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MuonMCClassifier.cc
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1 // -*- C++ -*-
2 //
3 // Package: MuonMCClassifier
4 // Class: MuonMCClassifier
5 //
28 //
29 // Original Author: Nov 16 16:12 (lxplus231.cern.ch)
30 // Created: Sun Nov 16 16:14:09 CET 2008
31 //
32 //
33 
34 
35 // system include files
36 #include <memory>
37 #include <set>
38 
39 // user include files
42 
47 
49 
53 
57 
61 
63 
64 #include <boost/foreach.hpp>
65 #define foreach BOOST_FOREACH
66 
67 //
68 // class decleration
70  public:
71  explicit MuonMCClassifier(const edm::ParameterSet&);
73 
74  private:
75  virtual void produce(edm::Event&, const edm::EventSetup&) override;
78 
83 
86 
89 
92 
95 
100 
102  int flavour(int pdgId) const ;
103 
105  template<typename T>
108  const std::vector<T> & values,
109  const std::string & label) const ;
110 
112  if (tp.isNonnull() && tp->parentVertex().isNonnull() && !tp->parentVertex()->sourceTracks().empty()) {
113  return tp->parentVertex()->sourceTracks()[0];
114  } else {
115  return TrackingParticleRef();
116  }
117  }
118 
122  int convertAndPush(const TrackingParticle &tp,
124  const TrackingParticleRef &momRef,
126 };
127 
129  muonsToken_(consumes<edm::View<reco::Muon> >(iConfig.getParameter<edm::InputTag>("muons"))),
130  hasMuonCut_(iConfig.existsAs<std::string>("muonPreselection")),
131  muonCut_(hasMuonCut_ ? iConfig.getParameter<std::string>("muonPreselection") : ""),
132  trackingParticlesToken_(consumes<TrackingParticleCollection>(iConfig.getParameter<edm::InputTag>("trackingParticles"))),
133  associatorLabel_(iConfig.getParameter< std::string >("associatorLabel")),
134  decayRho_(iConfig.getParameter<double>("decayRho")),
135  decayAbsZ_(iConfig.getParameter<double>("decayAbsZ")),
136  linkToGenParticles_(iConfig.getParameter<bool>("linkToGenParticles")),
137  genParticles_(linkToGenParticles_ ? iConfig.getParameter<edm::InputTag>("genParticles") : edm::InputTag("NONE"))
138 {
139  std::string trackType = iConfig.getParameter< std::string >("trackType");
140  if (trackType == "inner") trackType_ = MuonAssociatorByHits::InnerTk;
141  else if (trackType == "outer") trackType_ = MuonAssociatorByHits::OuterTk;
142  else if (trackType == "global") trackType_ = MuonAssociatorByHits::GlobalTk;
143  else if (trackType == "segments") trackType_ = MuonAssociatorByHits::Segments;
144  else throw cms::Exception("Configuration") << "Track type '" << trackType << "' not supported.\n";
145  if (linkToGenParticles_) {
146  genParticlesToken_ = consumes<reco::GenParticleCollection>(genParticles_);
147  }
148 
149  produces<edm::ValueMap<int> >();
150  produces<edm::ValueMap<int> >("ext");
151  produces<edm::ValueMap<int> >("flav");
152  produces<edm::ValueMap<int> >("hitsPdgId");
153  produces<edm::ValueMap<int> >("momPdgId");
154  produces<edm::ValueMap<int> >("momFlav");
155  produces<edm::ValueMap<int> >("momStatus");
156  produces<edm::ValueMap<int> >("gmomPdgId");
157  produces<edm::ValueMap<int> >("gmomFlav");
158  produces<edm::ValueMap<int> >("hmomFlav"); // heaviest mother flavour
159  produces<edm::ValueMap<int> >("tpId");
160  produces<edm::ValueMap<float> >("prodRho");
