60 LogVerbatim(
"DTDQM|DTMonitorModule|DTChamberEfficiency")
61 <<
"DTChamberEfficiency: constructor called";
68 theTracksToken_ = consumes<reco::TrackCollection>(theTracksLabel_);
70 theMaxChi2 =
static_cast<unsigned int>(pSet.
getParameter<
double>(
"theMaxChi2"));
72 theMinNrec =
static_cast<int>(pSet.
getParameter<
double>(
"theMinNrec"));
82 labelRPCRecHits,labelGEMHits,iC,
true,
false,
false,
false);
85 theNavigationType = pSet.
getParameter<
string>(
"NavigationType");
93 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency")
94 <<
"DTChamberEfficiency: destructor called";
98 delete theMeasurementExtractor;
116 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency")
117 <<
"DTChamberEfficiency: booking histos";
122 for(
int wheel=-2;wheel<=2;wheel++){
124 vector<MonitorElement *>
histos;
126 stringstream wheel_str; wheel_str << wheel;
128 histos.push_back(ibooker.
book2D(
"hCountSectVsChamb_All_W"+ wheel_str.str(),
129 "Countings for wheel " + wheel_str.str(),14,1.,15.,4,1.,5.));
131 histos.push_back(ibooker.
book2D(
"hCountSectVsChamb_Qual_W"+ wheel_str.str(),
132 "Countings for wheel " + wheel_str.str(),14,1.,15.,4,1.,5.));
135 histos.push_back(ibooker.
book2D(
"hExtrapSectVsChamb_W"+ wheel_str.str(),
136 "Extrapolations for wheel " + wheel_str.str(),14,1.,15.,4,1.,5.));
138 histosPerW.push_back(histos);
148 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
149 "--- [DTChamberEfficiency] Event analysed #Run: " <<
150 event.id().run() <<
" #Event: " <<
event.id().event() << endl;
152 theService->update(eventSetup);
153 theMeasurementExtractor->setEvent(event);
157 event.getByToken(theTracksToken_, tracks);
162 for(reco::TrackCollection::const_iterator track = tracks->begin(); track!=tracks->end(); ++track) {
166 const int recHitsize = (int)trans_track.
recHitsSize();
167 if(recHitsize < theMinNrec)
continue;
171 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
"--- New track" << endl;
172 set<DTChamberId> chAlrUsed;
174 rHit != trans_track.recHitsEnd(); ++rHit) {
175 DetId rHitid = (*rHit)->geographicalId();
178 if(chAlrUsed.find(wId) != chAlrUsed.end())
continue;
179 chAlrUsed.insert(wId);
180 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
" " << wId << endl;
185 DetId id = trans_track.track().innerDetId();
186 const DetLayer *initialLayer = theService->detLayerGeometry()->idToLayer(
id);
192 vector<const DetLayer*> layer_list = compatibleLayers(*theService->muonNavigationSchool(), initialLayer,*init_fs_free,
alongMomentum);
193 vector<const DetLayer*> layer_list_2 = compatibleLayers(*theService->muonNavigationSchool(), initialLayer,*init_fs_free,
oppositeToMomentum);
195 layer_list.insert(layer_list.end(),layer_list_2.begin(),layer_list_2.end());
197 set<DTChamberId> alreadyCheckedCh;
200 for(
int i=0;
i< (int)layer_list.size();
i++) {
207 vector<DetWithState> dss = layer_list.at(
i)->compatibleDets(tsos, *
propagator(), *theEstimator);
209 if(dss.size() == 0)
continue;
213 const DetId idDetLay = detWithState.first->geographicalId();
216 if(!chamberSelection(idDetLay,trans_track))
continue;
221 if(alreadyCheckedCh.find(DTid) != alreadyCheckedCh.end())
continue;
222 alreadyCheckedCh.insert(DTid);
225 MeasurementContainer detMeasurements_initial = theMeasurementExtractor->measurements(layer_list.at(
i),
228 *theEstimator,
event);
229 LogTrace(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
" chamber: " << DTid
230 <<
" has: " << detMeasurements_initial.size() <<
" comp. meas." << endl;
238 vector<MonitorElement *>
histos = histosPerW[DTid.
wheel()+2];
240 if (detMeasurements_initial.size() != 0) histos[0]->
Fill(DTid.
sector(),DTid.
