ATLAS Offline Software
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HIMonitoringElectronsTool Class Reference

#include <HIMonitoringElectronsTool.h>

Inheritance diagram for HIMonitoringElectronsTool:
Collaboration diagram for HIMonitoringElectronsTool:

Public Types

enum  Interval_t {
  file = 0, eventsBlock, lumiBlock, lowStat,
  medStat, higStat, run, fill,
  all
}
 An enumeration describing how detailed a particular monitoring object is. More...
 
enum  MgmtAttr_t { ATTRIB_MANAGED = 0, ATTRIB_UNMANAGED = 1, ATTRIB_X_VS_LB = 2 }
 An enumeration describing how the class handles the histogram. More...
 

Public Member Functions

 HIMonitoringElectronsTool (const std::string &type, const std::string &name, const IInterface *parent)
 
virtual ~HIMonitoringElectronsTool ()
 
virtual StatusCode bookHistogramsRecurrent ()
 An inheriting class should either override this function, bookHists() or bookHistograms(). More...
 
virtual StatusCode bookHistograms ()
 An inheriting class should either override this function or bookHists(). More...
 
virtual StatusCode fillHistograms ()
 An inheriting class should either override this function or fillHists(). More...
 
virtual StatusCode procHistograms ()
 An inheriting class should either override this function or finalHists(). More...
 
void book_hist ()
 
virtual StreamNameFcnstreamNameFunction ()
 Returns the function object that converts logical paramters into a physical stream name. More...
 
virtual StatusCode initialize ()
 
virtual StatusCode bookHists ()
 Calls bookHists( true, true, true ) and initializes lumiBlock and run numbers. More...
 
virtual StatusCode fillHists ()
 Calls fillHists( bool, bool, bool ); if an eventBlock,lumiBlock, or run has turned over, calls procHists( bool, bool, bool ) and bookHists( bool, bool, bool ). More...
 
virtual StatusCode finalHists ()
 Calls procHists( true, true, true ). More...
 
virtual StatusCode convertLWHists ()
 Deal with the LW histograms. More...
 
virtual void setMonManager (AthenaMonManager *manager)
 Takes a pointer to a managing object to get information from it when needed. More...
 
virtual StatusCode regHist (TH1 *h, const std::string &system, Interval_t interval, MgmtAttr_t histo_mgmt=ATTRIB_MANAGED, const std::string &chain="", const std::string &merge="")
 Registers a TH1 (including TH2, TH3, and TProfile) to be included in the output stream using logical parameters that describe the histogram. More...
 
virtual StatusCode regHist (TH1 *h, const MonGroup &group)
 Registers a TH1 (including TH2, TH3, and TProfile) to be included in the output stream using logical parameters that describe the histogram. More...
 
virtual StatusCode regHist (LWHist *h, const std::string &system, Interval_t interval, MgmtAttr_t histo_mgmt=ATTRIB_MANAGED, const std::string &chain="", const std::string &merge="")
 Support for lightweight histograms: More...
 
virtual StatusCode regHist (LWHist *h, const MonGroup &group)
 
virtual StatusCode getHist (TH1 *&h, const std::string &hName, const std::string &system, Interval_t interval)
 Returns a TH1 via the pointer passed as the first argument. More...
 
virtual StatusCode getHist (TH1 *&h, const std::string &hName, const MonGroup &group)
 Returns a TH1 via the pointer passed as the first argument. More...
 
virtual StatusCode getHist (TH2 *&h, const std::string &hName, const std::string &system, Interval_t interval)
 Returns a TH2 via the pointer passed as the first argument. More...
 
virtual StatusCode getHist (TH2 *&h, const std::string &hName, const MonGroup &group)
 Returns a TH2 via the pointer passed as the first argument. More...
 
virtual StatusCode getHist (LWHist *&h, const std::string &hName, const std::string &system, Interval_t interval)
 
virtual StatusCode getHist (LWHist *&h, const std::string &hName, const MonGroup &group)
 
virtual StatusCode regEfficiency (TEfficiency *e, const MonGroup &group)
 Registers a TEfficiency to be included in the output stream using logical parameters that describe the plot. More...
 
virtual StatusCode regGraph (TGraph *g, const std::string &system, Interval_t interval, MgmtAttr_t histo_mgmt=ATTRIB_MANAGED, const std::string &chain="", const std::string &merge="")
 Registers a TGraph to be included in the output stream using logical parameters that describe the graph. More...
 
virtual StatusCode regGraph (TGraph *g, const MonGroup &group)
 Registers a TGraph to be included in the output stream using logical parameters that describe the graph. More...
 
virtual StatusCode regTree (TTree *t, const std::string &system, Interval_t interval, MgmtAttr_t histo_mgmt=ATTRIB_MANAGED, const std::string &chain="", const std::string &merge="")
 Registers a TTree to be included in the output stream using logical parameters that describe it. More...
 
virtual StatusCode regTree (TTree *t, const MonGroup &group)
 Registers a TTree to be included in the output stream using logical parameters that describe it. More...
 
virtual StatusCode deregHist (LWHist *h)
 
virtual StatusCode deregHist (TH1 *h)
 De-registers a TH1 from the THistSvc, but does NOT delete the object. More...
 
virtual StatusCode writeAndDelete (TH1 *h, const MonGroup &group)
 Write out histogram and delete it. More...
 
virtual StatusCode deregGraph (TGraph *g)
 De-registers a TGraph from the THistSvc, but does NOT delete the object. More...
 
virtual StatusCode deregObject (const std::string &objName, const std::string &system, Interval_t interval)
 De-registers a TObject from the THistSvc, but does NOT delete the object. More...
 
virtual StatusCode deregObject (const std::string &objName, const MonGroup &group)
 De-registers a TObject from the THistSvc, but does NOT delete the object. More...
 
virtual StatusCode setupOutputStreams (std::vector< std::string > Mapping=std::vector< std::string >())
 This implementation does nothing—streams in this class should be managed by the AthenaMonManager. More...
 
virtual StatusCode runStat ()
 This implementation does nothing; equivalent functionality may be provided by procHists( true, true, true ). More...
 
virtual StatusCode checkHists (bool calledFromFinalize)
 This implementation does nothing; equivalent functionality may be provided by procHists(...) with appropriate arguments. More...
 
virtual bool preSelector ()
 
virtual float lbAverageInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average mu, i.e. More...
 
virtual float lbInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Instantaneous number of interactions, i.e. More...
 
virtual float lbAverageLuminosity (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1) More...
 
virtual float lbLuminosityPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Instantaneous luminosity. More...
 
virtual double lbDuration (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Luminosity block time (in seconds) More...
 
virtual float lbAverageLivefraction (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average luminosity livefraction. More...
 
virtual float livefractionPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Livefraction per bunch crossing ID. More...
 
virtual double lbLumiWeight (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average Integrated Luminosity Live Fraction. More...
 
 MMTB_DEPRECATED (newLowStatInterval)
 
 MMTB_DEPRECATED (newMedStatInterval)
 
 MMTB_DEPRECATED (newHigStatInterval)
 
 MMTB_DEPRECATED (newLowStat)
 
 MMTB_DEPRECATED (newLumiBlock)
 
 MMTB_DEPRECATED (newRun)
 
 MMTB_DEPRECATED (newEventsBlock)
 
 MMTB_DEPRECATED (endOfEventsBlock)
 
 MMTB_DEPRECATED (endOfLowStat)
 
 MMTB_DEPRECATED (endOfLumiBlock)
 
 MMTB_DEPRECATED (endOfRun)
 
ServiceHandle< StoreGateSvc > & evtStore ()
 The standard StoreGateSvc (event store) Returns (kind of) a pointer to the StoreGateSvc. More...
 
const ServiceHandle< StoreGateSvc > & evtStore () const
 The standard StoreGateSvc (event store) Returns (kind of) a pointer to the StoreGateSvc. More...
 
const ServiceHandle< StoreGateSvc > & detStore () const
 The standard StoreGateSvc/DetectorStore Returns (kind of) a pointer to the StoreGateSvc. More...
 
virtual StatusCode sysInitialize () override
 Perform system initialization for an algorithm. More...
 
virtual StatusCode sysStart () override
 Handle START transition. More...
 
virtual std::vector< Gaudi::DataHandle * > inputHandles () const override
 Return this algorithm's input handles. More...
 
virtual std::vector< Gaudi::DataHandle * > outputHandles () const override
 Return this algorithm's output handles. More...
 
Gaudi::Details::PropertyBase & declareProperty (Gaudi::Property< T > &t)
 
Gaudi::Details::PropertyBase * declareProperty (const std::string &name, SG::VarHandleKey &hndl, const std::string &doc, const SG::VarHandleKeyType &)
 Declare a new Gaudi property. More...
 
Gaudi::Details::PropertyBase * declareProperty (const std::string &name, SG::VarHandleBase &hndl, const std::string &doc, const SG::VarHandleType &)
 Declare a new Gaudi property. More...
 
Gaudi::Details::PropertyBase * declareProperty (const std::string &name, SG::VarHandleKeyArray &hndArr, const std::string &doc, const SG::VarHandleKeyArrayType &)
 
Gaudi::Details::PropertyBase * declareProperty (const std::string &name, T &property, const std::string &doc, const SG::NotHandleType &)
 Declare a new Gaudi property. More...
 
Gaudi::Details::PropertyBase * declareProperty (const std::string &name, T &property, const std::string &doc="none")
 Declare a new Gaudi property. More...
 
void updateVHKA (Gaudi::Details::PropertyBase &)
 
MsgStream & msg () const
 
MsgStream & msg (const MSG::Level lvl) const
 
bool msgLvl (const MSG::Level lvl) const
 

Static Public Member Functions

static std::string intervalEnumToString (Interval_t interval)
 Converts a LevelOfDetail_t to a string of the same name. More...
 
static Interval_t intervalStringToEnum (const std::string &str)
 Converts a string to the corresponding Interval_t. More...
 
static const InterfaceID & interfaceID ()
 

Protected Types

typedef std::map< std::string, OutputMetadata * > MDMap_t
 

Protected Member Functions

StatusCode regManagedHistograms (std::vector< MgmtParams< TH1 > > &templateHistograms)
 
StatusCode regManagedGraphs (std::vector< MgmtParams< TGraph > > &templateGraphs)
 
StatusCode regManagedTrees (std::vector< MgmtParams< TTree > > &templateTrees)
 
StatusCode regManagedLWHistograms (std::vector< MgmtParams< LWHist > > &templateLWHistograms)
 
StatusCode regManagedEfficiencies (std::vector< MgmtParams< TEfficiency > > &templateEfficiencies)
 
StatusCode parseList (const std::string &, std::vector< std::string > &)
 
void updateTriggersForGroups (std::vector< std::string > &)
 
StatusCode registerMetadata (const std::string &streamName, const std::string &hName, const MonGroup &group)
 
StatusCode THistSvc_deReg_fixTGraph (TFile *file, TGraph *theGraph, std::string &directoryName)
 Fixes THistSvc->deReg(obj) when obj is TGraph instance. More...
 
unsigned int get_nEvents () const
 
long get_procNEventsProp () const
 
virtual bool trigChainsArePassed (std::vector< std::string > &)
 
virtual StreamNameFcngetNewStreamNameFcn () const
 
bool newLowStatIntervalFlag () const
 Flag functions allowing clients to determine when to book new and process old histograms; values are updated by fillHists() based on counting lumiBlocks, and are correctly set when fillHistograms(), bookHistograms() and procHistograms() are called. More...
 
bool newMedStatIntervalFlag () const
 
bool newHigStatIntervalFlag () const
 
bool newLowStatFlag () const
 
bool newLumiBlockFlag () const
 
bool newRunFlag () const
 
bool newEventsBlockFlag () const
 
bool endOfEventsBlockFlag () const
 
bool endOfLowStatFlag () const
 
bool endOfLumiBlockFlag () const
 
bool endOfRunFlag () const
 
void renounceArray (SG::VarHandleKeyArray &handlesArray)
 remove all handles from I/O resolution More...
 
std::enable_if_t< std::is_void_v< std::result_of_t< decltype(&T::renounce)(T)> > &&!std::is_base_of_v< SG::VarHandleKeyArray, T > &&std::is_base_of_v< Gaudi::DataHandle, T >, void > renounce (T &h)
 
void extraDeps_update_handler (Gaudi::Details::PropertyBase &ExtraDeps)
 Add StoreName to extra input/output deps as needed. More...
 

Protected Attributes

std::map< Interval_t, std::vector< MgmtParams< TH1 > > > m_templateHistograms
 
std::map< Interval_t, std::vector< MgmtParams< TGraph > > > m_templateGraphs
 
std::map< Interval_t, std::vector< MgmtParams< TTree > > > m_templateTrees
 
std::map< Interval_t, std::vector< MgmtParams< LWHist > > > m_templateLWHistograms
 
std::map< Interval_t, std::vector< MgmtParams< TEfficiency > > > m_templateEfficiencies
 
std::vector< std::string > m_vTrigChainNames
 
std::vector< std::string > m_vTrigGroupNames
 
MDMap_t m_metadataMap
 
std::set< LWHist * > m_lwhists
 
AthenaMonManagerm_manager
 
std::string m_managerNameProp
 
std::string m_fileKey
 
std::string m_dataTypeStr
 
std::string m_environmentStr
 
unsigned int m_detailLevel
 
AthenaMonManager::DataType_t m_dataType
 
AthenaMonManager::Environment_t m_environment
 
StreamNameFcnm_streamNameFcn
 
ServiceHandle< ITHistSvc > m_THistSvc
 
PublicToolHandle< Trig::ITrigDecisionToolm_trigDecTool {this, "TrigDecisionTool",""}
 
PublicToolHandle< ITriggerTranslatorToolm_trigTranslator {this,"TriggerTranslatorTool",""}
 
ToolHandleArray< IDQFilterToolm_DQFilterTools {this,"FilterTools",{}}
 
long m_procNEventsProp
 
std::string m_path
 
long m_preScaleProp
 
std::string m_triggerChainProp
 
std::string m_triggerGroupProp
 
bool m_useTrigger
 
unsigned int m_lastLumiBlock
 
unsigned int m_lastRun
 
int m_lastLowStatInterval
 
int m_lastMedStatInterval
 
int m_lastHigStatInterval
 
unsigned int m_nEvents
 
unsigned int m_nEventsIgnoreTrigger
 
unsigned int m_nLumiBlocks
 
bool m_haveClearedLastEventBlock
 

Private Types

typedef ServiceHandle< StoreGateSvcStoreGateSvc_t
 

Private Member Functions

Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T > &hndl, const SG::VarHandleKeyType &)
 specialization for handling Gaudi::Property<SG::VarHandleKey> More...
 
Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T > &hndl, const SG::VarHandleKeyArrayType &)
 specialization for handling Gaudi::Property<SG::VarHandleKeyArray> More...
 
Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T > &hndl, const SG::VarHandleType &)
 specialization for handling Gaudi::Property<SG::VarHandleBase> More...
 
Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T > &t, const SG::NotHandleType &)
 specialization for handling everything that's not a Gaudi::Property<SG::VarHandleKey> or a <SG::VarHandleKeyArray> More...
 

Private Attributes

AsgElectronLikelihoodToolm_electronLooseLHTool {}
 
AsgElectronLikelihoodToolm_electronMediumLHTool {}
 
AsgElectronLikelihoodToolm_electronTightLHTool {}
 
double m_FCalEt {}
 
double m_FCalEt_A {}
 
double m_FCalEt_C {}
 
TH1Dm_h_FCalEt_looseLH {}
 histograms More...
 
TH1Dm_h_FCalEt_mediumLH {}
 
TH1Dm_h_FCalEt_tightLH {}
 
TH1Dm_h_FCalEt_A_looseLH {}
 
TH1Dm_h_FCalEt_A_mediumLH {}
 
TH1Dm_h_FCalEt_A_tightLH {}
 
TH1Dm_h_FCalEt_C_looseLH {}
 
TH1Dm_h_FCalEt_C_mediumLH {}
 
TH1Dm_h_FCalEt_C_tightLH {}
 
TH2D_LWm_h_electron_eta_phi {}
 
TH1Dm_h_electron_z0sintheta {}
 
TH2D_LWm_h_electron_fcal_etcone20_looseLH {}
 
TH2D_LWm_h_electron_fcal_etcone20_mediumLH {}
 
TH2D_LWm_h_electron_fcal_etcone20_tightLH {}
 
TH2D_LWm_h_electron_fcalA_etcone20_looseLH {}
 
TH2D_LWm_h_electron_fcalA_etcone20_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_etcone20_tightLH {}
 
TH2D_LWm_h_electron_fcalC_etcone20_looseLH {}
 
TH2D_LWm_h_electron_fcalC_etcone20_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_etcone20_tightLH {}
 
TH2D_LWm_h_electron_fcal_reta_looseLH {}
 
TH2D_LWm_h_electron_fcal_reta_mediumLH {}
 
TH2D_LWm_h_electron_fcal_reta_tightLH {}
 
TH2D_LWm_h_electron_fcalA_reta_looseLH {}
 
TH2D_LWm_h_electron_fcalA_reta_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_reta_tightLH {}
 
TH2D_LWm_h_electron_fcalC_reta_looseLH {}
 
TH2D_LWm_h_electron_fcalC_reta_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_reta_tightLH {}
 
TH2D_LWm_h_electron_fcal_rphi_looseLH {}
 
TH2D_LWm_h_electron_fcal_rphi_mediumLH {}
 
TH2D_LWm_h_electron_fcal_rphi_tightLH {}
 
TH2D_LWm_h_electron_fcalA_rphi_looseLH {}
 
TH2D_LWm_h_electron_fcalA_rphi_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_rphi_tightLH {}
 
TH2D_LWm_h_electron_fcalC_rphi_looseLH {}
 
TH2D_LWm_h_electron_fcalC_rphi_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_rphi_tightLH {}
 
TH2D_LWm_h_electron_fcal_weta2_looseLH {}
 
TH2D_LWm_h_electron_fcal_weta2_mediumLH {}
 
TH2D_LWm_h_electron_fcal_weta2_tightLH {}
 
TH2D_LWm_h_electron_fcalA_weta2_looseLH {}
 
TH2D_LWm_h_electron_fcalA_weta2_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_weta2_tightLH {}
 
TH2D_LWm_h_electron_fcalC_weta2_looseLH {}
 
TH2D_LWm_h_electron_fcalC_weta2_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_weta2_tightLH {}
 
TH2D_LWm_h_electron_fcal_rhad_looseLH {}
 
TH2D_LWm_h_electron_fcal_rhad_mediumLH {}
 
TH2D_LWm_h_electron_fcal_rhad_tightLH {}
 
TH2D_LWm_h_electron_fcalA_rhad_looseLH {}
 
TH2D_LWm_h_electron_fcalA_rhad_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_rhad_tightLH {}
 
TH2D_LWm_h_electron_fcalC_rhad_looseLH {}
 
TH2D_LWm_h_electron_fcalC_rhad_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_rhad_tightLH {}
 
TH2D_LWm_h_electron_fcal_eratio_looseLH {}
 
TH2D_LWm_h_electron_fcal_eratio_mediumLH {}
 
TH2D_LWm_h_electron_fcal_eratio_tightLH {}
 
TH2D_LWm_h_electron_fcalA_eratio_looseLH {}
 
TH2D_LWm_h_electron_fcalA_eratio_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_eratio_tightLH {}
 
TH2D_LWm_h_electron_fcalC_eratio_looseLH {}
 
TH2D_LWm_h_electron_fcalC_eratio_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_eratio_tightLH {}
 
TH2D_LWm_h_electron_fcal_f1_looseLH {}
 
TH2D_LWm_h_electron_fcal_f1_mediumLH {}
 
TH2D_LWm_h_electron_fcal_f1_tightLH {}
 
TH2D_LWm_h_electron_fcalA_f1_looseLH {}
 
TH2D_LWm_h_electron_fcalA_f1_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_f1_tightLH {}
 
TH2D_LWm_h_electron_fcalC_f1_looseLH {}
 
TH2D_LWm_h_electron_fcalC_f1_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_f1_tightLH {}
 
TH2D_LWm_h_electron_fcal_f3_looseLH {}
 
TH2D_LWm_h_electron_fcal_f3_mediumLH {}
 
TH2D_LWm_h_electron_fcal_f3_tightLH {}
 
TH2D_LWm_h_electron_fcalA_f3_looseLH {}
 
TH2D_LWm_h_electron_fcalA_f3_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_f3_tightLH {}
 
TH2D_LWm_h_electron_fcalC_f3_looseLH {}
 
TH2D_LWm_h_electron_fcalC_f3_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_f3_tightLH {}
 
TH2D_LWm_h_electron_fcal_deltaeta1_looseLH {}
 
TH2D_LWm_h_electron_fcal_deltaeta1_mediumLH {}
 
TH2D_LWm_h_electron_fcal_deltaeta1_tightLH {}
 
TH2D_LWm_h_electron_fcalA_deltaeta1_looseLH {}
 
TH2D_LWm_h_electron_fcalA_deltaeta1_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_deltaeta1_tightLH {}
 
TH2D_LWm_h_electron_fcalC_deltaeta1_looseLH {}
 
TH2D_LWm_h_electron_fcalC_deltaeta1_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_deltaeta1_tightLH {}
 
TH2D_LWm_h_electron_fcal_deltaphires_looseLH {}
 
TH2D_LWm_h_electron_fcal_deltaphires_mediumLH {}
 
TH2D_LWm_h_electron_fcal_deltaphires_tightLH {}
 
TH2D_LWm_h_electron_fcalA_deltaphires_looseLH {}
 
TH2D_LWm_h_electron_fcalA_deltaphires_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_deltaphires_tightLH {}
 
TH2D_LWm_h_electron_fcalC_deltaphires_looseLH {}
 
TH2D_LWm_h_electron_fcalC_deltaphires_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_deltaphires_tightLH {}
 
TH2D_LWm_h_electron_fcal_eprobabilityht_looseLH {}
 
TH2D_LWm_h_electron_fcal_eprobabilityht_mediumLH {}
 
TH2D_LWm_h_electron_fcal_eprobabilityht_tightLH {}
 
TH2D_LWm_h_electron_fcalA_eprobabilityht_looseLH {}
 
TH2D_LWm_h_electron_fcalA_eprobabilityht_mediumLH {}
 
TH2D_LWm_h_electron_fcalA_eprobabilityht_tightLH {}
 
TH2D_LWm_h_electron_fcalC_eprobabilityht_looseLH {}
 
TH2D_LWm_h_electron_fcalC_eprobabilityht_mediumLH {}
 
TH2D_LWm_h_electron_fcalC_eprobabilityht_tightLH {}
 
int m_FCalEt_nbins
 histograms ranges and binning More...
 
double m_low_FCalEt
 
double m_high_FCalEt
 
int m_FCalEt_oneSide_nbins
 
double m_low_FCalEt_oneSide
 
double m_high_FCalEt_oneSide
 
int m_eta_nbins
 
double m_low_eta
 
double m_high_eta
 
int m_phi_nbins
 
double m_low_phi
 
double m_high_phi
 
int m_z0sintheta_nbins
 
double m_low_z0sintheta
 
double m_high_z0sintheta
 
int m_iso_nbins
 
double m_low_iso
 
double m_high_iso
 
int m_reta_nbins
 
double m_low_reta
 
double m_high_reta
 
int m_rphi_nbins
 
double m_low_rphi
 
double m_high_rphi
 
int m_weta2_nbins
 
double m_low_weta2
 
double m_high_weta2
 
int m_rhad_nbins
 
double m_low_rhad
 
double m_high_rhad
 
int m_eratio_nbins
 
double m_low_eratio
 
double m_high_eratio
 
int m_f1_nbins
 
double m_low_f1
 
double m_high_f1
 
int m_f3_nbins
 
double m_low_f3
 
double m_high_f3
 
int m_deltaeta1_nbins
 
double m_low_deltaeta1
 
double m_high_deltaeta1
 
int m_deltaphires_nbins
 
double m_low_deltaphires
 
double m_high_deltaphires
 
int m_eprobabilityht_nbins
 
double m_low_eprobabilityht
 
double m_high_eprobabilityht
 
bool m_newLowStatInterval
 
bool m_newMedStatInterval
 
bool m_newHigStatInterval
 
bool m_newLowStat
 
bool m_newLumiBlock
 
bool m_newRun
 
bool m_newEventsBlock
 
bool m_endOfEventsBlock
 
bool m_endOfLowStat
 
bool m_endOfLumiBlock
 
bool m_endOfRun
 
SG::ReadCondHandleKey< LuminosityCondDatam_lumiDataKey {this,"LuminosityCondDataKey","LuminosityCondData","SG Key of LuminosityCondData object"}
 
SG::ReadCondHandleKey< LBDurationCondDatam_lbDurationDataKey {this,"LBDurationCondDataKey","LBDurationCondData","SG Key of LBDurationCondData object"}
 
SG::ReadCondHandleKey< TrigLiveFractionCondDatam_trigLiveFractionDataKey {this,"TrigLiveFractionCondDataKey","TrigLiveFractionCondData","SG Key of TrigLiveFractionCondData object"}
 
bool m_bookHistogramsInitial
 
bool m_useLumi
 
float m_defaultLBDuration
 
std::set< Interval_tm_supportedIntervalsForRebooking
 
Impm_d
 
StoreGateSvc_t m_evtStore
 Pointer to StoreGate (event store by default) More...
 
StoreGateSvc_t m_detStore
 Pointer to StoreGate (detector store by default) More...
 
std::vector< SG::VarHandleKeyArray * > m_vhka
 
bool m_varHandleArraysDeclared
 

Detailed Description

Definition at line 15 of file HIMonitoringElectronsTool.h.

Member Typedef Documentation

◆ MDMap_t

typedef std::map<std::string,OutputMetadata*> ManagedMonitorToolBase::MDMap_t
protectedinherited

Definition at line 888 of file ManagedMonitorToolBase.h.

◆ StoreGateSvc_t

typedef ServiceHandle<StoreGateSvc> AthCommonDataStore< AthCommonMsg< AlgTool > >::StoreGateSvc_t
privateinherited

Definition at line 388 of file AthCommonDataStore.h.

Member Enumeration Documentation

◆ Interval_t

An enumeration describing how detailed a particular monitoring object is.

summary: used to summarize the state of the system

runstat: same as summary

shift: used to flag potential problems

expert: essential for diagnosing problems identified by shift-level objects

debug: useful for standalone debugging, but not for routine monitoring; not essential for diagnosing problems during normal running

transient: too detailed to ever be written; always summarized by the user by means of another object An enumeration describing the interval over which a particular monitoring object is filled (i.e., interval over which the method Fill(...) is called). This information may be stored with the monitoring object if an application is only able to partially fill the object (i.e., a job sees only part of a run or fill). This information may be ignored in some running Environments. The 'fill' interval corresponds to a fill of the LHC. The 'all' interval corresponds to all available data. The 'lumiBlock' and 'fill' intervals are only valid for the 'collisions' DataType_t.

Enumerator
file 
eventsBlock 
lumiBlock 
lowStat 
medStat 
higStat 
run 
fill 
all 

Definition at line 114 of file ManagedMonitorToolBase.h.

114  { file = 0, eventsBlock, lumiBlock,
116  run, fill, all };

◆ MgmtAttr_t

An enumeration describing how the class handles the histogram.

attrib_unmanaged: histograms with this attribute will not be rebooked automatically and must be managed by the user code.

attrib_x_is_lb: indicates that the x-axis of the histogram is the luminosity block number and that the histogram should be rebooked as necessary if the current LB exceeds the range.

