ATLAS Offline Software
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ZeeTaPMonTool Class Reference

#include <ZeeTaPMonTool.h>

Inheritance diagram for ZeeTaPMonTool:
Collaboration diagram for ZeeTaPMonTool:

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

 ZeeTaPMonTool (const std::string &type, const std::string &name, const IInterface *parent)
virtual ~ZeeTaPMonTool ()=default
virtual StatusCode initialize () override
virtual StatusCode bookHistograms () override
 An inheriting class should either override this function or bookHists().
virtual StatusCode fillHistograms () override
 An inheriting class should either override this function or fillHists().
virtual StatusCode procHistograms () override
 An inheriting class should either override this function or finalHists().
virtual StreamNameFcnstreamNameFunction ()
 Returns the function object that converts logical paramters into a physical stream name.
virtual StatusCode bookHists ()
 Calls bookHists( true, true, true ) and initializes lumiBlock and run numbers.
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 ).
virtual StatusCode finalHists ()
 Calls procHists( true, true, true ).
virtual StatusCode bookHistogramsRecurrent ()
 An inheriting class should either override this function, bookHists() or bookHistograms().
virtual void setMonManager (AthenaMonManager *manager)
 Takes a pointer to a managing object to get information from it when needed.
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.
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.
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.
virtual StatusCode getHist (TH1 *&h, const std::string &hName, const MonGroup &group)
 Returns a TH1 via the pointer passed as the first argument.
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.
virtual StatusCode getHist (TH2 *&h, const std::string &hName, const MonGroup &group)
 Returns a TH2 via the pointer passed as the first argument.
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.
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.
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.
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.
virtual StatusCode regTree (TTree *t, const MonGroup &group)
 Registers a TTree to be included in the output stream using logical parameters that describe it.
virtual StatusCode writeAndDelete (TH1 *h, const MonGroup &group)
 Write out histogram and delete it.
virtual StatusCode deregHist (TH1 *h)
 De-registers a TH1 from the THistSvc, but does NOT delete the object.
virtual StatusCode deregGraph (TGraph *g)
 De-registers a TGraph from the THistSvc, but does NOT delete the object.
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.
virtual StatusCode deregObject (const std::string &objName, const MonGroup &group)
 De-registers a TObject from the THistSvc, but does NOT delete the object.
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.
virtual StatusCode runStat ()
 This implementation does nothing; equivalent functionality may be provided by procHists( true, true, true ).
virtual StatusCode checkHists (bool calledFromFinalize)
 This implementation does nothing; equivalent functionality may be provided by procHists(...) with appropriate arguments.
virtual bool preSelector ()
virtual float lbAverageInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average mu, i.e.
virtual float lbInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Instantaneous number of interactions, i.e.
virtual float lbAverageLuminosity (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1)
virtual float lbLuminosityPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Instantaneous luminosity.
virtual double lbDuration (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Luminosity block time (in seconds)
virtual float lbAverageLivefraction (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average luminosity livefraction.
virtual float livefractionPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Livefraction per bunch crossing ID.
virtual double lbLumiWeight (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Average Integrated Luminosity Live Fraction.
 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.
const ServiceHandle< StoreGateSvc > & detStore () const
 The standard StoreGateSvc/DetectorStore Returns (kind of) a pointer to the StoreGateSvc.
virtual StatusCode sysInitialize () override
 Perform system initialization for an algorithm.
virtual StatusCode sysStart () override
 Handle START transition.
virtual std::vector< Gaudi::DataHandle * > inputHandles () const override
 Return this algorithm's input handles.
virtual std::vector< Gaudi::DataHandle * > outputHandles () const override
 Return this algorithm's output handles.
Gaudi::Details::PropertyBase & declareProperty (Gaudi::Property< T, V, H > &t)
void updateVHKA (Gaudi::Details::PropertyBase &)
MsgStream & msg () 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.
static Interval_t intervalStringToEnum (const std::string &str)
 Converts a string to the corresponding Interval_t.
static const InterfaceID & interfaceID ()

Protected Types

enum  {
  BARREL =0 , CRACK , ENDCAP , FORWARD ,
  NREGION
}
typedef std::map< std::string, OutputMetadata * > MDMap_t

Protected Member Functions

bool hasBadLar (const EventContext &ctx)
void bookTH1F (TH1 *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float low, float high)
void bookTH1F (TH1 *&h, MonGroup &mygroup, const std::string &hname_prefix, const std::string &htitle_prefix, int nbins, float low, float high, std::string &nameOfEgammaType)
void bookTH2F (TH2 *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh)
void bookTH2F (TH2 *&h, MonGroup &mygroup, const std::string &hname_prefix, const std::string &htitle_prefix, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh, std::string &nameOfEgammaType)
void bookTProfile (TProfile *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float xlow, float xhigh, float ylow, float yhigh)
void bookTH1FperRegion (std::vector< TH1 * > &vhist, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float low, float high, unsigned int min_region, unsigned int max_region)
void bookTH1FperRegion (std::vector< TH1 * > &vhist, MonGroup &mygroup, const std::string &hname_prefix, const std::string &htitle, int nbins, float low, float high, unsigned int min_region, unsigned int max_region, std::string &nameOfEgammaType)
void bookTH2FperRegion (std::vector< TH2 * > &vhist, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh, unsigned int min_region, unsigned int max_region)
void bookTH2FperRegion (std::vector< TH2 * > &vhist, MonGroup &mygroup, const std::string &hname_prefix, const std::string &htitle_prefix, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh, unsigned int min_region, unsigned int max_region, std::string &nameOfEgammaType)
void fillEfficiencies (TH1 *h, TH1 *href)
bool hasGoodTrigger (const std::string &comment)
unsigned int getCurrentLB (const EventContext &ctx)
StatusCode regManagedHistograms (std::vector< MgmtParams< TH1 > > &templateHistograms)
StatusCode regManagedGraphs (std::vector< MgmtParams< TGraph > > &templateGraphs)
StatusCode regManagedTrees (std::vector< MgmtParams< TTree > > &templateTrees)
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.
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.
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
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.

Static Protected Member Functions

static int GetRegion (float eta)
static int GetForwardRegion (float eta)
static void fillTH1FperRegion (std::vector< TH1 * > &vhist, unsigned int ir, float x)
static void fillTH2FperRegion (std::vector< TH2 * > &vhist, unsigned int ir, float x, float y)

Protected Attributes

SG::ReadHandleKey< xAOD::ElectronContainerm_ElectronContainer {this, "ElectronContainer", "Electrons", "Name of the electron collection"}
float m_MassPeak
float m_ElectronEtCut
float m_MassLowerCut
float m_MassUpperCut
int m_PhiBinning
TH1 * m_hNZcandidates
MonGroupm_electronGroup
MonGroupm_electronTrkGroup
MonGroupm_electronIdGroup
MonGroupm_electronIsoGroup
MonGroupm_electronLBGroup
MonGroupm_electronEffGroup
std::vector< TH1 * > m_hvMass
TH1 * m_hMass
TH1 * m_hIDEt
TH1 * m_hIDEta
TH1 * m_hIDPhi
TProfile * m_effhIDEt
TProfile * m_effhIDEta
TProfile * m_effhIDPhi
TH1 * m_hISOEt
TH1 * m_hISOEta
TH1 * m_hISOPhi
TProfile * m_effhISOEt
TProfile * m_effhISOEta
TProfile * m_effhISOPhi
TH1 * m_hN
TH1 * m_hEt
TH1 * m_hEta
TH1 * m_hPhi
TH2 * m_hEtaPhi
std::vector< TH1 * > m_hvDeltaEta1
std::vector< TH1 * > m_hvDeltaPhi2
std::vector< TH1 * > m_hvNOfBLayerHits
std::vector< TH1 * > m_hvNOfSiHits
std::vector< TH1 * > m_hvNOfTRTHits
std::vector< TH1 * > m_hvEhad1
std::vector< TH1 * > m_hvEoverP
std::vector< TH1 * > m_hvCoreEM
std::vector< TH1 * > m_hvF1
std::vector< TH1 * > m_hvF2
std::vector< TH1 * > m_hvF3
std::vector< TH1 * > m_hvRe233e237
std::vector< TH1 * > m_hvRe237e277
std::vector< TH1 * > m_hvCaloIso
std::vector< TH1 * > m_hvTrackIso
unsigned int m_lumiBlockNumber
unsigned int m_nZCandidatesInCurrentLB
std::vector< int > m_nZCandidatesPerLumiBlock
std::vector< int > m_nZCandidatessPerRegion
unsigned int m_nZCandidates
TH1 * m_hLB_N
std::vector< std::string > m_Trigger
ToolHandle< Trig::TrigDecisionToolm_trigdec
bool m_UseTrigger
std::string m_GroupExtension
unsigned int m_currentLB
SG::ReadHandleKey< xAOD::EventInfom_EventInfoKey {this, "EventInfoKey", "EventInfo"}
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< TEfficiency > > > m_templateEfficiencies
std::vector< std::string > m_vTrigChainNames
std::vector< std::string > m_vTrigGroupNames
MDMap_t m_metadataMap
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

void fillElectronProbe (const xAOD::Electron *el, bool isTight, bool isIso, double mass)
Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T, V, H > &hndl, const SG::VarHandleKeyType &)
 specialization for handling Gaudi::Property<SG::VarHandleKey>

Private Attributes

std::vector< std::string > m_region
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)
StoreGateSvc_t m_detStore
 Pointer to StoreGate (detector store by default)
std::vector< SG::VarHandleKeyArray * > m_vhka
bool m_varHandleArraysDeclared

Detailed Description

Definition at line 18 of file ZeeTaPMonTool.h.

Member Typedef Documentation

◆ MDMap_t

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

Definition at line 826 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

◆ anonymous enum

anonymous enum
protectedinherited
Enumerator
BARREL 
CRACK 
ENDCAP 
FORWARD 
NREGION 

Definition at line 86 of file egammaMonToolBase.h.

◆ 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 113 of file ManagedMonitorToolBase.h.

◆ 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 130 of file ManagedMonitorToolBase.h.

Constructor & Destructor Documentation

◆ ZeeTaPMonTool()

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

Definition at line 32 of file ZeeTaPMonTool.cxx.

33 : egammaMonToolBase(type,name,parent),
34 m_hNZcandidates(nullptr),
35 m_electronGroup(nullptr),
36 m_electronTrkGroup(nullptr),
37 m_electronIdGroup(nullptr),
38 m_electronIsoGroup(nullptr),
39 m_electronLBGroup(nullptr),
40 m_electronEffGroup(nullptr),
41 m_hMass(nullptr),
42 m_hIDEt(nullptr),
43 m_hIDEta(nullptr),
44 m_hIDPhi(nullptr),
45 m_effhIDEt(nullptr),
46 m_effhIDEta(nullptr),
47 m_effhIDPhi(nullptr),
48 m_hISOEt(nullptr),
49 m_hISOEta(nullptr),
50 m_hISOPhi(nullptr),
51 m_effhISOEt(nullptr),
52 m_effhISOEta(nullptr),
53 m_effhISOPhi(nullptr),
54 m_hN(nullptr),
55 m_hEt(nullptr),
56 m_hEta(nullptr),
57 m_hPhi(nullptr),
58 m_hEtaPhi(nullptr),
59 m_hLB_N(nullptr)
60{
61 // Name of the electron collection
62 declareProperty("massPeak", m_MassPeak = ParticleConstants::ZMassInMeV, "Resonance peak position" );
63 declareProperty("electronEtCut",m_ElectronEtCut = 15*GeV, "Et cut for electrons");
64 declareProperty("massLowerCut", m_MassLowerCut = 70*GeV,"Lower mass cut");
65 declareProperty("massUpperCut", m_MassUpperCut = 110*GeV,"Upper mass cut");
66 declareProperty("PhiBinning", m_PhiBinning = 64,"Number of bins for phi");
67
70 m_nZCandidates = 0;
71}
Gaudi::Details::PropertyBase & declareProperty(Gaudi::Property< T, V, H > &t)
TH1 * m_hNZcandidates
MonGroup * m_electronEffGroup
TProfile * m_effhISOPhi
unsigned int m_lumiBlockNumber
TProfile * m_effhIDPhi
TProfile * m_effhIDEta
MonGroup * m_electronGroup
TProfile * m_effhIDEt
unsigned int m_nZCandidates
MonGroup * m_electronIdGroup
MonGroup * m_electronTrkGroup
unsigned int m_nZCandidatesInCurrentLB
float m_ElectronEtCut
MonGroup * m_electronIsoGroup
TProfile * m_effhISOEt
TProfile * m_effhISOEta
MonGroup * m_electronLBGroup
egammaMonToolBase(const std::string &type, const std::string &name, const IInterface *parent)
constexpr double ZMassInMeV
the mass of the Z0 boson (in MeV)

◆ ~ZeeTaPMonTool()

virtual ZeeTaPMonTool::~ZeeTaPMonTool ( )
virtualdefault

Member Function Documentation

◆ bookHistograms()

StatusCode ZeeTaPMonTool::bookHistograms ( )
overridevirtual

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

Reimplemented from egammaMonToolBase.

Definition at line 80 of file ZeeTaPMonTool.cxx.

