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root/cvsroot/UserCode/MitProd/TreeFiller/src/FillerElectrons.cc
Revision: 1.56
Committed: Sun May 15 14:11:47 2011 UTC (13 years, 11 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_021pre2
Changes since 1.55: +6 -1 lines
Log Message:
fill pf iso variables for electron and photon

File Contents

# User Rev Content
1 bendavid 1.56 // $Id: FillerElectrons.cc,v 1.55 2011/04/23 19:13:14 bendavid Exp $
2 loizides 1.1
3     #include "MitProd/TreeFiller/interface/FillerElectrons.h"
4     #include "DataFormats/TrackReco/interface/Track.h"
5     #include "DataFormats/GsfTrackReco/interface/GsfTrack.h"
6     #include "DataFormats/TrackReco/interface/TrackFwd.h"
7 sixie 1.11 #include "DataFormats/EgammaCandidates/interface/GsfElectron.h"
8     #include "DataFormats/EgammaCandidates/interface/GsfElectronFwd.h"
9     #include "DataFormats/EgammaReco/interface/ClusterShape.h"
10     #include "DataFormats/EgammaReco/interface/BasicClusterShapeAssociation.h"
11 bendavid 1.18 #include "DataFormats/Common/interface/RefToPtr.h"
12 loizides 1.35 #include "DataFormats/Common/interface/ValueMap.h"
13     #include "AnalysisDataFormats/Egamma/interface/ElectronID.h"
14     #include "AnalysisDataFormats/Egamma/interface/ElectronIDAssociation.h"
15 sixie 1.11 #include "RecoEgamma/EgammaIsolationAlgos/interface/ElectronTkIsolation.h"
16     #include "RecoEgamma/EgammaIsolationAlgos/interface/EgammaEcalIsolation.h"
17 sixie 1.14 #include "RecoEgamma/EgammaIsolationAlgos/interface/EgammaTowerIsolation.h"
18 loizides 1.35 #include "RecoEcal/EgammaCoreTools/interface/EcalClusterLazyTools.h"
19 bendavid 1.43 #include "DataFormats/VertexReco/interface/VertexFwd.h"
20     #include "TrackingTools/TransientTrack/interface/TransientTrackBuilder.h"
21     #include "TrackingTools/TransientTrack/plugins/TransientTrackBuilderESProducer.h"
22 bendavid 1.44 #include "RecoVertex/GaussianSumVertexFit/interface/GsfVertexTrackCompatibilityEstimator.h"
23 bendavid 1.43 #include "TrackingTools/IPTools/interface/IPTools.h"
24     #include "RecoEgamma/EgammaTools/interface/ConversionFinder.h"
25     #include "MagneticField/Records/interface/IdealMagneticFieldRecord.h"
26     #include "MagneticField/Engine/interface/MagneticField.h"
27 loizides 1.35 #include "MitAna/DataTree/interface/ElectronCol.h"
28     #include "MitAna/DataTree/interface/Names.h"
29     #include "MitAna/DataTree/interface/Track.h"
30 loizides 1.33 #include "MitEdm/DataFormats/interface/RefToBaseToPtr.h"
31 loizides 1.35 #include "MitProd/ObjectService/interface/ObjectService.h"
32 bendavid 1.45 #include "MitEdm/DataFormats/interface/DecayPart.h"
33     #include "MitEdm/ConversionRejection/interface/ConversionMatcher.h"
34 bendavid 1.51 #include "RecoVertex/VertexTools/interface/LinearizedTrackStateFactory.h"
35     #include "RecoVertex/VertexTools/interface/VertexTrackFactory.h"
36     #include "RecoVertex/VertexPrimitives/interface/VertexTrack.h"
37     #include "RecoVertex/VertexPrimitives/interface/CachingVertex.h"
38     #include "RecoVertex/KalmanVertexFit/interface/KalmanVertexUpdator.h"
39 sixie 1.13
40 loizides 1.1 using namespace std;
41     using namespace edm;
42     using namespace mithep;
43    
44 loizides 1.5 //--------------------------------------------------------------------------------------------------
45 loizides 1.28 FillerElectrons::FillerElectrons(const edm::ParameterSet &cfg, const char *name, bool active) :
46     BaseFiller(cfg,name,active),
47 loizides 1.1 edmName_(Conf().getUntrackedParameter<string>("edmName","pixelMatchGsfElectrons")),
48 bendavid 1.49 expectedHitsName_(Conf().getUntrackedParameter<string>("expectedHitsName","")),
