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ElectronMVAEstimatorRun2Spring16HZZ Class Reference

#include <ElectronMVAEstimatorRun2Spring16HZZ.h>

Inheritance diagram for ElectronMVAEstimatorRun2Spring16HZZ:
AnyMVAEstimatorRun2Base

Classes

struct  AllVariables
 

Public Types

enum  mvaCategories {
  UNDEFINED = -1, CAT_EB1_PT5to10 = 0, CAT_EB2_PT5to10 = 1, CAT_EE_PT5to10 = 2,
  CAT_EB1_PT10plus = 3, CAT_EB2_PT10plus = 4, CAT_EE_PT10plus = 5
}
 

Public Member Functions

void constrainMVAVariables (AllVariables &) const
 
 ElectronMVAEstimatorRun2Spring16HZZ (const edm::ParameterSet &conf)
 
 ElectronMVAEstimatorRun2Spring16HZZ ()
 
 ElectronMVAEstimatorRun2Spring16HZZ (const std::string &mvaTag, const std::string &conversionsTag="reducedEgamma:reducedConversions", const std::string &beamspotTag="offlineBeamSpot")
 
std::vector< float > fillMVAVariables (const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
 
std::vector< float > fillMVAVariables (const reco::GsfElectron *particle, const edm::Handle< reco::ConversionCollection > conversions, const reco::BeamSpot *beamSpot) const
 
int findCategory (const edm::Ptr< reco::Candidate > &particle) const override
 
int findCategory (const reco::GsfElectron *particle) const
 
const std::string & getName () const final
 
int getNCategories () const override
 
const std::string & getTag () const final
 
void init (const std::vector< std::string > weightFileNames)
 
bool isEndcapCategory (int category) const
 
float mvaValue (const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
 
float mvaValue (const reco::GsfElectron *particle, const edm::EventBase &) const
 
float mvaValue (const int iCategory, const std::vector< float > &vars) const
 
void setConsumes (edm::ConsumesCollector &&) const final
 
 ~ElectronMVAEstimatorRun2Spring16HZZ () override
 
- Public Member Functions inherited from AnyMVAEstimatorRun2Base
 AnyMVAEstimatorRun2Base (const edm::ParameterSet &conf)
 
virtual void getEventContent (const edm::Event &iEvent) const final
 
template<typename... Args>
std::vector< float > packMVAVariables (const Args...args) const
 
virtual ~AnyMVAEstimatorRun2Base ()
 

Public Attributes

const int nCategories = 6
 
- Public Attributes inherited from AnyMVAEstimatorRun2Base
const edm::ParameterSet _conf
 

Private Attributes

AllVariables allMVAVars_
 
const edm::InputTag beamSpotLabel_
 
const edm::InputTag conversionsLabelAOD_
 
const edm::InputTag conversionsLabelMiniAOD_
 
std::vector< std::unique_ptr< const GBRForest > > gbrForest_s
 
const std::string MethodName_
 
const std::string name_ = "ElectronMVAEstimatorRun2Spring16HZZ"
 
const std::string tag_
 

Detailed Description

Definition at line 18 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Member Enumeration Documentation

Constructor & Destructor Documentation

ElectronMVAEstimatorRun2Spring16HZZ::ElectronMVAEstimatorRun2Spring16HZZ ( const edm::ParameterSet conf)

Definition at line 13 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References edm::ParameterSet::getParameter(), init(), and mvaElectronID_Fall17_iso_V1_cff::weightFileNames.

