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List of all members | Public Member Functions | Static Public Member Functions | Private Member Functions | Private Attributes
GeneralPurposeTrackAnalyzer Class Reference

#include <Alignment/OfflineValidation/plugins/GeneralPurposeTrackAnalyzer.cc>

Inheritance diagram for GeneralPurposeTrackAnalyzer:
edm::one::EDAnalyzer< edm::one::WatchRuns, edm::one::SharedResources > edm::one::EDAnalyzerBase edm::EDConsumerBase

Public Member Functions

 GeneralPurposeTrackAnalyzer (const edm::ParameterSet &pset)
 
template<class OBJECT_TYPE >
int GetIndex (const std::vector< OBJECT_TYPE * > &vec, const TString &name)
 
 ~GeneralPurposeTrackAnalyzer () override
 
- Public Member Functions inherited from edm::one::EDAnalyzer< edm::one::WatchRuns, edm::one::SharedResources >
 EDAnalyzer ()=default
 
SerialTaskQueueglobalLuminosityBlocksQueue () final
 
SerialTaskQueueglobalRunsQueue () final
 
bool wantsGlobalLuminosityBlocks () const final
 
bool wantsGlobalRuns () const final
 
bool wantsInputProcessBlocks () const final
 
bool wantsProcessBlocks () const final
 
- Public Member Functions inherited from edm::one::EDAnalyzerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
 EDAnalyzerBase ()
 
ModuleDescription const & moduleDescription () const
 
bool wantsStreamLuminosityBlocks () const
 
bool wantsStreamRuns () const
 
 ~EDAnalyzerBase () override
 
- Public Member Functions inherited from edm::EDConsumerBase
std::vector< ConsumesInfoconsumesInfo () const
 
void convertCurrentProcessAlias (std::string const &processName)
 Convert "@currentProcess" in InputTag process names to the actual current process name. More...
 
 EDConsumerBase ()
 
 EDConsumerBase (EDConsumerBase &&)=default
 
 EDConsumerBase (EDConsumerBase const &)=delete
 
ESProxyIndex const * esGetTokenIndices (edm::Transition iTrans) const
 
std::vector< ESProxyIndex > const & esGetTokenIndicesVector (edm::Transition iTrans) const
 
std::vector< ESRecordIndex > const & esGetTokenRecordIndicesVector (edm::Transition iTrans) const
 
ProductResolverIndexAndSkipBit indexFrom (EDGetToken, BranchType, TypeID const &) const
 
void itemsMayGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
void itemsToGet (BranchType, std::vector< ProductResolverIndexAndSkipBit > &) const
 
std::vector< ProductResolverIndexAndSkipBit > const & itemsToGetFrom (BranchType iType) const
 
void labelsForToken (EDGetToken iToken, Labels &oLabels) const
 
void modulesWhoseProductsAreConsumed (std::array< std::vector< ModuleDescription const * > *, NumBranchTypes > &modulesAll, std::vector< ModuleProcessName > &modulesInPreviousProcesses, ProductRegistry const &preg, std::map< std::string, ModuleDescription const * > const &labelsToDesc, std::string const &processName) const
 
EDConsumerBaseoperator= (EDConsumerBase &&)=default
 
EDConsumerBase const & operator= (EDConsumerBase const &)=delete
 
bool registeredToConsume (ProductResolverIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
ProductResolverIndexAndSkipBit uncheckedIndexFrom (EDGetToken) const
 
void updateLookup (BranchType iBranchType, ProductResolverIndexHelper const &, bool iPrefetchMayGet)
 
void updateLookup (eventsetup::ESRecordsToProxyIndices const &)
 
virtual ~EDConsumerBase () noexcept(false)
 

Static Public Member Functions

static void fillDescriptions (edm::ConfigurationDescriptions &)
 
- Static Public Member Functions inherited from edm::one::EDAnalyzerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 

Private Member Functions

void analyze (const edm::Event &event, const edm::EventSetup &setup) override
 
void beginJob () override
 
void beginRun (edm::Run const &run, edm::EventSetup const &setup) override
 
void endJob () override
 
void endRun (edm::Run const &, edm::EventSetup const &) override
 
bool isHit2D (const TrackingRecHit &hit)
 

Private Attributes

edm::InputTag BeamSpotTag_
 
edm::EDGetTokenT< reco::BeamSpotbeamspotToken
 
std::map< int, std::pair< int, float > > conditionsMap_
 
float etaMax_
 
TH1D * evtsByTrigger_
 
TH1D * fieldByRun_
 
bool firstEvent_
 
edm::Service< TFileServicefs
 
const edm::ESGetToken< TrackerGeometry, TrackerDigiGeometryRecordgeomToken_
 
TH1D * hCharge
 
TH1D * hchi2ndof
 
TH1D * hchi2ndofhp
 
TH1D * hchi2Probhp
 
TH1D * hd0
 
TH1D * hd0BS
 
TH1D * hd0PV
 
TH2D * hd0PVvseta
 
TH2D * hd0PVvsphi
 
TH2D * hd0PVvspt
 
TH2D * hd0vseta
 
TH2D * hd0vsphi
 
TH2D * hd0vspt
 
TH1D * hDeltaEta
 
TH1D * hDeltaPhi
 
TH1D * hDeltaR
 
TH1D * hdxy
 
TH1D * hdxyBS
 
TH1D * hdxyPV
 
TH1D * hdz
 
TH1D * hdzBS
 
TH1D * hdzPV
 
TH1D * hEta
 
TH1D * hEtahp
 
TH1D * hEtaMinus
 
TH1D * hEtaPlus
 
TH1D * hHit
 
TH1D * hHit2D
 
TH1D * hHitComposition
 
TH1D * hHitCountVsPhiBPix
 
TH1D * hHitCountVsPhiFPix
 
TH1D * hHitCountVsThetaBPix
 
TH1D * hHitCountVsThetaFPix
 
TH1D * hHitCountVsXBPix
 
TH1D * hHitCountVsXFPix
 
TH1D * hHitCountVsYBPix
 
TH1D * hHitCountVsYFPix
 
TH1D * hHitCountVsZBPix
 
TH1D * hHitCountVsZFPix
 
TH1D * hHithp
 
TH1D * hHitMinus
 
TH1D * hHitPlus
 
edm::EDGetTokenT< edm::TriggerResultshltresultsToken
 
TH1D * hlumi
 
TH1D * hMinPt
 
TH1D * hMultCand
 
TH1D * hNhighPurity
 
TH1D * hnhpxb
 
TH1D * hnhpxe
 
TH1D * hnhTEC
 
TH1D * hnhTIB
 
TH1D * hnhTID
 
TH1D * hnhTOB
 
TH1D * hNtrk
 
TH1D * hNtrkZoom
 
TH1D * hP
 
TH1D * hPhi
 
TH1D * hPhiBarrel
 
TH1D * hPhiEndcapMinus
 
TH1D * hPhiEndcapPlus
 
TH1D * hPhihp
 
TH1D * hPhiMinus
 
TH1D * hPhiOverlapMinus
 
TH1D * hPhiOverlapPlus
 
TH1D * hPhiPlus
 
TH1D * hPhp
 
TH1D * hPMinus
 
TH1D * hPPlus
 
TH1D * hPt
 
TH1D * hPthp
 
TH1D * hPtMinus
 
TH1D * hPtPlus
 
TH1D * hQoverP
 
TH1D * hQoverPZoom
 
TH1D * hrun
 
TH1I * htrkAlgo
 
TH1I * htrkOriAlgo
 
TH1I * htrkQuality
 
TH1D * hvx
 
TH1D * hvy
 
TH1D * hvz
 
int ievt
 
bool isCosmics_
 
bool isPhase1_
 
int itrks
 
const edm::ESGetToken< SiStripLatency, SiStripLatencyRcdlatencyToken_
 
const edm::ESGetToken< MagneticField, IdealMagneticFieldRecordmagFieldToken_
 
edm::ESHandle< MagneticFieldmagneticField_
 
int mode
 
TH1D * modeByRun_
 
std::unique_ptr< Phase1PixelMapspixelmap
 
std::unique_ptr< TrackerMappmap
 
TProfile * pNBpixHitsVsVx
 
TProfile * pNBpixHitsVsVy
 
TProfile * pNBpixHitsVsVz
 
std::map< int, std::pair< int, int > > runInfoMap_
 
edm::EDGetTokenT< reco::TrackCollectiontheTrackCollectionToken
 
TH1D * tksByTrigger_
 
edm::InputTag TkTag_
 
std::unique_ptr< TrackerMaptmap
 
const TrackerGeometrytrackerGeometry_
 
std::map< std::string, std::pair< int, int > > triggerMap_
 
edm::InputTag TriggerResultsTag_
 
edm::EDGetTokenT< reco::VertexCollectionvertexToken
 
edm::InputTag VerticesTag_
 
std::vector< TH1 * > vTrack2DHistos_
 
std::vector< TH1 * > vTrackHistos_
 
std::vector< TH1 * > vTrackProfiles_
 

Additional Inherited Members

- Public Types inherited from edm::one::EDAnalyzerBase
typedef EDAnalyzerBase ModuleType
 
- Public Types inherited from edm::EDConsumerBase
typedef ProductLabels Labels
 
- Protected Member Functions inherited from edm::EDConsumerBase
EDGetToken consumes (const TypeToGet &id, edm::InputTag const &tag)
 
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > consumes (edm::InputTag const &tag)
 
template<BranchType B = InEvent>
EDConsumerBaseAdaptor< B > consumes (edm::InputTag tag) noexcept
 
template<BranchType B>
EDGetToken consumes (TypeToGet const &id, edm::InputTag const &tag)
 
ConsumesCollector consumesCollector ()
 Use a ConsumesCollector to gather consumes information from helper functions. More...
 
template<typename ProductType , BranchType B = InEvent>
void consumesMany ()
 
void consumesMany (const TypeToGet &id)
 
template<BranchType B>
void consumesMany (const TypeToGet &id)
 
template<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes ()
 
template<Transition Tr = Transition::Event>
constexpr auto esConsumes () noexcept
 
template<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes (ESInputTag const &tag)
 
template<Transition Tr = Transition::Event>
auto esConsumes (ESInputTag tag) noexcept
 
template<Transition Tr = Transition::Event>
ESGetTokenGeneric esConsumes (eventsetup::EventSetupRecordKey const &iRecord, eventsetup::DataKey const &iKey)
 Used with EventSetupRecord::doGet. More...
 
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > mayConsume (edm::InputTag const &tag)
 

Detailed Description

Definition at line 85 of file GeneralPurposeTrackAnalyzer.cc.

Constructor & Destructor Documentation

◆ GeneralPurposeTrackAnalyzer()

GeneralPurposeTrackAnalyzer::GeneralPurposeTrackAnalyzer ( const edm::ParameterSet pset)
inline

Definition at line 87 of file GeneralPurposeTrackAnalyzer.cc.

88  : geomToken_(esConsumes<TrackerGeometry, TrackerDigiGeometryRecord>()),
89  magFieldToken_(esConsumes<MagneticField, IdealMagneticFieldRecord, edm::Transition::BeginRun>()),
90  latencyToken_(esConsumes<SiStripLatency, SiStripLatencyRcd, edm::Transition::BeginRun>()) {
91  usesResource(TFileService::kSharedResource);
92 
93  TkTag_ = pset.getParameter<edm::InputTag>("TkTag");
94  theTrackCollectionToken = consumes<reco::TrackCollection>(TkTag_);
95 
96  TriggerResultsTag_ = pset.getParameter<edm::InputTag>("TriggerResultsTag");
97  hltresultsToken = consumes<edm::TriggerResults>(TriggerResultsTag_);
98 
99  BeamSpotTag_ = pset.getParameter<edm::InputTag>("BeamSpotTag");
100  beamspotToken = consumes<reco::BeamSpot>(BeamSpotTag_);
101 
102  VerticesTag_ = pset.getParameter<edm::InputTag>("VerticesTag");
103  vertexToken = consumes<reco::VertexCollection>(VerticesTag_);
104 
105  isCosmics_ = pset.getParameter<bool>("isCosmics");
106 
107  pmap = std::make_unique<TrackerMap>("Pixel");
108  pmap->onlyPixel(true);
109  pmap->setTitle("Pixel Hit entries");
110  pmap->setPalette(1);
111 
112  tmap = std::make_unique<TrackerMap>("Strip");
113  tmap->setTitle("Strip Hit entries");
114  tmap->setPalette(1);
115 
116  pixelmap = std::make_unique<Phase1PixelMaps>("COLZ0 L");
117  pixelmap->bookBarrelHistograms("entriesBarrel", "# hits", "# pixel hits");
118  pixelmap->bookBarrelBins("entriesBarrel");
119  pixelmap->bookForwardHistograms("entriesForward", "# hits", "# pixel hits");
120  pixelmap->bookForwardBins("entriesForward");
121  }

References BeamSpotTag_, beamspotToken, hltresultsToken, isCosmics_, TFileService::kSharedResource, pixelmap, pmap, muonDTDigis_cfi::pset, theTrackCollectionToken, TkTag_, tmap, TriggerResultsTag_, vertexToken, and VerticesTag_.

◆ ~GeneralPurposeTrackAnalyzer()

GeneralPurposeTrackAnalyzer::~GeneralPurposeTrackAnalyzer ( )
inlineoverride

Definition at line 123 of file GeneralPurposeTrackAnalyzer.cc.

