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EnergyRingsTableProducer Class Reference
Inheritance diagram for EnergyRingsTableProducer:
edm::stream::EDProducer<>

Public Member Functions

 EnergyRingsTableProducer (const edm::ParameterSet &iConfig)
 
 ~EnergyRingsTableProducer () override
 
- Public Member Functions inherited from edm::stream::EDProducer<>
 EDProducer ()=default
 
 EDProducer (const EDProducer &)=delete
 
bool hasAbilityToProduceInBeginLumis () const final
 
bool hasAbilityToProduceInBeginProcessBlocks () const final
 
bool hasAbilityToProduceInBeginRuns () const final
 
bool hasAbilityToProduceInEndLumis () const final
 
bool hasAbilityToProduceInEndProcessBlocks () const final
 
bool hasAbilityToProduceInEndRuns () const final
 
const EDProduceroperator= (const EDProducer &)=delete
 

Static Public Member Functions

static void fillDescriptions (edm::ConfigurationDescriptions &descriptions)
 

Private Member Functions

void produce (edm::Event &, edm::EventSetup const &) override
 

Private Attributes

std::string name_
 
edm::EDGetTokenT< edm::View< pat::Jet > > srcJet_
 

Additional Inherited Members

- Public Types inherited from edm::stream::EDProducer<>
using CacheTypes = CacheContexts< T... >
 
using GlobalCache = typename CacheTypes::GlobalCache
 
using HasAbility = AbilityChecker< T... >
 
using InputProcessBlockCache = typename CacheTypes::InputProcessBlockCache
 
using LuminosityBlockCache = typename CacheTypes::LuminosityBlockCache
 
using LuminosityBlockContext = LuminosityBlockContextT< LuminosityBlockCache, RunCache, GlobalCache >
 
using LuminosityBlockSummaryCache = typename CacheTypes::LuminosityBlockSummaryCache
 
using RunCache = typename CacheTypes::RunCache
 
using RunContext = RunContextT< RunCache, GlobalCache >
 
using RunSummaryCache = typename CacheTypes::RunSummaryCache
 

Detailed Description

Definition at line 22 of file EnergyRingsTableProducer.cc.

Constructor & Destructor Documentation

◆ EnergyRingsTableProducer()

EnergyRingsTableProducer::EnergyRingsTableProducer ( const edm::ParameterSet iConfig)
inlineexplicit

Definition at line 24 of file EnergyRingsTableProducer.cc.

25  : name_(iConfig.getParameter<std::string>("name")),
26  srcJet_(consumes<edm::View<pat::Jet>>(iConfig.getParameter<edm::InputTag>("src"))) {
27  produces<nanoaod::FlatTable>();
28  }
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
edm::EDGetTokenT< edm::View< pat::Jet > > srcJet_

◆ ~EnergyRingsTableProducer()

EnergyRingsTableProducer::~EnergyRingsTableProducer ( )
inlineoverride

Definition at line 30 of file EnergyRingsTableProducer.cc.

30 {};

Member Function Documentation

◆ fillDescriptions()

static void EnergyRingsTableProducer::fillDescriptions ( edm::ConfigurationDescriptions descriptions)
inlinestatic

Definition at line 32 of file EnergyRingsTableProducer.cc.

References edm::ConfigurationDescriptions::add(), submitPVResolutionJobs::desc, and AlCaHLTBitMon_QueryRunRegistry::string.

32  {
34  desc.add<edm::InputTag>("src")->setComment("input Jet collection");
35  desc.add<std::string>("name")->setComment("name of the Jet FlatTable we are extending with energy rings");
36  descriptions.add("EnergyRingsTable", desc);
37  }
void add(std::string const &label, ParameterSetDescription const &psetDescription)

◆ produce()

void EnergyRingsTableProducer::produce ( edm::Event iEvent,
edm::EventSetup const &  iSetup 
)
overrideprivate

Definition at line 47 of file EnergyRingsTableProducer.cc.

