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root/cvsroot/UserCode/MitProd/TreeFiller/src/FillerElectrons.cc
Revision: 1.61
Committed: Sun Jan 15 23:23:42 2012 UTC (13 years, 3 months ago) by pharris
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_025c
Branch point for: Mit_025c_branch
Changes since 1.60: +17 -22 lines
Log Message:
Added flag for unbiased vertex fitting

File Contents

# Content
1 #include "FWCore/MessageLogger/interface/MessageLogger.h"
2 #include "MitProd/TreeFiller/interface/FillerElectrons.h"
3 #include "DataFormats/TrackReco/interface/Track.h"
4 #include "DataFormats/GsfTrackReco/interface/GsfTrack.h"
5 #include "DataFormats/TrackReco/interface/TrackFwd.h"
6 #include "DataFormats/EgammaCandidates/interface/GsfElectron.h"
7 #include "DataFormats/EgammaCandidates/interface/GsfElectronFwd.h"
8 #include "DataFormats/EgammaReco/interface/ClusterShape.h"
9 #include "DataFormats/EgammaReco/interface/BasicClusterShapeAssociation.h"
10 #include "DataFormats/Common/interface/RefToPtr.h"
11 #include "DataFormats/Common/interface/ValueMap.h"
12 #include "AnalysisDataFormats/Egamma/interface/ElectronID.h"
13 #include "AnalysisDataFormats/Egamma/interface/ElectronIDAssociation.h"
14 #include "RecoEgamma/EgammaIsolationAlgos/interface/ElectronTkIsolation.h"
15 #include "RecoEgamma/EgammaIsolationAlgos/interface/EgammaEcalIsolation.h"
16 #include "RecoEgamma/EgammaIsolationAlgos/interface/EgammaTowerIsolation.h"
17 #include "RecoEcal/EgammaCoreTools/interface/EcalClusterLazyTools.h"
18 #include "DataFormats/VertexReco/interface/VertexFwd.h"
19 #include "TrackingTools/TransientTrack/interface/TransientTrackBuilder.h"
20 #include "TrackingTools/TransientTrack/plugins/TransientTrackBuilderESProducer.h"
21 #include "RecoVertex/GaussianSumVertexFit/interface/GsfVertexTrackCompatibilityEstimator.h"
22 #include "TrackingTools/IPTools/interface/IPTools.h"
23 #include "RecoEgamma/EgammaTools/interface/ConversionFinder.h"
24 #include "MagneticField/Records/interface/IdealMagneticFieldRecord.h"
25 #include "MagneticField/Engine/interface/MagneticField.h"
26 #include "MitAna/DataTree/interface/ElectronCol.h"
27 #include "MitAna/DataTree/interface/Names.h"
28 #include "MitAna/DataTree/interface/Track.h"
29 #include "MitEdm/DataFormats/interface/RefToBaseToPtr.h"
30 #include "MitProd/ObjectService/interface/ObjectService.h"
31 #include "MitEdm/DataFormats/interface/DecayPart.h"
32 #include "MitEdm/ConversionRejection/interface/ConversionMatcher.h"
33 #include "RecoVertex/VertexTools/interface/LinearizedTrackStateFactory.h"
34 #include "RecoVertex/VertexTools/interface/VertexTrackFactory.h"
35 #include "RecoVertex/VertexPrimitives/interface/VertexTrack.h"
36 #include "RecoVertex/VertexPrimitives/interface/CachingVertex.h"
37 #include "RecoVertex/KalmanVertexFit/interface/KalmanVertexUpdator.h"
38 #include "MitEdm/Tools/interface/VertexReProducer.h"
39
40 using namespace std;
41 using namespace edm;
42 using namespace mithep;
43
44 //--------------------------------------------------------------------------------------------------
45 FillerElectrons::FillerElectrons(const edm::ParameterSet &cfg, const char *name, bool active) :
46 BaseFiller(cfg,name,active),
47 edmName_(Conf().getUntrackedParameter<string>("edmName","pixelMatchGsfElectrons")),
48 expectedHitsName_(Conf().getUntrackedParameter<string>("expectedHitsName","")),