Enumerator
ATTRIB_MANAGED 
ATTRIB_UNMANAGED 
ATTRIB_X_VS_LB 

Definition at line 131 of file ManagedMonitorToolBase.h.

Constructor & Destructor Documentation

◆ HIMonitoringElectronsTool()

HIMonitoringElectronsTool::HIMonitoringElectronsTool ( const std::string &  type,
const std::string &  name,
const IInterface *  parent 
)

Definition at line 15 of file HIMonitoringElectronsTool.cxx.

18  m_FCalEt = 0;
19  m_FCalEt_A = 0;
20  m_FCalEt_C = 0;
21 
22  //From Dominik Derendarz - manual cherry-picking of 345b289e
23  declareProperty( "FCalEt_nbins", m_FCalEt_nbins=96 );
24  declareProperty( "lowFCalEt", m_low_FCalEt=-0.16 );
25  declareProperty( "highFCalEt", m_high_FCalEt=0.8 );
29  //In master, before the cherry picking, was:
30  //m_FCalEt_nbins = 95;
31  //m_low_FCalEt = -0.15;
32  //m_high_FCalEt = 0.8;
33  //m_FCalEt_oneSide_nbins = 50;
34  //m_low_FCalEt_oneSide = -0.1;
35  //m_high_FCalEt_oneSide = 0.4;
36 
37  m_eta_nbins = 60;
38  m_low_eta = -3.0;
39  m_high_eta = 3.0;
40 
41  m_phi_nbins = 64;
42  m_low_phi = -3.14159;
43  m_high_phi = 3.14159;
44 
45  m_z0sintheta_nbins = 50;
46  m_low_z0sintheta = -10.0;
47  m_high_z0sintheta = 10.0;
48 
49  m_iso_nbins = 60;
50  m_low_iso = -30.0;
51  m_high_iso = 30.0;
52 
53  m_reta_nbins = 40;
54  m_low_reta = 0.7;
55  m_high_reta = 1.1;
56 
57  m_rphi_nbins = 50;
58  m_low_rphi = 0.6;
59  m_high_rphi = 1.1;
60 
61  m_weta2_nbins = 50;
62  m_low_weta2 = 0.005;
63  m_high_weta2 = 0.015;
64 
65  m_rhad_nbins = 60;
66  m_low_rhad = -0.3;
67  m_high_rhad = 0.3;
68 
69  m_eratio_nbins = 60;
70  m_low_eratio = -0.1;
71  m_high_eratio = 1.1;
72 
73  m_f1_nbins = 65;
74  m_low_f1 = -0.05;
75  m_high_f1 = 0.6;
76 
77  m_f3_nbins = 80;
78  m_low_f3 = -0.05;
79  m_high_f3 = 0.15;
80 
81  m_deltaeta1_nbins = 50;
82  m_low_deltaeta1 = -0.05;
83  m_high_deltaeta1 = 0.05;
84 
86  m_low_deltaphires = -0.05;
87  m_high_deltaphires = 0.05;
88 
90  m_low_eprobabilityht = -0.1;
92 
93  StatusCode sc;
94  //LH-based selection tools
95  m_electronLooseLHTool = new AsgElectronLikelihoodTool("ElectronLooseLHTool");
96  sc &= m_electronLooseLHTool->setProperty("ConfigFile",
97  "ElectronPhotonSelectorTools/offline/mc15_20160512/ElectronLikelihoodLooseOfflineConfig2016_Smooth.conf");
98  if (!m_electronLooseLHTool->initialize().isSuccess()) {
99  Fatal("MyFunction", "Failed to initialize ElectronLooseLHTool ");
100  }
101 
102  m_electronMediumLHTool = new AsgElectronLikelihoodTool("ElectronMediumLHTool");
103  sc &= m_electronMediumLHTool->setProperty("ConfigFile",
104  "ElectronPhotonSelectorTools/offline/mc15_20160512/ElectronLikelihoodMediumOfflineConfig2016_Smooth.conf");
105  if (!m_electronMediumLHTool->initialize().isSuccess()) {
106  Fatal("MyFunction", "Failed to initialize ElectronMediumLHTool ");
107  }
108 
109  m_electronTightLHTool = new AsgElectronLikelihoodTool("ElectronTightLHTool");
110  sc &= m_electronTightLHTool->setProperty("ConfigFile",
111  "ElectronPhotonSelectorTools/offline/mc15_20160512/ElectronLikelihoodTightOfflineConfig2016_Smooth.conf");
112  if (!m_electronTightLHTool->initialize().isSuccess()) {
113  Fatal("MyFunction", "Failed to initialize ElectronTightLHTool ");
114  }
115 
116  if (sc.isFailure()) {
117  Warning("MyFunction", "Failed to set some properties");
118  }
119 }

◆ ~HIMonitoringElectronsTool()

HIMonitoringElectronsTool::~HIMonitoringElectronsTool ( )
virtual

Definition at line 121 of file HIMonitoringElectronsTool.cxx.

121  {
122 }

Member Function Documentation

◆ book_hist()

void HIMonitoringElectronsTool::book_hist ( )

Definition at line 407 of file HIMonitoringElectronsTool.cxx.

407  {
408  std::string path = "HeavyIon/Electrons";
409 
410  //FCal sum Et
411  m_h_FCalEt_looseLH = new TH1D("h_FCalEt_looseLH", "; FCal #Sigma E_{T} [TeV]; entries", m_FCalEt_nbins, m_low_FCalEt,
412  m_high_FCalEt);
413  regHist(m_h_FCalEt_looseLH, path, run).ignore();
414  m_h_FCalEt_mediumLH = new TH1D("h_FCalEt_mediumLH", "; FCal #Sigma E_{T} [TeV]; entries", m_FCalEt_nbins,
416  regHist(m_h_FCalEt_mediumLH, path, run).ignore();
417  m_h_FCalEt_tightLH = new TH1D("h_FCalEt_tightLH", "; FCal #Sigma E_{T} [TeV]; entries", m_FCalEt_nbins, m_low_FCalEt,
418  m_high_FCalEt);
419  regHist(m_h_FCalEt_tightLH, path, run).ignore();
420 
421  //FCal sum Et, side A
422  m_h_FCalEt_A_looseLH = new TH1D("h_FCalEt_A_looseLH", "; FCal A #Sigma E_{T} [TeV]; entries", m_FCalEt_oneSide_nbins,
424  regHist(m_h_FCalEt_A_looseLH, path, run).ignore();
425  m_h_FCalEt_A_mediumLH = new TH1D("h_FCalEt_A_mediumLH", "; FCal A #Sigma E_{T} [TeV]; entries",
428  m_h_FCalEt_A_tightLH = new TH1D("h_FCalEt_A_tightLH", "; FCal A #Sigma E_{T} [TeV]; entries", m_FCalEt_oneSide_nbins,
430  regHist(m_h_FCalEt_A_tightLH, path, run).ignore();
431 
432  //FCal sum Et, side C
433  m_h_FCalEt_C_looseLH = new TH1D("h_FCalEt_C_looseLH", "; FCal C #Sigma E_{T} [TeV]; entries", m_FCalEt_oneSide_nbins,
435  regHist(m_h_FCalEt_C_looseLH, path, run).ignore();
436  m_h_FCalEt_C_mediumLH = new TH1D("h_FCalEt_C_mediumLH", "; FCal C #Sigma E_{T} [TeV]; entries",
439  m_h_FCalEt_C_tightLH = new TH1D("h_FCalEt_C_tightLH", "; FCal C #Sigma E_{T} [TeV]; entries", m_FCalEt_oneSide_nbins,
441  regHist(m_h_FCalEt_C_tightLH, path, run).ignore();
442 
443  //eta vs phi
444  m_h_electron_eta_phi = TH2D_LW::create("h_electron_eta_phi", "; #eta; #phi", m_eta_nbins, m_low_eta, m_high_eta,
446  regHist(m_h_electron_eta_phi, path, run).ignore();
447 
448  //GSF track z0*sin(theta)
449  m_h_electron_z0sintheta = new TH1D("h_electron_z0sintheta", "; z0 sin#theta [mm]; entries", m_z0sintheta_nbins,
452 
453  //isolation vs centrality
454  m_h_electron_fcal_etcone20_looseLH = TH2D_LW::create("h_electron_fcal_etcone20_looseLH",
455  "; FCal #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
459  m_h_electron_fcal_etcone20_mediumLH = TH2D_LW::create("h_electron_fcal_etcone20_mediumLH",
460  "; FCal #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
464  m_h_electron_fcal_etcone20_tightLH = TH2D_LW::create("h_electron_fcal_etcone20_tightLH",
465  "; FCal #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
469 
470  //isolation vs centrality, side A
471  m_h_electron_fcalA_etcone20_looseLH = TH2D_LW::create("h_electron_fcalA_etcone20_looseLH",
472  "; FCal A #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
476  m_h_electron_fcalA_etcone20_mediumLH = TH2D_LW::create("h_electron_fcalA_etcone20_mediumLH",
477  "; FCal A #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
481  m_h_electron_fcalA_etcone20_tightLH = TH2D_LW::create("h_electron_fcalA_etcone20_tightLH",
482  "; FCal A #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
486 
487  //isolation vs centrality, side C
488  m_h_electron_fcalC_etcone20_looseLH = TH2D_LW::create("h_electron_fcalC_etcone20_looseLH",
489  "; FCal C #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
493  m_h_electron_fcalC_etcone20_mediumLH = TH2D_LW::create("h_electron_fcalC_etcone20_mediumLH",
494  "; FCal C #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
498  m_h_electron_fcalC_etcone20_tightLH = TH2D_LW::create("h_electron_fcalC_etcone20_tightLH",
499  "; FCal C #Sigma E_{T} [TeV]; electron etcone20 [GeV]",
503 
504  //R_eta
505  m_h_electron_fcal_reta_looseLH = TH2D_LW::create("h_electron_fcal_reta_looseLH",
506  "; FCal #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_nbins, m_low_FCalEt,
509  m_h_electron_fcal_reta_mediumLH = TH2D_LW::create("h_electron_fcal_reta_mediumLH",
510  "; FCal #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_nbins, m_low_FCalEt,
513  m_h_electron_fcal_reta_tightLH = TH2D_LW::create("h_electron_fcal_reta_tightLH",
514  "; FCal #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_nbins, m_low_FCalEt,
517 
518  //R_eta, side A centrality
519  m_h_electron_fcalA_reta_looseLH = TH2D_LW::create("h_electron_fcalA_reta_looseLH",
520  "; FCal A #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
524  m_h_electron_fcalA_reta_mediumLH = TH2D_LW::create("h_electron_fcalA_reta_mediumLH",
525  "; FCal A #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
529  m_h_electron_fcalA_reta_tightLH = TH2D_LW::create("h_electron_fcalA_reta_tightLH",
530  "; FCal A #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
534 
535  //R_eta, side C centrality
536  m_h_electron_fcalC_reta_looseLH = TH2D_LW::create("h_electron_fcalC_reta_looseLH",
537  "; FCal C #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
541  m_h_electron_fcalC_reta_mediumLH = TH2D_LW::create("h_electron_fcalC_reta_mediumLH",
542  "; FCal C #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
546  m_h_electron_fcalC_reta_tightLH = TH2D_LW::create("h_electron_fcalC_reta_tightLH",
547  "; FCal C #Sigma E_{T} [TeV]; R_{#eta}", m_FCalEt_oneSide_nbins,
551 
552  //R_phi
553  m_h_electron_fcal_rphi_looseLH = TH2D_LW::create("h_electron_fcal_rphi_looseLH",
554  "; FCal #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_nbins, m_low_FCalEt,
557  m_h_electron_fcal_rphi_mediumLH = TH2D_LW::create("h_electron_fcal_rphi_mediumLH",
558  "; FCal #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_nbins, m_low_FCalEt,
561  m_h_electron_fcal_rphi_tightLH = TH2D_LW::create("h_electron_fcal_rphi_tightLH",
562  "; FCal #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_nbins, m_low_FCalEt,
565 
566  //R_phi, side A centrality
567  m_h_electron_fcalA_rphi_looseLH = TH2D_LW::create("h_electron_fcalA_rphi_looseLH",
568  "; FCal A #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
572  m_h_electron_fcalA_rphi_mediumLH = TH2D_LW::create("h_electron_fcalA_rphi_mediumLH",
573  "; FCal A #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
577  m_h_electron_fcalA_rphi_tightLH = TH2D_LW::create("h_electron_fcalA_rphi_tightLH",
578  "; FCal A #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
582 
583  //R_phi, side C centrality
584  m_h_electron_fcalC_rphi_looseLH = TH2D_LW::create("h_electron_fcalC_rphi_looseLH",
585  "; FCal C #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
589  m_h_electron_fcalC_rphi_mediumLH = TH2D_LW::create("h_electron_fcalC_rphi_mediumLH",
590  "; FCal C #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
594  m_h_electron_fcalC_rphi_tightLH = TH2D_LW::create("h_electron_fcalC_rphi_tightLH",
595  "; FCal C #Sigma E_{T} [TeV]; R_{#phi}", m_FCalEt_oneSide_nbins,
599 
600  //W_eta2
601  m_h_electron_fcal_weta2_looseLH = TH2D_LW::create("h_electron_fcal_weta2_looseLH",
602  "; FCal #Sigma E_{T} [TeV]; W_{#eta^{2}}", m_FCalEt_nbins,
604  m_high_weta2);
606  m_h_electron_fcal_weta2_mediumLH = TH2D_LW::create("h_electron_fcal_weta2_mediumLH",
607  "; FCal #Sigma E_{T} [TeV]; W_{#eta^{2}}", m_FCalEt_nbins,
609  m_high_weta2);
611  m_h_electron_fcal_weta2_tightLH = TH2D_LW::create("h_electron_fcal_weta2_tightLH",
612  "; FCal #Sigma E_{T} [TeV]; W_{#eta^{2}}", m_FCalEt_nbins,
614  m_high_weta2);
616 
617  //W_eta2, side A centrality
618  m_h_electron_fcalA_weta2_looseLH = TH2D_LW::create("h_electron_fcalA_weta2_looseLH",
619  "; FCal A #Sigma E_{T} [TeV]; W_{#eta^{2}}",
623  m_h_electron_fcalA_weta2_mediumLH = TH2D_LW::create("h_electron_fcalA_weta2_mediumLH",
624  "; FCal A #Sigma E_{T} [TeV]; W_{#eta^{2}}",
628  m_h_electron_fcalA_weta2_tightLH = TH2D_LW::create("h_electron_fcalA_weta2_tightLH",
629  "; FCal A #Sigma E_{T} [TeV]; W_{#eta^{2}}",
633 
634  //W_eta2, side C centrality
635  m_h_electron_fcalC_weta2_looseLH = TH2D_LW::create("h_electron_fcalC_weta2_looseLH",
636  "; FCal C #Sigma E_{T} [TeV]; W_{#eta^{2}}",
640  m_h_electron_fcalC_weta2_mediumLH = TH2D_LW::create("h_electron_fcalC_weta2_mediumLH",
641  "; FCal C #Sigma E_{T} [TeV]; W_{#eta^{2}}",
645  m_h_electron_fcalC_weta2_tightLH = TH2D_LW::create("h_electron_fcalC_weta2_tightLH",
646  "; FCal C #Sigma E_{T} [TeV]; W_{#eta^{2}}",
650 
651  //R_had
652  m_h_electron_fcal_rhad_looseLH = TH2D_LW::create("h_electron_fcal_rhad_looseLH", "; FCal #Sigma E_{T} [TeV]; R_{had}",
656  m_h_electron_fcal_rhad_mediumLH = TH2D_LW::create("h_electron_fcal_rhad_mediumLH",
657  "; FCal #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_nbins, m_low_FCalEt,
660  m_h_electron_fcal_rhad_tightLH = TH2D_LW::create("h_electron_fcal_rhad_tightLH", "; FCal #Sigma E_{T} [TeV]; R_{had}",
664 
665  //R_had, side A centrality
666  m_h_electron_fcalA_rhad_looseLH = TH2D_LW::create("h_electron_fcalA_rhad_looseLH",
667  "; FCal A #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
671  m_h_electron_fcalA_rhad_mediumLH = TH2D_LW::create("h_electron_fcalA_rhad_mediumLH",
672  "; FCal A #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
676  m_h_electron_fcalA_rhad_tightLH = TH2D_LW::create("h_electron_fcalA_rhad_tightLH",
677  "; FCal A #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
681 
682  //R_had, side C centrality
683  m_h_electron_fcalC_rhad_looseLH = TH2D_LW::create("h_electron_fcalC_rhad_looseLH",
684  "; FCal C #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
688  m_h_electron_fcalC_rhad_mediumLH = TH2D_LW::create("h_electron_fcalC_rhad_mediumLH",
689  "; FCal C #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
693  m_h_electron_fcalC_rhad_tightLH = TH2D_LW::create("h_electron_fcalC_rhad_tightLH",
694  "; FCal C #Sigma E_{T} [TeV]; R_{had}", m_FCalEt_oneSide_nbins,
698 
699  //E_ratio
700  m_h_electron_fcal_eratio_looseLH = TH2D_LW::create("h_electron_fcal_eratio_looseLH",
701  "; FCal #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_nbins,
703  m_high_eratio);
705  m_h_electron_fcal_eratio_mediumLH = TH2D_LW::create("h_electron_fcal_eratio_mediumLH",
706  "; FCal #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_nbins,
708  m_high_eratio);
710  m_h_electron_fcal_eratio_tightLH = TH2D_LW::create("h_electron_fcal_eratio_tightLH",
711  "; FCal #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_nbins,
713  m_high_eratio);
715 
716  //E_ratio, side A centrality
717  m_h_electron_fcalA_eratio_looseLH = TH2D_LW::create("h_electron_fcalA_eratio_looseLH",
718  "; FCal A #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
722  m_h_electron_fcalA_eratio_mediumLH = TH2D_LW::create("h_electron_fcalA_eratio_mediumLH",
723  "; FCal A #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
727  m_h_electron_fcalA_eratio_tightLH = TH2D_LW::create("h_electron_fcalA_eratio_tightLH",
728  "; FCal A #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
732 
733  //E_ratio, side C centrality
734  m_h_electron_fcalC_eratio_looseLH = TH2D_LW::create("h_electron_fcalC_eratio_looseLH",
735  "; FCal C #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
739  m_h_electron_fcalC_eratio_mediumLH = TH2D_LW::create("h_electron_fcalC_eratio_mediumLH",
740  "; FCal C #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
744  m_h_electron_fcalC_eratio_tightLH = TH2D_LW::create("h_electron_fcalC_eratio_tightLH",
745  "; FCal C #Sigma E_{T} [TeV]; E_{ratio}", m_FCalEt_oneSide_nbins,
749 
750  //f_1
751  m_h_electron_fcal_f1_looseLH = TH2D_LW::create("h_electron_fcal_f1_looseLH", "; FCal #Sigma E_{T} [TeV]; f_{1}",
753  m_high_f1);
755  m_h_electron_fcal_f1_mediumLH = TH2D_LW::create("h_electron_fcal_f1_mediumLH", "; FCal #Sigma E_{T} [TeV]; f_{1}",
757  m_high_f1);
759  m_h_electron_fcal_f1_tightLH = TH2D_LW::create("h_electron_fcal_f1_tightLH", "; FCal #Sigma E_{T} [TeV]; f_{1}",
761  m_high_f1);
763 
764  //f_1, side A centrality
765  m_h_electron_fcalA_f1_looseLH = TH2D_LW::create("h_electron_fcalA_f1_looseLH", "; FCal A #Sigma E_{T} [TeV]; f_{1}",
769  m_h_electron_fcalA_f1_mediumLH = TH2D_LW::create("h_electron_fcalA_f1_mediumLH", "; FCal A #Sigma E_{T} [TeV]; f_{1}",
773  m_h_electron_fcalA_f1_tightLH = TH2D_LW::create("h_electron_fcalA_f1_tightLH", "; FCal A #Sigma E_{T} [TeV]; f_{1}",
777 
778  //f_1, side C centrality
779  m_h_electron_fcalC_f1_looseLH = TH2D_LW::create("h_electron_fcalC_f1_looseLH", "; FCal C #Sigma E_{T} [TeV]; f_{1}",
783  m_h_electron_fcalC_f1_mediumLH = TH2D_LW::create("h_electron_fcalC_f1_mediumLH", "; FCal C #Sigma E_{T} [TeV]; f_{1}",
787  m_h_electron_fcalC_f1_tightLH = TH2D_LW::create("h_electron_fcalC_f1_tightLH", "; FCal C #Sigma E_{T} [TeV]; f_{1}",
791 
792  //f_3
793  m_h_electron_fcal_f3_looseLH = TH2D_LW::create("h_electron_fcal_f3_looseLH", "; FCal #Sigma E_{T} [TeV]; f_{3}",
795  m_high_f3);
797  m_h_electron_fcal_f3_mediumLH = TH2D_LW::create("h_electron_fcal_f3_mediumLH", "; FCal #Sigma E_{T} [TeV]; f_{3}",
799  m_high_f3);
801  m_h_electron_fcal_f3_tightLH = TH2D_LW::create("h_electron_fcal_f3_tightLH", "; FCal #Sigma E_{T} [TeV]; f_{3}",
803  m_high_f3);
805 
806  //f_3, side A centrality
807  m_h_electron_fcalA_f3_looseLH = TH2D_LW::create("h_electron_fcalA_f3_looseLH", "; FCal A #Sigma E_{T} [TeV]; f_{3}",
811  m_h_electron_fcalA_f3_mediumLH = TH2D_LW::create("h_electron_fcalA_f3_mediumLH", "; FCal A #Sigma E_{T} [TeV]; f_{3}",
815  m_h_electron_fcalA_f3_tightLH = TH2D_LW::create("h_electron_fcalA_f3_tightLH", "; FCal A #Sigma E_{T} [TeV]; f_{3}",
819 
820  //f_3, side C centrality
821  m_h_electron_fcalC_f3_looseLH = TH2D_LW::create("h_electron_fcalC_f3_looseLH", "; FCal C #Sigma E_{T} [TeV]; f_{3}",
825  m_h_electron_fcalC_f3_mediumLH = TH2D_LW::create("h_electron_fcalC_f3_mediumLH", "; FCal C #Sigma E_{T} [TeV]; f_{3}",
829  m_h_electron_fcalC_f3_tightLH = TH2D_LW::create("h_electron_fcalC_f3_tightLH", "; FCal C #Sigma E_{T} [TeV]; f_{3}",
833 
834  //delta_eta1
835  m_h_electron_fcal_deltaeta1_looseLH = TH2D_LW::create("h_electron_fcal_deltaeta1_looseLH",
836  "; FCal #Sigma E_{T} [TeV]; #Delta#eta", m_FCalEt_nbins,
840  m_h_electron_fcal_deltaeta1_mediumLH = TH2D_LW::create("h_electron_fcal_deltaeta1_mediumLH",
841  "; FCal #Sigma E_{T} [TeV]; #Delta#eta", m_FCalEt_nbins,
845  m_h_electron_fcal_deltaeta1_tightLH = TH2D_LW::create("h_electron_fcal_deltaeta1_tightLH",
846  "; FCal #Sigma E_{T} [TeV]; #Delta#eta", m_FCalEt_nbins,
850 
851  //delta_eta1, side A centrality
852  m_h_electron_fcalA_deltaeta1_looseLH = TH2D_LW::create("h_electron_fcalA_deltaeta1_looseLH",
853  "; FCal A #Sigma E_{T} [TeV]; #Delta#eta",
858  m_h_electron_fcalA_deltaeta1_mediumLH = TH2D_LW::create("h_electron_fcalA_deltaeta1_mediumLH",
859  "; FCal A #Sigma E_{T} [TeV]; #Delta#eta",
864  m_h_electron_fcalA_deltaeta1_tightLH = TH2D_LW::create("h_electron_fcalA_deltaeta1_tightLH",
865  "; FCal A #Sigma E_{T} [TeV]; #Delta#eta",
870 
871  //delta_eta1, side C centrality
872  m_h_electron_fcalC_deltaeta1_looseLH = TH2D_LW::create("h_electron_fcalC_deltaeta1_looseLH",
873  "; FCal C #Sigma E_{T} [TeV]; #Delta#eta",
878  m_h_electron_fcalC_deltaeta1_mediumLH = TH2D_LW::create("h_electron_fcalC_deltaeta1_mediumLH",
879  "; FCal C #Sigma E_{T} [TeV]; #Delta#eta",
884  m_h_electron_fcalC_deltaeta1_tightLH = TH2D_LW::create("h_electron_fcalC_deltaeta1_tightLH",
885  "; FCal C #Sigma E_{T} [TeV]; #Delta#eta",
890 
891  //delta_phi_rescaled
892  m_h_electron_fcal_deltaphires_looseLH = TH2D_LW::create("h_electron_fcal_deltaphires_looseLH",
893  "; FCal #Sigma E_{T} [TeV]; #Delta#phi rescaled",
897  m_h_electron_fcal_deltaphires_mediumLH = TH2D_LW::create("h_electron_fcal_deltaphires_mediumLH",
898  "; FCal #Sigma E_{T} [TeV]; #Delta#phi rescaled",
902  m_h_electron_fcal_deltaphires_tightLH = TH2D_LW::create("h_electron_fcal_deltaphires_tightLH",
903  "; FCal #Sigma E_{T} [TeV]; #Delta#phi rescaled",
907 
908  //delta_phi_rescaled, side A centrality
909  m_h_electron_fcalA_deltaphires_looseLH = TH2D_LW::create("h_electron_fcalA_deltaphires_looseLH",
910  "; FCal A #Sigma E_{T} [TeV]; #Delta#phi rescaled",
915  m_h_electron_fcalA_deltaphires_mediumLH = TH2D_LW::create("h_electron_fcalA_deltaphires_mediumLH",
916  "; FCal A #Sigma E_{T} [TeV]; #Delta#phi rescaled",
921  m_h_electron_fcalA_deltaphires_tightLH = TH2D_LW::create("h_electron_fcalA_deltaphires_tightLH",
922  "; FCal A #Sigma E_{T} [TeV]; #Delta#phi rescaled",
927 
928  //delta_phi_rescaled, side C centrality
929  m_h_electron_fcalC_deltaphires_looseLH = TH2D_LW::create("h_electron_fcalC_deltaphires_looseLH",
930  "; FCal C #Sigma E_{T} [TeV]; #Delta#phi rescaled",
935  m_h_electron_fcalC_deltaphires_mediumLH = TH2D_LW::create("h_electron_fcalC_deltaphires_mediumLH",
936  "; FCal C #Sigma E_{T} [TeV]; #Delta#phi rescaled",
941  m_h_electron_fcalC_deltaphires_tightLH = TH2D_LW::create("h_electron_fcalC_deltaphires_tightLH",
942  "; FCal C #Sigma E_{T} [TeV]; #Delta#phi rescaled",
947 
948  //e_probability_HT
949  m_h_electron_fcal_eprobabilityht_looseLH = TH2D_LW::create("h_electron_fcal_eprobabilityht_looseLH",
950  "; FCal #Sigma E_{T} [TeV]; eProbabilityHT",
955  m_h_electron_fcal_eprobabilityht_mediumLH = TH2D_LW::create("h_electron_fcal_eprobabilityht_mediumLH",
956  "; FCal #Sigma E_{T} [TeV]; eProbabilityHT",
961  m_h_electron_fcal_eprobabilityht_tightLH = TH2D_LW::create("h_electron_fcal_eprobabilityht_tightLH",
962  "; FCal #Sigma E_{T} [TeV]; eProbabilityHT",
967 
968  //e_probability_HT, side A centrality
969  m_h_electron_fcalA_eprobabilityht_looseLH = TH2D_LW::create("h_electron_fcalA_eprobabilityht_looseLH",
970  "; FCal A #Sigma E_{T} [TeV]; eProbabilityHT",
975  m_h_electron_fcalA_eprobabilityht_mediumLH = TH2D_LW::create("h_electron_fcalA_eprobabilityht_mediumLH",
976  "; FCal A #Sigma E_{T} [TeV]; eProbabilityHT",
981  m_h_electron_fcalA_eprobabilityht_tightLH = TH2D_LW::create("h_electron_fcalA_eprobabilityht_tightLH",
982  "; FCal A #Sigma E_{T} [TeV]; eProbabilityHT",
987 
988  //e_probability_HT, side C centrality
989  m_h_electron_fcalC_eprobabilityht_looseLH = TH2D_LW::create("h_electron_fcalC_eprobabilityht_looseLH",
990  "; FCal C #Sigma E_{T} [TeV]; eProbabilityHT",
995  m_h_electron_fcalC_eprobabilityht_mediumLH = TH2D_LW::create("h_electron_fcalC_eprobabilityht_mediumLH",
996  "; FCal C #Sigma E_{T} [TeV]; eProbabilityHT",
1001  m_h_electron_fcalC_eprobabilityht_tightLH = TH2D_LW::create("h_electron_fcalC_eprobabilityht_tightLH",
1002  "; FCal C #Sigma E_{T} [TeV]; eProbabilityHT",
1007 }

◆ bookHistograms()

StatusCode HIMonitoringElectronsTool::bookHistograms ( )
virtual

An inheriting class should either override this function or bookHists().