49 loizides 1.1 mitName_(Conf().getUntrackedParameter<string>("mitName",Names::gkElectronBrn)),
50 loizides 1.10 gsfTrackMapName_(Conf().getUntrackedParameter<string>("gsfTrackMapName","")),
51     trackerTrackMapName_(Conf().getUntrackedParameter<string>("trackerTrackMapName","")),
52 sixie 1.12 barrelSuperClusterMapName_(Conf().getUntrackedParameter<string>("barrelSuperClusterMapName","")),
53     endcapSuperClusterMapName_(Conf().getUntrackedParameter<string>("endcapSuperClusterMapName","")),
54 bendavid 1.36 pfSuperClusterMapName_(Conf().getUntrackedParameter<string>("pfSuperClusterMapName","")),
55 loizides 1.16 eIDCutBasedTightName_(Conf().getUntrackedParameter<string>("eIDCutBasedTightName","eidTight")),
56 bendavid 1.43 eIDCutBasedLooseName_(Conf().getUntrackedParameter<string>("eIDCutBasedLooseName","eidLoose")),
57 bendavid 1.49 eIDLikelihoodName_(Conf().getUntrackedParameter<string>("eIDLikelihoodName","")),
58 bendavid 1.43 pvEdmName_(Conf().getUntrackedParameter<string>("pvEdmName","offlinePrimaryVertices")),
59 bendavid 1.52 pvBSEdmName_(Conf().getUntrackedParameter<string>("pvBSEdmName","offlinePrimaryVerticesWithBS")),
60 bendavid 1.54 recomputeConversionInfo_(Conf().getUntrackedParameter<bool>("recomputeConversionInfo",false)),
61 loizides 1.8 electrons_(new mithep::ElectronArr(16)),
62 loizides 1.10 gsfTrackMap_(0),
63 sixie 1.11 trackerTrackMap_(0),
64 sixie 1.12 barrelSuperClusterMap_(0),
65     endcapSuperClusterMap_(0)
66 loizides 1.1 {
67     // Constructor.
68     }
69    
70 loizides 1.5 //--------------------------------------------------------------------------------------------------
71 loizides 1.1 FillerElectrons::~FillerElectrons()
72     {
73     // Destructor.
74 loizides 1.6
75     delete electrons_;
76 loizides 1.1 }
77    
78 loizides 1.5 //--------------------------------------------------------------------------------------------------
79 bendavid 1.42 void FillerElectrons::BookDataBlock(TreeWriter &tws)
80 loizides 1.1 {
81 loizides 1.10 // Add electron branch to our tree and get our maps.
82 loizides 1.1
83 loizides 1.29 tws.AddBranch(mitName_,&electrons_);
84     OS()->add<mithep::ElectronArr>(electrons_,mitName_);
85 loizides 1.10
86 loizides 1.29 if (!gsfTrackMapName_.empty()) {
87     gsfTrackMap_ = OS()->get<TrackMap>(gsfTrackMapName_);
88     if (gsfTrackMap_)
89     AddBranchDep(mitName_,gsfTrackMap_->GetBrName());
90     }
91     if (!trackerTrackMapName_.empty()) {
92     trackerTrackMap_ = OS()->get<TrackMap>(trackerTrackMapName_);
93     if (trackerTrackMap_)
94     AddBranchDep(mitName_,trackerTrackMap_->GetBrName());
95     }
96     if (!barrelSuperClusterMapName_.empty()) {
97     barrelSuperClusterMap_ = OS()->get<SuperClusterMap>(barrelSuperClusterMapName_);
98     if (barrelSuperClusterMap_)
99     AddBranchDep(mitName_,barrelSuperClusterMap_->GetBrName());
100     }
101     if (!endcapSuperClusterMapName_.empty()) {
102     endcapSuperClusterMap_ = OS()->get<SuperClusterMap>(endcapSuperClusterMapName_);
103     if (endcapSuperClusterMap_)
104     AddBranchDep(mitName_,endcapSuperClusterMap_->GetBrName());
105     }
106 bendavid 1.36 if (!pfSuperClusterMapName_.empty()) {
107     pfSuperClusterMap_ = OS()->get<SuperClusterMap>(pfSuperClusterMapName_);
108     if (pfSuperClusterMap_)
109     AddBranchDep(mitName_,pfSuperClusterMap_->GetBrName());
110     }
111 loizides 1.1 }
112    
113 loizides 1.5 //--------------------------------------------------------------------------------------------------
114 loizides 1.29 void FillerElectrons::FillDataBlock(const edm::Event &event, const edm::EventSetup &setup)
115 loizides 1.1 {
116     // Fill electrons from edm collection into our collection.
