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RunManagerMT Class Reference

#include <RunManagerMT.h>

Public Member Functions

void abortRun (bool softAbort=false)
 
const SensitiveDetectorCatalogcatalog () const
 
void Connect (RunAction *)
 
const std::vector< std::string > & G4Commands () const
 
void initG4 (const DDCompactView *pDD, const MagneticField *pMF, const HepPDT::ParticleDataTable *fPDGTable)
 
void initializeUserActions ()
 
PhysicsListphysicsListForWorker () const
 
 RunManagerMT (edm::ParameterSet const &p)
 
void stopG4 ()
 
const DDDWorldworld () const
 
 ~RunManagerMT ()
 

Private Member Functions

void DumpMagneticField (const G4Field *) const
 
void terminateRun ()
 

Private Attributes

SensitiveDetectorCatalog m_catalog
 
bool m_check
 
std::unique_ptr< sim::ChordFinderSetterm_chordFinderSetter
 
G4Run * m_currentRun
 
std::string m_FieldFile
 
std::vector< std::string > m_G4Commands
 
edm::ParameterSet m_g4overlap
 
G4MTRunManagerKernel * m_kernel
 
bool m_managerInitialized
 
edm::ParameterSet m_p
 
edm::ParameterSet m_pField
 
std::unique_ptr< PhysicsListm_physicsList
 
const std::string m_PhysicsTablesDir
 
edm::ParameterSet m_pPhysics
 
std::unique_ptr< DDG4ProductionCutsm_prodCuts
 
edm::ParameterSet m_pRunAction
 
bool m_pUseMagneticField
 
std::string m_RegionFile
 
SimActivityRegistry m_registry
 
bool m_RestorePhysicsTables
 
std::unique_ptr< SimRunInterfacem_runInterface
 
bool m_runTerminated
 
bool m_StorePhysicsTables
 
std::unique_ptr< CustomUIsessionm_UIsession
 
RunActionm_userRunAction
 
std::unique_ptr< DDDWorldm_world
 
std::string m_WriteFile
 

Friends

class RunManagerMTWorker
 

Detailed Description

Definition at line 55 of file RunManagerMT.h.

Constructor & Destructor Documentation

RunManagerMT::RunManagerMT ( edm::ParameterSet const &  p)
explicit

Definition at line 63 of file RunManagerMT.cc.

References g4SimHits_cfi::CustomUIsession, edm::ParameterSet::getUntrackedParameter(), m_check, m_currentRun, m_FieldFile, m_kernel, m_physicsList, m_RegionFile, m_UIsession, m_world, m_WriteFile, and AlCaHLTBitMon_QueryRunRegistry::string.

63  :
64  m_managerInitialized(false),
65  m_runTerminated(false),
66  m_pUseMagneticField(p.getParameter<bool>("UseMagneticField")),
67  m_PhysicsTablesDir(p.getParameter<std::string>("PhysicsTablesDirectory")),
68  m_StorePhysicsTables(p.getParameter<bool>("StorePhysicsTables")),
69  m_RestorePhysicsTables(p.getParameter<bool>("RestorePhysicsTables")),
70  m_pField(p.getParameter<edm::ParameterSet>("MagneticField")),
71  m_pPhysics(p.getParameter<edm::ParameterSet>("Physics")),
72  m_pRunAction(p.getParameter<edm::ParameterSet>("RunAction")),
73  m_g4overlap(p.getParameter<edm::ParameterSet>("G4CheckOverlap")),
74  m_G4Commands(p.getParameter<std::vector<std::string> >("G4Commands")),
75  m_p(p)
76 {
77  m_currentRun = nullptr;
78  m_UIsession.reset(new CustomUIsession());
79  m_physicsList.reset(nullptr);
80  m_world.reset(nullptr);
81  m_kernel = new G4MTRunManagerKernel();
82  G4StateManager::GetStateManager()->SetExceptionHandler(new ExceptionHandler());
83 
84  m_check = p.getUntrackedParameter<bool>("CheckOverlap",false);
85  m_WriteFile = p.getUntrackedParameter<std::string>("FileNameGDML","");
86  m_FieldFile = p.getUntrackedParameter<std::string>("FileNameField","");
87  m_RegionFile = p.getUntrackedParameter<std::string>("FileNameRegions","");
88 }
const std::string m_PhysicsTablesDir
Definition: RunManagerMT.h:109
bool m_managerInitialized
Definition: RunManagerMT.h:102
G4MTRunManagerKernel * m_kernel
Definition: RunManagerMT.h:98
edm::ParameterSet m_pRunAction
Definition: RunManagerMT.h:115
bool m_runTerminated
Definition: RunManagerMT.h:103
std::vector< std::string > m_G4Commands
Definition: RunManagerMT.h:117
std::unique_ptr< CustomUIsession > m_UIsession
Definition: RunManagerMT.h:100
G4Run * m_currentRun
Definition: RunManagerMT.h:106
std::string m_RegionFile
Definition: RunManagerMT.h:129
std::string m_WriteFile
Definition: RunManagerMT.h:128
bool m_pUseMagneticField
Definition: RunManagerMT.h:104
edm::ParameterSet m_p
Definition: RunManagerMT.h:118
bool m_StorePhysicsTables
Definition: RunManagerMT.h:110
std::unique_ptr< PhysicsList > m_physicsList
Definition: RunManagerMT.h:101
std::string m_FieldFile
Definition: RunManagerMT.h:127
edm::ParameterSet m_pField
Definition: RunManagerMT.h:113
std::unique_ptr< DDDWorld > m_world
Definition: RunManagerMT.h:120
edm::ParameterSet m_pPhysics
Definition: RunManagerMT.h:114
bool m_RestorePhysicsTables
Definition: RunManagerMT.h:111
edm::ParameterSet m_g4overlap
Definition: RunManagerMT.h:116
RunManagerMT::~RunManagerMT ( )

