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Classes

class  Basic3DVector< long double >

Typedefs

typedef Basic3DVector< long
double > 
Basic3DVectorLD
typedef
Geom::Cylindrical2Cartesian< T
Cylindrical
typedef Spherical Polar
typedef T ScalarType
typedef
Geom::Spherical2Cartesian< T
Spherical
typedef long double T

Functions

template<>
class Basic3DVector< long double > __attribute__ ((aligned(16)))
T barePhi () const
T bareTheta () const
template<class U >
 Basic3DVector (const Basic3DVector< U > &p)
 Copy constructor and implicit conversion from Basic3DVector of different precision.
 Basic3DVector (const T &x, const T &y, const T &z)
 construct from cartesian coordinates
template<typename U >
 Basic3DVector (const Geom::Theta< U > &theta, const Geom::Phi< U > &phi, const T &r)
 Basic3DVector (const Basic2DVector< T > &p)
 constructor from 2D vector (X and Y from 2D vector, z set to zero)
 Basic3DVector ()
 Basic3DVector (const Basic3DVector &p)
 Copy constructor from same type. Should not be needed but for gcc bug 12685.
template<class OtherPoint >
 Basic3DVector (const OtherPoint &p)
template<typename U >
 Basic3DVector (mathSSE::Vec4< U > const &iv)
Basic3DVector cross (const Basic3DVector &v) const
 Vector product, or "cross" product, with a vector of same type.
template<class U >
Basic3DVector< typename
PreciseFloatType< T, U >::Type > 
cross (const Basic3DVector< U > &v) const
template<class U >
PreciseFloatType< T, U >::Type dot (const Basic3DVector< U > &v) const
T dot (const Basic3DVector &v) const
 Scalar product, or "dot" product, with a vector of same type.
T eta () const
T mag () const
 The vector magnitude. Equivalent to sqrt(vec.mag2())
T mag2 () const
 The vector magnitude squared. Equivalent to vec.dot(vec)
template<typename S >
Basic3DVector< long double > operator* (const Basic3DVector< long double > &v, S t)
Basic3DVector< long double > operator* (long double t, const Basic3DVector< long double > &v)
 Same as operator*( Vector, Scalar)
template<class U >
PreciseFloatType< long double,
U >::Type 
operator* (const Basic3DVector< U > &v1, const Basic3DVector< long double > &v2)
long double operator* (const Basic3DVector< long double > &v1, const Basic3DVector< long double > &v2)
 scalar product of vectors of same precision
template<class U >
PreciseFloatType< long double,
U >::Type 
operator* (const Basic3DVector< long double > &v1, const Basic3DVector< U > &v2)
 scalar product of vectors of different precision
Basic3DVector< long double > operator* (const Basic3DVector< long double > &v, long double t)
template<typename S >
Basic3DVector< long double > operator* (S t, const Basic3DVector< long double > &v)
Basic3DVectoroperator*= (T t)
 Scaling by a scalar value (multiplication)
Basic3DVector< long double > operator+ (const Basic3DVector< long double > &a, const Basic3DVector< long double > &b)
 vector sum and subtraction of vectors of possibly different precision
template<class U >
Basic3DVector< typename
PreciseFloatType< long double,
U >::Type > 
operator+ (const Basic3DVector< long double > &a, const Basic3DVector< U > &b)
template<class U >
Basic3DVector< typename
PreciseFloatType< long double,
U >::Type > 
operator+ (const Basic3DVector< U > &a, const Basic3DVector< long double > &b)
template<class U >
Basic3DVectoroperator+= (const Basic3DVector< U > &p)
Basic3DVector< long double > operator- (const Basic3DVector< long double > &a, const Basic3DVector< long double > &b)
template<class U >
Basic3DVector< typename
PreciseFloatType< long double,
U >::Type > 
operator- (const Basic3DVector< U > &a, const Basic3DVector< long double > &b)
Basic3DVector operator- () const
 Unary minus, returns a vector with components (-x(),-y(),-z())
template<class U >
Basic3DVector< typename
PreciseFloatType< long double,
U >::Type > 
operator- (const Basic3DVector< long double > &a, const Basic3DVector< U > &b)
template<class U >
Basic3DVectoroperator-= (const Basic3DVector< U > &p)
template<typename S >
Basic3DVector< long double > operator/ (const Basic3DVector< long double > &v, S s)
Basic3DVectoroperator/= (T t)
 Scaling by a scalar value (division)
bool operator== (const Basic3DVector &rh) const
T perp () const
 Magnitude of transverse component.
T perp2 () const
 Squared magnitude of transverse component.
Geom::Phi< Tphi () const
Geom::Theta< Ttheta () const
T transverse () const
 Another name for perp()
Basic3DVector unit () const
T x () const
 Cartesian x coordinate.
Basic2DVector< Txy () const
T y () const
 Cartesian y coordinate.
T z () const
 Cartesian z coordinate.

Variables

T theW
T theX
T theY
T theZ

Typedef Documentation

typedef Basic3DVector<long double> Basic3DVectorLD

Definition at line 320 of file Basic3DVectorLD.h.

