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EcalRecHitWorkerSimple.cc
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1 
29 
31 public:
33  ~EcalRecHitWorkerSimple() override;
34 
35  void set(const edm::EventSetup& es) override;
36  bool run(const edm::Event& evt, const EcalUncalibratedRecHit& uncalibRH, EcalRecHitCollection& result) override;
37 
38 protected:
39  double EBLaserMIN_;
40  double EELaserMIN_;
41  double EBLaserMAX_;
42  double EELaserMAX_;
43 
49  std::vector<int> v_chstatus_;
57 
58  // Associate reco flagbit ( outer vector) to many db status flags (inner vector)
59  std::vector<std::vector<uint32_t> > v_DB_reco_flags_;
60 
61  uint32_t setFlagBits(const std::vector<std::vector<uint32_t> >& map, const uint32_t& status);
62 
63  uint32_t flagmask_; // do not propagate channels with these flags on
64 
68 
70 };
71 
75  v_chstatus_ = StringToEnumValue<EcalChannelStatusCode::Code>(
76  ps.getParameter<std::vector<std::string> >("ChannelStatusToBeExcluded"));
77  killDeadChannels_ = ps.getParameter<bool>("killDeadChannels");
78  laserCorrection_ = ps.getParameter<bool>("laserCorrection");
79  EBLaserMIN_ = ps.getParameter<double>("EBLaserMIN");
80  EELaserMIN_ = ps.getParameter<double>("EELaserMIN");
81  EBLaserMAX_ = ps.getParameter<double>("EBLaserMAX");
82  EELaserMAX_ = ps.getParameter<double>("EELaserMAX");
83 
84  skipTimeCalib_ = ps.getParameter<bool>("skipTimeCalib");
85 
87  if (!skipTimeCalib_) {
89  ps.getParameter<edm::ESInputTag>("timeCalibTag"));
91  ps.getParameter<edm::ESInputTag>("timeOffsetTag"));
92  }
95  if (laserCorrection_)
97 
98  // Traslate string representation of flagsMapDBReco into enum values
99  const edm::ParameterSet& p = ps.getParameter<edm::ParameterSet>("flagsMapDBReco");
100  std::vector<std::string> recoflagbitsStrings = p.getParameterNames();
101  v_DB_reco_flags_.resize(32);
102 
103  for (unsigned int i = 0; i != recoflagbitsStrings.size(); ++i) {
104  EcalRecHit::Flags recoflagbit = (EcalRecHit::Flags)StringToEnumValue<EcalRecHit::Flags>(recoflagbitsStrings[i]);
105  std::vector<std::string> dbstatus_s = p.getParameter<std::vector<std::string> >(recoflagbitsStrings[i]);
106  std::vector<uint32_t> dbstatuses;
107  for (unsigned int j = 0; j != dbstatus_s.size(); ++j) {
108  EcalChannelStatusCode::Code dbstatus =
109  (EcalChannelStatusCode::Code)StringToEnumValue<EcalChannelStatusCode::Code>(dbstatus_s[j]);
110  dbstatuses.push_back(dbstatus);
111  }
112 
113  v_DB_reco_flags_[recoflagbit] = dbstatuses;
114  }
115 
116  flagmask_ = 0;
119  flagmask_ |= 0x1 << EcalRecHit::kDead;
120  flagmask_ |= 0x1 << EcalRecHit::kKilled;
123 }
124 
126  ical = es.getHandle(icalToken_);
127 
128  if (!skipTimeCalib_) {
131  }
132 
133  agc = es.getHandle(agcToken_);
135  if (laserCorrection_)
137 }
138 
140  const EcalUncalibratedRecHit& uncalibRH,
142  DetId detid = uncalibRH.id();
143 
145  EcalChannelStatusCode::Code dbstatus = chit->getStatusCode();
146 
147  // check for channels to be excluded from reconstruction
148  if (!v_chstatus_.empty()) {
149  std::vector<int>::const_iterator res = std::find(v_chstatus_.begin(), v_chstatus_.end(), dbstatus);
150  if (res != v_chstatus_.end())
151  return false;
152  }
153 
154  uint32_t flagBits = setFlagBits(v_DB_reco_flags_, dbstatus);
155 
156  float offsetTime = 0; // the global time phase
157  const EcalIntercalibConstantMap& icalMap = ical->getMap();
158  if (detid.subdetId() == EcalEndcap) {
160  if (!skipTimeCalib_)
161  offsetTime = offtime->getEEValue();
162  } else {
164  if (!skipTimeCalib_)
165  offsetTime = offtime->getEBValue();
166  }
167 
168  // first intercalibration constants
170  EcalIntercalibConstant icalconst = 1;
171  if (icalit != icalMap.end()) {
172  icalconst = (*icalit);
173  } else {
174  edm::LogError("EcalRecHitError") << "No intercalib const found for xtal " << detid.rawId()
175  << "! something wrong with EcalIntercalibConstants in your DB? ";
176  }
177 
178  // get laser coefficient
179  float lasercalib = 1.;
180  if (laserCorrection_)
