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CscRdoValMonAlg Class Reference

#include <CscRdoValMonAlg.h>

Inheritance diagram for CscRdoValMonAlg:
Collaboration diagram for CscRdoValMonAlg:

Public Types

enum class  Environment_t {
  user = 0 , online , tier0 , tier0Raw ,
  tier0ESD , AOD , altprod
}
 Specifies the processing environment. More...
enum class  DataType_t {
  userDefined = 0 , monteCarlo , collisions , cosmics ,
  heavyIonCollisions
}
 Specifies what type of input data is being monitored. More...

Public Member Functions

 CscRdoValMonAlg (const std::string &name, ISvcLocator *pSvcLocator)
virtual ~CscRdoValMonAlg ()=default
virtual StatusCode initialize () override
 initialize
virtual StatusCode fillHistograms (const EventContext &ctx) const override
 adds event to the monitoring histograms
virtual StatusCode execute (const EventContext &ctx) const override
 Applies filters and trigger requirements.
void fill (const ToolHandle< GenericMonitoringTool > &groupHandle, std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > &&variables) const
 Fills a vector of variables to a group by reference.
void fill (const ToolHandle< GenericMonitoringTool > &groupHandle, const std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > &variables) const
 Fills a vector of variables to a group by reference.
template<typename... T>
void fill (const ToolHandle< GenericMonitoringTool > &groupHandle, T &&... variables) const
 Fills a variadic list of variables to a group by reference.
void fill (const std::string &groupName, std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > &&variables) const
 Fills a vector of variables to a group by name.
void fill (const std::string &groupName, const std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > &variables) const
 Fills a vector of variables to a group by name.
template<typename... T>
void fill (const std::string &groupName, T &&... variables) const
 Fills a variadic list of variables to a group by name.
Environment_t environment () const
 Accessor functions for the environment.
Environment_t envStringToEnum (const std::string &str) const
 Convert the environment string from the python configuration to an enum object.
DataType_t dataType () const
 Accessor functions for the data type.
DataType_t dataTypeStringToEnum (const std::string &str) const
 Convert the data type string from the python configuration to an enum object.
const ToolHandle< GenericMonitoringTool > & getGroup (const std::string &name) const
 Get a specific monitoring tool from the tool handle array.
const ToolHandle< Trig::TrigDecisionTool > & getTrigDecisionTool () const
 Get the trigger decision tool member.
bool trigChainsArePassed (const std::vector< std::string > &vTrigNames) const
 Check whether triggers are passed.
SG::ReadHandle< xAOD::EventInfoGetEventInfo (const EventContext &) const
 Return a ReadHandle for an EventInfo object (get run/event numbers, etc.)
virtual float lbAverageInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the average mu, i.e.
virtual float lbInteractionsPerCrossing (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate instantaneous number of interactions, i.e.
virtual float lbAverageLuminosity (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate average luminosity (in ub-1 s-1 => 10^30 cm-2 s-1).
virtual float lbLuminosityPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the instantaneous luminosity per bunch crossing.
virtual double lbDuration (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the duration of the luminosity block (in seconds)
virtual float lbAverageLivefraction (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the average luminosity livefraction.
virtual float livefractionPerBCID (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the live fraction per bunch crossing ID.
virtual double lbLumiWeight (const EventContext &ctx=Gaudi::Hive::currentContext()) const
 Calculate the average integrated luminosity multiplied by the live fraction.
virtual StatusCode parseList (const std::string &line, std::vector< std::string > &result) const
 Parse a string into a vector.
virtual StatusCode sysInitialize () override
 Override sysInitialize.
virtual bool isClonable () const override
 Specify if the algorithm is clonable.
virtual unsigned int cardinality () const override
 Cardinality (Maximum number of clones that can exist) special value 0 means that algorithm is reentrant.
virtual StatusCode sysExecute (const EventContext &ctx) override
 Execute an algorithm.
virtual const DataObjIDColl & extraOutputDeps () const override
 Return the list of extra output dependencies.
virtual bool filterPassed (const EventContext &ctx) const
virtual void setFilterPassed (bool state, const EventContext &ctx) const
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 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

Protected Member Functions

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.

Protected Attributes

ToolHandleArray< GenericMonitoringToolm_tools {this,"GMTools",{}}
 Array of Generic Monitoring Tools.
PublicToolHandle< Trig::TrigDecisionToolm_trigDecTool
 Tool to tell whether a specific trigger is passed.
ToolHandleArray< IDQFilterToolm_DQFilterTools {this,"FilterTools",{}}
 Array of Data Quality filter tools.
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"}
AthMonitorAlgorithm::Environment_t m_environment
 Instance of the Environment_t enum.
AthMonitorAlgorithm::DataType_t m_dataType
 Instance of the DataType_t enum.
Gaudi::Property< std::string > m_environmentStr {this,"Environment","user"}
 Environment string pulled from the job option and converted to enum.
Gaudi::Property< std::string > m_dataTypeStr {this,"DataType","userDefined"}
 DataType string pulled from the job option and converted to enum.
Gaudi::Property< std::string > m_triggerChainString {this,"TriggerChain",""}
 Trigger chain string pulled from the job option and parsed into a vector.
std::vector< std::string > m_vTrigChainNames
 Vector of trigger chain names parsed from trigger chain string.
Gaudi::Property< std::string > m_fileKey {this,"FileKey",""}
 Internal Athena name for file.
Gaudi::Property< bool > m_useLumi {this,"EnableLumi",false}
 Allows use of various luminosity functions.
Gaudi::Property< float > m_defaultLBDuration {this,"DefaultLBDuration",60.}
 Default duration of one lumi block.
Gaudi::Property< int > m_detailLevel {this,"DetailLevel",0}
 Sets the level of detail used in the monitoring.
SG::ReadHandleKey< xAOD::EventInfom_EventInfoKey {this,"EventInfoKey","EventInfo"}
 Key for retrieving EventInfo from StoreGate.