81{
82 ATH_MSG_DEBUG("ZeeTaPMonTool::bookHistograms()");
83 int start;
84 int end;
85 start = 0;
86 end = ENDCAP;
87
88 // Create groups
89 m_electronGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension, run); // to be re-booked every new run
90 // Create sub groups
91 m_electronTrkGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension+"/Track", run); // to be re-booked every new run
92 m_electronIdGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension+"/ID", run); // to be re-booked every new run
93 m_electronEffGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension+"/EfficienciesIDISO", run, ManagedMonitorToolBase::ATTRIB_MANAGED , "", "effAsPerCent"); // to be re-booked every new run
94 m_electronIsoGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension+"/Isolation", run); // to be re-booked every new run
95 m_electronLBGroup = new MonGroup(this,"egamma/tagandprobe"+m_GroupExtension+"/LBMon", run); // to be re-booked every new run
96
97 // Number of Z candidates vs eta of leading electron
98 bookTH1F(m_hNZcandidates,*m_electronGroup,"electronTagAndProbeNcandidates", "Number of "+m_GroupExtension+" candidates vs eta of leading electron",64,-3.2,3.2);
99
100 // Mass plots
101 bookTH1F(m_hMass, *m_electronGroup,"electronTagAndProbeGlobalMass", "ee invariant mass",100,m_MassLowerCut,m_MassUpperCut);
102 bookTH1FperRegion(m_hvMass, *m_electronGroup,"electronTagAndProbeMass", "ee invariant mass",100,m_MassLowerCut,m_MassUpperCut,start,end);
103
104 // EFFICIENCIES IN MAIN PANEL
105 bookTH1F(m_hIDEt, *m_electronEffGroup,"EfficiencyTagAndProbeElectronIDvsEtOld", "LHTight electron ID efficiency vs Et [MeV]",100, -1000.0, 250000.0);
106 bookTH1F(m_hIDEta, *m_electronEffGroup,"EfficiencyTagAndProbeElectronIDvsEtaOld", "LHTight electron ID efficiency vs #eta", 64, -3.2, 3.2);
107 bookTH1F(m_hIDPhi, *m_electronEffGroup,"EfficiencyTagAndProbeElectronIDvsPhiOld", "LHTight electron ID efficiency vs #phi", m_PhiBinning, -3.2, 3.2);
108 bookTH1F(m_hISOEt, *m_electronEffGroup,"EfficiencyTagAndProbeElectronISOvsEtOld", "LHTight electron ISO efficiency vs Et [MeV]",100, -1000.0, 250000.0);
109 bookTH1F(m_hISOEta,*m_electronEffGroup,"EfficiencyTagAndProbeElectronISOvsEtaOld", "LHTight electron ISO efficiency vs #eta", 64, -3.2, 3.2);
110 bookTH1F(m_hISOPhi,*m_electronEffGroup,"EfficiencyTagAndProbeElectronISOvsPhiOld", "LHTight electron ISO efficiency vs #phi", m_PhiBinning, -3.2, 3.2);
111
112 bookTProfile(m_effhIDEt, *m_electronGroup,"EfficiencyTagAndProbeElectronIDvsEt", "LHTight electron ID efficiency vs Et [MeV]",100, -1000.0, 250000.0, 0.,1.1);
113 bookTProfile(m_effhIDEta, *m_electronGroup,"EfficiencyTagAndProbeElectronIDvsEta", "LHTight electron ID efficiency vs #eta", 64, -3.2, 3.2, 0.,1.1);
114 bookTProfile(m_effhIDPhi, *m_electronGroup,"EfficiencyTagAndProbeElectronIDvsPhi", "LHTight electron ID efficiency vs #phi", m_PhiBinning, -3.2, 3.2, 0.,1.1);
115 bookTProfile(m_effhISOEt, *m_electronGroup,"EfficiencyTagAndProbeElectronISOvsEt", "LHTight electron ISO efficiency vs Et [MeV]",100, -1000.0, 250000.0, 0.,1.1);
116 bookTProfile(m_effhISOEta,*m_electronGroup,"EfficiencyTagAndProbeElectronISOvsEta", "LHTight electron ISO efficiency vs #eta", 64, -3.2, 3.2, 0., 1.1);
117 bookTProfile(m_effhISOPhi,*m_electronGroup,"EfficiencyTagAndProbeElectronISOvsPhi", "LHTight electron ISO efficiency vs #phi", m_PhiBinning, -3.2, 3.2, 0., 1.1);
118
119 // COMPLEMENTARY HISTOGRAMS FOR EXPERT PANEL
120 bookTH1F(m_hN, *m_electronGroup,"electronTagAndProbeN", "Number of Probe electrons",40, 0.0, 40.0);
121 bookTH1F(m_hEt, *m_electronGroup,"electronTagAndProbeEt", "Probe electron Et [MeV]",100, -1000.0, 250000.0);
122 bookTH2F(m_hEtaPhi, *m_electronGroup,"electronTagAndProbeEtaPhi", "Probe electron #eta,#phi map", 64, -3.2, 3.2, m_PhiBinning, -3.2, 3.2);
123 bookTH1F(m_hEta, *m_electronGroup,"electronTagAndProbeEta", "Probe electron #eta", 64, -3.2, 3.2);
124 bookTH1F(m_hPhi, *m_electronGroup,"electronTagAndProbePhi", "Probe electron #phi", m_PhiBinning, -3.2, 3.2);
125
126 // TRACK PANEL
127 bookTH1FperRegion(m_hvDeltaEta1 , *m_electronTrkGroup,"electronTagAndProbeDeltaEta1", "PROBE electron track match #Delta #eta (1st sampling) ;#Delta #eta;Nevents", 50,-0.05,0.05,start,end);
128 bookTH1FperRegion(m_hvDeltaPhi2 , *m_electronTrkGroup,"electronTagAndProbeDeltaPhi2", "PROBE electron track match #Delta #phi (2st sampling) ;#Delta #phi;Nevents", 50,-0.15,0.1,start,end);
129 bookTH1FperRegion(m_hvNOfBLayerHits , *m_electronTrkGroup,"electronTagAndProbeNOfBLayerHits", "PROBE electron number of track B-Layer Hits ;N B layer hits;Nevents", 6,-0.5,5.5,start,end);
130 bookTH1FperRegion(m_hvNOfSiHits , *m_electronTrkGroup,"electronTagAndProbeNOfSiHits", "PROBE electron number of track precision Hits ;N Si hits;Nevents", 26,-0.5,25.5,start,end);
131 bookTH1FperRegion(m_hvNOfTRTHits , *m_electronTrkGroup,"electronTagAndProbeNOfTRTHits", "PROBE electron number of TRT Hits ;N TRT hits;Nevents", 51,-0.5,50.5,start,end);
132
133 // ID PANEL
134 bookTH1FperRegion(m_hvEhad1 , *m_electronIdGroup,"electronTagAndProbeEhad1", "PROBE electron energy leakage in 1st sampling of hadronic cal. ;E had1; Nevents", 50, -1000., 10000.,start,end);
135 bookTH1FperRegion(m_hvEoverP , *m_electronIdGroup,"electronTagAndProbeEoverP", "PROBE electron match track E over P ;E/p;Nevents", 50,0,5,start,end);
136 bookTH1FperRegion(m_hvCoreEM , *m_electronIdGroup,"electronTagAndProbeCoreEM", "PROBE electron core energy in EM calorimeter ;E [MeV]; Nevents",50, -5000., 250000.,start,end);
137 bookTH1FperRegion(m_hvF1 , *m_electronIdGroup,"electronTagAndProbeF1", "PROBE electron fractional energy in 1st sampling;F1; Nevents", 50, -0.2,1.0,start,end);
138 bookTH1FperRegion(m_hvF2 , *m_electronIdGroup,"electronTagAndProbeF2", "PROBE electron fractional energy in 2nd sampling;F2; Nevents", 50, -0.2,1.0,start,end);
139 bookTH1FperRegion(m_hvF3 , *m_electronIdGroup,"electronTagAndProbeF3", "PROBE electron fractional energy in 3rd sampling;F3; Nevents", 50, -0.2,1.0,start,end);
140 bookTH1FperRegion(m_hvRe233e237 , *m_electronIdGroup,"electronTagAndProbeRe233e237", "PROBE electron uncor. energy fraction in 3x3/3x7 cells in em sampling 2 ;R 3x3/3x7; Nevents", 50, 0., 2.,start,end);
141 bookTH1FperRegion(m_hvRe237e277 , *m_electronIdGroup,"electronTagAndProbeRe237e277", "PROBE electron uncor. energy fraction in 3x7/7x7 cells in em sampling 2 ;R 3x7/7x7; Nevents", 50, 0., 2.,start,end);
142
143 // ISO PANEL
144 bookTH1FperRegion(m_hvCaloIso , *m_electronIsoGroup,"electronTagAndProbeCaloIso", "PROBE electron calorimeter isolation;E_{iso} [MeV];Nevents", 50,-10000.,40000.0,start,end);
145 bookTH1FperRegion(m_hvTrackIso , *m_electronIsoGroup,"electronTagAndProbeTrackIso", "PROBE electron track isolation;E_{trk iso} [MeV];Nevents", 50,-10000.,40000.0,start,end);
146
147 // LUMI BLOCK MONITORING PANEL
148
149 std::string hname = std::string("LBEvoNZcandidates");
150 std::string hlongname = std::string("Number of Z candidates vs LB");
151 bookTH1F(m_hLB_N, *m_electronLBGroup, hname, hlongname, 2000, -0.5, 1999.5);
152
153 return StatusCode::SUCCESS;
154}
#define ATH_MSG_DEBUG(x)
A container of information describing a monitoring object.
std::vector< TH1 * > m_hvDeltaPhi2
std::vector< TH1 * > m_hvTrackIso
std::vector< TH1 * > m_hvRe237e277
std::vector< TH1 * > m_hvMass
std::vector< TH1 * > m_hvCoreEM
std::vector< TH1 * > m_hvF1
std::vector< TH1 * > m_hvDeltaEta1
std::vector< TH1 * > m_hvF2
std::vector< TH1 * > m_hvRe233e237
std::vector< TH1 * > m_hvNOfTRTHits
std::vector< TH1 * > m_hvNOfSiHits
std::vector< TH1 * > m_hvNOfBLayerHits
std::vector< TH1 * > m_hvEoverP
std::vector< TH1 * > m_hvEhad1
std::vector< TH1 * > m_hvF3
std::vector< TH1 * > m_hvCaloIso
std::string m_GroupExtension
void bookTH1FperRegion(std::vector< TH1 * > &vhist, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float low, float high, unsigned int min_region, unsigned int max_region)
void bookTProfile(TProfile *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float xlow, float xhigh, float ylow, float yhigh)
void bookTH2F(TH2 *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh)
void bookTH1F(TH1 *&h, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbins, float low, float high)

◆ bookHistogramsRecurrent()

StatusCode ManagedMonitorToolBase::bookHistogramsRecurrent ( )
virtualinherited

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

Reimplemented in ManagedMonitorToolTest, MdtVsRpcRawDataValAlg, and MdtVsTgcRawDataValAlg.

Definition at line 1284 of file ManagedMonitorToolBase.cxx.

1286{
1287 if( m_newEventsBlock ) { }
1288 if( m_newLumiBlock ) { }
1289 if( m_newRun ) { }
1290
1291 return StatusCode::SUCCESS;
1292}

◆ bookHists()

StatusCode ManagedMonitorToolBase::bookHists ( )
virtualinherited

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

Implements IMonitorToolBase.

Reimplemented in TileDigitsMonTool, and TileRawChannelMonTool.

Definition at line 729 of file ManagedMonitorToolBase.cxx.

731{
732 // The Run/LumiBlock numbers are not set when beginRun() is called. Therefore,
733 // book histograms on the first call to fillHists(), which is called from execute().
734 return StatusCode::SUCCESS;
735}

◆ bookTH1F() [1/2]

void egammaMonToolBase::bookTH1F ( TH1 *& h,
MonGroup & mygroup,
const std::string & hname,
const std::string & htitle,
int nbins,
float low,
float high )
protectedinherited

Definition at line 100 of file egammaMonToolBase.cxx.

101{
102 h = new TH1F(hname.c_str(),htitle.c_str(),nbins,low,high);
103 regHist(h,mygroup).ignore();
104}
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 ...
TH1F(name, title, nxbins, bins_par2, bins_par3=None, path='', **kwargs)

◆ bookTH1F() [2/2]

void egammaMonToolBase::bookTH1F ( TH1 *& h,
MonGroup & mygroup,
const std::string & hname_prefix,
const std::string & htitle_prefix,
int nbins,
float low,
float high,
std::string & nameOfEgammaType )
protectedinherited

Definition at line 106 of file egammaMonToolBase.cxx.

107{
108 std::string hname = hname_prefix + nameOfEgammaType;
109 std::string htitle = htitle_prefix + " (" + nameOfEgammaType + ")";
110 bookTH1F(h, mygroup, hname, htitle, nbins, low, high);
111}

◆ bookTH1FperRegion() [1/2]

void egammaMonToolBase::bookTH1FperRegion ( std::vector< TH1 * > & vhist,
MonGroup & mygroup,
const std::string & hname,
const std::string & htitle,
int nbins,
float low,
float high,
unsigned int min_region,
unsigned int max_region )
protectedinherited

Definition at line 132 of file egammaMonToolBase.cxx.

133{
134 std::string name;
135 std::string title;
136
137 vhist.resize(NREGION,nullptr);
138 for(unsigned int ir=min_region;ir<=max_region;ir++) {
139 // Create histograms
140 name = hname+"_"+m_region[ir];
141 title = htitle+" "+m_region[ir];
142 TH1 *h = new TH1F(name.c_str(),title.c_str(),nbins,low,high);
143 vhist[ir] = h;
144 regHist(h,mygroup).ignore();
145 }
146}
std::vector< std::string > m_region
int ir
counter of the current depth
Definition fastadd.cxx:49

◆ bookTH1FperRegion() [2/2]

void egammaMonToolBase::bookTH1FperRegion ( std::vector< TH1 * > & vhist,
MonGroup & mygroup,
const std::string & hname_prefix,
const std::string & htitle,
int nbins,
float low,
float high,
unsigned int min_region,
unsigned int max_region,
std::string & nameOfEgammaType )
protectedinherited

Definition at line 148 of file egammaMonToolBase.cxx.

149{
150 std::string hname = hname_prefix + nameOfEgammaType;
151 std::string htitle = htitle_prefix + " (" + nameOfEgammaType + ")";
152 bookTH1FperRegion(vhist, mygroup, hname, htitle, nbins, low, high, min_region, max_region);
153}

◆ bookTH2F() [1/2]

void egammaMonToolBase::bookTH2F ( TH2 *& h,
MonGroup & mygroup,
const std::string & hname,
const std::string & htitle,
int nbinsx,
float xlow,
float xhigh,
int nbinsy,
float ylow,
float yhigh )
protectedinherited

Definition at line 113 of file egammaMonToolBase.cxx.

114{
115 h = new TH2F(hname.c_str(),htitle.c_str(),nbinsx,xlow,xhigh,nbinsy,ylow,yhigh);
116 regHist(h,mygroup).ignore();
117}
TH2F(name, title, nxbins, bins_par2, bins_par3, bins_par4, bins_par5=None, bins_par6=None, path='', **kwargs)

◆ bookTH2F() [2/2]

void egammaMonToolBase::bookTH2F ( TH2 *& h,
MonGroup & mygroup,
const std::string & hname_prefix,
const std::string & htitle_prefix,
int nbinsx,
float xlow,
float xhigh,
int nbinsy,
float ylow,
float yhigh,
std::string & nameOfEgammaType )
protectedinherited

Definition at line 119 of file egammaMonToolBase.cxx.

120{
121 std::string hname = hname_prefix + nameOfEgammaType;
122 std::string htitle = htitle_prefix + " (" + nameOfEgammaType + ")";
123 bookTH2F(h, mygroup, hname, htitle, nbinsx, xlow, xhigh, nbinsy, ylow, yhigh);
124}

◆ bookTH2FperRegion() [1/2]

void egammaMonToolBase::bookTH2FperRegion ( std::vector< TH2 * > & vhist,
MonGroup & mygroup,
const std::string & hname,
const std::string & htitle,
int nbinsx,
float xlow,
float xhigh,
int nbinsy,
float ylow,
float yhigh,
unsigned int min_region,
unsigned int max_region )
protectedinherited

Definition at line 155 of file egammaMonToolBase.cxx.

156{
157 std::string name;
158 std::string title;
159
160 vhist.resize(NREGION,nullptr);
161 for(unsigned int ir=min_region;ir<=max_region;ir++) {
162 // Create histograms
163 name = hname+"_"+m_region[ir];
164 title = htitle+" "+m_region[ir];
165 TH2 *h = new TH2F(name.c_str(),title.c_str(),nbinsx,xlow,xhigh,nbinsy,ylow,yhigh);
166 vhist[ir] = h;
167 regHist(h,mygroup).ignore();
168 }
169}

◆ bookTH2FperRegion() [2/2]

void egammaMonToolBase::bookTH2FperRegion ( std::vector< TH2 * > & vhist,
MonGroup & mygroup,
const std::string & hname_prefix,
const std::string & htitle_prefix,
int nbinsx,
float xlow,
float xhigh,
int nbinsy,
float ylow,
float yhigh,
unsigned int min_region,
unsigned int max_region,
std::string & nameOfEgammaType )
protectedinherited

Definition at line 171 of file egammaMonToolBase.cxx.

172{
173 std::string hname = hname_prefix + nameOfEgammaType;
174 std::string htitle = htitle_prefix + " (" + nameOfEgammaType + ")";
175 bookTH2FperRegion(vhist, mygroup, hname, htitle, nbinsx, xlow, xhigh, nbinsy, ylow, yhigh, min_region, max_region);
176}
void bookTH2FperRegion(std::vector< TH2 * > &vhist, MonGroup &mygroup, const std::string &hname, const std::string &htitle, int nbinsx, float xlow, float xhigh, int nbinsy, float ylow, float yhigh, unsigned int min_region, unsigned int max_region)

◆ bookTProfile()

void egammaMonToolBase::bookTProfile ( TProfile *& h,
MonGroup & mygroup,
const std::string & hname,
const std::string & htitle,
int nbins,
float xlow,
float xhigh,
float ylow,
float yhigh )
protectedinherited

Definition at line 126 of file egammaMonToolBase.cxx.

127{
128 h = new TProfile(hname.c_str(),htitle.c_str(),nbins,xlow,xhigh,ylow,yhigh);
129 regHist(h,mygroup).ignore();
130}

◆ 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 CscCalibMonToolBase, TileCellNoiseMonTool, TileDigitsMonTool, and TileRawChannelMonTool.

