399 if (!
gROOT->GetListOfGeometries()->FindObject(
this))
gROOT->GetListOfGeometries()->Add(
this);
400 if (!
gROOT->GetListOfBrowsables()->FindObject(
this))
gROOT->GetListOfBrowsables()->Add(
this);
415 if (
fgLock)
Fatal(
"Init",
"New geometry created while the old one locked !!!");
502 if (
gROOT->GetListOfFiles()) {
503 gROOT->GetListOfGeometries()->Remove(
this);
504 gROOT->GetListOfBrowsables()->Remove(
this);
584 Warning(
"AddProperty",
"Property \"%s\" already exists with value %g",
property, (pos.first)->second);
597 if (error) *error =
kTRUE;
600 if (error) *error =
kFALSE;
611 if (error) *error =
kTRUE;
616 while (pos < i) { ++it; ++pos; }
617 if (error) *error =
kFALSE;
676 Error(
"AddVolume",
"invalid volume");
721 std::thread::id threadId = std::this_thread::get_id();
722 NavigatorsMap_t::const_iterator it =
fNavigators.find(threadId);
727 fNavigators.insert(NavigatorsMap_t::value_type(threadId, array));
744 std::thread::id threadId = std::this_thread::get_id();
745 NavigatorsMap_t::const_iterator it =
fNavigators.find(threadId);
758 std::thread::id threadId = std::this_thread::get_id();
759 NavigatorsMap_t::const_iterator it =
fNavigators.find(threadId);
770 std::thread::id threadId = std::this_thread::get_id();
771 NavigatorsMap_t::const_iterator it =
fNavigators.find(threadId);
773 Error(
"SetCurrentNavigator",
"No navigator defined for this thread\n");
774 std::cout <<
" thread id: " << threadId << std::endl;
780 Error(
"SetCurrentNavigator",
"Navigator %d not existing for this thread\n",
index);
781 std::cout <<
" thread id: " << threadId << std::endl;
803 for (NavigatorsMap_t::iterator it =
fNavigators.begin();
829 Error(
"Remove navigator",
"Navigator %p not found", nav);
839 Error(
"SetMaxThreads",
"Cannot set maximum number of threads before closing the geometry");
844 std::thread::id threadId = std::this_thread::get_id();
845 NavigatorsMap_t::const_iterator it =
fNavigators.find(threadId);
849 fNavigators.insert(NavigatorsMap_t::value_type(threadId, array));
907 TTHREAD_TLS(
Int_t) tid = -1;
909 if (ttid > -1)
return ttid;
911 std::thread::id threadId = std::this_thread::get_id();
913 if (it !=
fgThreadId->end())
return it->second;
939 "TGeoManager",
this,
"SetVisibility(TObject*,Bool_t)");
1018 if (!vorig || !vnew)
return nref;
1021 if (morig) checkmed =
kTRUE;
1025 Error(
"ReplaceVolume",
"Replacement volume %s has no medium and it is not an assembly",
1029 if (mnew && checkmed) {
1031 Warning(
"ReplaceVolume",
"Replacement volume %s has different medium than original volume %s",
1044 for (i=0; i<nvol; i++) {
1047 if (vol==vorig || vol==vnew)
continue;
1049 for (j=0; j<nd; j++) {
1054 if (mnew && mnew->
GetId()!=morig->
GetId()) ierr++;
1059 Info(
"ReplaceVolume",
"%s replaced with assembly and declared NON-OVERLAPPING!",node->
GetName());
1070 Info(
"ReplaceVolume",
"%s inside substitute assembly %s declared NON-OVERLAPPING!",node->
GetName(),vnew->
GetName());
1076 if (ierr)
Warning(
"ReplaceVolume",
"Volumes should not be replaced with assemblies if they are positioned in containers having a different medium ID.\n %i occurrences for assembly replacing volume %s",
1088 Warning(
"TransformVolumeToAssembly",
"Volume %s not found", vname);
1096 while (
index<indmax) {
1105 Warning(
"TransformVolumeToAssembly",
"Volume %s already assembly", toTransform->
GetName());
1107 Warning(
"TransformVolumeToAssembly",
"Volume %s has no daughters, cannot transform", toTransform->
GetName());
1109 Warning(
"TransformVolumeToAssembly",
"Volume %s divided, cannot transform", toTransform->
GetName());
1113 if (
index >= indmax)
return count;
1115 if (!strcmp(toTransform->
GetName(),vname)) replace =
kTRUE;
1215 return TGeoBuilder::Instance(
this)->
Medium(
name, numed, nmat, isvol, ifield, fieldm, tmaxfd, stemax, deemax, epsil, stmin);
1363 Warning(
"CloseGeometry",
"geometry already closed");
1367 Error(
"CloseGeometry",
"you MUST call SetTopVolume() first !");
1370 if (!
gROOT->GetListOfGeometries()->FindObject(
this))
gROOT->GetListOfGeometries()->Add(
this);
1371 if (!
