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TrackstersProducer.cc
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1 // Author: Felice Pantaleo,Marco Rovere - felice.pantaleo@cern.ch,marco.rovere@cern.ch
2 // Date: 09/2018
3 
4 // user include files
5 #include <vector>
6 
16 
19 
23 
25 #include "PatternRecognitionbyCA.h"
27 
31 
32 using namespace ticl;
33 
35 public:
36  explicit TrackstersProducer(const edm::ParameterSet&);
37  ~TrackstersProducer() override {}
38  static void fillDescriptions(edm::ConfigurationDescriptions& descriptions);
39 
40  void produce(edm::Event&, const edm::EventSetup&) override;
41 
42  // static methods for handling the global cache
43  static std::unique_ptr<TrackstersCache> initializeGlobalCache(const edm::ParameterSet&);
44  static void globalEndJob(TrackstersCache*);
45 
46 private:
48  bool doNose_;
51  const tensorflow::Session* tfSession_;
52  std::unique_ptr<PatternRecognitionAlgoBaseT<TICLLayerTiles>> myAlgo_;
53  std::unique_ptr<PatternRecognitionAlgoBaseT<TICLLayerTilesHFNose>> myAlgoHFNose_;
54 
64 };
66 
68  : detector_(ps.getParameter<std::string>("detector")),
69  doNose_(detector_ == "HFNose"),
70  tfDnnLabel_(ps.getParameter<std::string>("tfDnnLabel")),
71  tfDnnToken_(esConsumes(edm::ESInputTag("", tfDnnLabel_))),
72  tfSession_(nullptr),
73  clusters_token_(consumes<std::vector<reco::CaloCluster>>(ps.getParameter<edm::InputTag>("layer_clusters"))),
74  filtered_layerclusters_mask_token_(consumes<std::vector<float>>(ps.getParameter<edm::InputTag>("filtered_mask"))),
75  original_layerclusters_mask_token_(consumes<std::vector<float>>(ps.getParameter<edm::InputTag>("original_mask"))),
76  clustersTime_token_(
77  consumes<edm::ValueMap<std::pair<float, float>>>(ps.getParameter<edm::InputTag>("time_layerclusters"))),
78  seeding_regions_token_(
79  consumes<std::vector<TICLSeedingRegion>>(ps.getParameter<edm::InputTag>("seeding_regions"))),
80  itername_(ps.getParameter<std::string>("itername")) {
81  auto plugin = ps.getParameter<std::string>("patternRecognitionBy");
82  auto pluginPSet = ps.getParameter<edm::ParameterSet>("pluginPatternRecognitionBy" + plugin);
83  if (doNose_) {
85  ps.getParameter<std::string>("patternRecognitionBy"), pluginPSet, consumesCollector());
87  consumes<TICLLayerTilesHFNose>(ps.getParameter<edm::InputTag>("layer_clusters_hfnose_tiles"));
88  } else {
90  ps.getParameter<std::string>("patternRecognitionBy"), pluginPSet, consumesCollector());
91  layer_clusters_tiles_token_ = consumes<TICLLayerTiles>(ps.getParameter<edm::InputTag>("layer_clusters_tiles"));
92  }
93 
94  if (itername_ == "TrkEM")
96  else if (itername_ == "EM")
98  else if (itername_ == "Trk")
100  else if (itername_ == "HAD")
102  else if (itername_ == "MIP")
104 
105  produces<std::vector<Trackster>>();
106  produces<std::vector<float>>(); // Mask to be applied at the next iteration
107 }
108 
110  // hgcalMultiClusters
112  desc.add<std::string>("detector", "HGCAL");
113  desc.add<edm::InputTag>("layer_clusters", edm::InputTag("hgcalMergeLayerClusters"));
114  desc.add<edm::InputTag>("filtered_mask", edm::InputTag("filteredLayerClusters", "iterationLabelGoesHere"));
115  desc.add<edm::InputTag>("original_mask", edm::InputTag("hgcalMergeLayerClusters", "InitialLayerClustersMask"));
116  desc.add<edm::InputTag>("time_layerclusters", edm::InputTag("hgcalMergeLayerClusters", "timeLayerCluster"));
117  desc.add<edm::InputTag>("layer_clusters_tiles", edm::InputTag("ticlLayerTileProducer"));
118  desc.add<edm::InputTag>("layer_clusters_hfnose_tiles", edm::InputTag("ticlLayerTileHFNose"));
119  desc.add<edm::InputTag>("seeding_regions", edm::InputTag("ticlSeedingRegionProducer"));
120  desc.add<std::string>("patternRecognitionBy", "CA");
121  desc.add<std::string>("itername", "unknown");
122  desc.add<std::string>("tfDnnLabel", "tracksterSelectionTf");
123 
124  // CA Plugin
125  edm::ParameterSetDescription pluginDesc;
126  pluginDesc.addNode(edm::PluginDescription<PatternRecognitionFactory>("type", "CA", true));
127  desc.add<edm::ParameterSetDescription>("pluginPatternRecognitionByCA", pluginDesc);
128  //
129  // CLUE3D Plugin
130  edm::ParameterSetDescription pluginDescClue3D;
131  pluginDescClue3D.addNode(edm::PluginDescription<PatternRecognitionFactory>("type", "CLUE3D", true));
132  desc.add<edm::ParameterSetDescription>("pluginPatternRecognitionByCLUE3D", pluginDescClue3D);
133 
134  // FastJet Plugin
135  edm::ParameterSetDescription pluginDescFastJet;
