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L1TMuonProducer Class Reference

#include <L1Trigger/L1TMuon/src/L1TMuonProducer.cc>

Inheritance diagram for L1TMuonProducer:
edm::stream::EDProducer<> edm::stream::EDProducerBase edm::ProducerBase edm::EDConsumerBase edm::ProductRegistryHelper

Public Member Functions

 L1TMuonProducer (const edm::ParameterSet &)
 
 ~L1TMuonProducer () override
 
- Public Member Functions inherited from edm::stream::EDProducer<>
 EDProducer ()=default
 
- Public Member Functions inherited from edm::stream::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)
 
virtual ~ProducerBase () noexcept(false)
 
- 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
 
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::vector< ModuleDescription const * > &modules, 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 updateLookup (BranchType iBranchType, ProductResolverIndexHelper const &, bool iPrefetchMayGet)
 
virtual ~EDConsumerBase () noexcept(false)
 

Static Public Member Functions

static void fillDescriptions (edm::ConfigurationDescriptions &descriptions)
 
- Static Public Member Functions inherited from edm::stream::EDProducerBase
static const std::string & baseType ()
 
static void fillDescriptions (ConfigurationDescriptions &descriptions)
 
static void prevalidate (ConfigurationDescriptions &descriptions)
 

Private Member Functions

void addMuonsToCollections (MicroGMTConfiguration::InterMuonList &coll, MicroGMTConfiguration::InterMuonList &interout, std::unique_ptr< MuonBxCollection > &out, int bx) const
 
void beginLuminosityBlock (edm::LuminosityBlock const &, edm::EventSetup const &) override
 
void beginRun (edm::Run const &, edm::EventSetup const &) override
 
void calculateRank (MicroGMTConfiguration::InterMuonList &muons) const
 
void convertMuons (edm::Handle< MicroGMTConfiguration::InputCollection > const &in, MicroGMTConfiguration::InterMuonList &out, GMTInternalWedges &wedges, int bx) const
 
void endLuminosityBlock (edm::LuminosityBlock const &, edm::EventSetup const &) override
 
void endRun (edm::Run const &, edm::EventSetup const &) override
 
void produce (edm::Event &, const edm::EventSetup &) override
 
void sortMuons (MicroGMTConfiguration::InterMuonList &, unsigned) const
 
void splitAndConvertMuons (edm::Handle< MicroGMTConfiguration::InputCollection > const &in, MicroGMTConfiguration::InterMuonList &out_pos, MicroGMTConfiguration::InterMuonList &out_neg, GMTInternalWedges &wedges_pos, GMTInternalWedges &wedges_neg, int bx) const
 

Static Private Member Functions

static bool compareMuons (const std::shared_ptr< MicroGMTConfiguration::InterMuon > &mu1, const std::shared_ptr< MicroGMTConfiguration::InterMuon > &mu2)
 

Private Attributes

bool m_autoBxRange
 
edm::InputTag m_barrelTfInputTag
 
edm::EDGetTokenT< MicroGMTConfiguration::InputCollectionm_barrelTfInputToken
 
std::bitset< 12 > m_bmtfInputsToDisable
 
int m_bxMax
 
int m_bxMin
 
std::bitset< 28 > m_caloInputsToDisable
 
edm::EDGetTokenT< MicroGMTConfiguration::CaloInputCollectionm_caloTowerInputToken
 
MicroGMTCancelOutUnit m_cancelOutUnit
 
std::ofstream m_debugOut
 
std::bitset< 12 > m_emtfInputsToDisable
 
edm::InputTag m_endcapTfInputTag
 
edm::EDGetTokenT< MicroGMTConfiguration::InputCollectionm_endcapTfInputToken
 
std::bitset< 72 > m_inputsToDisable
 
MicroGMTIsolationUnit m_isolationUnit
 
std::bitset< 12 > m_maskedBmtfInputs
 
std::bitset< 28 > m_maskedCaloInputs
 
std::bitset< 12 > m_maskedEmtfInputs
 
std::bitset< 72 > m_maskedInputs
 
std::bitset< 12 > m_maskedOmtfInputs
 
std::bitset< 12 > m_omtfInputsToDisable
 
edm::InputTag m_overlapTfInputTag
 
edm::EDGetTokenT< MicroGMTConfiguration::InputCollectionm_overlapTfInputToken
 
std::shared_ptr< MicroGMTRankPtQualLUTm_rankPtQualityLUT
 
edm::InputTag m_trigTowerTag
 
std::unique_ptr< L1TMuonGlobalParamsHelpermicroGMTParamsHelper
 

Additional Inherited Members

- Public Types inherited from edm::stream::EDProducer<>
typedef CacheContexts< T... > CacheTypes
 
typedef CacheTypes::GlobalCache GlobalCache
 
typedef AbilityChecker< T... > HasAbility
 
typedef CacheTypes::LuminosityBlockCache LuminosityBlockCache
 
typedef LuminosityBlockContextT< LuminosityBlockCache, RunCache, GlobalCacheLuminosityBlockContext
 
typedef CacheTypes::LuminosityBlockSummaryCache LuminosityBlockSummaryCache
 
typedef CacheTypes::RunCache RunCache
 
typedef RunContextT< RunCache, GlobalCacheRunContext
 
typedef CacheTypes::RunSummaryCache RunSummaryCache
 
- Public Types inherited from edm::stream::EDProducerBase
typedef EDProducerAdaptorBase 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
 
- 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)
 

Detailed Description

Description: Takes txt-file input and produces barrel- / overlap- / forward TF muons

Implementation: [Notes on implementation]

Definition at line 59 of file L1TMuonProducer.cc.