13  :
15  tag_(conf.getParameter<std::string>("mvaTag")),
16  MethodName_("BDTG method"),
17  beamSpotLabel_(conf.getParameter<edm::InputTag>("beamSpot")),
18  conversionsLabelAOD_(conf.getParameter<edm::InputTag>("conversionsAOD")),
19  conversionsLabelMiniAOD_(conf.getParameter<edm::InputTag>("conversionsMiniAOD")) {
20 
21  const std::vector <std::string> weightFileNames
22  = conf.getParameter<std::vector<std::string> >("weightFileNames");
23  init(weightFileNames);
24 }
T getParameter(std::string const &) const
AnyMVAEstimatorRun2Base(const edm::ParameterSet &conf)
void init(const std::vector< std::string > weightFileNames)
ElectronMVAEstimatorRun2Spring16HZZ::ElectronMVAEstimatorRun2Spring16HZZ ( )

Definition at line 45 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

45  :
AnyMVAEstimatorRun2Base(const edm::ParameterSet &conf)
ElectronMVAEstimatorRun2Spring16HZZ::ElectronMVAEstimatorRun2Spring16HZZ ( const std::string &  mvaTag,
const std::string &  conversionsTag = "reducedEgamma:reducedConversions",
const std::string &  beamspotTag = "offlineBeamSpot" 
)
ElectronMVAEstimatorRun2Spring16HZZ::~ElectronMVAEstimatorRun2Spring16HZZ ( )
override

Definition at line 60 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

Referenced by ElectronMVAEstimatorRun2Spring16HZZ().

60  {
61 }

Member Function Documentation

void ElectronMVAEstimatorRun2Spring16HZZ::constrainMVAVariables ( AllVariables allMVAVars) const

Definition at line 394 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::deta, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::detacalo, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::dphi, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::eleEoPout, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::EoP, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::fbrem, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::gsfchi2, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::kfchi2, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::OneMinusE1x5E5x5, and ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::R9.

Referenced by fillMVAVariables(), and getTag().

394  {
395 
396  // Check that variables do not have crazy values
397 
398  if(allMVAVars.fbrem < -1.)
399  allMVAVars.fbrem = -1.;
400 
401  allMVAVars.deta = fabs(allMVAVars.deta);
402  if(allMVAVars.deta > 0.06)
403  allMVAVars.deta = 0.06;
404 
405 
406  allMVAVars.dphi = fabs(allMVAVars.dphi);
407  if(allMVAVars.dphi > 0.6)
408  allMVAVars.dphi = 0.6;
409 
410 
411  if(allMVAVars.EoP > 20.)
412  allMVAVars.EoP = 20.;
413 
414  if(allMVAVars.eleEoPout > 20.)
415  allMVAVars.eleEoPout = 20.;
416 
417 
418  allMVAVars.detacalo = fabs(allMVAVars.detacalo);
419  if(allMVAVars.detacalo > 0.2)
420  allMVAVars.detacalo = 0.2;
421 
422  if(allMVAVars.OneMinusE1x5E5x5 < -1.)
423  allMVAVars.OneMinusE1x5E5x5 = -1;
424 
425  if(allMVAVars.OneMinusE1x5E5x5 > 2.)
426  allMVAVars.OneMinusE1x5E5x5 = 2.;
427 
428 
429 
430  if(allMVAVars.R9 > 5)
431  allMVAVars.R9 = 5;
432 
433  if(allMVAVars.gsfchi2 > 200.)
434  allMVAVars.gsfchi2 = 200;
435 
436 
437  if(allMVAVars.kfchi2 > 10.)
438  allMVAVars.kfchi2 = 10.;
439 
440 
441 }
std::vector< float > ElectronMVAEstimatorRun2Spring16HZZ::fillMVAVariables ( const edm::Ptr< reco::Candidate > &  particle,
const edm::Event iEvent 
) const
overridevirtual

Implements AnyMVAEstimatorRun2Base.

Definition at line 187 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References beamSpotLabel_, conversions_cfi::conversions, conversionsLabelAOD_, conversionsLabelMiniAOD_, Exception, edm::Ptr< T >::get(), edm::Event::getByLabel(), edm::HandleBase::isValid(), nullptr, and edm::Handle< T >::product().

Referenced by getTag(), isEndcapCategory(), and mvaValue().