gROOT->GetListOfBrowsables()->FindObject(
this))
gROOT->GetListOfBrowsables()->Add(
this);
1382 Int_t nnavigators = 0;
1390 Error(
"CloseGeometry",
"Master volume not streamed");
1403 for (
Int_t i=0; i<nnavigators; i++) {
1424 if (
fgVerboseLevel>0)
Info(
"CloseGeometry",
"----------------modeler ready----------------");
1451 for (
Int_t i=0; i<nnavigators; i++) {
1459 Info(
"CloseGeometry",
"----------------modeler ready----------------");
1590 while ((node=next())) {
1617 Error(
"CountLevels",
"Top node not defined.");
1623 if (
fgVerboseLevel>1 && fixrefs)
Info(
"CountLevels",
"Fixing volume reference counts");
1627 Int_t maxvertices = 1;
1628 while ((node=next())) {
1631 for (
Int_t ibit=10; ibit<14; ibit++) {
1688 if (tmin<0 || tmin>=tmax || nframes<1)
return;
1710 for (i=0; i<3; i++) {
1711 start[i+3] = 20 + 1.3*start[i+3];
1712 end[i+3] = 20 + 0.9*end[i+3];
1714 for (i=0; i<6; i++) {
1715 dd[i] = (end[i]-start[i])/10.;
1719 dlong = (-206-dlong)/
Double_t(nframes);
1720 dlat = (126-dlat)/
Double_t(nframes);
1721 dpsi = (75-dpsi)/
Double_t(nframes);
1725 for (i=0; i<nframes; i++) {
1729 for (j=0; j<6; j++)
box[j]+=dd[j];
1808 static char defaultname[5] = {
"XXX" };
1809 if (!
fPdgNames || !pdg)
return defaultname;
1828 Warning(
"SetPdgName",
"No more than 256 different pdg codes allowed");
1849 Error(
"AddGDMLMatrix",
"Matrix %s already added to manager", mat->
GetName());
1868 Error(
"AddOpticalSurface",
"Surface %s already added to manager", optsurf->
GetName());
1887 Error(
"AddSkinSurface",
"Surface %s already added to manager", surf->
GetName());
1906 Error(
"AddBorderSurface",
"Surface %s already added to manager", surf->
GetName());
1937 bombx = bomby = bombz = bombr = 1.3;
2019 if (trk)
return trk;
2025 if (trk)
return trk;
2038 if (track->
GetId() ==
id)
return track;
2051 if (track->
GetId()==
id)
return track;
2064 if (track->
GetId() ==
id)
return i;
2091 const Int_t nmax = 110;
2098 col[ 4] = col[ 5] =
kGreen-10;
2099 col[ 6] = col[ 7] =
kBlue-7;
2101 col[10] = col[11] =
kRed-10;
2107 col[24] = col[25] = col[26] =
kBlue-8;
2145 if (strcmp(volume->
GetName(),
name) && !all)
continue;
2155 if (strcmp(volume->
GetName(),
name) && !all)
continue;
2164 Warning(
"SetVolumeAttribute",
"volume: %s does not exist",
name);
2195 Info(
"SetMaxVisNodes",
"Automatic visible depth for %d visible nodes", maxnodes);
2265 Info(
"SetVisLevel",
"Automatic visible depth disabled");
2286 Error(
"OptimizeVoxels",
"Geometry must be closed first");
2291 if (fname.
IsNull()) fname =
"tgeovox.C";
2292 out.open(fname, std::ios::out);
2294 Error(
"OptimizeVoxels",
"cannot open file");
2301 out << sname.
Data()<<
"()"<<std::endl;
2302 out <<
"{" << std::endl;
2303 out <<
"//=== Macro generated by ROOT version "<<
gROOT->GetVersion()<<
" : "<<t.
AsString()<<std::endl;
2304 out <<
"//=== Voxel optimization for " <<
GetTitle() <<
" geometry"<<std::endl;
2305 out <<
"//===== <run this macro JUST BEFORE closing the geometry>"<<std::endl;
2306 out <<
" TGeoVolume *vol = 0;"<<std::endl;
2307 out <<
" // parse all voxelized volumes"<<std::endl;
2313 out<<
" vol = gGeoManager->GetVolume(\""<<vol->
GetName()<<
"\");"<<std::endl;
2316 out<<
" vol->SetCylVoxels();"<<std::endl;
2318 out<<
" vol->SetCylVoxels(kFALSE);"<<std::endl;
2321 out <<
"}" << std::endl;
2345 for (i=0; i<
len; i++) {
2346 if (startstr(i)==
' ')
continue;
2347 e0 += startstr(i, 1);
2365 for (i=0; i<
len; i++) {
2367 if (!level) iloop++;
2373 if (level==0) lastpp=i;
2376 if ((e0(i)==
'+') || (e0(i)==
'-') || (e0(i)==
'*')) {
2384 if ((e0(i)==
':') && (level==0)) {
2393 if (iloop==1 && (e0(0)==
'(') && (e0(
len-1)==
')')) {
2398 if (foundmat)
break;
2399 if (((lastop==0) && (lastdp>0)) || ((lastpp>0) && (lastdp>lastpp) && (indop<lastpp))) {
2400 expr3 = e0(lastdp+1,
len-lastdp);
2409 for (i=0; i<
len; i++) {
2419 if (level<=levmin) {
2441 expr1 = e0(0, indop);
2442 expr2 = e0(indop+1,
len-indop);
2453 Error(
"SaveAttributes",
"geometry must be closed first\n");
2458 if (fname.
IsNull()) fname =
"tgeoatt.C";
2459 out.open(fname, std::ios::out);
2461 Error(
"SaveAttributes",
"cannot open file");
2468 out << sname.
Data()<<
"()"<<std::endl;
2469 out <<
"{" << std::endl;
2470 out <<
"//=== Macro generated by ROOT version "<<
gROOT->GetVersion()<<
" : "<<t.