Reimplemented from ManagedMonitorToolBase.

Definition at line 130 of file HIMonitoringElectronsTool.cxx.

130  {
132  // book histograms that are only made in the online environment...
133  }
134 
136  // book histograms that are only relevant for cosmics data...
137  }
138 
139  book_hist();
140 
141 
142  return StatusCode::SUCCESS;
143 }

◆ bookHistogramsRecurrent()

StatusCode HIMonitoringElectronsTool::bookHistogramsRecurrent ( )
virtual

An inheriting class should either override this function, bookHists() or bookHistograms().

Reimplemented from ManagedMonitorToolBase.

Definition at line 125 of file HIMonitoringElectronsTool.cxx.

125  {
126  return StatusCode::SUCCESS;
127 }

◆ bookHists()

StatusCode ManagedMonitorToolBase::bookHists ( )
virtualinherited

Calls bookHists( true, true, true ) and initializes lumiBlock and run numbers.

Implements IMonitorToolBase.

Reimplemented in TileRawChannelMonTool, and TileDigitsMonTool.

Definition at line 782 of file ManagedMonitorToolBase.cxx.

784 {
785  // The Run/LumiBlock numbers are not set when beginRun() is called. Therefore,
786  // book histograms on the first call to fillHists(), which is called from execute().
787  return StatusCode::SUCCESS;
788 }

◆ checkHists()

StatusCode ManagedMonitorToolBase::checkHists ( bool  calledFromFinalize)
virtualinherited

This implementation does nothing; equivalent functionality may be provided by procHists(...) with appropriate arguments.

Implements IMonitorToolBase.

Reimplemented in SCTHitsNoiseMonTool, SCTTracksMonTool, SCTLorentzMonTool, TileRawChannelMonTool, TileDigitsMonTool, DQTDataFlowMonTool, DQTNonCollBkg_ZDC, DQTGlobalWZFinderTool, DataQualityFatherMonTool, DQTDetSynchMonTool, DQTMuonIDTrackTool, TileCellNoiseMonTool, CscCalibMonToolBase, CscPrdValAlg, and CscRdoValAlg.

Definition at line 1901 of file ManagedMonitorToolBase.cxx.

1903 {
1904  // Histograms will be checked using the data-quality monitoring framework (DQMF)
1905 
1906  return StatusCode::SUCCESS;
1907 }

◆ convertLWHists()

StatusCode ManagedMonitorToolBase::convertLWHists ( )
virtualinherited

Deal with the LW histograms.

Implements IMonitorToolBase.

Definition at line 1377 of file ManagedMonitorToolBase.cxx.

1379 {
1380  // note that managed histograms will be converted by regMonitoredLWHistograms
1381  // hence they are not in m_lwhists
1382  if (m_manager) {
1384  for (;it!=itE;++it)
1386  m_lwhists.clear();
1387  }
1388  return StatusCode::SUCCESS;
1389 
1390 }

◆ declareGaudiProperty() [1/4]

Gaudi::Details::PropertyBase& AthCommonDataStore< AthCommonMsg< AlgTool > >::declareGaudiProperty ( Gaudi::Property< T > &  hndl,
const SG::VarHandleKeyArrayType  
)
inlineprivateinherited

specialization for handling Gaudi::Property<SG::VarHandleKeyArray>

Definition at line 170 of file AthCommonDataStore.h.

172  {
173  return *AthCommonDataStore<PBASE>::declareProperty(hndl.name(),
174  hndl.value(),
175  hndl.documentation());
176 
177  }

◆ declareGaudiProperty() [2/4]

Gaudi::Details::PropertyBase& AthCommonDataStore< AthCommonMsg< AlgTool > >::declareGaudiProperty ( Gaudi::Property< T > &  hndl,
const SG::VarHandleKeyType  
)
inlineprivateinherited

specialization for handling Gaudi::Property<SG::VarHandleKey>

Definition at line 156 of file AthCommonDataStore.h.

158  {
159  return *AthCommonDataStore<PBASE>::declareProperty(hndl.name(),
160  hndl.value(),
161  hndl.documentation());
162 
163  }

◆ declareGaudiProperty() [3/4]

Gaudi::Details::PropertyBase& AthCommonDataStore< AthCommonMsg< AlgTool > >::declareGaudiProperty ( Gaudi::Property< T > &  hndl,
const SG::VarHandleType  
)
inlineprivateinherited

specialization for handling Gaudi::Property<SG::VarHandleBase>

Definition at line 184 of file AthCommonDataStore.h.

186  {
187  return *AthCommonDataStore<PBASE>::declareProperty(hndl.name(),
188  hndl.value(),
189  hndl.documentation());
190  }

◆ declareGaudiProperty() [4/4]

Gaudi::Details::PropertyBase& AthCommonDataStore< AthCommonMsg< AlgTool > >::declareGaudiProperty ( Gaudi::Property< T > &  t,
const SG::NotHandleType  
)
inlineprivateinherited

specialization for handling everything that's not a Gaudi::Property<SG::VarHandleKey> or a <SG::VarHandleKeyArray>

Definition at line 199 of file AthCommonDataStore.h.

200  {
201  return PBASE::declareProperty(t);
202  }

◆ declareProperty() [1/6]

Gaudi::Details::PropertyBase* AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( const std::string &  name,
SG::VarHandleBase hndl,
const std::string &  doc,
const SG::VarHandleType  
)
inlineinherited

Declare a new Gaudi property.

Parameters
nameName of the property.
hndlObject holding the property value.
docDocumentation string for the property.

This is the version for types that derive from SG::VarHandleBase. The property value object is put on the input and output lists as appropriate; then we forward to the base class.

Definition at line 245 of file AthCommonDataStore.h.

249  {
250  this->declare(hndl.vhKey());
251  hndl.vhKey().setOwner(this);
252 
253  return PBASE::declareProperty(name,hndl,doc);
254  }

◆ declareProperty() [2/6]

Gaudi::Details::PropertyBase* AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( const std::string &  name,
SG::VarHandleKey hndl,
const std::string &  doc,
const SG::VarHandleKeyType  
)
inlineinherited

Declare a new Gaudi property.

Parameters
nameName of the property.
hndlObject holding the property value.
docDocumentation string for the property.

This is the version for types that derive from SG::VarHandleKey. The property value object is put on the input and output lists as appropriate; then we forward to the base class.

Definition at line 221 of file AthCommonDataStore.h.

225  {
226  this->declare(hndl);
227  hndl.setOwner(this);
228 
229  return PBASE::declareProperty(name,hndl,doc);
230  }

◆ declareProperty() [3/6]

Gaudi::Details::PropertyBase* AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( const std::string &  name,
SG::VarHandleKeyArray hndArr,
const std::string &  doc,
const SG::VarHandleKeyArrayType  
)
inlineinherited

Definition at line 259 of file AthCommonDataStore.h.

263  {
264 
265  // std::ostringstream ost;
266  // ost << Algorithm::name() << " VHKA declareProp: " << name
267  // << " size: " << hndArr.keys().size()
268  // << " mode: " << hndArr.mode()
269  // << " vhka size: " << m_vhka.size()
270  // << "\n";
271  // debug() << ost.str() << endmsg;
272 
273  hndArr.setOwner(this);
274  m_vhka.push_back(&hndArr);
275 
276  Gaudi::Details::PropertyBase* p = PBASE::declareProperty(name, hndArr, doc);
277  if (p != 0) {
278  p->declareUpdateHandler(&AthCommonDataStore<PBASE>::updateVHKA, this);
279  } else {
280  ATH_MSG_ERROR("unable to call declareProperty on VarHandleKeyArray "
281  << name);
282  }
283 
284  return p;
285 
286  }

◆ declareProperty() [4/6]

Gaudi::Details::PropertyBase* AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( const std::string &  name,
T &  property,
const std::string &  doc,
const SG::NotHandleType  
)
inlineinherited

Declare a new Gaudi property.

Parameters
nameName of the property.
propertyObject holding the property value.
docDocumentation string for the property.

This is the generic version, for types that do not derive from SG::VarHandleKey. It just forwards to the base class version of declareProperty.

Definition at line 333 of file AthCommonDataStore.h.

337  {
338  return PBASE::declareProperty(name, property, doc);
339  }

◆ declareProperty() [5/6]

Gaudi::Details::PropertyBase* AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( const std::string &  name,
T &  property,
const std::string &  doc = "none" 
)
inlineinherited

Declare a new Gaudi property.

Parameters
nameName of the property.
propertyObject holding the property value.
docDocumentation string for the property.

This dispatches to either the generic declareProperty or the one for VarHandle/Key/KeyArray.

Definition at line 352 of file AthCommonDataStore.h.

355  {
356  typedef typename SG::HandleClassifier<T>::type htype;
357  return declareProperty (name, property, doc, htype());
358  }

◆ declareProperty() [6/6]

Gaudi::Details::PropertyBase& AthCommonDataStore< AthCommonMsg< AlgTool > >::declareProperty ( Gaudi::Property< T > &  t)
inlineinherited

Definition at line 145 of file AthCommonDataStore.h.

145  {
146  typedef typename SG::HandleClassifier<T>::type htype;
148  }

◆ deregGraph()

StatusCode ManagedMonitorToolBase::deregGraph ( TGraph *  g)
virtualinherited

De-registers a TGraph from the THistSvc, but does NOT delete the object.

Definition at line 1843 of file ManagedMonitorToolBase.cxx.

1845 {
1846  return m_THistSvc->deReg( g );
1847 }

◆ deregHist() [1/2]

StatusCode ManagedMonitorToolBase::deregHist ( LWHist h)
virtualinherited

Definition at line 1826 of file ManagedMonitorToolBase.cxx.

1827 {
1829  if (it==m_lwhists.end())
1830  return StatusCode::FAILURE;
1832  m_lwhists.erase(it);
1833  if (h->usingROOTBackend()) {
1834  h->setOwnsROOTHisto(true);
1835  return m_THistSvc->deReg( h->getROOTHistBase() );
1836  }
1837 
1838  return StatusCode::SUCCESS;
1839 }

◆ deregHist() [2/2]

StatusCode ManagedMonitorToolBase::deregHist ( TH1 h)
virtualinherited

De-registers a TH1 from the THistSvc, but does NOT delete the object.

Definition at line 1819 of file ManagedMonitorToolBase.cxx.

1821 {
1822  return m_THistSvc->deReg( h );
1823 }

◆ deregObject() [1/2]

StatusCode ManagedMonitorToolBase::deregObject ( const std::string &  objName,
const MonGroup group 
)
virtualinherited

De-registers a TObject from the THistSvc, but does NOT delete the object.

(NB: LightWeight histograms are not even registered until readout).

Definition at line 1861 of file ManagedMonitorToolBase.cxx.

1863 {
1864  std::string streamName = streamNameFunction()->getStreamName( this, group, objName );
1866  for (;it!=itE;++it) {
1867  LWHist * hlw = *it;
1868  if (LWHistAthMonWrapper::key(hlw)==objName) {
1869  m_lwhists.erase(it);
1870  if (hlw->usingROOTBackend()) {
1871  hlw->setOwnsROOTHisto(true);
1872  return m_THistSvc->deReg( hlw->getROOTHistBase() );
1873  }
1874  return StatusCode::SUCCESS;
1875  }
1876  }
1877  return m_THistSvc->deReg( streamName );
1878 }

◆ deregObject() [2/2]

StatusCode ManagedMonitorToolBase::deregObject ( const std::string &  objName,
const std::string &  system,
Interval_t  interval 
)
virtualinherited

De-registers a TObject from the THistSvc, but does NOT delete the object.

(NB: LightWeight histograms are not even registered until readout).

Definition at line 1851 of file ManagedMonitorToolBase.cxx.

1854 {
1855  MonGroup group( this, system, interval );
1856  return deregObject( objName, group );
1857 }

◆ detStore()

const ServiceHandle<StoreGateSvc>& AthCommonDataStore< AthCommonMsg< AlgTool > >::detStore ( ) const
inlineinherited

The standard StoreGateSvc/DetectorStore Returns (kind of) a pointer to the StoreGateSvc.

Definition at line 95 of file AthCommonDataStore.h.

95 { return m_detStore; }

◆ endOfEventsBlockFlag()

bool ManagedMonitorToolBase::endOfEventsBlockFlag ( ) const
inlineprotectedinherited

Definition at line 856 of file ManagedMonitorToolBase.h.

856 { return m_endOfEventsBlock; }

◆ endOfLowStatFlag()

bool ManagedMonitorToolBase::endOfLowStatFlag ( ) const
inlineprotectedinherited

Definition at line 857 of file ManagedMonitorToolBase.h.

857 { return m_endOfLowStat; }

◆ endOfLumiBlockFlag()

bool ManagedMonitorToolBase::endOfLumiBlockFlag ( ) const
inlineprotectedinherited

Definition at line 858 of file ManagedMonitorToolBase.h.

858 { return m_endOfLumiBlock; }

◆ endOfRunFlag()

bool ManagedMonitorToolBase::endOfRunFlag ( ) const
inlineprotectedinherited

Definition at line 859 of file ManagedMonitorToolBase.h.

859 { return m_endOfRun; }

◆ evtStore() [1/2]

ServiceHandle<StoreGateSvc>& AthCommonDataStore< AthCommonMsg< AlgTool > >::evtStore ( )
inlineinherited

The standard StoreGateSvc (event store) Returns (kind of) a pointer to the StoreGateSvc.

Definition at line 85 of file AthCommonDataStore.h.

85 { return m_evtStore; }

◆ evtStore() [2/2]

const ServiceHandle<StoreGateSvc>& AthCommonDataStore< AthCommonMsg< AlgTool > >::evtStore ( ) const
inlineinherited

The standard StoreGateSvc (event store) Returns (kind of) a pointer to the StoreGateSvc.

Definition at line 90 of file AthCommonDataStore.h.

90 { return m_evtStore; }

◆ extraDeps_update_handler()

void AthCommonDataStore< AthCommonMsg< AlgTool > >::extraDeps_update_handler ( Gaudi::Details::PropertyBase &  ExtraDeps)
protectedinherited

Add StoreName to extra input/output deps as needed.

use the logic of the VarHandleKey to parse the DataObjID keys supplied via the ExtraInputs and ExtraOuputs Properties to add the StoreName if it's not explicitly given

◆ fillHistograms()

StatusCode HIMonitoringElectronsTool::fillHistograms ( )
virtual

An inheriting class should either override this function or fillHists().

HI event shape

Reimplemented from ManagedMonitorToolBase.

Definition at line 145 of file HIMonitoringElectronsTool.cxx.

145  {
146  StatusCode sc;
147 
149  const xAOD::HIEventShapeContainer* evtShape;
150 
151  sc = evtStore()->retrieve(evtShape, "HIEventShape");
152  if (sc.isFailure()) {
153  ATH_MSG_ERROR("Could not find HIEventShape");
154  return StatusCode::FAILURE;
155  } else {
156  ATH_MSG_INFO("HIEventShape retrieved from StoreGate");
157  }
158 
159  int size = evtShape->size();
160  for (int i = 0; i < size; i++) {
161  const xAOD::HIEventShape* sh = evtShape->at(i);
162  if (sh->layer() == 21 || sh->layer() == 22 || sh->layer() == 23) {
163  m_FCalEt += sh->et();
164  if ((sh->etaMax()) > 0) m_FCalEt_A += sh->et();
165  else m_FCalEt_C += sh->et();
166  }
167  }
168  m_FCalEt = m_FCalEt * 1.e-6;
169  m_FCalEt_A = m_FCalEt_A * 1.e-6;
170  m_FCalEt_C = m_FCalEt_C * 1.e-6;
171 
172 
174  sc = evtStore()->retrieve(electrons, "Electrons");
175  if (sc.isFailure()) {
176  ATH_MSG_ERROR("Could not find Electrons");
177  return StatusCode::FAILURE;
178  } else {
179  ATH_MSG_INFO("Electrons retrieved from StoreGate");
180  }
181 
182  xAOD::ElectronContainer::const_iterator electrons_itr = electrons->begin();
183  xAOD::ElectronContainer::const_iterator electrons_end = electrons->end();
184 
185  int n_loose_LH = 0;
186  int n_medium_LH = 0;
187  int n_tight_LH = 0;
188 
189  for (; electrons_itr != electrons_end; ++electrons_itr) {
190  float pt = (*electrons_itr)->pt() * 1.e-3;
191  float eta = (*electrons_itr)->caloCluster()->etaBE(2);
192 
193  if (pt < 15 || fabs(eta) > 2.47) continue;
194 
195  float phi = (*electrons_itr)->phi();
197 
198  float z0 = (*electrons_itr)->trackParticle()->z0();
199  m_h_electron_z0sintheta->Fill(z0 * sin(2 * TMath::ATan(exp(-eta))));
200 
201  bool loose_LH = (bool) m_electronLooseLHTool->accept(*electrons_itr);
202  bool medium_LH = (bool) m_electronMediumLHTool->accept(*electrons_itr);
203  bool tight_LH = (bool) m_electronTightLHTool->accept(*electrons_itr);
204 
205  static const SG::ConstAccessor< float > etcone20Acc("etcone20");
206  float etcone20 = etcone20Acc(**electrons_itr) * 1.e-3;
207 
208  static const SG::ConstAccessor<float> RetaAcc("Reta");
209  static const SG::ConstAccessor<float> RphiAcc("Rphi");
210  static const SG::ConstAccessor< float > weta2Acc("weta2");
211  float reta = RetaAcc(**electrons_itr);
212  float rphi = RphiAcc(**electrons_itr);
213  float weta2 = weta2Acc(**electrons_itr);
214 
215  static const SG::ConstAccessor<float> RhadAcc("Rhad");
216  float rhad = RhadAcc(**electrons_itr);
217 
218  static const SG::ConstAccessor<float> EratioAcc("Eratio");
219  static const SG::ConstAccessor<float> f1Acc("f1");
220  static const SG::ConstAccessor<float> f3Acc("f3");
221  float eratio = EratioAcc(**electrons_itr);
222  float f1 = f1Acc(**electrons_itr);
223  float f3 = f3Acc(**electrons_itr);
224 
225  float deltaeta1;
226  (*electrons_itr)->trackCaloMatchValue(deltaeta1, xAOD::EgammaParameters::deltaEta1);
227  float deltaphires;
228  (*electrons_itr)->trackCaloMatchValue(deltaphires, xAOD::EgammaParameters::deltaPhiRescaled2);
229  float TRT_PID;
230  (*electrons_itr)->trackParticle()->summaryValue(TRT_PID, xAOD::eProbabilityHT);
231 
232  if (loose_LH) {
233  n_loose_LH++;
234 
238 
248 
252 
262 
269  if (fabs(eta) < 2.01) {
273  }
274  }
275 
276  if (medium_LH) {
277  n_medium_LH++;
278 
282 
292 
296 
306 
313  if (fabs(eta) < 2.01) {
317  }
318  }
319 
320  if (tight_LH) {
321  n_tight_LH++;
322 
326 
336 
340 
350 
357  if (fabs(eta) < 2.01) {
361  }
362  }
363  }
364 
365  if (n_loose_LH) {
369  }
370  if (n_medium_LH) {
374  }
375  if (n_tight_LH) {
379  }
380 
381  return StatusCode::SUCCESS;
382 }

◆ fillHists()

StatusCode ManagedMonitorToolBase::fillHists ( )
virtualinherited

Calls fillHists( bool, bool, bool ); if an eventBlock,lumiBlock, or run has turned over, calls procHists( bool, bool, bool ) and bookHists( bool, bool, bool ).

Implements IMonitorToolBase.

Reimplemented in TileRawChannelMonTool, and TileDigitsMonTool.

Definition at line 792 of file ManagedMonitorToolBase.cxx.

794 {
795 
798  msg(MSG::WARNING) << "ManagedMonitorToolBase::initialize() never called from reimplementation!" << endmsg;
799  }
800 
801 
802  bool isNewEventsBlock = ( m_procNEventsProp > 0 && ((m_nEvents % m_procNEventsProp) == 1) && m_haveClearedLastEventBlock );
803  if (isNewEventsBlock) m_haveClearedLastEventBlock = false;
804 
805  m_newLowStat = false;
806  m_newLumiBlock = false;
807  m_newRun = false;
808  newLowStat = false;
809  newLumiBlock = false;
810  newRun = false;
811 
812  m_newLowStatInterval = false;
813  m_newMedStatInterval = false;
814  m_newHigStatInterval = false;
815  newLowStatInterval = false;
816  newMedStatInterval = false;
817  newHigStatInterval = false;
818 
819  m_useTrigger = ( (m_triggerChainProp != "" || m_triggerGroupProp != "") && (!m_trigDecTool.empty()) );
820 
821  if( m_manager != 0 ) {
824  newLumiBlock = m_newLumiBlock;
825  newRun = m_newRun;
826 
827  if(m_newRun) {
828  m_newLumiBlock = true;
829  newLumiBlock = m_newLumiBlock;
830  isNewEventsBlock = true;
831  }
832 
833  m_newEventsBlock = isNewEventsBlock;
834  newEventsBlock = m_newEventsBlock;
835 
836  if( m_newLumiBlock ) {
837  // check if a new LB interval has started
838  // lowest lumiBlockNumber() is 1
839  // m_lastLowStatInterval is -1 initially
840  int currentLB = m_manager->lumiBlockNumber();
841  int LBsLowStat = m_manager->getLBsLowStat();
842  int LBsMedStat = m_manager->getLBsMedStat();
843  int LBsHigStat = m_manager->getLBsHigStat();
844 
845  if( LBsLowStat*LBsMedStat*LBsHigStat == 0) {
846  msg(MSG::WARNING) << "zero LBs requested for interval" << endmsg;
847  }
848  else {
849  if( ((currentLB-1)/LBsLowStat) != m_lastLowStatInterval ) m_newLowStatInterval = true;
850  if( ((currentLB-1)/LBsMedStat) != m_lastMedStatInterval ) m_newMedStatInterval = true;
851  if( ((currentLB-1)/LBsHigStat) != m_lastHigStatInterval ) m_newHigStatInterval = true;
852  newLowStatInterval = m_newLowStatInterval;
853  newMedStatInterval = m_newHigStatInterval;
854  newHigStatInterval = m_newHigStatInterval;
855  }
856  }
857 
858  // Allow inheriting classes the option of using the lastLumiBloc/lastRun values
859  // before updating them
860  }
861 
862 
863  StatusCode sc0( StatusCode::SUCCESS );
864  StatusCode sc1( StatusCode::SUCCESS );
865  StatusCode sc2( StatusCode::SUCCESS );
866  StatusCode sc3( StatusCode::SUCCESS );
867 
868  // Set end of LowStat, LumiBlock and Run variables
869  // These are needed to be used in procHistograms().
874  endOfEventsBlock = m_newEventsBlock;
875  endOfLowStat = m_newLowStatInterval;
876  endOfLumiBlock = m_newLumiBlock;
877  endOfRun = m_newRun;
878 
879  // just duplicates m_newLowStatInterval
881  newLowStat = m_newLowStatInterval;
882 
884  ATH_MSG_DEBUG("Interval transition processing");
885  // Process histograms from the previous lumiBlock/run
886  if( m_nEvents != 1 ) {
888  sc0 = procHistograms();
890  }
891  // Re-book new histograms
893 
895  sc1 = bookHistograms();
897  } else {
898  std::vector<Interval_t> intervals_to_process;
899  if (m_newEventsBlock) intervals_to_process.push_back(eventsBlock);
900  if (m_newLumiBlock) intervals_to_process.push_back(lumiBlock);
901  if (m_newLowStatInterval) intervals_to_process.push_back(lowStat);
902  if (m_newRun) intervals_to_process.push_back(run);
903  for (const auto interval: intervals_to_process) {
908  }
909  }
910  for (const auto& interval: std::vector<Interval_t>{ eventsBlock, lumiBlock, lowStat, run }) {
911  for (const auto& it: m_templateHistograms[interval]) {
912  // is histogram too small in x axis for LB range?
913  if (it.m_group.histo_mgmt() == ATTRIB_X_VS_LB) {
914  //ATH_MSG_WARNING("We are rebinning for " << it.m_templateHist->GetName());
915  while ( it.m_templateHist->GetXaxis()->GetXmax() <= AthenaMonManager::lumiBlockNumber() ) {
916  it.m_templateHist->LabelsInflate("X");
917  }
918  }
919  }
920  for (auto& it: m_templateEfficiencies[interval]) {
921  if (it.m_group.histo_mgmt() == ATTRIB_X_VS_LB) {
922  // get the underlying passed and total TH1's from the TEfficiency
923  TH1* passedHist = it.m_templateHist->GetCopyPassedHisto();
924  TH1* totalHist = it.m_templateHist->GetCopyTotalHisto();
925  // inflate them until they exceed the lumi-block number
926  while (passedHist->GetXaxis()->GetXmax() <= AthenaMonManager::lumiBlockNumber() ) {
927  passedHist->LabelsInflate("X");
928  totalHist->LabelsInflate("X");
929  }
930  // Replace them in the TEfficiency. First one has force ("f") option, since the
931  // histograms will not be consistent. This is corrected in the next line, so we
932  // do check for consistency then.
933  it.m_templateHist->SetPassedHistogram(*passedHist, "f");
934  it.m_templateHist->SetTotalHistogram(*totalHist, " ");
935  delete passedHist; // not owned by THistSvc, so need to be deleted.
936  delete totalHist;
937  }
938  }
939  }
940 
941  if (auto streamname = dynamic_cast<OfflineStream*>(streamNameFunction())) {
942  streamname->updateRunLB();
943  }
944 
945  sc3 = bookHistogramsRecurrent( );
946 
948 
949  if (m_manager->forkedProcess()) {
950  ATH_MSG_INFO("Child process: Resetting all " << m_lwhists.size() << " LW Histograms");
951  for (LWHist* h : m_lwhists) {
952  h->Reset();
953  }
954  }
955  }//end if new RUN/LB/Block
956 
957  // check filters
958  bool filterresult(true);
959  if (! m_DQFilterTools.empty()) {
960  ToolHandleArray<IDQFilterTool>::const_iterator ifilter(m_DQFilterTools.begin()), filterend(m_DQFilterTools.end());
961  for (; filterresult && (ifilter != filterend);
962  ++ifilter) {
963  filterresult = (filterresult && (*ifilter)->accept());
964  }
965  }
966 
967 
968  // ...and fill as normal
969  if(filterresult &&
970  (!m_useTrigger
973  ATH_MSG_DEBUG("Passed trigger, presumably");
975  fillHistograms().ignore();
978  ++m_nEvents;
979  } else { ATH_MSG_DEBUG("Failed trigger, presumably"); }
980 
982  if( m_newLumiBlock && (m_nEventsIgnoreTrigger != 1) ) {
983  ++m_nLumiBlocks;
984  }
985  if( m_manager != 0 ) {
987  if( m_newLumiBlock ) {
989 
990  int LBsLowStat = m_manager->getLBsLowStat();
991  int LBsMedStat = m_manager->getLBsMedStat();
992  int LBsHigStat = m_manager->getLBsHigStat();
993  if( LBsLowStat*LBsMedStat*LBsHigStat > 0) {
997  }
998  }
999  }
1000 
1001  return StatusCode::SUCCESS;
1002 }

◆ finalHists()

StatusCode ManagedMonitorToolBase::finalHists ( )
virtualinherited

Calls procHists( true, true, true ).

