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HGCalTriggerValidator Class Reference
Inheritance diagram for HGCalTriggerValidator:
DQMGlobalEDAnalyzer< Histograms > DQMGlobalEDAnalyzerBase< Histograms, Args...> edm::global::EDProducer< T > edm::global::EDProducerBase edm::ProducerBase edm::EDConsumerBase edm::ProductRegistryHelper

Public Member Functions

 HGCalTriggerValidator (const edm::ParameterSet &)
 
 ~HGCalTriggerValidator () override
 
- Public Member Functions inherited from DQMGlobalEDAnalyzer< Histograms >
virtual void dqmEndRun (edm::Run const &, edm::EventSetup const &, Histogramsconst &) const
 
void globalEndRunProduce (edm::Run &run, edm::EventSetup const &setup) const final
 
- Public Member Functions inherited from DQMGlobalEDAnalyzerBase< Histograms, Args...>
void accumulate (edm::StreamID id, edm::Event const &event, edm::EventSetup const &setup) const final
 
virtual void dqmBeginRun (edm::Run const &, edm::EventSetup const &, Histograms &) const
 
 DQMGlobalEDAnalyzerBase ()
 
std::shared_ptr< HistogramsglobalBeginRun (edm::Run const &run, edm::EventSetup const &setup) const final
 
void globalEndRun (edm::Run const &, edm::EventSetup const &) const final
 
- Public Member Functions inherited from edm::global::EDProducer< T >
 EDProducer ()=default
 
 EDProducer (const EDProducer &)=delete
 
bool hasAbilityToProduceInBeginLumis () const final
 
bool hasAbilityToProduceInBeginProcessBlocks () const final
 
bool hasAbilityToProduceInBeginRuns () const final
 
bool hasAbilityToProduceInEndLumis () const final
 
bool hasAbilityToProduceInEndProcessBlocks () const final
 
bool hasAbilityToProduceInEndRuns () const final
 
EDProduceroperator= (const EDProducer &)=delete
 
bool wantsGlobalLuminosityBlocks () const final
 
bool wantsGlobalRuns () const final
 
bool wantsInputProcessBlocks () const final
 
bool wantsProcessBlocks () const final
 
bool wantsStreamLuminosityBlocks () const final
 
bool wantsStreamRuns () const final
 
- Public Member Functions inherited from edm::global::EDProducerBase
 EDProducerBase ()
 
ModuleDescription const & moduleDescription () const
 
 ~EDProducerBase () override
 
- Public Member Functions inherited from edm::ProducerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
std::vector
< edm::ProductResolverIndex >
const & 
indiciesForPutProducts (BranchType iBranchType) const
 
 ProducerBase ()
 
std::vector
< edm::ProductResolverIndex >
const & 
putTokenIndexToProductResolverIndex () const
 
void registerProducts (ProducerBase *, ProductRegistry *, ModuleDescription const &)
 
std::function< void(BranchDescription
const &)> 
registrationCallback () const
 used by the fwk to register list of products More...
 
void resolvePutIndicies (BranchType iBranchType, ModuleToResolverIndicies const &iIndicies, std::string const &moduleLabel)
 
 ~ProducerBase () noexcept(false) 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 const &)=delete
 
 EDConsumerBase (EDConsumerBase &&)=default
 
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
 
EDConsumerBase const & operator= (EDConsumerBase const &)=delete
 
EDConsumerBaseoperator= (EDConsumerBase &&)=default
 
bool registeredToConsume (ProductResolverIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
void selectInputProcessBlocks (ProductRegistry const &productRegistry, ProcessBlockHelperBase const &processBlockHelperBase)
 
ProductResolverIndexAndSkipBit uncheckedIndexFrom (EDGetToken) const
 
void updateLookup (BranchType iBranchType, ProductResolverIndexHelper const &, bool iPrefetchMayGet)
 
void updateLookup (eventsetup::ESRecordsToProxyIndices const &)
 
virtual ~EDConsumerBase () noexcept(false)
 

Private Member Functions

void bookHistograms (DQMStore::IBooker &, edm::Run const &, edm::EventSetup const &, Histograms &) const override
 
void dqmAnalyze (edm::Event const &, edm::EventSetup const &, Histograms const &) const override
 

