CMS 3D CMS Logo

HGCalBackendLayer2Processor3DClustering.cc
Go to the documentation of this file.
2 
12 
14 public:
16  std::string typeMulticluster(conf.getParameterSet("C3d_parameters").getParameter<std::string>("type_multicluster"));
17  if (typeMulticluster == "dRC3d") {
19  multiclustering_ = std::make_unique<HGCalMulticlusteringImpl>(conf.getParameterSet("C3d_parameters"));
20  } else if (typeMulticluster == "DBSCANC3d") {
22  multiclustering_ = std::make_unique<HGCalMulticlusteringImpl>(conf.getParameterSet("C3d_parameters"));
23  } else if (typeMulticluster == "Histo") {
25  multiclusteringHistoSeeding_ = std::make_unique<HGCalHistoSeedingImpl>(
26  conf.getParameterSet("C3d_parameters").getParameterSet("histoMax_C3d_seeding_parameters"));
27  multiclusteringHistoClustering_ = std::make_unique<HGCalHistoClusteringImpl>(
28  conf.getParameterSet("C3d_parameters").getParameterSet("histoMax_C3d_clustering_parameters"));
29  } else {
30  throw cms::Exception("HGCTriggerParameterError") << "Unknown Multiclustering type '" << typeMulticluster << "'";
31  }
32 
33  for (const auto& interpretationPset : conf.getParameter<std::vector<edm::ParameterSet>>("energy_interpretations")) {
34  std::unique_ptr<HGCalTriggerClusterInterpreterBase> interpreter{
35  HGCalTriggerClusterInterpreterFactory::get()->create(interpretationPset.getParameter<std::string>("type"))};
36  interpreter->initialize(interpretationPset);
37  energy_interpreters_.push_back(std::move(interpreter));
38  }
39  }
40 
43  const edm::EventSetup& es) override {
45  if (multiclustering_)
46  multiclustering_->eventSetup(es);
48  multiclusteringHistoSeeding_->eventSetup(es);
50  multiclusteringHistoClustering_->eventSetup(es);
51 
52  /* create a persistent vector of pointers to the trigger-cells */
53  std::vector<edm::Ptr<l1t::HGCalCluster>> clustersPtrs;
54  for (unsigned i = 0; i < collHandle->size(); ++i) {
55  edm::Ptr<l1t::HGCalCluster> ptr(collHandle, i);
56  clustersPtrs.push_back(ptr);
57  }
58 
59  /* create a vector of seed positions and their energy*/
60  std::vector<std::pair<GlobalPoint, double>> seedPositionsEnergy;
61 
62  /* call to multiclustering and compute shower shape*/
63  switch (multiclusteringAlgoType_) {
64  case dRC3d:
65  multiclustering_->clusterizeDR(clustersPtrs, collCluster3D, *triggerGeometry_);
66  break;
67  case DBSCANC3d:
68  multiclustering_->clusterizeDBSCAN(clustersPtrs, collCluster3D, *triggerGeometry_);
69  break;
70  case HistoC3d:
71  multiclusteringHistoSeeding_->findHistoSeeds(clustersPtrs, seedPositionsEnergy);
72  multiclusteringHistoClustering_->clusterizeHisto(
73  clustersPtrs, seedPositionsEnergy, *triggerGeometry_, collCluster3D);
74  break;
75  default:
76  // Should not happen, clustering type checked in constructor
77  break;
78  }
79 
80  // Call all the energy interpretation modules on the cluster collection
81  for (const auto& interpreter : energy_interpreters_) {
82  interpreter->eventSetup(es);
83  interpreter->interpret(collCluster3D);
84  }
85  }
86 
87 private:
89 
91 
92  /* algorithms instances */
93  std::unique_ptr<HGCalMulticlusteringImpl> multiclustering_;
94  std::unique_ptr<HGCalHistoSeedingImpl> multiclusteringHistoSeeding_;
95  std::unique_ptr<HGCalHistoClusteringImpl> multiclusteringHistoClustering_;
96 
97  /* algorithm type */
99 
100  std::vector<std::unique_ptr<HGCalTriggerClusterInterpreterBase>> energy_interpreters_;
101 };
102 
105  "HGCalBackendLayer2Processor3DClustering");
