Belle II Software development
ECLConnectedRegion Class Reference

Class to store connected regions (CRs) More...

#include <ECLConnectedRegion.h>

Inheritance diagram for ECLConnectedRegion:
RelationsInterface< BASE >

Public Member Functions

 ECLConnectedRegion ()
 default constructor for ROOT
 
void setCRId (int CRId)
 Set CR identifier.
 
void setIsTrack (bool IsTrack)
 Set track or not.
 
void setLikelihoodMIPNGamma (float likelihood)
 Set Likelihood for MIPNGamma.
 
void setLikelihoodChargedHadron (float likelihood)
 Set Likelihood for Charged Hadron.
 
void setLikelihoodElectronNGamma (float likelihood)
 Set Likelihood for ElectronNGamma.
 
void setLikelihoodNGamma (float likelihood)
 Set Likelihood for NGamma.
 
void setLikelihoodNeutralHadron (float likelihood)
 Set Likelihood for Neutral Hadron.
 
void setLikelihoodMergedPi0 (float likelihood)
 Set Likelihood for MergedPi0.
 
int getCRId () const
 Get CR identifieer.
 
bool isTrack () const
 Get boolean to flag if a track is matched to the CR.
 
float getLikelihoodMIPNGamma () const
 Get MIPNGamma likelihood (ECL based only) T1.
 
float getLikelihoodChargedHadron () const
 Get Charged Hadron likelihood (ECL based only) T2.
 
float getLikelihoodElectronNGamma () const
 Get ElectronNGamma likelihood (ECL based only) T3.
 
float getLikelihoodNGamma () const
 Get NGamma likelihood (ECL based only) N1.
 
float getLikelihoodNeutralHadron () const
 Get Neutral Hadron likelihood (ECL based only) N2.
 
float getLikelihoodMergedPi0 () const
 Get Merged Pi0 likelihood (ECL based only) N3.
 
void addRelationTo (const RelationsInterface< BASE > *object, float weight=1.0, const std::string &namedRelation="") const
 Add a relation from this object to another object (with caching).
 
void addRelationTo (const TObject *object, float weight=1.0, const std::string &namedRelation="") const
 Add a relation from this object to another object (no caching, can be quite slow).
 
void copyRelations (const RelationsInterface< BASE > *sourceObj)
 Copies all relations of sourceObj (pointing from or to sourceObj) to this object (including weights).
 
template<class TO >
RelationVector< TO > getRelationsTo (const std::string &name="", const std::string &namedRelation="") const
 Get the relations that point from this object to another store array.
 
template<class FROM >
RelationVector< FROM > getRelationsFrom (const std::string &name="", const std::string &namedRelation="") const
 Get the relations that point from another store array to this object.
 
template<class T >
RelationVector< T > getRelationsWith (const std::string &name="", const std::string &namedRelation="") const
 Get the relations between this object and another store array.
 
template<class TO >
TO * getRelatedTo (const std::string &name="", const std::string &namedRelation="") const
 Get the object to which this object has a relation.
 
template<class FROM >
FROM * getRelatedFrom (const std::string &name="", const std::string &namedRelation="") const
 Get the object from which this object has a relation.
 
template<class T >
T * getRelated (const std::string &name="", const std::string &namedRelation="") const
 Get the object to or from which this object has a relation.
 
template<class TO >
std::pair< TO *, float > getRelatedToWithWeight (const std::string &name="", const std::string &namedRelation="") const
 Get first related object & weight of relation pointing to an array.
 
template<class FROM >
std::pair< FROM *, float > getRelatedFromWithWeight (const std::string &name="", const std::string &namedRelation="") const
 Get first related object & weight of relation pointing from an array.
 
template<class T >
std::pair< T *, float > getRelatedWithWeight (const std::string &name="", const std::string &namedRelation="") const
 Get first related object & weight of relation pointing from/to an array.
 
virtual std::string getName () const
 Return a short name that describes this object, e.g.
 
virtual std::string getInfoHTML () const
 Return a short summary of this object's contents in HTML format.
 
std::string getInfo () const
 Return a short summary of this object's contents in raw text format.
 
std::string getArrayName () const
 Get name of array this object is stored in, or "" if not found.
 
int getArrayIndex () const
 Returns this object's array index (in StoreArray), or -1 if not found.
 