Private Types

typedef std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > MonVarVec_t
typedef ServiceHandle< StoreGateSvcStoreGateSvc_t

Private Member Functions

Gaudi::Details::PropertyBase & declareGaudiProperty (Gaudi::Property< T, V, H > &hndl, const SG::VarHandleKeyType &)
 specialization for handling Gaudi::Property<SG::VarHandleKey>

Private Attributes

Gaudi::Property< size_t > m_cscNoiseCut {this, "cscNoiseCut", 50}
ServiceHandle< Muon::IMuonIdHelperSvcm_idHelperSvc {this, "MuonIdHelperSvc", "Muon::MuonIdHelperSvc/MuonIdHelperSvc"}
ToolHandle< Muon::ICSC_RDO_Decoderm_cscRdoDecoderTool {this,"CscRDODecoder","Muon::CscRDO_Decoder","Muon::CscRDO_Decoder"}
SG::ReadHandleKey< CscRawDataContainerm_cscRdoKey {this,"CSCRawDataKey","CSCRDO","CSC RDO"}
std::string m_name
std::unordered_map< std::string, size_t > m_toolLookupMap
const ToolHandle< GenericMonitoringToolm_dummy
Gaudi::Property< bool > m_enforceExpressTriggers
DataObjIDColl m_extendedExtraObjects
 Extra output dependency collection, extended by AthAlgorithmDHUpdate to add symlinks.
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 CscRdoValMonAlg.h.

Member Typedef Documentation

◆ MonVarVec_t

typedef std::vector<std::reference_wrapper<Monitored::IMonitoredVariable> > AthMonitorAlgorithm::MonVarVec_t
privateinherited

Definition at line 370 of file AthMonitorAlgorithm.h.

◆ StoreGateSvc_t

typedef ServiceHandle<StoreGateSvc> AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::StoreGateSvc_t
privateinherited

Definition at line 388 of file AthCommonDataStore.h.

Member Enumeration Documentation

◆ DataType_t

enum class AthMonitorAlgorithm::DataType_t
stronginherited

Specifies what type of input data is being monitored.

An enumeration of the different types of data the monitoring application may be running over. This can be used to select which histograms to produce, e.g. to prevent the production of colliding-beam histograms when running on cosmic-ray data. Strings of the same names may be given as jobOptions.

Enumerator
userDefined 
monteCarlo 
collisions 
cosmics 
heavyIonCollisions 

Definition at line 194 of file AthMonitorAlgorithm.h.

194 {
195 userDefined = 0,
196 monteCarlo,
197 collisions,
198 cosmics,
199 heavyIonCollisions,
200 };
AthConfigFlags cosmics(AthConfigFlags flags, str instanceName, str recoMode)

◆ Environment_t

enum class AthMonitorAlgorithm::Environment_t
stronginherited

Specifies the processing environment.

The running environment may be used to select which histograms are produced, and where they are located in the output. For example, the output paths of the histograms are different for the "user", "online" and the various offline flags. Strings of the same names may be given as jobOptions.

Enumerator
user 
online 
tier0 
tier0Raw 
tier0ESD 
AOD 
altprod 

Definition at line 175 of file AthMonitorAlgorithm.h.

175 {
176 user = 0,
177 online,
178 tier0,
179 tier0Raw,
180 tier0ESD,
181 AOD,
182 altprod,
183 };

Constructor & Destructor Documentation

◆ CscRdoValMonAlg()

CscRdoValMonAlg::CscRdoValMonAlg ( const std::string & name,
ISvcLocator * pSvcLocator )

Definition at line 13 of file CscRdoValMonAlg.cxx.

13 :
14 AthMonitorAlgorithm(name, pSvcLocator)
15 { }
AthMonitorAlgorithm(const std::string &name, ISvcLocator *pSvcLocator)
Constructor.

◆ ~CscRdoValMonAlg()

virtual CscRdoValMonAlg::~CscRdoValMonAlg ( )
virtualdefault

Member Function Documentation

◆ cardinality()

unsigned int AthCommonReentrantAlgorithm< Gaudi::Algorithm >::cardinality ( ) const
overridevirtualinherited

Cardinality (Maximum number of clones that can exist) special value 0 means that algorithm is reentrant.

Override this to return 0 for reentrant algorithms.

Definition at line 75 of file AthCommonReentrantAlgorithm.cxx.

64{
65 return 0;
66}

◆ dataType()

DataType_t AthMonitorAlgorithm::dataType ( ) const
inlineinherited

Accessor functions for the data type.

Returns
the current value of the class's DataType_t instance.

Definition at line 224 of file AthMonitorAlgorithm.h.

224{ return m_dataType; }
AthMonitorAlgorithm::DataType_t m_dataType
Instance of the DataType_t enum.

◆ dataTypeStringToEnum()

AthMonitorAlgorithm::DataType_t AthMonitorAlgorithm::dataTypeStringToEnum ( const std::string & str) const
inherited

Convert the data type string from the python configuration to an enum object.

Returns
a value in the DataType_t enumeration which matches the input string.

Definition at line 144 of file AthMonitorAlgorithm.cxx.

144 {
145 // convert the string to all lowercase
146 std::string lowerCaseStr = str;
147 std::transform(lowerCaseStr.begin(), lowerCaseStr.end(), lowerCaseStr.begin(), ::tolower);
148
149 // check if it matches one of the enum choices
150 if( lowerCaseStr == "userdefined" ) {
152 } else if( lowerCaseStr == "montecarlo" ) {
154 } else if( lowerCaseStr == "collisions" ) {
156 } else if( lowerCaseStr == "cosmics" ) {
157 return DataType_t::cosmics;
158 } else if( lowerCaseStr == "heavyioncollisions" ) {
160 } else { // otherwise, warn the user and return "userDefined"
161 ATH_MSG_WARNING("AthMonitorAlgorithm::dataTypeStringToEnum(): Unknown data type "
162 <<str<<", returning userDefined.");
164 }
165}
#define ATH_MSG_WARNING(x)
void tolower(std::string &s)

◆ declareGaudiProperty()

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

◆ declareProperty()

Gaudi::Details::PropertyBase & AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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>

◆ detStore()

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

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

Definition at line 95 of file AthCommonDataStore.h.

◆ environment()

Environment_t AthMonitorAlgorithm::environment ( ) const
inlineinherited

Accessor functions for the environment.

Returns
the current value of the class's Environment_t instance.

Definition at line 208 of file AthMonitorAlgorithm.h.

208{ return m_environment; }
AthMonitorAlgorithm::Environment_t m_environment
Instance of the Environment_t enum.

◆ envStringToEnum()

AthMonitorAlgorithm::Environment_t AthMonitorAlgorithm::envStringToEnum ( const std::string & str) const
inherited

Convert the environment string from the python configuration to an enum object.

Returns
a value in the Environment_t enumeration which matches the input string.

