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edm::MixingModule Class Reference

#include <MixingModule.h>

Inheritance diagram for edm::MixingModule:
edm::BMixingModule edm::one::EDProducer< edm::one::SharedResources, edm::one::WatchRuns, edm::one::WatchLuminosityBlocks > edm::one::EDProducerBase edm::ProducerBase edm::EDConsumerBase edm::ProductRegistryHelper

Public Types

typedef std::vector
< DigiAccumulatorMixMod * > 
Accumulators
 
- Public Types inherited from edm::one::EDProducerBase
typedef EDProducerBase ModuleType
 
- Public Types inherited from edm::ProducerBase
typedef
ProductRegistryHelper::TypeLabelList 
TypeLabelList
 

Public Member Functions

void accumulateEvent (Event const &event, EventSetup const &setup)
 
void accumulateEvent (PileUpEventPrincipal const &event, EventSetup const &setup, edm::StreamID const &)
 
virtual void beginJob ()
 
virtual void beginLuminosityBlock (LuminosityBlock const &l1, EventSetup const &c) override
 
virtual void beginRun (Run const &r1, EventSetup const &c) override
 
virtual void endLuminosityBlock (LuminosityBlock const &l1, EventSetup const &c) override
 
virtual void endRun (Run const &r1, EventSetup const &c) override
 
void finalizeEvent (Event &event, EventSetup const &setup)
 
void initializeEvent (Event const &event, EventSetup const &setup)
 
 MixingModule (const edm::ParameterSet &ps)
 
virtual void reload (const edm::EventSetup &)
 
virtual ~MixingModule ()
 
- Public Member Functions inherited from edm::BMixingModule
virtual void addPileups (const int bcr, EventPrincipal *ep, unsigned int eventId, unsigned int worker, const edm::EventSetup &c)
 
double averageNumber () const
 
 BMixingModule (const edm::ParameterSet &ps)
 
virtual void getEventStartInfo (edm::Event &e, const unsigned int source)
 
bool poisson () const
 
virtual void produce (edm::Event &e1, const edm::EventSetup &c) override
 
virtual void setBcrOffset ()
 
virtual void setEventStartInfo (const unsigned int s)
 
virtual void setSourceOffset (const unsigned int s)
 
virtual ~BMixingModule ()
 
- Public Member Functions inherited from edm::one::EDProducer< edm::one::SharedResources, edm::one::WatchRuns, edm::one::WatchLuminosityBlocks >
 EDProducer ()=default
 
- Public Member Functions inherited from edm::one::EDProducerBase
 EDProducerBase ()
 
ModuleDescription const & moduleDescription () const
 
virtual ~EDProducerBase ()
 
- Public Member Functions inherited from edm::ProducerBase
 ProducerBase ()
 
void registerProducts (ProducerBase *, ProductRegistry *, ModuleDescription const &)
 
std::function< void(BranchDescription
const &)> 
registrationCallback () const
 used by the fwk to register list of products More...
 
virtual ~ProducerBase ()
 
- Public Member Functions inherited from edm::EDConsumerBase
 EDConsumerBase ()
 
ProductHolderIndexAndSkipBit indexFrom (EDGetToken, BranchType, TypeID const &) const
 
void itemsMayGet (BranchType, std::vector< ProductHolderIndexAndSkipBit > &) const
 
void itemsToGet (BranchType, std::vector< ProductHolderIndexAndSkipBit > &) const
 
std::vector
< ProductHolderIndexAndSkipBit >
const & 
itemsToGetFromEvent () const
 
void labelsForToken (EDGetToken iToken, Labels &oLabels) const
 
void modulesDependentUpon (const std::string &iProcessName, std::vector< const char * > &oModuleLabels) const
 
bool registeredToConsume (ProductHolderIndex, bool, BranchType) const
 
bool registeredToConsumeMany (TypeID const &, BranchType) const
 
void updateLookup (BranchType iBranchType, ProductHolderIndexHelper const &)
 
virtual ~EDConsumerBase ()
 

Private Member Functions

virtual void addSignals (const edm::Event &e, const edm::EventSetup &es)
 
virtual void branchesActivate (const std::string &friendlyName, const std::string &subdet, InputTag &tag, std::string &label)
 
virtual void checkSignal (const edm::Event &e)
 
void createDigiAccumulators (const edm::ParameterSet &mixingPSet, edm::ConsumesCollector &iC)
 
virtual void createnewEDProduct ()
 
virtual void doPileUp (edm::Event &e, const edm::EventSetup &es) override
 
void pileAllWorkers (EventPrincipal const &ep, ModuleCallingContext const *, int bcr, int id, int &offset, const edm::EventSetup &setup, edm::StreamID const &)
 
virtual void put (edm::Event &e, const edm::EventSetup &es)
 

Private Attributes

std::vector< AdjusterBase * > adjusters_
 
std::vector< AdjusterBase * > adjustersObjects_
 
Accumulators digiAccumulators_
 
InputTag inputTagPlayback_
 
bool mixProdStep1_
 
bool mixProdStep2_
 
CrossingFramePlaybackInfoExtendedplaybackInfo_
 
bool useCurrentProcessOnly_
 
std::vector< std::string > wantedBranches_
 
std::vector< MixingWorkerBase * > workers_
 
std::vector< MixingWorkerBase * > workersObjects_
 

Additional Inherited Members

- Static Public Member Functions inherited from edm::one::EDProducerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 
- Protected Member Functions inherited from edm::BMixingModule
void dropUnwantedBranches (std::vector< std::string > const &wantedBranches)
 
virtual void endJob () override
 
void setupPileUpEvent (const edm::EventSetup &setup)
 
void update (edm::EventSetup const &)
 