Protected Member Functions

TClonesArray * getArrayPointer () const
 Returns the pointer to the raw DataStore array holding this object (protected since these arrays are easy to misuse).
 

Private Member Functions

 ClassDef (ECLConnectedRegion, 2)
 ClassDef.
 

Private Attributes

int m_CRId
 CR ID.
 
bool m_IsTrack
 true if a track is matched to the connected region
 
float m_LikelihoodMIPNGamma
 likelihood for T1 (MIP and any photons (including no photons)
 
float m_LikelihoodChargedHadron
 likelihood for T2 (charged hadron)
 
float m_LikelihoodElectronNGamma
 likelihood for T3 (electron and any photons (including no photons)
 
float m_LikelihoodNGamma
 likelihood for N1 (all photons)
 
float m_LikelihoodNeutralHadron
 likelihood for N2 (neutral hadron)
 
float m_LikelihoodMergedPi0
 likelihood for N3 (merged pi0)
 
DataStore::StoreEntrym_cacheDataStoreEntry
 Cache of the data store entry to which this object belongs.
 
int m_cacheArrayIndex
 Cache of the index in the TClonesArray to which this object belongs.
 

Detailed Description

Class to store connected regions (CRs)

Definition at line 21 of file ECLConnectedRegion.h.

Constructor & Destructor Documentation

◆ ECLConnectedRegion()

ECLConnectedRegion ( )
inline

default constructor for ROOT

< CR identifier

< track or no track?

< Likelihood for MIPNGamma

< Likelihood for Charged Hadron

< Likelihood for ElectronNGamma

< Likelihood for NGamma

< Likelihood for Neutral Hadron

< Likelihood for MergedPi0

Definition at line 25 of file ECLConnectedRegion.h.

26 {
27 m_CRId = 0;
28 m_IsTrack = false;
32 m_LikelihoodNGamma = -1.0;
35 }
bool m_IsTrack
true if a track is matched to the connected region
float m_LikelihoodNGamma
likelihood for N1 (all photons)
float m_LikelihoodMergedPi0
likelihood for N3 (merged pi0)
float m_LikelihoodChargedHadron
likelihood for T2 (charged hadron)
float m_LikelihoodNeutralHadron
likelihood for N2 (neutral hadron)
float m_LikelihoodElectronNGamma
likelihood for T3 (electron and any photons (including no photons)
float m_LikelihoodMIPNGamma
likelihood for T1 (MIP and any photons (including no photons)

Member Function Documentation

◆ addRelationTo() [1/2]

void addRelationTo ( const RelationsInterface< BASE > *  object,
float  weight = 1.0,
const std::string &  namedRelation = "" 
) const
inlineinherited

Add a relation from this object to another object (with caching).

Parameters
objectThe object to which the relation should point.
weightThe weight of the relation.
namedRelationAdditional name for the relation, or "" for the default naming

Definition at line 142 of file RelationsObject.h.

143 {
144 if (object)
146 object, object->m_cacheDataStoreEntry, object->m_cacheArrayIndex, weight, namedRelation);
147 }
void addRelation(const TObject *fromObject, StoreEntry *&fromEntry, int &fromIndex, const TObject *toObject, StoreEntry *&toEntry, int &toIndex, float weight, const std::string &namedRelation)
Add a relation from an object in a store array to another object in a store array.
Definition: DataStore.cc:492
static DataStore & Instance()
Instance of singleton Store.
Definition: DataStore.cc:54
DataStore::StoreEntry * m_cacheDataStoreEntry
Cache of the data store entry to which this object belongs.
int m_cacheArrayIndex
Cache of the index in the TClonesArray to which this object belongs.

◆ addRelationTo() [2/2]

void addRelationTo ( const TObject *  object,
float  weight = 1.0,
const std::string &  namedRelation = "" 
) const
inlineinherited

Add a relation from this object to another object (no caching, can be quite slow).

