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geant4/source/analysis/accumulables/include/G4AccVector.icc
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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 *
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// * 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, IJCLab IN2P3/CNRS, 12/07/2024
#include <algorithm>
//
// public functions
//
// Default constructor (1)
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4String& name,
G4MergeMode mergeMode)
: G4VAccumulable(name, mergeMode),
fVector(),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor1" << G4endl;
}
}
// Constructor (2)
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const Allocator& allocator,
G4MergeMode mergeMode)
: G4VAccumulable(mergeMode),
fVector(allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor2" << G4endl;
}
}
// Constructor (2) with name
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4String& name,
const Allocator& allocator,
G4MergeMode mergeMode)
: G4VAccumulable(name, mergeMode),
fVector(allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor2n" << G4endl;
}
}
// Constructor (3)
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
std::size_t count, const T& value,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(mergeMode),
fVector(count, value, allocator),
fInitValue(value),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor3" << G4endl;
}
}
// Constructor (3) with name
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4String& name,
std::size_t count, const T& value,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(name, mergeMode),
fVector(count, value, allocator),
fInitValue(value),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor3n" << G4endl;
}
}
// Constructor (4)
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
std::size_t count,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(mergeMode),
fVector(count, allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor4" << G4endl;
}
}
// Constructor (4) with name
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4String& name,
std::size_t count,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(name, mergeMode),
fVector(count, allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor4n" << G4endl;
}
}
// Constructor (10)
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
std::initializer_list<T> init,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(mergeMode),
fVector(init, allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor10" << G4endl;
}
}
// Constructor (10) with name
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4String& name,
std::initializer_list<T> init,
G4MergeMode mergeMode, const Allocator& allocator)
: G4VAccumulable(name, mergeMode),
fVector(init, allocator),
fMergeFunction(G4Accumulables::GetMergeFunction<T>(mergeMode))
{
if (G4Accumulables::VerboseLevel > 1 ) {
G4cout << "G4AccVector ctor10n" << G4endl;
}
}
// Copy ctor
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
const G4AccVector& rhs, const Allocator& allocator)
: G4VAccumulable(rhs),
fVector(rhs, allocator),
fMergeFunction(rhs.fMergeFunction)
{}
// Move ctor
//_____________________________________________________________________________
template <class T, class Allocator>
G4AccVector<T, Allocator>::G4AccVector(
G4AccVector&& rhs, const Allocator& allocator)
: G4VAccumulable(std::move(rhs)),
fVector(std::move(rhs), allocator),
fMergeFunction(rhs.fMergeFunction)
{}
//_____________________________________________________________________________
template <class T, class Allocator>
void G4AccVector<T, Allocator>::Merge(const G4VAccumulable& other)
{
const auto& otherVector = static_cast<const G4AccVector<T, Allocator>&>(other);
if (G4Accumulables::VerboseLevel > 2 ) {
G4cout << "G4AccVector<T, Allocator>::Merge: " << G4endl;
G4cout << "destination: ";
for (const auto& v : fVector) {
G4cout << v << ", ";
}
G4cout << G4endl;
G4cout << "merged data: ";
for (const auto& v : otherVector.fVector) {
G4cout << v << ", ";
}
G4cout << G4endl;
}
std::transform(fVector.begin(), fVector.end(), otherVector.fVector.begin(),
fVector.begin(), fMergeFunction);
}
//_____________________________________________________________________________
template <class T, class Allocator>
void G4AccVector<T, Allocator>::Reset()
{
for (auto& value : fVector) {
value = fInitValue;
}
}
//_____________________________________________________________________________
template <class T, class Allocator>
void G4AccVector<T, Allocator>::Print(G4PrintOptions options) const
{
if (options.Has(G4PrintOptions::kType)) {
G4cout << "vector<" << typeid(T).name() << ">: ";
}
PrintBase(options);
bool first = true;
for (const auto& value : fVector) {
if (! first) { G4cout << ", "; }
G4cout << value;
first = false;
}
G4cout << G4endl;
}
//_____________________________________________________________________________
template <class T, class Allocator>
void G4AccVector<T, Allocator>::SetMergeMode(G4MergeMode value)
{
G4VAccumulable::SetMergeMode(value);
fMergeFunction = G4Accumulables::GetMergeFunction<T>(fMergeMode);
}