123 {}

Member Function Documentation

◆ analyze()

void GeneralPurposeTrackAnalyzer::analyze ( const edm::Event event,
const edm::EventSetup setup 
)
inlineoverrideprivatevirtual

Implements edm::one::EDAnalyzerBase.

Definition at line 289 of file GeneralPurposeTrackAnalyzer.cc.

291  {
292  ievt++;
293 
295  event.getByToken(theTrackCollectionToken, trackCollection);
296 
297  // geometry setup
299  const TrackerGeometry *theGeometry = &(*geometry);
300 
301  // switch on the phase1
302  if ((theGeometry->isThere(GeomDetEnumerators::P1PXB)) || (theGeometry->isThere(GeomDetEnumerators::P1PXEC))) {
303  isPhase1_ = true;
304  } else {
305  isPhase1_ = false;
306  }
307 
308  const reco::TrackCollection tC = *(trackCollection.product());
309  itrks += tC.size();
310 
311  runInfoMap_[event.run()].first += 1;
312  runInfoMap_[event.run()].second += tC.size();
313 
314  if (DEBUG) {
315  edm::LogInfo("GeneralPurposeTrackAnalyzer") << "Reconstructed " << tC.size() << " tracks" << std::endl;
316  }
317  //int iCounter=0;
318 
320  event.getByToken(hltresultsToken, hltresults);
321  if (hltresults.isValid()) {
322  const edm::TriggerNames &triggerNames_ = event.triggerNames(*hltresults);
323  int ntrigs = hltresults->size();
324  //const vector<std::string> &triggernames = triggerNames_.triggerNames();
325 
326  for (int itrig = 0; itrig != ntrigs; ++itrig) {
327  const std::string &trigName = triggerNames_.triggerName(itrig);
328  bool accept = hltresults->accept(itrig);
329  if (accept == 1) {
330  if (DEBUG) {
331  edm::LogInfo("GeneralPurposeTrackAnalyzer")
332  << trigName << " " << accept << " ,track size: " << tC.size() << std::endl;
333  }
334  triggerMap_[trigName].first += 1;
335  triggerMap_[trigName].second += tC.size();
336  // triggerInfo.push_back(pair <std::string, int> (trigName, accept));
337  }
338  }
339  }
340 
341  hrun->Fill(event.run());
342  hlumi->Fill(event.luminosityBlock());
343 
344  int nHighPurityTracks = 0;
345 
346  for (auto track = tC.cbegin(); track != tC.cend(); track++) {
347  unsigned int nHit2D = 0;
348  for (auto iHit = track->recHitsBegin(); iHit != track->recHitsEnd(); ++iHit) {
349  if (this->isHit2D(**iHit)) {
350  ++nHit2D;
351  }
352 
353  const DetId &detId = (*iHit)->geographicalId();
354  const GeomDet *geomDet(theGeometry->idToDet(detId));
355 
356  const SiPixelRecHit *pixhit = dynamic_cast<const SiPixelRecHit *>(*iHit);
357 
358  if (pixhit) {
359  if (pixhit->isValid()) {
360  unsigned int subid = detId.subdetId();
361  int detid_db = detId.rawId();
362 
363  if (!isPhase1_) {
364  pmap->fill(detid_db, 1);
365  } else {
366  if (subid == PixelSubdetector::PixelBarrel) {
367  pixelmap->fillBarrelBin("entriesBarrel", detid_db, 1);
368  } else {
369  pixelmap->fillForwardBin("entriesForward", detid_db, 1);
370  }
371  }
372 
373  LocalPoint lp = (*iHit)->localPosition();
374  //LocalError le = (*iHit)->localPositionError();
375 
376  GlobalPoint GP = geomDet->surface().toGlobal(lp);
377 
378  if ((subid == PixelSubdetector::PixelBarrel) || (subid == PixelSubdetector::PixelEndcap)) {
379  // 1 = PXB, 2 = PXF
380  if (subid == PixelSubdetector::PixelBarrel) {
381  hHitCountVsThetaBPix->Fill(GP.theta());
382  hHitCountVsPhiBPix->Fill(GP.phi());
383 
384  hHitCountVsZBPix->Fill(GP.z());
385  hHitCountVsXBPix->Fill(GP.x());
386  hHitCountVsYBPix->Fill(GP.y());
387 
388  } else if (subid == PixelSubdetector::PixelEndcap) {
389  hHitCountVsThetaFPix->Fill(GP.theta());
390  hHitCountVsPhiFPix->Fill(GP.phi());
391 
392  hHitCountVsZFPix->Fill(GP.z());
393  hHitCountVsXFPix->Fill(GP.x());
394  hHitCountVsYFPix->Fill(GP.y());
395  }
396  }
397  }
398  } else {
399  if ((*iHit)->isValid()) {
400  tmap->fill(detId.rawId(), 1);
401  }
402  }
403  }
404 
405  hHit2D->Fill(nHit2D);
406  hHit->Fill(track->numberOfValidHits());
407  hnhpxb->Fill(track->hitPattern().numberOfValidPixelBarrelHits());
408  hnhpxe->Fill(track->hitPattern().numberOfValidPixelEndcapHits());
409  hnhTIB->Fill(track->hitPattern().numberOfValidStripTIBHits());
410  hnhTID->Fill(track->hitPattern().numberOfValidStripTIDHits());
411  hnhTOB->Fill(track->hitPattern().numberOfValidStripTOBHits());
412  hnhTEC->Fill(track->hitPattern().numberOfValidStripTECHits());
413 
414  // fill hit composition histogram
415  if (track->hitPattern().numberOfValidPixelBarrelHits() != 0) {
416  hHitComposition->Fill(0., track->hitPattern().numberOfValidPixelBarrelHits());
417 
418  pNBpixHitsVsVx->Fill(track->vx(), track->hitPattern().numberOfValidPixelBarrelHits());
419  pNBpixHitsVsVy->Fill(track->vy(), track->hitPattern().numberOfValidPixelBarrelHits());
420  pNBpixHitsVsVz->Fill(track->vz(), track->hitPattern().numberOfValidPixelBarrelHits());
421  }
422  if (track->hitPattern().numberOfValidPixelEndcapHits() != 0) {
423  hHitComposition->Fill(1., track->hitPattern().numberOfValidPixelEndcapHits());
424  }
425  if (track->hitPattern().numberOfValidStripTIBHits() != 0) {
426  hHitComposition->Fill(2., track->hitPattern().numberOfValidStripTIBHits());
427  }
428  if (track->hitPattern().numberOfValidStripTIDHits() != 0) {
429  hHitComposition->Fill(3., track->hitPattern().numberOfValidStripTIDHits());
430  }
431  if (track->hitPattern().numberOfValidStripTOBHits() != 0) {
432  hHitComposition->Fill(4., track->hitPattern().numberOfValidStripTOBHits());
433  }
434  if (track->hitPattern().numberOfValidStripTECHits() != 0) {
435  hHitComposition->Fill(5., track->hitPattern().numberOfValidStripTECHits());
436  }
437 
438  hCharge->Fill(track->charge());
439  hQoverP->Fill(track->qoverp());
440  hQoverPZoom->Fill(track->qoverp());
441  hPt->Fill(track->pt());
442  hP->Fill(track->p());
443  hchi2ndof->Fill(track->normalizedChi2());
444  hEta->Fill(track->eta());
445  hPhi->Fill(track->phi());
446 
447  if (fabs(track->eta()) < 0.8) {
448  hPhiBarrel->Fill(track->phi());
449  }
450  if (track->eta() > 0.8 && track->eta() < 1.4) {
451  hPhiOverlapPlus->Fill(track->phi());
452  }
453  if (track->eta() < -0.8 && track->eta() > -1.4) {
454  hPhiOverlapMinus->Fill(track->phi());
455  }
456  if (track->eta() > 1.4) {
457  hPhiEndcapPlus->Fill(track->phi());
458  }
459  if (track->eta() < -1.4) {
460  hPhiEndcapMinus->Fill(track->phi());
461  }
462 
463  hd0->Fill(track->d0());
464  hdz->Fill(track->dz());
465  hdxy->Fill(track->dxy());
466  hvx->Fill(track->vx());
467  hvy->Fill(track->vy());
468  hvz->Fill(track->vz());
469 
470  htrkAlgo->Fill(static_cast<int>(track->algo()));
471  htrkOriAlgo->Fill(static_cast<int>(track->originalAlgo()));
472 
473  int myquality = -99;
474  if (track->quality(reco::TrackBase::undefQuality)) {
475  myquality = -1;
476  htrkQuality->Fill(myquality);
477  }
478  if (track->quality(reco::TrackBase::loose)) {
479  myquality = 0;
480  htrkQuality->Fill(myquality);
481  }
482  if (track->quality(reco::TrackBase::tight)) {
483  myquality = 1;
484  htrkQuality->Fill(myquality);
485  }
486  if (track->quality(reco::TrackBase::highPurity) && (!isCosmics_)) {
487  myquality = 2;
488  htrkQuality->Fill(myquality);
489  hPhp->Fill(track->p());
490  hPthp->Fill(track->pt());
491  hHithp->Fill(track->numberOfValidHits());
492  hEtahp->Fill(track->eta());
493  hPhihp->Fill(track->phi());
494  hchi2ndofhp->Fill(track->normalizedChi2());
495  hchi2Probhp->Fill(TMath::Prob(track->chi2(), track->ndof()));
496  nHighPurityTracks++;
497  }
498  if (track->quality(reco::TrackBase::confirmed)) {
499  myquality = 3;
500  htrkQuality->Fill(myquality);
501  }
502  if (track->quality(reco::TrackBase::goodIterative)) {
503  myquality = 4;
504  htrkQuality->Fill(myquality);
505  }
506 
507  // Fill 1D track histos
508  static const int etaindex = this->GetIndex(vTrackHistos_, "h_tracketa");
509  vTrackHistos_[etaindex]->Fill(track->eta());
510  static const int phiindex = this->GetIndex(vTrackHistos_, "h_trackphi");
511  vTrackHistos_[phiindex]->Fill(track->phi());
512  static const int numOfValidHitsindex = this->GetIndex(vTrackHistos_, "h_trackNumberOfValidHits");
513  vTrackHistos_[numOfValidHitsindex]->Fill(track->numberOfValidHits());
514  static const int numOfLostHitsindex = this->GetIndex(vTrackHistos_, "h_trackNumberOfLostHits");
515  vTrackHistos_[numOfLostHitsindex]->Fill(track->numberOfLostHits());
516 
517  GlobalPoint gPoint(track->vx(), track->vy(), track->vz());
518  double theLocalMagFieldInInverseGeV = magneticField_->inInverseGeV(gPoint).z();
519  double kappa = -track->charge() * theLocalMagFieldInInverseGeV / track->pt();
520 
521  static const int kappaindex = this->GetIndex(vTrackHistos_, "h_curvature");
522  vTrackHistos_[kappaindex]->Fill(kappa);
523  static const int kappaposindex = this->GetIndex(vTrackHistos_, "h_curvature_pos");
524  if (track->charge() > 0)
525  vTrackHistos_[kappaposindex]->Fill(fabs(kappa));
526  static const int kappanegindex = this->GetIndex(vTrackHistos_, "h_curvature_neg");
527  if (track->charge() < 0)
528  vTrackHistos_[kappanegindex]->Fill(fabs(kappa));
529 
530  double chi2Prob = TMath::Prob(track->chi2(), track->ndof());
531  double normchi2 = track->normalizedChi2();
532 
533  static const int normchi2index = this->GetIndex(vTrackHistos_, "h_normchi2");
534  vTrackHistos_[normchi2index]->Fill(normchi2);
535  static const int chi2index = this->GetIndex(vTrackHistos_, "h_chi2");
536  vTrackHistos_[chi2index]->Fill(track->chi2());
537  static const int chi2Probindex = this->GetIndex(vTrackHistos_, "h_chi2Prob");
538  vTrackHistos_[chi2Probindex]->Fill(chi2Prob);
539  static const int ptindex = this->GetIndex(vTrackHistos_, "h_pt");
540  static const int pt2index = this->GetIndex(vTrackHistos_, "h_ptrebin");
541  vTrackHistos_[ptindex]->Fill(track->pt());
542  vTrackHistos_[pt2index]->Fill(track->pt());
543  if (track->ptError() != 0.) {
544  static const int ptResolutionindex = this->GetIndex(vTrackHistos_, "h_ptResolution");
545  vTrackHistos_[ptResolutionindex]->Fill(track->ptError() / track->pt());
546  }
547  // Fill track profiles
548  static const int d0phiindex = this->GetIndex(vTrackProfiles_, "p_d0_vs_phi");
549  vTrackProfiles_[d0phiindex]->Fill(track->phi(), track->d0());
550  static const int dzphiindex = this->GetIndex(vTrackProfiles_, "p_dz_vs_phi");
551  vTrackProfiles_[dzphiindex]->Fill(track->phi(), track->dz());
552  static const int d0etaindex = this->GetIndex(vTrackProfiles_, "p_d0_vs_eta");
553  vTrackProfiles_[d0etaindex]->Fill(track->eta(), track->d0());
554  static const int dzetaindex = this->GetIndex(vTrackProfiles_, "p_dz_vs_eta");
555  vTrackProfiles_[dzetaindex]->Fill(track->eta(), track->dz());
556  static const int chiProbphiindex = this->GetIndex(vTrackProfiles_, "p_chi2Prob_vs_phi");
557  vTrackProfiles_[chiProbphiindex]->Fill(track->phi(), chi2Prob);
558  static const int chiProbabsd0index = this->GetIndex(vTrackProfiles_, "p_chi2Prob_vs_d0");
559  vTrackProfiles_[chiProbabsd0index]->Fill(fabs(track->d0()), chi2Prob);
560  static const int chiProbabsdzindex = this->GetIndex(vTrackProfiles_, "p_chi2Prob_vs_dz");
561  vTrackProfiles_[chiProbabsdzindex]->Fill(track->dz(), chi2Prob);
562  static const int chiphiindex = this->GetIndex(vTrackProfiles_, "p_chi2_vs_phi");
563  vTrackProfiles_[chiphiindex]->Fill(track->phi(), track->chi2());
564  static const int normchiphiindex = this->GetIndex(vTrackProfiles_, "p_normchi2_vs_phi");
565  vTrackProfiles_[normchiphiindex]->Fill(track->phi(), normchi2);
566  static const int chietaindex = this->GetIndex(vTrackProfiles_, "p_chi2_vs_eta");
567  vTrackProfiles_[chietaindex]->Fill(track->eta(), track->chi2());
568  static const int normchiptindex = this->GetIndex(vTrackProfiles_, "p_normchi2_vs_pt");
569  vTrackProfiles_[normchiptindex]->Fill(track->pt(), normchi2);
570  static const int normchipindex = this->GetIndex(vTrackProfiles_, "p_normchi2_vs_p");
571  vTrackProfiles_[normchipindex]->Fill(track->p(), normchi2);
572  static const int chiProbetaindex = this->GetIndex(vTrackProfiles_, "p_chi2Prob_vs_eta");
573  vTrackProfiles_[chiProbetaindex]->Fill(track->eta(), chi2Prob);
574  static const int normchietaindex = this->GetIndex(vTrackProfiles_, "p_normchi2_vs_eta");
575  vTrackProfiles_[normchietaindex]->Fill(track->eta(), normchi2);
576  static const int kappaphiindex = this->GetIndex(vTrackProfiles_, "p_kappa_vs_phi");
577  vTrackProfiles_[kappaphiindex]->Fill(track->phi(), kappa);
578  static const int kappaetaindex = this->GetIndex(vTrackProfiles_, "p_kappa_vs_eta");
579  vTrackProfiles_[kappaetaindex]->Fill(track->eta(), kappa);
580  static const int ptResphiindex = this->GetIndex(vTrackProfiles_, "p_ptResolution_vs_phi");
581  vTrackProfiles_[ptResphiindex]->Fill(track->phi(), track->ptError() / track->pt());
582  static const int ptResetaindex = this->GetIndex(vTrackProfiles_, "p_ptResolution_vs_eta");
583  vTrackProfiles_[ptResetaindex]->Fill(track->eta(), track->ptError() / track->pt());
584 
585  // Fill 2D track histos
586  static const int d0phiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_d0_vs_phi");
587  vTrack2DHistos_[d0phiindex_2d]->Fill(track->phi(), track->d0());
588  static const int dzphiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_dz_vs_phi");
589  vTrack2DHistos_[dzphiindex_2d]->Fill(track->phi(), track->dz());
590  static const int d0etaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_d0_vs_eta");
591  vTrack2DHistos_[d0etaindex_2d]->Fill(track->eta(), track->d0());
592  static const int dzetaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_dz_vs_eta");
593  vTrack2DHistos_[dzetaindex_2d]->Fill(track->eta(), track->dz());
594  static const int chiphiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_chi2_vs_phi");
595  vTrack2DHistos_[chiphiindex_2d]->Fill(track->phi(), track->chi2());
596  static const int chiProbphiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_chi2Prob_vs_phi");
597  vTrack2DHistos_[chiProbphiindex_2d]->Fill(track->phi(), chi2Prob);
598  static const int chiProbabsd0index_2d = this->GetIndex(vTrack2DHistos_, "h2_chi2Prob_vs_d0");
599  vTrack2DHistos_[chiProbabsd0index_2d]->Fill(fabs(track->d0()), chi2Prob);
600  static const int normchiphiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_normchi2_vs_phi");
601  vTrack2DHistos_[normchiphiindex_2d]->Fill(track->phi(), normchi2);
602  static const int chietaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_chi2_vs_eta");
603  vTrack2DHistos_[chietaindex_2d]->Fill(track->eta(), track->chi2());
604  static const int chiProbetaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_chi2Prob_vs_eta");
605  vTrack2DHistos_[chiProbetaindex_2d]->Fill(track->eta(), chi2Prob);
606  static const int normchietaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_normchi2_vs_eta");
607  vTrack2DHistos_[normchietaindex_2d]->Fill(track->eta(), normchi2);
608  static const int kappaphiindex_2d = this->GetIndex(vTrack2DHistos_, "h2_kappa_vs_phi");
609  vTrack2DHistos_[kappaphiindex_2d]->Fill(track->phi(), kappa);
610  static const int kappaetaindex_2d = this->GetIndex(vTrack2DHistos_, "h2_kappa_vs_eta");
611  vTrack2DHistos_[kappaetaindex_2d]->Fill(track->eta(), kappa);
612  static const int normchi2kappa_2d = this->GetIndex(vTrack2DHistos_, "h2_normchi2_vs_kappa");
613  vTrack2DHistos_[normchi2kappa_2d]->Fill(normchi2, kappa);
614 
615  //dxy with respect to the beamspot
617  edm::Handle<reco::BeamSpot> beamSpotHandle;
618  event.getByToken(beamspotToken, beamSpotHandle);
619  if (beamSpotHandle.isValid()) {
620  beamSpot = *beamSpotHandle;
621  math::XYZPoint point(beamSpot.x0(), beamSpot.y0(), beamSpot.z0());
622  double dxy = track->dxy(point);
623  double dz = track->dz(point);
624  hdxyBS->Fill(dxy);
625  hd0BS->Fill(-dxy);
626  hdzBS->Fill(dz);
627  }
628 
629  //dxy with respect to the primary vertex
630  reco::Vertex pvtx;
633  event.getByLabel("offlinePrimaryVertices", vertexHandle);
634  double mindxy = 100.;
635  double dz = 100;
636  if (vertexHandle.isValid() && !isCosmics_) {
637  for (auto pvtx = vertexHandle->cbegin(); pvtx != vertexHandle->cend(); ++pvtx) {
638  math::XYZPoint mypoint(pvtx->x(), pvtx->y(), pvtx->z());
639  if (abs(mindxy) > abs(track->dxy(mypoint))) {
640  mindxy = track->dxy(mypoint);
641  dz = track->dz(mypoint);
642  }
643  }
644 
645  hdxyPV->Fill(mindxy);
646  hd0PV->Fill(-mindxy);
647  hdzPV->Fill(dz);
648 
649  hd0PVvsphi->Fill(track->phi(), -mindxy);
650  hd0PVvseta->Fill(track->eta(), -mindxy);
651  hd0PVvspt->Fill(track->pt(), -mindxy);
652 
653  } else {
654  hdxyPV->Fill(100);
655  hd0PV->Fill(100);
656  hdzPV->Fill(100);
657 
658  hd0vsphi->Fill(track->phi(), -track->dxy());
659  hd0vseta->Fill(track->eta(), -track->dxy());
660  hd0vspt->Fill(track->pt(), -track->dxy());
661  }
662 
663  if (DEBUG) {
664  edm::LogInfo("GeneralPurposeTrackAnalyzer") << "end of track loop" << std::endl;
665  }
666  }
667 
668  hNtrk->Fill(tC.size());
669  hNtrkZoom->Fill(tC.size());
670  hNhighPurity->Fill(nHighPurityTracks);
671 
672  if (DEBUG) {
673  edm::LogInfo("GeneralPurposeTrackAnalyzer") << "end of analysis" << std::endl;
674  }
675  }