161  produces<edm::ValueMap<float> >("prodZ");
162  produces<edm::ValueMap<float> >("momRho");
163  produces<edm::ValueMap<float> >("momZ");
164  produces<edm::ValueMap<float> >("tpAssoQuality");
165  if (linkToGenParticles_) {
166  produces<reco::GenParticleCollection>("secondaries");
167  produces<edm::Association<reco::GenParticleCollection> >("toPrimaries");
168  produces<edm::Association<reco::GenParticleCollection> >("toSecondaries");
169  }
170 }
171 
173 {
174 }
175 
176 void
178 {
179  edm::LogVerbatim("MuonMCClassifier") <<"\n sono in MuonMCClassifier !";
180 
182  iEvent.getByToken(muonsToken_, muons);
183 
185  iEvent.getByToken(trackingParticlesToken_, trackingParticles);
186 
188  if (linkToGenParticles_) {
189  iEvent.getByToken(genParticlesToken_, genParticles);
190  }
191 
192  edm::ESHandle<TrackAssociatorBase> associatorBase;
193  iSetup.get<TrackAssociatorRecord>().get(associatorLabel_, associatorBase);
194  const MuonAssociatorByHits * assoByHits = dynamic_cast<const MuonAssociatorByHits *>(associatorBase.product());
195  if (assoByHits == 0) throw cms::Exception("Configuration") << "The Track Associator with label '" << associatorLabel_ << "' is not a MuonAssociatorByHits.\n";
196 
199  edm::LogVerbatim("MuonMCClassifier") <<"\n ***************************************************************** ";
200  edm::LogVerbatim("MuonMCClassifier") << " RECO MUON association, type: "<< trackType_;
201  edm::LogVerbatim("MuonMCClassifier") << " ***************************************************************** \n";
202 
204  if (!hasMuonCut_) {
205  // all muons
206  selMuons = muons->refVector();
207  } else {
208  // filter, fill refvectors, associate
209  // I pass through pat::Muon so that I can access muon id selectors
210  for (size_t i = 0, n = muons->size(); i < n; ++i) {
211  edm::RefToBase<reco::Muon> rmu = muons->refAt(i);
212  if (muonCut_(pat::Muon(rmu))) selMuons.push_back(rmu);
213  }
214  }
215 
217  for (size_t i = 0, n = trackingParticles->size(); i < n; ++i) {
218  allTPs.push_back(TrackingParticleRef(trackingParticles,i));
219  }
220 
221  assoByHits->associateMuons(recSimColl, simRecColl, selMuons, trackType_, allTPs, &iEvent, &iSetup);
222 
223  // for global muons without hits on muon detectors, look at the linked standalone muon
227  edm::LogVerbatim("MuonMCClassifier") <<"\n ***************************************************************** ";
228  edm::LogVerbatim("MuonMCClassifier") << " STANDALONE (UpdAtVtx) MUON association ";
229  edm::LogVerbatim("MuonMCClassifier") << " ***************************************************************** \n";
230  assoByHits->associateMuons(UpdSTA_recSimColl, UpdSTA_simRecColl, selMuons, MuonAssociatorByHits::OuterTk,
231  allTPs, &iEvent, &iSetup);
232  }
233 
234  typedef MuonAssociatorByHits::MuonToSimCollection::const_iterator r2s_it;
235  typedef MuonAssociatorByHits::SimToMuonCollection::const_iterator s2r_it;
236 
237  size_t nmu = muons->size();
238  edm::LogVerbatim("MuonMCClassifier") <<"\n There are "<<nmu<<" reco::Muons.";
239 
240  std::vector<int> classif(nmu, 0), ext(nmu, 0);
241  std::vector<int> hitsPdgId(nmu, 0), momPdgId(nmu, 0), gmomPdgId(nmu, 0), momStatus(nmu, 0);
