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EcalRecHitWorkerRecover Class Reference

#include <EcalRecHitWorkerRecover.h>

Inheritance diagram for EcalRecHitWorkerRecover:
EcalRecHitWorkerBaseClass

Public Member Functions

 EcalRecHitWorkerRecover (const edm::ParameterSet &)
 
bool run (const edm::Event &evt, const EcalUncalibratedRecHit &uncalibRH, EcalRecHitCollection &result)
 
void set (const edm::EventSetup &es)
 
virtual ~EcalRecHitWorkerRecover ()
 
- Public Member Functions inherited from EcalRecHitWorkerBaseClass
 EcalRecHitWorkerBaseClass (const edm::ParameterSet &)
 
virtual ~EcalRecHitWorkerBaseClass ()
 

Protected Member Functions

bool alreadyInserted (const DetId &id)
 
bool checkChannelStatus (const DetId &id, const std::vector< int > &statusestoexclude)
 
float estimateEnergy (int ieta, EcalRecHitCollection *hits, std::set< DetId > sId, std::vector< DetId > vId)
 
void insertRecHit (const EcalRecHit &hit, EcalRecHitCollection &collection)
 
float recCheckCalib (float energy, int ieta)
 

Protected Attributes

edm::ESHandle< CaloGeometrycaloGeometry_
 
edm::ESHandle< CaloTopologycaloTopology_
 
edm::ESHandle< EcalChannelStatuschStatus_
 
std::vector< int > dbStatusToBeExcludedEE_
 
const CaloSubdetectorGeometryebGeom_
 
const EcalElectronicsMappingecalMapping_
 
EcalTPGScale ecalScale_
 
const CaloSubdetectorGeometryeeGeom_
 
const CaloGeometrygeo_
 
bool killDeadChannels_
 
edm::ESHandle< EcalLaserDbServicelaser
 
double logWarningEtThreshold_EB_FE_
 
double logWarningEtThreshold_EE_FE_
 
edm::ESHandle
< CaloSubdetectorGeometry
pEBGeom_
 
edm::ESHandle
< EcalElectronicsMapping
pEcalMapping_
 
edm::ESHandle
< CaloSubdetectorGeometry
pEEGeom_
 
EcalRecHitSimpleAlgorechitMaker_
 
bool recoverEBFE_
 
bool recoverEBIsolatedChannels_
 
bool recoverEBVFE_
 
std::set< DetIdrecoveredDetIds_EB_
 
std::set< DetIdrecoveredDetIds_EE_
 
bool recoverEEFE_
 
bool recoverEEIsolatedChannels_
 
bool recoverEEVFE_
 
std::string singleRecoveryMethod_
 
double singleRecoveryThreshold_
 
edm::InputTag tpDigiCollection_
 
EcalTPGScale tpgscale_
 
edm::ESHandle
< EcalTrigTowerConstituentsMap
ttMap_
 

Additional Inherited Members

- Public Types inherited from EcalRecHitWorkerBaseClass
enum  RecoveryFlags {
  EB_single, EE_single, EB_VFE, EE_VFE,
  EB_FE, EE_FE
}
 

Detailed Description

Algorithms to recover dead channels

Id:
EcalRecHitWorkerRecover.h,v 1.9 2011/07/19 19:56:33 argiro Exp
Date:
2011/07/19 19:56:33
Revision:
1.9

Definition at line 30 of file EcalRecHitWorkerRecover.h.

Constructor & Destructor Documentation

EcalRecHitWorkerRecover::EcalRecHitWorkerRecover ( const edm::ParameterSet ps)

Definition at line 24 of file EcalRecHitWorkerRecover.cc.

References dbStatusToBeExcludedEE_, edm::ParameterSet::getParameter(), killDeadChannels_, logWarningEtThreshold_EB_FE_, logWarningEtThreshold_EE_FE_, rechitMaker_, recoverEBFE_, recoverEBIsolatedChannels_, recoverEBVFE_, recoverEEFE_, recoverEEIsolatedChannels_, recoverEEVFE_, singleRecoveryMethod_, singleRecoveryThreshold_, and tpDigiCollection_.