AsString()<<std::endl;
2471 out <<
"//=== Attributes for " <<
GetTitle() <<
" geometry"<<std::endl;
2472 out <<
"//===== <run this macro AFTER loading the geometry in memory>"<<std::endl;
2474 out <<
" TGeoVolume *top = gGeoManager->GetVolume(\""<<
fTopVolume->
GetName()<<
"\");"<<std::endl;
2475 out <<
" TGeoVolume *vol = 0;"<<std::endl;
2476 out <<
" TGeoNode *node = 0;"<<std::endl;
2477 out <<
" // clear all volume attributes and get painter"<<std::endl;
2478 out <<
" gGeoManager->ClearAttributes();"<<std::endl;
2479 out <<
" gGeoManager->GetGeomPainter();"<<std::endl;
2480 out <<
" // set visualization modes and bomb factors"<<std::endl;
2481 out <<
" gGeoManager->SetVisOption("<<
GetVisOption()<<
");"<<std::endl;
2482 out <<
" gGeoManager->SetVisLevel("<<
GetVisLevel()<<
");"<<std::endl;
2483 out <<
" gGeoManager->SetExplodedView("<<
GetBombMode()<<
");"<<std::endl;
2484 Double_t bombx, bomby, bombz, bombr;
2486 out <<
" gGeoManager->SetBombFactors("<<bombx<<
","<<bomby<<
","<<bombz<<
","<<bombr<<
");"<<std::endl;
2487 out <<
" // iterate volumes container and set new attributes"<<std::endl;
2496 out <<
" // draw top volume with new settings"<<std::endl;
2497 out <<
" top->Draw();"<<std::endl;
2498 out <<
" gPad->x3d();"<<std::endl;
2499 out <<
"}" << std::endl;
2633 if (phi<0) phi+=360.;
2690 if (
fgVerboseLevel>0)
Info(
"GetByteCount",
"Total size of logical tree : %i bytes", count);
2700 const char *kind =
"root";
2701 if (
gROOT->IsWebDisplay() && !
gROOT->IsWebDisplayBatch()) kind =
"web";
2702 if (
auto h =
gROOT->GetPluginManager()->FindHandler(
"TVirtualGeoPainter", kind)) {
2703 if (
h->LoadPlugin() == -1) {
2704 Error(
"GetGeomPainter",
"could not load plugin for %s geo_painter", kind);
2709 Error(
"GetGeomPainter",
"could not create %s geo_painter", kind);
2713 Error(
"GetGeomPainter",
"not found plugin %s for geo_painter", kind);
2725 sname = sname.
Strip();
2745 sname = sname.
Strip();
2760 if (!vol)
return -1;
2770 if (
index <= 0)
return 0;
2774 if (other == mat)
continue;
2775 if (other->
IsEq(mat))
return other;
2786 sname = sname.
Strip();
2797 sname = sname.
Strip();
2810 if (med->
GetId()==numed)
return med;
2834 sname = sname.
Strip();
3019 return TGeoBuilder::Instance(
this)->
MakeCtub(
name, medium, rmin, rmax, dz, phi1, phi2, lx, ly, lz, tx, ty, tz);
3088 return TGeoBuilder::Instance(
this)->
MakeTrap(
name, medium, dz, theta, phi,
h1, bl1, tl1, alpha1, h2, bl2, tl2, alpha2);
3099 return TGeoBuilder::Instance(
this)->
MakeGtra(
name, medium, dz, theta, phi, twist,
h1, bl1, tl1, alpha1, h2, bl2, tl2, alpha2);
3123 Error(
"SetAlignableEntry",
"An alignable object with name %s already existing. NOT ADDED !", unique_name);
3132 if (!added)
Error(
"SetAlignableEntry",
"A PN entry: has already uid=%i", uid);
3209 keys[
index+1] = uid;
3210 values[
index+1] = ientry;
3240 Error(
"MakeAlignablePN",
"No alignable object named %s found !",
name);
3252 Error(
"MakeAlignablePN",
"No alignable object specified !");
3255 const char *path = entry->
GetTitle();
3257 Error(
"MakeAlignablePN",
"Alignable object %s poins to invalid path: %s",
3275 Error(
"MakePhysicalNode",
"path: %s not valid", path);
3339 if ((phimin==0) && (phimax==360)) {
3443 Int_t nnavigators = 0;
3447 for (
Int_t i=0; i<nnavigators; i++) {
3565 Error(
"CheckGeometryFull",
"The option string must contain a letter. See method documentation.");
3590 has_runtime =
kTRUE;
3603 Warning(
"CheckGeometry",
"Volume \"%s\" has no medium: assigned dummy medium and material", vol->
GetName());
3615 Error(
"CheckOverlaps",
"Top node not set");
3652 Info(
"Weight",
"Estimating weight of %s with %g %% precision",
fTopVolume->
GetName(), 100.*precision);
3653 printf(
" event weight err\n");
3654 printf(
"========================================\n");
3728 gROOT->ProcessLineFast(cmd);
3734 if (!
f ||
f->IsZombie()) {
3735 Error(
"Export",
"Cannot open file");
3832 ::Warning(
"TGeoManager::Import",
"TGeoMananager in lock mode. NOT IMPORTING new geometry");
3843 new TGeoManager(
"GDMLImport",
"Geometry imported from GDML");
3847 if(world ==
nullptr) {
3865 if (!