242  std::vector<int> flav(nmu, 0), momFlav(nmu, 0), gmomFlav(nmu, 0), hmomFlav(nmu, 0);
243  std::vector<int> tpId(nmu, -1);
244  std::vector<float> prodRho(nmu, 0.0), prodZ(nmu, 0.0), momRho(nmu, 0.0), momZ(nmu, 0.0);
245  std::vector<float> tpAssoQuality(nmu, -1);
246 
247  std::auto_ptr<reco::GenParticleCollection> secondaries; // output collection of secondary muons
248  std::map<TrackingParticleRef, int> tpToSecondaries; // map from tp to (index+1) in output collection
249  std::vector<int> muToPrimary(nmu, -1), muToSecondary(nmu, -1); // map from input into (index) in output, -1 for null
250  if (linkToGenParticles_) secondaries.reset(new reco::GenParticleCollection());
251 
252  for(size_t i = 0; i < nmu; ++i) {
253  edm::LogVerbatim("MuonMCClassifier") <<"\n reco::Muons # "<<i;
254  edm::RefToBase<reco::Muon> mu = muons->refAt(i);
255  if (hasMuonCut_ && (std::find(selMuons.begin(), selMuons.end(), mu) == selMuons.end()) ) {
256  edm::LogVerbatim("MuonMCClassifier") <<"\t muon didn't pass the selection. classified as -99 and skipped";
257  classif[i] = -99; continue;
258  }
259 
261  edm::RefToBase<reco::Muon> muMatchBack;
262  r2s_it match = recSimColl.find(mu);
263  s2r_it matchback;
264  if (match != recSimColl.end()) {
265  edm::LogVerbatim("MuonMCClassifier") <<"\t RtS matched Ok...";
266  // match->second is vector, front is first element, first is the ref (second would be the quality)
267  tp = match->second.front().first;
268  tpId[i] = tp.isNonnull() ? tp.key() : -1; // we check, even if null refs should not appear here at all
269  tpAssoQuality[i] = match->second.front().second;
270  s2r_it matchback = simRecColl.find(tp);
271  if (matchback != simRecColl.end()) {
272  muMatchBack = matchback->second.front().first;
273  } else {
274  edm::LogWarning("MuonMCClassifier") << "\n***WARNING: This I do NOT understand: why no match back? *** \n";
275  }
276  } else if ((trackType_ == MuonAssociatorByHits::GlobalTk) &&
277  mu->isGlobalMuon()) {
278  // perform a second attempt, matching with the standalone muon
279  r2s_it matchSta = UpdSTA_recSimColl.find(mu);
280  if (matchSta != UpdSTA_recSimColl.end()) {
281  edm::LogVerbatim("MuonMCClassifier") <<"\t RtS matched Ok... from the UpdSTA_recSimColl ";
282  tp = matchSta->second.front().first;
283  tpId[i] = tp.isNonnull() ? tp.key() : -1; // we check, even if null refs should not appear here at all
284  tpAssoQuality[i] = matchSta->second.front().second;
285  s2r_it matchback = UpdSTA_simRecColl.find(tp);
286  if (matchback != UpdSTA_simRecColl.end()) {
287  muMatchBack = matchback->second.front().first;
288  } else {
289  edm::LogWarning("MuonMCClassifier") << "\n***WARNING: This I do NOT understand: why no match back in UpdSTA? *** \n";
290  }
291  }
292  }
293  if (tp.isNonnull()) {
294  bool isGhost = muMatchBack != mu;
295  if (isGhost) edm::LogVerbatim("MuonMCClassifier") <<"\t This seems a GHOST ! classif[i] will be < 0";
296 
297  hitsPdgId[i] = tp->pdgId();
298  prodRho[i] = tp->vertex().Rho();
299  prodZ[i] = tp->vertex().Z();
300  edm::LogVerbatim("MuonMCClassifier") <<"\t TP pdgId = "<<hitsPdgId[i] << ", vertex rho = " << prodRho[i] << ", z = " << prodZ[i];
301 
302  // Try to extract mother and grand mother of this muon.
