Belle II Software  release-08-01-10
SensitiveDetector.cc
1 /**************************************************************************
2  * basf2 (Belle II Analysis Software Framework) *
3  * Author: The Belle II Collaboration *
4  * *
5  * See git log for contributors and copyright holders. *
6  * This file is licensed under LGPL-3.0, see LICENSE.md. *
7  **************************************************************************/
8 
9 #include <beast/microtpc/simulation/SensitiveDetector.h>
10 #include <beast/microtpc/dataobjects/MicrotpcSimHit.h>
11 #include <beast/microtpc/dataobjects/TPCG4TrackInfo.h>
12 
13 #include <framework/datastore/StoreArray.h>
14 #include <framework/datastore/RelationArray.h>
15 
16 #include <G4Track.hh>
17 #include <G4Step.hh>
18 
19 namespace Belle2 {
25  namespace microtpc {
26 
28  Simulation::SensitiveDetectorBase("MicrotpcSensitiveDetector", Const::invalidDetector)
29  {
30  m_trackID = 0;
31  //Make sure all collections are registered
32  StoreArray<MCParticle> mcParticles;
34  StoreArray<TPCG4TrackInfo> TPCG4TrackInfos;
35  RelationArray relMCSimHit(mcParticles, simHits);
36 
37  //Register all collections we want to modify and require those we want to use
38  mcParticles.registerInDataStore();
39  simHits.registerInDataStore();
40  relMCSimHit.registerInDataStore();
41  TPCG4TrackInfos.registerInDataStore();
42 
43  //Register the Relation so that the TrackIDs get replaced by the actual
44  //MCParticle indices after simulating the events. This is needed as
45  //secondary particles might not be stored so everything relating to those
46  //particles will be attributed to the last saved mother particle
47  registerMCParticleRelation(relMCSimHit);
48  }
49 
50  bool SensitiveDetector::step(G4Step* step, G4TouchableHistory*)
51  {
52  //Get Track information
53  const G4Track& track = *step->GetTrack();
54  const int trackID = track.GetTrackID();
55  const double depEnergy = step->GetTotalEnergyDeposit() * CLHEP::MeV;
56  const double nielEnergy = step->GetNonIonizingEnergyDeposit() * CLHEP::MeV;
57  const G4ThreeVector G4tkPos = step->GetTrack()->GetPosition();
58  float tkPos[3];
59  tkPos[0] = G4tkPos.x() * CLHEP::cm;
60  tkPos[1] = G4tkPos.y() * CLHEP::cm;
61  tkPos[2] = G4tkPos.z() * CLHEP::cm;
62  const G4ThreeVector G4tkMom = step->GetTrack()->GetMomentum();
63  float tkMom[3];
64  tkMom[0] = G4tkMom.x() * CLHEP::MeV;
65  tkMom[1] = G4tkMom.y() * CLHEP::MeV;
66  tkMom[2] = G4tkMom.z() * CLHEP::MeV;
67  const G4ThreeVector G4tkMomDir = step->GetTrack()->GetMomentumDirection();
68  float tkMomDir[3];
69  tkMomDir[0] = G4tkMomDir.x() * CLHEP::MeV;
70  tkMomDir[1] = G4tkMomDir.y() * CLHEP::MeV;
71  tkMomDir[2] = G4tkMomDir.z() * CLHEP::MeV;
72  const int tkPDG = step->GetTrack()->GetDefinition()->GetPDGEncoding();
73  const double tkKEnergy = step->GetTrack()->GetKineticEnergy();
74  const int detNb = step->GetTrack()->GetVolume()->GetCopyNo();
75  const double GlTime = step->GetPreStepPoint()->GetGlobalTime();
76  //Ignore everything below 1eV
77  //if (depEnergy < CLHEP::eV) return false;
78 
79  //Get the datastore arrays
80  StoreArray<MCParticle> mcParticles;
82  RelationArray relMCSimHit(mcParticles, simHits);
83  /*
84  //find out if the process that created the particle was a neutron process
85  bool neuProc = false;
86  G4String CPName;