- Protected Member Functions inherited from edm::ProducerBase
void callWhenNewProductsRegistered (std::function< void(BranchDescription const &)> const &func)
 
- Protected Member Functions inherited from edm::EDConsumerBase
template<typename ProductType , BranchType B = InEvent>
EDGetTokenT< ProductType > consumes (edm::InputTag const &tag)
 
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 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)
 
- Protected Attributes inherited from edm::BMixingModule
int bunchSpace_
 
bool checktof_
 
bool doit_ [4]
 
unsigned int eventId_
 
std::vector< boost::shared_ptr
< PileUp > > 
inputSources_
 
int maxBunch_
 
int minBunch_
 
bool const mixProdStep1_
 
bool const mixProdStep2_
 
edm::ESWatcher< MixingRcdparameterWatcher_
 
bool playback_
 
bool readDB_
 
std::vector< std::string > sourceNames_
 
std::vector< float > TrueNumInteractions_
 
int vertexOffset_
 
- Static Protected Attributes inherited from edm::BMixingModule
static const unsigned int maxNbSources_ =4
 

Detailed Description

Definition at line 49 of file MixingModule.h.

Member Typedef Documentation

Definition at line 51 of file MixingModule.h.

Constructor & Destructor Documentation

MixingModule::MixingModule ( const edm::ParameterSet ps)
explicit

standard constructor

Definition at line 38 of file MixingModule.cc.

References adjustersObjects_, edm::binary_search_all(), branchesActivate(), edm::BMixingModule::bunchSpace_, edm::EDConsumerBase::consumesCollector(), createDigiAccumulators(), edm::BMixingModule::dropUnwantedBranches(), edm::InputTag::encode(), edm::ParameterSet::exists(), edm::ParameterSet::getParameter(), edm::ParameterSet::getParameterNames(), edm::ParameterSet::getUntrackedParameter(), cuy::ii, inputTagPlayback_, edm::InputTag::instance(), edm::InputTag::kSkipCurrentProcess, diffTwoXMLs::label, LogDebug, edm::BMixingModule::maxBunch_, edm::BMixingModule::maxNbSources_, edm::BMixingModule::minBunch_, mixProdStep1_, mixProdStep2_, cscdqm::h::names, edm::BMixingModule::playback_, edm::sort_all(), AlCaHLTBitMon_QueryRunRegistry::string, subdets, GlobalPosition_Frontier_DevDB_cff::tag, o2o::tags, useCurrentProcessOnly_, wantedBranches_, and workersObjects_.