References funct::abs(), accept(), pwdgSkimBPark_cfi::beamSpot, beamspotToken, reco::TrackBase::confirmed, DEBUG, PVValHelper::dxy, PVValHelper::dz, HcalObjRepresent::Fill(), geomToken_, GetIndex(), reco::TrackBase::goodIterative, hCharge, hchi2ndof, hchi2ndofhp, hchi2Probhp, hd0, hd0BS, hd0PV, hd0PVvseta, hd0PVvsphi, hd0PVvspt, hd0vseta, hd0vsphi, hd0vspt, hdxy, hdxyBS, hdxyPV, hdz, hdzBS, hdzPV, hEta, hEtahp, hHit, hHit2D, hHitComposition, hHitCountVsPhiBPix, hHitCountVsPhiFPix, hHitCountVsThetaBPix, hHitCountVsThetaFPix, hHitCountVsXBPix, hHitCountVsXFPix, hHitCountVsYBPix, hHitCountVsYFPix, hHitCountVsZBPix, hHitCountVsZFPix, hHithp, reco::TrackBase::highPurity, HLTBitAnalyser_cfi::hltresults, hltresultsToken, hlumi, hNhighPurity, hnhpxb, hnhpxe, hnhTEC, hnhTIB, hnhTID, hnhTOB, hNtrk, hNtrkZoom, hP, hPhi, hPhiBarrel, hPhiEndcapMinus, hPhiEndcapPlus, hPhihp, hPhiOverlapMinus, hPhiOverlapPlus, hPhp, hPt, hPthp, hQoverP, hQoverPZoom, hrun, htrkAlgo, htrkOriAlgo, htrkQuality, hvx, hvy, hvz, TrackerGeometry::idToDet(), ievt, MagneticField::inInverseGeV(), isCosmics_, isHit2D(), isPhase1_, TrackerGeometry::isThere(), edm::HandleBase::isValid(), itrks, kappa, reco::TrackBase::loose, magneticField_, GeomDetEnumerators::P1PXB, GeomDetEnumerators::P1PXEC, PV3DBase< T, PVType, FrameType >::phi(), PixelSubdetector::PixelBarrel, PixelSubdetector::PixelEndcap, pixelmap, pmap, pNBpixHitsVsVx, pNBpixHitsVsVy, pNBpixHitsVsVz, point, DetId::rawId(), runInfoMap_, singleTopDQM_cfi::setup, AlCaHLTBitMon_QueryRunRegistry::string, DetId::subdetId(), PV3DBase< T, PVType, FrameType >::theta(), theTrackCollectionToken, reco::TrackBase::tight, tmap, HLT_FULL_cff::track, duplicaterechits_cfi::trackCollection, triggerMap_, edm::TriggerNames::triggerName(), edm::TriggerNames::triggerNames(), EgHLTOffTrigSelection_cfi::trigName, reco::TrackBase::undefQuality, spclusmultinvestigator_cfi::vertexCollection, vTrack2DHistos_, vTrackHistos_, vTrackProfiles_, PV3DBase< T, PVType, FrameType >::x(), reco::Vertex::x(), PV3DBase< T, PVType, FrameType >::y(), reco::Vertex::y(), PV3DBase< T, PVType, FrameType >::z(), and reco::Vertex::z().

◆ beginJob()

void GeneralPurposeTrackAnalyzer::beginJob ( void  )
inlineoverrideprivatevirtual

Reimplemented from edm::one::EDAnalyzerBase.

Definition at line 707 of file GeneralPurposeTrackAnalyzer.cc.

