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LArPhysWaveSubsetCnv_p1 Class Reference

#include <LArPhysWaveSubsetCnv_p1.h>

Inheritance diagram for LArPhysWaveSubsetCnv_p1:
Collaboration diagram for LArPhysWaveSubsetCnv_p1:

Public Types

using base_class = TPConverterConstBase
typedef TRANS Trans_t
typedef PERS Pers_t
typedef PERS PersBase_t
typedef TRANS TransBase_t
typedef ITPConverterFor< TRANS > PolyCnvBase_t
typedef Gaudi::PluginService::Factory< ITPCnvBase *()> Factory

Public Member Functions

 LArPhysWaveSubsetCnv_p1 ()
virtual void persToTrans (const LArPWPersType *persObj, LArPWTransType *transObj, MsgStream &log) const override
virtual void transToPers (const LArPWTransType *transObj, LArPWPersType *persObj, MsgStream &log) const override
virtual void transToPers (const TRANS *transObj, PERS *persObj, MsgStream &log) const=0
 Convert transient representation to persistent one.
virtual void transToPers (const TRANS *transObj, PERS *persObj, MsgStream &log) override final
 Convert transient representation to persistent one.
virtual void persToTrans (const PERS *persObj, TRANS *transObj, MsgStream &log) const=0
 Convert persistent representation to transient one.
virtual void persToTrans (const PERS *persObj, TRANS *transObj, MsgStream &log) override final
 Convert persistent representation to transient one.
virtual TRANS * createTransientConst (const PERS *persObj, MsgStream &log) const
virtual PERScreatePersistentConst (const TRANS *transObj, MsgStream &log) const
virtual TPObjRef virt_toPersistent (const TRANS *trans, MsgStream &log)
 Internal interface method that is used to invoke the real conversion method (toPersistent_impl) in the derived converter.
virtual TPObjRef virt_toPersistentWithKey (const TRANS *trans, const std::string &key, MsgStream &log)
 Internal interface method that is used to invoke the real conversion method (toPersistent_impl) in the derived converter.
virtual void pstoreToTrans (unsigned index, TRANS *trans, MsgStream &log)
 Convert persistent representation stored in the storage vector of the top-level object to transient.
virtual TRANS * createTransient (const PERS *persObj, MsgStream &log)
 Create transient representation of a persistent object.
virtual TRANS * createTransientWithKey (const PERS *persObj, const std::string &key, MsgStream &log)
 Create transient representation of a persistent object, with SG key.
virtual TRANS * virt_createTransFromPStore (unsigned index, MsgStream &log)
 Internal interface method that is used to invoke the real conversion method (createTransient)
virtual TRANS * virt_createTransFromPStoreWithKey (unsigned index, const std::string &key, MsgStream &log)
 Internal interface method that is used to invoke the real conversion method (createTransient)
virtual void persToTransWithKey (const PERS *persObj, TRANS *transObj, const std::string &, MsgStream &log)
 Convert persistent representation to transient one.
virtual void transToPersWithKey (const TRANS *transObj, PERS *persObj, const std::string &, MsgStream &log)
 Convert transient representation to persistent one.
virtual void persToTransUntyped (const void *pers, void *trans, MsgStream &log)
 Convert persistent object representation to transient.
virtual void transToPersUntyped (const void *trans, void *pers, MsgStream &log)
 Convert transient object representation to persistent.
virtual void persToTransWithKeyUntyped (const void *pers, void *trans, const std::string &key, MsgStream &log)
 Convert persistent object representation to transient.
virtual void transToPersWithKeyUntyped (const void *trans, void *pers, const std::string &key, MsgStream &log)
 Convert transient object representation to persistent.
virtual PERScreatePersistent (const TRANS *transObj, MsgStream &log)
 Create persistent representation of a transient object.
virtual PERScreatePersistentWithKey (const TRANS *transObj, const std::string &key, MsgStream &log)
 Create persistent representation of a transient object, with SG key.
TPObjRef toPersistentWithKey_impl (const TRANS *trans, const std::string &key, MsgStream &log)
 Convert transient object to persistent representation.
virtual const std::type_info & transientTInfo () const
 return C++ type id of the transient class this converter is for
virtual const std::type_info & persistentTInfo () const
 return C++ type id of the persistent class this converter is for
void setPStorage (std::vector< PERS > *storage)
 Tell this converter which storage vector it should use to store or retrieve persistent representations.
void setRecursive (bool flag=true)
 Tell the converter if it should work in recursive mode slower but it can safely handle recursion.
void ignoreRecursion (bool flag=false)
 Tell the converter to ignore recursion (do not throw errors) even when recurion is detected.
virtual void reservePStorage (size_t size)
 Reserve 'size' elements for persistent storage.
template<class CNV>
CNV * converterForType (CNV *cnv, const std::type_info &t_info, MsgStream &log) const
 Find converter for a given C++ type ID, that is or ihnerits from CNV type.
template<class CNV>
CNV * converterForRef (CNV *cnv, const TPObjRef &ref, MsgStream &log) const
 Find converter for a TP type ID (passed in a TP Ref), that is or ihnerits from CNV type.
template<class CNV>
TPObjRef baseToPersistent (CNV **cnv, const typename CNV::Trans_t *transObj, MsgStream &log) const
 Persistify bass class of a given object and store the persistent represenation in the storage vector of the top-level persistent object.
template<class CNV>
TPObjRef toPersistent (CNV **cnv, const typename CNV::TransBase_t *transObj, MsgStream &log) const
 Persistify an object and store the persistent represenation in the storage vector of the top-level persistent object.
template<class CNV, class TRANS_T>
void fillTransFromPStore (CNV **cnv, const TPObjRef &ref, TRANS_T *trans, MsgStream &log) const
 Convert persistent object, stored in the the top-level persistent object and referenced by the TP Ref, to transient representation.
template<class CNV>
CNV::Trans_t * createTransFromPStore (CNV **cnv, const TPObjRef &ref, MsgStream &log) const
 Create transient representation of a persistent object, stored in the the top-level persistent object and referenced by the TP Ref.
virtual void initPrivateConverters (TopLevelTPCnvBase *)
virtual TopLevelTPCnvBasetopConverter ()
 return the top-level converter for this elemental TP converter
virtual const TopLevelTPCnvBasetopConverter () const
 return the top-level converter for this elemental TP converter
const std::type_info & transBaseTInfo () const
 return C++ type id of the common base transient type for all converters for a group of polymorphic types
virtual const TPObjRef::typeID_ttypeID () const
 Return TP typeID for persistent objects produced by this converter.
unsigned typeIDvalue () const
 inlined non-virtual version to get the typeID value fast
virtual void setRuntimeTopConverter (TopLevelTPCnvBase *topConverter)
 Set runtime top-level converter - usually it is the owning TL converter, but in case of extended objects it will be the TL converter of the extended object.
virtual void setTopConverter (TopLevelTPCnvBase *topConverter, const TPObjRef::typeID_t &TPtypeID)
 Set which top-level converter owns this elemental converter, and what TPtypeID was assigned to the persistent objects it produces.
void setReadingFlag ()
void clearReadingFlag ()
bool wasUsedForReading ()
virtual void converterNotFound (const std::type_info &converterType, ITPConverter *c, const std::string &typeName, MsgStream &log) const
 method called when the right TP converter was not found during writing
virtual void converterNotFound (unsigned typeID, ITPConverter *c, const std::string &typeName, MsgStream &log) const
 method called when the right TP converter was not found during reading