49 mitName_(Conf().getUntrackedParameter<string>("mitName",Names::gkElectronBrn)),
50 gsfTrackMapName_(Conf().getUntrackedParameter<string>("gsfTrackMapName","")),
51 trackerTrackMapName_(Conf().getUntrackedParameter<string>("trackerTrackMapName","")),
52 barrelSuperClusterMapName_(Conf().getUntrackedParameter<string>("barrelSuperClusterMapName","")),
53 endcapSuperClusterMapName_(Conf().getUntrackedParameter<string>("endcapSuperClusterMapName","")),
54 checkClusterActive_(Conf().getUntrackedParameter<bool>("requireClusterAndGsfMap",true)),
55 pfSuperClusterMapName_(Conf().getUntrackedParameter<string>("pfSuperClusterMapName","")),
56 eIDCutBasedTightName_(Conf().getUntrackedParameter<string>("eIDCutBasedTightName","eidTight")),
57 eIDCutBasedLooseName_(Conf().getUntrackedParameter<string>("eIDCutBasedLooseName","eidLoose")),
58 eIDLikelihoodName_(Conf().getUntrackedParameter<string>("eIDLikelihoodName","")),
59 pvEdmName_(Conf().getUntrackedParameter<string>("pvEdmName","offlinePrimaryVertices")),
60 pvBSEdmName_(Conf().getUntrackedParameter<string>("pvBSEdmName","offlinePrimaryVerticesWithBS")),
61 recomputeConversionInfo_(Conf().getUntrackedParameter<bool>("recomputeConversionInfo",false)),
62 fitUnbiasedVertex_(Conf().getUntrackedParameter<bool>("fitUnbiasedVertex",true)),
63 electrons_(new mithep::ElectronArr(16)),
64 gsfTrackMap_(0),
65 trackerTrackMap_(0),
66 barrelSuperClusterMap_(0),
67 endcapSuperClusterMap_(0)
68 {
69 // Constructor.
70 }
71
72 //--------------------------------------------------------------------------------------------------
73 FillerElectrons::~FillerElectrons()
74 {
75 // Destructor.
76
77 delete electrons_;
78 }
79
80 //--------------------------------------------------------------------------------------------------
81 void FillerElectrons::BookDataBlock(TreeWriter &tws)
82 {
83 // Add electron branch to our tree and get our maps.
84
85 tws.AddBranch(mitName_,&electrons_);
86 OS()->add<mithep::ElectronArr>(electrons_,mitName_);
87 if (!gsfTrackMapName_.empty()) {
88 gsfTrackMap_ = OS()->get<TrackMap>(gsfTrackMapName_);
89 if (gsfTrackMap_)
90 AddBranchDep(mitName_,gsfTrackMap_->GetBrName());
91 }
92 if (!trackerTrackMapName_.empty()) {
93 trackerTrackMap_ = OS()->get<TrackMap>(trackerTrackMapName_);
94 if (trackerTrackMap_)
95 AddBranchDep(mitName_,trackerTrackMap_->GetBrName());
96 }
97 if (!barrelSuperClusterMapName_.empty()) {
98 barrelSuperClusterMap_ = OS()->get<SuperClusterMap>(barrelSuperClusterMapName_);
99 if (barrelSuperClusterMap_)
100 AddBranchDep(mitName_,barrelSuperClusterMap_->GetBrName());
101 }
102 if (!endcapSuperClusterMapName_.empty()) {
103 endcapSuperClusterMap_ = OS()->get<SuperClusterMap>(endcapSuperClusterMapName_);
104 if (endcapSuperClusterMap_)
105 AddBranchDep(mitName_,endcapSuperClusterMap_->GetBrName());
106 }
107 if (!pfSuperClusterMapName_.empty()) {
108 pfSuperClusterMap_ = OS()->get<SuperClusterMap>(pfSuperClusterMapName_);
109 if (pfSuperClusterMap_)
110 AddBranchDep(mitName_,pfSuperClusterMap_->GetBrName());
111 }
112 }
113
114 //--------------------------------------------------------------------------------------------------
115 void FillerElectrons::FillDataBlock(const edm::Event &event, const edm::EventSetup &setup)
116 {
117 // Fill electrons from edm collection into our collection.