Implements IMonitorToolBase.

Reimplemented in TileRawChannelMonTool, TileDigitsMonTool, and TileCellNoiseMonTool.

Definition at line 1333 of file ManagedMonitorToolBase.cxx.

1335 {
1336 
1337  // This assumes that the end of a file will naturally end a run, which is not always true.
1338  // A merging application run afterwards should be able to put parts of a run together.
1339  if( m_nEvents != 1 ) {
1341 
1342  // Set end flags for the LowStat, LumiBlock and Run variables.
1343  // This is needed to be used in the procHistograms method below.
1344  m_endOfEventsBlock = true;
1345  m_endOfLowStat = true;
1346  m_endOfLumiBlock = true;
1347  m_endOfRun = true;
1348  endOfEventsBlock = true;
1349  endOfLowStat = true;
1350  endOfLumiBlock = true;
1351  endOfRun = true;
1352 
1354 
1355 /*
1356  StatusCode sc1( StatusCode::SUCCESS );
1357 
1358 #if 0
1359  for (const auto interval: m_supportedIntervalsForRebooking) {
1360  //sc1 = regManagedHistograms(m_templateHistograms[interval], false);
1361  //sc1 = regManagedGraphs(m_templateGraphs[interval], false);
1362  //sc1 = regManagedTrees(m_templateTrees[interval], false);
1363 
1364  // Yura: commented out when fixing online environment
1365  //sc1 = regManagedLWHistograms(m_templateLWHistograms[interval], false, true);
1366  }
1367 */
1368 
1370  return sc;
1371  }
1372  return StatusCode::SUCCESS;
1373 }

◆ get_nEvents()

unsigned int ManagedMonitorToolBase::get_nEvents ( ) const
inlineprotectedinherited

Definition at line 754 of file ManagedMonitorToolBase.h.

754  {
755  return m_nEvents;
756  }

◆ get_procNEventsProp()

long ManagedMonitorToolBase::get_procNEventsProp ( ) const
inlineprotectedinherited

Definition at line 758 of file ManagedMonitorToolBase.h.

758  {
759  return m_procNEventsProp;
760  }

◆ getHist() [1/6]

StatusCode ManagedMonitorToolBase::getHist ( LWHist *&  h,
const std::string &  hName,
const MonGroup group 
)
virtualinherited

Definition at line 1614 of file ManagedMonitorToolBase.cxx.

1615 {
1616  h = 0;
1617  std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1619  for (;it!=itE;++it) {
1621  h = *it;
1622  return StatusCode::SUCCESS;
1623  }
1624  }
1625  return StatusCode::FAILURE;
1626 }

◆ getHist() [2/6]

StatusCode ManagedMonitorToolBase::getHist ( LWHist *&  h,
const std::string &  hName,
const std::string &  system,
Interval_t  interval 
)
virtualinherited

Definition at line 1606 of file ManagedMonitorToolBase.cxx.

1608 {
1609  MonGroup group( this, system, interval );
1610  return getHist( h, hName, group );
1611 }

◆ getHist() [3/6]

StatusCode ManagedMonitorToolBase::getHist ( TH1 *&  h,
const std::string &  hName,
const MonGroup group 
)
virtualinherited

Returns a TH1 via the pointer passed as the first argument.

The histogram name, without the leading path or stream name, must be given as the second argument.

Definition at line 1598 of file ManagedMonitorToolBase.cxx.

1600 {
1601  std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1602  return m_THistSvc->getHist( streamName, h );
1603 }

◆ getHist() [4/6]

StatusCode ManagedMonitorToolBase::getHist ( TH1 *&  h,
const std::string &  hName,
const std::string &  system,
Interval_t  interval 
)
virtualinherited

Returns a TH1 via the pointer passed as the first argument.

The histogram name, without the leading path or stream name, must be given as the second argument.

Definition at line 1588 of file ManagedMonitorToolBase.cxx.

1591 {
1592  MonGroup group( this, system, interval );
1593  return getHist( h, hName, group );
1594 }

◆ getHist() [5/6]

StatusCode ManagedMonitorToolBase::getHist ( TH2 *&  h,
const std::string &  hName,
const MonGroup group 
)
virtualinherited

Returns a TH2 via the pointer passed as the first argument.

The histogram name, without the leading path or stream name, must be given as the second argument.

Definition at line 1640 of file ManagedMonitorToolBase.cxx.

1642 {
1643  std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1644  return m_THistSvc->getHist( streamName, h );
1645 }

◆ getHist() [6/6]

StatusCode ManagedMonitorToolBase::getHist ( TH2 *&  h,
const std::string &  hName,
const std::string &  system,
Interval_t  interval 
)
virtualinherited

Returns a TH2 via the pointer passed as the first argument.

The histogram name, without the leading path or stream name, must be given as the second argument.

Definition at line 1630 of file ManagedMonitorToolBase.cxx.

1633 {
1634  MonGroup group( this, system, interval );
1635  return getHist( h, hName, group );
1636 }

◆ getNewStreamNameFcn()

ManagedMonitorToolBase::StreamNameFcn * ManagedMonitorToolBase::getNewStreamNameFcn ( ) const
protectedvirtualinherited

Definition at line 2387 of file ManagedMonitorToolBase.cxx.

2389 {
2390  StreamNameFcn* fcn(0);
2391 
2392  switch( m_environment ) {
2394  fcn = new NoOutputStream();
2395  break;
2397  fcn = new OnlineStream();
2398  break;
2400  fcn = new DefaultStream( m_fileKey );
2401  break;
2405  case AthenaMonManager::AOD:
2407  default:
2408  fcn = new OfflineStream( m_fileKey, m_dataType, m_environment );
2409  }
2410 
2411  return fcn;
2412 }

◆ initialize()

StatusCode ManagedMonitorToolBase::initialize ( )
virtualinherited

Reimplemented in SCTHitEffMonTool, SCTHitsNoiseMonTool, SCTErrMonTool, SCTTracksMonTool, SCTLorentzMonTool, photonMonTool, egammaMonToolBase, electronMonTool, MuonPhysValMonitoring::MuonPhysValMonitoringTool, TilePaterMonTool, LArCellMonTool, AFPHitsMonitorTool, InDetGlobalBCMTool, MuonDQA::MuonEventInfoMonTool, TileFatherMonTool, TileRawChannelMonTool, TileDigitsMonTool, DQTDataFlowMonTool, TileCalCellMonTool, ActsTrk::PhysValTool, PhysValSecVtx, LUCID_HitsMoniTool, ZeeTaPMonTool, forwardElectronMonTool, TileCellNoiseMonTool, RpcLv1RawDataEfficiency, LVL1::CalorimeterL1CaloMon, LVL1::L1CaloCTPMon, LVL1::L1CaloLevel2Mon, LVL1::L1CaloPMTScoresMon, MdtRawDataValAlg, TRT_Electron_Monitoring_Tool, DQTNonCollBkg_ZDC, InDetGlobalTrackMonTool, JetTagMonitoring, InDetPhysValMonitoringTool, InDetGlobalHitsMonTool, CscCalibMonToolBase, EgammaPhysValMonitoring::EgammaPhysValMonitoringTool, TRT_Monitoring_Tool, MissingEtDQA::PhysValMET, CSCSegmValAlg, InDetGlobalSynchMonTool, LVL1::L1CaloL1TopoMon, JetTagDQA::PhysValBTag, CaloTowerVecMon, InDetGlobalMotherTrigMonTool, DQTGlobalWZFinderTool, PhysVal::PhysValExample, TopPhysVal::TopPhysValMonitoring, ZeeValidation::ZeeValidationMonitoringTool, METMonTool, CscCalibMonToolSlope, CaloClusterVecMon, InDetGlobalTopBottomMonTool, RpcLv1RawDataValAlg, DataQualityFatherMonTool, CscCalibMonToolPed, CaloTransverseBalanceVecMon, DQTDetSynchMonTool, InDetTrackPerfMonTool, RpcLv1RawDataSectorLogic, InDetGlobalBeamSpotMonTool, IDPerfMonWenu, IDPerfMonZee, TrackCaloClusterRecValidationTool, DQTMuonIDTrackTool, MdtVsRpcRawDataValAlg, MdtVsTgcRawDataValAlg, JetMonitoringTool, InDetGlobalErrorMonTool, CscClusterValAlg, PhysValTau, PhysValFE, DiMuMon, InDetGlobalPrimaryVertexMonTool, InDetVertexMonitoring, CscPrdValAlg, CscRdoValAlg, IDPerfMonKshort, CaloMonToolBase, and PhysValCluster.

Definition at line 668 of file ManagedMonitorToolBase.cxx.

670 {
672 
674  if( !sc.isSuccess() )
675  return StatusCode::FAILURE;
676 
677  ATH_MSG_DEBUG("ManagedMonitorToolBase::initialize():");
678 
680 
681  sc = m_THistSvc.retrieve();
682  if( !sc.isSuccess() ) {
683  msg(MSG::ERROR) << "!! Unable to locate the THistSvc service !!" << endmsg;
684  return sc;
685  }
686  ATH_MSG_DEBUG(" --> Found service \"THistSvc\"");
687 
688  if( !m_trigDecTool.empty() ) {
689  sc = m_trigDecTool.retrieve();
690  if( !sc.isSuccess() ) {
691  msg(MSG::ERROR) << "!! Unable to retrieve the TrigDecisionTool !!" << endmsg;
692  return sc;
693  }
694  ATH_MSG_DEBUG(" --> Found AlgTool \"TrigDecisionTool\"");
695 
696  if( !m_trigTranslator.empty() ) {
697  sc = m_trigTranslator.retrieve();
698  if ( !sc.isSuccess() ) {
699  ATH_MSG_ERROR(" Unable to retrieve the TrigTranslatorTool!" << endmsg);
700  return sc;
701  }
702  }
703 
704  if(m_triggerChainProp!="") {
705  ATH_MSG_DEBUG(" --> Found nonempty trigger chain list");
707  if(!sc.isSuccess()) {
708  msg(MSG::WARNING) << "Error parsing the trigger chain list, using empty list" << endmsg;
709  m_vTrigChainNames.clear();
710  }
711  if (!m_trigTranslator.empty()) {
713  }
714  }
715  else {
716  ATH_MSG_DEBUG(" --> trigger chain list empty");
717  }
718  if(m_triggerGroupProp!="") {
719  ATH_MSG_DEBUG(" --> Found nonempty trigger group list");
721  if(!sc.isSuccess()) {
722  msg(MSG::WARNING) << "Error parsing the trigger group names list, using empty list" << endmsg;
723  m_vTrigGroupNames.clear();
724  }
725  if (!m_trigTranslator.empty()) {
727  }
728  }
729  else {
730  ATH_MSG_DEBUG(" --> trigger group list empty");
731  }
732  }
733  else {
734  ATH_MSG_DEBUG(" --> no trigger decision tool specified");
735  }
736 
737  sc = m_DQFilterTools.retrieve();
738  if( !sc.isSuccess() ) {
739  ATH_MSG_ERROR("!! Unable to retrieve the Filter Tools !!");
740  return sc;
741  }
742 
743  ServiceHandle<Gaudi::Interfaces::IOptionsSvc> joSvc( "JobOptionsSvc", name() );
744  ATH_CHECK( joSvc.retrieve() );
745  ATH_MSG_DEBUG(" --> Found service \"JobOptionsSvc\"");
746 
747  const std::string client( m_managerNameProp + "Properties" );
748  ATH_MSG_DEBUG(" --> Asking for properties " << client);
749 
750  auto getProp = [this,joSvc](std::string& var, const std::string& name) {
751  if (joSvc->has(name))
752  var = joSvc->get(name);
753  else
754  ATH_MSG_DEBUG("Cannot read " << name); // on purpose not an ERROR (will be set by setMonManager)
755  };
756  getProp( m_fileKey, client + ".FileKey");
757  getProp( m_dataTypeStr, client + ".DataType");
758  getProp( m_environmentStr, client + ".Environment");
759 
760  ATH_MSG_DEBUG(" * Properties set from " << client << " to the values:\n"
761  << " FileKey: " << m_fileKey << "\n"
762  << " DataType: " << m_dataTypeStr << "\n"
763  << " Environment: " << m_environmentStr);
764 
767 
771 
772  delete m_streamNameFcn;
774 
775  ATH_MSG_DEBUG(" --> Exiting successfully");
776 
777  return StatusCode::SUCCESS;
778 }

◆ inputHandles()

virtual std::vector<Gaudi::DataHandle*> AthCommonDataStore< AthCommonMsg< AlgTool > >::inputHandles ( ) const
overridevirtualinherited

Return this algorithm's input handles.

We override this to include handle instances from key arrays if they have not yet been declared. See comments on updateVHKA.

◆ interfaceID()

static const InterfaceID& IMonitorToolBase::interfaceID ( )
inlinestaticinherited

Definition at line 29 of file IMonitorToolBase.h.

29 { return IID_IMonitorToolBase; }

◆ intervalEnumToString()

std::string ManagedMonitorToolBase::intervalEnumToString ( Interval_t  interval)
staticinherited

Converts a LevelOfDetail_t to a string of the same name.

Converts a string to the corresponding LevelOfDetail_t. Converts a Interval_t to a string of the same name.

Definition at line 587 of file ManagedMonitorToolBase.cxx.

589 {
590  std::string str("file");
591 
592  switch( interval ) {
593  case all:
594  str = "all";
595  break;
596  case fill:
597  str = "fill";
598  break;
599  case run:
600  str = "run";
601  break;
602  case lowStat:
603  str = "lowStat";
604  break;
605  case medStat:
606  str = "medStat";
607  break;
608  case higStat:
609  str = "higStat";
610  break;
611  case lumiBlock:
612  str = "lumiBlock";
613  break;
614  case eventsBlock:
615  str = "eventsBlock";
616  break;
617  case file:
618  str = "file";
619  break;
620  default:
621  str = "unknown";
622  }
623 
624  return str;
625 }

◆ intervalStringToEnum()

ManagedMonitorToolBase::Interval_t ManagedMonitorToolBase::intervalStringToEnum ( const std::string &  str)
staticinherited

Converts a string to the corresponding Interval_t.

Definition at line 629 of file ManagedMonitorToolBase.cxx.

631 {
632  std::string lcstr( strToLower(str) );
633 
634  if( lcstr == "all" )
635  return all;
636  else if( lcstr == "fill" )
637  return fill;
638  else if( lcstr == "run" )
639  return run;
640  else if( lcstr == "lowStat" )
641  return lowStat;
642  else if( lcstr == "medStat" )
643  return medStat;
644  else if( lcstr == "higStat" )
645  return higStat;
646  else if( lcstr == "lumiBlock" )
647  return lumiBlock;
648  else if( lcstr == "eventsBlock" )
649  return eventsBlock;
650  else if( lcstr == "file" )
651  return file;
652 
653  if( Imp::s_svcLocator ) {
654  IMessageSvc* ms(0);
655  StatusCode sc = Imp::s_svcLocator.load()->service( "MessageSvc", ms, true );
656  if( sc.isSuccess() ) {
657  MsgStream log( ms, "ManagedMonitorToolBase::intervalStringToEnum()" );
658  log << MSG::WARNING << "Unknown ManagedMonitorToolBase::Interval_t \""
659  << str << "\", returning \"file\"" << endmsg;
660  }
661  }
662 
663  return file;
664 }

◆ lbAverageInteractionsPerCrossing()

float ManagedMonitorToolBase::lbAverageInteractionsPerCrossing ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Average mu, i.e.

<mu>

Definition at line 1923 of file ManagedMonitorToolBase.cxx.

1925 {
1926  if (!m_lumiDataKey.empty()) {
1928  return lumi->lbAverageInteractionsPerCrossing();
1929  } else {
1930  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageInteractionsPerCrossing() can't work properly! ");
1931  ATH_MSG_DEBUG("Warning: lbAverageInteractionsPerCrossing() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1932  return -1.0;
1933  }
1934  // not reached
1935 }

◆ lbAverageLivefraction()

float ManagedMonitorToolBase::lbAverageLivefraction ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Average luminosity livefraction.

Definition at line 1992 of file ManagedMonitorToolBase.cxx.

1994 {
1996  return 1.0;
1997 
2000  return live->lbAverageLiveFraction();
2001  } else {
2002  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageLivefraction() can't work properly! ");
2003  ATH_MSG_DEBUG("Warning: lbAverageLivefraction() - luminosity not availble (i.e. EnableLumi = False)");
2004  return -1.0;
2005  }
2006  // not reached
2007 }

◆ lbAverageLuminosity()

float ManagedMonitorToolBase::lbAverageLuminosity ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1)

Definition at line 1959 of file ManagedMonitorToolBase.cxx.

1961 {
1962  if (!m_lumiDataKey.empty()) {
1964  return lumi->lbAverageLuminosity();
1965  } else {
1966  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageLuminosity() can't work properly! ");
1967  ATH_MSG_DEBUG("Warning: lbAverageLuminosity() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1968  return -1.0;
1969  }
1970  // not reached
1971 }

◆ lbDuration()

double ManagedMonitorToolBase::lbDuration ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Luminosity block time (in seconds)

Definition at line 2046 of file ManagedMonitorToolBase.cxx.

2048 {
2050  return m_defaultLBDuration;
2051  }
2052  if (!m_lbDurationDataKey.empty()) {
2054  return dur->lbDuration();
2055  } else {
2056  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbDuration() can't work properly! ");
2057  ATH_MSG_DEBUG("Warning: lbDuration() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
2058  return m_defaultLBDuration;
2059  }
2060  // not reached
2061 }

◆ lbInteractionsPerCrossing()

float ManagedMonitorToolBase::lbInteractionsPerCrossing ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Instantaneous number of interactions, i.e.

mu

Definition at line 1939 of file ManagedMonitorToolBase.cxx.

1941 {
1942  if (!m_lumiDataKey.empty()) {
1944  float muToLumi = lumi->muToLumi();
1945  if (muToLumi > 0) {
1946  return lumi->lbLuminosityPerBCIDVector().at (ctx.eventID().bunch_crossing_id()) / muToLumi;
1947  }
1948  return 0;
1949  } else {
1950  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbInteractionsPerCrossing() can't work properly! ");
1951  ATH_MSG_DEBUG("Warning: lbInteractionsPerCrossing() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1952  return -1.0;
1953  }
1954  // not reached
1955 }

◆ lbLuminosityPerBCID()

float ManagedMonitorToolBase::lbLuminosityPerBCID ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Instantaneous luminosity.

Definition at line 1975 of file ManagedMonitorToolBase.cxx.

1977 {
1978  if (!m_lumiDataKey.empty()) {
1980  return lumi->lbLuminosityPerBCIDVector().at (ctx.eventID().bunch_crossing_id());
1981  } else {
1982  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbLuminosityPerBCID() can't work properly! ");
1983  ATH_MSG_DEBUG("Warning: lbLuminosityPerBCID() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1984  return -1.0;
1985  }
1986  // not reached
1987 }

◆ lbLumiWeight()

double ManagedMonitorToolBase::lbLumiWeight ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Average Integrated Luminosity Live Fraction.

Definition at line 2030 of file ManagedMonitorToolBase.cxx.

2032 {
2033  if (!m_lumiDataKey.empty()) {
2034  return (lbAverageLuminosity(ctx)*lbDuration(ctx))*lbAverageLivefraction(ctx);
2035  } else{
2036  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbLumiWeight() can't work properly! ");
2037  ATH_MSG_DEBUG("Warning: lbLumiWeight() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
2038  return -1.0;
2039  }
2040  // not reached
2041 }

◆ livefractionPerBCID()

float ManagedMonitorToolBase::livefractionPerBCID ( const EventContext &  ctx = Gaudi::Hive::currentContext()) const
virtualinherited

Livefraction per bunch crossing ID.

Definition at line 2011 of file ManagedMonitorToolBase.cxx.

2013 {
2015  return 1.0;
2016 
2019  return live->l1LiveFractionVector().at (ctx.eventID().bunch_crossing_id());
2020  } else {
2021  //ATH_MSG_FATAL("! Luminosity tool has been disabled ! livefractionPerBCID() can't work properly! ");
2022  ATH_MSG_DEBUG("Warning: livefractionPerBCID() - luminosity retrieved available (i.e. EnableLumi = False)");
2023  return -1.0;
2024  }
2025  // not reached
2026 }

◆ MMTB_DEPRECATED() [1/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( endOfEventsBlock  )
inherited

◆ MMTB_DEPRECATED() [2/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( endOfLowStat  )
inherited

◆ MMTB_DEPRECATED() [3/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( endOfLumiBlock  )
inherited

◆ MMTB_DEPRECATED() [4/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( endOfRun  )
inherited

◆ MMTB_DEPRECATED() [5/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newEventsBlock  )
inherited

◆ MMTB_DEPRECATED() [6/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newHigStatInterval  )
inherited

◆ MMTB_DEPRECATED() [7/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newLowStat  )
inherited

◆ MMTB_DEPRECATED() [8/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newLowStatInterval  )
inherited

◆ MMTB_DEPRECATED() [9/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newLumiBlock  )
inherited

◆ MMTB_DEPRECATED() [10/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newMedStatInterval  )
inherited

◆ MMTB_DEPRECATED() [11/11]

ManagedMonitorToolBase::MMTB_DEPRECATED ( newRun  )
inherited

◆ msg() [1/2]

MsgStream& AthCommonMsg< AlgTool >::msg ( ) const
inlineinherited

Definition at line 24 of file AthCommonMsg.h.

24  {
25  return this->msgStream();
26  }

◆ msg() [2/2]

MsgStream& AthCommonMsg< AlgTool >::msg ( const MSG::Level  lvl) const
inlineinherited

Definition at line 27 of file AthCommonMsg.h.

27  {
28  return this->msgStream(lvl);
29  }

◆ msgLvl()

bool AthCommonMsg< AlgTool >::msgLvl ( const MSG::Level  lvl) const
inlineinherited

Definition at line 30 of file AthCommonMsg.h.

30  {
31  return this->msgLevel(lvl);
32  }

◆ newEventsBlockFlag()

bool ManagedMonitorToolBase::newEventsBlockFlag ( ) const
inlineprotectedinherited

Definition at line 855 of file ManagedMonitorToolBase.h.

855 { return m_newEventsBlock; }

◆ newHigStatIntervalFlag()

bool ManagedMonitorToolBase::newHigStatIntervalFlag ( ) const
inlineprotectedinherited

Definition at line 851 of file ManagedMonitorToolBase.h.

851 { return m_newHigStatInterval; }

◆ newLowStatFlag()

bool ManagedMonitorToolBase::newLowStatFlag ( ) const
inlineprotectedinherited

Definition at line 852 of file ManagedMonitorToolBase.h.

852 { return m_newLowStat; }

◆ newLowStatIntervalFlag()

bool ManagedMonitorToolBase::newLowStatIntervalFlag ( ) const
inlineprotectedinherited

Flag functions allowing clients to determine when to book new and process old histograms; values are updated by fillHists() based on counting lumiBlocks, and are correctly set when fillHistograms(), bookHistograms() and procHistograms() are called.

Definition at line 849 of file ManagedMonitorToolBase.h.

849 { return m_newLowStatInterval; }

◆ newLumiBlockFlag()

bool ManagedMonitorToolBase::newLumiBlockFlag ( ) const
inlineprotectedinherited

Definition at line 853 of file ManagedMonitorToolBase.h.

853 { return m_newLumiBlock; }

◆ newMedStatIntervalFlag()

bool ManagedMonitorToolBase::newMedStatIntervalFlag ( ) const
inlineprotectedinherited

Definition at line 850 of file ManagedMonitorToolBase.h.

850 { return m_newMedStatInterval; }

◆ newRunFlag()

bool ManagedMonitorToolBase::newRunFlag ( ) const
inlineprotectedinherited

Definition at line 854 of file ManagedMonitorToolBase.h.

854 { return m_newRun; }

◆ outputHandles()

virtual std::vector<Gaudi::DataHandle*> AthCommonDataStore< AthCommonMsg< AlgTool > >::outputHandles ( ) const
overridevirtualinherited

Return this algorithm's output handles.

We override this to include handle instances from key arrays if they have not yet been declared. See comments on updateVHKA.

◆ parseList()

StatusCode ManagedMonitorToolBase::parseList ( const std::string &  line,
std::vector< std::string > &  result 
)
protectedinherited

Definition at line 2343 of file ManagedMonitorToolBase.cxx.

2344  {
2345  std::string item;
2346  std::stringstream ss(line);
2347 
2348  if (msgLvl(MSG::DEBUG)) msg(MSG::DEBUG) << "ManagedMonitorToolBase::parseList:";
2349 
2350  while ( std::getline(ss, item, ',') ) {
2351  std::stringstream iss(item); // remove
2352  iss >> item; // whitespace
2353  if (msgLvl(MSG::DEBUG)) msg(MSG::DEBUG) << " " << item;
2354  result.push_back(item);
2355  }
2356 
2357  msg(MSG::DEBUG) << endmsg;
2358  return StatusCode::SUCCESS;
2359 }

◆ preSelector()

bool ManagedMonitorToolBase::preSelector ( )
virtualinherited

Implements IMonitorToolBase.

Definition at line 1911 of file ManagedMonitorToolBase.cxx.

1913 {
1914  if( m_preScaleProp > 1 ) {
1915  return ( (m_nEvents % m_preScaleProp) == 1 );
1916  }
1917  return true;
1918 }

◆ procHistograms()

StatusCode HIMonitoringElectronsTool::procHistograms ( )
virtual

An inheriting class should either override this function or finalHists().

Reimplemented from ManagedMonitorToolBase.