38  :
39  BMixingModule(ps_mix),
41  mixProdStep2_(ps_mix.getParameter<bool>("mixProdStep2")),
42  mixProdStep1_(ps_mix.getParameter<bool>("mixProdStep1")),
44  {
45  if (!mixProdStep1_ && !mixProdStep2_) LogInfo("MixingModule") << " The MixingModule was run in the Standard mode.";
46  if (mixProdStep1_) LogInfo("MixingModule") << " The MixingModule was run in the Step1 mode. It produces a mixed secondary source.";
47  if (mixProdStep2_) LogInfo("MixingModule") << " The MixingModule was run in the Step2 mode. It uses a mixed secondary source.";
48 
50  if (ps_mix.exists("useCurrentProcessOnly")) {
51  useCurrentProcessOnly_=ps_mix.getParameter<bool>("useCurrentProcessOnly");
52  LogInfo("MixingModule") <<" using given Parameter 'useCurrentProcessOnly' ="<<useCurrentProcessOnly_;
53  }
54  std::string labelPlayback;
55  if (ps_mix.exists("LabelPlayback")) {
56  labelPlayback = ps_mix.getParameter<std::string>("LabelPlayback");
57  }
58  if (labelPlayback.empty()) {
59  labelPlayback = ps_mix.getParameter<std::string>("@module_label");
60  }
61  if (playback_) {
62  inputTagPlayback_ = InputTag(labelPlayback, "", edm::InputTag::kSkipCurrentProcess);
63  consumes<CrossingFramePlaybackInfoExtended>(inputTagPlayback_);
64  }
65 
66  ParameterSet ps=ps_mix.getParameter<ParameterSet>("mixObjects");
67  std::vector<std::string> names = ps.getParameterNames();
68  for(std::vector<std::string>::iterator it=names.begin();it!= names.end();++it) {
69  ParameterSet pset=ps.getParameter<ParameterSet>((*it));
70  if (!pset.exists("type")) continue; //to allow replacement by empty pset
71  std::string object = pset.getParameter<std::string>("type");
72  std::vector<InputTag> tags=pset.getParameter<std::vector<InputTag> >("input");
73 
74  //if (!mixProdStep2_) {
75 
76  InputTag tagCF = InputTag();
77  std::string labelCF = " ";
78 
79  if (object=="SimTrack") {
80  InputTag tag;
81  if (tags.size()>0) tag=tags[0];
83 
84  branchesActivate(TypeID(typeid(std::vector<SimTrack>)).friendlyClassName(),std::string(""),tag,label);
85  adjustersObjects_.push_back(new Adjuster<SimTrack>(tag));
86  bool makeCrossingFrame = pset.getUntrackedParameter<bool>("makeCrossingFrame", false);
87  if(makeCrossingFrame) {
89  produces<CrossingFrame<SimTrack> >(label);
90  consumes<std::vector<SimTrack> >(tag);
91  }
92 
93  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label;
94  // std::cout <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label<<std::endl;
95 
96  } else if (object=="RecoTrack") {
97  InputTag tag;
98  if (tags.size()>0) tag=tags[0];
100 
101  branchesActivate(TypeID(typeid(std::vector<reco::Track>)).friendlyClassName(),std::string(""),tag,label);
102  // note: no crossing frame is foreseen to be used for this object type
103 
104  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label;
105  //std::cout <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label<<std::endl;
106 
107  } else if (object=="SimVertex") {
108  InputTag tag;
109  if (tags.size()>0) tag=tags[0];
111 
112  branchesActivate(TypeID(typeid(std::vector<SimVertex>)).friendlyClassName(),std::string(""),tag,label);
113  adjustersObjects_.push_back(new Adjuster<SimVertex>(tag));
114  bool makeCrossingFrame = pset.getUntrackedParameter<bool>("makeCrossingFrame", false);
115  if(makeCrossingFrame) {
117  produces<CrossingFrame<SimVertex> >(label);
118  consumes<std::vector<SimVertex> >(tag);
119  }
120 
121  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag "<<tag.encode()<<", label will be "<<label;
122  // std::cout <<"Will mix "<<object<<"s with InputTag "<<tag.encode()<<", label will be "<<label<<std::endl;
123 
124  } else if (object=="HepMCProduct") {
125  InputTag tag;
126  if (tags.size()>0) tag=tags[0];
128 
129  branchesActivate(TypeID(typeid(HepMCProduct)).friendlyClassName(),std::string(""),tag,label);
130  bool makeCrossingFrame = pset.getUntrackedParameter<bool>("makeCrossingFrame", false);
131  if(makeCrossingFrame) {
133  produces<CrossingFrame<HepMCProduct> >(label);
134  }
135  consumes<HepMCProduct>(tag);
136 
137  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label;
138  // std::cout <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label<<std::endl;
139 
140  } else if (object=="PCaloHit") {
141  std::vector<std::string> subdets=pset.getParameter<std::vector<std::string> >("subdets");
142  std::vector<std::string> crossingFrames=pset.getUntrackedParameter<std::vector<std::string> >("crossingFrames", std::vector<std::string>());
143  sort_all(crossingFrames);
144  for (unsigned int ii=0;ii<subdets.size();++ii) {
145  InputTag tag;
146  if (tags.size()==1) tag=tags[0];
147  else if(tags.size()>1) tag=tags[ii];
149 
150  branchesActivate(TypeID(typeid(std::vector<PCaloHit>)).friendlyClassName(),subdets[ii],tag,label);
151  adjustersObjects_.push_back(new Adjuster<PCaloHit>(tag));
152  if(binary_search_all(crossingFrames, tag.instance())) {
154  produces<CrossingFrame<PCaloHit> >(label);
155  consumes<std::vector<PCaloHit> >(tag);
156  }
157 
158  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label;
159  // std::cout <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label<<std::endl;
160 
161  }
162 
163  } else if (object=="PSimHit") {
164  std::vector<std::string> subdets=pset.getParameter<std::vector<std::string> >("subdets");
165  std::vector<std::string> crossingFrames=pset.getUntrackedParameter<std::vector<std::string> >("crossingFrames", std::vector<std::string>());
166  sort_all(crossingFrames);
167  for (unsigned int ii=0;ii<subdets.size();++ii) {
168  InputTag tag;
169  if (tags.size()==1) tag=tags[0];
170  else if(tags.size()>1) tag=tags[ii];
172 
173  branchesActivate(TypeID(typeid(std::vector<PSimHit>)).friendlyClassName(),subdets[ii],tag,label);
174  adjustersObjects_.push_back(new Adjuster<PSimHit>(tag));
175  if(binary_search_all(crossingFrames, tag.instance())) {
177  produces<CrossingFrame<PSimHit> >(label);
178  consumes<std::vector<PSimHit> >(tag);
179  }
180 
181  LogInfo("MixingModule") <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label;
182  // std::cout <<"Will mix "<<object<<"s with InputTag= "<<tag.encode()<<", label will be "<<label<<std::endl;
183  }
184  } else {
185  LogWarning("MixingModule") <<"You have asked to mix an unknown type of object("<<object<<").\n If you want to include it in mixing, please contact the authors of the MixingModule!";
186  }
187  //} //if for mixProdStep2
188  }//while over the mixObjects parameters
189 
191  for (unsigned int branch=0;branch<wantedBranches_.size();++branch) LogDebug("MixingModule")<<"Will keep branch "<<wantedBranches_[branch]<<" for mixing ";
192 
194 
195  produces<PileupMixingContent>();
196 
197  produces<CrossingFramePlaybackInfoExtended>();
198 
200  // Create and configure digitizers
201  createDigiAccumulators(ps_mix, iC);
202  }
#define LogDebug(id)
T getParameter(std::string const &) const
static const HistoName names[]
void createDigiAccumulators(const edm::ParameterSet &mixingPSet, edm::ConsumesCollector &iC)
BMixingModule(const edm::ParameterSet &ps)
int ii
Definition: cuy.py:588
Accumulators digiAccumulators_
Definition: MixingModule.h:103
ConsumesCollector consumesCollector()
Use a ConsumesCollector to gather consumes information from helper functions.
static const std::string kSkipCurrentProcess
Definition: InputTag.h:56
static const unsigned int maxNbSources_
Definition: BMixingModule.h:89
std::vector< MixingWorkerBase * > workersObjects_
Definition: MixingModule.h:98
char const * subdets[11]
virtual void branchesActivate(const std::string &friendlyName, const std::string &subdet, InputTag &tag, std::string &label)
tuple tags
Definition: o2o.py:248
void sort_all(RandomAccessSequence &s)
wrappers for std::sort
Definition: Algorithms.h:120
std::vector< std::string > wantedBranches_
Definition: MixingModule.h:99
std::vector< AdjusterBase * > adjustersObjects_
Definition: MixingModule.h:96
InputTag inputTagPlayback_
Definition: MixingModule.h:90
bool binary_search_all(ForwardSequence const &s, Datum const &d)
wrappers for std::binary_search
Definition: Algorithms.h:76
void dropUnwantedBranches(std::vector< std::string > const &wantedBranches)
MixingModule::~MixingModule ( )
virtual