Definition at line 223 of file Basic3DVectorLD.h.

typedef Spherical Polar

Definition at line 225 of file Basic3DVectorLD.h.

typedef T ScalarType

Definition at line 222 of file Basic3DVectorLD.h.

Definition at line 224 of file Basic3DVectorLD.h.

typedef long double T

Definition at line 221 of file Basic3DVectorLD.h.


Function Documentation

template<>
class Basic3DVector< long double > __attribute__ ( (aligned(16))  )
T __attribute__::barePhi ( ) const

Azimuthal angle. The value is returned in radians, in the range (-pi,pi]. Same precision as the system atan2(x,y) function. The return type is Geom::Phi<T>, see it's documentation.

Definition at line 317 of file Basic3DVectorLD.h.

Referenced by MuonAlignmentAnalyzer::analyze().

T __attribute__::bareTheta ( ) const

Polar angle. The value is returned in radians, in the range [0,pi] Same precision as the system atan2(x,y) function. The return type is Geom::Phi<T>, see it's documentation.

Definition at line 324 of file Basic3DVectorLD.h.

template<class U >
__attribute__::Basic3DVector ( const Basic3DVector< U > &  p)

Copy constructor and implicit conversion from Basic3DVector of different precision.

Definition at line 239 of file Basic3DVectorLD.h.

__attribute__::Basic3DVector ( const T x,
const T y,
const T z 
)

construct from cartesian coordinates

Definition at line 267 of file Basic3DVectorLD.h.

                                                                                                          {
  return v1.dot(v2);
template<typename U >
__attribute__::Basic3DVector ( const Geom::Theta< U > &  theta,
const Geom::Phi< U > &  phi,
const T r 
)

Deprecated construct from polar coordinates, use
Basic3DVector<T>( Basic3DVector<T>::Polar( theta, phi, r)) instead.

Definition at line 275 of file Basic3DVectorLD.h.

                                                                                                       {
__attribute__::Basic3DVector ( const Basic2DVector< T > &  p)

constructor from 2D vector (X and Y from 2D vector, z set to zero)

Definition at line 243 of file Basic3DVectorLD.h.

                                                                          {
__attribute__::Basic3DVector ( )

default constructor uses default constructor of T to initialize the components. For built-in floating-point types this means initialization to zero??? (force init to 0)

Definition at line 231 of file Basic3DVectorLD.h.

__attribute__::Basic3DVector ( const Basic3DVector p)

Copy constructor from same type. Should not be needed but for gcc bug 12685.

Definition at line 234 of file Basic3DVectorLD.h.

template<class OtherPoint >
__attribute__::Basic3DVector ( const OtherPoint &  p) [explicit]

Explicit constructor from other (possibly unrelated) vector classes The only constraint on the argument type is that it has methods x(), y() and z(), and that these methods return a type convertible to T. Examples of use are
construction from a Basic3DVector with different precision
construction from a Hep3Vector
construction from a coordinate system converter

Definition at line 255 of file Basic3DVectorLD.h.

template<typename U >
__attribute__::Basic3DVector ( mathSSE::Vec4< U > const &  iv)

Definition at line 262 of file Basic3DVectorLD.h.

                                                                                                          {
Basic3DVector __attribute__::cross ( const Basic3DVector v) const

Vector product, or "cross" product, with a vector of same type.

Definition at line 402 of file Basic3DVectorLD.h.

Referenced by TruncatedPyramid::createCorners(), RPCSeedPattern::createSeed(), RKPropagatorInS::propagateParametersOnPlane(), and MSLayersAtAngle::sum2RmRn().

template<class U >
Basic3DVector<typename PreciseFloatType<T,U>::Type> __attribute__::cross ( const Basic3DVector< U > &  v) const

Vector (or cross) product with a vector of different precision. The product is computed without loss of precision. The type of the returned vector is the more precise of the types of the two vectors.

Definition at line 416 of file Basic3DVectorLD.h.

template<class U >
PreciseFloatType<T,U>::Type __attribute__::dot ( const Basic3DVector< U > &  v) const

Scalar (or dot) product with a vector of different precision. The product is computed without loss of precision. The type of the returned scalar is the more precise of the scalar types of the two vectors.

Definition at line 397 of file Basic3DVectorLD.h.

T __attribute__::dot ( const Basic3DVector v) const
T __attribute__::eta ( ) const

Pseudorapidity. Does not check for zero transverse component; in this case the behavior is as for divide-by zero, i.e. system-dependent.

Definition at line 332 of file Basic3DVectorLD.h.