188  {
189 
190  //
191  // Declare all value maps corresponding to the products we defined earlier
192  //
193  edm::Handle<reco::BeamSpot> theBeamSpot;
195 
196  // Get data needed for conversion rejection
197  iEvent.getByLabel(beamSpotLabel_, theBeamSpot);
198 
199  // Conversions in miniAOD and AOD have different names,
200  // but the same type, so we use the same handle with different tokens.
201  iEvent.getByLabel(conversionsLabelAOD_, conversions);
202  if( !conversions.isValid() )
203  iEvent.getByLabel(conversionsLabelMiniAOD_, conversions);
204 
205  // Make sure everything is retrieved successfully
206  if(! (theBeamSpot.isValid()
207  && conversions.isValid() )
208  )
209  throw cms::Exception("MVA failure: ")
210  << "Failed to retrieve event content needed for this MVA"
211  << std::endl
212  << "Check python MVA configuration file."
213  << std::endl;
214 
215  // Try to cast the particle into a reco particle.
216  // This should work for both reco and pat.
217  const edm::Ptr<reco::GsfElectron> eleRecoPtr = ( edm::Ptr<reco::GsfElectron> )particle;
218  if( eleRecoPtr.get() == nullptr )
219  throw cms::Exception("MVA failure: ")
220  << " given particle is expected to be reco::GsfElectron or pat::Electron," << std::endl
221  << " but appears to be neither" << std::endl;
222  return fillMVAVariables(eleRecoPtr.get(), conversions, theBeamSpot.product());
223 }
T const * get() const
Returns C++ pointer to the item.
Definition: Ptr.h:159
#define nullptr
std::vector< float > fillMVAVariables(const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
bool isValid() const
Definition: HandleBase.h:74
bool getByLabel(InputTag const &tag, Handle< PROD > &result) const
Definition: Event.h:464
T const * product() const
Definition: Handle.h:81
std::vector< float > ElectronMVAEstimatorRun2Spring16HZZ::fillMVAVariables ( const reco::GsfElectron particle,
const edm::Handle< reco::ConversionCollection conversions,
const reco::BeamSpot beamSpot 
) const

Definition at line 227 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References funct::abs(), reco::Vertex::chi2(), pat::Electron::closestCtfTrackRef(), reco::GsfElectron::closestCtfTrackRef(), constexpr, constrainMVAVariables(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::convVtxFitProbability, reco::GsfElectron::deltaEtaSeedClusterTrackAtCalo(), reco::GsfElectron::deltaEtaSuperClusterTrackAtVtx(), reco::GsfElectron::deltaPhiSuperClusterTrackAtVtx(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::deta, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::detacalo, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::dphi, mvaElectronID_Fall17_iso_V1_cff::ebeeSplit, reco::GsfElectron::ecalEnergy(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::eClass, reco::GsfElectron::eEleClusterOverPout(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::eleEoPout, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::EoP, reco::GsfElectron::eSuperClusterOverP(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::etawidth, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::expectedInnerHits, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::expectedMissingInnerHits, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::fbrem, reco::GsfElectron::fbrem(), findCategory(), reco::GsfElectron::full5x5_e1x5(), reco::GsfElectron::full5x5_e5x5(), reco::GsfElectron::full5x5_hcalOverEcal(), reco::GsfElectron::full5x5_r9(), reco::GsfElectron::full5x5_sigmaIetaIeta(), reco::GsfElectron::full5x5_sigmaIphiIphi(), edm::Ref< C, T, F >::get(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::gsfchi2, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::gsfhits, reco::GsfElectron::gsfTrack(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::HoE, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::IoEmIoP, edm::Ref< C, T, F >::isAvailable(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::isBarrel, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::isEndcap, isEndcapCategory(), edm::Ref< C, T, F >::isNonnull(), edm::Ref< C, T, F >::isNull(), reco::Vertex::isValid(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::kfchi2, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::kfhits, ConversionTools::matchedConversion(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::mcCBmatchingCategory, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::mcEventWeight, reco::HitPattern::MISSING_INNER_HITS, reco::Vertex::ndof(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::OneMinusE1x5E5x5, AnyMVAEstimatorRun2Base::packMVAVariables(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::pfRelIso, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::phiwidth, reco::BeamSpot::position(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::PreShowerOverRaw, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::pt, reco::LeafCandidate::pt(), ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::R9, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::SCeta, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::see, ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::spp, reco::GsfElectron::superCluster(), reco::GsfElectron::trackMomentumAtVtx(), badGlobalMuonTaggersAOD_cff::vtx, and ElectronMVAEstimatorRun2Spring16HZZ::AllVariables::vtxconv.