303  // Unfortunately, SIM and GEN histories require diffent code :-(
304  if (!tp->genParticles().empty()) { // Muon is in GEN
305  reco::GenParticleRef genp = tp->genParticles()[0];
306  reco::GenParticleRef genMom = genp->numberOfMothers() > 0 ? genp->motherRef() : reco::GenParticleRef();
307  if (genMom.isNonnull()) {
308  momPdgId[i] = genMom->pdgId();
309  momStatus[i] = genMom->status();
310  momRho[i] = genMom->vertex().Rho(); momZ[i] = genMom->vz();
311  edm::LogVerbatim("MuonMCClassifier") << "\t Particle pdgId = "<<hitsPdgId[i] << " produced at rho = " << prodRho[i] << ", z = " << prodZ[i] << ", has GEN mother pdgId = " << momPdgId[i];
312  reco::GenParticleRef genGMom = genMom->numberOfMothers() > 0 ? genMom->motherRef() : reco::GenParticleRef();
313  if (genGMom.isNonnull()) {
314  gmomPdgId[i] = genGMom->pdgId();
315  edm::LogVerbatim("MuonMCClassifier") << "\t\t mother prod. vertex rho = " << momRho[i] << ", z = " << momZ[i] << ", grand-mom pdgId = " << gmomPdgId[i];
316  }
317  // in this case, we might want to know the heaviest mom flavour
318  for (reco::GenParticleRef nMom = genMom;
319  nMom.isNonnull() && abs(nMom->pdgId()) >= 100; // stop when we're no longer looking at hadrons or mesons
320  nMom = nMom->numberOfMothers() > 0 ? nMom->motherRef() : reco::GenParticleRef()) {
321  int flav = flavour(nMom->pdgId());
322  if (hmomFlav[i] < flav) hmomFlav[i] = flav;
323  edm::LogVerbatim("MuonMCClassifier") << "\t\t backtracking flavour: mom pdgId = "<<nMom->pdgId()<< ", flavour = " << flav << ", heaviest so far = " << hmomFlav[i];
324  }
325  }
326  } else { // Muon is in SIM Only
327  TrackingParticleRef simMom = getTpMother(tp);
328  if (simMom.isNonnull()) {
329  momPdgId[i] = simMom->pdgId();
330  momRho[i] = simMom->vertex().Rho();
331  momZ[i] = simMom->vertex().Z();
332  edm::LogVerbatim("MuonMCClassifier") << "\t Particle pdgId = "<<hitsPdgId[i] << " produced at rho = " << prodRho[i] << ", z = " << prodZ[i] <<
333  ", has SIM mother pdgId = " << momPdgId[i] << " produced at rho = " << simMom->vertex().Rho() << ", z = " << simMom->vertex().Z();
334  if (!simMom->genParticles().empty()) {
335  momStatus[i] = simMom->genParticles()[0]->status();
336  reco::GenParticleRef genGMom = (simMom->genParticles()[0]->numberOfMothers() > 0 ? simMom->genParticles()[0]->motherRef() : reco::GenParticleRef());
337  if (genGMom.isNonnull()) gmomPdgId[i] = genGMom->pdgId();
338  edm::LogVerbatim("MuonMCClassifier") << "\t\t SIM mother is in GEN (status " << momStatus[i] << "), grand-mom id = " << gmomPdgId[i];
339  } else {
340  momStatus[i] = -1;
341  TrackingParticleRef simGMom = getTpMother(simMom);
342  if (simGMom.isNonnull()) gmomPdgId[i] = simGMom->pdgId();
343  edm::LogVerbatim("MuonMCClassifier") << "\t\t SIM mother is in SIM only, grand-mom id = " << gmomPdgId[i];
344  }
345  } else {
346  edm::LogVerbatim("MuonMCClassifier") << "\t Particle pdgId = "<<hitsPdgId[i] << " produced at rho = " << prodRho[i] << ", z = " << prodZ[i] << ", has NO mother!";
347  }
348  }
349  momFlav[i] = flavour(momPdgId[i]);
350  gmomFlav[i] = flavour(gmomPdgId[i]);
351 
352  // Check first IF this is a muon at all
353  if (abs(tp->pdgId()) != 13) {
354  classif[i] = isGhost ? -1 : 1;
355  ext[i] = isGhost ? -1 : 1;
356  edm::LogVerbatim("MuonMCClassifier") <<"\t This is not a muon. Sorry. classif[i] = " << classif[i];
357  continue;
358  }
359 
360  // Is this SIM muon also a GEN muon, with a mother?