Private Attributes

edm::EDGetToken clusters_token_
 
std::unique_ptr
< HGCalTriggerClusterIdentificationBase
id_
 
edm::EDGetToken multiclusters_token_
 
edm::EDGetToken towers_token_
 
edm::EDGetToken trigger_cells_token_
 
std::shared_ptr
< HGCalTriggerTools
triggerTools_
 

Additional Inherited Members

- Public Types inherited from DQMGlobalEDAnalyzerBase< Histograms, Args...>
typedef dqm::reco::DQMStore DQMStore
 
typedef dqm::reco::MonitorElement MonitorElement
 
- Public Types inherited from edm::global::EDProducerBase
typedef EDProducerBase ModuleType
 
- Public Types inherited from edm::ProducerBase
using ModuleToResolverIndicies = std::unordered_multimap< std::string, std::tuple< edm::TypeID const *, const char *, edm::ProductResolverIndex >>
 
typedef
ProductRegistryHelper::TypeLabelList 
TypeLabelList
 
- Public Types inherited from edm::EDConsumerBase
typedef ProductLabels Labels
 
- Static Public Member Functions inherited from edm::global::EDProducerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 
- Protected Member Functions inherited from DQMGlobalEDAnalyzerBase< Histograms, Args...>
uint64_t meId (edm::Run const &run) const
 
- Protected Member Functions inherited from edm::ProducerBase
ProducesCollector producesCollector ()
 
- Protected Member Functions inherited from edm::EDConsumerBase
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > consumes (edm::InputTag const &tag)
 
template<BranchType B = InEvent>
EDConsumerBaseAdaptor< Bconsumes (edm::InputTag tag) noexcept
 
EDGetToken consumes (const TypeToGet &id, edm::InputTag const &tag)
 
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<typename ESProduct , typename ESRecord , Transition Tr = Transition::Event>
auto esConsumes (ESInputTag const &tag)
 
template<Transition Tr = Transition::Event>
constexpr auto esConsumes ()
 
template<Transition Tr = Transition::Event>
auto esConsumes (ESInputTag tag)
 
template<Transition Tr = Transition::Event>
ESGetTokenGeneric esConsumes (eventsetup::EventSetupRecordKey const &iRecord, eventsetup::DataKey const &iKey)
 Used with EventSetupRecord::doGet. More...
 
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > mayConsume (edm::InputTag const &tag)
 
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
template<BranchType B>
EDGetToken mayConsume (const TypeToGet &id, edm::InputTag const &tag)
 
void resetItemsToGetFrom (BranchType iType)
 
- Protected Attributes inherited from DQMGlobalEDAnalyzerBase< Histograms, Args...>
DQMStoredqmstore_
 
edm::EDPutTokenT< DQMTokenrunToken_
 

Detailed Description

Definition at line 93 of file HGCalTriggerValidator.cc.

Constructor & Destructor Documentation

HGCalTriggerValidator::HGCalTriggerValidator ( const edm::ParameterSet iConfig)
explicit

Definition at line 114 of file HGCalTriggerValidator.cc.

References edm::ParameterSet::getParameter().

115  : trigger_cells_token_{consumes<l1t::HGCalTriggerCellBxCollection>(
116  iConfig.getParameter<edm::InputTag>("TriggerCells"))},
117  clusters_token_{consumes<l1t::HGCalClusterBxCollection>(iConfig.getParameter<edm::InputTag>("Clusters"))},
119  consumes<l1t::HGCalMulticlusterBxCollection>(iConfig.getParameter<edm::InputTag>("Multiclusters"))},
120  towers_token_{consumes<l1t::HGCalTowerBxCollection>(iConfig.getParameter<edm::InputTag>("Towers"))},
121  id_{HGCalTriggerClusterIdentificationFactory::get()->create("HGCalTriggerClusterIdentificationBDT")} {
122  id_->initialize(iConfig.getParameter<edm::ParameterSet>("EGIdentification"));
123  triggerTools_ = std::make_shared<HGCalTriggerTools>();
124 }
edm::EDGetToken multiclusters_token_
std::unique_ptr< HGCalTriggerClusterIdentificationBase > id_
edm::EDGetToken trigger_cells_token_
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
std::shared_ptr< HGCalTriggerTools > triggerTools_
#define get
HGCalTriggerValidator::~HGCalTriggerValidator ( )
override

Definition at line 126 of file HGCalTriggerValidator.cc.