Definition at line 384 of file HIMonitoringElectronsTool.cxx.

384  {
385  //if( endOfLowStatFlag() || endOfLumiBlockFlag() ) { }
386 
387 
388  if (endOfRunFlag()) {
389  if (m_h_FCalEt_looseLH->GetEntries() > 0) m_h_FCalEt_looseLH->Scale(1. / m_h_FCalEt_looseLH->GetEntries());
390  if (m_h_FCalEt_mediumLH->GetEntries() > 0) m_h_FCalEt_mediumLH->Scale(1. / m_h_FCalEt_mediumLH->GetEntries());
391  if (m_h_FCalEt_tightLH->GetEntries() > 0) m_h_FCalEt_tightLH->Scale(1. / m_h_FCalEt_tightLH->GetEntries());
392  if (m_h_FCalEt_A_looseLH->GetEntries() > 0) m_h_FCalEt_A_looseLH->Scale(1. / m_h_FCalEt_A_looseLH->GetEntries());
393  if (m_h_FCalEt_A_mediumLH->GetEntries() > 0) m_h_FCalEt_A_mediumLH->Scale(1. / m_h_FCalEt_A_mediumLH->GetEntries());
394 
395  if (m_h_FCalEt_A_tightLH->GetEntries() > 0) m_h_FCalEt_A_tightLH->Scale(1. / m_h_FCalEt_A_tightLH->GetEntries());
396  if (m_h_FCalEt_C_looseLH->GetEntries() > 0) m_h_FCalEt_C_looseLH->Scale(1. / m_h_FCalEt_C_looseLH->GetEntries());
397  if (m_h_FCalEt_C_mediumLH->GetEntries() > 0) m_h_FCalEt_C_mediumLH->Scale(1. / m_h_FCalEt_C_mediumLH->GetEntries());
398 
399  if (m_h_FCalEt_C_tightLH->GetEntries() > 0) m_h_FCalEt_C_tightLH->Scale(1. / m_h_FCalEt_C_tightLH->GetEntries());
400  if (m_h_electron_z0sintheta->GetEntries() > 0) m_h_electron_z0sintheta->Scale(
401  1. / m_h_electron_z0sintheta->GetEntries());
402  }
403 
404  return StatusCode::SUCCESS;
405 }

◆ regEfficiency()

StatusCode ManagedMonitorToolBase::regEfficiency ( TEfficiency *  e,
const MonGroup group 
)
virtualinherited

Registers a TEfficiency to be included in the output stream using logical parameters that describe the plot.

Definition at line 1648 of file ManagedMonitorToolBase.cxx.

1648  {
1649  if (!e)
1650  return StatusCode::FAILURE;
1651 
1652  TGraph* g = reinterpret_cast<TGraph*>(e);
1653  std::string name = e->GetName();
1654 
1655  // MANAGED
1656  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1657  // warn about not using merge algorithms
1658  if (group.histo_mgmt() == ATTRIB_X_VS_LB && group.merge().empty()) {
1659  ATH_MSG_WARNING("HEY! Attempting to register "<<name<<" as a per-LB histogram, but not setting the merge algorithm! Use \"merge\", at least.");
1660  }
1661  // add the efficiency to rebooking vector
1662  if (m_supportedIntervalsForRebooking.count(group.interval())) {
1663  m_templateEfficiencies[group.interval()].push_back( MgmtParams<TEfficiency>(e, group) );
1664  } else {
1665  ATH_MSG_ERROR("Attempt to book managed graph " << name << " with invalid interval type " << intervalEnumToString(group.interval()));
1666  return StatusCode::FAILURE;
1667  }
1668 
1669  MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1670  std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1671  registerMetadata(streamName, name, group).ignore();
1672  return m_THistSvc->regGraph( streamName, g );
1673  } else {
1674  // UNMANAGED
1675  if( m_manager != 0 ) {
1676  std::string genericName = NoOutputStream().getStreamName( this, group, name );
1677  m_manager->writeAndDelete( genericName );
1678  m_manager->passOwnership( e, genericName );
1679  }
1680 
1681  std::string streamName = streamNameFunction()->getStreamName( this, group, name, false );
1683  if (smd != StatusCode::SUCCESS)
1684  return StatusCode::FAILURE;
1685 
1686  return m_THistSvc->regGraph( streamName, g );
1687  }
1688 }

◆ regGraph() [1/2]

StatusCode ManagedMonitorToolBase::regGraph ( TGraph *  g,
const MonGroup group 
)
virtualinherited

Registers a TGraph to be included in the output stream using logical parameters that describe the graph.

Definition at line 1702 of file ManagedMonitorToolBase.cxx.

1704 {
1705  if (!g)
1706  return StatusCode::FAILURE;
1707 
1708  // This part of the code deals with MANAGED type
1709  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1710  // Create an unmanaged group based on the original MonGroup instance passed
1711  // This is needed because managed graph is presented as a number of unmanaged
1712  // graphs (one per each interval)
1713  MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1714 
1715  if (m_supportedIntervalsForRebooking.count(group.interval())) {
1716  m_templateGraphs[group.interval()].push_back( MgmtParams<TGraph>(g, group_unmanaged) );
1717  } else {
1718  ATH_MSG_ERROR("Attempt to book managed graph " << g->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1719  return StatusCode::FAILURE;
1720  }
1721 
1722  std::string name = g->GetName();
1723  std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1724  registerMetadata(streamName, name, group).ignore();
1725  return m_THistSvc->regGraph( streamName, g );
1726  //return m_THistSvc->regGraph( streamName );
1727  }
1728 
1729  // This part of the code deals with UNMANAGED type
1730  std::string gName = g->GetName();
1731 
1732  if( m_manager != 0 ) {
1733  std::string genericName = NoOutputStream().getStreamName( this, group, gName );
1734  m_manager->writeAndDelete( genericName );
1735  m_manager->passOwnership( g, genericName );
1736  }
1737 
1738  std::string streamName = streamNameFunction()->getStreamName( this, group, gName, false );
1739 
1741  if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1742 
1743  return m_THistSvc->regGraph( streamName, g );
1744 }

◆ regGraph() [2/2]

StatusCode ManagedMonitorToolBase::regGraph ( TGraph *  g,
const std::string &  system,
Interval_t  interval,
MgmtAttr_t  histo_mgmt = ATTRIB_MANAGED,
const std::string &  chain = "",
const std::string &  merge = "" 
)
virtualinherited

Registers a TGraph to be included in the output stream using logical parameters that describe the graph.

Definition at line 1692 of file ManagedMonitorToolBase.cxx.

1695 {
1696  MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1697  return regGraph( g, group );
1698 }

◆ regHist() [1/4]

StatusCode ManagedMonitorToolBase::regHist ( LWHist h,
const MonGroup group 
)
virtualinherited

Definition at line 1522 of file ManagedMonitorToolBase.cxx.

1523 {
1524  // You may want to setROOTBackend to true in online environment
1525  //LWHistControls::setROOTBackend(true);
1526 
1527  if (!h)
1528  return StatusCode::FAILURE;
1529 
1530  if (!m_bookHistogramsInitial) {
1531  ATH_MSG_DEBUG("Yura: very first time");
1532  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1533 
1534  ATH_MSG_DEBUG("Yura: we have managed histograms");
1535  if (m_supportedIntervalsForRebooking.count(group.interval())) {
1536  ATH_MSG_DEBUG(" Yura: adding histogram" << h->GetName());
1537  m_templateLWHistograms[group.interval()].push_back( MgmtParams<LWHist>(h, group) );
1538  } else {
1539  ATH_MSG_ERROR("Attempt to book managed histogram " << h->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1540  return StatusCode::FAILURE;
1541  }
1542  //return StatusCode::SUCCESS;
1543  }
1544  }
1545 
1546  //FIXME: Code copied more or less verbatim from above. Collect most code (espc. for streamname) in common helpers!!
1547  std::string hName = h->GetName();
1548 
1549  if( m_manager )
1550  {
1551  std::string genericName = NoOutputStream().getStreamName(this, group, hName );
1552  LWHistAthMonWrapper::setKey(h,genericName);
1553  LWHist* prevLWHist = m_manager->ownedLWHistOfKey(genericName);
1554  if (prevLWHist)
1555  {
1556  std::set<LWHist*>::iterator it = m_lwhists.find(prevLWHist);
1557  if (it!=m_lwhists.end())
1558  {
1559  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1560  m_manager->writeAndResetLWHist( genericName, LWHistAthMonWrapper::streamName(prevLWHist) );
1561  } else {
1562  m_manager->writeAndDeleteLWHist( genericName, LWHistAthMonWrapper::streamName(prevLWHist) );
1563  }
1564  m_lwhists.erase(it);
1565  }
1566  }
1567  m_manager->passOwnership( h, genericName );
1568  }
1569  m_lwhists.insert(h);
1570 
1571  std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1573  registerMetadata(streamName, hName, group).ignore();
1574 
1575  //Delay registration with THistSvc (unless root backend):
1576  //m_lwhistMap.insert(std::pair<LWHist*,std::string>(h,streamName));
1577  if (h->usingROOTBackend())
1578  {
1579  h->setOwnsROOTHisto(false);//Since might end up with thist svc
1580  return m_THistSvc->regHist( streamName, h->getROOTHistBase() );
1581  }
1582 
1583  return StatusCode::SUCCESS;
1584 
1585 }

◆ regHist() [2/4]

StatusCode ManagedMonitorToolBase::regHist ( LWHist h,
const std::string &  system,
Interval_t  interval,
MgmtAttr_t  histo_mgmt = ATTRIB_MANAGED,
const std::string &  chain = "",
const std::string &  merge = "" 
)
virtualinherited

Support for lightweight histograms:

Definition at line 1515 of file ManagedMonitorToolBase.cxx.

1517 {
1518  MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1519  return regHist( h, group );
1520 }

◆ regHist() [3/4]

StatusCode ManagedMonitorToolBase::regHist ( TH1 h,
const MonGroup group 
)
virtualinherited

Registers a TH1 (including TH2, TH3, and TProfile) to be included in the output stream using logical parameters that describe the histogram.

A histogram is passed via reference to a pointer.

Definition at line 1462 of file ManagedMonitorToolBase.cxx.

1464 {
1465 // ManagedMonitorToolBase_addHistStatistics(this,h);
1466 
1467  if (!h)
1468  return StatusCode::FAILURE;
1469 
1470  // This part of the code deals with MANAGED type
1471  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1472  /*
1473  Create an unmanaged group based on the original MonGroup instance passed
1474  It is needed because managed histogram is presented as a number of unmanaged
1475  histograms (one per each interval)
1476  Update (PUEO) - I don't think it actually matters, and need to keep
1477  track of "proper" attribute for X_VS_LB
1478  */
1479 
1480  if (group.histo_mgmt() == ATTRIB_X_VS_LB && group.merge().empty()) {
1481  ATH_MSG_WARNING("HEY! You're attempting to register " << h->GetName() << " as a per-LB histogram, but you're not setting the merge algorithm! This is a SUPER-BAD idea! Use \"merge\", at least.");
1482  }
1483 
1484  if (m_supportedIntervalsForRebooking.count(group.interval())) {
1485  m_templateHistograms[group.interval()].push_back( MgmtParams<TH1>(h, group) );
1486  } else {
1487  ATH_MSG_ERROR("Attempt to book managed histogram " << h->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1488  return StatusCode::FAILURE;
1489  }
1490 
1491  std::string hName = h->GetName();
1492  MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1493  std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, hName, false );
1494  registerMetadata(streamName, hName, group).ignore();
1495  return m_THistSvc->regHist( streamName, h );
1496  }
1497 
1498  // This part of the code deals with UNMANAGED type
1499  std::string hName = h->GetName();
1500 
1501  if( m_manager != 0 ) {
1502  std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1503  m_manager->writeAndDelete( genericName );
1504  m_manager->passOwnership( h, genericName );
1505  }
1506 
1507  std::string streamName = streamNameFunction()->getStreamName( this, group, hName, false );
1508 
1510  if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1511 
1512  return m_THistSvc->regHist( streamName, h );
1513 }

◆ regHist() [4/4]

StatusCode ManagedMonitorToolBase::regHist ( TH1 h,
const std::string &  system,
Interval_t  interval,
MgmtAttr_t  histo_mgmt = ATTRIB_MANAGED,
const std::string &  chain = "",
const std::string &  merge = "" 
)
virtualinherited

Registers a TH1 (including TH2, TH3, and TProfile) to be included in the output stream using logical parameters that describe the histogram.

Definition at line 1453 of file ManagedMonitorToolBase.cxx.

1456 {
1457  MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1458  return regHist( h, group );
1459 }

◆ registerMetadata()

StatusCode ManagedMonitorToolBase::registerMetadata ( const std::string &  streamName,
const std::string &  hName,
const MonGroup group 
)
protectedinherited

Definition at line 1005 of file ManagedMonitorToolBase.cxx.

1007  {
1009  TTree* metadata(0);
1010  std::string mdStreamName( streamName );
1011  size_t found=mdStreamName.rfind('/');
1012 
1013  if ( found != std::string::npos )
1014  mdStreamName.replace( found, mdStreamName.length(), "/metadata" );
1015 
1016  MDMap_t::iterator i = m_metadataMap.find( mdStreamName );
1017  if( i == m_metadataMap.end() ) {
1018  metadata = new TTree( "metadata", "Monitoring Metadata" );
1019  if (! metadata) return StatusCode::FAILURE;
1020  StatusCode scmd = m_THistSvc->regTree( mdStreamName, metadata );
1021  if (scmd == StatusCode::FAILURE) return StatusCode::FAILURE;
1022  MDMap_t::value_type valToInsert( mdStreamName, new OutputMetadata(metadata) );
1023  i = m_metadataMap.insert( valToInsert ).first;
1024  }
1025 
1026  i->second->fill( hName, group.interval(), group.chain(), group.merge() );
1027  }
1028  return StatusCode::SUCCESS;
1029 }

◆ regManagedEfficiencies()

StatusCode ManagedMonitorToolBase::regManagedEfficiencies ( std::vector< MgmtParams< TEfficiency > > &  templateEfficiencies)
protectedinherited

Definition at line 1200 of file ManagedMonitorToolBase.cxx.

1200  {
1201  bool allIsOk = true;
1202  for( auto& it : templateEfficiencies ) {
1203  // get components of MgmtParams and copy efficiency
1204  MonGroup group = it.m_group;
1205  TEfficiency* theEfficiency = it.m_templateHist;
1206  TEfficiency* e = static_cast<TEfficiency*>(theEfficiency->Clone());
1207  int nbins = theEfficiency->GetTotalHistogram()->GetNbinsX();
1208  int xlow = theEfficiency->GetTotalHistogram()->GetXaxis()->GetXmin();
1209  int xhigh = theEfficiency->GetTotalHistogram()->GetXaxis()->GetXmax();
1210  e->SetBins(nbins,xlow,xhigh); // reset histogram
1211  std::string name = e->GetName();
1212 
1213  // make TGraph casts of TEfficiencies
1214  TGraph* theGraph = reinterpret_cast<TGraph*>(theEfficiency);
1215  TGraph* g = reinterpret_cast<TGraph*>(e);
1216 
1217  // Get the streamName for the previous interval
1218  std::string streamName = streamNameFunction()->getStreamName( this, group, name, true );
1219 
1220  // RE-REGISTER
1221  // 1) De-register the original graph with the THistSvc
1222  StatusCode sc1 = m_THistSvc->deReg( theGraph );
1223  if (sc1 == StatusCode::FAILURE) allIsOk = false;
1224  // 2) Fix THistSvc->deReg for TGraphs
1225  bool doneCleaning = false;
1226  std::string directoryName = streamNameFunction()->getDirectoryName( this, group, name, true );
1227  TSeqCollection *filelist=gROOT->GetListOfFiles();
1228  for (int i=0; i<filelist->GetEntries(); i++) {
1229  ATH_MSG_DEBUG( "List of files: " << filelist->At(i)->GetName());
1230  TFile* file = static_cast<TFile*>(filelist->At(i));
1231  StatusCode sc2 = THistSvc_deReg_fixTGraph(file, theGraph, directoryName);
1232  if (sc2 == StatusCode::SUCCESS) doneCleaning = true;
1233  }
1234  // 3) Check if TGraph fix has been applied successfully
1235  if (!doneCleaning) {
1236  ATH_MSG_ERROR("THistSvc_deReg_fixTGraph: failed to apply TGraph fix for the THist Svc!");
1237  allIsOk = false;
1238  }
1239  // 4) Register cloned histogram under previous interval streamName
1240  StatusCode sc3 = m_THistSvc->regGraph( streamName, g );
1241  if (sc3 == StatusCode::FAILURE)
1242  allIsOk = false;
1243 
1244  // get streamname for interval
1245  streamName = streamNameFunction()->getStreamName( this, group, name, false );
1246  // store metadata
1248  if (smd != StatusCode::SUCCESS) allIsOk = false;
1249  // Re-register the original graph
1250  StatusCode sc4 = m_THistSvc->regGraph( streamName, theGraph );
1251  if (sc4 == StatusCode::FAILURE) allIsOk = false;
1252  }
1253 
1254  if (!allIsOk) return StatusCode::FAILURE;
1255  return StatusCode::SUCCESS;
1256 }

◆ regManagedGraphs()

StatusCode ManagedMonitorToolBase::regManagedGraphs ( std::vector< MgmtParams< TGraph > > &  templateGraphs)
protectedinherited

Definition at line 1129 of file ManagedMonitorToolBase.cxx.

1131 {
1132  // See the description for the regManagedHistograms method
1133  bool allIsOk = true;
1134 
1135  for( std::vector< MgmtParams<TGraph> >::iterator it = templateGraphs.begin(); it != templateGraphs.end(); ++it ) {
1136  MonGroup group = (*it).m_group;
1137 
1138  // Get a handle to the graph
1139  TGraph* theGraph = (*it).m_templateHist;
1140 
1141  // Clone the graph
1142  TGraph* g = static_cast<TGraph*>(theGraph->Clone());
1143  theGraph->Set(0); // equivalent to Reset() for TH1
1144 
1145  // Get name
1146  std::string gName = g->GetName();
1147 
1148  // Get the streamName for the previous interval
1149  std::string streamName = streamNameFunction()->getStreamName( this, group, gName, true );
1150 
1151  // De-register the original graph with the THistSvc
1152  StatusCode sc1 = m_THistSvc->deReg( theGraph );
1153  if (sc1 == StatusCode::FAILURE)
1154  allIsOk = false;
1155 
1156  // *** begin ***
1157  // Fix THistSvc->deReg for TGraphs
1158  bool doneCleaning = false;
1159  std::string directoryName = streamNameFunction()->getDirectoryName( this, group, gName, true );
1160  TSeqCollection *filelist=gROOT->GetListOfFiles();
1161  for (int i=0; i<filelist->GetEntries(); i++) {
1162  ATH_MSG_DEBUG( "List of files: " << filelist->At(i)->GetName());
1163  TFile* file = static_cast<TFile*>(filelist->At(i));
1164  StatusCode sc2 = THistSvc_deReg_fixTGraph(file, theGraph, directoryName);
1165  if (sc2 == StatusCode::SUCCESS)
1166  doneCleaning = true;
1167  }
1168 
1169  // Check if TGraph fix has been applied successfully
1170  if (!doneCleaning) {
1171  ATH_MSG_ERROR("THistSvc_deReg_fixTGraph: failed to apply TGraph fix for the THist Svc!");
1172  allIsOk = false;
1173  }
1174  // *** end ***
1175 
1176  // Register clonned histogram under previous interval streamName
1177  StatusCode sc3 = m_THistSvc->regGraph( streamName, g );
1178  if (sc3 == StatusCode::FAILURE)
1179  allIsOk = false;
1180 
1181  // Get streamName for the current interval
1182  streamName = streamNameFunction()->getStreamName( this, group, gName, false );
1183  // Register metadata information with the current interval streamname
1185  if (smd != StatusCode::SUCCESS)
1186  allIsOk = false;
1187 
1188  // Re-register the original graph with the current interval streamName
1189  StatusCode sc4 = m_THistSvc->regGraph( streamName, theGraph );
1190  if (sc4 == StatusCode::FAILURE)
1191  allIsOk = false;
1192 
1193  }
1194 
1195  if (!allIsOk) return StatusCode::FAILURE;
1196 
1197  return StatusCode::SUCCESS;
1198 }

◆ regManagedHistograms()

StatusCode ManagedMonitorToolBase::regManagedHistograms ( std::vector< MgmtParams< TH1 > > &  templateHistograms)
protectedinherited

Definition at line 1032 of file ManagedMonitorToolBase.cxx.

1034 {
1035  // The method registers histograms with the THistSvc and saves them to file.
1036 
1037  // The funky business with registering and deregistering the histogram is needed
1038  // to get the correct directory when saving histograms. THistSvc deals with ROOT
1039  // to set up proper TDirectory, so we rely on it.
1040  // E.g.
1041  // m_THistSvc->regHist( streamName, h ): sets the correct TDirectory with streamName
1042  // m_THistSvc->deReg( h ) - deregister from THistSvc otherwise THistSvc will try to save it
1043  // at the end of execution
1044  // use passownership of the histogram and save it to file
1045  // m_manager->passOwnership( h, genericName );
1046  // m_manager->writeAndDelete( genericName );
1047  bool allIsOk = true;
1048 
1049  for( std::vector< MgmtParams<TH1> >::iterator it = templateHistograms.begin(); it != templateHistograms.end(); ++it ) {
1050  MonGroup& group = (*it).m_group;
1051 
1052  // Get a handle to the histogram
1053  TH1* theHist = (*it).m_templateHist;
1054 
1055  // Clone the histogram
1056  TH1* h = static_cast<TH1*>(theHist->Clone());
1057  theHist->Reset();
1058 
1059  // Get name
1060  std::string hName = h->GetName();
1061 
1062  // Get the streamName for the previous interval
1063  std::string streamName = streamNameFunction()->getStreamName( this, group, hName, true );
1064 
1065  // Register the histogram with the THistSvc
1066  StatusCode sc1 = m_THistSvc->deReg( theHist );
1067  if (sc1 == StatusCode::FAILURE) allIsOk = false;
1068 
1069  // Register clonned histogram under previous interval streamName
1070  StatusCode sc2 = m_THistSvc->regHist( streamName, h );
1071  if (sc2 == StatusCode::FAILURE) allIsOk = false;
1072 
1073  if( m_manager != 0 ) {
1074  std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1075  m_manager->passOwnership( h, genericName );
1076  m_manager->writeAndDelete( genericName );
1077  }
1078 
1079  // Get streamName for the current interval
1080  streamName = streamNameFunction()->getStreamName( this, group, hName, false );
1081  // Register metadata information with the current interval streamname
1083  if (smd != StatusCode::SUCCESS) allIsOk = false;
1084 
1085  // Re-register the original histogram with the current interval streamName
1086  StatusCode sc3 = m_THistSvc->regHist( streamName, theHist );
1087  if (sc3 == StatusCode::FAILURE) allIsOk = false;
1088 
1089  }
1090 
1091  if (!allIsOk) return StatusCode::FAILURE;
1092 
1093  return StatusCode::SUCCESS;
1094 }

◆ regManagedLWHistograms()

StatusCode ManagedMonitorToolBase::regManagedLWHistograms ( std::vector< MgmtParams< LWHist > > &  templateLWHistograms)
protectedinherited

Definition at line 1314 of file ManagedMonitorToolBase.cxx.

1316 {
1317  StatusCode sc1;
1318 
1319  for( std::vector< MgmtParams<LWHist> >::iterator it = templateLWHistograms.begin(); it != templateLWHistograms.end(); ++it ) {
1320  // Get histogram group
1321  MonGroup group = (*it).m_group;
1322 
1323  // Get handle to the histogram
1324  LWHist* h = (*it).m_templateHist;
1325 
1326  sc1 = regHist(h, group);
1327  }
1328 
1329  return sc1;
1330 }

◆ regManagedTrees()

StatusCode ManagedMonitorToolBase::regManagedTrees ( std::vector< MgmtParams< TTree > > &  templateTrees)
protectedinherited

Definition at line 1260 of file ManagedMonitorToolBase.cxx.

1262 {
1263  // See the description for the regManagedHistograms method
1264  bool allIsOk = true;
1265 
1266  for( std::vector< MgmtParams<TTree> >::iterator it = templateTrees.begin(); it != templateTrees.end(); ++it ) {
1267  MonGroup group = (*it).m_group;
1268 
1269  // Get a handle to the original tree
1270  TTree* theTree = (*it).m_templateHist;
1271 
1272  // Clone the tree
1273  TTree* t = static_cast<TTree*>(theTree->Clone());
1274  theTree->Reset();
1275 
1276  // Dumping the tree
1277  std::string name = t->GetName();
1278 
1279  // Get the streamName for the previous interval
1280  std::string streamName = streamNameFunction()->getStreamName( this, group, name, true );
1281 
1282  // De-register original tree with the THistSvc
1283  StatusCode sc1 = m_THistSvc->deReg( theTree );
1284  if (sc1 == StatusCode::FAILURE) allIsOk = false;
1285 
1286  // Register clonned tree under previous interval streamName
1287  StatusCode sc2 = m_THistSvc->regTree( streamName, t );
1288  if (sc2 == StatusCode::FAILURE) allIsOk = false;
1289 
1290  if( m_manager != 0 ) {
1291  std::string genericName = NoOutputStream().getStreamName( this, group, name );
1292  m_manager->passOwnership( t, genericName );
1293  m_manager->writeAndDelete( genericName );
1294  }
1295 
1296  // Get streamName for the current interval
1297  streamName = streamNameFunction()->getStreamName( this, group, name, false );
1298  // Register metadata information with the current interval streamname
1300  if (smd != StatusCode::SUCCESS) allIsOk = false;
1301 
1302  // Re-register the original graph with the current interval streamName
1303  StatusCode sc3 = m_THistSvc->regTree( streamName, theTree );
1304  if (sc3 == StatusCode::FAILURE) allIsOk = false;
1305 
1306  }
1307 
1308  if (!allIsOk) return StatusCode::FAILURE;
1309 
1310  return StatusCode::SUCCESS;
1311 }

◆ regTree() [1/2]

StatusCode ManagedMonitorToolBase::regTree ( TTree *  t,
const MonGroup group 
)
virtualinherited

Registers a TTree to be included in the output stream using logical parameters that describe it.

Definition at line 1758 of file ManagedMonitorToolBase.cxx.

1760 {
1761 
1762  // This part of the code deals with MANAGED type
1763  if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1764  // Create an unmanaged group based on the original MonGroup instance passed
1765  // This is needed because managed tree is presented as a number of unmanaged
1766  // trees (one per each interval)
1767  MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1768 
1769  if (m_supportedIntervalsForRebooking.count(group.interval())) {
1770  m_templateTrees[group.interval()].push_back( MgmtParams<TTree>(t, group_unmanaged) );
1771  } else {
1772  ATH_MSG_ERROR("Attempt to book managed tree " << t->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1773  return StatusCode::FAILURE;
1774  }
1775 
1776  std::string name = t->GetName();
1777  std::string genericName = NoOutputStream().getStreamName( this, group_unmanaged, name );
1778  std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1779  registerMetadata(streamName, name, group).ignore();
1780  return m_THistSvc->regTree( streamName, t );
1781  }
1782 
1783 
1784  // This part of the code deals with UNMANAGED type
1785  std::string tName = t->GetName();
1786 
1787  if( m_manager != 0 ) {
1788  std::string genericName = NoOutputStream().getStreamName( this, group, tName );
1789  m_manager->writeAndDelete( genericName );
1790  m_manager->passOwnership( t, genericName );
1791  }
1792 
1793  std::string streamName = streamNameFunction()->getStreamName( this, group, tName, false );
1794 
1796  if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1797 
1798  return m_THistSvc->regTree( streamName, t );
1799 }

◆ regTree() [2/2]

StatusCode ManagedMonitorToolBase::regTree ( TTree *  t,
const std::string &  system,
Interval_t  interval,
MgmtAttr_t  histo_mgmt = ATTRIB_MANAGED,
const std::string &  chain = "",
const std::string &  merge = "" 
)
virtualinherited

Registers a TTree to be included in the output stream using logical parameters that describe it.

Definition at line 1748 of file ManagedMonitorToolBase.cxx.

1751 {
1752  MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1753  return regTree( t, group );
1754 }

◆ renounce()

std::enable_if_t<std::is_void_v<std::result_of_t<decltype(&T::renounce)(T)> > && !std::is_base_of_v<SG::VarHandleKeyArray, T> && std::is_base_of_v<Gaudi::DataHandle, T>, void> AthCommonDataStore< AthCommonMsg< AlgTool > >::renounce ( T &  h)
inlineprotectedinherited

Definition at line 380 of file AthCommonDataStore.h.

381  {
382  h.renounce();
383  PBASE::renounce (h);
384  }

◆ renounceArray()

void AthCommonDataStore< AthCommonMsg< AlgTool > >::renounceArray ( SG::VarHandleKeyArray handlesArray)
inlineprotectedinherited

remove all handles from I/O resolution

Definition at line 364 of file AthCommonDataStore.h.

364  {
365  handlesArray.renounce();
366  }

◆ runStat()

StatusCode ManagedMonitorToolBase::runStat ( )
virtualinherited

This implementation does nothing; equivalent functionality may be provided by procHists( true, true, true ).

Implements IMonitorToolBase.

Definition at line 1893 of file ManagedMonitorToolBase.cxx.

1895 {
1896  return StatusCode::SUCCESS;
1897 }

◆ setMonManager()

void ManagedMonitorToolBase::setMonManager ( AthenaMonManager manager)
virtualinherited

Takes a pointer to a managing object to get information from it when needed.

Definition at line 1435 of file ManagedMonitorToolBase.cxx.

1437 {
1438  ATH_MSG_DEBUG( "ManagedMonitorToolBase::setMonManager():");
1439  m_manager = manager;
1440  if( m_manager != 0 ) {
1441  ATH_MSG_DEBUG( " --> Setting manager");
1442  m_managerNameProp = m_manager->name();
1446  delete m_streamNameFcn;
1448  }
1449  ATH_MSG_DEBUG( " --> Exiting successfully");
1450 }

◆ setupOutputStreams()

StatusCode ManagedMonitorToolBase::setupOutputStreams ( std::vector< std::string >  Mapping = std::vector<std::string>())
virtualinherited

This implementation does nothing—streams in this class should be managed by the AthenaMonManager.

Consider using MonitorToolBase for user-managed streams.

Implements IMonitorToolBase.

Definition at line 1882 of file ManagedMonitorToolBase.cxx.

1884 {
1885  // All instances should write to the stream(s) defined by the
1886  // AthenaMonManager.
1887 
1888  return StatusCode::SUCCESS;
1889 }

◆ streamNameFunction()

ManagedMonitorToolBase::StreamNameFcn * ManagedMonitorToolBase::streamNameFunction ( )
virtualinherited

Returns the function object that converts logical paramters into a physical stream name.

Definition at line 502 of file ManagedMonitorToolBase.cxx.

504 {
505  if( m_streamNameFcn == 0 ) {
506  msg(MSG::ERROR) << "!! streamNameFunction() has not been initialized !!" << endmsg;
507  msg(MSG::ERROR) << " --> neither ManagedMonitorToolBase::initialize() nor" << endmsg;
508  msg(MSG::ERROR) << " --> ManagedMonitorToolBase::setMonManager() has been called." << endmsg;
509  msg(MSG::ERROR) << " --> Correct configuration cannot be guaranteed from this point." << endmsg;
511  }
512  return m_streamNameFcn;
513 }

◆ sysInitialize()

virtual StatusCode AthCommonDataStore< AthCommonMsg< AlgTool > >::sysInitialize ( )
overridevirtualinherited

Perform system initialization for an algorithm.

We override this to declare all the elements of handle key arrays at the end of initialization. See comments on updateVHKA.

Reimplemented in DerivationFramework::CfAthAlgTool, AthCheckedComponent< AthAlgTool >, AthCheckedComponent<::AthAlgTool >, and asg::AsgMetadataTool.

◆ sysStart()

virtual StatusCode AthCommonDataStore< AthCommonMsg< AlgTool > >::sysStart ( )
overridevirtualinherited

Handle START transition.

We override this in order to make sure that conditions handle keys can cache a pointer to the conditions container.

◆ THistSvc_deReg_fixTGraph()

StatusCode ManagedMonitorToolBase::THistSvc_deReg_fixTGraph ( TFile *  file,
TGraph *  theGraph,
std::string &  directoryName 
)
protectedinherited

Fixes THistSvc->deReg(obj) when obj is TGraph instance.

Read more in source file about this bug.

Definition at line 1097 of file ManagedMonitorToolBase.cxx.

1099 {
1100  // THistSvc employs TDirectory Append method when registering TGraph.
1101  // When deReg is used to de-register TGraph object, THistSvc only removes the object
1102  // from its internal management but forgets to delete from TDirectory.
1103  // The current method fixes this problem by removing the TGraph object manually
1104  // after THistSvc->deReg(TGraph* obj) is called.
1105 
1106  // Saves and restores gFile and gDirectory
1107  GlobalDirectoryRestore restore;
1108 
1109  // This check is true when TGraph object is removed successfully
1110  bool graphRemoved = false;
1111 
1112  file->cd("/");
1113  TDirectory* dir = file->GetDirectory(directoryName.c_str());
1114  if (dir != 0) {
1115  dir->cd();
1116  TObject* obj = dir->Remove(theGraph);
1117  if (obj != 0)
1118  graphRemoved = true;
1119  }
1120 
1121  if (!graphRemoved) {
1122  return StatusCode::FAILURE;
1123  }
1124 
1125  return StatusCode::SUCCESS;
1126 }

◆ trigChainsArePassed()

bool ManagedMonitorToolBase::trigChainsArePassed ( std::vector< std::string > &  vTrigNames)
protectedvirtualinherited

Definition at line 2324 of file ManagedMonitorToolBase.cxx.

2326 {
2327  ATH_MSG_DEBUG( "ManagedMonitorToolBase::trigChainsArePassed:");
2328 
2329  for(unsigned int i=0; i<vTrigNames.size(); i++) {
2330  if( m_trigDecTool->isPassed(vTrigNames[i]) ) {
2331  ATH_MSG_DEBUG( " + \"" << vTrigNames[i] << "\" passed, returning \'true\'");
2332  return true;
2333  }
2334  else {
2335  ATH_MSG_DEBUG( " - \"" << vTrigNames[i] << "\" did not pass");
2336  }
2337  }
2338 
2339  return false;
2340 }

◆ updateTriggersForGroups()

void ManagedMonitorToolBase::updateTriggersForGroups ( std::vector< std::string > &  vTrigChainNames)
protectedinherited

Definition at line 2362 of file ManagedMonitorToolBase.cxx.

2363  {
2364  for (size_t i = 0; i < vTrigChainNames.size(); ++i) {
2365  std::string& thisName = vTrigChainNames[i];
2366  if (thisName.compare(0, 9, "CATEGORY_") ==0) {
2367  ATH_MSG_DEBUG("Found a trigger category: " << thisName << ". We will unpack it.");
2368  std::vector<std::string> triggers = m_trigTranslator->translate(thisName.substr(9,std::string::npos));
2369  std::ostringstream oss;
2370  oss << "(";
2371  for (size_t itrig = 0; itrig < triggers.size(); ++itrig) {
2372  if (itrig != 0) {
2373  oss << "|";
2374  }
2375  oss << triggers[itrig];
2376  }
2377  oss << ")";
2378  // replace with new value
2379  std::string newval = oss.str();
2380  ATH_MSG_DEBUG("Replaced with " << newval);
2381  vTrigChainNames[i] = newval;
2382  }
2383  }
2384 }

◆ updateVHKA()

void AthCommonDataStore< AthCommonMsg< AlgTool > >::updateVHKA ( Gaudi::Details::PropertyBase &  )
inlineinherited

Definition at line 308 of file AthCommonDataStore.h.

308  {
309  // debug() << "updateVHKA for property " << p.name() << " " << p.toString()
310  // << " size: " << m_vhka.size() << endmsg;
311  for (auto &a : m_vhka) {
312  std::vector<SG::VarHandleKey*> keys = a->keys();
313  for (auto k : keys) {
314  k->setOwner(this);
315  }
316  }
317  }

◆ writeAndDelete()

StatusCode ManagedMonitorToolBase::writeAndDelete ( TH1 h,
const MonGroup group 
)
virtualinherited

Write out histogram and delete it.

Definition at line 1803 of file ManagedMonitorToolBase.cxx.

1804  {
1805  if (!h)
1806  return StatusCode::FAILURE;
1807 
1808  std::string hName = h->GetName();
1809 
1810  if( m_manager != 0 ) {
1811  std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1812  m_manager->writeAndDelete( genericName );
1813  }
1814  return StatusCode::SUCCESS;
1815 }

Member Data Documentation

◆ m_bookHistogramsInitial

bool ManagedMonitorToolBase::m_bookHistogramsInitial
privateinherited

Definition at line 956 of file ManagedMonitorToolBase.h.

◆ m_d

Imp* ManagedMonitorToolBase::m_d
privateinherited

Definition at line 963 of file ManagedMonitorToolBase.h.

◆ m_dataType

AthenaMonManager::DataType_t ManagedMonitorToolBase::m_dataType
protectedinherited

Definition at line 901 of file ManagedMonitorToolBase.h.

◆ m_dataTypeStr

std::string ManagedMonitorToolBase::m_dataTypeStr
protectedinherited

Definition at line 897 of file ManagedMonitorToolBase.h.

◆ m_defaultLBDuration

float ManagedMonitorToolBase::m_defaultLBDuration
privateinherited

Definition at line 958 of file ManagedMonitorToolBase.h.

◆ m_deltaeta1_nbins

int HIMonitoringElectronsTool::m_deltaeta1_nbins
private

Definition at line 251 of file HIMonitoringElectronsTool.h.

◆ m_deltaphires_nbins

int HIMonitoringElectronsTool::m_deltaphires_nbins
private

Definition at line 255 of file HIMonitoringElectronsTool.h.

◆ m_detailLevel

unsigned int ManagedMonitorToolBase::m_detailLevel
protectedinherited

Definition at line 899 of file ManagedMonitorToolBase.h.

◆ m_detStore

StoreGateSvc_t AthCommonDataStore< AthCommonMsg< AlgTool > >::m_detStore
privateinherited

Pointer to StoreGate (detector store by default)

Definition at line 393 of file AthCommonDataStore.h.

◆ m_DQFilterTools

ToolHandleArray<IDQFilterTool> ManagedMonitorToolBase::m_DQFilterTools {this,"FilterTools",{}}
protectedinherited

Definition at line 912 of file ManagedMonitorToolBase.h.

◆ m_electronLooseLHTool

AsgElectronLikelihoodTool* HIMonitoringElectronsTool::m_electronLooseLHTool {}
private

Definition at line 31 of file HIMonitoringElectronsTool.h.

◆ m_electronMediumLHTool

AsgElectronLikelihoodTool* HIMonitoringElectronsTool::m_electronMediumLHTool {}
private

Definition at line 32 of file HIMonitoringElectronsTool.h.

◆ m_electronTightLHTool

AsgElectronLikelihoodTool* HIMonitoringElectronsTool::m_electronTightLHTool {}
private

Definition at line 33 of file HIMonitoringElectronsTool.h.

◆ m_endOfEventsBlock

bool ManagedMonitorToolBase::m_endOfEventsBlock
privateinherited

Definition at line 885 of file ManagedMonitorToolBase.h.

◆ m_endOfLowStat

bool ManagedMonitorToolBase::m_endOfLowStat
privateinherited

Definition at line 885 of file ManagedMonitorToolBase.h.

◆ m_endOfLumiBlock

bool ManagedMonitorToolBase::m_endOfLumiBlock
privateinherited

Definition at line 885 of file ManagedMonitorToolBase.h.

◆ m_endOfRun

bool ManagedMonitorToolBase::m_endOfRun
privateinherited

Definition at line 885 of file ManagedMonitorToolBase.h.

◆ m_environment

AthenaMonManager::Environment_t ManagedMonitorToolBase::m_environment
protectedinherited

Definition at line 902 of file ManagedMonitorToolBase.h.

◆ m_environmentStr

std::string ManagedMonitorToolBase::m_environmentStr
protectedinherited

Definition at line 898 of file ManagedMonitorToolBase.h.

◆ m_eprobabilityht_nbins

int HIMonitoringElectronsTool::m_eprobabilityht_nbins
private

Definition at line 259 of file HIMonitoringElectronsTool.h.

◆ m_eratio_nbins

int HIMonitoringElectronsTool::m_eratio_nbins
private

Definition at line 239 of file HIMonitoringElectronsTool.h.

◆ m_eta_nbins

int HIMonitoringElectronsTool::m_eta_nbins
private

Definition at line 207 of file HIMonitoringElectronsTool.h.

◆ m_evtStore

StoreGateSvc_t AthCommonDataStore< AthCommonMsg< AlgTool > >::m_evtStore
privateinherited

Pointer to StoreGate (event store by default)

Definition at line 390 of file AthCommonDataStore.h.

◆ m_f1_nbins

int HIMonitoringElectronsTool::m_f1_nbins
private

Definition at line 243 of file HIMonitoringElectronsTool.h.

◆ m_f3_nbins

int HIMonitoringElectronsTool::m_f3_nbins
private

Definition at line 247 of file HIMonitoringElectronsTool.h.

◆ m_FCalEt

double HIMonitoringElectronsTool::m_FCalEt {}
private

Definition at line 35 of file HIMonitoringElectronsTool.h.

◆ m_FCalEt_A

double HIMonitoringElectronsTool::m_FCalEt_A {}
private

Definition at line 36 of file HIMonitoringElectronsTool.h.

◆ m_FCalEt_C

double HIMonitoringElectronsTool::m_FCalEt_C {}
private

Definition at line 37 of file HIMonitoringElectronsTool.h.

◆ m_FCalEt_nbins

int HIMonitoringElectronsTool::m_FCalEt_nbins
private

histograms ranges and binning

Definition at line 199 of file HIMonitoringElectronsTool.h.

◆ m_FCalEt_oneSide_nbins

int HIMonitoringElectronsTool::m_FCalEt_oneSide_nbins
private

Definition at line 203 of file HIMonitoringElectronsTool.h.

◆ m_fileKey

std::string ManagedMonitorToolBase::m_fileKey
protectedinherited

Definition at line 896 of file ManagedMonitorToolBase.h.

◆ m_h_electron_eta_phi

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_eta_phi {}
private

Definition at line 52 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaeta1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaeta1_looseLH {}
private

Definition at line 160 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaeta1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaeta1_mediumLH {}
private

Definition at line 161 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaeta1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaeta1_tightLH {}
private

Definition at line 162 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaphires_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaphires_looseLH {}
private

Definition at line 173 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaphires_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaphires_mediumLH {}
private

Definition at line 174 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_deltaphires_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_deltaphires_tightLH {}
private

Definition at line 175 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eprobabilityht_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_looseLH {}
private

Definition at line 186 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eprobabilityht_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_mediumLH {}
private

Definition at line 187 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eprobabilityht_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_tightLH {}
private

Definition at line 188 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eratio_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eratio_looseLH {}
private

Definition at line 121 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eratio_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eratio_mediumLH {}
private

Definition at line 122 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_eratio_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_eratio_tightLH {}
private

Definition at line 123 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_etcone20_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_etcone20_looseLH {}
private

Definition at line 56 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_etcone20_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_etcone20_mediumLH {}
private

Definition at line 57 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_etcone20_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_etcone20_tightLH {}
private

Definition at line 58 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f1_looseLH {}
private

Definition at line 134 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f1_mediumLH {}
private

Definition at line 135 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f1_tightLH {}
private

Definition at line 136 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f3_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f3_looseLH {}
private

Definition at line 147 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f3_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f3_mediumLH {}
private

Definition at line 148 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_f3_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_f3_tightLH {}
private

Definition at line 149 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_reta_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_reta_looseLH {}
private

Definition at line 69 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_reta_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_reta_mediumLH {}
private

Definition at line 70 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_reta_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_reta_tightLH {}
private

Definition at line 71 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rhad_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rhad_looseLH {}
private

Definition at line 108 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rhad_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rhad_mediumLH {}
private

Definition at line 109 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rhad_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rhad_tightLH {}
private

Definition at line 110 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rphi_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rphi_looseLH {}
private

Definition at line 82 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rphi_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rphi_mediumLH {}
private

Definition at line 83 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_rphi_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_rphi_tightLH {}
private

Definition at line 84 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_weta2_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_weta2_looseLH {}
private

Definition at line 95 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_weta2_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_weta2_mediumLH {}
private

Definition at line 96 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcal_weta2_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcal_weta2_tightLH {}
private

Definition at line 97 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaeta1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_looseLH {}
private

Definition at line 164 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaeta1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_mediumLH {}
private

Definition at line 165 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaeta1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_tightLH {}
private

Definition at line 166 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaphires_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaphires_looseLH {}
private

Definition at line 177 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaphires_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaphires_mediumLH {}
private

Definition at line 178 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_deltaphires_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_deltaphires_tightLH {}
private

Definition at line 179 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eprobabilityht_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eprobabilityht_looseLH {}
private

Definition at line 190 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eprobabilityht_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eprobabilityht_mediumLH {}
private

Definition at line 191 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eprobabilityht_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eprobabilityht_tightLH {}
private

Definition at line 192 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eratio_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eratio_looseLH {}
private

Definition at line 125 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eratio_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eratio_mediumLH {}
private

Definition at line 126 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_eratio_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_eratio_tightLH {}
private

Definition at line 127 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_etcone20_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_looseLH {}
private

Definition at line 60 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_etcone20_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_mediumLH {}
private

Definition at line 61 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_etcone20_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_tightLH {}
private

Definition at line 62 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f1_looseLH {}
private

Definition at line 138 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f1_mediumLH {}
private

Definition at line 139 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f1_tightLH {}
private

Definition at line 140 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f3_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f3_looseLH {}
private

Definition at line 151 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f3_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f3_mediumLH {}
private

Definition at line 152 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_f3_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_f3_tightLH {}
private

Definition at line 153 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_reta_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_reta_looseLH {}
private

Definition at line 73 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_reta_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_reta_mediumLH {}
private

Definition at line 74 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_reta_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_reta_tightLH {}
private

Definition at line 75 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rhad_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rhad_looseLH {}
private

Definition at line 112 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rhad_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rhad_mediumLH {}
private

Definition at line 113 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rhad_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rhad_tightLH {}
private

Definition at line 114 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rphi_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rphi_looseLH {}
private

Definition at line 86 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rphi_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rphi_mediumLH {}
private

Definition at line 87 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_rphi_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_rphi_tightLH {}
private

Definition at line 88 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_weta2_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_looseLH {}
private

Definition at line 99 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_weta2_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_mediumLH {}
private

Definition at line 100 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalA_weta2_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_tightLH {}
private

Definition at line 101 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaeta1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaeta1_looseLH {}
private

Definition at line 168 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaeta1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaeta1_mediumLH {}
private

Definition at line 169 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaeta1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaeta1_tightLH {}
private

Definition at line 170 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaphires_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_looseLH {}
private

Definition at line 181 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaphires_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_mediumLH {}
private

Definition at line 182 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_deltaphires_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_tightLH {}
private

Definition at line 183 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eprobabilityht_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eprobabilityht_looseLH {}
private

Definition at line 194 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eprobabilityht_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eprobabilityht_mediumLH {}
private

Definition at line 195 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eprobabilityht_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eprobabilityht_tightLH {}
private

Definition at line 196 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eratio_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eratio_looseLH {}
private

Definition at line 129 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eratio_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eratio_mediumLH {}
private

Definition at line 130 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_eratio_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_eratio_tightLH {}
private

Definition at line 131 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_etcone20_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_etcone20_looseLH {}
private

Definition at line 64 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_etcone20_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_etcone20_mediumLH {}
private

Definition at line 65 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_etcone20_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_etcone20_tightLH {}
private

Definition at line 66 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f1_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f1_looseLH {}
private

Definition at line 142 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f1_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f1_mediumLH {}
private

Definition at line 143 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f1_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f1_tightLH {}
private

Definition at line 144 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f3_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f3_looseLH {}
private

Definition at line 155 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f3_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f3_mediumLH {}
private

Definition at line 156 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_f3_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_f3_tightLH {}
private

Definition at line 157 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_reta_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_reta_looseLH {}
private

Definition at line 77 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_reta_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_reta_mediumLH {}
private

Definition at line 78 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_reta_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_reta_tightLH {}
private

Definition at line 79 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rhad_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_looseLH {}
private

Definition at line 116 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rhad_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_mediumLH {}
private

Definition at line 117 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rhad_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_tightLH {}
private

Definition at line 118 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rphi_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rphi_looseLH {}
private

Definition at line 90 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rphi_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rphi_mediumLH {}
private

Definition at line 91 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_rphi_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_rphi_tightLH {}
private

Definition at line 92 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_weta2_looseLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_weta2_looseLH {}
private

Definition at line 103 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_weta2_mediumLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_weta2_mediumLH {}
private

Definition at line 104 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_fcalC_weta2_tightLH

TH2D_LW* HIMonitoringElectronsTool::m_h_electron_fcalC_weta2_tightLH {}
private

Definition at line 105 of file HIMonitoringElectronsTool.h.

◆ m_h_electron_z0sintheta

TH1D* HIMonitoringElectronsTool::m_h_electron_z0sintheta {}
private

Definition at line 53 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_A_looseLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_A_looseLH {}
private

Definition at line 44 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_A_mediumLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_A_mediumLH {}
private

Definition at line 45 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_A_tightLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_A_tightLH {}
private

Definition at line 46 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_C_looseLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_C_looseLH {}
private

Definition at line 48 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_C_mediumLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_C_mediumLH {}
private

Definition at line 49 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_C_tightLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_C_tightLH {}
private

Definition at line 50 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_looseLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_looseLH {}
private

histograms

Definition at line 40 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_mediumLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_mediumLH {}
private

Definition at line 41 of file HIMonitoringElectronsTool.h.

◆ m_h_FCalEt_tightLH

TH1D* HIMonitoringElectronsTool::m_h_FCalEt_tightLH {}
private

Definition at line 42 of file HIMonitoringElectronsTool.h.

◆ m_haveClearedLastEventBlock

bool ManagedMonitorToolBase::m_haveClearedLastEventBlock
protectedinherited

Definition at line 929 of file ManagedMonitorToolBase.h.

◆ m_high_deltaeta1

double HIMonitoringElectronsTool::m_high_deltaeta1
private

Definition at line 253 of file HIMonitoringElectronsTool.h.

◆ m_high_deltaphires

double HIMonitoringElectronsTool::m_high_deltaphires
private

Definition at line 257 of file HIMonitoringElectronsTool.h.

◆ m_high_eprobabilityht

double HIMonitoringElectronsTool::m_high_eprobabilityht
private

Definition at line 261 of file HIMonitoringElectronsTool.h.

◆ m_high_eratio

double HIMonitoringElectronsTool::m_high_eratio
private

Definition at line 241 of file HIMonitoringElectronsTool.h.

◆ m_high_eta

double HIMonitoringElectronsTool::m_high_eta
private

Definition at line 209 of file HIMonitoringElectronsTool.h.

◆ m_high_f1

double HIMonitoringElectronsTool::m_high_f1
private

Definition at line 245 of file HIMonitoringElectronsTool.h.

◆ m_high_f3

double HIMonitoringElectronsTool::m_high_f3
private

Definition at line 249 of file HIMonitoringElectronsTool.h.

◆ m_high_FCalEt

double HIMonitoringElectronsTool::m_high_FCalEt
private

Definition at line 201 of file HIMonitoringElectronsTool.h.

◆ m_high_FCalEt_oneSide

double HIMonitoringElectronsTool::m_high_FCalEt_oneSide
private

Definition at line 205 of file HIMonitoringElectronsTool.h.

◆ m_high_iso

double HIMonitoringElectronsTool::m_high_iso
private

Definition at line 221 of file HIMonitoringElectronsTool.h.

◆ m_high_phi

double HIMonitoringElectronsTool::m_high_phi
private

Definition at line 213 of file HIMonitoringElectronsTool.h.

◆ m_high_reta

double HIMonitoringElectronsTool::m_high_reta
private

Definition at line 225 of file HIMonitoringElectronsTool.h.

◆ m_high_rhad

double HIMonitoringElectronsTool::m_high_rhad
private

Definition at line 237 of file HIMonitoringElectronsTool.h.

◆ m_high_rphi

double HIMonitoringElectronsTool::m_high_rphi
private

Definition at line 229 of file HIMonitoringElectronsTool.h.

◆ m_high_weta2

double HIMonitoringElectronsTool::m_high_weta2
private

Definition at line 233 of file HIMonitoringElectronsTool.h.

◆ m_high_z0sintheta

double HIMonitoringElectronsTool::m_high_z0sintheta
private

Definition at line 217 of file HIMonitoringElectronsTool.h.

◆ m_iso_nbins

int HIMonitoringElectronsTool::m_iso_nbins
private

Definition at line 219 of file HIMonitoringElectronsTool.h.

◆ m_lastHigStatInterval

int ManagedMonitorToolBase::m_lastHigStatInterval
protectedinherited

Definition at line 924 of file ManagedMonitorToolBase.h.

◆ m_lastLowStatInterval

int ManagedMonitorToolBase::m_lastLowStatInterval
protectedinherited

Definition at line 924 of file ManagedMonitorToolBase.h.

◆ m_lastLumiBlock

unsigned int ManagedMonitorToolBase::m_lastLumiBlock
protectedinherited

Definition at line 922 of file ManagedMonitorToolBase.h.

◆ m_lastMedStatInterval

int ManagedMonitorToolBase::m_lastMedStatInterval
protectedinherited

Definition at line 924 of file ManagedMonitorToolBase.h.

◆ m_lastRun

unsigned int ManagedMonitorToolBase::m_lastRun
protectedinherited

Definition at line 923 of file ManagedMonitorToolBase.h.

◆ m_lbDurationDataKey

SG::ReadCondHandleKey<LBDurationCondData> ManagedMonitorToolBase::m_lbDurationDataKey {this,"LBDurationCondDataKey","LBDurationCondData","SG Key of LBDurationCondData object"}
privateinherited

Definition at line 951 of file ManagedMonitorToolBase.h.

◆ m_low_deltaeta1

double HIMonitoringElectronsTool::m_low_deltaeta1
private

Definition at line 252 of file HIMonitoringElectronsTool.h.

◆ m_low_deltaphires

double HIMonitoringElectronsTool::m_low_deltaphires
private

Definition at line 256 of file HIMonitoringElectronsTool.h.