181  lasercalib = laser->getLaserCorrection(detid, evt.time());
182 
183  // get time calibration coefficient
184  EcalTimeCalibConstant itimeconst = 0;
185 
186  if (!skipTimeCalib_) {
187  const EcalTimeCalibConstantMap& itimeMap = itime->getMap();
189 
190  if (itime != itimeMap.end()) {
191  itimeconst = (*itime);
192  } else {
193  edm::LogError("EcalRecHitError") << "No time calib const found for xtal " << detid.rawId()
194  << "! something wrong with EcalTimeCalibConstants in your DB? ";
195  }
196  }
197 
198  // make the rechit and put in the output collection, unless recovery has to take care of it
199  if (!(flagmask_ & flagBits) || !killDeadChannels_) {
200  EcalRecHit myrechit(rechitMaker_->makeRecHit(uncalibRH,
201  icalconst * lasercalib,
202  (itimeconst + offsetTime),
203  /*recoflags_ 0*/
204  flagBits));
205 
206  if (detid.subdetId() == EcalBarrel && (lasercalib < EBLaserMIN_ || lasercalib > EBLaserMAX_))
208  if (detid.subdetId() == EcalEndcap && (lasercalib < EELaserMIN_ || lasercalib > EELaserMAX_))
209  myrechit.setFlag(EcalRecHit::kPoorCalib);
210  result.push_back(myrechit);
211  }
212 
213  return true;
214 }
215 
216 // Take our association map of dbstatuses-> recHit flagbits and return the apporpriate flagbit word
217 uint32_t EcalRecHitWorkerSimple::setFlagBits(const std::vector<std::vector<uint32_t> >& map, const uint32_t& status) {
218  for (unsigned int i = 0; i != map.size(); ++i) {
219  if (std::find(map[i].begin(), map[i].end(), status) != map[i].end())
220  return 0x1 << i;
221  }
222 
223  return 0;
224 }
225 
227 
edm::ESGetToken< EcalTimeCalibConstants, EcalTimeCalibConstantsRcd > itimeToken_
edm::ESGetToken< EcalLaserDbService, EcalLaserDbRecord > laserToken_
T getParameter(std::string const &) const
Definition: ParameterSet.h:307
EcalRecHitWorkerSimple(const edm::ParameterSet &, edm::ConsumesCollector &c)
edm::ESHandle< EcalADCToGeVConstant > agc
std::vector< std::vector< uint32_t > > v_DB_reco_flags_
edm::ESGetToken< EcalTimeOffsetConstant, EcalTimeOffsetConstantRcd > offtimeToken_
void setFlag(int flag)
set the flags (from Flags or ESFlags)
Definition: EcalRecHit.h:184
edm::ESHandle< EcalChannelStatus > chStatus
Log< level::Error, false > LogError
void find(edm::Handle< EcalRecHitCollection > &hits, DetId thisDet, std::vector< EcalRecHitCollection::const_iterator > &hit, bool debug=false)
Definition: FindCaloHit.cc:19
Definition: Electron.h:6
edm::ESGetToken< EcalIntercalibConstants, EcalIntercalibConstantsRcd > icalToken_
edm::ESHandle< EcalTimeCalibConstants > itime
EcalChannelStatusMap EcalChannelStatus
edm::Timestamp time() const
Definition: EventBase.h:64
EcalRecHitSimpleAlgo * rechitMaker_
float getLaserCorrection(DetId const &xid, edm::Timestamp const &iTime) const
ESHandle< T > getHandle(const ESGetToken< T, R > &iToken) const
Definition: EventSetup.h:130
std::vector< int > v_chstatus_
const_iterator find(uint32_t rawId) const
void setADCToGeVConstant(const float &value) override
make rechits from dataframes
Definition: DetId.h:17
EcalTimeCalibConstantMap EcalTimeCalibConstants
std::vector< Item >::const_iterator const_iterator
uint32_t setFlagBits(const std::vector< std::vector< uint32_t > > &map, const uint32_t &status)
EcalRecHit makeRecHit(const EcalUncalibratedRecHit &uncalibRH, const float &intercalibConstant, const float &timeIntercalib=0, const uint32_t &flags=0) const override
Compute parameters.
edm::ESHandle< EcalTimeOffsetConstant > offtime
edm::ESGetToken< EcalADCToGeVConstant, EcalADCToGeVConstantRcd > agcToken_
edm::ESGetToken< EcalChannelStatus, EcalChannelStatusRcd > chStatusToken_
EcalIntercalibConstantMap EcalIntercalibConstants
float EcalTimeCalibConstant
#define DEFINE_EDM_PLUGIN(factory, type, name)
const_iterator end() const
bool run(const edm::Event &evt, const EcalUncalibratedRecHit &uncalibRH, EcalRecHitCollection &result) override
void set(const edm::EventSetup &es) override
edm::ESHandle< EcalIntercalibConstants > ical
float EcalIntercalibConstant
edm::ESHandle< EcalLaserDbService > laser