station(),1.);
241 if (detMeasurements.size() != 0) histos[1]->
Fill(DTid.
sector(),DTid.
station(),1.);
248 LogInfo(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
"[DTChamberEfficiency] Collection: " << theTracksLabel_
249 <<
" is not valid!" << endl;
260 if(trans_track.
recHit(0)->geographicalId() == idDetLay ||
261 trans_track.
recHit(1)->geographicalId() == idDetLay)
return false;
271 for(MeasurementContainer::const_iterator mescont_Itr = seg_list.begin();
272 mescont_Itr != seg_list.end(); ++mescont_Itr){
279 for(TransientTrackingRecHit::ConstRecHitContainer::const_iterator recList_Itr = recHit_list.begin();
280 recList_Itr != recHit_list.end(); ++recList_Itr){
282 nhit_seg += (int)(*recList_Itr)->transientHits().size();
287 if(tmpId.
station() < 4 && nhit_seg >= 12) result.push_back(*mescont_Itr);
288 if(tmpId.
station() == 4 && nhit_seg >= 8) result.push_back(*mescont_Itr);
298 vector<const DetLayer*> detLayers;
300 if(theNavigationType ==
"Standard"){
306 detLayers.insert(detLayers.begin(),initialLayer);
309 else if (theNavigationType ==
"Direct"){
315 LogError(
"DTDQM|DTMonitorModule|DTChamberEfficiency") <<
"No Properly Navigation Selected!!"<<endl;
321 return theService->propagator(
"SteppingHelixPropagatorAny");
T getParameter(std::string const &) const
T getUntrackedParameter(std::string const &, T const &) const
MeasurementContainer segQualityCut(const MeasurementContainer &seg_list) const
DTChamberEfficiency(const edm::ParameterSet &pset)
void dqmBeginRun(const edm::Run &, const edm::EventSetup &)
size_t recHitsSize() const
number of RecHits
std::vector< const DetLayer * > compatibleLayers(const FreeTrajectoryState &fts, PropagationDirection timeDirection) const
uint32_t rawId() const
get the raw id
const SurfaceType & surface() const
bool chamberSelection(const DetId &idDetLay, reco::TransientTrack &trans_track) const
edm::ESHandle< Propagator > propagator() const
void Fill(HcalDetId &id, double val, std::vector< TH2F > &depth)
FreeTrajectoryState const * freeState(bool withErrors=true) const
std::vector< const DetLayer * > compatibleLayers(const DetLayer &detLayer, Args &&...args) const
Returns all layers compatible.
TrackingRecHitRef recHit(size_t i) const
get n-th recHit
std::vector< const DetLayer * > compatibleLayers(const NavigationSchool &navigationSchool, const DetLayer *initialLayer, const FreeTrajectoryState &fts, PropagationDirection propDir)
std::pair< const GeomDet *, TrajectoryStateOnSurface > DetWithState
How EventSelector::AcceptEvent() decides whether to accept an event for output otherwise it is excluding the probing of A single or multiple positive and the trigger will pass if any such matching triggers are PASS or EXCEPTION[A criterion thatmatches no triggers at all is detected and causes a throw.] A single negative with an expectation of appropriate bit checking in the decision and the trigger will pass if any such matching triggers are FAIL or EXCEPTION A wildcarded negative criterion that matches more than one trigger in the trigger but the state exists so we define the behavior If all triggers are the negative crieriion will lead to accepting the event(this again matches the behavior of"!*"before the partial wildcard feature was incorporated).The per-event"cost"of each negative criterion with multiple relevant triggers is about the same as!*was in the past
tuple Chi2MeasurementEstimator
int subdetId() const
get the contents of the subdetector field (not cast into any detector's numbering enum) ...
void bookHistograms(DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &) override
std::vector< ConstRecHitPointer > ConstRecHitContainer
void setCurrentFolder(const std::string &fullpath)
MonitorElement * book2D(Args &&...args)
std::vector< TrajectoryMeasurement > MeasurementContainer
void analyze(const edm::Event &event, const edm::EventSetup &eventSetup)
int station() const
Return the station number.
Detector det() const
get the detector field from this detid
int wheel() const
Return the wheel number.
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
TrackingRecHitCollection::base::const_iterator trackingRecHit_iterator
iterator over a vector of reference to TrackingRecHit in the same collection