References funct::abs(), ztail::d, PbPb_ZMuSkimMuonDPG_cff::deltaR, iEvent, metsig::jet, pfDeepBoostedJetPreprocessParams_cfi::lower_bound, eostools::move(), name_, EgammaValidation_cff::pdgid, electrons_cff::srcJet, and srcJet_.

47  {
49  iEvent.getByToken(srcJet_, srcJet);
50 
51  float cone_boundaries[] = {0.05, 0.1, 0.2, 0.3, 0.4};
52  size_t ncone_boundaries = sizeof(cone_boundaries) / sizeof(float);
53  unsigned int nJet = srcJet->size();
54  unsigned int ncand = 0;
55  std::vector<float> numdaughterspt03;
56  std::vector<std::vector<float>> EmFractionEnergyRings(ncone_boundaries + 1, std::vector<float>(nJet, 0.));
57  std::vector<std::vector<float>> ChFractionEnergyRings(ncone_boundaries + 1, std::vector<float>(nJet, 0.));
58  std::vector<std::vector<float>> NeFractionEnergyRings(ncone_boundaries + 1, std::vector<float>(nJet, 0.));
59  std::vector<std::vector<float>> MuFractionEnergyRings(ncone_boundaries + 1, std::vector<float>(nJet, 0.));
60 
61  for (unsigned int ij = 0; ij < nJet; ij++) {
62  ++ncand;
63  auto jet = srcJet->ptrAt(ij);
64  int numDaughtersPt03 = 0;
65  for (unsigned int ijcone = 0; ijcone < ncone_boundaries; ijcone++) {
66  EmFractionEnergyRings[ijcone][ij] = 0;
67  MuFractionEnergyRings[ijcone][ij] = 0;
68  ChFractionEnergyRings[ijcone][ij] = 0;
69  NeFractionEnergyRings[ijcone][ij] = 0;
70  }
71  for (const auto& d : jet->daughterPtrVector()) {
72  float candDr = Geom::deltaR(d->p4(), jet->p4());
73  size_t icone =
74  std::lower_bound(&cone_boundaries[0], &cone_boundaries[ncone_boundaries], candDr) - &cone_boundaries[0];
75  float candEnergy = d->energy();
76  int pdgid = abs(d->pdgId());
77  if (pdgid == 22 || pdgid == 11) {
78  EmFractionEnergyRings[icone][ij] += candEnergy;
79  } else if (pdgid == 13) {
80  MuFractionEnergyRings[icone][ij] += candEnergy;
81  } else if (d->charge() != 0) {
82  ChFractionEnergyRings[icone][ij] += candEnergy;
83  } else {
84  NeFractionEnergyRings[icone][ij] += candEnergy;
85  }
86  if (d->pt() > 0.3)
87  numDaughtersPt03 += 1;
88  } // end of jet daughters loop
89  numdaughterspt03.push_back(numDaughtersPt03);
90  } //end of jet loop
91  auto tab = std::make_unique<nanoaod::FlatTable>(ncand, name_, false, true); //extension to Jet collection set to true
92  tab->addColumn<int>("numDaughtersPt03", numdaughterspt03, "number of jet daughters with pT>0.3 GeV");
93 
94  tab->addColumn<float>("EmFractionEnergyRing0", EmFractionEnergyRings[0], "Em energy fraction in ring in dR 0-0.05");
95  tab->addColumn<float>("EmFractionEnergyRing1", EmFractionEnergyRings[1], "Em energy fraction in ring in dR 0.05-0.1");
96  tab->addColumn<float>("EmFractionEnergyRing2", EmFractionEnergyRings[2], "Em energy fraction in ring in dR 0.1-0.2");
97  tab->addColumn<float>("EmFractionEnergyRing3", EmFractionEnergyRings[3], "Em energy fraction in ring in dR 0.2-0.3");
98  tab->addColumn<float>("EmFractionEnergyRing4", EmFractionEnergyRings[4], "Em energy fraction in ring in dR 0.3-0.4");
99  tab->addColumn<float>(