Definition at line 1669 of file ManagedMonitorToolBase.cxx.

1671{
1672 // Histograms will be checked using the data-quality monitoring framework (DQMF)
1673
1674 return StatusCode::SUCCESS;
1675}

◆ declareGaudiProperty()

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

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

Definition at line 156 of file AthCommonDataStore.h.

158 {
160 hndl.value(),
161 hndl.documentation());
162
163 }

◆ declareProperty()

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

Definition at line 145 of file AthCommonDataStore.h.

145 {
146 typedef typename SG::HandleClassifier<T>::type htype;
148 }
Gaudi::Details::PropertyBase & declareGaudiProperty(Gaudi::Property< T, V, H > &hndl, const SG::VarHandleKeyType &)
specialization for handling Gaudi::Property<SG::VarHandleKey>

◆ deregGraph()

StatusCode ManagedMonitorToolBase::deregGraph ( TGraph * g)
virtualinherited

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

Definition at line 1623 of file ManagedMonitorToolBase.cxx.

1625{
1626 return m_THistSvc->deReg( g );
1627}
ServiceHandle< ITHistSvc > m_THistSvc

◆ deregHist()

StatusCode ManagedMonitorToolBase::deregHist ( TH1 * h)
virtualinherited

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

Definition at line 1615 of file ManagedMonitorToolBase.cxx.

1617{
1618 return m_THistSvc->deReg( h );
1619}

◆ 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 1641 of file ManagedMonitorToolBase.cxx.

1643{
1644 std::string streamName = streamNameFunction()->getStreamName( this, group, objName );
1645 return m_THistSvc->deReg( streamName );
1646}
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.
virtual StreamNameFcn * streamNameFunction()
Returns the function object that converts logical paramters into a physical stream name.

◆ 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 1631 of file ManagedMonitorToolBase.cxx.

1634{
1635 MonGroup group( this, system, interval );
1636 return deregObject( objName, group );
1637}
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.

◆ 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.

◆ endOfEventsBlockFlag()

bool ManagedMonitorToolBase::endOfEventsBlockFlag ( ) const
inlineprotectedinherited

Definition at line 794 of file ManagedMonitorToolBase.h.

◆ endOfLowStatFlag()

bool ManagedMonitorToolBase::endOfLowStatFlag ( ) const
inlineprotectedinherited

Definition at line 795 of file ManagedMonitorToolBase.h.

◆ endOfLumiBlockFlag()

bool ManagedMonitorToolBase::endOfLumiBlockFlag ( ) const
inlineprotectedinherited

Definition at line 796 of file ManagedMonitorToolBase.h.

◆ endOfRunFlag()

bool ManagedMonitorToolBase::endOfRunFlag ( ) const
inlineprotectedinherited

Definition at line 797 of file ManagedMonitorToolBase.h.

◆ evtStore()

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.

◆ 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

◆ fillEfficiencies()

void egammaMonToolBase::fillEfficiencies ( TH1 * h,
TH1 * href )
protectedinherited

Definition at line 258 of file egammaMonToolBase.cxx.

259{
260 int nbins = h->GetNbinsX();
261 if(href->GetNbinsX()!=nbins) {
262 ATH_MSG_WARNING("egammaMonToolBase::FillEfficiencies(): histograms have different number of bins, can not divide!");
263 return;
264 }
265
266 ATH_MSG_DEBUG("egammaMonToolBase::FillEfficiencies(): start new computation");
267
268 for(int i=1;i<nbins+1;++i){
269 double eps = 0.;
270 double err = 0.;
271 double Yref = href->GetBinContent(i);
272 if(Yref>0) {
273 double A = h->GetBinContent(i);
274 eps = A/Yref;
275 err = sqrt(eps*(1-eps)/Yref);
276
277 // convert to percent
278 eps *= 100.;
279 err *= 100.;
280
281 }
282
283 h->SetBinContent(i,eps);
284 h->SetBinError(i,err);
285 }
286 }
#define ATH_MSG_WARNING(x)

◆ fillElectronProbe()

void ZeeTaPMonTool::fillElectronProbe ( const xAOD::Electron * el,
bool isTight,
bool isIso,
double mass )
private

Definition at line 302 of file ZeeTaPMonTool.cxx.

303{
304
305 float et = el->pt();
306 float eta = el->eta();
307 float phi = el->phi();
308
309 int ir = GetRegion(eta);
310 if (m_hEt) m_hEt->Fill(et);
311 if (m_hEtaPhi) m_hEtaPhi->Fill(eta,phi);
312 if (m_hEta) {
313 m_hEta->Fill(eta);
314 }
315 else {
316 ATH_MSG_DEBUG("ERRORBL eta histo not filled !!!!");
317 }
318
319 if (m_hPhi) m_hPhi->Fill(phi);
321 if (m_hMass) m_hMass->Fill(mass);
322
323 if (isTight) {
324 if (m_hIDEt) m_hIDEt->Fill(et);
325 if (m_hIDEta) m_hIDEta->Fill(eta);
326 if (m_hIDPhi) m_hIDPhi->Fill(phi);
327 if (m_effhIDEt) m_effhIDEt->Fill(et,1.);
328 if (m_effhIDEta) m_effhIDEta->Fill(eta,1.);
329 if (m_effhIDPhi) m_effhIDPhi->Fill(phi,1.);
330 } else {
331 if (m_effhIDEt) m_effhIDEt->Fill(et,0.);
332 if (m_effhIDEta) m_effhIDEta->Fill(eta,0.);
333 if (m_effhIDPhi) m_effhIDPhi->Fill(phi,0.);
334 }
335
336 if (isTight && isIso) {
337 if (m_hISOEt) m_hISOEt->Fill(et);
338 if (m_hISOEta) m_hISOEta->Fill(eta);
339 if (m_hISOPhi) m_hISOPhi->Fill(phi);
340 if (m_effhISOEt) m_effhISOEt->Fill(et,1.);
341 if (m_effhISOEta) m_effhISOEta->Fill(eta,1.);
342 if (m_effhISOPhi) m_effhISOPhi->Fill(phi,1.);
343 } else {
344 if (m_effhISOEt) m_effhISOEt->Fill(et,0.);
345 if (m_effhISOEta) m_effhISOEta->Fill(eta,0.);
346 if (m_effhISOPhi) m_effhISOPhi->Fill(phi,0.);
347 }
348
349 // Cluster track match details
350 float deltaEta1 = -999.0;
351 if( el->trackCaloMatchValue(deltaEta1, xAOD::EgammaParameters::deltaEta1) ) {
353 }
354 float deltaPhi2 = -999.0;
355 if( el->trackCaloMatchValue(deltaPhi2, xAOD::EgammaParameters::deltaPhi2) ) {
357 }
358
359 // Shower shape variable details
360 float ehad1 = 0.0;
361 float ecore = 0.0;
362 float f1 = 0.0;
363 float f3 = 0.0;
364 float e233 = 0.0;
365 float e237 = 0.0;
366 float e277 = 0.0;
367 if( el->showerShapeValue(ehad1, xAOD::EgammaParameters::ehad1) ) {
369 }
370 if( el->showerShapeValue(ecore, xAOD::EgammaParameters::ecore) ) {
372 }
373 if( el->showerShapeValue(f1, xAOD::EgammaParameters::f1) ) {
375 }
376 if( el->showerShapeValue(f3, xAOD::EgammaParameters::f3) ) {
378 }
379 if( el->showerShapeValue(e237, xAOD::EgammaParameters::e237) ) {
380 float Re233e237 = 0.0;
381 if( e237!=0 && el->showerShapeValue(e233, xAOD::EgammaParameters::e233) ) {
382 Re233e237 = e233 / e237;
383 }
385 float Re237e277 = 0.0;
386 if( e237!=0 && el->showerShapeValue(e277, xAOD::EgammaParameters::e277) ) {
387 if(e277!=0) Re237e277 = e237 / e277;
388 }
390 }
391
392 // Isolation Energy
393 float topoetcone40;
394 if( el->isolationValue(topoetcone40,xAOD::Iso::topoetcone40)) {
395 fillTH1FperRegion(m_hvCaloIso,ir,topoetcone40);
396 }
397 float ptcone20;
398 if( el->isolationValue(ptcone20,xAOD::Iso::ptcone20)) {
400 }
401
402 // Associated track details
403 const xAOD::TrackParticle *t = el->trackParticle();
404 double trackp = 0;
405 unsigned char numberOfInnermostPixelLayerHits=-1;
406 unsigned char numberOfPixelHits=-1;
407 unsigned char numberOfSCTHits=-1;
408 unsigned char numberOfTRTHits=-1;
409 if(t) {
410 trackp = t->pt()*cosh(t->eta());
411 // retrieve track summary information
412 if( t->summaryValue(numberOfInnermostPixelLayerHits,xAOD::numberOfInnermostPixelLayerHits) ) {
413 fillTH1FperRegion(m_hvNOfBLayerHits,ir,numberOfInnermostPixelLayerHits);
414 }
415 if( t->summaryValue(numberOfPixelHits,xAOD::numberOfPixelHits) && t->summaryValue(numberOfSCTHits,xAOD::numberOfSCTHits) ) {
416 fillTH1FperRegion(m_hvNOfSiHits,ir,numberOfPixelHits+numberOfSCTHits);
417 }
418 if( t->summaryValue(numberOfTRTHits,xAOD::numberOfTRTHits) ) {
419 fillTH1FperRegion(m_hvNOfTRTHits,ir,numberOfTRTHits);
420 }
421 } else ATH_MSG_DEBUG( "Error attempting to retrieve associated track");
422
423 // Associated cluster details
424 const xAOD::CaloCluster *aCluster = el->caloCluster();
425 if (aCluster) {
426 float ep = 0;
427 if(trackp !=0) ep = aCluster->e()/trackp;
429 double ec = aCluster->et()*cosh(aCluster->eta());
430 float f2 = 0.0;
431 if(ec!=0) f2 = aCluster->energyBE(2)/ec;
433 } else ATH_MSG_WARNING( "Can't get CaloCluster" );
434}
Scalar eta() const
pseudorapidity method
Scalar phi() const
phi method
float et(const xAOD::jFexSRJetRoI *j)
static void fillTH1FperRegion(std::vector< TH1 * > &vhist, unsigned int ir, float x)
static int GetRegion(float eta)
virtual double eta() const
The pseudorapidity ( ) of the particle.
virtual double e() const
The total energy of the particle.
float energyBE(const unsigned layer) const
Get the energy in one layer of the EM Calo.
@ deltaPhi2
difference between the cluster phi (second sampling) and the phi of the track extrapolated to the sec...
@ deltaEta1
difference between the cluster eta (first sampling) and the eta of the track extrapolated to the firs...
@ e277
uncalibrated energy (sum of cells) of the middle sampling in a rectangle of size 7x7
Definition EgammaEnums.h:81
@ e237
uncalibrated energy (sum of cells) of the middle sampling in a rectangle of size 3x7
Definition EgammaEnums.h:78
@ f3
fraction of energy reconstructed in 3rd sampling
Definition EgammaEnums.h:55
@ ecore
core energy in em calo E(core) = E0(3x3) + E1(15x2) + E2(5x5) + E3(3x5)
@ f1
E1/E = fraction of energy reconstructed in the first sampling, where E1 is energy in all strips belon...
Definition EgammaEnums.h:53
@ ehad1
E leakage into 1st sampling of had calo (CaloSampling::HEC0 + CaloSampling::TileBar0 + CaloSampling::...
Definition EgammaEnums.h:49
@ e233
uncalibrated energy (sum of cells) of the middle sampling in a rectangle of size 3x3 (in cell units e...
Definition EgammaEnums.h:69
@ ptcone20
Track isolation.
CaloCluster_v1 CaloCluster
Define the latest version of the calorimeter cluster class.
TrackParticle_v1 TrackParticle
Reference the current persistent version:
@ numberOfTRTHits
number of TRT hits [unit8_t].
@ numberOfSCTHits
number of hits in SCT [unit8_t].
@ numberOfInnermostPixelLayerHits
these are the hits in the 0th pixel barrel layer
@ numberOfPixelHits
these are the pixel hits, including the b-layer [unit8_t].

◆ fillHistograms()

StatusCode ZeeTaPMonTool::fillHistograms ( )
overridevirtual

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

Reimplemented from egammaMonToolBase.

Definition at line 156 of file ZeeTaPMonTool.cxx.