118
119 electrons_->Delete();
120
121 Handle<reco::GsfElectronCollection> hElectronProduct;
122 GetProduct(edmName_, hElectronProduct, event);
123
124 // handles to get the electron ID information
125 Handle<edm::ValueMap<float> > eidLooseMap;
126 GetProduct(eIDCutBasedLooseName_, eidLooseMap, event);
127 Handle<edm::ValueMap<float> > eidTightMap;
128 GetProduct(eIDCutBasedTightName_, eidTightMap, event);
129 edm::Handle<edm::ValueMap<float> > eidLikelihoodMap;
130 if (!eIDLikelihoodName_.empty()) {
131 GetProduct(eIDLikelihoodName_, eidLikelihoodMap, event);
132 }
133
134 edm::Handle<reco::VertexCollection> hVertex;
135 event.getByLabel(pvEdmName_, hVertex);
136 const reco::VertexCollection *pvCol = hVertex.product();
137 edm::Handle<reco::VertexCollection> hVertexBS;
138 event.getByLabel(pvBSEdmName_, hVertexBS);
139 const reco::VertexCollection *pvBSCol = hVertexBS.product();
140 edm::Handle<reco::TrackCollection> hGeneralTracks;
141 event.getByLabel("generalTracks", hGeneralTracks);
142 //const reco::VertexCollection *trackCol = hGeneralTracks.product();
143
144 edm::Handle<reco::GsfTrackCollection> hGsfTracks;
145 event.getByLabel("electronGsfTracks", hGsfTracks);
146
147 edm::Handle<std::vector<mitedm::DecayPart> > hConversions;
148 event.getByLabel("mvfConversionRemoval", hConversions);
149
150 mitedm::ConversionMatcher convMatcher;
151
152 edm::ESHandle<TransientTrackBuilder> hTransientTrackBuilder;
153 setup.get<TransientTrackRecord>().get("TransientTrackBuilder",hTransientTrackBuilder);
154 const TransientTrackBuilder *transientTrackBuilder = hTransientTrackBuilder.product();
155
156 GsfVertexTrackCompatibilityEstimator gsfEstimator;
157
158 LinearizedTrackStateFactory lTrackFactory;
159 VertexTrackFactory<5> vTrackFactory;
160 KalmanVertexUpdator<5> updator;
161
162 //Get Magnetic Field from event setup, taking value at (0,0,0)
163 edm::ESHandle<MagneticField> magneticField;
164 setup.get<IdealMagneticFieldRecord>().get(magneticField);
165 const double bfield = magneticField->inTesla(GlobalPoint(0.,0.,0.)).z();
166
167 const reco::GsfElectronCollection inElectrons = *(hElectronProduct.product());
168 // loop over electrons
169 for (reco::GsfElectronCollection::const_iterator iM = inElectrons.begin();
170 iM != inElectrons.end(); ++iM) {
171
172 // the index and Ref are needed for the eID association Map
173 unsigned int iElectron = iM - inElectrons.begin();
174 reco::GsfElectronRef eRef(hElectronProduct, iElectron);
175
176 mithep::Electron *outElectron = electrons_->AddNew();
177
178 outElectron->SetPtEtaPhi(iM->pt(),iM->eta(),iM->phi());
179
180 outElectron->SetCharge(iM->charge());
181 outElectron->SetScPixCharge(iM->scPixCharge());
182 outElectron->SetESuperClusterOverP(iM->eSuperClusterOverP());
183 outElectron->SetESeedClusterOverPout(iM->eSeedClusterOverPout());
184 outElectron->SetPIn(iM->trackMomentumAtVtx().R());
185 outElectron->SetPOut(iM->trackMomentumOut().R());
186 outElectron->SetDeltaEtaSuperClusterTrackAtVtx(iM->deltaEtaSuperClusterTrackAtVtx());
187 outElectron->SetDeltaEtaSeedClusterTrackAtCalo(iM->deltaEtaSeedClusterTrackAtCalo());
188 outElectron->SetDeltaPhiSuperClusterTrackAtVtx(iM->deltaPhiSuperClusterTrackAtVtx());
189 outElectron->SetDeltaPhiSeedClusterTrackAtCalo(iM->deltaPhiSeedClusterTrackAtCalo());