Constructor & Destructor Documentation

L1TMuonProducer::L1TMuonProducer ( const edm::ParameterSet iConfig)
explicit

Definition at line 141 of file L1TMuonProducer.cc.

References edm::ParameterSet::getParameter(), m_autoBxRange, m_barrelTfInputTag, m_barrelTfInputToken, m_bxMax, m_bxMin, m_caloTowerInputToken, m_endcapTfInputTag, m_endcapTfInputToken, m_overlapTfInputTag, m_overlapTfInputToken, and m_trigTowerTag.

141  : m_debugOut("test/debug/iso_debug.dat")
142 {
143  // edm::InputTag barrelTfInputTag = iConfig.getParameter<edm::InputTag>("barrelTFInput");
144  // edm::InputTag overlapTfInputTag = iConfig.getParameter<edm::InputTag>("overlapTFInput");
145  // edm::InputTag forwardTfInputTag = iConfig.getParameter<edm::InputTag>("forwardTFInput");
146 
147  m_barrelTfInputTag = iConfig.getParameter<edm::InputTag>("barrelTFInput");
148  m_overlapTfInputTag = iConfig.getParameter<edm::InputTag>("overlapTFInput");
149  m_endcapTfInputTag = iConfig.getParameter<edm::InputTag>("forwardTFInput");
150  m_trigTowerTag = iConfig.getParameter<edm::InputTag>("triggerTowerInput");
151 
152  m_autoBxRange = iConfig.getParameter<bool>("autoBxRange");
153  m_bxMin = iConfig.getParameter<int>("bxMin");
154  m_bxMax = iConfig.getParameter<int>("bxMax");
155 
156  m_barrelTfInputToken = consumes<MicroGMTConfiguration::InputCollection>(m_barrelTfInputTag);
157  m_overlapTfInputToken = consumes<MicroGMTConfiguration::InputCollection>(m_overlapTfInputTag);
158  m_endcapTfInputToken = consumes<MicroGMTConfiguration::InputCollection>(m_endcapTfInputTag);
159  m_caloTowerInputToken = consumes<MicroGMTConfiguration::CaloInputCollection>(m_trigTowerTag);
160 
161  //register your products
162  produces<MuonBxCollection>();
163  produces<MuonBxCollection>("imdMuonsBMTF");
164  produces<MuonBxCollection>("imdMuonsEMTFPos");
165  produces<MuonBxCollection>("imdMuonsEMTFNeg");
166  produces<MuonBxCollection>("imdMuonsOMTFPos");
167  produces<MuonBxCollection>("imdMuonsOMTFNeg");
168 }
T getParameter(std::string const &) const
std::ofstream m_debugOut
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_endcapTfInputToken
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_overlapTfInputToken
edm::EDGetTokenT< MicroGMTConfiguration::CaloInputCollection > m_caloTowerInputToken
edm::InputTag m_overlapTfInputTag
edm::InputTag m_barrelTfInputTag
edm::InputTag m_endcapTfInputTag
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_barrelTfInputToken
edm::InputTag m_trigTowerTag
L1TMuonProducer::~L1TMuonProducer ( )
override

Definition at line 170 of file L1TMuonProducer.cc.

References m_debugOut.

171 {
172  m_debugOut.close();
173 }
std::ofstream m_debugOut

Member Function Documentation

void L1TMuonProducer::addMuonsToCollections ( MicroGMTConfiguration::InterMuonList coll,
MicroGMTConfiguration::InterMuonList interout,
std::unique_ptr< MuonBxCollection > &  out,
int  bx 
) const
private

Definition at line 409 of file L1TMuonProducer.cc.

References RPCpg::mu.

Referenced by produce().

412 {
413  for (auto& mu : coll) {
414  interout.push_back(mu);
415  math::PtEtaPhiMLorentzVector vec{(mu->hwPt()-1)*0.5, mu->hwEta()*0.010875, mu->hwGlobalPhi()*0.010908, 0.0};
416  int outMuQual = MicroGMTConfiguration::setOutputMuonQuality(mu->hwQual(), mu->trackFinderType(), mu->hwHF());
417  // set tfMuonIndex and iso to 0 like in the FW
418  Muon outMu{vec, mu->hwPt(), mu->hwEta(), mu->hwGlobalPhi(), outMuQual, mu->hwSign(), mu->hwSignValid(), 0, 0, 0, true, 0, mu->hwDPhi(), mu->hwDEta(), mu->hwRank()};
419  if (mu->hwSignValid()) {
420  outMu.setCharge(1 - 2 * mu->hwSign());
421  } else {
422  outMu.setCharge(0);
423  }
424 
425  out->push_back(bx, outMu);
426  }
427 }
PtEtaPhiMLorentzVectorD PtEtaPhiMLorentzVector
Lorentz vector with cartesian internal representation.
Definition: LorentzVector.h:25
Definition: Muon.py:1
const int mu
Definition: Constants.h:22
JetCorrectorParametersCollection coll
Definition: classes.h:10
void L1TMuonProducer::beginLuminosityBlock ( edm::LuminosityBlock const &  ,
edm::EventSetup const &   
)
overrideprivatevirtual

Reimplemented from edm::stream::EDProducerBase.

Definition at line 544 of file L1TMuonProducer.cc.

545 {
546 }
void L1TMuonProducer::beginRun ( edm::Run const &  run,
edm::EventSetup const &  iSetup 
)
overrideprivatevirtual

Reimplemented from edm::stream::EDProducerBase.

Definition at line 504 of file L1TMuonProducer.cc.

