Definition: HCALResponse.h:21
std::string objectType(const std::string &label)
T getParameter(std::string const &) const
int i
Definition: DBlmapReader.cc:9
bool existsAs(std::string const &parameterName, bool trackiness=true) const
checks if a parameter exists as a given type
Definition: ParameterSet.h:186
std::vector< std::string > triggerPaths_
trigger paths
std::unique_ptr< SelectionStep< reco::Vertex > > PvStep
std::vector< std::unique_ptr< SelectionStep< reco::CaloJet > > > CaloJetSteps
std::vector< std::unique_ptr< SelectionStep< reco::Jet > > > JetSteps
edm::EDGetTokenT< edm::TriggerResults > triggerTable__
trigger table
edm::InputTag vertex_
primary vertex
std::vector< edm::ParameterSet > sel
ConsumesCollector consumesCollector()
Use a ConsumesCollector to gather consumes information from helper functions.
string key
FastSim: produces sample of signal events, overlayed with premixed minbias events.
std::unique_ptr< SelectionStep< reco::PFCandidate > > PFElectronStep
std::string selectionStep(const std::string &label)
std::unique_ptr< SelectionStep< reco::GsfElectron > > ElectronStep
std::unique_ptr< SelectionStep< reco::MET > > METStep
Templated helper class to allow a selection on a certain object collection.
std::unique_ptr< StringCutObjectSelector< reco::Vertex > > vertexSelect_
string cut selector
edm::EDGetTokenT< reco::Vertex > vertex__
edm::EDGetTokenT< reco::BeamSpot > beamspot__
std::unique_ptr< StringCutObjectSelector< reco::BeamSpot > > beamspotSelect_
string cut selector
std::map< std::string, std::pair< edm::ParameterSet, std::unique_ptr< SingleTopTChannelLepton::MonitorEnsemble > > > selection_
std::vector< std::unique_ptr< SelectionStep< reco::PFJet > > > PFJetSteps
std::unique_ptr< SelectionStep< reco::Muon > > MuonStep
std::unique_ptr< SelectionStep< reco::PFCandidate > > PFMuonStep
SingleTopTChannelLeptonDQM::~SingleTopTChannelLeptonDQM ( )
inline

default destructor

Definition at line 303 of file SingleTopTChannelLeptonDQM.h.

303 {};

Member Function Documentation

void SingleTopTChannelLeptonDQM::analyze ( const edm::Event event,
const edm::EventSetup setup 
)
virtual

do this during the event loop

Implements edm::stream::EDAnalyzerBase.

Definition at line 936 of file SingleTopTChannelLeptonDQM.cc.

References accept(), HLT_FULL_cff::beamspot, beamspot__, beamspotSelect_, CaloJetSteps, ElectronStep, edm::Event::getByToken(), edm::EDGetTokenT< T >::isUninitialized(), JetSteps, relval_steps::key, METStep, MuonStep, objectType(), PFElectronStep, PFJetSteps, PFMuonStep, MetAnalyzer::pv(), benchmark_cfg::select, selection_, selectionOrder_, selectionStep(), AlCaHLTBitMon_QueryRunRegistry::string, triggerPaths_, triggerTable__, vertex__, and vertexSelect_.