mps_fire.i
i
Definition: mps_fire.py:355
HGCalHistoClusteringImpl.h
HGCalBackendLayer2Processor3DClustering::triggerGeometry_
edm::ESHandle< HGCalTriggerGeometryBase > triggerGeometry_
Definition: HGCalBackendLayer2Processor3DClustering.cc:90
CaloGeometryRecord
Definition: CaloGeometryRecord.h:30
HGCalMulticlusteringImpl.h
HGCalTriggerClusterInterpreterBase.h
HGCalBackendLayer2Processor3DClustering::multiclusteringHistoClustering_
std::unique_ptr< HGCalHistoClusteringImpl > multiclusteringHistoClustering_
Definition: HGCalBackendLayer2Processor3DClustering.cc:95
HGCalBackendLayer2Processor3DClustering::DBSCANC3d
Definition: HGCalBackendLayer2Processor3DClustering.cc:88
HGCalHistoSeedingImpl.h
edm::Handle
Definition: AssociativeIterator.h:50
BXVector
Definition: BXVector.h:15
HGCalMulticluster.h
edm::EventSetup::get
T get() const
Definition: EventSetup.h:73
HGCalTriggerGeometryBase.h
edm::ESHandle< HGCalTriggerGeometryBase >
HGCalBackendLayer2Processor3DClustering::HGCalBackendLayer2Processor3DClustering
HGCalBackendLayer2Processor3DClustering(const edm::ParameterSet &conf)
Definition: HGCalBackendLayer2Processor3DClustering.cc:15
DEFINE_EDM_PLUGIN
#define DEFINE_EDM_PLUGIN(factory, type, name)
Definition: PluginFactory.h:124
HGCalBackendLayer2Processor3DClustering::MulticlusterType
MulticlusterType
Definition: HGCalBackendLayer2Processor3DClustering.cc:88
HGCalBackendLayer2Processor3DClustering::run
void run(const edm::Handle< l1t::HGCalClusterBxCollection > &collHandle, l1t::HGCalMulticlusterBxCollection &collCluster3D, const edm::EventSetup &es) override
Definition: HGCalBackendLayer2Processor3DClustering.cc:41
CaloGeometryRecord.h
AlCaHLTBitMon_QueryRunRegistry.string
string
Definition: AlCaHLTBitMon_QueryRunRegistry.py:256
HGCalBackendLayer2Processor3DClustering::multiclusteringHistoSeeding_
std::unique_ptr< HGCalHistoSeedingImpl > multiclusteringHistoSeeding_
Definition: HGCalBackendLayer2Processor3DClustering.cc:94
HGCalBackendLayer2Processor3DClustering::energy_interpreters_
std::vector< std::unique_ptr< HGCalTriggerClusterInterpreterBase > > energy_interpreters_
Definition: HGCalBackendLayer2Processor3DClustering.cc:100
edm::ParameterSet
Definition: ParameterSet.h:36
HGCalBackendLayer2Processor3DClustering::dRC3d
Definition: HGCalBackendLayer2Processor3DClustering.cc:88
edmplugin::PluginFactory
Definition: PluginFactory.h:34
edm::EventSetup
Definition: EventSetup.h:57
HGCalBackendLayer2Processor3DClustering::HistoC3d
Definition: HGCalBackendLayer2Processor3DClustering.cc:88
HGCalBackendLayer2Processor3DClustering::multiclusteringAlgoType_
MulticlusterType multiclusteringAlgoType_
Definition: HGCalBackendLayer2Processor3DClustering.cc:98
HGCalCluster.h
get
#define get
edm::Ptr
Definition: AssociationVector.h:31
edm::ParameterSet::getParameter
T getParameter(std::string const &) const
eostools.move
def move(src, dest)
Definition: eostools.py:511
HGCalBackendLayer2Processor3DClustering
Definition: HGCalBackendLayer2Processor3DClustering.cc:13
Exception
Definition: hltDiff.cc:246
HGCalProcessorBase.h
HGCalBackendLayer2Processor3DClustering::multiclustering_
std::unique_ptr< HGCalMulticlusteringImpl > multiclustering_
Definition: HGCalBackendLayer2Processor3DClustering.cc:93
BXVector::size
unsigned size(int bx) const
HGCalTriggerCell.h
HGCalProcessorBaseT
Definition: HGCalProcessorBaseT.h:10
edm::ParameterSet::getParameterSet
ParameterSet const & getParameterSet(std::string const &) const
Definition: ParameterSet.cc:2121