709  {
710  if (DEBUG) {
711  edm::LogInfo("GeneralPurposeTrackAnalyzer") << __LINE__ << std::endl;
712  }
713 
714  TH1D::SetDefaultSumw2(kTRUE);
715 
716  isPhase1_ = true;
717  etaMax_ = 3.0;
718 
719  ievt = 0;
720  itrks = 0;
721 
722  hrun = fs->make<TH1D>("h_run", "run", 100000, 230000, 240000);
723  hlumi = fs->make<TH1D>("h_lumi", "lumi", 1000, 0, 1000);
724 
725  hchi2ndof = fs->make<TH1D>("h_chi2ndof", "chi2/ndf;#chi^{2}/ndf;tracks", 100, 0, 5.);
726  hCharge = fs->make<TH1D>("h_charge", "charge;Charge of the track;tracks", 5, -2.5, 2.5);
727  hNtrk = fs->make<TH1D>("h_Ntrk", "ntracks;Number of Tracks;events", 200, 0., 200.);
728  hNtrkZoom = fs->make<TH1D>("h_NtrkZoom", "Number of tracks; number of tracks;events", 10, 0., 10.);
729  hNhighPurity =
730  fs->make<TH1D>("h_NhighPurity", "n. high purity tracks;Number of high purity tracks;events", 200, 0., 200.);
731 
732  htrkAlgo = fs->make<TH1I>("h_trkAlgo",
733  "tracking step;iterative tracking step;tracks",
735  0.,
736  double(reco::TrackBase::algoSize));
737 
738  htrkOriAlgo = fs->make<TH1I>("h_trkOriAlgo",
739  "original tracking step;original iterative tracking step;tracks",
741  0.,
742  double(reco::TrackBase::algoSize));
743 
744  for (size_t ibin = 0; ibin < reco::TrackBase::algoSize - 1; ibin++) {
745  htrkAlgo->GetXaxis()->SetBinLabel(ibin + 1, (reco::TrackBase::algoNames[ibin]).c_str());
746  htrkOriAlgo->GetXaxis()->SetBinLabel(ibin + 1, (reco::TrackBase::algoNames[ibin]).c_str());
747  }
748 
749  htrkQuality = fs->make<TH1I>("h_trkQuality", "track quality;track quality;tracks", 6, -1, 5);
750  std::string qualities[7] = {"undef", "loose", "tight", "highPurity", "confirmed", "goodIterative"};
751  for (int nbin = 1; nbin <= htrkQuality->GetNbinsX(); nbin++) {
752  htrkQuality->GetXaxis()->SetBinLabel(nbin, (qualities[nbin - 1]).c_str());
753  }
754 
755  hP = fs->make<TH1D>("h_P", "Momentum;track momentum [GeV];tracks", 100, 0., 100.);
756  hQoverP = fs->make<TH1D>("h_qoverp", "Track q/p; track q/p [GeV^{-1}];tracks", 100, -1., 1.);
757  hQoverPZoom = fs->make<TH1D>("h_qoverpZoom", "Track q/p; track q/p [GeV^{-1}];tracks", 100, -0.1, 0.1);
758  hPt = fs->make<TH1D>("h_Pt", "Transverse Momentum;track p_{T} [GeV];tracks", 100, 0., 100.);
759  hHit = fs->make<TH1D>("h_nHits", "Number of hits;track n. hits;tracks", 50, -0.5, 49.5);
760  hHit2D = fs->make<TH1D>("h_nHit2D", "Number of 2D hits; number of 2D hits;tracks", 20, 0, 20);
761 
762  hHitCountVsZBPix = fs->make<TH1D>("h_HitCountVsZBpix", "Number of BPix hits vs z;hit global z;hits", 60, -30, 30);
764  fs->make<TH1D>("h_HitCountVsZFpix", "Number of FPix hits vs z;hit global z;hits", 100, -100, 100);
765 
766  hHitCountVsXBPix = fs->make<TH1D>("h_HitCountVsXBpix", "Number of BPix hits vs x;hit global x;hits", 20, -20, 20);
767  hHitCountVsXFPix = fs->make<TH1D>("h_HitCountVsXFpix", "Number of FPix hits vs x;hit global x;hits", 20, -20, 20);
768 
769  hHitCountVsYBPix = fs->make<TH1D>("h_HitCountVsYBpix", "Number of BPix hits vs y;hit global y;hits", 20, -20, 20);
770  hHitCountVsYFPix = fs->make<TH1D>("h_HitCountVsYFpix", "Number of FPix hits vs y;hit global y;hits", 20, -20, 20);
771 
773  fs->make<TH1D>("h_HitCountVsThetaBpix", "Number of BPix hits vs #theta;hit global #theta;hits", 20, 0., M_PI);
775  fs->make<TH1D>("h_HitCountVsPhiBpix", "Number of BPix hits vs #phi;hit global #phi;hits", 20, -M_PI, M_PI);
776 
778  fs->make<TH1D>("h_HitCountVsThetaFpix", "Number of FPix hits vs #theta;hit global #theta;hits", 40, 0., M_PI);
780  fs->make<TH1D>("h_HitCountVsPhiFpix", "Number of FPix hits vs #phi;hit global #phi;hits", 20, -M_PI, M_PI);
781 
782  hEta = fs->make<TH1D>("h_Eta", "Track pseudorapidity; track #eta;tracks", 100, -etaMax_, etaMax_);
783  hPhi = fs->make<TH1D>("h_Phi", "Track azimuth; track #phi;tracks", 100, -M_PI, M_PI);
784 
785  hPhiBarrel = fs->make<TH1D>("h_PhiBarrel", "hPhiBarrel (0<|#eta|<0.8);track #Phi;tracks", 100, -M_PI, M_PI);
787  fs->make<TH1D>("h_PhiOverlapPlus", "hPhiOverlapPlus (0.8<#eta<1.4);track #phi;tracks", 100, -M_PI, M_PI);
789  fs->make<TH1D>("h_PhiOverlapMinus", "hPhiOverlapMinus (-1.4<#eta<-0.8);track #phi;tracks", 100, -M_PI, M_PI);
790  hPhiEndcapPlus = fs->make<TH1D>("h_PhiEndcapPlus", "hPhiEndcapPlus (#eta>1.4);track #phi;track", 100, -M_PI, M_PI);
792  fs->make<TH1D>("h_PhiEndcapMinus", "hPhiEndcapMinus (#eta<1.4);track #phi;tracks", 100, -M_PI, M_PI);
793 
794  if (!isCosmics_) {
795  hPhp = fs->make<TH1D>("h_P_hp", "Momentum (high purity);track momentum [GeV];tracks", 100, 0., 100.);
796  hPthp = fs->make<TH1D>("h_Pt_hp", "Transverse Momentum (high purity);track p_{T} [GeV];tracks", 100, 0., 100.);
797  hHithp = fs->make<TH1D>("h_nHit_hp", "Number of hits (high purity);track n. hits;tracks", 30, 0, 30);
798  hEtahp =
799  fs->make<TH1D>("h_Eta_hp", "Track pseudorapidity (high purity); track #eta;tracks", 100, -etaMax_, etaMax_);
800  hPhihp = fs->make<TH1D>("h_Phi_hp", "Track azimuth (high purity); track #phi;tracks", 100, -M_PI, M_PI);
801  hchi2ndofhp = fs->make<TH1D>("h_chi2ndof_hp", "chi2/ndf (high purity);#chi^{2}/ndf;tracks", 100, 0, 5.);
802  hchi2Probhp = fs->make<TH1D>(
803  "h_chi2_Prob_hp", "#chi^{2} probability (high purity);#chi^{2}prob_{Track};Number of Tracks", 100, 0.0, 1.);
804 
805  hvx = fs->make<TH1D>("h_vx", "Track v_{x} ; track v_{x} [cm];tracks", 100, -1.5, 1.5);
806  hvy = fs->make<TH1D>("h_vy", "Track v_{y} ; track v_{y} [cm];tracks", 100, -1.5, 1.5);
807  hvz = fs->make<TH1D>("h_vz", "Track v_{z} ; track v_{z} [cm];tracks", 100, -20., 20.);
808  hd0 = fs->make<TH1D>("h_d0", "Track d_{0} ; track d_{0} [cm];tracks", 100, -1., 1.);
809  hdxy = fs->make<TH1D>("h_dxy", "Track d_{xy}; track d_{xy} [cm]; tracks", 100, -0.5, 0.5);
810  hdz = fs->make<TH1D>("h_dz", "Track d_{z} ; track d_{z} [cm]; tracks", 100, -20, 20);
811 
812  hd0PVvsphi =
813  fs->make<TH2D>("h2_d0PVvsphi", "hd0PVvsphi;track #phi;track d_{0}(PV) [cm]", 160, -M_PI, M_PI, 100, -1., 1.);
814  hd0PVvseta =
815  fs->make<TH2D>("h2_d0PVvseta", "hdPV0vseta;track #eta;track d_{0}(PV) [cm]", 160, -2.5, 2.5, 100, -1., 1.);
816  hd0PVvspt = fs->make<TH2D>("h2_d0PVvspt", "hdPV0vspt;track p_{T};d_{0}(PV) [cm]", 50, 0., 100., 100, -1, 1.);
817 
818  hdxyBS = fs->make<TH1D>("h_dxyBS", "hdxyBS; track d_{xy}(BS) [cm];tracks", 100, -0.1, 0.1);
819  hd0BS = fs->make<TH1D>("h_d0BS", "hd0BS ; track d_{0}(BS) [cm];tracks", 100, -0.1, 0.1);
820  hdzBS = fs->make<TH1D>("h_dzBS", "hdzBS ; track d_{z}(BS) [cm];tracks", 100, -12, 12);
821  hdxyPV = fs->make<TH1D>("h_dxyPV", "hdxyPV; track d_{xy}(PV) [cm];tracks", 100, -0.1, 0.1);
822  hd0PV = fs->make<TH1D>("h_d0PV", "hd0PV ; track d_{0}(PV) [cm];tracks", 100, -0.15, 0.15);
823  hdzPV = fs->make<TH1D>("h_dzPV", "hdzPV ; track d_{z}(PV) [cm];tracks", 100, -0.1, 0.1);
824 
825  hnhTIB = fs->make<TH1D>("h_nHitTIB", "nhTIB;# hits in TIB; tracks", 20, 0., 20.);
826  hnhTID = fs->make<TH1D>("h_nHitTID", "nhTID;# hits in TID; tracks", 20, 0., 20.);
827  hnhTOB = fs->make<TH1D>("h_nHitTOB", "nhTOB;# hits in TOB; tracks", 20, 0., 20.);
828  hnhTEC = fs->make<TH1D>("h_nHitTEC", "nhTEC;# hits in TEC; tracks", 20, 0., 20.);
829 
830  } else {
831  hvx = fs->make<TH1D>("h_vx", "Track v_{x};track v_{x} [cm];tracks", 100, -100., 100.);
832  hvy = fs->make<TH1D>("h_vy", "Track v_{y};track v_{y} [cm];tracks", 100, -100., 100.);
833  hvz = fs->make<TH1D>("h_vz", "Track v_{z};track v_{z} [cm];track", 100, -100., 100.);
834  hd0 = fs->make<TH1D>("h_d0", "Track d_{0};track d_{0} [cm];track", 100, -100., 100.);
835  hdxy = fs->make<TH1D>("h_dxy", "Track d_{xy};track d_{xy} [cm];tracks", 100, -100, 100);
836  hdz = fs->make<TH1D>("h_dz", "Track d_{z};track d_{z} [cm];tracks", 100, -200, 200);
837 
838  hd0vsphi = fs->make<TH2D>(
839  "h2_d0vsphi", "Track d_{0} vs #phi; track #phi;track d_{0} [cm]", 160, -3.20, 3.20, 100, -100., 100.);
840  hd0vseta = fs->make<TH2D>(
841  "h2_d0vseta", "Track d_{0} vs #eta; track #eta;track d_{0} [cm]", 160, -3.20, 3.20, 100, -100., 100.);
842  hd0vspt = fs->make<TH2D>(
843  "h2_d0vspt", "Track d_{0} vs p_{T};track p_{T};track d_{0} [cm]", 50, 0., 100., 100, -100, 100);
844 
845  hdxyBS = fs->make<TH1D>("h_dxyBS", "Track d_{xy}(BS);d_{xy}(BS) [cm];tracks", 100, -100., 100.);
846  hd0BS = fs->make<TH1D>("h_d0BS", "Track d_{0}(BS);d_{0}(BS) [cm];tracks", 100, -100., 100.);
847  hdzBS = fs->make<TH1D>("h_dzBS", "Track d_{z}(BS);d_{z}(BS) [cm];tracks", 100, -100., 100.);
848  hdxyPV = fs->make<TH1D>("h_dxyPV", "Track d_{xy}(PV); d_{xy}(PV) [cm];tracks", 100, -100., 100.);
849  hd0PV = fs->make<TH1D>("h_d0PV", "Track d_{0}(PV); d_{0}(PV) [cm];tracks", 100, -100., 100.);
850  hdzPV = fs->make<TH1D>("h_dzPV", "Track d_{z}(PV); d_{z}(PV) [cm];tracks", 100, -100., 100.);
851 
852  hnhTIB = fs->make<TH1D>("h_nHitTIB", "nhTIB;# hits in TIB; tracks", 30, 0., 30.);
853  hnhTID = fs->make<TH1D>("h_nHitTID", "nhTID;# hits in TID; tracks", 30, 0., 30.);
854  hnhTOB = fs->make<TH1D>("h_nHitTOB", "nhTOB;# hits in TOB; tracks", 30, 0., 30.);
855  hnhTEC = fs->make<TH1D>("h_nHitTEC", "nhTEC;# hits in TEC; tracks", 30, 0., 30.);
856  }
857 
858  hnhpxb = fs->make<TH1D>("h_nHitPXB", "nhpxb;# hits in Pixel Barrel; tracks", 10, 0., 10.);
859  hnhpxe = fs->make<TH1D>("h_nHitPXE", "nhpxe;# hits in Pixel Endcap; tracks", 10, 0., 10.);
860 
861  hHitComposition = fs->make<TH1D>("h_hitcomposition", "track hit composition;;# hits", 6, -0.5, 5.5);
862 
864  fs->make<TProfile>("p_NpixHits_vs_Vx", "n. Barrel Pixel hits vs. v_{x};v_{x} (cm);n. BPix hits", 20, -20, 20);
865 
867  fs->make<TProfile>("p_NpixHits_vs_Vy", "n. Barrel Pixel hits vs. v_{y};v_{y} (cm);n. BPix hits", 20, -20, 20);
868 
870  fs->make<TProfile>("p_NpixHits_vs_Vz", "n. Barrel Pixel hits vs. v_{z};v_{z} (cm);n. BPix hits", 20, -100, 100);
871 
872  std::string dets[6] = {"PXB", "PXF", "TIB", "TID", "TOB", "TEC"};
873 
874  for (int i = 1; i <= hHitComposition->GetNbinsX(); i++) {
875  hHitComposition->GetXaxis()->SetBinLabel(i, (dets[i - 1]).c_str());
876  }
877 
878  vTrackHistos_.push_back(
879  fs->make<TH1F>("h_tracketa", "Track #eta;#eta_{Track};Number of Tracks", 90, -etaMax_, etaMax_));
880  vTrackHistos_.push_back(fs->make<TH1F>("h_trackphi", "Track #phi;#phi_{Track};Number of Tracks", 90, -M_PI, M_PI));
881  vTrackHistos_.push_back(fs->make<TH1F>(
882  "h_trackNumberOfValidHits", "Track # of valid hits;# of valid hits _{Track};Number of Tracks", 40, 0., 40.));
883  vTrackHistos_.push_back(fs->make<TH1F>(
884  "h_trackNumberOfLostHits", "Track # of lost hits;# of lost hits _{Track};Number of Tracks", 10, 0., 10.));
885  vTrackHistos_.push_back(
886  fs->make<TH1F>("h_curvature", "Curvature #kappa;#kappa_{Track};Number of Tracks", 100, -.05, .05));
887  vTrackHistos_.push_back(fs->make<TH1F>(
888  "h_curvature_pos", "Curvature |#kappa| Positive Tracks;|#kappa_{pos Track}|;Number of Tracks", 100, .0, .05));
889  vTrackHistos_.push_back(fs->make<TH1F>(
890  "h_curvature_neg", "Curvature |#kappa| Negative Tracks;|#kappa_{neg Track}|;Number of Tracks", 100, .0, .05));
891  vTrackHistos_.push_back(
892  fs->make<TH1F>("h_diff_curvature",
893  "Curvature |#kappa| Tracks Difference;|#kappa_{Track}|;# Pos Tracks - # Neg Tracks",
894  100,
895  .0,
896  .05));
897 
898  vTrackHistos_.push_back(
899  fs->make<TH1F>("h_chi2", "Track #chi^{2};#chi^{2}_{Track};Number of Tracks", 500, -0.01, 500.));
900  vTrackHistos_.push_back(
901  fs->make<TH1F>("h_chi2Prob", "#chi^{2} probability;Track Prob(#chi^{2},ndof);Number of Tracks", 100, 0.0, 1.));
902  vTrackHistos_.push_back(
903  fs->make<TH1F>("h_normchi2", "#chi^{2}/ndof;#chi^{2}/ndof;Number of Tracks", 100, -0.01, 10.));
904  //variable binning for chi2/ndof vs. pT
905  double xBins[19] = {0., 0.15, 0.5, 1., 1.5, 2., 2.5, 3., 3.5, 4., 4.5, 5., 7., 10., 15., 25., 40., 100., 200.};
906  vTrackHistos_.push_back(fs->make<TH1F>("h_pt", "Track p_{T};p_{T}^{track} [GeV];Number of Tracks", 250, 0., 250));
907  vTrackHistos_.push_back(fs->make<TH1F>("h_ptrebin", "Track p_{T};p_{T}^{track} [GeV];Number of Tracks", 18, xBins));
908  vTrackHistos_.push_back(fs->make<TH1F>(
909  "h_ptResolution", "#delta_{p_{T}}/p_{T}^{track};#delta_{p_{T}}/p_{T}^{track};Number of Tracks", 100, 0., 0.5));
910  vTrackProfiles_.push_back(fs->make<TProfile>(
911  "p_d0_vs_phi", "Transverse Impact Parameter vs. #phi;#phi_{Track};#LT d_{0} #GT [cm]", 100, -M_PI, M_PI));
912  vTrackProfiles_.push_back(fs->make<TProfile>(
913  "p_dz_vs_phi", "Longitudinal Impact Parameter vs. #phi;#phi_{Track};#LT d_{z} #GT [cm]", 100, -M_PI, M_PI));
914  vTrackProfiles_.push_back(fs->make<TProfile>(
915  "p_d0_vs_eta", "Transverse Impact Parameter vs. #eta;#eta_{Track};#LT d_{0} #GT [cm]", 100, -etaMax_, etaMax_));
916  vTrackProfiles_.push_back(
917  fs->make<TProfile>("p_dz_vs_eta",
918  "Longitudinal Impact Parameter vs. #eta;#eta_{Track};#LT d_{z} #GT [cm]",
919  100,
920  -etaMax_,
921  etaMax_));
922  vTrackProfiles_.push_back(
923  fs->make<TProfile>("p_chi2_vs_phi", "#chi^{2} vs. #phi;#phi_{Track};#LT #chi^{2} #GT", 100, -M_PI, M_PI));
924  vTrackProfiles_.push_back(
925  fs->make<TProfile>("p_chi2Prob_vs_phi",
926  "#chi^{2} probablility vs. #phi;#phi_{Track};#LT #chi^{2} probability#GT",
927  100,
928  -M_PI,
929  M_PI));
930 
931  vTrackProfiles_.push_back(fs->make<TProfile>(
932  "p_chi2Prob_vs_d0", "#chi^{2} probablility vs. |d_{0}|;|d_{0}|[cm];#LT #chi^{2} probability#GT", 100, 0, 80));
933  vTrackProfiles_.push_back(fs->make<TProfile>(
934  "p_chi2Prob_vs_dz", "#chi^{2} probablility vs. dz;d_{z} [cm];#LT #chi^{2} probability#GT", 100, -30, 30));
935  vTrackProfiles_.push_back(fs->make<TProfile>(
936  "p_normchi2_vs_phi", "#chi^{2}/ndof vs. #phi;#phi_{Track};#LT #chi^{2}/ndof #GT", 100, -M_PI, M_PI));
937  vTrackProfiles_.push_back(
938  fs->make<TProfile>("p_chi2_vs_eta", "#chi^{2} vs. #eta;#eta_{Track};#LT #chi^{2} #GT", 100, -etaMax_, etaMax_));
939  vTrackProfiles_.push_back(fs->make<TProfile>(
940  "p_normchi2_vs_pt", "norm #chi^{2} vs. p_{T}_{Track}; p_{T}_{Track};#LT #chi^{2}/ndof #GT", 18, xBins));
941  vTrackProfiles_.push_back(fs->make<TProfile>(
942  "p_normchi2_vs_p", "#chi^{2}/ndof vs. p_{Track};p_{Track};#LT #chi^{2}/ndof #GT", 18, xBins));
943  vTrackProfiles_.push_back(
944  fs->make<TProfile>("p_chi2Prob_vs_eta",
945  "#chi^{2} probability vs. #eta;#eta_{Track};#LT #chi^{2} probability #GT",
946  100,
947  -etaMax_,
948  etaMax_));
949 
950  vTrackProfiles_.push_back(fs->make<TProfile>(
951  "p_normchi2_vs_eta", "#chi^{2}/ndof vs. #eta;#eta_{Track};#LT #chi^{2}/ndof #GT", 100, -etaMax_, etaMax_));
952  vTrackProfiles_.push_back(
953  fs->make<TProfile>("p_kappa_vs_phi", "#kappa vs. #phi;#phi_{Track};#kappa", 100, -M_PI, M_PI));
954  vTrackProfiles_.push_back(
955  fs->make<TProfile>("p_kappa_vs_eta", "#kappa vs. #eta;#eta_{Track};#kappa", 100, -etaMax_, etaMax_));
956  vTrackProfiles_.push_back(
957  fs->make<TProfile>("p_ptResolution_vs_phi",
958  "#delta_{p_{T}}/p_{T}^{track};#phi^{track};#delta_{p_{T}}/p_{T}^{track}",
959  100,
960  -M_PI,
961  M_PI));
962 
963  vTrackProfiles_.push_back(
964  fs->make<TProfile>("p_ptResolution_vs_eta",
965  "#delta_{p_{T}}/p_{T}^{track};#eta^{track};#delta_{p_{T}}/p_{T}^{track}",
966  100,
967  -etaMax_,
968  etaMax_));
969 
970  vTrack2DHistos_.push_back(fs->make<TH2F>(
971  "h2_d0_vs_phi", "Transverse Impact Parameter vs. #phi;#phi_{Track};d_{0} [cm]", 100, -M_PI, M_PI, 100, -1., 1.));
972  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_dz_vs_phi",
973  "Longitudinal Impact Parameter vs. #phi;#phi_{Track};d_{z} [cm]",
974  100,
975  -M_PI,
976  M_PI,
977  100,
978  -100.,
979  100.));
980 
981  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_d0_vs_eta",
982  "Transverse Impact Parameter vs. #eta;#eta_{Track};d_{0} [cm]",
983  100,
984  -etaMax_,
985  etaMax_,
986  100,
987  -1.,
988  1.));
989  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_dz_vs_eta",
990  "Longitudinal Impact Parameter vs. #eta;#eta_{Track};d_{z} [cm]",
991  100,
992  -etaMax_,
993  etaMax_,
994  100,
995  -100.,
996  100.));
997 
998  vTrack2DHistos_.push_back(
999  fs->make<TH2F>("h2_chi2_vs_phi", "#chi^{2} vs. #phi;#phi_{Track};#chi^{2}", 100, -M_PI, M_PI, 500, 0., 500.));
1000  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_chi2Prob_vs_phi",
1001  "#chi^{2} probability vs. #phi;#phi_{Track};#chi^{2} probability",
1002  100,
1003  -M_PI,
1004  M_PI,
1005  100,
1006  0.,
1007  1.));
1008 
1009  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_chi2Prob_vs_d0",
1010  "#chi^{2} probability vs. |d_{0}|;|d_{0}| [cm];#chi^{2} probability",
1011  100,
1012  0,
1013  80,
1014  100,
1015  0.,
1016  1.));
1017 
1018  vTrack2DHistos_.push_back(fs->make<TH2F>(
1019  "h2_normchi2_vs_phi", "#chi^{2}/ndof vs. #phi;#phi_{Track};#chi^{2}/ndof", 100, -M_PI, M_PI, 100, 0., 10.));
1020  vTrack2DHistos_.push_back(fs->make<TH2F>(
1021  "h2_chi2_vs_eta", "#chi^{2} vs. #eta;#eta_{Track};#chi^{2}", 100, -etaMax_, etaMax_, 500, 0., 500.));
1022  vTrack2DHistos_.push_back(fs->make<TH2F>("h2_chi2Prob_vs_eta",
1023  "#chi^{2} probaility vs. #eta;#eta_{Track};#chi^{2} probability",
1024  100,
1025  -etaMax_,
1026  etaMax_,
1027  100,
1028  0.,
1029  1.));
1030 
1031  vTrack2DHistos_.push_back(fs->make<TH2F>(
1032  "h2_normchi2_vs_eta", "#chi^{2}/ndof vs. #eta;#eta_{Track};#chi^{2}/ndof", 100, -etaMax_, etaMax_, 100, 0., 10.));
1033  vTrack2DHistos_.push_back(
1034  fs->make<TH2F>("h2_kappa_vs_phi", "#kappa vs. #phi;#phi_{Track};#kappa", 100, -M_PI, M_PI, 100, .0, .05));
1035  vTrack2DHistos_.push_back(
1036  fs->make<TH2F>("h2_kappa_vs_eta", "#kappa vs. #eta;#eta_{Track};#kappa", 100, -etaMax_, etaMax_, 100, .0, .05));
1037  vTrack2DHistos_.push_back(fs->make<TH2F>(
1038  "h2_normchi2_vs_kappa", "#kappa vs. #chi^{2}/ndof;#chi^{2}/ndof;#kappa", 100, 0., 10, 100, -.03, .03));
1039 
1040  firstEvent_ = true;
1041 
1042  } //beginJob