126 {}

Member Function Documentation

void HGCalTriggerValidator::bookHistograms ( DQMStore::IBooker iBooker,
edm::Run const &  ,
edm::EventSetup const &  iSetup,
Histograms histograms 
) const
overrideprivatevirtual

Implements DQMGlobalEDAnalyzerBase< Histograms, Args...>.

Definition at line 128 of file HGCalTriggerValidator.cc.

References dqm::implementation::IBooker::book1D(), dqm::implementation::NavigatorBase::cd(), and dqm::implementation::NavigatorBase::setCurrentFolder().

131  {
132  iBooker.cd();
133  iBooker.setCurrentFolder("HGCALTPG");
134 
135  //initiating histograms
136  // trigger cells
137  histograms.h_tc_n_ = iBooker.book1D("tc_n", "trigger cell number; number", 400, 0, 400);
138  histograms.h_tc_mipPt_ = iBooker.book1D("tc_mipPt", "trigger cell mipPt; mipPt", 400, 0, 400);
139  histograms.h_tc_pt_ = iBooker.book1D("tc_pt", "trigger cell pt; pt [GeV]", 15, 0, 15);
140  histograms.h_tc_energy_ = iBooker.book1D("tc_energy", "trigger cell energy; energy [GeV]", 70, 0, 70);
141  histograms.h_tc_eta_ = iBooker.book1D("tc_eta", "trigger cell eta; eta", 60, -3.14, 3.14);
142  histograms.h_tc_phi_ = iBooker.book1D("tc_phi", "trigger cell phi; phi", 60, -3.14, 3.14);
143  histograms.h_tc_x_ = iBooker.book1D("tc_x", "trigger cell x; x [cm]", 500, -250, 250);
144  histograms.h_tc_y_ = iBooker.book1D("tc_y", "trigger cell y; y [cm]", 500, -250, 250);
145  histograms.h_tc_z_ = iBooker.book1D("tc_z", "trigger cell z; z [cm]", 1100, -550, 550);
146  histograms.h_tc_layer_ = iBooker.book1D("tc_layer", "trigger cell layer; layer", 50, 0, 50);
147 
148  // cluster 2D histograms
149  histograms.h_cl_n_ = iBooker.book1D("cl_n", "cluster2D number; number", 80, 0, 80);
150  histograms.h_cl_mipPt_ = iBooker.book1D("cl_mipPt", "cluster2D mipPt; mipPt", 600, 0, 600);
151  histograms.h_cl_pt_ = iBooker.book1D("cl_pt", "cluster2D pt; pt [GeV]", 20, 0, 20);
152  histograms.h_cl_energy_ = iBooker.book1D("cl_energy", "cluster2D energy; energy [GeV]", 80, 0, 80);
153  histograms.h_cl_eta_ = iBooker.book1D("cl_eta", "cluster2D eta; eta", 60, -3.14, 3.14);
154  histograms.h_cl_phi_ = iBooker.book1D("cl_phi", "cluster2D phi; phi", 60, -3.14, 3.14);
155  histograms.h_cl_cells_n_ = iBooker.book1D("cl_cells_n", "cluster2D cells_n; cells_n", 16, 0, 16);
156  histograms.h_cl_layer_ = iBooker.book1D("cl_layer", "cluster2D layer; layer", 50, 0, 50);
157 
158  // multiclusters
159  histograms.h_cl3d_n_ = iBooker.book1D("cl3d_n", "cl3duster3D number; number", 12, 0, 12);
160  histograms.h_cl3d_pt_ = iBooker.book1D("cl3d_pt", "cl3duster3D pt; pt [GeV]", 50, 0, 50);
161  histograms.h_cl3d_energy_ = iBooker.book1D("cl3d_energy", "cl3duster3D energy; energy [GeV]", 80, 0, 80);
162  histograms.h_cl3d_eta_ = iBooker.book1D("cl3d_eta", "cl3duster3D eta; eta", 60, -3.14, 3.14);
163  histograms.h_cl3d_phi_ = iBooker.book1D("cl3d_phi", "cl3duster3D phi; phi", 60, -3.14, 3.14);
164  histograms.h_cl3d_clusters_n_ = iBooker.book1D("cl3d_clusters_n", "cl3duster3D clusters_n; clusters_n", 30, 0, 30);