937  {
940  if (!event.getByToken(triggerTable__, triggerTable)) return;
941  if (!accept(event, *triggerTable, triggerPaths_)) return;
942  }
943  if (!beamspot__.isUninitialized()) {
945  if (!event.getByToken(beamspot__, beamspot)) return;
946  if (!(*beamspotSelect_)(*beamspot)) return;
947  }
948 
949  if (!vertex__.isUninitialized()) {
951  if (!event.getByToken(vertex__, vertex)) return;
953  if (!(*vertexSelect_)(*pv)) return;
954  }
955 
956  // apply selection steps
957  unsigned int passed = 0;
958  unsigned int nJetSteps = -1;
959  unsigned int nPFJetSteps = -1;
960  unsigned int nCaloJetSteps = -1;
961  for (std::vector<std::string>::const_iterator selIt = selectionOrder_.begin();
962  selIt != selectionOrder_.end(); ++selIt) {
963  std::string key = selectionStep(*selIt), type = objectType(*selIt);
964  if (selection_.find(key) != selection_.end()) {
965  if (type == "empty") {
966  selection_[key].second->fill(event, setup);
967  }
968  if (type == "presel") {
969  selection_[key].second->fill(event, setup);
970  }
971  if (type == "elecs" && ElectronStep != 0) {
972  if (ElectronStep->select(event)) {
973  ++passed;
974  selection_[key].second->fill(event, setup);
975  } else
976  break;
977  }
978  if (type == "elecs/pf" && PFElectronStep != 0) {
979 
980  if (PFElectronStep->select(event, "electron")) {
981  ++passed;
982 
983  selection_[key].second->fill(event, setup);
984 
985  } else
986  break;
987  }
988  if (type == "muons" && MuonStep != 0) {
989  if (MuonStep->select(event)) {
990  ++passed;
991  selection_[key].second->fill(event, setup);
992  } else
993  break;
994  }
995  if (type == "muons/pf" && PFMuonStep != 0) {
996  if (PFMuonStep->select(event, "muon")) {
997  ++passed;
998  selection_[key].second->fill(event, setup);
999  } else
1000  break;
1001  }
1002  if (type == "jets") {
1003  nJetSteps++;
1004  if (JetSteps[nJetSteps]) {
1005  if (JetSteps[nJetSteps]->select(event, setup)) {
1006  ++passed;
1007  selection_[key].second->fill(event, setup);
1008  } else
1009  break;
1010  }
1011  }
1012  if (type == "jets/pf") {
1013  nPFJetSteps++;
1014  if (PFJetSteps[nPFJetSteps]) {
1015  if (PFJetSteps[nPFJetSteps]->select(event, setup)) {
1016  ++passed;
1017  selection_[key].second->fill(event, setup);
1018  } else
1019  break;
1020  }
1021  }
1022  if (type == "jets/calo") {
1023  nCaloJetSteps++;
1024  if (CaloJetSteps[nCaloJetSteps]) {
1025  if (CaloJetSteps[nCaloJetSteps]->select(event, setup)) {
1026  ++passed;
1027  selection_[key].second->fill(event, setup);
1028  } else
1029  break;
1030  }
1031  }
1032  if (type == "met" && METStep != 0) {
1033  if (METStep->select(event)) {
1034  ++passed;
1035  selection_[key].second->fill(event, setup);
1036  } else
1037  break;
1038  }
1039  }
1040  }
1041 }
std::vector< std::string > selectionOrder_
type
Definition: HCALResponse.h:21
std::string objectType(const std::string &label)
std::vector< std::string > triggerPaths_
trigger paths
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:462
std::vector< std::unique_ptr< SelectionStep< reco::CaloJet > > > CaloJetSteps
std::vector< std::unique_ptr< SelectionStep< reco::Jet > > > JetSteps
edm::EDGetTokenT< edm::TriggerResults > triggerTable__
trigger table
bool accept(const edm::Event &event, const edm::TriggerResults &triggerTable, const std::string &triggerPath)
Definition: TopDQMHelpers.h:30
string key
FastSim: produces sample of signal events, overlayed with premixed minbias events.
std::unique_ptr< SelectionStep< reco::PFCandidate > > PFElectronStep
std::string selectionStep(const std::string &label)
std::unique_ptr< SelectionStep< reco::GsfElectron > > ElectronStep
std::unique_ptr< SelectionStep< reco::MET > > METStep
std::unique_ptr< StringCutObjectSelector< reco::Vertex > > vertexSelect_
string cut selector
boost::indirect_iterator< typename seq_t::const_iterator > const_iterator
Definition: View.h:81
edm::EDGetTokenT< reco::Vertex > vertex__
edm::EDGetTokenT< reco::BeamSpot > beamspot__
std::unique_ptr< StringCutObjectSelector< reco::BeamSpot > > beamspotSelect_
string cut selector
std::map< std::string, std::pair< edm::ParameterSet, std::unique_ptr< SingleTopTChannelLepton::MonitorEnsemble > > > selection_
bool isUninitialized() const
Definition: EDGetToken.h:73
std::vector< std::unique_ptr< SelectionStep< reco::PFJet > > > PFJetSteps
std::unique_ptr< SelectionStep< reco::Muon > > MuonStep
std::unique_ptr< SelectionStep< reco::PFCandidate > > PFMuonStep
void SingleTopTChannelLeptonDQM::bookHistograms ( DQMStore::IBooker ibooker,
edm::Run const &  ,
edm::EventSetup const &   
)
overrideprotectedvirtual

Implements DQMEDAnalyzer.

Definition at line 929 of file SingleTopTChannelLeptonDQM.cc.

References selection_.