157{
158 ATH_MSG_DEBUG("ZeeTaPMonTool::fillHistograms()");
159
160 if (!hasGoodTrigger("Zee T&P electron")) return StatusCode::SUCCESS;
161
162 const EventContext& ctx = Gaudi::Hive::currentContext();
163
164 //check whether Lar signaled event bad
165 if(hasBadLar(ctx)) {
166 ATH_MSG_DEBUG("ZeeTaPMonTool::hasBadLar()");
167 return StatusCode::RECOVERABLE;
168 }
169
170 //--------------------
171 //figure out current LB
172 //--------------------
173 unsigned int previousLB = m_currentLB;
175
176 //deal with the change of LB
177 if (m_currentLB>previousLB) {
178 // update the by LB variables
180 // Reset counters
182 }
183
184 // Get electron container
185 SG::ReadHandle<xAOD::ElectronContainer> electron_container{m_ElectronContainer};
186 ATH_CHECK(electron_container.isValid());
187
188 xAOD::ElectronContainer::const_iterator e_iter = electron_container->begin();
189 xAOD::ElectronContainer::const_iterator e_end = electron_container->end();
190 ATH_MSG_DEBUG("Number of electrons: " << electron_container->size());
191
192 int ngood_el = 0;
193 float lead_et=-999;
194 float subl_et=-999;
195 const xAOD::Electron *lead_el = nullptr;
196 const xAOD::Electron *subl_el = nullptr;
197
198 for (; e_iter!=e_end; ++e_iter) {
199
200 if(!(*e_iter)) continue;
201 // Formally unnecessary because all electrons in the container have these authors by construction
202 if (!((*e_iter)->author(xAOD::EgammaParameters::AuthorElectron)|| (*e_iter)->author(xAOD::EgammaParameters::AuthorAmbiguous))) continue;
203
204 // Ask these electrons to be LHLoose
205 bool isGood=false;
206
207 bool passed = (*e_iter)->passSelection(isGood,"LHLoose");
208 if( passed || !isGood ) ATH_MSG_DEBUG("not a good LHLoose electron candidate found in TDS");
209
210 // LHMedium
211 // sc = (*e_iter)->passSelection(isGood,"LHMedium");
212 // if(sc.isFailure() || !isGood ) ATH_MSG_DEBUG("not a good LHMedium electron candidate found in TDS");
213
214 // LHTight
215 // sc = (*e_iter)->passSelection(isGood,"LHTight");
216 // if(sc.isFailure() || !isGood ) ATH_MSG_DEBUG("not a good electron candidate found in TDS");
217
218 if(isGood) {
219 ++ngood_el;
220 // Look for two electrons
221 float et = (*e_iter)->pt();
222 if(et>lead_et) {
223 subl_et = lead_et;
224 subl_el = lead_el;
225 lead_et = et;
226 lead_el = *e_iter;
227 } else if(et>subl_et) {
228 subl_et = et;
229 subl_el = *e_iter;
230 }
231 }
232 }
233
234
235 // Fill number of electrons histograms
236 if (m_hN) m_hN->Fill(ngood_el);
237
238 // request at least two electrons
239
240 if (ngood_el<2) return StatusCode::SUCCESS;
241
242 // Et cuts
243 if(lead_et<m_ElectronEtCut || lead_et<0) return StatusCode::SUCCESS;
244 if(subl_et<m_ElectronEtCut || subl_et<0) return StatusCode::SUCCESS;
245
246 // Mass window
247 float mass = (lead_el->p4()+subl_el->p4()).M();
248 ATH_MSG_DEBUG("Zee mass & cuts: (" << mass << ", " << m_MassLowerCut << ", " << m_MassUpperCut << ")");
249 if(mass<m_MassLowerCut || mass>m_MassUpperCut) return StatusCode::SUCCESS;
250
251 // Basic kinematics
252 float lead_eta = lead_el->eta();
253 float lead_phi = lead_el->phi();
254 float subl_eta = subl_el->eta();
255 float subl_phi = subl_el->phi();
256 ATH_MSG_DEBUG("Leading electron (eta,phi,et,q): (" << lead_eta << ", " << lead_phi << ", " << lead_et << ", " << lead_el->charge() << ")");
257 ATH_MSG_DEBUG("Subleading electron (eta,phi,et,q): (" << subl_eta << ", " << subl_phi << ", " << subl_et << ", " << subl_el->charge() << ")");
258
259 // Eta cuts
260 if(fabs(lead_eta)>2.47 || fabs(subl_eta)>2.47) return StatusCode::SUCCESS;
261
262 // Check charges
263 if (lead_el->charge()*subl_el->charge()>=0) return StatusCode::SUCCESS;
264
265 bool lead_isLHTight = false;
266 if ( !lead_el->passSelection(lead_isLHTight,"LHTight") ) return StatusCode::FAILURE;
267
268 bool subl_isLHTight = false;
269 if ( !subl_el->passSelection(subl_isLHTight,"LHTight") ) return StatusCode::FAILURE;
270
271 bool EventZcandidateUsed = false;
272
273 // If leading electron is LHTight use subleading as probe
274 if(lead_isLHTight) {
275 m_hNZcandidates->Fill(lead_eta);
276 EventZcandidateUsed = true;
277 // Isolation Energy
278 float topoetcone40;
279 bool subl_isIsolated = false;
280 if ( !subl_el->isolationValue(topoetcone40,xAOD::Iso::topoetcone40) ) return StatusCode::FAILURE;
281 if ( topoetcone40 < 4.5*GeV ) subl_isIsolated = true;
282 fillElectronProbe(subl_el, subl_isLHTight, subl_isIsolated, mass);
283 }
284
285 // If subleading electron is LHTight use leading as probe
286 if(subl_isLHTight) {
287 if (!EventZcandidateUsed) m_hNZcandidates->Fill(subl_eta);
288 // Isolation Energy
289 float topoetcone40;
290 bool lead_isIsolated = false;
291 if ( !lead_el->isolationValue(topoetcone40,xAOD::Iso::topoetcone40) ) return StatusCode::FAILURE;
292 if ( topoetcone40 < 4.5*GeV ) lead_isIsolated = true;
293 fillElectronProbe(lead_el, lead_isLHTight, lead_isIsolated, mass);
294 }
295
296 // Fill number of Z found in the LB
297 if (m_hLB_N) m_hLB_N->Fill(m_currentLB);
298
299 return StatusCode::SUCCESS;
300}
#define ATH_CHECK
Evaluate an expression and check for errors.
bool passed(DecisionID id, const DecisionIDContainer &)
checks if required decision ID is in the set of IDs in the container
DataModel_detail::const_iterator< DataVector > const_iterator
Definition DataVector.h:838
virtual bool isValid() override final
Can the handle be successfully dereferenced?
std::vector< int > m_nZCandidatesPerLumiBlock
void fillElectronProbe(const xAOD::Electron *el, bool isTight, bool isIso, double mass)
SG::ReadHandleKey< xAOD::ElectronContainer > m_ElectronContainer
unsigned int getCurrentLB(const EventContext &ctx)
bool hasBadLar(const EventContext &ctx)
bool hasGoodTrigger(const std::string &comment)
virtual double eta() const override final
The pseudorapidity ( ) of the particle.
Definition Egamma_v1.cxx:71
bool passSelection(bool &value, const std::string &menu) const
Check if the egamma object pass a selection menu (using the name) If the menu decision is stored in t...
bool isolationValue(float &value, const Iso::IsolationType information) const
old Accessor for Isolation values.
Definition Egamma_v1.h:251
virtual FourMom_t p4() const override final
The full 4-momentum of the particle as a TLoretzVector.
Definition Egamma_v1.cxx:94
virtual double phi() const override final
The azimuthal angle ( ) of the particle.
Definition Egamma_v1.cxx:76
float charge() const
Obtain the charge of the object.
const uint16_t AuthorElectron
Object Reconstructed by standard cluster-based algorithm.
Definition EgammaDefs.h:24
const uint16_t AuthorAmbiguous
Object Reconstructed by standard cluster-based algorithm.
Definition EgammaDefs.h:32
Electron_v1 Electron
Definition of the current "egamma version".

◆ 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 TileDigitsMonTool, and TileRawChannelMonTool.

Definition at line 739 of file ManagedMonitorToolBase.cxx.

741{
742
743 if (m_d->m_warnAboutMissingInitialize) {
744 m_d->m_warnAboutMissingInitialize = false;
745 msg(MSG::WARNING) << "ManagedMonitorToolBase::initialize() never called from reimplementation!" << endmsg;
746 }
747
748
749 bool isNewEventsBlock = ( m_procNEventsProp > 0 && ((m_nEvents % m_procNEventsProp) == 1) && m_haveClearedLastEventBlock );
750 if (isNewEventsBlock) m_haveClearedLastEventBlock = false;
751
752 m_newLowStat = false;
753 m_newLumiBlock = false;
754 m_newRun = false;
755 newLowStat = false;
756 newLumiBlock = false;
757 newRun = false;
758
759 m_newLowStatInterval = false;
760 m_newMedStatInterval = false;
761 m_newHigStatInterval = false;
762 newLowStatInterval = false;
763 newMedStatInterval = false;
764 newHigStatInterval = false;
765
766 m_useTrigger = ( (m_triggerChainProp != "" || m_triggerGroupProp != "") && (!m_trigDecTool.empty()) );
767
768 if( m_manager != 0 ) {
769 m_newLumiBlock = ( (m_lastLumiBlock != m_manager->lumiBlockNumber()) || m_manager->forkedProcess());
770 m_newRun = ( m_lastRun != m_manager->runNumber() );
771 newLumiBlock = m_newLumiBlock;
772 newRun = m_newRun;
773
774 if(m_newRun) {
775 m_newLumiBlock = true;
776 newLumiBlock = m_newLumiBlock;
777 isNewEventsBlock = true;
778 }
779
780 m_newEventsBlock = isNewEventsBlock;
781 newEventsBlock = m_newEventsBlock;
782
783 if( m_newLumiBlock ) {
784 // check if a new LB interval has started
785 // lowest lumiBlockNumber() is 1
786 // m_lastLowStatInterval is -1 initially
787 int currentLB = m_manager->lumiBlockNumber();
788 int LBsLowStat = m_manager->getLBsLowStat();
789 int LBsMedStat = m_manager->getLBsMedStat();
790 int LBsHigStat = m_manager->getLBsHigStat();
791
792 if( LBsLowStat*LBsMedStat*LBsHigStat == 0) {
793 msg(MSG::WARNING) << "zero LBs requested for interval" << endmsg;
794 }
795 else {
796 if( ((currentLB-1)/LBsLowStat) != m_lastLowStatInterval ) m_newLowStatInterval = true;
797 if( ((currentLB-1)/LBsMedStat) != m_lastMedStatInterval ) m_newMedStatInterval = true;
798 if( ((currentLB-1)/LBsHigStat) != m_lastHigStatInterval ) m_newHigStatInterval = true;
799 newLowStatInterval = m_newLowStatInterval;
800 newMedStatInterval = m_newHigStatInterval;
801 newHigStatInterval = m_newHigStatInterval;
802 }
803 }
804
805 // Allow inheriting classes the option of using the lastLumiBloc/lastRun values
806 // before updating them
807 }
808
809
810 StatusCode sc0( StatusCode::SUCCESS );
811 StatusCode sc1( StatusCode::SUCCESS );
812 StatusCode sc2( StatusCode::SUCCESS );
813 StatusCode sc3( StatusCode::SUCCESS );
814
815 // Set end of LowStat, LumiBlock and Run variables
816 // These are needed to be used in procHistograms().
821 endOfEventsBlock = m_newEventsBlock;
822 endOfLowStat = m_newLowStatInterval;
823 endOfLumiBlock = m_newLumiBlock;
825
826 // just duplicates m_newLowStatInterval
828 newLowStat = m_newLowStatInterval;
829
831 ATH_MSG_DEBUG("Interval transition processing");
832 // Process histograms from the previous lumiBlock/run
833 if( m_nEvents != 1 ) {
834 m_d->benchPreProcHistograms();
835 sc0 = procHistograms();
836 m_d->benchPostProcHistograms();
837 }
838 // Re-book new histograms
839 m_d->benchPreBookHistograms();
840
842 sc1 = bookHistograms();
844 } else {
845 std::vector<Interval_t> intervals_to_process;
846 if (m_newEventsBlock) intervals_to_process.push_back(eventsBlock);
847 if (m_newLumiBlock) intervals_to_process.push_back(lumiBlock);
848 if (m_newLowStatInterval) intervals_to_process.push_back(lowStat);
849 if (m_newRun) intervals_to_process.push_back(run);
850 for (const auto interval: intervals_to_process) {
852 sc1 = regManagedGraphs(m_templateGraphs[interval]);
853 sc1 = regManagedTrees(m_templateTrees[interval]);
854 }
855 }
856 for (const auto& interval: std::vector<Interval_t>{ eventsBlock, lumiBlock, lowStat, run }) {
857 for (const auto& it: m_templateHistograms[interval]) {
858 // is histogram too small in x axis for LB range?
859 if (it.m_group.histo_mgmt() == ATTRIB_X_VS_LB) {
860 //ATH_MSG_WARNING("We are rebinning for " << it.m_templateHist->GetName());
861 while ( it.m_templateHist->GetXaxis()->GetXmax() <= AthenaMonManager::lumiBlockNumber() ) {
862 it.m_templateHist->LabelsInflate("X");
863 }
864 }
865 }
866 for (auto& it: m_templateEfficiencies[interval]) {
867 if (it.m_group.histo_mgmt() == ATTRIB_X_VS_LB) {
868 // get the underlying passed and total TH1's from the TEfficiency
869 TH1* passedHist = it.m_templateHist->GetCopyPassedHisto();
870 TH1* totalHist = it.m_templateHist->GetCopyTotalHisto();
871 // inflate them until they exceed the lumi-block number
872 while (passedHist->GetXaxis()->GetXmax() <= AthenaMonManager::lumiBlockNumber() ) {
873 passedHist->LabelsInflate("X");
874 totalHist->LabelsInflate("X");
875 }
876 // Replace them in the TEfficiency. First one has force ("f") option, since the
877 // histograms will not be consistent. This is corrected in the next line, so we
878 // do check for consistency then.
879 it.m_templateHist->SetPassedHistogram(*passedHist, "f");
880 it.m_templateHist->SetTotalHistogram(*totalHist, " ");
881 delete passedHist; // not owned by THistSvc, so need to be deleted.
882 delete totalHist;
883 }
884 }
885 }
886
887 if (auto streamname = dynamic_cast<OfflineStream*>(streamNameFunction())) {
888 streamname->updateRunLB();
889 }
890
892
893 m_d->benchPostBookHistograms();
894
895 }//end if new RUN/LB/Block
896
897 // check filters
898 bool filterresult(true);
899 if (! m_DQFilterTools.empty()) {
900 ToolHandleArray<IDQFilterTool>::const_iterator ifilter(m_DQFilterTools.begin()), filterend(m_DQFilterTools.end());
901 for (; filterresult && (ifilter != filterend);
902 ++ifilter) {
903 filterresult = (filterresult && (*ifilter)->accept());
904 }
905 }
906
907
908 // ...and fill as normal
909 if(filterresult &&
913 ATH_MSG_DEBUG("Passed trigger, presumably");
914 m_d->benchPreFillHistograms();
915 fillHistograms().ignore();
917 m_d->benchPostFillHistograms();
918 ++m_nEvents;
919 } else { ATH_MSG_DEBUG("Failed trigger, presumably"); }
920
922 if( m_newLumiBlock && (m_nEventsIgnoreTrigger != 1) ) {
924 }
925 if( m_manager != 0 ) {
926 m_lastRun = m_manager->runNumber();
927 if( m_newLumiBlock ) {
928 m_lastLumiBlock = m_manager->lumiBlockNumber();
929
930 int LBsLowStat = m_manager->getLBsLowStat();
931 int LBsMedStat = m_manager->getLBsMedStat();
932 int LBsHigStat = m_manager->getLBsHigStat();
933 if( LBsLowStat*LBsMedStat*LBsHigStat > 0) {
937 }
938 }
939 }
940
941 return StatusCode::SUCCESS;
942}
#define endmsg
MsgStream & msg() const
static unsigned int lumiBlockNumber()
StatusCode regManagedTrees(std::vector< MgmtParams< TTree > > &templateTrees)
ToolHandleArray< IDQFilterTool > m_DQFilterTools
virtual StatusCode bookHistogramsRecurrent()
An inheriting class should either override this function, bookHists() or bookHistograms().
std::vector< std::string > m_vTrigGroupNames
std::map< Interval_t, std::vector< MgmtParams< TH1 > > > m_templateHistograms
virtual StatusCode fillHistograms()
An inheriting class should either override this function or fillHists().
PublicToolHandle< Trig::ITrigDecisionTool > m_trigDecTool
StatusCode regManagedGraphs(std::vector< MgmtParams< TGraph > > &templateGraphs)
std::map< Interval_t, std::vector< MgmtParams< TGraph > > > m_templateGraphs
virtual StatusCode bookHistograms()
An inheriting class should either override this function or bookHists().
std::vector< std::string > m_vTrigChainNames
std::map< Interval_t, std::vector< MgmtParams< TTree > > > m_templateTrees
std::map< Interval_t, std::vector< MgmtParams< TEfficiency > > > m_templateEfficiencies
virtual StatusCode procHistograms()
An inheriting class should either override this function or finalHists().
StatusCode regManagedHistograms(std::vector< MgmtParams< TH1 > > &templateHistograms)
virtual bool trigChainsArePassed(std::vector< std::string > &)
::StatusCode StatusCode
StatusCode definition for legacy code.

◆ fillTH1FperRegion()

void egammaMonToolBase::fillTH1FperRegion ( std::vector< TH1 * > & vhist,
unsigned int ir,
float x )
staticprotectedinherited

Definition at line 178 of file egammaMonToolBase.cxx.

179{
180 unsigned int size = vhist.size();
181 if(ir>=size) return;
182 TH1 *h = vhist[ir];
183 if(h) h->Fill(x);
184 }
#define x

◆ fillTH2FperRegion()

void egammaMonToolBase::fillTH2FperRegion ( std::vector< TH2 * > & vhist,
unsigned int ir,
float x,
float y )
staticprotectedinherited

Definition at line 186 of file egammaMonToolBase.cxx.

187{
188 unsigned int size = vhist.size();
189 if(ir>=size) return;
190 TH2 *h = vhist[ir];
191 if(h) h->Fill(x,y);
192}
#define y

◆ finalHists()

StatusCode ManagedMonitorToolBase::finalHists ( )
virtualinherited

Calls procHists( true, true, true ).

Implements IMonitorToolBase.

Reimplemented in TileCellNoiseMonTool, TileDigitsMonTool, and TileRawChannelMonTool.

Definition at line 1254 of file ManagedMonitorToolBase.cxx.

1256{
1257
1258 // This assumes that the end of a file will naturally end a run, which is not always true.
1259 // A merging application run afterwards should be able to put parts of a run together.
1260 if( m_nEvents != 1 ) {
1261 m_d->benchPreProcHistograms();
1262
1263 // Set end flags for the LowStat, LumiBlock and Run variables.
1264 // This is needed to be used in the procHistograms method below.
1265 m_endOfEventsBlock = true;
1266 m_endOfLowStat = true;
1267 m_endOfLumiBlock = true;
1268 m_endOfRun = true;
1269 endOfEventsBlock = true;
1270 endOfLowStat = true;
1271 endOfLumiBlock = true;
1272 endOfRun = true;
1273
1275
1276 m_d->benchPostProcHistograms();
1277 return sc;
1278 }
1279 return StatusCode::SUCCESS;
1280}
static Double_t sc

◆ get_nEvents()

unsigned int ManagedMonitorToolBase::get_nEvents ( ) const
inlineprotectedinherited

Definition at line 692 of file ManagedMonitorToolBase.h.