References reco::TrackBase::algoNames, reco::TrackBase::algoSize, DEBUG, etaMax_, firstEvent_, fs, hCharge, hchi2ndof, hchi2ndofhp, hchi2Probhp, hd0, hd0BS, hd0PV, hd0PVvseta, hd0PVvsphi, hd0PVvspt, hd0vseta, hd0vsphi, hd0vspt, hdxy, hdxyBS, hdxyPV, hdz, hdzBS, hdzPV, hEta, hEtahp, hHit, hHit2D, hHitComposition, hHitCountVsPhiBPix, hHitCountVsPhiFPix, hHitCountVsThetaBPix, hHitCountVsThetaFPix, hHitCountVsXBPix, hHitCountVsXFPix, hHitCountVsYBPix, hHitCountVsYFPix, hHitCountVsZBPix, hHitCountVsZFPix, hHithp, hlumi, hNhighPurity, hnhpxb, hnhpxe, hnhTEC, hnhTIB, hnhTID, hnhTOB, hNtrk, hNtrkZoom, hP, hPhi, hPhiBarrel, hPhiEndcapMinus, hPhiEndcapPlus, hPhihp, hPhiOverlapMinus, hPhiOverlapPlus, hPhp, hPt, hPthp, hQoverP, hQoverPZoom, hrun, htrkAlgo, htrkOriAlgo, htrkQuality, hvx, hvy, hvz, mps_fire::i, ievt, isCosmics_, isPhase1_, itrks, M_PI, TFileService::make(), pNBpixHitsVsVx, pNBpixHitsVsVy, pNBpixHitsVsVz, AlCaHLTBitMon_QueryRunRegistry::string, vTrack2DHistos_, vTrackHistos_, vTrackProfiles_, and multiplicitycorr_cfi::xBins.

◆ beginRun()

void GeneralPurposeTrackAnalyzer::beginRun ( edm::Run const &  run,
edm::EventSetup const &  setup 
)
inlineoverrideprivate

Definition at line 678 of file GeneralPurposeTrackAnalyzer.cc.

680  {
681  // Magnetic Field setup
682  magneticField_ = setup.getHandle(magFieldToken_);
683  float B_ = magneticField_.product()->inTesla(GlobalPoint(0, 0, 0)).mag();
684 
685  if (DEBUG) {
686  edm::LogInfo("GeneralPurposeTrackAnalyzer")
687  << "run number:" << run.run() << " magnetic field: " << B_ << " [T]" << std::endl;
688  }
689 
690  //SiStrip Latency
692  if (apvlat->singleReadOutMode() == 1) {
693  mode = 1; // peak mode
694  } else if (apvlat->singleReadOutMode() == 0) {
695  mode = -1; // deco mode
696  }
697 
698  conditionsMap_[run.run()].first = mode;
699  conditionsMap_[run.run()].second = B_;
700  }

References conditionsMap_, DEBUG, MagneticField::inTesla(), latencyToken_, PV3DBase< T, PVType, FrameType >::mag(), magFieldToken_, magneticField_, mode, edm::ESHandle< T >::product(), writedatasetfile::run, singleTopDQM_cfi::setup, and SiStripLatency::singleReadOutMode().