Definition at line 116 of file AthMonitorAlgorithm.cxx.

116 {
117 // convert the string to all lowercase
118 std::string lowerCaseStr = str;
119 std::transform(lowerCaseStr.begin(), lowerCaseStr.end(), lowerCaseStr.begin(), ::tolower);
120
121 // check if it matches one of the enum choices
122 if( lowerCaseStr == "user" ) {
123 return Environment_t::user;
124 } else if( lowerCaseStr == "online" ) {
126 } else if( lowerCaseStr == "tier0" ) {
128 } else if( lowerCaseStr == "tier0raw" ) {
130 } else if( lowerCaseStr == "tier0esd" ) {
132 } else if( lowerCaseStr == "aod" ) {
133 return Environment_t::AOD;
134 } else if( lowerCaseStr == "altprod" ) {
136 } else { // otherwise, warn the user and return "user"
137 ATH_MSG_WARNING("AthMonitorAlgorithm::envStringToEnum(): Unknown environment "
138 <<str<<", returning user.");
139 return Environment_t::user;
140 }
141}

◆ evtStore()

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

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

Definition at line 85 of file AthCommonDataStore.h.

◆ execute()

StatusCode AthMonitorAlgorithm::execute ( const EventContext & ctx) const
overridevirtualinherited

Applies filters and trigger requirements.

Then, calls fillHistograms().

Parameters
ctxevent context for reentrant Athena call
Returns
StatusCode

Definition at line 77 of file AthMonitorAlgorithm.cxx.

77 {
78
79 // Checks that all of the DQ filters are passed. If any one of the filters
80 // fails, return SUCCESS code and do not fill the histograms with the event.
81 for ( const auto& filterItr : m_DQFilterTools ) {
82 if (!filterItr->accept()) {
83 ATH_MSG_DEBUG("Event rejected due to filter tool.");
84 return StatusCode::SUCCESS;
85 }
86 }
87
88 // Trigger: If there is a decision tool and the chains fail, skip the event.
90 ATH_MSG_DEBUG("Event rejected due to trigger filter.");
91 return StatusCode::SUCCESS;
92 }
93
94 ATH_MSG_DEBUG("Event accepted!");
95 return fillHistograms(ctx);
96}
#define ATH_MSG_DEBUG(x)
virtual StatusCode fillHistograms(const EventContext &ctx) const =0
adds event to the monitoring histograms
bool trigChainsArePassed(const std::vector< std::string > &vTrigNames) const
Check whether triggers are passed.
std::vector< std::string > m_vTrigChainNames
Vector of trigger chain names parsed from trigger chain string.
PublicToolHandle< Trig::TrigDecisionTool > m_trigDecTool
Tool to tell whether a specific trigger is passed.
ToolHandleArray< IDQFilterTool > m_DQFilterTools
Array of Data Quality filter tools.

◆ extraDeps_update_handler()

void AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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

◆ extraOutputDeps()

const DataObjIDColl & AthCommonReentrantAlgorithm< Gaudi::Algorithm >::extraOutputDeps ( ) const
overridevirtualinherited

Return the list of extra output dependencies.

This list is extended to include symlinks implied by inheritance relations.

Definition at line 94 of file AthCommonReentrantAlgorithm.cxx.

90{
91 // If we didn't find any symlinks to add, just return the collection
92 // from the base class. Otherwise, return the extended collection.
93 if (!m_extendedExtraObjects.empty()) {
95 }
97}
An algorithm that can be simultaneously executed in multiple threads.

◆ fillHistograms()

StatusCode CscRdoValMonAlg::fillHistograms ( const EventContext & ctx) const
overridevirtual

adds event to the monitoring histograms

User will overwrite this function. Histogram booking is no longer done in C++. This function is called in execute once the filters are all passed.

Parameters
ctxforwarded from execute
Returns
StatusCode

Implements AthMonitorAlgorithm.

Definition at line 32 of file CscRdoValMonAlg.cxx.

