Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4PSTrackLength.cc
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25//
26//
27//
28// G4PSTrackLength
29#include "G4PSTrackLength.hh"
30#include "G4SystemOfUnits.hh"
31#include "G4UnitsTable.hh"
32////////////////////////////////////////////////////////////////////////////////
33// (Description)
34// This is a primitive scorer class for scoring sum of track length.
35//
36//
37// Created: 2007-02-02 Tsukasa ASO, Akinori Kimura.
38// 2010-07-22 Introduce Unit specification.
39// 2011-09-09 Modify comment in PrintAll().
40//
41///////////////////////////////////////////////////////////////////////////////
42
44 : G4PSTrackLength(name, "mm", depth)
45{}
46
48 G4int depth)
49 : G4VPrimitiveScorer(name, depth)
50 , HCID(-1)
51 , EvtMap(nullptr)
52 , weighted(false)
53 , multiplyKinE(false)
54 , divideByVelocity(false)
55{
57 SetUnit(unit);
58}
59
61{
62 multiplyKinE = flg;
63 // Default unit is set according to flags.
64 SetUnit("");
65}
66
68{
69 divideByVelocity = flg;
70 // Default unit is set according to flags.
71 SetUnit("");
72}
73
75{
76 G4double trklength = aStep->GetStepLength();
77 if(trklength == 0.)
78 return false;
79 if(weighted)
80 trklength *= aStep->GetPreStepPoint()->GetWeight();
81 if(multiplyKinE)
82 trklength *= aStep->GetPreStepPoint()->GetKineticEnergy();
83 if(divideByVelocity)
84 trklength /= aStep->GetPreStepPoint()->GetVelocity();
85 G4int index = GetIndex(aStep);
86 EvtMap->add(index, trklength);
87 return true;
88}
89
91{
92 EvtMap = new G4THitsMap<G4double>(detector->GetName(), GetName());
93 if(HCID < 0)
94 {
95 HCID = GetCollectionID(0);
96 }
97 HCE->AddHitsCollection(HCID, (G4VHitsCollection*) EvtMap);
98}
99
100void G4PSTrackLength::clear() { EvtMap->clear(); }
101
103{
104 G4cout << " MultiFunctionalDet " << detector->GetName() << G4endl;
105 G4cout << " PrimitiveScorer " << GetName() << G4endl;
106 G4cout << " Number of entries " << EvtMap->entries() << G4endl;
107 for(const auto& [copy, length] : *(EvtMap->GetMap()))
108 {
109 G4cout << " copy no.: " << copy;
110 if(multiplyKinE)
111 {
112 if(divideByVelocity)
113 G4cout << " EnergyFlux: ";
114 else
115 G4cout << " EnergyFlow: ";
116 }
117 else
118 {
119 if(divideByVelocity)
120 G4cout << " Time: ";
121 else
122 G4cout << " Length: ";
123 }
124 G4cout << *(length) / GetUnitValue() << " [" << GetUnit() << "]";
125 G4cout << G4endl;
126 }
127}
128
130{
131 if(multiplyKinE)
132 {
133 if(divideByVelocity)
134 {
135 if(unit.empty())
136 {
137 CheckAndSetUnit("MeV_second", "EnergyFlux");
138 }
139 else
140 {
141 CheckAndSetUnit(unit, "EnergyFlux");
142 }
143 }
144 else
145 {
146 if(unit.empty())
147 {
148 CheckAndSetUnit("MeV_mm", "EnergyFlow");
149 }
150 else
151 {
152 CheckAndSetUnit(unit, "EnergyFlow");
153 }
154 }
155 }
156 else
157 {
158 if(divideByVelocity)
159 {
160 if(unit.empty())
161 {
162 CheckAndSetUnit("second", "Time");
163 }
164 else
165 {
166 CheckAndSetUnit(unit, "Time");
167 }
168 }
169 else
170 {
171 if(unit.empty())
172 {
173 CheckAndSetUnit("mm", "Length");
174 }
175 else
176 {
177 CheckAndSetUnit(unit, "Length");
178 }
179 }
180 }
181}
182
184{
185 // EnergyFlux
186 new G4UnitDefinition("eV_second", "eV_s", "EnergyFlux", (eV * second));
187 new G4UnitDefinition("keV_second", "keV_s", "EnergyFlux", (keV * second));
188 new G4UnitDefinition("MeV_second", "MeV_s", "EnergyFlux", (MeV * second));
189 new G4UnitDefinition("eV_millisecond", "eV_ms", "EnergyFlux", (eV * ms));
190 new G4UnitDefinition("keV_millisecond", "keV_ms", "EnergyFlux", (keV * ms));
191 new G4UnitDefinition("MeV_millisecond", "MeV_ms", "EnergyFlux", (MeV * ms));
192 // EnergyFlow
193 new G4UnitDefinition("eV_millimeter", "eV_mm", "EnergyFlow", (eV * mm));
194 new G4UnitDefinition("keV_millimeter", "keV_mm", "EnergyFlow", (keV * mm));
195 new G4UnitDefinition("MeV_millimeter", "MeV_mm", "EnergyFlow", (MeV * mm));
196 new G4UnitDefinition("eV_centimeter", "eV_cm", "EnergyFlow", (eV * cm));
197 new G4UnitDefinition("keV_centimeter", "keV_cm", "EnergyFlow", (keV * cm));
198 new G4UnitDefinition("MeV_centimeter", "MeV_cm", "EnergyFlow", (MeV * cm));
199 new G4UnitDefinition("eV_meter", "eV_m", "EnergyFlow", (eV * m));
200 new G4UnitDefinition("keV_meter", "keV_m", "EnergyFlow", (keV * m));
201 new G4UnitDefinition("MeV_meter", "MeV_m", "EnergyFlow", (MeV * m));
202}
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
#define G4endl
Definition: G4ios.hh:57
G4GLOB_DLL std::ostream G4cout
void AddHitsCollection(G4int HCID, G4VHitsCollection *aHC)
G4PSTrackLength(G4String name, G4int depth=0)
virtual void SetUnit(const G4String &unit)
virtual void DefineUnitAndCategory()
void Initialize(G4HCofThisEvent *) override
G4bool ProcessHits(G4Step *, G4TouchableHistory *) override
void MultiplyKineticEnergy(G4bool flg=true)
void DivideByVelocity(G4bool flg=true)
void PrintAll() override
void clear() override
G4double GetVelocity() const
G4double GetKineticEnergy() const
G4double GetWeight() const
Definition: G4Step.hh:62
G4StepPoint * GetPreStepPoint() const
G4double GetStepLength() const
virtual G4int GetIndex(G4Step *)
G4String GetName() const
const G4String & GetUnit() const
G4MultiFunctionalDetector * detector
G4int GetCollectionID(G4int)
void CheckAndSetUnit(const G4String &unit, const G4String &category)
G4double GetUnitValue() const
Map_t * GetMap() const
Definition: G4THitsMap.hh:155
size_t entries() const
Definition: G4THitsMap.hh:158
void clear()
Definition: G4THitsMap.hh:524
size_t add(const G4int &key, U *&aHit) const
Definition: G4THitsMap.hh:177