87  if (step->GetTrack()->GetCreatorProcess() != 0) {
88  const G4VProcess* creator = step->GetTrack()->GetCreatorProcess();
89  CPName = creator->GetProcessName();
90  if (CPName.contains("Neutron")) neuProc = true;
91  }
92  */
93  //set TrackID
94  m_trackID = track.GetTrackID();
95 
96  //Save Hit if track leaves volume or is killed
97  if (track.GetNextVolume() != track.GetVolume() || track.GetTrackStatus() >= fStopAndKill) {
98  auto& mcparticle = Simulation::TrackInfo::getInfo(track);
99  int PDG = mcparticle.getPDG();
100  float Mass = mcparticle.getMass();
101  float Energy = mcparticle.getEnergy();
102  float vtx[3];
103  vtx[0] = mcparticle.getProductionVertex().X();
104  vtx[1] = mcparticle.getProductionVertex().Y();
105  vtx[2] = mcparticle.getProductionVertex().Z();
106  float mom[3];
107  mom[0] = mcparticle.getMomentum().X();
108  mom[1] = mcparticle.getMomentum().Y();
109  mom[2] = mcparticle.getMomentum().Z();
110  saveG4TrackInfo(m_trackID, PDG, Mass, Energy, vtx, mom);
111  //Reset TrackID
112  m_trackID = 0;
113  }
114 
115  StoreArray<MicrotpcSimHit> MicrotpcHits;
116  MicrotpcSimHit* hit = MicrotpcHits.appendNew(
117  trackID,
118  depEnergy,
119  nielEnergy,
120  tkPDG,
121  tkKEnergy,
122  detNb,
123  GlTime,
124  tkPos,
125  tkMom,
126  tkMomDir
127  );
128 
129  //Add Relation between SimHit and MCParticle with a weight of 1. Since
130  //the MCParticle index is not yet defined we use the trackID from Geant4
131  relMCSimHit.add(trackID, hit->getArrayIndex(), 1.0);
132 
133  return true;
134  }
135 
137  (
138  int trackID,
139  int PDG,
140  float Mass,
141  float Energy,
142  float vtx[3],
143  float mom[3]
144  )
145  {
146  //Get the datastore arrays
147  StoreArray<TPCG4TrackInfo> TPCG4TrackInfos;
148 
149  TPCG4TrackInfos.appendNew(TPCG4TrackInfo(trackID, PDG, Mass, Energy, vtx, mom));
150 
151  int simhitNumber = TPCG4TrackInfos.getEntries() - 1;
152 
153  return (simhitNumber);
154  }//saveG4TrackInfo
155 
156  } //microtpc namespace
158 } //Belle2 namespace
This class provides a set of constants for the framework.
Definition: Const.h:34
ClassMicrotpcSimHit - Geant4 simulated hit for the Microtpc detector.
Low-level class to create/modify relations between StoreArrays.
Definition: RelationArray.h:62
void add(index_type from, index_type to, weight_type weight=1.0)
Add a new element to the relation.
static void registerMCParticleRelation(const std::string &name, RelationArray::EConsolidationAction ignoreAction=RelationArray::c_negativeWeight)
Register an relation involving MCParticles.
static Payload getInfo(Carrier &obj)
Static function to just return UserInformation attached to the obj of type Carrier.
Definition: UserInfo.h:100
bool registerInDataStore(DataStore::EStoreFlags storeFlags=DataStore::c_WriteOut)
Register the object/array in the DataStore.
T * appendNew()
Construct a new T object at the end of the array.
Definition: StoreArray.h:246
int getEntries() const
Get the number of objects in the array.
Definition: StoreArray.h:216
Class TPCG4TrackInfo - Geant4 simulated hit for the Microtpc detector.
int saveG4TrackInfo(int trackID, int PDG, float Mass, float Energy, float vtx[3], float mom[3])
Save saveG4TrackInfo into datastore.
bool step(G4Step *step, G4TouchableHistory *) override
Step processing method.
Abstract base class for different kinds of events.