Belle II Software  release-08-01-10
ClawsDigitizerModule.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/claws/modules/ClawsDigitizerModule.h>
10 #include <beast/claws/dataobjects/CLAWSSimHit.h>
11 #include <framework/logging/Logger.h>
12 #include <framework/gearbox/GearDir.h>
13 #include <framework/gearbox/Unit.h>
14 
15 //c++
16 #include <string>
17 #include <fstream>
18 #include <vector>
19 
20 using namespace std;
21 using namespace Belle2;
22 using namespace claws;
23 
24 
25 //-----------------------------------------------------------------
26 // Register the Module
27 //-----------------------------------------------------------------
28 REG_MODULE(ClawsDigitizer);
29 
30 //-----------------------------------------------------------------
31 // Implementation
32 //-----------------------------------------------------------------
33 
34 ClawsDigitizerModule::ClawsDigitizerModule() : Module()
35 {
36  // Set module properties
37  setDescription("Claws digitizer module");
38 
39  //Default values are set here. New values can be in CLAWS.xml.
40  addParam("ScintCell", m_ScintCell, "Number of scintillator cell", 16);
41  addParam("TimeStep", m_TimeStep, "Time step", 0.8);
42  addParam("C_keV_to_MIP", m_C_keV_to_MIP, "C_keV_to_MIP", 805.5);
43  addParam("C_MIP_to_PE", m_C_MIP_to_PE, "C_MIP_to_PE");
44  addParam("MinTime", m_MinTime, "Min. time", 0.0);
45  addParam("MaxTime", m_MaxTime, "Max. time", 750.0);
46  addParam("PEthres", m_PEthres, "Energy threshold in keV", 1.0);
47 }
48 
50 {
51 }
52 
54 {
55  B2INFO("ClawsDigitizer: Initializing");
56  m_clawsHit.registerInDataStore();
57 
58  //get the garfield drift data, gas, and CLAWS paramters
59  getXMLData();
60 
61 }
62 
64 {
65 }
66 
68 {
69 
70  StoreArray<CLAWSSimHit> CLAWSSimHits;
71 
72  //Skip events with no CLAWSSimHits, but continue the event counter
73  if (CLAWSSimHits.getEntries() == 0) {
74  return;
75  }
76 
79  /*
80  int number_of_timebins = (int)((m_MaxTime - m_MinTime) / m_TimeStep);
81 
82  for (int i = 0; i < 1000; i ++)
83  for (int j = 0; j < 100; j ++)
84  hitsarrayinPE[i][j] = 0;
85 
86  for (const auto& SimHit : SimHits) {
87  const int detNb = SimHit.getCellId();
88  const double Edep = SimHit.getEnergyDep() * 1e6; //GeV -> keV
89  const double tof = SimHit.getFlightTime(); //ns
90  int TimeBin = tof / m_TimeStep;
91  double MIP = Edep / m_C_keV_to_MIP;
92  double PE = MIP * m_C_MIP_to_PE;
93  if (m_MinTime < tof && tof < m_MaxTime && TimeBin < 1000 && detNb < 100)
94  hitsarrayinPE[TimeBin][detNb] += PE;
95  }
96  */
97  for (const auto& SimHit : SimHits) {
98  int lad = SimHit.getLadder();
99  int sen = SimHit.getSensor();
100  //const int detNb = SimHit.getCellId();
101  //int pdg = SimHit.getPDGCode();
102  int detNb = (lad - 1) * 8 + sen - 1;
103  const double Edep = SimHit.getEnergyVisible() * 1e6; //GeV -> keV
104  const double tof = SimHit.getTime(); //ns
105  int TimeBin = tof / m_TimeStep;
106  double MIP = Edep / m_C_keV_to_MIP;
107  double PE = MIP * m_C_MIP_to_PE[detNb];
108  if ((m_MinTime < tof && tof < m_MaxTime) && PE > m_PEthres)
109  Hits.appendNew(ClawsHit(detNb, TimeBin, Edep, MIP, PE));
110  }
111  /*
112  for (int i = 0; i < number_of_timebins; i ++) {
113  for (int j = 0; j < m_ScintCell; j ++) {
114  if (hitsarrayinPE[i][j] > m_PEthres) {
115  double PE = hitsarrayinPE[i][j];
116  double MIP = PE / m_C_MIP_to_PE;
117  double Edep = MIP * m_C_keV_to_MIP * 1e-6; //keV -> GeV.
118  Hits.appendNew(ClawsHit(j, i, Edep, MIP, PE));
119  }
120  }
121  }
122  */
123 }
124 
125 //read tube centers, impulse response, and garfield drift data filename from CLAWS.xml
127 {
128  GearDir content = GearDir("/Detector/DetectorComponent[@name=\"CLAWS\"]/Content/");
129 
130  m_ScintCell = content.getInt("ScintCell");
131  m_TimeStep = content.getTime("TimeStep") / Unit::ns;
132  m_MinTime = content.getTime("MinTime") / Unit::ns;
133  m_MaxTime = content.getTime("MaxTime") / Unit::ns;
134  m_PEthres = content.getDouble("PEthres");
135  m_C_keV_to_MIP = content.getDouble("C_keV_to_MIP");
136  //m_C_MIP_to_PE = content.getDouble("C_MIP_to_PE");
137  B2INFO("ClawsDigitizer: Aquired claws locations and gas parameters");
138 
139 }
140 
142 {
143 }
144 
146 {
147 }
148 
149 
ClassClawsHit - digitization simulated hit for the Claws detector.
Definition: ClawsHit.h:26
GearDir is the basic class used for accessing the parameter store.
Definition: GearDir.h:31
Base class for Modules.
Definition: Module.h:72
void setDescription(const std::string &description)
Sets the description of the module.
Definition: Module.cc:214
Accessor to arrays stored in the data store.
Definition: StoreArray.h:113
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
static const double ns
Standard of [time].
Definition: Unit.h:48
std::vector< Double_t > m_C_MIP_to_PE
Convertor factor MIP to PE.
virtual void initialize() override
Initialize the Module.
virtual void event() override
Event processor.
virtual void endRun() override
End-of-run action.
virtual void getXMLData()
reads data from CLAWS.xml: tube location, drift data filename, sigma of impulse response function
virtual void terminate() override
Termination action.
int m_ScintCell
Number of CLAWS scintillator cell.
virtual void beginRun() override
Called when entering a new run.
double m_C_keV_to_MIP
Convertor factor keV to MIP.
StoreArray< ClawsHit > m_clawsHit
Array for ClawsHit.
void addParam(const std::string &name, T &paramVariable, const std::string &description, const T &defaultValue)
Adds a new parameter to the module.
Definition: Module.h:560
#define REG_MODULE(moduleName)
Register the given module (without 'Module' suffix) with the framework.
Definition: Module.h:650
Abstract base class for different kinds of events.