190 outElectron->SetIsEnergyScaleCorrected(iM->isEnergyScaleCorrected());
191 //outElectron->SetIsMomentumCorrected(iM->isMomentumCorrected());
192 outElectron->SetNumberOfClusters(iM->basicClustersSize());
193 outElectron->SetClassification(iM->classification());
194 outElectron->SetFBrem(iM->fbrem());
195
196 // pflow electron stuff
197 outElectron->SetIsEcalDriven(iM->ecalDrivenSeed());
198 outElectron->SetIsTrackerDriven(iM->trackerDrivenSeed());
199 outElectron->SetMva(iM->mva());
200
201 // shower shape variables
202 outElectron->SetE15(iM->e1x5());
203 outElectron->SetE25Max(iM->e2x5Max());
204 outElectron->SetE55(iM->e5x5());
205 outElectron->SetCovEtaEta(iM->sigmaEtaEta());
206 outElectron->SetCoviEtaiEta(iM->sigmaIetaIeta());
207 outElectron->SetHadronicOverEm(iM->hcalOverEcal());
208 outElectron->SetHcalDepth1OverEcal(iM->hcalDepth1OverEcal());
209 outElectron->SetHcalDepth2OverEcal(iM->hcalDepth2OverEcal());
210
211 // fill isolation variables for both cone sizes
212 outElectron->SetEcalRecHitIsoDr04(iM->dr04EcalRecHitSumEt());
213 outElectron->SetHcalDepth1TowerSumEtDr04(iM->dr04HcalDepth1TowerSumEt());
214 outElectron->SetHcalDepth2TowerSumEtDr04(iM->dr04HcalDepth2TowerSumEt());
215 outElectron->SetTrackIsolationDr04(iM->dr04TkSumPt());
216 outElectron->SetEcalRecHitIsoDr03(iM->dr03EcalRecHitSumEt());
217 outElectron->SetHcalTowerSumEtDr03(iM->dr03HcalTowerSumEt());
218 outElectron->SetHcalDepth1TowerSumEtDr03(iM->dr03HcalDepth1TowerSumEt());
219 outElectron->SetHcalDepth2TowerSumEtDr03(iM->dr03HcalDepth2TowerSumEt());
220 outElectron->SetTrackIsolationDr03(iM->dr03TkSumPt());
221
222 //pflow isolation
223 outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().chargedHadronIso);
224 outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().neutralHadronIso);
225 outElectron->SetPFChargedHadronIso(iM->pfIsolationVariables().photonIso);
226
227 // fiducial flags
228 outElectron->SetIsEB(iM->isEB());
229 outElectron->SetIsEE(iM->isEE());
230 outElectron->SetIsEBEEGap(iM->isEBEEGap());
231 outElectron->SetIsEBEtaGap(iM->isEBEtaGap());
232 outElectron->SetIsEBPhiGap(iM->isEBPhiGap());
233 outElectron->SetIsEEDeeGap(iM->isEEDeeGap());
234 outElectron->SetIsEERingGap(iM->isEERingGap());
235
236 // gsf-tracker match quality
237 outElectron->SetFracSharedHits(iM->shFracInnerHits());
238
239 // make proper links to Tracks and Super Clusters
240 if (gsfTrackMap_ && iM->gsfTrack().isNonnull()) {
241 try{outElectron->SetGsfTrk(gsfTrackMap_->GetMit(refToPtr(iM->gsfTrack())));}
242 catch(...) {
243 if(checkClusterActive_) throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
244 << "Error! GSF track unmapped collection " << edmName_ << endl;
245 }
246 }
247 // make links to ambigous gsf tracks
248 if (gsfTrackMap_) {
249 for (reco::GsfTrackRefVector::const_iterator agsfi = iM->ambiguousGsfTracksBegin(); agsfi != iM->ambiguousGsfTracksEnd(); ++agsfi) {
250 try{outElectron->AddAmbiguousGsfTrack(gsfTrackMap_->GetMit(refToPtr(*agsfi)));}
251 catch(...) {
252 if(checkClusterActive_) throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
253 << "Error! GSF track unmapped collection " << edmName_ << endl;
254 }
255 }
256 }
257
258 // make tracker track links,