Parameters
objectThe object to which the relation should point.
weightThe weight of the relation.
namedRelationAdditional name for the relation, or "" for the default naming

Definition at line 155 of file RelationsObject.h.

156 {
157 StoreEntry* toEntry = nullptr;
158 int toIndex = -1;
159 DataStore::Instance().addRelation(this, m_cacheDataStoreEntry, m_cacheArrayIndex, object, toEntry, toIndex, weight, namedRelation);
160 }

◆ copyRelations()

void copyRelations ( const RelationsInterface< BASE > *  sourceObj)
inlineinherited

Copies all relations of sourceObj (pointing from or to sourceObj) to this object (including weights).

Useful if you want to make a complete copy of a StoreArray object to make modifications to it, but retain all information on linked objects.

Note: this only works if sourceObj inherits from the same base (e.g. RelationsObject), and only for related objects that also inherit from the same base.

Definition at line 170 of file RelationsObject.h.

171 {
172 if (!sourceObj)
173 return;
174 auto fromRels = sourceObj->getRelationsFrom<RelationsInterface<BASE>>("ALL");
175 for (unsigned int iRel = 0; iRel < fromRels.size(); iRel++) {
176 fromRels.object(iRel)->addRelationTo(this, fromRels.weight(iRel));
177 }
178
179 auto toRels = sourceObj->getRelationsTo<RelationsInterface<BASE>>("ALL");
180 for (unsigned int iRel = 0; iRel < toRels.size(); iRel++) {
181 this->addRelationTo(toRels.object(iRel), toRels.weight(iRel));
182 }
183 }
void addRelationTo(const RelationsInterface< BASE > *object, float weight=1.0, const std::string &namedRelation="") const
Add a relation from this object to another object (with caching).

◆ getArrayIndex()

int getArrayIndex ( ) const
inlineinherited

Returns this object's array index (in StoreArray), or -1 if not found.

Definition at line 385 of file RelationsObject.h.

386 {
388 return m_cacheArrayIndex;
389 }
bool findStoreEntry(const TObject *object, StoreEntry *&entry, int &index)
Find an object in an array in the data store.
Definition: DataStore.cc:398

◆ getArrayName()

std::string getArrayName ( ) const
inlineinherited

Get name of array this object is stored in, or "" if not found.

Definition at line 377 of file RelationsObject.h.

◆ getArrayPointer()

TClonesArray * getArrayPointer ( ) const
inlineprotectedinherited

Returns the pointer to the raw DataStore array holding this object (protected since these arrays are easy to misuse).

Definition at line 418 of file RelationsObject.h.

419 {
422 return nullptr;
424 }
TClonesArray * getPtrAsArray() const
Return ptr cast to TClonesArray.
Definition: StoreEntry.cc:83

◆ getCRId()

int getCRId ( ) const
inline

Get CR identifieer.

Returns
CRId

Definition at line 74 of file ECLConnectedRegion.h.

74{ return m_CRId; }

◆ getInfo()

std::string getInfo ( ) const
inlineinherited

Return a short summary of this object's contents in raw text format.

Returns the contents of getInfoHTML() while translating line-breaks etc.

Note
: You don't need to implement this function (it's not virtual), getInfoHTML() is enough.

Definition at line 370 of file RelationsObject.h.

371 {
373 }
virtual std::string getInfoHTML() const
Return a short summary of this object's contents in HTML format.
std::string htmlToPlainText(const std::string &html)
See RelationsObject::getInfo()

◆ getInfoHTML()

virtual std::string getInfoHTML ( ) const
inlinevirtualinherited

Return a short summary of this object's contents in HTML format.

Reimplement this in your own class to provide useful output for display or debugging purposes. For example, you might do something like:

std::stringstream out;
out << "<b>PDG</b>: " << m_pdg << "<br>";
out << "<b>Covariance Matrix</b>: " << HTML::getString(getCovariance5()) << "<br>";
return out.str();
std::string getString(const TMatrixFBase &matrix, int precision=2, bool color=true)
get HTML table representing a matrix.
Definition: HTML.cc:24
See also
Particle::getInfoHTML() for a more complex example.
HTML for some utility functions.
Use getInfo() to get a raw text version of this output.