24  :
26 {
28  // isolated channel recovery
29  singleRecoveryMethod_ = ps.getParameter<std::string>("singleChannelRecoveryMethod");
30  singleRecoveryThreshold_ = ps.getParameter<double>("singleChannelRecoveryThreshold");
31  killDeadChannels_ = ps.getParameter<bool>("killDeadChannels");
32  recoverEBIsolatedChannels_ = ps.getParameter<bool>("recoverEBIsolatedChannels");
33  recoverEEIsolatedChannels_ = ps.getParameter<bool>("recoverEEIsolatedChannels");
34  recoverEBVFE_ = ps.getParameter<bool>("recoverEBVFE");
35  recoverEEVFE_ = ps.getParameter<bool>("recoverEEVFE");
36  recoverEBFE_ = ps.getParameter<bool>("recoverEBFE");
37  recoverEEFE_ = ps.getParameter<bool>("recoverEEFE");
38 
39  dbStatusToBeExcludedEE_ = ps.getParameter<std::vector<int> >("dbStatusToBeExcludedEE");
40 
41  tpDigiCollection_ = ps.getParameter<edm::InputTag>("triggerPrimitiveDigiCollection");
42  logWarningEtThreshold_EB_FE_ = ps.getParameter<double>("logWarningEtThreshold_EB_FE");
43  logWarningEtThreshold_EE_FE_ = ps.getParameter<double>("logWarningEtThreshold_EE_FE");
44 }
T getParameter(std::string const &) const
std::vector< int > dbStatusToBeExcludedEE_
EcalRecHitWorkerBaseClass(const edm::ParameterSet &)
EcalRecHitSimpleAlgo * rechitMaker_
virtual EcalRecHitWorkerRecover::~EcalRecHitWorkerRecover ( )
inlinevirtual

Definition at line 33 of file EcalRecHitWorkerRecover.h.

33 {};

Member Function Documentation

bool EcalRecHitWorkerRecover::alreadyInserted ( const DetId id)
protected

Definition at line 401 of file EcalRecHitWorkerRecover.cc.

References EcalBarrel, EcalEndcap, recoveredDetIds_EB_, and recoveredDetIds_EE_.

Referenced by insertRecHit(), and run().

402 {
403  bool res = false;
404  if ( id.subdetId() == EcalBarrel ) {
405  res = ( recoveredDetIds_EB_.find( id ) != recoveredDetIds_EB_.end() );
406  } else if ( id.subdetId() == EcalEndcap ) {
407  res = ( recoveredDetIds_EE_.find( id ) != recoveredDetIds_EE_.end() );
408  } else {
409  edm::LogError("EcalRecHitWorkerRecover::InvalidDetId") << "Invalid DetId " << id.rawId();
410  }
411  return res;
412 }
std::set< DetId > recoveredDetIds_EE_
std::set< DetId > recoveredDetIds_EB_
bool EcalRecHitWorkerRecover::checkChannelStatus ( const DetId id,
const std::vector< int > &  statusestoexclude 
)
protected

Definition at line 424 of file EcalRecHitWorkerRecover.cc.

References chStatus_, and ntuplemaker::status.

Referenced by run().

425  {
426 
427 
428  if (!chStatus_.isValid())
429  edm::LogError("ObjectNotFound") << "Channel Status not set";
430 
431 
432  EcalChannelStatus::const_iterator chIt = chStatus_->find( id );
433  uint16_t dbStatus = 0;
434  if ( chIt != chStatus_->end() ) {
435  dbStatus = chIt->getStatusCode();
436  } else {
437  edm::LogError("ObjectNotFound") << "No channel status found for xtal "
438  << id.rawId()
439  << "! something wrong with EcalChannelStatus in your DB? ";
440  }
441 
442  for (std::vector<int>::const_iterator status = statusestoexclude.begin();
443  status!= statusestoexclude.end(); ++status){
444 
445  if ( *status == dbStatus) return false;
446 
447  }
448 
449  return true;
450 }
std::vector< Item >::const_iterator const_iterator
tuple status
Definition: ntuplemaker.py:245
edm::ESHandle< EcalChannelStatus > chStatus_
float EcalRecHitWorkerRecover::estimateEnergy ( int  ieta,
EcalRecHitCollection hits,
std::set< DetId sId,
std::vector< DetId vId 
)
protected

Definition at line 347 of file EcalRecHitWorkerRecover.cc.

References prof2calltree::count, relval_parameters_module::energy, PV3DBase< T, PVType, FrameType >::eta(), eta(), edm::SortedCollection< T, SORT >::find(), geo_, CaloGeometry::getPosition(), EcalTPGScale::getTPGInGeV(), tpgscale_, and ttMap_.

Referenced by run().

347  {
348 
349  float xtalE=0;
350  int count = 0;
351  for (std::vector<DetId>::const_iterator vIdit = vId.begin(); vIdit != vId.end(); ++ vIdit){
352  std::set<DetId>::const_iterator sIdit = sId.find(*vIdit);
353  if (sIdit==sId.end()){
354  float energy = hits->find(*vIdit)->energy();
355  float eta = geo_->getPosition(*vIdit).eta();
356  float pf = 1.0/cosh(eta);
357  xtalE += energy*pf;
358  count++;
359  }
360  }
361 
362  if (count==0) { // If there are no overlapping crystals return saturated value.
363 
364  double etsat = tpgscale_.getTPGInGeV(0xFF,
365  ttMap_->towerOf(*vId.begin())); // get saturation value for the first
366  // constituent, for the others it's the same
367 
368  return etsat/cosh(ieta)*(ieta>26?2:1); // account for duplicated TT in EE for ieta>26
369  }
370  else return xtalE*((vId.size()/(float)count) - 1)*(ieta>26?2:1);
371 
372 
373 }
double getTPGInGeV(const EcalTriggerPrimitiveDigi &tpDigi)
Definition: EcalTPGScale.cc:24
T eta() const
edm::ESHandle< EcalTrigTowerConstituentsMap > ttMap_
const GlobalPoint & getPosition(const DetId &id) const
Get the position of a given detector id.
Definition: CaloGeometry.cc:68
T eta() const
Definition: PV3DBase.h:70
iterator find(key_type k)
void EcalRecHitWorkerRecover::insertRecHit ( const EcalRecHit hit,
EcalRecHitCollection collection 
)
protected