259 if (trackerTrackMap_ && iM->closestCtfTrackRef().isNonnull()) {
260 outElectron->SetTrackerTrk(trackerTrackMap_->GetMit(refToPtr(iM->closestCtfTrackRef())));
261 }
262
263 if (barrelSuperClusterMap_ && endcapSuperClusterMap_ &&
264 pfSuperClusterMap_ && iM->superCluster().isNonnull()) {
265 if(barrelSuperClusterMap_->HasMit(iM->superCluster())) {
266 outElectron->SetSuperCluster(barrelSuperClusterMap_->GetMit(iM->superCluster()));
267 }
268 else if (endcapSuperClusterMap_->HasMit(iM->superCluster())) {
269 outElectron->SetSuperCluster(endcapSuperClusterMap_->GetMit(iM->superCluster()));
270 }
271 else if (pfSuperClusterMap_->HasMit(iM->superCluster())) {
272 outElectron->SetSuperCluster(pfSuperClusterMap_->GetMit(iM->superCluster()));
273 }
274 else if(checkClusterActive_) {
275 throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
276 << "Error! SuperCluster reference in unmapped collection " << edmName_ << endl;
277 }
278 }
279
280 //compute impact parameter with respect to PV
281 if (iM->gsfTrack().isNonnull()) {
282 const reco::TransientTrack &tt = transientTrackBuilder->build(iM->gsfTrack());
283
284 reco::TransientTrack ttckf;
285
286 reco::Vertex thevtx = pvCol->at(0);
287 reco::Vertex thevtxbs = pvBSCol->at(0);
288
289 reco::Vertex thevtxub = pvCol->at(0);
290 reco::Vertex thevtxubbs = pvBSCol->at(0);
291
292 //check if closest ctf track is included in PV and if so, remove it before computing impact parameters and uncertainties
293 if (iM->closestCtfTrackRef().isNonnull()) {
294 ttckf = transientTrackBuilder->build(iM->closestCtfTrackRef());
295
296 //check if closest ctf track is included in PV and if so, remove it from the collection of
297 //tracks associated with the PV and perform a refit before computing impact parameters and uncertainties
298 reco::TrackCollection newTkCollection;
299 bool foundMatch = false;
300 for(reco::Vertex::trackRef_iterator itk = thevtx.tracks_begin(); itk!=thevtx.tracks_end(); itk++) {
301 if(iM->closestCtfTrack().ctfTrack.isNonnull()) {
302 bool refMatching = (itk->get() == &*(iM->closestCtfTrack().ctfTrack));
303 float shFraction = iM->closestCtfTrack().shFracInnerHits;
304 if(refMatching && shFraction > 0.5) {
305 foundMatch = true;
306 continue;
307 }
308 }
309 newTkCollection.push_back(*itk->get());
310 }
311
312 if(foundMatch && fitUnbiasedVertex_) {
313 edm::Handle<reco::BeamSpot> bs;
314 event.getByLabel(edm::InputTag("offlineBeamSpot"),bs);
315
316 VertexReProducer revertex(hVertex,event); //Needs to be fixed
317
318 edm::Handle<reco::BeamSpot> pvbeamspot;
319 event.getByLabel(revertex.inputBeamSpot(),pvbeamspot);
320 vector<TransientVertex> pvs = revertex.makeVertices(newTkCollection,*pvbeamspot,setup);
321 if(pvs.size()>0) {
322 thevtxub = pvs.front(); // take the first in the list
323 }
324 VertexReProducer revertexbs(hVertexBS,event);
325 edm::Handle<reco::BeamSpot> pvbsbeamspot;
326 event.getByLabel(revertexbs.inputBeamSpot(),pvbsbeamspot);
327 vector<TransientVertex> pvbss = revertexbs.makeVertices(newTkCollection,*pvbsbeamspot,setup);
328 if(pvbss.size()>0) {
329 thevtxubbs = pvbss.front(); // take the first in the list
330 }
331 }
332 }
333 //preserve sign of transverse impact parameter (cross-product definition from track, not lifetime-signing)