Reimplemented in Particle, Cluster, MCParticle, PIDLikelihood, SoftwareTriggerResult, Track, TrackFitResult, TRGSummary, and RecoTrack.

Definition at line 362 of file RelationsObject.h.

362{ return ""; }

◆ getLikelihoodChargedHadron()

float getLikelihoodChargedHadron ( ) const
inline

Get Charged Hadron likelihood (ECL based only) T2.

Returns
LikelihoodChargedHadron

Definition at line 89 of file ECLConnectedRegion.h.

◆ getLikelihoodElectronNGamma()

float getLikelihoodElectronNGamma ( ) const
inline

Get ElectronNGamma likelihood (ECL based only) T3.

Returns
LikelihoodElectronNGamma

Definition at line 94 of file ECLConnectedRegion.h.

◆ getLikelihoodMergedPi0()

float getLikelihoodMergedPi0 ( ) const
inline

Get Merged Pi0 likelihood (ECL based only) N3.

Returns
LikelihoodMergedPi0

Definition at line 109 of file ECLConnectedRegion.h.

109{ return m_LikelihoodMergedPi0; }

◆ getLikelihoodMIPNGamma()

float getLikelihoodMIPNGamma ( ) const
inline

Get MIPNGamma likelihood (ECL based only) T1.

Returns
LikelihoodMIPNGamma

Definition at line 84 of file ECLConnectedRegion.h.

84{ return m_LikelihoodMIPNGamma; }

◆ getLikelihoodNeutralHadron()

float getLikelihoodNeutralHadron ( ) const
inline

Get Neutral Hadron likelihood (ECL based only) N2.

Returns
LikelihoodNeutralHadron

Definition at line 104 of file ECLConnectedRegion.h.

◆ getLikelihoodNGamma()

float getLikelihoodNGamma ( ) const
inline

Get NGamma likelihood (ECL based only) N1.

Returns
LikelihoodNGamma

Definition at line 99 of file ECLConnectedRegion.h.

99{ return m_LikelihoodNGamma; }

◆ getName()

virtual std::string getName ( ) const
inlinevirtualinherited

Return a short name that describes this object, e.g.

pi+ for an MCParticle.

Reimplemented in Particle, MCParticle, and SpacePoint.

Definition at line 344 of file RelationsObject.h.

344{ return ""; }

◆ getRelated()

T * getRelated ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the object to or from which this object has a relation.

Template Parameters
TThe class of objects to or from which the relation points.
Parameters
nameThe name of the store array to or from which the relation points. If empty the default store array name for class T will be used. If the special name "ALL" is given all store arrays containing objects of type T are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
The first related object or a null pointer.

Definition at line 278 of file RelationsObject.h.

279 {
281 T::Class(), name, namedRelation).object);
282 }
@ c_BothSides
Combination of c_FromSide and c_ToSide.
Definition: DataStore.h:79
Belle2::RelationEntry getRelationWith(ESearchSide searchSide, const TObject *object, StoreEntry *&entry, int &index, const TClass *withClass, const std::string &withName, const std::string &namedRelation)
Get the first relation between an object and another object in a store array.
Definition: DataStore.cc:597
TObject * object
Pointer to the object.
Definition: RelationEntry.h:32

◆ getRelatedFrom()

FROM * getRelatedFrom ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the object from which this object has a relation.

Template Parameters
FROMThe class of objects from which the relation points.
Parameters
nameThe name of the store array from which the relation points. If empty the default store array name for class FROM will be used. If the special name "ALL" is given all store arrays containing objects of type FROM are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
The first related object or a null pointer.

Definition at line 263 of file RelationsObject.h.

264 {
266 m_cacheArrayIndex, FROM::Class(), name, namedRelation).object);
267 }
@ c_FromSide
Return relations/objects pointed from (to a given object).
Definition: DataStore.h:77

◆ getRelatedFromWithWeight()

std::pair< FROM *, float > getRelatedFromWithWeight ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get first related object & weight of relation pointing from an array.