361  if (!tp->genParticles().empty() && (momPdgId[i] != 0)) {
362  if (abs(momPdgId[i]) < 100 && (abs(momPdgId[i]) != 15)) {
363  classif[i] = isGhost ? -4 : 4;
364  flav[i] = (abs(momPdgId[i]) == 15 ? 15 : 13);
365  edm::LogVerbatim("MuonMCClassifier") <<"\t This seems PRIMARY MUON ! classif[i] = " << classif[i];
366  ext[i] = 10;
367  } else if (momFlav[i] == 4 || momFlav[i] == 5 || momFlav[i] == 15) {
368  classif[i] = isGhost ? -3 : 3;
369  flav[i] = momFlav[i];
370  if (momFlav[i] == 15) ext[i] = 9; // tau->mu
371  else if (momFlav[i] == 5) ext[i] = 8; // b->mu
372  else if (hmomFlav[i] == 5) ext[i] = 7; // b->c->mu
373  else ext[i] = 6; // c->mu
374  edm::LogVerbatim("MuonMCClassifier") <<"\t This seems HEAVY FLAVOUR ! classif[i] = " << classif[i];
375  } else {
376  classif[i] = isGhost ? -2 : 2;
377  flav[i] = momFlav[i];
378  edm::LogVerbatim("MuonMCClassifier") <<"\t This seems LIGHT FLAVOUR ! classif[i] = " << classif[i];
379  }
380  } else {
381  classif[i] = isGhost ? -2 : 2;
382  flav[i] = momFlav[i];
383  edm::LogVerbatim("MuonMCClassifier") <<"\t This seems LIGHT FLAVOUR ! classif[i] = " << classif[i];
384  }
385  // extended classification
386  if (momPdgId[i] == 0) ext[i] = 2; // if it has no mom, it's not a primary particle so it won't be in ppMuX
387  else if (abs(momPdgId[i]) < 100) ext[i] = (momFlav[i] == 15 ? 9 : 10); // primary mu, or tau->mu
388  else if (momFlav[i] == 5) ext[i] = 8; // b->mu
389  else if (momFlav[i] == 4) ext[i] = (hmomFlav[i] == 5 ? 7 : 6); // b->c->mu and c->mu
390  else if (momStatus[i] != -1) { // primary light particle
391  int id = abs(momPdgId[i]);
392  if (id != /*pi+*/211 && id != /*K+*/321 && id != 130 /*K0L*/) ext[i] = 5; // other light particle, possibly short-lived
393  else if (prodRho[i] < decayRho_ && abs(prodZ[i]) < decayAbsZ_) ext[i] = 4; // decay a la ppMuX (primary pi/K within a cylinder)
394  else ext[i] = 3; // late decay that wouldn't be in ppMuX
395  } else ext[i] = 2; // decay of non-primary particle, would not be in ppMuX
396  if (isGhost) ext[i] = -ext[i];
397 
398  if (linkToGenParticles_ && abs(ext[i]) >= 2) {
399  // Link to the genParticle if possible, but not decays in flight (in ppMuX they're in GEN block, but they have wrong parameters)
400  if (!tp->genParticles().empty() && abs(ext[i]) >= 5) {
401  if (genParticles.id() != tp->genParticles().id()) {
402  throw cms::Exception("Configuration") << "Product ID mismatch between the genParticle collection (" << genParticles_ << ", id " << genParticles.id() << ") and the references in the TrackingParticles (id " << tp->genParticles().id() << ")\n";
403  }
404  muToPrimary[i] = tp->genParticles()[0].key();
405  } else {
406  // Don't put the same trackingParticle twice!