692 {
693 return m_nEvents;
694 }

◆ get_procNEventsProp()

long ManagedMonitorToolBase::get_procNEventsProp ( ) const
inlineprotectedinherited

Definition at line 696 of file ManagedMonitorToolBase.h.

696 {
697 return m_procNEventsProp;
698 }

◆ getCurrentLB()

unsigned int egammaMonToolBase::getCurrentLB ( const EventContext & ctx)
protectedinherited

Definition at line 82 of file egammaMonToolBase.cxx.

83{
84 SG::ReadHandle<xAOD::EventInfo> evtInfo{m_EventInfoKey, ctx};
85 if (evtInfo.isValid()) {
86 return evtInfo->lumiBlock();
87 }
88 ATH_MSG_ERROR("couldn't retrieve event info");
89 return -1;
90
91}
#define ATH_MSG_ERROR(x)
SG::ReadHandleKey< xAOD::EventInfo > m_EventInfoKey

◆ GetForwardRegion()

int egammaMonToolBase::GetForwardRegion ( float eta)
staticprotectedinherited

Definition at line 194 of file egammaMonToolBase.cxx.

195{
196 float aeta = fabs(eta);
197 if( aeta < 3.2 ) return ENDCAP;
198 return FORWARD;
199}

◆ getHist() [1/4]

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 1417 of file ManagedMonitorToolBase.cxx.

1419{
1420 std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1421 return m_THistSvc->getHist( streamName, h );
1422}

◆ getHist() [2/4]

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 1407 of file ManagedMonitorToolBase.cxx.

1410{
1411 MonGroup group( this, system, interval );
1412 return getHist( h, hName, group );
1413}
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.

◆ getHist() [3/4]

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 1436 of file ManagedMonitorToolBase.cxx.

1438{
1439 std::string streamName = streamNameFunction()->getStreamName( this, group, hName );
1440 return m_THistSvc->getHist( streamName, h );
1441}

◆ getHist() [4/4]

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 1426 of file ManagedMonitorToolBase.cxx.

1429{
1430 MonGroup group( this, system, interval );
1431 return getHist( h, hName, group );
1432}

◆ getNewStreamNameFcn()

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

Definition at line 2155 of file ManagedMonitorToolBase.cxx.

2157{
2158 StreamNameFcn* fcn(0);
2159
2160 switch( m_environment ) {
2162 fcn = new NoOutputStream();
2163 break;
2165 fcn = new OnlineStream();
2166 break;
2168 fcn = new DefaultStream( m_fileKey );
2169 break;
2175 default:
2177 }
2178
2179 return fcn;
2180}
A function-object base class allowing the specific implementation of getStreamName to be decided at r...
AthenaMonManager::Environment_t m_environment
AthenaMonManager::DataType_t m_dataType

◆ GetRegion()

int egammaMonToolBase::GetRegion ( float eta)
staticprotectedinherited

Definition at line 201 of file egammaMonToolBase.cxx.

202{
203 float aeta = fabs(eta);
204 // check if object is in barrel
205 if( aeta < 1.37 ) return BARREL;
206 // check if object is in end-caps
207 if( aeta > 1.52) /* && aeta < 2.47 ) */ return ENDCAP;
208 // check if object is in crack region
209 //if( aeta > 1.37 && aeta < 1.52 )
210 return CRACK;
211 // Forward region not checked here! See GetForwardRegion()
212}

◆ hasBadLar()

bool egammaMonToolBase::hasBadLar ( const EventContext & ctx)
protectedinherited

Definition at line 222 of file egammaMonToolBase.cxx.

223{
224 SG::ReadHandle<xAOD::EventInfo> eventInfo{m_EventInfoKey, ctx};
225 if (!eventInfo.isValid()) {
226 ATH_MSG_ERROR("Could not get LAr event info!");
227 return false;
228 }
229
230 xAOD::EventInfo::EventFlagErrorState error_state = eventInfo->errorState(xAOD::EventInfo::LAr);
231
232 // Only removing events with Error not with Warning
233 //if (error_state==xAOD::EventInfo::Warning)
234 // {
235 // ATH_MSG_DEBUG("LAr event noisy");
236 // return true;
237 // }
238
239 if (error_state==xAOD::EventInfo::Error)
240 {
241 ATH_MSG_DEBUG("LAr event data integrity error");
242 return true;
243 }
244
245 ATH_MSG_DEBUG("No LAr noise");
246 return false;
247}
@ LAr
The LAr calorimeter.
EventFlagErrorState
States that a given sub-detector could be in.
@ Error
The sub-detector issued an error.

◆ hasGoodTrigger()

bool egammaMonToolBase::hasGoodTrigger ( const std::string & comment)
protectedinherited

Definition at line 288 of file egammaMonToolBase.cxx.

288 {
289
290 if (!m_UseTrigger) {
291 ATH_MSG_DEBUG("No Trigger request for that monitoring tool");
292 return true; // return true if no trigger selection is expected
293 }
294
295 ATH_MSG_DEBUG( "Size of " << comment << " Trigger vector = "<< m_Trigger.size() );
296 bool triggerfound = false;
297 for (const auto & i : m_Trigger){
298 ATH_MSG_DEBUG(comment << " Trigger " << i << " for that event ?");
299 if (m_trigdec->isPassed(i))
300 {
301 triggerfound=true;
302 ATH_MSG_DEBUG(comment << " Trigger " << i << " found for that event");
303 }
304 }
305
306 if (!triggerfound) ATH_MSG_DEBUG("No " << comment << " Trigger found for that event");
307
308 // Alternative code if we need to get a list of avalaible triggers in the stream
309 if (!m_trigdec.retrieve().isFailure()){
310 const std::vector<std::string>& vec = m_trigdec->getListOfTriggers();
311 ATH_MSG_DEBUG( "Size of Trigger vector in xAOD file = "<< vec.size());
312 for (const auto & i : vec) {
313 if (m_trigdec->isPassed(i)) {
314 ATH_MSG_DEBUG("Active Trigger found : " << i );
315 }
316 // else {
317 // ATH_MSG_DEBUG("Passive Trigger found : " << vec[i] );
318 // }
319 }
320 }
321 else {
322 ATH_MSG_DEBUG("Trigger m_trigdec is null !!!");
323 }
324
325 // only fill histograms if the event has been correctly triggered or if no trigger is expected.
326 return triggerfound;
327}
std::vector< size_t > vec
std::vector< std::string > m_Trigger
ToolHandle< Trig::TrigDecisionTool > m_trigdec

◆ initialize()

StatusCode ZeeTaPMonTool::initialize ( )
overridevirtual

Reimplemented from egammaMonToolBase.

Definition at line 73 of file ZeeTaPMonTool.cxx.

74{
76 ATH_CHECK( m_ElectronContainer.initialize() );
77 return StatusCode::SUCCESS;
78}
virtual StatusCode initialize() override

◆ 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()

const InterfaceID & IMonitorToolBase::interfaceID ( )
inlinestaticinherited

Definition at line 29 of file IMonitorToolBase.h.

29{ return IID_IMonitorToolBase; }
static const InterfaceID IID_IMonitorToolBase("IMonitorToolBase", 1, 0)

◆ 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 535 of file ManagedMonitorToolBase.cxx.

537{
538 std::string str("file");
539
540 switch( interval ) {
541 case all:
542 str = "all";
543 break;
544 case fill:
545 str = "fill";
546 break;
547 case run:
548 str = "run";
549 break;
550 case lowStat:
551 str = "lowStat";
552 break;
553 case medStat:
554 str = "medStat";
555 break;
556 case higStat:
557 str = "higStat";
558 break;
559 case lumiBlock:
560 str = "lumiBlock";
561 break;
562 case eventsBlock:
563 str = "eventsBlock";
564 break;
565 case file:
566 str = "file";
567 break;
568 default:
569 str = "unknown";
570 }
571
572 return str;
573}

◆ intervalStringToEnum()

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

Converts a string to the corresponding Interval_t.

Definition at line 577 of file ManagedMonitorToolBase.cxx.

579{
580 std::string lcstr( strToLower(str) );
581
582 if( lcstr == "all" )
583 return all;
584 else if( lcstr == "fill" )
585 return fill;
586 else if( lcstr == "run" )
587 return run;
588 else if( lcstr == "lowStat" )
589 return lowStat;
590 else if( lcstr == "medStat" )
591 return medStat;
592 else if( lcstr == "higStat" )
593 return higStat;
594 else if( lcstr == "lumiBlock" )
595 return lumiBlock;
596 else if( lcstr == "eventsBlock" )
597 return eventsBlock;
598 else if( lcstr == "file" )
599 return file;
600
601 if( Imp::s_svcLocator ) {
602 SmartIF<IMessageSvc> ms{Imp::s_svcLocator.load()->service( "MessageSvc" )};
603 if( ms.isValid() ) {
604 MsgStream log( ms, "ManagedMonitorToolBase::intervalStringToEnum()" );
605 log << MSG::WARNING << "Unknown ManagedMonitorToolBase::Interval_t \""
606 << str << "\", returning \"file\"" << endmsg;
607 }
608 }
609
610 return file;
611}
static std::atomic< ISvcLocator * > s_svcLocator

◆ lbAverageInteractionsPerCrossing()

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

Average mu, i.e.

<mu>

Definition at line 1691 of file ManagedMonitorToolBase.cxx.

1693{
1694 if (!m_lumiDataKey.empty()) {
1695 SG::ReadCondHandle<LuminosityCondData> lumi (m_lumiDataKey, ctx);
1696 return lumi->lbAverageInteractionsPerCrossing();
1697 } else {
1698 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageInteractionsPerCrossing() can't work properly! ");
1699 ATH_MSG_DEBUG("Warning: lbAverageInteractionsPerCrossing() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1700 return -1.0;
1701 }
1702 // not reached
1703}
SG::ReadCondHandleKey< LuminosityCondData > m_lumiDataKey

◆ lbAverageLivefraction()

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

Average luminosity livefraction.

Definition at line 1760 of file ManagedMonitorToolBase.cxx.

1762{
1764 return 1.0;
1765
1766 if (!m_trigLiveFractionDataKey.empty()) {
1767 SG::ReadCondHandle<TrigLiveFractionCondData> live (m_trigLiveFractionDataKey, ctx);
1768 return live->lbAverageLiveFraction();
1769 } else {
1770 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageLivefraction() can't work properly! ");
1771 ATH_MSG_DEBUG("Warning: lbAverageLivefraction() - luminosity not availble (i.e. EnableLumi = False)");
1772 return -1.0;
1773 }
1774 // not reached
1775}
SG::ReadCondHandleKey< TrigLiveFractionCondData > m_trigLiveFractionDataKey

◆ 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 1727 of file ManagedMonitorToolBase.cxx.

1729{
1730 if (!m_lumiDataKey.empty()) {
1731 SG::ReadCondHandle<LuminosityCondData> lumi (m_lumiDataKey, ctx);
1732 return lumi->lbAverageLuminosity();
1733 } else {
1734 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbAverageLuminosity() can't work properly! ");
1735 ATH_MSG_DEBUG("Warning: lbAverageLuminosity() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1736 return -1.0;
1737 }
1738 // not reached
1739}

◆ lbDuration()

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

Luminosity block time (in seconds)

Definition at line 1814 of file ManagedMonitorToolBase.cxx.

1816{
1818 return m_defaultLBDuration;
1819 }
1820 if (!m_lbDurationDataKey.empty()) {
1821 SG::ReadCondHandle<LBDurationCondData> dur (m_lbDurationDataKey, ctx);
1822 return dur->lbDuration();
1823 } else {
1824 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbDuration() can't work properly! ");
1825 ATH_MSG_DEBUG("Warning: lbDuration() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1826 return m_defaultLBDuration;
1827 }
1828 // not reached
1829}
SG::ReadCondHandleKey< LBDurationCondData > m_lbDurationDataKey

◆ lbInteractionsPerCrossing()

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

Instantaneous number of interactions, i.e.

mu

Definition at line 1707 of file ManagedMonitorToolBase.cxx.

1709{
1710 if (!m_lumiDataKey.empty()) {
1711 SG::ReadCondHandle<LuminosityCondData> lumi (m_lumiDataKey, ctx);
1712 float muToLumi = lumi->muToLumi();
1713 if (muToLumi > 0) {
1714 return lumi->lbLuminosityPerBCIDVector().at (ctx.eventID().bunch_crossing_id()) / muToLumi;
1715 }
1716 return 0;
1717 } else {
1718 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbInteractionsPerCrossing() can't work properly! ");
1719 ATH_MSG_DEBUG("Warning: lbInteractionsPerCrossing() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1720 return -1.0;
1721 }
1722 // not reached
1723}

◆ lbLuminosityPerBCID()

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

Instantaneous luminosity.

Definition at line 1743 of file ManagedMonitorToolBase.cxx.

1745{
1746 if (!m_lumiDataKey.empty()) {
1747 SG::ReadCondHandle<LuminosityCondData> lumi (m_lumiDataKey, ctx);
1748 return lumi->lbLuminosityPerBCIDVector().at (ctx.eventID().bunch_crossing_id());
1749 } else {
1750 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbLuminosityPerBCID() can't work properly! ");
1751 ATH_MSG_DEBUG("Warning: lbLuminosityPerBCID() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1752 return -1.0;
1753 }
1754 // not reached
1755}

◆ lbLumiWeight()

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

Average Integrated Luminosity Live Fraction.

Definition at line 1798 of file ManagedMonitorToolBase.cxx.

1800{
1801 if (!m_lumiDataKey.empty()) {
1803 } else{
1804 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! lbLumiWeight() can't work properly! ");
1805 ATH_MSG_DEBUG("Warning: lbLumiWeight() - luminosity tools are not retrieved or turned on (i.e. EnableLumi = False)");
1806 return -1.0;
1807 }
1808 // not reached
1809}
virtual float lbAverageLivefraction(const EventContext &ctx=Gaudi::Hive::currentContext()) const
Average luminosity livefraction.
virtual float lbAverageLuminosity(const EventContext &ctx=Gaudi::Hive::currentContext()) const
Average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1)
virtual double lbDuration(const EventContext &ctx=Gaudi::Hive::currentContext()) const
Luminosity block time (in seconds)

◆ livefractionPerBCID()

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

Livefraction per bunch crossing ID.

Definition at line 1779 of file ManagedMonitorToolBase.cxx.

1781{
1783 return 1.0;
1784
1785 if (!m_trigLiveFractionDataKey.empty()) {
1786 SG::ReadCondHandle<TrigLiveFractionCondData> live (m_trigLiveFractionDataKey, ctx);
1787 return live->l1LiveFractionVector().at (ctx.eventID().bunch_crossing_id());
1788 } else {
1789 //ATH_MSG_FATAL("! Luminosity tool has been disabled ! livefractionPerBCID() can't work properly! ");
1790 ATH_MSG_DEBUG("Warning: livefractionPerBCID() - luminosity retrieved available (i.e. EnableLumi = False)");
1791 return -1.0;
1792 }
1793 // not reached
1794}

◆ 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()

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

Definition at line 24 of file AthCommonMsg.h.

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

◆ 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 793 of file ManagedMonitorToolBase.h.

793{ return m_newEventsBlock; }

◆ newHigStatIntervalFlag()

bool ManagedMonitorToolBase::newHigStatIntervalFlag ( ) const
inlineprotectedinherited

Definition at line 789 of file ManagedMonitorToolBase.h.

789{ return m_newHigStatInterval; }

◆ newLowStatFlag()

bool ManagedMonitorToolBase::newLowStatFlag ( ) const
inlineprotectedinherited

Definition at line 790 of file ManagedMonitorToolBase.h.

