CMS 3D CMS Logo

PFTauPrimaryVertexProducerBase.cc
Go to the documentation of this file.
2 
6 
11 
15 
17 
18 #include <memory>
19 
21  : pftauToken_(consumes<std::vector<reco::PFTau>>(iConfig.getParameter<edm::InputTag>("PFTauTag"))),
22  electronToken_(consumes<edm::View<reco::Electron>>(iConfig.getParameter<edm::InputTag>("ElectronTag"))),
23  muonToken_(consumes<edm::View<reco::Muon>>(iConfig.getParameter<edm::InputTag>("MuonTag"))),
24  pvToken_(consumes<reco::VertexCollection>(iConfig.getParameter<edm::InputTag>("PVTag"))),
25  beamSpotToken_(consumes<reco::BeamSpot>(iConfig.getParameter<edm::InputTag>("beamSpot"))),
26  algorithm_(iConfig.getParameter<int>("Algorithm")),
27  qualityCutsPSet_(iConfig.getParameter<edm::ParameterSet>("qualityCuts")),
28  useBeamSpot_(iConfig.getParameter<bool>("useBeamSpot")),
29  useSelectedTaus_(iConfig.getParameter<bool>("useSelectedTaus")),
30  removeMuonTracks_(iConfig.getParameter<bool>("RemoveMuonTracks")),
31  removeElectronTracks_(iConfig.getParameter<bool>("RemoveElectronTracks")) {
33  std::vector<edm::ParameterSet> discriminators =
34  iConfig.getParameter<std::vector<edm::ParameterSet>>("discriminators");
35  // Build each of our cuts
36  for (auto const& pset : discriminators) {
37  DiscCutPair* newCut = new DiscCutPair();
38  newCut->inputToken_ = consumes<reco::PFTauDiscriminator>(pset.getParameter<edm::InputTag>("discriminator"));
39 
40  if (pset.existsAs<std::string>("selectionCut"))
41  newCut->cutFormula_ = new TFormula("selectionCut", pset.getParameter<std::string>("selectionCut").data());
42  else
43  newCut->cut_ = pset.getParameter<double>("selectionCut");
44  discriminators_.push_back(newCut);
45  }
46  // Build a string cut if desired
47  if (iConfig.exists("cut"))
50  produces<edm::AssociationVector<reco::PFTauRefProd, std::vector<reco::VertexRef>>>();
51  produces<reco::VertexCollection>("PFTauPrimaryVertices");
52 
54 }
55 
57 
58 namespace {
60  const reco::PFCandidate* pfCandPtr = dynamic_cast<const reco::PFCandidate*>(&cand);
61  if (pfCandPtr) {
62  if (pfCandPtr->trackRef().isNonnull())
63  return edm::refToPtr(pfCandPtr->trackRef());
64  else if (pfCandPtr->gsfTrackRef().isNonnull())
65  return edm::refToPtr(pfCandPtr->gsfTrackRef());
66  else
68  }
69  const pat::PackedCandidate* pCand = dynamic_cast<const pat::PackedCandidate*>(&cand);
70  if (pCand && pCand->hasTrackDetails()) {
71  const reco::TrackBase* trkPtr = pCand->bestTrack();
72  return edm::Ptr<reco::TrackBase>(trkPtr, 0);
73  }
75  }
76 } // namespace
77 
79  beginEvent(iEvent, iSetup);
80 
81  // Obtain Collections
82  edm::ESHandle<TransientTrackBuilder> transTrackBuilder;
83  iSetup.get<TransientTrackRecord>().get("TransientTrackBuilder", transTrackBuilder);
84 
86  iEvent.getByToken(pftauToken_, pfTaus);
87 
90  iEvent.getByToken(electronToken_, electrons);
91 
94  iEvent.getByToken(muonToken_, muons);
95 
97  iEvent.getByToken(pvToken_, vertices);
98 
100  if (useBeamSpot_)
101  iEvent.getByToken(beamSpotToken_, beamSpot);
102 
103  // Set Association Map
104  auto avPFTauPV = std::make_unique<edm::AssociationVector<reco::PFTauRefProd, std::vector<reco::VertexRef>>>(
105  reco::PFTauRefProd(pfTaus));
106  auto vertexCollection_out = std::make_unique<reco::VertexCollection>();
107  reco::VertexRefProd vertexRefProd_out = iEvent.getRefBeforePut<reco::VertexCollection>("PFTauPrimaryVertices");
108 
109  // Load each discriminator
110  for (auto& disc : discriminators_) {
112  iEvent.getByToken(disc->inputToken_, discr);
113  disc->discr_ = &(*discr);
114  }
115 
116  // Set event for VerexAssociator if needed