165  // cluster shower shapes
166  histograms.h_cl3d_showerlength_ =
167  iBooker.book1D("cl3d_showerlength", "cl3duster3D showerlength; showerlength", 50, 0, 50);
168  histograms.h_cl3d_coreshowerlength_ =
169  iBooker.book1D("cl3d_coreshowerlength", "cl3duster3D coreshowerlength; coreshowerlength", 16, 0, 16);
170  histograms.h_cl3d_firstlayer_ = iBooker.book1D("cl3d_firstlayer", "cl3duster3D firstlayer; firstlayer", 50, 0, 50);
171  histograms.h_cl3d_maxlayer_ = iBooker.book1D("cl3d_maxlayer", "cl3duster3D maxlayer; maxlayer", 50, 0, 50);
172  histograms.h_cl3d_seetot_ = iBooker.book1D("cl3d_seetot", "cl3duster3D seetot; seetot", 50, 0, 0.05);
173  histograms.h_cl3d_seemax_ = iBooker.book1D("cl3d_seemax", "cl3duster3D seemax; seemax", 40, 0, 0.04);
174  histograms.h_cl3d_spptot_ = iBooker.book1D("cl3d_spptot", "cl3duster3D spptot; spptot", 800, 0, 0.08);
175  histograms.h_cl3d_sppmax_ = iBooker.book1D("cl3d_sppmax", "cl3duster3D sppmax; sppmax", 800, 0, 0.08);
176  histograms.h_cl3d_szz_ = iBooker.book1D("cl3d_szz", "cl3duster3D szz; szz", 50, 0, 50);
177  histograms.h_cl3d_srrtot_ = iBooker.book1D("cl3d_srrtot", "cl3duster3D srrtot; srrtot", 800, 0, 0.008);
178  histograms.h_cl3d_srrmax_ = iBooker.book1D("cl3d_srrmax", "cl3duster3D srrmax; srrmax", 900, 0, 0.009);
179  histograms.h_cl3d_srrmean_ = iBooker.book1D("cl3d_srrmean", "cl3duster3D srrmean; srrmean", 800, 0, 0.008);
180  histograms.h_cl3d_emaxe_ = iBooker.book1D("cl3d_emaxe", "cl3duster3D emaxe; emaxe", 15, 0, 1.5);
181  histograms.h_cl3d_bdteg_ = iBooker.book1D("cl3d_bdteg", "cl3duster3D bdteg; bdteg", 30, -0.7, 0.4);
182  histograms.h_cl3d_quality_ = iBooker.book1D("cl3d_quality", "cl3duster3D quality; quality", 20, 0, 2);
183 
184  // towers
185  histograms.h_tower_n_ = iBooker.book1D("tower_n", "tower n; number", 400, 1200, 1600);
186  histograms.h_tower_pt_ = iBooker.book1D("tower_pt", "tower pt; pt [GeV]", 50, 0, 50);
187  histograms.h_tower_energy_ = iBooker.book1D("tower_energy", "tower energy; energy [GeV]", 200, 0, 200);
188  histograms.h_tower_eta_ = iBooker.book1D("tower_eta", "tower eta; eta", 60, -3.14, 3.14);
189  histograms.h_tower_phi_ = iBooker.book1D("tower_phi", "tower phi; phi", 60, -3.14, 3.14);
190  histograms.h_tower_etEm_ = iBooker.book1D("tower_etEm", "tower etEm; etEm", 50, 0, 50);
191  histograms.h_tower_etHad_ = iBooker.book1D("tower_etHad", "tower etHad; etHad", 30, 0, 0.3);
192  histograms.h_tower_iEta_ = iBooker.book1D("tower_iEta", "tower iEta; iEta", 20, 0, 20);
193  histograms.h_tower_iPhi_ = iBooker.book1D("tower_iPhi", "tower iPhi; iPhi", 80, 0, 80);
194 }
virtual void setCurrentFolder(std::string const &fullpath)
Definition: DQMStore.cc:32
MonitorElement * book1D(TString const &name, TString const &title, int const nchX, double const lowX, double const highX, FUNC onbooking=NOOP())
Definition: DQMStore.h:98
void HGCalTriggerValidator::dqmAnalyze ( edm::Event const &  iEvent,
edm::EventSetup const &  iSetup,
Histograms const &  histograms 
) const
overrideprivatevirtual