407  int &indexPlus1 = tpToSecondaries[tp]; // will create a 0 if the tp is not in the list already
408  if (indexPlus1 == 0) indexPlus1 = convertAndPush(*tp, *secondaries, getTpMother(tp), genParticles) + 1;
409  muToSecondary[i] = indexPlus1 - 1;
410  }
411  }
412  edm::LogVerbatim("MuonMCClassifier") <<"\t Extended classification code = " << ext[i];
413  }
414  }
415 
416  writeValueMap(iEvent, muons, classif, "");
417  writeValueMap(iEvent, muons, ext, "ext");
418  writeValueMap(iEvent, muons, flav, "flav");
419  writeValueMap(iEvent, muons, tpId, "tpId");
420  writeValueMap(iEvent, muons, hitsPdgId, "hitsPdgId");
421  writeValueMap(iEvent, muons, momPdgId, "momPdgId");
422  writeValueMap(iEvent, muons, momStatus, "momStatus");
423  writeValueMap(iEvent, muons, momFlav, "momFlav");
424  writeValueMap(iEvent, muons, gmomPdgId, "gmomPdgId");
425  writeValueMap(iEvent, muons, gmomFlav, "gmomFlav");
426  writeValueMap(iEvent, muons, hmomFlav, "hmomFlav");
427  writeValueMap(iEvent, muons, prodRho, "prodRho");
428  writeValueMap(iEvent, muons, prodZ, "prodZ");
429  writeValueMap(iEvent, muons, momRho, "momRho");
430  writeValueMap(iEvent, muons, momZ, "momZ");
431  writeValueMap(iEvent, muons, tpAssoQuality, "tpAssoQuality");
432 
433  if (linkToGenParticles_) {
434  edm::OrphanHandle<reco::GenParticleCollection> secHandle = iEvent.put(secondaries, "secondaries");
435  edm::RefProd<reco::GenParticleCollection> priRP(genParticles);
437  std::auto_ptr<edm::Association<reco::GenParticleCollection> > outPri(new edm::Association<reco::GenParticleCollection>(priRP));
438  std::auto_ptr<edm::Association<reco::GenParticleCollection> > outSec(new edm::Association<reco::GenParticleCollection>(secRP));
439  edm::Association<reco::GenParticleCollection>::Filler fillPri(*outPri), fillSec(*outSec);
440  fillPri.insert(muons, muToPrimary.begin(), muToPrimary.end());
441  fillSec.insert(muons, muToSecondary.begin(), muToSecondary.end());
442  fillPri.fill(); fillSec.fill();
443  iEvent.put(outPri, "toPrimaries");
444  iEvent.put(outSec, "toSecondaries");
445  }
446 }
447 
448 template<typename T>
449 void
452  const std::vector<T> & values,
453  const std::string & label) const
454 {
455  using namespace edm;
456  using namespace std;
457  auto_ptr<ValueMap<T> > valMap(new ValueMap<T>());
458  typename edm::ValueMap<T>::Filler filler(*valMap);
459  filler.insert(handle, values.begin(), values.end());
460  filler.fill();
461  iEvent.put(valMap, label);
462 }
463 
464 int
466  int flav = abs(pdgId);
467  // for quarks, leptons and bosons except gluons, take their pdgId
468  // muons and taus have themselves as flavour
469  if (flav <= 37 && flav != 21) return flav;
470  // look for barions
471  int bflav = ((flav / 1000) % 10);
472  if (bflav != 0) return bflav;
473  // look for mesons
474  int mflav = ((flav / 100) % 10);
475  if (mflav != 0) return mflav;
476  return 0;
477 }
478 
479 // push secondary in collection.
480 // if it has a primary mother link to it.
483  const TrackingParticleRef & simMom,
485  out.push_back(reco::GenParticle(tp.charge(), tp.p4(), tp.vertex(), tp.pdgId(), tp.status(), true));
486  if (simMom.isNonnull() && !simMom->genParticles().empty()) {
487  if (genParticles.id() != simMom->genParticles().id()) {
488  throw cms::Exception("Configuration") << "Product ID mismatch between the genParticle collection (" << genParticles_ << ", id " << genParticles.id() << ") and the references in the TrackingParticles (id " << simMom->genParticles().id() << ")\n";
489  }
490  out.back().addMother(simMom->genParticles()[0]);
491  }
492  return out.size()-1;
493 }
494 
495 //define this as a plug-in
edm::InputTag genParticles_
bool linkToGenParticles_
Create a link to the generator level particles.
std::vector< GenParticle > GenParticleCollection
collection of GenParticles
T getParameter(std::string const &) const
int i
Definition: DBlmapReader.cc:9
std::vector< TrackingParticle > TrackingParticleCollection
ProductID id() const
Definition: HandleBase.cc:15
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:434
#define DEFINE_FWK_MODULE(type)
Definition: MakerMacros.h:17
void associateMuons(MuonToSimCollection &recoToSim, SimToMuonCollection &simToReco, const edm::RefToBaseVector< reco::Muon > &, MuonTrackType, const edm::RefVector< TrackingParticleCollection > &, const edm::Event *event=0, const edm::EventSetup *setup=0) const
int pdgId() const
PDG ID.