334 const double gsfsign = ( (-iM->gsfTrack()->dxy(thevtx.position())) >=0 ) ? 1. : -1.;
335 const double gsfsignbs = ( (-iM->gsfTrack()->dxy(thevtxbs.position())) >=0 ) ? 1. : -1.;
336 const std::pair<bool,Measurement1D> &d0pv = IPTools::absoluteTransverseImpactParameter(tt,thevtx);
337 if (d0pv.first) {
338 outElectron->SetD0PV(gsfsign*d0pv.second.value());
339 outElectron->SetD0PVErr(d0pv.second.error());
340 }
341 else {
342 outElectron->SetD0PV(-999.0);
343 }
344
345 const std::pair<bool,Measurement1D> &ip3dpv = IPTools::absoluteImpactParameter3D(tt,thevtx);
346 if (ip3dpv.first) {
347 outElectron->SetIp3dPV(gsfsign*ip3dpv.second.value());
348 outElectron->SetIp3dPVErr(ip3dpv.second.error());
349 }
350 else {
351 outElectron->SetIp3dPV(-999.0);
352 }
353
354 const std::pair<bool,Measurement1D> &d0pvbs = IPTools::absoluteTransverseImpactParameter(tt,thevtxbs);
355 if (d0pvbs.first) {
356 outElectron->SetD0PVBS(gsfsignbs*d0pvbs.second.value());
357 outElectron->SetD0PVBSErr(d0pvbs.second.error());
358 }
359 else {
360 outElectron->SetD0PVBS(-999.0);
361 }
362
363 const std::pair<bool,Measurement1D> &ip3dpvbs = IPTools::absoluteImpactParameter3D(tt,thevtxbs);
364 if (ip3dpvbs.first) {
365 outElectron->SetIp3dPVBS(gsfsignbs*ip3dpvbs.second.value());
366 outElectron->SetIp3dPVBSErr(ip3dpvbs.second.error());
367 }
368 else {
369 outElectron->SetIp3dPVBS(-999.0);
370 }
371
372 const std::pair<bool,Measurement1D> &d0pvub = IPTools::absoluteTransverseImpactParameter(tt,thevtxub);
373 if (d0pvub.first) {
374 outElectron->SetD0PVUB(gsfsign*d0pvub.second.value());
375 outElectron->SetD0PVUBErr(d0pvub.second.error());
376 }
377 else {
378 outElectron->SetD0PVUB(-999.0);
379 }
380
381
382 const std::pair<bool,Measurement1D> &ip3dpvub = IPTools::absoluteImpactParameter3D(tt,thevtxub);
383 if (ip3dpvub.first) {
384 outElectron->SetIp3dPVUB(gsfsign*ip3dpvub.second.value());
385 outElectron->SetIp3dPVUBErr(ip3dpvub.second.error());
386 }
387 else {
388 outElectron->SetIp3dPVUB(-999.0);
389 }
390
391 const std::pair<bool,Measurement1D> &d0pvubbs = IPTools::absoluteTransverseImpactParameter(tt,thevtxubbs);
392 if (d0pvubbs.first) {
393 outElectron->SetD0PVUBBS(gsfsignbs*d0pvubbs.second.value());
394 outElectron->SetD0PVUBBSErr(d0pvubbs.second.error());
395 }
396 else {
397 outElectron->SetD0PVUBBS(-999.0);
398 }
399
400 const std::pair<bool,Measurement1D> &ip3dpvubbs = IPTools::absoluteImpactParameter3D(tt,thevtxubbs);
401 if (ip3dpvubbs.first) {
402 outElectron->SetIp3dPVUBBS(gsfsignbs*ip3dpvubbs.second.value());
403 outElectron->SetIp3dPVUBBSErr(ip3dpvubbs.second.error());
404 }
405 else {
406 outElectron->SetIp3dPVUBBS(-999.0);
407 }
408
409 if (iM->closestCtfTrackRef().isNonnull()) {
410
411 const double ckfsign = ( (-iM->closestCtfTrackRef()->dxy(thevtx.position())) >=0 ) ? 1. : -1.;
412 const double ckfsignbs = ( (-iM->closestCtfTrackRef()->dxy(thevtxbs.position())) >=0 ) ? 1. : -1.;
413
414 const std::pair<bool,Measurement1D> &d0pvckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtx);
415 if (d0pvckf.first) {
416 outElectron->SetD0PVCkf(ckfsign*d0pvckf.second.value());
417 outElectron->SetD0PVCkfErr(d0pvckf.second.error());
418 }
419 else {
420 outElectron->SetD0PVCkf(-999.0);