Default destructor

Definition at line 272 of file MixingModule.cc.

References adjustersObjects_, digiAccumulators_, and workersObjects_.

272  {
273  for (auto& worker : workersObjects_) {
274  delete worker;
275  }
276 
277  for (auto& adjuster : adjustersObjects_) {
278  delete adjuster;
279  }
280 
281  for (auto& digiAccumulator : digiAccumulators_) {
282  delete digiAccumulator;
283  }
284  }
Accumulators digiAccumulators_
Definition: MixingModule.h:103
std::vector< MixingWorkerBase * > workersObjects_
Definition: MixingModule.h:98
std::vector< AdjusterBase * > adjustersObjects_
Definition: MixingModule.h:96

Member Function Documentation

void MixingModule::accumulateEvent ( edm::Event const &  event,
edm::EventSetup const &  setup 
)

Definition at line 502 of file MixingModule.cc.

References digiAccumulators_.

Referenced by addSignals(), and pileAllWorkers().

502  {
503  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
504  (*accItr)->accumulate(event, setup);
505  }
506  }
Accumulators digiAccumulators_
Definition: MixingModule.h:103
How EventSelector::AcceptEvent() decides whether to accept an event for output otherwise it is excluding the probing of A single or multiple positive and the trigger will pass if any such matching triggers are PASS or EXCEPTION[A criterion thatmatches no triggers at all is detected and causes a throw.] A single negative with an expectation of appropriate bit checking in the decision and the trigger will pass if any such matching triggers are FAIL or EXCEPTION A wildcarded negative criterion that matches more than one trigger in the trigger but the state exists so we define the behavior If all triggers are the negative crieriion will lead to accepting the event(this again matches the behavior of"!*"before the partial wildcard feature was incorporated).The per-event"cost"of each negative criterion with multiple relevant triggers is about the same as!*was in the past
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::accumulateEvent ( PileUpEventPrincipal const &  event,
edm::EventSetup const &  setup,
edm::StreamID const &  streamID 
)

Definition at line 509 of file MixingModule.cc.

References digiAccumulators_.

509  {
510  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
511  (*accItr)->accumulate(event, setup, streamID);
512  }
513  }
Accumulators digiAccumulators_
Definition: MixingModule.h:103
How EventSelector::AcceptEvent() decides whether to accept an event for output otherwise it is excluding the probing of A single or multiple positive and the trigger will pass if any such matching triggers are PASS or EXCEPTION[A criterion thatmatches no triggers at all is detected and causes a throw.] A single negative with an expectation of appropriate bit checking in the decision and the trigger will pass if any such matching triggers are FAIL or EXCEPTION A wildcarded negative criterion that matches more than one trigger in the trigger but the state exists so we define the behavior If all triggers are the negative crieriion will lead to accepting the event(this again matches the behavior of"!*"before the partial wildcard feature was incorporated).The per-event"cost"of each negative criterion with multiple relevant triggers is about the same as!*was in the past
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::addSignals ( const edm::Event e,
const edm::EventSetup es 
)
privatevirtual

Reimplemented from edm::BMixingModule.

Definition at line 286 of file MixingModule.cc.

References accumulateEvent(), edm::EventBase::id(), cuy::ii, LogDebug, and workers_.

286  {
287 
288  LogDebug("MixingModule")<<"===============> adding signals for "<<e.id();
289 
291  // fill in signal part of CrossingFrame
292  for (unsigned int ii=0;ii<workers_.size();++ii) {
293  workers_[ii]->addSignals(e);
294  }
295  }
#define LogDebug(id)
int ii
Definition: cuy.py:588
std::vector< MixingWorkerBase * > workers_
Definition: MixingModule.h:97
edm::EventID id() const
Definition: EventBase.h:56
void accumulateEvent(Event const &event, EventSetup const &setup)
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
virtual void edm::MixingModule::beginJob ( void  )
inlinevirtual

Reimplemented from edm::BMixingModule.

Definition at line 59 of file MixingModule.h.

59 {}
void MixingModule::beginLuminosityBlock ( edm::LuminosityBlock const &  lumi,
edm::EventSetup const &  setup 
)
overridevirtual

Reimplemented from edm::BMixingModule.

Definition at line 480 of file MixingModule.cc.

References edm::BMixingModule::beginLuminosityBlock(), and digiAccumulators_.