Implements DQMGlobalEDAnalyzerBase< Histograms, Args...>.

Definition at line 196 of file HGCalTriggerValidator.cc.

References BXVector< T >::begin(), HLT_FULL_cff::clusters, clusters_token_, BXVector< T >::end(), edm::Event::getByToken(), gpuClustering::id, id_, edm::HandleBase::isValid(), multiclusters_token_, HLT_FULL_cff::towers, towers_token_, trigger_cells_token_, and triggerTools_.

198  {
199  int tc_n = 0;
200  int cl_n = 0;
201  int cl3d_n = 0;
202  int tower_n = 0;
203 
204  triggerTools_->eventSetup(iSetup);
205 
206  // retrieve trigger cells
208  iEvent.getByToken(trigger_cells_token_, trigger_cells_h);
209  const l1t::HGCalTriggerCellBxCollection &trigger_cells = *trigger_cells_h;
210 
211  if (trigger_cells_h.isValid()) {
212  for (auto tc_itr = trigger_cells.begin(0); tc_itr != trigger_cells.end(0); tc_itr++) {
213  tc_n++;
214  HGCalDetId id(tc_itr->detId());
215  histograms.h_tc_pt_->Fill(tc_itr->pt());
216  histograms.h_tc_mipPt_->Fill(tc_itr->mipPt());
217  histograms.h_tc_energy_->Fill(tc_itr->energy());
218  histograms.h_tc_eta_->Fill(tc_itr->eta());
219  histograms.h_tc_phi_->Fill(tc_itr->phi());
220  histograms.h_tc_x_->Fill(tc_itr->position().x());
221  histograms.h_tc_y_->Fill(tc_itr->position().y());
222  histograms.h_tc_z_->Fill(tc_itr->position().z());
223  histograms.h_tc_layer_->Fill(triggerTools_->layerWithOffset(id));
224  }
225  }
226  histograms.h_tc_n_->Fill(tc_n);
227 
228  // retrieve clusters
230  iEvent.getByToken(clusters_token_, clusters_h);
231  const l1t::HGCalClusterBxCollection &clusters = *clusters_h;
232 
233  if (clusters_h.isValid()) {
234  for (auto cl_itr = clusters.begin(0); cl_itr != clusters.end(0); cl_itr++) {
235  cl_n++;
236  histograms.h_cl_mipPt_->Fill(cl_itr->mipPt());
237  histograms.h_cl_pt_->Fill(cl_itr->pt());
238  histograms.h_cl_energy_->Fill(cl_itr->energy());
239  histograms.h_cl_eta_->Fill(cl_itr->eta());
240  histograms.h_cl_phi_->Fill(cl_itr->phi());
241  histograms.h_cl_layer_->Fill(triggerTools_->layerWithOffset(cl_itr->detId()));
242  histograms.h_cl_cells_n_->Fill(cl_itr->constituents().size());
243  }
244  }
245  histograms.h_cl_n_->Fill(cl_n);
246 
247  // retrieve clusters 3D
249  iEvent.getByToken(multiclusters_token_, multiclusters_h);
250  const l1t::HGCalMulticlusterBxCollection &multiclusters = *multiclusters_h;
251 
252  if (multiclusters_h.isValid()) {
253  for (auto cl3d_itr = multiclusters.begin(0); cl3d_itr != multiclusters.end(0); cl3d_itr++) {
254  cl3d_n++;
255  histograms.h_cl3d_pt_->Fill(cl3d_itr->pt());
256  histograms.h_cl3d_energy_->Fill(cl3d_itr->energy());
257  histograms.h_cl3d_eta_->Fill(cl3d_itr->eta());
258  histograms.h_cl3d_phi_->Fill(cl3d_itr->phi());
259  histograms.h_cl3d_clusters_n_->Fill(cl3d_itr->constituents().size());
260  // cluster shower shapes
261  histograms.h_cl3d_showerlength_->Fill(cl3d_itr->showerLength());
262  histograms.h_cl3d_coreshowerlength_->Fill(cl3d_itr->coreShowerLength());
