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HGCalSimHitValidation.cc
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1 // system include files
2 #include <cmath>
3 #include <iostream>
4 #include <fstream>
5 #include <vector>
6 #include <map>
7 #include <string>
8 
14 
21 
24 
35 
42 
47 
48 #include "CLHEP/Geometry/Point3D.h"
49 #include "CLHEP/Geometry/Transform3D.h"
50 #include "CLHEP/Geometry/Vector3D.h"
51 #include "CLHEP/Units/GlobalSystemOfUnits.h"
52 #include "CLHEP/Units/GlobalPhysicalConstants.h"
53 
55 
56 public:
57 
58  struct energysum{
59  energysum() {etotal=0; for (int i=0; i<6; ++i) eTime[i] = 0.;}
60  double eTime[6], etotal;
61  };
62 
63  struct hitsinfo{
65  x=y=z=phi=eta=0.0;
66  cell=cell2=sector=sector2=type=layer=0;
67  }
68  double x, y, z, phi, eta;
69  int cell, cell2, sector, sector2, type, layer;
70  };
71 
72 
74  ~HGCalSimHitValidation() override {}
75 
76  static void fillDescriptions(edm::ConfigurationDescriptions& descriptions);
77 
78 protected:
79 
80  void dqmBeginRun(const edm::Run&, const edm::EventSetup&) override;
81  void bookHistograms(DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &) override;
82  void analyze(const edm::Event&, const edm::EventSetup&) override;
83 
84 private:
85 
86  void analyzeHits (std::vector<PCaloHit>& hits);
87  void fillOccupancyMap(std::map<int, int>& OccupancyMap, int layer);
88  void fillHitsInfo(std::pair<hitsinfo,energysum> hit_, unsigned int itimeslice, double esum);
90 
91  // ----------member data ---------------------------
95  std::vector<double> times_;
98  unsigned int nTimes_;
101  unsigned int layers_;
102  std::map<uint32_t, HepGeom::Transform3D> transMap_;
103 
104  std::vector<MonitorElement*> HitOccupancy_Plus_, HitOccupancy_Minus_;
105  std::vector<MonitorElement*> EtaPhi_Plus_, EtaPhi_Minus_;
107  std::vector<MonitorElement*> energy_[6];
108 };
109 
111  nameDetector_(iConfig.getParameter<std::string>("DetectorName")),
112  caloHitSource_(iConfig.getParameter<std::string>("CaloHitSource")),
113  times_(iConfig.getParameter<std::vector<double> >("TimeSlices")),
114  verbosity_(iConfig.getUntrackedParameter<int>("Verbosity",0)),
115  testNumber_(iConfig.getUntrackedParameter<bool>("TestNumber",true)),
116  symmDet_(true) {
117 
118  heRebuild_ = (nameDetector_ == "HCal") ? true : false;
119  tok_hepMC_ = consumes<edm::HepMCProduct>(edm::InputTag("generatorSmeared"));
120  tok_hits_ = consumes<edm::PCaloHitContainer>(edm::InputTag("g4SimHits",caloHitSource_));
121  nTimes_ = (times_.size() > 6) ? 6 : times_.size();
122 }
123 
126  std::vector<double> times = {25.0,1000.0};
127  desc.add<std::string>("DetectorName","HGCalEESensitive");
128  desc.add<std::string>("CaloHitSource","HGCHitsEE");
129  desc.add<std::vector<double> >("TimeSlices",times);
130  desc.addUntracked<int>("Verbosity",0);
131  desc.addUntracked<bool>("TestNumber",true);
132  descriptions.add("hgcalSimHitValidationEE",desc);
133 }
134 
136  const edm::EventSetup& iSetup) {
137 
138  //Generator input
140  iEvent.getByToken(tok_hepMC_,evtMC);
141  if (!evtMC.isValid()) {
142  edm::LogVerbatim("HGCalValidation") << "no HepMCProduct found";
143  } else {
144  const HepMC::GenEvent * myGenEvent = evtMC->GetEvent();
145  unsigned int k(0);
146  for (HepMC::GenEvent::particle_const_iterator p = myGenEvent->particles_begin();
147  p != myGenEvent->particles_end(); ++p, ++k) {
148  edm::LogVerbatim("HGCalValidation") << "Particle[" << k << "] with pt "