f ||
f->IsZombie()) {
3866 ::Error(
"TGeoManager::Import",
"Cannot open file");
3872 TIter next(
f->GetListOfKeys());
3874 while ((key = (
TKey*)next())) {
3875 if (strcmp(key->
GetClassName(),
"TGeoManager") != 0)
continue;
3904 for (i=0; i<nelem; i++) {
3906 if (!elem)
continue;
3908 if (!elem_table)
continue;
3909 if (elem != elem_table) {
3918 if (!elem)
continue;
3920 if (!elem_table)
continue;
3921 if (elem != elem_table) {
3940 while ((obj = next())) {
4008 Error(
"SetUseParallelWorldNav",
"No parallel world geometry defined. Use CreateParallelWorld.");
4016 Error(
"SetUseParallelWorldNav",
"The geometry must be closed first");
4041 ::Fatal(
"TGeoManager",
"The system of units may only be changed once, \n"
4042 "BEFORE any elements and materials are created! \n"
4043 "Alternatively unlock the default units at own risk.");
4045 else if ( new_value ==
kG4Units ) {
4046 ::Info(
"TGeoManager",
"Changing system of units to Geant4 units (mm, ns, MeV).");
4049 ::Info(
"TGeoManager",
"Changing system of units to ROOT units (cm, s, GeV).");
RooFitResult * save(const char *name=nullptr, const char *title=nullptr)
size_t size(const MatrixT &matrix)
retrieve the size of a square matrix
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char filename
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t r
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t index
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize id
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void value
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h Atom_t Int_t ULong_t ULong_t unsigned char prop_list Atom_t Atom_t Atom_t Time_t UChar_t len
Option_t Option_t TPoint TPoint const char mode
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h Atom_t Int_t ULong_t ULong_t unsigned char prop_list Atom_t Atom_t Atom_t Time_t property
TGeoManager * gGeoManager
static Bool_t gGeometryLocked
R__EXTERN TGeoManager * gGeoManager
R__EXTERN TGeoIdentity * gGeoIdentity
R__EXTERN TStyle * gStyle
virtual void SetFillColor(Color_t fcolor)
Set the fill area color.
Using a TBrowser one can browse all ROOT objects.
void RecursiveRemove(TObject *obj) override
Recursively remove obj from browser.
static const char * GetFloatFormat()
return current printf format for float members, default "%e"
static void SetFloatFormat(const char *fmt="%e")
set printf format for float/double members, default "%e" to change format only for doubles,...
static const char * GetDoubleFormat()
return current printf format for double members, default "%.14e"
static void SetDoubleFormat(const char *fmt="%.14e")
set printf format for double members, default "%.14e" use it after SetFloatFormat,...
Buffer base class used for serializing objects.
virtual Int_t ReadClassBuffer(const TClass *cl, void *pointer, const TClass *onfile_class=nullptr)=0
virtual Int_t WriteClassBuffer(const TClass *cl, void *pointer)=0
static ENewType IsCallingNew()
Static method returning the defConstructor flag passed to TClass::New().
virtual Int_t GetSize() const
Return the capacity of the collection, i.e.
This class stores the date and time with a precision of one second in an unsigned 32 bit word (950130...
const char * AsString() const
Return the date & time as a string (ctime() format).
TDirectory::TContext keeps track and restore the current directory.
virtual Int_t GetValue(const char *name, Int_t dflt) const
Returns the integer value for a resource.
A ROOT file is a suite of consecutive data records (TKey instances) with a well defined format.
static TFile * Open(const char *name, Option_t *option="", const char *ftitle="", Int_t compress=ROOT::RCompressionSetting::EDefaults::kUseCompiledDefault, Int_t netopt=0)
Create / open a file.
This class is used in the process of reading and writing the GDML "matrix" tag.
Bool_t IsVisTouched() const
void SetVisStreamed(Bool_t vis=kTRUE)
Mark attributes as "streamed to file".
void SetVisTouched(Bool_t vis=kTRUE)
Mark visualization attributes as "modified".
void SetVisBranch()
Set branch type visibility.
void Node(const char *name, Int_t nr, const char *mother, Double_t x, Double_t y, Double_t z, Int_t irot, Bool_t isOnly, Float_t *upar, Int_t npar=0)
Create a node called <name_nr> pointing to the volume called <name> as daughter of the volume called ...
TGeoVolume * MakePgon(const char *name, TGeoMedium *medium, Double_t phi, Double_t dphi, Int_t nedges, Int_t nz)
Make in one step a volume pointing to a polygone shape with given medium.
TGeoVolume * MakeGtra(const char *name, TGeoMedium *medium, Double_t dz, Double_t theta, Double_t phi, Double_t twist, Double_t h1, Double_t bl1, Double_t tl1, Double_t alpha1, Double_t h2, Double_t bl2, Double_t tl2, Double_t alpha2)
Make in one step a volume pointing to a twisted trapezoid shape with given medium.
TGeoVolume * MakeXtru(const char *name, TGeoMedium *medium, Int_t nz)
Make a TGeoXtru-shaped volume with nz planes.
TGeoVolume * MakePcon(const char *name, TGeoMedium *medium, Double_t phi, Double_t dphi, Int_t nz)
Make in one step a volume pointing to a polycone shape with given medium.
TGeoVolume * MakeTrap(const char *name, TGeoMedium *medium, Double_t dz, Double_t theta, Double_t phi, Double_t h1, Double_t bl1, Double_t tl1, Double_t alpha1, Double_t h2, Double_t bl2, Double_t tl2, Double_t alpha2)
Make in one step a volume pointing to a trapezoid shape with given medium.
Int_t AddShape(TGeoShape *shape)
Add a shape to the list. Returns index of the shape in list.