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EcalRawToRecHitRoI::Muon(), EcalListOfFEDSProducer::Muon(), ESListOfFEDSProducer::Muon(), HeavyFlavorValidation::myBook2D(), HeavyFlavorValidation::myBookProfile2D(), HcalConstantsXMLWriter::newCellLine(), muonisolation::CaloExtractor::noiseEcal(), muonisolation::CaloExtractorByAssociator::noiseEcal(), SiStripMonitorMuonHLT::Normalizer(), SimG4HcalValidation::nxNAnalysis(), pat::ObjectResolutionCalc::obsRes(), OnDemandMeasurementTracker::OnDemandMeasurementTracker(), EcalRawToRecHitRoI::OneCandCollection(), TrackClassFilter::operator()(), Comparison< Ref, RefQualifier, Rec, RecQualifier, Alg >::operator()(), EtaRangeSelector::operator()(), backgroundFunctionType4::operator()(), backgroundFunctionType5::operator()(), TrackClassMatch::operator()(), HcalChannelId::operator<(), parse_peak_member_function(), Generator::particlePassesPrimaryCuts(), PhysicsVector(), PhysicsVectorRaw(), TopologyWorker::planes_sphe(), TopologyWorker::planes_sphe_wei(), HcalMonitorClient::PlotPedestalValues(), SiStripRegionCabling::positionIndex(), CaloMiscalibMapHcal::prefillMap(), PFRootEventManager::printCluster(), PFRootEventManager::printGenParticles(), FBaseSimEvent::printMCTruth(), PFRootEventManager::printRecHit(), HcalNumberingFromDDD::printTile(), PFAlgoTestBenchElectrons::processBlock(), HcalCaloTowerMonitor::processEvent(), HcalDeadCellMonitor::processEvent(), HcalBeamMonitor::processEvent(), PFRootEventManagerColin::processNeutral(), edm::ExpoRandomPtGunProducer::produce(), SoftElectronProducer::produce(), JetCrystalsAssociator::produce(), L2MuonSeedGenerator::produce(), edm::FlatRandomEGunSource::produce(), FlavorHistoryProducer::produce(), edm::ExpoRandomPtGunSource::produce(), L1ExtraParticlesProd::produce(), edm::FlatRandomOneOverPtGunProducer::produce(), edm::FlatRandomPtGunProducer::produce(), JetTracksAssociationDRCalo::produce(), JetTracksAssociationDRVertex::produce(), JetVetoedTracksAssociationDRVertex::produce(), edm::FlatRandomPtGunSource::produce(), edm::FlatRandomEGunProducer::produce(), ShallowTracksProducer::produce(), GenHIEventProducer::produce(), cms::AlCaDiJetsProducer::produce(), edm::MultiParticleInConeGunProducer::produce(), ShallowSimTracksProducer::produce(), edm::MultiParticleInConeGunSource::produce(), IsolatedPixelTrackCandidateProducer::produce(), reco::modules::CaloRecHitCandidateProducer< HitCollection >::produce(), MuScleFitMuonProducer::produce(), PATHemisphereProducer::produce(), ShallowClustersProducer::produce(), SiStripRegionConnectivity::produceRegionCabling(), CSCTFPtMethods::Pt2Stn(), CSCTFPtMethods::Pt3Stn(), MuonSeedPtExtractor::pT_extract(), CSCTFPtMethods::PtEff90(), HITSiStripRawToClustersRoI::ptracks(), L1CaloEcalScale::rank(), L1CaloHcalScale::rank(), StoreEcalCondition::readEcalGainRatiosFromFile(), L1MuGMTHWFileReader::readNextEvent(), HemisphereAlgo::reconstruct(), MuonTrackingRegionBuilder::region(), L1GctInternEmCand::regionId(), L1GctEmCand::regionId(), L1GctJetCand::regionId(), TB06RecoH2::reset(), TB06TreeH2::reset(), TB06Reco::reset(), TB06Tree::reset(), muonisolation::IsolatorByDepositCount::result(), muonisolation::IsolatorByDeposit::result(), MuonErrorMatrix::Rms(), CutBasedElectronID::robustSelection(), RoadSearchSeedFinderAlgorithm::run(), L1MuonPixelTrackFitter::run(), EcalRecHitWorkerRecover::run(), CMSIterativeConeAlgorithm::run(), HIPAlignmentAlgorithm::run(), L1MuGMTEtaProjectionUnit::run(), L1MuGMTPhiProjectionUnit::run(), MuonMillepedeAlgorithm::run(), ConvBremPFTrackFinder::runConvBremFinder(), HcalDetDiagLaserMonitor::SaveRaddamData(), HcalDetDiagPedestalMonitor::SaveReference(), HcalDetDiagLEDMonitor::SaveReference(), HcalDetDiagLaserMonitor::SaveReference(), PFSCEnergyCalibration::SCCorrEtEtaEndcap(), MuonSeedCleaner::seedCleaner(), ElectronSeedGenerator::seedsFromThisCluster(), reco::modules::CosmicTrackSelector::select(), reco::modules::AnalyticalTrackSelector::select(), GsfElectronAlgo::setAmbiguityData(), pftools::PFClusterCalibration::setBarrelBoundary(), L1CaloHcalScale::setBin(), L1CaloEcalScale::setBin(), GsfElectronAlgo::setCutBasedPreselectionFlag(), L1MuGMTDebugBlock::SetEta(), pftools::ParticleDeposit::setEta(), L1GctJetEtCalibrationLut::setEtaBin(), FastL1Region::SetEtaPhiIndex(), egHLT::trigTools::setFiltersObjPasses(), HcalTBEventPosition::setHBHEtableCoords(), FourVectorHLT::PathInfo::setHistos(), HLTMonSimpleBTag::PathInfo::setHistos(), TFitParticleEtEtaPhi::setIni4Vec(), CastorShowerEvent::setPrimEta(), CandCombinerBase< OutputCollection, Cloner::CandPtr >::setup(), EcalGeomPhiSymHelper::setup(), FWPFBlockProxyBuilder::setupClusterElement(), CovarianceMatrix::setupMatrix(), FWPFClusterLegoProxyBuilder::sharedBuild(), FWECALDetailViewBuilder::showSuperClusters(), L1DummyProducer::SimpleDigi(), reco::PFRecHit::size(), smearFunctionType6::smear(), pat::ObjectSpatialResolution< T >::smearAngles(), L1MuGMTSortRankUnit::sort_rank(), L1MuGMTLFMergeRankEtaQLUT::SpecificLookup(), L1MuGMTMIAUPhiPro1LUT::SpecificLookup(), L1MuGMTLFDisableHotLUT::SpecificLookup(), L1MuGMTLFMergeRankEtaPhiLUT::SpecificLookup(), L1MuGMTMIAUEtaProLUT::SpecificLookup(), L1MuGMTLFPhiProLUT::SpecificLookup(), L1MuGMTLFSortRankEtaPhiLUT::SpecificLookup(), L1MuGMTLFSortRankEtaQLUT::SpecificLookup(), L1MuGMTMIAUPhiPro1LUT::SpecificLookup_cphi_fine(), L1MuGMTMIAUPhiPro1LUT::SpecificLookup_cphi_ofs(), L1MuGMTLFDisableHotLUT::SpecificLookup_disable_hot(), L1MuGMTLFPhiProLUT::SpecificLookup_dphi(), L1MuGMTMIAUEtaProLUT::SpecificLookup_eta_sel(), L1MuGMTLFMergeRankEtaQLUT::SpecificLookup_flag(), L1MuGMTLFMergeRankEtaPhiLUT::SpecificLookup_rank_etaphi(), L1MuGMTLFSortRankEtaPhiLUT::SpecificLookup_rank_etaphi(), L1MuGMTLFMergeRankEtaQLUT::SpecificLookup_rank_etaq(), L1MuGMTLFSortRankEtaQLUT::SpecificLookup_rank_etaq(), L1MuGMTLFSortRankEtaQLUT::SpecificLookup_vlq(), StochStep(), StochStepHyb(), TB06TreeH2::store(), TB06Tree::store(), PFRootEventManager::tauBenchmark(), TBposition(), TrackEfficiencyMonitor::testSTATracks(), TrackEfficiencyMonitor::testTrackerTracks(), L1MuGMTMIAUEtaProLUT::TheLookupFunction(), HcalNumberingFromDDD::tileHB(), HcalNumberingFromDDD::tileHE(), spr::timeOfFlight(), RPCConst::towerNumFromEta(), HcalTestAnalysis::towersToAdd(), MuonNavigableLayer::trackingRange(), translateCoeff(), undefinedCells(), HcalNumberingFromDDD::unitID(), ZdcTestAnalysis::update(), CastorTestAnalysis::update(), CastorShowerLibraryMaker::update(), DoCastorAnalysis::update(), FP420Test::update(), HcalTestAnalysis::update(), BscTest::update(), EventProgress::update(), JetPartonNamespace::ParametrizationJetParton::value(), MuonErrorMatrix::Value(), reco::isodeposit::OtherCandidatesDeltaRVeto::veto(), writeCalibTxt(), writeCMSSWCoeff(), ECALRecHitAnalyzer::WriteECALRecHits(), VirtualJetProducer::writeJets(), Pi0CalibXMLwriter::writeLine(), and calibXMLwriter::writeLine().