421 }
422
423
424 const std::pair<bool,Measurement1D> &ip3dpvckf = IPTools::absoluteImpactParameter3D(ttckf,thevtx);
425 if (ip3dpvckf.first) {
426 outElectron->SetIp3dPVCkf(ckfsign*ip3dpvckf.second.value());
427 outElectron->SetIp3dPVCkfErr(ip3dpvckf.second.error());
428 }
429 else {
430 outElectron->SetIp3dPVCkf(-999.0);
431 }
432
433 const std::pair<bool,Measurement1D> &d0pvbsckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtxbs);
434 if (d0pvbsckf.first) {
435 outElectron->SetD0PVBSCkf(ckfsignbs*d0pvbsckf.second.value());
436 outElectron->SetD0PVBSCkfErr(d0pvbsckf.second.error());
437 }
438 else {
439 outElectron->SetD0PVBSCkf(-999.0);
440 }
441
442 const std::pair<bool,Measurement1D> &ip3dpvbsckf = IPTools::absoluteImpactParameter3D(ttckf,thevtxbs);
443 if (ip3dpvbsckf.first) {
444 outElectron->SetIp3dPVBSCkf(ckfsignbs*ip3dpvbsckf.second.value());
445 outElectron->SetIp3dPVBSCkfErr(ip3dpvbsckf.second.error());
446 }
447 else {
448 outElectron->SetIp3dPVBSCkf(-999.0);
449 }
450 //////////////
451
452 const std::pair<bool,Measurement1D> &d0pvubckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtxub);
453 if (d0pvubckf.first) {
454 outElectron->SetD0PVUBCkf(ckfsign*d0pvubckf.second.value());
455 outElectron->SetD0PVUBCkfErr(d0pvubckf.second.error());
456 }
457 else {
458 outElectron->SetD0PVUBCkf(-999.0);
459 }
460
461
462 const std::pair<bool,Measurement1D> &ip3dpvubckf = IPTools::absoluteImpactParameter3D(ttckf,thevtxub);
463 if (ip3dpvubckf.first) {
464 outElectron->SetIp3dPVUBCkf(ckfsign*ip3dpvubckf.second.value());
465 outElectron->SetIp3dPVUBCkfErr(ip3dpvubckf.second.error());
466 }
467 else {
468 outElectron->SetIp3dPVUBCkf(-999.0);
469 }
470
471 const std::pair<bool,Measurement1D> &d0pvubbsckf = IPTools::absoluteTransverseImpactParameter(ttckf,thevtxubbs);
472 if (d0pvubbsckf.first) {
473 outElectron->SetD0PVUBBSCkf(ckfsignbs*d0pvubbsckf.second.value());
474 outElectron->SetD0PVUBBSCkfErr(d0pvubbsckf.second.error());
475 }
476 else {
477 outElectron->SetD0PVUBBSCkf(-999.0);
478 }
479
480 const std::pair<bool,Measurement1D> &ip3dpvubbsckf = IPTools::absoluteImpactParameter3D(ttckf,thevtxubbs);
481 if (ip3dpvubbsckf.first) {
482 outElectron->SetIp3dPVUBBSCkf(ckfsignbs*ip3dpvubbsckf.second.value());
483 outElectron->SetIp3dPVUBBSCkfErr(ip3dpvubbsckf.second.error());
484 }
485 else {
486 outElectron->SetIp3dPVUBBSCkf(-999.0);
487 }
488
489 }
490 else {
491 outElectron->SetD0PVCkf(-999.0);
492 outElectron->SetIp3dPVCkf(-999.0);
493 outElectron->SetD0PVBSCkf(-999.0);
494 outElectron->SetIp3dPVBSCkf(-999.0);
495
496 outElectron->SetD0PVUBCkf(-999.0);
497 outElectron->SetIp3dPVUBCkf(-999.0);
498 outElectron->SetD0PVUBBSCkf(-999.0);
499 outElectron->SetIp3dPVUBBSCkf(-999.0);
500 }
501
502 if (verbose_>1) {
503 printf("gsf track pt = %5f\n",iM->gsfTrack()->pt());
504 printf("gsf track mode pt = %5f\n",iM->gsfTrack()->ptMode());
505 printf("ttrack pt = %5f\n",tt.initialFreeState().momentum().perp());
506 //printf("ttrackgsf pt = %5f\n",ttgsf.innermostMeasurementState().globalMomentum().perp());
507 printf("ip3dpv reduced chisquared = %5f, probability = %5f\n", ip3dpv.second.value()/ip3dpv.second.error(), TMath::Prob(ip3dpv.second.value()/ip3dpv.second.error(),1));