930  {
931 
932  for (auto selIt = selection_.begin(); selIt != selection_.end(); ++selIt) {
933  selIt->second.second->book(ibooker);
934  }
935 }
std::map< std::string, std::pair< edm::ParameterSet, std::unique_ptr< SingleTopTChannelLepton::MonitorEnsemble > > > selection_
std::string SingleTopTChannelLeptonDQM::objectType ( const std::string &  label)
inlineprivate

deduce object type from ParameterSet label, the label is expected to be of type 'objectType:selectionStep'

Definition at line 316 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

316  {
317  return label.substr(0, label.find(':'));
318  };
std::string SingleTopTChannelLeptonDQM::selectionStep ( const std::string &  label)
inlineprivate

deduce selection step from ParameterSet label, the label is expected to be of type 'objectType:selectionStep'

Definition at line 321 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

321  {
322  return label.substr(label.find(':') + 1);
323  };

Member Data Documentation

edm::InputTag SingleTopTChannelLeptonDQM::beamspot_
private

beamspot

Definition at line 338 of file SingleTopTChannelLeptonDQM.h.

Referenced by SingleTopTChannelLeptonDQM().

edm::EDGetTokenT<reco::BeamSpot> SingleTopTChannelLeptonDQM::beamspot__
private

Definition at line 339 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<StringCutObjectSelector<reco::BeamSpot> > SingleTopTChannelLeptonDQM::beamspotSelect_
private

string cut selector

Definition at line 341 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::vector<std::unique_ptr<SelectionStep<reco::CaloJet> > > SingleTopTChannelLeptonDQM::CaloJetSteps
private

Definition at line 364 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::GsfElectron> > SingleTopTChannelLeptonDQM::ElectronStep
private

Definition at line 359 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::vector<std::unique_ptr<SelectionStep<reco::Jet> > > SingleTopTChannelLeptonDQM::JetSteps
private

Definition at line 363 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::MET> > SingleTopTChannelLeptonDQM::METStep
private

Definition at line 367 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::Muon> > SingleTopTChannelLeptonDQM::MuonStep
private

Definition at line 357 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::PFCandidate> > SingleTopTChannelLeptonDQM::PFElectronStep
private

Definition at line 360 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::vector<std::unique_ptr<SelectionStep<reco::PFJet> > > SingleTopTChannelLeptonDQM::PFJetSteps
private

Definition at line 365 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::PFCandidate> > SingleTopTChannelLeptonDQM::PFMuonStep
private

Definition at line 358 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<SelectionStep<reco::Vertex> > SingleTopTChannelLeptonDQM::PvStep
private

Definition at line 361 of file SingleTopTChannelLeptonDQM.h.

Referenced by SingleTopTChannelLeptonDQM().

std::vector<edm::ParameterSet> SingleTopTChannelLeptonDQM::sel
private

Definition at line 368 of file SingleTopTChannelLeptonDQM.h.

Referenced by SingleTopTChannelLeptonDQM().

std::map< std::string, std::pair<edm::ParameterSet, std::unique_ptr<SingleTopTChannelLepton::MonitorEnsemble> > > SingleTopTChannelLeptonDQM::selection_
private

this is the heart component of the plugin; std::string keeps a label the selection step for later identification, edm::ParameterSet keeps the configuration of the selection for the SelectionStep class, MonitoringEnsemble keeps an instance of the MonitorEnsemble class to be filled after each selection step

Definition at line 355 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), bookHistograms(), and SingleTopTChannelLeptonDQM().

std::vector<std::string> SingleTopTChannelLeptonDQM::selectionOrder_
private

needed to guarantee the selection order as defined by the order of ParameterSets in the selection vector as defined in the config

Definition at line 345 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::vector<std::string> SingleTopTChannelLeptonDQM::triggerPaths_
private

trigger paths

Definition at line 330 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

edm::EDGetTokenT<edm::TriggerResults> SingleTopTChannelLeptonDQM::triggerTable__
private

trigger table

Definition at line 323 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

edm::InputTag SingleTopTChannelLeptonDQM::vertex_
private

primary vertex

Definition at line 332 of file SingleTopTChannelLeptonDQM.h.

Referenced by SingleTopTChannelLeptonDQM().

edm::EDGetTokenT<reco::Vertex> SingleTopTChannelLeptonDQM::vertex__
private

Definition at line 333 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().

std::unique_ptr<StringCutObjectSelector<reco::Vertex> > SingleTopTChannelLeptonDQM::vertexSelect_
private

string cut selector

Definition at line 335 of file SingleTopTChannelLeptonDQM.h.

Referenced by analyze(), and SingleTopTChannelLeptonDQM().