Definition at line 376 of file EcalRecHitWorkerRecover.cc.

References alreadyInserted(), EcalBarrel, EcalEndcap, edm::SortedCollection< T, SORT >::end(), edm::SortedCollection< T, SORT >::find(), EcalRecHit::id(), edm::SortedCollection< T, SORT >::push_back(), DetId::rawId(), recoveredDetIds_EB_, recoveredDetIds_EE_, and DetId::subdetId().

Referenced by run().

377 {
378  // skip already inserted DetId's and raise a log warning
379  if ( alreadyInserted( hit.id() ) ) {
380  edm::LogWarning("EcalRecHitWorkerRecover") << "DetId already recovered! Skipping...";
381  return;
382  }
383  EcalRecHitCollection::iterator it = collection.find( hit.id() );
384  if ( it == collection.end() ) {
385  // insert the hit in the collection
386  collection.push_back( hit );
387  } else {
388  // overwrite existing recHit
389  *it = hit;
390  }
391  if ( hit.id().subdetId() == EcalBarrel ) {
392  recoveredDetIds_EB_.insert( hit.id() );
393  } else if ( hit.id().subdetId() == EcalEndcap ) {
394  recoveredDetIds_EE_.insert( hit.id() );
395  } else {
396  edm::LogError("EcalRecHitWorkerRecover::InvalidDetId") << "Invalid DetId " << hit.id().rawId();
397  }
398 }
bool alreadyInserted(const DetId &id)
void push_back(T const &t)
uint32_t rawId() const
get the raw id
Definition: DetId.h:45
int subdetId() const
get the contents of the subdetector field (not cast into any detector&#39;s numbering enum) ...
Definition: DetId.h:39
std::vector< T >::iterator iterator
const_iterator end() const
DetId id() const
get the id
Definition: EcalRecHit.h:74
std::set< DetId > recoveredDetIds_EE_
iterator find(key_type k)
std::set< DetId > recoveredDetIds_EB_
float EcalRecHitWorkerRecover::recCheckCalib ( float  energy,
int  ieta 
)
protected

Definition at line 416 of file EcalRecHitWorkerRecover.cc.

416  {
417 
418  return eTT;
419 
420 }
bool EcalRecHitWorkerRecover::run ( const edm::Event evt,
const EcalUncalibratedRecHit uncalibRH,
EcalRecHitCollection result 
)
virtual

Implements EcalRecHitWorkerBaseClass.

Definition at line 71 of file EcalRecHitWorkerRecover.cc.

References alreadyInserted(), caloTopology_, checkChannelStatus(), dbStatusToBeExcludedEE_, EcalRecHitWorkerBaseClass::EB_FE, EcalRecHitWorkerBaseClass::EB_single, EcalRecHitWorkerBaseClass::EB_VFE, ebGeom_, ecalScale_, EcalRecHitWorkerBaseClass::EE_FE, EcalRecHitWorkerBaseClass::EE_single, EcalRecHitWorkerBaseClass::EE_VFE, edm::SortedCollection< T, SORT >::end(), relval_parameters_module::energy, estimateEnergy(), PV3DBase< T, PVType, FrameType >::eta(), eta(), edm::SortedCollection< T, SORT >::find(), flags, geo_, edm::Event::getByLabel(), CaloSubdetectorGeometry::getGeometry(), CaloGeometry::getPosition(), CaloCellGeometry::getPosition(), EcalTPGScale::getTPGInGeV(), i, EcalUncalibratedRecHit::id(), insertRecHit(), edm::InputTag::instance(), edm::HandleBase::isValid(), EEDetId::ix(), EcalScDetId::ix(), EEDetId::iy(), EcalScDetId::iy(), j, EcalRecHit::kDead, killDeadChannels_, EcalRecHit::kL1SpikeFlag, EcalRecHit::kNeighboursRecovered, EcalRecHit::kTowerRecovered, EcalRecHit::kTPSaturated, edm::InputTag::label(), logWarningEtThreshold_EB_FE_, logWarningEtThreshold_EE_FE_, edm::Handle< T >::product(), edm::ESHandle< class >::product(), EcalUncalibratedRecHit::recoFlag(), recoverEBFE_, recoverEBIsolatedChannels_, recoverEBVFE_, recoverEEFE_, recoverEEIsolatedChannels_, recoverEEVFE_, query::result, EcalRecHit::setFlag(), funct::sin(), singleRecoveryMethod_, singleRecoveryThreshold_, PV3DBase< T, PVType, FrameType >::theta(), theta(), tpDigiCollection_, ttMap_, v, EEDetId::validDetId(), EEDetId::zside(), and EcalScDetId::zside().