149  << (*p)->momentum().perp() << " eta "
150  << (*p)->momentum().eta() << " phi "
151  << (*p)->momentum().phi();
152  }
153  }
154 
155  //Now the hits
156  edm::Handle<edm::PCaloHitContainer> theCaloHitContainers;
157  iEvent.getByToken(tok_hits_, theCaloHitContainers);
158  if (theCaloHitContainers.isValid()) {
159  if (verbosity_>0)
160  edm::LogVerbatim("HGCalValidation") << " PcalohitItr = "
161  << theCaloHitContainers->size();
162  std::vector<PCaloHit> caloHits;
163  caloHits.insert(caloHits.end(), theCaloHitContainers->begin(),
164  theCaloHitContainers->end());
165  if (heRebuild_ && testNumber_) {
166  for (unsigned int i=0; i<caloHits.size(); ++i) {
167  unsigned int id_ = caloHits[i].id();
169  if(hid.subdet()!=int(HcalEndcap)) hid = HcalDetId(HcalEmpty,hid.ieta(),hid.iphi(),hid.depth());
170  caloHits[i].setID(hid.rawId());
171  if (verbosity_>0)
172  edm::LogVerbatim("HGCalValidation") << "Hit[" << i << "] " << hid;
173  }
174  }
175  analyzeHits(caloHits);
176  } else if (verbosity_>0) {
177  edm::LogVerbatim("HGCalValidation") << "PCaloHitContainer does not exist!";
178  }
179 }
180 
181 void HGCalSimHitValidation::analyzeHits (std::vector<PCaloHit>& hits) {
182 
183  std::map<int, int> OccupancyMap_plus, OccupancyMap_minus;
184  OccupancyMap_plus.clear(); OccupancyMap_minus.clear();
185 
186  std::map<uint32_t,std::pair<hitsinfo,energysum> > map_hits;
187  map_hits.clear();
188 
189  if (verbosity_ > 0)
190  edm::LogVerbatim("HGCalValidation") << nameDetector_ << " with "
191  << hits.size() << " PcaloHit elements";
192  unsigned int nused(0);
193  for (unsigned int i=0; i<hits.size(); i++) {
194  double energy = hits[i].energy();
195  double time = hits[i].time();
196  uint32_t id_ = hits[i].id();
197  int cell, sector, subsector(0), layer, zside;
198  int subdet(0), cell2(0), type(0);
199  if (heRebuild_) {
200  HcalDetId detId = HcalDetId(id_);
201  subdet = detId.subdet();
202  if (subdet != static_cast<int>(HcalEndcap)) continue;
203  cell = detId.ietaAbs();
204  sector = detId.iphi();
205  subsector = 1;
206  layer = detId.depth();
207  zside = detId.zside();
208  } else if ((hgcons_->geomMode() == HGCalGeometryMode::Hexagon8) ||
210  HGCSiliconDetId detId = HGCSiliconDetId(id_);
211  subdet = ForwardEmpty;
212  cell = detId.cellU();
213  cell2 = detId.cellV();
214  sector = detId.waferU();
215  subsector = detId.waferV();
216  type = detId.type();
217  layer = detId.layer();
218  zside = detId.zside();
219  } else if (hgcons_->geomMode() == HGCalGeometryMode::Square) {
220  HGCalTestNumbering::unpackSquareIndex(id_, zside, layer, sector, subsector, cell);
221  } else if (hgcons_->geomMode() == HGCalGeometryMode::Trapezoid) {
223  subdet = ForwardEmpty;
224  cell = detId.ietaAbs();
225  sector = detId.iphi();
226  subsector = 1;
227  type = detId.type();
228  layer = detId.layer();
229  zside = detId.zside();
230  } else {
231  HGCalTestNumbering::unpackHexagonIndex(id_, subdet, zside, layer, sector, type, cell);
232  }
233  nused++;
234  if (verbosity_>1)
235  edm::LogVerbatim("HGCalValidation") << "Detector " << nameDetector_
236  << " zside = " << zside
237  << " sector|wafer = " << sector
238  << ":" << subsector
239  << " type = " << type
240  << " layer = " << layer
241  << " cell = " << cell
242  << ":" << cell2
243  << " energy = " << energy
244  << " energyem = " << hits[i].energyEM()
245  << " energyhad = " << hits[i].energyHad()
246  << " time = " << time;
247 