33{
34 ATH_MSG_DEBUG ( "CscRdoValMonAlg :: in fillHistograms()" );
35
36 if(m_cscRdoKey.key() == ""){ //it seems that protection is needed for this case
37 ATH_MSG_WARNING("CSC RDO key is blank, returning");
38 return StatusCode::SUCCESS;
39 }
40
41 SG::ReadHandle<CscRawDataContainer> CscRDO(m_cscRdoKey, ctx);
42
43 // ==============================================================================
44 // Field Range Notes
45 // ==============================================================================
46 // StationName unsigned integer maps to "CSS", "CSL", etc.
47 // StationEta [-1,1] -1 for backward, 1 for forward endcap
48 // StationPhi [1,8] increases with Phi
49 // Technology [1] maps to "CSC"
50 // ChamberLayer [1,2] increases with |Z|
51 // WireLayer [1,4] increases with |Z|
52 // MeasuresPhi [0,1] 0 if measures R, 1 if measures Phi
53 // Strip [1,n] increases with R for MeasuresPhi=0
54 // increases with Phi for MeasuresPhi=1
55 // ==============================================================================
56
57 ATH_MSG_DEBUG ( " Size of RDO Container : " << CscRDO->size() );
58
59 // Begin Event ==================================================
60 ATH_MSG_DEBUG ( " BEGIN EVENT ========================================== " );
61
62 for (CscRawDataContainer::const_iterator it = CscRDO->begin(); it != CscRDO->end(); ++it)
63 {
64 const CscRawDataCollection * rdo = *it;
65 ATH_MSG_DEBUG ( " Number of Samples : " << rdo->numSamples() );
66 ATH_MSG_DEBUG ( " Size of Collection : " << rdo->size() );
67
68 size_t nEtaClusWidthCnt = 0, nPhiClusWidthCnt = 0; //cluster position in each phi-layer
69 Identifier stationId, channelId;
70
71 int clusCount[33][9], sigclusCount[33][9];
72 for(size_t kl = 0; kl < 33; kl++ )
73 {
74 for(size_t km = 0; km < 9; km++ )
75 {
76 clusCount[kl][km] = 0;
77 sigclusCount[kl][km] = 0;
78 }
79 }
80
81 // loop over ROD-clusters
82 for(CscRawDataCollection::const_iterator ic = (*it)->begin(); ic != (*it)->end(); ++ic)
83 {
84 const CscRawData *raw = (*ic);
85 if(raw)
86 {
87 // Identify side(A/C), sector(1-16)/layer(1-4)
88 stationId = m_cscRdoDecoderTool->stationIdentifier(raw,&m_idHelperSvc->cscIdHelper());
89 channelId = m_cscRdoDecoderTool->channelIdentifier(raw,&m_idHelperSvc->cscIdHelper(),0);
90 int stationName = m_idHelperSvc->cscIdHelper().stationName(channelId);
91 int chamberType = m_idHelperSvc->cscIdHelper().stationNameIndex("CSS") == stationName ? 0 : 1;
92 int stationEta = m_idHelperSvc->cscIdHelper().stationEta(channelId);
93 int stationPhi = m_idHelperSvc->cscIdHelper().stationPhi(channelId);
94 int wireLayer = m_idHelperSvc->cscIdHelper().wireLayer(channelId);
95 int measuresPhi = m_idHelperSvc->cscIdHelper().measuresPhi(channelId);
96 auto measuresPhi_mon = Monitored::Scalar<int>("measuresPhi_mon", measuresPhi);
97 auto measuresEta = Monitored::Scalar<int>("measuresEta", !measuresPhi );
98
99 // determine the sector number
100 int sectorNo = stationEta * (2 * stationPhi - chamberType);
101
102 // compute the indices to store cluster count
103 int ns = sectorNo < 0 ? sectorNo*(-1) : sectorNo+16; // [-16 -> -1] shifted to [1 -> 16] and [+1 -> +16] shifted to [+17 -> +32]
104 int nl = (measuresPhi ? wireLayer : wireLayer+4); // [ 1 -> 4] (phi-layers) and [5 -> 8] (eta-layers)
105 clusCount[ns][nl]++;
106
107 // indices for ns = [+1 -> +32]; 32 places (index '0' is not counted); allocated 33 places
108 // indices for nl = [+1 -> +8]; 8 places (index '0' is not counted); allocated 9 places
109 ATH_MSG_DEBUG(" ns = " << ns << "\tm_nl = " << nl << "\tm_sec = " << sectorNo << "\t m_lay= " << wireLayer << "\tmPhi = " << measuresPhi);
110
111 // y-axis fill value
112 // sector# +2 layer 1 maps to +2 + 0.2*(1-1) + 0.1 = +2.1
113 // sector# +2 layer 2 maps to +2 + 0.2*(2-1) + 0.1 = +2.3
114 // sector# +2 layer 3 maps to +2 + 0.2*(3-1) + 0.1 = +2.5
115 // sector# +2 layer 4 maps to +2 + 0.2*(4-1) + 0.1 = +2.7
116 auto secLayer = Monitored::Scalar<float>("secLayer",sectorNo + 0.2 * (wireLayer - 1) + 0.1);
117 int xfac = measuresPhi ? -1 : 1; // -48 / +192
118
119 // this way we get 4 time samples per strip
120 ATH_MSG_DEBUG (" Width of ROD cluster : " << raw->width() );
121 uint16_t diff_max = 0., diff = 0.;
122 std::vector<float> xVals;
123
124 // loop over strips in ROD cluster
125 auto raw_clus_width = Monitored::Scalar<size_t>("raw_clus_width",raw->width());
126
127 if (measuresPhi) nPhiClusWidthCnt++;
128 else nEtaClusWidthCnt++;
129 fill("CscRdoMonitor", raw_clus_width, secLayer, measuresPhi_mon, measuresEta);
130
131 // loop over strips
132 for (size_t n = 0; n < raw_clus_width; n++ )
133 {
134 // identify this strip
135 Identifier chID = m_cscRdoDecoderTool->channelIdentifier(raw, &m_idHelperSvc->cscIdHelper(), n);
136 int strip = m_idHelperSvc->cscIdHelper().strip(chID);
137 auto stripId = Monitored::Scalar<float>("stripId",strip * xfac); // x-axis fill value
138 fill("CscRdoMonitor", stripId, secLayer);
139
140 // for every strip that has a hit, store the X,Y values
141 xVals.push_back(stripId);
142
143 // extract the (four) time samples for this strip
144 std::vector<uint16_t> samples;
145 bool extractSamples = raw->samples(n, rdo->numSamples(), samples);
146 uint16_t n_max=0, n_min = 9999;
147
148 // if we have the time samples, identify the max/min sampling values i.e., ADC_max and ADC_min
149 if (extractSamples)
150 {
151 for (size_t np = 0; np < samples.size(); np++)
152 {
153 if(samples[np] < n_min) n_min = samples[np];
154 if(samples[np] > n_max) n_max = samples[np];
155 }
156 // the diff between max and min samplings Delta_ADC = (ADC_max - ADC_min)
157 diff = n_max - n_min;
158
159 // compute the max difference Max_Delta_ADC
160 if(diff > diff_max) diff_max = diff;
161
162 ATH_MSG_DEBUG ( n << " Max = " << n_max << " Min = " << n_min << " Diff = " << diff );
163 } // end if extractSamples
164 } // end for loop over strips in cluster
165
166 ATH_MSG_DEBUG ( " End loop over strips======================" );
167
168 ATH_MSG_DEBUG ( " Max difference : " << diff_max );
169
170 auto diff_max_mon = Monitored::Scalar<uint16_t>("diff_max_mon",diff_max);
171 fill("CscRdoMonitor", diff_max_mon);
172
173 // determine of the cluster is a noise/signal cluster Max_Delta_ADC > NoiseCut
174 bool signal = diff_max > m_cscNoiseCut ? true : false;
175 std::vector<int> tmp_xVals_signal;
176 std::vector<int> tmp_xVals_noise;
177 std::vector<float> tmp_secLayer_signal;
178 std::vector<float> tmp_secLayer_noise;
179
180 if (signal)
181 {
182 sigclusCount[ns][nl]++;
183 for(size_t nf = 0; nf < xVals.size(); nf++)
184 {
185 tmp_xVals_signal.push_back(xVals[nf]);
186 tmp_secLayer_signal.push_back(secLayer);
187 }
188 }
189 else
190 {
191 for(size_t nf = 0; nf < xVals.size(); nf++)
192 {
193 tmp_xVals_noise.push_back(xVals[nf]);