117  if (useInputPV == algorithm_)
118  vertexAssociator_->setEvent(iEvent);
119 
120  // For each Tau Run Algorithim
121  if (pfTaus.isValid()) {
122  for (reco::PFTauCollection::size_type iPFTau = 0; iPFTau < pfTaus->size(); iPFTau++) {
123  reco::PFTauRef tau(pfTaus, iPFTau);
124  reco::VertexRef thePVRef;
125  if (useInputPV == algorithm_) {
126  thePVRef = vertexAssociator_->associatedVertex(*tau);
127  } else if (useFrontPV == algorithm_) {
128  thePVRef = reco::VertexRef(vertices, 0);
129  }
130  reco::Vertex thePV = *thePVRef;
132  // Check if it passed all the discrimiantors
133  bool passed(true);
134  for (auto const& disc : discriminators_) {
135  // Check this discriminator passes
136  bool passedDisc = true;
137  if (disc->cutFormula_)
138  passedDisc = (disc->cutFormula_->Eval((*disc->discr_)[tau]) > 0.5);
139  else
140  passedDisc = ((*disc->discr_)[tau] > disc->cut_);
141  if (!passedDisc) {
142  passed = false;
143  break;
144  }
145  }
146  if (passed && cut_.get()) {
147  passed = (*cut_)(*tau);
148  }
149  if (passed) {
150  std::vector<edm::Ptr<reco::TrackBase>> signalTracks;
151  for (reco::PFTauCollection::size_type jPFTau = 0; jPFTau < pfTaus->size(); jPFTau++) {
152  if (useSelectedTaus_ || iPFTau == jPFTau) {
153  reco::PFTauRef pfTauRef(pfTaus, jPFTau);
155  // Get tracks from PFTau daughters
156  for (const auto& pfcand : pfTauRef->signalChargedHadrCands()) {
157  if (pfcand.isNull())
158  continue;
159  const edm::Ptr<reco::TrackBase>& trackPtr = getTrack(*pfcand);
160  if (trackPtr.isNonnull())
161  signalTracks.push_back(trackPtr);
162  }
163  }
164  }
165  // Get Muon tracks
166  if (removeMuonTracks_) {
167  if (muons.isValid()) {
168  for (const auto& muon : *muons) {
169  if (muon.track().isNonnull())
170  signalTracks.push_back(edm::refToPtr(muon.track()));
171  }
172  }
173  }
174  // Get Electron Tracks
175  if (removeElectronTracks_) {
176  if (electrons.isValid()) {
177  for (const auto& electron : *electrons) {
178  if (electron.track().isNonnull())
179  signalTracks.push_back(edm::refToPtr(electron.track()));
180  if (electron.gsfTrack().isNonnull())
181  signalTracks.push_back(edm::refToPtr(electron.gsfTrack()));
182  }
183  }
184  }
186  // Get Non-Tau tracks
187  std::vector<const reco::Track*> nonTauTracks;
188  nonTauTracksInPV(thePVRef, signalTracks, nonTauTracks);
189 
191  // Refit the vertex
192  TransientVertex transVtx;
193  std::vector<reco::TransientTrack> transTracks;
194  for (const auto track : nonTauTracks) {
195  transTracks.push_back(transTrackBuilder->build(*track));
196  }
197  bool fitOK(true);
198  if (transTracks.size() >= 2) {
200  avf.setWeightThreshold(0.1); //weight per track. allow almost every fit, else --> exception
201  if (!useBeamSpot_) {
202  transVtx = avf.vertex(transTracks);
203  } else {
204  transVtx = avf.vertex(transTracks, *beamSpot);
205  }
206  } else
207  fitOK = false;
208  if (fitOK)
209  thePV = transVtx;
210  }
211  reco::VertexRef vtxRef = reco::VertexRef(vertexRefProd_out, vertexCollection_out->size());
212  vertexCollection_out->push_back(thePV);
213  avPFTauPV->setValue(iPFTau, vtxRef);
214  }
215  }
216  iEvent.put(std::move(vertexCollection_out), "PFTauPrimaryVertices");
217  iEvent.put(std::move(avPFTauPV));
218 }
219 
221  // PFTauPrimaryVertexProducerBase
223 
224  {
226  vpsd1.add<edm::InputTag>("discriminator");
227  vpsd1.add<double>("selectionCut");
228  desc.addVPSet("discriminators", vpsd1);
229  }
230 
231  {
232  edm::ParameterSetDescription pset_signalQualityCuts;
233  pset_signalQualityCuts.add<double>("maxDeltaZ", 0.4);
234  pset_signalQualityCuts.add<double>("minTrackPt", 0.5);
