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JetEnergyShift Class Reference

Plugin to shift the jet energy scale and recalculate the MET accordingly. More...

Inheritance diagram for JetEnergyShift:
edm::EDProducer edm::ProducerBase edm::EDConsumerBase edm::ProductRegistryHelper

Public Member Functions

 JetEnergyShift (const edm::ParameterSet &)
 default constructor More...
 
 ~JetEnergyShift () override
 default destructor More...
 
- Public Member Functions inherited from edm::EDProducer
 EDProducer ()
 
SerialTaskQueueglobalLuminosityBlocksQueue ()
 
SerialTaskQueueglobalRunsQueue ()
 
ModuleDescription const & moduleDescription () const
 
 ~EDProducer () override
 
- Public Member Functions inherited from edm::ProducerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
std::vector< edm::ProductResolverIndex > const & indiciesForPutProducts (BranchType iBranchType) const
 
 ProducerBase ()
 
std::vector< edm::ProductResolverIndex > const & putTokenIndexToProductResolverIndex () const
 
void registerProducts (ProducerBase *, ProductRegistry *, ModuleDescription const &)
 
std::function< void(BranchDescription const &)> registrationCallback () const
 used by the fwk to register list of products More...
 
void resolvePutIndicies (BranchType iBranchType, ModuleToResolverIndicies const &iIndicies, std::string const &moduleLabel)
 
 ~ProducerBase () noexcept(false) override
 
- Public Member Functions inherited from edm::EDConsumerBase
std::vector< ConsumesInfoconsumesInfo () const
 
void convertCurrentProcessAlias (std::string const &processName)
 Convert "@currentProcess" in InputTag process names to the actual current process name. More...
 
 EDConsumerBase ()
 
 EDConsumerBase (EDConsumerBase const &)=delete
 
 EDConsumerBase (EDConsumerBase &&)=default
 
ESProxyIndex const * esGetTokenIndices (edm::Transition iTrans) const
 
ProductResolverIndexAndSkipBit indexFrom (EDGetToken, BranchType, TypeID const &) const
 
void itemsMayGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
void itemsToGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
std::vector< ProductResolverIndexAndSkipBit > const & itemsToGetFrom (BranchType iType) const
 
void labelsForToken (EDGetToken iToken, Labels &oLabels) const
 
void modulesWhoseProductsAreConsumed (std::vector< ModuleDescription const * > &modules, ProductRegistry const &preg, std::map< std::string, ModuleDescription const * > const &labelsToDesc, std::string const &processName) const
 
EDConsumerBase const & operator= (EDConsumerBase const &)=delete
 
EDConsumerBaseoperator= (EDConsumerBase &&)=default
 
bool registeredToConsume (ProductResolverIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
ProductResolverIndexAndSkipBit uncheckedIndexFrom (EDGetToken) const
 
void updateLookup (BranchType iBranchType, ProductResolverIndexHelper const &, bool iPrefetchMayGet)
 
void updateLookup (eventsetup::ESRecordsToProxyIndices const &)
 
virtual ~EDConsumerBase () noexcept(false)
 

Private Member Functions

void produce (edm::Event &, const edm::EventSetup &) override
 rescale jet energy and recalculated MET More...
 

Private Attributes

edm::EDGetTokenT< std::vector< pat::Jet > > inputJetsToken_
 jet input collection More...
 
edm::EDGetTokenT< std::vector< pat::MET > > inputMETsToken_
 met input collection More...
 
double jetEMLimitForMET_
 limit on the emf of the jet for Type1 MET corrections More...
 
double jetPTThresholdForMET_
 threshold on (raw!) jet pt for Type1 MET corrections More...
 
std::string outputJets_
 jet output collection More...
 
std::string outputMETs_
 MET output collection. More...
 
double scaleFactor_
 scale factor for the rescaling More...
 

Additional Inherited Members

- Public Types inherited from edm::EDProducer
typedef EDProducer ModuleType
 
- Public Types inherited from edm::ProducerBase
using ModuleToResolverIndicies = std::unordered_multimap< std::string, std::tuple< edm::TypeID const *, const char *, edm::ProductResolverIndex >>
 
typedef ProductRegistryHelper::TypeLabelList TypeLabelList
 
- Public Types inherited from edm::EDConsumerBase
typedef ProductLabels Labels
 
- Static Public Member Functions inherited from edm::EDProducer
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 
static bool wantsGlobalLuminosityBlocks ()
 
static bool wantsGlobalRuns ()
 
static bool wantsStreamLuminosityBlocks ()
 
static bool wantsStreamRuns ()
 
- Protected Member Functions inherited from edm::ProducerBase
ProducesCollector producesCollector ()
 
- 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 ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes ()
 
template<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes (ESInputTag const &tag)
 
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)
 

Detailed Description

Plugin to shift the jet energy scale and recalculate the MET accordingly.