TGeoVolume * MakeTorus(const char *name, TGeoMedium *medium, Double_t r, Double_t rmin, Double_t rmax, Double_t phi1=0, Double_t dphi=360)
Make in one step a volume pointing to a torus shape with given medium.
static TGeoBuilder * Instance(TGeoManager *geom)
Return pointer to singleton.
TGeoVolume * MakeEltu(const char *name, TGeoMedium *medium, Double_t a, Double_t b, Double_t dz)
Make in one step a volume pointing to a tube shape with given medium.
TGeoVolume * MakeHype(const char *name, TGeoMedium *medium, Double_t rin, Double_t stin, Double_t rout, Double_t stout, Double_t dz)
Make in one step a volume pointing to a tube shape with given medium.
TGeoVolume * MakeArb8(const char *name, TGeoMedium *medium, Double_t dz, Double_t *vertices=nullptr)
Make an TGeoArb8 volume.
TGeoMaterial * Material(const char *name, Double_t a, Double_t z, Double_t dens, Int_t uid, Double_t radlen=0, Double_t intlen=0)
Create material with given A, Z and density, having an unique id.
TGeoVolume * MakeTube(const char *name, TGeoMedium *medium, Double_t rmin, Double_t rmax, Double_t dz)
Make in one step a volume pointing to a tube shape with given medium.
TGeoVolume * MakePara(const char *name, TGeoMedium *medium, Double_t dx, Double_t dy, Double_t dz, Double_t alpha, Double_t theta, Double_t phi)
Make in one step a volume pointing to a parallelepiped shape with given medium.
Int_t AddTransformation(TGeoMatrix *matrix)
Add a matrix to the list. Returns index of the matrix in list.
TGeoVolume * MakeSphere(const char *name, TGeoMedium *medium, Double_t rmin, Double_t rmax, Double_t themin=0, Double_t themax=180, Double_t phimin=0, Double_t phimax=360)
Make in one step a volume pointing to a sphere shape with given medium.
TGeoMedium * Medium(const char *name, Int_t numed, Int_t nmat, Int_t isvol, Int_t ifield, Double_t fieldm, Double_t tmaxfd, Double_t stemax, Double_t deemax, Double_t epsil, Double_t stmin)
Create tracking medium.
TGeoVolume * MakeTubs(const char *name, TGeoMedium *medium, Double_t rmin, Double_t rmax, Double_t dz, Double_t phi1, Double_t phi2)
Make in one step a volume pointing to a tube segment shape with given medium.
TGeoVolume * MakeBox(const char *name, TGeoMedium *medium, Double_t dx, Double_t dy, Double_t dz)
Make in one step a volume pointing to a box shape with given medium.
void Matrix(Int_t index, Double_t theta1, Double_t phi1, Double_t theta2, Double_t phi2, Double_t theta3, Double_t phi3)
Create rotation matrix named 'mat<index>'.
TGeoVolume * Division(const char *name, const char *mother, Int_t iaxis, Int_t ndiv, Double_t start, Double_t step, Int_t numed=0, Option_t *option="")
Create a new volume by dividing an existing one (GEANT3 like)
TGeoVolume * MakeParaboloid(const char *name, TGeoMedium *medium, Double_t rlo, Double_t rhi, Double_t dz)
Make in one step a volume pointing to a tube shape with given medium.
TGeoVolume * MakeTrd1(const char *name, TGeoMedium *medium, Double_t dx1, Double_t dx2, Double_t dy, Double_t dz)
Make in one step a volume pointing to a TGeoTrd1 shape with given medium.
TGeoVolumeAssembly * MakeVolumeAssembly(const char *name)
Make an assembly of volumes.
TGeoVolume * MakeCons(const char *name, TGeoMedium *medium, Double_t dz, Double_t rmin1, Double_t rmax1, Double_t rmin2, Double_t rmax2, Double_t phi1, Double_t phi2)
Make in one step a volume pointing to a cone segment shape with given medium.
Int_t AddMaterial(TGeoMaterial *material)
Add a material to the list. Returns index of the material in list.
TGeoVolumeMulti * MakeVolumeMulti(const char *name, TGeoMedium *medium)
Make a TGeoVolumeMulti handling a list of volumes.
TGeoVolume * MakeTrd2(const char *name, TGeoMedium *medium, Double_t dx1, Double_t dx2, Double_t dy1, Double_t dy2, Double_t dz)
Make in one step a volume pointing to a TGeoTrd2 shape with given medium.
TGeoVolume * Volume(const char *name, const char *shape, Int_t nmed, Float_t *upar, Int_t npar=0)
Create a volume in GEANT3 style.
TGeoMaterial * Mixture(const char *name, Float_t *a, Float_t *z, Double_t dens, Int_t nelem, Float_t *wmat, Int_t uid)
Create mixture OR COMPOUND IMAT as composed by THE BASIC nelem materials defined by arrays A,...
TGeoVolume * MakeCone(const char *name, TGeoMedium *medium, Double_t dz, Double_t rmin1, Double_t rmax1, Double_t rmin2, Double_t rmax2)
Make in one step a volume pointing to a cone shape with given medium.
void RegisterMatrix(TGeoMatrix *matrix)
Register a matrix to the list of matrices.
TGeoVolume * MakeCtub(const char *name, TGeoMedium *medium, Double_t rmin, Double_t rmax, Double_t dz, Double_t phi1, Double_t phi2, Double_t lx, Double_t ly, Double_t lz, Double_t tx, Double_t ty, Double_t tz)
Make in one step a volume pointing to a tube segment shape with given medium.