◆ m_low_eprobabilityht

double HIMonitoringElectronsTool::m_low_eprobabilityht
private

Definition at line 260 of file HIMonitoringElectronsTool.h.

◆ m_low_eratio

double HIMonitoringElectronsTool::m_low_eratio
private

Definition at line 240 of file HIMonitoringElectronsTool.h.

◆ m_low_eta

double HIMonitoringElectronsTool::m_low_eta
private

Definition at line 208 of file HIMonitoringElectronsTool.h.

◆ m_low_f1

double HIMonitoringElectronsTool::m_low_f1
private

Definition at line 244 of file HIMonitoringElectronsTool.h.

◆ m_low_f3

double HIMonitoringElectronsTool::m_low_f3
private

Definition at line 248 of file HIMonitoringElectronsTool.h.

◆ m_low_FCalEt

double HIMonitoringElectronsTool::m_low_FCalEt
private

Definition at line 200 of file HIMonitoringElectronsTool.h.

◆ m_low_FCalEt_oneSide

double HIMonitoringElectronsTool::m_low_FCalEt_oneSide
private

Definition at line 204 of file HIMonitoringElectronsTool.h.

◆ m_low_iso

double HIMonitoringElectronsTool::m_low_iso
private

Definition at line 220 of file HIMonitoringElectronsTool.h.

◆ m_low_phi

double HIMonitoringElectronsTool::m_low_phi
private

Definition at line 212 of file HIMonitoringElectronsTool.h.

◆ m_low_reta

double HIMonitoringElectronsTool::m_low_reta
private

Definition at line 224 of file HIMonitoringElectronsTool.h.

◆ m_low_rhad

double HIMonitoringElectronsTool::m_low_rhad
private

Definition at line 236 of file HIMonitoringElectronsTool.h.

◆ m_low_rphi

double HIMonitoringElectronsTool::m_low_rphi
private

Definition at line 228 of file HIMonitoringElectronsTool.h.

◆ m_low_weta2

double HIMonitoringElectronsTool::m_low_weta2
private

Definition at line 232 of file HIMonitoringElectronsTool.h.

◆ m_low_z0sintheta

double HIMonitoringElectronsTool::m_low_z0sintheta
private

Definition at line 216 of file HIMonitoringElectronsTool.h.

◆ m_lumiDataKey

SG::ReadCondHandleKey<LuminosityCondData> ManagedMonitorToolBase::m_lumiDataKey {this,"LuminosityCondDataKey","LuminosityCondData","SG Key of LuminosityCondData object"}
privateinherited

Definition at line 949 of file ManagedMonitorToolBase.h.

◆ m_lwhists

std::set<LWHist*> ManagedMonitorToolBase::m_lwhists
protectedinherited

Definition at line 891 of file ManagedMonitorToolBase.h.

◆ m_manager

AthenaMonManager* ManagedMonitorToolBase::m_manager
protectedinherited

Definition at line 892 of file ManagedMonitorToolBase.h.

◆ m_managerNameProp

std::string ManagedMonitorToolBase::m_managerNameProp
protectedinherited

Definition at line 894 of file ManagedMonitorToolBase.h.

◆ m_metadataMap

MDMap_t ManagedMonitorToolBase::m_metadataMap
protectedinherited

Definition at line 889 of file ManagedMonitorToolBase.h.

◆ m_nEvents

unsigned int ManagedMonitorToolBase::m_nEvents
protectedinherited

Definition at line 926 of file ManagedMonitorToolBase.h.

◆ m_nEventsIgnoreTrigger

unsigned int ManagedMonitorToolBase::m_nEventsIgnoreTrigger
protectedinherited

Definition at line 927 of file ManagedMonitorToolBase.h.

◆ m_newEventsBlock

bool ManagedMonitorToolBase::m_newEventsBlock
privateinherited

Definition at line 884 of file ManagedMonitorToolBase.h.

◆ m_newHigStatInterval

bool ManagedMonitorToolBase::m_newHigStatInterval
privateinherited

Definition at line 882 of file ManagedMonitorToolBase.h.

◆ m_newLowStat

bool ManagedMonitorToolBase::m_newLowStat
privateinherited

Definition at line 883 of file ManagedMonitorToolBase.h.

◆ m_newLowStatInterval

bool ManagedMonitorToolBase::m_newLowStatInterval
privateinherited

Definition at line 882 of file ManagedMonitorToolBase.h.

◆ m_newLumiBlock

bool ManagedMonitorToolBase::m_newLumiBlock
privateinherited

Definition at line 883 of file ManagedMonitorToolBase.h.

◆ m_newMedStatInterval

bool ManagedMonitorToolBase::m_newMedStatInterval
privateinherited

Definition at line 882 of file ManagedMonitorToolBase.h.

◆ m_newRun

bool ManagedMonitorToolBase::m_newRun
privateinherited

Definition at line 883 of file ManagedMonitorToolBase.h.

◆ m_nLumiBlocks

unsigned int ManagedMonitorToolBase::m_nLumiBlocks
protectedinherited

Definition at line 928 of file ManagedMonitorToolBase.h.

◆ m_path

std::string ManagedMonitorToolBase::m_path
protectedinherited

Definition at line 915 of file ManagedMonitorToolBase.h.

◆ m_phi_nbins

int HIMonitoringElectronsTool::m_phi_nbins
private

Definition at line 211 of file HIMonitoringElectronsTool.h.

◆ m_preScaleProp

long ManagedMonitorToolBase::m_preScaleProp
protectedinherited

Definition at line 916 of file ManagedMonitorToolBase.h.

◆ m_procNEventsProp

long ManagedMonitorToolBase::m_procNEventsProp
protectedinherited

Definition at line 914 of file ManagedMonitorToolBase.h.

◆ m_reta_nbins

int HIMonitoringElectronsTool::m_reta_nbins
private

Definition at line 223 of file HIMonitoringElectronsTool.h.

◆ m_rhad_nbins

int HIMonitoringElectronsTool::m_rhad_nbins
private

Definition at line 235 of file HIMonitoringElectronsTool.h.

◆ m_rphi_nbins

int HIMonitoringElectronsTool::m_rphi_nbins
private

Definition at line 227 of file HIMonitoringElectronsTool.h.

◆ m_streamNameFcn

StreamNameFcn* ManagedMonitorToolBase::m_streamNameFcn
protectedinherited

Definition at line 904 of file ManagedMonitorToolBase.h.

◆ m_supportedIntervalsForRebooking

std::set<Interval_t> ManagedMonitorToolBase::m_supportedIntervalsForRebooking
privateinherited

Definition at line 959 of file ManagedMonitorToolBase.h.

◆ m_templateEfficiencies

std::map< Interval_t, std::vector< MgmtParams<TEfficiency> > > ManagedMonitorToolBase::m_templateEfficiencies
protectedinherited

Definition at line 738 of file ManagedMonitorToolBase.h.

◆ m_templateGraphs

std::map< Interval_t, std::vector< MgmtParams<TGraph> > > ManagedMonitorToolBase::m_templateGraphs
protectedinherited

Definition at line 726 of file ManagedMonitorToolBase.h.

◆ m_templateHistograms

std::map< Interval_t, std::vector< MgmtParams<TH1> > > ManagedMonitorToolBase::m_templateHistograms
protectedinherited

Definition at line 722 of file ManagedMonitorToolBase.h.

◆ m_templateLWHistograms

std::map< Interval_t, std::vector< MgmtParams<LWHist> > > ManagedMonitorToolBase::m_templateLWHistograms
protectedinherited

Definition at line 734 of file ManagedMonitorToolBase.h.

◆ m_templateTrees

std::map< Interval_t, std::vector< MgmtParams<TTree> > > ManagedMonitorToolBase::m_templateTrees
protectedinherited

Definition at line 730 of file ManagedMonitorToolBase.h.

◆ m_THistSvc

ServiceHandle<ITHistSvc> ManagedMonitorToolBase::m_THistSvc
protectedinherited

Definition at line 906 of file ManagedMonitorToolBase.h.

◆ m_trigDecTool

PublicToolHandle<Trig::ITrigDecisionTool> ManagedMonitorToolBase::m_trigDecTool {this, "TrigDecisionTool",""}
protectedinherited

Definition at line 908 of file ManagedMonitorToolBase.h.

◆ m_triggerChainProp

std::string ManagedMonitorToolBase::m_triggerChainProp
protectedinherited

Definition at line 917 of file ManagedMonitorToolBase.h.

◆ m_triggerGroupProp

std::string ManagedMonitorToolBase::m_triggerGroupProp
protectedinherited

Definition at line 918 of file ManagedMonitorToolBase.h.

◆ m_trigLiveFractionDataKey

SG::ReadCondHandleKey<TrigLiveFractionCondData> ManagedMonitorToolBase::m_trigLiveFractionDataKey {this,"TrigLiveFractionCondDataKey","TrigLiveFractionCondData","SG Key of TrigLiveFractionCondData object"}
privateinherited

Definition at line 953 of file ManagedMonitorToolBase.h.

◆ m_trigTranslator

PublicToolHandle<ITriggerTranslatorTool> ManagedMonitorToolBase::m_trigTranslator {this,"TriggerTranslatorTool",""}
protectedinherited

Definition at line 910 of file ManagedMonitorToolBase.h.

◆ m_useLumi

bool ManagedMonitorToolBase::m_useLumi
privateinherited

Definition at line 957 of file ManagedMonitorToolBase.h.

◆ m_useTrigger

bool ManagedMonitorToolBase::m_useTrigger
protectedinherited

Definition at line 920 of file ManagedMonitorToolBase.h.

◆ m_varHandleArraysDeclared

bool AthCommonDataStore< AthCommonMsg< AlgTool > >::m_varHandleArraysDeclared
privateinherited

Definition at line 399 of file AthCommonDataStore.h.

◆ m_vhka

std::vector<SG::VarHandleKeyArray*> AthCommonDataStore< AthCommonMsg< AlgTool > >::m_vhka
privateinherited

Definition at line 398 of file AthCommonDataStore.h.

◆ m_vTrigChainNames

std::vector<std::string> ManagedMonitorToolBase::m_vTrigChainNames
protectedinherited

Definition at line 742 of file ManagedMonitorToolBase.h.

◆ m_vTrigGroupNames

std::vector<std::string> ManagedMonitorToolBase::m_vTrigGroupNames
protectedinherited

Definition at line 742 of file ManagedMonitorToolBase.h.

◆ m_weta2_nbins

int HIMonitoringElectronsTool::m_weta2_nbins
private

Definition at line 231 of file HIMonitoringElectronsTool.h.

◆ m_z0sintheta_nbins

int HIMonitoringElectronsTool::m_z0sintheta_nbins
private

Definition at line 215 of file HIMonitoringElectronsTool.h.


