44 useUserData_(iConfig.exists(
"userData"))
49 if ( iConfig.
exists(
"embedCaloTowers") ) {
68 addBTagInfo_ = iConfig.getParameter<
bool>(
"addBTagInfo" );
69 addDiscriminators_ = iConfig.getParameter<
bool>(
"addDiscriminators" );
70 discriminatorTags_ = iConfig.getParameter<std::vector<edm::InputTag> >(
"discriminatorSources" );
72 addTagInfos_ = iConfig.getParameter<
bool>(
"addTagInfos" );
73 tagInfoTags_ = iConfig.getParameter<std::vector<edm::InputTag> >(
"tagInfoSources" );
75 addAssociatedTracks_ = iConfig.getParameter<
bool>(
"addAssociatedTracks" );
76 trackAssociationToken_ = mayConsume<reco::JetTracksAssociation::Container>(iConfig.getParameter<
edm::InputTag>(
"trackAssociationSource" ));
77 addJetCharge_ = iConfig.getParameter<
bool>(
"addJetCharge" );
78 jetChargeToken_ = mayConsume<reco::JetFloatAssociation::Container>(iConfig.getParameter<
edm::InputTag>(
"jetChargeSource" ));
79 addJetID_ = iConfig.getParameter<
bool>(
"addJetID");
80 jetIDMapToken_ = mayConsume<reco::JetIDValueMap>(iConfig.getParameter<
edm::InputTag>(
"jetIDMap"));
82 addEfficiencies_ = iConfig.getParameter<
bool>(
"addEfficiencies");
83 if (addEfficiencies_) {
87 addResolutions_ = iConfig.getParameter<
bool>(
"addResolutions");
88 if (addResolutions_) {
91 if (discriminatorTags_.empty()) {
92 addDiscriminators_ =
false;
94 for (std::vector<edm::InputTag>::const_iterator it = discriminatorTags_.begin(), ed = discriminatorTags_.end(); it != ed; ++it) {
97 if ((pos != std::string::npos) && (pos != label.length() - 7)) {
100 discriminatorLabels_.push_back(label);
103 if (tagInfoTags_.empty()) {
104 addTagInfos_ =
false;
106 for (std::vector<edm::InputTag>::const_iterator it = tagInfoTags_.begin(), ed = tagInfoTags_.end(); it != ed; ++it) {
109 if ((pos != std::string::npos) && (pos != label.length() - 8)) {
112 tagInfoLabels_.push_back(label);
115 if (!addBTagInfo_) { addDiscriminators_ =
false; addTagInfos_ =
false; }
117 if ( useUserData_ ) {
121 produces<std::vector<Jet> >();
122 produces<reco::GenJetCollection> (
"genJets");
123 produces<std::vector<CaloTower> > (
"caloTowers");
124 produces<reco::PFCandidateCollection > (
"pfCandidates");
125 produces<edm::OwnVector<reco::BaseTagInfo> > (
"tagInfos");
129 PATJetProducer::~PATJetProducer() {
172 std::vector<edm::ValueMap<JetCorrFactors> > jetCorrs;
177 jetCorrs.push_back( *jetCorr );
182 std::vector<edm::Handle<reco::JetFloatAssociation::Container> > jetDiscriminators;
189 std::vector<edm::Handle<edm::View<reco::BaseTagInfo> > > jetTagInfos;
208 std::auto_ptr< std::vector<Jet> >
patJets (
new std::vector<Jet>() );
211 std::auto_ptr<std::vector<CaloTower> > caloTowersOut(
new std::vector<CaloTower> () );
225 unsigned int idx = itJet - jets->begin();
234 if ( ajet.
isCaloJet()) cj = dynamic_cast<const reco::CaloJet *>(jetRef.
get());
241 for ( std::vector<CaloTowerPtr>::const_iterator towBegin = itowers.begin(), towEnd = itowers.end(), itow = towBegin; itow != towEnd; ++itow ) {
242 if( itow->isAvailable() && itow->isNonnull() ){
243 caloTowersOut->push_back( **itow );
246 edm::Ptr<CaloTower> caloForwardRef ( h_caloTowersOut.id(), caloTowerRef.key(), h_caloTowersOut.productGetter() );
261 for ( std::vector<reco::PFCandidatePtr>::const_iterator partBegin = iparticles.begin(),
262 partEnd = iparticles.end(), ipart = partBegin;
263 ipart != partEnd; ++ipart ) {
264 pfCandidatesOut->push_back( **ipart );
284 std::vector<std::string> levels = jetCorrs[0][jetRef].correctionLabels();
285 if(
std::find(levels.begin(), levels.end(),
"L2L3Residual")!=levels.end()){
286 ajet.
initializeJEC(jetCorrs[0][jetRef].jecLevel(
"L2L3Residual"));
288 else if(
std::find(levels.begin(), levels.end(),
"L3Absolute")!=levels.end()){
289 ajet.
initializeJEC(jetCorrs[0][jetRef].jecLevel(
"L3Absolute"));
292 ajet.
initializeJEC(jetCorrs[0][jetRef].jecLevel(
"Uncorrected"));
294 edm::LogWarning(
"L3Absolute not found") <<
"L2L3Residual and L3Absolute are not part of the correction applied jetCorrFactors \n"
295 <<
"of module " << jetCorrs[0][jetRef].jecSet() <<
" jets will remain"
296 <<
" uncorrected."; first=
false;
324 genJetsOut->push_back( *genjet );
351 for (
size_t k=0;
k<jetDiscriminators.size(); ++
k) {
352 float value = (*jetDiscriminators[
k])[jetRef];
357 for (
size_t k=0;
k<jetTagInfos.size(); ++
k) {
362 if ((idx < taginfos.
size()) && (taginfos[idx].
jet() == jetRef)) {
363 match = taginfos.
ptrAt(idx);
367 if (itTI->jet() == jetRef) { match = taginfos.
ptrAt( itTI - taginfos.
begin() );
break; }
371 tagInfosOut->push_back( match->clone() );
402 patJets->push_back(ajet);
411 iEvent.
put( genJetsOut,
"genJets" );
412 iEvent.
put( caloTowersOut,
"caloTowers" );
413 iEvent.
put( pfCandidatesOut,
"pfCandidates" );
414 iEvent.
put( tagInfosOut,
"tagInfos" );
429 iDesc.
addOptional<
bool>(
"embedCaloTowers",
false)->setComment(
"embed external CaloTowers (not to be used on AOD input)");
430 iDesc.
add<
bool>(
"embedPFCandidates",
true)->setComment(
"embed external PFCandidates");
433 iDesc.
add<
bool>(
"addGenPartonMatch",
true)->setComment(
"add MC matching");
434 iDesc.
add<
bool>(
"embedGenPartonMatch",
false)->setComment(
"embed MC matched MC information");
437 iDesc.
add<
bool>(
"addGenJetMatch",
true)->setComment(
"add MC matching");
438 iDesc.
add<
bool>(
"embedGenJetMatch",
false)->setComment(
"embed MC matched MC information");
441 iDesc.
add<
bool>(
"addJetCharge",
true);
445 iDesc.
add<
bool>(
"addJetID",
true)->setComment(
"Add jet ID information");
448 iDesc.
add<
bool>(
"addPartonJetMatch",
false);
452 iDesc.
add<
bool>(
"addAssociatedTracks",
true);
456 iDesc.
add<
bool>(
"addTagInfos",
true);
457 std::vector<edm::InputTag> emptyVInputTags;
458 iDesc.
add<std::vector<edm::InputTag> >(
"tagInfoSources", emptyVInputTags);
461 iDesc.
add<
bool>(
"addJetCorrFactors",
true);
462 iDesc.
add<std::vector<edm::InputTag> >(
"jetCorrFactorsSource", emptyVInputTags);
465 iDesc.
add<
bool>(
"addBTagInfo",
true);
466 iDesc.
add<
bool>(
"addDiscriminators",
true);
467 iDesc.
add<std::vector<edm::InputTag> >(
"discriminatorSources", emptyVInputTags);
470 iDesc.
add<
bool>(
"getJetMCFlavour",
true);
471 iDesc.
add<
bool>(
"useLegacyJetMCFlavour",
false);
472 iDesc.
add<
bool>(
"addJetFlavourInfo",
false);
481 iDesc.
add(
"efficiencies", efficienciesPSet);
482 iDesc.
add<
bool>(
"addEfficiencies",
false);
489 descriptions.
add(
"PATJetProducer", iDesc);
bool enabled() const
'true' if this there is at least one efficiency configured
void setJetID(reco::JetID const &id)
methods for jet ID
void initializeJEC(unsigned int level, const JetCorrFactors::Flavor &flavor=JetCorrFactors::NONE, unsigned int set=0)
initialize the jet to a given JEC level during creation starting from Uncorrected ...
value_type const * get() const
T getParameter(std::string const &) const
pat::helper::EfficiencyLoader efficiencyLoader_
Assists in assimilating all pat::UserData into pat objects.
void setGenParton(const reco::GenParticleRef &gp, bool embed=false)
method to set the matched parton
void newEvent(const edm::Event &event)
To be called for each new event, reads in the ValueMaps for efficiencies.
edm::EDGetTokenT< edm::View< reco::Jet > > jetsToken_
ParameterDescriptionBase * addOptional(U const &iLabel, T const &value)
void addJECFactors(const JetCorrFactors &jec)
add more sets of energy correction factors
bool isNonnull() const
Checks for non-null.
std::vector< edm::EDGetTokenT< edm::View< reco::BaseTagInfo > > > tagInfoTokens_
edm::EDGetTokenT< reco::JetTracksAssociation::Container > trackAssociationToken_
Jets made from CaloTowers.