194 tmp_secLayer_noise.push_back(secLayer);
195 }
196 }
197 auto isSignal = Monitored::Scalar<int>("isSignal", (int) signal);
198 auto isNoise = Monitored::Scalar<int>("isNoise", (int) !signal);
199 auto tmp_xVals_signal_mon = Monitored::Collection("tmp_xVals_signal_mon", tmp_xVals_signal);
200 auto tmp_secLayer_sig_mon = Monitored::Collection("tmp_secLayer_sig_mon", tmp_secLayer_signal);
201 auto tmp_secLayer_noise_mon = Monitored::Collection("tmp_secLayer_noise_mon", tmp_secLayer_noise);
202 auto sideC_signal = Monitored::Scalar<int>("sideC_signal", (int) (signal && stationEta == -1));
203 auto sideA_signal = Monitored::Scalar<int>("sideA_signal", (int) (signal && stationEta == 1));
204 auto signal_measuresEta = Monitored::Scalar<int>("signal_measuresEta", (int)(signal && !measuresPhi));
205 auto signal_measuresEta_sideC = Monitored::Scalar<int>("signal_measuresEta_sideC", (int)(signal && !measuresPhi && stationEta == -1));
206 auto signal_measuresEta_sideA = Monitored::Scalar<int>("signal_measuresEta_sideA", (int)(signal && !measuresPhi && stationEta == 1));
207 auto signal_measuresPhi = Monitored::Scalar<int>("signal_measuresPhi", (int)(signal && measuresPhi));
208 auto signal_measuresPhi_sideC = Monitored::Scalar<int>("signal_measuresPhi_sideC", (int)(signal && measuresPhi && stationEta == -1));
209 auto signal_measuresPhi_sideA = Monitored::Scalar<int>("signal_measuresPhi_sideA", (int)(signal && measuresPhi && stationEta == 1));
210 auto tmp_xVals_noise_mon = Monitored::Collection("tmp_xVals_noise_mon", tmp_xVals_noise);
211 auto noise_measuresEta = Monitored::Scalar<int>("noise_measuresEta", (int)(!signal && !measuresPhi ));
212 auto noise_measuresPhi = Monitored::Scalar<int>("noise_measuresPhi", (int)(!signal && measuresPhi ));
213
214 fill("CscRdoMonitor", isSignal, isNoise, secLayer, tmp_secLayer_sig_mon, tmp_secLayer_noise_mon, tmp_xVals_signal_mon, tmp_xVals_noise_mon, raw_clus_width, sideC_signal, sideA_signal, signal_measuresEta, signal_measuresEta_sideC, signal_measuresEta_sideA, signal_measuresPhi, signal_measuresPhi_sideC, signal_measuresPhi_sideA, noise_measuresEta, noise_measuresPhi);
215
216 } // end if raw
217 } // end loop over ROD-clusters
218
219 ATH_MSG_DEBUG ( " End loop over clusters======================" );
220 auto nPhiClusWidthCnt_mon = Monitored::Scalar<size_t>("nPhiClusWidthCnt_mon", nPhiClusWidthCnt);
221 auto nEtaClusWidthCnt_mon = Monitored::Scalar<size_t>("nEtaClusWidthCnt_mon", nEtaClusWidthCnt);
222 fill("CscRdoMonitor", nPhiClusWidthCnt_mon, nEtaClusWidthCnt_mon);
223
224 int numeta = 0, numphi = 0, numetasignal = 0, numphisignal = 0;
225 for(int kl = 1; kl < 33; kl++ )
226 {
227 // int m_sec = kl < 17 ? kl*(-1) : kl; // [1->16](-side) [17-32] (+side)
228 for(int km = 1; km < 9; km++ )
229 {
230 int lay = (km > 4 && km < 9) ? km-4 : km; // 1,2,3,4 (phi-layers) 5-4, 6-4, 7-4, 8-4 (eta-layers)
231 bool mphi = (km > 0 && km < 5) ? true : false; // 1,2,3,4 (phi-layers) 5,6,7,8 (eta-layers)
232 std::string wlay = mphi ? "Phi-Layer " : "Eta-Layer: ";
233 int count = clusCount[kl][km];
234 int scount = sigclusCount[kl][km];
235 int tmp_counts_phi = 0, tmp_counts_eta = 0;
236
237 if(count > 0)
238 {
239 float secLayer = kl-16 + 0.2 * (lay - 1) + 0.1;
240 if(mphi)
241 {
242 numphi += count;
243 if(scount > 0)
244 {
245 numphisignal += scount;
246 tmp_counts_phi = count - scount;
247 }
248 else tmp_counts_phi = count;
249 }
250 else
251 {
252 numeta += count;
253 if(scount > 0)
254 {
255 numetasignal += scount;
256 tmp_counts_eta = count - scount;
257 }
258 else tmp_counts_eta = count;
259 }
260 ATH_MSG_DEBUG ( wlay << "Counts sec: [" << kl-16 << "]\tlayer: [" << km << "] = " << secLayer << "\t = " << count << "\t" << scount);
261
262 auto secLayer_count = Monitored::Scalar<float>("secLayer_count", secLayer);
263 auto mphi_mon = Monitored::Scalar<int>("mphi_mon",(int) ( (count>0) && mphi));
264 auto count_mon = Monitored::Scalar<int>("count_mon", count);
265 auto scount_mon = Monitored::Scalar<int>("scount_mon", scount);
266 auto mphi_scount = Monitored::Scalar<int>("mphi_scount",(int) ( (count>0) && mphi && (scount>0)));
267 auto mphi_inv = Monitored::Scalar<int>("mphi_inv", (int) ( (count>0) && !mphi));
268 auto mphi_inv_scount = Monitored::Scalar<int>("mphi_inv_scount", (int) ( (count>0) && !mphi && (scount>0)));
269 auto tmp_counts_phi_mon = Monitored::Scalar<int>("tmp_counts_phi_mon",tmp_counts_phi);
270 auto tmp_counts_eta_mon = Monitored::Scalar<int>("tmp_counts_eta_mon",tmp_counts_eta);
271
272 fill("CscRdoMonitor", count_mon, secLayer_count, mphi_mon, mphi_scount, scount_mon, tmp_counts_phi_mon, mphi_inv, mphi_inv_scount, tmp_counts_eta_mon);
273 } // end if count
274 }
275 }
276
277 auto numphi_mon = Monitored::Scalar<int>("numphi_mon",numphi);
278 auto numeta_mon = Monitored::Scalar<int>("numeta_mon",numeta);
279 auto numphisignal_mon = Monitored::Scalar<int>("numphisignal_mon",numphisignal);
280 auto numetasignal_mon = Monitored::Scalar<int>("numetasignal_mon",numetasignal);
281 auto diffnumphi = Monitored::Scalar<int>("diffnumphi", numphi-numphisignal);
282 auto diffnumeta = Monitored::Scalar<int>("diffnumeta",numeta-numetasignal);
283
284 fill("CscRdoMonitor", numphi_mon, numeta_mon, numphisignal_mon, numetasignal_mon, diffnumphi, diffnumeta);
285 }
286
287 ATH_MSG_DEBUG ( " END EVENT ============================================ " );
288 ATH_MSG_DEBUG ( "done collecting histograms" );
289 ATH_MSG_DEBUG ( "CSCRdoMon::fillHistograms reports success" );
290
291 return StatusCode::SUCCESS;
292}
Athena::TPCnvVers::Old Athena::TPCnvVers::Current CscRawDataCollection
void diff(const Jet &rJet1, const Jet &rJet2, std::map< std::string, double > varDiff)
Difference between jets - Non-Class function required by trigger.
Definition Jet.cxx:631
uint16_t width() const
Definition CscRawData.h:128
const std::vector< uint16_t > & samples() const
Definition CscRawData.h:130
ServiceHandle< Muon::IMuonIdHelperSvc > m_idHelperSvc
ToolHandle< Muon::ICSC_RDO_Decoder > m_cscRdoDecoderTool
Gaudi::Property< size_t > m_cscNoiseCut
SG::ReadHandleKey< CscRawDataContainer > m_cscRdoKey
DataModel_detail::const_iterator< DataVector > const_iterator
Definition DataVector.h:838
size_type size() const noexcept
Returns the number of elements in the collection.
void fill(const ToolHandle< GenericMonitoringTool > &groupHandle, std::vector< std::reference_wrapper< Monitored::IMonitoredVariable > > &&variables) const
Fills a vector of variables to a group by reference.
int count(std::string s, const std::string &regx)
count how many occurances of a regx are in a string
Definition hcg.cxx:146
ValuesCollection< T > Collection(std::string name, const T &collection)
Declare a monitored (double-convertible) collection.
constexpr uint8_t stationPhi
station Phi 1 to 8
setWord1 uint16_t