Class describing rotation + translation.
Composite shapes are Boolean combinations of two or more shape components.
TGeoElement * GetElement(Int_t z)
Base class for chemical elements.
void SetDefined(Bool_t flag=kTRUE)
void SetUsed(Bool_t flag=kTRUE)
Matrix class used for computing global transformations Should NOT be used for node definition.
An identity transformation.
The manager class for any TGeo geometry.
static void UnlockGeometry()
Unlock current geometry.
Double_t fPhimax
lowest range for phi cut
TGeoVolume * MakeCone(const char *name, TGeoMedium *medium, Double_t dz, Double_t rmin1, Double_t rmax1, Double_t rmin2, Double_t rmax2)
Make in one step a volume pointing to a cone shape with given medium.
void AnimateTracks(Double_t tmin=0, Double_t tmax=5E-8, Int_t nframes=200, Option_t *option="/*")
Draw animation of tracks.
void AddSkinSurface(TGeoSkinSurface *surf)
Add skin surface;.
TGeoVolume * MakeXtru(const char *name, TGeoMedium *medium, Int_t nz)
Make a TGeoXtru-shaped volume with nz planes.
Double_t * FindNormalFast()
Computes fast normal to next crossed boundary, assuming that the current point is close enough to the...
TGeoVolume * MakePcon(const char *name, TGeoMedium *medium, Double_t phi, Double_t dphi, Int_t nz)
Make in one step a volume pointing to a polycone shape with given medium.
void Browse(TBrowser *b)
Describe how to browse this object.
Int_t fRaytraceMode
Flag for multi-threading.
Double_t fVisDensity
particles to be drawn
TGeoNavigator * AddNavigator()
Add a navigator in the list of navigators.
TVirtualGeoTrack * GetTrackOfId(Int_t id) const
Get track with a given ID.
TGeoMaterial * FindDuplicateMaterial(const TGeoMaterial *mat) const
Find if a given material duplicates an existing one.
TGeoVolume * Division(const char *name, const char *mother, Int_t iaxis, Int_t ndiv, Double_t start, Double_t step, Int_t numed=0, Option_t *option="")
Create a new volume by dividing an existing one (GEANT3 like)
TGeoVolume * Volume(const char *name, const char *shape, Int_t nmed, Float_t *upar, Int_t npar=0)
Create a volume in GEANT3 style.
Int_t ReplaceVolume(TGeoVolume *vorig, TGeoVolume *vnew)
Replaces all occurrences of VORIG with VNEW in the geometry tree.
void DoRestoreState()
Restore a backed-up state without affecting the cache stack.
Int_t GetCurrentNodeId() const
Get the unique ID of the current node.
TGeoPNEntry * GetAlignableEntry(const char *name) const
Retrieves an existing alignable object.
TGeoVolume * fMasterVolume
top physical node
TVirtualGeoTrack * FindTrackWithId(Int_t id) const
Search the track hierarchy to find the track with the given id.
void TestOverlaps(const char *path="")
Geometry overlap checker based on sampling.
static EDefaultUnits GetDefaultUnits()
void RemoveMaterial(Int_t index)
Remove material at given index.
void Matrix(Int_t index, Double_t theta1, Double_t phi1, Double_t theta2, Double_t phi2, Double_t theta3, Double_t phi3)
Create rotation matrix named 'mat<index>'.
TGeoElementTable * GetElementTable()
Returns material table. Creates it if not existing.
THashList * fHashPNE
hash list of group volumes providing fast search
static Int_t fgVerboseLevel
Lock preventing a second geometry to be loaded.
void Init()
Initialize manager class.
Bool_t InitArrayPNE() const
Initialize PNE array for fast access via index and unique-id.
TObjArray * fPhysicalNodes
virtual ULong_t SizeOf(const TGeoNode *node, Option_t *option)
computes the total size in bytes of the branch starting with node.
TObjArray * fUniqueVolumes
static UInt_t fgExportPrecision
Maximum number of Xtru vertices.
void Node(const char *name, Int_t nr, const char *mother, Double_t x, Double_t y, Double_t z, Int_t irot, Bool_t isOnly, Float_t *upar, Int_t npar=0)
Create a node called <name_nr> pointing to the volume called <name> as daughter of the volume called ...
TGeoVolume * fPaintVolume
TGeoSkinSurface * GetSkinSurface(const char *name) const
Get skin surface with a given name;.
void UpdateElements()
Update element flags when geometry is loaded from a file.
TGeoManager()
Default constructor.
ConstPropMap_t fProperties
TGeoVolume * MakeTube(const char *name, TGeoMedium *medium, Double_t rmin, Double_t rmax, Double_t dz)
Make in one step a volume pointing to a tube shape with given medium.
void CdUp()
Go one level up in geometry.
void DoBackupState()
Backup the current state without affecting the cache stack.
void CheckBoundaryErrors(Int_t ntracks=1000000, Double_t radius=-1.)
Check pushes and pulls needed to cross the next boundary with respect to the position given by FindNe...
TGeoPNEntry * GetAlignableEntryByUID(Int_t uid) const
Retrieves an existing alignable object having a preset UID.
void AddGDMLMatrix(TGDMLMatrix *mat)
Add GDML matrix;.
static void SetExportPrecision(UInt_t prec)
void AddBorderSurface(TGeoBorderSurface *surf)
Add border surface;.
void SetClippingShape(TGeoShape *clip)
Set a user-defined shape as clipping for ray tracing.