117    
118 bendavid 1.26 electrons_->Delete();
119 loizides 1.1
120 sixie 1.11 Handle<reco::GsfElectronCollection> hElectronProduct;
121 loizides 1.7 GetProduct(edmName_, hElectronProduct, event);
122 loizides 1.1
123 loizides 1.29 // handles to get the electron ID information
124 peveraer 1.47 Handle<edm::ValueMap<float> > eidLooseMap;
125     GetProduct(eIDCutBasedLooseName_, eidLooseMap, event);
126     Handle<edm::ValueMap<float> > eidTightMap;
127 peveraer 1.48 GetProduct(eIDCutBasedTightName_, eidTightMap, event);
128 bendavid 1.49 edm::Handle<edm::ValueMap<float> > eidLikelihoodMap;
129     if (!eIDLikelihoodName_.empty()) {
130     GetProduct(eIDLikelihoodName_, eidLikelihoodMap, event);
131     }
132    
133 bendavid 1.43 edm::Handle<reco::VertexCollection> hVertex;
134     event.getByLabel(pvEdmName_, hVertex);
135     const reco::VertexCollection *pvCol = hVertex.product();
136 bendavid 1.54
137 bendavid 1.43 edm::Handle<reco::VertexCollection> hVertexBS;
138     event.getByLabel(pvBSEdmName_, hVertexBS);
139     const reco::VertexCollection *pvBSCol = hVertexBS.product();
140    
141     edm::Handle<reco::TrackCollection> hGeneralTracks;
142     event.getByLabel("generalTracks", hGeneralTracks);
143     //const reco::VertexCollection *trackCol = hGeneralTracks.product();
144 bendavid 1.45
145 bendavid 1.54 edm::Handle<reco::GsfTrackCollection> hGsfTracks;
146     event.getByLabel("electronGsfTracks", hGsfTracks);
147    
148 bendavid 1.45 edm::Handle<std::vector<mitedm::DecayPart> > hConversions;
149     event.getByLabel("mvfConversionRemoval", hConversions);
150    
151     mitedm::ConversionMatcher convMatcher;
152 bendavid 1.50
153 bendavid 1.43 edm::ESHandle<TransientTrackBuilder> hTransientTrackBuilder;
154     setup.get<TransientTrackRecord>().get("TransientTrackBuilder",hTransientTrackBuilder);
155     const TransientTrackBuilder *transientTrackBuilder = hTransientTrackBuilder.product();
156 bendavid 1.19
157 bendavid 1.44 GsfVertexTrackCompatibilityEstimator gsfEstimator;
158    
159 bendavid 1.51 LinearizedTrackStateFactory lTrackFactory;
160     VertexTrackFactory<5> vTrackFactory;
161     KalmanVertexUpdator<5> updator;
162    
163 bendavid 1.43 //Get Magnetic Field from event setup, taking value at (0,0,0)
164 bendavid 1.54 edm::ESHandle<MagneticField> magneticField;
165     setup.get<IdealMagneticFieldRecord>().get(magneticField);
166     const double bfield = magneticField->inTesla(GlobalPoint(0.,0.,0.)).z();
167 bendavid 1.43
168 sixie 1.11 const reco::GsfElectronCollection inElectrons = *(hElectronProduct.product());
169 loizides 1.29 // loop over electrons
170 sixie 1.11 for (reco::GsfElectronCollection::const_iterator iM = inElectrons.begin();
171 loizides 1.1 iM != inElectrons.end(); ++iM) {
172 sixie 1.13
173 loizides 1.29 // the index and Ref are needed for the eID association Map
174 sixie 1.13 unsigned int iElectron = iM - inElectrons.begin();
175     reco::GsfElectronRef eRef(hElectronProduct, iElectron);
176    
177 loizides 1.8 mithep::Electron *outElectron = electrons_->AddNew();
178 bendavid 1.31
179     outElectron->SetPtEtaPhi(iM->pt(),iM->eta(),iM->phi());
180 sixie 1.12
181 bendavid 1.40 outElectron->SetCharge(iM->charge());
182     outElectron->SetScPixCharge(iM->scPixCharge());