◆ filterPassed()

virtual bool AthCommonReentrantAlgorithm< Gaudi::Algorithm >::filterPassed ( const EventContext & ctx) const
inlinevirtualinherited

Definition at line 96 of file AthCommonReentrantAlgorithm.h.

96 {
97 return execState( ctx ).filterPassed();
98 }
virtual bool filterPassed(const EventContext &ctx) const

◆ GetEventInfo()

SG::ReadHandle< xAOD::EventInfo > AthMonitorAlgorithm::GetEventInfo ( const EventContext & ctx) const
inherited

Return a ReadHandle for an EventInfo object (get run/event numbers, etc.)

Parameters
ctxEventContext for the event
Returns
a SG::ReadHandle<xAOD::EventInfo>

Definition at line 111 of file AthMonitorAlgorithm.cxx.

111 {
112 return SG::ReadHandle<xAOD::EventInfo>(m_EventInfoKey, ctx);
113}
SG::ReadHandleKey< xAOD::EventInfo > m_EventInfoKey
Key for retrieving EventInfo from StoreGate.

◆ getGroup()

const ToolHandle< GenericMonitoringTool > & AthMonitorAlgorithm::getGroup ( const std::string & name) const
inherited

Get a specific monitoring tool from the tool handle array.

Finds a specific GenericMonitoringTool instance from the list of monitoring tools (a ToolHandleArray). Throws a FATAL warning if the object found is empty.

Parameters
namestring name of the desired tool
Returns
reference to the desired monitoring tool

Definition at line 168 of file AthMonitorAlgorithm.cxx.

168 {
169 // get the pointer to the tool, and check that it exists
170 auto idx = m_toolLookupMap.find(name);
171 if (ATH_LIKELY(idx != m_toolLookupMap.end())) {
172 return m_tools[idx->second];
173 }
174 else {
175 // treat empty tool handle case as in Monitored::Group
176 if (m_toolLookupMap.empty()) {
177 return m_dummy;
178 }
179
180 if (!isInitialized()) {
182 "It seems that the AthMonitorAlgorithm::initialize was not called "
183 "in derived class initialize method");
184 } else {
185 std::string available = std::accumulate(
186 m_toolLookupMap.begin(), m_toolLookupMap.end(), std::string(""),
187 [](const std::string& s, auto h) { return s + "," + h.first; });
188 ATH_MSG_FATAL("The tool " << name << " could not be found in the tool array of the "
189 << "monitoring algorithm " << m_name << ". This probably reflects a discrepancy between "
190 << "your python configuration and c++ filling code. Note: your available groups are {"
191 << available << "}.");
192 }
193 }
194 return m_dummy;
195}
#define ATH_MSG_FATAL(x)
#define ATH_LIKELY(x)
std::unordered_map< std::string, size_t > m_toolLookupMap
const ToolHandle< GenericMonitoringTool > m_dummy
ToolHandleArray< GenericMonitoringTool > m_tools
Array of Generic Monitoring Tools.

◆ getTrigDecisionTool()

const ToolHandle< Trig::TrigDecisionTool > & AthMonitorAlgorithm::getTrigDecisionTool ( ) const
inherited

Get the trigger decision tool member.

The trigger decision tool is used to check whether a specific trigger is passed by an event.

Returns
m_trigDecTool

Definition at line 198 of file AthMonitorAlgorithm.cxx.

198 {
199 return m_trigDecTool;
200}

◆ initialize()

StatusCode CscRdoValMonAlg::initialize ( )
overridevirtual

initialize

Returns
StatusCode

Reimplemented from AthMonitorAlgorithm.

Definition at line 20 of file CscRdoValMonAlg.cxx.

21{
22 ATH_MSG_DEBUG ("CscRdoValMonAlg : in initialize()");
23 ATH_CHECK(m_idHelperSvc.retrieve());
25 ATH_CHECK(m_cscRdoKey.initialize());
27}
#define ATH_CHECK
Evaluate an expression and check for errors.
virtual StatusCode initialize() override
initialize

◆ inputHandles()

virtual std::vector< Gaudi::DataHandle * > AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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.

◆ isClonable()

◆ msg()

MsgStream & AthCommonMsg< Gaudi::Algorithm >::msg ( ) const
inlineinherited

Definition at line 24 of file AthCommonMsg.h.