74 {
75  DetId detId=uncalibRH.id();
76  uint32_t flags = uncalibRH.recoFlag();
77 
78  // get laser coefficient
79  //float lasercalib = laser->getLaserCorrection( detId, evt.time());
80 
81  // killDeadChannels_ = true, means explicitely kill dead channels even if the recovered energies are computed in the code
82  // if you don't want to store the recovered energies in the rechit you can produce LogWarnings if logWarningEtThreshold_EB(EE)_FE>0
83  // logWarningEtThreshold_EB(EE)_FE_<0 will not compute the recovered energies at all (faster)
84 
85  if ( killDeadChannels_ ) {
90  ) {
91  EcalRecHit hit( detId, 0., 0., EcalRecHit::kDead );
92  hit.setFlag( EcalRecHit::kDead) ;
93  insertRecHit( hit, result); // insert trivial rechit with kDead flag
94  return true;
95  }
96  if ( flags == EcalRecHitWorkerRecover::EB_FE && !recoverEBFE_) {
97  EcalTrigTowerDetId ttDetId( ((EBDetId)detId).tower() );
98  std::vector<DetId> vid = ttMap_->constituentsOf( ttDetId );
99  for ( std::vector<DetId>::const_iterator dit = vid.begin(); dit != vid.end(); ++dit ) {
100  EcalRecHit hit( (*dit), 0., 0., EcalRecHit::kDead );
101  hit.setFlag( EcalRecHit::kDead ) ;
102  insertRecHit( hit, result ); // insert trivial rechit with kDead flag
103  }
104  if(logWarningEtThreshold_EB_FE_<0)return true; // if you don't want log warning just return true
105  }
106  if ( flags == EcalRecHitWorkerRecover::EE_FE && !recoverEEFE_) {
107  EEDetId id( detId );
108  EcalScDetId sc( 1+(id.ix()-1)/5, 1+(id.iy()-1)/5, id.zside() );
109  std::vector<DetId> eeC;
110  for(int dx=1; dx<=5; ++dx){
111  for(int dy=1; dy<=5; ++dy){
112  int ix = (sc.ix()-1)*5 + dx;
113  int iy = (sc.iy()-1)*5 + dy;
114  int iz = sc.zside();
115  if(EEDetId::validDetId(ix, iy, iz)){
116  eeC.push_back(EEDetId(ix, iy, iz));
117  }
118  }
119  }
120  for ( size_t i = 0; i < eeC.size(); ++i ) {
121  EcalRecHit hit( eeC[i], 0., 0., EcalRecHit::kDead );
122  hit.setFlag( EcalRecHit::kDead ) ;
123  insertRecHit( hit, result ); // insert trivial rechit with kDead flag
124  }
125  if(logWarningEtThreshold_EE_FE_<0) return true; // if you don't want log warning just return true
126  }
127  }
128 
129  if ( flags == EcalRecHitWorkerRecover::EB_single ) {
130  // recover as single dead channel
131  const EcalRecHitCollection * hit_collection = &result;
132  EcalDeadChannelRecoveryAlgos deadChannelCorrector(caloTopology_.product());
133 
134  // channel recovery
135  EcalRecHit hit = deadChannelCorrector.correct( detId, hit_collection, singleRecoveryMethod_, singleRecoveryThreshold_ );
136  EcalRecHitCollection::const_iterator ti = result.find( detId );
137  if ( hit.energy() != 0 ) {
138  hit.setFlag( EcalRecHit::kNeighboursRecovered ) ;
139  } else {
140  // recovery failed
141  hit.setFlag( EcalRecHit::kDead ) ;
142  }
143  insertRecHit( hit, result );
144  } else if ( flags == EcalRecHitWorkerRecover::EB_VFE ) {
145  // recover as dead VFE
146  EcalRecHit hit( detId, 0., 0.);
147  hit.setFlag( EcalRecHit::kDead ) ;
148  // recovery not implemented
149  insertRecHit( hit, result );
150  } else if ( flags == EcalRecHitWorkerRecover::EB_FE ) {
151  // recover as dead TT
152  EcalTrigTowerDetId ttDetId( ((EBDetId)detId).tower() );
154  evt.getByLabel(tpDigiCollection_, pTPDigis);
155  const EcalTrigPrimDigiCollection * tpDigis = 0;
156  if ( pTPDigis.isValid() ) {
157  tpDigis = pTPDigis.product();
158  } else {
159  edm::LogError("EcalRecHitWorkerRecover") << "Can't get the product " << tpDigiCollection_.instance()
160  << " with label " << tpDigiCollection_.label();
161  return false;
162  }
163  EcalTrigPrimDigiCollection::const_iterator tp = tpDigis->find( ttDetId );
164  // recover the whole trigger tower
165  if ( tp != tpDigis->end() ) {
166  //std::vector<DetId> vid = ecalMapping_->dccTowerConstituents( ecalMapping_->DCCid( ttDetId ), ecalMapping_->iTT( ttDetId ) );
167  std::vector<DetId> vid = ttMap_->constituentsOf( ttDetId );
168  float tpEt = ecalScale_.getTPGInGeV( tp->compressedEt(), tp->id() );
169  float tpEtThreshEB = logWarningEtThreshold_EB_FE_;
170  if(tpEt>tpEtThreshEB){
171  edm::LogWarning("EnergyInDeadEB_FE")<<"TP energy in the dead TT = "<<tpEt<<" at "<<ttDetId;
172  }
173  if ( !killDeadChannels_ || recoverEBFE_ ) {
174  // democratic energy sharing
175  for ( std::vector<DetId>::const_iterator dit = vid.begin(); dit != vid.end(); ++dit ) {
176  if (alreadyInserted(*dit)) continue;