T __attribute__::mag ( ) const

The vector magnitude. Equivalent to sqrt(vec.mag2())

Definition at line 302 of file Basic3DVectorLD.h.

Referenced by ReferenceTrajectory::addMaterialEffectsBrl(), SiStripElectronAnalyzer::analyze(), DTChamberEfficiencyTask::analyze(), TestHits::analyze(), MuonTrackResidualAnalyzer::analyze(), TestSmoothHits::analyze(), MuonDTDigis::analyze(), TrackIPTagPlotter::analyzeTag(), GlobalTrackerMuonAlignment::analyzeTrackTrack(), GlobalTrackerMuonAlignment::analyzeTrackTrajectory(), reco::GhostTrackState::axisDistance(), ThirdHitPrediction::calculateRangesBarrel(), CaloCellCrossing::CaloCellCrossing(), TkGluedMeasurementDet::checkHitProjection(), GlobalMuonRefitter::checkMuonHits(), VZeroFinder::checkTrackPair(), MuonTrajectoryCleaner::clean(), TkAccumulatingSensitiveDetector::closeHit(), PLTSensitiveDetector::closeHit(), GlobalMuonTrackMatcher::convertToTSOSMuHit(), GlobalMuonTrackMatcher::convertToTSOSTkHit(), MuonSensitiveDetector::createHit(), fireworks::createSegment(), CaloDetIdAssociator::crossedElement(), SimpleNavigableLayer::crossingState(), TangentCircle::curvatureError(), SiLinearChargeDivider::DeconvolutionShape(), OptOMirror::detailedDeviatesLightRay(), TangentCircle::direction(), RK4PreciseStep::distance(), SignedImpactParameter3D::distanceWithJetAxis(), DTSegtoRPC::DTSegtoRPC(), DTDigitizer::dumpHit(), DTTimingExtractor::fillTiming(), CSCTimingExtractor::fillTiming(), Trajectory::geometricalInnermostState(), calogeom::IdealObliquePrism::getCorners(), BetaCalculatorECAL::getDetailedTrackLengthInXtals(), TrackAssociatorByPosition::getState(), TruncatedPyramid::getTransform(), CaloCellGeometry::getTransform(), MuonShowerInformationFiller::hitsFromSegments(), CalibrationTrackSelector::isIsolated(), AlignmentTrackSelector::isIsolated(), MuonCosmicCompatibilityFiller::isOverlappingMuon(), IPTools::jetTrackDistance(), HSCPValidator::makeGenPlots(), egHLT::ParticlePair< T >::mass(), GlobalCosmicMuonTrajectoryBuilder::match(), GlobalMuonTrackMatcher::match_D(), GlobalMuonTrackMatcher::match_d(), NuclearTester::meanHitDistance(), InclusiveVertexFinder::nearTracks(), ConversionHitChecker::nHitsBeforeVtx(), DTTTrigSyncTOFCorr::offset(), DTTTrigSyncFromDB::offset(), MuonShowerInformationFiller::LessMag::operator()(), LinTrackCache::Vicinity::operator()(), RKCartesianDistance::operator()(), RKCylindricalDistance< T, N >::operator()(), RKCurvilinearDistance< T, N >::operator()(), MuonTrackResidualAnalyzer::RadiusComparatorInOut::operator()(), RecHitLessByDet::operator()(), reco::TrackResiduals::pack_pull(), reco::TrackResiduals::pack_residual(), egHLT::EgTrigTagProbeCut::pass(), egHLT::EgTagProbeCut< T >::pass(), SiLinearChargeDivider::PeakShape(), PixelCPEBase::PixelCPEBase(), GamIsoDetIdCollectionProducer::produce(), SiStripElectronAssociator::produce(), EleIsoDetIdCollectionProducer::produce(), reco::modules::CosmicTrackSplitter::produce(), SteppingHelixPropagator::propagate(), SteppingHelixPropagator::propagateWithPath(), TrackAssociatorByPosition::quality(), GenericTripletGenerator::qualityFilter(), ThirdHitPredictionFromCircle::HelixRZ::rAtZ(), SteppingHelixPropagator::refToDest(), CosmicRegionalSeedGenerator::regions(), SoftLepton::relativeEta(), SiStripDigitizerAlgorithm::run(), TrackInfoProducerAlgorithm::run(), MagGeoBuilderFromDDD::volumeHandle::sameSurface(), SeedGeneratorForCosmics::seeds(), PixelCPEBase::setMagField(), DDErrorDetection::so(), DynamicTruncation::sort(), SETSeedFinder::sortByLayer(), GlobalCosmicMuonTrajectoryBuilder::sortHits(), CosmicMuonSmoother::sortHitsAlongMom(), KalmanAlignmentTrackRefitter::sortRecHits(), SeedFromNuclearInteraction::stateWithError(), TangentCircle::TangentCircle(), TangentHelix::TangentHelix(), ThirdHitPredictionFromCircle::transverseIP(), reco::TrackResiduals::unpack_pull(), reco::TrackResiduals::unpack_residual(), CheckSecondary::update(), MuonSensitiveDetector::updateHit(), and MultiVertexFitter::updateSeeds().

{
T __attribute__::mag2 ( ) const
template<typename S >
Basic3DVector<long double> operator* ( const Basic3DVector< long double > &  v,
t 
) [inline]

Definition at line 305 of file Basic3DVectorLD.h.

                                                                                      {
  return static_cast<long double>(t)*v;
}
Basic3DVector<long double> operator* ( long double  t,
const Basic3DVector< long double > &  v 
) [inline]

Same as operator*( Vector, Scalar)

Definition at line 295 of file Basic3DVectorLD.h.

References matplotRender::t, Basic3DVector< long double >::x(), Basic3DVector< long double >::y(), and Basic3DVector< long double >::z().

                                                                                                {
  return Basic3DVector<long double>(v.x()*t, v.y()*t, v.z()*t);
}
template<class U >
PreciseFloatType<long double,U>::Type operator* ( const Basic3DVector< U > &  v1,
const Basic3DVector< long double > &  v2 
) [inline]
long double operator* ( const Basic3DVector< long double > &  v1,
const Basic3DVector< long double > &  v2 
) [inline]

scalar product of vectors of same precision

Definition at line 267 of file Basic3DVectorLD.h.

References Basic3DVector< long double >::dot().

                                                                                                          {
  return v1.dot(v2);
}
template<class U >
PreciseFloatType<long double,U>::Type operator* ( const Basic3DVector< long double > &  v1,
const Basic3DVector< U > &  v2 
) [inline]

scalar product of vectors of different precision

Definition at line 273 of file Basic3DVectorLD.h.