References cast_to_L1TMuonGlobalParams(), cast_to_L1TMuonGlobalParams_PUBLIC(), l1t::MicroGMTRankPtQualLUTFactory::create(), edm::EventSetup::get(), edm::eventsetup::EventSetupRecord::get(), l1t::MicroGMTIsolationUnit::initialise(), l1t::MicroGMTCancelOutUnit::initialise(), m_bmtfInputsToDisable, m_caloInputsToDisable, m_cancelOutUnit, m_emtfInputsToDisable, m_inputsToDisable, m_isolationUnit, m_maskedBmtfInputs, m_maskedCaloInputs, m_maskedEmtfInputs, m_maskedInputs, m_maskedOmtfInputs, m_omtfInputsToDisable, m_rankPtQualityLUT, microGMTParamsHelper, and edm::ESHandle< T >::product().

505 {
506  const L1TMuonGlobalParamsRcd& microGMTParamsRcd = iSetup.get<L1TMuonGlobalParamsRcd>();
507  edm::ESHandle<L1TMuonGlobalParams> microGMTParamsHandle;
508  microGMTParamsRcd.get(microGMTParamsHandle);
509 
510  std::unique_ptr<L1TMuonGlobalParams_PUBLIC> microGMTParams( new L1TMuonGlobalParams_PUBLIC( cast_to_L1TMuonGlobalParams_PUBLIC(*microGMTParamsHandle.product()) ) );
511  if( microGMTParams->pnodes_.empty() ){
512  edm::ESHandle<L1TMuonGlobalParams> o2oProtoHandle;
513  iSetup.get<L1TMuonGlobalParamsO2ORcd>().get(o2oProtoHandle);
514  microGMTParamsHelper = std::unique_ptr<L1TMuonGlobalParamsHelper>(new L1TMuonGlobalParamsHelper(*o2oProtoHandle.product()));
515  } else
517 
518  //microGMTParamsHelper->print(std::cout);
519  m_inputsToDisable = microGMTParamsHelper->inputsToDisable();
520  edm::LogVerbatim("L1TMuonProducer") << "uGMT inputsToDisable: " << m_inputsToDisable << "\n EMTF-|OMTF-| BMTF |OMTF+|EMTF+| CALO | res 0";
521  m_caloInputsToDisable = microGMTParamsHelper->caloInputsToDisable();
522  m_bmtfInputsToDisable = microGMTParamsHelper->bmtfInputsToDisable();
523  m_omtfInputsToDisable = microGMTParamsHelper->omtfInputsToDisable();
524  m_emtfInputsToDisable = microGMTParamsHelper->emtfInputsToDisable();
525  m_maskedInputs = microGMTParamsHelper->maskedInputs();
526  edm::LogVerbatim("L1TMuonProducer") << "uGMT maskedInputs: " << m_maskedInputs << "\n EMTF-|OMTF-| BMTF |OMTF+|EMTF+| CALO | res 0";
527  m_maskedCaloInputs = microGMTParamsHelper->maskedCaloInputs();
528  m_maskedBmtfInputs = microGMTParamsHelper->maskedBmtfInputs();
529  m_maskedOmtfInputs = microGMTParamsHelper->maskedOmtfInputs();
530  m_maskedEmtfInputs = microGMTParamsHelper->maskedEmtfInputs();
534 }
const L1TMuonGlobalParams & cast_to_L1TMuonGlobalParams(const L1TMuonGlobalParams_PUBLIC &x)
void initialise(L1TMuonGlobalParamsHelper *)
Initialisation from ES record.
std::unique_ptr< L1TMuonGlobalParamsHelper > microGMTParamsHelper
std::bitset< 12 > m_bmtfInputsToDisable
MicroGMTIsolationUnit m_isolationUnit
std::shared_ptr< MicroGMTRankPtQualLUT > m_rankPtQualityLUT
static ReturnType create(const std::string &filename, const int fwVersion, const unsigned ptFactor, const unsigned qualFactor)
std::bitset< 12 > m_emtfInputsToDisable
void get(HolderT &iHolder) const
std::bitset< 12 > m_maskedBmtfInputs
std::bitset< 12 > m_maskedEmtfInputs
const L1TMuonGlobalParams_PUBLIC & cast_to_L1TMuonGlobalParams_PUBLIC(const L1TMuonGlobalParams &x)
std::bitset< 72 > m_maskedInputs
std::bitset< 12 > m_maskedOmtfInputs
std::bitset< 72 > m_inputsToDisable
std::bitset< 28 > m_caloInputsToDisable
std::bitset< 12 > m_omtfInputsToDisable
MicroGMTCancelOutUnit m_cancelOutUnit
void initialise(L1TMuonGlobalParamsHelper *)
Initialisation from ES record.
T const * product() const
Definition: ESHandle.h:86
std::bitset< 28 > m_maskedCaloInputs
void L1TMuonProducer::calculateRank ( MicroGMTConfiguration::InterMuonList muons) const
private

Definition at line 399 of file L1TMuonProducer.cc.

References m_rankPtQualityLUT.

Referenced by produce().

400 {
401  for (auto& mu1 : muons) {
402  int rank = m_rankPtQualityLUT->lookup(mu1->hwPt(), mu1->hwQual());
403  mu1->setHwRank(rank);
404  }
405 }
std::shared_ptr< MicroGMTRankPtQualLUT > m_rankPtQualityLUT
bool L1TMuonProducer::compareMuons ( const std::shared_ptr< MicroGMTConfiguration::InterMuon > &  mu1,
const std::shared_ptr< MicroGMTConfiguration::InterMuon > &  mu2 
)
staticprivate

Definition at line 353 of file L1TMuonProducer.cc.