480  {
481  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
482  (*accItr)->beginLuminosityBlock(lumi, setup);
483  }
485  }
tuple lumi
Definition: fjr2json.py:35
Accumulators digiAccumulators_
Definition: MixingModule.h:103
virtual void beginLuminosityBlock(const edm::LuminosityBlock &l, const edm::EventSetup &setup) override
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::beginRun ( edm::Run const &  run,
edm::EventSetup const &  setup 
)
overridevirtual

Reimplemented from edm::BMixingModule.

Definition at line 466 of file MixingModule.cc.

References edm::BMixingModule::beginRun(), and digiAccumulators_.

466  {
467  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
468  (*accItr)->beginRun(run, setup);
469  }
471  }
virtual void beginRun(const edm::Run &r, const edm::EventSetup &setup) override
Accumulators digiAccumulators_
Definition: MixingModule.h:103
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::branchesActivate ( const std::string &  friendlyName,
const std::string &  subdet,
InputTag tag,
std::string &  label 
)
privatevirtual

Definition at line 231 of file MixingModule.cc.

References EgammaHLTValidationUtils::getProcessName(), edm::InputTag::instance(), edm::InputTag::label(), AlCaHLTBitMon_QueryRunRegistry::string, useCurrentProcessOnly_, and wantedBranches_.

Referenced by MixingModule().

231  {
232 
233  label=tag.label()+tag.instance();
234  wantedBranches_.push_back(friendlyName + '_' +
235  tag.label() + '_' +
236  tag.instance());
237 
238  //if useCurrentProcessOnly, we have to change the input tag
241  tag = InputTag(tag.label(),tag.instance(),processName);
242  }
243  }
std::string friendlyName(std::string const &iFullName)
std::vector< std::string > wantedBranches_
Definition: MixingModule.h:99
void MixingModule::checkSignal ( const edm::Event e)
privatevirtual

Reimplemented from edm::BMixingModule.

Definition at line 245 of file MixingModule.cc.

References adjusters_, adjustersObjects_, workers_, and workersObjects_.

245  {
246  if (adjusters_.empty()){
247  for (auto const& adjuster : adjustersObjects_) {
248  if (adjuster->checkSignal(e)){
249  adjusters_.push_back(adjuster);
250  }
251  }
252  }
253  if (workers_.empty()){
254  for (auto const& worker : workersObjects_) {
255  if (worker->checkSignal(e)){
256  workers_.push_back(worker);
257  }
258  }
259  }
260  }
std::vector< MixingWorkerBase * > workers_
Definition: MixingModule.h:97
std::vector< AdjusterBase * > adjusters_
Definition: MixingModule.h:95
std::vector< MixingWorkerBase * > workersObjects_
Definition: MixingModule.h:98
std::vector< AdjusterBase * > adjustersObjects_
Definition: MixingModule.h:96
void MixingModule::createDigiAccumulators ( const edm::ParameterSet mixingPSet,
edm::ConsumesCollector iC 
)
private

Definition at line 205 of file MixingModule.cc.

References digiAccumulators_, edm::DigiAccumulatorMixModFactory::get(), edm::ParameterSet::getParameterNames(), edm::ParameterSet::getParameterSet(), and edm::DigiAccumulatorMixModFactory::makeDigiAccumulator().

Referenced by MixingModule().

205  {
206  ParameterSet const& digiPSet = mixingPSet.getParameterSet("digitizers");
207  std::vector<std::string> digiNames = digiPSet.getParameterNames();
208  for(auto const& digiName : digiNames) {
209  ParameterSet const& pset = digiPSet.getParameterSet(digiName);
210  std::auto_ptr<DigiAccumulatorMixMod> accumulator = std::auto_ptr<DigiAccumulatorMixMod>(DigiAccumulatorMixModFactory::get()->makeDigiAccumulator(pset, *this, iC));
211  // Create appropriate DigiAccumulator
212  if(accumulator.get() != 0) {
213  digiAccumulators_.push_back(accumulator.release());
214  }
215  }
216  }
std::auto_ptr< DigiAccumulatorMixMod > makeDigiAccumulator(ParameterSet const &, one::EDProducerBase &, ConsumesCollector &) const
Accumulators digiAccumulators_
Definition: MixingModule.h:103
ParameterSet const & getParameterSet(std::string const &) const
static DigiAccumulatorMixModFactory const * get()
void MixingModule::createnewEDProduct ( )
privatevirtual

Reimplemented from edm::BMixingModule.

Definition at line 262 of file MixingModule.cc.

References cuy::ii, edm::BMixingModule::maxBunch_, edm::BMixingModule::maxNbSources_, edm::BMixingModule::minBunch_, playbackInfo_, and workers_.

262  {
263  //create playback info
265  //and CrossingFrames
266  for (unsigned int ii=0;ii<workers_.size();++ii){
267  workers_[ii]->createnewEDProduct();
268  }
269  }
int ii
Definition: cuy.py:588
std::vector< MixingWorkerBase * > workers_
Definition: MixingModule.h:97
static const unsigned int maxNbSources_
Definition: BMixingModule.h:89
CrossingFramePlaybackInfoExtended * playbackInfo_
Definition: MixingModule.h:93
void MixingModule::doPileUp ( edm::Event e,
const edm::EventSetup es 
)
overrideprivatevirtual

Reimplemented from edm::BMixingModule.

Definition at line 323 of file MixingModule.cc.

