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geant4/source/analysis/management/include/G4THnManager.icc
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2022-07-01 10:44:02 +02:00

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//
// ********************************************************************
// * License and Disclaimer *
// * *
// * The Geant4 software is copyright of the Copyright Holders of *
// * the Geant4 Collaboration. It is provided under the terms and *
// * conditions of the Geant4 Software License, included in the file *
// * LICENSE and available at http://cern.ch/geant4/license . These *
// * include a list of copyright holders. *
// * *
// * Neither the authors of this software system, nor their employing *
// * institutes,nor the agencies providing financial support for this *
// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. Please see the license in the file LICENSE and URL above *
// * for the full disclaimer and the limitation of liability. *
// * *
// * This code implementation is the result of the scientific and *
// * technical work of the GEANT4 collaboration. *
// * By using, copying, modifying or distributing the software (or *
// * any work based on the software) you agree to acknowledge its *
// * use in resulting scientific publications, and indicate your *
// * acceptance of all terms of the Geant4 Software license. *
// ********************************************************************
//
// Author: Ivana Hrivnacova, 23/06/2015 (ivana@ipno.in2p3.fr)
#include "G4AnalysisManagerState.hh"
#include "G4HnManager.hh"
#include "G4AnalysisUtilities.hh"
#include "G4AutoLock.hh"
using std::to_string;
//_____________________________________________________________________________
template <typename HT>
G4THnManager<HT>::G4THnManager(const G4AnalysisManagerState& state,
const G4String& hnType)
: fState(state)
{
fHnManager = std::make_shared<G4HnManager>(hnType, state);
}
//_____________________________________________________________________________
template <typename HT>
G4THnManager<HT>::~G4THnManager()
{
for ( auto t : fTVector ) {
delete t;
}
}
//
// protected methods
//
//_____________________________________________________________________________
template <typename HT>
HT* G4THnManager<HT>::GetTInFunction(G4int id,
std::string_view functionName, G4bool warn,
G4bool onlyIfActive) const
{
G4int index = id - fHnManager->GetFirstId();
if ( index < 0 || index >= G4int(fTVector.size()) ) {
if ( warn) {
G4Analysis::Warn("Histogram " + to_string(id) + " does not exist.",
fkClass, functionName);
}
return nullptr;
}
// Do not return histogram if inactive
if ( fState.GetIsActivation() && onlyIfActive && ( ! fHnManager->GetActivation(id) ) ) {
return nullptr;
}
return fTVector[index];
}
//_____________________________________________________________________________
template <typename HT>
G4int G4THnManager<HT>::GetTId(const G4String& name, G4bool warn) const
{
auto it = fNameIdMap.find(name);
if ( it == fNameIdMap.end() ) {
if ( warn) {
G4Analysis::Warn("histogram " + name + " does not exist.",
fkClass, "GetTId");
}
return G4Analysis::kInvalidId;
}
return it->second;
}
//_____________________________________________________________________________
template <typename HT>
G4bool G4THnManager<HT>::IsVerbose(G4int verboseLevel) const
{
return fState.IsVerbose(verboseLevel);
}
//_____________________________________________________________________________
template <typename HT>
void G4THnManager<HT>::Message(
G4int level, const G4String& action, const G4String& objectType,
const G4String& objectName, G4bool success) const
{
fState.Message(level, action, objectType, objectName, success);
}
//_____________________________________________________________________________
template <typename HT>
void G4THnManager<HT>::AddTVector(const std::vector<HT*>& tVector)
{
Message(G4Analysis::kVL4, "merge", "all " + fHnManager->GetHnType());
// std::vector<tools::histo::h1d*>::const_iterator itw = h1Vector.begin();
// std::vector<tools::histo::h1d*>::iterator it;
// for (it = fH1Vector.begin(); it != fH1Vector.end(); it++ ) {
// (*it)->add(*(*itw++));
// }
auto itw = tVector.begin();
for ( auto t : fTVector ) {
t->add(*(*itw++));
}
Message(G4Analysis::kVL1, "merge", "all " + fHnManager->GetHnType());
}
//_____________________________________________________________________________
template <typename HT>
void G4THnManager<HT>::Merge(
G4Mutex& mergeMutex, G4THnManager<HT>* masterInstance)
{
G4AutoLock lH1(&mergeMutex);
masterInstance->AddTVector(fTVector);
lH1.unlock();
}
//_____________________________________________________________________________
template <typename HT>
typename std::vector<HT*>::iterator G4THnManager<HT>::BeginT()
{
return fTVector.begin();
}
//_____________________________________________________________________________
template <typename HT>
typename std::vector<HT*>::iterator G4THnManager<HT>::EndT()
{
return fTVector.end();
}
//_____________________________________________________________________________
template <typename HT>
typename std::vector<HT*>::const_iterator G4THnManager<HT>::BeginConstT() const
{
return fTVector.begin();
}
//_____________________________________________________________________________
template <typename HT>
typename std::vector<HT*>::const_iterator G4THnManager<HT>::EndConstT() const
{
return fTVector.end();
}
//
// public methods
//
//_____________________________________________________________________________
template <typename HT>
G4int G4THnManager<HT>::RegisterT(HT* t, const G4String& name)
{
G4int index = fTVector.size();
fTVector.push_back(t);
fHnManager->SetLockFirstId(true);
fNameIdMap[name] = index + fHnManager->GetFirstId();
return index + fHnManager->GetFirstId();
}
//_____________________________________________________________________________
template <typename HT>
G4bool G4THnManager<HT>::Reset()
{
// Reset histograms
auto result = true;
for ( auto t : fTVector ) {
result &= t->reset();
}
return result;
}
//_____________________________________________________________________________
template <typename HT>
void
G4THnManager<HT>::ClearData()
{
for ( auto t : fTVector ) {
delete t;
}
fTVector.clear();
fNameIdMap.clear();
if ( fHnManager != nullptr ) {
fHnManager->ClearData();
}
Message(G4Analysis::kVL2, "clear", G4Analysis::GetHnType<HT>());
}
//_____________________________________________________________________________
template <typename HT>
G4bool G4THnManager<HT>::IsEmpty() const
{
return ! fTVector.size();
}
//_____________________________________________________________________________
template <typename HT>
HT* G4THnManager<HT>::GetT(G4int id) const
{
return GetTInFunction(id, "GetT");
}
//_____________________________________________________________________________
template <typename HT>
std::vector<HT*>* G4THnManager<HT>::GetTVector()
{
return &fTVector;
}