Plugin to shift the jet energy scale and recalculate the MET accordingly. The module mimics the assumption that the jet energy scale (JES) has been estimated wrong by a factor of scaleFactor, corresponding to a L2L3 corrected jet. The p4 of the patJet is beeing rescaled. All other patJet properties stay the same. The MET is recalculated taking the shifted JES into account for the Type1 MET correction. For the patMET the rescaled sumET and the p4 are stored. The different correction levels are lost for the new collection. The module has the following parameters:

inputJets : input collection for MET (expecting patMET). inputMETs : input collection for jets (expecting patJets). scaleFactor : scale factor to which to shift the JES. jetPTThresholdForMET : pt threshold for (uncorrected!) jets considered for Type1 MET corrections. jetEMLimitForMET : limit in em fraction for Type1 MET correction.

For expected parameters for jetPTThresholdForMET and jetEMLimitForMET have a look at: JetMETCorrections/Type1MET/python/MetType1Corrections_cff.py. Two output collections are written to file with instance label corresponding to the input label of the jet and met input collections.

Definition at line 34 of file JetEnergyShift.cc.

Constructor & Destructor Documentation

JetEnergyShift::JetEnergyShift ( const edm::ParameterSet cfg)
explicit

default constructor

Definition at line 62 of file JetEnergyShift.cc.

References edm::ParameterSet::getParameter(), label, outputJets_, and outputMETs_.

63  : inputJetsToken_(consumes<std::vector<pat::Jet>>(cfg.getParameter<edm::InputTag>("inputJets"))),
64  inputMETsToken_(consumes<std::vector<pat::MET>>(cfg.getParameter<edm::InputTag>("inputMETs"))),
65  scaleFactor_(cfg.getParameter<double>("scaleFactor")),
66  jetPTThresholdForMET_(cfg.getParameter<double>("jetPTThresholdForMET")),
67  jetEMLimitForMET_(cfg.getParameter<double>("jetEMLimitForMET")) {
68  // use label of input to create label for output
69  outputJets_ = cfg.getParameter<edm::InputTag>("inputJets").label();
70  outputMETs_ = cfg.getParameter<edm::InputTag>("inputMETs").label();
71  // register products
72  produces<std::vector<pat::Jet>>(outputJets_);
73  produces<std::vector<pat::MET>>(outputMETs_);
74 }
T getParameter(std::string const &) const
double jetEMLimitForMET_
limit on the emf of the jet for Type1 MET corrections
std::string outputJets_
jet output collection
EDGetTokenT< ProductType > consumes(edm::InputTag const &tag)
char const * label
edm::EDGetTokenT< std::vector< pat::MET > > inputMETsToken_
met input collection
double scaleFactor_
scale factor for the rescaling
double jetPTThresholdForMET_
threshold on (raw!) jet pt for Type1 MET corrections
edm::EDGetTokenT< std::vector< pat::Jet > > inputJetsToken_
jet input collection
std::string outputMETs_
MET output collection.
JetEnergyShift::~JetEnergyShift ( )
inlineoverride

default destructor

Definition at line 39 of file JetEnergyShift.cc.

References produce().

39 {};

Member Function Documentation

void JetEnergyShift::produce ( edm::Event event,
const edm::EventSetup setup 
)
overrideprivate

rescale jet energy and recalculated MET

Definition at line 76 of file JetEnergyShift.cc.

References DEFINE_FWK_MODULE, reco::LeafCandidate::et(), inputJetsToken_, inputMETsToken_, metsig::jet, jetEMLimitForMET_, jetPTThresholdForMET_, singleTopDQM_cfi::jets, BTaggingMonitor_cfi::met, singleTopDQM_cfi::mets, eostools::move(), outputJets_, outputMETs_, reco::LeafCandidate::px(), reco::LeafCandidate::py(), pat::Jet::scaleEnergy(), scaleFactor_, mathSSE::sqrt(), and reco::MET::sumEt().