263  histograms.h_cl3d_firstlayer_->Fill(cl3d_itr->firstLayer());
264  histograms.h_cl3d_maxlayer_->Fill(cl3d_itr->maxLayer());
265  histograms.h_cl3d_seetot_->Fill(cl3d_itr->sigmaEtaEtaTot());
266  histograms.h_cl3d_seemax_->Fill(cl3d_itr->sigmaEtaEtaMax());
267  histograms.h_cl3d_spptot_->Fill(cl3d_itr->sigmaPhiPhiTot());
268  histograms.h_cl3d_sppmax_->Fill(cl3d_itr->sigmaPhiPhiMax());
269  histograms.h_cl3d_szz_->Fill(cl3d_itr->sigmaZZ());
270  histograms.h_cl3d_srrtot_->Fill(cl3d_itr->sigmaRRTot());
271  histograms.h_cl3d_srrmax_->Fill(cl3d_itr->sigmaRRMax());
272  histograms.h_cl3d_srrmean_->Fill(cl3d_itr->sigmaRRMean());
273  histograms.h_cl3d_emaxe_->Fill(cl3d_itr->eMax() / cl3d_itr->energy());
274  histograms.h_cl3d_bdteg_->Fill(id_->value(*cl3d_itr));
275  histograms.h_cl3d_quality_->Fill(cl3d_itr->hwQual());
276  }
277  }
278  histograms.h_cl3d_n_->Fill(cl3d_n);
279 
280  // retrieve towers
282  iEvent.getByToken(towers_token_, towers_h);
283  const l1t::HGCalTowerBxCollection &towers = *towers_h;
284 
285  if (towers_h.isValid()) {
286  for (auto tower_itr = towers.begin(0); tower_itr != towers.end(0); tower_itr++) {
287  tower_n++;
288  histograms.h_tower_pt_->Fill(tower_itr->pt());
289  histograms.h_tower_energy_->Fill(tower_itr->energy());
290  histograms.h_tower_eta_->Fill(tower_itr->eta());
291  histograms.h_tower_phi_->Fill(tower_itr->phi());
292  histograms.h_tower_etEm_->Fill(tower_itr->etEm());
293  histograms.h_tower_etHad_->Fill(tower_itr->etHad());
294  histograms.h_tower_iEta_->Fill(tower_itr->id().iEta());
295  histograms.h_tower_iPhi_->Fill(tower_itr->id().iPhi());
296  }
297  }
298  histograms.h_tower_n_->Fill(tower_n);
299 }
const_iterator end(int bx) const
uint16_t *__restrict__ id
edm::EDGetToken multiclusters_token_
std::unique_ptr< HGCalTriggerClusterIdentificationBase > id_
int iEvent
Definition: GenABIO.cc:224
bool isValid() const
Definition: HandleBase.h:70
edm::EDGetToken trigger_cells_token_
std::shared_ptr< HGCalTriggerTools > triggerTools_
const_iterator begin(int bx) const

Member Data Documentation

edm::EDGetToken HGCalTriggerValidator::clusters_token_
private

Definition at line 105 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().

std::unique_ptr<HGCalTriggerClusterIdentificationBase> HGCalTriggerValidator::id_
private

Definition at line 109 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().

edm::EDGetToken HGCalTriggerValidator::multiclusters_token_
private

Definition at line 106 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().

edm::EDGetToken HGCalTriggerValidator::towers_token_
private

Definition at line 107 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().

edm::EDGetToken HGCalTriggerValidator::trigger_cells_token_
private

Definition at line 104 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().

std::shared_ptr<HGCalTriggerTools> HGCalTriggerValidator::triggerTools_
private

Definition at line 111 of file HGCalTriggerValidator.cc.

Referenced by dqmAnalyze().