248  HepGeom::Point3D<float> gcoord;
249  if (heRebuild_) {
250  std::pair<double,double> etaphi = hcons_->getEtaPhi(subdet,zside*cell,sector);
251  double rz = hcons_->getRZ(subdet,zside*cell,layer);
252  if (verbosity_>2)
253  edm::LogVerbatim("HGCalValidation") << "i/p " << subdet << ":"
254  << zside << ":" << cell << ":"
255  << sector << ":" << layer <<" o/p "
256  << etaphi.first << ":"
257  << etaphi.second << ":" << rz;
258  gcoord = HepGeom::Point3D<float>(rz*cos(etaphi.second)/cosh(etaphi.first),
259  rz*sin(etaphi.second)/cosh(etaphi.first),
260  rz*tanh(etaphi.first));
261  } else if (hgcons_->geomMode() == HGCalGeometryMode::Square) {
262  std::pair<float,float> xy = hgcons_->locateCell(cell,layer,subsector,false);
263  const HepGeom::Point3D<float> lcoord(xy.first,xy.second,0);
264  int subs = (symmDet_ ? 0 : subsector);
265  id_ = HGCalTestNumbering::packSquareIndex(zside,layer,sector,subs,0);
266  gcoord = (transMap_[id_]*lcoord);
267  } else {
268  std::pair<float,float> xy;
271  xy = hgcons_->locateCell(layer,sector,subsector,cell,cell2,false,true);
272  } else if (hgcons_->geomMode() == HGCalGeometryMode::Trapezoid) {
273  xy = hgcons_->locateCellTrap(layer,sector,cell,false);
274  } else {
275  xy = hgcons_->locateCell(cell,layer,sector,false);
276  }
277  double zp = hgcons_->waferZ(layer,false);
278  if (zside < 0) zp = -zp;
279  float xp = (zp < 0) ? -xy.first : xy.first;
280  gcoord = HepGeom::Point3D<float>(xp,xy.second,zp);
281  }
282  double tof = (gcoord.mag()*CLHEP::mm)/CLHEP::c_light;
283  if (verbosity_>1)
284  edm::LogVerbatim("HGCalValidation") << std::hex << id_ << std::dec
285  << " global coordinate " << gcoord
286  << " time " << time << ":" << tof;
287  time -= tof;
288 
289  energysum esum;
290  hitsinfo hinfo;
291  if (map_hits.count(id_) != 0) {
292  hinfo = map_hits[id_].first;
293  esum = map_hits[id_].second;
294  } else {
295  hinfo.x = gcoord.x();
296  hinfo.y = gcoord.y();
297  hinfo.z = gcoord.z();
298  hinfo.sector = sector;
299  hinfo.sector2= subsector;
300  hinfo.cell = cell;
301  hinfo.cell2 = cell;
302  hinfo.type = type;
303  hinfo.layer = layer;
304  hinfo.phi = gcoord.getPhi();
305  hinfo.eta = gcoord.getEta();
306  }
307  esum.etotal += energy;
308  for (unsigned int k=0; k<nTimes_; ++k) {
309  if (time > 0 && time < times_[k]) esum.eTime[k] += energy;
310  }
311  if (verbosity_>1)
312  edm::LogVerbatim("HGCalValidation") << " ----------------------- gx = "
313  << hinfo.x << " gy = " << hinfo.y
314  << " gz = " << hinfo.z << " phi = "
315  << hinfo.phi << " eta = " << hinfo.eta;
316  map_hits[id_] = std::pair<hitsinfo,energysum>(hinfo,esum);
317  }
318  if (verbosity_>0)
319  edm::LogVerbatim("HGCalValidation") << nameDetector_ << " with "
320  << map_hits.size()
321  << " detector elements being hit";
322 
323  std::map<uint32_t,std::pair<hitsinfo,energysum> >::iterator itr;
324  for (itr = map_hits.begin() ; itr != map_hits.end(); ++itr) {
325  hitsinfo hinfo = (*itr).second.first;
326  energysum esum = (*itr).second.second;
327  int layer = hinfo.layer;
328 
329  for (unsigned int itimeslice = 0; itimeslice < nTimes_; itimeslice++ ) {
330  fillHitsInfo((*itr).second, itimeslice, esum.eTime[itimeslice]);
331  }
332 
333  double eta = hinfo.eta;
334 
335  if (eta > 0.0) fillOccupancyMap(OccupancyMap_plus, layer-1);
336  else fillOccupancyMap(OccupancyMap_minus, layer-1);
337  }
338  edm::LogVerbatim("HGCalValidation") << "With map:used:total " << hits.size()