235  pset_signalQualityCuts.add<double>("minTrackVertexWeight", -1.0);
236  pset_signalQualityCuts.add<double>("maxTrackChi2", 100.0);
237  pset_signalQualityCuts.add<unsigned int>("minTrackPixelHits", 0);
238  pset_signalQualityCuts.add<double>("minGammaEt", 1.0);
239  pset_signalQualityCuts.add<unsigned int>("minTrackHits", 3);
240  pset_signalQualityCuts.add<double>("minNeutralHadronEt", 30.0);
241  pset_signalQualityCuts.add<double>("maxTransverseImpactParameter", 0.1);
242  pset_signalQualityCuts.addOptional<bool>("useTracksInsteadOfPFHadrons");
243 
244  edm::ParameterSetDescription pset_vxAssocQualityCuts;
245  pset_vxAssocQualityCuts.add<double>("minTrackPt", 0.5);
246  pset_vxAssocQualityCuts.add<double>("minTrackVertexWeight", -1.0);
247  pset_vxAssocQualityCuts.add<double>("maxTrackChi2", 100.0);
248  pset_vxAssocQualityCuts.add<unsigned int>("minTrackPixelHits", 0);
249  pset_vxAssocQualityCuts.add<double>("minGammaEt", 1.0);
250  pset_vxAssocQualityCuts.add<unsigned int>("minTrackHits", 3);
251  pset_vxAssocQualityCuts.add<double>("maxTransverseImpactParameter", 0.1);
252  pset_vxAssocQualityCuts.addOptional<bool>("useTracksInsteadOfPFHadrons");
253 
254  edm::ParameterSetDescription pset_isolationQualityCuts;
255  pset_isolationQualityCuts.add<double>("maxDeltaZ", 0.2);
256  pset_isolationQualityCuts.add<double>("minTrackPt", 1.0);
257  pset_isolationQualityCuts.add<double>("minTrackVertexWeight", -1.0);
258  pset_isolationQualityCuts.add<double>("maxTrackChi2", 100.0);
259  pset_isolationQualityCuts.add<unsigned int>("minTrackPixelHits", 0);
260  pset_isolationQualityCuts.add<double>("minGammaEt", 1.5);
261  pset_isolationQualityCuts.add<unsigned int>("minTrackHits", 8);
262  pset_isolationQualityCuts.add<double>("maxTransverseImpactParameter", 0.03);
263  pset_isolationQualityCuts.addOptional<bool>("useTracksInsteadOfPFHadrons");
264 
265  edm::ParameterSetDescription pset_qualityCuts;
266  pset_qualityCuts.add<edm::ParameterSetDescription>("signalQualityCuts", pset_signalQualityCuts);
267  pset_qualityCuts.add<edm::ParameterSetDescription>("vxAssocQualityCuts", pset_vxAssocQualityCuts);
268  pset_qualityCuts.add<edm::ParameterSetDescription>("isolationQualityCuts", pset_isolationQualityCuts);
269  pset_qualityCuts.add<std::string>("leadingTrkOrPFCandOption", "leadPFCand");
270  pset_qualityCuts.add<std::string>("pvFindingAlgo", "closestInDeltaZ");
271  pset_qualityCuts.add<edm::InputTag>("primaryVertexSrc", edm::InputTag("offlinePrimaryVertices"));
272  pset_qualityCuts.add<bool>("vertexTrackFiltering", false);
273  pset_qualityCuts.add<bool>("recoverLeadingTrk", false);
274 
275  desc.add<edm::ParameterSetDescription>("qualityCuts", pset_qualityCuts);
276  }
277 
278  desc.add<std::string>("cut", "pt > 18.0 & abs(eta)<2.3");
279  desc.add<int>("Algorithm", 0);
280  desc.add<bool>("RemoveElectronTracks", false);
281  desc.add<bool>("RemoveMuonTracks", false);
282  desc.add<bool>("useBeamSpot", true);
283  desc.add<bool>("useSelectedTaus", false);
284  desc.add<edm::InputTag>("beamSpot", edm::InputTag("offlineBeamSpot"));
285  desc.add<edm::InputTag>("ElectronTag", edm::InputTag("MyElectrons"));
286  desc.add<edm::InputTag>("PFTauTag", edm::InputTag("hpsPFTauProducer"));
287  desc.add<edm::InputTag>("MuonTag", edm::InputTag("MyMuons"));
288  desc.add<edm::InputTag>("PVTag", edm::InputTag("offlinePrimaryVertices"));
289 
290  return desc;
291 }
edm::EDGetTokenT< reco::BeamSpot > beamSpotToken_
T getParameter(std::string const &) const
OrphanHandle< PROD > put(std::unique_ptr< PROD > product)
Put a new product.