Referenced by sortMuons().

354  {
355  return (mu1->hwWins() >= mu2->hwWins());
356 }
void L1TMuonProducer::convertMuons ( edm::Handle< MicroGMTConfiguration::InputCollection > const &  in,
MicroGMTConfiguration::InterMuonList out,
GMTInternalWedges wedges,
int  bx 
) const
private

Definition at line 472 of file L1TMuonProducer.cc.

References BXVector< T >::at(), BXVector< T >::getLastBX(), l1t::RegionalMuonCand::hwPhi(), mps_fire::i, l1t::RegionalMuonCand::link(), m_inputsToDisable, m_maskedInputs, l1t::RegionalMuonCand::processor(), BXVector< T >::size(), findQualityFiles::size, and l1t::RegionalMuonCand::trackFinderType().

Referenced by produce().

475 {
476  // initialize the wedge collection:
477  for (int i = 0; i < 12; ++i) {
478  wedges[i] = std::vector<std::shared_ptr<GMTInternalMuon>>();
479  wedges[i].reserve(3);
480  }
481  if (bx < in->getFirstBX() || bx > in->getLastBX()) return;
482  int muIdx = 0;
483  int currentLink = 0;
484  for (size_t i = 0; i < in->size(bx); ++i, ++muIdx) {
485  int link = in->at(bx, i).link();
486  if (m_inputsToDisable.test(link) || m_maskedInputs.test(link)) continue; // only process if input link is enabled and not masked
487  if (currentLink != link) {
488  muIdx = 0;
489  currentLink = link;
490  }
491  int gPhi = MicroGMTConfiguration::calcGlobalPhi(in->at(bx, i).hwPhi(), in->at(bx, i).trackFinderType(), in->at(bx, i).processor());
492  int tfMuonIdx = 3 * (currentLink - 36) + muIdx;
493  std::shared_ptr<GMTInternalMuon> outMu = std::make_shared<GMTInternalMuon>(in->at(bx, i), gPhi, tfMuonIdx);
494  out.emplace_back(outMu);
495  wedges[in->at(bx, i).processor()].push_back(outMu);
496  }
497  for (int i = 0; i < 12; ++i) {
498  if(wedges[i].size() > 3) edm::LogWarning("Input Mismatch") << " too many inputs per processor for barrel. Wedge " << i << ": Size " << wedges[i].size() << std::endl;
499  }
500 }
size
Write out results.
unsigned size(int bx) const
const int hwPhi() const
Get compressed local phi (returned int * 2*pi/576 = local phi in rad)
const int link() const
Get link on which the MicroGMT receives the candidate.
const tftype trackFinderType() const
Get track-finder which found the muon (bmtf, emtf_pos/emtf_neg or omtf_pos/omtf_neg) ...
const int processor() const
Get processor ID on which the candidate was found (0..5 for OMTF/EMTF; 0..11 for BMTF) ...
int getLastBX() const
std::bitset< 72 > m_maskedInputs
std::bitset< 72 > m_inputsToDisable
const T & at(int bx, unsigned i) const
void L1TMuonProducer::endLuminosityBlock ( edm::LuminosityBlock const &  ,
edm::EventSetup const &   
)
overrideprivatevirtual

Reimplemented from edm::stream::EDProducerBase.

Definition at line 550 of file L1TMuonProducer.cc.

551 {
552 }
void L1TMuonProducer::endRun ( edm::Run const &  ,
edm::EventSetup const &   
)
overrideprivatevirtual

Reimplemented from edm::stream::EDProducerBase.

Definition at line 538 of file L1TMuonProducer.cc.

539 {
540 }
void L1TMuonProducer::fillDescriptions ( edm::ConfigurationDescriptions descriptions)
static

Definition at line 556 of file L1TMuonProducer.cc.

References edm::ConfigurationDescriptions::addDefault(), DEFINE_FWK_MODULE, and edm::ParameterSetDescription::setUnknown().

556  {
557  //The following says we do not know what parameters are allowed so do no validation
558  // Please change this to state exactly what you do use, even if it is no parameters
560  desc.setUnknown();
561  descriptions.addDefault(desc);
562 }
void addDefault(ParameterSetDescription const &psetDescription)
void L1TMuonProducer::produce ( edm::Event iEvent,
const edm::EventSetup iSetup 
)
overrideprivate

Definition at line 184 of file L1TMuonProducer.cc.

References addMuonsToCollections(), l1t::bmtf, calculateRank(), convertMuons(), l1t::coordinate, l1t::emtf_neg, l1t::emtf_pos, l1t::MicroGMTIsolationUnit::extrapolateMuons(), edm::Event::getByToken(), BXVector< T >::getFirstBX(), BXVector< T >::getLastBX(), l1t::MicroGMTIsolationUnit::isolatePreSummed(), m_autoBxRange, m_barrelTfInputToken, m_bmtfInputsToDisable, m_bxMax, m_bxMin, m_caloInputsToDisable, m_caloTowerInputToken, m_cancelOutUnit, m_debugOut, m_emtfInputsToDisable, m_endcapTfInputToken, m_isolationUnit, m_maskedBmtfInputs, m_maskedCaloInputs, m_maskedEmtfInputs, m_maskedOmtfInputs, m_omtfInputsToDisable, m_overlapTfInputToken, SiStripPI::max, min(), eostools::move(), RPCpg::mu, l1t::omtf_neg, l1t::omtf_pos, edm::Event::put(), l1t::MicroGMTCancelOutUnit::setCancelOutBits(), l1t::MicroGMTCancelOutUnit::setCancelOutBitsOverlapBarrel(), l1t::MicroGMTCancelOutUnit::setCancelOutBitsOverlapEndcap(), l1t::MicroGMTIsolationUnit::setTowerSums(), sortMuons(), splitAndConvertMuons(), and l1t::tracks.