Referenced by ~JetEnergyShift().

76  {
78  event.getByToken(inputJetsToken_, jets);
79 
81  event.getByToken(inputMETsToken_, mets);
82 
83  auto pJets = std::make_unique<std::vector<pat::Jet>>();
84  auto pMETs = std::make_unique<std::vector<pat::MET>>();
85 
86  double dPx = 0.;
87  double dPy = 0.;
88  double dSumEt = 0.;
89 
90  for (std::vector<pat::Jet>::const_iterator jet = jets->begin(); jet != jets->end(); ++jet) {
91  pat::Jet scaledJet = *jet;
92  scaledJet.scaleEnergy(scaleFactor_);
93  pJets->push_back(scaledJet);
94  // consider jet scale shift only if the raw jet pt and emf
95  // is above the thresholds given in the module definition
96  if (jet->correctedJet("raw").pt() > jetPTThresholdForMET_ && jet->emEnergyFraction() < jetEMLimitForMET_) {
97  dPx += scaledJet.px() - jet->px();
98  dPy += scaledJet.py() - jet->py();
99  dSumEt += scaledJet.et() - jet->et();
100  }
101  }
102 
103  // scale MET accordingly
104  pat::MET met = *(mets->begin());
105  double scaledMETPx = met.px() - dPx;
106  double scaledMETPy = met.py() - dPy;
107  pat::MET scaledMET(
108  reco::MET(met.sumEt() + dSumEt,
110  scaledMETPx, scaledMETPy, 0, sqrt(scaledMETPx * scaledMETPx + scaledMETPy * scaledMETPy)),
111  reco::MET::Point(0, 0, 0)));
112  pMETs->push_back(scaledMET);
113  event.put(std::move(pJets), outputJets_);
114  event.put(std::move(pMETs), outputMETs_);
115 }
Analysis-level MET class.
Definition: MET.h:40
double px() const final
x coordinate of momentum vector
void scaleEnergy(double fScale) override
Scale energy and correspondingly adjust raw jec factors.
Definition: Jet.h:177
double jetEMLimitForMET_
limit on the emf of the jet for Type1 MET corrections
std::string outputJets_
jet output collection
double sumEt() const
Definition: MET.h:52
double et() const final
transverse energy
Definition: MET.h:41
T sqrt(T t)
Definition: SSEVec.h:19
edm::EDGetTokenT< std::vector< pat::MET > > inputMETsToken_
met input collection
double py() const final
y coordinate of momentum vector
Analysis-level calorimeter jet class.
Definition: Jet.h:77
double scaleFactor_
scale factor for the rescaling
double jetPTThresholdForMET_
threshold on (raw!) jet pt for Type1 MET corrections
edm::EDGetTokenT< std::vector< pat::Jet > > inputJetsToken_
jet input collection
std::string outputMETs_
MET output collection.
math::XYZTLorentzVector LorentzVector
Lorentz vector.
Definition: LeafCandidate.h:23
def move(src, dest)
Definition: eostools.py:511
math::XYZPoint Point
point in the space
Definition: LeafCandidate.h:27

Member Data Documentation

edm::EDGetTokenT<std::vector<pat::Jet> > JetEnergyShift::inputJetsToken_
private

jet input collection

Definition at line 47 of file JetEnergyShift.cc.

Referenced by produce().

edm::EDGetTokenT<std::vector<pat::MET> > JetEnergyShift::inputMETsToken_
private

met input collection

Definition at line 49 of file JetEnergyShift.cc.

Referenced by produce().

double JetEnergyShift::jetEMLimitForMET_
private

limit on the emf of the jet for Type1 MET corrections

Definition at line 59 of file JetEnergyShift.cc.

Referenced by produce().

double JetEnergyShift::jetPTThresholdForMET_
private

threshold on (raw!) jet pt for Type1 MET corrections

Definition at line 57 of file JetEnergyShift.cc.

Referenced by produce().

std::string JetEnergyShift::outputJets_
private

jet output collection

Definition at line 51 of file JetEnergyShift.cc.

Referenced by JetEnergyShift(), and produce().

std::string JetEnergyShift::outputMETs_
private

MET output collection.

Definition at line 53 of file JetEnergyShift.cc.

Referenced by JetEnergyShift(), and produce().

double JetEnergyShift::scaleFactor_
private

scale factor for the rescaling

Definition at line 55 of file JetEnergyShift.cc.

Referenced by produce().