References digiAccumulators_, edm::hlt::Exception, edm::Event::getByLabel(), edm::EventBase::id(), cuy::ii, edm::BMixingModule::inputSources_, inputTagPlayback_, edm::BMixingModule::maxBunch_, edm::BMixingModule::maxNbSources_, edm::BMixingModule::minBunch_, edm::Event::moduleCallingContext(), pileAllWorkers(), edm::BMixingModule::playback_, playbackInfo_, edm::Event::put(), CrossingFramePlaybackInfoExtended::setStartEventId(), edm::source(), edm::Event::streamID(), edm::BMixingModule::TrueNumInteractions_, and workers_.

323  {
324  // Don't allocate because PileUp will do it for us.
325  std::vector<edm::EventID> recordEventID;
327  if (playback_) {
328  bool got = e.getByLabel(inputTagPlayback_, playbackInfo_H);
329  if (!got) {
330  throw cms::Exception("MixingProductNotFound") << " No "
331  "CrossingFramePlaybackInfoExtended on the input file, but playback "
332  "option set!!!!! Please change the input file if you really want "
333  "playback!!!!!!" << std::endl;
334  }
335  }
336 
337  // source[0] is "real" pileup. Check to see that this is what we are doing.
338 
339  std::vector<int> PileupList;
340  PileupList.clear();
341  TrueNumInteractions_.clear();
342 
343  boost::shared_ptr<PileUp> source0 = inputSources_[0];
344 
345  if((source0 && source0->doPileUp() ) && !playback_) {
346  // if((!inputSources_[0] || !inputSources_[0]->doPileUp()) && !playback_ )
347 
348  // Pre-calculate all pileup distributions before we go fishing for events
349 
350  source0->CalculatePileup(minBunch_, maxBunch_, PileupList, TrueNumInteractions_, e.streamID());
351 
352  }
353 
354  // for (int bunchIdx = minBunch_; bunchIdx <= maxBunch_; ++bunchIdx) {
355  // std::cout << " bunch ID, Pileup, True " << bunchIdx << " " << PileupList[bunchIdx-minBunch_] << " " << TrueNumInteractions_[bunchIdx-minBunch_] << std::endl;
356  //}
357 
358  int KeepTrackOfPileup = 0;
359 
360  for (int bunchIdx = minBunch_; bunchIdx <= maxBunch_; ++bunchIdx) {
361  for (size_t setBcrIdx=0; setBcrIdx<workers_.size(); ++setBcrIdx) {
362  workers_[setBcrIdx]->setBcrOffset();
363  }
364  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
365  (*accItr)->initializeBunchCrossing(e, setup, bunchIdx);
366  }
367 
368  for (size_t readSrcIdx=0; readSrcIdx<maxNbSources_; ++readSrcIdx) {
369  boost::shared_ptr<PileUp> source = inputSources_[readSrcIdx]; // this looks like we create
370  // new PileUp objects for each
371  // source for each event?
372  // Why?
373  for (size_t setSrcIdx=0; setSrcIdx<workers_.size(); ++setSrcIdx) {
374  workers_[setSrcIdx]->setSourceOffset(readSrcIdx);
375  }
376 
377  if (!source || !source->doPileUp()) continue;
378 
379  int NumPU_Events = 0;
380 
381  if(readSrcIdx ==0 && !playback_) {
382  NumPU_Events = PileupList[bunchIdx - minBunch_];
383  } else {
384  NumPU_Events = 1;
385  } // non-minbias pileup only gets one event for now. Fix later if desired.
386 
387  // int eventId = 0;
388  int vertexOffset = 0;
389 
390  ModuleCallingContext const* mcc = e.moduleCallingContext();
391  if (!playback_) {
392  inputSources_[readSrcIdx]->readPileUp(e.id(), recordEventID,
393  boost::bind(&MixingModule::pileAllWorkers, boost::ref(*this), _1, mcc, bunchIdx,
394  _2, vertexOffset, boost::ref(setup), boost::cref(e.streamID())), NumPU_Events, e.streamID()
395  );
396  playbackInfo_->setStartEventId(recordEventID, readSrcIdx, bunchIdx, KeepTrackOfPileup);
397  KeepTrackOfPileup+=NumPU_Events;
398  } else {
399  const std::vector<edm::EventID>& playEventID =
400  playbackInfo_H->getStartEventId(readSrcIdx, bunchIdx);
401  if(readSrcIdx == 0) {
402  PileupList.push_back(playEventID.size());
403  TrueNumInteractions_.push_back(playEventID.size());
404  }
405  inputSources_[readSrcIdx]->playPileUp(
406  playEventID,
407  boost::bind(&MixingModule::pileAllWorkers, boost::ref(*this), _1, mcc, bunchIdx,
408  _2, vertexOffset, boost::ref(setup), boost::cref(e.streamID()))
409  );
410  }
411  }
412  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
413  (*accItr)->finalizeBunchCrossing(e, setup, bunchIdx);
414  }
415  }
416 
417  // Keep track of pileup accounting...
418 
419  std::auto_ptr<PileupMixingContent> PileupMixing_;
420 
421  std::vector<int> numInteractionList;
422  std::vector<int> bunchCrossingList;
423  std::vector<float> TrueInteractionList;
424 
425  //Makin' a list: Basically, we don't care about the "other" sources at this point.
426  for (int bunchCrossing=minBunch_;bunchCrossing<=maxBunch_;++bunchCrossing) {
427  bunchCrossingList.push_back(bunchCrossing);
428  if(!inputSources_[0] || !inputSources_[0]->doPileUp()) {
429  numInteractionList.push_back(0);
430  TrueInteractionList.push_back(0);
431  }
432  else {
433  numInteractionList.push_back(PileupList[bunchCrossing-minBunch_]);
434  TrueInteractionList.push_back((TrueNumInteractions_)[bunchCrossing-minBunch_]);
435  }
436  }
437 
438  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
439  (*accItr)->StorePileupInformation( bunchCrossingList,
440  numInteractionList,
441  TrueInteractionList);
442  }
443 
444 
445  PileupMixing_ = std::auto_ptr<PileupMixingContent>(new PileupMixingContent(bunchCrossingList,
446  numInteractionList,
447  TrueInteractionList));
448 
449  e.put(PileupMixing_);
450 
451  // we have to do the ToF transformation for PSimHits once all pileup has been added
452  for (unsigned int ii=0;ii<workers_.size();++ii) {
453  workers_[ii]->setTof();
454  workers_[ii]->put(e);
455  }
456  }
static std::string const source("source")
std::vector< float > TrueNumInteractions_
Definition: BMixingModule.h:92
int ii
Definition: cuy.py:588
void setStartEventId(const std::vector< edm::EventID > &id, const unsigned int s, const int bcr, const int start)
ModuleCallingContext const * moduleCallingContext() const
Definition: Event.h:217
std::vector< MixingWorkerBase * > workers_
Definition: MixingModule.h:97
OrphanHandle< PROD > put(std::auto_ptr< PROD > product)
Put a new product.
Definition: Event.h:113
Accumulators digiAccumulators_
Definition: MixingModule.h:103
static const unsigned int maxNbSources_
Definition: BMixingModule.h:89
bool getByLabel(InputTag const &tag, Handle< PROD > &result) const
Definition: Event.h:402
InputTag inputTagPlayback_
Definition: MixingModule.h:90
std::vector< boost::shared_ptr< PileUp > > inputSources_
Definition: BMixingModule.h:97
edm::EventID id() const
Definition: EventBase.h:56
StreamID streamID() const
Definition: Event.h:72
CrossingFramePlaybackInfoExtended * playbackInfo_
Definition: MixingModule.h:93
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
virtual void doPileUp(edm::Event &e, const edm::EventSetup &es) override
void pileAllWorkers(EventPrincipal const &ep, ModuleCallingContext const *, int bcr, int id, int &offset, const edm::EventSetup &setup, edm::StreamID const &)
void MixingModule::endLuminosityBlock ( edm::LuminosityBlock const &  lumi,
edm::EventSetup const &  setup 
)
overridevirtual