185 {
186  using namespace edm;
187  std::unique_ptr<MuonBxCollection> outMuons (new MuonBxCollection());
188  std::unique_ptr<MuonBxCollection> imdMuonsBMTF (new MuonBxCollection());
189  std::unique_ptr<MuonBxCollection> imdMuonsEMTFPos (new MuonBxCollection());
190  std::unique_ptr<MuonBxCollection> imdMuonsEMTFNeg (new MuonBxCollection());
191  std::unique_ptr<MuonBxCollection> imdMuonsOMTFPos (new MuonBxCollection());
192  std::unique_ptr<MuonBxCollection> imdMuonsOMTFNeg (new MuonBxCollection());
193 
194 
199 
200  iEvent.getByToken(m_barrelTfInputToken, bmtfMuons);
201  iEvent.getByToken(m_endcapTfInputToken, emtfMuons);
202  iEvent.getByToken(m_overlapTfInputToken, omtfMuons);
203  iEvent.getByToken(m_caloTowerInputToken, trigTowers);
204 
205  // find out the BX range from the inputs
206  // the smallest BX window defines the output BX window
207  if (m_autoBxRange) {
208  int bxMin = -1000;
209  int bxMax = 1000;
210  if (!(m_caloInputsToDisable.all() || m_maskedCaloInputs.all())) {
211  bxMin = std::max(bxMin, trigTowers->getFirstBX());
212  bxMax = std::min(bxMax, trigTowers->getLastBX());
213  }
214  if (!(m_bmtfInputsToDisable.all() || m_maskedBmtfInputs.all())) {
215  bxMin = std::max(bxMin, bmtfMuons->getFirstBX());
216  bxMax = std::min(bxMax, bmtfMuons->getLastBX());
217  }
218  if (!(m_omtfInputsToDisable.all() || m_maskedOmtfInputs.all())) {
219  bxMin = std::max(bxMin, omtfMuons->getFirstBX());
220  bxMax = std::min(bxMax, omtfMuons->getLastBX());
221  }
222  if (!(m_emtfInputsToDisable.all() || m_maskedEmtfInputs.all())) {
223  bxMin = std::max(bxMin, emtfMuons->getFirstBX());
224  bxMax = std::min(bxMax, emtfMuons->getLastBX());
225  }
226  if (bxMin > 0) {
227  bxMin = 0;
228  }
229  if (bxMax < 0){
230  bxMax = 0;
231  }
232  if (bxMin > -1000) {
233  m_bxMin = bxMin;
234  } else {
235  m_bxMin = 0;
236  }
237  if (bxMax < 1000) {
238  m_bxMax = bxMax;
239  } else {
240  m_bxMax = 0;
241  }
242  }
243 
244  // set BX range for outputs
245  outMuons->setBXRange(m_bxMin, m_bxMax);
246  imdMuonsBMTF->setBXRange(m_bxMin, m_bxMax);
247  imdMuonsEMTFPos->setBXRange(m_bxMin, m_bxMax);
248  imdMuonsEMTFNeg->setBXRange(m_bxMin, m_bxMax);
249  imdMuonsOMTFPos->setBXRange(m_bxMin, m_bxMax);
250  imdMuonsOMTFNeg->setBXRange(m_bxMin, m_bxMax);
251 
252  for (int bx = m_bxMin; bx <= m_bxMax; ++bx) {
253  m_isolationUnit.setTowerSums(*trigTowers, bx);
254  MicroGMTConfiguration::InterMuonList internMuonsBmtf;
255  MicroGMTConfiguration::InterMuonList internMuonsEmtfPos;
256  MicroGMTConfiguration::InterMuonList internMuonsEmtfNeg;
257  MicroGMTConfiguration::InterMuonList internMuonsOmtfPos;
258  MicroGMTConfiguration::InterMuonList internMuonsOmtfNeg;
259 
260  // These wedges contain shared pointers to the ones in the InterMuonList
261  GMTInternalWedges omtfNegWedges;
262  GMTInternalWedges bmtfWedges;
263  GMTInternalWedges emtfPosWedges;
264  GMTInternalWedges emtfNegWedges;
265  GMTInternalWedges omtfPosWedges;
266 
267  // this converts the InputMuon type to the InternalMuon type and splits them into
268  // positive / negative eta collections necessary as LUTs may differ for pos / neg.
269  convertMuons(bmtfMuons, internMuonsBmtf, bmtfWedges, bx);
270  splitAndConvertMuons(emtfMuons, internMuonsEmtfPos, internMuonsEmtfNeg, emtfPosWedges, emtfNegWedges, bx);
271  splitAndConvertMuons(omtfMuons, internMuonsOmtfPos, internMuonsOmtfNeg, omtfPosWedges, omtfNegWedges, bx);
272 
273  // cancel out within the track finders:
277  // cancel-out for endcap will be done in the sorter
280 
281  // cancel out between track finder acceptance overlaps:
286 
287  m_isolationUnit.extrapolateMuons(internMuonsBmtf);
288  m_isolationUnit.extrapolateMuons(internMuonsEmtfNeg);
289  m_isolationUnit.extrapolateMuons(internMuonsEmtfPos);
290  m_isolationUnit.extrapolateMuons(internMuonsOmtfNeg);
291  m_isolationUnit.extrapolateMuons(internMuonsOmtfPos);
292 
293  // the rank calculated here is used in the sort below
294  calculateRank(internMuonsBmtf);
295  calculateRank(internMuonsEmtfNeg);
296  calculateRank(internMuonsEmtfPos);
297  calculateRank(internMuonsOmtfNeg);
298  calculateRank(internMuonsOmtfPos);
299 
300  // The sort function both sorts and removes all but best "nSurvivors"
301  sortMuons(internMuonsBmtf, 8);
302  sortMuons(internMuonsOmtfPos, 4);
303  sortMuons(internMuonsOmtfNeg, 4);
304  sortMuons(internMuonsEmtfPos, 4);
305  sortMuons(internMuonsEmtfNeg, 4);
306 
307  // This combines the 5 streams into one InternalMuon collection for
308  // the final global sort.
310  addMuonsToCollections(internMuonsEmtfPos, internalMuons, imdMuonsEMTFPos, bx);
311  addMuonsToCollections(internMuonsOmtfPos, internalMuons, imdMuonsOMTFPos, bx);
312  addMuonsToCollections(internMuonsBmtf, internalMuons, imdMuonsBMTF, bx);