Template Parameters
FROMThe class of objects from which the relation points.
Parameters
nameThe name of the store array from which the relation points. If empty the default store array name for class FROM will be used. If the special name "ALL" is given all store arrays containing objects of type FROM are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
Pair of first related object and the relation weight, or (NULL, 1.0) if none found.

Definition at line 314 of file RelationsObject.h.

316 {
318 FROM::Class(), name, namedRelation);
319 return std::make_pair(static_cast<FROM*>(entry.object), entry.weight);
320 }

◆ getRelatedTo()

TO * getRelatedTo ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the object to which this object has a relation.

Template Parameters
TOThe class of objects to which the relation points.
Parameters
nameThe name of the store array to which the relation points. If empty the default store array name for class TO will be used. If the special name "ALL" is given all store arrays containing objects of type TO are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
The first related object or a null pointer.

Definition at line 248 of file RelationsObject.h.

249 {
251 TO::Class(), name, namedRelation).object);
252 }
@ c_ToSide
Return relations/objects pointed to (from a given object).
Definition: DataStore.h:78

◆ getRelatedToWithWeight()

std::pair< TO *, float > getRelatedToWithWeight ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get first related object & weight of relation pointing to an array.

Template Parameters
TOThe class of objects to which the relation points.
Parameters
nameThe name of the store array to which the relation points. If empty the default store array name for class TO will be used. If the special name "ALL" is given all store arrays containing objects of type TO are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
Pair of first related object and the relation weight, or (NULL, 1.0) if none found.

Definition at line 297 of file RelationsObject.h.

299 {
301 TO::Class(), name, namedRelation);
302 return std::make_pair(static_cast<TO*>(entry.object), entry.weight);
303 }

◆ getRelatedWithWeight()

std::pair< T *, float > getRelatedWithWeight ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get first related object & weight of relation pointing from/to an array.

Template Parameters
TThe class of objects to or from which the relation points.
Parameters
nameThe name of the store array to or from which the relation points. If empty the default store array name for class T will be used. If the special name "ALL" is given all store arrays containing objects of type T are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
Pair of first related object and the relation weight, or (NULL, 1.0) if none found.

Definition at line 331 of file RelationsObject.h.

333 {
335 T::Class(), name, namedRelation);
336 return std::make_pair(static_cast<T*>(entry.object), entry.weight);
337 }

◆ getRelationsFrom()

RelationVector< FROM > getRelationsFrom ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the relations that point from another store array to this object.

Template Parameters
FROMThe class of objects from which the relations point.
Parameters
nameThe name of the store array from which the relations point. If empty the default store array name for class FROM will be used. If the special name "ALL" is given all store arrays containing objects of type FROM are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
A vector of relations.

Definition at line 212 of file RelationsObject.h.

214 {
216 m_cacheArrayIndex, FROM::Class(), name, namedRelation));
217 }
RelationVector< T > getRelationsWith(const std::string &name="", const std::string &namedRelation="") const
Get the relations between this object and another store array.

◆ getRelationsTo()

RelationVector< TO > getRelationsTo ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the relations that point from this object to another store array.

Template Parameters
TOThe class of objects to which the relations point.
Parameters
nameThe name of the store array to which the relations point. If empty the default store array name for class TO will be used. If the special name "ALL" is given all store arrays containing objects of type TO are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
A vector of relations.

Definition at line 197 of file RelationsObject.h.

198 {
200 m_cacheArrayIndex, TO::Class(), name, namedRelation));
201 }

◆ getRelationsWith()

RelationVector< T > getRelationsWith ( const std::string &  name = "",
const std::string &  namedRelation = "" 
) const
inlineinherited

Get the relations between this object and another store array.

Relations in both directions are returned.

Template Parameters
TThe class of objects to or from which the relations point.
Parameters
nameThe name of the store array to or from which the relations point. If empty the default store array name for class T will be used. If the special name "ALL" is given all store arrays containing objects of type T are considered.
namedRelationAdditional name for the relation, or "" for the default naming
Returns
A vector of relations.

Definition at line 230 of file RelationsObject.h.

231 {
233 m_cacheArrayIndex, T::Class(), name, namedRelation));
234 }

◆ isTrack()

bool isTrack ( ) const
inline

Get boolean to flag if a track is matched to the CR.