Definition at line 90 of file RunManagerMT.cc.

References m_runTerminated, and terminateRun().

91 {
92  if(!m_runTerminated) { terminateRun(); }
93  G4StateManager::GetStateManager()->SetNewState(G4State_Quit);
94  G4GeometryManager::GetInstance()->OpenGeometry();
95 }
void terminateRun()
bool m_runTerminated
Definition: RunManagerMT.h:103

Member Function Documentation

void RunManagerMT::abortRun ( bool  softAbort = false)
inline

Definition at line 73 of file RunManagerMT.h.

73 {}
const SensitiveDetectorCatalog& RunManagerMT::catalog ( ) const
inline

Definition at line 79 of file RunManagerMT.h.

Referenced by RunManagerMTWorker::initializeThread().

79  {
80  return m_catalog;
81  }
SensitiveDetectorCatalog m_catalog
Definition: RunManagerMT.h:123
void RunManagerMT::Connect ( RunAction runAction)

Definition at line 240 of file RunManagerMT.cc.

References SimActivityRegistry::beginOfRunSignal_, sim_act::Signaler< T >::connect(), SimActivityRegistry::endOfRunSignal_, RunAction::m_beginOfRunSignal, RunAction::m_endOfRunSignal, and m_registry.

Referenced by SimRunInterface::Connect(), and initializeUserActions().

241 {
244 }
SimActivityRegistry::EndOfRunSignal m_endOfRunSignal
Definition: RunAction.h:26
BeginOfRunSignal beginOfRunSignal_
EndOfRunSignal endOfRunSignal_
void connect(Observer< const T * > *iObs)
does not take ownership of memory
Definition: Signaler.h:59
SimActivityRegistry::BeginOfRunSignal m_beginOfRunSignal
Definition: RunAction.h:25
SimActivityRegistry m_registry
Definition: RunManagerMT.h:122
void RunManagerMT::DumpMagneticField ( const G4Field *  field) const
private

Definition at line 264 of file RunManagerMT.cc.

References funct::cos(), runTauDisplay::dr, PVValHelper::dz, groupFilesInBlocks::fout, mps_fire::i, createfilelist::int, m_FieldFile, MillePedeFileConverter_cfg::out, phi, point, alignCSCRings::r, funct::sin(), and z.

Referenced by initG4().