TGeoVolume * fCurrentVolume
current navigator
void ClearOverlaps()
Clear the list of overlaps.
TGeoVolume * MakeCons(const char *name, TGeoMedium *medium, Double_t dz, Double_t rmin1, Double_t rmax1, Double_t rmin2, Double_t rmax2, Double_t phi1, Double_t phi2)
Make in one step a volume pointing to a cone segment shape with given medium.
THashList * fHashGVolumes
hash list of volumes providing fast search
static std::mutex fgMutex
Bool_t IsInPhiRange() const
True if current node is in phi range.
virtual Bool_t cd(const char *path="")
Browse the tree of nodes starting from fTopNode according to pathname.
TGeoNode * SearchNode(Bool_t downwards=kFALSE, const TGeoNode *skipnode=nullptr)
Returns the deepest node containing fPoint, which must be set a priori.
TGeoMaterial * Material(const char *name, Double_t a, Double_t z, Double_t dens, Int_t uid, Double_t radlen=0, Double_t intlen=0)
Create material with given A, Z and density, having an unique id.
void LocalToMaster(const Double_t *local, Double_t *master) const
static Bool_t fgLockNavigators
Number of registered threads.
void SaveAttributes(const char *filename="tgeoatt.C")
Save current attributes in a macro.
void RestoreMasterVolume()
Restore the master volume of the geometry.
TGeoVolume * MakeArb8(const char *name, TGeoMedium *medium, Double_t dz, Double_t *vertices=nullptr)
Make an TGeoArb8 volume.
virtual Int_t Export(const char *filename, const char *name="", Option_t *option="vg")
Export this geometry to a file.
TGeoNode * FindNextDaughterBoundary(Double_t *point, Double_t *dir, Int_t &idaughter, Bool_t compmatrix=kFALSE)
Computes as fStep the distance to next daughter of the current volume.
Int_t GetUID(const char *volname) const
Retrieve unique id for a volume name. Return -1 if name not found.
TGeoShape * fClippingShape
TGeoNavigator * GetCurrentNavigator() const
Returns current navigator for the calling thread.
TObjArray * fMatrices
current painter
static Int_t GetNumThreads()
Returns number of threads that were set to use geometry.
TGeoVolumeMulti * MakeVolumeMulti(const char *name, TGeoMedium *medium)
Make a TGeoVolumeMulti handling a list of volumes.
void ClearNavigators()
Clear all navigators.
Int_t AddTransformation(const TGeoMatrix *matrix)
Add a matrix to the list. Returns index of the matrix in list.
TObjArray * fOpticalSurfaces
TVirtualGeoTrack * GetParentTrackOfId(Int_t id) const
Get parent track with a given ID.
void CdNode(Int_t nodeid)
Change current path to point to the node having this id.
static Int_t GetMaxLevels()
Return maximum number of levels used in the geometry.
Double_t fTmin
highest range for phi cut
static Bool_t IsLocked()
Check lock state.
TGeoVolume * fTopVolume
current volume
TGeoVolume * fUserPaintVolume
volume currently painted
TVirtualGeoPainter * GetGeomPainter()
Make a default painter if none present. Returns pointer to it.
void GetBranchOnlys(Int_t *isonly) const
Fill node copy numbers of current branch into an array.
TGeoNode * GetCurrentNode() const
Int_t AddTrack(Int_t id, Int_t pdgcode, TObject *particle=nullptr)
Add a track to the list of tracks.
void SetVisOption(Int_t option=0)
set drawing mode :
void SetPdgName(Int_t pdg, const char *name)
Set a name for a particle having a given pdg.
TObjArray * fBorderSurfaces
Int_t GetNAlignable(Bool_t with_uid=kFALSE) const
Retrieves number of PN entries with or without UID.
void RefreshPhysicalNodes(Bool_t lock=kTRUE)
Refresh physical nodes to reflect the actual geometry paths after alignment was applied.
static Bool_t fgLock
mutex for navigator booking in MT mode
TGeoVolume * MakePara(const char *name, TGeoMedium *medium, Double_t dx, Double_t dy, Double_t dz, Double_t alpha, Double_t theta, Double_t phi)
Make in one step a volume pointing to a parallelepiped shape with given medium.
void TopToMaster(const Double_t *top, Double_t *master) const
Convert coordinates from top volume frame to master.
void AddOpticalSurface(TGeoOpticalSurface *optsurf)
Add optical surface;.
static void SetDefaultUnits(EDefaultUnits new_value)
Bool_t fLoopVolumes
flag that geometry is closed
Int_t AddMaterial(const TGeoMaterial *material)
Add a material to the list. Returns index of the material in list.
void ClearAttributes()
Reset all attributes to default ones.
static Int_t fgMaxDaughters
Maximum level in geometry.
Bool_t fUsePWNav
Raytrace mode: 0=normal, 1=pass through, 2=transparent.
void SetRTmode(Int_t mode)
Change raytracing mode.
Bool_t CheckPath(const char *path) const
Check if a geometry path is valid without changing the state of the current navigator.
void InspectState() const
Inspects path and all flags for the current state.
void ConvertReflections()
Convert all reflections in geometry to normal rotations + reflected shapes.
void SetVisLevel(Int_t level=3)
set default level down to which visualization is performed
TGeoNode * FindNextBoundary(Double_t stepmax=TGeoShape::Big(), const char *path="", Bool_t frombdr=kFALSE)
Find distance to next boundary and store it in fStep.
static TGeoManager * Import(const char *filename, const char *name="", Option_t *option="")
static function Import a geometry from a gdml or ROOT file
TGeoPhysicalNode * MakePhysicalNode(const char *path=nullptr)
Makes a physical node corresponding to a path.
void CountLevels()
Count maximum number of nodes per volume, maximum depth and maximum number of xtru vertices.
