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PFCandidateElectronExtra.h
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1 #ifndef ParticleFlowCandidate_PFCandidateElectronExtra_h
2 #define ParticleFlowCandidate_PFCandidateElectronExtra_h
3 
7 
8 #include <iosfwd>
9 
10 namespace reco {
17  public:
18  enum StatusFlag {
19  X=0, // undefined
20  Selected, // selected
21  ECALDrivenPreselected, // ECAL-driven electron pre-selected
22  MVASelected, // Passed the internal particle-flow selection (mva selection)
23  Rejected // Rejected
24  };
25 
26  // if you had a variable update NMvaVariables
27  enum MvaVariable {
46  };
47 
48 
49  public:
56 
58  void setGsfTrackRef(const reco::GsfTrackRef& ref);
59 
61  void setKfTrackRef(const reco::TrackRef & ref);
62 
65 
67  reco::TrackRef kfTrackRef() const { return kfTrackRef_; }
68 
70  void setLateBrem(float val);
72  void setEarlyBrem(float val);
73 
75  void setGsfTrackPout(const math::XYZTLorentzVector& pout);
76 
78  void setClusterEnergies(const std::vector<float>& energies);
79 
81  void setSigmaEtaEta(float val);
82 
84  void setDeltaEta(float val);
85 
87  void setHadEnergy(float val);
88 
90  void setMVA(float val);
91 
93  void setStatus(StatusFlag type,bool status=true);
94 
96  bool electronStatus(StatusFlag) const ;
97 
99  int electronStatus() const {return status_;}
100 
102  bool mvaStatus(MvaVariable flag) const;
103 
105  const std::vector<float> & mvaVariables() const {return mvaVariables_;}
106 
108  float mvaVariable(MvaVariable var) const;
109 
111  float hadEnergy() const {return hadEnergy_;}
112  float sigmaEtaEta() const {return sigmaEtaEta_;}
113 
114 
115  private:
116  void setVariable(MvaVariable type,float var);
117 
118  private:
123 
125  std::vector<float> clusterEnergies_;
126 
128  std::vector<float> mvaVariables_;
129 
132 
134  int status_;
135 
138  float earlyBrem_;
139  float lateBrem_;
141  float hadEnergy_;
142  float deltaEta_;
143  };
144 
146  std::ostream& operator<<( std::ostream& out, const PFCandidateElectronExtra& c );
147 
148 }
149 #endif
type
Definition: HCALResponse.h:21
reco::GsfTrackRef gsfTrackRef() const
return a reference to the corresponding GSF track
std::vector< float > clusterEnergies_
energy of individual clusters (corrected). The first cluster is the seed
void setGsfTrackRef(const reco::GsfTrackRef &ref)
set gsftrack reference
void setMVA(float val)
set the result (mostly for debugging)
void setLateBrem(float val)
set LateBrem
void setVariable(MvaVariable type, float var)
math::XYZTLorentzVector pout_
Variables entering the MVA that should be saved.
void setSigmaEtaEta(float val)
set the sigmaetaeta
void setGsfTrackPout(const math::XYZTLorentzVector &pout)
set the pout (not trivial to get from the GSF track)
void setClusterEnergies(const std::vector< float > &energies)
set the cluster energies. the Pout should be saved first
void setEarlyBrem(float val)
set EarlyBrem
int mvaStatus_
status of mva variables
int electronStatus() const
access to the status
XYZTLorentzVectorD XYZTLorentzVector
Lorentz vector with cylindrical internal representation using pseudorapidity.
Definition: LorentzVector.h:29
reco::TrackRef kfTrackRef_
Ref to the KF track.
std::ostream & operator<<(std::ostream &, BeamSpot beam)
Definition: BeamSpot.cc:71
reco::TrackRef kfTrackRef() const
return a reference to the corresponding KF track
float hadEnergy() const
access to specific variables
reco::GsfTrackRef gsfTrackRef_
Ref to the GSF track.
void setStatus(StatusFlag type, bool status=true)
set status
void setDeltaEta(float val)
set the delta eta
int status_
Status of the electron.
std::vector< float > mvaVariables_
mva variables - transient !
void setKfTrackRef(const reco::TrackRef &ref)
set kf track reference
bool mvaStatus(MvaVariable flag) const
access to mva variable status
const std::vector< float > & mvaVariables() const
access to the mva variables
float mvaVariable(MvaVariable var) const
access to any variable
void setHadEnergy(float val)
set the had energy. The cluster energies should be entered before
tuple status
Definition: mps_update.py:57