183    
184 loizides 1.30 outElectron->SetESuperClusterOverP(iM->eSuperClusterOverP());
185     outElectron->SetESeedClusterOverPout(iM->eSeedClusterOverPout());
186     outElectron->SetPIn(iM->trackMomentumAtVtx().R());
187 loizides 1.29 outElectron->SetPOut(iM->trackMomentumOut().R());
188 loizides 1.30 outElectron->SetDeltaEtaSuperClusterTrackAtVtx(iM->deltaEtaSuperClusterTrackAtVtx());
189     outElectron->SetDeltaEtaSeedClusterTrackAtCalo(iM->deltaEtaSeedClusterTrackAtCalo());
190     outElectron->SetDeltaPhiSuperClusterTrackAtVtx(iM->deltaPhiSuperClusterTrackAtVtx());
191     outElectron->SetDeltaPhiSeedClusterTrackAtCalo(iM->deltaPhiSeedClusterTrackAtCalo());
192     outElectron->SetIsEnergyScaleCorrected(iM->isEnergyScaleCorrected());
193 bendavid 1.55 //outElectron->SetIsMomentumCorrected(iM->isMomentumCorrected());
194 bendavid 1.36 outElectron->SetNumberOfClusters(iM->basicClustersSize());
195 loizides 1.30 outElectron->SetClassification(iM->classification());
196 bendavid 1.37 outElectron->SetFBrem(iM->fbrem());
197    
198 loizides 1.38 // pflow electron stuff
199 bendavid 1.41 outElectron->SetIsEcalDriven(iM->ecalDrivenSeed());
200     outElectron->SetIsTrackerDriven(iM->trackerDrivenSeed());
201 bendavid 1.37 outElectron->SetMva(iM->mva());
202    
203 loizides 1.29 // shower shape variables
204 bendavid 1.37 outElectron->SetE15(iM->e1x5());
205     outElectron->SetE25Max(iM->e2x5Max());
206     outElectron->SetE55(iM->e5x5());
207     outElectron->SetCovEtaEta(iM->sigmaEtaEta());
208     outElectron->SetCoviEtaiEta(iM->sigmaIetaIeta());
209     outElectron->SetHadronicOverEm(iM->hcalOverEcal());
210     outElectron->SetHcalDepth1OverEcal(iM->hcalDepth1OverEcal());
211     outElectron->SetHcalDepth2OverEcal(iM->hcalDepth2OverEcal());
212 sixie 1.12
213 loizides 1.38 // fill isolation variables for both cone sizes
214 bendavid 1.37 outElectron->SetEcalRecHitIsoDr04(iM->dr04EcalRecHitSumEt());
215     outElectron->SetHcalDepth1TowerSumEtDr04(iM->dr04HcalDepth1TowerSumEt());
216     outElectron->SetHcalDepth2TowerSumEtDr04(iM->dr04HcalDepth2TowerSumEt());
217     outElectron->SetTrackIsolationDr04(iM->dr04TkSumPt());
218     outElectron->SetEcalRecHitIsoDr03(iM->dr03EcalRecHitSumEt());
219     outElectron->SetHcalTowerSumEtDr03(iM->dr03HcalTowerSumEt());
220     outElectron->SetHcalDepth1TowerSumEtDr03(iM->dr03HcalDepth1TowerSumEt());
221     outElectron->SetHcalDepth2TowerSumEtDr03(iM->dr03HcalDepth2TowerSumEt());
222     outElectron->SetTrackIsolationDr03(iM->dr03TkSumPt());
223    
224 bendavid 1.56 //pflow isolation
225     outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().chargedHadronIso);
226     outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().neutralHadronIso);
227     outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().photonIso);
228    
229 loizides 1.38 // fiducial flags
230 bendavid 1.37 outElectron->SetIsEB(iM->isEB());
231     outElectron->SetIsEE(iM->isEE());
232     outElectron->SetIsEBEEGap(iM->isEBEEGap());
233     outElectron->SetIsEBEtaGap(iM->isEBEtaGap());
234     outElectron->SetIsEBPhiGap(iM->isEBPhiGap());
235     outElectron->SetIsEEDeeGap(iM->isEEDeeGap());
236     outElectron->SetIsEERingGap(iM->isEERingGap());