313  addMuonsToCollections(internMuonsOmtfNeg, internalMuons, imdMuonsOMTFNeg, bx);
314  addMuonsToCollections(internMuonsEmtfNeg, internalMuons, imdMuonsEMTFNeg, bx);
315 
316  // sort internal muons and delete all but best 8
317  sortMuons(internalMuons, 8);
318 
319  m_isolationUnit.isolatePreSummed(internalMuons);
320  // copy muons to output collection...
321  for (const auto& mu : internalMuons) {
322  if (mu->hwPt() > 0) {
323  math::PtEtaPhiMLorentzVector vec{(mu->hwPt()-1)*0.5, mu->hwEta()*0.010875, mu->hwGlobalPhi()*0.010908, 0.0};
324  int iso = mu->hwAbsIso() + (mu->hwRelIso() << 1);
325  int outMuQual = MicroGMTConfiguration::setOutputMuonQuality(mu->hwQual(), mu->trackFinderType(), mu->hwHF());
326  Muon outMu{vec, mu->hwPt(), mu->hwEta(), mu->hwGlobalPhi(), outMuQual, mu->hwSign(), mu->hwSignValid(), iso, mu->tfMuonIndex(), 0, true, mu->hwIsoSum(), mu->hwDPhi(), mu->hwDEta(), mu->hwRank()};
327  if (mu->hwSignValid()) {
328  outMu.setCharge(1 - 2 * mu->hwSign());
329  } else {
330  outMu.setCharge(0);
331  }
332  // set the coordinates at the vertex
333  outMu.setHwEtaAtVtx(MicroGMTConfiguration::calcMuonHwEtaExtra(outMu));
334  outMu.setHwPhiAtVtx(MicroGMTConfiguration::calcMuonHwPhiExtra(outMu));
335  outMu.setEtaAtVtx(MicroGMTConfiguration::calcMuonEtaExtra(outMu));
336  outMu.setPhiAtVtx(MicroGMTConfiguration::calcMuonPhiExtra(outMu));
337  m_debugOut << mu->hwCaloPhi() << " " << mu->hwCaloEta() << std::endl;
338  outMuons->push_back(bx, outMu);
339  }
340  }
341  }
342 
343  iEvent.put(std::move(outMuons));
344  iEvent.put(std::move(imdMuonsBMTF), "imdMuonsBMTF");
345  iEvent.put(std::move(imdMuonsEMTFPos), "imdMuonsEMTFPos");
346  iEvent.put(std::move(imdMuonsEMTFNeg), "imdMuonsEMTFNeg");
347  iEvent.put(std::move(imdMuonsOMTFPos), "imdMuonsOMTFPos");
348  iEvent.put(std::move(imdMuonsOMTFNeg), "imdMuonsOMTFNeg");
349 }
void extrapolateMuons(MicroGMTConfiguration::InterMuonList &) const
void setCancelOutBitsOverlapEndcap(GMTInternalWedges &, GMTInternalWedges &, cancelmode)
Cancel-out between overlap and endcap track finders.
OrphanHandle< PROD > put(std::unique_ptr< PROD > product)
Put a new product.
Definition: Event.h:127
std::ofstream m_debugOut
void setCancelOutBitsOverlapBarrel(GMTInternalWedges &, GMTInternalWedges &, cancelmode)
Cancel-out between overlap and barrel track finders.
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_endcapTfInputToken
void convertMuons(edm::Handle< MicroGMTConfiguration::InputCollection > const &in, MicroGMTConfiguration::InterMuonList &out, GMTInternalWedges &wedges, int bx) const
std::bitset< 12 > m_bmtfInputsToDisable
bool getByToken(EDGetToken token, Handle< PROD > &result) const
Definition: Event.h:508
void setTowerSums(const MicroGMTConfiguration::CaloInputCollection &inputs, int bx)
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_overlapTfInputToken
edm::EDGetTokenT< MicroGMTConfiguration::CaloInputCollection > m_caloTowerInputToken
MicroGMTIsolationUnit m_isolationUnit
PtEtaPhiMLorentzVectorD PtEtaPhiMLorentzVector
Lorentz vector with cartesian internal representation.
Definition: LorentzVector.h:25
std::bitset< 12 > m_emtfInputsToDisable
Definition: Muon.py:1
void calculateRank(MicroGMTConfiguration::InterMuonList &muons) const
void sortMuons(MicroGMTConfiguration::InterMuonList &, unsigned) const
const int mu
Definition: Constants.h:22
T min(T a, T b)
Definition: MathUtil.h:58
GMTInternalMuonList InterMuonList
std::bitset< 12 > m_maskedBmtfInputs
BXVector< Muon > MuonBxCollection
Definition: Muon.h:10
int getFirstBX() const
void setCancelOutBits(GMTInternalWedges &, tftype, cancelmode)
Cancel out between sectors/wedges in one track finder.
void addMuonsToCollections(MicroGMTConfiguration::InterMuonList &coll, MicroGMTConfiguration::InterMuonList &interout, std::unique_ptr< MuonBxCollection > &out, int bx) const
edm::EDGetTokenT< MicroGMTConfiguration::InputCollection > m_barrelTfInputToken
HLT enums.
std::bitset< 12 > m_maskedEmtfInputs
int getLastBX() const
void splitAndConvertMuons(edm::Handle< MicroGMTConfiguration::InputCollection > const &in, MicroGMTConfiguration::InterMuonList &out_pos, MicroGMTConfiguration::InterMuonList &out_neg, GMTInternalWedges &wedges_pos, GMTInternalWedges &wedges_neg, int bx) const
std::map< int, std::vector< std::shared_ptr< GMTInternalMuon > > > GMTInternalWedges
std::bitset< 12 > m_maskedOmtfInputs
std::bitset< 28 > m_caloInputsToDisable
std::bitset< 12 > m_omtfInputsToDisable
MicroGMTCancelOutUnit m_cancelOutUnit
void isolatePreSummed(MicroGMTConfiguration::InterMuonList &muons) const
def move(src, dest)
Definition: eostools.py:510
std::bitset< 28 > m_maskedCaloInputs
void L1TMuonProducer::sortMuons ( MicroGMTConfiguration::InterMuonList muons,
unsigned  nSurvivors 
) const
private