265 {
266  std::ofstream fout(m_FieldFile.c_str(), std::ios::out);
267  if(fout.fail()){
268  edm::LogWarning("SimG4CoreApplication")
269  << " RunManager WARNING : "
270  << "error opening file <" << m_FieldFile << "> for magnetic field";
271  } else {
272  double rmax = 9000*mm;
273  double zmax = 16000*mm;
274 
275  double dr = 5*cm;
276  double dz = 20*cm;
277 
278  int nr = (int)(rmax/dr);
279  int nz = 2*(int)(zmax/dz);
280 
281  double r = 0.0;
282  double z0 = -zmax;
283  double z;
284 
285  double phi = 0.0;
286  double cosf = cos(phi);
287  double sinf = sin(phi);
288 
289  double point[4] = {0.0,0.0,0.0,0.0};
290  double bfield[3] = {0.0,0.0,0.0};
291 
292  fout << std::setprecision(6);
293  for(int i=0; i<=nr; ++i) {
294  z = z0;
295  for(int j=0; j<=nz; ++j) {
296  point[0] = r*cosf;
297  point[1] = r*sinf;
298  point[2] = z;
299  field->GetFieldValue(point, bfield);
300  fout << "R(mm)= " << r/mm << " phi(deg)= " << phi/degree
301  << " Z(mm)= " << z/mm << " Bz(tesla)= " << bfield[2]/tesla
302  << " Br(tesla)= " << (bfield[0]*cosf + bfield[1]*sinf)/tesla
303  << " Bphi(tesla)= " << (bfield[0]*sinf - bfield[1]*cosf)/tesla
304  << G4endl;
305  z += dz;
306  }
307  r += dr;
308  }
309 
310  fout.close();
311  }
312 }
Sin< T >::type sin(const T &t)
Definition: Sin.h:22
Cos< T >::type cos(const T &t)
Definition: Cos.h:22
std::string m_FieldFile
Definition: RunManagerMT.h:127
*vegas h *****************************************************used in the default bin number in original ***version of VEGAS is ***a higher bin number might help to derive a more precise ***grade subtle point
Definition: invegas.h:5
const std::vector<std::string>& RunManagerMT::G4Commands ( ) const
inline

Definition at line 83 of file RunManagerMT.h.

Referenced by RunManagerMTWorker::initializeThread().

83  {
84  return m_G4Commands;
85  }
std::vector< std::string > m_G4Commands
Definition: RunManagerMT.h:117
void RunManagerMT::initG4 ( const DDCompactView pDD,
const MagneticField pMF,
const HepPDT::ParticleDataTable fPDGTable 
)

Definition at line 97 of file RunManagerMT.cc.

References RunAction::BeginOfRunAction(), sim::FieldBuilder::build(), trackerTree::check(), heppy_check::cmd, edm::errors::Configuration, beamerCreator::create(), SimActivityRegistry::dddWorldSignal_, dir, DumpMagneticField(), Exception, g, ecalTB2006H4_GenSimDigiReco_cfg::G4cout, reco::get(), edm::ParameterSet::getParameter(), edm::ParameterSet::getUntrackedParameter(), recoMuon::in, initializeUserActions(), edm::errors::LogicError, m_catalog, m_check, m_chordFinderSetter, m_currentRun, m_FieldFile, m_G4Commands, m_g4overlap, m_kernel, m_managerInitialized, m_p, m_pField, m_physicsList, m_PhysicsTablesDir, m_pPhysics, m_prodCuts, m_pUseMagneticField, m_RegionFile, m_registry, m_RestorePhysicsTables, m_StorePhysicsTables, m_userRunAction, m_world, m_WriteFile, map_, hpstanc_transforms::max, G4RegionReporter::ReportRegions(), and AlCaHLTBitMon_QueryRunRegistry::string.