339  << "|" << nused << "|" << map_hits.size()
340  << " hits";
341 
342  for (auto itr = OccupancyMap_plus.begin() ; itr != OccupancyMap_plus.end(); ++itr) {
343  int layer = (*itr).first;
344  int occupancy = (*itr).second;
345  HitOccupancy_Plus_.at(layer)->Fill(occupancy);
346  }
347  for (auto itr = OccupancyMap_minus.begin() ; itr != OccupancyMap_minus.end(); ++itr) {
348  int layer = (*itr).first;
349  int occupancy = (*itr).second;
350  HitOccupancy_Minus_.at(layer)->Fill(occupancy);
351  }
352 }
353 
354 void HGCalSimHitValidation::fillOccupancyMap(std::map<int, int>& OccupancyMap, int layer){
355  if (OccupancyMap.find(layer) != OccupancyMap.end()) {
356  OccupancyMap[layer] ++;
357  } else {
358  OccupancyMap[layer] = 1;
359  }
360 }
361 
362 void HGCalSimHitValidation::fillHitsInfo(std::pair<hitsinfo,energysum> hits,
363  unsigned int itimeslice, double esum){
364 
365  unsigned int ilayer = hits.first.layer - 1;
366  if (ilayer < layers_) {
367  energy_[itimeslice].at(ilayer)->Fill(esum);
368  if (itimeslice==0) {
369  EtaPhi_Plus_.at(ilayer)->Fill(hits.first.eta , hits.first.phi);
370  EtaPhi_Minus_.at(ilayer)->Fill(hits.first.eta , hits.first.phi);
371  }
372  } else {
373  if (verbosity_>0)
374  edm::LogVerbatim("HGCalValidation") << "Problematic Hit for "
375  << nameDetector_ << " at sector "
376  << hits.first.sector << ":"
377  << hits.first.sector2 << " layer "
378  << hits.first.layer << " cell "
379  << hits.first.cell << ":"
380  << hits.first.cell2 << " energy "
381  << hits.second.etotal;
382  }
383 }
384 
386  if (verbosity_>0)
387  edm::LogVerbatim("HGCalValidation") << "Initialize HGCalDDDConstants for "
388  << nameDetector_ << " : " << hgcons_;
389 
390  if (hgcons_->geomMode() == HGCalGeometryMode::Square) {
391  const DDCompactView & cview = *ddViewH;
392  std::string attribute = "Volume";
394 
395  DDSpecificsMatchesValueFilter filter{DDValue(attribute, value, 0)};
396  DDFilteredView fv(cview,filter);
397  bool dodet = fv.firstChild();
398 
399  while (dodet) {
400  const DDSolid & sol = fv.logicalPart().solid();
401  std::string name = sol.name();
402  int isd = (name.find(nameDetector_) == std::string::npos) ? -1 : 1;
403  if (isd > 0) {
404  std::vector<int> copy = fv.copyNumbers();
405  int nsiz = (int)(copy.size());
406  int lay = (nsiz > 0) ? copy[nsiz-1] : -1;
407  int sec = (nsiz > 1) ? copy[nsiz-2] : -1;
408  int zp = (nsiz > 3) ? copy[nsiz-4] : -1;
409  if (zp !=1 ) zp = -1;
410  const DDTrap & trp = static_cast<DDTrap>(sol);
411  int subs = (trp.alpha1()>0 ? 1 : 0);
412  symmDet_ = (trp.alpha1()==0 ? true : false);
413  uint32_t id = HGCalTestNumbering::packSquareIndex(zp,lay,sec,subs,0);
414  DD3Vector x, y, z;
415  fv.rotation().GetComponents( x, y, z ) ;
416  const CLHEP::HepRep3x3 rotation ( x.X(), y.X(), z.X(),
417  x.Y(), y.Y(), z.Y(),
418  x.Z(), y.Z(), z.Z() );
419  const CLHEP::HepRotation hr ( rotation );
420  const CLHEP::Hep3Vector h3v ( fv.translation().X(),
421  fv.translation().Y(),
422  fv.translation().Z() ) ;
423  const HepGeom::Transform3D ht3d (hr, h3v);
424  transMap_.insert(std::make_pair(id,ht3d));
425  if (verbosity_>2)
426  edm::LogVerbatim("HGCalValidation") << HGCalDetId(id)
427  << " Transform using " << h3v
428  << " and " << hr;
429  }
430  dodet = fv.next();
431  }
432  if (verbosity_>0)
433  edm::LogVerbatim("HGCalValidation") << "Finds " << transMap_.size()
434  << " elements and SymmDet_ = "
435  << symmDet_;
436  }
437  return true;