Point vertex() const
Parent vertex position.
edm::Ref< GenParticleCollection > GenParticleRef
persistent reference to a GenParticle
void insert(const H &h, I begin, I end)
Definition: ValueMap.h:52
const_iterator end() const
bool isGlobalMuon() const
Definition: Muon.h:218
int convertAndPush(const TrackingParticle &tp, reco::GenParticleCollection &out, const TrackingParticleRef &momRef, const edm::Handle< reco::GenParticleCollection > &genParticles) const
void find(edm::Handle< EcalRecHitCollection > &hits, DetId thisDet, std::vector< EcalRecHitCollection::const_iterator > &hit, bool debug=false)
Definition: FindCaloHit.cc:7
int status() const
Status word.
bool isNonnull() const
Checks for non-null.
Definition: Ref.h:250
std::map< TrackingParticleRef, std::vector< std::pair< edm::RefToBase< reco::Muon >, double > > > SimToMuonCollection
int iEvent
Definition: GenABIO.cc:230
OrphanHandle< PROD > put(std::auto_ptr< PROD > product)
Put a new product.
Definition: Event.h:116
tuple handle
Definition: patZpeak.py:22
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
TrackingParticleRef getTpMother(TrackingParticleRef tp)
const int mu
Definition: Constants.h:22
MuonMCClassifier(const edm::ParameterSet &)
std::string associatorLabel_
The Associations.
tuple genp
produce generated paricles in acceptance #
edm::EDGetTokenT< reco::GenParticleCollection > genParticlesToken_
tuple out
Definition: dbtoconf.py:99
MuonAssociatorByHits::MuonTrackType trackType_
Track to use.
const T & get() const
Definition: EventSetup.h:55
const LorentzVector & p4() const
Four-momentum Lorentz vector. Note this is taken from the first SimTrack only.
key_type key() const
Accessor for product key.
Definition: Ref.h:266
T const * product() const
Definition: ESHandle.h:62
void writeValueMap(edm::Event &iEvent, const edm::Handle< edm::View< reco::Muon > > &handle, const std::vector< T > &values, const std::string &label) const
Write a ValueMap&lt;int&gt; in the event.
const_iterator begin() const
double decayRho_
Cylinder to use to decide if a decay is early or late.
edm::EDGetTokenT< edm::View< reco::Muon > > muonsToken_
The RECO objects.
tuple muons
Definition: patZpeak.py:38
void push_back(const RefToBase< T > &)
void push_back(value_type const &ref)
Add a Ref&lt;C, T&gt; to the RefVector.
Definition: RefVector.h:64
Monte Carlo truth information used for tracking validation.
int charge() const
Electric charge. Note this is taken from the first SimTrack only.
std::pair< typename Association::data_type::first_type, double > match(Reference key, Association association, bool bestMatchByMaxValue)
Generic matching function.
Definition: Utils.h:6
ProductID id() const
Accessor for product ID.
Definition: Ref.h:256
int flavour(int pdgId) const
Returns the flavour given a pdg id code.
virtual void produce(edm::Event &, const edm::EventSetup &) override
Analysis-level muon class.
Definition: Muon.h:50
std::map< edm::RefToBase< reco::Muon >, std::vector< std::pair< TrackingParticleRef, double > >, RefToBaseSort > MuonToSimCollection
edm::Ref< TrackingParticleCollection > TrackingParticleRef
edm::EDGetTokenT< TrackingParticleCollection > trackingParticlesToken_
The TrackingParticle objects.
StringCutObjectSelector< pat::Muon > muonCut_