228  {
229 
230 
231  // Both pat and reco particles have exactly the same accessors, so we use a reco ptr
232  // throughout the code, with a single exception as of this writing, handled separately below.
233  auto superCluster = eleRecoPtr->superCluster();
234 
235  AllVariables allMVAVars;
236 
237  // Pure ECAL -> shower shapes
238  allMVAVars.see = eleRecoPtr->full5x5_sigmaIetaIeta();
239  allMVAVars.spp = eleRecoPtr->full5x5_sigmaIphiIphi();
240  allMVAVars.OneMinusE1x5E5x5 = 1. - eleRecoPtr->full5x5_e1x5() / eleRecoPtr->full5x5_e5x5();
241  allMVAVars.R9 = eleRecoPtr->full5x5_r9();
242  allMVAVars.etawidth = superCluster->etaWidth();
243  allMVAVars.phiwidth = superCluster->phiWidth();
244  allMVAVars.HoE = eleRecoPtr->full5x5_hcalOverEcal(); //hadronicOverEm();
245  // Endcap only variables
246  allMVAVars.PreShowerOverRaw = superCluster->preshowerEnergy() / superCluster->rawEnergy();
247 
248  // To get to CTF track information in pat::Electron, we have to have the pointer
249  // to pat::Electron, it is not accessible from the pointer to reco::GsfElectron.
250  // This behavior is reported and is expected to change in the future (post-7.4.5 some time).
251  bool validKF= false;
252  reco::TrackRef myTrackRef = eleRecoPtr->closestCtfTrackRef();
253  const pat::Electron * elePatPtr = dynamic_cast<const pat::Electron *>(eleRecoPtr);
254  // Check if this is really a pat::Electron, and if yes, get the track ref from this new
255  // pointer instead
256  if( elePatPtr != nullptr )
257  myTrackRef = elePatPtr->closestCtfTrackRef();
258  validKF = (myTrackRef.isAvailable() && (myTrackRef.isNonnull()) );
259 
260  //Pure tracking variables
261  allMVAVars.kfhits = (validKF) ? myTrackRef->hitPattern().trackerLayersWithMeasurement() : -1. ;
262  allMVAVars.kfchi2 = (validKF) ? myTrackRef->normalizedChi2() : 0;
263  allMVAVars.gsfchi2 = eleRecoPtr->gsfTrack()->normalizedChi2();
264 
265  // Energy matching
266  allMVAVars.fbrem = eleRecoPtr->fbrem();
267 
268  allMVAVars.gsfhits = eleRecoPtr->gsfTrack()->hitPattern().trackerLayersWithMeasurement();
269  allMVAVars.expectedMissingInnerHits = eleRecoPtr->gsfTrack()
270  ->hitPattern().numberOfLostHits(reco::HitPattern::MISSING_INNER_HITS);
271 
273  conversions,
274  theBeamSpot->position());
275  double vertexFitProbability = -1.;
276  if(!conv_ref.isNull()) {
277  const reco::Vertex &vtx = conv_ref.get()->conversionVertex(); if (vtx.isValid()) {
278  vertexFitProbability = TMath::Prob( vtx.chi2(), vtx.ndof());
279  }
280  }
281  allMVAVars.convVtxFitProbability = vertexFitProbability;
282 
283  allMVAVars.EoP = eleRecoPtr->eSuperClusterOverP();
284  allMVAVars.eleEoPout = eleRecoPtr->eEleClusterOverPout();
285  float pAtVertex = eleRecoPtr->trackMomentumAtVtx().R();
286  allMVAVars.IoEmIoP = (1.0/eleRecoPtr->ecalEnergy()) - (1.0 / pAtVertex );
287 
288  // Geometrical matchings
289  allMVAVars.deta = eleRecoPtr->deltaEtaSuperClusterTrackAtVtx();
290  allMVAVars.dphi = eleRecoPtr->deltaPhiSuperClusterTrackAtVtx();
291  allMVAVars.detacalo = eleRecoPtr->deltaEtaSeedClusterTrackAtCalo();
292 
293  // Spectator variables
294  allMVAVars.pt = eleRecoPtr->pt();
295  float scEta = superCluster->eta();
296  constexpr float ebeeSplit = 1.479;
297  allMVAVars.isBarrel = ( std::abs(scEta) < ebeeSplit );
298  allMVAVars.isEndcap = ( std::abs(scEta) >= ebeeSplit );
299  allMVAVars.SCeta = scEta;
300  // The spectator variables below were examined for training, but
301  // are not necessary for evaluating the discriminator, so they are
302  // given dummy values (the specator variables above are also unimportant).
303  // They are introduced only to match the definition of the discriminator