TGeoVolume * MakeTorus(const char *name, TGeoMedium *medium, Double_t r, Double_t rmin, Double_t rmax, Double_t phi1=0, Double_t dphi=360)
Make in one step a volume pointing to a torus shape with given medium.
TGeoHMatrix * GetHMatrix()
Return stored current matrix (global matrix of the next touched node).
TGeoParallelWorld * fParallelWorld
void RegisterMatrix(const TGeoMatrix *matrix)
Register a matrix to the list of matrices.
TVirtualGeoTrack * GetTrack(Int_t index)
static Int_t GetMaxDaughters()
Return maximum number of daughters of a volume used in the geometry.
static void ClearThreadsMap()
Clear the current map of threads.
Int_t AddVolume(TGeoVolume *volume)
Add a volume to the list. Returns index of the volume in list.
TVirtualGeoPainter * fPainter
flag that nodes are the selected objects in pad rather than volumes
void SetVolumeAttribute(const char *name, const char *att, Int_t val)
Set volume attributes in G3 style.
const char * GetPdgName(Int_t pdg) const
Get name for given pdg code;.
void CheckGeometryFull(Int_t ntracks=1000000, Double_t vx=0., Double_t vy=0., Double_t vz=0., Option_t *option="ob")
Geometry checking.
Bool_t fIsNodeSelectable
switch ON/OFF volume activity (default OFF - all volumes active))
TGeoNode * Step(Bool_t is_geom=kTRUE, Bool_t cross=kTRUE)
Make a rectilinear step of length fStep from current point (fPoint) on current direction (fDirection)...
Bool_t GotoSafeLevel()
Go upwards the tree until a non-overlapping node.
Bool_t fActivity
flag for GL reflections
void GetBranchNames(Int_t *names) const
Fill volume names of current branch into an array.
static ThreadsMap_t * fgThreadId
Map between thread id's and navigator arrays.
void CloseGeometry(Option_t *option="d")
Closing geometry implies checking the geometry validity, fixing shapes with negative parameters (run-...
TVirtualGeoTrack * MakeTrack(Int_t id, Int_t pdgcode, TObject *particle)
Makes a primary track but do not attach it to the list of tracks.
Int_t GetTrackIndex(Int_t id) const
Get index for track id, -1 if not found.
Int_t fNNodes
upper time limit for tracks drawing
virtual void ExecuteEvent(Int_t event, Int_t px, Int_t py)
Execute mouse actions on this manager.
Int_t fNLevel
table of elements
void OptimizeVoxels(const char *filename="tgeovox.C")
Optimize voxelization type for all volumes. Save best choice in a macro.
void CheckPoint(Double_t x=0, Double_t y=0, Double_t z=0, Option_t *option="")
Classify a given point. See TGeoChecker::CheckPoint().
TGeoVolume * GetVolume(const char *name) const
Search for a named volume. All trailing blanks stripped.
void SetAnimateTracks(Bool_t flag=kTRUE)
Bool_t fIsGeomCleaning
flag set when reading geometry
Bool_t IsSameLocation() const
void DefaultColors()
Set default volume colors according to A of material.
TGeoNode * FindNextBoundaryAndStep(Double_t stepmax=TGeoShape::Big(), Bool_t compsafe=kFALSE)
Compute distance to next boundary within STEPMAX.
TGeoVolume * MakeTrd2(const char *name, TGeoMedium *medium, Double_t dx1, Double_t dx2, Double_t dy1, Double_t dy2, Double_t dz)
Make in one step a volume pointing to a TGeoTrd2 shape with given medium.
Double_t * FindNormal(Bool_t forward=kTRUE)
Computes normal vector to the next surface that will be or was already crossed when propagating on a ...
virtual Int_t GetByteCount(Option_t *option=nullptr)
Get total size of geometry in bytes.
TGeoVolume * MakeGtra(const char *name, TGeoMedium *medium, Double_t dz, Double_t theta, Double_t phi, Double_t twist, Double_t h1, Double_t bl1, Double_t tl1, Double_t alpha1, Double_t h2, Double_t bl2, Double_t tl2, Double_t alpha2)
Make in one step a volume pointing to a twisted trapezoid shape with given medium.
TGeoElementTable * fElementTable
clipping shape for raytracing
static void SetNavigatorsLock(Bool_t flag)
Set the lock for navigators.
static Int_t fgMaxXtruVert
Maximum number of daughters.
TGeoNode * FindNode(Bool_t safe_start=kTRUE)
Returns deepest node containing current point.
Int_t GetVisOption() const
Returns current depth to which geometry is drawn.
static void LockGeometry()
Lock current geometry so that no other geometry can be imported.
TGeoVolume * MakeBox(const char *name, TGeoMedium *medium, Double_t dx, Double_t dy, Double_t dz)
Make in one step a volume pointing to a box shape with given medium.
void CheckShape(TGeoShape *shape, Int_t testNo, Int_t nsamples, Option_t *option)
Test for shape navigation methods.
static Int_t fgMaxLevel
Verbosity level for Info messages (no IO).
void PrintOverlaps() const
Prints the current list of overlaps.