177  float theta = ebGeom_->getGeometry(*dit)->getPosition().theta();
178  float tpEt = ecalScale_.getTPGInGeV( tp->compressedEt(), tp->id() );
179  EcalRecHit hit( *dit, tpEt / (float)vid.size() / sin(theta), 0.);
180  hit.setFlag( EcalRecHit::kTowerRecovered ) ;
181  if ( tp->compressedEt() == 0xFF ) hit.setFlag( EcalRecHit::kTPSaturated );
182  if ( tp->sFGVB() ) hit.setFlag( EcalRecHit::kL1SpikeFlag );
183  insertRecHit( hit, result );
184  }
185  }
186  } else {
187  // tp not found => recovery failed
188  std::vector<DetId> vid = ttMap_->constituentsOf( ttDetId );
189  for ( std::vector<DetId>::const_iterator dit = vid.begin(); dit != vid.end(); ++dit ) {
190  if (alreadyInserted(*dit)) continue;
191  EcalRecHit hit( *dit,0., 0. );
192  hit.setFlag( EcalRecHit::kDead ) ;
193  EcalRecHitCollection::iterator it = result.find( *dit );
194  insertRecHit( hit, result );
195  }
196  }
197  } else if ( flags == EcalRecHitWorkerRecover::EE_FE ) {
198  // Structure for recovery:
199  // ** SC --> EEDetId constituents (eeC) --> associated Trigger Towers (aTT) --> EEDetId constituents (aTTC)
200  // ** energy for a SC EEDetId = [ sum_aTT(energy) - sum_aTTC(energy) ] / N_eeC
201  // .. i.e. the total energy of the TTs covering the SC minus
202  // .. the energy of the recHits in the TTs but not in the SC
203  //std::vector<DetId> vid = ecalMapping_->dccTowerConstituents( ecalMapping_->DCCid( ttDetId ), ecalMapping_->iTT( ttDetId ) );
204  // due to lack of implementation of the EcalTrigTowerDetId ix,iy methods in EE we compute Et recovered energies (in EB we compute E)
205 
206  EEDetId eeId( detId );
207  EcalScDetId sc( (eeId.ix()-1)/5+1, (eeId.iy()-1)/5+1, eeId.zside() );
208  std::set<DetId> eeC;
209  for(int dx=1; dx<=5; ++dx){
210  for(int dy=1; dy<=5; ++dy){
211  int ix = (sc.ix()-1)*5 + dx;
212  int iy = (sc.iy()-1)*5 + dy;
213  int iz = sc.zside();
214  if(EEDetId::validDetId(ix, iy, iz)){
215  EEDetId id(ix, iy, iz);
217  eeC.insert(id);
218  } // check status
219  }
220  }
221  }
222 
224  evt.getByLabel(tpDigiCollection_, pTPDigis);
225  const EcalTrigPrimDigiCollection * tpDigis = 0;
226  if ( pTPDigis.isValid() ) {
227  tpDigis = pTPDigis.product();
228  } else {
229  edm::LogError("EcalRecHitWorkerRecover") << "Can't get the product " << tpDigiCollection_.instance()
230  << " with label " << tpDigiCollection_.label();
231  return false;
232  }
233  // associated trigger towers
234  std::set<EcalTrigTowerDetId> aTT;
235  for ( std::set<DetId>::const_iterator it = eeC.begin(); it!=eeC.end(); ++it ) {
236  aTT.insert( ttMap_->towerOf( *it ) );
237  }
238  // associated trigger towers: total energy
239  float totE = 0;
240  // associated trigger towers: EEDetId constituents
241  std::set<DetId> aTTC;
242  bool atLeastOneTPSaturated = false;
243  for ( std::set<EcalTrigTowerDetId>::const_iterator it = aTT.begin(); it != aTT.end(); ++it ) {
244  // add the energy of this trigger tower
245  EcalTrigPrimDigiCollection::const_iterator itTP = tpDigis->find( *it );
246  if ( itTP != tpDigis->end() ) {
247  EcalTrigTowerDetId ttId = itTP->id();
248 
249  std::vector<DetId> v = ttMap_->constituentsOf( *it );
250 
251  // from the constituents, remove dead channels
252  std::vector<DetId>::iterator ttcons = v.begin();
253  while (ttcons != v.end()){
255  ttcons=v.erase(ttcons);
256  } else {
257  ++ttcons;
258  }
259  }// while
260 
261  if ( itTP->compressedEt() == 0xFF ){ // In the case of a saturated trigger tower, a fraction
262  atLeastOneTPSaturated = true; //of the saturated energy is put in: number of xtals in dead region/total xtals in TT *63.75
263 
264  //Alternative recovery algorithm that I will now investigate.
265  //Estimate energy sums the energy in the working channels, then decides how much energy
266  //to put here depending on that. Duncan 20101203
267 
268  totE += estimateEnergy(itTP->id().ietaAbs(), &result, eeC, v);
269 
270  /*
271  These commented out lines use
272  64GeV*fraction of the TT overlapping the dead FE
273 
274  int count = 0;
275  for (std::vector<DetId>::const_iterator idsit = v.begin(); idsit != v.end(); ++ idsit){
276  std::set<DetId>::const_iterator itFind = eeC.find(*idsit);
277  if (itFind != eeC.end())
278  ++count;
279  }
280  //std::cout << count << ", " << v.size() << std::endl;
281  totE+=((float)count/(float)v.size())* ((it->ietaAbs()>26)?2*ecalScale_.getTPGInGeV( itTP->compressedEt(), itTP->id() ):ecalScale_.getTPGInGeV( itTP->compressedEt(), itTP->id() ));*/
282  }
283  else {totE += ((it->ietaAbs()>26)?2:1)*ecalScale_.getTPGInGeV( itTP->compressedEt(), itTP->id() );}
284 
285 
286  // get the trigger tower constituents
287 
288  if (itTP->compressedEt() == 0){ // If there's no energy in TT, the constituents are removed from the recovery.
289  for (size_t i = 0 ; i < v.size(); ++i)
290  eeC.erase(v[i]);
291  }
292  else if (itTP->compressedEt()!=0xFF){ //If it's saturated the energy has already been determined, so we do not want to subtract any channels
293  for ( size_t j = 0; j < v.size(); ++j ) {
294  aTTC.insert( v[j] );
295  }
296  }
297 
298  }
299  }
300  // remove crystals of dead SC
301  // (this step is not needed if sure that SC crystals are not
302  // in the recHit collection)
303 
304  for ( std::set<DetId>::const_iterator it = eeC.begin(); it != eeC.end(); ++it ) {
305  aTTC.erase(*it);
306  }
307  // compute the total energy for the dead SC
308  const EcalRecHitCollection * hits = &result;
309  for ( std::set<DetId>::const_iterator it = aTTC.begin(); it != aTTC.end(); ++it ) {
310  EcalRecHitCollection::const_iterator jt = hits->find( *it );
311  if ( jt != hits->end() ) {
312  float energy = jt->energy(); // Correct conversion to Et
313  float eta = geo_->getPosition(jt->id()).eta();
314  float pf = 1.0/cosh(eta);
315  //float theta = eeGeom_->getGeometry( *it )->getPosition().theta();
316  // use Et instead of E, consistent with the Et estimation of the associated TT
317  totE -= energy*pf;
318  }
319  }
320 
321 
322  float scEt = totE;
323  float scEtThreshEE = logWarningEtThreshold_EE_FE_;
324  if(scEt>scEtThreshEE){
325  edm::LogWarning("EnergyInDeadEE_FE")<<"TP energy in the dead TT = "<<scEt<<" at "<<sc;
326  }
327 
328  // assign the energy to the SC crystals
329  if ( !killDeadChannels_ || recoverEEFE_ ) { // if eeC is empty, i.e. there are no hits
330  // in the tower, nothing is returned. No negative values from noise.
331  for ( std::set<DetId>::const_iterator it = eeC.begin(); it != eeC.end(); ++it ) {
332 
333  float eta = geo_->getPosition(*it).eta(); //Convert back to E from Et for the recovered hits
334  float pf = 1.0/cosh(eta);
335  EcalRecHit hit( *it, totE / ((float)eeC.size()*pf), 0);
336 
337  if (atLeastOneTPSaturated) hit.setFlag(EcalRecHit::kTPSaturated );
338  hit.setFlag(EcalRecHit::kTowerRecovered);
339  insertRecHit( hit, result );
340 
341  }// for
342  }// if
343  }
344  return true;
345 }
int i
Definition: DBlmapReader.cc:9
bool alreadyInserted(const DetId &id)
Sin< T >::type sin(const T &t)
Definition: Sin.h:22
std::vector< T >::const_iterator const_iterator
Geom::Theta< T > theta() const
std::vector< int > dbStatusToBeExcludedEE_
std::vector< Variable::Flags > flags
Definition: MVATrainer.cc:135
edm::ESHandle< CaloTopology > caloTopology_
double getTPGInGeV(const EcalTriggerPrimitiveDigi &tpDigi)
Definition: EcalTPGScale.cc:24
T eta() const
static bool validDetId(int crystal_ix, int crystal_iy, int iz)
Definition: EEDetId.cc:562
virtual const CaloCellGeometry * getGeometry(const DetId &id) const
Get the cell geometry of a given detector id. Should return false if not found.
Geom::Theta< T > theta() const
Definition: PV3DBase.h:69
void insertRecHit(const EcalRecHit &hit, EcalRecHitCollection &collection)
edm::ESHandle< EcalTrigTowerConstituentsMap > ttMap_
tuple result
Definition: query.py:137
int j
Definition: DBlmapReader.cc:9
const GlobalPoint & getPosition(const DetId &id) const
Get the position of a given detector id.
Definition: CaloGeometry.cc:68
bool isValid() const
Definition: HandleBase.h:76
bool getByLabel(InputTag const &tag, Handle< PROD > &result) const
Definition: Event.h:355
const CaloSubdetectorGeometry * ebGeom_
std::vector< T >::iterator iterator
const_iterator end() const
float estimateEnergy(int ieta, EcalRecHitCollection *hits, std::set< DetId > sId, std::vector< DetId > vId)
Definition: DetId.h:20
T const * product() const
Definition: ESHandle.h:62
int zside() const
Definition: EcalScDetId.h:66
T const * product() const
Definition: Handle.h:74
std::string const & label() const
Definition: InputTag.h:25
T eta() const
Definition: PV3DBase.h:70
iterator find(key_type k)
const GlobalPoint & getPosition() const
std::string const & instance() const
Definition: InputTag.h:26
mathSSE::Vec4< T > v
bool checkChannelStatus(const DetId &id, const std::vector< int > &statusestoexclude)
void EcalRecHitWorkerRecover::set ( const edm::EventSetup es)
virtual

Implements EcalRecHitWorkerBaseClass.

Definition at line 47 of file EcalRecHitWorkerRecover.cc.

References caloGeometry_, caloTopology_, chStatus_, ebGeom_, ecalMapping_, ecalScale_, eeGeom_, geo_, edm::EventSetup::get(), laser, pEBGeom_, pEcalMapping_, pEEGeom_, edm::ESHandle< class >::product(), recoveredDetIds_EB_, recoveredDetIds_EE_, EcalTPGScale::setEventSetup(), tpgscale_, and ttMap_.

48 {
49 
50  es.get<EcalLaserDbRecord>().get(laser);
53  es.get<EcalMappingRcd>().get(pEcalMapping_);
55  // geometry...
56  es.get<EcalBarrelGeometryRecord>().get("EcalBarrel",pEBGeom_);
57  es.get<EcalEndcapGeometryRecord>().get("EcalEndcap",pEEGeom_);
63  es.get<IdealGeometryRecord>().get(ttMap_);
64  recoveredDetIds_EB_.clear();
65  recoveredDetIds_EE_.clear();
67 }
void setEventSetup(const edm::EventSetup &evtSetup)
Definition: EcalTPGScale.cc:19
edm::ESHandle< CaloTopology > caloTopology_
const CaloSubdetectorGeometry * eeGeom_
edm::ESHandle< CaloSubdetectorGeometry > pEEGeom_
edm::ESHandle< EcalTrigTowerConstituentsMap > ttMap_
edm::ESHandle< CaloSubdetectorGeometry > pEBGeom_
const CaloSubdetectorGeometry * ebGeom_
const T & get() const
Definition: EventSetup.h:55
std::set< DetId > recoveredDetIds_EE_
T const * product() const
Definition: ESHandle.h:62
edm::ESHandle< CaloGeometry > caloGeometry_
edm::ESHandle< EcalChannelStatus > chStatus_
edm::ESHandle< EcalLaserDbService > laser
const EcalElectronicsMapping * ecalMapping_
edm::ESHandle< EcalElectronicsMapping > pEcalMapping_
std::set< DetId > recoveredDetIds_EB_

Member Data Documentation

edm::ESHandle<CaloGeometry> EcalRecHitWorkerRecover::caloGeometry_
protected

Definition at line 53 of file EcalRecHitWorkerRecover.h.

Referenced by set().

edm::ESHandle<CaloTopology> EcalRecHitWorkerRecover::caloTopology_
protected

Definition at line 52 of file EcalRecHitWorkerRecover.h.

Referenced by run(), and set().

edm::ESHandle<EcalChannelStatus> EcalRecHitWorkerRecover::chStatus_
protected

Definition at line 54 of file EcalRecHitWorkerRecover.h.

Referenced by checkChannelStatus(), and set().

std::vector<int> EcalRecHitWorkerRecover::dbStatusToBeExcludedEE_
protected

Definition at line 70 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

const CaloSubdetectorGeometry* EcalRecHitWorkerRecover::ebGeom_
protected

Definition at line 84 of file EcalRecHitWorkerRecover.h.

Referenced by run(), and set().

const EcalElectronicsMapping* EcalRecHitWorkerRecover::ecalMapping_
protected

Definition at line 76 of file EcalRecHitWorkerRecover.h.

Referenced by set().

EcalTPGScale EcalRecHitWorkerRecover::ecalScale_
protected

Definition at line 73 of file EcalRecHitWorkerRecover.h.

Referenced by run(), and set().

const CaloSubdetectorGeometry* EcalRecHitWorkerRecover::eeGeom_
protected

Definition at line 85 of file EcalRecHitWorkerRecover.h.

Referenced by set().

const CaloGeometry* EcalRecHitWorkerRecover::geo_
protected

Definition at line 86 of file EcalRecHitWorkerRecover.h.

Referenced by estimateEnergy(), run(), and set().

bool EcalRecHitWorkerRecover::killDeadChannels_
protected

Definition at line 59 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

edm::ESHandle<EcalLaserDbService> EcalRecHitWorkerRecover::laser
protected

Definition at line 49 of file EcalRecHitWorkerRecover.h.

Referenced by set().

double EcalRecHitWorkerRecover::logWarningEtThreshold_EB_FE_
protected

Definition at line 77 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

double EcalRecHitWorkerRecover::logWarningEtThreshold_EE_FE_
protected

Definition at line 78 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

edm::ESHandle<CaloSubdetectorGeometry> EcalRecHitWorkerRecover::pEBGeom_
protected

Definition at line 82 of file EcalRecHitWorkerRecover.h.

Referenced by set().

edm::ESHandle< EcalElectronicsMapping > EcalRecHitWorkerRecover::pEcalMapping_
protected

Definition at line 75 of file EcalRecHitWorkerRecover.h.

Referenced by set().

edm::ESHandle<CaloSubdetectorGeometry> EcalRecHitWorkerRecover::pEEGeom_
protected

Definition at line 83 of file EcalRecHitWorkerRecover.h.

Referenced by set().

EcalRecHitSimpleAlgo* EcalRecHitWorkerRecover::rechitMaker_
protected

Definition at line 88 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover().

bool EcalRecHitWorkerRecover::recoverEBFE_
protected

Definition at line 65 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

bool EcalRecHitWorkerRecover::recoverEBIsolatedChannels_
protected

Definition at line 61 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

bool EcalRecHitWorkerRecover::recoverEBVFE_
protected

Definition at line 63 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

std::set<DetId> EcalRecHitWorkerRecover::recoveredDetIds_EB_
protected

Definition at line 90 of file EcalRecHitWorkerRecover.h.

Referenced by alreadyInserted(), insertRecHit(), and set().

std::set<DetId> EcalRecHitWorkerRecover::recoveredDetIds_EE_
protected

Definition at line 91 of file EcalRecHitWorkerRecover.h.

Referenced by alreadyInserted(), insertRecHit(), and set().

bool EcalRecHitWorkerRecover::recoverEEFE_
protected

Definition at line 66 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

bool EcalRecHitWorkerRecover::recoverEEIsolatedChannels_
protected

Definition at line 62 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

bool EcalRecHitWorkerRecover::recoverEEVFE_
protected

Definition at line 64 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

std::string EcalRecHitWorkerRecover::singleRecoveryMethod_
protected

Definition at line 58 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

double EcalRecHitWorkerRecover::singleRecoveryThreshold_
protected

Definition at line 57 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

edm::InputTag EcalRecHitWorkerRecover::tpDigiCollection_
protected

Definition at line 74 of file EcalRecHitWorkerRecover.h.

Referenced by EcalRecHitWorkerRecover(), and run().

EcalTPGScale EcalRecHitWorkerRecover::tpgscale_
protected

Definition at line 93 of file EcalRecHitWorkerRecover.h.

Referenced by estimateEnergy(), and set().

edm::ESHandle<EcalTrigTowerConstituentsMap> EcalRecHitWorkerRecover::ttMap_
protected

Definition at line 80 of file EcalRecHitWorkerRecover.h.

Referenced by estimateEnergy(), run(), and set().