304  // in the weights file.
305  constexpr unsigned nines = 999;
306  allMVAVars.eClass = nines;
307  allMVAVars.pfRelIso = nines;
308  allMVAVars.expectedInnerHits = nines;
309  allMVAVars.vtxconv = nines;
310  allMVAVars.mcEventWeight = nines;
311  allMVAVars.mcCBmatchingCategory = nines;
312 
313  constrainMVAVariables(allMVAVars);
314 
315  std::vector<float> vars;
316 
317  if( isEndcapCategory( findCategory( eleRecoPtr ) ) ) {
318  vars = packMVAVariables(allMVAVars.see,
319  allMVAVars.spp,
320  allMVAVars.OneMinusE1x5E5x5,
321  allMVAVars.R9,
322  allMVAVars.etawidth,
323  allMVAVars.phiwidth,
324  allMVAVars.HoE,
325  //Pure tracking variables
326  allMVAVars.kfhits,
327  allMVAVars.kfchi2,
328  allMVAVars.gsfchi2,
329  // Energy matching
330  allMVAVars.fbrem,
331  allMVAVars.gsfhits,
332  allMVAVars.expectedMissingInnerHits,
333  allMVAVars.convVtxFitProbability,
334  allMVAVars.EoP,
335  allMVAVars.eleEoPout,
336  allMVAVars.IoEmIoP,
337  // Geometrical matchings
338  allMVAVars.deta,
339  allMVAVars.dphi,
340  allMVAVars.detacalo,
341  // Endcap only variables
342  allMVAVars.PreShowerOverRaw,
343 
344  // Spectator variables
345  allMVAVars.pt,
346  allMVAVars.isBarrel,
347  allMVAVars.isEndcap,
348  allMVAVars.SCeta,
349  allMVAVars.eClass,
350  allMVAVars.pfRelIso,
351  allMVAVars.expectedInnerHits,
352  allMVAVars.vtxconv,
353  allMVAVars.mcEventWeight,
354  allMVAVars.mcCBmatchingCategory);
355  } else {
356  vars = packMVAVariables(allMVAVars.see,
357  allMVAVars.spp,
358  allMVAVars.OneMinusE1x5E5x5,
359  allMVAVars.R9,
360  allMVAVars.etawidth,
361  allMVAVars.phiwidth,
362  allMVAVars.HoE,
363  //Pure tracking variables
364  allMVAVars.kfhits,
365  allMVAVars.kfchi2,
366  allMVAVars.gsfchi2,
367  // Energy matching
368  allMVAVars.fbrem,
369  allMVAVars.gsfhits,
370  allMVAVars.expectedMissingInnerHits,
371  allMVAVars.convVtxFitProbability,
372  allMVAVars.EoP,
373  allMVAVars.eleEoPout,
374  allMVAVars.IoEmIoP,
375  // Geometrical matchings
376  allMVAVars.deta,
377  allMVAVars.dphi,
378  allMVAVars.detacalo,
379  // Spectator variables
380  allMVAVars.pt,
381  allMVAVars.isBarrel,
382  allMVAVars.isEndcap,
383  allMVAVars.SCeta,
384  allMVAVars.eClass,
385  allMVAVars.pfRelIso,
386  allMVAVars.expectedInnerHits,
387  allMVAVars.vtxconv,
388  allMVAVars.mcEventWeight,
389  allMVAVars.mcCBmatchingCategory);
390  }
391  return vars;
392 }
bool isAvailable() const
Definition: Ref.h:577
bool isNonnull() const
Checks for non-null.
Definition: Ref.h:253
bool isValid() const
Tells whether the vertex is valid.
Definition: Vertex.h:68
#define constexpr
std::vector< float > packMVAVariables(const Args...args) const
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
double chi2() const
chi-squares
Definition: Vertex.h:98
T const * get() const
Returns C++ pointer to the item.
Definition: Ref.h:245
bool isNull() const
Checks for null.
Definition: Ref.h:250
double ndof() const
Definition: Vertex.h:105
Analysis-level electron class.
Definition: Electron.h:52
reco::TrackRef closestCtfTrackRef() const override
override the reco::GsfElectron::closestCtfTrackRef method, to access the internal storage of the trac...
int findCategory(const edm::Ptr< reco::Candidate > &particle) const override
static reco::ConversionRef matchedConversion(const reco::GsfElectron &ele, const edm::Handle< reco::ConversionCollection > &convCol, const math::XYZPoint &beamspot, bool allowCkfMatch=true, float lxyMin=2.0, float probMin=1e-6, unsigned int nHitsBeforeVtxMax=0)
int ElectronMVAEstimatorRun2Spring16HZZ::findCategory ( const edm::Ptr< reco::Candidate > &  particle) const
overridevirtual