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

◆ msgLvl()

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

Definition at line 30 of file AthCommonMsg.h.

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

◆ outputHandles()

virtual std::vector< Gaudi::DataHandle * > AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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 AthMonitorAlgorithm::parseList ( const std::string & line,
std::vector< std::string > & result ) const
virtualinherited

Parse a string into a vector.

The input string is a single long string of all of the trigger names. It parses this string and turns it into a vector, where each element is one trigger or trigger category.

Parameters
lineThe input string.
resultThe parsed output vector of strings.
Returns
StatusCode

Definition at line 345 of file AthMonitorAlgorithm.cxx.

345 {
346 std::string item;
347 std::stringstream ss(line);
348
349 ATH_MSG_DEBUG( "AthMonitorAlgorithm::parseList()" );
350
351 while ( std::getline(ss, item, ',') ) {
352 std::stringstream iss(item); // remove whitespace
353 iss >> item;
354 result.push_back(item);
355 }
356
357 return StatusCode::SUCCESS;
358}
static Double_t ss

◆ 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< Gaudi::Algorithm > >::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< Gaudi::Algorithm > >::renounceArray ( SG::VarHandleKeyArray & handlesArray)
inlineprotectedinherited

remove all handles from I/O resolution

Definition at line 364 of file AthCommonDataStore.h.

364 {
366 }

◆ setFilterPassed()

virtual void AthCommonReentrantAlgorithm< Gaudi::Algorithm >::setFilterPassed ( bool state,
const EventContext & ctx ) const
inlinevirtualinherited

Definition at line 100 of file AthCommonReentrantAlgorithm.h.

100 {
102 }
virtual void setFilterPassed(bool state, const EventContext &ctx) const

◆ sysExecute()

StatusCode AthCommonReentrantAlgorithm< Gaudi::Algorithm >::sysExecute ( const EventContext & ctx)
overridevirtualinherited

Execute an algorithm.

We override this in order to work around an issue with the Algorithm base class storing the event context in a member variable that can cause crashes in MT jobs.

Definition at line 85 of file AthCommonReentrantAlgorithm.cxx.

77{
78 return BaseAlg::sysExecute (ctx);
79}

◆ sysInitialize()

StatusCode AthCommonReentrantAlgorithm< Gaudi::Algorithm >::sysInitialize ( )
overridevirtualinherited

Override sysInitialize.

Override sysInitialize from the base class.

Loop through all output handles, and if they're WriteCondHandles, automatically register them and this Algorithm with the CondSvc

Scan through all outputHandles, and if they're WriteCondHandles, register them with the CondSvc

Reimplemented from AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >.

Reimplemented in HypoBase, and InputMakerBase.

Definition at line 61 of file AthCommonReentrantAlgorithm.cxx.

107 {
109
110 if (sc.isFailure()) {
111 return sc;
112 }
113
114 ServiceHandle<ICondSvc> cs("CondSvc",name());
115 for (auto h : outputHandles()) {
116 if (h->isCondition() && h->mode() == Gaudi::DataHandle::Writer) {
117 // do this inside the loop so we don't create the CondSvc until needed
118 if ( cs.retrieve().isFailure() ) {
119 ATH_MSG_WARNING("no CondSvc found: won't autoreg WriteCondHandles");
120 return StatusCode::SUCCESS;
121 }
122 if (cs->regHandle(this,*h).isFailure()) {
124 ATH_MSG_ERROR("unable to register WriteCondHandle " << h->fullKey()
125 << " with CondSvc");
126 }
127 }
128 }
129 return sc;
130}
#define ATH_MSG_ERROR(x)
virtual std::vector< Gaudi::DataHandle * > outputHandles() const override

◆ sysStart()

virtual StatusCode AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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.

◆ trigChainsArePassed()

bool AthMonitorAlgorithm::trigChainsArePassed ( const std::vector< std::string > & vTrigNames) const
inherited

Check whether triggers are passed.

For the event, use the trigger decision tool to check that at least one of the triggers listed in the supplied vector is passed.

Parameters
vTrigNamesList of trigger names.
Returns
If empty input, default to true. If at least one trigger is specified, returns whether at least one trigger was passed.

Definition at line 203 of file AthMonitorAlgorithm.cxx.

203 {
204
205
206 // If no triggers were given, return true.
207 if (vTrigNames.empty()) return true;
208
209
210 // Trigger: Check if this Algorithm is being run as an Express Stream job.
211 // Events are entering the express stream are chosen randomly, and by chain,
212 // Hence an additional check should be aplied to see if the chain(s)
213 // monitored here are responsible for the event being selected for
214 // the express stream.
215
216 const auto group = m_trigDecTool->getChainGroup(vTrigNames);
218 const auto passedBits = m_trigDecTool->isPassedBits(group);
219 bool expressPass = passedBits & TrigDefs::Express_passed; //bitwise AND
220 if(!expressPass) {
221 return false;
222 }
223 }
224
225 // monitor the event if any of the chains in the chain group passes the event.
226 return group->isPassed();
227
228}
Gaudi::Property< bool > m_enforceExpressTriggers

◆ updateVHKA()

void AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::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 }

Member Data Documentation

◆ m_cscNoiseCut

Gaudi::Property<size_t> CscRdoValMonAlg::m_cscNoiseCut {this, "cscNoiseCut", 50}
private

Definition at line 28 of file CscRdoValMonAlg.h.

28{this, "cscNoiseCut", 50};

◆ m_cscRdoDecoderTool

ToolHandle<Muon::ICSC_RDO_Decoder> CscRdoValMonAlg::m_cscRdoDecoderTool {this,"CscRDODecoder","Muon::CscRDO_Decoder","Muon::CscRDO_Decoder"}
private

Definition at line 30 of file CscRdoValMonAlg.h.

30{this,"CscRDODecoder","Muon::CscRDO_Decoder","Muon::CscRDO_Decoder"};

◆ m_cscRdoKey

SG::ReadHandleKey<CscRawDataContainer> CscRdoValMonAlg::m_cscRdoKey {this,"CSCRawDataKey","CSCRDO","CSC RDO"}
private

Definition at line 31 of file CscRdoValMonAlg.h.

31{this,"CSCRawDataKey","CSCRDO","CSC RDO"};

◆ m_dataType

AthMonitorAlgorithm::DataType_t AthMonitorAlgorithm::m_dataType
protectedinherited

Instance of the DataType_t enum.