99 {
100  if (m_managerInitialized) return;
101 
102  edm::LogInfo("SimG4CoreApplication")
103  << "RunManagerMT: start initialisation of geometry";
104 
105  // DDDWorld: get the DDCV from the ES and use it to build the World
107  m_world.reset(new DDDWorld(pDD, map_, m_catalog, false));
109 
110  // setup the magnetic field
111  edm::LogInfo("SimG4CoreApplication")
112  << "RunManagerMT: start initialisation of magnetic field";
113 
114  if (m_pUseMagneticField && "" != m_FieldFile)
115  {
116  const GlobalPoint g(0.,0.,0.);
117  sim::FieldBuilder fieldBuilder(pMF, m_pField);
118  CMSFieldManager* fieldManager = new CMSFieldManager();
119  G4TransportationManager * tM =
120  G4TransportationManager::GetTransportationManager();
121  tM->SetFieldManager(fieldManager);
122  fieldBuilder.build( fieldManager, tM->GetPropagatorInField());
123  DumpMagneticField(tM->GetFieldManager()->GetDetectorField());
124  }
125 
126  // Create physics list
127  edm::LogInfo("SimG4CoreApplication")
128  << "RunManagerMT: create PhysicsList";
129 
130  std::unique_ptr<PhysicsListMakerBase>
131  physicsMaker(PhysicsListFactory::get()->create(
132  m_pPhysics.getParameter<std::string> ("type")));
133  if (physicsMaker.get()==nullptr) {
135  << "Unable to find the Physics list requested";
136  }
137  m_physicsList =
138  physicsMaker->make(map_,fPDGTable,m_chordFinderSetter.get(),m_pPhysics,m_registry);
139 
140  PhysicsList* phys = m_physicsList.get();
141  if (phys==nullptr) {
143  "Physics list construction failed!");
144  }
145 
146  // adding GFlash, Russian Roulette for eletrons and gamma,
147  // step limiters on top of any Physics Lists
148  phys->RegisterPhysics(new ParametrisedEMPhysics("EMoptions",m_pPhysics));
149 
150  m_physicsList->ResetStoredInAscii();
152  m_physicsList->SetPhysicsTableRetrieved(m_PhysicsTablesDir);
153  }
154  edm::LogInfo("SimG4CoreApplication")
155  << "RunManagerMT: start initialisation of PhysicsList for master";
156 
157  int verb = std::max(m_pPhysics.getUntrackedParameter<int>("Verbosity",0),
158  m_p.getParameter<int>("SteppingVerbosity"));
159  m_kernel->SetVerboseLevel(verb);
160 
161  m_physicsList->SetDefaultCutValue(m_pPhysics.getParameter<double>("DefaultCutValue")*CLHEP::cm);
162  m_physicsList->SetCutsWithDefault();
163 
164  if(m_pPhysics.getParameter<bool>("CutsPerRegion")) {
165  m_prodCuts.reset(new DDG4ProductionCuts(map_, verb, m_pPhysics));
166  m_prodCuts->update();
167  }
168 
169  m_kernel->SetPhysics(phys);
170  m_kernel->InitializePhysics();
171  m_kernel->SetUpDecayChannels();
172 
173  // The following line was with the following comment in
174  // G4MTRunManager::InitializePhysics() in 10.00.p01; in practice
175  // needed to initialize certain singletons during the master thread
176  // initialization in order to avoid races later...
177  //
178  //BERTINI, this is needed to create pseudo-particles, to be removed
179  G4CascadeInterface::Initialize();
180 
181  if (m_kernel->RunInitialization()) { m_managerInitialized = true; }
182  else {
184  "G4RunManagerKernel initialization failed!");
185  }
186 
187  if (m_StorePhysicsTables) {
188  std::ostringstream dir;
189  dir << m_PhysicsTablesDir << '\0';
190  std::string cmd = std::string("/control/shell mkdir -p ")+m_PhysicsTablesDir;
191  if (!std::ifstream(dir.str().c_str(), std::ios::in))
192  G4UImanager::GetUIpointer()->ApplyCommand(cmd);
193  m_physicsList->StorePhysicsTable(m_PhysicsTablesDir);
194  }
195 
197 
198  if(!m_G4Commands.empty()) {
199  G4cout << "RunManagerMT: Requested UI commands: " << G4endl;
200  for (unsigned it=0; it<m_G4Commands.size(); ++it) {
201  G4cout << " " << m_G4Commands[it] << G4endl;
202  G4UImanager::GetUIpointer()->ApplyCommand(m_G4Commands[it]);
203  }
204  }
205 
206  if(verb > 1) { m_physicsList->DumpCutValuesTable(); }
207 
208  // geometry dump
209  if("" != m_WriteFile) {
210  G4GDMLParser gdml;
211  gdml.SetRegionExport(true);
212  gdml.SetEnergyCutsExport(true);
213  gdml.Write(m_WriteFile, m_world->GetWorldVolume(), true);
214  }
215 
216  // G4Region dump
217  if("" != m_RegionFile) {
218  G4RegionReporter rrep;
220  }
221 
222  // Intersection check
224 
225  // If the Geant4 particle table is needed, decomment the lines below
226  //
227  //G4ParticleTable::GetParticleTable()->DumpTable("ALL");
228  //
229  G4StateManager::GetStateManager()->SetNewState(G4State_GeomClosed);
230  m_currentRun = new G4Run();
232 }
const std::string m_PhysicsTablesDir
Definition: RunManagerMT.h:109
bool m_managerInitialized
Definition: RunManagerMT.h:102
T getParameter(std::string const &) const
Map map_
T getUntrackedParameter(std::string const &, T const &) const
std::unique_ptr< DDG4ProductionCuts > m_prodCuts
Definition: RunManagerMT.h:121
G4MTRunManagerKernel * m_kernel
Definition: RunManagerMT.h:98
SensitiveDetectorCatalog m_catalog
Definition: RunManagerMT.h:123
def create(alignables, pedeDump, additionalData, outputFile, config)
std::vector< std::string > m_G4Commands
Definition: RunManagerMT.h:117
G4Run * m_currentRun
Definition: RunManagerMT.h:106
std::string m_RegionFile
Definition: RunManagerMT.h:129
void initializeUserActions()
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e g
Definition: Activities.doc:4
std::string m_WriteFile
Definition: RunManagerMT.h:128
bool m_pUseMagneticField
Definition: RunManagerMT.h:104
edm::ParameterSet m_p
Definition: RunManagerMT.h:118
void DumpMagneticField(const G4Field *) const
bool m_StorePhysicsTables
Definition: RunManagerMT.h:110
std::unique_ptr< PhysicsList > m_physicsList
Definition: RunManagerMT.h:101
std::string m_FieldFile
Definition: RunManagerMT.h:127
edm::ParameterSet m_pField
Definition: RunManagerMT.h:113
std::unique_ptr< DDDWorld > m_world
Definition: RunManagerMT.h:120
edm::ParameterSet m_pPhysics
Definition: RunManagerMT.h:114
void BeginOfRunAction(const G4Run *aRun)
Definition: RunAction.cc:22
DDDWorldSignal dddWorldSignal_
bool m_RestorePhysicsTables
Definition: RunManagerMT.h:111
std::unique_ptr< sim::ChordFinderSetter > m_chordFinderSetter
Definition: RunManagerMT.h:125
void ReportRegions(const std::string &ss)
edm::ParameterSet m_g4overlap
Definition: RunManagerMT.h:116
dbl *** dir
Definition: mlp_gen.cc:35
RunAction * m_userRunAction
Definition: RunManagerMT.h:105
def check(config)
Definition: trackerTree.py:14
T get(const Candidate &c)
Definition: component.h:55
SimActivityRegistry m_registry
Definition: RunManagerMT.h:122
void RunManagerMT::initializeUserActions ( )

Definition at line 234 of file RunManagerMT.cc.

References Connect(), m_pRunAction, m_runInterface, m_userRunAction, and g4SimHits_cfi::RunAction.

Referenced by initG4().

234  {
235  m_runInterface.reset(new SimRunInterface(this, true));
238 }
void Connect(RunAction *)
edm::ParameterSet m_pRunAction
Definition: RunManagerMT.h:115
std::unique_ptr< SimRunInterface > m_runInterface
Definition: RunManagerMT.h:107
RunAction * m_userRunAction
Definition: RunManagerMT.h:105
PhysicsList* RunManagerMT::physicsListForWorker ( ) const
inline

Definition at line 90 of file RunManagerMT.h.

References RunManagerMTWorker::terminateRun().

Referenced by RunManagerMTWorker::initializeThread().

90  {
91  return m_physicsList.get();
92  }
std::unique_ptr< PhysicsList > m_physicsList
Definition: RunManagerMT.h:101
void RunManagerMT::stopG4 ( )

Definition at line 246 of file RunManagerMT.cc.

References m_runTerminated, and terminateRun().

247 {
248  G4StateManager::GetStateManager()->SetNewState(G4State_Quit);
249  if(!m_runTerminated) { terminateRun(); }
250 }
void terminateRun()
bool m_runTerminated
Definition: RunManagerMT.h:103
void RunManagerMT::terminateRun ( )
private

Definition at line 252 of file RunManagerMT.cc.

References RunAction::EndOfRunAction(), m_currentRun, m_kernel, m_runTerminated, and m_userRunAction.

Referenced by stopG4(), and ~RunManagerMT().

252  {
253  if(m_userRunAction) {
255  delete m_userRunAction;
256  m_userRunAction = nullptr;
257  }
258  if(m_kernel && !m_runTerminated) {
259  m_kernel->RunTermination();
260  }
261  m_runTerminated = true;
262 }
G4MTRunManagerKernel * m_kernel
Definition: RunManagerMT.h:98
bool m_runTerminated
Definition: RunManagerMT.h:103
G4Run * m_currentRun
Definition: RunManagerMT.h:106
void EndOfRunAction(const G4Run *aRun)
Definition: RunAction.cc:40
RunAction * m_userRunAction
Definition: RunManagerMT.h:105
const DDDWorld& RunManagerMT::world ( ) const
inline

Definition at line 75 of file RunManagerMT.h.

Referenced by RunManagerMTWorker::initializeThread().

75  {
76  return *m_world;
77  }
std::unique_ptr< DDDWorld > m_world
Definition: RunManagerMT.h:120

Friends And Related Function Documentation

friend class RunManagerMTWorker
friend

Definition at line 57 of file RunManagerMT.h.

Member Data Documentation

SensitiveDetectorCatalog RunManagerMT::m_catalog
private

Definition at line 123 of file RunManagerMT.h.

Referenced by initG4().

bool RunManagerMT::m_check
private

Definition at line 112 of file RunManagerMT.h.

Referenced by initG4(), and RunManagerMT().

std::unique_ptr<sim::ChordFinderSetter> RunManagerMT::m_chordFinderSetter
private

Definition at line 125 of file RunManagerMT.h.

Referenced by initG4().

G4Run* RunManagerMT::m_currentRun
private

Definition at line 106 of file RunManagerMT.h.

Referenced by initG4(), RunManagerMT(), and terminateRun().

std::string RunManagerMT::m_FieldFile
private

Definition at line 127 of file RunManagerMT.h.

Referenced by DumpMagneticField(), initG4(), and RunManagerMT().

std::vector<std::string> RunManagerMT::m_G4Commands
private

Definition at line 117 of file RunManagerMT.h.

Referenced by initG4().

edm::ParameterSet RunManagerMT::m_g4overlap
private

Definition at line 116 of file RunManagerMT.h.

Referenced by initG4().

G4MTRunManagerKernel* RunManagerMT::m_kernel
private

Definition at line 98 of file RunManagerMT.h.

Referenced by initG4(), RunManagerMT(), and terminateRun().

bool RunManagerMT::m_managerInitialized
private

Definition at line 102 of file RunManagerMT.h.

Referenced by initG4().

edm::ParameterSet RunManagerMT::m_p
private

Definition at line 118 of file RunManagerMT.h.

Referenced by initG4().

edm::ParameterSet RunManagerMT::m_pField
private

Definition at line 113 of file RunManagerMT.h.

Referenced by initG4().

std::unique_ptr<PhysicsList> RunManagerMT::m_physicsList
private

Definition at line 101 of file RunManagerMT.h.

Referenced by initG4(), and RunManagerMT().

const std::string RunManagerMT::m_PhysicsTablesDir
private

Definition at line 109 of file RunManagerMT.h.

Referenced by initG4().

edm::ParameterSet RunManagerMT::m_pPhysics
private

Definition at line 114 of file RunManagerMT.h.

Referenced by initG4().

std::unique_ptr<DDG4ProductionCuts> RunManagerMT::m_prodCuts
private

Definition at line 121 of file RunManagerMT.h.

Referenced by initG4().

edm::ParameterSet RunManagerMT::m_pRunAction
private

Definition at line 115 of file RunManagerMT.h.

Referenced by initializeUserActions().

bool RunManagerMT::m_pUseMagneticField
private

Definition at line 104 of file RunManagerMT.h.

Referenced by initG4().

std::string RunManagerMT::m_RegionFile
private

Definition at line 129 of file RunManagerMT.h.

Referenced by initG4(), and RunManagerMT().

SimActivityRegistry RunManagerMT::m_registry
private

Definition at line 122 of file RunManagerMT.h.

Referenced by Connect(), and initG4().

bool RunManagerMT::m_RestorePhysicsTables
private

Definition at line 111 of file RunManagerMT.h.

Referenced by initG4().

std::unique_ptr<SimRunInterface> RunManagerMT::m_runInterface
private

Definition at line 107 of file RunManagerMT.h.

Referenced by initializeUserActions().

bool RunManagerMT::m_runTerminated
private

Definition at line 103 of file RunManagerMT.h.

Referenced by stopG4(), terminateRun(), and ~RunManagerMT().

bool RunManagerMT::m_StorePhysicsTables
private

Definition at line 110 of file RunManagerMT.h.

Referenced by initG4().

std::unique_ptr<CustomUIsession> RunManagerMT::m_UIsession
private

Definition at line 100 of file RunManagerMT.h.

Referenced by RunManagerMT().

RunAction* RunManagerMT::m_userRunAction
private

Definition at line 105 of file RunManagerMT.h.

Referenced by initG4(), initializeUserActions(), and terminateRun().

std::unique_ptr<DDDWorld> RunManagerMT::m_world
private

Definition at line 120 of file RunManagerMT.h.

Referenced by initG4(), and RunManagerMT().

std::string RunManagerMT::m_WriteFile
private

Definition at line 128 of file RunManagerMT.h.

Referenced by initG4(), and RunManagerMT().