std::vector< std::string > tagInfoLabels_
std::vector< edm::EDGetTokenT< edm::ValueMap< JetCorrFactors > > > jetCorrFactorsTokens_
bool addAssociatedTracks_
bool getByToken(EDGetToken token, Handle< PROD > &result) const
void setAllowAnything()
allow any parameter label/value pairs
Ptr< value_type > ptrAt(size_type i) const
pat::helper::KinResolutionsLoader resolutionLoader_
#define DEFINE_FWK_MODULE(type)
std::vector< GenJet > GenJetCollection
collection of GenJet objects
std::vector< std::string > discriminatorLabels_
bool exists(std::string const ¶meterName) const
checks if a parameter exists
const edm::RefToBase< reco::Jet > & getCaloJetRef() const
auto vector_transform(std::vector< InputType > const &input, Function predicate) -> std::vector< typename std::remove_cv< typename std::remove_reference< decltype(predicate(input.front()))>::type >::type >
void find(edm::Handle< EcalRecHitCollection > &hits, DetId thisDet, std::vector< EcalRecHitCollection::const_iterator > &hit, bool debug=false)
virtual std::vector< CaloTowerPtr > getCaloConstituents() const
get all constituents
void addBDiscriminatorPair(const std::pair< std::string, float > &thePair)
method to add a algolabel-discriminator pair
void setResolutions(pat::PATObject< T > &obj) const
Sets the efficiencies for this object, using the reference to the original objects.
edm::EDGetTokenT< reco::JetFlavourInfoMatchingCollection > jetFlavourInfoToken_
Jets made from PFObjects.
void setCaloTowers(const CaloTowerFwdPtrCollection &caloTowers)
method to store the CaloJet constituents internally
GreaterByPt< Jet > pTComparator_
bool enabled() const
'true' if this there is at least one efficiency configured
static void fillDescription(edm::ParameterSetDescription &iDesc)
PATJetProducer(const edm::ParameterSet &iConfig)
bool isCaloJet() const
check to see if the jet is a reco::CaloJet
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
edm::EDGetTokenT< reco::JetFloatAssociation::Container > jetChargeToken_
void setHadronFlavour(int hadronFl)
method to set the hadron-based flavour of the jet
void setComment(std::string const &value)
const_iterator begin() const
void setPartonFlavour(int partonFl)
method to set the parton-based flavour of the jet
void setPFCandidates(const PFCandidateFwdPtrCollection &pfCandidates)
method to store the PFCandidate constituents internally
OrphanHandle< PROD > put(std::auto_ptr< PROD > product)
Put a new product.
void newEvent(const edm::Event &event, const edm::EventSetup &setup)
To be called for each new event, reads in the EventSetup object.
Jets made from CaloJets corrected for ZSP and tracks.
Class for the storage of jet correction factors.
void setJetCharge(float jetCharge)
method to set the jet charge
edm::EDGetTokenT< reco::JetIDValueMap > jetIDMapToken_
void setJetFlavourInfo(const reco::JetFlavourInfo &jetFlavourInfo)
method to set the JetFlavourInfo of the jet
ParameterDescriptionBase * add(U const &iLabel, T const &value)
Container::value_type value_type
RefProd< PROD > getRefBeforePut()
bool isPFJet() const
check to see if the jet is a reco::PFJet
bool isNonnull() const
Checks for non-null.
bool isJPTJet() const
check to see if the jet is a reco::JPTJet
pat::PATUserDataHelper< pat::Jet > userDataHelper_
std::vector< reco::PFCandidate > PFCandidateCollection
collection of PFCandidates
void setAssociatedTracks(const reco::TrackRefVector &tracks)
method to set the vector of refs to the tracks associated to this jet
edm::EDGetTokenT< reco::JetFlavourMatchingCollection > jetPartonMapToken_
static void fillDescription(edm::ParameterSetDescription &iDesc)
Method for documentation and validation of PSet.
bool useLegacyJetMCFlavour_
tuple idx
DEBUGGING if hasattr(process,"trackMonIterativeTracking2012"): print "trackMonIterativeTracking2012 D...
std::vector< edm::FwdPtr< CaloTower > > CaloTowerFwdPtrCollection
std::vector< edm::FwdPtr< reco::PFCandidate > > PFCandidateFwdPtrCollection
void setGenJetRef(const edm::FwdRef< reco::GenJetCollection > &gj)
method to set the matched generated jet reference, embedding if requested
void setEfficiencies(pat::PATObject< T > &obj, const R &originalRef) const
Sets the efficiencies for this object, using the reference to the original objects.
Analysis-level calorimeter jet class.
void add(std::string const &label, ParameterSetDescription const &psetDescription)
virtual void produce(edm::Event &iEvent, const edm::EventSetup &iSetup) override
edm::EDGetTokenT< edm::Association< reco::GenJetCollection > > genJetToken_
std::vector< edm::EDGetTokenT< reco::JetFloatAssociation::Container > > discriminatorTokens_
boost::indirect_iterator< typename seq_t::const_iterator > const_iterator
edm::EDGetTokenT< edm::Association< reco::GenParticleCollection > > genPartonToken_
virtual std::vector< reco::PFCandidatePtr > getPFConstituents() const
get all constituents
const_iterator end() const
bool embedGenPartonMatch_
std::pair< typename Association::data_type::first_type, double > match(Reference key, Association association, bool bestMatchByMaxValue)
Generic matching function.
EDGetTokenT< ProductType > mayConsume(edm::InputTag const &tag)
void addTagInfo(const std::string &label, const TagInfoFwdPtrCollection::value_type &info)