790{ 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 787 of file ManagedMonitorToolBase.h.

787{ return m_newLowStatInterval; }

◆ newLumiBlockFlag()

bool ManagedMonitorToolBase::newLumiBlockFlag ( ) const
inlineprotectedinherited

Definition at line 791 of file ManagedMonitorToolBase.h.

791{ return m_newLumiBlock; }

◆ newMedStatIntervalFlag()

bool ManagedMonitorToolBase::newMedStatIntervalFlag ( ) const
inlineprotectedinherited

Definition at line 788 of file ManagedMonitorToolBase.h.

788{ return m_newMedStatInterval; }

◆ newRunFlag()

bool ManagedMonitorToolBase::newRunFlag ( ) const
inlineprotectedinherited

Definition at line 792 of file ManagedMonitorToolBase.h.

792{ 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 2111 of file ManagedMonitorToolBase.cxx.

2112 {
2113 std::string item;
2114 std::stringstream ss(line);
2115
2116 if (msgLvl(MSG::DEBUG)) msg(MSG::DEBUG) << "ManagedMonitorToolBase::parseList:";
2117
2118 while ( std::getline(ss, item, ',') ) {
2119 std::stringstream iss(item); // remove
2120 iss >> item; // whitespace
2121 if (msgLvl(MSG::DEBUG)) msg(MSG::DEBUG) << " " << item;
2122 result.push_back(item);
2123 }
2124
2125 msg(MSG::DEBUG) << endmsg;
2126 return StatusCode::SUCCESS;
2127}
static Double_t ss
bool msgLvl(const MSG::Level lvl) const

◆ preSelector()

bool ManagedMonitorToolBase::preSelector ( )
virtualinherited

Implements IMonitorToolBase.

Definition at line 1679 of file ManagedMonitorToolBase.cxx.

1681{
1682 if( m_preScaleProp > 1 ) {
1683 return ( (m_nEvents % m_preScaleProp) == 1 );
1684 }
1685 return true;
1686}

◆ procHistograms()

StatusCode ZeeTaPMonTool::procHistograms ( )
overridevirtual

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

Reimplemented from egammaMonToolBase.

Definition at line 436 of file ZeeTaPMonTool.cxx.

437{
438 ATH_MSG_DEBUG("ZeeTaPMonTool::procHistograms()");
439 //normalize efficiencies
446
447 return StatusCode::SUCCESS;
448}
void fillEfficiencies(TH1 *h, TH1 *href)

◆ 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 1444 of file ManagedMonitorToolBase.cxx.

1444 {
1445 if (!e)
1446 return StatusCode::FAILURE;
1447
1448 TGraph* g = reinterpret_cast<TGraph*>(e);
1449 std::string name = e->GetName();
1450
1451 // MANAGED
1452 if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1453 // warn about not using merge algorithms
1454 if (group.histo_mgmt() == ATTRIB_X_VS_LB && group.merge().empty()) {
1455 ATH_MSG_WARNING("HEY! Attempting to register "<<name<<" as a per-LB histogram, but not setting the merge algorithm! Use \"merge\", at least.");
1456 }
1457 // add the efficiency to rebooking vector
1458 if (m_supportedIntervalsForRebooking.count(group.interval())) {
1459 m_templateEfficiencies[group.interval()].push_back( MgmtParams<TEfficiency>(e, group) );
1460 } else {
1461 ATH_MSG_ERROR("Attempt to book managed graph " << name << " with invalid interval type " << intervalEnumToString(group.interval()));
1462 return StatusCode::FAILURE;
1463 }
1464
1465 MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1466 std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1467 registerMetadata(streamName, name, group).ignore();
1468 return m_THistSvc->regGraph( streamName, g );
1469 } else {
1470 // UNMANAGED
1471 if( m_manager != 0 ) {
1472 std::string genericName = NoOutputStream().getStreamName( this, group, name );
1473 m_manager->writeAndDelete( genericName );
1474 m_manager->passOwnership( e, genericName );
1475 }
1476
1477 std::string streamName = streamNameFunction()->getStreamName( this, group, name, false );
1478 StatusCode smd = registerMetadata(streamName, name, group);
1479 if (smd != StatusCode::SUCCESS)
1480 return StatusCode::FAILURE;
1481
1482 return m_THistSvc->regGraph( streamName, g );
1483 }
1484}
virtual std::string getStreamName(const ManagedMonitorToolBase *tool, const MonGroup &group, const std::string &objName, bool usePreviousInterval=false)
A function that converts a MonGroup of logical parameters into a physical output stream name.
std::set< Interval_t > m_supportedIntervalsForRebooking
StatusCode registerMetadata(const std::string &streamName, const std::string &hName, const MonGroup &group)
static std::string intervalEnumToString(Interval_t interval)
Converts a LevelOfDetail_t to a string of the same name.

◆ 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.

Reimplemented in TilePaterMonTool.

Definition at line 1498 of file ManagedMonitorToolBase.cxx.

1500{
1501 if (!g)
1502 return StatusCode::FAILURE;
1503
1504 // This part of the code deals with MANAGED type
1505 if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1506 // Create an unmanaged group based on the original MonGroup instance passed
1507 // This is needed because managed graph is presented as a number of unmanaged
1508 // graphs (one per each interval)
1509 MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1510
1511 if (m_supportedIntervalsForRebooking.count(group.interval())) {
1512 m_templateGraphs[group.interval()].push_back( MgmtParams<TGraph>(g, group_unmanaged) );
1513 } else {
1514 ATH_MSG_ERROR("Attempt to book managed graph " << g->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1515 return StatusCode::FAILURE;
1516 }
1517
1518 std::string name = g->GetName();
1519 std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1520 registerMetadata(streamName, name, group).ignore();
1521 return m_THistSvc->regGraph( streamName, g );
1522 //return m_THistSvc->regGraph( streamName );
1523 }
1524
1525 // This part of the code deals with UNMANAGED type
1526 std::string gName = g->GetName();
1527
1528 if( m_manager != 0 ) {
1529 std::string genericName = NoOutputStream().getStreamName( this, group, gName );
1530 m_manager->writeAndDelete( genericName );
1531 m_manager->passOwnership( g, genericName );
1532 }
1533
1534 std::string streamName = streamNameFunction()->getStreamName( this, group, gName, false );
1535
1536 StatusCode smd = registerMetadata(streamName, gName, group);
1537 if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1538
1539 return m_THistSvc->regGraph( streamName, g );
1540}

◆ 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.

Reimplemented in TilePaterMonTool.

Definition at line 1488 of file ManagedMonitorToolBase.cxx.

1491{
1492 MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1493 return regGraph( g, group );
1494}
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 gra...

◆ regHist() [1/2]

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.

Reimplemented in TilePaterMonTool.

Definition at line 1352 of file ManagedMonitorToolBase.cxx.

1354{
1355// ManagedMonitorToolBase_addHistStatistics(this,h);
1356
1357 if (!h)
1358 return StatusCode::FAILURE;
1359
1360 // This part of the code deals with MANAGED type
1361 if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1362 /*
1363 Create an unmanaged group based on the original MonGroup instance passed
1364 It is needed because managed histogram is presented as a number of unmanaged
1365 histograms (one per each interval)
1366 Update (PUEO) - I don't think it actually matters, and need to keep
1367 track of "proper" attribute for X_VS_LB
1368 */
1369
1370 if (group.histo_mgmt() == ATTRIB_X_VS_LB && group.merge().empty()) {
1371 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.");
1372 }
1373
1374 if (m_supportedIntervalsForRebooking.count(group.interval())) {
1375 m_templateHistograms[group.interval()].push_back( MgmtParams<TH1>(h, group) );
1376 } else {
1377 ATH_MSG_ERROR("Attempt to book managed histogram " << h->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1378 return StatusCode::FAILURE;
1379 }
1380
1381 std::string hName = h->GetName();
1382 MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1383 std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, hName, false );
1384 registerMetadata(streamName, hName, group).ignore();
1385 return m_THistSvc->regHist( streamName, h );
1386 }
1387
1388 // This part of the code deals with UNMANAGED type
1389 std::string hName = h->GetName();
1390
1391 if( m_manager != 0 ) {
1392 std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1393 m_manager->writeAndDelete( genericName );
1394 m_manager->passOwnership( h, genericName );
1395 }
1396
1397 std::string streamName = streamNameFunction()->getStreamName( this, group, hName, false );
1398
1399 StatusCode smd = registerMetadata(streamName, hName, group);
1400 if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1401
1402 return m_THistSvc->regHist( streamName, h );
1403}

◆ regHist() [2/2]

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.

Reimplemented in TilePaterMonTool.

Definition at line 1343 of file ManagedMonitorToolBase.cxx.

1346{
1347 MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1348 return regHist( h, group );
1349}

◆ registerMetadata()

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

Definition at line 945 of file ManagedMonitorToolBase.cxx.

947 {
949 TTree* metadata(0);
950 std::string mdStreamName( streamName );
951 size_t found=mdStreamName.rfind('/');
952
953 if ( found != std::string::npos )
954 mdStreamName.replace( found, mdStreamName.length(), "/metadata" );
955
956 MDMap_t::iterator i = m_metadataMap.find( mdStreamName );
957 if( i == m_metadataMap.end() ) {
958 metadata = new TTree( "metadata", "Monitoring Metadata" );
959 if (! metadata) return StatusCode::FAILURE;
960 StatusCode scmd = m_THistSvc->regTree( mdStreamName, metadata );
961 if (scmd == StatusCode::FAILURE) return StatusCode::FAILURE;
962 i = m_metadataMap.emplace( mdStreamName, new OutputMetadata(metadata) ).first;
963 }
964
965 i->second->fill( hName, group.interval(), group.chain(), group.merge() );
966 }
967 return StatusCode::SUCCESS;
968}

◆ regManagedEfficiencies()

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

Definition at line 1139 of file ManagedMonitorToolBase.cxx.

1139 {
1140 bool allIsOk = true;
1141 for( auto& it : templateEfficiencies ) {
1142 // get components of MgmtParams and copy efficiency
1143 MonGroup group = it.m_group;
1144 TEfficiency* theEfficiency = it.m_templateHist;
1145 TEfficiency* e = static_cast<TEfficiency*>(theEfficiency->Clone());
1146 int nbins = theEfficiency->GetTotalHistogram()->GetNbinsX();
1147 int xlow = theEfficiency->GetTotalHistogram()->GetXaxis()->GetXmin();
1148 int xhigh = theEfficiency->GetTotalHistogram()->GetXaxis()->GetXmax();
1149 e->SetBins(nbins,xlow,xhigh); // reset histogram
1150 std::string name = e->GetName();
1151
1152 // make TGraph casts of TEfficiencies
1153 TGraph* theGraph = reinterpret_cast<TGraph*>(theEfficiency);
1154 TGraph* g = reinterpret_cast<TGraph*>(e);
1155
1156 // Get the streamName for the previous interval
1157 std::string streamName = streamNameFunction()->getStreamName( this, group, name, true );
1158
1159 // RE-REGISTER
1160 // 1) De-register the original graph with the THistSvc
1161 StatusCode sc1 = m_THistSvc->deReg( theGraph );
1162 if (sc1 == StatusCode::FAILURE) allIsOk = false;
1163 // 2) Fix THistSvc->deReg for TGraphs
1164 bool doneCleaning = false;
1165 std::string directoryName = streamNameFunction()->getDirectoryName( this, group, name, true );
1166 TSeqCollection *filelist=gROOT->GetListOfFiles();
1167 for (int i=0; i<filelist->GetEntries(); i++) {
1168 ATH_MSG_DEBUG( "List of files: " << filelist->At(i)->GetName());
1169 TFile* file = static_cast<TFile*>(filelist->At(i));
1170 StatusCode sc2 = THistSvc_deReg_fixTGraph(file, theGraph, directoryName);
1171 if (sc2 == StatusCode::SUCCESS) doneCleaning = true;
1172 }
1173 // 3) Check if TGraph fix has been applied successfully
1174 if (!doneCleaning) {
1175 ATH_MSG_ERROR("THistSvc_deReg_fixTGraph: failed to apply TGraph fix for the THist Svc!");
1176 allIsOk = false;
1177 }
1178 // 4) Register cloned histogram under previous interval streamName
1179 StatusCode sc3 = m_THistSvc->regGraph( streamName, g );
1180 if (sc3 == StatusCode::FAILURE)
1181 allIsOk = false;
1182
1183 // get streamname for interval
1184 streamName = streamNameFunction()->getStreamName( this, group, name, false );
1185 // store metadata
1186 StatusCode smd = registerMetadata(streamName, name, group);
1187 if (smd != StatusCode::SUCCESS) allIsOk = false;
1188 // Re-register the original graph
1189 StatusCode sc4 = m_THistSvc->regGraph( streamName, theGraph );
1190 if (sc4 == StatusCode::FAILURE) allIsOk = false;
1191 }
1192
1193 if (!allIsOk) return StatusCode::FAILURE;
1194 return StatusCode::SUCCESS;
1195}
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...
StatusCode THistSvc_deReg_fixTGraph(TFile *file, TGraph *theGraph, std::string &directoryName)
Fixes THistSvc->deReg(obj) when obj is TGraph instance.
filelist
print ("Checking files %s..." % fullfile)
Definition envutil.py:133

◆ regManagedGraphs()

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

Definition at line 1068 of file ManagedMonitorToolBase.cxx.

1070{
1071 // See the description for the regManagedHistograms method
1072 bool allIsOk = true;
1073
1074 for( std::vector< MgmtParams<TGraph> >::iterator it = templateGraphs.begin(); it != templateGraphs.end(); ++it ) {
1075 MonGroup group = (*it).m_group;
1076
1077 // Get a handle to the graph
1078 TGraph* theGraph = (*it).m_templateHist;
1079
1080 // Clone the graph
1081 TGraph* g = static_cast<TGraph*>(theGraph->Clone());
1082 theGraph->Set(0); // equivalent to Reset() for TH1
1083
1084 // Get name
1085 std::string gName = g->GetName();
1086
1087 // Get the streamName for the previous interval
1088 std::string streamName = streamNameFunction()->getStreamName( this, group, gName, true );
1089
1090 // De-register the original graph with the THistSvc
1091 StatusCode sc1 = m_THistSvc->deReg( theGraph );
1092 if (sc1 == StatusCode::FAILURE)
1093 allIsOk = false;
1094
1095 // *** begin ***
1096 // Fix THistSvc->deReg for TGraphs
1097 bool doneCleaning = false;
1098 std::string directoryName = streamNameFunction()->getDirectoryName( this, group, gName, true );
1099 TSeqCollection *filelist=gROOT->GetListOfFiles();
1100 for (int i=0; i<filelist->GetEntries(); i++) {
1101 ATH_MSG_DEBUG( "List of files: " << filelist->At(i)->GetName());
1102 TFile* file = static_cast<TFile*>(filelist->At(i));
1103 StatusCode sc2 = THistSvc_deReg_fixTGraph(file, theGraph, directoryName);
1104 if (sc2 == StatusCode::SUCCESS)
1105 doneCleaning = true;
1106 }
1107
1108 // Check if TGraph fix has been applied successfully
1109 if (!doneCleaning) {
1110 ATH_MSG_ERROR("THistSvc_deReg_fixTGraph: failed to apply TGraph fix for the THist Svc!");
1111 allIsOk = false;
1112 }
1113 // *** end ***
1114
1115 // Register clonned histogram under previous interval streamName
1116 StatusCode sc3 = m_THistSvc->regGraph( streamName, g );
1117 if (sc3 == StatusCode::FAILURE)
1118 allIsOk = false;
1119
1120 // Get streamName for the current interval
1121 streamName = streamNameFunction()->getStreamName( this, group, gName, false );
1122 // Register metadata information with the current interval streamname
1123 StatusCode smd = registerMetadata(streamName, gName, group);
1124 if (smd != StatusCode::SUCCESS)
1125 allIsOk = false;
1126
1127 // Re-register the original graph with the current interval streamName
1128 StatusCode sc4 = m_THistSvc->regGraph( streamName, theGraph );
1129 if (sc4 == StatusCode::FAILURE)
1130 allIsOk = false;
1131
1132 }
1133
1134 if (!allIsOk) return StatusCode::FAILURE;
1135
1136 return StatusCode::SUCCESS;
1137}

◆ regManagedHistograms()

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

Definition at line 971 of file ManagedMonitorToolBase.cxx.