Reimplemented from edm::BMixingModule.

Definition at line 487 of file MixingModule.cc.

References digiAccumulators_, and edm::BMixingModule::endLuminosityBlock().

487  {
488  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
489  (*accItr)->endLuminosityBlock(lumi, setup);
490  }
492  }
tuple lumi
Definition: fjr2json.py:35
Accumulators digiAccumulators_
Definition: MixingModule.h:103
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
virtual void endLuminosityBlock(const edm::LuminosityBlock &l, const edm::EventSetup &setup) override
void MixingModule::endRun ( edm::Run const &  run,
edm::EventSetup const &  setup 
)
overridevirtual

Reimplemented from edm::BMixingModule.

Definition at line 473 of file MixingModule.cc.

References digiAccumulators_, and edm::BMixingModule::endRun().

473  {
474  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
475  (*accItr)->endRun(run, setup);
476  }
478  }
virtual void endRun(const edm::Run &r, const edm::EventSetup &setup) override
Accumulators digiAccumulators_
Definition: MixingModule.h:103
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::finalizeEvent ( edm::Event event,
edm::EventSetup const &  setup 
)
virtual

Reimplemented from edm::BMixingModule.

Definition at line 516 of file MixingModule.cc.

References digiAccumulators_.

516  {
517  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
518  (*accItr)->finalizeEvent(event, setup);
519  }
520  }
Accumulators digiAccumulators_
Definition: MixingModule.h:103
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::initializeEvent ( edm::Event const &  event,
edm::EventSetup const &  setup 
)
virtual

Reimplemented from edm::BMixingModule.

Definition at line 495 of file MixingModule.cc.

References digiAccumulators_.

495  {
496  for(Accumulators::const_iterator accItr = digiAccumulators_.begin(), accEnd = digiAccumulators_.end(); accItr != accEnd; ++accItr) {
497  (*accItr)->initializeEvent(event, setup);
498  }
499  }
Accumulators digiAccumulators_
Definition: MixingModule.h:103
How EventSelector::AcceptEvent() decides whether to accept an event for output otherwise it is excluding the probing of A single or multiple positive and the trigger will pass if any such matching triggers are PASS or EXCEPTION[A criterion thatmatches no triggers at all is detected and causes a throw.] A single negative with an expectation of appropriate bit checking in the decision and the trigger will pass if any such matching triggers are FAIL or EXCEPTION A wildcarded negative criterion that matches more than one trigger in the trigger but the state exists so we define the behavior If all triggers are the negative crieriion will lead to accepting the event(this again matches the behavior of"!*"before the partial wildcard feature was incorporated).The per-event"cost"of each negative criterion with multiple relevant triggers is about the same as!*was in the past
void setup(std::vector< TH2F > &depth, std::string name, std::string units="")
void MixingModule::pileAllWorkers ( EventPrincipal const &  ep,
ModuleCallingContext const *  mcc,
int  bcr,
int  id,
int &  offset,
const edm::EventSetup setup,
edm::StreamID const &  streamID 
)
private

Definition at line 297 of file MixingModule.cc.