The documentation for this class was generated from the following files:
AthenaMonManager::ownedLWHistOfKey
virtual LWHist * ownedLWHistOfKey(const std::string &key) const
Definition: AthenaMonManager.cxx:726
HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_tightLH
TH2D_LW * m_h_electron_fcalC_deltaphires_tightLH
Definition: HIMonitoringElectronsTool.h:183
ManagedMonitorToolBase::m_nEvents
unsigned int m_nEvents
Definition: ManagedMonitorToolBase.h:926
HIMonitoringElectronsTool::m_h_electron_fcal_rhad_tightLH
TH2D_LW * m_h_electron_fcal_rhad_tightLH
Definition: HIMonitoringElectronsTool.h:110
xAOD::iterator
JetConstituentVector::iterator iterator
Definition: JetConstituentVector.cxx:68
HIMonitoringElectronsTool::m_h_electron_fcal_f1_looseLH
TH2D_LW * m_h_electron_fcal_f1_looseLH
Definition: HIMonitoringElectronsTool.h:134
HIMonitoringElectronsTool::m_h_electron_fcalA_eratio_looseLH
TH2D_LW * m_h_electron_fcalA_eratio_looseLH
Definition: HIMonitoringElectronsTool.h:125
HIMonitoringElectronsTool::m_h_electron_fcalC_eprobabilityht_tightLH
TH2D_LW * m_h_electron_fcalC_eprobabilityht_tightLH
Definition: HIMonitoringElectronsTool.h:196
HIMonitoringElectronsTool::m_h_electron_fcal_eratio_looseLH
TH2D_LW * m_h_electron_fcal_eratio_looseLH
Definition: HIMonitoringElectronsTool.h:121
HIMonitoringElectronsTool::m_high_z0sintheta
double m_high_z0sintheta
Definition: HIMonitoringElectronsTool.h:217
LWHist
Definition: LWHist.h:26
HIMonitoringElectronsTool::m_high_deltaeta1
double m_high_deltaeta1
Definition: HIMonitoringElectronsTool.h:253
HIMonitoringElectronsTool::m_h_electron_fcalC_deltaeta1_mediumLH
TH2D_LW * m_h_electron_fcalC_deltaeta1_mediumLH
Definition: HIMonitoringElectronsTool.h:169
ManagedMonitorToolBase::THistSvc_deReg_fixTGraph
StatusCode THistSvc_deReg_fixTGraph(TFile *file, TGraph *theGraph, std::string &directoryName)
Fixes THistSvc->deReg(obj) when obj is TGraph instance.
Definition: ManagedMonitorToolBase.cxx:1098
HIMonitoringElectronsTool::m_low_z0sintheta
double m_low_z0sintheta
Definition: HIMonitoringElectronsTool.h:216
ManagedMonitorToolBase::m_templateEfficiencies
std::map< Interval_t, std::vector< MgmtParams< TEfficiency > > > m_templateEfficiencies
Definition: ManagedMonitorToolBase.h:738
AthenaMonManager::writeAndDeleteLWHist
virtual LWHist * writeAndDeleteLWHist(const std::string &key, const std::string &streamName)
Definition: AthenaMonManager.cxx:743
HIMonitoringElectronsTool::m_high_eta
double m_high_eta
Definition: HIMonitoringElectronsTool.h:209
ManagedMonitorToolBase::streamNameFunction
virtual StreamNameFcn * streamNameFunction()
Returns the function object that converts logical paramters into a physical stream name.
Definition: ManagedMonitorToolBase.cxx:503
beamspotnt.var
var
Definition: bin/beamspotnt.py:1394
ManagedMonitorToolBase::m_newRun
bool m_newRun
Definition: ManagedMonitorToolBase.h:883
ManagedMonitorToolBase::m_supportedIntervalsForRebooking
std::set< Interval_t > m_supportedIntervalsForRebooking
Definition: ManagedMonitorToolBase.h:959
xAOD::eratio
setCharge setNTRTHiThresholdHits eratio
Definition: TrigElectron_v1.cxx:96
defineDB.smd
string smd
Definition: JetTagCalibration/share/defineDB.py:44
HIMonitoringElectronsTool::m_h_electron_fcal_f3_mediumLH
TH2D_LW * m_h_electron_fcal_f3_mediumLH
Definition: HIMonitoringElectronsTool.h:148
ManagedMonitorToolBase::m_dataTypeStr
std::string m_dataTypeStr
Definition: ManagedMonitorToolBase.h:897
ManagedMonitorToolBase::bookHistograms
virtual StatusCode bookHistograms()
An inheriting class should either override this function or bookHists().
Definition: ManagedMonitorToolBase.cxx:1407
HIMonitoringElectronsTool::m_h_electron_fcal_f1_tightLH
TH2D_LW * m_h_electron_fcal_f1_tightLH
Definition: HIMonitoringElectronsTool.h:136
ManagedMonitorToolBase::m_DQFilterTools
ToolHandleArray< IDQFilterTool > m_DQFilterTools
Definition: ManagedMonitorToolBase.h:912
DataModel_detail::const_iterator
Const iterator class for DataVector/DataList.
Definition: DVLIterator.h:82
checkFileSG.line
line
Definition: checkFileSG.py:75
ManagedMonitorToolBase::getHist
virtual StatusCode getHist(TH1 *&h, const std::string &hName, const std::string &system, Interval_t interval)
Returns a TH1 via the pointer passed as the first argument.
Definition: ManagedMonitorToolBase.cxx:1589
ManagedMonitorToolBase::m_newEventsBlock
bool m_newEventsBlock
Definition: ManagedMonitorToolBase.h:884
ManagedMonitorToolBase::Imp::benchPreProcHistograms
void benchPreProcHistograms()
Definition: ManagedMonitorToolBase.cxx:122
get_generator_info.result
result
Definition: get_generator_info.py:21
HIMonitoringElectronsTool::m_high_eratio
double m_high_eratio
Definition: HIMonitoringElectronsTool.h:241
python.PerfMonSerializer.p
def p
Definition: PerfMonSerializer.py:743
HIMonitoringElectronsTool::m_iso_nbins
int m_iso_nbins
Definition: HIMonitoringElectronsTool.h:219
athena.path
path
python interpreter configuration --------------------------------------—
Definition: athena.py:126
runLayerRecalibration.chain
chain
Definition: runLayerRecalibration.py:175
PowhegControl_ttHplus_NLO.ss
ss
Definition: PowhegControl_ttHplus_NLO.py:83
HIMonitoringElectronsTool::m_h_electron_fcal_weta2_looseLH
TH2D_LW * m_h_electron_fcal_weta2_looseLH
Definition: HIMonitoringElectronsTool.h:95
phi
Scalar phi() const
phi method
Definition: AmgMatrixBasePlugin.h:64
HIMonitoringElectronsTool::m_FCalEt
double m_FCalEt
Definition: HIMonitoringElectronsTool.h:35
SG::ReadCondHandle
Definition: ReadCondHandle.h:44
ATH_MSG_INFO
#define ATH_MSG_INFO(x)
Definition: AthMsgStreamMacros.h:31
HIMonitoringElectronsTool::m_h_electron_fcalA_eratio_tightLH
TH2D_LW * m_h_electron_fcalA_eratio_tightLH
Definition: HIMonitoringElectronsTool.h:127
HIMonitoringElectronsTool::m_low_deltaphires
double m_low_deltaphires
Definition: HIMonitoringElectronsTool.h:256
HIMonitoringElectronsTool::m_h_FCalEt_tightLH
TH1D * m_h_FCalEt_tightLH
Definition: HIMonitoringElectronsTool.h:42
ManagedMonitorToolBase::higStat
@ higStat
Definition: ManagedMonitorToolBase.h:115
HIMonitoringElectronsTool::m_f3_nbins
int m_f3_nbins
Definition: HIMonitoringElectronsTool.h:247
ManagedMonitorToolBase::lumiBlock
@ lumiBlock
Definition: ManagedMonitorToolBase.h:114
HIMonitoringElectronsTool::m_electronTightLHTool
AsgElectronLikelihoodTool * m_electronTightLHTool
Definition: HIMonitoringElectronsTool.h:33
ManagedMonitorToolBase::m_endOfLumiBlock
bool m_endOfLumiBlock
Definition: ManagedMonitorToolBase.h:885
HIMonitoringElectronsTool::m_electronLooseLHTool
AsgElectronLikelihoodTool * m_electronLooseLHTool
Definition: HIMonitoringElectronsTool.h:31
HIMonitoringElectronsTool::m_h_electron_fcalA_rhad_looseLH
TH2D_LW * m_h_electron_fcalA_rhad_looseLH
Definition: HIMonitoringElectronsTool.h:112
eta
Scalar eta() const
pseudorapidity method
Definition: AmgMatrixBasePlugin.h:79
HIMonitoringElectronsTool::m_h_FCalEt_C_looseLH
TH1D * m_h_FCalEt_C_looseLH
Definition: HIMonitoringElectronsTool.h:48
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Registers a TTree to be included in the output stream using logical parameters that describe it.
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Definition: AthenaMonManager.h:58
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Definition: HIMonitoringElectronsTool.h:227
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Definition: ManagedMonitorToolBase.h:908
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Definition: HIMonitoringElectronsTool.h:153
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Definition: HIMonitoringElectronsTool.h:56
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Definition: HIMonitoringElectronsTool.h:245
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Definition: AsgElectronLikelihoodTool.cxx:868
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Definition: ManagedMonitorToolBase.h:962
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Definition: ManagedMonitorToolBase.h:924
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Definition: ManagedMonitorToolBase.cxx:130
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Definition: ManagedMonitorToolBase.h:901
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Definition: HIMonitoringElectronsTool.h:130
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Definition: HIMonitoringElectronsTool.h:126
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Definition: HIMonitoringElectronsTool.h:235
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Definition: HIMonitoringElectronsTool.h:212
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Registers a TGraph to be included in the output stream using logical parameters that describe the gra...
Definition: ManagedMonitorToolBase.cxx:1693
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Definition: ManagedMonitorToolBase.h:957
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Definition: HIMonitoringElectronsTool.h:90
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Definition: ManagedMonitorToolBase.h:116
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Definition: ManagedMonitorToolBase.cxx:2344
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Definition: read_hist_ntuple.py:5
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Definition: HIMonitoringElectronsTool.h:46
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Definition: HIMonitoringElectronsTool.h:108
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Definition: HIMonitoringElectronsTool.h:261
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Definition: ManagedMonitorToolBase.cxx:1423
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Test if the key is blank.
Definition: AthToolSupport/AsgDataHandles/Root/VarHandleKey.cxx:150
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Definition: drawFromPickle.py:36
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Definition: HIMonitoringElectronsTool.h:255
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Definition: HIMonitoringElectronsTool.h:192
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Definition: HIMonitoringElectronsTool.h:96
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Definition: SystemOfUnits.py:132
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Definition: ManagedMonitorToolBase.h:882
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Definition: HIMonitoringElectronsTool.h:229
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Definition: HIMonitoringElectronsTool.h:69
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Definition: TruthTest.py:25
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Definition: AthenaPoolTestRead.py:27
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Definition: HIMonitoringElectronsTool.h:232
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Definition: HIMonitoringElectronsTool.h:66
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Definition: HIMonitoringElectronsTool.h:58
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Definition: HIMonitoringElectronsTool.h:204
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Definition: HIMonitoringElectronsTool.h:162
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Definition: checkMetadata.py:175
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static unsigned int getLBsMedStat()
Definition: AthenaMonManager.cxx:329
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Definition: SCT_CalibNumbers.h:10
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fraction of energy reconstructed in 3rd sampling
Definition: EgammaEnums.h:54
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Definition: HIMonitoringElectronsTool.h:57
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Definition: setupRTTAlg.py:39
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Definition: ManagedMonitorToolBase.cxx:2325
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Definition: HIEventShape_v2.h:31
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Definition: AthCommonDataStore.h:85
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Definition: AthenaMonManager.h:49
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virtual float lbAverageLivefraction(const EventContext &ctx=Gaudi::Hive::currentContext()) const
Average luminosity livefraction.
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Definition: HIMonitoringElectronsTool.h:248
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Definition: HIMonitoringElectronsTool.h:203
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Definition: AthCommonDataStore.h:52
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Returns the data type that the monitoring application is running over to help ManagedMonitorToolBase ...
Definition: AthenaMonManager.cxx:338
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Definition: HIMonitoringElectronsTool.h:260
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HIMonitoringElectronsTool::m_h_electron_fcalC_rphi_mediumLH
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Definition: HIMonitoringElectronsTool.h:91
HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_mediumLH
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Definition: ManagedMonitorToolBase.h:892
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static const std::string & key(LWHist *)
ManagedMonitorToolBase::m_lumiDataKey
SG::ReadCondHandleKey< LuminosityCondData > m_lumiDataKey
Definition: ManagedMonitorToolBase.h:950
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static DataType_t dataTypeStringToEnum(const std::string &str)
Converts a string to a DataType_t of the same name.
Definition: AthenaMonManager.cxx:290
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StreamNameFcn * m_streamNameFcn
Definition: ManagedMonitorToolBase.h:904
HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_tightLH
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Definition: HIMonitoringElectronsTool.h:118
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Definition: HIMonitoringElectronsTool.h:243
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Definition: lumiFormat.py:92
HIMonitoringElectronsTool::m_low_deltaeta1
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Definition: HIMonitoringElectronsTool.h:252
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Definition: HIMonitoringElectronsTool.h:259
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@ tier0
Definition: AthenaMonManager.h:49
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Definition: CaloCondTools.py:15
xAOD::Iso::etcone20
@ etcone20
Calorimeter isolation.
Definition: IsolationType.h:32
TH2D_LW::Fill
virtual void Fill(const double &x, const double &y) override
Definition: TH2D_LW.cxx:329
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Definition: ShellExec.cxx:28
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#define endmsg
Definition: AnalysisConfig_Ntuple.cxx:63
EL::StatusCode
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StatusCode definition for legacy code.
Definition: PhysicsAnalysis/D3PDTools/EventLoop/EventLoop/StatusCode.h:22
ATH_MSG_DEBUG
#define ATH_MSG_DEBUG(x)
Definition: AthMsgStreamMacros.h:29
AthenaMonManager::online
@ online
Definition: AthenaMonManager.h:49
HIMonitoringElectronsTool::m_high_phi
double m_high_phi
Definition: HIMonitoringElectronsTool.h:213
ManagedMonitorToolBase::file
@ file
Definition: ManagedMonitorToolBase.h:114
HIMonitoringElectronsTool::m_h_electron_fcal_deltaphires_mediumLH
TH2D_LW * m_h_electron_fcal_deltaphires_mediumLH
Definition: HIMonitoringElectronsTool.h:174
HIMonitoringElectronsTool::m_high_weta2
double m_high_weta2
Definition: HIMonitoringElectronsTool.h:233
AthenaMonManager::writeAndDelete
virtual void writeAndDelete(const std::string &key)
If the TObject is owned by this manager, its Write() method is called and it is deleted.
Definition: AthenaMonManager.cxx:870
HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_tightLH
TH2D_LW * m_h_electron_fcal_eprobabilityht_tightLH
Definition: HIMonitoringElectronsTool.h:188
HIMonitoringElectronsTool::book_hist
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Definition: HIMonitoringElectronsTool.cxx:407
HIMonitoringElectronsTool::m_h_electron_fcalA_rphi_looseLH
TH2D_LW * m_h_electron_fcalA_rphi_looseLH
Definition: HIMonitoringElectronsTool.h:86
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Definition: getLatestRuns.py:24
HIMonitoringElectronsTool::m_FCalEt_C
double m_FCalEt_C
Definition: HIMonitoringElectronsTool.h:37
HIMonitoringElectronsTool::m_h_electron_fcalA_rphi_mediumLH
TH2D_LW * m_h_electron_fcalA_rphi_mediumLH
Definition: HIMonitoringElectronsTool.h:87
HIMonitoringElectronsTool::m_h_electron_fcal_weta2_tightLH
TH2D_LW * m_h_electron_fcal_weta2_tightLH
Definition: HIMonitoringElectronsTool.h:97
HIMonitoringElectronsTool::m_h_electron_fcalA_deltaphires_mediumLH
TH2D_LW * m_h_electron_fcalA_deltaphires_mediumLH
Definition: HIMonitoringElectronsTool.h:178
ManagedMonitorToolBase::ATTRIB_UNMANAGED
@ ATTRIB_UNMANAGED
Definition: ManagedMonitorToolBase.h:131
HIMonitoringElectronsTool::m_h_electron_fcal_deltaeta1_looseLH
TH2D_LW * m_h_electron_fcal_deltaeta1_looseLH
Definition: HIMonitoringElectronsTool.h:160
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void benchPostBookHistograms()
Definition: ManagedMonitorToolBase.cxx:87
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parent
Definition: test_pyathena.py:15
AthenaMonManager::tier0Raw
@ tier0Raw
Definition: AthenaMonManager.h:49
HIMonitoringElectronsTool::m_h_electron_fcalC_reta_mediumLH
TH2D_LW * m_h_electron_fcalC_reta_mediumLH
Definition: HIMonitoringElectronsTool.h:78
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std::string m_triggerChainProp
Definition: ManagedMonitorToolBase.h:917
HIMonitoringElectronsTool::m_eta_nbins
int m_eta_nbins
Definition: HIMonitoringElectronsTool.h:207
HIMonitoringElectronsTool::m_h_electron_fcalC_eprobabilityht_looseLH
TH2D_LW * m_h_electron_fcalC_eprobabilityht_looseLH
Definition: HIMonitoringElectronsTool.h:194
HIMonitoringElectronsTool::m_h_electron_eta_phi
TH2D_LW * m_h_electron_eta_phi
Definition: HIMonitoringElectronsTool.h:52
ATH_CHECK
#define ATH_CHECK
Definition: AthCheckMacros.h:40
AthenaMonManager::user
@ user
Definition: AthenaMonManager.h:49
xAOD::EgammaParameters::deltaPhiRescaled2
@ deltaPhiRescaled2
difference between the cluster phi (second sampling) and the phi of the track extrapolated to the sec...
Definition: EgammaEnums.h:225
HIMonitoringElectronsTool::m_h_electron_fcalC_rphi_tightLH
TH2D_LW * m_h_electron_fcalC_rphi_tightLH
Definition: HIMonitoringElectronsTool.h:92
HIMonitoringElectronsTool::m_h_electron_fcalC_etcone20_looseLH
TH2D_LW * m_h_electron_fcalC_etcone20_looseLH
Definition: HIMonitoringElectronsTool.h:64
run
Definition: run.py:1
ManagedMonitorToolBase::ATTRIB_MANAGED
@ ATTRIB_MANAGED
Definition: ManagedMonitorToolBase.h:131
ManagedMonitorToolBase::StreamNameFcn::getStreamName
virtual std::string getStreamName(const ManagedMonitorToolBase *tool, const MonGroup &group, const std::string &objName, bool usePreviousInterval=false)=0
A function that converts a MonGroup of logical parameters into a physical output stream name.
ManagedMonitorToolBase::Imp::m_doResourceMon
bool m_doResourceMon
Definition: ManagedMonitorToolBase.cxx:54
AthCommonDataStore< AthCommonMsg< AlgTool > >::m_detStore
StoreGateSvc_t m_detStore
Pointer to StoreGate (detector store by default)
Definition: AthCommonDataStore.h:393
HIMonitoringElectronsTool::m_h_electron_fcal_deltaeta1_mediumLH
TH2D_LW * m_h_electron_fcal_deltaeta1_mediumLH
Definition: HIMonitoringElectronsTool.h:161
ManagedMonitorToolBase::ManagedMonitorToolBase
ManagedMonitorToolBase(const std::string &type, const std::string &name, const IInterface *parent)
Definition: ManagedMonitorToolBase.cxx:389
ManagedMonitorToolBase::medStat
@ medStat
Definition: ManagedMonitorToolBase.h:115
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int m_z0sintheta_nbins
Definition: HIMonitoringElectronsTool.h:215
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@ z0
Definition: InnerDetector/InDetCalibEvent/TRT_CalibData/TRT_CalibData/TrackInfo.h:63
HIMonitoringElectronsTool::m_h_electron_fcalC_reta_looseLH
TH2D_LW * m_h_electron_fcalC_reta_looseLH
Definition: HIMonitoringElectronsTool.h:77
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std::map< Interval_t, std::vector< MgmtParams< TTree > > > m_templateTrees
Definition: ManagedMonitorToolBase.h:730
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MDMap_t m_metadataMap
Definition: ManagedMonitorToolBase.h:889
HIMonitoringElectronsTool::m_high_FCalEt_oneSide
double m_high_FCalEt_oneSide
Definition: HIMonitoringElectronsTool.h:205
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Derived DataVector<T>.
Definition: DataVector.h:581
ManagedMonitorToolBase::m_endOfEventsBlock
bool m_endOfEventsBlock
Definition: ManagedMonitorToolBase.h:885
HIMonitoringElectronsTool::m_h_electron_fcal_deltaphires_looseLH
TH2D_LW * m_h_electron_fcal_deltaphires_looseLH
Definition: HIMonitoringElectronsTool.h:173
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void fcn(int &, double *, double &result, double par[], int)
this is where we write out chi2
Definition: Chi2LJets.cxx:183
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SG::ReadCondHandleKey< TrigLiveFractionCondData > m_trigLiveFractionDataKey
Definition: ManagedMonitorToolBase.h:954
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TH2D_LW * m_h_electron_fcalA_rhad_tightLH
Definition: HIMonitoringElectronsTool.h:114
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AthenaMonManager::Environment_t m_environment
Definition: ManagedMonitorToolBase.h:902
HIMonitoringElectronsTool::m_h_electron_fcalC_rhad_looseLH
TH2D_LW * m_h_electron_fcalC_rhad_looseLH
Definition: HIMonitoringElectronsTool.h:116
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string dir
Definition: beamspotman.py:623
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virtual void renounce()=0
HIMonitoringElectronsTool::m_h_electron_fcalA_deltaphires_looseLH
TH2D_LW * m_h_electron_fcalA_deltaphires_looseLH
Definition: HIMonitoringElectronsTool.h:177
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std::conditional< std::is_base_of< SG::VarHandleKeyArray, T >::value, VarHandleKeyArrayType, type2 >::type type
Definition: HandleClassifier.h:54
HIMonitoringElectronsTool::m_weta2_nbins
int m_weta2_nbins
Definition: HIMonitoringElectronsTool.h:231
HIMonitoringElectronsTool::m_h_electron_fcal_reta_tightLH
TH2D_LW * m_h_electron_fcal_reta_tightLH
Definition: HIMonitoringElectronsTool.h:71
HIMonitoringElectronsTool::m_h_electron_fcalC_f3_looseLH
TH2D_LW * m_h_electron_fcalC_f3_looseLH
Definition: HIMonitoringElectronsTool.h:155
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unsigned int m_lastRun
Definition: ManagedMonitorToolBase.h:923
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TH2D_LW * m_h_electron_fcalC_f1_tightLH
Definition: HIMonitoringElectronsTool.h:144
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bool m_newLumiBlock
Definition: ManagedMonitorToolBase.h:883
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bool m_endOfLowStat
Definition: ManagedMonitorToolBase.h:885
HIMonitoringElectronsTool::m_h_electron_fcalA_reta_tightLH
TH2D_LW * m_h_electron_fcalA_reta_tightLH
Definition: HIMonitoringElectronsTool.h:75
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SG::ReadCondHandleKey< LBDurationCondData > m_lbDurationDataKey
Definition: ManagedMonitorToolBase.h:952
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TH1D * m_h_FCalEt_C_mediumLH
Definition: HIMonitoringElectronsTool.h:49
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double m_low_iso
Definition: HIMonitoringElectronsTool.h:220
HIMonitoringElectronsTool::m_h_electron_fcalC_eratio_looseLH
TH2D_LW * m_h_electron_fcalC_eratio_looseLH
Definition: HIMonitoringElectronsTool.h:129
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string doc
Definition: merge_scale_histograms.py:9
ManagedMonitorToolBase::bookHistogramsRecurrent
virtual StatusCode bookHistogramsRecurrent()
An inheriting class should either override this function, bookHists() or bookHistograms().
Definition: ManagedMonitorToolBase.cxx:1395
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static const MSG::Level s_resourceMonThreshold
Definition: AthMonBench.h:30
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std::string name
Definition: Control/AthContainers/Root/debug.cxx:192
HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_looseLH
TH2D_LW * m_h_electron_fcalC_deltaphires_looseLH
Definition: HIMonitoringElectronsTool.h:181
HIMonitoringElectronsTool::m_low_reta
double m_low_reta
Definition: HIMonitoringElectronsTool.h:224
HIMonitoringElectronsTool::m_high_deltaphires
double m_high_deltaphires
Definition: HIMonitoringElectronsTool.h:257
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static unsigned int getLBsHigStat()
Definition: AthenaMonManager.cxx:332
HIMonitoringElectronsTool::m_reta_nbins
int m_reta_nbins
Definition: HIMonitoringElectronsTool.h:223
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static void setKey(LWHist *, const std::string &key)
HIMonitoringElectronsTool::m_h_electron_fcalC_deltaeta1_tightLH
TH2D_LW * m_h_electron_fcalC_deltaeta1_tightLH
Definition: HIMonitoringElectronsTool.h:170
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endOfRun
Definition: ExtractEBRunDetails.py:245
SG::CondHandleKey::initialize
StatusCode initialize(bool used=true)
HIMonitoringElectronsTool::m_h_FCalEt_C_tightLH
TH1D * m_h_FCalEt_C_tightLH
Definition: HIMonitoringElectronsTool.h:50
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Definition: ItemListSvc.h:43
ManagedMonitorToolBase::lowStat
@ lowStat
Definition: ManagedMonitorToolBase.h:115
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void updateTriggersForGroups(std::vector< std::string > &)
Definition: ManagedMonitorToolBase.cxx:2363
HIMonitoringElectronsTool::m_low_eratio
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Definition: HIMonitoringElectronsTool.h:240
HIMonitoringElectronsTool::m_low_f1
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Definition: HIMonitoringElectronsTool.h:244
HIMonitoringElectronsTool::m_h_electron_fcalA_f1_tightLH
TH2D_LW * m_h_electron_fcalA_f1_tightLH
Definition: HIMonitoringElectronsTool.h:140
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void setOwnsROOTHisto(bool b)
Definition: LWHist.h:75
ManagedMonitorToolBase::m_lwhists
std::set< LWHist * > m_lwhists
Definition: ManagedMonitorToolBase.h:891
HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_mediumLH
TH2D_LW * m_h_electron_fcalA_etcone20_mediumLH
Definition: HIMonitoringElectronsTool.h:61
HIMonitoringElectronsTool::m_h_electron_fcalC_f3_tightLH
TH2D_LW * m_h_electron_fcalC_f3_tightLH
Definition: HIMonitoringElectronsTool.h:157
HIMonitoringElectronsTool::m_h_electron_fcalC_reta_tightLH
TH2D_LW * m_h_electron_fcalC_reta_tightLH
Definition: HIMonitoringElectronsTool.h:79
ManagedMonitorToolBase::m_templateLWHistograms
std::map< Interval_t, std::vector< MgmtParams< LWHist > > > m_templateLWHistograms
Definition: ManagedMonitorToolBase.h:734
HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_mediumLH
TH2D_LW * m_h_electron_fcal_eprobabilityht_mediumLH
Definition: HIMonitoringElectronsTool.h:187
HIMonitoringElectronsTool::m_high_reta
double m_high_reta
Definition: HIMonitoringElectronsTool.h:225
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std::string m_managerNameProp
Definition: ManagedMonitorToolBase.h:894
HIMonitoringElectronsTool::m_h_electron_fcal_reta_mediumLH
TH2D_LW * m_h_electron_fcal_reta_mediumLH
Definition: HIMonitoringElectronsTool.h:70
HIMonitoringElectronsTool::m_h_electron_fcalC_f3_mediumLH
TH2D_LW * m_h_electron_fcalC_f3_mediumLH
Definition: HIMonitoringElectronsTool.h:156
ManagedMonitorToolBase::m_nEventsIgnoreTrigger
unsigned int m_nEventsIgnoreTrigger
Definition: ManagedMonitorToolBase.h:927
HIMonitoringElectronsTool::m_h_electron_z0sintheta
TH1D * m_h_electron_z0sintheta
Definition: HIMonitoringElectronsTool.h:53
ManagedMonitorToolBase::run
@ run
Definition: ManagedMonitorToolBase.h:116
ManagedMonitorToolBase::m_endOfRun
bool m_endOfRun
Definition: ManagedMonitorToolBase.h:885
HIMonitoringElectronsTool::m_FCalEt_nbins
int m_FCalEt_nbins
histograms ranges and binning
Definition: HIMonitoringElectronsTool.h:199
HIMonitoringElectronsTool::m_high_f3
double m_high_f3
Definition: HIMonitoringElectronsTool.h:249
ManagedMonitorToolBase::m_newLowStat
bool m_newLowStat
Definition: ManagedMonitorToolBase.h:883
HIMonitoringElectronsTool::m_low_eta
double m_low_eta
Definition: HIMonitoringElectronsTool.h:208
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string streamName
Definition: AthenaPoolExample_Copy.py:39
HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_mediumLH
TH2D_LW * m_h_electron_fcalA_weta2_mediumLH
Definition: HIMonitoringElectronsTool.h:100
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lumi
Definition: lumiFormat.py:113
DiTauMassTools::MaxHistStrategyV2::e
e
Definition: PhysicsAnalysis/TauID/DiTauMassTools/DiTauMassTools/HelperFunctions.h:26
a
TList * a
Definition: liststreamerinfos.cxx:10
HIMonitoringElectronsTool::m_h_electron_fcalC_etcone20_mediumLH
TH2D_LW * m_h_electron_fcalC_etcone20_mediumLH
Definition: HIMonitoringElectronsTool.h:65
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group
Definition: CaloLCW_tf.py:28
ManagedMonitorToolBase::regManagedLWHistograms
StatusCode regManagedLWHistograms(std::vector< MgmtParams< LWHist > > &templateLWHistograms)
Definition: ManagedMonitorToolBase.cxx:1315
HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_tightLH
TH2D_LW * m_h_electron_fcalA_deltaeta1_tightLH
Definition: HIMonitoringElectronsTool.h:166
h
HIMonitoringElectronsTool::m_h_electron_fcal_eratio_tightLH
TH2D_LW * m_h_electron_fcal_eratio_tightLH
Definition: HIMonitoringElectronsTool.h:123
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bool forkedProcess()
Definition: AthenaMonManager.cxx:345
CondAlgsOpts.found
int found
Definition: CondAlgsOpts.py:101
ManagedMonitorToolBase::m_lastHigStatInterval
int m_lastHigStatInterval
Definition: ManagedMonitorToolBase.h:924
python.CaloScaleNoiseConfig.str
str
Definition: CaloScaleNoiseConfig.py:78
HIMonitoringElectronsTool::m_eratio_nbins
int m_eratio_nbins
Definition: HIMonitoringElectronsTool.h:239
ATH_MSG_WARNING
#define ATH_MSG_WARNING(x)
Definition: AthMsgStreamMacros.h:32
ManagedMonitorToolBase::Imp::benchPreBookHistograms
void benchPreBookHistograms()
Definition: ManagedMonitorToolBase.cxx:78
HIMonitoringElectronsTool::m_h_electron_fcal_eprobabilityht_looseLH
TH2D_LW * m_h_electron_fcal_eprobabilityht_looseLH
Definition: HIMonitoringElectronsTool.h:186
ManagedMonitorToolBase::endOfRunFlag
bool endOfRunFlag() const
Definition: ManagedMonitorToolBase.h:859
ManagedMonitorToolBase::m_nLumiBlocks
unsigned int m_nLumiBlocks
Definition: ManagedMonitorToolBase.h:928
AthenaMonManager::altprod
@ altprod
Definition: AthenaMonManager.h:49
ManagedMonitorToolBase::eventsBlock
@ eventsBlock
Definition: ManagedMonitorToolBase.h:114
python.envutil.filelist
filelist
print ("Checking files %s..." % fullfile)
Definition: envutil.py:152
python.CaloScaleNoiseConfig.type
type
Definition: CaloScaleNoiseConfig.py:78
TH1
Definition: rootspy.cxx:268
DEBUG
#define DEBUG
Definition: page_access.h:11
HIMonitoringElectronsTool::m_h_electron_fcalC_f1_looseLH
TH2D_LW * m_h_electron_fcalC_f1_looseLH
Definition: HIMonitoringElectronsTool.h:142
HIMonitoringElectronsTool::m_h_electron_fcalA_rhad_mediumLH
TH2D_LW * m_h_electron_fcalA_rhad_mediumLH
Definition: HIMonitoringElectronsTool.h:113
HIMonitoringElectronsTool::m_h_FCalEt_A_mediumLH
TH1D * m_h_FCalEt_A_mediumLH
Definition: HIMonitoringElectronsTool.h:45
HIMonitoringElectronsTool::m_h_electron_fcal_f1_mediumLH
TH2D_LW * m_h_electron_fcal_f1_mediumLH
Definition: HIMonitoringElectronsTool.h:135
AthCommonMsg< AlgTool >::msg
MsgStream & msg() const
Definition: AthCommonMsg.h:24
python.CaloCondTools.log
log
Definition: CaloCondTools.py:20
HIMonitoringElectronsTool::m_deltaeta1_nbins
int m_deltaeta1_nbins
Definition: HIMonitoringElectronsTool.h:251
HIMonitoringElectronsTool::m_h_electron_fcal_eratio_mediumLH
TH2D_LW * m_h_electron_fcal_eratio_mediumLH
Definition: HIMonitoringElectronsTool.h:122
ManagedMonitorToolBase::all
@ all
Definition: ManagedMonitorToolBase.h:116
HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_looseLH
TH2D_LW * m_h_electron_fcalA_etcone20_looseLH
Definition: HIMonitoringElectronsTool.h:60
ManagedMonitorToolBase::deregObject
virtual StatusCode deregObject(const std::string &objName, const std::string &system, Interval_t interval)
De-registers a TObject from the THistSvc, but does NOT delete the object.
Definition: ManagedMonitorToolBase.cxx:1852
xAOD::eProbabilityHT
@ eProbabilityHT
Electron probability from High Threshold (HT) information [float].
Definition: TrackingPrimitives.h:301
SG::VarHandleBase::vhKey
SG::VarHandleKey & vhKey()
Return a non-const reference to the HandleKey.
Definition: StoreGate/src/VarHandleBase.cxx:616
HIMonitoringElectronsTool::m_h_electron_fcal_rphi_mediumLH
TH2D_LW * m_h_electron_fcal_rphi_mediumLH
Definition: HIMonitoringElectronsTool.h:83
ManagedMonitorToolBase::StreamNameFcn::getDirectoryName
virtual std::string getDirectoryName(const ManagedMonitorToolBase *tool, const MonGroup &group, const std::string &objName, const bool usePreviousInterval)=0
A function that returns TDirectory path in a file that corresponds to a given MonGroup and object nam...
HIMonitoringElectronsTool::m_h_electron_fcalA_etcone20_tightLH
TH2D_LW * m_h_electron_fcalA_etcone20_tightLH
Definition: HIMonitoringElectronsTool.h:62
declareProperty
#define declareProperty(n, p, h)
Definition: BaseFakeBkgTool.cxx:15
ManagedMonitorToolBase::fillHistograms
virtual StatusCode fillHistograms()
An inheriting class should either override this function or fillHists().
Definition: ManagedMonitorToolBase.cxx:1415
ZDCMsg::Fatal
@ Fatal
Definition: ZDCMsg.h:23
HIMonitoringElectronsTool::m_h_electron_fcalC_f1_mediumLH
TH2D_LW * m_h_electron_fcalC_f1_mediumLH
Definition: HIMonitoringElectronsTool.h:143
ManagedMonitorToolBase::lbAverageLuminosity
virtual float lbAverageLuminosity(const EventContext &ctx=Gaudi::Hive::currentContext()) const
Average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1)
Definition: ManagedMonitorToolBase.cxx:1960
HIMonitoringElectronsTool::m_h_FCalEt_A_looseLH
TH1D * m_h_FCalEt_A_looseLH
Definition: HIMonitoringElectronsTool.h:44
str
Definition: BTagTrackIpAccessor.cxx:11
python.Bindings.keys
keys
Definition: Control/AthenaPython/python/Bindings.py:790
python.Logging.manager
manager
Definition: PhysicsAnalysis/D3PDTools/AnaAlgorithm/python/Logging.py:92
AsgElectronLikelihoodTool::initialize
virtual StatusCode initialize() override
Gaudi Service Interface method implementations.
Definition: AsgElectronLikelihoodTool.cxx:80
HIMonitoringElectronsTool::m_h_electron_fcal_f3_tightLH
TH2D_LW * m_h_electron_fcal_f3_tightLH
Definition: HIMonitoringElectronsTool.h:149
ManagedMonitorToolBase::m_useTrigger
bool m_useTrigger
Definition: ManagedMonitorToolBase.h:920
HIMonitoringElectronsTool::m_low_FCalEt
double m_low_FCalEt
Definition: HIMonitoringElectronsTool.h:200
ManagedMonitorToolBase::m_haveClearedLastEventBlock
bool m_haveClearedLastEventBlock
Definition: ManagedMonitorToolBase.h:929
AthenaMonManager::lumiBlockNumber
static unsigned int lumiBlockNumber()
Definition: AthenaMonManager.cxx:352
DataVector::at
const T * at(size_type n) const
Access an element, as an rvalue.
HIMonitoringElectronsTool::m_high_FCalEt
double m_high_FCalEt
Definition: HIMonitoringElectronsTool.h:201
HIMonitoringElectronsTool::m_h_electron_fcalC_deltaphires_mediumLH
TH2D_LW * m_h_electron_fcalC_deltaphires_mediumLH
Definition: HIMonitoringElectronsTool.h:182
drawFromPickle.sin
sin
Definition: drawFromPickle.py:36
xAOD::EgammaParameters::deltaEta1
@ deltaEta1
difference between the cluster eta (first sampling) and the eta of the track extrapolated to the firs...
Definition: EgammaEnums.h:184
ManagedMonitorToolBase::m_templateHistograms
std::map< Interval_t, std::vector< MgmtParams< TH1 > > > m_templateHistograms
Definition: ManagedMonitorToolBase.h:722
HIMonitoringElectronsTool::m_h_FCalEt_looseLH
TH1D * m_h_FCalEt_looseLH
histograms
Definition: HIMonitoringElectronsTool.h:40
HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_mediumLH
TH2D_LW * m_h_electron_fcalA_deltaeta1_mediumLH
Definition: HIMonitoringElectronsTool.h:165
HIMonitoringElectronsTool::m_h_electron_fcalA_f3_mediumLH
TH2D_LW * m_h_electron_fcalA_f3_mediumLH
Definition: HIMonitoringElectronsTool.h:152
ManagedMonitorToolBase::ATTRIB_X_VS_LB
@ ATTRIB_X_VS_LB
Definition: ManagedMonitorToolBase.h:131
ManagedMonitorToolBase::Imp::s_svcLocator
static std::atomic< ISvcLocator * > s_svcLocator
Definition: ManagedMonitorToolBase.cxx:41
HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_tightLH
TH2D_LW * m_h_electron_fcalA_weta2_tightLH
Definition: HIMonitoringElectronsTool.h:101
python.PyAthena.obj
obj
Definition: PyAthena.py:135
ManagedMonitorToolBase::m_trigTranslator
PublicToolHandle< ITriggerTranslatorTool > m_trigTranslator
Definition: ManagedMonitorToolBase.h:910
xAOD::bool
setBGCode setTAP setLVL2ErrorBits bool
Definition: TrigDecision_v1.cxx:60
LWHist::getROOTHistBase
virtual TH1 * getROOTHistBase()=0
TH2D_LW::create
static TH2D_LW * create(const char *name, const char *title, unsigned nbinsx, const double &xmin, const double &xmax, unsigned nbinsy, const double &ymin, const double &ymax)
Definition: TH2D_LW.cxx:33
ManagedMonitorToolBase::m_lastMedStatInterval
int m_lastMedStatInterval
Definition: ManagedMonitorToolBase.h:924
HIMonitoringElectronsTool::m_h_electron_fcalC_weta2_tightLH
TH2D_LW * m_h_electron_fcalC_weta2_tightLH
Definition: HIMonitoringElectronsTool.h:105
HIMonitoringElectronsTool::m_h_electron_fcalA_reta_mediumLH
TH2D_LW * m_h_electron_fcalA_reta_mediumLH
Definition: HIMonitoringElectronsTool.h:74
ManagedMonitorToolBase::m_vTrigChainNames
std::vector< std::string > m_vTrigChainNames
Definition: ManagedMonitorToolBase.h:742
HIMonitoringElectronsTool::m_h_electron_fcal_rphi_tightLH
TH2D_LW * m_h_electron_fcal_rphi_tightLH
Definition: HIMonitoringElectronsTool.h:84
DataVector::size
size_type size() const noexcept
Returns the number of elements in the collection.
AthCommonDataStore::declareGaudiProperty
Gaudi::Details::PropertyBase & declareGaudiProperty(Gaudi::Property< T > &hndl, const SG::VarHandleKeyType &)
specialization for handling Gaudi::Property<SG::VarHandleKey>
Definition: AthCommonDataStore.h:156
ManagedMonitorToolBase::regHist
virtual StatusCode regHist(TH1 *h, const std::string &system, Interval_t interval, MgmtAttr_t histo_mgmt=ATTRIB_MANAGED, const std::string &chain="", const std::string &merge="")
Registers a TH1 (including TH2, TH3, and TProfile) to be included in the output stream using logical ...
Definition: ManagedMonitorToolBase.cxx:1454
HIMonitoringElectronsTool::m_h_electron_fcal_rphi_looseLH
TH2D_LW * m_h_electron_fcal_rphi_looseLH
Definition: HIMonitoringElectronsTool.h:82
HIMonitoringElectronsTool::m_h_electron_fcalA_deltaeta1_looseLH
TH2D_LW * m_h_electron_fcalA_deltaeta1_looseLH
Definition: HIMonitoringElectronsTool.h:164
HIMonitoringElectronsTool::m_high_rhad
double m_high_rhad
Definition: HIMonitoringElectronsTool.h:237
InDetDD::electrons
@ electrons
Definition: InDetDD_Defs.h:17
merge
Definition: merge.py:1
AthenaMonManager::noOutput
@ noOutput
Definition: AthenaMonManager.h:49
AthenaMonManager::monteCarlo
@ monteCarlo
Definition: AthenaMonManager.h:58
ManagedMonitorToolBase::intervalEnumToString
static std::string intervalEnumToString(Interval_t interval)
Converts a LevelOfDetail_t to a string of the same name.
Definition: ManagedMonitorToolBase.cxx:588
HIMonitoringElectronsTool::m_h_electron_fcalC_weta2_mediumLH
TH2D_LW * m_h_electron_fcalC_weta2_mediumLH
Definition: HIMonitoringElectronsTool.h:104
fitman.k
k
Definition: fitman.py:528
HIMonitoringElectronsTool::m_high_iso
double m_high_iso
Definition: HIMonitoringElectronsTool.h:221
ManagedMonitorToolBase::m_defaultLBDuration
float m_defaultLBDuration
Definition: ManagedMonitorToolBase.h:958
read_hist_ntuple.f1
f1
Definition: read_hist_ntuple.py:4
xAOD::EgammaParameters::weta2
@ weta2
the lateral width is calculated with a window of 3x5 cells using the energy weighted sum over all cel...
Definition: EgammaEnums.h:103
ServiceHandle< Gaudi::Interfaces::IOptionsSvc >
HIMonitoringElectronsTool::m_low_rphi
double m_low_rphi
Definition: HIMonitoringElectronsTool.h:228
HIMonitoringElectronsTool::m_low_rhad
double m_low_rhad
Definition: HIMonitoringElectronsTool.h:236
HIMonitoringElectronsTool::m_h_electron_fcalA_weta2_looseLH
TH2D_LW * m_h_electron_fcalA_weta2_looseLH
Definition: HIMonitoringElectronsTool.h:99