                                                                                   {
  return v1.x()*v2.x() + v1.y()*v2.y() + v1.z()*v2.z();
}
Basic3DVector<long double> operator* ( const Basic3DVector< long double > &  v,
long double  t 
) [inline]

Multiplication by scalar, does not change the precision of the vector. The return type is the same as the type of the vector argument.

Definition at line 289 of file Basic3DVectorLD.h.

                                                                                                 {
  return Basic3DVector<long double>(v.x()*t, v.y()*t, v.z()*t);
}
template<typename S >
Basic3DVector<long double> operator* ( t,
const Basic3DVector< long double > &  v 
) [inline]

Definition at line 300 of file Basic3DVectorLD.h.

References matplotRender::t.

                                                                                       {
  return static_cast<long double>(t)*v;
}
Basic3DVector& __attribute__::operator*= ( T  t)

Scaling by a scalar value (multiplication)

Definition at line 370 of file Basic3DVectorLD.h.

Basic3DVector<long double> operator+ ( const Basic3DVector< long double > &  a,
const Basic3DVector< long double > &  b 
) [inline]

vector sum and subtraction of vectors of possibly different precision

Definition at line 224 of file Basic3DVectorLD.h.

                                                                                     {
  typedef Basic3DVector<long double> RT;
  return RT(a.x()+b.x(), a.y()+b.y(), a.z()+b.z());
}
template<class U >
Basic3DVector<typename PreciseFloatType<long double,U>::Type> operator+ ( const Basic3DVector< long double > &  a,
const Basic3DVector< U > &  b 
) [inline]

Definition at line 238 of file Basic3DVectorLD.h.

                                                                           {
  typedef Basic3DVector<typename PreciseFloatType<long double,U>::Type> RT;
  return RT(a.x()+b.x(), a.y()+b.y(), a.z()+b.z());
}
template<class U >
Basic3DVector<typename PreciseFloatType<long double,U>::Type> operator+ ( const Basic3DVector< U > &  a,
const Basic3DVector< long double > &  b 
) [inline]
template<class U >
Basic3DVector& __attribute__::operator+= ( const Basic3DVector< U > &  p)

Operator += with a Basic3DVector of possibly different precision.

Definition at line 349 of file Basic3DVectorLD.h.

Basic3DVector<long double> operator- ( const Basic3DVector< long double > &  a,
const Basic3DVector< long double > &  b 
) [inline]

Definition at line 229 of file Basic3DVectorLD.h.

                                                                                     {
  typedef Basic3DVector<long double> RT;
  return RT(a.x()-b.x(), a.y()-b.y(), a.z()-b.z());
}
template<class U >
Basic3DVector<typename PreciseFloatType<long double,U>::Type> operator- ( const Basic3DVector< U > &  a,
const Basic3DVector< long double > &  b 
) [inline]

Definition at line 260 of file Basic3DVectorLD.h.

                                                                           {
  typedef Basic3DVector<typename PreciseFloatType<long double,U>::Type> RT;
  return RT(a.x()-b.x(), a.y()-b.y(), a.z()-b.z());
}
Basic3DVector __attribute__::operator- ( ) const

Unary minus, returns a vector with components (-x(),-y(),-z())

Definition at line 367 of file Basic3DVectorLD.h.

template<class U >
Basic3DVector<typename PreciseFloatType<long double,U>::Type> operator- ( const Basic3DVector< long double > &  a,
const Basic3DVector< U > &  b 
) [inline]

Definition at line 253 of file Basic3DVectorLD.h.

                                                                           {
  typedef Basic3DVector<typename PreciseFloatType<long double,U>::Type> RT;
  return RT(a.x()-b.x(), a.y()-b.y(), a.z()-b.z());
}
template<class U >
Basic3DVector& __attribute__::operator-= ( const Basic3DVector< U > &  p)

Operator -= with a Basic3DVector of possibly different precision.

Definition at line 359 of file Basic3DVectorLD.h.

template<typename S >
Basic3DVector<long double> operator/ ( const Basic3DVector< long double > &  v,
s 
) [inline]

Division by scalar, does not change the precision of the vector. The return type is the same as the type of the vector argument.

Definition at line 314 of file Basic3DVectorLD.h.

References asciidump::s, and matplotRender::t.

                                                                                       {
  long double t = 1/s;
  return v*t;
}
Basic3DVector& __attribute__::operator/= ( T  t)

Scaling by a scalar value (division)

Definition at line 378 of file Basic3DVectorLD.h.

bool __attribute__::operator== ( const Basic3DVector rh) const

Definition at line 294 of file Basic3DVectorLD.h.

                                                                                                {
  return Basic3DVector<long double>(v.x()*t, v.y()*t, v.z()*t);
T __attribute__::perp ( ) const
T __attribute__::perp2 ( ) const
Geom::Phi<T> __attribute__::phi ( ) const

Definition at line 318 of file Basic3DVectorLD.h.

Geom::Theta<T> __attribute__::theta ( ) const

Definition at line 325 of file Basic3DVectorLD.h.

Referenced by GflashTrajectory::_refreshCache(), PFSpecificAlgo::addInfo(), GenSpecificAlgo::addInfo(), FastL1GlobalAlgo::addJet(), Hector::addPartToHepMC(), fireworks::addStraightLineSegment(), TrackerHitAnalyzer::analyze(), MuonDTDigis::analyze(), EcalTrigPrimAnalyzer::analyze(), HCALRecHitAnalyzer::analyze(), EcalTPGParamBuilder::analyze(), edm::FlatEGunASCIIWriter::analyze(), EETimingTask::analyze(), ElectronTagProbeAnalyzer::analyze(), TrackBuildingAnalyzer::analyze(), cms::DiMuonSeedGeneratorHIC::barrelUpdateSeed(), MuonBremsstrahlungSimulator::brem(), BremsstrahlungSimulator::brem(), FWECALDetailViewBuilder::build(), FWMET3DProxyBuilder::build(), FWTauProxyBuilderBase::buildBaseTau(), FWPFClusterRPZUtils::buildRhoZClusterLineSet(), FWJetProxyBuilder::buildViewType(), FWMETProxyBuilder::buildViewType(), TFitParticleEtThetaPhi::calc4Vec(), TFitParticleMCPInvSpher::calc4Vec(), TFitParticleSpher::calc4Vec(), TFitParticleMCSpher::calc4Vec(), TFitParticleESpher::calc4Vec(), CSCHaloAlgo::Calculate(), TwoBodyDecayModel::cartesianSecondaryMomenta(), NuclearInteractionSimulator::compute(), MultipleScatteringSimulator::compute(), CaloMETAnalyzer::computeEmHaMET(), AnalyticalCurvilinearJacobian::computeFullJacobian(), HDRShower::computeShower(), DTDigitizer::computeTime(), EcalHitMaker::configureGeometry(), DDHCalEndcapAlgo::constructInsideModule(), DDHCalEndcapAlgo::constructInsideModule0(), TSCPBuilderNoMaterial::createFTSatTransverseImpactPointNeutral(), fireworks::createSegment(), ZMuMuIsolationAnalyzer::Deposits(), Decay3Body::doDecay(), CSCValidation::doSegments(), DTDigitizer::driftTimeFromParametrization(), DTBtiChip::DTBtiChip(), ECALPositionCalculator::ecalEta(), RawParticle::eta(), metsig::SignAlgoResolutions::eval(), DDTECAxialCableAlgo::execute(), DDHCalXtalAlgo::execute(), DDHCalTBZposAlgo::execute(), DDTIBLayerAlgo_MTCC::execute(), DDTECOptoHybAlgo::execute(), DDTECPhiAltAlgo::execute(), DDEcalBarrelNewAlgo::execute(), DDEcalBarrelAlgo::execute(), DDHCalTestBeamAlgo::execute(), DDTIDAxialCableAlgo::execute(), DDTrackerPhiAltAlgo::execute(), DDTIBLayerAlgo::execute(), DDTIDRingAlgo::execute(), DDTrackerAngular::execute(), DDTrackerPhiAlgo::execute(), DDTECPhiAlgo::execute(), KinematicPerigeeConversions::extendedPerigeeFromKinematicParameters(), SimG4HcalValidation::fill(), HcalTestAnalysis::fill(), HcalTB06Analysis::fillBuffer(), HcalTB04Analysis::fillBuffer(), TrackerHitProducer::fillG4MC(), TrackAnalyzer::fillHistosForState(), FastL1GlobalAlgo::FillMET(), NtupleManager::FillOptObjects(), SETFilter::find3MoreStartingPoints(), spr::findDetIdECAL(), spr::findDetIdHCAL(), cms::HICTkOuterStartingLayerFinder::findForwardLayers(), SETFilter::findMinChi2(), MuonShowerInformationFiller::findThetaCluster(), OutInConversionSeedFinder::fixPointRadius(), cms::DiMuonSeedGeneratorHIC::forwardUpdateSeed(), cms::HICFTSfromL1orL2::FTSfromL1(), cms::HICFTSfromL1orL2::FTSfromL2(), cms::HICFTSfromL1orL2::FTSfromStandAlone(), PerigeeConversions::ftsToPerigeeParameters(), calib::CalibElectron::getCalibModulesWeights(), TCTauAlgorithm::getCellMomentum(), TFitParticleMCPInvSpher::getDerivative(), TFitParticleSpher::getDerivative(), TFitParticleEtThetaPhi::getDerivative(), TFitParticleMCSpher::getDerivative(), TFitParticleESpher::getDerivative(), L2TauNarrowConeIsolationProducer::getECALHits(), L2TauModularIsolationProducer::getECALHits(), L2TauIsolationProducer::getECALHits(), ZdcSD::getEnergyDeposit(), CastorSD::getEnergyDeposit(), IsolatedPixelTrackCandidateProducer::GetEtaPhiAtEcal(), PythiaFilterIsolatedTrack::GetEtaPhiAtEcal(), reco::TauMassTagInfo::getInvariantMass(), CastorShowerLibraryMaker::GetKinematics(), TwoBodyDecayLinearizationPointFinder::getLinearizationPoint(), pftools::CaloEllipse::getMajorMinorAxes(), L2TauModularIsolationProducer::getPFClusters(), CastorShowerLibrary::getShowerHits(), pat::ObjectEnergyScale< T >::getSmearing(), pftools::CaloEllipse::getTheta(), CaloCellId::getThetaCell(), DDHCalTestBeamAlgo::initialize(), DDHCalTBZposAlgo::initialize(), MuonMesh::isClusteredWith(), MuonMesh::isDuplicateOf(), HcalDDDGeometryLoader::makeCell(), fireworks::makeRhoZSuperCluster(), FinalTreeBuilder::momentumPart(), CosmicGenFilterHelix::monitorStart(), muonisolation::CaloExtractor::MuonAtCaloPosition(), SimpleConeBounds::openingAngle(), PixelTrackFilterByKinematics::operator()(), FTSFromVertexToPointFactory::operator()(), SimG4HcalHitCluster::operator+=(), reco::PreshowerCluster::operator<(), PrimaryVertexAnalyzer4PU::printPVTrks(), DDLTrapezoid::processElement(), L2MuonSeedGenerator::produce(), edm::ExpoRandomPtGunProducer::produce(), JetCrystalsAssociator::produce(), pf2pat::PFMETAlgo::produce(), edm::FlatRandomEGunSource::produce(), edm::FileRandomKEThetaGunProducer::produce(), edm::ExpoRandomPtGunSource::produce(), edm::FlatRandomOneOverPtGunProducer::produce(), edm::FlatRandomPtGunProducer::produce(), edm::FlatRandomEThetaGunProducer::produce(), edm::FlatRandomPtGunSource::produce(), edm::FlatRandomEGunProducer::produce(), ShallowTracksProducer::produce(), edm::FlatRandomPtThetaGunProducer::produce(), edm::MultiParticleInConeGunProducer::produce(), ShallowSimTracksProducer::produce(), edm::MultiParticleInConeGunSource::produce(), edm::FlatRandomPtThetaGunSource::produce(), edm::FlatRandomEThetaGunSource::produce(), cms::FastMuPropagator::propagate(), TrackKinematicStatePropagator::propagateToTheTransversePCANeutral(), AsciiNeutronReader::readNextEvent(), METManager::recomputePFMET(), SteppingHelixPropagator::refToDest(), MuonTrackingRegionBuilder::region(), METAlgo::run(), EcalRecHitWorkerRecover::run(), TPtoRecoTrack::s_eta(), RecoTracktoTP::s_eta(), TFitParticleSpher::setIni4Vec(), TFitParticleESpher::setIni4Vec(), TFitParticleMCSpher::setIni4Vec(), TFitParticleEtThetaPhi::setIni4Vec(), TFitParticleMCPInvSpher::setIni4Vec(), HcalForwardAnalysis::setPhotons(), EcalSelectiveReadoutValidation::setTtEtSums(), EcalSelectiveReadoutSuppressor::setTtFlags(), DTRecHitQuality::simHitImpactAngle(), pat::ObjectSpatialResolution< T >::smearAngles(), smearFunctionBase::smearEta(), TangentCircle::TangentCircle(), kinem::theta(), HDRShower::thetaFunction(), HcalTB04Analysis::timeOfFlight(), HcalTestAnalysis::timeOfFlight(), spr::timeOfFlight(), SiStripFineDelayTOF::timeOfFlightBeamB(), SiStripFineDelayTOF::timeOfFlightCosmicB(), MuonNavigableLayer::trackingRange(), global_linear_1::translation(), global_linear_0::translation(), InvariantMassFromVertex::uncertainty(), HcalNumberingFromDDD::unitID(), EcalSimHitsValidProducer::update(), HcalTB02Analysis::update(), ZdcTestAnalysis::update(), DoCastorAnalysis::update(), CastorTestAnalysis::update(), HcalTestAnalysis::update(), HICMuonUpdator::update(), CaloMETAnalyzer::validateMET(), PFMETAnalyzer::validateMET(), Utils::VectorEPRtoXYZ(), pftools::Utils::VectorEPRtoXYZ(), and ECALRecHitAnalyzer::WriteECALRecHits().

T __attribute__::transverse ( ) const

Another name for perp()

Definition at line 311 of file Basic3DVectorLD.h.

Referenced by SequentialVertexFitter< N >::fit().

{
Basic3DVector __attribute__::unit ( ) const

Unit vector parallel to this. If mag() is zero, a zero vector is returned.

Definition at line 338 of file Basic3DVectorLD.h.

T __attribute__::x ( ) const

Cartesian x coordinate.

Definition at line 282 of file Basic3DVectorLD.h.

{
Basic2DVector<T> __attribute__::xy ( ) const
T __attribute__::y ( ) const

Cartesian y coordinate.

Definition at line 285 of file Basic3DVectorLD.h.

{
T __attribute__::z ( ) const

Cartesian z coordinate.

Definition at line 288 of file Basic3DVectorLD.h.

{

Variable Documentation

Definition at line 426 of file Basic3DVectorLD.h.

Referenced by align::diffAlignables().

Definition at line 423 of file Basic3DVectorLD.h.

Definition at line 424 of file Basic3DVectorLD.h.

Definition at line 425 of file Basic3DVectorLD.h.

Referenced by LaserAlignment::testRoutine().