438 }
439 
440 // ------------ method called when starting to processes a run ------------
442  const edm::EventSetup& iSetup) {
443  if (heRebuild_) {
445  iSetup.get<HcalRecNumberingRecord>().get( pHRNDC );
446  hcons_ = &(*pHRNDC);
447  layers_ = hcons_->getMaxDepth(1);
448  } else {
450  iSetup.get<IdealGeometryRecord>().get(nameDetector_, pHGDC);
451  hgcons_ = &(*pHGDC);
452  layers_ = hgcons_->layers(false);
454  iSetup.get<IdealGeometryRecord>().get( pDD );
455  defineGeometry(pDD);
456  }
457  if (verbosity_>0)
458  edm::LogVerbatim("HGCalValidation") << nameDetector_ << " defined with "
459  << layers_ << " Layers";
460 }
461 
463  edm::Run const&,
464  edm::EventSetup const&) {
465 
466  iB.setCurrentFolder("HGCAL/HGCalSimHitsV/"+nameDetector_);
467 
468  std::ostringstream histoname;
469  for (unsigned int ilayer = 0; ilayer < layers_; ilayer++ ) {
470  histoname.str(""); histoname << "HitOccupancy_Plus_layer_" << ilayer;
471  HitOccupancy_Plus_.push_back(iB.book1D(histoname.str().c_str(), "HitOccupancy_Plus", 501, -0.5, 500.5));
472  histoname.str(""); histoname << "HitOccupancy_Minus_layer_" << ilayer;
473  HitOccupancy_Minus_.push_back(iB.book1D(histoname.str().c_str(), "HitOccupancy_Minus", 501, -0.5, 500.5));
474 
475  histoname.str(""); histoname << "EtaPhi_Plus_" << "layer_" << ilayer;
476  EtaPhi_Plus_.push_back(iB.book2D(histoname.str().c_str(), "Occupancy", 31, 1.45, 3.0, 72, -CLHEP::pi, CLHEP::pi));
477  histoname.str(""); histoname << "EtaPhi_Minus_" << "layer_" << ilayer;
478  EtaPhi_Minus_.push_back(iB.book2D(histoname.str().c_str(), "Occupancy", 31, -3.0, -1.45, 72, -CLHEP::pi, CLHEP::pi));
479 
480  for (unsigned int itimeslice = 0; itimeslice < nTimes_ ; itimeslice++ ) {
481  histoname.str(""); histoname << "energy_time_"<< itimeslice << "_layer_" << ilayer;
482  energy_[itimeslice].push_back(iB.book1D(histoname.str().c_str(),"energy_",100,0,0.1));
483  }
484  }
485 
486  MeanHitOccupancy_Plus_ = iB.book1D("MeanHitOccupancy_Plus", "MeanHitOccupancy_Plus", layers_, 0.5, layers_ + 0.5);
487  MeanHitOccupancy_Minus_ = iB.book1D("MeanHitOccupancy_Minus", "MeanHitOccupancy_Minus", layers_, 0.5, layers_ + 0.5);
488 }
489 
491 //define this as a plug-in
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
MonitorElement * MeanHitOccupancy_Plus_
type
Definition: HCALResponse.h:21
std::vector< MonitorElement * > energy_[6]
const DDLogicalPart & logicalPart() const
The logical-part of the current node in the filtered-view.
const N & name() const
Definition: DDBase.h:78
void fillOccupancyMap(std::map< int, int > &OccupancyMap, int layer)
std::pair< double, double > getEtaPhi(const int &subdet, const int &ieta, const int &iphi) const
HcalSubdetector subdet() const
get the subdetector
Definition: HcalDetId.h:142
ParameterDescriptionBase * addUntracked(U const &iLabel, T const &value)
std::vector< MonitorElement * > HitOccupancy_Plus_
void analyze(const edm::Event &, const edm::EventSetup &) override
def copy(args, dbName)
ProductID id() const
Definition: HandleBase.cc:15
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:579
nav_type copyNumbers() const
return the stack of copy numbers
int zside() const
get the z-side of the cell (1/-1)
Definition: HcalDetId.h:145
#define DEFINE_FWK_MODULE(type)
Definition: MakerMacros.h:17
int waferU() const
int cellV() const
edm::EDGetTokenT< edm::HepMCProduct > tok_hepMC_
const DDRotationMatrix & rotation() const
The absolute rotation of the current node.