973{
974 // The method registers histograms with the THistSvc and saves them to file.
975
976 // The funky business with registering and deregistering the histogram is needed
977 // to get the correct directory when saving histograms. THistSvc deals with ROOT
978 // to set up proper TDirectory, so we rely on it.
979 // E.g.
980 // m_THistSvc->regHist( streamName, h ): sets the correct TDirectory with streamName
981 // m_THistSvc->deReg( h ) - deregister from THistSvc otherwise THistSvc will try to save it
982 // at the end of execution
983 // use passownership of the histogram and save it to file
984 // m_manager->passOwnership( h, genericName );
985 // m_manager->writeAndDelete( genericName );
986 bool allIsOk = true;
987
988 for( std::vector< MgmtParams<TH1> >::iterator it = templateHistograms.begin(); it != templateHistograms.end(); ++it ) {
989 MonGroup& group = (*it).m_group;
990
991 // Get a handle to the histogram
992 TH1* theHist = (*it).m_templateHist;
993
994 // Clone the histogram
995 TH1* h = static_cast<TH1*>(theHist->Clone());
996 theHist->Reset();
997
998 // Get name
999 std::string hName = h->GetName();
1000
1001 // Get the streamName for the previous interval
1002 std::string streamName = streamNameFunction()->getStreamName( this, group, hName, true );
1003
1004 // Register the histogram with the THistSvc
1005 StatusCode sc1 = m_THistSvc->deReg( theHist );
1006 if (sc1 == StatusCode::FAILURE) allIsOk = false;
1007
1008 // Register clonned histogram under previous interval streamName
1009 StatusCode sc2 = m_THistSvc->regHist( streamName, h );
1010 if (sc2 == StatusCode::FAILURE) allIsOk = false;
1011
1012 if( m_manager != 0 ) {
1013 std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1014 m_manager->passOwnership( h, genericName );
1015 m_manager->writeAndDelete( genericName );
1016 }
1017
1018 // Get streamName for the current interval
1019 streamName = streamNameFunction()->getStreamName( this, group, hName, false );
1020 // Register metadata information with the current interval streamname
1021 StatusCode smd = registerMetadata(streamName, hName, group);
1022 if (smd != StatusCode::SUCCESS) allIsOk = false;
1023
1024 // Re-register the original histogram with the current interval streamName
1025 StatusCode sc3 = m_THistSvc->regHist( streamName, theHist );
1026 if (sc3 == StatusCode::FAILURE) allIsOk = false;
1027
1028 }
1029
1030 if (!allIsOk) return StatusCode::FAILURE;
1031
1032 return StatusCode::SUCCESS;
1033}

◆ regManagedTrees()

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

Definition at line 1199 of file ManagedMonitorToolBase.cxx.

1201{
1202 // See the description for the regManagedHistograms method
1203 bool allIsOk = true;
1204
1205 for( std::vector< MgmtParams<TTree> >::iterator it = templateTrees.begin(); it != templateTrees.end(); ++it ) {
1206 MonGroup group = (*it).m_group;
1207
1208 // Get a handle to the original tree
1209 TTree* theTree = (*it).m_templateHist;
1210
1211 // Clone the tree
1212 TTree* t = static_cast<TTree*>(theTree->Clone());
1213 theTree->Reset();
1214
1215 // Dumping the tree
1216 std::string name = t->GetName();
1217
1218 // Get the streamName for the previous interval
1219 std::string streamName = streamNameFunction()->getStreamName( this, group, name, true );
1220
1221 // De-register original tree with the THistSvc
1222 StatusCode sc1 = m_THistSvc->deReg( theTree );
1223 if (sc1 == StatusCode::FAILURE) allIsOk = false;
1224
1225 // Register clonned tree under previous interval streamName
1226 StatusCode sc2 = m_THistSvc->regTree( streamName, t );
1227 if (sc2 == StatusCode::FAILURE) allIsOk = false;
1228
1229 if( m_manager != 0 ) {
1230 std::string genericName = NoOutputStream().getStreamName( this, group, name );
1231 m_manager->passOwnership( t, genericName );
1232 m_manager->writeAndDelete( genericName );
1233 }
1234
1235 // Get streamName for the current interval
1236 streamName = streamNameFunction()->getStreamName( this, group, name, false );
1237 // Register metadata information with the current interval streamname
1238 StatusCode smd = registerMetadata(streamName, name, group);
1239 if (smd != StatusCode::SUCCESS) allIsOk = false;
1240
1241 // Re-register the original graph with the current interval streamName
1242 StatusCode sc3 = m_THistSvc->regTree( streamName, theTree );
1243 if (sc3 == StatusCode::FAILURE) allIsOk = false;
1244
1245 }
1246
1247 if (!allIsOk) return StatusCode::FAILURE;
1248
1249 return StatusCode::SUCCESS;
1250}

◆ 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 1554 of file ManagedMonitorToolBase.cxx.

1556{
1557
1558 // This part of the code deals with MANAGED type
1559 if ( group.histo_mgmt() != ATTRIB_UNMANAGED ) {
1560 // Create an unmanaged group based on the original MonGroup instance passed
1561 // This is needed because managed tree is presented as a number of unmanaged
1562 // trees (one per each interval)
1563 MonGroup group_unmanaged( this, group.system(), group.interval(), ATTRIB_UNMANAGED, group.chain(), group.merge());
1564
1565 if (m_supportedIntervalsForRebooking.count(group.interval())) {
1566 m_templateTrees[group.interval()].push_back( MgmtParams<TTree>(t, group_unmanaged) );
1567 } else {
1568 ATH_MSG_ERROR("Attempt to book managed tree " << t->GetName() << " with invalid interval type " << intervalEnumToString(group.interval()));
1569 return StatusCode::FAILURE;
1570 }
1571
1572 std::string name = t->GetName();
1573 std::string genericName = NoOutputStream().getStreamName( this, group_unmanaged, name );
1574 std::string streamName = streamNameFunction()->getStreamName( this, group_unmanaged, name, false );
1575 registerMetadata(streamName, name, group).ignore();
1576 return m_THistSvc->regTree( streamName, t );
1577 }
1578
1579
1580 // This part of the code deals with UNMANAGED type
1581 std::string tName = t->GetName();
1582
1583 if( m_manager != 0 ) {
1584 std::string genericName = NoOutputStream().getStreamName( this, group, tName );
1585 m_manager->writeAndDelete( genericName );
1586 m_manager->passOwnership( t, genericName );
1587 }
1588
1589 std::string streamName = streamNameFunction()->getStreamName( this, group, tName, false );
1590
1591 StatusCode smd = registerMetadata(streamName, tName, group);
1592 if (smd != StatusCode::SUCCESS) return StatusCode::FAILURE;
1593
1594 return m_THistSvc->regTree( streamName, t );
1595}

◆ 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 1544 of file ManagedMonitorToolBase.cxx.

1547{
1548 MonGroup group( this, system, interval, histo_mgmt, chain, merge );
1549 return regTree( t, group );
1550}
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.

◆ 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();
384 }
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)

◆ 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 {
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 1661 of file ManagedMonitorToolBase.cxx.

1663{
1664 return StatusCode::SUCCESS;
1665}

◆ setMonManager()

void ManagedMonitorToolBase::setMonManager ( AthenaMonManager * manager)
virtualinherited

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

Definition at line 1325 of file ManagedMonitorToolBase.cxx.

1327{
1328 ATH_MSG_DEBUG( "ManagedMonitorToolBase::setMonManager():");
1330 if( m_manager != 0 ) {
1331 ATH_MSG_DEBUG( " --> Setting manager");
1332 m_managerNameProp = m_manager->name();
1333 m_fileKey = m_manager->fileKey();
1334 m_dataType = m_manager->dataType();
1335 m_environment = m_manager->environment();
1336 delete m_streamNameFcn;
1338 }
1339 ATH_MSG_DEBUG( " --> Exiting successfully");
1340}
virtual StreamNameFcn * getNewStreamNameFcn() const

◆ 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 1650 of file ManagedMonitorToolBase.cxx.

1652{
1653 // All instances should write to the stream(s) defined by the
1654 // AthenaMonManager.
1655
1656 return StatusCode::SUCCESS;
1657}

◆ streamNameFunction()

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

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

Definition at line 450 of file ManagedMonitorToolBase.cxx.

452{
453 if( m_streamNameFcn == 0 ) {
454 msg(MSG::ERROR) << "!! streamNameFunction() has not been initialized !!" << endmsg;
455 msg(MSG::ERROR) << " --> neither ManagedMonitorToolBase::initialize() nor" << endmsg;
456 msg(MSG::ERROR) << " --> ManagedMonitorToolBase::setMonManager() has been called." << endmsg;
457 msg(MSG::ERROR) << " --> Correct configuration cannot be guaranteed from this point." << endmsg;
459 }
460 return m_streamNameFcn;
461}

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

◆ 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 1036 of file ManagedMonitorToolBase.cxx.

1038{
1039 // THistSvc employs TDirectory Append method when registering TGraph.
1040 // When deReg is used to de-register TGraph object, THistSvc only removes the object
1041 // from its internal management but forgets to delete from TDirectory.
1042 // The current method fixes this problem by removing the TGraph object manually
1043 // after THistSvc->deReg(TGraph* obj) is called.
1044
1045 // Saves and restores gFile and gDirectory
1046 GlobalDirectoryRestore restore;
1047
1048 // This check is true when TGraph object is removed successfully
1049 bool graphRemoved = false;
1050
1051 file->cd("/");
1052 TDirectory* dir = file->GetDirectory(directoryName.c_str());
1053 if (dir != 0) {
1054 dir->cd();
1055 TObject* obj = dir->Remove(theGraph);
1056 if (obj != 0)
1057 graphRemoved = true;
1058 }
1059
1060 if (!graphRemoved) {
1061 return StatusCode::FAILURE;
1062 }
1063
1064 return StatusCode::SUCCESS;
1065}

◆ trigChainsArePassed()

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

Definition at line 2092 of file ManagedMonitorToolBase.cxx.

2094{
2095 ATH_MSG_DEBUG( "ManagedMonitorToolBase::trigChainsArePassed:");
2096
2097 for(unsigned int i=0; i<vTrigNames.size(); i++) {
2098 if( m_trigDecTool->isPassed(vTrigNames[i]) ) {
2099 ATH_MSG_DEBUG( " + \"" << vTrigNames[i] << "\" passed, returning \'true\'");
2100 return true;
2101 }
2102 else {
2103 ATH_MSG_DEBUG( " - \"" << vTrigNames[i] << "\" did not pass");
2104 }
2105 }
2106
2107 return false;
2108}

◆ updateTriggersForGroups()

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

Definition at line 2130 of file ManagedMonitorToolBase.cxx.

2131 {
2132 for (size_t i = 0; i < vTrigChainNames.size(); ++i) {
2133 std::string& thisName = vTrigChainNames[i];
2134 if (thisName.compare(0, 9, "CATEGORY_") ==0) {
2135 ATH_MSG_DEBUG("Found a trigger category: " << thisName << ". We will unpack it.");
2136 std::vector<std::string> triggers = m_trigTranslator->translate(thisName.substr(9,std::string::npos));
2137 std::ostringstream oss;
2138 oss << "(";
2139 for (size_t itrig = 0; itrig < triggers.size(); ++itrig) {
2140 if (itrig != 0) {
2141 oss << "|";
2142 }
2143 oss << triggers[itrig];
2144 }
2145 oss << ")";
2146 // replace with new value
2147 std::string newval = oss.str();
2148 ATH_MSG_DEBUG("Replaced with " << newval);
2149 vTrigChainNames[i] = std::move(newval);
2150 }
2151 }
2152}
PublicToolHandle< ITriggerTranslatorTool > m_trigTranslator

◆ 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) {
313 for (auto k : keys) {
314 k->setOwner(this);
315 }
316 }
317 }
std::vector< SG::VarHandleKeyArray * > m_vhka

◆ writeAndDelete()

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

Write out histogram and delete it.

Definition at line 1599 of file ManagedMonitorToolBase.cxx.

1600 {
1601 if (!h)
1602 return StatusCode::FAILURE;
1603
1604 std::string hName = h->GetName();
1605
1606 if( m_manager != 0 ) {
1607 std::string genericName = NoOutputStream().getStreamName( this, group, hName );
1608 m_manager->writeAndDelete( genericName );
1609 }
1610 return StatusCode::SUCCESS;
1611}

Member Data Documentation

◆ m_bookHistogramsInitial

bool ManagedMonitorToolBase::m_bookHistogramsInitial
privateinherited

Definition at line 893 of file ManagedMonitorToolBase.h.

◆ m_currentLB

unsigned int egammaMonToolBase::m_currentLB
protectedinherited

Definition at line 112 of file egammaMonToolBase.h.

◆ m_d

Imp* ManagedMonitorToolBase::m_d
privateinherited

Definition at line 900 of file ManagedMonitorToolBase.h.

◆ m_dataType

AthenaMonManager::DataType_t ManagedMonitorToolBase::m_dataType
protectedinherited

Definition at line 838 of file ManagedMonitorToolBase.h.

◆ m_dataTypeStr

std::string ManagedMonitorToolBase::m_dataTypeStr
protectedinherited

Definition at line 834 of file ManagedMonitorToolBase.h.

◆ m_defaultLBDuration

float ManagedMonitorToolBase::m_defaultLBDuration
privateinherited

Definition at line 895 of file ManagedMonitorToolBase.h.

◆ m_detailLevel

unsigned int ManagedMonitorToolBase::m_detailLevel
protectedinherited

Definition at line 836 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 849 of file ManagedMonitorToolBase.h.

849{this,"FilterTools",{}};

◆ m_effhIDEt

TProfile* ZeeTaPMonTool::m_effhIDEt
protected

Definition at line 63 of file ZeeTaPMonTool.h.

◆ m_effhIDEta

TProfile* ZeeTaPMonTool::m_effhIDEta
protected

Definition at line 64 of file ZeeTaPMonTool.h.

◆ m_effhIDPhi

TProfile* ZeeTaPMonTool::m_effhIDPhi
protected

Definition at line 65 of file ZeeTaPMonTool.h.

◆ m_effhISOEt

TProfile* ZeeTaPMonTool::m_effhISOEt
protected

Definition at line 71 of file ZeeTaPMonTool.h.

◆ m_effhISOEta

TProfile* ZeeTaPMonTool::m_effhISOEta
protected

Definition at line 72 of file ZeeTaPMonTool.h.

◆ m_effhISOPhi

TProfile* ZeeTaPMonTool::m_effhISOPhi
protected

Definition at line 73 of file ZeeTaPMonTool.h.

◆ m_ElectronContainer

SG::ReadHandleKey<xAOD::ElectronContainer> ZeeTaPMonTool::m_ElectronContainer {this, "ElectronContainer", "Electrons", "Name of the electron collection"}
protected

Definition at line 37 of file ZeeTaPMonTool.h.

37{this, "ElectronContainer", "Electrons", "Name of the electron collection"}; // Container name for electrons

◆ m_electronEffGroup

MonGroup* ZeeTaPMonTool::m_electronEffGroup
protected

Definition at line 53 of file ZeeTaPMonTool.h.

◆ m_ElectronEtCut

float ZeeTaPMonTool::m_ElectronEtCut
protected

Definition at line 39 of file ZeeTaPMonTool.h.

◆ m_electronGroup

MonGroup* ZeeTaPMonTool::m_electronGroup
protected

Definition at line 48 of file ZeeTaPMonTool.h.

◆ m_electronIdGroup

MonGroup* ZeeTaPMonTool::m_electronIdGroup
protected

Definition at line 50 of file ZeeTaPMonTool.h.