237 sixie 1.12
238 loizides 1.38 // gsf-tracker match quality
239 bendavid 1.37 outElectron->SetFracSharedHits(iM->shFracInnerHits());
240 sixie 1.15
241 loizides 1.29 // make proper links to Tracks and Super Clusters
242 bendavid 1.49 if (gsfTrackMap_ && iM->gsfTrack().isNonnull()) {
243 bendavid 1.18 outElectron->SetGsfTrk(gsfTrackMap_->GetMit(refToPtr(iM->gsfTrack())));
244 bendavid 1.49 }
245     // make links to ambigous gsf tracks
246     if (gsfTrackMap_) {
247     for (reco::GsfTrackRefVector::const_iterator agsfi = iM->ambiguousGsfTracksBegin(); agsfi != iM->ambiguousGsfTracksEnd(); ++agsfi) {
248     outElectron->AddAmbiguousGsfTrack(gsfTrackMap_->GetMit(refToPtr(*agsfi)));
249     }
250     }
251    
252     // make tracker track links,
253 bendavid 1.37 if (trackerTrackMap_ && iM->closestCtfTrackRef().isNonnull()) {
254 bendavid 1.36 outElectron->SetTrackerTrk(trackerTrackMap_->GetMit(refToPtr(iM->closestCtfTrackRef())));
255 bendavid 1.19 }
256 loizides 1.38 if (barrelSuperClusterMap_ && endcapSuperClusterMap_ &&
257     pfSuperClusterMap_ && iM->superCluster().isNonnull()) {
258 bendavid 1.37 if(barrelSuperClusterMap_->HasMit(iM->superCluster())) {
259 sixie 1.12 outElectron->SetSuperCluster(barrelSuperClusterMap_->GetMit(iM->superCluster()));
260 bendavid 1.36 }
261     else if (endcapSuperClusterMap_->HasMit(iM->superCluster())) {
262 sixie 1.12 outElectron->SetSuperCluster(endcapSuperClusterMap_->GetMit(iM->superCluster()));
263     }
264 bendavid 1.36 else if (pfSuperClusterMap_->HasMit(iM->superCluster())) {
265     outElectron->SetSuperCluster(pfSuperClusterMap_->GetMit(iM->superCluster()));
266     }
267     else throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
268     << "Error! SuperCluster reference in unmapped collection " << edmName_ << endl;
269     }
270 sixie 1.13
271 bendavid 1.43 //compute impact parameter with respect to PV
272     if (iM->gsfTrack().isNonnull()) {
273     const reco::TransientTrack &tt = transientTrackBuilder->build(iM->gsfTrack());
274 bendavid 1.51
275     reco::TransientTrack ttckf;
276    
277 bendavid 1.52 reco::Vertex thevtx;// = pvCol->at(0);
278     reco::Vertex thevtxbs;// = pvBSCol->at(0);
279    
280     double mindzvtx = 9999.;
281     for (uint ivtx = 0; ivtx<pvCol->size(); ++ivtx) {
282     reco::Vertex avtx = pvCol->at(ivtx);
283     double dzvtx = std::abs(iM->gsfTrack()->dz(avtx.position()));
284     if (dzvtx<mindzvtx) {
285     mindzvtx = dzvtx;
286     thevtx = avtx;
287     }
288     }
289    
290     double mindzvtxbs = 9999.;
291 bendavid 1.53 for (uint ivtxbs = 0; ivtxbs<pvBSCol->size(); ++ivtxbs) {
292 bendavid 1.52 reco::Vertex avtxbs = pvBSCol->at(ivtxbs);
293     double dzvtxbs = std::abs(iM->gsfTrack()->dz(avtxbs.position()));
294     if (dzvtxbs<mindzvtxbs) {
295     mindzvtxbs = dzvtxbs;
296     thevtxbs = avtxbs;
297     }
298     }
299    
300 bendavid 1.51
301     //check if closest ctf track is included in PV and if so, remove it before computing impact parameters and uncertainties
302     if (iM->closestCtfTrackRef().isNonnull()) {
303     ttckf = transientTrackBuilder->build(iM->closestCtfTrackRef());
304    
305 bendavid 1.52 if (0) { //don't refit vertex for now
306    
307     if (find(thevtx.tracks_begin(), thevtx.tracks_end(), ttckf.trackBaseRef()) != thevtx.tracks_end()) {
308     GlobalPoint linP(Basic3DVector<float> (thevtx.position()));
309     KalmanVertexUpdator<5>::RefCountedLinearizedTrackState linTrack = lTrackFactory.linearizedTrackState(linP, ttckf);
310     GlobalError err(thevtx.covariance());
311     VertexState vState(linP, err);
312     KalmanVertexUpdator<5>::RefCountedVertexTrack vertexTrack = vTrackFactory.vertexTrack(linTrack, vState);
313    
314     std::vector<KalmanVertexUpdator<5>::RefCountedVertexTrack> initialTracks(1, vertexTrack);
315     CachingVertex<5> cachingVertex(linP, err, initialTracks, thevtx.chi2());
316     const CachingVertex<5> &newCachingVertex = updator.remove(cachingVertex,vertexTrack);
317    
318     if (newCachingVertex.isValid()) {
319     const TransientVertex &tvtx = newCachingVertex;
320     thevtx = tvtx;
321     }
322     }
323    
324     if (find(thevtxbs.tracks_begin(), thevtxbs.tracks_end(), ttckf.trackBaseRef()) != thevtxbs.tracks_end()) {
325     GlobalPoint linP(Basic3DVector<float> (thevtxbs.position()));
326     KalmanVertexUpdator<5>::RefCountedLinearizedTrackState linTrack = lTrackFactory.linearizedTrackState(linP, ttckf);
327     GlobalError err(thevtxbs.covariance());
328     VertexState vState(linP, err);
329     KalmanVertexUpdator<5>::RefCountedVertexTrack vertexTrack = vTrackFactory.vertexTrack(linTrack, vState);
330    
331     std::vector<KalmanVertexUpdator<5>::RefCountedVertexTrack> initialTracks(1, vertexTrack);
332     CachingVertex<5> cachingVertex(linP, err, initialTracks, thevtxbs.chi2());
333     const CachingVertex<5> &newCachingVertex = updator.remove(cachingVertex,vertexTrack);
334    
335     if (newCachingVertex.isValid()) {
336     const TransientVertex &tvtx = newCachingVertex;
337     thevtxbs = tvtx;
338     }
339     }
340 bendavid 1.51 }
341    
342     }
343 bendavid 1.43
344 bendavid 1.51 //preserve sign of transverse impact parameter (cross-product definition from track, not lifetime-signing)
345     const double gsfsign = ( (-iM->gsfTrack()->dxy(thevtx.position())) >=0 ) ? 1. : -1.;
346     const double gsfsignbs = ( (-iM->gsfTrack()->dxy(thevtxbs.position())) >=0 ) ? 1. : -1.;
347    
348     const std::pair<bool,Measurement1D> &d0pv = IPTools::absoluteTransverseImpactParameter(tt,thevtx);
349 bendavid 1.43 if (d0pv.first) {
350 bendavid 1.51 outElectron->SetD0PV(gsfsign*d0pv.second.value());
351 bendavid 1.43 outElectron->SetD0PVErr(d0pv.second.error());
352     }
353 bendavid 1.44 else {
354 bendavid 1.51 outElectron->SetD0PV(-999.0);
355 bendavid 1.44 }
356    
357 bendavid 1.43
358 bendavid 1.51 const std::pair<bool,Measurement1D> &ip3dpv = IPTools::absoluteImpactParameter3D(tt,thevtx);
359 bendavid 1.43 if (ip3dpv.first) {
360 bendavid 1.51 outElectron->SetIp3dPV(gsfsign*ip3dpv.second.value());
361 bendavid 1.43 outElectron->SetIp3dPVErr(ip3dpv.second.error());
362     }
363 bendavid 1.44 else {
364 bendavid 1.51 outElectron->SetIp3dPV(-999.0);
365 bendavid 1.44 }
366 bendavid 1.43
367 bendavid 1.51 const std::pair<bool,Measurement1D> &d0pvbs = IPTools::absoluteTransverseImpactParameter(tt,thevtxbs);
368 bendavid 1.43 if (d0pvbs.first) {
369 bendavid 1.51 outElectron->SetD0PVBS(gsfsignbs*d0pvbs.second.value());