508 //printf("gsf reduced chisquared = %5f, probability = %5f\n", pvGsfCompat.second/2, TMath::Prob(pvGsfCompat.second,2));
509 }
510 }
511
512
513 //fill conversion partner track info
514 if (recomputeConversionInfo_) {
515 ConversionFinder convFinder; outElectron->SetConvPartnerDCotTheta(iM->convDcot());
516 ConversionInfo convInfo = convFinder.getConversionInfo(*iM, hGeneralTracks, hGsfTracks, bfield);
517
518 outElectron->SetConvFlag(convInfo.flag());
519 outElectron->SetConvPartnerDCotTheta(convInfo.dcot());
520 outElectron->SetConvPartnerDist(convInfo.dist());
521 outElectron->SetConvPartnerRadius(convInfo.radiusOfConversion());
522 reco::TrackRef ckfconvTrackRef = convInfo.conversionPartnerCtfTk();
523 reco::GsfTrackRef gsfconvTrackRef = convInfo.conversionPartnerGsfTk();
524
525
526 if ( gsfconvTrackRef.isNonnull() && gsfTrackMap_ ) {
527 try {outElectron->SetConvPartnerTrk(gsfTrackMap_->GetMit(edm::refToPtr(gsfconvTrackRef)));}
528 catch(...) {
529 if(checkClusterActive_) throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
530 << "Error! GSF track unmapped collection " << edmName_ << endl;
531 }
532
533 }
534 else if (ckfconvTrackRef.isNonnull() && trackerTrackMap_) {
535 outElectron->SetConvPartnerTrk(trackerTrackMap_->GetMit(edm::refToPtr(ckfconvTrackRef)));
536 }
537 }
538 else {
539 outElectron->SetConvFlag(iM->convFlags());
540 outElectron->SetConvPartnerDCotTheta(iM->convDcot());
541 outElectron->SetConvPartnerDist(iM->convDist());
542 outElectron->SetConvPartnerRadius(iM->convRadius());
543 reco::TrackBaseRef convTrackRef = iM->convPartner();
544 if (convTrackRef.isNonnull()) {
545 if ( dynamic_cast<const reco::GsfTrack*>(convTrackRef.get()) && gsfTrackMap_ ) {
546 try{outElectron->SetConvPartnerTrk(gsfTrackMap_->GetMit(mitedm::refToBaseToPtr(convTrackRef)));}
547 catch(...) {
548 if(checkClusterActive_) throw edm::Exception(edm::errors::Configuration, "FillerElectrons:FillDataBlock()\n")
549 << "Error! GSF track unmapped collection " << edmName_ << endl;
550 }
551 }
552 else if (trackerTrackMap_) {
553 outElectron->SetConvPartnerTrk(trackerTrackMap_->GetMit(mitedm::refToBaseToPtr(convTrackRef)));
554 }
555 }
556 }
557
558
559
560 // fill Electron ID information
561 outElectron->SetPassLooseID((*eidLooseMap)[eRef]);
562 outElectron->SetPassTightID((*eidTightMap)[eRef]);
563 if (!eIDLikelihoodName_.empty()) {
564 outElectron->SetIDLikelihood((*eidLikelihoodMap)[eRef]);
565 }
566 // fill corrected expected inner hits
567 if(iM->gsfTrack().isNonnull()) {
568 outElectron->SetCorrectedNExpectedHitsInner(iM->gsfTrack()->trackerExpectedHitsInner().numberOfHits());
569 }
570 //fill additional conversion flag
571 outElectron->SetMatchesVertexConversion(convMatcher.matchesGoodConversion(*iM,hConversions));
572
573 if (verbose_>1) {
574 double recomass = sqrt(iM->energy()*iM->energy() - iM->p()*iM->p());
575 printf(" mithep::Electron, pt=%5f, eta=%5f, phi=%5f, energy=%5f, p=%5f, mass=%5f\n",
576 outElectron->Pt(), outElectron->Eta(), outElectron->Phi(),
577 outElectron->E(), outElectron->P(), outElectron->Mass());
578 printf("reco::GsfElectron , pt=%5f, eta=%5f, phi=%5f, energy=%5f, p=%5f, mass=%5f\n",
579 iM->pt(), iM->eta(), iM->phi(), iM->energy(), iM->p(), recomass);
580 }
581 }
582 electrons_->Trim();
583 }