◆ m_electronIsoGroup

MonGroup* ZeeTaPMonTool::m_electronIsoGroup
protected

Definition at line 51 of file ZeeTaPMonTool.h.

◆ m_electronLBGroup

MonGroup* ZeeTaPMonTool::m_electronLBGroup
protected

Definition at line 52 of file ZeeTaPMonTool.h.

◆ m_electronTrkGroup

MonGroup* ZeeTaPMonTool::m_electronTrkGroup
protected

Definition at line 49 of file ZeeTaPMonTool.h.

◆ m_endOfEventsBlock

bool ManagedMonitorToolBase::m_endOfEventsBlock
privateinherited

Definition at line 823 of file ManagedMonitorToolBase.h.

◆ m_endOfLowStat

bool ManagedMonitorToolBase::m_endOfLowStat
privateinherited

Definition at line 823 of file ManagedMonitorToolBase.h.

◆ m_endOfLumiBlock

bool ManagedMonitorToolBase::m_endOfLumiBlock
privateinherited

Definition at line 823 of file ManagedMonitorToolBase.h.

◆ m_endOfRun

bool ManagedMonitorToolBase::m_endOfRun
privateinherited

Definition at line 823 of file ManagedMonitorToolBase.h.

◆ m_environment

AthenaMonManager::Environment_t ManagedMonitorToolBase::m_environment
protectedinherited

Definition at line 839 of file ManagedMonitorToolBase.h.

◆ m_environmentStr

std::string ManagedMonitorToolBase::m_environmentStr
protectedinherited

Definition at line 835 of file ManagedMonitorToolBase.h.

◆ m_EventInfoKey

SG::ReadHandleKey<xAOD::EventInfo> egammaMonToolBase::m_EventInfoKey {this, "EventInfoKey", "EventInfo"}
protectedinherited

Definition at line 113 of file egammaMonToolBase.h.

113{this, "EventInfoKey", "EventInfo"};

◆ 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_fileKey

std::string ManagedMonitorToolBase::m_fileKey
protectedinherited

Definition at line 833 of file ManagedMonitorToolBase.h.

◆ m_GroupExtension

std::string egammaMonToolBase::m_GroupExtension
protectedinherited

Definition at line 110 of file egammaMonToolBase.h.

◆ m_haveClearedLastEventBlock

bool ManagedMonitorToolBase::m_haveClearedLastEventBlock
protectedinherited

Definition at line 866 of file ManagedMonitorToolBase.h.

◆ m_hEt

TH1* ZeeTaPMonTool::m_hEt
protected

Definition at line 77 of file ZeeTaPMonTool.h.

◆ m_hEta

TH1* ZeeTaPMonTool::m_hEta
protected

Definition at line 78 of file ZeeTaPMonTool.h.

◆ m_hEtaPhi

TH2* ZeeTaPMonTool::m_hEtaPhi
protected

Definition at line 80 of file ZeeTaPMonTool.h.

◆ m_hIDEt

TH1* ZeeTaPMonTool::m_hIDEt
protected

Definition at line 60 of file ZeeTaPMonTool.h.

◆ m_hIDEta

TH1* ZeeTaPMonTool::m_hIDEta
protected

Definition at line 61 of file ZeeTaPMonTool.h.

◆ m_hIDPhi

TH1* ZeeTaPMonTool::m_hIDPhi
protected

Definition at line 62 of file ZeeTaPMonTool.h.

◆ m_hISOEt

TH1* ZeeTaPMonTool::m_hISOEt
protected

Definition at line 68 of file ZeeTaPMonTool.h.

◆ m_hISOEta

TH1* ZeeTaPMonTool::m_hISOEta
protected

Definition at line 69 of file ZeeTaPMonTool.h.

◆ m_hISOPhi

TH1* ZeeTaPMonTool::m_hISOPhi
protected

Definition at line 70 of file ZeeTaPMonTool.h.

◆ m_hLB_N

TH1* ZeeTaPMonTool::m_hLB_N
protected

Definition at line 111 of file ZeeTaPMonTool.h.

◆ m_hMass

TH1* ZeeTaPMonTool::m_hMass
protected

Definition at line 57 of file ZeeTaPMonTool.h.

◆ m_hN

TH1* ZeeTaPMonTool::m_hN
protected

Definition at line 76 of file ZeeTaPMonTool.h.

◆ m_hNZcandidates

TH1* ZeeTaPMonTool::m_hNZcandidates
protected

Definition at line 46 of file ZeeTaPMonTool.h.

◆ m_hPhi

TH1* ZeeTaPMonTool::m_hPhi
protected

Definition at line 79 of file ZeeTaPMonTool.h.

◆ m_hvCaloIso

std::vector<TH1*> ZeeTaPMonTool::m_hvCaloIso
protected

Definition at line 100 of file ZeeTaPMonTool.h.

◆ m_hvCoreEM

std::vector<TH1*> ZeeTaPMonTool::m_hvCoreEM
protected

Definition at line 92 of file ZeeTaPMonTool.h.

◆ m_hvDeltaEta1

std::vector<TH1*> ZeeTaPMonTool::m_hvDeltaEta1
protected

Definition at line 83 of file ZeeTaPMonTool.h.

◆ m_hvDeltaPhi2

std::vector<TH1*> ZeeTaPMonTool::m_hvDeltaPhi2
protected

Definition at line 84 of file ZeeTaPMonTool.h.

◆ m_hvEhad1

std::vector<TH1*> ZeeTaPMonTool::m_hvEhad1
protected

Definition at line 90 of file ZeeTaPMonTool.h.

◆ m_hvEoverP

std::vector<TH1*> ZeeTaPMonTool::m_hvEoverP
protected

Definition at line 91 of file ZeeTaPMonTool.h.

◆ m_hvF1

std::vector<TH1*> ZeeTaPMonTool::m_hvF1
protected

Definition at line 93 of file ZeeTaPMonTool.h.

◆ m_hvF2

std::vector<TH1*> ZeeTaPMonTool::m_hvF2
protected

Definition at line 94 of file ZeeTaPMonTool.h.

◆ m_hvF3

std::vector<TH1*> ZeeTaPMonTool::m_hvF3
protected

Definition at line 95 of file ZeeTaPMonTool.h.

◆ m_hvMass

std::vector<TH1*> ZeeTaPMonTool::m_hvMass
protected

Definition at line 56 of file ZeeTaPMonTool.h.

◆ m_hvNOfBLayerHits

std::vector<TH1*> ZeeTaPMonTool::m_hvNOfBLayerHits
protected

Definition at line 85 of file ZeeTaPMonTool.h.

◆ m_hvNOfSiHits

std::vector<TH1*> ZeeTaPMonTool::m_hvNOfSiHits
protected

Definition at line 86 of file ZeeTaPMonTool.h.

◆ m_hvNOfTRTHits

std::vector<TH1*> ZeeTaPMonTool::m_hvNOfTRTHits
protected

Definition at line 87 of file ZeeTaPMonTool.h.

◆ m_hvRe233e237

std::vector<TH1*> ZeeTaPMonTool::m_hvRe233e237
protected

Definition at line 96 of file ZeeTaPMonTool.h.

◆ m_hvRe237e277

std::vector<TH1*> ZeeTaPMonTool::m_hvRe237e277
protected

Definition at line 97 of file ZeeTaPMonTool.h.

◆ m_hvTrackIso

std::vector<TH1*> ZeeTaPMonTool::m_hvTrackIso
protected

Definition at line 101 of file ZeeTaPMonTool.h.

◆ m_lastHigStatInterval

int ManagedMonitorToolBase::m_lastHigStatInterval
protectedinherited

Definition at line 861 of file ManagedMonitorToolBase.h.

◆ m_lastLowStatInterval

int ManagedMonitorToolBase::m_lastLowStatInterval
protectedinherited

Definition at line 861 of file ManagedMonitorToolBase.h.

◆ m_lastLumiBlock

unsigned int ManagedMonitorToolBase::m_lastLumiBlock
protectedinherited

Definition at line 859 of file ManagedMonitorToolBase.h.

◆ m_lastMedStatInterval

int ManagedMonitorToolBase::m_lastMedStatInterval
protectedinherited

Definition at line 861 of file ManagedMonitorToolBase.h.

◆ m_lastRun

unsigned int ManagedMonitorToolBase::m_lastRun
protectedinherited

Definition at line 860 of file ManagedMonitorToolBase.h.

◆ m_lbDurationDataKey

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

Definition at line 888 of file ManagedMonitorToolBase.h.

889{this,"LBDurationCondDataKey","LBDurationCondData","SG Key of LBDurationCondData object"};

◆ m_lumiBlockNumber

unsigned int ZeeTaPMonTool::m_lumiBlockNumber
protected

Definition at line 105 of file ZeeTaPMonTool.h.

◆ m_lumiDataKey

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

Definition at line 886 of file ManagedMonitorToolBase.h.

887{this,"LuminosityCondDataKey","LuminosityCondData","SG Key of LuminosityCondData object"};

◆ m_manager

AthenaMonManager* ManagedMonitorToolBase::m_manager
protectedinherited

Definition at line 829 of file ManagedMonitorToolBase.h.

◆ m_managerNameProp

std::string ManagedMonitorToolBase::m_managerNameProp
protectedinherited

Definition at line 831 of file ManagedMonitorToolBase.h.

◆ m_MassLowerCut

float ZeeTaPMonTool::m_MassLowerCut
protected

Definition at line 40 of file ZeeTaPMonTool.h.

◆ m_MassPeak

float ZeeTaPMonTool::m_MassPeak
protected

Definition at line 38 of file ZeeTaPMonTool.h.

◆ m_MassUpperCut

float ZeeTaPMonTool::m_MassUpperCut
protected

Definition at line 41 of file ZeeTaPMonTool.h.

◆ m_metadataMap

MDMap_t ManagedMonitorToolBase::m_metadataMap
protectedinherited

Definition at line 827 of file ManagedMonitorToolBase.h.

◆ m_nEvents

unsigned int ManagedMonitorToolBase::m_nEvents
protectedinherited

Definition at line 863 of file ManagedMonitorToolBase.h.

◆ m_nEventsIgnoreTrigger

unsigned int ManagedMonitorToolBase::m_nEventsIgnoreTrigger
protectedinherited

Definition at line 864 of file ManagedMonitorToolBase.h.

◆ m_newEventsBlock

bool ManagedMonitorToolBase::m_newEventsBlock
privateinherited

Definition at line 822 of file ManagedMonitorToolBase.h.

◆ m_newHigStatInterval

bool ManagedMonitorToolBase::m_newHigStatInterval
privateinherited

Definition at line 820 of file ManagedMonitorToolBase.h.

◆ m_newLowStat

bool ManagedMonitorToolBase::m_newLowStat
privateinherited

Definition at line 821 of file ManagedMonitorToolBase.h.

◆ m_newLowStatInterval

bool ManagedMonitorToolBase::m_newLowStatInterval
privateinherited

Definition at line 820 of file ManagedMonitorToolBase.h.

◆ m_newLumiBlock

bool ManagedMonitorToolBase::m_newLumiBlock
privateinherited

Definition at line 821 of file ManagedMonitorToolBase.h.

◆ m_newMedStatInterval

bool ManagedMonitorToolBase::m_newMedStatInterval
privateinherited

Definition at line 820 of file ManagedMonitorToolBase.h.

◆ m_newRun

bool ManagedMonitorToolBase::m_newRun
privateinherited

Definition at line 821 of file ManagedMonitorToolBase.h.

◆ m_nLumiBlocks

unsigned int ManagedMonitorToolBase::m_nLumiBlocks
protectedinherited

Definition at line 865 of file ManagedMonitorToolBase.h.

◆ m_nZCandidates

unsigned int ZeeTaPMonTool::m_nZCandidates
protected

Definition at line 109 of file ZeeTaPMonTool.h.

◆ m_nZCandidatesInCurrentLB

unsigned int ZeeTaPMonTool::m_nZCandidatesInCurrentLB
protected

Definition at line 106 of file ZeeTaPMonTool.h.

◆ m_nZCandidatesPerLumiBlock

std::vector<int> ZeeTaPMonTool::m_nZCandidatesPerLumiBlock
protected

Definition at line 107 of file ZeeTaPMonTool.h.

◆ m_nZCandidatessPerRegion

std::vector<int> ZeeTaPMonTool::m_nZCandidatessPerRegion
protected

Definition at line 108 of file ZeeTaPMonTool.h.

◆ m_path

std::string ManagedMonitorToolBase::m_path
protectedinherited

Definition at line 852 of file ManagedMonitorToolBase.h.

◆ m_PhiBinning

int ZeeTaPMonTool::m_PhiBinning
protected

Definition at line 42 of file ZeeTaPMonTool.h.

◆ m_preScaleProp

long ManagedMonitorToolBase::m_preScaleProp
protectedinherited

Definition at line 853 of file ManagedMonitorToolBase.h.

◆ m_procNEventsProp

long ManagedMonitorToolBase::m_procNEventsProp
protectedinherited

Definition at line 851 of file ManagedMonitorToolBase.h.

◆ m_region

std::vector<std::string> egammaMonToolBase::m_region
privateinherited

Definition at line 116 of file egammaMonToolBase.h.

◆ m_streamNameFcn

StreamNameFcn* ManagedMonitorToolBase::m_streamNameFcn
protectedinherited

Definition at line 841 of file ManagedMonitorToolBase.h.

◆ m_supportedIntervalsForRebooking

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

Definition at line 896 of file ManagedMonitorToolBase.h.

◆ m_templateEfficiencies

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

Definition at line 676 of file ManagedMonitorToolBase.h.

◆ m_templateGraphs

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

Definition at line 668 of file ManagedMonitorToolBase.h.

◆ m_templateHistograms

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

Definition at line 664 of file ManagedMonitorToolBase.h.

◆ m_templateTrees

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

Definition at line 672 of file ManagedMonitorToolBase.h.

◆ m_THistSvc

ServiceHandle<ITHistSvc> ManagedMonitorToolBase::m_THistSvc
protectedinherited

Definition at line 843 of file ManagedMonitorToolBase.h.

◆ m_trigdec

ToolHandle<Trig::TrigDecisionTool> egammaMonToolBase::m_trigdec
protectedinherited

Definition at line 107 of file egammaMonToolBase.h.

◆ m_trigDecTool

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

Definition at line 845 of file ManagedMonitorToolBase.h.

845{this, "TrigDecisionTool",""};

◆ m_Trigger

std::vector<std::string> egammaMonToolBase::m_Trigger
protectedinherited

Definition at line 106 of file egammaMonToolBase.h.

◆ m_triggerChainProp

std::string ManagedMonitorToolBase::m_triggerChainProp
protectedinherited

Definition at line 854 of file ManagedMonitorToolBase.h.

◆ m_triggerGroupProp

std::string ManagedMonitorToolBase::m_triggerGroupProp
protectedinherited

Definition at line 855 of file ManagedMonitorToolBase.h.

◆ m_trigLiveFractionDataKey

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

Definition at line 890 of file ManagedMonitorToolBase.h.

891{this,"TrigLiveFractionCondDataKey","TrigLiveFractionCondData","SG Key of TrigLiveFractionCondData object"};

◆ m_trigTranslator

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

Definition at line 847 of file ManagedMonitorToolBase.h.

847{this,"TriggerTranslatorTool",""};

◆ m_useLumi

bool ManagedMonitorToolBase::m_useLumi
privateinherited

Definition at line 894 of file ManagedMonitorToolBase.h.

◆ m_UseTrigger

bool egammaMonToolBase::m_UseTrigger
protectedinherited

Definition at line 108 of file egammaMonToolBase.h.

◆ m_useTrigger

bool ManagedMonitorToolBase::m_useTrigger
protectedinherited

Definition at line 857 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 680 of file ManagedMonitorToolBase.h.

◆ m_vTrigGroupNames

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

Definition at line 680 of file ManagedMonitorToolBase.h.


The documentation for this class was generated from the following files: