source: trunk/source/tracking/src/G4RichTrajectoryPoint.cc @ 1228

Last change on this file since 1228 was 1228, checked in by garnier, 14 years ago

update geant4.9.3 tag

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1//
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17// *                                                                  *
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25//
26//
27// $Id: G4RichTrajectoryPoint.cc,v 1.5 2009/11/24 10:04:14 perl Exp $
28// GEANT4 tag $Name: geant4-09-03 $
29//
30//
31// ---------------------------------------------------------------
32//
33// G4RichTrajectoryPoint.cc
34//
35// Contact:
36//   Questions and comments on G4TrajectoryPoint, on which this is based,
37//   should be sent to
38//     Katsuya Amako  (e-mail: Katsuya.Amako@kek.jp)
39//     Makoto  Asai   (e-mail: asai@kekvax.kek.jp)
40//     Takashi Sasaki (e-mail: Takashi.Sasaki@kek.jp)
41//   and on the extended code to:
42//     John Allison   (e-mail: John.Allison@manchester.ac.uk)
43//     Joseph Perl    (e-mail: perl@slac.stanford.edu)
44//
45// ---------------------------------------------------------------
46
47#include "G4RichTrajectoryPoint.hh"
48
49#include "G4Track.hh"
50#include "G4Step.hh"
51#include "G4VProcess.hh"
52
53#include "G4AttDefStore.hh"
54#include "G4AttDef.hh"
55#include "G4AttValue.hh"
56#include "G4UnitsTable.hh"
57
58//#define G4ATTDEBUG
59#ifdef G4ATTDEBUG
60#include "G4AttCheck.hh"
61#endif
62
63#include <sstream>
64
65G4Allocator<G4RichTrajectoryPoint> aRichTrajectoryPointAllocator;
66
67G4RichTrajectoryPoint::G4RichTrajectoryPoint():
68  fpAuxiliaryPointVector(0),
69  fTotEDep(0.),
70  fRemainingEnergy(0.),
71  fpProcess(0),
72  fPreStepPointGlobalTime(0),
73  fPostStepPointGlobalTime(0)
74{}
75
76G4RichTrajectoryPoint::G4RichTrajectoryPoint(const G4Track* aTrack):
77  G4TrajectoryPoint(aTrack->GetPosition()),
78  fpAuxiliaryPointVector(0),
79  fTotEDep(0.),
80  fRemainingEnergy(aTrack->GetKineticEnergy()),
81  fpProcess(0),
82  fPreStepPointGlobalTime(aTrack->GetGlobalTime()),
83  fPostStepPointGlobalTime(aTrack->GetGlobalTime()),
84  fpPreStepPointVolume(aTrack->GetTouchableHandle()),
85  fpPostStepPointVolume(aTrack->GetNextTouchableHandle())
86{}
87
88G4RichTrajectoryPoint::G4RichTrajectoryPoint(const G4Step* aStep):
89  G4TrajectoryPoint(aStep->GetPostStepPoint()->GetPosition()),
90  fpAuxiliaryPointVector(aStep->GetPointerToVectorOfAuxiliaryPoints()),
91  fTotEDep(aStep->GetTotalEnergyDeposit())
92{
93  G4StepPoint* preStepPoint = aStep->GetPreStepPoint();
94  G4StepPoint* postStepPoint = aStep->GetPostStepPoint();
95  if (aStep->GetTrack()->GetCurrentStepNumber() <= 0) {  // First step
96    fRemainingEnergy = aStep->GetTrack()->GetKineticEnergy();
97  } else {
98    fRemainingEnergy = preStepPoint->GetKineticEnergy() - fTotEDep;
99  }
100  fpProcess = postStepPoint->GetProcessDefinedStep();
101  fPreStepPointGlobalTime = preStepPoint->GetGlobalTime();
102  fPostStepPointGlobalTime = postStepPoint->GetGlobalTime();
103  fpPreStepPointVolume = preStepPoint->GetTouchableHandle();
104  fpPostStepPointVolume = postStepPoint->GetTouchableHandle();
105
106  /*
107  G4cout << "fpAuxiliaryPointVector "
108         << (void*) fpAuxiliaryPointVector;
109  G4cout << ": ";
110  if (fpAuxiliaryPointVector) {
111    G4cout << "size: " << fpAuxiliaryPointVector->size();
112    for (size_t i = 0; i < fpAuxiliaryPointVector->size(); ++i)
113      G4cout << "\n  " << (*fpAuxiliaryPointVector)[i];
114  } else {
115    G4cout << "non-existent";
116  }
117  G4cout << G4endl;
118
119  static const G4Step* lastStep = 0;
120  if (aStep && aStep == lastStep) {
121    G4cout << "********* aStep is same as last" << G4endl;
122  }
123  lastStep = aStep;
124
125  static std::vector<G4ThreeVector>*  lastAuxiliaryPointVector = 0;
126  if (fpAuxiliaryPointVector &&
127      fpAuxiliaryPointVector == lastAuxiliaryPointVector) {
128    G4cout << "********* fpAuxiliaryPointVector is same as last" << G4endl;
129  }
130  lastAuxiliaryPointVector = fpAuxiliaryPointVector;
131  */
132}
133
134G4RichTrajectoryPoint::G4RichTrajectoryPoint
135(const G4RichTrajectoryPoint &right):
136  G4TrajectoryPoint(right),
137  fpAuxiliaryPointVector(right.fpAuxiliaryPointVector),
138  fTotEDep(right.fTotEDep),
139  fRemainingEnergy(right.fRemainingEnergy),
140  fpProcess(right.fpProcess),
141  fPreStepPointGlobalTime(right.fPreStepPointGlobalTime),
142  fPostStepPointGlobalTime(right.fPostStepPointGlobalTime)
143{}
144
145G4RichTrajectoryPoint::~G4RichTrajectoryPoint()
146{
147  if(fpAuxiliaryPointVector) {
148    /*
149    G4cout << "Deleting fpAuxiliaryPointVector at "
150           << (void*) fpAuxiliaryPointVector
151           << G4endl;
152    */
153    delete fpAuxiliaryPointVector;
154  }
155}
156
157const std::map<G4String,G4AttDef>*
158G4RichTrajectoryPoint::GetAttDefs() const
159{
160  G4bool isNew;
161  std::map<G4String,G4AttDef>* store
162    = G4AttDefStore::GetInstance("G4RichTrajectoryPoint",isNew);
163  if (isNew) {
164
165    // Copy base class att defs...
166    *store = *(G4TrajectoryPoint::GetAttDefs());
167
168    G4String ID;
169
170    ID = "Aux";
171    (*store)[ID] = G4AttDef(ID, "Auxiliary Point Position",
172                            "Physics","G4BestUnit","G4ThreeVector");
173    ID = "TED";
174    (*store)[ID] = G4AttDef(ID,"Total Energy Deposit",
175                            "Physics","G4BestUnit","G4double");
176    ID = "RE";
177    (*store)[ID] = G4AttDef(ID,"Remaining Energy",
178                            "Physics","G4BestUnit","G4double");
179    ID = "PDS";
180    (*store)[ID] = G4AttDef(ID,"Process Defined Step",
181                            "Physics","","G4String");
182    ID = "PTDS";
183    (*store)[ID] = G4AttDef(ID,"Process Type Defined Step",
184                            "Physics","","G4String");
185    ID = "PreT";
186    (*store)[ID] = G4AttDef(ID,"Pre-step-point global time",
187                            "Physics","G4BestUnit","G4double");
188    ID = "PostT";
189    (*store)[ID] = G4AttDef(ID,"Post-step-point global time",
190                            "Physics","G4BestUnit","G4double");
191    ID = "PreVPath";
192    (*store)[ID] = G4AttDef(ID,"Pre-step Volume Path",
193                            "Physics","","G4String");
194    ID = "PostVPath";
195    (*store)[ID] = G4AttDef(ID,"Post-step Volume Path",
196                            "Physics","","G4String");
197  }
198  return store;
199}
200
201static G4String Path(const G4TouchableHandle& th)
202{
203  std::ostringstream oss;
204  G4int depth = th->GetHistoryDepth();
205  for (G4int i = depth; i >= 0; --i) {
206    oss << th->GetVolume(i)->GetName()
207        << ':' << th->GetCopyNumber(i);
208    if (i != 0) oss << '/';
209  }
210  return oss.str();
211}
212
213std::vector<G4AttValue>* G4RichTrajectoryPoint::CreateAttValues() const
214{
215  // Create base class att values...
216  std::vector<G4AttValue>* values = G4TrajectoryPoint::CreateAttValues();
217
218  if (fpAuxiliaryPointVector) {
219    std::vector<G4ThreeVector>::iterator iAux;
220    for (iAux = fpAuxiliaryPointVector->begin();
221         iAux != fpAuxiliaryPointVector->end(); ++iAux) {
222      values->push_back(G4AttValue("Aux",G4BestUnit(*iAux,"Length"),""));
223    }
224  }
225
226  values->push_back(G4AttValue("TED",G4BestUnit(fTotEDep,"Energy"),""));
227
228  values->push_back(G4AttValue("RE",G4BestUnit(fRemainingEnergy,"Energy"),""));
229
230  if (fpProcess) {
231    values->push_back
232      (G4AttValue("PDS",fpProcess->GetProcessName(),""));
233    values->push_back
234      (G4AttValue
235       ("PTDS",G4VProcess::GetProcessTypeName(fpProcess->GetProcessType()),
236        ""));
237  } else {
238    values->push_back
239      (G4AttValue("PDS","User Defined Limit in Current Volume",""));
240    values->push_back(G4AttValue("PTDS","User",""));
241  }
242
243  values->push_back
244    (G4AttValue("PreT",G4BestUnit(fPreStepPointGlobalTime,"Time"),""));
245
246  values->push_back
247    (G4AttValue("PostT",G4BestUnit(fPostStepPointGlobalTime,"Time"),""));
248
249  if (fpPreStepPointVolume && fpPreStepPointVolume->GetVolume()) {
250    values->push_back(G4AttValue("PreVPath",Path(fpPreStepPointVolume),""));
251  } else {
252    values->push_back(G4AttValue("PreVPath","None",""));
253  }
254
255  if (fpPostStepPointVolume && fpPostStepPointVolume->GetVolume()) {
256    values->push_back(G4AttValue("PostVPath",Path(fpPostStepPointVolume),""));
257  } else {
258    values->push_back(G4AttValue("PostVPath","None",""));
259  }
260
261#ifdef G4ATTDEBUG
262  G4cout << G4AttCheck(values,GetAttDefs());
263#endif
264
265  return values;
266}
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