Definition at line 356 of file AthMonitorAlgorithm.h.

◆ m_dataTypeStr

Gaudi::Property<std::string> AthMonitorAlgorithm::m_dataTypeStr {this,"DataType","userDefined"}
protectedinherited

DataType string pulled from the job option and converted to enum.

Definition at line 358 of file AthMonitorAlgorithm.h.

358{this,"DataType","userDefined"};

◆ m_defaultLBDuration

Gaudi::Property<float> AthMonitorAlgorithm::m_defaultLBDuration {this,"DefaultLBDuration",60.}
protectedinherited

Default duration of one lumi block.

Definition at line 365 of file AthMonitorAlgorithm.h.

365{this,"DefaultLBDuration",60.};

◆ m_detailLevel

Gaudi::Property<int> AthMonitorAlgorithm::m_detailLevel {this,"DetailLevel",0}
protectedinherited

Sets the level of detail used in the monitoring.

Definition at line 366 of file AthMonitorAlgorithm.h.

366{this,"DetailLevel",0};

◆ m_detStore

StoreGateSvc_t AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::m_detStore
privateinherited

Pointer to StoreGate (detector store by default)

Definition at line 393 of file AthCommonDataStore.h.

◆ m_DQFilterTools

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

Array of Data Quality filter tools.

Definition at line 346 of file AthMonitorAlgorithm.h.

346{this,"FilterTools",{}};

◆ m_dummy

const ToolHandle<GenericMonitoringTool> AthMonitorAlgorithm::m_dummy
privateinherited

Definition at line 374 of file AthMonitorAlgorithm.h.

◆ m_enforceExpressTriggers

Gaudi::Property<bool> AthMonitorAlgorithm::m_enforceExpressTriggers
privateinherited
Initial value:
{this,
"EnforceExpressTriggers", false,
"Requires that matched triggers made the event enter the express stream"}

Definition at line 377 of file AthMonitorAlgorithm.h.

377 {this,
378 "EnforceExpressTriggers", false,
379 "Requires that matched triggers made the event enter the express stream"};

◆ m_environment

AthMonitorAlgorithm::Environment_t AthMonitorAlgorithm::m_environment
protectedinherited

Instance of the Environment_t enum.

Definition at line 355 of file AthMonitorAlgorithm.h.

◆ m_environmentStr

Gaudi::Property<std::string> AthMonitorAlgorithm::m_environmentStr {this,"Environment","user"}
protectedinherited

Environment string pulled from the job option and converted to enum.

Definition at line 357 of file AthMonitorAlgorithm.h.

357{this,"Environment","user"};

◆ m_EventInfoKey

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

Key for retrieving EventInfo from StoreGate.

Definition at line 367 of file AthMonitorAlgorithm.h.

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

◆ m_evtStore

StoreGateSvc_t AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::m_evtStore
privateinherited

Pointer to StoreGate (event store by default)

Definition at line 390 of file AthCommonDataStore.h.

◆ m_extendedExtraObjects

DataObjIDColl AthCommonReentrantAlgorithm< Gaudi::Algorithm >::m_extendedExtraObjects
privateinherited

Extra output dependency collection, extended by AthAlgorithmDHUpdate to add symlinks.

Empty if no symlinks were found.

Definition at line 114 of file AthCommonReentrantAlgorithm.h.

◆ m_fileKey

Gaudi::Property<std::string> AthMonitorAlgorithm::m_fileKey {this,"FileKey",""}
protectedinherited

Internal Athena name for file.

Definition at line 363 of file AthMonitorAlgorithm.h.

363{this,"FileKey",""};

◆ m_idHelperSvc

ServiceHandle<Muon::IMuonIdHelperSvc> CscRdoValMonAlg::m_idHelperSvc {this, "MuonIdHelperSvc", "Muon::MuonIdHelperSvc/MuonIdHelperSvc"}
private

Definition at line 29 of file CscRdoValMonAlg.h.

29{this, "MuonIdHelperSvc", "Muon::MuonIdHelperSvc/MuonIdHelperSvc"};

◆ m_lbDurationDataKey

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

Definition at line 350 of file AthMonitorAlgorithm.h.

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

◆ m_lumiDataKey

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

Definition at line 348 of file AthMonitorAlgorithm.h.

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

◆ m_name

std::string AthMonitorAlgorithm::m_name
privateinherited

Definition at line 371 of file AthMonitorAlgorithm.h.

◆ m_toolLookupMap

std::unordered_map<std::string, size_t> AthMonitorAlgorithm::m_toolLookupMap
privateinherited

Definition at line 372 of file AthMonitorAlgorithm.h.

◆ m_tools

ToolHandleArray<GenericMonitoringTool> AthMonitorAlgorithm::m_tools {this,"GMTools",{}}
protectedinherited

Array of Generic Monitoring Tools.

Definition at line 341 of file AthMonitorAlgorithm.h.

341{this,"GMTools",{}};

◆ m_trigDecTool

PublicToolHandle<Trig::TrigDecisionTool> AthMonitorAlgorithm::m_trigDecTool
protectedinherited

Tool to tell whether a specific trigger is passed.

Definition at line 345 of file AthMonitorAlgorithm.h.

◆ m_triggerChainString

Gaudi::Property<std::string> AthMonitorAlgorithm::m_triggerChainString {this,"TriggerChain",""}
protectedinherited

Trigger chain string pulled from the job option and parsed into a vector.

Definition at line 360 of file AthMonitorAlgorithm.h.

360{this,"TriggerChain",""};

◆ m_trigLiveFractionDataKey

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

Definition at line 352 of file AthMonitorAlgorithm.h.

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

◆ m_useLumi

Gaudi::Property<bool> AthMonitorAlgorithm::m_useLumi {this,"EnableLumi",false}
protectedinherited

Allows use of various luminosity functions.

Definition at line 364 of file AthMonitorAlgorithm.h.

364{this,"EnableLumi",false};

◆ m_varHandleArraysDeclared

bool AthCommonDataStore< AthCommonMsg< Gaudi::Algorithm > >::m_varHandleArraysDeclared
privateinherited

Definition at line 399 of file AthCommonDataStore.h.

◆ m_vhka

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

Definition at line 398 of file AthCommonDataStore.h.

◆ m_vTrigChainNames

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

Vector of trigger chain names parsed from trigger chain string.

Definition at line 361 of file AthMonitorAlgorithm.h.


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