Implements AnyMVAEstimatorRun2Base.

Definition at line 130 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References edm::Ptr< T >::get(), and nullptr.

Referenced by fillMVAVariables(), getTag(), and mvaValue().

130  {
131 
132  // Try to cast the particle into a reco particle.
133  // This should work for both reco and pat.
134  const edm::Ptr<reco::GsfElectron> eleRecoPtr = ( edm::Ptr<reco::GsfElectron> )particle;
135  if( eleRecoPtr.get() == nullptr )
136  throw cms::Exception("MVA failure: ")
137  << " given particle is expected to be reco::GsfElectron or pat::Electron," << std::endl
138  << " but appears to be neither" << std::endl;
139  return findCategory(eleRecoPtr.get());
140 }
T const * get() const
Returns C++ pointer to the item.
Definition: Ptr.h:159
#define nullptr
int findCategory(const edm::Ptr< reco::Candidate > &particle) const override
int ElectronMVAEstimatorRun2Spring16HZZ::findCategory ( const reco::GsfElectron particle) const

Definition at line 142 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References funct::abs(), CAT_EB1_PT10plus, CAT_EB1_PT5to10, CAT_EB2_PT10plus, CAT_EB2_PT5to10, CAT_EE_PT10plus, CAT_EE_PT5to10, mvaElectronID_Fall17_iso_V1_cff::ebeeSplit, mvaElectronID_Fall17_iso_V1_cff::ebSplit, PVValHelper::eta, isEndcapCategory(), EnergyCorrector::pt, reco::LeafCandidate::pt(), mvaElectronID_Fall17_iso_V1_cff::ptSplit, reco::GsfElectron::superCluster(), and UNDEFINED.

142  {
143  float pt = eleRecoPtr->pt();
144  float eta = eleRecoPtr->superCluster()->eta();
145 
146  //
147  // Determine the category
148  //
149  int iCategory = UNDEFINED;
150  const float ptSplit = 10; // we have above and below 10 GeV categories
151  const float ebSplit = 0.800;// barrel is split into two regions
152  const float ebeeSplit = 1.479; // division between barrel and endcap
153 
154  if (pt < ptSplit && std::abs(eta) < ebSplit)
155  iCategory = CAT_EB1_PT5to10;
156 
157  if (pt < ptSplit && std::abs(eta) >= ebSplit && std::abs(eta) < ebeeSplit)
158  iCategory = CAT_EB2_PT5to10;
159 
160  if (pt < ptSplit && std::abs(eta) >= ebeeSplit)
161  iCategory = CAT_EE_PT5to10;
162 
163  if (pt >= ptSplit && std::abs(eta) < ebSplit)
164  iCategory = CAT_EB1_PT10plus;
165 
166  if (pt >= ptSplit && std::abs(eta) >= ebSplit && std::abs(eta) < ebeeSplit)
167  iCategory = CAT_EB2_PT10plus;
168 
169  if (pt >= ptSplit && std::abs(eta) >= ebeeSplit)
170  iCategory = CAT_EE_PT10plus;
171 
172  return iCategory;
173 }
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
const std::string& ElectronMVAEstimatorRun2Spring16HZZ::getName ( void  ) const
inlinefinalvirtual

Implements AnyMVAEstimatorRun2Base.

Definition at line 101 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

References name_.

Referenced by plotting.Plot::draw().

int ElectronMVAEstimatorRun2Spring16HZZ::getNCategories ( ) const
inlineoverridevirtual
const std::string& ElectronMVAEstimatorRun2Spring16HZZ::getTag ( void  ) const
inlinefinalvirtual
void ElectronMVAEstimatorRun2Spring16HZZ::init ( const std::vector< std::string >  weightFileNames)

Definition at line 26 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References GBRForestTools::createGBRForest(), Exception, gbrForest_s, mps_fire::i, nCategories, and electrons_cff::weightFile.

Referenced by ElectronMVAEstimatorRun2Spring16HZZ().

26  {
27  if( (int)(weightFileNames.size()) != nCategories )
28  throw cms::Exception("MVA config failure: ")
29  << "wrong number of weightfiles" << std::endl;
30 
31  gbrForest_s.clear();
32  // Create a TMVA reader object for each category
33  for(int i=0; i<nCategories; i++){
34 
35  // Use unique_ptr so that all readers are properly cleaned up
36  // when the vector clear() is called in the destructor
37 
40 
41  }
42 
43 }
std::vector< std::unique_ptr< const GBRForest > > gbrForest_s
static std::unique_ptr< const GBRForest > createGBRForest(const std::string &weightFile)
bool ElectronMVAEstimatorRun2Spring16HZZ::isEndcapCategory ( int  category) const
float ElectronMVAEstimatorRun2Spring16HZZ::mvaValue ( const edm::Ptr< reco::Candidate > &  particle,
const edm::Event iEvent 
) const
overridevirtual

Implements AnyMVAEstimatorRun2Base.

Definition at line 79 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References fillMVAVariables(), and findCategory().

Referenced by mvaValue(), and setConsumes().

79  {
80 
81  const int iCategory = findCategory( particle );
82  const std::vector<float> vars = fillMVAVariables( particle, iEvent );
83  return mvaValue(iCategory, vars);
84 }
std::vector< float > fillMVAVariables(const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
float mvaValue(const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
int findCategory(const edm::Ptr< reco::Candidate > &particle) const override
float ElectronMVAEstimatorRun2Spring16HZZ::mvaValue ( const reco::GsfElectron particle,
const edm::EventBase iEvent 
) const

Definition at line 87 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References ecalDrivenElectronSeedsParameters_cff::beamSpot, beamSpotLabel_, conversions_cfi::conversions, conversionsLabelAOD_, fillMVAVariables(), findCategory(), edm::EventBase::getByLabel(), mvaValue(), and edm::Handle< T >::product().

Referenced by mvaValue().

87  {
90  iEvent.getByLabel(conversionsLabelAOD_, conversions);
91  iEvent.getByLabel(beamSpotLabel_, beamSpot);
92  const int iCategory = findCategory( particle );
93  const std::vector<float> vars = fillMVAVariables( particle, conversions, beamSpot.product() );
94  return mvaValue(iCategory, vars);
95 }
std::vector< float > fillMVAVariables(const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
float mvaValue(const edm::Ptr< reco::Candidate > &particle, const edm::Event &) const override
T const * product() const
Definition: Handle.h:81
bool getByLabel(InputTag const &, Handle< T > &) const
Definition: EventBase.h:94
int findCategory(const edm::Ptr< reco::Candidate > &particle) const override
float ElectronMVAEstimatorRun2Spring16HZZ::mvaValue ( const int  iCategory,
const std::vector< float > &  vars 
) const

Definition at line 98 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References gather_cfg::cout, debug, gbrForest_s, MethodName_, and mps_fire::result.