100  "EmFractionEnergyRing5", EmFractionEnergyRings[5], "Em energy fraction in ring in dR 0.4 overflow");
101 
102  tab->addColumn<float>("ChFractionEnergyRing0", ChFractionEnergyRings[0], "Ch energy fraction in ring in dR 0-0.05");
103  tab->addColumn<float>("ChFractionEnergyRing1", ChFractionEnergyRings[1], "Ch energy fraction in ring in dR 0.05-0.1");
104  tab->addColumn<float>("ChFractionEnergyRing2", ChFractionEnergyRings[2], "Ch energy fraction in ring in dR 0.1-0.2");
105  tab->addColumn<float>("ChFractionEnergyRing3", ChFractionEnergyRings[3], "Ch energy fraction in ring in dR 0.2-0.3");
106  tab->addColumn<float>("ChFractionEnergyRing4", ChFractionEnergyRings[4], "Ch energy fraction in ring in dR 0.3-0.4");
107  tab->addColumn<float>(
108  "ChFractionEnergyRing5", ChFractionEnergyRings[5], "Ch energy fraction in ring in dR 0.4 overflow");
109 
110  tab->addColumn<float>("MuFractionEnergyRing0", MuFractionEnergyRings[0], "Mu energy fraction in ring in dR 0-0.05");
111  tab->addColumn<float>("MuFractionEnergyRing1", MuFractionEnergyRings[1], "Mu energy fraction in ring in dR 0.05-0.1");
112  tab->addColumn<float>("MuFractionEnergyRing2", MuFractionEnergyRings[2], "Mu energy fraction in ring in dR 0.1-0.2");
113  tab->addColumn<float>("MuFractionEnergyRing3", MuFractionEnergyRings[3], "Mu energy fraction in ring in dR 0.2-0.3");
114  tab->addColumn<float>("MuFractionEnergyRing4", MuFractionEnergyRings[4], "Mu energy fraction in ring in dR 0.3-0.4");
115  tab->addColumn<float>(
116  "MuFractionEnergyRing5", MuFractionEnergyRings[5], "Mu energy fraction in ring in dR 0.4 overflow");
117 
118  tab->addColumn<float>("NeFractionEnergyRing0", NeFractionEnergyRings[0], "Ne energy fraction in ring in dR 0-0.05");
119  tab->addColumn<float>("NeFractionEnergyRing1", NeFractionEnergyRings[1], "Ne energy fraction in ring in dR 0.05-0.1");
120  tab->addColumn<float>("NeFractionEnergyRing2", NeFractionEnergyRings[2], "Ne energy fraction in ring in dR 0.1-0.2");
121  tab->addColumn<float>("NeFractionEnergyRing3", NeFractionEnergyRings[3], "Ne energy fraction in ring in dR 0.2-0.3");
122  tab->addColumn<float>("NeFractionEnergyRing4", NeFractionEnergyRings[4], "Ne energy fraction in ring in dR 0.3-0.4");
123  tab->addColumn<float>(
124  "NeFractionEnergyRing5", NeFractionEnergyRings[5], "Ne energy fraction in ring in dR 0.4 overflow");
125 
126  iEvent.put(std::move(tab));
127 }
edm::EDGetTokenT< edm::View< pat::Jet > > srcJet_
int iEvent
Definition: GenABIO.cc:224
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
d
Definition: ztail.py:151
def move(src, dest)
Definition: eostools.py:511

Member Data Documentation

◆ name_

std::string EnergyRingsTableProducer::name_
private

Definition at line 42 of file EnergyRingsTableProducer.cc.

Referenced by produce().

◆ srcJet_

edm::EDGetTokenT<edm::View<pat::Jet> > EnergyRingsTableProducer::srcJet_
private

Definition at line 43 of file EnergyRingsTableProducer.cc.

Referenced by produce().