◆ endJob()

void GeneralPurposeTrackAnalyzer::endJob ( void  )
inlineoverrideprivatevirtual

Reimplemented from edm::one::EDAnalyzerBase.

Definition at line 1045 of file GeneralPurposeTrackAnalyzer.cc.

1047  {
1048  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "*******************************" << std::endl;
1049  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "Events run in total: " << ievt << std::endl;
1050  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "n. tracks: " << itrks << std::endl;
1051  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "*******************************" << std::endl;
1052 
1053  int nFiringTriggers = triggerMap_.size();
1054  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "firing triggers: " << nFiringTriggers << std::endl;
1055  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "*******************************" << std::endl;
1056 
1057  tksByTrigger_ = fs->make<TH1D>(
1058  "tksByTrigger", "tracks by HLT path;;% of # traks", nFiringTriggers, -0.5, nFiringTriggers - 0.5);
1059  evtsByTrigger_ = fs->make<TH1D>(
1060  "evtsByTrigger", "events by HLT path;;% of # events", nFiringTriggers, -0.5, nFiringTriggers - 0.5);
1061 
1062  int i = 0;
1063  for (const auto &it : triggerMap_) {
1064  i++;
1065 
1066  double trkpercent = ((it.second).second) * 100. / double(itrks);
1067  double evtpercent = ((it.second).first) * 100. / double(ievt);
1068 
1069  std::cout.precision(4);
1070 
1071  edm::LogPrint("GeneralPurposeTrackAnalyzer")
1072  << "HLT path: " << std::setw(60) << std::left << it.first << " | events firing: " << std::right
1073  << std::setw(8) << (it.second).first << " (" << std::setw(8) << std::fixed << std::setprecision(4)
1074  << evtpercent << "%)"
1075  << " | tracks collected: " << std::setw(10) << (it.second).second << " (" << std::setw(8) << std::fixed
1076  << std::setprecision(4) << trkpercent << "%)";
1077 
1078  tksByTrigger_->SetBinContent(i, trkpercent);
1079  tksByTrigger_->GetXaxis()->SetBinLabel(i, (it.first).c_str());
1080 
1081  evtsByTrigger_->SetBinContent(i, evtpercent);
1082  evtsByTrigger_->GetXaxis()->SetBinLabel(i, (it.first).c_str());
1083  }
1084 
1085  int nRuns = conditionsMap_.size();
1086 
1087  std::vector<int> theRuns_;
1088  for (const auto &it : conditionsMap_) {
1089  theRuns_.push_back(it.first);
1090  }
1091 
1092  sort(theRuns_.begin(), theRuns_.end());
1093  int runRange = theRuns_.back() - theRuns_.front() + 1;
1094 
1095  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "*******************************" << std::endl;
1096  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "first run: " << theRuns_.front() << std::endl;
1097  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "last run: " << theRuns_.back() << std::endl;
1098  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "considered runs: " << nRuns << std::endl;
1099  edm::LogPrint("GeneralPurposeTrackAnalyzer") << "*******************************" << std::endl;
1100 
1101  modeByRun_ = fs->make<TH1D>("modeByRun",
1102  "Strip APV mode by run number;;APV mode (-1=deco,+1=peak)",
1103  runRange,
1104  theRuns_.front() - 0.5,
1105  theRuns_.back() + 0.5);
1106 
1107  fieldByRun_ = fs->make<TH1D>("fieldByRun",
1108  "CMS B-field intensity by run number;;B-field intensity [T]",
1109  runRange,
1110  theRuns_.front() - 0.5,
1111  theRuns_.back() + 0.5);
1112 
1113  for (const auto &the_r : theRuns_) {
1114  if (conditionsMap_.find(the_r)->second.first != 0) {
1115  edm::LogPrint("GeneralPurposeTrackAnalyzer")
1116  << "run:" << the_r << " | isPeak: " << std::setw(4) << conditionsMap_.find(the_r)->second.first
1117  << "| B-field: " << conditionsMap_.find(the_r)->second.second << " [T]"
1118  << "| events: " << std::setw(10) << runInfoMap_.find(the_r)->second.first << ", tracks " << std::setw(10)
1119  << runInfoMap_.find(the_r)->second.second << std::endl;
1120  }
1121 
1122  modeByRun_->SetBinContent((the_r - theRuns_.front()) + 1, conditionsMap_.find(the_r)->second.first);
1123  fieldByRun_->SetBinContent((the_r - theRuns_.front()) + 1, conditionsMap_.find(the_r)->second.second);
1124  modeByRun_->GetXaxis()->SetBinLabel((the_r - theRuns_.front()) + 1, std::to_string(the_r).c_str());
1125  fieldByRun_->GetXaxis()->SetBinLabel((the_r - theRuns_.front()) + 1, std::to_string(the_r).c_str());
1126  }
1127 
1128  pmap->save(true, 0, 0, "PixelHitMap.pdf", 600, 800);
1129  pmap->save(true, 0, 0, "PixelHitMap.png", 500, 750);
1130 
1131  tmap->save(true, 0, 0, "StripHitMap.pdf");
1132  tmap->save(true, 0, 0, "StripHitMap.png");
1133 
1134  gStyle->SetPalette(kRainBow);
1135  pixelmap->beautifyAllHistograms();
1136 
1137  TCanvas cB("CanvBarrel", "CanvBarrel", 1200, 1000);
1138  pixelmap->drawBarrelMaps("entriesBarrel", cB);
1139  cB.SaveAs("pixelBarrelEntries.png");
1140 
1141  TCanvas cF("CanvForward", "CanvForward", 1600, 1000);
1142  pixelmap->drawForwardMaps("entriesForward", cF);
1143  cF.SaveAs("pixelForwardEntries.png");
1144  }

References conditionsMap_, gather_cfg::cout, evtsByTrigger_, fieldByRun_, first, alignBH_cfg::fixed, fs, mps_fire::i, ievt, itrks, TFileService::make(), modeByRun_, pixelmap, pmap, runInfoMap_, edm::second(), jetUpdater_cfi::sort, tksByTrigger_, tmap, and triggerMap_.

Referenced by o2olib.O2ORunMgr::executeJob().

◆ endRun()

void GeneralPurposeTrackAnalyzer::endRun ( edm::Run const &  ,
edm::EventSetup const &   
)
inlineoverrideprivate

Definition at line 703 of file GeneralPurposeTrackAnalyzer.cc.

703 {}

◆ fillDescriptions()

void GeneralPurposeTrackAnalyzer::fillDescriptions ( edm::ConfigurationDescriptions descriptions)
static

Definition at line 1191 of file GeneralPurposeTrackAnalyzer.cc.

1193 {
1195  desc.setComment("Generic track analyzer to check ALCARECO sample quantities");
1196  desc.add<edm::InputTag>("TkTag", edm::InputTag("generalTracks"));
1197  desc.add<edm::InputTag>("TriggerResultsTag", edm::InputTag("TriggerResults", "", "HLT"));
1198  desc.add<edm::InputTag>("BeamSpotTag", edm::InputTag("offlineBeamSpot"));
1199  desc.add<edm::InputTag>("VerticesTag", edm::InputTag("offlinePrimaryVertices"));
1200  desc.add<bool>("isCosmics", false);
1201  descriptions.add("GeneralPurposeTrackAnalyzer", desc);
1202 }

References edm::ConfigurationDescriptions::add(), submitPVResolutionJobs::desc, and HLT_FULL_cff::InputTag.

◆ GetIndex()

template<class OBJECT_TYPE >
int GeneralPurposeTrackAnalyzer::GetIndex ( const std::vector< OBJECT_TYPE * > &  vec,
const TString &  name 
)
inline

Definition at line 128 of file GeneralPurposeTrackAnalyzer.cc.

128  {
129  for (const auto &iter : vec | boost::adaptors::indexed(0)) {
130  if (iter.value() && iter.value()->GetName() == name) {
131  return iter.index();
132  }
133  }
134  edm::LogError("GeneralPurposeTrackAnalyzer") << "@SUB=GeneralPurposeTrackAnalyzer::GetIndex"
135  << " could not find " << name;
136  return -1;
137  }

References Skims_PA_cff::name.

Referenced by analyze().

◆ isHit2D()

bool GeneralPurposeTrackAnalyzer::isHit2D ( const TrackingRecHit hit)
inlineprivate

Definition at line 1147 of file GeneralPurposeTrackAnalyzer.cc.

1149  {
1150  bool countStereoHitAs2D_ = true;
1151  // we count SiStrip stereo modules as 2D if selected via countStereoHitAs2D_
1152  // (since they provide theta information)
1153  if (!hit.isValid() ||
1154  (hit.dimension() < 2 && !countStereoHitAs2D_ && !dynamic_cast<const SiStripRecHit1D *>(&hit))) {
1155  return false; // real RecHit1D - but SiStripRecHit1D depends on countStereoHitAs2D_
1156  } else {
1157  const DetId detId(hit.geographicalId());
1158  if (detId.det() == DetId::Tracker) {
1159  if (detId.subdetId() == kBPIX || detId.subdetId() == kFPIX) {
1160  return true; // pixel is always 2D
1161  } else { // should be SiStrip now
1162  const SiStripDetId stripId(detId);
1163  if (stripId.stereo())
1164  return countStereoHitAs2D_; // stereo modules
1165  else if (dynamic_cast<const SiStripRecHit1D *>(&hit) || dynamic_cast<const SiStripRecHit2D *>(&hit))
1166  return false; // rphi modules hit
1167  //the following two are not used any more since ages...
1168  else if (dynamic_cast<const SiStripMatchedRecHit2D *>(&hit))
1169  return true; // matched is 2D
1170  else if (dynamic_cast<const ProjectedSiStripRecHit2D *>(&hit)) {
1171  const ProjectedSiStripRecHit2D *pH = static_cast<const ProjectedSiStripRecHit2D *>(&hit);
1172  return (countStereoHitAs2D_ && this->isHit2D(pH->originalHit())); // depends on original...
1173  } else {
1174  edm::LogError("UnknownType") << "@SUB=GeneralPurposeTrackAnalyzer::isHit2D"
1175  << "Tracker hit not in pixel, neither SiStripRecHit[12]D nor "
1176  << "SiStripMatchedRecHit2D nor ProjectedSiStripRecHit2D.";
1177  return false;
1178  }
1179  }
1180  } else { // not tracker??
1181  edm::LogWarning("DetectorMismatch") << "@SUB=GeneralPurposeTrackAnalyzer::isHit2D"
1182  << "Hit not in tracker with 'official' dimension >=2.";
1183  return true; // dimension() >= 2 so accept that...
1184  }
1185  }
1186  // never reached...
1187  }

References kBPIX, kFPIX, ProjectedSiStripRecHit2D::originalHit(), SiStripDetId::stereo(), and DetId::Tracker.

Referenced by analyze().

Member Data Documentation

◆ BeamSpotTag_

edm::InputTag GeneralPurposeTrackAnalyzer::BeamSpotTag_
private

Definition at line 274 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by GeneralPurposeTrackAnalyzer().

◆ beamspotToken

edm::EDGetTokenT<reco::BeamSpot> GeneralPurposeTrackAnalyzer::beamspotToken
private

Definition at line 281 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and GeneralPurposeTrackAnalyzer().

◆ conditionsMap_

std::map<int, std::pair<int, float> > GeneralPurposeTrackAnalyzer::conditionsMap_
private

Definition at line 285 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginRun(), and endJob().

◆ etaMax_

float GeneralPurposeTrackAnalyzer::etaMax_
private

Definition at line 268 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginJob().

◆ evtsByTrigger_

TH1D* GeneralPurposeTrackAnalyzer::evtsByTrigger_
private

Definition at line 258 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by endJob().

◆ fieldByRun_

TH1D* GeneralPurposeTrackAnalyzer::fieldByRun_
private

Definition at line 261 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by endJob().

◆ firstEvent_

bool GeneralPurposeTrackAnalyzer::firstEvent_
private

Definition at line 266 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginJob().

◆ fs

edm::Service<TFileService> GeneralPurposeTrackAnalyzer::fs
private

Definition at line 147 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginJob(), and endJob().

◆ geomToken_

const edm::ESGetToken<TrackerGeometry, TrackerDigiGeometryRecord> GeneralPurposeTrackAnalyzer::geomToken_
private

Definition at line 141 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze().

◆ hCharge

TH1D* GeneralPurposeTrackAnalyzer::hCharge
private

Definition at line 195 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hchi2ndof

TH1D* GeneralPurposeTrackAnalyzer::hchi2ndof
private

Definition at line 154 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hchi2ndofhp

TH1D* GeneralPurposeTrackAnalyzer::hchi2ndofhp
private

Definition at line 192 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hchi2Probhp

TH1D* GeneralPurposeTrackAnalyzer::hchi2Probhp
private

Definition at line 193 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0

TH1D* GeneralPurposeTrackAnalyzer::hd0
private

Definition at line 217 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0BS

TH1D* GeneralPurposeTrackAnalyzer::hd0BS
private

Definition at line 245 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0PV

TH1D* GeneralPurposeTrackAnalyzer::hd0PV
private

Definition at line 248 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0PVvseta

TH2D* GeneralPurposeTrackAnalyzer::hd0PVvseta
private

Definition at line 222 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0PVvsphi

TH2D* GeneralPurposeTrackAnalyzer::hd0PVvsphi
private

Definition at line 221 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0PVvspt

TH2D* GeneralPurposeTrackAnalyzer::hd0PVvspt
private

Definition at line 223 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0vseta

TH2D* GeneralPurposeTrackAnalyzer::hd0vseta
private

Definition at line 226 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0vsphi

TH2D* GeneralPurposeTrackAnalyzer::hd0vsphi
private

Definition at line 225 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hd0vspt

TH2D* GeneralPurposeTrackAnalyzer::hd0vspt
private

Definition at line 227 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hDeltaEta

TH1D* GeneralPurposeTrackAnalyzer::hDeltaEta
private

Definition at line 211 of file GeneralPurposeTrackAnalyzer.cc.