Definition: Event.h:131
ParameterDescriptionBase * addOptional(U const &iLabel, T const &value)
bool isNonnull() const
Checks for non-null.
Definition: Ref.h:238
ParameterDescriptionBase * addVPSet(U const &iLabel, ParameterSetDescription const &validator, std::vector< ParameterSet > const &defaults)
Ptr< typename C::value_type > refToPtr(Ref< C, typename C::value_type, refhelper::FindUsingAdvance< C, typename C::value_type > > const &ref)
Definition: RefToPtr.h:18
edm::EDGetTokenT< edm::View< reco::Muon > > muonToken_
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:525
virtual void nonTauTracksInPV(const reco::VertexRef &, const std::vector< edm::Ptr< reco::TrackBase > > &, std::vector< const reco::Track * > &)=0
edm::EDGetTokenT< reco::VertexCollection > pvToken_
reco::TransientTrack build(const reco::Track *p) const
bool exists(std::string const &parameterName) const
checks if a parameter exists
CachingVertex< 5 > vertex(const std::vector< reco::TransientTrack > &) const override
std::vector< Vertex > VertexCollection
collection of Vertex objects
Definition: VertexFwd.h:9
edm::RefProd< PFTauCollection > PFTauRefProd
references to PFTau collection
Definition: PFTauFwd.h:15
uint16_t size_type
virtual void beginEvent(const edm::Event &, const edm::EventSetup &)
reco::TrackRef trackRef() const
Definition: PFCandidate.cc:408
int iEvent
Definition: GenABIO.cc:224
Definition: Muon.py:1
edm::EDGetTokenT< std::vector< reco::PFTau > > pftauToken_
ParameterDescriptionBase * add(U const &iLabel, T const &value)
bool isValid() const
Definition: HandleBase.h:70
edm::Ref< VertexCollection > VertexRef
persistent reference to a Vertex
Definition: VertexFwd.h:13
RefProd< PROD > getRefBeforePut()
Definition: Event.h:156
bool isNonnull() const
Checks for non-null.
Definition: Ptr.h:146
static const TrackGhostTrackState * getTrack(const BasicGhostTrackState *basic)
std::unique_ptr< reco::tau::RecoTauVertexAssociator > vertexAssociator_
PFTauPrimaryVertexProducerBase(const edm::ParameterSet &iConfig)
static edm::ParameterSetDescription getDescriptionsBase()
Particle reconstructed by the particle flow algorithm.
Definition: PFCandidate.h:40
fixed size matrix
HLT enums.
T get() const
Definition: EventSetup.h:73
reco::GsfTrackRef gsfTrackRef() const
Definition: PFCandidate.cc:440
void produce(edm::Event &, const edm::EventSetup &) override
std::unique_ptr< StringCutObjectSelector< reco::PFTau > > cut_
edm::EDGetTokenT< reco::PFTauDiscriminator > inputToken_
edm::EDGetTokenT< edm::View< reco::Electron > > electronToken_
def move(src, dest)
Definition: eostools.py:511