Protected Attributes

std::vector< PERS > * m_pStorage
 the address of the storage vector for persistent representations
int m_curRecLevel
 count recursive invocations, to detect recursion
bool m_recursive
 if true, work in recursion-safe way (slower)
bool m_ignoreRecursion
 if true, do not throw errors in case of recursion.
TPObjRef::typeID_t m_pStorageTID
 TP Ref typeID for the persistent objects this converter is creating.
unsigned m_pStorageTIDvalue
 m_pStorageTID converted to integer value
TopLevelTPCnvBasem_topConverter
 top level converter that owns this elemental TP converter it also holds the storage object
TopLevelTPCnvBasem_topConverterRuntime
 top level converter "owning" this TP converter at runtime (different from m_topConverter in case the top-level converter and object have extensions)
bool m_wasUsedForReading
 flag set when using this converter for reading triggers search for a new converter before writing, to prevent possible use of old version

Detailed Description

Definition at line 18 of file LArPhysWaveSubsetCnv_p1.h.

Member Typedef Documentation

◆ base_class

template<class TRANS, class PERS>
using TPConverterConstBase< TRANS, PERS >::base_class = TPConverterConstBase
inherited

Definition at line 779 of file TPConverter.h.

◆ Factory

typedef Gaudi::PluginService::Factory<ITPCnvBase*()> ITPCnvBase::Factory
inherited

Definition at line 26 of file ITPCnvBase.h.

◆ Pers_t

typedef PERS TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::Pers_t
inherited

Definition at line 335 of file TPConverter.h.

◆ PersBase_t

typedef PERS TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::PersBase_t
inherited

Definition at line 336 of file TPConverter.h.

◆ PolyCnvBase_t

template<class TRANS>
typedef ITPConverterFor< TRANS > ITPConverterFor< TRANS >::PolyCnvBase_t
inherited

Definition at line 41 of file TPConverter.h.

◆ Trans_t

typedef TRANS TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::Trans_t
inherited

Definition at line 334 of file TPConverter.h.

◆ TransBase_t

template<class TRANS>
typedef TRANS ITPConverterFor< TRANS >::TransBase_t
inherited

Definition at line 39 of file TPConverter.h.

Constructor & Destructor Documentation

◆ LArPhysWaveSubsetCnv_p1()

LArPhysWaveSubsetCnv_p1::LArPhysWaveSubsetCnv_p1 ( )
inline

Definition at line 25 of file LArPhysWaveSubsetCnv_p1.h.

25{}

Member Function Documentation

◆ baseToPersistent()

template<class TRANS>
template<class CNV>
TPObjRef ITPConverterFor< TRANS >::baseToPersistent ( CNV ** cnv,
const typename CNV::Trans_t * transObj,
MsgStream & log ) const
inlineinherited

Persistify bass class of a given object and store the persistent represenation in the storage vector of the top-level persistent object.

The converter is located using the transient type from the CNV parameter, not from the object itself (because we need the base type, not the actual type)

Parameters
cnv[IN/OUT] type of this parameter decides which converter will be used. Once the converter is found, this pointer will be set so the search is done only once
transObj[IN] transient object
log[IN] output message stream
Returns
TPObjRef TP reference to the persistent representation stored in the storage vector of the top-level persistent object

Definition at line 97 of file TPConverter.h.

97 {
98 if( !*cnv || (*cnv)->wasUsedForReading() ) {
99 // don't trust the converter if it was used for reading, find again
100 *cnv = converterForType( *cnv, typeid(typename CNV::Trans_t), log );
101 if( !*cnv ) return TPObjRef();
102 (*cnv)->clearReadingFlag();
103 }
104// return (**cnv).toPersistent_impl(transObj, log);
105 return (**cnv).virt_toPersistent(transObj, log);
106 }
Common base class for all TP converters, specialized for a given transient type.
Definition TPConverter.h:37
CNV * converterForType(CNV *cnv, const std::type_info &t_info, MsgStream &log) const
Find converter for a given C++ type ID, that is or ihnerits from CNV type.
Definition TPConverter.h:58
bool wasUsedForReading()

◆ clearReadingFlag()

template<class TRANS>
void ITPConverterFor< TRANS >::clearReadingFlag ( )
inlineinherited

Definition at line 235 of file TPConverter.h.

235{ m_wasUsedForReading = false; }
bool m_wasUsedForReading
flag set when using this converter for reading triggers search for a new converter before writing,...

◆ converterForRef()

template<class TRANS>
template<class CNV>
CNV * ITPConverterFor< TRANS >::converterForRef ( CNV * cnv,
const TPObjRef & ref,
MsgStream & log ) const
inlineinherited

Find converter for a TP type ID (passed in a TP Ref), that is or ihnerits from CNV type.

Parameters
cnv[IN] parameter specifying the converter type
ref[IN] TP Ref to an object for which a converter is sought
log[IN] output message stream
Returns
CNV* pointer to the converter, if found

Definition at line 74 of file TPConverter.h.

74 {
75 ITPConverter *c = m_topConverterRuntime->converterForRef( ref );
76 cnv = dynamic_cast<CNV*>(c);
77 if( !cnv )
78 this->converterNotFound( ref.typeID(), c, typeid(CNV).name(), log );
79 return cnv;
80 }
TopLevelTPCnvBase * m_topConverterRuntime
top level converter "owning" this TP converter at runtime (different from m_topConverter in case the ...
virtual const TPObjRef::typeID_t & typeID() const
Return TP typeID for persistent objects produced by this converter.
virtual void converterNotFound(const std::type_info &converterType, ITPConverter *c, const std::string &typeName, MsgStream &log) const
method called when the right TP converter was not found during writing

◆ converterForType()

template<class TRANS>
template<class CNV>
CNV * ITPConverterFor< TRANS >::converterForType ( CNV * cnv,
const std::type_info & t_info,
MsgStream & log ) const
inlineinherited

Find converter for a given C++ type ID, that is or ihnerits from CNV type.

Parameters
cnv[IN] parameter specifying the converter type
t_info[IN] C++ type id for which a converter is sought
log[IN] output message stream
Returns
CNV* pointer to the converter, if found

Definition at line 58 of file TPConverter.h.

58 {
59 ITPConverter *c = m_topConverterRuntime->converterForType( t_info );
60 cnv = dynamic_cast< CNV* >( c );
61 if( !cnv )
62 this->converterNotFound( typeid(CNV), c, t_info.name(), log );
63 return cnv;
64 }

◆ converterNotFound() [1/2]

void ITPConverter::converterNotFound ( const std::type_info & converterType,
ITPConverter * c,
const std::string & typeName,
MsgStream & log ) const
virtualinherited

method called when the right TP converter was not found during writing

  • useful as a debugging hook, prints a detailed error message
Parameters
converterType[IN] converterType that was requested
c[IN] converter that was actually found (0 if not)
typeName[IN] the C++ type name of the type for which converter was searched for
log[IN] output message stream

Definition at line 22 of file ITPConverter.cxx.

26{
27 log << MSG::ERROR << ">>>>>> in parent TP converter " << typeid(*this).name()
28 << ": could not find matching TP converter for type " << typeName << endmsg;
29 if( c ) {
30 log << MSG::ERROR << " - found incompatible converter of type "
31 << typeid(*c).name() << endmsg;
32 }
33 log << MSG::ERROR << " Converter handle type was " << converterType.name() << endmsg;
35}
#define endmsg
static void errorHandler()

◆ converterNotFound() [2/2]

void ITPConverter::converterNotFound ( unsigned typeID,
ITPConverter * c,
const std::string & typeName,
MsgStream & log ) const
virtualinherited

method called when the right TP converter was not found during reading

  • useful as a debugging hook, prints a detailed error message
Parameters
typeID[IN] converter ID that was requested
c[IN] converter that was actually found (0 if not)
typeName[IN] the C++ type name of the type for which converter was searched for
log[IN] output message stream

Definition at line 40 of file ITPConverter.cxx.

44{
45 log << MSG::ERROR << ">>>>>> in parent TP converter " << typeid(*this).name()
46 << " requested TP converter for TP type ID " << typeID << " not found " << endmsg;
47 if( c ) {
48 log << MSG::ERROR << " - found converter " << typeid(*c).name()
49 << " for " << c->transientTInfo().name()
50 << " with an incompatible base type " << c->transBaseTInfo().name()
51 << endmsg;
52 }
53 log << MSG::ERROR << " Converter handle type was " << reqCnvTypeName << endmsg;
55}
virtual const TPObjRef::typeID_t & typeID() const =0
Return TP typeID for persistent objects produced by this converter.

◆ createPersistent()

virtual PERS * TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::createPersistent ( const TRANS * transObj,
MsgStream & log )
virtualinherited

Create persistent representation of a transient object.

Simply creates a new persistent object and calls transToPers()

Parameters
transObj[IN] transient object
log[IN] output message stream
Returns
the created persistent representation

◆ createPersistentConst()

template<class TRANS, class PERS>
virtual PERS * TPConverterConstBase< TRANS, PERS >::createPersistentConst ( const TRANS * transObj,
MsgStream & log ) const
virtualinherited

◆ createPersistentWithKey()

virtual PERS * TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::createPersistentWithKey ( const TRANS * transObj,
const std::string & key,
MsgStream & log )
virtualinherited

Create persistent representation of a transient object, with SG key.

Simply creates a new persistent object and calls transToPersWithKey()

Parameters
transObj[IN] transient object
key[IN] SG key of object being written
log[IN] output message stream
Returns
the created persistent representation

◆ createTransFromPStore()

template<class TRANS>
template<class CNV>
CNV::Trans_t * ITPConverterFor< TRANS >::createTransFromPStore ( CNV ** cnv,
const TPObjRef & ref,
MsgStream & log ) const
inlineinherited

Create transient representation of a persistent object, stored in the the top-level persistent object and referenced by the TP Ref.

If a TP converter is not specified, it will be found based on the Ref type.

Parameters
cnv[IN][OUT] pointer to the converter, usually 0 at the start. Once the right converter is found, this pointer will be set so the search is done only once
ref[IN] TP Ref to the persistent object to be converted
log[IN] output message stream
Returns
pointer to the created transient represention

Definition at line 172 of file TPConverter.h.

172 {
173 if( ref.isNull() ) return 0;
174 CNV *temp_cnv_p = 0;
175 if( !cnv ) cnv = &temp_cnv_p;
176 // see if we already have a converter and if it is the right one
177 if( !*cnv || (*cnv)->typeID().value() != ref.typeID() ) {
178 // we don't - find the right converter for ref.typeID()
179 *cnv = converterForRef( *cnv, ref, log );
180 if( !*cnv ) return 0;
181 (*cnv)->setReadingFlag();
182 }
183 return (**cnv).virt_createTransFromPStore( ref.index(), log );
184 }
CNV * converterForRef(CNV *cnv, const TPObjRef &ref, MsgStream &log) const
Find converter for a TP type ID (passed in a TP Ref), that is or ihnerits from CNV type.
Definition TPConverter.h:74
virtual TRANS * virt_createTransFromPStore(unsigned index, MsgStream &log)=0
Internal interface method that is used to invoke the real conversion method (createTransient) in the ...
unsigned value() const
Returns the type ID as an integer.
Definition TPObjRef.h:46

◆ createTransient()

virtual TRANS * TPPolyCnvBase< TRANS, TRANS, PERS >::createTransient ( const PERS * persObj,
MsgStream & log )
virtualinherited

Create transient representation of a persistent object.

Simply creates a new transient object and calls persToTrans()

Parameters
persObj[IN] persistent object
log[IN] output message stream
Returns
the created transient object

◆ createTransientConst()

template<class TRANS, class PERS>
virtual TRANS * TPConverterConstBase< TRANS, PERS >::createTransientConst ( const PERS * persObj,
MsgStream & log ) const
virtualinherited

◆ createTransientWithKey()

virtual TRANS * TPPolyCnvBase< TRANS, TRANS, PERS >::createTransientWithKey ( const PERS * persObj,
const std::string & key,
MsgStream & log )
virtualinherited

Create transient representation of a persistent object, with SG key.

Simply creates a new transient object and calls persToTransWithKey()

Parameters
persObj[IN] persistent object
key[IN] SG key of object being read
log[IN] output message stream
Returns
the created transient object

◆ fillTransFromPStore()

template<class TRANS>
template<class CNV, class TRANS_T>
void ITPConverterFor< TRANS >::fillTransFromPStore ( CNV ** cnv,
const TPObjRef & ref,
TRANS_T * trans,
MsgStream & log ) const
inlineinherited

Convert persistent object, stored in the the top-level persistent object and referenced by the TP Ref, to transient representation.

An empty transient object to be filled in is provided. If converter is not given, it will be found based on the Ref type.

Parameters
cnv[IN][OUT] pointer to the converter, usually 0 at the start. Once the right converter is found, this pointer will be set so the search is done only once
ref[IN] TP Ref to the persistent object to be converted
trans[IN] pointer to the empty transient object
log[IN] output message stream

Definition at line 145 of file TPConverter.h.

145 {
146 if( ref.isNull() ) return;
147 CNV *temp_cnv_p = 0;
148 if( !cnv ) cnv = &temp_cnv_p;
149 // see if we already have a converter and if it is the right one
150 if( !*cnv || (*cnv)->typeID().value() != ref.typeID() ) {
151 // we don't - find the right converter for ref.typeID()
152 *cnv = converterForRef( *cnv, ref, log );
153 if( !*cnv ) return;
154 (*cnv)->setReadingFlag();
155 }
156 (**cnv).pstoreToTrans( ref.index(), trans, log );
157 }
virtual void pstoreToTrans(unsigned index, TransBase_t *transObj, MsgStream &log)=0
Internal interface method that is used to invoke the real conversion method (persToTrans) in the deri...

◆ ignoreRecursion()

void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::ignoreRecursion ( bool flag = false)
inlineinherited

Tell the converter to ignore recursion (do not throw errors) even when recurion is detected.

UNSAFE! use only if you are sure you preallocated enough persistent storage

Definition at line 568 of file TPConverter.h.

568 {
570 }
The most basic TP converter template which is parametrized by transient and persistent types.

◆ initPrivateConverters()

◆ persistentTInfo()

virtual const std::type_info & TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::persistentTInfo ( ) const
inlinevirtualinherited

return C++ type id of the persistent class this converter is for

Returns
std::type_info&

Implements ITPCnvBase.

Definition at line 482 of file TPConverter.h.

482{ return typeid(PERS); }

◆ persToTrans() [1/3]

void LArPhysWaveSubsetCnv_p1::persToTrans ( const LArPWPersType * persObj,
LArPWTransType * transObj,
MsgStream & log ) const
overridevirtual

Definition at line 9 of file LArPhysWaveSubsetCnv_p1.cxx.

12{
13 log<<MSG::DEBUG<<"LArPhysWaveSubsetCNV_p1 begin persToTrans"<<endmsg;
14 // Copy basic metadata
15 transObj->setChannel (persObj->m_subset.m_channel);
16 transObj->setGroupingType (persObj->m_subset.m_groupingType);
17 transObj->initialize (persObj->m_subset.m_febIds, persObj->m_subset.m_gain);
18
19 unsigned int nfebids = persObj->m_subset.m_febIds.size();
20 log<<MSG::DEBUG<<"\t\tTotal febs:"<<nfebids<<endmsg;
21 const unsigned int nChannelsPerFeb = persObj->m_subset.subsetSize();
22 unsigned int waveIndex = 0;
23 unsigned int chIndex = 0;
24
25 unsigned int ifebWithData = 0; // counter for febs with data
26
27 auto subsetIt = transObj->subsetBegin();
28 for (unsigned int i = 0; i < nfebids; ++i, ++subsetIt){
29 unsigned int febid = subsetIt->first;
30
31 bool hasSparseData = false;
32 unsigned int chansSet = 0;
33 unsigned int chansOffset = 0;
34
35 if (ifebWithData+1 < persObj->m_subset.m_febsWithSparseData.size() && febid == persObj->m_subset.m_febsWithSparseData[ifebWithData]) {
36 hasSparseData = true;// Found feb with sparse data
37 ifebWithData++;
38 chansSet = persObj->m_subset.m_febsWithSparseData[ifebWithData];
39 chansOffset = 0;
40 ifebWithData++;
41 }
42
43 log<<MSG::DEBUG<<"\t\tsparse? "<< hasSparseData <<endmsg;
44
45 for (unsigned int j = 0; j < nChannelsPerFeb; ++j){
46 bool copyChannel = true;
47 if (hasSparseData) {
48 // coverity[bad_shift]
49 // coverity[integer_overflow]
50 if (!(chansSet & (1 << (j - chansOffset)))) {// Channel is missing data - skip
51 copyChannel = false; // std::cout<<"0";
52 }
53 //else std::cout<<"1";
54
55 if (j%32 == 31 && j < nChannelsPerFeb-2) {
56 chansSet = persObj->m_subset.m_febsWithSparseData[ifebWithData];
57 chansOffset += 32;
58 ifebWithData++;
59 //std::cout<<" ";
60 }
61 }
62
63 if (copyChannel) { // This channel has wave, resize vectors
64 LArPhysWave& PW = subsetIt->second[j];
65 double time = persObj->m_dt[chIndex];
66 unsigned int f = persObj->m_flag[chIndex];
67 int timeOffset = persObj->m_timeOffset[chIndex];
68 chIndex++;
69 std::vector<double> val;
70 std::vector<double> err;
71 std::vector<int> tri;
72 for (unsigned int k = 0; k < persObj->m_samples; ++k){
73 val.push_back(persObj->m_vAmplitudes[waveIndex]);
74 err.push_back(persObj->m_vErrors[waveIndex]);
75 tri.push_back(persObj->m_vTriggers[waveIndex]);
76 waveIndex++;
77 }
78
79 LArPhysWave pw(val,err,tri, time,timeOffset, f);
80 val.clear();
81 err.clear();
82 tri.clear();
83
84 PW=pw;
85 }
86 } // loop on channels
87 //std::cout<<std::endl;
88 } // loop on FEBs
89
90 unsigned int ncorrs = persObj->m_subset.m_corrChannels.size();
91 log<<MSG::DEBUG<<"Total corrections:"<<ncorrs;
92 log<<MSG::DEBUG << "Corrections reading, ncorr=" << ncorrs << " waveIndex=" << waveIndex << " size=" << persObj->m_vAmplitudes.size() << endmsg;
94 corrs.resize(ncorrs);
95
96 for (unsigned int i = 0; i < ncorrs; ++i){ // Loop over corrections
97
98 if (chIndex >= persObj->m_dt.size()) { // check indexes
99 log << MSG::ERROR << "LArPhysWaveSubsetCnv_p1::persToTrans - PhysWave index too large: WaveIndex/sizeInFile "
100 << chIndex << " " << persObj->m_dt.size()<<" "<< endmsg;
101 return;
102 }
103
104 corrs[i].first = persObj->m_subset.m_corrChannels[i];
105
106 LArPhysWave& PW = corrs[i].second;
107
108 double time = persObj->m_dt[chIndex];
109 unsigned int f = persObj->m_flag[chIndex];
110 int timeOffset = persObj->m_timeOffset[chIndex];
111 chIndex++;
112 std::vector<double> val;
113 std::vector<double> err;
114 std::vector<int> tri;
115 for (unsigned int k = 0; k < persObj->m_samples; ++k){
116 if (waveIndex>=persObj->m_vAmplitudes.size())
117 log << MSG::ERROR << "Persistent LArPhysWave object is inconsistent. i=" << i << " WaveIndes=" << waveIndex << " size=" << persObj->m_vAmplitudes.size() << "samples=" << persObj->m_samples <<endmsg;
118 val.push_back(persObj->m_vAmplitudes[waveIndex]);
119 err.push_back(persObj->m_vErrors[waveIndex]);
120 tri.push_back(persObj->m_vTriggers[waveIndex]);
121 waveIndex++;
122 }
123
124 LArPhysWave pw(val,err,tri, time,timeOffset, f);
125 val.clear();
126 err.clear();
127 tri.clear();
128
129 PW=pw;
130 }// over corrections
131 transObj->insertCorrections (std::move (corrs));
132
133 log<< MSG::DEBUG <<"PhysWave successfully read."<<endmsg;
134}
std::vector< unsigned int > m_febIds
std::vector< unsigned int > m_corrChannels
unsigned int subsetSize() const
std::vector< unsigned int > m_febsWithSparseData
void initialize(const std::vector< FebId > &ids, unsigned int gain)
Initialize with set of FEB ids.
void setGroupingType(unsigned int type)
set the type of grouping - defined in LArConditionsContainerBase.h
ConstSubsetIt subsetBegin() const
Iterators over subset.
std::vector< CorrectionPair > CorrectionVec
void insertCorrections(CorrectionVec &&corrs)
Insert a group of corrections.
void setChannel(unsigned int channel)
set the COOL channel number
std::vector< int > m_timeOffset
std::vector< float > m_vAmplitudes
LArConditionsSubset_p1 m_subset
std::vector< unsigned > m_flag
std::vector< float > m_dt
std::vector< float > m_vErrors
std::vector< int > m_vTriggers
time(flags, cells_name, *args, **kw)
ChIndex chIndex(const std::string &index)
convert ChIndex name string to enum

◆ persToTrans() [2/3]

virtual void TPConverterConstBase< TRANS, PERS >::persToTrans ( const PERS * persObj,
TRANS * transObj,
MsgStream & log ) const
virtual

Convert persistent representation to transient one.

Copies data members from persistent object to an existing transient one. Needs to be implemented by the developer on the actual converter.

Parameters
persObj[IN] persistent object
transObj[IN] transient object
log[IN] output message stream

Implements TPConverterConstBase< TRANS, PERS >.

◆ persToTrans() [3/3]

virtual void TPConverterConstBase< TRANS, PERS >::persToTrans ( const PERS * persObj,
TRANS * transObj,
MsgStream & log )
inlinefinaloverridevirtual

Convert persistent representation to transient one.

Copies data members from persistent object to an existing transient one. Needs to be implemented by the developer on the actual converter.

Parameters
persObj[IN] persistent object
transObj[IN] transient object
log[IN] output message stream

Reimplemented from TPConverterConstBase< TRANS, PERS >.

Definition at line 807 of file TPConverter.h.

810 {
811 return const_cast<const TPConverterConstBase*>(this)->persToTrans (persObj, transObj, log);
812 }
virtual void persToTrans(const LArPWPersType *persObj, LArPWTransType *transObj, MsgStream &log) const override

◆ persToTransUntyped()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::persToTransUntyped ( const void * pers,
void * trans,
MsgStream & log )
inlinevirtualinherited

Convert persistent object representation to transient.

Parameters
pers[IN] void* pointer to the persistent object
trans[OUT] void* pointer to the empty transient object
log[IN] output message stream

Implements ITPCnvBase.

Definition at line 400 of file TPConverter.h.

403 {
404 persToTrans (reinterpret_cast<const PERS*> (pers),
405 reinterpret_cast<TRANS*> (trans),
406 log);
407 }
virtual void persToTrans(const PERS *persObj, TRANS *transObj, MsgStream &log)=0

◆ persToTransWithKey()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::persToTransWithKey ( const PERS * persObj,
TRANS * transObj,
const std::string & ,
MsgStream & log )
inlinevirtualinherited

Convert persistent representation to transient one.

Copies data members from persistent object to an existing transient one. Needs to be implemented by the developer on the actual converter.

Parameters
persObj[IN] persistent object
transObj[IN] transient object
log[IN] output message stream

Reimplemented in AthExParticlesCnv_p1, CaloCellContainerCnv_p1, CaloCellLinkContainerCnv_p1, CaloCellLinkContainerCnv_p2, CaloClusterCellLinkContainerCnv_p1, TPConverterWithKeyBase< TRANS, PERS >, and xAODTauJetAuxContainerCnv_v2.

Definition at line 376 of file TPConverter.h.

379 {
380 return persToTrans (persObj, transObj, log);
381 }

◆ persToTransWithKeyUntyped()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::persToTransWithKeyUntyped ( const void * pers,
void * trans,
const std::string & key,
MsgStream & log )
inlinevirtualinherited

Convert persistent object representation to transient.

Parameters
pers[IN] void* pointer to the persistent object
trans[OUT] void* pointer to the empty transient object
key[IN] SG key of object being read.
log[IN] output message stream

Reimplemented from ITPCnvBase.

Definition at line 420 of file TPConverter.h.

424 {
425 persToTransWithKey (reinterpret_cast<const PERS*> (pers),
426 reinterpret_cast<TRANS*> (trans),
427 key,
428 log);
429 }
virtual void persToTransWithKey(const PERS *persObj, TRANS *transObj, const std::string &, MsgStream &log)

◆ pstoreToTrans()

template<class TRANS, class PERS>
virtual void TPConverterBase< TRANS, PERS >::pstoreToTrans ( unsigned index,
TRANS * trans,
MsgStream & log )
inlinevirtualinherited

Convert persistent representation stored in the storage vector of the top-level object to transient.

Internal.

Parameters
index[IN] index of the persistent representation in the storage vector
trans[IN] empty transient object
log[IN] output message stream

Reimplemented from TPAbstractPolyCnvBase< TRANS, TRANS, PERS >.

Definition at line 760 of file TPConverter.h.

760 {
762 this->persToTrans( &(*this->m_pStorage)[index], trans, log );
763 }
TP Converter template for a "regular" type.

◆ reservePStorage()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::reservePStorage ( size_t size)
inlinevirtualinherited

Reserve 'size' elements for persistent storage.

Implements ITPConverter.

Definition at line 573 of file TPConverter.h.

573 {
574 m_pStorage->reserve( size );
575 }

◆ setPStorage()

void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::setPStorage ( std::vector< PERS > * storage)
inlineinherited

Tell this converter which storage vector it should use to store or retrieve persistent representations.

Parameters
storage[IN] the address of the storage vector

Definition at line 551 of file TPConverter.h.

◆ setReadingFlag()

template<class TRANS>
void ITPConverterFor< TRANS >::setReadingFlag ( )
inlineinherited

Definition at line 234 of file TPConverter.h.

234{ m_wasUsedForReading = true; }

◆ setRecursive()

void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::setRecursive ( bool flag = true)
inlineinherited

Tell the converter if it should work in recursive mode slower but it can safely handle recursion.

Definition at line 559 of file TPConverter.h.

◆ setRuntimeTopConverter()

template<class TRANS>
virtual void ITPConverterFor< TRANS >::setRuntimeTopConverter ( TopLevelTPCnvBase * topConverter)
inlinevirtualinherited

Set runtime top-level converter - usually it is the owning TL converter, but in case of extended objects it will be the TL converter of the extended object.

Parameters
topConverter[IN] runtime top-level converter for this converter

Implements ITPConverter.

Definition at line 215 of file TPConverter.h.

215 {
218 }
virtual void initPrivateConverters(TopLevelTPCnvBase *)
virtual TopLevelTPCnvBase * topConverter()
return the top-level converter for this elemental TP converter

◆ setTopConverter()

template<class TRANS>
virtual void ITPConverterFor< TRANS >::setTopConverter ( TopLevelTPCnvBase * topConverter,
const TPObjRef::typeID_t & TPtypeID )
inlinevirtualinherited

Set which top-level converter owns this elemental converter, and what TPtypeID was assigned to the persistent objects it produces.

Parameters
topConverter[IN] the top-level converter owning this converter
TPtypeID[IN] TP type id for persistent objects (used in TP refs)

Implements ITPConverter.

Definition at line 221 of file TPConverter.h.

223 {
228 }
unsigned m_pStorageTIDvalue
m_pStorageTID converted to integer value
TPObjRef::typeID_t m_pStorageTID
TP Ref typeID for the persistent objects this converter is creating.
TopLevelTPCnvBase * m_topConverter
top level converter that owns this elemental TP converter it also holds the storage object

◆ topConverter() [1/2]

template<class TRANS>
virtual TopLevelTPCnvBase * ITPConverterFor< TRANS >::topConverter ( )
inlinevirtualinherited

return the top-level converter for this elemental TP converter

Returns
TopLevelTPCnvBas

Reimplemented from ITPConverter.

Definition at line 191 of file TPConverter.h.

191 {
192 return m_topConverter;
193 }

◆ topConverter() [2/2]

template<class TRANS>
virtual const TopLevelTPCnvBase * ITPConverterFor< TRANS >::topConverter ( ) const
inlinevirtualinherited

return the top-level converter for this elemental TP converter

Returns
TopLevelTPCnvBas

Reimplemented from ITPConverter.

Definition at line 196 of file TPConverter.h.

196 {
197 return m_topConverter;
198 }

◆ toPersistent()

template<class TRANS>
template<class CNV>
TPObjRef ITPConverterFor< TRANS >::toPersistent ( CNV ** cnv,
const typename CNV::TransBase_t * transObj,
MsgStream & log ) const
inlineinherited

Persistify an object and store the persistent represenation in the storage vector of the top-level persistent object.

The correct converter is located using the actual object type.

Parameters
cnv[IN/OUT] pointer to the converter, usually 0 at the start. Once the right converter is found, this pointer will be set so the search is done only once
transObj[IN] transient object
log[IN] output message stream
Returns
TPObjRef TP reference to the persistent representation stored in the storage vector of the top-level persistent object

Definition at line 119 of file TPConverter.h.

119 {
120 if( !transObj ) return TPObjRef();
121 CNV *temp_cnv_p = 0;
122 if( !cnv ) cnv = &temp_cnv_p;
123 if( !*cnv || (*cnv)->wasUsedForReading() ) {
124 // don't trust the converter if it was used for reading, find again
125 *cnv = converterForType( *cnv, typeid(*transObj), log );
126 if( !*cnv ) return TPObjRef();
127 (*cnv)->clearReadingFlag();
128 }
129 return (**cnv).virt_toPersistent(transObj, log);
130 }
virtual TPObjRef virt_toPersistent(const TransBase_t *trans, MsgStream &log)=0
Internal interface method that is used to invoke the real conversion method (toPersistent_impl) in th...

◆ toPersistentWithKey_impl()

TPObjRef TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::toPersistentWithKey_impl ( const TRANS * trans,
const std::string & key,
MsgStream & log )
inherited

Convert transient object to persistent representation.

Stores the result in the storage vector of the top-level object and returns a TP Ref to it.

Parameters
trans[IN] transient object
key[IN] SG key of object being converted
log[IN] output message stream
Returns
TP reference to the persistent representation

◆ transBaseTInfo()

template<class TRANS>
const std::type_info & ITPConverterFor< TRANS >::transBaseTInfo ( ) const
inlinevirtualinherited

return C++ type id of the common base transient type for all converters for a group of polymorphic types

Returns
std::type_info& this method is not overwritten in the subclasses like transientTInfo()

Implements ITPConverter.

Definition at line 205 of file TPConverter.h.

205{ return typeid(TRANS); }

◆ transientTInfo()

virtual const std::type_info & TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::transientTInfo ( ) const
inlinevirtualinherited

return C++ type id of the transient class this converter is for

Returns
std::type_info&

Reimplemented from ITPConverterFor< TRANS >.

Definition at line 479 of file TPConverter.h.

479{ return typeid(TRANS); }

◆ transToPers() [1/3]

void LArPhysWaveSubsetCnv_p1::transToPers ( const LArPWTransType * transObj,
LArPWPersType * persObj,
MsgStream & log ) const
overridevirtual

Definition at line 141 of file LArPhysWaveSubsetCnv_p1.cxx.