◆ hDeltaPhi

TH1D* GeneralPurposeTrackAnalyzer::hDeltaPhi
private

Definition at line 210 of file GeneralPurposeTrackAnalyzer.cc.

◆ hDeltaR

TH1D* GeneralPurposeTrackAnalyzer::hDeltaR
private

Definition at line 212 of file GeneralPurposeTrackAnalyzer.cc.

◆ hdxy

TH1D* GeneralPurposeTrackAnalyzer::hdxy
private

Definition at line 219 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hdxyBS

TH1D* GeneralPurposeTrackAnalyzer::hdxyBS
private

Definition at line 244 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hdxyPV

TH1D* GeneralPurposeTrackAnalyzer::hdxyPV
private

Definition at line 247 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hdz

TH1D* GeneralPurposeTrackAnalyzer::hdz
private

Definition at line 218 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hdzBS

TH1D* GeneralPurposeTrackAnalyzer::hdzBS
private

Definition at line 246 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hdzPV

TH1D* GeneralPurposeTrackAnalyzer::hdzPV
private

Definition at line 249 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hEta

TH1D* GeneralPurposeTrackAnalyzer::hEta
private

Definition at line 198 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hEtahp

TH1D* GeneralPurposeTrackAnalyzer::hEtahp
private

Definition at line 190 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hEtaMinus

TH1D* GeneralPurposeTrackAnalyzer::hEtaMinus
private

Definition at line 200 of file GeneralPurposeTrackAnalyzer.cc.

◆ hEtaPlus

TH1D* GeneralPurposeTrackAnalyzer::hEtaPlus
private

Definition at line 199 of file GeneralPurposeTrackAnalyzer.cc.

◆ hHit

TH1D* GeneralPurposeTrackAnalyzer::hHit
private

Definition at line 168 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHit2D

TH1D* GeneralPurposeTrackAnalyzer::hHit2D
private

Definition at line 169 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitComposition

TH1D* GeneralPurposeTrackAnalyzer::hHitComposition
private

Definition at line 236 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsPhiBPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsPhiBPix
private

Definition at line 179 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsPhiFPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsPhiFPix
private

Definition at line 182 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsThetaBPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsThetaBPix
private

Definition at line 178 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsThetaFPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsThetaFPix
private

Definition at line 181 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsXBPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsXBPix
private

Definition at line 171 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsXFPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsXFPix
private

Definition at line 172 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsYBPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsYBPix
private

Definition at line 173 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsYFPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsYFPix
private

Definition at line 174 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsZBPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsZBPix
private

Definition at line 175 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitCountVsZFPix

TH1D* GeneralPurposeTrackAnalyzer::hHitCountVsZFPix
private

Definition at line 176 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHithp

TH1D* GeneralPurposeTrackAnalyzer::hHithp
private

Definition at line 189 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hHitMinus

TH1D* GeneralPurposeTrackAnalyzer::hHitMinus
private

Definition at line 185 of file GeneralPurposeTrackAnalyzer.cc.

◆ hHitPlus

TH1D* GeneralPurposeTrackAnalyzer::hHitPlus
private

Definition at line 184 of file GeneralPurposeTrackAnalyzer.cc.

◆ hltresultsToken

edm::EDGetTokenT<edm::TriggerResults> GeneralPurposeTrackAnalyzer::hltresultsToken
private

Definition at line 280 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and GeneralPurposeTrackAnalyzer().

◆ hlumi

TH1D* GeneralPurposeTrackAnalyzer::hlumi
private

Definition at line 251 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hMinPt

TH1D* GeneralPurposeTrackAnalyzer::hMinPt
private

Definition at line 165 of file GeneralPurposeTrackAnalyzer.cc.

◆ hMultCand

TH1D* GeneralPurposeTrackAnalyzer::hMultCand
private

Definition at line 242 of file GeneralPurposeTrackAnalyzer.cc.

◆ hNhighPurity

TH1D* GeneralPurposeTrackAnalyzer::hNhighPurity
private

Definition at line 160 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhpxb

TH1D* GeneralPurposeTrackAnalyzer::hnhpxb
private

Definition at line 229 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhpxe

TH1D* GeneralPurposeTrackAnalyzer::hnhpxe
private

Definition at line 230 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhTEC

TH1D* GeneralPurposeTrackAnalyzer::hnhTEC
private

Definition at line 234 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhTIB

TH1D* GeneralPurposeTrackAnalyzer::hnhTIB
private

Definition at line 231 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhTID

TH1D* GeneralPurposeTrackAnalyzer::hnhTID
private

Definition at line 232 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hnhTOB

TH1D* GeneralPurposeTrackAnalyzer::hnhTOB
private

Definition at line 233 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hNtrk

TH1D* GeneralPurposeTrackAnalyzer::hNtrk
private

Definition at line 155 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hNtrkZoom

TH1D* GeneralPurposeTrackAnalyzer::hNtrkZoom
private

Definition at line 156 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hP

TH1D* GeneralPurposeTrackAnalyzer::hP
private

Definition at line 161 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhi

TH1D* GeneralPurposeTrackAnalyzer::hPhi
private

Definition at line 201 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiBarrel

TH1D* GeneralPurposeTrackAnalyzer::hPhiBarrel
private

Definition at line 202 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiEndcapMinus

TH1D* GeneralPurposeTrackAnalyzer::hPhiEndcapMinus
private

Definition at line 206 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiEndcapPlus

TH1D* GeneralPurposeTrackAnalyzer::hPhiEndcapPlus
private

Definition at line 205 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhihp

TH1D* GeneralPurposeTrackAnalyzer::hPhihp
private

Definition at line 191 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiMinus

TH1D* GeneralPurposeTrackAnalyzer::hPhiMinus
private

Definition at line 208 of file GeneralPurposeTrackAnalyzer.cc.

◆ hPhiOverlapMinus

TH1D* GeneralPurposeTrackAnalyzer::hPhiOverlapMinus
private

Definition at line 204 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiOverlapPlus

TH1D* GeneralPurposeTrackAnalyzer::hPhiOverlapPlus
private

Definition at line 203 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPhiPlus

TH1D* GeneralPurposeTrackAnalyzer::hPhiPlus
private

Definition at line 207 of file GeneralPurposeTrackAnalyzer.cc.

◆ hPhp

TH1D* GeneralPurposeTrackAnalyzer::hPhp
private

Definition at line 187 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPMinus

TH1D* GeneralPurposeTrackAnalyzer::hPMinus
private

Definition at line 163 of file GeneralPurposeTrackAnalyzer.cc.

◆ hPPlus

TH1D* GeneralPurposeTrackAnalyzer::hPPlus
private

Definition at line 162 of file GeneralPurposeTrackAnalyzer.cc.

◆ hPt

TH1D* GeneralPurposeTrackAnalyzer::hPt
private

Definition at line 164 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPthp

TH1D* GeneralPurposeTrackAnalyzer::hPthp
private

Definition at line 188 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hPtMinus

TH1D* GeneralPurposeTrackAnalyzer::hPtMinus
private

Definition at line 167 of file GeneralPurposeTrackAnalyzer.cc.

◆ hPtPlus

TH1D* GeneralPurposeTrackAnalyzer::hPtPlus
private

Definition at line 166 of file GeneralPurposeTrackAnalyzer.cc.

◆ hQoverP

TH1D* GeneralPurposeTrackAnalyzer::hQoverP
private

Definition at line 196 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hQoverPZoom

TH1D* GeneralPurposeTrackAnalyzer::hQoverPZoom
private

Definition at line 197 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hrun

TH1D* GeneralPurposeTrackAnalyzer::hrun
private

Definition at line 250 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ htrkAlgo

TH1I* GeneralPurposeTrackAnalyzer::htrkAlgo
private

Definition at line 158 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ htrkOriAlgo

TH1I* GeneralPurposeTrackAnalyzer::htrkOriAlgo
private

Definition at line 159 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ htrkQuality

TH1I* GeneralPurposeTrackAnalyzer::htrkQuality
private

Definition at line 157 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hvx

TH1D* GeneralPurposeTrackAnalyzer::hvx
private

Definition at line 214 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hvy

TH1D* GeneralPurposeTrackAnalyzer::hvy
private

Definition at line 215 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ hvz

TH1D* GeneralPurposeTrackAnalyzer::hvz
private

Definition at line 216 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ ievt

int GeneralPurposeTrackAnalyzer::ievt
private

Definition at line 263 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), beginJob(), and endJob().

◆ isCosmics_

bool GeneralPurposeTrackAnalyzer::isCosmics_
private

Definition at line 277 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), beginJob(), and GeneralPurposeTrackAnalyzer().

◆ isPhase1_

bool GeneralPurposeTrackAnalyzer::isPhase1_
private

Definition at line 267 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ itrks

int GeneralPurposeTrackAnalyzer::itrks
private

Definition at line 264 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), beginJob(), and endJob().

◆ latencyToken_

const edm::ESGetToken<SiStripLatency, SiStripLatencyRcd> GeneralPurposeTrackAnalyzer::latencyToken_
private

Definition at line 143 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginRun().

◆ magFieldToken_

const edm::ESGetToken<MagneticField, IdealMagneticFieldRecord> GeneralPurposeTrackAnalyzer::magFieldToken_
private

Definition at line 142 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginRun().

◆ magneticField_

edm::ESHandle<MagneticField> GeneralPurposeTrackAnalyzer::magneticField_
private

Definition at line 145 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginRun().

◆ mode

int GeneralPurposeTrackAnalyzer::mode
private

Definition at line 265 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by beginRun(), and alignment.Alignment::restrictTo().

◆ modeByRun_

TH1D* GeneralPurposeTrackAnalyzer::modeByRun_
private

Definition at line 260 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by endJob().

◆ pixelmap

std::unique_ptr<Phase1PixelMaps> GeneralPurposeTrackAnalyzer::pixelmap
private

Definition at line 152 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), endJob(), and GeneralPurposeTrackAnalyzer().

◆ pmap

std::unique_ptr<TrackerMap> GeneralPurposeTrackAnalyzer::pmap
private

Definition at line 150 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), endJob(), and GeneralPurposeTrackAnalyzer().

◆ pNBpixHitsVsVx

TProfile* GeneralPurposeTrackAnalyzer::pNBpixHitsVsVx
private

Definition at line 238 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ pNBpixHitsVsVy

TProfile* GeneralPurposeTrackAnalyzer::pNBpixHitsVsVy
private

Definition at line 239 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ pNBpixHitsVsVz

TProfile* GeneralPurposeTrackAnalyzer::pNBpixHitsVsVz
private

Definition at line 240 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ runInfoMap_

std::map<int, std::pair<int, int> > GeneralPurposeTrackAnalyzer::runInfoMap_
private

Definition at line 286 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and endJob().

◆ theTrackCollectionToken

edm::EDGetTokenT<reco::TrackCollection> GeneralPurposeTrackAnalyzer::theTrackCollectionToken
private

Definition at line 279 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and GeneralPurposeTrackAnalyzer().

◆ tksByTrigger_

TH1D* GeneralPurposeTrackAnalyzer::tksByTrigger_
private

Definition at line 257 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by endJob().

◆ TkTag_

edm::InputTag GeneralPurposeTrackAnalyzer::TkTag_
private

Definition at line 272 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by GeneralPurposeTrackAnalyzer().

◆ tmap

std::unique_ptr<TrackerMap> GeneralPurposeTrackAnalyzer::tmap
private

Definition at line 149 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), endJob(), and GeneralPurposeTrackAnalyzer().

◆ trackerGeometry_

const TrackerGeometry* GeneralPurposeTrackAnalyzer::trackerGeometry_
private

Definition at line 270 of file GeneralPurposeTrackAnalyzer.cc.

◆ triggerMap_

std::map<std::string, std::pair<int, int> > GeneralPurposeTrackAnalyzer::triggerMap_
private

Definition at line 284 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and endJob().

◆ TriggerResultsTag_

edm::InputTag GeneralPurposeTrackAnalyzer::TriggerResultsTag_
private

Definition at line 273 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by GeneralPurposeTrackAnalyzer().

◆ vertexToken

edm::EDGetTokenT<reco::VertexCollection> GeneralPurposeTrackAnalyzer::vertexToken
private

Definition at line 282 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by GeneralPurposeTrackAnalyzer().

◆ VerticesTag_

edm::InputTag GeneralPurposeTrackAnalyzer::VerticesTag_
private

Definition at line 275 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by GeneralPurposeTrackAnalyzer().