Definition at line 359 of file L1TMuonProducer.cc.

References compareMuons().

Referenced by produce().

359  {
360  MicroGMTConfiguration::InterMuonList::iterator mu1;
361  // reset from previous sort stage
362  for (mu1 = muons.begin(); mu1 != muons.end(); ++mu1) {
363  (*mu1)->setHwWins(0);
364  }
365 
366  int nCancelled = 0;
367  for (mu1 = muons.begin(); mu1 != muons.end(); ++mu1) {
368  int mu1CancelBit = (*mu1)->hwCancelBit();
369  nCancelled += mu1CancelBit;
370  auto mu2 = mu1;
371  mu2++;
372  for ( ; mu2 != muons.end(); ++mu2) {
373  if (mu1CancelBit != 1 && (*mu2)->hwCancelBit() != 1) {
374  if ((*mu1)->hwRank() >= (*mu2)->hwRank()) {
375  (*mu1)->increaseWins();
376  } else {
377  (*mu2)->increaseWins();
378  }
379  } else if (mu1CancelBit != 1) {
380  (*mu1)->increaseWins();
381  } else if ((*mu2)->hwCancelBit() != 1) {
382  (*mu2)->increaseWins();
383  }
384  }
385  }
386 
387  size_t nMuonsBefore = muons.size();
388  int minWins = nMuonsBefore - nSurvivors;
389 
390  // remove all muons that were cancelled or that do not have sufficient rank
391  // (reduces the container size to nSurvivors)
392  muons.remove_if([&minWins](auto muon) { return ((muon->hwWins() < minWins) || (muon->hwCancelBit() == 1)); });
394 }
static bool compareMuons(const std::shared_ptr< MicroGMTConfiguration::InterMuon > &mu1, const std::shared_ptr< MicroGMTConfiguration::InterMuon > &mu2)
void L1TMuonProducer::splitAndConvertMuons ( edm::Handle< MicroGMTConfiguration::InputCollection > const &  in,
MicroGMTConfiguration::InterMuonList out_pos,
MicroGMTConfiguration::InterMuonList out_neg,
GMTInternalWedges wedges_pos,
GMTInternalWedges wedges_neg,
int  bx 
) const
private

Definition at line 430 of file L1TMuonProducer.cc.

References BXVector< T >::at(), BXVector< T >::getLastBX(), l1t::RegionalMuonCand::hwEta(), l1t::RegionalMuonCand::hwPhi(), mps_fire::i, l1t::RegionalMuonCand::link(), m_inputsToDisable, m_maskedInputs, MillePedeFileConverter_cfg::out, l1t::RegionalMuonCand::processor(), BXVector< T >::size(), findQualityFiles::size, and l1t::RegionalMuonCand::trackFinderType().

Referenced by produce().