144{
145 log<<MSG::DEBUG<<"LArPhysWaveSubsetCNV_p1 begin transToPers"<<endmsg;
146
147 // Copy conditions
148 unsigned int nfebs = transObj->subsetSize();
149 log<<MSG::DEBUG<<"total febs:"<<nfebs;
150 unsigned int ncorrs = transObj->correctionVecSize();
151 log<<MSG::DEBUG<<"\t\ttotal corrections: "<<ncorrs<<endmsg;
152 const unsigned int nChannelsPerFeb = transObj->channelVectorSize();
153 unsigned int nsubsetsNotEmpty = 0;
154 unsigned int nchans = 0;
155
156 persObj->m_samples=0; //for now
157 bool haveSampleSize=false;
158
159 std::vector<unsigned int> febsWithSparseData; // collects IDs of febs with sparse data
160 const auto subsetEnd = transObj->subsetEnd();
161 for (auto subsetIt = transObj->subsetBegin();
162 subsetIt != subsetEnd;
163 ++subsetIt)
164 {
165 unsigned int nfebChans = subsetIt->second.size();
166
167 if (nfebChans != 0 && nfebChans != nChannelsPerFeb) {
168 log << MSG::ERROR << "LArPhysWaveSubsetCnv_p1::transToPers - found incorrect number of channels per feb: " << nfebChans<< endmsg;
169 return;
170 }
171
172 if (nfebChans) ++nsubsetsNotEmpty; // count number of non-empty FEBS
173
174 bool isSparse = false;
175 for (unsigned int j = 0; j < nfebChans; ++j) { // Loop over channels and check if this subset has sparse data
176
177 const LArPhysWave& PW = subsetIt->second[j];
178
179 if (!isSparse && PW.isEmpty()) {
180 isSparse = true;
181 febsWithSparseData.push_back(subsetIt->first);// save febids for sparse subsets
182 log<<MSG::DEBUG<<"\t\tfebID: "<<subsetIt->first<<" is sparse"<<endmsg;
183 }
184
185 if (!PW.isEmpty()){
186 nchans++; // count number of channels
187 if (!haveSampleSize) {
188 haveSampleSize=true;
189 persObj->m_samples=PW.getSize();
190 }
191 else
192 if (persObj->m_samples!=PW.getSize()) {
193 log << MSG::ERROR << "Waves of unequal length found in same conditions channel. Truncating to the shorter of "
194 << persObj->m_samples << " and " << PW.getSize() << endmsg;
195 persObj->m_samples=std::min(persObj->m_samples,(unsigned)PW.getSize());
196 }
197 } //else if !PS.isEmpty
198
199 }
200
201 //std::cout<<"\nFeb: "<<i<<" nonemptychannels till now: "<<nchans<<std::endl;
202
203 } // loop over febs
204
205 //std::cout<<"total nonempty febs = "<<nsubsetsNotEmpty<<std::endl;
206
207 persObj->m_subset.m_febIds.reserve(nsubsetsNotEmpty);
208 persObj->m_subset.m_corrChannels.reserve(ncorrs);
209
210 if (febsWithSparseData.size())
211 persObj->m_subset.m_febsWithSparseData.reserve(febsWithSparseData.size()*5); // this stores FEBID + 128 bitmask of existing channels
212
213 persObj->m_dt.reserve(nchans);
214 persObj->m_vAmplitudes.reserve(nchans*persObj->m_samples);
215 persObj->m_vErrors.reserve(nchans*persObj->m_samples);
216 persObj->m_vTriggers.reserve(nchans*persObj->m_samples);
217 persObj->m_flag.reserve(nchans);
218 persObj->m_timeOffset.reserve(nchans);
219
220 int counterSparse=0;
221 for (auto subsetIt = transObj->subsetBegin();
222 subsetIt != subsetEnd;
223 ++subsetIt)
224 {
225 unsigned int nfebChans = subsetIt->second.size();
226
227 if (nfebChans == 0) continue; // skip subsets without any channels
228
229 unsigned int febid = subsetIt->first;
230 persObj->m_subset.m_febIds.push_back(febid); // stores FEBID's of nonempty FEBs
231
232 bool isSparse=false; // this is just to avoid search loop
233 if (counterSparse < (int)febsWithSparseData.size() && febid == febsWithSparseData[counterSparse]){
234 counterSparse++;
235 isSparse=true;
236 persObj->m_subset.m_febsWithSparseData.push_back(febid);
237 }
238
239 unsigned int chansSet = 0;
240 unsigned int chansOffset = 0;
241 for (unsigned int j = 0; j < nfebChans; ++j){
242
243 bool saveAmplitudes=true;
244 if (isSparse) { // subset with sparse data
245
246 if (!subsetIt->second[j].isEmpty()) { // channel exists
247
248 assert (j >= chansOffset && (j - chansOffset) <= 31);
249 // coverity[integer_overflow]
250 chansSet |= (1 << (j - chansOffset)); //store the channel number in the bit map
251
252 //std::cout<<"1";
253 }
254 else { // channel does not exist
255 saveAmplitudes = false;
256 //std::cout<<"0";
257 }
258
259 // Save chansSet
260 if (j == (chansOffset + 31) || j == nfebChans-1 ) {
261 persObj->m_subset.m_febsWithSparseData.push_back(chansSet);
262 chansSet = 0;
263 chansOffset += 32;
264 //std::cout<<" ";
265 }
266 } // if sparse
267
268 if (saveAmplitudes) {// save amplitudes, errors and triggers
269 const LArPhysWave& PW = subsetIt->second[j];
270 persObj->m_dt.push_back(PW.getDt());
271 persObj->m_flag.push_back(PW.getFlag());
272 persObj->m_timeOffset.push_back(PW.getTimeOffset());
273 std::vector<double> w=PW.getWave();
274 std::vector<double> e=PW.getErrors();
275 std::vector<int> t=PW.getTriggers();
276 for (unsigned int k = 0; k< persObj->m_samples; ++k){
277 persObj->m_vAmplitudes.push_back(w[k]);
278 persObj->m_vErrors.push_back(e[k]);
279 persObj->m_vTriggers.push_back(t[k]);
280 }
281 }
282
283 } // over channels
284 //std::cout<<std::endl;
285 }// over febs
286
287 // Copy corrections
288 const auto corrEnd = transObj->correctionVecEnd();
289 for (auto corrIt = transObj->correctionVecBegin();
290 corrIt != corrEnd;
291 ++corrIt)
292 {
293 // log<<MSG::DEBUG<<"WRITING CORRECTION : "<<i<<endmsg;
294 // Save channel id in febid vector
295 persObj->m_subset.m_corrChannels.push_back(corrIt->first);
296
297 const LArPhysWave& PW = corrIt->second;
298 std::vector<double> w=PW.getWave();
299 std::vector<double> e=PW.getErrors();
300 std::vector<int> t=PW.getTriggers();
301 persObj->m_dt.push_back(PW.getDt());
302 persObj->m_flag.push_back(PW.getFlag());
303 persObj->m_timeOffset.push_back(PW.getTimeOffset());
304 persObj->m_samples=w.size();
305 for (unsigned int k = 0; k< w.size(); ++k){
306 persObj->m_vAmplitudes.push_back(w[k]);
307 persObj->m_vErrors.push_back(e[k]);
308 persObj->m_vTriggers.push_back(t[k]);
309 }
310 }
311
312 // Copy the rest
313 persObj->m_subset.m_gain = transObj->gain();
314 persObj->m_subset.m_channel = transObj->channel();
315 persObj->m_subset.m_groupingType = transObj->groupingType();
316 log<< MSG::DEBUG <<"PhysWave successfully written down."<<endmsg;
317}
size_type subsetSize() const
Size of subset.
ConstSubsetIt subsetEnd() const
unsigned channelVectorSize() const
ConstCorrectionVecIt correctionVecBegin() const
Iterators over channel set.
unsigned int groupingType() const
Type of grouping - defined in LArConditionsContainerBase.h.
ConstCorrectionVecIt correctionVecEnd() const
unsigned int gain() const
Access to gain.
size_type correctionVecSize() const
Size of channel set.
unsigned int channel() const
Access to the COOL channel number.
int getTimeOffset() const
Definition LArPhysWave.h:97
const std::vector< int > & getTriggers() const
trigger vector
const std::vector< double > & getErrors() const
error vector
size_t getSize() const
number of time samples
Definition LArWave.h:62
bool isEmpty() const
is LArWave uninitialized?
Definition LArWave.h:183
const std::vector< double > & getWave() const
Wave parameters.
Definition LArWave.h:167
const double & getDt() const
delta time
Definition LArWave.h:50
unsigned getFlag() const
flag: ...
Definition LArWave.h:178

◆ transToPers() [2/3]

virtual void TPConverterConstBase< TRANS, PERS >::transToPers ( const TRANS * transObj,
PERS * persObj,
MsgStream & log ) const
virtual

Convert transient representation to persistent one.

Copies data members from transient object to an existing persistent one. Needs to be implemented by the developer on the actual converter.

Parameters
transObj[IN] transient object
persObj[IN] persistent object
log[IN] output message stream

Implements TPConverterConstBase< TRANS, PERS >.

◆ transToPers() [3/3]

virtual void TPConverterConstBase< TRANS, PERS >::transToPers ( const TRANS * transObj,
PERS * persObj,
MsgStream & log )
inlinefinaloverridevirtual

Convert transient representation to persistent one.

Copies data members from transient object to an existing persistent one. Needs to be implemented by the developer on the actual converter.

Parameters
transObj[IN] transient object
persObj[IN] persistent object
log[IN] output message stream

Reimplemented from TPConverterConstBase< TRANS, PERS >.

Definition at line 815 of file TPConverter.h.

818 {
819 return const_cast<const TPConverterConstBase*>(this)->transToPers (transObj, persObj, log);
820 }
virtual void transToPers(const LArPWTransType *transObj, LArPWPersType *persObj, MsgStream &log) const override

◆ transToPersUntyped()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::transToPersUntyped ( const void * trans,
void * pers,
MsgStream & log )
inlinevirtualinherited

Convert transient object representation to persistent.

Parameters
trans[IN] void* pointer to the transient object
pers[OUT] void* pointer to the empty persistent object
log[IN] output message stream

Implements ITPCnvBase.

Definition at line 410 of file TPConverter.h.

413 {
414 transToPers (reinterpret_cast<const TRANS*> (trans),
415 reinterpret_cast<PERS*> (pers),
416 log);
417 }
virtual void transToPers(const TRANS *transObj, PERS *persObj, MsgStream &log)=0

◆ transToPersWithKey()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::transToPersWithKey ( const TRANS * transObj,
PERS * persObj,
const std::string & ,
MsgStream & log )
inlinevirtualinherited

Convert transient representation to persistent one.

Copies data members from transient object to an existing persistent one. Needs to be implemented by the developer on the actual converter.

Parameters
transObj[IN] transient object
persObj[IN] persistent object
key[IN] SG key of object being written.
log[IN] output message stream

Reimplemented in AthExParticlesCnv_p1, CaloCellContainerCnv_p1, CaloCellLinkContainerCnv_p1, CaloCellLinkContainerCnv_p2, CaloClusterCellLinkContainerCnv_p1, TPConverterWithKeyBase< TRANS, PERS >, and xAODTauJetAuxContainerCnv_v2.

Definition at line 392 of file TPConverter.h.