◆ vTrack2DHistos_

std::vector<TH1 *> GeneralPurposeTrackAnalyzer::vTrack2DHistos_
private

Definition at line 255 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ vTrackHistos_

std::vector<TH1 *> GeneralPurposeTrackAnalyzer::vTrackHistos_
private

Definition at line 253 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

◆ vTrackProfiles_

std::vector<TH1 *> GeneralPurposeTrackAnalyzer::vTrackProfiles_
private

Definition at line 254 of file GeneralPurposeTrackAnalyzer.cc.

Referenced by analyze(), and beginJob().

TrackerGeometry::idToDet
const TrackerGeomDet * idToDet(DetId) const override
Definition: TrackerGeometry.cc:193
edm::ESHandle::product
T const * product() const
Definition: ESHandle.h:86
GeneralPurposeTrackAnalyzer::hHitCountVsYBPix
TH1D * hHitCountVsYBPix
Definition: GeneralPurposeTrackAnalyzer.cc:173
GeneralPurposeTrackAnalyzer::itrks
int itrks
Definition: GeneralPurposeTrackAnalyzer.cc:264
alignBH_cfg.fixed
fixed
Definition: alignBH_cfg.py:54
GeneralPurposeTrackAnalyzer::conditionsMap_
std::map< int, std::pair< int, float > > conditionsMap_
Definition: GeneralPurposeTrackAnalyzer.cc:285
MagneticField::inTesla
virtual GlobalVector inTesla(const GlobalPoint &gp) const =0
Field value ad specified global point, in Tesla.
mps_fire.i
i
Definition: mps_fire.py:428
pwdgSkimBPark_cfi.beamSpot
beamSpot
Definition: pwdgSkimBPark_cfi.py:5
HLT_FULL_cff.track
track
Definition: HLT_FULL_cff.py:11713
GeneralPurposeTrackAnalyzer::hnhTOB
TH1D * hnhTOB
Definition: GeneralPurposeTrackAnalyzer.cc:233
reco::TrackBase::tight
Definition: TrackBase.h:153
GeneralPurposeTrackAnalyzer::hd0BS
TH1D * hd0BS
Definition: GeneralPurposeTrackAnalyzer.cc:245
PixelSubdetector::PixelEndcap
Definition: PixelSubdetector.h:11
reco::TrackBase::loose
Definition: TrackBase.h:152
GeomDet
Definition: GeomDet.h:27
PixelSubdetector::PixelBarrel
Definition: PixelSubdetector.h:11
reco::TrackBase::goodIterative
Definition: TrackBase.h:156
HLTBitAnalyser_cfi.hltresults
hltresults
Definition: HLTBitAnalyser_cfi.py:13
GeneralPurposeTrackAnalyzer::triggerMap_
std::map< std::string, std::pair< int, int > > triggerMap_
Definition: GeneralPurposeTrackAnalyzer.cc:284
PV3DBase::x
T x() const
Definition: PV3DBase.h:59
GeneralPurposeTrackAnalyzer::vTrack2DHistos_
std::vector< TH1 * > vTrack2DHistos_
Definition: GeneralPurposeTrackAnalyzer.cc:255
reco::Vertex::z
double z() const
z coordinate
Definition: Vertex.h:120
reco::TrackBase::confirmed
Definition: TrackBase.h:155
GeneralPurposeTrackAnalyzer::isHit2D
bool isHit2D(const TrackingRecHit &hit)
Definition: GeneralPurposeTrackAnalyzer.cc:1147
GeneralPurposeTrackAnalyzer::hd0
TH1D * hd0
Definition: GeneralPurposeTrackAnalyzer.cc:217
GeneralPurposeTrackAnalyzer::hPthp
TH1D * hPthp
Definition: GeneralPurposeTrackAnalyzer.cc:188
PV3DBase::theta
Geom::Theta< T > theta() const
Definition: PV3DBase.h:72
reco::TrackBase::undefQuality
Definition: TrackBase.h:151
reco::VertexCollection
std::vector< Vertex > VertexCollection
collection of Vertex objects
Definition: VertexFwd.h:9
gather_cfg.cout
cout
Definition: gather_cfg.py:144
geometry
Definition: geometry.py:1
edm::LogPrint
Log< level::Warning, true > LogPrint
Definition: MessageLogger.h:130
HLT_FULL_cff.InputTag
InputTag
Definition: HLT_FULL_cff.py:89285
GeneralPurposeTrackAnalyzer::hvz
TH1D * hvz
Definition: GeneralPurposeTrackAnalyzer.cc:216
edm::ParameterSetDescription
Definition: ParameterSetDescription.h:52
GeneralPurposeTrackAnalyzer::hNhighPurity
TH1D * hNhighPurity
Definition: GeneralPurposeTrackAnalyzer.cc:160
GeneralPurposeTrackAnalyzer::tksByTrigger_
TH1D * tksByTrigger_
Definition: GeneralPurposeTrackAnalyzer.cc:257
GeneralPurposeTrackAnalyzer::hnhpxb
TH1D * hnhpxb
Definition: GeneralPurposeTrackAnalyzer.cc:229
edm::second
U second(std::pair< T, U > const &p)
Definition: ParameterSet.cc:222
GeneralPurposeTrackAnalyzer::hHitCountVsPhiFPix
TH1D * hHitCountVsPhiFPix
Definition: GeneralPurposeTrackAnalyzer.cc:182
edm::LogInfo
Log< level::Info, false > LogInfo
Definition: MessageLogger.h:125
GeneralPurposeTrackAnalyzer::TriggerResultsTag_
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Definition: GeneralPurposeTrackAnalyzer.cc:273
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Definition: GeneralPurposeTrackAnalyzer.cc:179
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Definition: GeneralPurposeTrackAnalyzer.cc:145
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Definition: ProjectedSiStripRecHit2D.h:8
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Definition: SiPixelRecHit.h:23
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Definition: PV3DBase.h:61
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Definition: TriggerNames.cc:48
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Definition: GlobalPoint.h:10
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Definition: CAHitNtupletGeneratorKernelsImpl.h:112
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Field value ad specified global point, in 1/Gev.
Definition: MagneticField.h:36
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constexpr int subdetId() const
get the contents of the subdetector field (not cast into any detector's numbering enum)
Definition: DetId.h:48
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Definition: GeneralPurposeTrackAnalyzer.cc:80
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Definition: AlCaHLTBitMon_QueryRunRegistry.py:256
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Definition: GeneralPurposeTrackAnalyzer.cc:187
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Definition: GeomDetEnumerators.h:25
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Definition: GeneralPurposeTrackAnalyzer.cc:150
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point in space with cartesian internal representation
Definition: Point3D.h:12
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Definition: DetId.h:25
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Definition: duplicaterechits_cfi.py:4
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Definition: jetUpdater_cfi.py:29
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Definition: Vertex.h:116
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Definition: GeneralPurposeTrackAnalyzer.cc:282
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Definition: GeneralPurposeTrackAnalyzer.cc:190
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Definition: GeneralPurposeTrackAnalyzer.cc:240
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Definition: GeneralPurposeTrackAnalyzer.cc:230
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Definition: PV3DBase.h:60
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#define M_PI
Definition: BXVectorInputProducer.cc:49
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Definition: GeneralPurposeTrackAnalyzer.cc:250
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Definition: GeneralPurposeTrackAnalyzer.cc:154
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Definition: GeneralPurposeTrackAnalyzer.cc:231
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Definition: GeneralPurposeTrackAnalyzer.cc:176
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Definition: SiStripLatency.cc:122
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Definition: GeneralPurposeTrackAnalyzer.cc:149
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Definition: GeneralPurposeTrackAnalyzer.cc:147
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Definition: GeneralPurposeTrackAnalyzer.cc:161
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Definition: MessageLogger.h:123
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Definition: GeneralPurposeTrackAnalyzer.cc:168
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Definition: GeneralPurposeTrackAnalyzer.cc:158
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Definition: HcalObjRepresent.h:1053
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Definition: GeneralPurposeTrackAnalyzer.cc:232
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Definition: GeneralPurposeTrackAnalyzer.cc:82
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Definition: GeneralPurposeTrackAnalyzer.cc:189
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Definition: GeneralPurposeTrackAnalyzer.cc:175
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Definition: TriggerNames.cc:50
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Definition: GeneralPurposeTrackAnalyzer.cc:191
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Definition: GeneralPurposeTrackAnalyzer.cc:263
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Definition: GeneralPurposeTrackAnalyzer.cc:214
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Definition: GeneralPurposeTrackAnalyzer.cc:128
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T mag() const
Definition: PV3DBase.h:64
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Definition: GeneralPurposeTrackAnalyzer.cc:249
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Definition: GeneralPurposeTrackAnalyzer.cc:206
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Definition: submitPVResolutionJobs.py:251
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Definition: GeneralPurposeTrackAnalyzer.cc:279
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constexpr uint32_t rawId() const
get the raw id
Definition: DetId.h:57
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Definition: writedatasetfile.py:27
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TH1D * fieldByRun_
Definition: GeneralPurposeTrackAnalyzer.cc:261
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double y() const
y coordinate
Definition: Vertex.h:118
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Definition: GeneralPurposeTrackAnalyzer.cc:172
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Definition: GeneralPurposeTrackAnalyzer.cc:156
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Definition: PVValidationHelpers.h:48
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Definition: TrackBase.h:141
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Definition: PVValidationHelpers.h:51
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Definition: GeneralPurposeTrackAnalyzer.cc:265
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Definition: spclusmultinvestigator_cfi.py:4
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const edm::ESGetToken< MagneticField, IdealMagneticFieldRecord > magFieldToken_
Definition: GeneralPurposeTrackAnalyzer.cc:142
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static const std::string kSharedResource
Definition: TFileService.h:76
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Definition: GeneralPurposeTrackAnalyzer.cc:155
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Definition: TriggerNames.h:55
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Definition: GeneralPurposeTrackAnalyzer.cc:201
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Definition: Skims_PA_cff.py:17
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Definition: GeneralPurposeTrackAnalyzer.cc:196
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Definition: GeneralPurposeTrackAnalyzer.cc:280
GeneralPurposeTrackAnalyzer::geomToken_
const edm::ESGetToken< TrackerGeometry, TrackerDigiGeometryRecord > geomToken_
Definition: GeneralPurposeTrackAnalyzer.cc:141
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Definition: GeneralPurposeTrackAnalyzer.cc:246
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Abs< T >::type abs(const T &t)
Definition: Abs.h:22
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static const G4double kappa
Definition: UrbanMscModel93.cc:35
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Definition: GeneralPurposeTrackAnalyzer.cc:267
GeneralPurposeTrackAnalyzer::TkTag_
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Definition: GeneralPurposeTrackAnalyzer.cc:272
SiStripDetId
Detector identifier class for the strip tracker.
Definition: SiStripDetId.h:18
GeneralPurposeTrackAnalyzer::hHitCountVsXBPix
TH1D * hHitCountVsXBPix
Definition: GeneralPurposeTrackAnalyzer.cc:171
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Definition: GeneralPurposeTrackAnalyzer.cc:164
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Definition: GeneralPurposeTrackAnalyzer.cc:192
point
*vegas h *****************************************************used in the default bin number in original ***version of VEGAS is ***a higher bin number might help to derive a more precise ***grade subtle point
Definition: invegas.h:5
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bool isValid() const
Definition: HandleBase.h:70
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Definition: event.py:1
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TH1D * hHitComposition
Definition: GeneralPurposeTrackAnalyzer.cc:236
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bool firstEvent_
Definition: GeneralPurposeTrackAnalyzer.cc:266
GeneralPurposeTrackAnalyzer::hPhiOverlapPlus
TH1D * hPhiOverlapPlus
Definition: GeneralPurposeTrackAnalyzer.cc:203
GeneralPurposeTrackAnalyzer::vTrackHistos_
std::vector< TH1 * > vTrackHistos_
Definition: GeneralPurposeTrackAnalyzer.cc:253
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Definition: GeneralPurposeTrackAnalyzer.cc:195
GeneralPurposeTrackAnalyzer::hd0PV
TH1D * hd0PV
Definition: GeneralPurposeTrackAnalyzer.cc:248
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static const std::string algoNames[]
Definition: TrackBase.h:147
GeneralPurposeTrackAnalyzer::hd0vsphi
TH2D * hd0vsphi
Definition: GeneralPurposeTrackAnalyzer.cc:225
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Definition: InputTag.h:15
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std::vector< Track > TrackCollection
collection of Tracks
Definition: TrackFwd.h:14
GeneralPurposeTrackAnalyzer::hd0vspt
TH2D * hd0vspt
Definition: GeneralPurposeTrackAnalyzer.cc:227
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Geom::Phi< T > phi() const
Definition: PV3DBase.h:66
GeneralPurposeTrackAnalyzer::hdxyPV
TH1D * hdxyPV
Definition: GeneralPurposeTrackAnalyzer.cc:247
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Definition: Vertex.h:35
hit
Definition: SiStripHitEffFromCalibTree.cc:88
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T * make(const Args &... args) const
make new ROOT object
Definition: TFileService.h:64
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Definition: muonDTDigis_cfi.py:27
GeneralPurposeTrackAnalyzer::pixelmap
std::unique_ptr< Phase1PixelMaps > pixelmap
Definition: GeneralPurposeTrackAnalyzer.cc:152
GeneralPurposeTrackAnalyzer::vTrackProfiles_
std::vector< TH1 * > vTrackProfiles_
Definition: GeneralPurposeTrackAnalyzer.cc:254
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Definition: TrackerGeometry.h:14
GeneralPurposeTrackAnalyzer::htrkQuality
TH1I * htrkQuality
Definition: GeneralPurposeTrackAnalyzer.cc:157
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Definition: TrackBase.h:154