References accumulateEvent(), adjusters_, edm::BMixingModule::bunchSpace_, edm::EventPrincipal::id(), LogDebug, edm::one::EDProducerBase::moduleDescription(), and workers_.

Referenced by doPileUp().

302  {
303 
304  InternalContext internalContext(eventPrincipal.id(), mcc);
305  ParentContext parentContext(&internalContext);
306  ModuleCallingContext moduleCallingContext(&moduleDescription());
307  ModuleContextSentry moduleContextSentry(&moduleCallingContext, parentContext);
308 
309  for (auto const& adjuster : adjusters_) {
310  adjuster->doOffset(bunchSpace_, bunchCrossing, eventPrincipal, &moduleCallingContext, eventId, vertexOffset);
311  }
312  PileUpEventPrincipal pep(eventPrincipal, &moduleCallingContext, bunchCrossing);
313  accumulateEvent(pep, setup, streamID);
314 
315  for (auto const& worker : workers_) {
316  LogDebug("MixingModule") <<" merging Event: id " << eventPrincipal.id();
317  // std::cout <<"PILEALLWORKERS merging Event: id " << eventPrincipal.id() << std::endl;
318 
319  worker->addPileups(eventPrincipal, &moduleCallingContext, eventId);
320  }
321  }
#define LogDebug(id)
ModuleDescription const & moduleDescription() const
std::vector< MixingWorkerBase * > workers_
Definition: MixingModule.h:97
std::vector< AdjusterBase * > adjusters_
Definition: MixingModule.h:95
void accumulateEvent(Event const &event, EventSetup const &setup)
void MixingModule::put ( edm::Event e,
const edm::EventSetup es 
)
privatevirtual

Reimplemented from edm::BMixingModule.

Definition at line 458 of file MixingModule.cc.

References playbackInfo_, and edm::Event::put().

458  {
459 
460  if (playbackInfo_) {
461  std::auto_ptr<CrossingFramePlaybackInfoExtended> pOut(playbackInfo_);
462  e.put(pOut);
463  }
464  }
OrphanHandle< PROD > put(std::auto_ptr< PROD > product)
Put a new product.
Definition: Event.h:113
CrossingFramePlaybackInfoExtended * playbackInfo_
Definition: MixingModule.h:93
void MixingModule::reload ( const edm::EventSetup setup)
virtual

Reimplemented from edm::BMixingModule.

Definition at line 218 of file MixingModule.cc.

References edm::BMixingModule::bunchSpace_, HDQMDatabaseProducer::config, edm::EventSetup::get(), cuy::ii, edm::BMixingModule::maxBunch_, edm::BMixingModule::minBunch_, and workersObjects_.

218  {
219  //change the basic parameters.
221  setup.get<MixingRcd>().get(config);
222  minBunch_=config->minBunch();
223  maxBunch_=config->maxBunch();
224  bunchSpace_=config->bunchSpace();
225  //propagate to change the workers
226  for (unsigned int ii=0;ii<workersObjects_.size();++ii){
227  workersObjects_[ii]->reload(setup);
228  }
229  }
int ii
Definition: cuy.py:588
std::vector< MixingWorkerBase * > workersObjects_
Definition: MixingModule.h:98
const T & get() const
Definition: EventSetup.h:55

Member Data Documentation

std::vector<AdjusterBase *> edm::MixingModule::adjusters_
private

Definition at line 95 of file MixingModule.h.

Referenced by checkSignal(), and pileAllWorkers().

std::vector<AdjusterBase *> edm::MixingModule::adjustersObjects_
private

Definition at line 96 of file MixingModule.h.

Referenced by checkSignal(), MixingModule(), and ~MixingModule().

Accumulators edm::MixingModule::digiAccumulators_
private
InputTag edm::MixingModule::inputTagPlayback_
private

Definition at line 90 of file MixingModule.h.

Referenced by doPileUp(), and MixingModule().

bool edm::MixingModule::mixProdStep1_
private

Definition at line 92 of file MixingModule.h.

Referenced by MixingModule().

bool edm::MixingModule::mixProdStep2_
private

Definition at line 91 of file MixingModule.h.

Referenced by MixingModule().

CrossingFramePlaybackInfoExtended* edm::MixingModule::playbackInfo_
private

Definition at line 93 of file MixingModule.h.

Referenced by createnewEDProduct(), doPileUp(), and put().

bool edm::MixingModule::useCurrentProcessOnly_
private

Definition at line 100 of file MixingModule.h.

Referenced by branchesActivate(), and MixingModule().

std::vector<std::string> edm::MixingModule::wantedBranches_
private

Definition at line 99 of file MixingModule.h.

Referenced by branchesActivate(), and MixingModule().

std::vector<MixingWorkerBase *> edm::MixingModule::workers_
private

Definition at line 97 of file MixingModule.h.

Referenced by addSignals(), checkSignal(), createnewEDProduct(), doPileUp(), and pileAllWorkers().

std::vector<MixingWorkerBase *> edm::MixingModule::workersObjects_
private

Definition at line 98 of file MixingModule.h.

Referenced by checkSignal(), MixingModule(), reload(), and ~MixingModule().