370 bendavid 1.43 outElectron->SetD0PVBSErr(d0pvbs.second.error());
371     }
372 bendavid 1.44 else {
373 bendavid 1.51 outElectron->SetD0PVBS(-999.0);
374 bendavid 1.44 }
375 bendavid 1.43
376 bendavid 1.51 const std::pair<bool,Measurement1D> &ip3dpvbs = IPTools::absoluteImpactParameter3D(tt,thevtxbs);
377 bendavid 1.43 if (ip3dpvbs.first) {
378 bendavid 1.51 outElectron->SetIp3dPVBS(gsfsignbs*ip3dpvbs.second.value());
379 bendavid 1.43 outElectron->SetIp3dPVBSErr(ip3dpvbs.second.error());
380     }
381 bendavid 1.44 else {
382 bendavid 1.51 outElectron->SetIp3dPVBS(-999.0);
383 bendavid 1.44 }
384    
385 bendavid 1.51 if (iM->closestCtfTrackRef().isNonnull()) {
386    
387     const double ckfsign = ( (-iM->closestCtfTrackRef()->dxy(thevtx.position())) >=0 ) ? 1. : -1.;
388     const double ckfsignbs = ( (-iM->closestCtfTrackRef()->dxy(thevtxbs.position())) >=0 ) ? 1. : -1.;
389    
390     const std::pair<bool,Measurement1D> &d0pvckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtx);
391     if (d0pvckf.first) {
392     outElectron->SetD0PVCkf(ckfsign*d0pvckf.second.value());
393     outElectron->SetD0PVCkfErr(d0pvckf.second.error());
394     }
395     else {
396     outElectron->SetD0PVCkf(-999.0);
397     }
398    
399    
400     const std::pair<bool,Measurement1D> &ip3dpvckf = IPTools::absoluteImpactParameter3D(ttckf,thevtx);
401     if (ip3dpvckf.first) {
402     outElectron->SetIp3dPVCkf(ckfsign*ip3dpvckf.second.value());
403     outElectron->SetIp3dPVCkfErr(ip3dpvckf.second.error());
404     }
405     else {
406     outElectron->SetIp3dPVCkf(-999.0);
407     }
408    
409     const std::pair<bool,Measurement1D> &d0pvbsckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtxbs);
410     if (d0pvbsckf.first) {
411     outElectron->SetD0PVBSCkf(ckfsignbs*d0pvbsckf.second.value());
412     outElectron->SetD0PVBSCkfErr(d0pvbsckf.second.error());
413     }
414     else {
415     outElectron->SetD0PVBSCkf(-999.0);
416     }
417    
418     const std::pair<bool,Measurement1D> &ip3dpvbsckf = IPTools::absoluteImpactParameter3D(ttckf,thevtxbs);
419     if (ip3dpvbsckf.first) {
420     outElectron->SetIp3dPVBSCkf(ckfsignbs*ip3dpvbsckf.second.value());
421     outElectron->SetIp3dPVBSCkfErr(ip3dpvbsckf.second.error());
422     }
423     else {
424     outElectron->SetIp3dPVBSCkf(-999.0);
425     }
426     }
427     else {
428     outElectron->SetD0PVCkf(-999.0);
429     outElectron->SetIp3dPVCkf(-999.0);
430     outElectron->SetD0PVBSCkf(-999.0);
431     outElectron->SetIp3dPVBSCkf(-999.0);
432     }
433    
434    
435 bendavid 1.43 if (verbose_>1) {
436     printf("gsf track pt = %5f\n",iM->gsfTrack()->pt());
437     printf("gsf track mode pt = %5f\n",iM->gsfTrack()->ptMode());
438     printf("ttrack pt = %5f\n",tt.initialFreeState().momentum().perp());
439     //printf("ttrackgsf pt = %5f\n",ttgsf.innermostMeasurementState().globalMomentum().perp());
440 bendavid 1.44 printf("ip3dpv reduced chisquared = %5f, probability = %5f\n", ip3dpv.second.value()/ip3dpv.second.error(), TMath::Prob(ip3dpv.second.value()/ip3dpv.second.error(),1));
441     //printf("gsf reduced chisquared = %5f, probability = %5f\n", pvGsfCompat.second/2, TMath::Prob(pvGsfCompat.second,2));