436 {
437  // initialize the wedge collections:
438  for (int i = 0; i < 6; ++i) {
439  wedges_pos[i] = std::vector<std::shared_ptr<GMTInternalMuon>>();
440  wedges_pos[i].reserve(3);
441  wedges_neg[i] = std::vector<std::shared_ptr<GMTInternalMuon>>();
442  wedges_neg[i].reserve(3);
443  }
444  if (bx < in->getFirstBX() || bx > in->getLastBX()) return;
445  int muIdx = 0;
446  int currentLink = 0;
447  for (size_t i = 0; i < in->size(bx); ++i, ++muIdx) {
448  int link = in->at(bx, i).link();
449  if (m_inputsToDisable.test(link) || m_maskedInputs.test(link)) continue; // only process if input link is enabled and not masked
450  if (currentLink != link) {
451  muIdx = 0;
452  currentLink = link;
453  }
454  int gPhi = MicroGMTConfiguration::calcGlobalPhi(in->at(bx, i).hwPhi(), in->at(bx, i).trackFinderType(), in->at(bx, i).processor());
455  int tfMuonIdx = 3 * (currentLink - 36) + muIdx;
456  std::shared_ptr<GMTInternalMuon> out = std::make_shared<GMTInternalMuon>(in->at(bx, i), gPhi, tfMuonIdx);
457  if(in->at(bx, i).hwEta() > 0) {
458  out_pos.push_back(out);
459  wedges_pos[in->at(bx, i).processor()].push_back(out);
460  } else {
461  out_neg.emplace_back(out);
462  wedges_neg[in->at(bx, i).processor()].push_back(out);
463  }
464  }
465  for (int i = 0; i < 6; ++i) {
466  if(wedges_pos[i].size() > 3) edm::LogWarning("Input Mismatch") << " too many inputs per processor for emtf+ / omtf+. Wedge " << i << ": Size " << wedges_pos[i].size() << std::endl;
467  if(wedges_neg[i].size() > 3) edm::LogWarning("Input Mismatch") << " too many inputs per processor for emtf- / omtf-. Wedge " << i << ": Size " << wedges_neg[i].size() << std::endl;
468  }
469 }
size
Write out results.
unsigned size(int bx) const
const int hwEta() const
Get compressed eta (returned int * 0.010875 = eta)
const int hwPhi() const
Get compressed local phi (returned int * 2*pi/576 = local phi in rad)
const int link() const
Get link on which the MicroGMT receives the candidate.
const tftype trackFinderType() const
Get track-finder which found the muon (bmtf, emtf_pos/emtf_neg or omtf_pos/omtf_neg) ...
const int processor() const
Get processor ID on which the candidate was found (0..5 for OMTF/EMTF; 0..11 for BMTF) ...
int getLastBX() const
std::bitset< 72 > m_maskedInputs
std::bitset< 72 > m_inputsToDisable
const T & at(int bx, unsigned i) const

Member Data Documentation

bool L1TMuonProducer::m_autoBxRange
private

Definition at line 99 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

edm::InputTag L1TMuonProducer::m_barrelTfInputTag
private

Definition at line 113 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer().

edm::EDGetTokenT<MicroGMTConfiguration::InputCollection> L1TMuonProducer::m_barrelTfInputToken
private

Definition at line 122 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

std::bitset<12> L1TMuonProducer::m_bmtfInputsToDisable
private

Definition at line 104 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

int L1TMuonProducer::m_bxMax
private

Definition at line 101 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

int L1TMuonProducer::m_bxMin
private

Definition at line 100 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

std::bitset<28> L1TMuonProducer::m_caloInputsToDisable
private

Definition at line 103 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

edm::EDGetTokenT<MicroGMTConfiguration::CaloInputCollection> L1TMuonProducer::m_caloTowerInputToken
private

Definition at line 125 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

MicroGMTCancelOutUnit L1TMuonProducer::m_cancelOutUnit
private

Definition at line 119 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::ofstream L1TMuonProducer::m_debugOut
private

Definition at line 120 of file L1TMuonProducer.cc.

Referenced by produce(), and ~L1TMuonProducer().

std::bitset<12> L1TMuonProducer::m_emtfInputsToDisable
private

Definition at line 106 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

edm::InputTag L1TMuonProducer::m_endcapTfInputTag
private

Definition at line 115 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer().

edm::EDGetTokenT<MicroGMTConfiguration::InputCollection> L1TMuonProducer::m_endcapTfInputToken
private

Definition at line 124 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

std::bitset<72> L1TMuonProducer::m_inputsToDisable
private

Definition at line 102 of file L1TMuonProducer.cc.

Referenced by beginRun(), convertMuons(), and splitAndConvertMuons().

MicroGMTIsolationUnit L1TMuonProducer::m_isolationUnit
private

Definition at line 118 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::bitset<12> L1TMuonProducer::m_maskedBmtfInputs
private

Definition at line 109 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::bitset<28> L1TMuonProducer::m_maskedCaloInputs
private

Definition at line 108 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::bitset<12> L1TMuonProducer::m_maskedEmtfInputs
private

Definition at line 111 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::bitset<72> L1TMuonProducer::m_maskedInputs
private

Definition at line 107 of file L1TMuonProducer.cc.

Referenced by beginRun(), convertMuons(), and splitAndConvertMuons().

std::bitset<12> L1TMuonProducer::m_maskedOmtfInputs
private

Definition at line 110 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

std::bitset<12> L1TMuonProducer::m_omtfInputsToDisable
private

Definition at line 105 of file L1TMuonProducer.cc.

Referenced by beginRun(), and produce().

edm::InputTag L1TMuonProducer::m_overlapTfInputTag
private

Definition at line 114 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer().

edm::EDGetTokenT<MicroGMTConfiguration::InputCollection> L1TMuonProducer::m_overlapTfInputToken
private

Definition at line 123 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer(), and produce().

std::shared_ptr<MicroGMTRankPtQualLUT> L1TMuonProducer::m_rankPtQualityLUT
private

Definition at line 117 of file L1TMuonProducer.cc.

Referenced by beginRun(), and calculateRank().

edm::InputTag L1TMuonProducer::m_trigTowerTag
private

Definition at line 116 of file L1TMuonProducer.cc.

Referenced by L1TMuonProducer().

std::unique_ptr<L1TMuonGlobalParamsHelper> L1TMuonProducer::microGMTParamsHelper
private

Definition at line 112 of file L1TMuonProducer.cc.

Referenced by beginRun().