395 {
396 return transToPers (transObj, persObj, log);
397 }

◆ transToPersWithKeyUntyped()

virtual void TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::transToPersWithKeyUntyped ( const void * trans,
void * pers,
const std::string & key,
MsgStream & log )
inlinevirtualinherited

Convert transient object representation to persistent.

Parameters
trans[IN] void* pointer to the transient object
pers[OUT] void* pointer to the empty persistent object
key[IN] SG key of object being written.
log[IN] output message stream

Reimplemented from ITPCnvBase.

Definition at line 432 of file TPConverter.h.

436 {
437 transToPersWithKey (reinterpret_cast<const TRANS*> (trans),
438 reinterpret_cast<PERS*> (pers),
439 key,
440 log);
441 }
virtual void transToPersWithKey(const TRANS *transObj, PERS *persObj, const std::string &, MsgStream &log)

◆ typeID()

template<class TRANS>
virtual const TPObjRef::typeID_t & ITPConverterFor< TRANS >::typeID ( ) const
inlinevirtualinherited

Return TP typeID for persistent objects produced by this converter.

Returns
TPObjRef::typeID_t&

Implements ITPConverter.

Definition at line 208 of file TPConverter.h.

208{ return m_pStorageTID; }

◆ typeIDvalue()

template<class TRANS>
unsigned ITPConverterFor< TRANS >::typeIDvalue ( ) const
inlineinherited

inlined non-virtual version to get the typeID value fast

Definition at line 211 of file TPConverter.h.

211{ return m_pStorageTIDvalue; }

◆ virt_createTransFromPStore()

virtual TRANS * TPPolyCnvBase< TRANS, TRANS, PERS >::virt_createTransFromPStore ( unsigned index,
MsgStream & log )
inlinevirtualinherited

Internal interface method that is used to invoke the real conversion method (createTransient)

Parameters
index[IN] index of the persistent object in the storage vector
log[IN] output message stream
Returns
Created transient object (by pointer)

Reimplemented from TPAbstractPolyCnvBase< TRANS, TRANS, PERS >.

Definition at line 706 of file TPConverter.h.

706 {
708 return createTransient( &(*this->m_pStorage)[index], log );
709 }
Base TP converter template parametrized by transient and persistent types.
virtual TRANS * createTransient(const PERS *persObj, MsgStream &log)

◆ virt_createTransFromPStoreWithKey()

virtual TRANS * TPPolyCnvBase< TRANS, TRANS, PERS >::virt_createTransFromPStoreWithKey ( unsigned index,
const std::string & key,
MsgStream & log )
inlinevirtualinherited

Internal interface method that is used to invoke the real conversion method (createTransient)

Parameters
index[IN] index of the persistent object in the storage vector
key[IN] SG key of the object being converted
log[IN] output message stream
Returns
Created transient object (by pointer)

Reimplemented from TPAbstractPolyCnvBase< TRANS, TRANS, PERS >.

Definition at line 718 of file TPConverter.h.

721 {
723 return createTransientWithKey( &(*this->m_pStorage)[index], key, log );
724 }
virtual TRANS * createTransientWithKey(const PERS *persObj, const std::string &key, MsgStream &log)

◆ virt_toPersistent()

template<class TRANS, class PERS>
virtual TPObjRef TPConverterBase< TRANS, PERS >::virt_toPersistent ( const TRANS * trans,
MsgStream & log )
inlinevirtualinherited

Internal interface method that is used to invoke the real conversion method (toPersistent_impl) in the derived converter.

Parameters
trans[IN] transient object
log[IN] output message stream
Returns
TPObjRef TP reference to the persistent representation stored in the storage vector of the top-level persistent object Here toPersistent_impl is invoked with the dynamic cast of the transient type pointer to it's actual type

Reimplemented from TPAbstractPolyCnvBase< TRANS, TRANS, PERS >.

Definition at line 747 of file TPConverter.h.

747 {
748 return this->toPersistentWithKey_impl( trans, "", log);
749 }
TPObjRef toPersistentWithKey_impl(const TRANS *trans, const std::string &key, MsgStream &log)

◆ virt_toPersistentWithKey()

template<class TRANS, class PERS>
virtual TPObjRef TPConverterBase< TRANS, PERS >::virt_toPersistentWithKey ( const TRANS * trans,
const std::string & key,
MsgStream & log )
inlinevirtualinherited

Internal interface method that is used to invoke the real conversion method (toPersistent_impl) in the derived converter.

Parameters
trans[IN] transient object
key[IN] SG key of the object being converted.
log[IN] output message stream
Returns
TPObjRef TP reference to the persistent representation stored in the storage vector of the top-level persistent object Here toPersistentWithKey_impl is invoked with the dynamic cast of the transient type pointer to it's actual type

Reimplemented from TPAbstractPolyCnvBase< TRANS, TRANS, PERS >.

Definition at line 752 of file TPConverter.h.

755 {
756 return this->toPersistentWithKey_impl( trans, key, log);
757 }

◆ wasUsedForReading()

template<class TRANS>
bool ITPConverterFor< TRANS >::wasUsedForReading ( )
inlineinherited

Definition at line 236 of file TPConverter.h.

236{ return m_wasUsedForReading; }

Member Data Documentation

◆ m_curRecLevel

int TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::m_curRecLevel
protectedinherited

count recursive invocations, to detect recursion

Definition at line 582 of file TPConverter.h.

◆ m_ignoreRecursion

bool TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::m_ignoreRecursion
protectedinherited

if true, do not throw errors in case of recursion.

Definition at line 588 of file TPConverter.h.

◆ m_pStorage

std::vector< PERS >* TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::m_pStorage
protectedinherited

the address of the storage vector for persistent representations

Definition at line 579 of file TPConverter.h.

◆ m_pStorageTID

template<class TRANS>
TPObjRef::typeID_t ITPConverterFor< TRANS >::m_pStorageTID
protectedinherited

TP Ref typeID for the persistent objects this converter is creating.

Definition at line 292 of file TPConverter.h.

◆ m_pStorageTIDvalue

template<class TRANS>
unsigned ITPConverterFor< TRANS >::m_pStorageTIDvalue
protectedinherited

m_pStorageTID converted to integer value

Definition at line 295 of file TPConverter.h.

◆ m_recursive

bool TPAbstractPolyCnvBase< TRANS, TRANS, PERS >::m_recursive
protectedinherited

if true, work in recursion-safe way (slower)

Definition at line 585 of file TPConverter.h.

◆ m_topConverter

template<class TRANS>
TopLevelTPCnvBase* ITPConverterFor< TRANS >::m_topConverter
protectedinherited

top level converter that owns this elemental TP converter it also holds the storage object

Definition at line 299 of file TPConverter.h.

◆ m_topConverterRuntime

template<class TRANS>
TopLevelTPCnvBase* ITPConverterFor< TRANS >::m_topConverterRuntime
protectedinherited

top level converter "owning" this TP converter at runtime (different from m_topConverter in case the top-level converter and object have extensions)

Definition at line 302 of file TPConverter.h.

◆ m_wasUsedForReading

template<class TRANS>
bool ITPConverterFor< TRANS >::m_wasUsedForReading
protectedinherited

flag set when using this converter for reading triggers search for a new converter before writing, to prevent possible use of old version

Definition at line 306 of file TPConverter.h.


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