Returns
IsTrack

Definition at line 79 of file ECLConnectedRegion.h.

79{ return m_IsTrack; }

◆ setCRId()

void setCRId ( int  CRId)
inline

Set CR identifier.

Definition at line 40 of file ECLConnectedRegion.h.

40{ m_CRId = CRId; }

◆ setIsTrack()

void setIsTrack ( bool  IsTrack)
inline

Set track or not.

Definition at line 44 of file ECLConnectedRegion.h.

44{ m_IsTrack = IsTrack; }

◆ setLikelihoodChargedHadron()

void setLikelihoodChargedHadron ( float  likelihood)
inline

Set Likelihood for Charged Hadron.

Definition at line 52 of file ECLConnectedRegion.h.

52{ m_LikelihoodChargedHadron = likelihood; }

◆ setLikelihoodElectronNGamma()

void setLikelihoodElectronNGamma ( float  likelihood)
inline

Set Likelihood for ElectronNGamma.

Definition at line 56 of file ECLConnectedRegion.h.

56{ m_LikelihoodElectronNGamma = likelihood; }

◆ setLikelihoodMergedPi0()

void setLikelihoodMergedPi0 ( float  likelihood)
inline

Set Likelihood for MergedPi0.

Definition at line 68 of file ECLConnectedRegion.h.

68{ m_LikelihoodMergedPi0 = likelihood; }

◆ setLikelihoodMIPNGamma()

void setLikelihoodMIPNGamma ( float  likelihood)
inline

Set Likelihood for MIPNGamma.

Definition at line 48 of file ECLConnectedRegion.h.

48{ m_LikelihoodMIPNGamma = likelihood; }

◆ setLikelihoodNeutralHadron()

void setLikelihoodNeutralHadron ( float  likelihood)
inline

Set Likelihood for Neutral Hadron.

Definition at line 64 of file ECLConnectedRegion.h.

64{ m_LikelihoodNeutralHadron = likelihood; }

◆ setLikelihoodNGamma()

void setLikelihoodNGamma ( float  likelihood)
inline

Set Likelihood for NGamma.

Definition at line 60 of file ECLConnectedRegion.h.

60{ m_LikelihoodNGamma = likelihood; }

Member Data Documentation

◆ m_cacheArrayIndex

int m_cacheArrayIndex
mutableprivateinherited

Cache of the index in the TClonesArray to which this object belongs.

Definition at line 432 of file RelationsObject.h.

◆ m_cacheDataStoreEntry

DataStore::StoreEntry* m_cacheDataStoreEntry
mutableprivateinherited

Cache of the data store entry to which this object belongs.

Definition at line 429 of file RelationsObject.h.

◆ m_CRId

int m_CRId
private

CR ID.

Definition at line 112 of file ECLConnectedRegion.h.

◆ m_IsTrack

bool m_IsTrack
private

true if a track is matched to the connected region

Definition at line 113 of file ECLConnectedRegion.h.

◆ m_LikelihoodChargedHadron

float m_LikelihoodChargedHadron
private

likelihood for T2 (charged hadron)

Definition at line 115 of file ECLConnectedRegion.h.

◆ m_LikelihoodElectronNGamma

float m_LikelihoodElectronNGamma
private

likelihood for T3 (electron and any photons (including no photons)

Definition at line 116 of file ECLConnectedRegion.h.

◆ m_LikelihoodMergedPi0

float m_LikelihoodMergedPi0
private

likelihood for N3 (merged pi0)

Definition at line 119 of file ECLConnectedRegion.h.

◆ m_LikelihoodMIPNGamma

float m_LikelihoodMIPNGamma
private

likelihood for T1 (MIP and any photons (including no photons)

Definition at line 114 of file ECLConnectedRegion.h.

◆ m_LikelihoodNeutralHadron

float m_LikelihoodNeutralHadron
private

likelihood for N2 (neutral hadron)

Definition at line 118 of file ECLConnectedRegion.h.

◆ m_LikelihoodNGamma

float m_LikelihoodNGamma
private

likelihood for N1 (all photons)

Definition at line 117 of file ECLConnectedRegion.h.


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