136  pluginDescFastJet.addNode(edm::PluginDescription<PatternRecognitionFactory>("type", "FastJet", true));
137  desc.add<edm::ParameterSetDescription>("pluginPatternRecognitionByFastJet", pluginDescFastJet);
138 
139  descriptions.add("trackstersProducer", desc);
140 }
141 
143  auto result = std::make_unique<std::vector<Trackster>>();
144  auto output_mask = std::make_unique<std::vector<float>>();
145 
146  const std::vector<float>& original_layerclusters_mask = evt.get(original_layerclusters_mask_token_);
147  const auto& layerClusters = evt.get(clusters_token_);
148  const auto& inputClusterMask = evt.get(filtered_layerclusters_mask_token_);
149  const auto& layerClustersTimes = evt.get(clustersTime_token_);
150  const auto& seeding_regions = evt.get(seeding_regions_token_);
151 
152  tfSession_ = es.getData(tfDnnToken_).getSession();
153 
154  std::unordered_map<int, std::vector<int>> seedToTrackstersAssociation;
155  // if it's regional iteration and there are seeding regions
156  if (!seeding_regions.empty() and seeding_regions[0].index != -1) {
157  auto numberOfSeedingRegions = seeding_regions.size();
158  for (unsigned int i = 0; i < numberOfSeedingRegions; ++i) {
159  seedToTrackstersAssociation.emplace(seeding_regions[i].index, 0);
160  }
161  }
162 
163  if (doNose_) {
165  const typename PatternRecognitionAlgoBaseT<TICLLayerTilesHFNose>::Inputs inputHFNose(evt,
166  es,
168  inputClusterMask,
169  layerClustersTimes,
172  tfSession_);
173 
174  myAlgoHFNose_->makeTracksters(inputHFNose, *result, seedToTrackstersAssociation);
175 
176  } else {
179  evt, es, layerClusters, inputClusterMask, layerClustersTimes, layer_clusters_tiles, seeding_regions, tfSession_);
180 
181  myAlgo_->makeTracksters(input, *result, seedToTrackstersAssociation);
182  }
183  // Now update the global mask and put it into the event
184  output_mask->reserve(original_layerclusters_mask.size());
185  // Copy over the previous state
186  std::copy(
187  std::begin(original_layerclusters_mask), std::end(original_layerclusters_mask), std::back_inserter(*output_mask));
188 
189  for (auto& trackster : *result) {
190  trackster.setIteration(iterIndex_);
191  // Mask the used elements, accordingly
192  for (auto const v : trackster.vertices()) {
193  // TODO(rovere): for the moment we mask the layer cluster completely. In
194  // the future, properly compute the fraction of usage.
195  (*output_mask)[v] = 0.;
196  }
197  }
198 
199  evt.put(std::move(result));
200  evt.put(std::move(output_mask));
201 }
ticl::Trackster::IterationIndex iterIndex_
ESGetTokenH3DDVariant esConsumes(std::string const &Record, edm::ConsumesCollector &)
Definition: DeDxTools.cc:283
T getParameter(std::string const &) const
Definition: ParameterSet.h:303
OrphanHandle< PROD > put(std::unique_ptr< PROD > product)
Put a new product.
Definition: Event.h:133
edm::EDGetTokenT< TICLLayerTilesHFNose > layer_clusters_tiles_hfnose_token_
T const & getData(const ESGetToken< T, R > &iToken) const noexcept(false)
Definition: EventSetup.h:119
bool get(ProductID const &oid, Handle< PROD > &result) const
Definition: Event.h:347
const edm::EDGetTokenT< std::vector< reco::CaloCluster > > clusters_token_
const edm::EDGetTokenT< std::vector< float > > original_layerclusters_mask_token_
const std::string tfDnnLabel_
ParameterDescriptionNode * addNode(ParameterDescriptionNode const &node)
static std::string const input
Definition: EdmProvDump.cc:50
const tensorflow::Session * tfSession_
void produce(edm::Event &, const edm::EventSetup &) override
edm::EDGetTokenT< TICLLayerTiles > layer_clusters_tiles_token_
const std::string itername_
const edm::EDGetTokenT< std::vector< TICLSeedingRegion > > seeding_regions_token_
const edm::EDGetTokenT< edm::ValueMap< std::pair< float, float > > > clustersTime_token_
#define DEFINE_FWK_MODULE(type)
Definition: MakerMacros.h:16
std::unique_ptr< PatternRecognitionAlgoBaseT< TICLLayerTiles > > myAlgo_
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
void add(std::string const &label, ParameterSetDescription const &psetDescription)
~TrackstersProducer() override
const edm::EDGetTokenT< std::vector< float > > filtered_layerclusters_mask_token_
fixed size matrix
HLT enums.
Definition: Common.h:8
const edm::ESGetToken< TfGraphDefWrapper, TfGraphRecord > tfDnnToken_
#define get
std::unique_ptr< PatternRecognitionAlgoBaseT< TICLLayerTilesHFNose > > myAlgoHFNose_
TrackstersProducer(const edm::ParameterSet &)
def move(src, dest)
Definition: eostools.py:511