442 bendavid 1.43 }
443    
444     }
445    
446 bendavid 1.53
447 bendavid 1.43 //fill conversion partner track info
448 bendavid 1.54 if (recomputeConversionInfo_) {
449     ConversionFinder convFinder; outElectron->SetConvPartnerDCotTheta(iM->convDcot());
450     ConversionInfo convInfo = convFinder.getConversionInfo(*iM, hGeneralTracks, hGsfTracks, bfield);
451    
452     outElectron->SetConvFlag(convInfo.flag());
453     outElectron->SetConvPartnerDCotTheta(convInfo.dcot());
454     outElectron->SetConvPartnerDist(convInfo.dist());
455     outElectron->SetConvPartnerRadius(convInfo.radiusOfConversion());
456     reco::TrackRef ckfconvTrackRef = convInfo.conversionPartnerCtfTk();
457     reco::GsfTrackRef gsfconvTrackRef = convInfo.conversionPartnerGsfTk();
458    
459    
460     if ( gsfconvTrackRef.isNonnull() && gsfTrackMap_ ) {
461     outElectron->SetConvPartnerTrk(gsfTrackMap_->GetMit(edm::refToPtr(gsfconvTrackRef)));
462     }
463     else if (ckfconvTrackRef.isNonnull() && trackerTrackMap_) {
464     outElectron->SetConvPartnerTrk(trackerTrackMap_->GetMit(edm::refToPtr(ckfconvTrackRef)));
465 bendavid 1.50 }
466 bendavid 1.54 }
467     else {
468     outElectron->SetConvFlag(iM->convFlags());
469     outElectron->SetConvPartnerDCotTheta(iM->convDcot());
470     outElectron->SetConvPartnerDist(iM->convDist());
471     outElectron->SetConvPartnerRadius(iM->convRadius());
472     reco::TrackBaseRef convTrackRef = iM->convPartner();
473     if (convTrackRef.isNonnull()) {
474     if ( dynamic_cast<const reco::GsfTrack*>(convTrackRef.get()) && gsfTrackMap_ ) {
475     outElectron->SetConvPartnerTrk(gsfTrackMap_->GetMit(mitedm::refToBaseToPtr(convTrackRef)));
476     }
477     else if (trackerTrackMap_) {
478     outElectron->SetConvPartnerTrk(trackerTrackMap_->GetMit(mitedm::refToBaseToPtr(convTrackRef)));
479     }
480 bendavid 1.50 }
481 bendavid 1.45 }
482 bendavid 1.43
483 bendavid 1.50
484    
485 loizides 1.29 // fill Electron ID information
486 peveraer 1.47 outElectron->SetPassLooseID((*eidLooseMap)[eRef]);
487     outElectron->SetPassTightID((*eidTightMap)[eRef]);
488 bendavid 1.49 if (!eIDLikelihoodName_.empty()) {
489     outElectron->SetIDLikelihood((*eidLikelihoodMap)[eRef]);
490     }
491    
492     // fill corrected expected inner hits
493 bendavid 1.50 if(iM->gsfTrack().isNonnull()) {
494     outElectron->SetCorrectedNExpectedHitsInner(iM->gsfTrack()->trackerExpectedHitsInner().numberOfHits());
495 bendavid 1.49 }
496 bendavid 1.31
497 bendavid 1.45 //fill additional conversion flag
498     outElectron->SetMatchesVertexConversion(convMatcher.matchesGoodConversion(*iM,hConversions));
499    
500 bendavid 1.31 if (verbose_>1) {
501     double recomass = sqrt(iM->energy()*iM->energy() - iM->p()*iM->p());
502 loizides 1.32 printf(" mithep::Electron, pt=%5f, eta=%5f, phi=%5f, energy=%5f, p=%5f, mass=%5f\n",
503     outElectron->Pt(), outElectron->Eta(), outElectron->Phi(),
504     outElectron->E(), outElectron->P(), outElectron->Mass());
505     printf("reco::GsfElectron , pt=%5f, eta=%5f, phi=%5f, energy=%5f, p=%5f, mass=%5f\n",
506     iM->pt(), iM->eta(), iM->phi(), iM->energy(), iM->p(), recomass);
507 bendavid 1.31 }
508 sixie 1.12 }
509 loizides 1.1 electrons_->Trim();
510     }