Sin< T >::type sin(const T &t)
Definition: Sin.h:22
int ietaAbs() const
get the eta index
constexpr uint32_t rawId() const
get the raw id
Definition: DetId.h:47
int type() const
get the type
void analyzeHits(std::vector< PCaloHit > &hits)
int zside() const
get the z-side of the cell (1/-1)
int zside(DetId const &)
std::vector< MonitorElement * > HitOccupancy_Minus_
const DDSolid & solid(void) const
Returns a reference object of the solid being the shape of this LogicalPart.
std::pair< float, float > locateCell(int cell, int lay, int type, bool reco) const
Compact representation of the geometrical detector hierarchy.
Definition: DDCompactView.h:83
int cellU() const
get the cell #&#39;s in u,v or in x,y
A DDSolid represents the shape of a part.
Definition: DDSolid.h:38
MonitorElement * MeanHitOccupancy_Minus_
const Double_t pi
bool defineGeometry(edm::ESTransientHandle< DDCompactView > &ddViewH)
int depth() const
get the tower depth
Definition: HcalDetId.h:162
int iEvent
Definition: GenABIO.cc:230
unsigned int layers(bool reco) const
ROOT::Math::DisplacementVector3D< ROOT::Math::Cartesian3D< double > > DD3Vector
A DD Translation is currently implemented with Root Vector3D.
Definition: DDTranslation.h:6
bool next()
set current node to the next node in the filtered tree
const HcalDDDRecConstants * hcons_
int type() const
get the type
susybsm::HSCParticleRef hr
Definition: classes.h:26
int layer() const
get the layer #
std::pair< float, float > locateCellTrap(int lay, int ieta, int iphi, bool reco) const
double getRZ(const int &subdet, const int &ieta, const int &depth) const
int waferV() const
Cos< T >::type cos(const T &t)
Definition: Cos.h:22
void dqmBeginRun(const edm::Run &, const edm::EventSetup &) override
int ieta() const
get the cell ieta
Definition: HcalDetId.h:155
MonitorElement * book1D(Args &&...args)
Definition: DQMStore.h:118
Interface to a Trapezoid.
Definition: DDSolid.h:79
std::pair< T, T > etaphi(T x, T y, T z)
Definition: FastMath.h:128
int iphi() const
get the phi index
HGCalGeometryMode::GeometryMode geomMode() const
Definition: value.py:1
std::vector< MonitorElement * > EtaPhi_Plus_
ParameterDescriptionBase * add(U const &iLabel, T const &value)
bool isValid() const
Definition: HandleBase.h:74
HGCalSimHitValidation(const edm::ParameterSet &)
double waferZ(int layer, bool reco) const
int k[5][pyjets_maxn]
int ietaAbs() const
get the absolute value of the cell ieta
Definition: HcalDetId.h:150
int iphi() const
get the cell iphi
Definition: HcalDetId.h:157
void setCurrentFolder(const std::string &fullpath)
Definition: DQMStore.cc:274
const HepMC::GenEvent * GetEvent() const
Definition: HepMCProduct.h:38
MonitorElement * book2D(Args &&...args)
Definition: DQMStore.h:136
int getMaxDepth(const int &type) const
static void unpackSquareIndex(const uint32_t &idx, int &z, int &lay, int &sec, int &subsec, int &cell)
double alpha1(void) const
Angle with respect to the y axis from the centre of the side at y=-pDy1 to the centre at y=+pDy1 of t...
Definition: DDSolid.cc:177
edm::EDGetTokenT< edm::PCaloHitContainer > tok_hits_
void add(std::string const &label, ParameterSetDescription const &psetDescription)
int layer() const
get the layer #
int zside() const
get the z-side of the cell (1/-1)
void bookHistograms(DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &) override
T get() const
Definition: EventSetup.h:63
std::map< uint32_t, HepGeom::Transform3D > transMap_
bool firstChild()
set the current node to the first child ...
const HGCalDDDConstants * hgcons_
std::vector< MonitorElement * > EtaPhi_Minus_
const DDTranslation & translation() const
The absolute translation of the current node.
DetId relabel(const uint32_t testId) const
static uint32_t packSquareIndex(int z, int lay, int sec, int subsec, int cell)
void fillHitsInfo(std::pair< hitsinfo, energysum > hit_, unsigned int itimeslice, double esum)
std::vector< double > times_
static void unpackHexagonIndex(const uint32_t &idx, int &subdet, int &z, int &lay, int &wafer, int &celltyp, int &cell)
Definition: Run.h:44