98  {
99  const float result = gbrForest_s.at(iCategory)->GetClassifier(vars.data());
100 
101  const bool debug = false;
102  if(debug) {
103  std::cout << " *** Inside the class MethodName_ " << MethodName_ << std::endl;
104  std::cout << " bin " << iCategory
105  << " fbrem " << vars[11]
106  << " kfchi2 " << vars[9]
107  << " mykfhits " << vars[8]
108  << " gsfchi2 " << vars[10]
109  << " deta " << vars[18]
110  << " dphi " << vars[19]
111  << " detacalo " << vars[20]
112  << " see " << vars[0]
113  << " spp " << vars[1]
114  << " etawidth " << vars[4]
115  << " phiwidth " << vars[5]
116  << " OneMinusE1x5E5x5 " << vars[2]
117  << " R9 " << vars[3]
118  << " HoE " << vars[6]
119  << " EoP " << vars[15]
120  << " IoEmIoP " << vars[17]
121  << " eleEoPout " << vars[16]
122  << " eta " << vars[24]
123  << " pt " << vars[21] << std::endl;
124  std::cout << " ### MVA " << result << std::endl;
125  }
126 
127  return result;
128 }
std::vector< std::unique_ptr< const GBRForest > > gbrForest_s
#define debug
Definition: HDRShower.cc:19
void ElectronMVAEstimatorRun2Spring16HZZ::setConsumes ( edm::ConsumesCollector &&  cc) const
finalvirtual

Reimplemented from AnyMVAEstimatorRun2Base.

Definition at line 64 of file ElectronMVAEstimatorRun2Spring16HZZ.cc.

References beamSpotLabel_, conversionsLabelAOD_, conversionsLabelMiniAOD_, and mvaValue().

Referenced by getTag().

64  {
65 
66  // All tokens for event content needed by this MVA
67 
68  // Beam spot (same for AOD and miniAOD)
70 
71  // Conversions collection (different names in AOD and miniAOD)
74 
75 
76 }
EDGetTokenT< ProductType > consumes(edm::InputTag const &tag)
EDGetTokenT< ProductType > mayConsume(edm::InputTag const &tag)
std::vector< Conversion > ConversionCollection
collectin of Conversion objects
Definition: ConversionFwd.h:9

Member Data Documentation

AllVariables ElectronMVAEstimatorRun2Spring16HZZ::allMVAVars_
private

Definition at line 136 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

const edm::InputTag ElectronMVAEstimatorRun2Spring16HZZ::beamSpotLabel_
private

Definition at line 142 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by fillMVAVariables(), mvaValue(), and setConsumes().

const edm::InputTag ElectronMVAEstimatorRun2Spring16HZZ::conversionsLabelAOD_
private

Definition at line 144 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by fillMVAVariables(), mvaValue(), and setConsumes().

const edm::InputTag ElectronMVAEstimatorRun2Spring16HZZ::conversionsLabelMiniAOD_
private

Definition at line 145 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by fillMVAVariables(), and setConsumes().

std::vector< std::unique_ptr<const GBRForest> > ElectronMVAEstimatorRun2Spring16HZZ::gbrForest_s
private

Definition at line 132 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by init(), and mvaValue().

const std::string ElectronMVAEstimatorRun2Spring16HZZ::MethodName_
private

Definition at line 135 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by mvaValue().

const std::string ElectronMVAEstimatorRun2Spring16HZZ::name_ = "ElectronMVAEstimatorRun2Spring16HZZ"
private

Definition at line 125 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by getName().

const int ElectronMVAEstimatorRun2Spring16HZZ::nCategories = 6

Definition at line 24 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by getNCategories(), and init().

const std::string ElectronMVAEstimatorRun2Spring16HZZ::tag_
private

Definition at line 129 of file ElectronMVAEstimatorRun2Spring16HZZ.h.

Referenced by getTag().